diff --git a/dist/forge.cjs.js b/dist/forge.cjs.js index d34c995..1e1d2d1 100644 --- a/dist/forge.cjs.js +++ b/dist/forge.cjs.js @@ -20,76 +20,12 @@ function _interopNamespaceDefault(e) { } const THREE__namespace = /* @__PURE__ */ _interopNamespaceDefault(THREE); let wasm; -function addToExternrefTable0(obj) { - const idx = wasm.__externref_table_alloc(); - wasm.__wbindgen_export_2.set(idx, obj); - return idx; +const cachedTextDecoder = typeof TextDecoder !== "undefined" ? new TextDecoder("utf-8", { ignoreBOM: true, fatal: true }) : { decode: () => { + throw Error("TextDecoder not available"); +} }; +if (typeof TextDecoder !== "undefined") { + cachedTextDecoder.decode(); } -function handleError(f, args) { - try { - return f.apply(this, args); - } catch (e) { - const idx = addToExternrefTable0(e); - wasm.__wbindgen_exn_store(idx); - } -} -function debugString(val) { - const type = typeof val; - if (type == "number" || type == "boolean" || val == null) { - return `${val}`; - } - if (type == "string") { - return `"${val}"`; - } - if (type == "symbol") { - const description = val.description; - if (description == null) { - return "Symbol"; - } else { - return `Symbol(${description})`; - } - } - if (type == "function") { - const name = val.name; - if (typeof name == "string" && name.length > 0) { - return `Function(${name})`; - } else { - return "Function"; - } - } - if (Array.isArray(val)) { - const length2 = val.length; - let debug = "["; - if (length2 > 0) { - debug += debugString(val[0]); - } - for (let i = 1; i < length2; i++) { - debug += ", " + debugString(val[i]); - } - debug += "]"; - return debug; - } - const builtInMatches = /\[object ([^\]]+)\]/.exec(toString.call(val)); - let className; - if (builtInMatches && builtInMatches.length > 1) { - className = builtInMatches[1]; - } else { - return toString.call(val); - } - if (className == "Object") { - try { - return "Object(" + JSON.stringify(val) + ")"; - } catch (_) { - return "Object"; - } - } - if (val instanceof Error) { - return `${val.name}: ${val.message} -${val.stack}`; - } - return className; -} -let WASM_VECTOR_LEN = 0; let cachedUint8ArrayMemory0 = null; function getUint8ArrayMemory0() { if (cachedUint8ArrayMemory0 === null || cachedUint8ArrayMemory0.byteLength === 0) { @@ -97,70 +33,10 @@ function getUint8ArrayMemory0() { } return cachedUint8ArrayMemory0; } -const cachedTextEncoder = typeof TextEncoder !== "undefined" ? new TextEncoder("utf-8") : { encode: () => { - throw Error("TextEncoder not available"); -} }; -const encodeString = typeof cachedTextEncoder.encodeInto === "function" ? function(arg, view) { - return cachedTextEncoder.encodeInto(arg, view); -} : function(arg, view) { - const buf = cachedTextEncoder.encode(arg); - view.set(buf); - return { - read: arg.length, - written: buf.length - }; -}; -function passStringToWasm0(arg, malloc, realloc) { - if (realloc === void 0) { - const buf = cachedTextEncoder.encode(arg); - const ptr2 = malloc(buf.length, 1) >>> 0; - getUint8ArrayMemory0().subarray(ptr2, ptr2 + buf.length).set(buf); - WASM_VECTOR_LEN = buf.length; - return ptr2; - } - let len = arg.length; - let ptr = malloc(len, 1) >>> 0; - const mem = getUint8ArrayMemory0(); - let offset = 0; - for (; offset < len; offset++) { - const code = arg.charCodeAt(offset); - if (code > 127) break; - mem[ptr + offset] = code; - } - if (offset !== len) { - if (offset !== 0) { - arg = arg.slice(offset); - } - ptr = realloc(ptr, len, len = offset + arg.length * 3, 1) >>> 0; - const view = getUint8ArrayMemory0().subarray(ptr + offset, ptr + len); - const ret = encodeString(arg, view); - offset += ret.written; - ptr = realloc(ptr, len, offset, 1) >>> 0; - } - WASM_VECTOR_LEN = offset; - return ptr; -} -let cachedDataViewMemory0 = null; -function getDataViewMemory0() { - if (cachedDataViewMemory0 === null || cachedDataViewMemory0.buffer.detached === true || cachedDataViewMemory0.buffer.detached === void 0 && cachedDataViewMemory0.buffer !== wasm.memory.buffer) { - cachedDataViewMemory0 = new DataView(wasm.memory.buffer); - } - return cachedDataViewMemory0; -} -const cachedTextDecoder = typeof TextDecoder !== "undefined" ? new TextDecoder("utf-8", { ignoreBOM: true, fatal: true }) : { decode: () => { - throw Error("TextDecoder not available"); -} }; -if (typeof TextDecoder !== "undefined") { - cachedTextDecoder.decode(); -} function getStringFromWasm0(ptr, len) { ptr = ptr >>> 0; return cachedTextDecoder.decode(getUint8ArrayMemory0().subarray(ptr, ptr + len)); } -function decode_wlg(bytes, tex_width, tex_height) { - const ret = wasm.decode_wlg(bytes, tex_width, tex_height); - return ret; -} function raycast_splats(origin_x, origin_y, origin_z, dir_x, dir_y, dir_z, near, far, num_splats, packed_splats, raycast_ellipsoid) { const ret = wasm.raycast_splats(origin_x, origin_y, origin_z, dir_x, dir_y, dir_z, near, far, num_splats, packed_splats, raycast_ellipsoid); return ret; @@ -192,28 +68,10 @@ async function __wbg_load(module2, imports) { function __wbg_get_imports() { const imports = {}; imports.wbg = {}; - imports.wbg.__wbg_buffer_09165b52af8c5237 = function(arg0) { - const ret = arg0.buffer; - return ret; - }; imports.wbg.__wbg_buffer_609cc3eee51ed158 = function(arg0) { const ret = arg0.buffer; return ret; }; - imports.wbg.__wbg_get_b9b93047fe3cf45b = function(arg0, arg1) { - const ret = arg0[arg1 >>> 0]; - return ret; - }; - imports.wbg.__wbg_instanceof_Uint8Array_17156bcf118086a9 = function(arg0) { - let result; - try { - result = arg0 instanceof Uint8Array; - } catch (_) { - result = false; - } - const ret = result; - return ret; - }; imports.wbg.__wbg_length_3b4f022188ae8db6 = function(arg0) { const ret = arg0.length; return ret; @@ -226,26 +84,10 @@ function __wbg_get_imports() { const ret = arg0.length; return ret; }; - imports.wbg.__wbg_length_a446193dc22c12f8 = function(arg0) { - const ret = arg0.length; - return ret; - }; - imports.wbg.__wbg_length_e2d2a49132c1b256 = function(arg0) { - const ret = arg0.length; - return ret; - }; - imports.wbg.__wbg_new_405e22f390576ce2 = function() { - const ret = new Object(); - return ret; - }; imports.wbg.__wbg_new_9fee97a409b32b68 = function(arg0) { const ret = new Uint16Array(arg0); return ret; }; - imports.wbg.__wbg_new_a12002a7f91c75be = function(arg0) { - const ret = new Uint8Array(arg0); - return ret; - }; imports.wbg.__wbg_new_e3b321dcfef89fc7 = function(arg0) { const ret = new Uint32Array(arg0); return ret; @@ -262,22 +104,9 @@ function __wbg_get_imports() { const ret = new Float32Array(arg0 >>> 0); return ret; }; - imports.wbg.__wbg_newwithlength_bd3de93688d68fbc = function(arg0) { - const ret = new Uint32Array(arg0 >>> 0); - return ret; - }; imports.wbg.__wbg_set_10bad9bee0e9c58b = function(arg0, arg1, arg2) { arg0.set(arg1, arg2 >>> 0); }; - imports.wbg.__wbg_set_65595bdd868b3009 = function(arg0, arg1, arg2) { - arg0.set(arg1, arg2 >>> 0); - }; - imports.wbg.__wbg_set_bb8cecf6a62b9f46 = function() { - return handleError(function(arg0, arg1, arg2) { - const ret = Reflect.set(arg0, arg1, arg2); - return ret; - }, arguments); - }; imports.wbg.__wbg_set_d23661d19148b229 = function(arg0, arg1, arg2) { arg0.set(arg1, arg2 >>> 0); }; @@ -292,15 +121,8 @@ function __wbg_get_imports() { const ret = arg0.subarray(arg1 >>> 0, arg2 >>> 0); return ret; }; - imports.wbg.__wbindgen_debug_string = function(arg0, arg1) { - const ret = debugString(arg1); - const ptr1 = passStringToWasm0(ret, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc); - const len1 = WASM_VECTOR_LEN; - getDataViewMemory0().setInt32(arg0 + 4 * 1, len1, true); - getDataViewMemory0().setInt32(arg0 + 4 * 0, ptr1, true); - }; imports.wbg.__wbindgen_init_externref_table = function() { - const table = wasm.__wbindgen_export_2; + const table = wasm.__wbindgen_export_0; const offset = table.grow(4); table.set(0, void 0); table.set(offset + 0, void 0); @@ -312,14 +134,6 @@ function __wbg_get_imports() { const ret = wasm.memory; return ret; }; - imports.wbg.__wbindgen_number_new = function(arg0) { - const ret = arg0; - return ret; - }; - imports.wbg.__wbindgen_string_new = function(arg0, arg1) { - const ret = getStringFromWasm0(arg0, arg1); - return ret; - }; imports.wbg.__wbindgen_throw = function(arg0, arg1) { throw new Error(getStringFromWasm0(arg0, arg1)); }; @@ -328,7 +142,6 @@ function __wbg_get_imports() { function __wbg_finalize_init(instance, module2) { wasm = instance.exports; __wbg_init.__wbindgen_wasm_module = module2; - cachedDataViewMemory0 = null; cachedUint8ArrayMemory0 = null; wasm.__wbindgen_start(); return wasm; @@ -343,7 +156,7 @@ async function __wbg_init(module_or_path) { } } if (typeof module_or_path === "undefined") { - module_or_path = new URL("data:application/wasm;base64,AGFzbQEAAAABtgItYAJ/fwF/YAJ/fwBgA39/fwF/YAF/AGABfwF/YAN/f38AYAV/f39/fwBgBH9/f38AYAFvAX9gAW8Bb2ADb39/AW9gBX9/f39/AX9gA29vfwBgAABgA39+fgBgA39+fgF/YAd/f39/f39/AX9gBn9/f39/fwBgAX0BfWAEf39/fwF/YAABb2ABfwFvYAZ/f39/f38Bf2AAAX9gC39/f39/f39/f39/AX9gAn9/AW9gAXwBb2ACb38Bb2ADb29vAX9gAn9vAGAHf39/f39/fwBgAn9/AX5gAn9+AX9gAn9+AGALfX19fX19fX1/b38Bb2ABfwF9YAV/f35/fwBgBH9+f38AYAV/f31/fwBgBH99f38AYAV/f3x/fwBgBH98f38AYAR/f29vAX9gA39vbwF/YAJ9fQF9ArcIHgN3YmcVX193YmluZGdlbl9zdHJpbmdfbmV3ABkDd2JnFV9fd2JpbmRnZW5fbnVtYmVyX25ldwAaA3diZxpfX3diZ19nZXRfYjliOTMwNDdmZTNjZjQ1YgAbA3diZx1fX3diZ19sZW5ndGhfZTJkMmE0OTEzMmMxYjI1NgAIA3diZxpfX3diZ19uZXdfNDA1ZTIyZjM5MDU3NmNlMgAUA3diZx1fX3diZ19idWZmZXJfNjA5Y2MzZWVlNTFlZDE1OAAJA3diZxpfX3diZ19uZXdfYTEyMDAyYTdmOTFjNzViZQAJA3diZxpfX3diZ19zZXRfNjU1OTViZGQ4NjhiMzAwOQAMA3diZx1fX3diZ19sZW5ndGhfYTQ0NjE5M2RjMjJjMTJmOAAIA3diZxpfX3diZ19uZXdfOWZlZTk3YTQwOWIzMmI2OAAJA3diZxpfX3diZ19zZXRfZjRmMWYwZGFhMzA2OTZmYwAMA3diZx1fX3diZ19sZW5ndGhfOGNmZDJjNjQwOWFmODhhZAAIA3diZzFfX3diZ19uZXd3aXRoYnl0ZW9mZnNldGFuZGxlbmd0aF9mMWRlYWQ0NGQxZmM3MjEyAAoDd2JnGl9fd2JnX25ld19lM2IzMjFkY2ZlZjg5ZmM3AAkDd2JnGl9fd2JnX3NldF9kMjM2NjFkMTkxNDhiMjI5AAwDd2JnHV9fd2JnX2xlbmd0aF82Y2E1Mjc2NjVkODk2OTRkAAgDd2JnMV9fd2JnX25ld3dpdGhieXRlb2Zmc2V0YW5kbGVuZ3RoX2U2YjdlNjlhY2Q0YzczNTQACgN3YmcaX193Ymdfc2V0XzEwYmFkOWJlZTBlOWM1OGIADAN3YmcdX193YmdfbGVuZ3RoXzNiNGYwMjIxODhhZThkYjYACAN3YmcsX193YmdfaW5zdGFuY2VvZl9VaW50OEFycmF5XzE3MTU2YmNmMTE4MDg2YTkACAN3YmcdX193YmdfYnVmZmVyXzA5MTY1YjUyYWY4YzUyMzcACQN3YmcfX193Ymdfc3ViYXJyYXlfNzY5ZTFlMGY4MWJiMjU5YgAKA3diZyRfX3diZ19uZXd3aXRobGVuZ3RoX2JkM2RlOTM2ODhkNjhmYmMAFQN3YmcfX193Ymdfc3ViYXJyYXlfM2FhZWVjODliYjI1NDRmMAAKA3diZyRfX3diZ19uZXd3aXRobGVuZ3RoXzVhNWVmZTMxM2NmZDU5ZjEAFQN3YmcaX193Ymdfc2V0X2JiOGNlY2Y2YTYyYjlmNDYAHAN3YmcXX193YmluZGdlbl9kZWJ1Z19zdHJpbmcAHQN3YmcQX193YmluZGdlbl90aHJvdwABA3diZxFfX3diaW5kZ2VuX21lbW9yeQAUA3diZx9fX3diaW5kZ2VuX2luaXRfZXh0ZXJucmVmX3RhYmxlAA0DwwTBBAQAAAYQAAQABAQHAQMDAQYFAAIAAAQRFgIBBAUAAgEFAwAABQQCAAIAAwIDAAAAAAAFAQASAQMAHgUBBAIfBAAAAAAAAAAAAAEFARcAEQIDAAsBEAUAAAEAAAAAAAAAAAELAQAFAAAAAAEFBwABAAAABgYABgUAAAAADQEAAAAAAAEFAAABAwAABQADEgAAAAAAAAcBAgEBAQMABQQDIAEYBAEGARgBAAMAABABEQAAAAABAQAAAAAAAAAAAgcDAAEBAQEAAAAAAAMFBQMDAQAAAwMBAAAAAAAAAAQDAAAAAAAAAAAAAAAAAAAAAAAADgMODg4AAAMAAAAAAAAhAQEBAQYAAwMAAwEBAQEABAMFBAABAgEAAAADAwEBAQEBAQEBAQEABQEBAQEBAQEBBQMAAAAADQ0CAAEAAQABAQAHAwMCAgAAAAABAQIAAAAABQIBAQEBAQAAAAAAAAAEAAsAAAAAAAAAAAAAAAABAAUAAAAAAAAAAwMAAQABAAEBAAAABAQEIgEjBwETABYAAAABAQABAQABAQEBAAYkCyYoAwAPDw8PByoBAQEBAQEAAQECCisDAwAsAgUSAwMABAQBEwEBAQEAAgQEBAAAAAYXAQEBAAABAQAAAQEBAQEBAQEBAQEBAQEAAAEBAQEBAQEBAQEBAQEBAQEBAQEBAQEBAQADAQEBAAAFBQQCBQUFAAMAAAAAAAAAAAAAAAAAAAAAAAAAAAACAAAAAQAAAAEAAAAAAAABAAIFAQAABAQEBAUECwJwAakEqQRvAIABBQMBABEGCQF/AUGAgMAACwfSAQsGbWVtb3J5AgAKZGVjb2RlX3dsZwDQAw9vbGRfc29ydF9zcGxhdHMAxQMLc29ydF9zcGxhdHMA0QMOcmF5Y2FzdF9zcGxhdHMAowMUX193YmluZGdlbl9leG5fc3RvcmUAoAQXX19leHRlcm5yZWZfdGFibGVfYWxsb2MAaRNfX3diaW5kZ2VuX2V4cG9ydF8yAQERX193YmluZGdlbl9tYWxsb2MAkwMSX193YmluZGdlbl9yZWFsbG9jAKgDEF9fd2JpbmRnZW5fc3RhcnQAHQmsCAEAQQELqAStBMYE0gPyA/ED1wTvA+4D3gTnAY0D2ATmAvQD7gPeBOoB3gPwA7UBwAONAt0E2QPXAecD6APmA9kD0gPXBPMD3gTcAaEBzQJq2QTBAocE8QHAAt4EVDFd3gGYBPcD4QHeBNID8gPxA9cE7wP3A9cEhgSFBIQE1wSPA/UC9wKOA4YCjwOFAvcCpgGSApwE1wT0AvoCtAS1BPcB0gHdAbEE0AK4BPYCswKAA9cEjQT3A9cE3gT2Am06gwGmApsEqQJAlAGvA4sEtgOsAm7/Ae8CkgTyArcCogHTAbgCkwS+AqICkQHjAdYCngTbAvsB1QLGA4oEzQOVA1WtAa4DkAS3A/gC+QK2BMcB4wKyBO0B2AG3BIcCtAL/Ao8EpAL+Ao4EtgIyYbkClgS/An3MAZcDlAScA4sC6QKXBN8CP3nFApEEywKlAfMBxwOaBM4DrQOzBJEDkAPeAiVLxAKMBMoCrAGTApUEpAFEmwGcAp0EnwK1ApYD+wOZBIkEVF7fAfwD3gTXBPwD3gTNAtIDlAKNA9gE5gL5A/wD3gTvAY0D2ATmAvQD/APeBKMC+AO7AfoD+gHgA/0DiwHBA5AC3QS3AeIDgATEAcMDjwKOAuED/wO9AcID6wHjA/4DtgHAA5ECjwOOA48DlQKDA9cE/APeBG2EAacClQGyA6wCgALwArcC1AG6AqIC5AHYAtcCyAOVA64BsQOCA4EDtgJiuwLNAZkD6gLfAnrHAvQByQOwA5AD3gJMxgKWAqQBnAGdApgDgQTqA1Rf4AGCBN4E5ALMA48DjgOPA5cC1wSCBN4EhgPXBIIE3gRthQGoApYBtQOsAoEC8QK3AtUBvAKiAuUB2gLNAtkCygOVA68BtAOFA4QDtgJjvQLOAZsD6wLfAnvJAvUBywOzA5AD3gJNyAKYAqQBnQGeApoDgwSwBJ8EjwPPAo4DjwOZAogE3gSJA4gE3gRthgGpApcBtgOIBN4ErAKCAvICtwLWAb4CogLmAdsCzQLcAs0DlQOwAbcDiAOHA7YCZL8CzwGcA+wC3wJ8ywL2Ac4DuAOQA94CTsoCmgKkAZ4BnwKdA74ErwKhAsEEzgKaAa8EvwT8ArwEvATABGDIAeUCd+4B4gHZAasBSoEBjAH4AbkEugS7BIgCkgO9BL0EiQLRAooCxQGPA/UC9wL0ArEE9wKPA/YCkAP2Ao4DQ6gBwgTSA+ACc8ME6QPyA9ID4AJ0xQS7A8sBuQO7A6oDzwPEA7kDuQO8A70DugPyA9oDngPLBIYEuAGpA/IDsgLJBNID4QJ4ygSlArMBsQKQA78D8QOFBNQDoQSiBJ8E5wKjBMwEvgOMApkBwAHXBIUEqgLCAvUCzQSrA+4CigHOBIsDzwTQBNID6AJ20QTSBOQD6gOkBKUERvIBjgFI4gLUBAqZ/wrBBIQkAgl/AX4jAEEQayIIJAACfwJAAkACQAJAAkACQCAAQfUBTwRAQQAgAEHM/3tLDQcaIABBC2oiAUF4cSEFQcTowgAoAgAiCUUNBEEfIQdBACAFayEEIABB9P//B00EQCAFQQYgAUEIdmciAGt2QQFxIABBAXRrQT5qIQcLIAdBAnRBqOXCAGooAgAiAUUEQEEAIQAMAgtBACEAIAVBGSAHQQF2a0EAIAdBH0cbdCEDA0ACQCABKAIEQXhxIgYgBUkNACAGIAVrIgYgBE8NACABIQIgBiIEDQBBACEEIAEhAAwECyABKAIUIgYgACAGIAEgA0EddkEEcWpBEGooAgAiAUcbIAAgBhshACADQQF0IQMgAQ0ACwwBC0HA6MIAKAIAIgJBECAAQQtqQfgDcSAAQQtJGyIFQQN2IgB2IgFBA3EEQAJAIAFBf3NBAXEgAGoiBkEDdCIAQbjmwgBqIgMgAEHA5sIAaigCACIBKAIIIgRHBEAgBCADNgIMIAMgBDYCCAwBC0HA6MIAIAJBfiAGd3E2AgALIAEgAEEDcjYCBCAAIAFqIgAgACgCBEEBcjYCBCABQQhqDAcLIAVByOjCACgCAE0NAwJAAkAgAUUEQEHE6MIAKAIAIgBFDQYgAGhBAnRBqOXCAGooAgAiAigCBEF4cSAFayEEIAIhAQNAAkAgAigCECIADQAgAigCFCIADQAgASgCGCEHAkACQCABIAEoAgwiAEYEQCABQRRBECABKAIUIgAbaigCACICDQFBACEADAILIAEoAggiAiAANgIMIAAgAjYCCAwBCyABQRRqIAFBEGogABshAwNAIAMhBiACIgBBFGogAEEQaiAAKAIUIgIbIQMgAEEUQRAgAhtqKAIAIgINAAsgBkEANgIACyAHRQ0EIAEgASgCHEECdEGo5cIAaiICKAIARwRAIAdBEEEUIAcoAhAgAUYbaiAANgIAIABFDQUMBAsgAiAANgIAIAANA0HE6MIAQcTowgAoAgBBfiABKAIcd3E2AgAMBAsgACgCBEF4cSAFayICIAQgAiAESSICGyEEIAAgASACGyEBIAAhAgwACwALAkBBAiAAdCIDQQAgA2tyIAEgAHRxaCIGQQN0IgFBuObCAGoiAyABQcDmwgBqKAIAIgAoAggiBEcEQCAEIAM2AgwgAyAENgIIDAELQcDowgAgAkF+IAZ3cTYCAAsgACAFQQNyNgIEIAAgBWoiBiABIAVrIgNBAXI2AgQgACABaiADNgIAQcjowgAoAgAiBARAIARBeHFBuObCAGohAUHQ6MIAKAIAIQICf0HA6MIAKAIAIgVBASAEQQN2dCIEcUUEQEHA6MIAIAQgBXI2AgAgAQwBCyABKAIICyEEIAEgAjYCCCAEIAI2AgwgAiABNgIMIAIgBDYCCAtB0OjCACAGNgIAQcjowgAgAzYCACAAQQhqDAgLIAAgBzYCGCABKAIQIgIEQCAAIAI2AhAgAiAANgIYCyABKAIUIgJFDQAgACACNgIUIAIgADYCGAsCQAJAIARBEE8EQCABIAVBA3I2AgQgASAFaiIDIARBAXI2AgQgAyAEaiAENgIAQcjowgAoAgAiBkUNASAGQXhxQbjmwgBqIQBB0OjCACgCACECAn9BwOjCACgCACIFQQEgBkEDdnQiBnFFBEBBwOjCACAFIAZyNgIAIAAMAQsgACgCCAshBiAAIAI2AgggBiACNgIMIAIgADYCDCACIAY2AggMAQsgASAEIAVqIgBBA3I2AgQgACABaiIAIAAoAgRBAXI2AgQMAQtB0OjCACADNgIAQcjowgAgBDYCAAsgAUEIagwGCyAAIAJyRQRAQQAhAkECIAd0IgBBACAAa3IgCXEiAEUNAyAAaEECdEGo5cIAaigCACEACyAARQ0BCwNAIAAgAiAAKAIEQXhxIgMgBWsiBiAESSIHGyEJIAAoAhAiAUUEQCAAKAIUIQELIAIgCSADIAVJIgAbIQIgBCAGIAQgBxsgABshBCABIgANAAsLIAJFDQAgBUHI6MIAKAIAIgBNIAQgACAFa09xDQAgAigCGCEHAkACQCACIAIoAgwiAEYEQCACQRRBECACKAIUIgAbaigCACIBDQFBACEADAILIAIoAggiASAANgIMIAAgATYCCAwBCyACQRRqIAJBEGogABshAwNAIAMhBiABIgBBFGogAEEQaiAAKAIUIgEbIQMgAEEUQRAgARtqKAIAIgENAAsgBkEANgIACyAHRQ0CIAIgAigCHEECdEGo5cIAaiIBKAIARwRAIAdBEEEUIAcoAhAgAkYbaiAANgIAIABFDQMMAgsgASAANgIAIAANAUHE6MIAQcTowgAoAgBBfiACKAIcd3E2AgAMAgsCQAJAAkACQAJAIAVByOjCACgCACIBSwRAIAVBzOjCACgCACIATwRAIAVBr4AEakGAgHxxIgJBEHZAACEAIAhBBGoiAUEANgIIIAFBACACQYCAfHEgAEF/RiICGzYCBCABQQAgAEEQdCACGzYCAEEAIAgoAgQiAUUNCRogCCgCDCEGQdjowgAgCCgCCCIEQdjowgAoAgBqIgA2AgBB3OjCACAAQdzowgAoAgAiAiAAIAJLGzYCAAJAAkBB1OjCACgCACICBEBBqObCACEAA0AgASAAKAIAIgMgACgCBCIHakYNAiAAKAIIIgANAAsMAgtB5OjCACgCACIAQQAgACABTRtFBEBB5OjCACABNgIAC0Ho6MIAQf8fNgIAQbTmwgAgBjYCAEGs5sIAIAQ2AgBBqObCACABNgIAQcTmwgBBuObCADYCAEHM5sIAQcDmwgA2AgBBwObCAEG45sIANgIAQdTmwgBByObCADYCAEHI5sIAQcDmwgA2AgBB3ObCAEHQ5sIANgIAQdDmwgBByObCADYCAEHk5sIAQdjmwgA2AgBB2ObCAEHQ5sIANgIAQezmwgBB4ObCADYCAEHg5sIAQdjmwgA2AgBB9ObCAEHo5sIANgIAQejmwgBB4ObCADYCAEH85sIAQfDmwgA2AgBB8ObCAEHo5sIANgIAQYTnwgBB+ObCADYCAEH45sIAQfDmwgA2AgBBgOfCAEH45sIANgIAQYznwgBBgOfCADYCAEGI58IAQYDnwgA2AgBBlOfCAEGI58IANgIAQZDnwgBBiOfCADYCAEGc58IAQZDnwgA2AgBBmOfCAEGQ58IANgIAQaTnwgBBmOfCADYCAEGg58IAQZjnwgA2AgBBrOfCAEGg58IANgIAQajnwgBBoOfCADYCAEG058IAQajnwgA2AgBBsOfCAEGo58IANgIAQbznwgBBsOfCADYCAEG458IAQbDnwgA2AgBBxOfCAEG458IANgIAQcznwgBBwOfCADYCAEHA58IAQbjnwgA2AgBB1OfCAEHI58IANgIAQcjnwgBBwOfCADYCAEHc58IAQdDnwgA2AgBB0OfCAEHI58IANgIAQeTnwgBB2OfCADYCAEHY58IAQdDnwgA2AgBB7OfCAEHg58IANgIAQeDnwgBB2OfCADYCAEH058IAQejnwgA2AgBB6OfCAEHg58IANgIAQfznwgBB8OfCADYCAEHw58IAQejnwgA2AgBBhOjCAEH458IANgIAQfjnwgBB8OfCADYCAEGM6MIAQYDowgA2AgBBgOjCAEH458IANgIAQZTowgBBiOjCADYCAEGI6MIAQYDowgA2AgBBnOjCAEGQ6MIANgIAQZDowgBBiOjCADYCAEGk6MIAQZjowgA2AgBBmOjCAEGQ6MIANgIAQazowgBBoOjCADYCAEGg6MIAQZjowgA2AgBBtOjCAEGo6MIANgIAQajowgBBoOjCADYCAEG86MIAQbDowgA2AgBBsOjCAEGo6MIANgIAQdTowgAgAUEPakF4cSIAQQhrIgI2AgBBuOjCAEGw6MIANgIAQczowgAgBEEoayIDIAEgAGtqQQhqIgA2AgAgAiAAQQFyNgIEIAEgA2pBKDYCBEHg6MIAQYCAgAE2AgAMCAsgAiADSSABIAJNcg0AIAAoAgwiA0EBcQ0AIANBAXYgBkYNAwtB5OjCAEHk6MIAKAIAIgAgASAAIAFJGzYCACABIARqIQNBqObCACEAAkACQANAIAMgACgCACIHRwRAIAAoAggiAA0BDAILCyAAKAIMIgNBAXENACADQQF2IAZGDQELQajmwgAhAANAAkAgAiAAKAIAIgNPBEAgAiADIAAoAgRqIgdJDQELIAAoAgghAAwBCwtB1OjCACABQQ9qQXhxIgBBCGsiAzYCAEHM6MIAIARBKGsiCSABIABrakEIaiIANgIAIAMgAEEBcjYCBCABIAlqQSg2AgRB4OjCAEGAgIABNgIAIAIgB0Ega0F4cUEIayIAIAAgAkEQakkbIgNBGzYCBEGo5sIAKQIAIQogA0EQakGw5sIAKQIANwIAIAMgCjcCCEG05sIAIAY2AgBBrObCACAENgIAQajmwgAgATYCAEGw5sIAIANBCGo2AgAgA0EcaiEAA0AgAEEHNgIAIABBBGoiACAHSQ0ACyACIANGDQcgAyADKAIEQX5xNgIEIAIgAyACayIAQQFyNgIEIAMgADYCACAAQYACTwRAIAIgABB+DAgLIABB+AFxQbjmwgBqIQECf0HA6MIAKAIAIgNBASAAQQN2dCIAcUUEQEHA6MIAIAAgA3I2AgAgAQwBCyABKAIICyEAIAEgAjYCCCAAIAI2AgwgAiABNgIMIAIgADYCCAwHCyAAIAE2AgAgACAAKAIEIARqNgIEIAFBD2pBeHFBCGsiAiAFQQNyNgIEIAdBD2pBeHFBCGsiBCACIAVqIgBrIQUgBEHU6MIAKAIARg0DIARB0OjCACgCAEYNBCAEKAIEIgFBA3FBAUYEQCAEIAFBeHEiARB1IAEgBWohBSABIARqIgQoAgQhAQsgBCABQX5xNgIEIAAgBUEBcjYCBCAAIAVqIAU2AgAgBUGAAk8EQCAAIAUQfgwGCyAFQfgBcUG45sIAaiEBAn9BwOjCACgCACIDQQEgBUEDdnQiBHFFBEBBwOjCACADIARyNgIAIAEMAQsgASgCCAshAyABIAA2AgggAyAANgIMIAAgATYCDCAAIAM2AggMBQtBzOjCACAAIAVrIgE2AgBB1OjCAEHU6MIAKAIAIgAgBWoiAjYCACACIAFBAXI2AgQgACAFQQNyNgIEIABBCGoMCAtB0OjCACgCACEAAkAgASAFayICQQ9NBEBB0OjCAEEANgIAQcjowgBBADYCACAAIAFBA3I2AgQgACABaiIBIAEoAgRBAXI2AgQMAQtByOjCACACNgIAQdDowgAgACAFaiIDNgIAIAMgAkEBcjYCBCAAIAFqIAI2AgAgACAFQQNyNgIECyAAQQhqDAcLIAAgBCAHajYCBEHU6MIAQdTowgAoAgAiAEEPakF4cSIBQQhrIgI2AgBBzOjCAEHM6MIAKAIAIARqIgMgACABa2pBCGoiATYCACACIAFBAXI2AgQgACADakEoNgIEQeDowgBBgICAATYCAAwDC0HU6MIAIAA2AgBBzOjCAEHM6MIAKAIAIAVqIgE2AgAgACABQQFyNgIEDAELQdDowgAgADYCAEHI6MIAQcjowgAoAgAgBWoiATYCACAAIAFBAXI2AgQgACABaiABNgIACyACQQhqDAMLQQBBzOjCACgCACIAIAVNDQIaQczowgAgACAFayIBNgIAQdTowgBB1OjCACgCACIAIAVqIgI2AgAgAiABQQFyNgIEIAAgBUEDcjYCBCAAQQhqDAILIAAgBzYCGCACKAIQIgEEQCAAIAE2AhAgASAANgIYCyACKAIUIgFFDQAgACABNgIUIAEgADYCGAsCQCAEQRBPBEAgAiAFQQNyNgIEIAIgBWoiACAEQQFyNgIEIAAgBGogBDYCACAEQYACTwRAIAAgBBB+DAILIARB+AFxQbjmwgBqIQECf0HA6MIAKAIAIgNBASAEQQN2dCIEcUUEQEHA6MIAIAMgBHI2AgAgAQwBCyABKAIICyEDIAEgADYCCCADIAA2AgwgACABNgIMIAAgAzYCCAwBCyACIAQgBWoiAEEDcjYCBCAAIAJqIgAgACgCBEEBcjYCBAsgAkEIagsgCEEQaiQAC/8VAgp/An4jAEHQAGsiBSQAAkACQAJAAkACQAJAAkACQAJAAkACQCAAKAIAIgcEQCAAIAAoAgxBAWoiAjYCDCACQfUDSQ0BIAAoAhAiAUUNAkHUucIAQRkgARDVBEUNAkEBIQQMCwsgACgCECIARQ0KQe25wgBBASAAENUEIQQMCgsgACgCCCIGIAAoAgQiCEkEQEEBIQQgACAGQQFqIgM2AggCQAJAAkACQAJAAkACQAJAAkAgBiAHai0AACICQcIAaw4YAwIAAAAAAAEAAAAHBgAAAAAAAAAAAAcNAAsgACgCECIBRQ0RQcS5wgBBECABENUEDRIMEQsgACABEB8NESABDQYMDgsgBUEwaiIBIAAQZiAFLQAwDQIgBSAFKQM4Igw3AxgCQCAAKAIABEAgASAAEDcgBSgCMEUNAyAFQShqIAVBOGopAgA3AwAgBSAFKQIwNwMgIAAoAhAiAUUNECAFQSBqIAEQI0UNAQwSCyAAKAIQIgBFBEBBACEEDBILQe25wgBBASAAENUEIQQMEQsgACgCECIBRSAMUHINDiABKAIUQQRxDQ4gAUH3ucIAQQEQ5QMNECAFQRhqIAAoAhAQ/gENECAAKAIQQfi5wgBBARDlA0UNDgwQC0EAIQMjAEEgayIJJAACQAJAAkACQAJ+AkACQAJAIAAoAgAiCwRAIAAoAggiAiAAKAIEIgdJBEAgAiALai0AAEHfAEYNAwsgAiAHIAIgB0sbIQggAiEDA0AgAyAHSQRAIAMgC2otAABB3wBGDQMLIAMgCEYNBgJAIAMgC2otAAAiCkEwayIGQf8BcUEKSQ0AIApB4QBrQf8BcUEaTwRAIApBwQBrQf8BcUEaTw0IIApBHWshBgwBCyAKQdcAayEGCyAAIANBAWoiAzYCCCAJIA0QmwIgCSkDCEIAUg0GIAkpAwAiDCAGrUL/AYN8Ig0gDFoNAAsMBQsgACgCECIBRQ0HQe25wgBBASABENUEIQMMBwsgACADQQFqNgIIIA1Cf1INAQwDCyAAIAJBAWo2AghCAAwBCyANQgF8CyEMIAwgAkEBa61aDQBBASEDIAAoAhAhAiAAKAIMQQFqIghB9ANLDQEgAkUEQEEAIQMMBAsgCUEYaiICIABBCGoiBikCADcDACAAIAg2AgwgBiAMPgIAIAkgACkCADcDECAAIAFBAXEQHyEDIAYgAikDADcCACAAIAkpAxA3AgAMAwtBACEDIAAoAhAiAUUNAUHEucIAQRAgARDVBEUNAUEBIQMMAgsgAkUNAEHUucIAQRkgAhDVBA0BCyAAIAM6AARBACEDIABBADYCAAsgCUEgaiQAIAMNDwwNCyAAKAIQIQICQCAFLQA0IgFFBEAgAkUNAUHEucIAQRAgAhDVBEUNAQwQCyACRQ0AQdS5wgBBGSACENUERQ0ADA8LIAAgAToABAwKCyAAKAIQIQICQCAFLQAxIgFFBEAgAkUNAUHEucIAQRAgAhDVBEUNAQwPCyACRQ0AQdS5wgBBGSACENUERQ0ADA4LIAAgAToABAwJCwJAIAMgCE8NACAAIAZBAmo2AgggAyAHai0AACIDQcEAa0H/AXFBGk8EQCADQeEAa0GAgMQAIQNB/wFxQRpPDQELIAAgARAfBEAMDgsCQAJAAn8CQAJAAkACQAJAIAAoAgBFBEBBACEEIAAoAhAiAUUNFkH8ssIAQQIgARDVBARAQQEhBAwXCyAAKAIARQ0BCyAFQTBqIgEgABBmIAUtADANByAAKAIARQ0BIAUpAzghDCABIAAQNyAFKAIwRQ0GIAVByABqIAVBOGopAgA3AwAgBSAFKQIwNwNAIANBgIDEAEcNAiAFKAJEIAUoAkxyRQ0TIAAoAhAiAUUNE0H8ssIAQQIgARDVBEUNA0EBIQQMFQsgACgCECIARQ0UQe25wgBBASAAENUEIQQMFAsgACgCECIARQRAQQAhBAwUC0HtucIAQQEgABDVBCEEDBMLQQAgACgCECIBRQ0CGkH5ucIAQQMgARDVBEUNAUEBIQQMEgsgACgCECIBRQ0PQQEhBCAFQUBrIAEQI0UNDwwRCyAAKAIQCyECAkACQCADQcMAayIBBEAgAUEQRg0BIAUgAzYCMCACRQ0CQQEhBCAFQTBqIAIQjQFFDQIMEgsgAkUNAUEBIQRB/LnCAEEHIAIQ1QRFDQEMEQsgAkUNAEEBIQRBg7rCAEEEIAIQ1QQNEAsgACgCECEDIAUoAkQgBSgCTHJFDQogA0UNDUEBIQRBh7rCAEEBIAMQ1QQNDyAAKAIQIgFFDQ0gBUFAayABECMNDyAAKAIQIQMMCgsgACgCECECAkAgBS0ANCIBRQRAIAJFDQFBxLnCAEEQIAIQ1QRFDQFBASEEDBALIAJFDQBB1LnCAEEZIAIQ1QRFDQBBASEEDA8LIAAgAToABAwKCyAAKAIQIQICQCAFLQAxIgFFBEAgAkUNAUHEucIAQRAgAhDVBEUNAUEBIQQMDwsgAkUNAEHUucIAQRkgAhDVBEUNAEEBIQQMDgsgACABOgAEDAkLIAAoAhAiAUUNC0HEucIAQRAgARDVBEUNCwwMCyADIAhPDQQgAyAHai0AAEHzAEcNBCAAIAZBAmoiBDYCCCAEIAhPDQMgBCAHai0AAEHfAEcNAyAAIAZBA2o2AggMBAsgACgCECIBRQ0HQfyywgBBAiABENUERQ0HDAoLIAAoAhAiAUUNCEHEucIAQRAgARDVBEUNCEEBIQQMCQsgAEEBOgAEDAQLAkADQAJAIAQgCEkEQCAEIAdqLQAAQd8ARg0BCyAEIAhGDQICQCAEIAdqLQAAIgNBMGsiAUH/AXFBCkkNACADQeEAa0H/AXFBGk8EQCADQcEAa0H/AXFBGk8NBCADQR1rIQEMAQsgA0HXAGshAQsgACAEQQFqIgQ2AgggBUEIaiANEJsCIAUpAxBCAFINAiAFKQMIIgwgAa1C/wGDfCINIAxaDQEMAgsLIAAgBEEBajYCCCANQn1YDQELIAAoAhAiAUUNBkHEucIAQRAgARDVBEUNBkEBIQQMBwsjAEEQayIDJAAgACgCECEBIABBADYCEAJAIABBABAfRQRAIAAgATYCECADQRBqJAAMAQtBwLXCAEE9IANBD2pBsLXCAEG0ucIAEKACAAsLIAAoAhAiAQRAQQEhBEH4s8IAQQEgARDVBA0GC0EBIQQgABAnDQUgAkHNAEcEQCAAKAIQIgEEQEGJusIAQQQgARDVBA0HCyAAQQAQHw0GCyAAKAIQIgFFDQNB97PCAEEBIAEQ1QRFDQMMBQsgA0UNAkEBIQRBiLrCAEEBIAMQ1QQNBCAAKAIQIQEgBSAMNwMwIAFFDQIgBUEwaiABEK8EDQQgACgCECIBRQ0CQbq2wgBBASABENUERQ0CDAQLQQAhBCAAQQA2AgAMAwsgACgCECIBBEBB+LPCAEEBIAEQ1QQNAwsCf0EAIQMgACgCACICBEADQAJAIAAoAggiASAAKAIETw0AIAEgAmotAABBxQBHDQAgACABQQFqNgIIQQAMAwsCQCADRQ0AIAAoAhAiAUUNAEH1ucIAQQIgARDVBEUNAEEBDAMLQQEgABBZDQIaIANBAWshAyAAKAIAIgINAAsLQQALDQIgACgCECIBRQ0AQfezwgBBASABENUEDQILQQAhBCAAKAIARQ0BIAAgACgCDEEBazYCDAwBC0EAIQQgAEEAOgAEIABBADYCAAsgBUHQAGokACAEC9gbAgl/An4jAEEgayIGJAACQAJAAkACQAJAAkACQAJAAkAgACgCACIFBEAgACgCCCICIAAoAgQiB0kNASAAKAIQIgFFDQJBxLnCAEEQIAEQ1QRFDQJBASECDAkLIAAoAhAiAEUNCEHtucIAQQEgABDVBCECDAgLIAAgAkEBaiIDNgIIIAIgBWotAAAhBCAAIAAoAgxBAWoiCDYCDCAIQfQDSw0BAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkAgBEHBAGsOOQ0EAAAAAAAAAAAAAAAAAAAKCQAOAA8AAAAAAAAAAAAAAwYHAAgAAAIDAgADAgMCAQAAAwIAAAADAgALIAAoAhAiAUUND0HEucIAQRAgARDVBEUND0EBIQIMFgsgACgCECIBRQ0UQQEhAkHuuMIAQQEgARDVBEUNFAwVCyAAIAQQUUUNE0EBIQIMFAsgAyAHTw0RIAMgBWotAABB7gBGDQEMEQsgASEDQQAhASMAQSBrIgQkAAJAAkACQAJAAn4CQAJAAkAgACgCACIHBEAgACgCCCICIAAoAgQiCEkEQCACIAdqLQAAQd8ARg0DCyACIAggAiAISxshCiACIQEDQCABIAhJBEAgASAHai0AAEHfAEYNAwsgASAKRg0GAkAgASAHai0AACIFQTBrIglB/wFxQQpJDQAgBUHhAGtB/wFxQRpPBEAgBUHBAGtB/wFxQRpPDQggBUEdayEJDAELIAVB1wBrIQkLIAAgAUEBaiIBNgIIIAQgCxCbAiAEKQMIQgBSDQYgBCkDACIMIAmtQv8Bg3wiCyAMWg0ACwwFCyAAKAIQIgJFDQdB7bnCAEEBIAIQ1QQhAQwHCyAAIAFBAWo2AgggC0J/Ug0BDAMLIAAgAkEBajYCCEIADAELIAtCAXwLIQsgCyACQQFrrVoNAEEBIQEgACgCECECIAAoAgxBAWoiBUH0A0sNASACRQRAQQAhAQwECyAEQRhqIgcgAEEIaiICKQIANwMAIAAgBTYCDCACIAs+AgAgBCAAKQIANwMQIAAgA0EBcRAgIQEgAiAHKQMANwIAIAAgBCkDEDcCAAwDC0EAIQEgACgCECICRQ0BQcS5wgBBECACENUERQ0BQQEhAQwCCyACRQ0AQdS5wgBBGSACENUEDQELIAAgAToABEEAIQEgAEEANgIACyAEQSBqJAAgAUUNEUEBIQIMEgsgACACQQJqNgIIIAAoAhAiAUUND0EBIQJBubbCAEEBIAEQ1QRFDQ8MEQsgBkEYaiAAEJ8BIAYoAhgiAQRAIAZBCGogASAGKAIcEGcCQAJAAkAgBigCCEUNACAGKQMQIgtCAVYNACALp0EBaw0BDAILIAAoAhAiAUUNDEHEucIAQRAgARDVBEUNDEEBIQIMEwsgACgCECIBRQ0RQcy6wgBBBSABENUERQ0RQQEhAgwSCyAAKAIQIgFFDRBB0brCAEEEIAEQ1QRFDRBBASECDBELIAAoAhAhAQJAIAYtABwiAkUEQCABRQ0BQcS5wgBBECABENUERQ0BQQEhAgwSCyABRQ0AQdS5wgBBGSABENUERQ0AQQEhAgwRCyAAIAI6AAQMDQsgBkEYaiAAEJ8BIAYoAhgiAQRAIAZBCGogASAGKAIcEGcCQAJAIAYoAghBAUcNACAGKQMQIgtCgICAgBBaDQAgC6ciAUGAsANzQYCAxABrQYCQvH9JDQAgC0KAgMQAUg0BCyAAKAIQIgFFDQpBxLnCAEEQIAEQ1QRFDQpBASECDBELIAAoAhAhAyMAQRBrIgIkAAJ/QQAgA0UNABoCQCADQScQ6wMNACACQQhqIQUDQAJAAkAgAUEiRwRAIAFBgIDEAEYEQCADQScQ6wMMBgsgAiABEDwgAi0AAEGAAUcNAUGAASEEA0ACQCAEQYABRwRAIAItAAoiASACLQALTw0FIAIgAUEBajoACiABIAJqLQAAIQEMAQtBACEEIAVBADYCACACKAIEIQEgAkIANwMACyADIAEQ6wNFDQALDAQLQYCAxAAhASADQSIQ6wNFDQIMAwsgAi0ACiIBIAItAAsiBCABIARLGyEEA0AgASAERg0BIAEgAmohByABQQFqIQEgAyAHLQAAEOsDRQ0ACwwCC0GAgMQAIQEMAAsAC0EBCyACQRBqJABFDQ9BASECDBALIAAoAhAhAQJAIAYtABwiAkUEQCABRQ0BQcS5wgBBECABENUERQ0BQQEhAgwRCyABRQ0AQdS5wgBBGSABENUERQ0AQQEhAgwQCyAAIAI6AAQMDAsCQCABDQAgACgCECIDRQ0AQQEhAkHVusIAQQEgAxDVBA0PCyAAKAIQIgMEQEEBIQJB+rPCAEEBIAMQ1QQNDwsgABAzRQ0KQQEhAgwOCyADIAdPDQAgAyAFai0AAEHlAEYNAQsCQCABDQAgACgCECIDRQ0AQQEhAkHVusIAQQEgAxDVBA0NCyAAKAIQIgMEQEEBIQJB+bPCAEEBIAMQ1QQNDQsgBEHSAEcNAQwHCyAAIAJBAmo2AgggABAzRQ0KQQEhAgwLCyAAKAIQIgJFDQVBjrrCAEEEIAIQ1QRFDQVBASECDAoLAkAgAQ0AIAAoAhAiA0UNAEEBIQJB1brCAEEBIAMQ1QQNCgsgACgCECIDBEBBASECQfe5wgBBASADENUEDQoLIAAQ+QEEQEEBIQIMCgsgACgCECIDRQ0IQQEhAkH4ucIAQQEgAxDVBEUNBQwJCwJAIAENACAAKAIQIgNFDQBBASECQdW6wgBBASADENUEDQkLIAAoAhAiAwRAQQEhAkH2s8IAQQEgAxDVBA0JC0EAIQICfwJAIAAoAgAiA0UNAANAAkAgACgCCCIEIAAoAgRPDQAgAyAEai0AAEHFAEcNACAAIARBAWo2AggMAgsCQCACRQ0AIAAoAhAiA0UNAEH1ucIAQQIgAxDVBEUNAEEBDAMLQQEgAEEBECANAhogAkEBaiECIAAoAgAiAw0ACwtBAAshAyAGIAI2AgQgBiADNgIAIAYoAgAEQEEBIQIMCQsgBigCBEEBRgRAIAAoAhAiA0UNCEEBIQJB9LPCAEEBIAMQ1QQNCQsgACgCECIDRQ0HQQEhAkH1s8IAQQEgAxDVBEUNBAwICwJAIAENACAAKAIQIgNFDQBBASECQdW6wgBBASADENUEDQgLQQEhAiAAQQEQHw0HAkACQAJAAkACQAJAIAAoAgAiBARAIAAoAggiAyAAKAIETw0GIAAgA0EBajYCCCADIARqLQAAQdMAaw4DAwIKAQsgACgCECIARQRAQQAhAgwOC0HtucIAQQEgABDVBCECDA0LIAAoAhAiAUUNBUHEucIAQRAgARDVBEUNBQwMCyAAKAIQIgMEQEH2s8IAQQEgAxDVBA0MCyAAEPkBRQ0BDAsLIAAoAhAiAkUNAUHWusIAQQMgAhDVBEUNAUEBIQIMCgsgACgCECIDRQ0IQfWzwgBBASADENUERQ0FDAkLQQEhAkEAIQgjAEEwayIEJAACQAJAIAAoAgAiBUUNAANAAkAgACgCCCIDIAAoAgRPDQAgAyAFai0AAEHFAEcNACAAIANBAWo2AggMAgsCQAJAAkACQAJAAkACQCAIRQ0AIAAoAhAiA0UNAEH1ucIAQQIgAxDVBARAQQEhAwwKCyAAKAIAIgVFDQELIAAoAggiByAAKAIEIglPDQIgBSAHai0AAEHzAEcNAiAAIAdBAWoiAzYCCCADIAlPDQEgAyAFai0AAEHfAEcNASAAIAdBAmo2AggMAgsgACgCECIFRQ0GQQEhA0HtucIAQQEgBRDVBA0HDAQLQgAhCwJAA0ACQCADIAlJBEAgAyAFai0AAEHfAEYNAQsgAyAJRg0CAkAgAyAFai0AACIHQTBrIgpB/wFxQQpJDQAgB0HhAGtB/wFxQRpPBEAgB0HBAGtB/wFxQRpPDQQgB0EdayEKDAELIAdB1wBrIQoLIAAgA0EBaiIDNgIIIAQgCxCbAiAEKQMIQgBSDQIgBCkDACIMIAqtQv8Bg3wiCyAMWg0BDAILCyAAIANBAWo2AgggC0J9WA0BCyAAKAIQIgMEQEHEucIAQRAgAxDVBA0CCyAAQQA6AAQgAEEANgIADAULIARBEGogABA3IAQoAhAEQCAEQShqIARBGGopAgA3AwAgBCAEKQIQNwMgIAAoAhAiAwRAIARBIGogAxAjDQJB27rCAEECIAMQ1QQNAgtBASEDIABBARAgRQ0DDAYLIAAoAhAhAwJAIAQtABQiBUUEQCADRQ0DQcS5wgBBECADENUEDQEMAwsgA0UNAkHUucIAQRkgAxDVBEUNAgtBASEDDAULQQEhAwwECyAAIAU6AAQgAEEANgIACyAIQQFqIQggACgCACIFDQALC0EAIQMLIARBMGokACADDQggACgCECIDRQ0HQdm6wgBBAiADENUERQ0EDAgLIAAoAhAiAUUNAEHEucIAQRAgARDVBA0HC0EAIQIgAEEAOgAEIABBADYCAAwGCwJAIAAoAhAiAUUNAEHUucIAQRkgARDVBEUNAEEBIQIMBgsgAEEBOgAEDAILQQEhAiAAQQEQIA0ECyABDQIgACgCECIBRQ0CQQEhAkG6tsIAQQEgARDVBEUNAgwDC0EAIQIgAEEANgIADAILIAAgBBBRRQ0AQQEhAgwBC0EAIQIgACgCAEUNACAAIAAoAgxBAWs2AgwLIAZBIGokACACC6ELAgp/AX4gBEUEQCAAQQA2AjwgACADNgI4IAAgAjYCNCAAIAE2AjAgAEEAOgAOIABBgQI7AQwgACACNgIIIABCADcDAA8LQQEhCwJAAkACQAJAAkACQAJAAkACQAJAIARBAUYEQEEBIQkMAQtBASEGQQEhBwNAIAUgCmoiCCAETw0CIAchDAJAIAMgBmotAAAiBiADIAhqLQAAIghJBEAgBSAHakEBaiIHIAprIQtBACEFDAELIAYgCEcEQEEBIQsgDEEBaiEHQQAhBSAMIQoMAQtBACAFQQFqIgcgByALRiIGGyEFIAdBACAGGyAMaiEHCyAFIAdqIgYgBEkNAAtBASEGQQAhCEEBIQdBACEFQQEhCQNAIAUgCGoiDSAETw0DIAchDAJAIAMgBmotAAAiBiADIA1qLQAAIg1LBEAgBSAHakEBaiIHIAhrIQlBACEFDAELIAYgDUcEQEEBIQkgDEEBaiEHQQAhBSAMIQgMAQtBACAFQQFqIgcgByAJRiIGGyEFIAdBACAGGyAMaiEHCyAFIAdqIgYgBEkNAAsgCiEFCyAEIAUgCCAFIAhLIgUbIgxJDQIgCyAJIAUbIgcgDGoiBSAHSQ0DIAQgBUkNBAJ/IAMgAyAHaiAMENQCBEAgBCAMayIGIAxLIQsgBEEDcSEIAkAgBEEBa0EDSQRAQQAhBwwBCyAEQXxxIQpBACEHA0BCASADIAdqIgVBA2oxAACGQgEgBTEAAIYgD4RCASAFQQFqMQAAhoRCASAFQQJqMQAAhoSEIQ8gCiAHQQRqIgdHDQALCyAIBEAgAyAHaiEFA0BCASAFMQAAhiAPhCEPIAVBAWohBSAIQQFrIggNAAsLIAYgDCALG0EBaiEHQX8hCiAMIQtBfwwBC0EBIQhBACEFQQEhBkEAIQsDQCAEIAYiCiAFaiINSwRAIAQgBWsgBkF/c2oiBiAETw0IIAVBf3MgBGogC2siCSAETw0JAkAgAyAGai0AACIGIAMgCWotAAAiCUkEQCANQQFqIgYgC2shCEEAIQUMAQsgBiAJRwRAIApBAWohBkEAIQVBASEIIAohCwwBC0EAIAVBAWoiBiAGIAhGIgkbIQUgBkEAIAkbIApqIQYLIAcgCEcNAQsLQQEhCEEAIQVBASEGQQAhCQNAIAQgBiIKIAVqIg5LBEAgBCAFayAGQX9zaiIGIARPDQogBUF/cyAEaiAJayINIARPDQsCQCADIAZqLQAAIgYgAyANai0AACINSwRAIA5BAWoiBiAJayEIQQAhBQwBCyAGIA1HBEAgCkEBaiEGQQAhBUEBIQggCiEJDAELQQAgBUEBaiIGIAYgCEYiDRshBSAGQQAgDRsgCmohBgsgByAIRw0BCwsgBCAJIAsgCSALSxtrIQsCQCAHRQRAQQAhB0EAIQoMAQsgB0EDcSEGQQAhCgJAIAdBBEkEQEEAIQgMAQsgB0F8cSEJQQAhCANAQgEgAyAIaiIFQQNqMQAAhkIBIAUxAACGIA+EQgEgBUEBajEAAIaEQgEgBUECajEAAIaEhCEPIAkgCEEEaiIIRw0ACwsgBkUNACADIAhqIQUDQEIBIAUxAACGIA+EIQ8gBUEBaiEFIAZBAWsiBg0ACwsgBAshBSAAIAQ2AjwgACADNgI4IAAgAjYCNCAAIAE2AjAgACAFNgIoIAAgCjYCJCAAIAI2AiAgAEEANgIcIAAgBzYCGCAAIAs2AhQgACAMNgIQIAAgDzcDCCAAQQE2AgAPCyAIIARBoMrCABCtAgALIA0gBEGgysIAEK0CAAsgDCAEQYDKwgAQqwQACyAHIAVBkMrCABCsBAALIAUgBEGQysIAEKsEAAsgBiAEQbDKwgAQrQIACyAJIARBwMrCABCtAgALIAYgBEGwysIAEK0CAAsgDSAEQcDKwgAQrQIAC5IMAgd/AX4jAEHwAGsiByQAIAAoAgQhCyAAKAIAIQggB0EANgIEAn8CQCAILQAQQQFHDQAgCCgCACEJAkACQAJAIAtFBEAgByAIQQxqrUKAgICAEIQ3AwggB0EDOgBkIAdBADYCYCAHQiA3AlggB0KAgICAwAA3AlAgB0ECNgJIIAdBATYCPCAHQQI2AiwgB0HkosIANgIoIAdBATYCNCAJQRxqKAIAIAlBIGooAgAgByAHQcgAaiIMNgI4IAcgB0EIaiINNgIwIAdBKGoQRQ0CIAgtABBBAUcNASAIKAIAIQkgB0KAgICAoAE3AxAgByAHQQRqrUKAgICAgD6ENwMIIAdBAzoAZCAHQQA2AmAgB0IgNwJYIAdCgYCAgBA3AlAgB0ECNgJIIAdBATYCPCAHQQI2AiwgB0H4osIANgIoIAdBAjYCNCAJQRxqKAIAIAlBIGooAgAgByAMNgI4IAcgDTYCMCAHQShqEEUNAgwBCyAJQRxqKAIAQYijwgBBBiAJQSBqKAIAKAIMEQIADQEgCC0AEEEBRw0AIAgoAgAhCSAHQoCAgIDQATcDECAHQfyXwgA2AiggB0L8l8KAkD43AwggB0EDOgBkIAdBADYCYCAHQiA3AlggB0KBgICAEDcCUCAHQQI2AkggB0EBNgI8IAdBATYCLCAHQQI2AjQgCUEcaigCACAJQSBqKAIAIAcgB0HIAGo2AjggByAHQQhqNgIwIAdBKGoQRQ0BCwJAIAEoAgBBA0YEQCAIKAIAIgFBHGooAgBB3KDCAEEJIAFBIGooAgAoAgwRAgBFDQEMAgtCgICAgKA+IQ4gCC0AEEUEQCAHQegAaiABQSBqKQIANwMAIAdB4ABqIAFBGGopAgA3AwAgB0HYAGogAUEQaikCADcDACAHQdAAaiABQQhqKQIANwMAIAcgASkCADcDSCAIKAIAIQEgByAOIAdByABqrYQ3AyAgB0EDOgBEIAdBBDYCQCAHQiA3AjggB0ECNgIwIAdBAjYCKCAHQQE2AhwgB0EBNgIMIAdB/JfCADYCCCAHQQE2AhQgAUEcaigCACABQSBqKAIAIAcgB0EoajYCGCAHIAdBIGo2AhAgB0EIahBFDQIMAQsgB0HoAGogAUEgaikCADcDACAHQeAAaiABQRhqKQIANwMAIAdB2ABqIAFBEGopAgA3AwAgB0HQAGogAUEIaikCADcDACAHIAEpAgA3A0ggCCgCACEBIAcgDiAHQcgAaq2ENwMIIAdBATYCLCAHQfyXwgA2AiggB0IBNwI0IAFBHGooAgAgAUEgaigCACAHIAdBCGo2AjAgB0EoahBFDQELIAgoAgBBxKHCAEEBEOUDDQAgA0EBcUUgAigCAEECRnINAiAHIAQ2AiAgCC0AEEEBRgRAIAgoAgAhASAHQoCAgICgATcDECAHQfyXwgA2AiggB0L8l8KAkD43AwggB0EDOgBkIAdBADYCYCAHQiA3AlggB0KBgICAEDcCUCAHQQI2AkggB0EBNgI8IAdBATYCLCAHQQI2AjQgAUEcaigCACABQSBqKAIAIAcgB0HIAGo2AjggByAHQQhqNgIwIAdBKGoQRQ0BCyAIKAIAIgFBHGooAgBBjqPCAEEQIAFBIGooAgAoAgwRAgANACAIKAIEIAgoAgghAyAHQdQAaiACQQhqKAIANgIAIAcgCCgCACIENgJIIAcgAikCADcCTCAEIAdBzABqIAMoAhARAgANACAIKAIAIQEgB0KAgICAECIOIAdBIGqthDcDKCAHQQE2AkwgB0Ggo8IANgJIIAdCATcCVCABQRxqKAIAIAFBIGooAgAgByAHQShqIgM2AlAgB0HIAGoQRQ0AIAVBAXFFDQEgByAGNgIIIAgoAgAhASAHIA4gB0EIaq2ENwMoIAdBATYCTCAHQaCjwgA2AkggB0IBNwJUIAFBHGooAgAgAUEgaigCACAHIAM2AlAgB0HIAGoQRUUNAQtBAQwCC0EBIAgoAgAiAkEcaigCAEHEocIAQQEgAkEgaigCACgCDBECAA0BGgsgACALQQFqNgIEQQALIAdB8ABqJAALxAkCFX8CfiMAQZAEayIJJAAgCUEMakEAQYAEEFoaAkAgACgCDCISRQRAIAEgACgCACAAKAIEEOUDIQIMAQsgACgCACENIAAoAggiDi0AACEKAkACQCAAKAIEIg9FDQAgDSAPaiELIAlBDGohBCANIQADQAJ/IAAsAAAiA0EATgRAIANB/wFxIQUgAEEBagwBCyAALQABQT9xIQYgA0EfcSEIIANBX00EQCAIQQZ0IAZyIQUgAEECagwBCyAALQACQT9xIAZBBnRyIQYgA0FwSQRAIAYgCEEMdHIhBSAAQQNqDAELIAhBEnRBgIDwAHEgAC0AA0E/cSAGQQZ0cnIiBUGAgMQARg0CIABBBGoLIQAgAkGAAUYNAiAEIAU2AgAgBEEEaiEEIAJBAWohAiAAIAtHDQALCyAOIBJqIRMgAkEBayEVIAJBAnQiAEEEaiEMIAAgCWpBCGohCyAJQQRrIRZBvAUhFEHIACEHIA4hBUGAASEIAkADQCAKQeEAayIAQf8BcUEaTwRAIApBMGtB/wFxQQlLDQMgCkEWayEACyAFQQFqIQUCQEEaQQFBJCAHayIDQQAgA0EkTRsiAyADQQFNGyIDIANBGk8bIgMgAEH/AXEiBE0EQEEkIANrIQZByAAhAANAIAUgE0YNBSAFLQAAIgpB4QBrIgNB/wFxQRpPBEAgCkEwa0H/AXFBCUsNBiAKQRZrIQMLIAatIhcgA0H/AXEiBq1+IhhCIIinDQUgGKcgBGoiAyAESQ0FIAZBGkEBIAAgB2siBEEAIAAgBE8bIgQgBEEBTRsiBCAEQRpPGyIETwRAIAVBAWohBSAAQSRqIQAgF0EkIARrrX4iF6chBiADIQQgF0IgiFANAQwGCwsgBUEBaiEFDAELIAQhAwsgAyARaiIAIBFJDQIgCCAAIAJBAWoiBm4iBCAIaiIISyAIQYCwA3NBgBBrQf/vwwBLciAIQYCAxABGIAJB/wBLcnINAgJAIAAgBCAGbGsiByACSQRAIAIgB2tBA3EiCgRAQQAhBCALIQADQCAAQQRqIAAoAgA2AgAgAEEEayEAIAogBEEBaiIERw0ACyACIARrIQILIBAgFWogB2tBA0kNASAWIAJBAnRqIQADQCAAQQxqIABBCGopAgA3AgAgAEEEaiAAKQIANwIAIABBEGshACACQQRrIgIgB0sNAAsMAQsgB0GAAU8NAgsgCUEMaiAHQQJ0aiAINgIAIAUgE0cEQCAFLQAAIQpBACEAAkAgAyAUbiIDIAZuIANqIgJByANJBEAgAiEDDAELA0AgAEEkaiEAIAJB1/wASyACQSNuIgMhAg0ACwsgB0EBaiERIAAgA0EkbEH8/wNxIANBJmpB//8DcW5qIQcgC0EEaiELIAxBBGohDCAQQQFqIRBBAiEUIAYhAgwBCwsgCUEMaiEAA0AgCSAAKAIANgKMBCAJQYwEaiABEI0BIgINAyAAQQRqIQAgDEEEayIMDQALDAILIAdBgAFBoLbCABCtAgALQQEhAiABQbC2wgBBCRDlAw0AIA8EQCABIA0gDxDlAw0BIAFBubbCAEEBEOUDDQELIAEgDiASEOUDDQAgAUG6tsIAQQEQ5QMhAgsgCUGQBGokACACC5cKAQZ/IwBB4ABrIgEkAAJ/AkAgACgCACIDRQ0AAkAgACgCCCICIAAoAgQiBE8NACACIANqLQAAQdUARw0AQQEhBSAAIAJBAWoiAjYCCAsCQAJAAkAgAiAESQRAIAIgA2otAABBywBGDQELIAVFDQNBACEDDAELIAAgAkEBaiIGNgIIAkACQCAEIAZNDQAgAyAGai0AAEHDAEcNACAAIAJBAmo2AghBASEEQeCzwgAhAwwBCyABQShqIAAQNyABKAIoIgMEQCABKAIsIgQEQCABKAI0RQ0CCwJAIAAoAhAiAkUNAEHEucIAQRAgAhDVBEUNAEEBDAYLIABBADoABCAAQQA2AgBBAAwFCyAAKAIQIQICQCABLQAsIgNFBEAgAkUNAUHEucIAQRAgAhDVBEUNAUEBDAYLIAJFDQBB1LnCAEEZIAIQ1QRFDQBBAQwFCyAAIAM6AAQgAEEANgIAQQAMBAsgBUUNAQsCQCAAKAIQIgJFDQBBobrCAEEHIAIQ1QRFDQBBAQwDCyADRQ0BCwJAIAAoAhAiAkUNAEGousIAQQggAhDVBEUNAEEBDAILIAFBATsBJCABIAQ2AiAgAUEANgIcIAFBAToAGCABQd8ANgIUIAEgBDYCECABQQA2AgwgASAENgIIIAEgAzYCBCABQd8ANgIAIAFBKGogARBQAn8gASgCKEUEQAJAIAEtACUNACABQQE6ACUCQCABLQAkQQFGBEAgASgCICEFIAEoAhwhBAwBCyABKAIgIgUgASgCHCIERg0BCyABKAIEIARqIQMgBSAEawwCC0GwusIAEK4EAAsgASgCHCEEIAEgASgCMDYCHCADIARqIQMgASgCLCAEawshBAJAIAIEQCADIAQgAhDVBA0BCyABQcgAaiABQSBqKQIANwMAIAFBQGsgAUEYaikCADcDACABQThqIAFBEGopAgA3AwAgAUEwaiABQQhqKQIANwMAIAEgASkCADcDKAJAIAEtAE0NACACIQMDQCABKAIsIQUgAUHUAGogAUEoahBQAn8gASgCVEUEQCABLQBNDQMgAUEBOgBNAkAgAS0ATEEBRgRAIAEoAkghBSABKAJEIQQMAQsgASgCSCIFIAEoAkQiBEYNBAsgASgCLCAEaiEGIAUgBGsMAQsgASgCRCEEIAEgASgCXDYCRCAEIAVqIQYgASgCWCAEawshBAJAIANFBEBBACEDDAELQbm2wgBBASADENUEDQMgACgCECICRQRAQQAhAkEAIQMMAQsgAiEDIAYgBCACENUEDQMLIAEtAE1FDQALCyACRQ0BQcC6wgBBAiACENUERQ0BC0EBDAELAkAgACgCECICRQ0AQcK6wgBBAyACENUERQ0AQQEMAQsCQAJAAkAgACgCACIDRQRAQQAhAwwBC0EAIQIDQAJAIAAoAggiBCAAKAIETw0AIAMgBGotAABBxQBHDQAgACAEQQFqNgIIDAILAkAgAkUNACAAKAIQIgNFDQBB9bnCAEECIAMQ1QRFDQBBAQwFCyAAECcNAiACQQFrIQIgACgCACIDDQALQQAhAwsgACgCECIEBEBBAUH1s8IAQQEgBBDVBA0DGiAAKAIAIQMLIANFDQEgACgCCCICIAAoAgRPDQEgAiADai0AAEH1AEcNASAAIAJBAWo2AghBAAwCC0EBDAELAkAgACgCECICRQ0AQcW6wgBBBCACENUERQ0AQQEMAQsgABAnCyABQeAAaiQAC+sJAgJ/AX4jAEEwayICJAACfwJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkBBAiAAKAIAQfv///8HaiIDIANBDk8bQQFrDg0BAgMEBQYHCAkKCwwNAAsgAiAAQQRqNgIEIAJBATYCDCACQfCnwQA2AgggAkIBNwIUIAIgAkEEaq1CgICAgJA4hDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwNCyACIABBBGo2AgQgAkEBNgIMIAJB8KfBADYCCCACQgE3AhQgAiACQQRqrUKAgICA4DiENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAwLIAIgADYCBCACQQE2AgwgAkHwp8EANgIIIAJCATcCFCACIAJBBGqtQoCAgICQN4Q3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMCwsgASgCHEH4xcEAQSYgASgCICgCDBECAAwKCyACIABBBGo2AgAgAiAAQQhqNgIEIAJBAzYCDCACQfjGwQA2AgggAkICNwIUIAIgAq1CgICAgPA1hDcDKCACIAJBBGqtQoCAgIDgNIQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMCQsgAiAAQQRqNgIEIAJBAjYCDCACQfC8wQA2AgggAkIBNwIUIAIgAkEEaq1CgICAgLA4hDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwICyACIABBBGo2AgQgAkECNgIMIAJB3MfBADYCCCACQgE3AhQgAiACQQRqrUKAgICA8DWENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAcLIAEoAhxB7MfBAEEtIAEoAiAoAgwRAgAMBgsgAiAAQQRqNgIEIAJBATYCDCACQcDIwQA2AgggAkIBNwIUIAIgAkEEaq1CgICAgIA2hDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwFCyACIABBBGo2AgAgAiAAQQhqNgIEIAJBAjYCDCACQYDJwQA2AgggAkICNwIUIAJCgICAgPA1IgQgAkEEaq2ENwMoIAIgBCACrYQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMBAsgAiAAQQRqNgIAIAIgAEEIajYCBCACQQM2AgwgAkH0ycEANgIIIAJCAjcCFCACIAJBBGqtQoCAgIDgNIQ3AyggAiACrUKAgICA8DWENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAMLIAIgAEEEajYCACACIABBCGo2AgQgAkECNgIMIAJBuMrBADYCCCACQgI3AhQgAkKAgICA8DUiBCACrYQ3AyggAiAEIAJBBGqthDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwCCyACIABBBGo2AgQgAkECNgIMIAJB+MrBADYCCCACQgI3AhQgAkLIysGAgDk3AyggAiACQQRqrUKAgICA4DSENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAELIAIgAEEEajYCBCACQQI2AgwgAkHEy8EANgIIIAJCAjcCFCACQsjKwYCAOTcDKCACIAJBBGqtQoCAgIDgNIQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEULIAJBMGokAAvoCQEJfyMAQdAAayIBJABBgYDEACEDAkACQCAAKAIEIgQgACgCECICSQ0AIAAgBCACayIGNgIEIAAgACgCACIDIAJqIgQ2AgACQAJAAkAgAkECRgRAIAMtAAAiAkHBAGtBX3FBCmogAkEwayACQTlLGyICQRBPDQUgAy0AASIDQcEAa0FfcUEKaiADQTBrIANBOUsbIgNBEE8NBSACQQR0IANyIgLAQQBODQFBgIDEACEDIAJB/wFxIgVBwAFJDQQgAQJ/QQIgBUHgAUkNABogBUHwAUkEQEEBIQhBAwwBCyAFQfgBTw0FQQQLIgM2AgggAUEAOgAPIAFBADsADSABIAI6AAwgASABQQxqNgIEIAZBAkkNAyAAIAZBAmsiBzYCBCAAIARBAmo2AgAgBC0AACIFQcEAa0FfcUEKaiAFQTBrIAVBOUsbIglBD0sNBQJAIAQtAAEiBUHBAGtBX3FBCmogBUEwayAFQTlLGyIFQQ9LDQAgASAJQQR0IAVyOgANIAJB/wFxQeABSQ0DIAdBAkkNBCAAIAZBBGsiBTYCBCAAIARBBGo2AgAgBC0AAiICQcEAa0FfcUEKaiACQTBrIAJBOUsbIgdBD0sNBiAELQADIgJBwQBrQV9xQQpqIAJBMGsgAkE5SxsiAkEPSw0AIAEgB0EEdCACcjoADiAIDQMgBUECSQ0EIAAgBkEGazYCBCAAIARBBmo2AgAgBC0ABCIAQcEAa0FfcUEKaiAAQTBrIABBOUsbIgZBD0sNBiAELQAFIgBBwQBrQV9xQQpqIABBMGsgAEE5SxsiAEEPSw0AIAEgBkEEdCAAcjoADwwDCwwFC0HMtsIAQShB9LbCABDtAgALQQEhAyABQQE2AgggAUEAOgAPIAFBADsADSABIAI6AAwgASABQQxqNgIECyABQTBqIAFBDGogAxA9IAEoAjANACABKAI0IQAgASABKAI4IgQ2AhQgASAANgIQIAECfwJAIARFDQAgACAEaiEFAkAgBQJ/IAAsAAAiA0EATgRAIANB/wFxIQMgAEEBagwBCyAALQABQT9xIQIgA0EfcSEGIANBX00EQCAGQQZ0IAJyIQMgAEECagwBCyAALQACQT9xIAJBBnRyIQIgA0FwSQRAIAIgBkEMdHIhAyAAQQNqDAELIAZBEnRBgIDwAHEgAC0AA0E/cSACQQZ0cnIhAyAAQQRqCyIGRwRAIAYsAAAaDAELIANBgIDEAEcNBAsgBEEQSQ0AIAAgBBAvDAELAn9BACEDQQAgBEUNABogBEEDcSEGAkAgBEEESQRAQQAhBAwBCyAEQXxxIQVBACEEA0AgBCAAIANqIgIsAABBv39KaiACQQFqLAAAQb9/SmogAkECaiwAAEG/f0pqIAJBA2osAABBv39KaiEEIAUgA0EEaiIDRw0ACwsgBgRAIAAgA2ohAANAIAQgACwAAEG/f0pqIQQgAEEBaiEAIAZBAWsiBg0ACwsgBAsLNgJMIAFBBDYCHCABQYS4wgA2AhggAUIDNwIkIAEgAUHMAGqtQoCAgIAQhDcDQCABIAFBEGqtQoCAgIDgwQCENwM4IAEgAUEEaq1CgICAgPDBAIQ3AzAgASABQTBqNgIgIAFBGGpBpLjCABCkAwALQYCAxAAhAwsgAUHQAGokACADDwtBhLfCABCuBAAL2RoCCX8CfiMAQSBrIgYkAAJAAkACQAJAAkACQAJAAkACQCAAKAIAIgMEQCAAKAIIIgIgACgCBE8NAyAAIAJBAWo2AgggAiADai0AACIBQeEAayIEQf8BcSIFQRlLQb/38x0gBXZBAXFFcg0CIAAoAhAiAA0BQQAhAwwJCyAAKAIQIgBFBEBBACEDDAkLQe25wgBBASAAENUEIQMMCAsgBEH/AXFBAnQiAUHcvcIAaigCACABQfS8wgBqKAIAIAAQ1QQhAwwHCyAAIAAoAgxBAWoiBDYCDCAEQfQDTQRAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQCABQcEAaw4UAgYNBQ0EDQ0NDQ0NDQ0BAQAAAgMNCyAAKAIQIgIEQEEBIQNB+bPCAEEBIAIQ1QQNFSAAKAIAIgNFDRILIAAoAggiAiAAKAIETw0RIAIgA2otAABBzABHDREgACACQQFqNgIIIAZBEGogABBwIAYtABANByAGKQMYIgpQRQ0GDBELIAAoAhAiAgRAQQEhA0H6s8IAQQEgAhDVBA0UCyAAKAIQIQMgAUHQAEcNByADRQ0IQZK6wgBBBiADENUERQ0IDBILIAAoAhAiAgRAQQEhA0H3ucIAQQEgAhDVBA0TC0EBIQMgABAnDRIgAUHBAEYEQCAAKAIQIgEEQEGYusIAQQIgARDVBA0UCyAAQQEQIA0TCyAAKAIQIgFFDRBB+LnCAEEBIAEQ1QRFDRAMEgsgACgCECIBBEBBASEDQfazwgBBASABENUEDRILIAZBCGohA0EAIQECfwJAIAAoAgAiAkUNAANAAkAgACgCCCIEIAAoAgRPDQAgAiAEai0AAEHFAEcNACAAIARBAWo2AggMAgsCQCABRQ0AIAAoAhAiAkUNAEH1ucIAQQIgAhDVBEUNAEEBDAMLQQEgABAnDQIaIAFBAWohASAAKAIAIgINAAsLQQALIQIgAyABNgIEIAMgAjYCACAGKAIIDRAgBigCDEEBRgRAIAAoAhAiAUUNEEEBIQNB9LPCAEEBIAEQ1QQNEgsgACgCECIBRQ0PQQEhA0H1s8IAQQEgARDVBEUNDwwRC0EAIQEjAEEQayIDJAACQAJAAkACQCAAKAIAIgIEQCAAKAIIIgQgACgCBCIFTw0DIAIgBGotAABBxwBHDQMgACAEQQFqIgE2AgggASAFTw0BIAEgAmotAABB3wBHDQEgACAEQQJqNgIIDAILIAAoAhAiAkUNA0HtucIAQQEgAhDVBCEBDAMLA0ACQAJAAkACQCABIAVJBEAgASACai0AAEHfAEYNAQsgASAFRg0DIAEgAmotAAAiBEEwayIHQf8BcUEKSQ0CIARB4QBrQf8BcUEaSQ0BIARBwQBrQf8BcUEaTw0DIARBHWshBwwCCyAAIAFBAWo2AgggCkJ9Vg0CIApCAXwhCgwECyAEQdcAayEHCyAAIAFBAWoiATYCCCADIAoQmwIgAykDCEIAUg0AIAMpAwAiCyAHrUL/AYN8IgogC1oNAQsLAkAgACgCECIBRQ0AQcS5wgBBECABENUERQ0AQQEhAQwDC0EAIQEgAEEAOgAEIABBADYCAAwCCyAKQgF8IQsLAkAgACgCECIBBEAgC1ANAUHvucIAQQQgARDVBARAQQEhAQwDCyAAIAAoAhRBAWo2AhQgAEIBELwBBEBBASEBDAMLQgEhCgNAIAogC1EEQCAAKAIQIgJFDQNBASEBQfO5wgBBAiACENUERQ0DDAQLAkAgClANACAAKAIQIgFFDQBB9bnCAEECIAEQ1QRFDQBBASEBDAQLQQEhASAAIAAoAhRBAWo2AhQgCkIBfCEKIABCARC8AUUNAAsMAgsgABAkIQEMAQsgABAkIQEgACAAKAIUIAunazYCFAsgA0EQaiQAIAFFDQ4MDwsgACgCECIBBEBBmrrCAEEEIAEQ1QQNDwtBASEDQQAhASMAQRBrIgQkAAJAAkACQAJAIAAoAgAiAgRAIAAoAggiBSAAKAIEIgdPDQMgAiAFai0AAEHHAEcNAyAAIAVBAWoiATYCCCABIAdPDQEgASACai0AAEHfAEcNASAAIAVBAmo2AggMAgsgACgCECICRQ0DQe25wgBBASACENUEIQEMAwsDQAJAAkACQAJAIAEgB0kEQCABIAJqLQAAQd8ARg0BCyABIAdGDQMgASACai0AACIFQTBrIghB/wFxQQpJDQIgBUHhAGtB/wFxQRpJDQEgBUHBAGtB/wFxQRpPDQMgBUEdayEIDAILIAAgAUEBajYCCCAKQn1WDQIgCkIBfCEKDAQLIAVB1wBrIQgLIAAgAUEBaiIBNgIIIAQgChCbAiAEKQMIQgBSDQAgBCkDACILIAitQv8Bg3wiCiALWg0BCwsCQCAAKAIQIgFFDQBBxLnCAEEQIAEQ1QRFDQBBASEBDAMLQQAhASAAQQA6AAQgAEEANgIADAILIApCAXwhCwsgACgCECIBRQRAQQAhAQNAAkAgACgCCCIFIAAoAgRPDQAgAiAFai0AAEHFAEcNACAAIAVBAWo2AghBACEBDAMLAkAgAUUNACAAKAIQIgJFDQBBnrrCAEEDIAIQ1QRFDQBBASEBDAMLIAAQQgRAQQEhAQwDCyABQQFrIQEgACgCACICDQALQQAhAQwBCwJAIAtQDQBB77nCAEEEIAEQ1QQEQEEBIQEMAgsgACAAKAIUQQFqNgIUIABCARC8AQRAQQEhAQwCC0IBIQoDQCAKIAtRBEAgACgCECICRQ0CQQEhAUHzucIAQQIgAhDVBEUNAgwDCwJAIApQDQAgACgCECIBRQ0AQfW5wgBBAiABENUERQ0AQQEhAQwDC0EBIQEgACAAKAIUQQFqNgIUIApCAXwhCiAAQgEQvAFFDQALDAELAn9BACAAKAIAIgJFDQAaQQAhAQJAA0ACQCAAKAIIIgUgACgCBE8NACACIAVqLQAAQcUARw0AIAAgBUEBajYCCEEADAMLAkAgAUUNACAAKAIQIgJFDQBBnrrCAEEDIAIQ1QQNAgsgABBCDQEgAUEBayEBIAAoAgAiAg0AC0EADAELQQELIQEgACAAKAIUIAunazYCFAsgBEEQaiQAIAENDyAAKAIAIgJFDQUgACgCCCIBIAAoAgRPDQUgASACai0AAEHMAEcNBSAAIAFBAWo2AgggBkEQaiAAEHAgBi0AEA0GIAYpAxgiClANDSAAKAIQIgEEQEGeusIAQQMgARDVBA0PCyAAIAoQvAFFDQ0MDgtBACEBIwBBIGsiAiQAAkACQAJAAkACfgJAAkACQCAAKAIAIgUEQCAAKAIIIgMgACgCBCIHSQRAIAMgBWotAABB3wBGDQMLIAMgByADIAdLGyEJIAMhAQNAIAEgB0kEQCABIAVqLQAAQd8ARg0DCyABIAlGDQYCQCABIAVqLQAAIgRBMGsiCEH/AXFBCkkNACAEQeEAa0H/AXFBGk8EQCAEQcEAa0H/AXFBGk8NCCAEQR1rIQgMAQsgBEHXAGshCAsgACABQQFqIgE2AgggAiAKEJsCIAIpAwhCAFINBiACKQMAIgsgCK1C/wGDfCIKIAtaDQALDAULIAAoAhAiA0UNB0HtucIAQQEgAxDVBCEBDAcLIAAgAUEBajYCCCAKQn9SDQEMAwsgACADQQFqNgIIQgAMAQsgCkIBfAshCiAKIANBAWutWg0AQQEhASAAKAIQIQMgACgCDEEBaiIEQfQDSw0BIANFBEBBACEBDAQLIAJBGGoiBSAAQQhqIgMpAgA3AwAgACAENgIMIAMgCj4CACACIAApAgA3AxAgABAnIQEgAyAFKQMANwIAIAAgAikDEDcCAAwDC0EAIQEgACgCECIDRQ0BQcS5wgBBECADENUERQ0BQQEhAQwCCyADRQ0AQdS5wgBBGSADENUEDQELIAAgAToABEEAIQEgAEEANgIACyACQSBqJAAgAQ0NDAwLIAAgChC8AQ0MIAAoAhAiAkUNCkEBIQNBjbrCAEEBIAIQ1QRFDQoMDQsgACgCECEBAkAgBi0AESIDRQRAIAFFDQFBxLnCAEEQIAEQ1QRFDQEMDQsgAUUNAEHUucIAQRkgARDVBA0MCyAAIAM6AAQMCAsgA0UNAEGOusIAQQQgAxDVBA0KCyAAECdFDQgMCQsgACgCECIBRQ0EQcS5wgBBECABENUEDQkMBAsgACgCECEBAkAgBi0AESIDRQRAIAFFDQFBxLnCAEEQIAEQ1QRFDQEMCQsgAUUNAEHUucIAQRkgARDVBA0ICyAAIAM6AAQMBAsgACACNgIIIABBABAfRQ0FDAYLIAAoAhAiAQRAQdS5wgBBGSABENUEDQYLIABBAToABAwCCyAAKAIQIgFFDQBBxLnCAEEQIAEQ1QQNBAtBACEDIABBADoABCAAQQA2AgAMBAtBACEDIABBADYCAAwDCwJAIAFB0gBGDQAgACgCECIBRQ0AQY66wgBBBCABENUEDQILIAAQJw0BC0EAIQMgACgCAEUNASAAIAAoAgxBAWs2AgwMAQtBASEDCyAGQSBqJAAgAwvriAECJn8KfiMAQYABayITJAACQAJAAkAgASgCAEECRg0AIAEtAMwDIRsgAS0AEEEEcQRAIBtBAXFFDQIgASgCGA0BDAILIBtBAXFFDQELIAEQvwENACAAQQQ6AAAgAEEANgIEDAELAkAgARC/ASADTw0AIAEoAgBBAkYNACABQShqIQ0gAUHgA2ohJUG4hcEAKQMAIi9C/wGDITBB8P/AACkCACIxQv8BgyEyIBNB7ABqQQFyISMCfwJAAkADQCABLQDMAyEEAkAgAS0AEEEEcQRAIARBAXFFDQEgASgCGA0GDAELIARBAXENBQsgARC/ASEEIBMgJTYCRCABKAIAIBNBBzYCSEECRiIGDQJBACABIAYbISAgAyAEayEmIBNByABqECogASgCmAIhJCABKAKcAiEEIBNBADYCbCAEIAEoApQCQQAgBCAkSRtqIScCQANAIBMoAkQiBCgCACEGAn4CQAJAIAQoAgQiBUEDTwRAICMgBi8AADsAACAEIAVBA2s2AgQgBCAGQQNqNgIAICNBAmogBkECai0AADoAAAwBCyAEQQA2AgQgBCAFIAZqNgIAIDJCBFINAQsgEy0AbSIFQQF2QQNxIgdBA0YEQCAbQf+BfHFBgARyIRsgLkKAfoNCBIQMAgsCQAJAAkAgEy0AbkEFdCAFQfgBcUEDdnIgEy0Ab0ENdHIiBkGAgAhNBEAgBiEEIAdBAWsOAgECAwsgG0H/gXxxQYAEciEbIC5CgP7//w+DIAatQiCGhEIGhAwEC0EBIQYMAQtBACEECyATQQE2AmwgG0GAgHxxIAdyIAVBAXFBCHRyIRsgBK0gBq1CIIaEDAELIBtB/4F8cUGABHIhGyAxCyEuIBtBgP4DcUGABEYNASABIAEpA8ADQgN8NwPAAyATIBs2AnggEyAuNwNwIBNByABqIRggE0HwAGohBiATQcQAaiEEQQAhBUEAIQ5CACEqQgAhLEIAIS0jAEHAgAhrIg8kAAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAIBNB7ABqIiItAABBAWsOAgABDQsgBi0ACEEBaw4DAgMEAQsgGEEHNgIADBwLIA9BDGpBAEGAgAgQWhogBCgCACEEAkAgBigCACIKQYCACEkNACAKQRF2IQcgDUHoAWohC0Hw/8AAKQMAIi1C/wGDQgRSBEADQCAEKAIAIQYgBCgCBCIFQYCACEkNCCAPQQxqIgggBkGAgAgQOxogBCAFQYCACGs2AgQgBCAGQYCACGo2AgAgCyAIQYCACBCnASAHQQFrIgcNAAwCCwALA0AgBCgCACEGIAQCfyAEKAIEIghBgIAITwRAIA9BDGogBkGAgAgQOxogBkGAgAhqIQUgCEGAgAhrDAELIAYgCGohBUEACzYCBCAEIAU2AgAgCyAPQQxqQYCACBCnASAHQQFrIgcNAAsLIAQoAgAhBSAEKAIEIgcgCkH//wdxIgZJDQYgByAGayEHIAUgBmohCyAGQQFGDQMgD0EMaiAFIAYQOxoMBAsgD0EAOgAMIAYoAgAhByAEKAIAIgQoAgQiBkUNByAEIAZBAWs2AgQgBCAEKAIAIgRBAWo2AgAgDyAELQAAIgU6AAwMCAsgBigCBCIhIQcgDSgCiAMiBSAhSQRAICEgBWsiBiANKAKAAyAFa0sEQCANQYADaiAFIAZBAUEBEJABIA0oAogDIQULIA0oAoQDIgogBWohByAGQQJPBH8gB0EAIAZBAWsiBhBaGiAKIAUgBmoiBWoFIAcLQQA6AAAgBUEBaiEHCyANIAc2AogDIAQoAgAiBCgCACEGAkAgByAEKAIEIgVNBEAgDSgChAMhCiAFIAdrIQUgBiAHaiELAkAgB0EBRwRAIAogBiAHEDsaDAELIAogBi0AADoAAAsgBCAFNgIEIAQgCzYCAAwBC0EAIQcgBEEANgIEIAQgBSAGajYCAEHw/8AAKQMAIi2nIgRB/wFxQQRHDQwLIA0oAogDIRUgDSgChAMhBiAPQQA6AKaACCAPQQA6AKSACCAPQQA2ApiACCAPQQA2AqCACCAPQQxqIQogD0GYgAhqIQQjAEEgayIFJAAgBSAVNgIIIAUgBjYCBCAFQQA2AgwgBUEQaiIHIAVBBGoiC0ECEE8gBSkDGCErAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkAgBSgCEEUEQCAEICunQQNxIgg6AA4gByALQQIQTyAFKQMYISsgBSgCEA0BIBVFDQJBg4aQKEGBhIQYIAYtAAAiC0ECcRsgC0EBdEEYcXYiB0EHcSAVSw0DICunIQcgCEECSQRAIARBADYCAAJAAkACQAJAIAdB/wFxDgQBAgEDAAtBrN/BAEHGAEGg4cEAEO0CAAsgBCALQQN2NgIIQQEhBwwPCyAVQQFHBEAgBCAGLQABQQR0IAtBBHZyNgIIQQIhBwwPC0EBQQFB8ODBABCtAgALIBVBAUYNBSAVQQJLBEAgBCAGLQABQQR0IAtBBHZyIAYtAAJBDHRyNgIIQQMhBwwOC0ECQQJBkOHBABCtAgALAkACQAJAIAdB/wFxIgcEQCAHQQNLDQ8gBEGBCDsBDCAHQQJrDgICAwELIARBgQI7AQwLIBVBAUYNByAEIAYtAAEiB0E/cUEEdCALQQR2cjYCCCAVQQJLBEAgBEEBNgIAIAQgBi0AAkECdCAHQQZ2cjYCBEEDIQcMDwtBAkECQdDhwQAQrQIACyAVQQFGDQcgFUECTQ0IQQQhByAEIAYtAAFBBHQgC0EEdnIgBi0AAiILQQNxQQx0cjYCCCAVQQNHBEAgBEEBNgIAIAQgBi0AA0EGdCALQQJ2cjYCBAwOC0EDQQNBgOLBABCtAgALIBVBAUYNCCAVQQJNDQkgBCAGLQABQQR0IAtBBHZyIAYtAAIiB0E/cUEMdHI2AgggFUEDRg0KIBVBBEsEQCAEQQE2AgAgBCAGLQADQQJ0IAdBBnZyIAYtAARBCnRyNgIEQQUhBwwNC0EEQQRBwOLBABCtAgALIAUoAhQhBCAKICs3AgQgCiAENgIADAwLIAUoAhQhBCAKICs3AgQgCiAENgIADAsLQQBBAEHg4MEAEK0CAAsgCiAHOgAIIAogFTYCBCAKQQQ6AAAMCQtBAUEBQYDhwQAQrQIAC0EBQQFBwOHBABCtAgALQQFBAUHg4cEAEK0CAAtBAkECQfDhwQAQrQIAC0EBQQFBkOLBABCtAgALQQJBAkGg4sEAEK0CAAtBA0EDQbDiwQAQrQIAC0Gs38EAQcYAQbDhwQAQ7QIACyAKQQU6AAAgCiAHOgABCyAFQSBqJAAgDy0ADSEEIA8tAAwiBUEFRw0MIAQgFUsNDQJAAkACQCAPKAKYgAhFBEAgDy0ApoAIIgcOAgIDAQsgDygCnIAIIQcMAgtB5IDBAEETQfiAwQAQ7QIACyAPKAKggAghBwsgFSAEayIfIAdJDQ4gDUEANgLwAiAPQQxqIRQgBCAGaiEcIAchBiANQegCaiEQIwBBMGsiCSQAAkACQAJAAkACQAJAAkACQAJAIA9BmIAIaiIFLQAOIgRBAWsOAwIBAQALIAUoAggiBCAGSw0DIAQgECgCACAQKAIIIgZrSwRAIBAgBiAEQQFBARCSASAQKAIIIQYLIBAoAgQgBmogHCAEEDsaIBQgBDYCBCAQIAQgBmo2AgggFEGegICAeDYCAAwHCyAFKAIAQQFHBEBBk4CAgHghCAwGCyAFLQAMQQFHBEBBlICAgHghCAwGCyAFKAIEIREgBS0ADSEeIAUoAggiFiAQKAIAIBAoAggiBWtLBEAgECAFIBZBAUEBEJIBCyAGIBFJDQMCQCAEQQJGBEAgCUEYaiEZQQAhBUIAISsjAEFAaiIMJAAgDSIIQQA2AggCQAJAAn8gESIERQRAQYiAgIB4IRIMAgsgHEEBaiEXIARBAWshBQJAAkACQAJAAkACQAJAIBwsAAAiCkEASARAIAggCkH/AGsiHUH/AXEiCyAIKAIUIgRLBH8gCyAEayIOIAgoAgwgBGtLBEAgCEEMaiAEIA5BAUEBEJIBIAgoAhQhBAsgCCgCECIaIARqIRIgDkECTwR/IBJBACAOQQFrIg4QWhogGiAEIA5qIgRqBSASC0EAOgAAIARBAWoFIAsLNgIUIB1BAXEgC0EBdmoiBCAFTQRAIApB/wBxQQJ0QQxqIR1BACEEA0AgBEEBdiEKAkACQAJAAkAgBEEBcUUEQCAFIApNDQEgCCgCFCIOIARNDQIgCCgCECAEaiAKIBdqLQAAQQR2OgAADAQLIAUgCk0EQCAKIAVBjPrBABCtAgALIAgoAhQiDiAESw0CIAQgDkGc+sEAEK0CAAsgCiAFQez5wQAQrQIACyAEIA5B/PnBABCtAgALIAgoAhAgBGogCiAXai0AAEEPcToAAAsgCyAEQQFqIgRHDQALIAgoAhQhBAwCC0GQgICAeCESQQAhCEEAIQ4MCQsCQAJAIAUgCk8EQCAMQRhqIAhBPGoiBCAXIAVBBhAtIAwoAhwhCyAMKAIYIhJBhYCAgHhHDQEgCiALTw0CIAtBCHYhCEGPgICAeCESIAshBSAKIQQMCwtBiYCAgHghEkEAIQggCiEEDAoLIAtBCHYhCCAMKAIgIgRBgH5xIQ4gDCkCJCErIAshBQwJCyAIKAJEBH4gCCgCQCkCAAVCAAshKyAMIAQ2AgAgDCArNwIEIAwgKzcCECAMIAQ2AgwCQCAFIAtrIgUgCiALayIETwRAIAxBADoALCAMQgA3AyAgDCALIBdqNgIYIAwgBDYCHCAMIARBA3Q2AihBACEEDAELIARBgH5xIQ4gBUEIdiEIQY6AgIB4IRIMCQsDQCAEQQhPAn4gDkH/AXFFBEAgDEEYakEBEFsMAQsgDCAOQQFrIgU6ACwgDCkDICAFQT9xrYhCAYMLIitCAVFyRQRAIARBAWohBCAMLQAsIQ4MAQsLIARBB0sNAyAMQTBqIgQgDCAMQRhqIgsQ6AEgDC0AMCIFQQNHDQYgBCAMQQxqIAsQ6AEgDC0AMCIFQQNHDQUgCkEDdEEIaiEdIAhBADYCFCAMLQAJIQQgDCgCDCELIAwoAgAhDkEAIQUCQCAIQQxqIgoCfwJAA0AgCigCACAFRgRAIApBrPrBABDCAQsgCCgCECAFaiAEOgAAIAggBUEBajYCFAJ+QgAgDC0ACCIERQ0AGiAEIAwtACwiBU0EQCAMIAUgBGsiBToALEJ/IASthkJ/hSAMKQMgIAVBP3GtiIMMAQsgDEEYaiAEEFsLISsCfgJAIAwoAgQgK6dqIgQgDigCCCIFSQRAIAwgDigCBCAEQQN0aikCACIrNwIEIAgoAgwhEiAIKAIUIQUgDC0AFSEEAkAgDCgCKCAMLQAsakEATgRAIAUgEkYEQCAKQbz6wQAQwgELIAgoAhAgBWogBDoAACAIIAVBAWo2AhQgDC0AFCIEDQFCAAwECyAFIBJHDQdB3PrBAAwGCyAMLQAsIgUgBEkNASAMIAUgBGsiBToALEJ/IASthkJ/hSAMKQMgIAVBP3GtiIMMAgsgBCAFQbyAwgAQrQIACyAMQRhqIAQQWwshMyAMKAIQIDOnaiIFIAsoAggiBE8NBSArQiiIpyEEIAwgCygCBCAFQQN0aikCADcCECAIKAIUIQUgDCgCKCAMLQAsakEASA0BIAVB/wFNDQALIAVBCHYhCEGLgICAeCESQQAhDgwLCyAFIAooAgBHDQFBzPrBAAsQwgELIAgoAhAgBWogBDoAACAIIAVBAWoiBDYCFAsgCEEANgIgQQAhDiAEIAgoAhhPBEAgCEEYakEAIARBAWpBAUEBEJIBIAgoAiAhDgsgCCgCHCIKIA5qIQVBACELIAQEfyAFQQAgBBBaGiAKIAQgDmoiDmoFIAULQQA6AAAgCCAOQQFqNgIgQYyAgIB4IRICQCAIKAIUIhdFDQAgHUEDdiAdQQdxQQBHaiEdIAgoAhAhCkEAIQ5BACEFAkACQANAIAogDmotAAAiBEELSw0BQQEgBEEBa3RBACAEGyAFaiEFIBcgDkEBaiIORw0ACyAFDQEMAgtBkYCAgHghEgwBC0EBQSAgBWciC2siCnQiDiAFayIEaUEBRgRAIAUgDkYNAyAKQQFqIQ4gBGchEkEAIQQCQAJAAkADQCAEIAgoAhQiGk8NASAEIAgoAiAiGk8NAyAIKAIcIARqIA4gCCgCECAEai0AACIaa0EAIBobOgAAIARBAWoiBCAXRw0ACyAIKAIUIgQgCCgCICIOSQ0BIAQgDkHs+sEAEK0CAAsgBCAaQYj9wQAQrQIACyAIKAIcIARqIAogEmpBH2s6AAAgCCAKOgBkIAVB/w9NDQZBkoCAgHghEkEAIQsgCiEEDAILIAQgGkGY/cEAEK0CAAsgBEGAfnEhC0GNgICAeCESCyAZIBI2AgAgGSALIARB/wFxcjYCBAwICyAFIARBvIDCABCtAgALQfz3wQBBF0H8+MEAEO0CAAsgBEEBaiIFQQh2IQhBioCAgHghEkEAIQ4MBAsgCEEANgIsIAhBJGpBISALayIXEKMBAkACQAJAIAgoAiAiDgRAIAgoAhwhBANAIAgoAiwiCyAELQAAIgVNDQIgCCgCKCAFQQJ0aiIFIAUoAgBBAWo2AgAgBEEBaiEEIA5BAWsiDg0ACwsgCEEBIAgtAGR0Ig4gCCgCCCIESwR/IA4gBCIFayISIAgoAgAgBGtLBEAgCCAEIBJBAUECEJIBIAgoAgghBQsgCCgCBCAFQQF0aiELIBJBAk8EQCAEQX9zIA5qIg5BB3EhBCASQQJrQQdPBEAgDkF4cSEOA0AgC0EAOgAPIAtBADoADiALQQA6AA0gC0EAOgAMIAtBADoACyALQQA6AAogC0EAOgAJIAtBADoACCALQQA6AAcgC0EAOgAGIAtBADoABSALQQA6AAQgC0EAOgADIAtBADoAAiALQQA6AAEgC0EAOgAAIAtBEGohCyAOQQhrIg4NAAsLIAQEQANAIAtBADoAASALQQA6AAAgC0ECaiELIARBAWsiBA0ACwsgBSASakEBayEFCyALQQA6AAEgC0EAOgAAIAVBAWoFIA4LNgIIIAhBADYCOCAIQTBqIBcQowEgCCgCOCIEIApNBEAgCiAEQaz7wQAQrQIACyAIKAI0IApBAnRqQQA2AgAgCCgCOCIOQf4BcUUNAgwBCyAFIAtB+PzBABCtAgALAkACQAJAA0AgCCgCOCIFIA5BAWsiDkH/AXEiBE0NAiAIKAIsIgsgBE0NASAFIARBAWsiC0sEQCAIKAI0IgUgC0ECdGogBEECdCILIAgoAihqKAIAIAogDmt0IAUgC2ooAgBqNgIAIARBAU0NBAwBCwsgCyAFQej8wQAQrQIACyAEIAtB2PzBABCtAgALIAQgBUHI/MEAEK0CAAsgCCgCOCEOCyAOBEAgCCgCCCIEIAgoAjQiBSgCAEYEQCAIKAIgIhcEQEEAIQsDQAJAAkACQCAIKAIgIgQgC0sEQCAIKAIcIAtqLQAAIhJFDQMgCCgCOCIEIBJNDQEgCCgCNCASQQJ0aiIEIAQoAgAiBEEBIAogEmt0IgVqNgIAIARBAXQhDgNAIAQgCCgCCCIaTw0DIAgoAgQgDmogCzoAACAIKAIIIhogBEsEQCAIKAIEIA5qQQFqIBI6AAAgDkECaiEOIARBAWohBCAFQQFrIgVFDQUMAQsLIAQgGkG4/MEAEK0CAAsgCyAEQYj8wQAQrQIACyASIARBmPzBABCtAgALIAQgGkGo/MEAEK0CAAsgC0EBaiILIBdHDQALCyAZQZOAgIB4NgIAIBkgHTYCBAwGCyAMQQI2AhwgDEHo+8EANgIYIAxCAjcCJCAMIAQ2AgwgDCAMQQxqrUKAgICAEIQ3AzggDCAFrUKAgICAEIQ3AzAgDCAMQTBqNgIgIAxBGGpB+PvBABCkAwALQQBBAEG8+8EAEK0CAAsgDCgCNCIEQYB+cSEOIAwvADEgDC0AM0EQdHIMAQsgDCgCNCIEQYB+cSEOIAwvADEgDC0AM0EQdHILIQggDDUCOCErQYaAgIB4IRILIBkgKzcCDCAZIBI2AgAgGSAOIARB/wFxcjYCCCAZIAVB/wFxIAhBCHRyNgIECyAMQUBrJAAgCSgCHCEFIAkoAhgiCEGTgICAeEcNAyAFIBFLDQEMBgtBACEFIA0tAGQNBUGYgICAeCEIDAYLIAUgEUHo7MEAEKoEAAsgBgRAIBAgECgCCCIGIAYgBSgCCCIEaiIFSQR/IBwtAAAhBSAEIBAoAgAgBmtLBEAgECAGIARBAUEBEJIBIBAoAgghBgsgECgCBCILIAZqIQogBEECTwR/IAogBSAEQQFrIgQQWhogCyAEIAZqIgZqBSAKCyAFOgAAIAZBAWoFIAULNgIIIBRCnoCAgBg3AgAMBgtBAEEAQfTrwQAQrQIACyAJKQIkISogCSgCICEGDAMLIAQgBkHk68EAEKsEAAsgESAGQYTswQAQqwQACyAFIBxqIQQgESAFayEFAkACQAJAAkACQAJAAkACQAJAIB5BAWsOBAECAgACCyAFQQZJBEBBmYCAgHghCAwJCyAFQQZrIgUgBC8AACIMIAQtAAJqIAQtAANBCHRqIg4gBC0ABGogBC0ABUEIdGoiBkkEQEGagICAeCEIDAkLIAlCADcDCCAJIA02AhBBACEIIAlBADoALCAJQgA3AyAgCSAEQQZqIhI2AhggCSAMNgIcIAkgDEEDdDYCKCAGIA5rIRlBACEKA0AgCkEITwJ+IAhB/wFxRQRAIAlBGGpBARBbDAELIAkgCEEBayIEOgAsIAkpAyAgBEE/ca2IQgGDCyIqQgFRckUEQCAKQQFqIQogCS0ALCEIDAELCyAKQQdLBEAgCkEBaiEFQZuAgIB4IQgMCQsgCUEIaiAJQRhqELACIAkoAiggCS0ALGoiCkEAIA0tAGRrIgRMDQYgCSkDCCEqIAkoAhAhCwNAIAsoAggiBCAqpyIKTQ0EIApBAXQiCCALKAIEai0AACEXIBAoAggiBCAQKAIARgRAIBBBlOzBABDCAQsgECgCBCAEaiAXOgAAIBAgBEEBajYCCAJAAkAgCiALKAIIIgRJBEAgCS0ALCEKIAsoAgQgCGotAAEiCA0BQgAhKwwCCyAKIARBnPnBABCtAgALIAggCkH/AXFLBEAgCUEYaiAIEFshKyALKAIIIQQgCS0ALCEKDAELIAkgCiAIayIKOgAsQn8gCK2GQn+FIAkpAyAgCkE/ca2IgyErCyAErUIBfSAqIAithoMgK4QhKiAJKAIoIApB/wFxaiIKQQAgDS0AZGsiBEoNAAsMBgsgCUIANwMIIAkgDTYCEEEAIQYgCUEAOgAsIAlCADcDICAJIAQ2AhggCSAFNgIcIAkgBUEDdDYCKEEAIQUMAQtBtOzBAEEiQdjswQAQ7QIACwNAIAVBCE8CfiAGQf8BcUUEQCAJQRhqQQEQWwwBCyAJIAZBAWsiBjoALCAJKQMgIAZBP3GtiEIBgwsiKkIBUXJFBEAgBUEBaiEFIAktACwhBgwBCwsgBUEHSw0CIAlBCGogCUEYahCwAiAJKAIoIAktACxqQQAgDS0AZGtMDQQgCSkDCCEqIAkoAhAhBANAIAQoAggiBSAqpyIGTQ0CIAZBAXQiCiAEKAIEai0AACELIBAoAggiBSAQKAIARgRAIBBBpOzBABDCAQsgECgCBCAFaiALOgAAIBAgBUEBajYCCAJAAkAgBiAEKAIIIghJBEAgCS0ALCEFIAQoAgQgCmotAAEiBg0BQgAhKwwCCyAGIAhBnPnBABCtAgALIAYgBUH/AXFLBEAgCUEYaiAGEFshKyAEKAIIIQggCS0ALCEFDAELIAkgBSAGayIFOgAsQn8gBq2GQn+FIAkpAyAgBUE/ca2IgyErCyAIrUIBfSAqIAathoMgK4QhKiAJKAIoIAVB/wFxakEAIA0tAGRrSg0ACwwECyAKIARBjPnBABCtAgALIAYgBUGM+cEAEK0CAAsgBUEBaiEFQZuAgIB4IQgMAgtBnICAgHghCCAEIApHBEAgBCEGIAohBQwCCyAGIBJqIQogBSAGayEEIAlCADcDCCAJIA02AhBBACEGIAlBADoALCAJQgA3AyAgCSAMIBJqNgIYIAkgDiAMayIFNgIcIAkgBUEDdDYCKEEAIQUDQCAFQQdLAn4gBkH/AXEEQCAJIAZBAWsiBjoALCAJKQMgIAZBP3GtiEIBgwwBCyAJQRhqQQEQWwsiKkIBUXJFBEAgBUEBaiEFIAktACwhBgwBCwsgBUEHSwRAIAVBAWohBUGbgICAeCEIDAILIA4gEmohCyAJQQhqIAlBGGoQsAICQAJAAkAgCSgCKCAJLQAsaiIFQQAgDS0AZGsiBkoEQANAIAkoAhAiBSgCCCIMIAkoAggiBk0NAiAFKAIEIAZBAXRqLQAAIQUgECgCCCIGIBAoAgBGBEAgEEGU7MEAEMIBCyAQKAIEIAZqIAU6AAAgECAGQQFqNgIIIAlBCGogCUEYahDKASAJKAIoIAktACxqIgVBACANLQBkayIGSg0ACwsCQCAFIAZHDQAgCUIANwMIIAkgDTYCEEEAIQYgCUEAOgAsIAlCADcDICAJIAs2AhggCSAZNgIcIAkgGUEDdDYCKEEAIQUDQCAFQQdLAn4gBkH/AXEEQCAJIAZBAWsiBjoALCAJKQMgIAZBP3GtiEIBgwwBCyAJQRhqQQEQWwsiKkIBUXJFBEAgBUEBaiEFIAktACwhBgwBCwsgBUEHSwRAIAVBAWohBUGbgICAeCEIDAYLIAlBCGogCUEYahCwAiAJKAIoIAktACxqIgVBACANLQBkayIGSgRAA0AgCSgCECIFKAIIIgsgCSgCCCIGTQ0EIAUoAgQgBkEBdGotAAAhBSAQKAIIIgYgECgCAEYEQCAQQZTswQAQwgELIBAoAgQgBmogBToAACAQIAZBAWo2AgggCUEIaiAJQRhqEMoBIAkoAiggCS0ALGoiBUEAIA0tAGRrIgZKDQALCyAFIAZHDQAgCUIANwMIIAkgDTYCEEEAIQYgCUEAOgAsIAlCADcDICAJIAo2AhggCSAENgIcIAkgBEEDdDYCKEEAIQUDQCAFQQdLAn4gBkH/AXEEQCAJIAZBAWsiBjoALCAJKQMgIAZBP3GtiEIBgwwBCyAJQRhqQQEQWwsiKkIBUXJFBEAgBUEBaiEFIAktACwhBgwBCwsgBUEHSwRAIAVBAWohBUGbgICAeCEIDAYLIAlBCGogCUEYahCwAiAJKAIoIAktACxqIgVBACANLQBkayIGSgRAA0AgCSgCECIGKAIIIgUgCSgCCCIETQ0FIAYoAgQgBEEBdGotAAAhBiAQKAIIIgQgECgCAEYEQCAQQZTswQAQwgELIBAoAgQgBGogBjoAACAQIARBAWo2AgggCUEIaiAJQRhqEMoBIAkoAiggCS0ALGoiBUEAIA0tAGRrIgZKDQALCyAFIAZGDQQLDAQLIAYgDEGM+cEAEK0CAAsgBiALQYz5wQAQrQIACyAEIAVBjPnBABCtAgALIBYgECgCCCIFRwRAQZ2AgIB4IQggFiEGDAELIBRBnoCAgHg2AgAgFCARNgIEDAELIBQgKjcCDCAUIAY2AgggFCAFNgIEIBQgCDYCAAsgCUEwaiQAIA8oAhAhBCAPKAIMIgZBnoCAgHhHDQ8gDSgC8AIiBiAPKAKggAhHDRAgBCAHRw0RIA9BADoArIAIIA9BADYCqIAIIA9BqIAIaiEKIAcgHGohCwJAIB8gB2siBkUEQCAUQQE6AAggFEEANgIEIBRBAToAAAwBCwJAAkACQAJAIAstAAAiBUH/AUcEQCAFDQEgFEEBOgABIApBADYCACAUQQA6AAAMBQtBAyEEIAZBA00EQCAUQQQ6AAgMBAsgCy8AAUGA/gFqIQVBBCEHDAELAkAgBcBBAE4EQEEBIQQgBkEBRw0BIBRBAjoACCAUQQE2AgQgFEEBOgAADAULQQMhByAGQQNJDQIgCy0AASAFQQh0ckGAgAJrIQVBAiEEDAELQQIhBwsgCiAFNgIAIApBAToABCAUIAc6AAEgCiAEIAtqLQAAOgAFIBRBADoAAAwCCyAUQQM6AAgLIBQgBjYCBCAUQQE6AAALIA8tAAwNEiAGIA8tAA0iBEkNEyAVICFHDRQgBiAEayERIA8oAqiACEUEQCAEIAZGBEAgDUHoAWogDSgC7AIgDSgC8AIQpwEgDUEANgL8AgwMCyAPQYyAgIB4NgKMgAggDyARQQN0NgKQgAhBBSEHDBkLIA9BDGohCiAEIAtqIRYgDUHoAGohBSANQfQCaiELQQAhB0EAIQZCACEqIwBB8ABrIgQkAAJAAkACQAJAAkACQCAPQaiACGoiCS0ABEUEQEGNgICAeCEIDAELAkACQAJAAkACQAJAAkACQAJAAkACQCAJLQAFIhBBwAFxQQZ2QQFrDgMBAgkAC0GF5cIALQAAGkGQAUEEEPUDIgZFDQMgBkHo78EAQZABEDshBkGF5cIALQAAGkGQAUEEEPUDIgdFDQQgByAGQZABEDshByAFKAI0IggEQCAFKAI4IAhBAnRBBBCnBAsgBUEGOgBNIAVBJDYCPCAFIAc2AjggBUEkNgI0IARB0ABqIAVBKGoQKSAEKAJQIghBhYCAgHhHDQIgBkGQAUEEEKcEQQAhBiAFQQA6AHoMCAsgEUUEQEGOgICAeCEIDAoLIBYtAAAiB0EjTQ0FDAgLIARB0ABqIAVBKGogFiARQQkQLSAEKAJUIQcgBCgCUCIIQYWAgIB4Rg0DIARBCGogBEHgAGooAgA2AgAgBCAEKQJYNwMADAgLIARBCGogBEHgAGooAgA2AgAgBCAEKQJYNwMAIAQoAlQhByAGQZABQQQQpwQMBwtBBEGQAUHc6sEAENcDAAtBBEGQAUGQ/8EAENcDAAsgBUEAOgB6DAELIAUgBzoAe0EBIQcgBUEBOgB6CyAHIBFNBEAgByEGDAELIAcgEUHQ88EAEKoEAAsgBiAWaiEHAkACQAJAAkACQAJAAkACQAJAIBBBBHZBA3FBAWsOAwEECAALQYXlwgAtAAAaQfQAQQQQ9QMiB0UNBCAHQfjwwQBB9AAQOyEMQYXlwgAtAAAaQfQAQQQQ9QMiB0UNBSAHIAxB9AAQOyEHIAUoAgwiCARAIAUoAhAgCEECdEEEEKcECyAFQQU6ACUgBUEdNgIUIAUgBzYCECAFQR02AgwgBEHQAGogBRApIAQoAlAiCEGFgICAeEcNASAMQfQAQQQQpwQgBUEAOgB4DAcLIAYgEUcNAUGPgICAeCEIDAgLIARBCGogBEHgAGooAgA2AgAgBCAEKQJYNwMAIAQoAlQhByAMQfQAQQQQpwQMBwsgBy0AACIHQR9LDQUgBSAHOgB5IAVBAToAeCAGQQFqIQYMBAsgBEHQAGogBSAHIBEgBmtBCBAtIAQoAlQhByAEKAJQIghBhYCAgHhGDQIgBEEIaiAEQeAAaigCADYCACAEIAQpAlg3AwAMBQtBBEH0AEHc6sEAENcDAAtBBEH0AEGQ/8EAENcDAAsgBUEAOgB4IAYgB2ohBgsCQAJAAkACQAJAAkACQAJAAkAgBiARTQRAIAYgFmohDCAQQQJ2QQNxQQFrDgMCBQYBCyAGIBFBwPPBABCqBAALQYXlwgAtAAAaQdQBQQQQ9QMiB0UNBiAHQezxwQBB1AEQOyEMQYXlwgAtAAAaQdQBQQQQ9QMiB0UNBSAHIAxB1AEQOyEHIAUoAlwiCARAIAUoAmAgCEECdEEEEKcECyAFQQY6AHUgBUE1NgJkIAUgBzYCYCAFQTU2AlwgBEHQAGogBUHQAGoQKSAEKAJQIghBhYCAgHhHDQEgDEHUAUEEEKcEIAVBADoAfAwEC0GQgICAeCEIIAYgEUcNAQwICyAEQQhqIARB4ABqKAIANgIAIAQgBCkCWDcDACAEKAJUIQcgDEHUAUEEEKcEDAcLIAwtAAAiDEE0Sw0GIAUgDDoAfSAFQQE6AHwgBkEBaiEGDAELIARB0ABqIAVB0ABqIAwgESAGa0EJEC0gBCgCVCEHIAQoAlAiCEGFgICAeEcEQCAEQQhqIARB4ABqKAIANgIAIAQgBCkCWDcDAAwGCyAFQQA6AHwgBiAHaiEGCwJAIAYgEU0EQEEAIQggBEEAOgAkIARCADcDGCAEIAYgFmo2AhAgBCARIAZrIgY2AhQgBCAGQQN0NgIgQQAhBwwBCyAGIBFB8O3BABCqBAALA0AgB0EITwJ+IAhB/wFxRQRAIARBEGpBARBbDAELIAQgCEEBayIGOgAkIAQpAxggBkE/ca2IQgGDC0IBUXJFBEAgB0EBaiEHIAQtACQhCAwBCwsgB0EHTQRAIAUtAHoiEA0DIAUtAHxBAUYNAyAFLQB4DQMgBSgCMARAIAUoAiwpAgAhKgsgCSgCACEJIAQgBUEoajYCKCAEICo3AiwgBSgCWARAIAUoAlQpAgAhLAsgBCAFQdAAajYCNCAEICw3AjggBSgCCAR+IAUoAgQpAgAFQgALISogBCAFNgJAIAQgKjcCRCAEQdAAaiIGIARBKGogBEEQaiIFEOgBIAQtAFAiB0EDRgRAIAYgBEFAayAFEOgBIAQtAFAiB0EDRgRAIAYgBEE0aiAFEOgBIAQtAFAiBkEDRgRAIAtBADYCCCAJIAsoAgBLBEAgC0EAIAlBBEEMEJIBC0F/IQUDQAJ/AkACQCAFQQFqIgUgCUYEQCAEKAIgIAQtACRqIgZBAEoNASAKQZGAgIB4NgIADA4LIAQtAD0hByAELQBJIQYgBCAELQAxIgw6AE8gDEEQSSIQDQEgDEEQa0H/AXEiCEEUTw0OIAhBAnRB9PPBAGooAgAhDCAIQeDzwQBqLQAADAILIAogBjYCBCAKQYyAgIB4NgIADAwLQQALIQggBCAHOgBPAn8gB0EgSSIORQRAIAdBIGtB/wFxIgdBFU8NDiAHQQJ0Qdz0wQBqKAIAIRYgB0HE9MEAai0AAAwBCyAHQQNqQf8BcSEWQQALIRECfgJ+AkAgBkEfTQRAIAYgCGogEWoiFUH/AXEiFEUEQEIAISxCACEqQgAMBAsgBq0hKiAUQThNBEAgFCAELQAkIgdLBEAgBEHQAGogBEEQaiAGIBEgCCAVEDQgBCkDWCEsIAQpA1AhKiAEKQNgDAULQgAhLCAGBH4gBCAHIAZrIgc6ACRCfyAqhkJ/hSAEKQMYIAdBP3GtiIMFQgALISogDkUEQCAEIAcgEWsiBzoAJEJ/IBGthkJ/hSAEKQMYIAdBP3GtiIMhLAtCACAQDQQaIAQgByAIayIHOgAkQn8gCK2GQn+FIAQpAxggB0E/ca2IgwwEC0IAISxCACAGRQ0CGiAELQAkIgcgBkkNASAEIAcgBmsiBzoAJEJ/ICqGQn+FIAQpAxggB0E/ca2IgwwCCyAKIAY6AAQgCkGJgICAeDYCAAwNCyAEQRBqIAYQWwshKgJAIA4NACAELQAkIgcgEUH/AXFJBEAgBEEQaiAREFshLAwBCyAEIAcgEWsiBzoAJEJ/IBGthkJ/hSAEKQMYIAdBP3GtiIMhLAtCACAQDQAaIAQtACQiByAIQf8BcUkEQCAEQRBqIAgQWwwBCyAEIAcgCGsiBzoAJEJ/IAithkJ/hSAEKQMYIAdBP3GtiIMLISsgKqdBASAGdGoiCEUEQCAKQYqAgIB4NgIADAsLIAsoAggiBiALKAIARgRAIAtBkO7BABCyAQsgCygCBCAGQQxsaiIHIAg2AgggByAWICynajYCBCAHIAwgK6dqNgIAIAsgBkEBaiIGNgIIIAYgCUkEQCAEQShqIARBEGoiBhDsASAEQTRqIAYQ7AEgBEFAayAGEOwBCyAEKAIgIAQtACRqQQBODQALIApBi4CAgHg2AgAMCQsgCiAEKQBRNwAFIApBDGogBEHYAGooAAA2AAAgCiAGOgAEIApBhoCAgHg2AgAMCAsgCiAEKQBRNwAFIApBDGogBEHYAGooAAA2AAAgCiAHOgAEIApBhoCAgHg2AgAMBwsgCiAEKQBRNwAFIApBDGogBEHYAGooAAA2AAAgCiAHOgAEIApBhoCAgHg2AgAMBgsgCiAHQQFqNgIEIApBiICAgHg2AgAMBQtBBEHUAUGQ/8EAENcDAAtBBEHUAUHc6sEAENcDAAsgBSgCMARAIAUoAiwpAgAhKgsgCSgCACEJIAQgBUEoajYCKCAEICo3AiwgBSgCWARAIAUoAlQpAgAhLAsgBCAFQdAAajYCNCAEICw3AjggBSgCCAR+IAUoAgQpAgAFQgALISogBCAFNgJAIAQgKjcCRAJAIBANACAEQdAAaiAEQShqIARBEGoQ6AEgBC0AUCIGQQNGDQAgCiAEKQBRNwAFIApBDGogBEHYAGooAAA2AAAgCiAGOgAEIApBhoCAgHg2AgAMAwsCQCAFLQB4Ig4NACAEQdAAaiAEQUBrIARBEGoQ6AEgBC0AUCIGQQNGDQAgCiAEKQBRNwAFIApBDGogBEHYAGooAAA2AAAgCiAGOgAEIApBhoCAgHg2AgAMAwsCQCAFLQB8IhQNACAEQdAAaiAEQTRqIARBEGoQ6AEgBC0AUCIGQQNGDQAgCiAEKQBRNwAFIApBDGogBEHYAGooAAA2AAAgCiAGOgAEIApBhoCAgHg2AgAMAwsgC0EANgIIIAkgCygCAEsEQCALQQAgCUEEQQwQkgELIAUtAHkhHyAFLQB9IR4gBS0AeyEaQX8hFiAEKAJAIRUgBCgCNCESIAQoAighGQNAAn8CQAJAIBZBAWoiFiAJRgRAIAQoAiAgBC0AJGoiBkEASg0BIApBkYCAgHg2AgAMBwsgBC0APSEHIAQtAEkhESAEIBogBC0AMSAQGyIFOgBPIAVB/wFxIgZBEEkiHA0BIAVBEGtB/wFxIgVBFE8NByAFQQJ0QfTzwQBqKAIAIQYgBUHg88EAai0AAAwCCyAKIAY2AgQgCkGMgICAeDYCAAwFC0EACyEFIAQgHiAHIBQbIgc6AE8CfyAHQf8BcUEgSSIXRQRAIAdBIGtB/wFxIgdBFU8NByAHQcT0wQBqLQAAIQggB0ECdEHc9MEAaigCAAwBC0EAIQggB0EDakH/AXELISgCfgJ+AkAgHyARIA4bIhFB/wFxIgxBH00EQCAFIBFqIAhqIilB/wFxIh1FBEBCACEsQgAhKkIADAQLIB1BOE0EQCAdIAQtACQiB0sEQCAEQdAAaiAEQRBqIBEgCCAFICkQNCAEKQNYISwgBCkDUCEqIAQpA2AMBQtCACEsIAwEfiAEIAcgEWsiBzoAJEJ/IBGthkJ/hSAEKQMYIAdBP3GtiIMFQgALISogF0UEQCAEIAcgCGsiBzoAJEJ/IAithkJ/hSAEKQMYIAdBP3GtiIMhLAtCACAcDQQaIAQgByAFayIHOgAkQn8gBa2GQn+FIAQpAxggB0E/ca2IgwwEC0IAISxCACAMRQ0CGiAELQAkIgcgDEkNASAEIAcgEWsiBzoAJEJ/IBGthkJ/hSAEKQMYIAdBP3GtiIMMAgsgCiAROgAEIApBiYCAgHg2AgAMBgsgBEEQaiAREFsLISoCQCAXDQAgBC0AJCIHIAhB/wFxSQRAIARBEGogCBBbISwMAQsgBCAHIAhrIgc6ACRCfyAIrYZCf4UgBCkDGCAHQT9xrYiDISwLQgAgHA0AGiAELQAkIgcgBUH/AXFJBEAgBEEQaiAFEFsMAQsgBCAHIAVrIgc6ACRCfyAFrYZCf4UgBCkDGCAHQT9xrYiDCyErICqnQQEgDHRqIghFBEAgCkGKgICAeDYCAAwECyALKAIIIgUgCygCAEYEQCALQYDuwQAQsgELIAsoAgQgBUEMbGoiByAINgIIIAcgKCAsp2o2AgQgByAGICunajYCACALIAVBAWoiBjYCCAJAIAYgCU8NACAQRQRAAn5CACAELQAwIgZFDQAaIAYgBC0AJCIFTQRAIAQgBSAGayIFOgAkQn8gBq2GQn+FIAQpAxggBUE/ca2IgwwBCyAEQRBqIAYQWwshKiAEKAIsICqnaiIIIBkoAggiBU8NCCAEIBkoAgQgCEEDdGopAgA3AiwLIBRFBEACfkIAIAQtADwiBkUNABogBiAELQAkIgVNBEAgBCAFIAZrIgU6ACRCfyAGrYZCf4UgBCkDGCAFQT9xrYiDDAELIARBEGogBhBbCyEqIAQoAjggKqdqIgggEigCCCIFTw0IIAQgEigCBCAIQQN0aikCADcCOAsgDg0AAn5CACAELQBIIgZFDQAaIAYgBC0AJCIFTQRAIAQgBSAGayIFOgAkQn8gBq2GQn+FIAQpAxggBUE/ca2IgwwBCyAEQRBqIAYQWwshKiAEKAJEICqnaiIIIBUoAggiBU8NByAEIBUoAgQgCEEDdGopAgA3AkQLIAQoAiAgBC0AJGpBAE4NAAsgCkGLgICAeDYCAAwCC0GQgICAeCEICyAKIAc2AgQgCiAINgIAIAogBCkDADcCCCAKQRBqIARBCGooAgA2AgALIARB8ABqJAAMAwsgBEEBNgJUIARB7O7BADYCUCAEQgE3AlwgBCAEQc8Aaq1CgICAgIA5hDcDaCAEIARB6ABqNgJYIARB0ABqQfTuwQAQpAMACyAEQQE2AlQgBEHQ78EANgJQIARCATcCXCAEIARBzwBqrUKAgICAgDmENwNoIAQgBEHoAGo2AlggBEHQAGpB2O/BABCkAwALIAggBUG8gMIAEK0CAAsgDygCDCIEQZGAgIB4Rg0JIA8gDykCEDcCkIAIIA8gBDYCjIAIIA8pAhghLUEFIQcMGAtBpITBAEHbAEGAhcEAEO0CAAsgDyAFLQAAOgAMCyAEIAc2AgQgBCALNgIADBMLIARBADYCBCAEIAUgBmo2AgAMAQsgBEEANgIEIAQgBSAHajYCAEHw/8AAKQMAIi1C/wGDQgRRDRELIBhBADoADCAYIC03AgQgGEEJNgIADBMLQfD/wAApAwAiKkL/AYNCBFINDgsgIkEAOgAAIA9BDWogBUH/AxBaGiAHQYAETwRAIAdBCXYhBiANQegBaiEEA0AgBCAPQQxqQYAEEKcBIAZBAWsiBg0ACwsgDUHoAWogD0EMaiAHQf8DcRCnASAYQQo2AgAgGEIBNwMIDBELIBhBCDYCAAwQCyAPQQxqIQxBACEGQQAhB0EAIQhBACEWIwBBMGsiESQAIA0oAuwBIQsgDSgC8AEhHCANKAL0ASEKIBFBADYCACANQegBaiEUIAshBSAKIQQCQCANKAL8AiIdBEAgDUGIA2ohHyANQYwDaiEQQQghEgNAAkACQAJAAkACQAJAAkACfwJAIA0oAvwCIgQgCEsEQCANKAL4AiASaiIFKAIAIQQgBUEEaygCACEZIAVBCGsoAgAiCQ0HIARBAWsiB0ECTw0BIBAgBEECdGooAgAMAgsgCCAEQaDnwQAQrQIACyAEQQNGBEAgECgCACIEQQFrIQUMAgsgBEEDawshBQJAIAcOAgIDAAsgECgCACEECyANIA0oApADNgKUAwwCCyAQKAIAIQQMAQsgDSANKAKQAzYClAMgDSgCjAMhBAsgBiEHDAELAkAgBiAJaiIHIA0oAvACIgVNBEAgBiAHTQ0BIAYgB0Gw58EAEKwEAAsgDCAFNgIIIAwgBzYCBCAMQQI2AgAMBQsgDSgC7AIhFyANKALwASIOIA0oAuwBIhUgDSgC9AEiBSAOSSIeGyAFa0EAIA4gHhtqIh5BAWsiGkEAIBogHk0bIh4gCUkEQCAUIAkgHmsQgAEgDSgC7AEhFSANKALwASEOIA0oAvQBIQULIAYgF2ohFyAOIBUgBSAOSRsiHiAFayIGIAkgBiAJSSIaGyEGIBQoAgAhDiAFIB5HBEAgBSAOaiAXIAYQOxoLIBoEQCAOIAYgF2ogCSAGaxA7GgsCQCAVBEAgDSAFIAlqIBVwNgL0ASANIA0pA/gBIAmtfDcD+AEgBEEBayIGQQNPBEAgBEEDayEFDAILIB8gBEECdGooAgAhBQwBC0Gw6cEAEJQDAAsCQAJAIAYOAgMBAAsgDSANKAKQAzYClAMgDSgCjAMhBAwBCyAQKAIAIQQLIA0gBTYCjAMgDSAENgKQAwsgBUUEQCAMQQM2AgAMAwsCQCAZRQ0AIBFBCGogFCAFIBkQsQEgESgCCCIEQQJGDQAgDCARKQIMNwIEIAwgBDYCAAwDCyARIAkgFmogGWoiFjYCACASQQxqIRIgByEGIB0gCEEBaiIIRw0ACyANKALsASEFIA0oAvQBIQQLAkAgDSgC8AIiBiAHTQ0AIA0oAuwCIAdqIQggBiAHayIHIA0oAvABIgYgBSAEIAZJIgkbIARrQQAgBiAJG2oiCUEBayIQQQAgCSAQTxsiCUsEQCANQegBaiAHIAlrEIABIA0oAuwBIQUgDSgC8AEhBiANKAL0ASEECyAGIAUgBCAGSRsiECAEayIGIAcgBiAHSSIOGyEGIBQoAgAhCSAEIBBHBEAgBCAJaiAIIAYQOxoLIA4EQCAJIAYgCGogByAGaxA7GgsgBQRAIA0gBCAHaiAFcCIENgL0ASANIA0pA/gBIAetfDcD+AEgESAHIBZqIhY2AgAgDSgC7AEhBQwBC0Gw6cEAEJQDAAsgESAEIBxqIA0oAvABIgYgCiALQQAgCiAcSRtqamsgBUEAIAQgBkkbaiIENgIEIAQgFkcEQCARQQI2AgwgEUGM5sEANgIIIBFCAjcCFCARIBFBBGqtQoCAgIAQhDcDKCARIBGtQoCAgIAQhDcDICARIBFBIGo2AhAgEUEIakGQ58EAEKQDAAsgDEEENgIACyARQTBqJAAgDygCDCIEQQRHDQ0LIBggIa03AwggIkEAOgAAIBhBCjYCAAwOCyAPQZOACGogLUI4iDwAACAPQZGACGogLUIoiD0AACAPIAQ6AIyACCAPIC1CCIg+AI2ACAwMCyAPQZaACGogD0EWai8BADsBACAPIA8pAQ43AY6ACCAPIAQ6AI2ACCAPIAU6AIyACEEDIQcMCwsgBCAVQZSEwQAQqgQACyAPIB82ApCACCAPIAc2AoyACEEBIQcMCQsgDyAPKAIUNgKUgAggDyAENgKQgAggDyAGNgKMgAggDykCGCEtQQIhBwwICyAPQQI2AhAgD0G4gcEANgIMIA9CAjcCGCAPIAY2AryACCAPIA9BoIAIaq1CgICAgBCENwOwgAggDyAPQbyACGqtQoCAgIAQhDcDqIAIIA8gD0GogAhqNgIUIA9BDGpByIHBABCkAwALQdiBwQBB0wBBrILBABDtAgALIA8oAhAhBCAPIA8tABQ6AJCACCAPIAQ2AoyACEEEIQcMBQsgBCAGQYSEwQAQqgQAC0G8gsEAQbYBQfSDwQAQ7QIACyAYQQE6AAwgGCAqNwIEIBhBCTYCAAwDCyANQegBaiAPQQxqIAYQpwEgGCAKrTcDCCAiQQA6AAAgGEEKNgIADAILIA8gDykCEDcCkIAIIA8gBDYCjIAIQQYhBwsgGCAHNgIAIBggDykCjIAINwIEIBggLTcDECAYQQxqIA9BlIAIaigCADYCAAsgD0HAgAhqJAAgEygCSCIEQQpHDQMgASABKQPAAyATKQNQfDcDwAMgASABKALIA0EBajYCyAMCQCATLQB5BEAgIEEBOgDMAyAgLQAQQQRxRQ0BIBMoAkQiBigCACEFAkACQCAGKAIEIgdBBE8EQCAGIAdBBGs2AgQgBiAFQQRqNgIAIAUoAAAhBAwBC0EAIQQgBkEANgIEIAYgBSAHajYCACAwQgRSDQELIAEgASkDwANCBHw3A8ADICAgBDYCHCAgQQE2AhgMAgsgEyAvNwMQQQYMBwsgJCAnIAEoApgCIgZqayABKAKUAiABKAKcAiIEIAQgBkkiBhtqIARBACAGG2ogJkkNAQsLIAEQvwEgA08NBSABKAIAQQJHDQEMBQsLIBMgLjcDEEEEDAILIBNBCGogE0HcAGooAgA2AgAgEyATKQJUNwMAIBMgEykCTDcCFCATIAQ2AhBBBQwBC0EHCyEBIBNBLGogE0EYaigCADYCACATQThqIBNBCGooAgA2AgAgEyABNgIgIBMgEykDEDcCJCATIBMpAwA3AzBBheXCAC0AABpBIEEIEPUDIgFFBEBBCEEgENMEAAsgASATQSBqIgIpAwA3AwAgAUEYaiACQRhqKQMANwMAIAFBEGogAkEQaikDADcDACABQQhqIAJBCGopAwA3AwBBheXCAC0AABpBDEEEEPUDIgJFBEBBBEEMENMEAAsgAkEoOgAIIAJBwNvAADYCBCACIAE2AgAgACACrUIghkIDhDcCAAwBCwJAIAEoAgBBAkYEQCAAQQQ6AAAgAEEANgIEDAELIAFBkAJqIQQgAS0AzANFBEACQAJAAkAgBCgCDCIGQQAgBiAEKAIIIgFJIgcbIgUgBCgCBCAGIAcbIgdqIAEgBCgCcCIGamtBACAHIAFrIg0gBWogBksbIgYgAyADIAZLGyIGRSABIAdGcg0AIAIgBCgCACIHIAFqIgIgDSAGIAYgDUsbIgEQOyENIARBGGoiCiACIAEQVyAGIAFrIgIgBSACIAVJGyICBEAgAyABayIDIAJJDQIgASANaiAHIAIQOxogCiAHIAIQVyABIAJqIgFFDQELIAQoAgQiAkUNAiAEIAIgBCgCDCIDIAMgBCgCCCIESSIFGyAEayADQQAgBRtqIgMgASABIANLGyAEaiACcDYCCAsgAEEEOgAAIAAgBjYCBAwDCyACIANBkPfBABCrBAALQcDpwQAQlAMACwJAAkACQAJAIAQoAgQgBCgCDCIGIAYgBCgCCCIBSSIHGyINIAFrIgUgBkEAIAcbIgdqIgYgAyADIAZLGyIGRSABIA1Gcg0AIAIgBCgCACINIAFqIgIgBSAGIAUgBkkbIgEQOyEFIARBGGoiCiACIAEQVyAGIAFrIgIgByACIAdJGyICBEAgAyABayIDIAJJDQIgASAFaiANIAIQOxogCiANIAIQVyABIAJqIgFFDQELIAQoAgQiAkUNAiAEIAIgBCgCDCIDIAMgBCgCCCIESSIFGyAEayADQQAgBRtqIgMgASABIANLGyAEaiACcDYCCAsgAEEEOgAAIAAgBjYCBAwCCyACIANBsPfBABCrBAALQcDpwQAQlAMACwsLIBNBgAFqJAALtwgBEH8CQAJAIAEoAhQiBCABLQAkQQFqTQRAIAFBADYCCCABAn9BASABLQAldCIHIAEoAgBLBEAgAUEAIAdBBEEIEJIBIAcgASgCCCICIAdPDQEaCyACIQQgByACayIGIAEoAgAgAmtLBEAgASACIAZBBEEIEJIBIAEoAgghBAsgASgCBCIFIARBA3RqIQMgBkECTwRAIANBACAHIAJBf3NqQQN0EFoaIAQgB2pBA3QgAkEDdGsgBWpBCGshAyAEIAZqQQFrIQQLIANCADcCACAEQQFqCyIGNgIIIAEoAhQiCA0BIAEoAgQhCyABKAIQIQogByEEDAILIAAgBDYCBCAAQYSAgIB4NgIADwsgAS0AJSEJIAEoAgQhCyABKAIQIgohAiAHIQRBACEDA0ACQCACKAIAQX9GBEAgBEEBayIEIAZPDQEgCyAEQQN0aiIFIAk6AAQgBUEANgIAIAUgAzoABQsgAkEEaiECIANBAWoiAyAIRw0BDAILCyAEIAZB6IHCABCtAgALIAdBA3YgB0EBdmpBA2ohDSAHQQFrIQ5BACEFQQAhAgNAIAUgCCAFIAhLGyEMIAogBUECdGohAwNAIAUgDEYEQEEAIQogAUEANgIgIAgEQEEAIQIgCCABKAIYSwRAIAFBGGpBACAIQQRBBBCSASABKAIgIQILIAEoAhwiBiACQQJ0aiEDIAhBAUcEfyADQQAgCEECdEEEaxBaGiACIAhqIgNBAWshAiAGIANBAnRqQQRrBSADC0EANgIAIAJBAWohCgsgASAKNgIgIAQEQCABKAIQIQ0gASgCHCEOIAEoAhQhCyABKAIEIQIgASgCCCEIIAEtACUhDEEAIQUDQAJAAkACQAJAAkACQCAFIAhHBEAgCyACQQVqLQAAIgFNDQEgASAKTw0DIA4gAUECdCIBaiIPKAIAIQYgASANaigCACIBDQJBACEDQQAhCQwGCyAIIAhB7IDCABCtAgALIAEgC0H8gMIAEK0CAAsgAUEBQQAgAWciA2t0QQEgA0Efc3QgAUYbIgMgB0sNAkEgIAcgA24iEGciCWsgCUEfcyADIAFrIgMgBksiERsiCUH/AXEgDEsNASAQIAZBAXQgAWogBiARGyADa2whAwwDCyABIApBjIHCABCtAgALQZyBwgBBKUHIgcIAEO0CAAtBoP/BAEEXQZyAwgAQ7QIACyAPIAZBAWo2AgAgAkEEaiAJOgAAIAIgAzYCACACQQhqIQIgBCAFQQFqIgVHDQALCyAAQYWAgIB4NgIADwsgBUEBaiEFIAMoAgAhCSADQQRqIQMgCUEATA0ACyAFQQFrIQxBACEDA0ACQCACIAZJBEAgA0EBaiEDIAsgAkEDdGogDDoABQNAIAIgDWogDnEiAiAETw0ACwwBCyACIAZB2IHCABCtAgALIAMgCUcNAAsMAAsAC9IHAQN/AkACQAJAAkACQAJAAkACQAJAAkACQAJAIAAoAgAOCgAHBwECAwQHBwUHCwJAAkACQAJAAkACQCAALQAEDgcADAEMAgMEDAsgAC0ACEEDRw0LIAAoAgwiACgCACEBIABBBGooAgAiAigCACIDBEAgASADEQMACyACKAIEIgNFDQQgASADIAIoAggQpwQMBAsgAC0ACEEDRw0KIAAoAgwiACgCACEBIABBBGooAgAiAigCACIDBEAgASADEQMACyACKAIEIgNFDQMgASADIAIoAggQpwQMAwsgAC0ACEEDRw0JIAAoAgwiACgCACEBIABBBGooAgAiAigCACIDBEAgASADEQMACyACKAIEIgNFDQIgASADIAIoAggQpwQMAgsgAC0ACEEDRw0IIAAoAgwiACgCACEBIABBBGooAgAiAigCACIDBEAgASADEQMACyACKAIEIgNFDQEgASADIAIoAggQpwQMAQsgAC0ACEEDRw0HIAAoAgwiACgCACEBIABBBGooAgAiAigCACIDBEAgASADEQMACyACKAIEIgNFDQAgASADIAIoAggQpwQLIABBDEEEEKcEDwsCQAJAIAAtAAQOAgcBAAsgACgCCCIBQfv///8HaiICQQ1NIAJBAkdxDQYgAUGEgICAeEoNBSABQYOAgIB4Rw0GDAULIAAoAggiAUGEgICAeEogAUGDgICAeEZyDQQMBQsgAC0ABEEDRw0EDAULAkACQEEDIAAoAgQiAUEHayICIAJBA08bQQJrDgIBAAULAkACQAJAIAEOBgAHAQcHAgcLIAAtAAhBA0cNBgwICyAAKAIIIgFB7f///wdqIgJBCk0gAkEDR3ENBSABRSABQfv///8HaiICQQ1NIAJBAkdxIAFBg4CAgHhHIAFBhICAgHhMcXJyDQUMCQsgACgCCCIBQfv///8HaiICQQtNIAJBAkdxIAFBg4CAgHhHIAFBhICAgHhMcXIgAUVyDQQMCAsgAC0ACEEDRw0DDAULIAAtAARBA0cNAgwDCyAALQAEQQNHDQEgACgCCCIAKAIAIQEgAEEEaigCACICKAIAIgMEQCABIAMRAwALIAIoAgQiAwRAIAEgAyACKAIIEKcECyAAQQxBBBCnBAwBCyABRQ0AIAAoAgwgAUECdEEEEKcECw8LIAAoAggiACgCACEBDAELIAAoAgwiACgCACEBCyAAQQRqKAIAIgIoAgAiAwRAIAEgAxEDAAsgAigCBCIDBEAgASADIAIoAggQpwQLIABBDEEEEKcEDwsgACgCDCABQQJ0QQQQpwQLvQgBB38gACgCACICBEAgACgCBCEDAkAgACgCCCIHBEBBACEAA0ACQCAABEAgAiEBDAELQQAhAQJAIANFDQAgAyIAQQdxIgQEQANAIABBAWshACACKALgFiECIARBAWsiBA0ACwsgA0EISQ0AA0AgAigC4BYoAuAWKALgFigC4BYoAuAWKALgFigC4BYoAuAWIQIgAEEIayIADQALCyACIQBBACEDCwJAIAAvAd4WIANLBEAgAyEGIAAhAgwBCwNAIAAoAgAiAgRAIAAvAdwWIQYgAEGQF0HgFiABG0EEEKcEIAFBAWohASACIgAvAd4WIAZNDQEMAgsLIABBkBdB4BYgARtBBBCnBEHIpcEAEK4EAAsgBkEBaiEDAkAgAUUEQCACIQAMAQsgAiADQQJ0akHgFmohBAJAIAFBB3EiA0UEQCABIQUMAQsgASEFA0AgBUEBayEFIAQoAgAiAEHgFmohBCADQQFrIgMNAAsLQQAhAyABQQhJDQADQCAEKAIAKALgFigC4BYoAuAWKALgFigC4BYoAuAWKALgFiIAQeAWaiEEIAVBCGsiBQ0ACwsgAiAGQYQCbGpBMGoiAigCACIBBEAgAigCBCABQQN0QQQQpwQLIAIoAgwiAQRAIAIoAhAgAUECdEEEEKcECyACKAIYIgEEQCACKAIcIAFBAnRBBBCnBAsgAigCKCIBBEAgAigCLCABQQN0QQQQpwQLIAIoAjQiAQRAIAIoAjggAUECdEEEEKcECyACKAJAIgEEQCACKAJEIAFBAnRBBBCnBAsgAigCUCIBBEAgAigCVCABQQN0QQQQpwQLIAIoAlwiAQRAIAIoAmAgAUECdEEEEKcECyACKAJoIgEEQCACKAJsIAFBAnRBBBCnBAsgAigCgAEiAQRAIAIoAoQBIAFBAXRBARCnBAsgAigCjAEiAQRAIAIoApABIAFBARCnBAsgAigCmAEiAQRAIAIoApwBIAFBARCnBAsgAigCpAEiAQRAIAIoAqgBIAFBAnRBBBCnBAsgAigCsAEiAQRAIAIoArQBIAFBAnRBBBCnBAsgAigCvAEiAQRAIAIoAsABIAFBA3RBBBCnBAsgAigCyAEiAQRAIAIoAswBIAFBAnRBBBCnBAsgAigC1AEiAQRAIAIoAtgBIAFBAnRBBBCnBAsgAigC6AEiAQRAIAIoAuwBIAFBARCnBAtBACECIAdBAWsiBw0ACwwBCyADRQRAIAIhAAwBCwJAIANBB3EiBEUEQCACIQAgAyEBDAELIAIhACADIQEDQCABQQFrIQEgACgC4BYhACAEQQFrIgQNAAsLIANBCEkNAANAIAAoAuAWKALgFigC4BYoAuAWKALgFigC4BYoAuAWKALgFiEAIAFBCGsiAQ0ACwtBACEBA0AgACgCACAAQZAXQeAWIAEbQQQQpwQgAUEBayEBIgANAAsLC/kHAhR/AX4CQAJAAkACQAJAIAEoAgBFBEAgAS0ADg0BIAEgAS0ADCIGQQFzOgAMIAEoAjQhAyABKAIwIQQCQCABKAIEIgJFDQAgAiADTwRAIAIgA0YNAQwHCyACIARqLAAAQb9/TA0GCwJAIAIgA0cEQAJ/IAIgBGoiBCwAACIDQQBOBEAgA0H/AXEMAQsgBC0AAUE/cSEHIANBH3EhBSAFQQZ0IAdyIANBX00NABogBC0AAkE/cSAHQQZ0ciEHIAcgBUEMdHIgA0FwSQ0AGiAFQRJ0QYCA8ABxIAQtAANBP3EgB0EGdHJyCyEDQQEhBSAGQQFxDQECQCADQYABSQ0AQQIhBSADQYAQSQ0AQQNBBCADQYCABEkbIQULIAAgAjYCBCAAQQE2AgAgACACIAVqIgA2AgggASAANgIEDwsgBkEBcUUNBQsgACACNgIIIAAgAjYCBCAAQQA2AgAPCyABKAIcIgYgASgCNCIERg0BIAEoAjAhCgJAIAQiAyAGIAEoAjwiCEEBayIQaiICTQ0AIAEoAjghDSAGIApqIREgBiAIaiEHIAYgASgCECILayESIAEoAhgiAyAGaiEOIAggA2shEyABKQMIIRYgASgCJCIPQX9GIQkgDyEFIAYhAwNAIAMgBkcNAQJAAkAgFiACIApqMQAAiKdBAXFFBEAgASAHNgIcIAchAyAJDQJBACECDAELIAsgBSALIAUgC0sbIAkbIgMgCCADIAhLGyEMIAMhAgJAAkACQANAIAIgDEYEQEEAIAUgCRshDCALIQIDQCACIAxNBEAgASAHNgIcIA9Bf0cEQCABQQA2AiQLIAAgBzYCCCAAIAY2AgQgAEEANgIADwsgAkEBayICIAhPDQUgAiAGaiIDIARPDQMgAiANai0AACADIApqLQAARg0ACyABIA42AhwgEyECIA4hAyAJRQ0FDAYLIAIgBmogBE8NAiACIBFqIRQgAiANaiACQQFqIQItAAAgFC0AAEYNAAsgAiASaiEDIAkNBEEAIQIMAwsgAyAEQcCvwgAQrQIACyAEIAMgBmoiACAAIARJGyAEQdCvwgAQrQIACyACIAhBsK/CABCtAgALIAEgAjYCJCACIQULIAMgEGoiAiAESQ0ACyAEIQMLQQAhBSADRQ0CIAMhAgNAAkAgAiAETwRAIAIgBEcNASAEIQUMBQsgAiAKaiwAAEG/f0wNACACIQUMBAsgAkEBaiICDQALDAILIABBAjYCAA8LIABBAjYCAA8LIAAgBTYCCCAAIAY2AgQgAEEBNgIAIAEgAyAFIAMgBUsbNgIcDwsgAEECNgIAIAFBAToADg8LIAQgAyACIANBmLHCABDsAwAL1wgCBn8BfiMAQTBrIgUkACABQQA6ACUgAUEANgIUIAUgAzYCGCAFIAI2AhQgBUEANgIcIAVBIGogBUEUakEEEE8CQAJAAkACQAJAAkAgBSgCIEUEQCABIAUtAChBBWoiAjoAJQJAIAJB/wFxIgMgBEH/AXFNBEAgAw0BQYCAgIB4IQMMBgsgBSAEOgAFIAUgAjoABEGBgICAeCEDDAULIAFBDGohB0EBIAJ0IQlBACECA0ACQAJAAkACQCAJIAJrQQFqIgMEQCAFQSBqIAVBFGpBICADZyIGayIIEE8gBSkDKCELAkACQCAFKAIgRQRAIAunIgRBfyAGQR9zdEF/cyIKcSIGQX8gCHRBf3MgA2siA0kNASAEIANBACAEIApLG2shBgwCCyAFKAIkIQEgBSALNwIIIAUgATYCBAwJCyAFKAIcIgNFDQIgBSADQQFrNgIcCyAGQQFrIQMgASgCFCIEIAEoAgxGBEAgB0GIgsIAELQBCyABKAIQIARBAnRqIAM2AgAgASAEQQFqIgQ2AhQgA0UEQANAIAVBIGogBUEUakECEE8gBSkDKCELIAUoAiANBCABKAIUIgMgAyALpyIGaiIESQRAIAYgBygCACADa0sEQCAHIAMgBkEEQQQQkgEgASgCFCEDCyABKAIQIgggA0ECdGohBCAGQQJPBH8gBEEAIAZBAnRBBGsQWhogAyAGaiIEQQFrIQMgCCAEQQJ0akEEawUgBAtBADYCACADQQFqIQQLIAEgBDYCFCAGQQNGDQAMBgsACyADQQBKDQMgBkUEQCACQQFqIQIMBQtBmILCAEEcQbSCwgAQ7QIAC0Gg/8EAQRdBnIDCABDtAgALQdDiwQBBGkHU48EAEO0CAAsgBSgCJCEBIAUgCzcCCCAFIAE2AgQMBAsgAiADaiECCyACIAlJDQALIAIgCUYNAkEAIQYgBygCCCIEQQJ0IQMCQAJAIARB/////wNLIANB/P///wdLcg0AIAcoAgQhCAJ/IANFBEBBBCEHQQAMAQtBheXCAC0AABpBBCEGIANBBBD1AyIHRQ0BIAQLIQYgByAIIAMQOyEDIAUgBDYCCCAFIAM2AgQgBSAGNgIADAELIAYgA0GU/sEAENcDAAsgBSAJNgIQIAUgAjYCDCAFKAIAIgNBhYCAgHhHDQQgBSgCBCEDDAMLIAUgBSkDKDcCCCAFIAUoAiQ2AgQLQYKAgIB4IQMMAgsgAS0AJEEBaiAETwRAIAUoAhwiAkEDdiACQQdxQQBHaiEDDAELIAUgBDYCBEGEgICAeCEDDAELIAUgARApIAUoAgBBhYCAgHhHDQEgAEGFgICAeDYCACAAIAM2AgQMAgsgACAFKQIINwIIIABBEGogBUEQaigCADYCACAAIAUoAgQ2AgQgACADNgIADAELIAAgBSkCADcCACAAQRBqIAVBEGooAgA2AgAgAEEIaiAFQQhqKQIANwIACyAFQTBqJAAL0QYBCn8CQAJAAkACQAJAAkACQAJAAkACQCAAKAIIIgcgACgCDCIITwRAIAAoAgQiCyABIAdqIglJDQQgCyAJayIGIAIgAiAGSxshCiAAKAIAIgUgCGohBCAFIAdqIAFqIQMgCkEFSSAHIAhrIgcgBiAGIAdLGyIMQQRPcQ0BIAwgCkEDakF8cSIBTw0CIAQgAyAKEDsaDAMLIAAoAgQiCyAIayIGIAIgAiAGSxshCSAAKAIAIgUgCGohAyABIAdqIgEgBWohBCAJQQVJIAYgCCABayIKIAYgCkkbIgFBBE9xDQYgASAJQQNqQXxxIgFJBEAgAyAEIAkQOxoMCAsgAUEATA0HIAEgBGohCSAEIQEDQCADIAEoAAA2AAAgA0EEaiEDIAFBBGoiASAJSQ0ACwwHCyAEIAMoAAA2AAAMAQsgAUEATA0AIAEgA2ohCiAEIQEDQCABIAMoAAA2AAAgAUEEaiEBIANBBGoiAyAKSQ0ACwsgAiAGTQ0FIAQgBmohBCACIAZrIgNBBE0gByAGayIBIAggASAISRsiAUEDS3ENASABIANBA2pBfHEiAUkEQCAEIAUgAxA7GgwGCyABQQBMDQUgASAFaiEBIAggC2ogCWshBANAIAQgBWogBSgAADYAACAFQQRqIgUgAUkNAAsMBQsgCwRAIAcgCGsiASAIIAkgC3AiA2siBCABIARJGyEEIAAoAgAiBSAIaiEBIAMgBWohAyACQQRNIARBA0txDQIgBCACQQNqQXxxIgRJBEAgASADIAIQOxoMBwsgBEEATA0GIAMgBGohBANAIAEgAygAADYAACABQQRqIQEgA0EEaiIDIARJDQALDAULQdDpwQAQlAMACyAEIAUoAAA2AAAMAwsgASADKAAANgAADAMLIAMgBCgAADYAAAsgAiAGTQ0AIAQgBmohAwJAIAIgBmsiBEEETSAHIAogBmsiASABIAdLGyIBQQNLcUUEQCABIARBA2pBfHEiB08NASAFIAMgBBA7GgwCCyAFIAMoAAA2AAAMAQsgB0EATA0AIAMgB2ohAQNAIAUgAygAADYAACAFQQRqIQUgA0EEaiIDIAFJDQALCyALDQBB4OnBABCUAwALIAAgAiAIaiALcDYCDAvGBgEIfwJAAkAgASAAQQNqQXxxIgMgAGsiCEkNACABIAhrIgZBBEkNACAGQQNxIQdBACEBAkAgACADRiIJDQACQCAAIANrIgVBfEsEQEEAIQMMAQtBACEDA0AgASAAIANqIgIsAABBv39KaiACQQFqLAAAQb9/SmogAkECaiwAAEG/f0pqIAJBA2osAABBv39KaiEBIANBBGoiAw0ACwsgCQ0AIAAgA2ohAgNAIAEgAiwAAEG/f0pqIQEgAkEBaiECIAVBAWoiBQ0ACwsgACAIaiEAAkAgB0UNACAAIAZBfHFqIgMsAABBv39KIQQgB0EBRg0AIAQgAywAAUG/f0pqIQQgB0ECRg0AIAQgAywAAkG/f0pqIQQLIAZBAnYhBSABIARqIQQDQCAAIQMgBUUNAkHAASAFIAVBwAFPGyIGQQNxIQcgBkECdCEIQQAhAiAFQQRPBEAgACAIQfAHcWohCSAAIQEDQCABKAIAIgBBf3NBB3YgAEEGdnJBgYKECHEgAmogASgCBCIAQX9zQQd2IABBBnZyQYGChAhxaiABKAIIIgBBf3NBB3YgAEEGdnJBgYKECHFqIAEoAgwiAEF/c0EHdiAAQQZ2ckGBgoQIcWohAiABQRBqIgEgCUcNAAsLIAUgBmshBSADIAhqIQAgAkEIdkH/gfwHcSACQf+B/AdxakGBgARsQRB2IARqIQQgB0UNAAsCfyADIAZB/AFxQQJ0aiIAKAIAIgFBf3NBB3YgAUEGdnJBgYKECHEiASAHQQFGDQAaIAEgACgCBCIBQX9zQQd2IAFBBnZyQYGChAhxaiIBIAdBAkYNABogACgCCCIAQX9zQQd2IABBBnZyQYGChAhxIAFqCyIBQQh2Qf+BHHEgAUH/gfwHcWpBgYAEbEEQdiAEag8LIAFFBEBBAA8LIAFBA3EhAwJAIAFBBEkEQAwBCyABQXxxIQUDQCAEIAAgAmoiASwAAEG/f0pqIAFBAWosAABBv39KaiABQQJqLAAAQb9/SmogAUEDaiwAAEG/f0pqIQQgBSACQQRqIgJHDQALCyADRQ0AIAAgAmohAQNAIAQgASwAAEG/f0pqIQQgAUEBaiEBIANBAWsiAw0ACwsgBAvOBgEOfyMAQRBrIgYkAEEBIQwCQCACKAIcIglBIiACKAIgIg0oAhAiDhEAAA0AAkAgAUUEQEEAIQIMAQtBACABayEPIAAhByABIQMCQAJ/AkACQANAIAMgB2ohEEEAIQICQANAIAIgB2oiCi0AACIFQf8Aa0H/AXFBoQFJIAVBIkZyIAVB3ABGcg0BIAMgAkEBaiICRw0ACyADIAhqDAQLIApBAWohBwJAIAosAAAiC0EATgRAIAtB/wFxIQMMAQsgBy0AAEE/cSEDIAtBH3EhBSAKQQJqIQcgC0FfTQRAIAVBBnQgA3IhAwwBCyAHLQAAQT9xIANBBnRyIQMgCkEDaiEHIAtBcEkEQCADIAVBDHRyIQMMAQsgBUESdEGAgPAAcSAHLQAAQT9xIANBBnRyciEDIApBBGohBwsgBkEEaiADQYGABBA5AkACQCAGLQAEQYABRg0AIAYtAA8gBi0ADmtB/wFxQQFGDQAgBCACIAhqIgVLDQECQCAERQ0AIAEgBE0EQCABIARHDQMMAQsgACAEaiwAAEG/f0wNAgsCQCAFRQ0AIAEgBU0EQCAFIA9qRQ0BDAMLIAAgCGogAmosAABBv39MDQILIAkgACAEaiAIIARrIAJqIA0oAgwiBRECAA0DAkAgBi0ABEGAAUYEQCAJIAYoAgggDhEAAEUNAQwFCyAJIAYtAA4iBCAGQQRqaiAGLQAPIARrIAURAgANBAsCf0EBIANBgAFJDQAaQQIgA0GAEEkNABpBA0EEIANBgIAESRsLIAhqIAJqIQQLAn9BASADQYABSQ0AGkECIANBgBBJDQAaQQNBBCADQYCABEkbCyAIaiIFIAJqIQggECAHayIDRQ0DDAELCyAAIAEgBCAFQYDGwgAQ7AMACwwECyACIAVqCyICIARJDQBBACEDAkAgBEUNACABIARNBEAgBCIDIAFHDQIMAQsgBCIDIABqLAAAQb9/TA0BCyACRQRAQQAhAgwCCyABIAJNBEAgAyEEIAEgAkYNAgwBCyADIQQgACACaiwAAEG/f0oNAQsgACABIAQgAkGQxsIAEOwDAAsgCSAAIANqIAIgA2sgDSgCDBECAA0AIAlBIiAOEQAAIQwLIAZBEGokACAMC8EHAQF/IwBBMGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkACQCAAKAIAQQFrDgwBAgMEBQYHCAkKCwwACyACIABBBGo2AhQgAkEBNgIcIAJB8KfBADYCGCACQgE3AiQgAiACQRRqrUKAgICAsDeENwMAIAIgAjYCICABKAIcIAEoAiAgAkEYahBFDAwLIAIgAEEIajYCFCACQQE2AhwgAkHwp8EANgIYIAJCATcCJCACIAJBFGqtQoCAgIDAN4Q3AwAgAiACNgIgIAEoAhwgASgCICACQRhqEEUMCwsgAiAAQQhqNgIUIAJBAjYCHCACQeC0wQA2AhggAkICNwIkIAJCsKbBgMA1NwMIIAIgAkEUaq1CgICAgNA1hDcDACACIAI2AiAgASgCHCABKAIgIAJBGGoQRQwKCyACIABBBGo2AhQgAkEBNgIcIAJB8KfBADYCGCACQgE3AiQgAiACQRRqrUKAgICA0DeENwMAIAIgAjYCICABKAIcIAEoAiAgAkEYahBFDAkLIAIgAEEEajYCFCACQQE2AhwgAkGUtcEANgIYIAJCATcCJCACIAJBFGqtQoCAgIDgN4Q3AwAgAiACNgIgIAEoAhwgASgCICACQRhqEEUMCAsgAiAAQQRqNgIUIAJBATYCHCACQby1wQA2AhggAkIBNwIkIAIgAkEUaq1CgICAgPA3hDcDACACIAI2AiAgASgCHCABKAIgIAJBGGoQRQwHCyACIABBBGo2AhQgAkEBNgIcIAJB4LXBADYCGCACQgE3AiQgAiACQRRqrUKAgICAkDWENwMAIAIgAjYCICABKAIcIAEoAiAgAkEYahBFDAYLIAEoAhxB6LXBAEExIAEoAiAoAgwRAgAMBQsgAiAAQQhqNgIUIAJBATYCHCACQci2wQA2AhggAkIBNwIkIAIgAkEUaq1CgICAgIA4hDcDACACIAI2AiAgASgCHCABKAIgIAJBGGoQRQwECyACIABBBGo2AhQgAkEBNgIcIAJBjLfBADYCGCACQgE3AiQgAiACQRRqrUKAgICAkDWENwMAIAIgAjYCICABKAIcIAEoAiAgAkEYahBFDAMLIAEoAhxBlLfBAEE9IAEoAiAoAgwRAgAMAgsgASgCHEHRt8EAQc8AIAEoAiAoAgwRAgAMAQsgAiAAQQRqNgIUIAJBAjYCHCACQYC5wQA2AhggAkIBNwIkIAIgAkEUaq1CgICAgJA2hDcDACACIAI2AiAgASgCHCABKAIgIAJBGGoQRQsgAkEwaiQAC/0GAgJ/AX4jAEEwayICJAACfwJAAkACQAJAAkACQAJAAkACQAJAAkBBAyAAKAIAQe3///8HaiIDIANBC08bQQFrDgoBAgMEBQYHCAkKAAsgASgCHEGQucEAQdgAIAEoAiAoAgwRAgAMCgsgASgCHEHoucEAQd0AIAEoAiAoAgwRAgAMCQsgAiAAQQRqNgIEIAJBATYCDCACQfCnwQA2AgggAkIBNwIUIAIgAkEEaq1CgICAgJA4hDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwICyACIAA2AgQgAkEBNgIMIAJB8KfBADYCCCACQgE3AhQgAiACQQRqrUKAgICAoDeENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAcLIAIgAEEEajYCBCACQQE2AgwgAkHwp8EANgIIIAJCATcCFCACIAJBBGqtQoCAgICgOIQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMBgsgASgCHEHFusEAQTkgASgCICgCDBECAAwFCyACIABBBGo2AgQgAkECNgIMIAJBqLvBADYCCCACQgE3AhQgAiACQQRqrUKAgICA8DWENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAQLIAIgAEEEajYCACACIABBCGo2AgQgAkEDNgIMIAJB6LvBADYCCCACQgI3AhQgAkKAgICA8DUiBCACrYQ3AyggAiAEIAJBBGqthDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwDCyACIABBBGo2AgQgAkECNgIMIAJB8LzBADYCCCACQgE3AhQgAiACQQRqrUKAgICAsDiENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAILIAIgAEEEajYCACACIABBCGo2AgQgAkECNgIMIAJBsL3BADYCCCACQgI3AhQgAkKAgICAwDgiBCACQQRqrYQ3AyggAiAEIAKthDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwBCyACIABBBGo2AgAgAiAAQQhqNgIEIAJBAjYCDCACQfS9wQA2AgggAkICNwIUIAJCgICAgPA1IgQgAkEEaq2ENwMoIAIgBCACrYQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEULIAJBMGokAAuXBgEIfyMAQTBrIgEkAAJAAn8CQAJAAkAgACgCACIFBEAgACgCCCIEIAQgACgCBCIHIAQgB0sbayEIIAUhAwNAIAIgCGpFDQMgACACIARqQQFqNgIIIAJBAWohAiADIARqIANBAWohAy0AACIGQTBrQf8BcUEKSSAGQeEAa0H/AXFBBklyDQALIAZB3wBHDQIgAiAEakEBayEGAkAgBARAIAQgB08EQCAGIAdLDQgMAgsgBiAHSw0HIAQgBWosAABBv39KDQEMBwsgBiAHSw0GCyACQQFrIgJBAXFFBEAgAUKAgICAIDcCGCABIAMgBGpBAWsiAzYCFCABIAI2AhAgASAEIAVqIgU2AgwDQCABQQxqECYiBEGAgMQASQ0ACyAEQYGAxABGDQILIAAoAhAiA0UNA0HEucIAQRAgAxDVBEUNA0EBDAQLQQAgACgCECIARQ0DGkHtucIAQQEgABDVBAwDC0EAIAAoAhAiAEUNAhpBASAAQSIQ6wMNAhogAUKAgICAIDcCGCABIAM2AhQgASACNgIQIAEgBTYCDCABQQxqECYiAkGBgMQARwRAIAFBKGohBANAAkACQAJAAkAgAkGAgMQARwRAIAJBJ0YNASABQSBqIAIQPCABLQAgQYABRw0CQYABIQMDQAJAIANBgAFHBEAgAS0AKiIFIAEtACtPDQcgASAFQQFqOgAqIAFBIGogBWotAAAhAgwBC0EAIQMgBEEANgIAIAEoAiQhAiABQgA3AyALIAAgAhDrA0UNAAsMAwtBgLDCAEErIAFBIGpB8K/CAEHQrsIAEKACAAsgAEEnEOsDRQ0CDAELIAEtACoiAiABLQArIgMgAiADSxshAwNAIAIgA0YNAiABQSBqIAJqIQUgAkEBaiECIAAgBS0AABDrA0UNAAsLQQEMBQsgAUEMahAmIgJBgYDEAEcNAAsLIABBIhDrAwwCCyAAKAIQIgNFDQBBxLnCAEEQIAMQ1QRFDQBBAQwBCyAAQQA6AAQgAEEANgIAQQALIAFBMGokAA8LIAUgByAEIAZB9LjCABDsAwALrQUCBn8CfiAFQf8BcSIKIQcCQCABKAIQIgkgAS0AFCIGaiIIQQBKBEACQCAHIAhNBEAgCUEATCAGIApPcg0BA0AgCUEBayIIQQN2IQdBwAAgBkEHaiILQXhxayEFAkAgCEE/TQRAIAEgByAFEIgBIAEoAhAhCSABLQAUIQYMAQsCQCABKAIEIgggByALQfgBcUEDdmpBB2siB08EQCAIIAdrIghBB0sNAUEIIAhBxN7BABCrBAALIAcgCEHU3sEAEKoEAAsgASAFIAZqIgY6ABQgASAJIAVB/wFxayIJNgIQIAEgASgCACAHaikAADcDCAsgBkH/AXEgCk8NAiAJQQBKDQALDAELAn5CACACQf8BcSIFRQ0AGiAFIAZNBEAgASAGIAJrIgU6ABRCfyACrYZCf4UgASkDCCAFQT9xrYiDDAELIAEgAhBbCyENAkAgA0H/AXEiBUUNACAFIAEtABQiAksEQCABIAMQWyEMDAELIAEgAiADayICOgAUQn8gA62GQn+FIAEpAwggAkE/ca2IgyEMCyAAAn5CACAEQf8BcSICRQ0AGiACIAEtABQiA00EQCABIAMgBGsiAjoAFEJ/IASthkJ/hSABKQMIIAJBP3GtiIMMAQsgASAEEFsLNwMQDAILIAJB/wFxBH4gASAGIAJrIgY6ABRCfyACrYZCf4UgASkDCCAGQT9xrYiDBUIACyENIANB/wFxBEAgASAGIANrIgY6ABRCfyADrYZCf4UgASkDCCAGQT9xrYiDIQwLIAAgBEH/AXEEfiABIAYgBGsiAjoAFEJ/IASthkJ/hSABKQMIIAJBP3GtiIMFQgALNwMQDAELIABCADcDACABIAkgB2s2AhAgAEEIakIANwMAIABBEGpCADcDAA8LIAAgDDcDCCAAIA03AwAL7AUBB38CfyABRQRAIAAoAhQhCEEtIQogBUEBagwBC0ErQYCAxAAgACgCFCIIQQFxIgEbIQogASAFagshBwJAIAhBBHFFBEBBACECDAELIANBEE8EQCACIAMQLyAHaiEHDAELIANFDQAgA0EDcSEJAkAgA0EESQRAQQAhAQwBCyADQQxxIQxBACEBA0AgASACIAZqIgssAABBv39KaiALQQFqLAAAQb9/SmogC0ECaiwAAEG/f0pqIAtBA2osAABBv39KaiEBIAwgBkEEaiIGRw0ACwsgCQRAIAIgBmohBgNAIAEgBiwAAEG/f0pqIQEgBkEBaiEGIAlBAWsiCQ0ACwsgASAHaiEHCyAAKAIARQRAIAAoAhwiASAAKAIgIgAgCiACIAMQ/QIEQEEBDwsgASAEIAUgACgCDBECAA8LAkACQAJAIAcgACgCBCIGTwRAIAAoAhwiASAAKAIgIgAgCiACIAMQ/QJFDQFBAQ8LIAhBCHFFDQEgACgCECELIABBMDYCECAALQAYIQxBASEBIABBAToAGCAAKAIcIgggACgCICIJIAogAiADEP0CDQIgBiAHa0EBaiEBAkADQCABQQFrIgFFDQEgCEEwIAkoAhARAABFDQALQQEPCyAIIAQgBSAJKAIMEQIABEBBAQ8LIAAgDDoAGCAAIAs2AhBBAA8LIAEgBCAFIAAoAgwRAgAhAQwBCyAGIAdrIQcCQAJAAkBBASAALQAYIgEgAUEDRhsiAUEBaw4CAAECCyAHIQFBACEHDAELIAdBAXYhASAHQQFqQQF2IQcLIAFBAWohASAAKAIQIQggACgCICEGIAAoAhwhAAJAA0AgAUEBayIBRQ0BIAAgCCAGKAIQEQAARQ0AC0EBDwtBASEBIAAgBiAKIAIgAxD9Ag0AIAAgBCAFIAYoAgwRAgANAEEAIQEDQCABIAdGBEBBAA8LIAFBAWohASAAIAggBigCEBEAAEUNAAsgAUEBayAHSQ8LIAELrgUBB38CQCAAKAIAIgkgACgCCCIEcgRAAkAgBEEBcUUNACABIAJqIQcCQCAAKAIMIgZFBEAgASEEDAELIAEhBANAIAQiAyAHRg0CAn8gA0EBaiADLAAAIghBAE4NABogA0ECaiAIQWBJDQAaIANBA2ogCEFwSQ0AGiADQQRqCyIEIANrIAVqIQUgBkEBayIGDQALCyAEIAdGDQAgBCwAABogBSACAn8CQCAFRQ0AIAIgBU0EQCACIAVGDQFBAAwCCyABIAVqLAAAQUBODQBBAAwBCyABCyIDGyECIAMgASADGyEBCyAJRQ0BIAAoAgQhBwJAIAJBEE8EQCABIAIQLyEDDAELIAJFBEBBACEDDAELIAJBA3EhBgJAIAJBBEkEQEEAIQNBACEFDAELIAJBDHEhCEEAIQNBACEFA0AgAyABIAVqIgQsAABBv39KaiAEQQFqLAAAQb9/SmogBEECaiwAAEG/f0pqIARBA2osAABBv39KaiEDIAggBUEEaiIFRw0ACwsgBkUNACABIAVqIQQDQCADIAQsAABBv39KaiEDIARBAWohBCAGQQFrIgYNAAsLAkAgAyAHSQRAIAcgA2shBgJAAkACQCAALQAYIgRBACAEQQNHGyIDQQFrDgIAAQILIAYhA0EAIQYMAQsgBkEBdiEDIAZBAWpBAXYhBgsgA0EBaiEDIAAoAhAhBSAAKAIgIQQgACgCHCEAA0AgA0EBayIDRQ0CIAAgBSAEKAIQEQAARQ0AC0EBDwsMAgsgACABIAIgBCgCDBECAARAQQEPC0EAIQMDQCADIAZGBEBBAA8LIANBAWohAyAAIAUgBCgCEBEAAEUNAAsgA0EBayAGSQ8LIAAoAhwgASACIAAoAiAoAgwRAgAPCyAAKAIcIAEgAiAAKAIgKAIMEQIAC7gFAgh/AX4CQCABKAIIIgIgASgCBCIETw0AIAEoAgAgAmotAABB9QBHDQBBASEHIAEgAkEBaiICNgIICwJAAkAgAiAETw0BIAEoAgAiBSACai0AAEEwayIDQf8BcSIGQQlLDQEgASACQQFqIgI2AgggBkUEQEEAIQMMAQsgAiAEIAIgBEsbIQYgA0H/AXEhAwNAIAIgBkYNASACIAVqLQAAQTBrQf8BcSIIQQlLDQEgASACQQFqIgI2AgggA61CCn4iCkIgiFAEQCAIIAqnIghqIgMgCE8NAQsLDAELAkAgAiAETw0AIAIgBWotAABB3wBHDQAgASACQQFqIgI2AggLAkACQAJAAkAgAiACIANqIgZNBEAgASAGNgIIIAQgBkkNBSACRQ0CIAIgBEkNAQwCCwwECyACIAVqLAAAQb9/TA0BCyAGRSAEIAZNckUEQCAFIAZqLAAAQb9/TA0BCyACIAVqIQQgBw0BIABCATcCCCAAIAM2AgQgACAENgIADwsgBSAEIAIgBkGEucIAEOwDAAtBACEHQQAgA2shASAFIAZqIgZBAWshCEEAIQICQAJAAn8DQCABIAJGBEAgBCEBQQEMAgsgAiAIaiACQQFrIgUhAi0AAEHfAEcNAAsgAyAFaiEHAkACQEEAIANrIAVGDQAgAyAHTQRAIAUNBEEAIQIgA0F/cyAFRw0BDAILIAUgBmosAABBv39MDQMLIAMgB0EBaiIBTQRAIAMhAiAFQX9GDQEMBAsgBSAGakEBaiwAAEG/f0wNAyABIQILIAIgBGohASADIAJrIQMgBAshAiADRQRADAMLIAAgAzYCDCAAIAE2AgggACAHNgIEIAAgAjYCAA8LIAQgA0EAIAdBlLnCABDsAwALIAQgAyABIANBpLnCABDsAwALIABBADYCACAAQQA6AAQL4gUCB38CfiMAQSBrIgQkAAJ/AkACQCAAKAIAIgNFDQAgACgCCCICIAAoAgQiBU8NACACIANqIgEtAABBwgBGBEAgACACQQFqIgE2AggCQAJAAkACQAJAIAKtAn4CQCABIAVJBEAgASADai0AAEHfAEYNAQsgASAFIAEgBUsbIQcDQAJAIAEgBUkEQCABIANqLQAAQd8ARg0BCyABIAdGDQQCQCABIANqLQAAIgJBMGsiBkH/AXFBCkkNACACQeEAa0H/AXFBGk8EQCACQcEAa0H/AXFBGk8NBiACQR1rIQYMAQsgAkHXAGshBgsgACABQQFqIgE2AgggBCAIEJsCIAQpAwhCAFINBCAEKQMAIgkgBq1C/wGDfCIIIAlaDQEMBAsLIAAgAUEBajYCCCAIQn9RDQIgCEIBfAwBCyAAIAJBAmo2AghCAAsiCFgNAEEBIQEgACgCECECIAAoAgxBAWoiA0H0A0sNASACRQ0EIARBGGoiAiAAQQhqIgEpAgA3AwAgACADNgIMIAEgCD4CACAEIAApAgA3AxAgABA4IAEgAikDADcCACAAIAQpAxA3AgBB/wFxDAgLQQAhASAAKAIQIgJFDQJBxLnCAEEQIAIQ1QQNAQwCCyACRQ0BQdS5wgBBGSACENUERQ0BC0ECDAULIAAgAToABCAAQQA2AgALQQAMAwsgAS0AAEHJAEcNACAAIAJBAWo2AgggAEEAEB9FDQFBAgwCC0ECQQAgAEEAEB8bDAELAkAgACgCECIBRQ0AQfizwgBBASABENUERQ0AQQIMAQtBASAAKAIAIgFFDQAaQQAhAgJAA0ACQCAAKAIIIgMgACgCBE8NACABIANqLQAAQcUARw0AIAAgA0EBajYCCEEBDAMLAkAgAkUNACAAKAIQIgNFDQBBAkH1ucIAQQIgAxDVBA0DGgsgABBZDQEgAkEBayECIAAoAgAiAQ0AC0EBDAELQQILIARBIGokAAvPBgEDfyMAQSBrIgMkAAJAAkACQAJAAkACQAJAAkACQAJAAkACQCABDigGAQEBAQEBAQECBAEBAwEBAQEBAQEBAQEBAQEBAQEBAQEBCAEBAQEHAAsgAUHcAEYNBAsgAkEBcUUgAUGABklyDQcgARBcRQ0HIANBADoACiADQQA7AQggAyABQRR2QfzAwgBqLQAAOgALIAMgAUEEdkEPcUH8wMIAai0AADoADyADIAFBCHZBD3FB/MDCAGotAAA6AA4gAyABQQx2QQ9xQfzAwgBqLQAAOgANIAMgAUEQdkEPcUH8wMIAai0AADoADCABQQFyZ0ECdiICIANBCGoiBWoiBEH7ADoAACAEQQFrQfUAOgAAIAUgAkECayICakHcADoAACADQRBqIgQgAUEPcUH8wMIAai0AADoAACAAQQo6AAsgACACOgAKIAAgAykCCDcCACADQf0AOgARIABBCGogBC8BADsBAAwJCyAAQYAEOwEKIABCADcBAiAAQdzoATsBAAwICyAAQYAEOwEKIABCADcBAiAAQdzkATsBAAwHCyAAQYAEOwEKIABCADcBAiAAQdzcATsBAAwGCyAAQYAEOwEKIABCADcBAiAAQdy4ATsBAAwFCyAAQYAEOwEKIABCADcBAiAAQdzgADsBAAwECyACQYACcUUNASAAQYAEOwEKIABCADcBAiAAQdzOADsBAAwDCyACQYCABHENAQsgARC6AUUEQCADQQA6ABYgA0EAOwEUIAMgAUEUdkH8wMIAai0AADoAFyADIAFBBHZBD3FB/MDCAGotAAA6ABsgAyABQQh2QQ9xQfzAwgBqLQAAOgAaIAMgAUEMdkEPcUH8wMIAai0AADoAGSADIAFBEHZBD3FB/MDCAGotAAA6ABggAUEBcmdBAnYiAiADQRRqIgVqIgRB+wA6AAAgBEEBa0H1ADoAACAFIAJBAmsiAmpB3AA6AAAgA0EcaiIEIAFBD3FB/MDCAGotAAA6AAAgAEEKOgALIAAgAjoACiAAIAMpAhQ3AgAgA0H9ADoAHSAAQQhqIAQvAQA7AQAMAgsgACABNgIEIABBgAE6AAAMAQsgAEGABDsBCiAAQgA3AQIgAEHcxAA7AQALIANBIGokAAvpBQEBfyMAQTBrIgIkAAJ/AkACQAJAAkACQAJAAkACQCAALQAAQQFrDgcBAgMEBQYHAAsgAiAAQQRqNgIEIAJBATYCDCACQZSqwQA2AgggAkIBNwIUIAIgAkEEaq1CgICAgJA1hDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwHCyACIABBBGo2AgQgAkEBNgIMIAJBuKrBADYCCCACQgE3AhQgAiACQQRqrUKAgICAkDaENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAYLIAIgAEEEajYCBCACQQE2AgwgAkHoqsEANgIIIAJCATcCFCACIAJBBGqtQoCAgICQNYQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMBQsgAiAAQQFqNgIEIAJBATYCDCACQfCnwQA2AgggAkIBNwIUIAIgAkEEaq1CgICAgOA1hDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwECyACIABBBGo2AgQgAkEBNgIMIAJBmKvBADYCCCACQgE3AhQgAiACQQRqrUKAgICAkDWENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAMLIAIgAEEEajYCBCACQQE2AgwgAkHEq8EANgIIIAJCATcCFCACIAJBBGqtQoCAgICQNYQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMAgsgAiAAQQRqNgIEIAJBATYCDCACQfSrwQA2AgggAkIBNwIUIAIgAkEEaq1CgICAgJA1hDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwBCyACIABBBGo2AgAgAiAAQQhqNgIEIAJBAzYCDCACQbyswQA2AgggAkICNwIUIAIgAkEEaq1CgICAgIA2hDcDKCACIAKtQoCAgICQNoQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEULIAJBMGokAAuMBQEIfwJAIAJBEEkEQCAAIQMMAQsCQCAAQQAgAGtBA3EiBmoiBSAATQ0AIAAhAyABIQQgBgRAIAYhBwNAIAMgBC0AADoAACAEQQFqIQQgA0EBaiEDIAdBAWsiBw0ACwsgBkEBa0EHSQ0AA0AgAyAELQAAOgAAIANBAWogBEEBai0AADoAACADQQJqIARBAmotAAA6AAAgA0EDaiAEQQNqLQAAOgAAIANBBGogBEEEai0AADoAACADQQVqIARBBWotAAA6AAAgA0EGaiAEQQZqLQAAOgAAIANBB2ogBEEHai0AADoAACAEQQhqIQQgA0EIaiIDIAVHDQALCyAFIAIgBmsiB0F8cSIIaiEDAkAgASAGaiIEQQNxRQRAIAMgBU0NASAEIQEDQCAFIAEoAgA2AgAgAUEEaiEBIAVBBGoiBSADSQ0ACwwBCyADIAVNDQAgBEEDdCICQRhxIQYgBEF8cSIJQQRqIQFBACACa0EYcSEKIAkoAgAhAgNAIAUgAiAGdiABKAIAIgIgCnRyNgIAIAFBBGohASAFQQRqIgUgA0kNAAsLIAdBA3EhAiAEIAhqIQELAkAgAyACIANqIgZPDQAgAkEHcSIEBEADQCADIAEtAAA6AAAgAUEBaiEBIANBAWohAyAEQQFrIgQNAAsLIAJBAWtBB0kNAANAIAMgAS0AADoAACADQQFqIAFBAWotAAA6AAAgA0ECaiABQQJqLQAAOgAAIANBA2ogAUEDai0AADoAACADQQRqIAFBBGotAAA6AAAgA0EFaiABQQVqLQAAOgAAIANBBmogAUEGai0AADoAACADQQdqIAFBB2otAAA6AAAgAUEIaiEBIANBCGoiAyAGRw0ACwsgAAuzBgEEfyMAQSBrIgIkAAJAAkACQAJAAkACQAJAAkACQAJAIAEOKAAHBwcHBwcHBwEDBwcCBwcHBwcHBwcHBwcHBwcHBwcHBwcEBwcHBwUGCyAAQYAEOwEKIABCADcBAiAAQdzgADsBAAwICyAAQYAEOwEKIABCADcBAiAAQdzoATsBAAwHCyAAQYAEOwEKIABCADcBAiAAQdzkATsBAAwGCyAAQYAEOwEKIABCADcBAiAAQdzcATsBAAwFCyAAQYAEOwEKIABCADcBAiAAQdzEADsBAAwECyAAQYAEOwEKIABCADcBAiAAQdzOADsBAAwDCyABQdwARg0BCwJAIAFB/wVNDQAgARBcRQ0AIAJBADoACiACQQA7AQggAiABQRR2QeCvwgBqLQAAOgALIAIgAUEEdkEPcUHgr8IAai0AADoADyACIAFBCHZBD3FB4K/CAGotAAA6AA4gAiABQQx2QQ9xQeCvwgBqLQAAOgANIAIgAUEQdkEPcUHgr8IAai0AADoADCABQQFyZ0ECdiIDIAJBCGoiBWoiBEH7ADoAACAEQQFrQfUAOgAAIAUgA0ECayIDakHcADoAACACQRBqIgQgAUEPcUHgr8IAai0AADoAACAAQQo6AAsgACADOgAKIAAgAikCCDcCACACQf0AOgARIABBCGogBC8BADsBAAwCCyABELoBRQRAIAJBADoAFiACQQA7ARQgAiABQRR2QeCvwgBqLQAAOgAXIAIgAUEEdkEPcUHgr8IAai0AADoAGyACIAFBCHZBD3FB4K/CAGotAAA6ABogAiABQQx2QQ9xQeCvwgBqLQAAOgAZIAIgAUEQdkEPcUHgr8IAai0AADoAGCABQQFyZ0ECdiIDIAJBFGoiBWoiBEH7ADoAACAEQQFrQfUAOgAAIAUgA0ECayIDakHcADoAACACQRxqIgQgAUEPcUHgr8IAai0AADoAACAAQQo6AAsgACADOgAKIAAgAikCFDcCACACQf0AOgAdIABBCGogBC8BADsBAAwCCyAAIAE2AgQgAEGAAToAAAwBCyAAQYAEOwEKIABCADcBAiAAQdy4ATsBAAsgAkEgaiQAC84FAgZ/An4CQCACRQ0AIAJBB2siA0EAIAIgA08bIQcgAUEDakF8cSABayEIQQAhAwNAAkACQAJAIAEgA2otAAAiBcAiBkEATgRAIAggA2tBA3ENASADIAdPDQIDQCABIANqIgQoAgQgBCgCAHJBgIGChHhxDQMgA0EIaiIDIAdJDQALDAILQoCAgICAICEKQoCAgIAQIQkCQAJAAn4CQAJAAkACQAJAAkACQAJAAkAgBUHfx8IAai0AAEECaw4DAAECCgsgA0EBaiIEIAJJDQJCACEKQgAhCQwJC0IAIQogA0EBaiIEIAJJDQJCACEJDAgLQgAhCiADQQFqIgQgAkkNAkIAIQkMBwsgASAEaiwAAEG/f0oNBgwHCyABIARqLAAAIQQCQAJAIAVB4AFrIgUEQCAFQQ1GBEAMAgUMAwsACyAEQWBxQaB/Rg0EDAMLIARBn39KDQIMAwsgBkEfakH/AXFBDE8EQCAGQX5xQW5HDQIgBEFASA0DDAILIARBQEgNAgwBCyABIARqLAAAIQQCQAJAAkACQCAFQfABaw4FAQAAAAIACyAGQQ9qQf8BcUECSyAEQUBOcg0DDAILIARB8ABqQf8BcUEwTw0CDAELIARBj39KDQELIAIgA0ECaiIETQRAQgAhCQwFCyABIARqLAAAQb9/Sg0CQgAhCSADQQNqIgQgAk8NBCABIARqLAAAQb9/TA0FQoCAgICA4AAMAwtCgICAgIAgDAILQgAhCSADQQJqIgQgAk8NAiABIARqLAAAQb9/TA0DC0KAgICAgMAACyEKQoCAgIAQIQkLIAAgCiADrYQgCYQ3AgQgAEEBNgIADwsgBEEBaiEDDAILIANBAWohAwwBCyACIANNDQADQCABIANqLAAAQQBIDQEgAiADQQFqIgNHDQALDAILIAIgA0sNAAsLIAAgAjYCCCAAIAE2AgQgAEEANgIAC/4FAQV/IABBCGsiASAAQQRrKAIAIgNBeHEiAGohAgJAAkAgA0EBcQ0AIANBAnFFDQEgASgCACIDIABqIQAgASADayIBQdDowgAoAgBGBEAgAigCBEEDcUEDRw0BQcjowgAgADYCACACIAIoAgRBfnE2AgQgASAAQQFyNgIEIAIgADYCAA8LIAEgAxB1CwJAAkACQAJAAkAgAigCBCIDQQJxRQRAIAJB1OjCACgCAEYNAiACQdDowgAoAgBGDQMgAiADQXhxIgIQdSABIAAgAmoiAEEBcjYCBCAAIAFqIAA2AgAgAUHQ6MIAKAIARw0BQcjowgAgADYCAA8LIAIgA0F+cTYCBCABIABBAXI2AgQgACABaiAANgIACyAAQYACSQ0CIAEgABB+QQAhAUHo6MIAQejowgAoAgBBAWsiADYCACAADQRBsObCACgCACIABEADQCABQQFqIQEgACgCCCIADQALC0Ho6MIAQf8fIAEgAUH/H00bNgIADwtB1OjCACABNgIAQczowgBBzOjCACgCACAAaiIANgIAIAEgAEEBcjYCBEHQ6MIAKAIAIAFGBEBByOjCAEEANgIAQdDowgBBADYCAAsgAEHg6MIAKAIAIgNNDQNB1OjCACgCACICRQ0DQQAhAEHM6MIAKAIAIgRBKUkNAkGo5sIAIQEDQCACIAEoAgAiBU8EQCACIAUgASgCBGpJDQQLIAEoAgghAQwACwALQdDowgAgATYCAEHI6MIAQcjowgAoAgAgAGoiADYCACABIABBAXI2AgQgACABaiAANgIADwsgAEH4AXFBuObCAGohAgJ/QcDowgAoAgAiA0EBIABBA3Z0IgBxRQRAQcDowgAgACADcjYCACACDAELIAIoAggLIQAgAiABNgIIIAAgATYCDCABIAI2AgwgASAANgIIDwtBsObCACgCACIBBEADQCAAQQFqIQAgASgCCCIBDQALC0Ho6MIAQf8fIAAgAEH/H00bNgIAIAMgBE8NAEHg6MIAQX82AgALC98FAQJ/IwBBMGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkBBAiAAKAIAQfv///8HaiIDIANBDE8bQQFrDgsBAgMEBQYHCAkKCwALIAIgAEEEajYCDCACQQE2AhQgAkHwp8EANgIQIAJCATcCHCACIAJBDGqtQoCAgICQOIQ3AyggAiACQShqNgIYIAEoAhwgASgCICACQRBqEEUMCwsgAiAAQQRqNgIMIAJBATYCFCACQfCnwQA2AhAgAkIBNwIcIAIgAkEMaq1CgICAgOA4hDcDKCACIAJBKGo2AhggASgCHCABKAIgIAJBEGoQRQwKCyACIAA2AgwgAkEBNgIUIAJB8KfBADYCECACQgE3AhwgAiACQQxqrUKAgICAkDeENwMoIAIgAkEoajYCGCABKAIcIAEoAiAgAkEQahBFDAkLIAIgAEEEajYCDCACQQI2AhQgAkHwvMEANgIQIAJCATcCHCACIAJBDGqtQoCAgICwOIQ3AyggAiACQShqNgIYIAEoAhwgASgCICACQRBqEEUMCAsgAiAAQQRqNgIMIAJBATYCFCACQZy/wQA2AhAgAkIBNwIcIAIgAkEMaq1CgICAgOA0hDcDKCACIAJBKGo2AhggASgCHCABKAIgIAJBEGoQRQwHCyABKAIcQaS/wQBBOSABKAIgKAIMEQIADAYLIAEoAhxB3b/BAEE/IAEoAiAoAgwRAgAMBQsgAiAAQQRqNgIMIAJBATYCFCACQfCnwQA2AhAgAkIBNwIcIAIgAkEMaq1CgICAgMA4hDcDKCACIAJBKGo2AhggASgCHCABKAIgIAJBEGoQRQwECyABKAIcQZzAwQBBPCABKAIgKAIMEQIADAMLIAEoAhxB2MDBAEEkIAEoAiAoAgwRAgAMAgsgASgCHEH8wMEAQSQgASgCICgCDBECAAwBCyABKAIcQaDBwQBBJCABKAIgKAIMEQIACyACQTBqJAALkQUCAX8BfiMAQUBqIgIkAAJ/AkACQAJAAkACQAJAAkAgAC0AAEEBaw4GAQIDBAUGAAsgAiAAQQhqNgIkIAJBAjYCLCACQYCnwQA2AiggAkICNwI0IAJCsKbBgMA1NwMYIAIgAkEkaq1CgICAgNA1hDcDECACIAJBEGo2AjAgASgCHCABKAIgIAJBKGoQRQwGCyACIABBCGo2AiQgAkECNgIsIAJB4KfBADYCKCACQgI3AjQgAkKQp8GAwDU3AxggAiACQSRqrUKAgICA0DWENwMQIAIgAkEQajYCMCABKAIcIAEoAiAgAkEoahBFDAULIAIgAEEBajYCJCACQQE2AiwgAkHwp8EANgIoIAJCATcCNCACIAJBJGqtQoCAgIDgNYQ3AxAgAiACQRBqNgIwIAEoAhwgASgCICACQShqEEUMBAsgAiAAQQRqNgIMIAIgAEEIajYCJCACQQI2AiwgAkGoqMEANgIoIAJCAjcCNCACQoCAgIDwNSIDIAJBJGqthDcDGCACIAMgAkEMaq2ENwMQIAIgAkEQajYCMCABKAIcIAEoAiAgAkEoahBFDAMLIAIgAEEEajYCDCACIABBAWo2AiQgAkECNgIsIAJB8KjBADYCKCACQgI3AjQgAiACQSRqrUKAgICA4DSENwMYIAIgAkEMaq1CgICAgPA1hDcDECACIAJBEGo2AjAgASgCHCABKAIgIAJBKGoQRQwCCyABKAIcQYCpwQBBGyABKAIgKAIMEQIADAELIAIgAEEBajYCJCACQQI2AiwgAkHgqcEANgIoIAJCATcCNCACIAJBJGqtQoCAgIDgNIQ3AxAgAiACQRBqNgIwIAEoAhwgASgCICACQShqEEULIAJBQGskAAvrBAEFfwJ/AkAgAkECTwRAIAEoAgQiBEH//wFxRQRAIARBEHQMAwsgBEH/B3EhBSAEQYCAAnEhAyAEQYD4AXEiBkGA+AFGBEAgA0EQdCEDIANBgICA/AdyIAVFDQMaIAMgBUENdHJBgICA/gdyDAMLIANBEHQhAyAGRQ0BIAZBDXRBgICA/ABxIAVBDXRyQYCAgMADaiADcgwCC0EBQQFB/IzAABCtAgALIAUgBWdBEGsiBUH//wNxQQhqdEH///8DcSADQYCAgNgDciAFQRd0a3ILIQUCfyAEQYCAfHEgBEEQdiIDQf//AXFFDQAaIANB/wdxIQQgA0GAgAJxIQYgA0GA+AFxIgdBgPgBRgRAIAZBEHQhBiAGQYCAgPwHciAERQ0BGiAGIANBDXRyQYCAgP4HcgwBCyAGQRB0IQMgB0ENdEGAgID8AHEgBEENdHJBgICAwANqIANyIAcNABogBCAEZ0EQayIEQf//A3FBCGp0Qf///wNxIANBgICA2ANyIARBF3RrcgshBCAAAn8CQCACQQJHBEAgASgCCCICQf//AXFFBEAgAkEQdAwDCyACQf8HcSEBIAJBgIACcSEDIAJBgPgBcSICQYD4AUYEQCADQRB0IQIgAkGAgID8B3IgAUUNAxogAiABQQ10ckGAgID+B3IMAwsgA0EQdCEDIAJFDQEgAkENdEGAgID8AHEgAUENdHJBgICAwANqIANyDAILQQJBAkGMjcAAEK0CAAsgASABZ0EQayIBQf//A3FBCGp0Qf///wNxIANBgICA2ANyIAFBF3Rrcgs2AgggACAENgIEIAAgBTYCAAuLBQEEfyMAQSBrIgMkAAJAIAAQOEH/AXEiAUECRgRAQQEhAQwBCwJAAkACQAJAIAAoAgAiBEUNACAAKAIIIgIgACgCBE8NACACIARqLQAAQfAARw0AIAAgAkEBajYCCCAAKAIQIQIgAUEBcUUEQCACRQ0CQQEhAUH4s8IAQQEgAhDVBA0FDAILIAJFDQFB9bnCAEECIAIQ1QRFDQFBASEBDAQLIAFBAXFFDQIMAQsCQAJAIAAoAgBFDQAgAyAAEDcgAygCAEUNASADQRhqIANBCGopAgA3AwAgAyADKQIANwMQAkAgACgCECICRQ0AQQEhASADQRBqIAIQIw0FIAAoAhAiAkUNAEHJusIAQQMgAhDVBA0FCyAAECcEQEEBIQEMBQsDQCAAKAIAIgJFDQMgACgCCCIBIAAoAgRPDQMgASACai0AAEHwAEcNAyAAIAFBAWo2AgggACgCECIBBEBB9bnCAEECIAEQ1QQEQEEBIQEMBwsgACgCAEUNAgsgAyAAEDcgAygCAEUNAiADQRhqIANBCGopAgA3AwAgAyADKQIANwMQAkAgACgCECICRQ0AQQEhASADQRBqIAIQIw0GIAAoAhAiAkUNAEHJusIAQQMgAhDVBA0GC0EBIQEgABAnRQ0ACwwECyAAKAIQIgBFDQJB7bnCAEEBIAAQ1QQhAQwDCyAAKAIQIQECQCADLQAEIgJFBEAgAUUNAUHEucIAQRAgARDVBEUNAUEBIQEMBAsgAUUNAEHUucIAQRkgARDVBEUNAEEBIQEMAwsgACACOgAEQQAhASAAQQA2AgAMAgsgACgCECIARQ0AQQEhAUH3s8IAQQEgABDVBA0BC0EAIQELIANBIGokACABC9IEAg9/AX4jAEHQAGsiAyQAIANBDGqtQoCAgIAQhCESIAAtAAwhByAAKAIEIQ4gACgCACENIAAoAggiCEEcaiEPIAhBIGohEAJ/A0ACQCAJIhENACAGIQpBASEJAkAgAiAFTwRAA0AgASAFaiEGAkACQAJAIAIgBWsiC0EHTQRAIAIgBUYEQCAKIQYgAiEFIAIhBAwHC0EAIQQDQCAEIAZqLQAAQQpGDQIgCyAEQQFqIgRHDQALIAohBiACIQUgAiEEDAYLIANBCiAGIAsQiQEgAygCACILQQFHDQEgAygCBCEECyAEIAVqIgRBAWohBSACIARNDQEgASAEai0AAEEKRw0BQQAhCSAFIQYMBAsgCiEGIAIhBSACIQQgC0EBcUUNA0EAIQkMAwsgAiAFTw0ACwsgCiEGIAIhBAsCQCAHQQFxRQRAIABBAToADCANQQFxRQRAIAhB3IPCAEEEEOUDRQ0CDAMLIAMgDjYCDCADIBI3AyggA0EBOgBMIANBADYCSCADQiA3AkAgA0KAgICA0AA3AjggA0ECNgIwIANBATYCJCADQQI2AhQgA0Hkg8IANgIQIANBATYCHCAPKAIAIQsgECgCACEHIAMgA0EwajYCICADIANBKGo2AhhBASALIAcgA0EQahBFDQQaDAELIAxFDQAgCEEKEOsDDQEgDQRAIAhB9IPCAEEHEOUDDQIMAQsgCEHcg8IAQQQQ5QMNAQsgDEEBaiEMQQEhByAIIAEgCmogBCAKaxDlA0UNAQsLIBFBAXMLIANB0ABqJABBAXELhwUCAn8BfiMAQUBqIgIkACAAQQRqIQMCfwJAAkACQAJAAkACQAJAIAAoAgBBAWsOBgECAwQFBgALIAIgAzYCJCACQQE2AiwgAkHwr8EANgIoIAJCATcCNCACIAJBJGqtQoCAgICQNYQ3AxAgAiACQRBqNgIwIAEoAhwgASgCICACQShqEEUMBgsgAiADNgIMIAIgAEEIajYCJCACQQM2AiwgAkHUsMEANgIoIAJCAjcCNCACQoCAgIDwNSIEIAJBJGqthDcDGCACIAQgAkEMaq2ENwMQIAIgAkEQajYCMCABKAIcIAEoAiAgAkEoahBFDAULIAIgAzYCJCACQQE2AiwgAkHwp8EANgIoIAJCATcCNCACIAJBJGqtQoCAgICgNoQ3AxAgAiACQRBqNgIwIAEoAhwgASgCICACQShqEEUMBAsgAiADNgIkIAJBATYCLCACQfCnwQA2AiggAkIBNwI0IAIgAkEkaq1CgICAgLA2hDcDECACIAJBEGo2AjAgASgCHCABKAIgIAJBKGoQRQwDCyACIAM2AiQgAkEBNgIsIAJB8KfBADYCKCACQgE3AjQgAiACQSRqrUKAgICAwDaENwMQIAIgAkEQajYCMCABKAIcIAEoAiAgAkEoahBFDAILIAIgAzYCJCACQQE2AiwgAkHwp8EANgIoIAJCATcCNCACIAJBJGqtQoCAgIDQNoQ3AxAgAiACQRBqNgIwIAEoAhwgASgCICACQShqEEUMAQsgAiADNgIkIAJBATYCLCACQfCnwQA2AiggAkIBNwI0IAIgAkEkaq1CgICAgOA2hDcDECACIAJBEGo2AjAgASgCHCABKAIgIAJBKGoQRQsgAkFAayQAC+oEAQp/IwBBMGsiAyQAIAMgATYCLCADIAA2AiggA0EDOgAkIANCIDcCHCADQQA2AhQgA0EANgIMAn8CQAJAAkAgAigCECIKRQRAIAIoAgwiAEUNASACKAIIIgEgAEEDdGohBCAAQQFrQf////8BcUEBaiEHIAIoAgAhAANAIABBBGooAgAiBQRAIAMoAiggACgCACAFIAMoAiwoAgwRAgANBAsgASgCACADQQxqIAFBBGooAgARAAANAyAAQQhqIQAgAUEIaiIBIARHDQALDAELIAIoAhQiAEUNACAAQQV0IQsgAEEBa0H///8/cUEBaiEHIAIoAgghBSACKAIAIQADQCAAQQRqKAIAIgEEQCADKAIoIAAoAgAgASADKAIsKAIMEQIADQMLIAMgCCAKaiIBQRBqKAIANgIcIAMgAUEcai0AADoAJCADIAFBGGooAgA2AiAgAUEMaigCACEEQQAhCUEAIQYCQAJAAkAgAUEIaigCAEEBaw4CAAIBCyAEQQN0IAVqIgwoAgANASAMKAIEIQQLQQEhBgsgAyAENgIQIAMgBjYCDCABQQRqKAIAIQQCQAJAAkAgASgCAEEBaw4CAAIBCyAEQQN0IAVqIgYoAgANASAGKAIEIQQLQQEhCQsgAyAENgIYIAMgCTYCFCAFIAFBFGooAgBBA3RqIgEoAgAgA0EMaiABQQRqKAIAEQAADQIgAEEIaiEAIAsgCEEgaiIIRw0ACwsgByACKAIETw0BIAMoAiggAigCACAHQQN0aiIAKAIAIAAoAgQgAygCLCgCDBECAEUNAQtBAQwBC0EACyADQTBqJAALlgQBBH8jAEGAAWsiBCQAAkACQAJAIAEoAhQiAkEQcUUEQCACQSBxDQFBASECIAAoAgBBASABEGxFDQIMAwsgACgCACECA0AgAyAEakH/AGogAkEPcSIFQTByIAVB1wBqIAVBCkkbOgAAIANBAWshAyACQRBJIAJBBHYhAkUNAAtBASECIAFBAUGPxMIAQQIgAyAEakGAAWpBACADaxA1RQ0BDAILIAAoAgAhAgNAIAMgBGpB/wBqIAJBD3EiBUEwciAFQTdqIAVBCkkbOgAAIANBAWshAyACQQ9LIAJBBHYhAg0AC0EBIQIgAUEBQY/EwgBBAiADIARqQYABakEAIANrEDUNAQsgASgCHEH6wMIAQQIgASgCICgCDBECAA0AAkAgASgCFCICQRBxRQRAIAJBIHENASAAKAIEQQEgARBsIQIMAgsgACgCBCECQQAhAwNAIAMgBGpB/wBqIAJBD3EiAEEwciAAQdcAaiAAQQpJGzoAACADQQFrIQMgAkEPSyACQQR2IQINAAsgAUEBQY/EwgBBAiADIARqQYABakEAIANrEDUhAgwBCyAAKAIEIQJBACEDA0AgAyAEakH/AGogAkEPcSIAQTByIABBN2ogAEEKSRs6AAAgA0EBayEDIAJBD0sgAkEEdiECDQALIAFBAUGPxMIAQQIgAyAEakGAAWpBACADaxA1IQILIARBgAFqJAAgAgu7BAEBfwJAIAAoAgBBAkYNACAAKAIoIgEEQCAAKAIsIAFBAXRBARCnBAsgACgCNCIBBEAgACgCOCABQQEQpwQLIAAoAkAiAQRAIAAoAkQgAUEBEKcECyAAKAJMIgEEQCAAKAJQIAFBAnRBBBCnBAsgACgCWCIBBEAgACgCXCABQQJ0QQQQpwQLIAAoAmQiAQRAIAAoAmggAUEDdEEEEKcECyAAKAJwIgEEQCAAKAJ0IAFBAnRBBBCnBAsgACgCfCIBBEAgACgCgAEgAUECdEEEEKcECyAAKAKQASIBBEAgACgClAEgAUEDdEEEEKcECyAAKAKcASIBBEAgACgCoAEgAUECdEEEEKcECyAAKAKoASIBBEAgACgCrAEgAUECdEEEEKcECyAAKAK4ASIBBEAgACgCvAEgAUEDdEEEEKcECyAAKALEASIBBEAgACgCyAEgAUECdEEEEKcECyAAKALQASIBBEAgACgC1AEgAUECdEEEEKcECyAAKALgASIBBEAgACgC5AEgAUEDdEEEEKcECyAAKALsASIBBEAgACgC8AEgAUECdEEEEKcECyAAKAL4ASIBBEAgACgC/AEgAUECdEEEEKcECyAAQZACahDTAyAAKAKEAyIBBEAgACgCiAMgAUEBEKcECyAAKAKQAyIBBEAgACgClAMgAUEBEKcECyAAKAKcAyIBBEAgACgCoAMgAUEMbEEEEKcECyAAKAKoAyIBRQ0AIAAoAqwDIAFBARCnBAsgAEHQA2oQKwuPBAENfyABQQFrIQ8gACgCBCEKIAAoAgAhCyAAKAIIIQwCQANAIA4NAQJAAkAgAiAESQ0AA0AgASAEaiEFAkACQAJAIAIgBGsiBkEHTQRAIAIgBEcNASACIQQMBQsCQCAFQQNqQXxxIgggBWsiAwRAQQAhAANAIAAgBWotAABBCkYNBSADIABBAWoiAEcNAAsgAyAGQQhrIgBNDQEMAwsgBkEIayEACwNAQYCChAggCCgCACIJQYqUqNAAc2sgCXJBgIKECCAIQQRqKAIAIglBipSo0ABzayAJcnFBgIGChHhxQYCBgoR4Rw0CIAhBCGohCCADQQhqIgMgAE0NAAsMAQtBACEAA0AgACAFai0AAEEKRg0CIAYgAEEBaiIARw0ACyACIQQMAwsgAyAGRgRAIAIhBAwDCwNAIAMgBWotAABBCkYEQCADIQAMAgsgBiADQQFqIgNHDQALIAIhBAwCCyAAIARqIgNBAWohBAJAIAIgA00NACAAIAVqLQAAQQpHDQAgBCEFIAQhAAwDCyACIARPDQALC0EBIQ4gAiIAIAciBUYNAgsCQCAMLQAABEAgC0H4w8IAQQQgCigCDBECAA0BC0EAIQMgACAHRwRAIAAgD2otAABBCkYhAwsgACAHayEAIAEgB2ohBiAMIAM6AAAgBSEHIAsgBiAAIAooAgwRAgBFDQELC0EBIQ0LIA0LswQBAX8CQCAAKAIAQQJGDQAgACgCKCIBBEAgACgCLCABQQF0QQEQpwQLIAAoAjQiAQRAIAAoAjggAUEBEKcECyAAKAJAIgEEQCAAKAJEIAFBARCnBAsgACgCTCIBBEAgACgCUCABQQJ0QQQQpwQLIAAoAlgiAQRAIAAoAlwgAUECdEEEEKcECyAAKAJkIgEEQCAAKAJoIAFBA3RBBBCnBAsgACgCcCIBBEAgACgCdCABQQJ0QQQQpwQLIAAoAnwiAQRAIAAoAoABIAFBAnRBBBCnBAsgACgCkAEiAQRAIAAoApQBIAFBA3RBBBCnBAsgACgCnAEiAQRAIAAoAqABIAFBAnRBBBCnBAsgACgCqAEiAQRAIAAoAqwBIAFBAnRBBBCnBAsgACgCuAEiAQRAIAAoArwBIAFBA3RBBBCnBAsgACgCxAEiAQRAIAAoAsgBIAFBAnRBBBCnBAsgACgC0AEiAQRAIAAoAtQBIAFBAnRBBBCnBAsgACgC4AEiAQRAIAAoAuQBIAFBA3RBBBCnBAsgACgC7AEiAQRAIAAoAvABIAFBAnRBBBCnBAsgACgC+AEiAQRAIAAoAvwBIAFBAnRBBBCnBAsgAEGQAmoQ0wMgACgChAMiAQRAIAAoAogDIAFBARCnBAsgACgCkAMiAQRAIAAoApQDIAFBARCnBAsgACgCnAMiAQRAIAAoAqADIAFBDGxBBBCnBAsgACgCqAMiAUUNACAAKAKsAyABQQEQpwQLC54FAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAQQIgACgCACIAKAIAQfv///8HaiIDIANBDk8bQQFrDg0BAgMEBQYHCAkKCwwNAAsgAiAAQQRqNgIMIAFB6NTBAEEMIAJBDGpB2NTBABB/DA0LIAIgAEEEajYCDCABQdDXwQBBDyACQQxqQcDXwQAQfwwMCyACIAA2AgwgAUGA1MEAQQ0gAkEMakHw08EAEH8MCwsgAUHY2sEAQQ0Q5QMMCgsgAiAAQQhqNgIMIAFB5drBAEEYQf3awQBBCSAAQQRqQfTMwQBBhtvBAEEOIAJBDGpBhM3BABDDAQwJCyACIABBBGo2AgwgAUH41cEAQQxBhNbBAEEMIAJBDGpB6NXBABDJAQwICyACIABBBGo2AgwgAUGU28EAQQ5Bi87BAEEDIAJBDGpBuM3BABDJAQwHCyABQaLbwQBBDhDlAwwGCyACIABBBGo2AgwgAUGw28EAQRZBi87BAEEDIAJBDGpBzM/BABDJAQwFCyACIABBCGo2AgwgAUHG28EAQSFBsNfBAEEEIABBBGpB9MzBAEG308EAQQQgAkEMakG4zcEAEMMBDAQLIAIgAEEIajYCDCABQefbwQBBGEH/28EAQQQgAEEEakH0zMEAQYPcwQBBDyACQQxqQYTNwQAQwwEMAwsgAiAAQQhqNgIMIAFBktzBAEEWQYvOwQBBAyAAQQRqQfTMwQBBt9PBAEEEIAJBDGpBuM3BABDDAQwCCyACIABBBGo2AgwgAUGo3MEAQRpBi87BAEEDIAJBDGpBhM3BABDJAQwBCyACIABBBGo2AgwgAUHC3MEAQQ5Bi87BAEEDIAJBDGpBhM3BABDJAQsgAkEQaiQAC5kFAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAQQIgACgCAEH7////B2oiAyADQQ5PG0EBaw4NAQIDBAUGBwgJCgsMDQALIAIgAEEEajYCDCABQcSZwABBDCACQQxqQbSZwAAQfwwNCyACIABBBGo2AgwgAUGMoMAAQQ8gAkEMakH8n8AAEH8MDAsgAiAANgIMIAFBrKDAAEENIAJBDGpBnKDAABB/DAsLIAFBuaDAAEENEOUDDAoLIAIgAEEIajYCDCABQcagwABBGEHeoMAAQQkgAEEEakGImMAAQeegwABBDiACQQxqQZiYwAAQwwEMCQsgAiAAQQRqNgIMIAFBiKHAAEEMQZShwABBDCACQQxqQfigwAAQyQEMCAsgAiAAQQRqNgIMIAFBoKHAAEEOQayZwABBAyACQQxqQcyYwAAQyQEMBwsgAUGuocAAQQ4Q5QMMBgsgAiAAQQRqNgIMIAFBvKHAAEEWQayZwABBAyACQQxqQbiawAAQyQEMBQsgAiAAQQhqNgIMIAFB0qHAAEEhQfOhwABBBCAAQQRqQYiYwABB+pzAAEEEIAJBDGpBzJjAABDDAQwECyACIABBCGo2AgwgAUH3ocAAQRhBj6LAAEEEIABBBGpBiJjAAEGTosAAQQ8gAkEMakGYmMAAEMMBDAMLIAIgAEEIajYCDCABQaKiwABBFkGsmcAAQQMgAEEEakGImMAAQfqcwABBBCACQQxqQcyYwAAQwwEMAgsgAiAAQQRqNgIMIAFBuKLAAEEaQayZwABBAyACQQxqQZiYwAAQyQEMAQsgAiAAQQRqNgIMIAFB0qLAAEEOQayZwABBAyACQQxqQZiYwAAQyQELIAJBEGokAAuZBQECfyMAQRBrIgIkAAJ/AkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQEECIAAoAgBB+////wdqIgMgA0EOTxtBAWsODQECAwQFBgcICQoLDA0ACyACIABBBGo2AgwgAUHYvMAAQQwgAkEMakHIvMAAEH8MDQsgAiAAQQRqNgIMIAFBoMPAAEEPIAJBDGpBkMPAABB/DAwLIAIgADYCDCABQcDDwABBDSACQQxqQbDDwAAQfwwLCyABQc3DwABBDRDlAwwKCyACIABBCGo2AgwgAUHaw8AAQRhB8sPAAEEJIABBBGpBnLvAAEH7w8AAQQ4gAkEMakGsu8AAEMMBDAkLIAIgAEEEajYCDCABQZzEwABBDEGoxMAAQQwgAkEMakGMxMAAEMkBDAgLIAIgAEEEajYCDCABQbTEwABBDkHAvMAAQQMgAkEMakHgu8AAEMkBDAcLIAFBwsTAAEEOEOUDDAYLIAIgAEEEajYCDCABQdDEwABBFkHAvMAAQQMgAkEMakHMvcAAEMkBDAULIAIgAEEIajYCDCABQebEwABBIUGHxcAAQQQgAEEEakGcu8AAQY7AwABBBCACQQxqQeC7wAAQwwEMBAsgAiAAQQhqNgIMIAFBi8XAAEEYQaPFwABBBCAAQQRqQZy7wABBp8XAAEEPIAJBDGpBrLvAABDDAQwDCyACIABBCGo2AgwgAUG2xcAAQRZBwLzAAEEDIABBBGpBnLvAAEGOwMAAQQQgAkEMakHgu8AAEMMBDAILIAIgAEEEajYCDCABQczFwABBGkHAvMAAQQMgAkEMakGsu8AAEMkBDAELIAIgAEEEajYCDCABQebFwABBDkHAvMAAQQMgAkEMakGsu8AAEMkBCyACQRBqJAALmQUBAn8jAEEQayICJAACfwJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkBBAiAAKAIAQfv///8HaiIDIANBDk8bQQFrDg0BAgMEBQYHCAkKCwwNAAsgAiAAQQRqNgIMIAFBqN/AAEEMIAJBDGpBmN/AABB/DA0LIAIgAEEEajYCDCABQdzlwABBDyACQQxqQczlwAAQfwwMCyACIAA2AgwgAUH85cAAQQ0gAkEMakHs5cAAEH8MCwsgAUGJ5sAAQQ0Q5QMMCgsgAiAAQQhqNgIMIAFBlubAAEEYQa7mwABBCSAAQQRqQYzewABBt+bAAEEOIAJBDGpB+NrAABDDAQwJCyACIABBBGo2AgwgAUHF5sAAQQxB0ebAAEEMIAJBDGpB6NrAABDJAQwICyACIABBBGo2AgwgAUHd5sAAQQ5BkN/AAEEDIAJBDGpB+NzAABDJAQwHCyABQevmwABBDhDlAwwGCyACIABBBGo2AgwgAUH55sAAQRZBkN/AAEEDIAJBDGpBnODAABDJAQwFCyACIABBCGo2AgwgAUGP58AAQSFBsOfAAEEEIABBBGpBjN7AAEHe4sAAQQQgAkEMakH43MAAEMMBDAQLIAIgAEEIajYCDCABQbTnwABBGEHM58AAQQQgAEEEakGM3sAAQdDnwABBDyACQQxqQfjawAAQwwEMAwsgAiAAQQhqNgIMIAFB3+fAAEEWQZDfwABBAyAAQQRqQYzewABB3uLAAEEEIAJBDGpB+NzAABDDAQwCCyACIABBBGo2AgwgAUH158AAQRpBkN/AAEEDIAJBDGpB+NrAABDJAQwBCyACIABBBGo2AgwgAUGP6MAAQQ5BkN/AAEEDIAJBDGpB+NrAABDJAQsgAkEQaiQAC5kFAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAQQIgACgCAEH7////B2oiAyADQQ5PG0EBaw4NAQIDBAUGBwgJCgsMDQALIAIgAEEEajYCDCABQeyHwQBBDCACQQxqQdyHwQAQfwwNCyACIABBBGo2AgwgAUHQi8EAQQ8gAkEMakHAi8EAEH8MDAsgAiAANgIMIAFB8IvBAEENIAJBDGpB4IvBABB/DAsLIAFB/YvBAEENEOUDDAoLIAIgAEEIajYCDCABQYqMwQBBGEGijMEAQQkgAEEEakHohcEAQauMwQBBDiACQQxqQcCGwQAQwwEMCQsgAiAAQQRqNgIMIAFBzIzBAEEMQdiMwQBBDCACQQxqQbyMwQAQyQEMCAsgAiAAQQRqNgIMIAFB5IzBAEEOQdSHwQBBAyACQQxqQfSGwQAQyQEMBwsgAUHyjMEAQQ4Q5QMMBgsgAiAAQQRqNgIMIAFBgI3BAEEWQdSHwQBBAyACQQxqQeCIwQAQyQEMBQsgAiAAQQhqNgIMIAFBlo3BAEEhQbeNwQBBBCAAQQRqQeiFwQBBoovBAEEEIAJBDGpB9IbBABDDAQwECyACIABBCGo2AgwgAUG7jcEAQRhB043BAEEEIABBBGpB6IXBAEHXjcEAQQ8gAkEMakHAhsEAEMMBDAMLIAIgAEEIajYCDCABQeaNwQBBFkHUh8EAQQMgAEEEakHohcEAQaKLwQBBBCACQQxqQfSGwQAQwwEMAgsgAiAAQQRqNgIMIAFB/I3BAEEaQdSHwQBBAyACQQxqQcCGwQAQyQEMAQsgAiAAQQRqNgIMIAFBlo7BAEEOQdSHwQBBAyACQQxqQcCGwQAQyQELIAJBEGokAAuLBAIJfwF+AkACQAJ/AkACQAJAAkAgAkHAAE0EQCABKAIEIghBA3QgASgCCCIGayIDIAJJDQEgBkEDdiIDIAhPDQIgASgCACIKIANqLQAAIAZBB3EiCXatIQxBCCAJayIFIAJJBEAgASAFIAZqIgQ2AggCQCAEQQdxRQRAIAIgBWsiB0EITw0BIAUhCSAHDAgLQeDkwQBBI0GE5cEAEO0CAAtBASAHQQN2IgMgA0EBTRsiBEEDdCAJa0EIaiEJA0AgBSAGaiIDQQN2IgsgCE8NBSABIANBCGo2AgggCiALajEAACAFQT9xrYYgDIQhDCAFQQhqIQUgBEEBayIEDQALDAULIAEgAiAGajYCCCAMQn8gAq2GQn+FgyEMDAYLIAAgAjYCCCAAQYCAATsBBCAAQQE2AgAPCyAAIAM2AgwgACACNgIIIABBAToABCAAQQE2AgAPCyADIAhB5OPBABCtAgALIAsgCEHQ5MEAEK0CAAsgBSAGaiEEIAIgCWsLIAdBB3EiB0cEQEH048EAQTtBsOTBABDtAgALIAcEQCAEQQN2IgMgCE8NAiABIAQgB2oiBDYCCCADIApqMQAAQn8gB62GQn+FgyAJQT9xrYYgDIQhDAsgBCACIAZqRg0AQZTlwQBBKUHA5cEAEO0CAAsgACAMNwMIIABBADYCAA8LIAMgCEHA5MEAEK0CAAvvAwELfyMAQRBrIgYkAAJAIAEoAhAiBCABKAIMIgNJBEAMAQsgASgCCCIMIARJBEAMAQsgAUEUaiIJIAEtABgiB2pBAWstAAAhCiABKAIEIQsCQCAHQQRNBEADQCADIAtqIQUCQCAEIANrIghBB00EQCADIARGBEBBACECIAEgBDYCDAwGC0EAIQIDQCACIAVqLQAAIApGDQIgCCACQQFqIgJHDQALQQAhAiABIAQ2AgwMBQsgBkEIaiAKIAUgCBCJASAGKAIIIgJBAUcNAyAGKAIMIQILIAEgAiADakEBaiIDNgIMAkAgAyAHSSADIAxLcg0AIAsgAyAHayICaiAJIAcQ1AINACAAIAM2AgggACACNgIEQQEhAgwECyADIARNDQALQQAhAgwCCwJAA0AgAyALaiEIAkAgBCADayIJQQhPBEAgBiAKIAggCRCJASAGKAIAIgJBAUcNBCAGKAIEIQUMAQsgAyAERgRAQQAhAiABIAQ2AgwMBQtBACEFA0AgBSAIai0AACAKRg0BQQAhAiAJIAVBAWoiBUcNAAsMAwsgASADIAVqQQFqIgM2AgwgAyAMTSADIAdPcQ0BIAMgBE0NAAtBACECDAILIAdBBEGoscIAEKsEAAsgASAENgIMCyAAIAI2AgAgBkEQaiQAC/8DAQl/IwBBIGsiBCQAAkACQAJ/AkACQAJAAkACQCAAKAIAIgYEQCAAKAIIIgMgACgCBCIFIAMgBUsbIQlBfyEHIAMhAgNAIAIgCUYNBCAAIAJBAWoiCDYCCCAHQQFqIQcgAiAGaiAIIQItAAAiCEEwa0H/AXFBCkkgCEHhAGtB/wFxQQZJcg0ACyAIQd8ARw0DIAJBAWshAgJAIAMEQCADIAVPBEAgAiAFSw0LDAILIAIgBUsNCiADIAZqLAAAQb9/Sg0BDAoLIAIgBUsNCQsgBEEIaiADIAZqIgMgBxBnIAQoAggNASAAKAIQIgJFDQRB3brCAEECIAIQ1QQNAiADIAcgAhDVBA0CDAULQQAgACgCECIARQ0FGkHtucIAQQEgABDVBAwFCyAAKAIQIQIgBCAEKQMQNwMYIAJFDQIgBEEYaiACEK8ERQ0DC0EBDAMLAkAgACgCECIBRQ0AQcS5wgBBECABENUERQ0AQQEMAwsgAEEAOgAEIABBADYCAEEADAILQQAMAQtBACACLQAUQQRxDQAaIAFB4QBrIgBB/wFxIgFBGk9Bv/fzHSABdkEBcUVyDQEgAEECdEH8B3EiAEHcvcIAaigCACAAQfS8wgBqKAIAIAIQ1QQLIARBIGokAA8LQeC6wgAQrgQACyAGIAUgAyACQfS4wgAQ7AMAC7IEAgJ9BH8jAEEQayEEIAC8IgVBH3YhBgJAAn0gAAJ/AkACQAJAAkAgBUH/////B3EiA0HQ2LqVBE8EQCADQYCAgPwHSwRAIAAPCyAFQQBIIgVFIANBl+TFlQRLcQ0CIAVFDQEgBEMAAICAIACVOAIIIAQqAggaIANBtOO/lgRNDQEMBwsgA0GY5MX1A00EQCADQYCAgMgDTQ0DQQAhAyAADAYLIANBkquU/ANNDQMLIABDO6q4P5QgBkECdEH048IAaioCAJIiAUMAAADPYCEEQf////8HAn8gAYtDAAAAT10EQCABqAwBC0GAgICAeAtBgICAgHggBBsgAUP///9OXhtBACABIAFbGwwDCyAAQwAAAH+UDwsgBCAAQwAAAH+SOAIMIAQqAgwaIABDAACAP5IPCyAGRSAGawsiA7IiAUMAcjG/lJIiACABQ46+vzWUIgKTCyEBIAAgASABIAEgAZQiACAAQxVSNbuUQ4+qKj6SlJMiAJRDAAAAQCAAk5UgApOSQwAAgD+SIQEgA0UNAAJAAkACQCADQf8ATARAIANBgn9ODQMgAUMAAIAMlCEBIANBm35NDQEgA0HmAGohAwwDCyABQwAAAH+UIQEgA0H+AUsNASADQf8AayEDDAILIAFDAACADJQhAUG2fSADIANBtn1NG0HMAWohAwwBCyABQwAAAH+UIQFB/QIgAyADQf0CTxtB/gFrIQMLIAEgA0EXdEGAgID8A2q+lCEBCyABC4gEAQh/IAEoAgQiBQRAIAEoAgAhBANAAkAgA0EBaiECAn8gAiADIARqLQAAIgjAIglBAE4NABoCQAJAAkACQAJAAkACQAJAAkACQAJAIAhB38fCAGotAABBAmsOAwABAgwLQfjAwgAgAiAEaiACIAVPGy0AAEHAAXFBgAFHDQsgA0ECagwKC0H4wMIAIAIgBGogAiAFTxssAAAhByAIQeABayIGRQ0BIAZBDUYNAgwDC0H4wMIAIAIgBGogAiAFTxssAAAhBiAIQfABaw4FBAMDAwUDCyAHQWBxQaB/Rw0IDAYLIAdBn39KDQcMBQsgCUEfakH/AXFBDE8EQCAJQX5xQW5HIAdBQE5yDQcMBQsgB0FATg0GDAQLIAlBD2pB/wFxQQJLIAZBQE5yDQUMAgsgBkHwAGpB/wFxQTBPDQQMAQsgBkGPf0oNAwtB+MDCACAEIANBAmoiAmogAiAFTxstAABBwAFxQYABRw0CQfjAwgAgBCADQQNqIgJqIAIgBU8bLQAAQcABcUGAAUcNAiADQQRqDAELQfjAwgAgBCADQQJqIgJqIAIgBU8bLQAAQcABcUGAAUcNASADQQNqCyIDIgIgBUkNAQsLIAAgAzYCBCAAIAQ2AgAgASAFIAJrNgIEIAEgAiAEajYCACAAIAIgA2s2AgwgACADIARqNgIIDwsgAEEANgIAC6UDAQN/AkACQAJAAkACQAJAAkACQAJAAkAgACgCAA4KAAcHAQIDBAcHBQcLIABBBGoQbQ8LAkACQCAALQAEDgIHAQALIAAoAggiAUH7////B2oiA0ENTSADQQJHcQ0GIAFBhICAgHhKDQUgAUGDgICAeEcNBgwFCyAAKAIIIgFBhICAgHhKIAFBg4CAgHhGcg0EDAULIAAtAAQiAUEDSyABQQNHcg0EDAULAkACQEEDIAAoAgRBB2siASABQQNPG0ECaw4CAQAFCyAAQQRqEKQBDwsgAC0ACEEDRw0DIAAoAgwiACgCACEBDAULIAAtAARBA0cNAgwDCyAALQAEQQNHDQEgACgCCCIAKAIAIQEgAEEEaigCACIDKAIAIgIEQCABIAIRAwALIAMoAgQiAgRAIAEgAiADKAIIEKcECyAAQQxBBBCnBAwBCyABRQ0AIAAoAgwgAUECdEEEEKcECw8LIAAoAggiACgCACEBCyAAQQRqKAIAIgMoAgAiAgRAIAEgAhEDAAsgAygCBCICBEAgASACIAMoAggQpwQLIABBDEEEEKcEC/IDAgJ/AX4jAEFAaiICJAACfwJAAkACQAJAAkBBAyAAKAIAQYCAgIB4cyIDIANBBU8bQQFrDgQBAgMEAAsgASgCHEG0w8EAQRkgASgCICgCDBECAAwECyACIABBBGo2AgQgAiAAQQVqNgIkIAJBAjYCLCACQYzEwQA2AiggAkICNwI0IAJCgICAgOA0IgQgAkEkaq2ENwMQIAIgBCACQQRqrYQ3AwggAiACQQhqNgIwIAEoAhwgASgCICACQShqEEUMAwsgAiAAQQRqNgIkIAJBATYCLCACQfCnwQA2AiggAkIBNwI0IAIgAkEkaq1CgICAgJA4hDcDCCACIAJBCGo2AjAgASgCHCABKAIgIAJBKGoQRQwCCyACIABBDGo2AgAgAiAAQRBqNgIEIAIgADYCJCACQQM2AgwgAkHwxMEANgIIIAJCAzcCFCACIAJBJGqtQoCAgIDwOIQ3AzggAkKAgICAgDYiBCACQQRqrYQ3AzAgAiAEIAKthDcDKCACIAJBKGo2AhAgASgCHCABKAIgIAJBCGoQRQwBCyACIABBBGo2AiQgAkECNgIsIAJBxMXBADYCKCACQgE3AjQgAiACQSRqrUKAgICA8DWENwMIIAIgAkEIajYCMCABKAIcIAEoAiAgAkEoahBFCyACQUBrJAALyQMCDX8BfiADIAVBAWsiDSABKAIUIghqIgdLBEBBACABKAIIIgprIQ4gBSABKAIQIg9rIRAgASgCHCELIAEpAwAhFANAAkAgAQJ/AkAgFCACIAdqMQAAiEIBg1AEQCABIAUgCGoiCDYCFCAGDQMMAQsgCiALIAogCiALSRsgBhsiCSAFIAUgCUkbIQwgAiAIaiERIAkhBwJAAkACQANAIAcgDEYEQEEAIAsgBhshDCAKIQcDQCAHIAxNBEAgASAFIAhqIgI2AhQgBkUEQCABQQA2AhwLIAAgAjYCCCAAIAg2AgQgAEEBNgIADwsgB0EBayIHIAVPDQUgByAIaiIJIANPDQMgBCAHai0AACACIAlqLQAARg0ACyABIAggD2oiCDYCFCAQIAZFDQYaDAcLIAcgCGogA08NAiAHIBFqIRIgBCAHaiAHQQFqIQctAAAgEi0AAEYNAAsgCCAOaiAHaiEIIAZFDQMMBQsgCSADQcCvwgAQrQIACyADIAggCWoiACAAIANJGyADQdCvwgAQrQIACyAHIAVBsK/CABCtAgALQQALIgc2AhwgByELCyAIIA1qIgcgA0kNAAsLIAEgAzYCFCAAQQA2AgALsQQCBH8EfiAAQShqIQUCQAJAIAAoAkgiA0UEQCACIQMMAQsgA0EgSw0BIAMgBWogAUEgIANrIgMgAiACIANLGyIEEDsaIABBACAAKAJIIARqIgMgA0EgRiIGGzYCSCACIARrIQMgASAEaiEBIAZFDQAgACAAKQMAIAApAyhCz9bTvtLHq9lCfnxCH4lCh5Wvr5i23puef343AwAgACAAKQMIIAApAzBCz9bTvtLHq9lCfnxCH4lCh5Wvr5i23puef343AwggACAAKQMQIAApAzhCz9bTvtLHq9lCfnxCH4lCh5Wvr5i23puef343AxAgACAAKQMYIAApA0BCz9bTvtLHq9lCfnxCH4lCh5Wvr5i23puef343AxgLIANBIE8EQCAAKQMYIQcgACkDECEIIAApAwghCSAAKQMAIQoDQCABKQAYQs/W077Sx6vZQn4gB3xCH4lCh5Wvr5i23puef34hByABKQAQQs/W077Sx6vZQn4gCHxCH4lCh5Wvr5i23puef34hCCABKQAIQs/W077Sx6vZQn4gCXxCH4lCh5Wvr5i23puef34hCSABKQAAQs/W077Sx6vZQn4gCnxCH4lCh5Wvr5i23puef34hCiABQSBqIQEgA0EgayIDQR9LDQALIAAgBzcDGCAAIAg3AxAgACAJNwMIIAAgCjcDAAsgAwRAIAUgASADEDsaIAAgAzYCSAsgACAAKQNQIAKtfDcDUA8LIANBIEGU9sEAEKoEAAv5AwECfyAAIAFqIQICQAJAIAAoAgQiA0EBcQ0AIANBAnFFDQEgACgCACIDIAFqIQEgACADayIAQdDowgAoAgBGBEAgAigCBEEDcUEDRw0BQcjowgAgATYCACACIAIoAgRBfnE2AgQgACABQQFyNgIEIAIgATYCAAwCCyAAIAMQdQsCQAJAAkAgAigCBCIDQQJxRQRAIAJB1OjCACgCAEYNAiACQdDowgAoAgBGDQMgAiADQXhxIgIQdSAAIAEgAmoiAUEBcjYCBCAAIAFqIAE2AgAgAEHQ6MIAKAIARw0BQcjowgAgATYCAA8LIAIgA0F+cTYCBCAAIAFBAXI2AgQgACABaiABNgIACyABQYACTwRAIAAgARB+DwsgAUH4AXFBuObCAGohAgJ/QcDowgAoAgAiA0EBIAFBA3Z0IgFxRQRAQcDowgAgASADcjYCACACDAELIAIoAggLIQEgAiAANgIIIAEgADYCDCAAIAI2AgwgACABNgIIDwtB1OjCACAANgIAQczowgBBzOjCACgCACABaiIBNgIAIAAgAUEBcjYCBCAAQdDowgAoAgBHDQFByOjCAEEANgIAQdDowgBBADYCAA8LQdDowgAgADYCAEHI6MIAQcjowgAoAgAgAWoiATYCACAAIAFBAXI2AgQgACABaiABNgIACwueAwIHfwJ+IwBBEGsiBCQAAn8CQCAAKAIAIgNFDQAgACgCCCICIAAoAgQiBU8NACACIANqIgEtAABBzABGBEAgACACQQFqIgE2AgggAAJ+AkAgASAFSQRAIAEgA2otAABB3wBGDQELIAEgBSABIAVLGyEHAkACQANAAkAgASAFSQRAIAEgA2otAABB3wBGDQELIAEgB0YNAgJAIAEgA2otAAAiAkEwayIGQf8BcUEKSQ0AIAJB4QBrQf8BcUEaTwRAIAJBwQBrQf8BcUEaTw0EIAJBHWshBgwBCyACQdcAayEGCyAAIAFBAWoiATYCCCAEIAgQmwIgBCkDCEIAUg0CIAQpAwAiCSAGrUL/AYN8IgggCVoNAQwCCwsgACABQQFqNgIIIAhCf1INAQsgACgCECIDBEBBAUHEucIAQRAgAxDVBA0GGgsgAEEAOgAEIABBADYCAEEADAULIAhCAXwMAQsgACACQQJqNgIIQgALELwBDAILIAEtAABBywBHDQAgACACQQFqNgIIIABBABAgDAELIAAQJwsgBEEQaiQAC5QDAQR/AkAgAkEQSQRAIAAhAwwBCwJAIABBACAAa0EDcSIFaiIEIABNDQAgACEDIAUEQCAFIQYDQCADIAE6AAAgA0EBaiEDIAZBAWsiBg0ACwsgBUEBa0EHSQ0AA0AgAyABOgAAIANBB2ogAToAACADQQZqIAE6AAAgA0EFaiABOgAAIANBBGogAToAACADQQNqIAE6AAAgA0ECaiABOgAAIANBAWogAToAACADQQhqIgMgBEcNAAsLIAQgAiAFayICQXxxaiIDIARLBEAgAUH/AXFBgYKECGwhBQNAIAQgBTYCACAEQQRqIgQgA0kNAAsLIAJBA3EhAgsCQCADIAIgA2oiBU8NACACQQdxIgQEQANAIAMgAToAACADQQFqIQMgBEEBayIEDQALCyACQQFrQQdJDQADQCADIAE6AAAgA0EHaiABOgAAIANBBmogAToAACADQQVqIAE6AAAgA0EEaiABOgAAIANBA2ogAToAACADQQJqIAE6AAAgA0EBaiABOgAAIANBCGoiAyAFRw0ACwsgAAudAwIGfwF+QTggAUH/AXEiASABQThPGyECAkAgACgCECIEIAAtABQiAWoiA0EASgRAIAIgA0sNAQJAIARBAEwgASACT3INAANAIARBAWsiBUEDdiEGQcAAIAFBB2oiB0F4cWshAwJAIAVBP00EQCAAIAYgAxCIASAAKAIQIQQgAC0AFCEBDAELAkAgACgCBCIFIAYgB0H4AXFBA3ZqQQdrIgZPBEAgBSAGayIFQQdLDQFBCCAFQcTewQAQqwQACyAGIAVB1N7BABCqBAALIAAgASADaiIBOgAUIAAgBCADQf8BcWsiBDYCECAAIAAoAgAgBmopAAA3AwgLIAFB/wFxIAJPDQEgBEEASg0ACwsgACABIAJrIgE6ABRCfyACrYZCf4UgACkDCCABQT9xrYiDDwsgACAEIAJrNgIQQgAPCyACIANrIQICQCADQf8BcSABSwRAIAAgAxBbIQggACgCECEEDAELIAAgASADayIBOgAUQn8gA62GQn+FIAApAwggAUE/ca2IgyEICyAAIAQgAms2AhAgCCACQT9xrYYLnAMBBX8CQEERQQAgAEGvsARPGyIBIAFBCHIiASAAQQt0IgIgAUECdEH82sIAaigCAEELdEkbIgEgAUEEciIBIAFBAnRB/NrCAGooAgBBC3QgAksbIgEgAUECciIBIAFBAnRB/NrCAGooAgBBC3QgAksbIgEgAUEBaiIBIAFBAnRB/NrCAGooAgBBC3QgAksbIgEgAUEBaiIBIAFBAnRB/NrCAGooAgBBC3QgAksbIgNBAnRB/NrCAGooAgBBC3QiASACRiABIAJJaiADaiICQSFNBEAgAkECdEH82sIAaiIBKAIAQRV2IQNB7wUhBAJ/AkAgAkEhRg0AIAEoAgRBFXYhBCACDQBBAAwBCyABQQRrKAIAQf///wBxCyEBAkAgBCADQX9zakUNACAAIAFrIQJB7wUgAyADQe8FTRshBSAEQQFrIQFBACEAA0AgAyAFRg0DIAAgA0GE3MIAai0AAGoiACACSw0BIAEgA0EBaiIDRw0ACyABIQMLIANBAXEPCyACQSJB3NjCABCtAgALIAVB7wVB7NjCABCtAgAL1wMBAX8jAEEQayICJAACfwJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAIAAoAgBBAWsODAECAwQFBgcICQoLDAALIAIgAEEEajYCDCABQaidwABBFCACQQxqQZidwAAQfwwMCyACIABBCGo2AgwgAUHMncAAQRAgAkEMakG8ncAAEH8MCwsgAiAAQQhqNgIMIAFB3J3AAEEQQfKYwABBCSACQQxqQcibwAAQyQEMCgsgAiAAQQRqNgIMIAFB/J3AAEEVIAJBDGpB7J3AABB/DAkLIAIgAEEEajYCDCABQaSewABBFyACQQxqQZSewAAQfwwICyACIABBBGo2AgwgAUHMnsAAQRUgAkEMakG8nsAAEH8MBwsgAiAAQQRqNgIMIAFB9J7AAEEUIAJBDGpB5J7AABB/DAYLIAFBiJ/AAEEREOUDDAULIAIgAEEIajYCDCABQZmfwABBEiACQQxqQbydwAAQfwwECyACIABBBGo2AgwgAUGrn8AAQRkgAkEMakHknsAAEH8MAwsgAUHEn8AAQREQ5QMMAgsgAUHVn8AAQQ4Q5QMMAQsgAiAAQQRqNgIMIAFB45/AAEEPQfKfwABBByACQQxqQbiawAAQyQELIAJBEGokAAvXAwEBfyMAQRBrIgIkAAJ/AkACQAJAAkACQAJAAkACQAJAAkACQAJAAkAgACgCAEEBaw4MAQIDBAUGBwgJCgsMAAsgAiAAQQRqNgIMIAFBvMDAAEEUIAJBDGpBrMDAABB/DAwLIAIgAEEIajYCDCABQeDAwABBECACQQxqQdDAwAAQfwwLCyACIABBCGo2AgwgAUHwwMAAQRBBhrzAAEEJIAJBDGpB3L7AABDJAQwKCyACIABBBGo2AgwgAUGQwcAAQRUgAkEMakGAwcAAEH8MCQsgAiAAQQRqNgIMIAFBuMHAAEEXIAJBDGpBqMHAABB/DAgLIAIgAEEEajYCDCABQeDBwABBFSACQQxqQdDBwAAQfwwHCyACIABBBGo2AgwgAUGIwsAAQRQgAkEMakH4wcAAEH8MBgsgAUGcwsAAQREQ5QMMBQsgAiAAQQhqNgIMIAFBrcLAAEESIAJBDGpB0MDAABB/DAQLIAIgAEEEajYCDCABQb/CwABBGSACQQxqQfjBwAAQfwwDCyABQdjCwABBERDlAwwCCyABQenCwABBDhDlAwwBCyACIABBBGo2AgwgAUH3wsAAQQ9BhsPAAEEHIAJBDGpBzL3AABDJAQsgAkEQaiQAC9cDAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkACQCAAKAIAQQFrDgwBAgMEBQYHCAkKCwwACyACIABBBGo2AgwgAUGM48AAQRQgAkEMakH84sAAEH8MDAsgAiAAQQhqNgIMIAFBsOPAAEEQIAJBDGpBoOPAABB/DAsLIAIgAEEIajYCDCABQcDjwABBEEHU3sAAQQkgAkEMakGs4cAAEMkBDAoLIAIgAEEEajYCDCABQeDjwABBFSACQQxqQdDjwAAQfwwJCyACIABBBGo2AgwgAUGI5MAAQRcgAkEMakH448AAEH8MCAsgAiAAQQRqNgIMIAFBsOTAAEEVIAJBDGpBoOTAABB/DAcLIAIgAEEEajYCDCABQcXkwABBFCACQQxqQZjcwAAQfwwGCyABQdnkwABBERDlAwwFCyACIABBCGo2AgwgAUHq5MAAQRIgAkEMakGg48AAEH8MBAsgAiAAQQRqNgIMIAFB/OTAAEEZIAJBDGpBmNzAABB/DAMLIAFBleXAAEEREOUDDAILIAFBpuXAAEEOEOUDDAELIAIgAEEEajYCDCABQbTlwABBD0HD5cAAQQcgAkEMakGc4MAAEMkBCyACQRBqJAAL6wMBAn8jAEEQayICJAACfwJAAkACQAJAAkACQAJAAkACQAJAAkBBAyAAKAIAIgAoAgBB7f///wdqIgMgA0ELTxtBAWsOCgECAwQFBgcICQoACyABQbHUwQBBFRDlAwwKCyABQcbUwQBBERDlAwwJCyACIABBBGo2AgwgAUHo1MEAQQwgAkEMakHY1MEAEH8MCAsgAiAANgIMIAFBoNTBAEERIAJBDGpBkNTBABB/DAcLIAIgAEEEajYCDCABQYTVwQBBEyACQQxqQfTUwQAQfwwGCyABQZfVwQBBGRDlAwwFCyACIABBBGo2AgwgAUGw1cEAQRlBi87BAEEDIAJBDGpBuM3BABDJAQwECyACIABBCGo2AgwgAUHJ1cEAQRdBi87BAEEDIABBBGpB9MzBAEHg1cEAQQYgAkEMakG4zcEAEMMBDAMLIAIgAEEEajYCDCABQfjVwQBBDEGE1sEAQQwgAkEMakHo1cEAEMkBDAILIAIgAEEIajYCDCABQbDWwQBBFUHF1sEAQQggAEEEakGQ1sEAQe7OwQBBCCACQQxqQaDWwQAQwwEMAQsgAiAAQQhqNgIMIAFBzdbBAEEbQejWwQBBByAAQQRqQfTMwQBB7s7BAEEIIAJBDGpBuM3BABDDAQsgAkEQaiQAC+YDAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAQQMgACgCAEHt////B2oiAyADQQtPG0EBaw4KAQIDBAUGBwgJCgALIAFB3LHAAEEVEOUDDAoLIAFB8bHAAEEREOUDDAkLIAIgAEEEajYCDCABQcSZwABBDCACQQxqQbSZwAAQfwwICyACIAA2AgwgAUHwrMAAQREgAkEMakHgrMAAEH8MBwsgAiAAQQRqNgIMIAFBlLLAAEETIAJBDGpBhLLAABB/DAYLIAFBp7LAAEEZEOUDDAULIAIgAEEEajYCDCABQcCywABBGUGsmcAAQQMgAkEMakHMmMAAEMkBDAQLIAIgAEEIajYCDCABQdmywABBF0GsmcAAQQMgAEEEakGImMAAQfCywABBBiACQQxqQcyYwAAQwwEMAwsgAiAAQQRqNgIMIAFBiKHAAEEMQZShwABBDCACQQxqQfigwAAQyQEMAgsgAiAAQQhqNgIMIAFBiLPAAEEVQZ2zwABBCCAAQQRqQfiywABBppzAAEEIIAJBDGpB4KPAABDDAQwBCyACIABBCGo2AgwgAUGls8AAQRtBwLPAAEEHIABBBGpBiJjAAEGmnMAAQQggAkEMakHMmMAAEMMBCyACQRBqJAAL5gMBAn8jAEEQayICJAACfwJAAkACQAJAAkACQAJAAkACQAJAAkBBAyAAKAIAQe3///8HaiIDIANBC08bQQFrDgoBAgMEBQYHCAkKAAsgAUHw1MAAQRUQ5QMMCgsgAUGF1cAAQREQ5QMMCQsgAiAAQQRqNgIMIAFB2LzAAEEMIAJBDGpByLzAABB/DAgLIAIgADYCDCABQYTQwABBESACQQxqQfTPwAAQfwwHCyACIABBBGo2AgwgAUGo1cAAQRMgAkEMakGY1cAAEH8MBgsgAUG71cAAQRkQ5QMMBQsgAiAAQQRqNgIMIAFB1NXAAEEZQcC8wABBAyACQQxqQeC7wAAQyQEMBAsgAiAAQQhqNgIMIAFB7dXAAEEXQcC8wABBAyAAQQRqQZy7wABBhNbAAEEGIAJBDGpB4LvAABDDAQwDCyACIABBBGo2AgwgAUGcxMAAQQxBqMTAAEEMIAJBDGpBjMTAABDJAQwCCyACIABBCGo2AgwgAUGc1sAAQRVBsdbAAEEIIABBBGpBjNbAAEG6v8AAQQggAkEMakH0xsAAEMMBDAELIAIgAEEIajYCDCABQbnWwABBG0HU1sAAQQcgAEEEakGcu8AAQbq/wABBCCACQQxqQeC7wAAQwwELIAJBEGokAAvmAwECfyMAQRBrIgIkAAJ/AkACQAJAAkACQAJAAkACQAJAAkACQEEDIAAoAgBB7f///wdqIgMgA0ELTxtBAWsOCgECAwQFBgcICQoACyABQdj3wABBFRDlAwwKCyABQe33wABBERDlAwwJCyACIABBBGo2AgwgAUGo38AAQQwgAkEMakGY38AAEH8MCAsgAiAANgIMIAFB7PLAAEERIAJBDGpB3PLAABB/DAcLIAIgAEEEajYCDCABQZD4wABBEyACQQxqQYD4wAAQfwwGCyABQaP4wABBGRDlAwwFCyACIABBBGo2AgwgAUG8+MAAQRlBkN/AAEEDIAJBDGpB+NzAABDJAQwECyACIABBCGo2AgwgAUHV+MAAQRdBkN/AAEEDIABBBGpBjN7AAEHs+MAAQQYgAkEMakH43MAAEMMBDAMLIAIgAEEEajYCDCABQcXmwABBDEHR5sAAQQwgAkEMakHo2sAAEMkBDAILIAIgAEEIajYCDCABQYT5wABBFUGZ+cAAQQggAEEEakH0+MAAQYriwABBCCACQQxqQaDpwAAQwwEMAQsgAiAAQQhqNgIMIAFBofnAAEEbQbz5wABBByAAQQRqQYzewABBiuLAAEEIIAJBDGpB+NzAABDDAQsgAkEQaiQAC+YDAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAQQMgACgCAEHt////B2oiAyADQQtPG0EBaw4KAQIDBAUGBwgJCgALIAFB7J3BAEEVEOUDDAoLIAFBgZ7BAEEREOUDDAkLIAIgAEEEajYCDCABQeyHwQBBDCACQQxqQdyHwQAQfwwICyACIAA2AgwgAUGAmcEAQREgAkEMakHwmMEAEH8MBwsgAiAAQQRqNgIMIAFBpJ7BAEETIAJBDGpBlJ7BABB/DAYLIAFBt57BAEEZEOUDDAULIAIgAEEEajYCDCABQdCewQBBGUHUh8EAQQMgAkEMakH0hsEAEMkBDAQLIAIgAEEIajYCDCABQemewQBBF0HUh8EAQQMgAEEEakHohcEAQYCfwQBBBiACQQxqQfSGwQAQwwEMAwsgAiAAQQRqNgIMIAFBzIzBAEEMQdiMwQBBDCACQQxqQbyMwQAQyQEMAgsgAiAAQQhqNgIMIAFBmJ/BAEEVQa2fwQBBCCAAQQRqQYifwQBBzorBAEEIIAJBDGpBpI/BABDDAQwBCyACIABBCGo2AgwgAUG1n8EAQRtB0J/BAEEHIABBBGpB6IXBAEHOisEAQQggAkEMakH0hsEAEMMBCyACQRBqJAAL5wIBBX8CQEHN/3tBECAAIABBEE0bIgBrIAFNDQAgAEEQIAFBC2pBeHEgAUELSRsiBGpBDGoQHiICRQ0AIAJBCGshAQJAIABBAWsiAyACcUUEQCABIQAMAQsgAkEEayIFKAIAIgZBeHEgAiADakEAIABrcUEIayICIABBACACIAFrQRBNG2oiACABayICayEDIAZBA3EEQCAAIAMgACgCBEEBcXJBAnI2AgQgACADaiIDIAMoAgRBAXI2AgQgBSACIAUoAgBBAXFyQQJyNgIAIAEgAmoiAyADKAIEQQFyNgIEIAEgAhBYDAELIAEoAgAhASAAIAM2AgQgACABIAJqNgIACwJAIAAoAgQiAUEDcUUNACABQXhxIgIgBEEQak0NACAAIAQgAUEBcXJBAnI2AgQgACAEaiIBIAIgBGsiBEEDcjYCBCAAIAJqIgIgAigCBEEBcjYCBCABIAQQWAsgAEEIaiEDCyADC/ICAgZ/An4jAEEQayIEJAAgAAJ/AkACQCABKAIIIgMgASgCBCIFSQRAIAEoAgAiBiADai0AAEHzAEYNAQsgAEIANwMIDAELIAEgA0EBaiICNgIIAkACQAJAIAIgBU8NACACIAZqLQAAQd8ARw0AIAEgA0ECajYCCAwBCwJAAkADQAJAIAIgBUkEQCACIAZqLQAAQd8ARg0BCyACIAVGDQICQCACIAZqLQAAIgNBMGsiB0H/AXFBCkkNACADQeEAa0H/AXFBGk8EQCADQcEAa0H/AXFBGk8NBCADQR1rIQcMAQsgA0HXAGshBwsgASACQQFqIgI2AgggBCAIEJsCIAQpAwhCAFINAiAEKQMAIgkgB61C/wGDfCIIIAlaDQEMAgsLIAEgAkEBajYCCCAIQn9SDQELIABBADoAAUEBDAQLIAhCAXwiCEJ/UQ0BCyAAIAhCAXw3AwgMAQsgAEEAOgABQQEMAQtBAAs6AAAgBEEQaiQAC9kCAgR/AX4jAEHQAGsiBCQAIAQgASACQbu2wgBBARAhA0AgBEHEAGogBBAsIAQoAkQiA0UNAAsCQCAAIAICfyADQQJHBEAgBCgCSAwBCyACCyIDa0EQTQR+IAIgA0cEQCABIAJqIQYgASADaiEDA0ACfyADLAAAIgFBAE4EQCABQf8BcSECIANBAWoMAQsgAy0AAUE/cSEFIAFBH3EhAiABQV9NBEAgAkEGdCAFciECIANBAmoMAQsgAy0AAkE/cSAFQQZ0ciEFIAFBcEkEQCAFIAJBDHRyIQIgA0EDagwBCyACQRJ0QYCA8ABxIAMtAANBP3EgBUEGdHJyIQIgA0EEagshAyACQcEAa0FfcUEKaiACQTBrIAJBOUsbIgFBEE8NAyABrSAHQgSGhCEHIAMgBkcNAAsLIAAgBzcDCEIBBSAHCzcDACAEQdAAaiQADwtBvLbCABCuBAALgwMBB38jAEEQayIEJAACQAJAAkACQAJAIAEoAgQiAkUNACABKAIAIQcgAkEDcSEFAkAgAkEESQRAQQAhAgwBCyAHQRxqIQMgAkF8cSEIQQAhAgNAIAMoAgAgA0EIaygCACADQRBrKAIAIANBGGsoAgAgAmpqamohAiADQSBqIQMgCCAGQQRqIgZHDQALCyAFBEAgBkEDdCAHakEEaiEDA0AgAygCACACaiECIANBCGohAyAFQQFrIgUNAAsLIAEoAgwEQCACQQBIDQEgBygCBEUgAkEQSXENASACQQF0IQILQQAhBSACQQBIDQMgAg0BC0EBIQNBACECDAELQYXlwgAtAAAaQQEhBSACQQEQ9QMiA0UNAQsgBEEANgIIIAQgAzYCBCAEIAI2AgAgBEHMvsIAIAEQRUUNAUHov8IAQdYAIARBD2pB2L/CAEHYwMIAEKACAAsgBSACQci/wgAQ1wMACyAAIAQpAgA3AgAgAEEIaiAEQQhqKAIANgIAIARBEGokAAuhAwEIfyMAQSBrIgIkABCYAUGQ5MIAKAIAIQVBjOTCACgCACEHQYzkwgBCADcCAEGE5MIAKAIAIQZBiOTCACgCACEDQYTkwgBCBDcCAEGA5MIAKAIAIQBBgOTCAEEANgIAAkAgAyAHRgRAAkAgACADRgRA0G9BgAEgACAAQYABTRsiBPwPASIBQX9GDQMCQCAFRQRAIAEhBQwBCyAAIAVqIAFHDQQLIAAgBGoiBEH/////AUsNAyACIAAEfyACIAY2AhQgAiAAQQJ0NgIcQQQFQQALNgIYIAJBCGpBBCAEQQJ0IAJBFGoQ2wEgAigCCEEBRg0DIAIoAgwhBiAAIQEgBCEADAELIAAgAyIBTQ0CCyAGIAFBAnRqIANBAWo2AgAgAUEBaiEDCyADIAdNDQAgBiAHQQJ0aigCACEBQZDkwgAgBTYCAEGM5MIAIAE2AgBBiOTCACADNgIAQYTkwgAoAgAhAUGE5MIAIAY2AgBBgOTCACgCACEEQYDkwgAgADYCACAEBEAgASAEQQJ0QQQQpwQLIAJBIGokACAFIAdqDwsAC78DAQF/IwBBQGoiAiQAAkACQAJAAkACQAJAIAAtAABBAWsOAwECAwALIAIgACgCBDYCBEGF5cIALQAAGkEUQQEQ9QMiAEUNBCAAQRBqQdanwgAoAAA2AAAgAEEIakHOp8IAKQAANwAAIABBxqfCACkAADcAACACQRQ2AhAgAiAANgIMIAJBFDYCCCACQQM2AiwgAkH0nsIANgIoIAJCAjcCNCACIAJBBGqtQoCAgICwPoQ3AyAgAiACQQhqrUKAgICAwD6ENwMYIAIgAkEYajYCMCABKAIcIAEoAiAgAkEoahBFIQAgAigCCCIBRQ0DIAIoAgwgAUEBEKcEDAMLIAAtAAEhACACQQE2AiwgAkH8l8IANgIoIAJCATcCNCACIAJBGGqtQoCAgICQPoQ3AwggAiAAQQJ0IgBBzKjCAGooAgA2AhwgAiAAQfSpwgBqKAIANgIYIAIgAkEIajYCMCABKAIcIAEoAiAgAkEoahBFIQAMAgsgACgCBCIAKAIAIAAoAgQgARDVBCEADAELIAAoAgQiACgCACABIAAoAgQoAhARAAAhAAsgAkFAayQAIAAPC0EBQRRB8JLCABDXAwALsQIBAX8jAEHwAGsiBiQAIAYgATYCDCAGIAA2AgggBiADNgIUIAYgAjYCECAGQbzCwgA2AhggBkECNgIcAkAgBCgCAEUEQCAGQQM2AlwgBkH4wsIANgJYIAZCAzcCZCAGIAZBEGqtQoCAgICAxACENwNIIAYgBkEIaq1CgICAgIDEAIQ3A0AMAQsgBkEwaiAEQRBqKQIANwMAIAZBKGogBEEIaikCADcDACAGIAQpAgA3AyAgBkEENgJcIAZBrMPCADYCWCAGQgQ3AmQgBiAGQRBqrUKAgICAgMQAhDcDUCAGIAZBCGqtQoCAgICAxACENwNIIAYgBkEgaq1CgICAgKDEAIQ3A0ALIAYgBkEYaq1CgICAgJDEAIQ3AzggBiAGQThqNgJgIAZB2ABqIAUQpAMAC+YCAQh/IwBBEGsiBiQAQQohAyAAIgRB6AdPBEAgBCEFA0AgBkEGaiADaiIHQQNrIAUgBUGQzgBuIgRBkM4AbGsiCEH//wNxQeQAbiIJQQF0IgpBksTCAGotAAA6AAAgB0EEayAKQZHEwgBqLQAAOgAAIAdBAWsgCCAJQeQAbGtB//8DcUEBdCIIQZLEwgBqLQAAOgAAIAdBAmsgCEGRxMIAai0AADoAACADQQRrIQMgBUH/rOIESyAEIQUNAAsLAkAgBEEJTQRAIAQhBQwBCyADIAZqQQVqIAQgBEH//wNxQeQAbiIFQeQAbGtB//8DcUEBdCIEQZLEwgBqLQAAOgAAIANBAmsiAyAGQQZqaiAEQZHEwgBqLQAAOgAAC0EAIAAgBRtFBEAgA0EBayIDIAZBBmpqIAVBAXRBHnFBksTCAGotAAA6AAALIAIgAUEBQQAgBkEGaiADakEKIANrEDUgBkEQaiQAC5IDAQN/AkACQAJAAkACQAJAAkAgAC0AAA4HAAYBBgIDBAYLIAAtAARBA0cNBSAAKAIIIgAoAgAhAiAAQQRqKAIAIgMoAgAiAQRAIAIgAREDAAsgAygCBCIBRQ0EIAIgASADKAIIEKcEDAQLIAAtAARBA0cNBCAAKAIIIgAoAgAhAiAAQQRqKAIAIgMoAgAiAQRAIAIgAREDAAsgAygCBCIBRQ0DIAIgASADKAIIEKcEDAMLIAAtAARBA0cNAyAAKAIIIgAoAgAhAiAAQQRqKAIAIgMoAgAiAQRAIAIgAREDAAsgAygCBCIBRQ0CIAIgASADKAIIEKcEDAILIAAtAARBA0cNAiAAKAIIIgAoAgAhAiAAQQRqKAIAIgMoAgAiAQRAIAIgAREDAAsgAygCBCIBRQ0BIAIgASADKAIIEKcEDAELIAAtAARBA0cNASAAKAIIIgAoAgAhAiAAQQRqKAIAIgMoAgAiAQRAIAIgAREDAAsgAygCBCIBRQ0AIAIgASADKAIIEKcECyAAQQxBBBCnBAsLlAMBAX8jAEHwAGsiAiQAAn8CQAJAAkAgAC0AAEEBaw4CAQIACyACIABBAWo2AgQgAkKotMGA8DY3AyggAiACQQRqrUKAgICAgDeENwMgIAJBAjYCHCACQQI2AgwgAkGYtMEANgIIIAJBAjYCFCACQQM6AGwgAkEcNgJoIAJCoICAgBA3AmAgAkKAgICAwAA3AlggAkECNgJQIAJBAzoATCACQSw2AkggAkIgNwJAIAJCgICAgMAANwI4IAJBAjYCMCACIAJBMGo2AhggAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMAgsgAiAAQQRqNgIgIAJBATYCNCACQfCnwQA2AjAgAkIBNwI8IAIgAkEgaq1CgICAgJA3hDcDCCACIAJBCGo2AjggASgCHCABKAIgIAJBMGoQRQwBCyACIABBBGo2AiAgAkEBNgI0IAJB8KfBADYCMCACQgE3AjwgAiACQSBqrUKAgICAoDeENwMIIAIgAkEIajYCOCABKAIcIAEoAiAgAkEwahBFCyACQfAAaiQAC4gDAgR/AX4jAEFAaiIGJABBASEHAkAgAC0ABA0AIAAtAAUhCCAAKAIAIgUtABRBBHFFBEAgBSgCHEH/w8IAQfzDwgAgCEEBcSIIG0ECQQMgCBsgBSgCICgCDBECAA0BIAUoAhwgASACIAUoAiAoAgwRAgANASAFKAIcQczDwgBBAiAFKAIgKAIMEQIADQEgAyAFIAQoAgwRAAAhBwwBCyAIQQFxRQRAIAUoAhxBgcTCAEEDIAUoAiAoAgwRAgANAQsgBkEBOgAXIAZBIGogBUEIaikCADcDACAGQShqIAVBEGopAgA3AwAgBkEwaiAFQRhqKAIANgIAIAYgBSkCHDcCCCAFKQIAIQkgBkHgw8IANgI4IAYgCTcDGCAGIAZBF2o2AhAgBiAGQQhqIgU2AjQgBSABIAIQSA0AIAVBzMPCAEECEEgNACADIAZBGGogBCgCDBEAAA0AIAYoAjRBhMTCAEECIAYoAjgoAgwRAgAhBwsgAEEBOgAFIAAgBzoABCAGQUBrJAAgAAvJAgIHfwJ+IwBBEGsiBCQAIAEoAgAhBgJAAkACQCABKAIIIgIgASgCBCIHSQRAIAIgBmotAABB3wBGDQELIAIgByACIAdLGyEIAkADQCACIAdJBEAgAiAGai0AAEHfAEYNAgsgAiAIRg0DAkAgAiAGai0AACIFQTBrIgNB/wFxQQpJDQAgBUHhAGtB/wFxQRpPBEAgBUHBAGtB/wFxQRpPDQUgBUEdayEDDAELIAVB1wBrIQMLIAEgAkEBaiICNgIIIAQgCRCbAiAEKQMIQgBSDQMgBCkDACIKIAOtQv8Bg3wiCSAKWg0ACwwCC0EBIQMgASACQQFqNgIIIAlCf1IEQCAAIAlCAXw3AwhBACEDDAMLIABBADoAAQwCCyAAQgA3AwggASACQQFqNgIIDAELIABBADoAAUEBIQMLIAAgAzoAACAEQRBqJAAL0gIBB39BASEJAkACQCACRQ0AIAEgAkEBdGohCiAAQYD+A3FBCHYhCyAAQf8BcSENA0AgAUECaiEMIAcgAS0AASICaiEIIAsgAS0AACIBRwRAIAEgC0sNAiAIIQcgDCIBIApGDQIMAQsCQAJAIAcgCE0EQCAEIAhJDQEgAyAHaiEBA0AgAkUNAyACQQFrIQIgAS0AACABQQFqIQEgDUcNAAtBACEJDAULIAcgCEH4zMIAEKwEAAsgCCAEQfjMwgAQqwQACyAIIQcgDCIBIApHDQALCyAGRQ0AIAUgBmohAyAAQf//A3EhAQNAIAVBAWohAAJAIAUsAAAiAkEATgRAIAAhBQwBCyAAIANHBEAgBS0AASACQf8AcUEIdHIhAiAFQQJqIQUMAQtB6MzCABCuBAALIAEgAmsiAUEASA0BIAlBAXMhCSADIAVHDQALCyAJQQFxC/kCAQV/IwBBMGsiAyQAIANBIGpCADcDACADQRhqQgA3AwAgA0EQakIANwMAIANCADcDCCADQShqIAEgA0EIakEgECgCQAJAAkAgAy0AKCIEQQRGDQADQAJAAkACQAJAAkAgBEEBaw4DAgABBAsgAygCLC0ACEEjRg0CDAMLIAMoAiwiBC0ACEEjRw0CIAQoAgAhBiAEQQRqKAIAIgcoAgAiBQRAIAYgBREDAAsgBygCBCIFBEAgBiAFIAcoAggQpwQLIARBDEEEEKcEDAELIAMtAClBI0cNAQsgA0EoaiABIANBCGpBIBAoIAMtACgiBEEERw0BDAILCyAAIAMpAyg3AgAMAQsgAygCLCIEQSFPDQEgBCACKAIAIAIoAggiAWtLBEAgAiABIARBAUEBEJABIAIoAgghAQsgAigCBCABaiADQQhqIAQQOxogACAENgIEIAIgASAEajYCCCAAQQQ6AAALIANBMGokAA8LIARBIEGIo8EAEKsEAAvYAgEEfyMAQRBrIgIkAAJAIAFBgAFPBEAgAkEMaiIEQQJyIQMgAkEANgIMAkAgAUGAEE8EQCAEQQNyIQUgAUGAgARPBEAgAkEQaiEDIAIgAUESdkHwAXI6AAwgAiABQQZ2QT9xQYABcjoADiACIAFBDHZBP3FBgAFyOgANIAUhBAwCCyACIAFBDHZB4AFyOgAMIAIgAUEGdkE/cUGAAXI6AA0gAyEEIAUhAwwBCyACQQxqQQFyIQQgAiABQQZ2QcABcjoADAsgBCABQT9xQYABcjoAACADIAJBDGprIgMgACgCACAAKAIIIgFrSwRAIAAgASADEJMBIAAoAgghAQsgACgCBCABaiACQQxqIAMQOxogACABIANqNgIIDAELIAAoAggiAyAAKAIARgRAIABBwIfCABDCAQsgACgCBCADaiABOgAAIAAgA0EBajYCCAsgAkEQaiQAQQAL2AIBBH8jAEEQayICJAACQCABQYABTwRAIAJBDGoiBEECciEDIAJBADYCDAJAIAFBgBBPBEAgBEEDciEFIAFBgIAETwRAIAJBEGohAyACIAFBEnZB8AFyOgAMIAIgAUEGdkE/cUGAAXI6AA4gAiABQQx2QT9xQYABcjoADSAFIQQMAgsgAiABQQx2QeABcjoADCACIAFBBnZBP3FBgAFyOgANIAMhBCAFIQMMAQsgAkEMakEBciEEIAIgAUEGdkHAAXI6AAwLIAQgAUE/cUGAAXI6AAAgAyACQQxqayIDIAAoAgAgACgCCCIBa0sEQCAAIAEgAxCTASAAKAIIIQELIAAoAgQgAWogAkEMaiADEDsaIAAgASADajYCCAwBCyAAKAIIIgMgACgCAEYEQCAAQcyKwgAQwgELIAAoAgQgA2ogAToAACAAIANBAWo2AggLIAJBEGokAEEAC/ECAQR/IAAoAgwhAgJAAkAgAUGAAk8EQCAAKAIYIQMCQAJAIAAgAkYEQCAAQRRBECAAKAIUIgIbaigCACIBDQFBACECDAILIAAoAggiASACNgIMIAIgATYCCAwBCyAAQRRqIABBEGogAhshBANAIAQhBSABIgJBFGogAkEQaiACKAIUIgEbIQQgAkEUQRAgARtqKAIAIgENAAsgBUEANgIACyADRQ0CIAAgACgCHEECdEGo5cIAaiIBKAIARwRAIANBEEEUIAMoAhAgAEYbaiACNgIAIAJFDQMMAgsgASACNgIAIAINAUHE6MIAQcTowgAoAgBBfiAAKAIcd3E2AgAMAgsgACgCCCIAIAJHBEAgACACNgIMIAIgADYCCA8LQcDowgBBwOjCACgCAEF+IAFBA3Z3cTYCAA8LIAIgAzYCGCAAKAIQIgEEQCACIAE2AhAgASACNgIYCyAAKAIUIgBFDQAgAiAANgIUIAAgAjYCGAsLxgIBA38jAEEQayICJAACQCABQYABTwRAIAJBADYCDAJ/IAFBgBBPBEAgAUGAgARPBEAgAkEMakEDciEEIAIgAUESdkHwAXI6AAwgAiABQQZ2QT9xQYABcjoADiACIAFBDHZBP3FBgAFyOgANQQQMAgsgAkEMakECciEEIAIgAUEMdkHgAXI6AAwgAiABQQZ2QT9xQYABcjoADUEDDAELIAJBDGpBAXIhBCACIAFBBnZBwAFyOgAMQQILIQMgBCABQT9xQYABcjoAACADIAAoAgAgACgCCCIBa0sEQCAAIAEgAxC5ASAAKAIIIQELIAAoAgQgAWogAkEMaiADEDsaIAAgASADajYCCAwBCyAAKAIIIgMgACgCAEYEQCAAQejAwgAQwgELIAAgA0EBajYCCCAAKAIEIANqIAE6AAALIAJBEGokAEEAC5QDAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkBBAiAAKAIAIgAoAgBB+////wdqIgMgA0EMTxtBAWsOCwECAwQFBgcICQoLAAsgAiAAQQRqNgIMIAFB6NTBAEEMIAJBDGpB2NTBABB/DAsLIAIgAEEEajYCDCABQdDXwQBBDyACQQxqQcDXwQAQfwwKCyACIAA2AgwgAUGA1MEAQQ0gAkEMakHw08EAEH8MCQsgAiAAQQRqNgIMIAFB+NXBAEEMQYTWwQBBDCACQQxqQejVwQAQyQEMCAsgAiAAQQRqNgIMIAFB39fBAEERQfDXwQBBCyACQQxqQYTNwQAQyQEMBwsgAUG018EAQQoQ5QMMBgsgAUH718EAQR0Q5QMMBQsgAiAAQQRqNgIMIAFBmNjBAEEJQaHYwQBBDiACQQxqQaDWwQAQyQEMBAsgAUGv2MEAQRYQ5QMMAwsgAUHF2MEAQRgQ5QMMAgsgAUHd2MEAQRgQ5QMMAQsgAUH12MEAQRgQ5QMLIAJBEGokAAvEAgECfyMAQRBrIgIkAAJAIAFBgAFPBEAgAkEANgIMAn8gAUGAEE8EQCABQYCABE8EQCACIAFBP3FBgAFyOgAPIAIgAUESdkHwAXI6AAwgAiABQQZ2QT9xQYABcjoADiACIAFBDHZBP3FBgAFyOgANQQQMAgsgAiABQT9xQYABcjoADiACIAFBDHZB4AFyOgAMIAIgAUEGdkE/cUGAAXI6AA1BAwwBCyACIAFBP3FBgAFyOgANIAIgAUEGdkHAAXI6AAxBAgshASABIAAoAgAgACgCCCIDa0sEQCAAIAMgARCgASAAKAIIIQMLIAAoAgQgA2ogAkEMaiABEDsaIAAgASADajYCCAwBCyAAKAIIIgMgACgCAEYEQCAAQcyTwgAQwgELIAAoAgQgA2ogAToAACAAIANBAWo2AggLIAJBEGokAEEAC48DAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkBBAiAAKAIAQfv///8HaiIDIANBDE8bQQFrDgsBAgMEBQYHCAkKCwALIAIgAEEEajYCDCABQcSZwABBDCACQQxqQbSZwAAQfwwLCyACIABBBGo2AgwgAUGMoMAAQQ8gAkEMakH8n8AAEH8MCgsgAiAANgIMIAFBrKDAAEENIAJBDGpBnKDAABB/DAkLIAIgAEEEajYCDCABQYihwABBDEGUocAAQQwgAkEMakH4oMAAEMkBDAgLIAIgAEEEajYCDCABQZyjwABBEUGto8AAQQsgAkEMakGYmMAAEMkBDAcLIAFBuKPAAEEKEOUDDAYLIAFBwqPAAEEdEOUDDAULIAIgAEEEajYCDCABQfCjwABBCUH5o8AAQQ4gAkEMakHgo8AAEMkBDAQLIAFBh6TAAEEWEOUDDAMLIAFBnaTAAEEYEOUDDAILIAFBtaTAAEEYEOUDDAELIAFBzaTAAEEYEOUDCyACQRBqJAALjwMBAn8jAEEQayICJAACfwJAAkACQAJAAkACQAJAAkACQAJAAkACQEECIAAoAgBB+////wdqIgMgA0EMTxtBAWsOCwECAwQFBgcICQoLAAsgAiAAQQRqNgIMIAFB2LzAAEEMIAJBDGpByLzAABB/DAsLIAIgAEEEajYCDCABQaDDwABBDyACQQxqQZDDwAAQfwwKCyACIAA2AgwgAUHAw8AAQQ0gAkEMakGww8AAEH8MCQsgAiAAQQRqNgIMIAFBnMTAAEEMQajEwABBDCACQQxqQYzEwAAQyQEMCAsgAiAAQQRqNgIMIAFBsMbAAEERQcHGwABBCyACQQxqQay7wAAQyQEMBwsgAUHMxsAAQQoQ5QMMBgsgAUHWxsAAQR0Q5QMMBQsgAiAAQQRqNgIMIAFBhMfAAEEJQY3HwABBDiACQQxqQfTGwAAQyQEMBAsgAUGbx8AAQRYQ5QMMAwsgAUGxx8AAQRgQ5QMMAgsgAUHJx8AAQRgQ5QMMAQsgAUHhx8AAQRgQ5QMLIAJBEGokAAuPAwECfyMAQRBrIgIkAAJ/AkACQAJAAkACQAJAAkACQAJAAkACQAJAQQIgACgCAEH7////B2oiAyADQQxPG0EBaw4LAQIDBAUGBwgJCgsACyACIABBBGo2AgwgAUGo38AAQQwgAkEMakGY38AAEH8MCwsgAiAAQQRqNgIMIAFB3OXAAEEPIAJBDGpBzOXAABB/DAoLIAIgADYCDCABQfzlwABBDSACQQxqQezlwAAQfwwJCyACIABBBGo2AgwgAUHF5sAAQQxB0ebAAEEMIAJBDGpB6NrAABDJAQwICyACIABBBGo2AgwgAUHc6MAAQRFB7ejAAEELIAJBDGpB+NrAABDJAQwHCyABQfjowABBChDlAwwGCyABQYLpwABBHRDlAwwFCyACIABBBGo2AgwgAUGw6cAAQQlBuenAAEEOIAJBDGpBoOnAABDJAQwECyABQcfpwABBFhDlAwwDCyABQd3pwABBGBDlAwwCCyABQfXpwABBGBDlAwwBCyABQY3qwABBGBDlAwsgAkEQaiQAC48DAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkBBAiAAKAIAQfv///8HaiIDIANBDE8bQQFrDgsBAgMEBQYHCAkKCwALIAIgAEEEajYCDCABQeyHwQBBDCACQQxqQdyHwQAQfwwLCyACIABBBGo2AgwgAUHQi8EAQQ8gAkEMakHAi8EAEH8MCgsgAiAANgIMIAFB8IvBAEENIAJBDGpB4IvBABB/DAkLIAIgAEEEajYCDCABQcyMwQBBDEHYjMEAQQwgAkEMakG8jMEAEMkBDAgLIAIgAEEEajYCDCABQeCOwQBBEUHxjsEAQQsgAkEMakHAhsEAEMkBDAcLIAFB/I7BAEEKEOUDDAYLIAFBho/BAEEdEOUDDAULIAIgAEEEajYCDCABQbSPwQBBCUG9j8EAQQ4gAkEMakGkj8EAEMkBDAQLIAFBy4/BAEEWEOUDDAMLIAFB4Y/BAEEYEOUDDAILIAFB+Y/BAEEYEOUDDAELIAFBkZDBAEEYEOUDCyACQRBqJAALzQIBAn8jAEEwayICJAACfwJAAkACQEEBIAAtAABBAmsiAyADQf8BcUEDTxtB/wFxQQFrDgIBAgALIAIgAEEBajYCBCACQQI2AgwgAkGAwsEANgIIIAJCATcCFCACIAJBBGqtQoCAgIDgNIQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMAgsgAiAANgIEIAJBATYCDCACQfCnwQA2AgggAkIBNwIUIAIgAkEEaq1CgICAgJA4hDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwBCyACIABBBGo2AgAgAiAAQQhqNgIEIAJBAjYCDCACQdTCwQA2AgggAkICNwIUIAIgAkEEaq1CgICAgOA0hDcDKCACIAKtQoCAgIDwNYQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEULIAJBMGokAAvEAgEEfyAAQgA3AhAgAAJ/QQAgAUGAAkkNABpBHyABQf///wdLDQAaIAFBBiABQQh2ZyIDa3ZBAXEgA0EBdGtBPmoLIgI2AhwgAkECdEGo5cIAaiEEQQEgAnQiA0HE6MIAKAIAcUUEQCAEIAA2AgAgACAENgIYIAAgADYCDCAAIAA2AghBxOjCAEHE6MIAKAIAIANyNgIADwsCQAJAIAEgBCgCACIDKAIEQXhxRgRAIAMhAgwBCyABQRkgAkEBdmtBACACQR9HG3QhBQNAIAMgBUEddkEEcWpBEGoiBCgCACICRQ0CIAVBAXQhBSACIQMgAigCBEF4cSABRw0ACwsgAigCCCIBIAA2AgwgAiAANgIIIABBADYCGCAAIAI2AgwgACABNgIIDwsgBCAANgIAIAAgAzYCGCAAIAA2AgwgACAANgIIC9MCAQR/IwBBQGoiBSQAQQEhBgJAIAAoAhwiByABIAIgACgCICIIKAIMIgERAgANAAJAIAAtABRBBHFFBEAgB0GJxMIAQQEgARECAA0CIAMgACAEKAIMEQAARQ0BDAILIAdBisTCAEECIAERAgANASAFQQE6ABcgBUEgaiAAQQhqKQIANwMAIAVBKGogAEEQaikCADcDACAFQTBqIABBGGooAgA2AgAgBSAINgIMIAUgBzYCCCAFQeDDwgA2AjggBSAAKQIANwMYIAUgBUEXajYCECAFIAVBCGo2AjQgAyAFQRhqIAQoAgwRAAANASAFKAI0QYTEwgBBAiAFKAI4KAIMEQIADQELAkAgAg0AIAAtABRBBHENACAAKAIcQYzEwgBBASAAKAIgKAIMEQIADQELIAAoAhxB+cDCAEEBIAAoAiAoAgwRAgAhBgsgBUFAayQAIAYLtAIBB38jAEEwayICJAAgAkEBQX8gASAAKAIEIgFqIgNBAWtndkEBaiADQQFNGyIDQQFBfyABQQFrZ3ZBAWogAUEBTRsiBSADIAVLG0EBaiIDNgIMAkAgA0EATgRAQYXlwgAtAAAaIANBARD1AyIFRQ0BIAEEQCAFIAAoAgAiByAAKAIIIgRqIAEgACgCDCIGIAQgBksiCBsgBGsiBBA7IARqIAcgBkEAIAgbIgYQOxogByABQQEQpwQgAEEANgIIIAAgBCAGajYCDAsgACADNgIEIAAgBTYCACACQTBqJAAPCyACQQE2AhQgAkGY6cEANgIQIAJCATcCHCACIAJBDGqtQoCAgIAQhDcDKCACIAJBKGo2AhggAkEQakGg6cEAEKQDAAtBwOfBAEEuQdjowQAQwwIAC+UCAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAIAAoAgAiAC0AAEEBaw4HAQIDBAUGBwALIAIgAEEEajYCDCABQbjPwQBBFCACQQxqQajPwQAQfwwHCyACIABBBGo2AgwgAUHcz8EAQQ4gAkEMakHMz8EAEH8MBgsgAiAAQQRqNgIMIAFB6s/BAEEYIAJBDGpBqM/BABB/DAULIAIgAEEBajYCDCABQYLQwQBBFiACQQxqQbzOwQAQfwwECyACIABBBGo2AgwgAUGY0MEAQRkgAkEMakGoz8EAEH8MAwsgAiAAQQRqNgIMIAFBsdDBAEEVIAJBDGpBqM/BABB/DAILIAIgAEEEajYCDCABQcbQwQBBGSACQQxqQajPwQAQfwwBCyACIABBCGo2AgwgAUHw0MEAQQlB+dDBAEEMIABBBGpB4NDBAEGF0cEAQQYgAkEMakHMz8EAEMMBCyACQRBqJAALugICBH8BfiMAQUBqIgMkAEEBIQUCQCAALQAEDQAgAC0ABSEGAkAgACgCACIELQAUQQRxRQRAIAZBAXFFDQEgBCgCHEH/w8IAQQIgBCgCICgCDBECAEUNAQwCCyAGQQFxRQRAIAQoAhxBjcTCAEEBIAQoAiAoAgwRAgANAgsgA0EBOgAXIANBIGogBEEIaikCADcDACADQShqIARBEGopAgA3AwAgA0EwaiAEQRhqKAIANgIAIAMgBCkCHDcCCCAEKQIAIQcgA0Hgw8IANgI4IAMgBzcDGCADIANBF2o2AhAgAyADQQhqNgI0IAEgA0EYaiACKAIMEQAADQEgAygCNEGExMIAQQIgAygCOCgCDBECACEFDAELIAEgBCACKAIMEQAAIQULIABBAToABSAAIAU6AAQgA0FAayQAC+ACAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAIAAtAABBAWsOBwECAwQFBgcACyACIABBBGo2AgwgAUGQq8AAQRQgAkEMakHknsAAEH8MBwsgAiAAQQRqNgIMIAFBpKvAAEEOIAJBDGpBuJrAABB/DAYLIAIgAEEEajYCDCABQbKrwABBGCACQQxqQeSewAAQfwwFCyACIABBAWo2AgwgAUHKq8AAQRYgAkEMakH0m8AAEH8MBAsgAiAAQQRqNgIMIAFB4KvAAEEZIAJBDGpB5J7AABB/DAMLIAIgAEEEajYCDCABQfmrwABBFSACQQxqQeSewAAQfwwCCyACIABBBGo2AgwgAUGOrMAAQRkgAkEMakHknsAAEH8MAQsgAiAAQQhqNgIMIAFBp6zAAEEJQbCswABBDCAAQQRqQdCZwABBvKzAAEEGIAJBDGpBuJrAABDDAQsgAkEQaiQAC+ACAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAIAAtAABBAWsOBwECAwQFBgcACyACIABBBGo2AgwgAUGkzsAAQRQgAkEMakH4wcAAEH8MBwsgAiAAQQRqNgIMIAFBuM7AAEEOIAJBDGpBzL3AABB/DAYLIAIgAEEEajYCDCABQcbOwABBGCACQQxqQfjBwAAQfwwFCyACIABBAWo2AgwgAUHezsAAQRYgAkEMakGIv8AAEH8MBAsgAiAAQQRqNgIMIAFB9M7AAEEZIAJBDGpB+MHAABB/DAMLIAIgAEEEajYCDCABQY3PwABBFSACQQxqQfjBwAAQfwwCCyACIABBBGo2AgwgAUGiz8AAQRkgAkEMakH4wcAAEH8MAQsgAiAAQQhqNgIMIAFBu8/AAEEJQcTPwABBDCAAQQRqQeS8wABB0M/AAEEGIAJBDGpBzL3AABDDAQsgAkEQaiQAC+ACAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAIAAtAABBAWsOBwECAwQFBgcACyACIABBBGo2AgwgAUGM8cAAQRQgAkEMakGY3MAAEH8MBwsgAiAAQQRqNgIMIAFBoPHAAEEOIAJBDGpBnODAABB/DAYLIAIgAEEEajYCDCABQa7xwABBGCACQQxqQZjcwAAQfwwFCyACIABBAWo2AgwgAUHG8cAAQRYgAkEMakHY4cAAEH8MBAsgAiAAQQRqNgIMIAFB3PHAAEEZIAJBDGpBmNzAABB/DAMLIAIgAEEEajYCDCABQfXxwABBFSACQQxqQZjcwAAQfwwCCyACIABBBGo2AgwgAUGK8sAAQRkgAkEMakGY3MAAEH8MAQsgAiAAQQhqNgIMIAFBo/LAAEEJQazywABBDCAAQQRqQbTfwABBuPLAAEEGIAJBDGpBnODAABDDAQsgAkEQaiQAC+ACAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAIAAtAABBAWsOBwECAwQFBgcACyACIABBBGo2AgwgAUGgl8EAQRQgAkEMakGMlMEAEH8MBwsgAiAAQQRqNgIMIAFBtJfBAEEOIAJBDGpB4IjBABB/DAYLIAIgAEEEajYCDCABQcKXwQBBGCACQQxqQYyUwQAQfwwFCyACIABBAWo2AgwgAUHal8EAQRYgAkEMakGcisEAEH8MBAsgAiAAQQRqNgIMIAFB8JfBAEEZIAJBDGpBjJTBABB/DAMLIAIgAEEEajYCDCABQYmYwQBBFSACQQxqQYyUwQAQfwwCCyACIABBBGo2AgwgAUGemMEAQRkgAkEMakGMlMEAEH8MAQsgAiAAQQhqNgIMIAFBt5jBAEEJQcCYwQBBDCAAQQRqQfiHwQBBzJjBAEEGIAJBDGpB4IjBABDDAQsgAkEQaiQAC6gCAQV/IABBADYCFCAAQQA2AiAgAEEAOgAlIABBADYCCCABKAIgIgNBAnQhBSABKAIcIQYgAyAAKAIYSwRAIABBGGpBACADQQRBBBCSASAAKAIgIQQgACgCFCECCyAAKAIcIARBAnRqIAYgBRA7GiAAIAMgBGo2AiAgASgCFCIDQQJ0IQQgASgCECEFIAMgACgCDCACa0sEQCAAQQxqIAIgA0EEQQQQkgEgACgCFCECCyAAKAIQIAJBAnRqIAUgBBA7GiAAIAIgA2o2AhQgASgCBCEEIAEoAggiAyAAKAIAIAAoAggiAmtLBEAgACACIANBBEEIEJIBIAAoAgghAgsgACgCBCACQQN0aiAEIANBA3QQOxogACACIANqNgIIIAAgAS0AJToAJQukAgIFfwF+IwBBEGsiAyQAIAAoAhAhBSADQgA3AwggBSACQf8BcSICIAIgBUobIgZBCG0hAgJAIAZBCGtBcEsgAkEJT3JFBEAgACgCBCIHIAEgAmtBAWoiBEkNASACQQN0IQECQAJAAkAgAiAHIARrTQRAIAAoAgAgBGohBCAGQXhxQQhGDQEgA0EIaiAEIAIQOxogAykDCCEICyAAIAUgAWs2AhAgACAALQAUIAFqOgAUIAJBCEkNASAAIAg3AwgMAgsgACAFIAFrNgIQIAAgAC0AFCABajoAFCADIAQtAAA6AAggAykDCCEICyAAIAApAwggAa2GIAiENwMICyADQRBqJAAPC0Hk3sEAQShBjN/BABDtAgALIAQgB0Gc38EAEKoEAAudAgEFfwJAAkACQAJAIAJBA2pBfHEiBCACRg0AIAQgAmsiBCADIAMgBEsbIgVFDQBBACEEIAFB/wFxIQZBASEHA0AgAiAEai0AACAGRg0EIAUgBEEBaiIERw0ACyAFIANBCGsiCEsNAgwBCyADQQhrIQhBACEFCyABQf8BcUGBgoQIbCEEA0BBgIKECCACIAVqIgcoAgAgBHMiBmsgBnJBgIKECCAHQQRqKAIAIARzIgZrIAZycUGAgYKEeHFBgIGChHhHDQEgBUEIaiIFIAhNDQALCyADIAVHBEAgAUH/AXEhBEEBIQcDQCAEIAIgBWotAABGBEAgBSEEDAMLIAMgBUEBaiIFRw0ACwtBACEHCyAAIAQ2AgQgACAHNgIAC5YCAQN/IwBBEGsiAiQAIAJBADYCDAJ/IAFBgAFPBEAgAUGAEE8EQCABQYCABE8EQCACIAFBP3FBgAFyOgAPIAIgAUESdkHwAXI6AAwgAiABQQZ2QT9xQYABcjoADiACIAFBDHZBP3FBgAFyOgANQQQMAwsgAiABQT9xQYABcjoADiACIAFBDHZB4AFyOgAMIAIgAUEGdkE/cUGAAXI6AA1BAwwCCyACIAFBP3FBgAFyOgANIAIgAUEGdkHAAXI6AAxBAgwBCyACIAE6AAxBAQshASAAIAAoAgQiAyABazYCBCAAIAAoAgAgASADS3IiBDYCAEEBIQMgBEUEQCAAKAIIIAJBDGogARDlAyEDCyACQRBqJAAgAwuvAgEFfyMAQTBrIgIkACACQSBqIgQgAUE4aikDADcDACACQRhqIgUgAUEwaikDADcDACACQRBqIgYgAUEoaikDADcDAEGF5cIALQAAGiACIAEpAyA3AwhBIEEIEPUDIgMEQCADIAIpAwg3AwAgA0EYaiAEKQMANwMAIANBEGogBSkDADcDACADQQhqIAYpAwA3AwACQCABKAIEQQJHDQACQAJAIAEtABhBAWsOAgIAAQsgAkEBNgIMIAJBtP7AADYCCCACQgA3AhQgAiACQSxqNgIQIAJBCGpBuP/AABCkAwALIAFBCGoQqQEgASgCCCIERQ0AIAEoAgwgBEEMbEEEEKcECyABQcAAQQgQpwQgAEHklsAANgIEIAAgAzYCACACQTBqJAAPC0EIQSAQ0wQAC94CAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQCAAKAIAIgAtAABBAWsOBgECAwQFBgALIAIgAEEIajYCDCABQaDOwQBBDEGLzsEAQQMgAkEMakGQzsEAEMkBDAYLIAIgAEEIajYCDCABQazOwQBBDkGLzsEAQQMgAkEMakGQzsEAEMkBDAULIAIgAEEBajYCDCABQczOwQBBFCACQQxqQbzOwQAQfwwECyACIABBCGo2AgwgAUHgzsEAQQ5Bi87BAEEDIABBBGpB9MzBAEHuzsEAQQggAkEMakG4zcEAEMMBDAMLIAIgAEEBajYCDCABQfbOwQBBE0GLzsEAQQMgAEEEakH0zMEAQe7OwQBBCCACQQxqQYTNwQAQwwEMAgsgAUGJz8EAQQ8Q5QMMAQsgAiAAQQFqNgIMIAFBmM/BAEEQQYvOwQBBAyACQQxqQYTNwQAQyQELIAJBEGokAAuLAgEBfyMAQRBrIgIkACAAKAIAIQACfyABKAIAIAEoAghyBEAgAkEANgIMIAEgAkEMagJ/IABBgAFPBEAgAEGAEE8EQCAAQYCABE8EQCACIABBP3FBgAFyOgAPIAIgAEESdkHwAXI6AAwgAiAAQQZ2QT9xQYABcjoADiACIABBDHZBP3FBgAFyOgANQQQMAwsgAiAAQT9xQYABcjoADiACIABBDHZB4AFyOgAMIAIgAEEGdkE/cUGAAXI6AA1BAwwCCyACIABBP3FBgAFyOgANIAIgAEEGdkHAAXI6AAxBAgwBCyACIAA6AAxBAQsQNgwBCyABKAIcIAAgASgCICgCEBEAAAsgAkEQaiQAC4YCAQN/IwBBgAFrIgQkACAAKAIAIQACfwJAIAEoAhQiAkEQcUUEQCACQSBxDQEgACgCAEEBIAEQbAwCCyAAKAIAIQBBACECA0AgAiAEakH/AGogAEEPcSIDQTByIANB1wBqIANBCkkbOgAAIAJBAWshAiAAQQ9LIABBBHYhAA0ACyABQQFBj8TCAEECIAIgBGpBgAFqQQAgAmsQNQwBCyAAKAIAIQBBACECA0AgAiAEakH/AGogAEEPcSIDQTByIANBN2ogA0EKSRs6AAAgAkEBayECIABBD0sgAEEEdiEADQALIAFBAUGPxMIAQQIgAiAEakGAAWpBACACaxA1CyAEQYABaiQAC/0BAgR/AX4jAEEgayIFJAACQAJAIARFDQAgASABIAJqIgJLDQAgAyAEakEBa0EAIANrca0gAiAAKAIAIgFBAXQiBiACIAZLGyICQQhBBEEBIARBgQhJGyAEQQFGGyIGIAIgBksbIgatfiIJQiCIUEUNACAJpyIIQYCAgIB4IANrSw0AQQAhAiAFIAEEfyAFIAEgBGw2AhwgBSAAKAIENgIUIAMFIAILNgIYIAVBCGogAyAIIAVBFGoQ2wEgBSgCCEEBRw0BIAUoAhAhAiAFKAIMIQcLIAcgAkGIisAAENcDAAsgBSgCDCEBIAAgBjYCACAAIAE2AgQgBUEgaiQAC/0BAgR/AX4jAEEgayIFJAACQAJAIARFDQAgASABIAJqIgJLDQAgAyAEakEBa0EAIANrca0gAiAAKAIAIgFBAXQiBiACIAZLGyICQQhBBEEBIARBgQhJGyAEQQFGGyIGIAIgBksbIgatfiIJQiCIUEUNACAJpyIIQYCAgIB4IANrSw0AQQAhAiAFIAEEfyAFIAEgBGw2AhwgBSAAKAIENgIUIAMFIAILNgIYIAVBCGogAyAIIAVBFGoQ2wEgBSgCCEEBRw0BIAUoAhAhAiAFKAIMIQcLIAcgAkH4/MAAENcDAAsgBSgCDCEBIAAgBjYCACAAIAE2AgQgBUEgaiQAC64CAQJ/IwBBQGoiAiQAAn8CQAJAAkACQEEDIAAoAgBBB2siAyADQQNPG0EBaw4DAQIDAAsgASgCHEHssMEAQckAIAEoAiAoAgwRAgAMAwsgASgCHEG1scEAQfIAIAEoAiAoAgwRAgAMAgsgAiAAQQxqNgIMIAIgAEEEajYCJCACQQI2AiwgAkHIssEANgIoIAJCAjcCNCACIAJBJGqtQoCAgICQNYQ3AxggAiACQQxqrUKAgICAoDWENwMQIAIgAkEQajYCMCABKAIcIAEoAiAgAkEoahBFDAELIAIgADYCJCACQQE2AiwgAkHwp8EANgIoIAJCATcCNCACIAJBJGqtQoCAgICwNYQ3AxAgAiACQRBqNgIwIAEoAhwgASgCICACQShqEEULIAJBQGskAAv9AQIEfwF+IwBBIGsiBSQAAkACQCAERQ0AIAEgASACaiICSw0AIAMgBGpBAWtBACADa3GtIAIgACgCACIBQQF0IgYgAiAGSxsiAkEIQQRBASAEQYEISRsgBEEBRhsiBiACIAZLGyIGrX4iCUIgiFBFDQAgCaciCEGAgICAeCADa0sNAEEAIQIgBSABBH8gBSABIARsNgIcIAUgACgCBDYCFCADBSACCzYCGCAFQQhqIAMgCCAFQRRqENsBIAUoAghBAUcNASAFKAIQIQIgBSgCDCEHCyAHIAJBwN3BABDXAwALIAUoAgwhASAAIAY2AgAgACABNgIEIAVBIGokAAvLAQIEfwF+IwBBIGsiAyQAAkACQCABIAEgAmoiAksNAEEIIAIgACgCACIBQQF0IgQgAiAESxsiAiACQQhNGyIErSIHQiCIUEUNACAHpyIFQf////8HSw0AIAMgAQR/IAMgATYCHCADIAAoAgQ2AhRBAQVBAAs2AhggA0EIakEBIAUgA0EUahDbASADKAIIQQFHDQEgAygCECECIAMoAgwhBgsgBiACQcCIwgAQ1wMACyADKAIMIQEgACAENgIAIAAgATYCBCADQSBqJAAL2QIBAX8jAEEQayICJAACfwJAAkACQAJAAkACQAJAIAAtAABBAWsOBgECAwQFBgALIAIgAEEIajYCDCABQdibwABBDEGsmcAAQQMgAkEMakHIm8AAEMkBDAYLIAIgAEEIajYCDCABQeSbwABBDkGsmcAAQQMgAkEMakHIm8AAEMkBDAULIAIgAEEBajYCDCABQYScwABBFCACQQxqQfSbwAAQfwwECyACIABBCGo2AgwgAUGYnMAAQQ5BrJnAAEEDIABBBGpBiJjAAEGmnMAAQQggAkEMakHMmMAAEMMBDAMLIAIgAEEBajYCDCABQa6cwABBE0GsmcAAQQMgAEEEakGImMAAQaacwABBCCACQQxqQZiYwAAQwwEMAgsgAUHBnMAAQQ8Q5QMMAQsgAiAAQQFqNgIMIAFB0JzAAEEQQayZwABBAyACQQxqQZiYwAAQyQELIAJBEGokAAvZAgEBfyMAQRBrIgIkAAJ/AkACQAJAAkACQAJAAkAgAC0AAEEBaw4GAQIDBAUGAAsgAiAAQQhqNgIMIAFB7L7AAEEMQcC8wABBAyACQQxqQdy+wAAQyQEMBgsgAiAAQQhqNgIMIAFB+L7AAEEOQcC8wABBAyACQQxqQdy+wAAQyQEMBQsgAiAAQQFqNgIMIAFBmL/AAEEUIAJBDGpBiL/AABB/DAQLIAIgAEEIajYCDCABQay/wABBDkHAvMAAQQMgAEEEakGcu8AAQbq/wABBCCACQQxqQeC7wAAQwwEMAwsgAiAAQQFqNgIMIAFBwr/AAEETQcC8wABBAyAAQQRqQZy7wABBur/AAEEIIAJBDGpBrLvAABDDAQwCCyABQdW/wABBDxDlAwwBCyACIABBAWo2AgwgAUHkv8AAQRBBwLzAAEEDIAJBDGpBrLvAABDJAQsgAkEQaiQAC9kCAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQCAALQAAQQFrDgYBAgMEBQYACyACIABBCGo2AgwgAUG84cAAQQxBkN/AAEEDIAJBDGpBrOHAABDJAQwGCyACIABBCGo2AgwgAUHI4cAAQQ5BkN/AAEEDIAJBDGpBrOHAABDJAQwFCyACIABBAWo2AgwgAUHo4cAAQRQgAkEMakHY4cAAEH8MBAsgAiAAQQhqNgIMIAFB/OHAAEEOQZDfwABBAyAAQQRqQYzewABBiuLAAEEIIAJBDGpB+NzAABDDAQwDCyACIABBAWo2AgwgAUGS4sAAQRNBkN/AAEEDIABBBGpBjN7AAEGK4sAAQQggAkEMakH42sAAEMMBDAILIAFBpeLAAEEPEOUDDAELIAIgAEEBajYCDCABQbTiwABBEEGQ38AAQQMgAkEMakH42sAAEMkBCyACQRBqJAAL2QIBAX8jAEEQayICJAACfwJAAkACQAJAAkACQAJAIAAtAABBAWsOBgECAwQFBgALIAIgAEEIajYCDCABQYCKwQBBDEHUh8EAQQMgAkEMakHwicEAEMkBDAYLIAIgAEEIajYCDCABQYyKwQBBDkHUh8EAQQMgAkEMakHwicEAEMkBDAULIAIgAEEBajYCDCABQayKwQBBFCACQQxqQZyKwQAQfwwECyACIABBCGo2AgwgAUHAisEAQQ5B1IfBAEEDIABBBGpB6IXBAEHOisEAQQggAkEMakH0hsEAEMMBDAMLIAIgAEEBajYCDCABQdaKwQBBE0HUh8EAQQMgAEEEakHohcEAQc6KwQBBCCACQQxqQcCGwQAQwwEMAgsgAUHpisEAQQ8Q5QMMAQsgAiAAQQFqNgIMIAFB+IrBAEEQQdSHwQBBAyACQQxqQcCGwQAQyQELIAJBEGokAAv2AgEEfyMAQTBrIgAkAAJAAkBB/OPCACgCAEUEQEGU5MIAKAIAIQFBlOTCAEEANgIAIAFFDQEgAEEYaiABEQMAIABBEGoiAiAAQSRqKQIANwMAIAAgACkCHDcDCCAAKAIYIQFB/OPCACgCACIDDQICQCADRQ0AQYDkwgAoAgAiAkUNAEGE5MIAKAIAIAJBAnRBBBCnBAtBgOTCACABNgIAQfzjwgBBATYCAEGE5MIAIAApAwg3AgBBjOTCACAAQRBqKQMANwIACyAAQTBqJAAPCyAAQQA2AiggAEEBNgIcIABB8JDCADYCGCAAQgQ3AiAgAEEYakHYkcIAEKQDAAsgAEEoaiACKQMANwIAIAAgACkDCDcCICAAIAE2AhwgAEEBNgIYAkAgAEEYaiIBKAIARQ0AIAEoAgQiAkUNACABKAIIIAJBAnRBBBCnBAsgAEEANgIoIABBATYCHCAAQfiRwgA2AhggAEIENwIgIAFBgJLCABCkAwALqgICA38BfiMAQUBqIgIkACABKAIAQYCAgIB4RgRAIAEoAgwhAyACQSRqIgRBADYCACACQoCAgIAQNwIcIAJBMGogAygCACIDQQhqKQIANwMAIAJBOGogA0EQaikCADcDACACIAMpAgA3AyggAkEcakG8lMIAIAJBKGoQRRogAkEYaiAEKAIAIgM2AgAgAiACKQIcIgU3AxAgAUEIaiADNgIAIAEgBTcCAAsgASkCACEFIAFCgICAgBA3AgAgAkEIaiIDIAFBCGoiASgCADYCACABQQA2AgBBheXCAC0AABogAiAFNwMAQQxBBBD1AyIBRQRAQQRBDBDTBAALIAEgAikDADcCACABQQhqIAMoAgA2AgAgAEHIocIANgIEIAAgATYCACACQUBrJAALwAIBAX8jAEEQayICJAACfwJAAkACQAJAAkACQAJAIAAoAgAiACgCAEEBaw4GAQIDBAUGAAsgAiAAQQRqNgIMIAFBi9HBAEEVIAJBDGpBqM/BABB/DAYLIAIgAEEIajYCDCABQaDRwQBBFkG20cEAQQwgAEEEakH0zMEAQcLRwQBBDyACQQxqQbjNwQAQwwEMBQsgAiAAQQRqNgIMIAFB5NHBAEEXIAJBDGpB1NHBABB/DAQLIAIgAEEEajYCDCABQYzSwQBBGSACQQxqQfzRwQAQfwwDCyACIABBBGo2AgwgAUG40sEAQRkgAkEMakGo0sEAEH8MAgsgAiAAQQRqNgIMIAFB5NLBAEETIAJBDGpB1NLBABB/DAELIAIgAEEEajYCDCABQYjTwQBBFSACQQxqQfjSwQAQfwsgAkEQaiQAC7sCAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQCAAKAIAQQFrDgYBAgMEBQYACyACIABBBGo2AgwgAUHmqMAAQRUgAkEMakHknsAAEH8MBgsgAiAAQQhqNgIMIAFB+6jAAEEWQZGpwABBDCAAQQRqQYiYwABBnanAAEEPIAJBDGpBzJjAABDDAQwFCyACIABBBGo2AgwgAUG8qcAAQRcgAkEMakGsqcAAEH8MBAsgAiAAQQRqNgIMIAFB5KnAAEEZIAJBDGpB1KnAABB/DAMLIAIgAEEEajYCDCABQZCqwABBGSACQQxqQYCqwAAQfwwCCyACIABBBGo2AgwgAUG8qsAAQRMgAkEMakGsqsAAEH8MAQsgAiAAQQRqNgIMIAFB4KrAAEEVIAJBDGpB0KrAABB/CyACQRBqJAALuwIBAX8jAEEQayICJAACfwJAAkACQAJAAkACQAJAIAAoAgBBAWsOBgECAwQFBgALIAIgAEEEajYCDCABQfrLwABBFSACQQxqQfjBwAAQfwwGCyACIABBCGo2AgwgAUGPzMAAQRZBpczAAEEMIABBBGpBnLvAAEGxzMAAQQ8gAkEMakHgu8AAEMMBDAULIAIgAEEEajYCDCABQdDMwABBFyACQQxqQcDMwAAQfwwECyACIABBBGo2AgwgAUH4zMAAQRkgAkEMakHozMAAEH8MAwsgAiAAQQRqNgIMIAFBpM3AAEEZIAJBDGpBlM3AABB/DAILIAIgAEEEajYCDCABQdDNwABBEyACQQxqQcDNwAAQfwwBCyACIABBBGo2AgwgAUH0zcAAQRUgAkEMakHkzcAAEH8LIAJBEGokAAu7AgEBfyMAQRBrIgIkAAJ/AkACQAJAAkACQAJAAkAgACgCAEEBaw4GAQIDBAUGAAsgAiAAQQRqNgIMIAFB4u7AAEEVIAJBDGpBmNzAABB/DAYLIAIgAEEIajYCDCABQffuwABBFkGN78AAQQwgAEEEakGM3sAAQZnvwABBDyACQQxqQfjcwAAQwwEMBQsgAiAAQQRqNgIMIAFBuO/AAEEXIAJBDGpBqO/AABB/DAQLIAIgAEEEajYCDCABQeDvwABBGSACQQxqQdDvwAAQfwwDCyACIABBBGo2AgwgAUGM8MAAQRkgAkEMakH878AAEH8MAgsgAiAAQQRqNgIMIAFBuPDAAEETIAJBDGpBqPDAABB/DAELIAIgAEEEajYCDCABQdzwwABBFSACQQxqQczwwAAQfwsgAkEQaiQAC7sCAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQCAAKAIAQQFrDgYBAgMEBQYACyACIABBBGo2AgwgAUH2lMEAQRUgAkEMakGMlMEAEH8MBgsgAiAAQQhqNgIMIAFBi5XBAEEWQaGVwQBBDCAAQQRqQeiFwQBBrZXBAEEPIAJBDGpB9IbBABDDAQwFCyACIABBBGo2AgwgAUHMlcEAQRcgAkEMakG8lcEAEH8MBAsgAiAAQQRqNgIMIAFB9JXBAEEZIAJBDGpB5JXBABB/DAMLIAIgAEEEajYCDCABQaCWwQBBGSACQQxqQZCWwQAQfwwCCyACIABBBGo2AgwgAUHMlsEAQRMgAkEMakG8lsEAEH8MAQsgAiAAQQRqNgIMIAFB8JbBAEEVIAJBDGpB4JbBABB/CyACQRBqJAAL9gEBCH8gASgCCCICIAEoAgQiAyACIANLGyEIIAEoAgAhBUF/IQcgAiEEAkACQANAIAQgCEYNASABIARBAWoiBjYCCCAHQQFqIQcgBCAFaiAGIQQtAAAiBkEwa0H/AXFBCkkgBkHhAGtB/wFxQQZJcg0ACyAGQd8ARw0AIAIgBEEBayIBSw0BAkAgAgRAIAIgA08EQCACIANHIAEgA0tyDQQMAgsgAiAFaiwAAEFASA0DIAEgA00NAQwDCyABIANLDQILIAAgBzYCBCAAIAIgBWo2AgAPCyAAQQA2AgAgAEEAOgAEDwsgBSADIAIgAUH0uMIAEOwDAAvWAQIEfwF+IwBBIGsiAyQAAkACQCABIAEgAmoiAksEQEEAIQEMAQtBACEBQQggAiAAKAIAIgVBAXQiBCACIARLGyICIAJBCE0bIgStIgdCIIhQRQ0AIAenIgZB/////wdLDQAgAyAFBH8gAyAFNgIcIAMgACgCBDYCFEEBBUEACzYCGCADQQhqQQEgBiADQRRqENsBIAMoAghBAUcNASADKAIQIQIgAygCDCEBCyABIAJBqJTCABDXAwALIAMoAgwhASAAIAQ2AgAgACABNgIEIANBIGokAAuzAgECfyMAQRBrIgIkAAJ/AkACQAJAAkACQAJAAkACQAJAQQggACgCACIAKAIAQYCAgIB4cyIDIANBCE8bQQFrDggBAgMEBQYHCAALIAIgAEEEajYCDCABQajcwABBAiACQQxqQZjcwAAQfwwICyACIABBBGo2AgwgAUG83MAAQRMgAkEMakGs3MAAEH8MBwsgAiAAQQRqNgIMIAFBz9zAAEETIAJBDGpB+NrAABB/DAYLIAFB4tzAAEETEOUDDAULIAIgAEEEajYCDCABQYjdwABBEiACQQxqQfjcwAAQfwwECyABQZrdwABBGhDlAwwDCyABQbTdwABBCRDlAwwCCyABQb3dwABBFhDlAwwBCyACIAA2AgwgAUHk3cAAQQYgAkEMakHU3cAAEH8LIAJBEGokAAuaAgECfyMAQTBrIgIkAAJ/AkACQAJAAkAgAC0AACIDQQNrQQAgA0EEa0H/AXFBA0kbQQFrDgMBAgMACyABKAIcQdSswQBBJCABKAIgKAIMEQIADAMLIAEoAhxB+KzBAEHKACABKAIgKAIMEQIADAILIAIgAEEBajYCDCACQQE2AhQgAkHcrcEANgIQIAJCATcCHCACIAJBDGqtQoCAgIDwNIQ3AyggAiACQShqNgIYIAEoAhwgASgCICACQRBqEEUMAQsgAiAAQQRqNgIMIAJBATYCFCACQYiuwQA2AhAgAkIBNwIcIAIgAkEMaq1CgICAgIA1hDcDKCACIAJBKGo2AhggASgCHCABKAIgIAJBEGoQRQsgAkEwaiQAC/oBAQN/IAAgACgCCCICIAFJBH8gAiEDIAEgAmsiBCAAKAIAIAJrSwRAIAAgAiAEQQRBBBCSASAAKAIIIQMLIAAoAgQgA0ECdGohACAEQQJPBEAgAkF/cyABaiICQQdxIQEgBEECa0EHTwRAIAJBeHEhAgNAIABBADYCHCAAQQA2AhggAEEANgIUIABBADYCECAAQQA2AgwgAEEANgIIIABBADYCBCAAQQA2AgAgAEEgaiEAIAJBCGsiAg0ACwsgAQRAA0AgAEEANgIAIABBBGohACABQQFrIgENAAsLIAMgBGpBAWshAwsgAEEANgIAIANBAWoFIAELNgIIC4gCAQN/AkACQAJAAkAgACgCAA4GAAMBAwMCAwsgAC0ABEEDRw0CIAAoAggiACgCACEBIABBBGooAgAiAigCACIDBEAgASADEQMACyACKAIEIgMEQCABIAMgAigCCBCnBAsgAEEMQQQQpwQPCyAAKAIEIgFB7f///wdqIgJBCk0gAkEDR3ENASABRSABQfv///8HaiICQQ1NIAJBAkdxIAFBg4CAgHhHIAFBhICAgHhMcXJyDQEgACgCCCABQQJ0QQQQpwQPCyAAKAIEIgFB+////wdqIgJBC00gAkECR3EgAUGDgICAeEcgAUGEgICAeExxciABRXINACAAKAIIIAFBAnRBBBCnBAsLiwICAn8BfiMAQTBrIgIkAAJ/AkACQAJAIAAoAgAiA0EBa0EAIANBAk8bQQFrDgIBAgALIAIgADYCBCACQQE2AgwgAkHwp8EANgIIIAJCATcCFCACIAJBBGqtQoCAgIDQOIQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMAgsgAiAAQQRqNgIAIAIgAEEIajYCBCACQQI2AgwgAkHEvsEANgIIIAJCAjcCFCACQoCAgIDwNSIEIAJBBGqthDcDKCACIAQgAq2ENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAELIAEoAhxB1L7BAEEXIAEoAiAoAgwRAgALIAJBMGokAAv2AQICfwF+IwBBMGsiAiQAIABBBGohAwJ/IAAtAABFBEAgAiADNgIAIAIgAEEBajYCBCACQQM2AgwgAkGczMEANgIIIAJCAjcCFCACIAKtQoCAgIDwNYQ3AyggAiACQQRqrUKAgICA4DSENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAELIAIgAzYCACACIABBCGo2AgQgAkEDNgIMIAJB3MzBADYCCCACQgI3AhQgAkKAgICA8DUiBCACQQRqrYQ3AyggAiAEIAKthDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQsgAkEwaiQAC94BAQZ/AkAgAgRAIAAoAggiAyAAKAIEIgYgACgCDCIEIANJIgUbIARrQQAgAyAFG2oiBUEBayIHQQAgBSAHTxsiBSACSQRAIAAgAiAFaxCAASAAKAIEIQYgACgCCCEDIAAoAgwhBAsgAyAGIAMgBEsbIgcgBGsiAyACIAIgA0siCBshAyAAKAIAIQUgBCAHRwRAIAQgBWogASADEDsaCyAIBEAgBSABIANqIAIgA2sQOxoLIAZFDQEgACACIARqIAZwNgIMCyAAIAApAxAgAq18NwMQDwtBsOnBABCUAwAL3wEBAX8jAEEQayICJAAgAkEANgIMIAAgAkEMagJ/IAFBgAFPBEAgAUGAEE8EQCABQYCABE8EQCACIAFBP3FBgAFyOgAPIAIgAUESdkHwAXI6AAwgAiABQQZ2QT9xQYABcjoADiACIAFBDHZBP3FBgAFyOgANQQQMAwsgAiABQT9xQYABcjoADiACIAFBDHZB4AFyOgAMIAIgAUEGdkE/cUGAAXI6AA1BAwwCCyACIAFBP3FBgAFyOgANIAIgAUEGdkHAAXI6AAxBAgwBCyACIAE6AAxBAQsQQyACQRBqJAAL5wEBB38gACgCCCIFBEAgACgCBCEGA0AgBiACQQxsaiIDKAIIIgQEQCADKAIEQSRqIQADQCAAQQRrKAIAIgFBgICAgHhGIAFFckUEQCAAKAIAIAFBARCnBAsCQCAAQRRrKAIAIgdBAkYNACAAQRBrIQEgB0UEQCABKAIAIgFFDQEgAEEMaygCACABQQEQpwQMAQsgASgCACIBRQ0AIABBDGsoAgAgAUEBdEECEKcECyAAQSxqIQAgBEEBayIEDQALCyADKAIAIgAEQCADKAIEIABBLGxBBBCnBAsgAkEBaiICIAVHDQALCwuHAgICfwJ9AkACQCAAvCIBQYCAgAROBEAgAUH////7B0sNAUGBfyECQwAAAAAhACABQYCAgPwDRg0BDAILIABDAAAAAFsEQEMAAIC/IAAgAJSVDwsgAUEATgRAIABDAAAATJS8IQFB6H4hAgwCCyAAIACTQwAAAACVIQALIAAPCyABQY32qwJqIgFBF3YgAmqyIgNDgHExP5QgAUH///8DcUHzidT5A2q+QwAAgL+SIgAgA0PR9xc3lCAAIABDAAAAQJKVIgMgACAAQwAAAD+UlCIEIAMgA5QiACAAIACUIgBD7umRPpRDqqoqP5KUIAAgAEMmnng+lEMTzsw+kpSSkpSSIASTkpILmwIBAn8jAEEQayICJAACfwJAAkACQAJAAkBBAyAAKAIAIgAoAgBBgICAgHhzIgMgA0EFTxtBAWsOBAECAwQACyABQdHZwQBBDBDlAwwECyACIABBBWo2AgwgAUHd2cEAQQxBi87BAEEDIABBBGpBtNnBAEHp2cEAQQMgAkEMakGEzcEAEMMBDAMLIAIgAEEEajYCDCABQejUwQBBDCACQQxqQdjUwQAQfwwCCyACIAA2AgwgAUH82cEAQYvOwQAgAEEMakHg0MEAQZbawQAgAEEQakHg0MEAQaLawQAgAkEMakHs2cEAEL4BDAELIAIgAEEEajYCDCABQbbawQBBDkGLzsEAQQMgAkEMakG4zcEAEMkBCyACQRBqJAAL7wECA38BfiMAQTBrIgIkACAAQQhqIQMgAEEEaiEEQoCAgIDwNSEFAn8gACgCAEUEQCACIAQ2AgAgAiADNgIEIAJBAzYCDCACQZSzwQA2AgggAkICNwIUIAIgBSACrYQ3AyggAiAFIAJBBGqthDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwBCyACIAQ2AgAgAiADNgIEIAJBAjYCDCACQcyzwQA2AgggAkICNwIUIAIgBSACQQRqrYQ3AyggAiAFIAKthDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQsgAkEwaiQAC5YCAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAQQMgACgCAEGAgICAeHMiAyADQQVPG0EBaw4EAQIDBAALIAFBhJnAAEEMEOUDDAQLIAIgAEEFajYCDCABQaCZwABBDEGsmcAAQQMgAEEEakGQmcAAQa+ZwABBAyACQQxqQZiYwAAQwwEMAwsgAiAAQQRqNgIMIAFBxJnAAEEMIAJBDGpBtJnAABB/DAILIAIgADYCDCABQfCZwABBrJnAACAAQQxqQdCZwABBiprAACAAQRBqQdCZwABBlprAACACQQxqQeCZwAAQvgEMAQsgAiAAQQRqNgIMIAFBqprAAEEOQayZwABBAyACQQxqQcyYwAAQyQELIAJBEGokAAuWAgECfyMAQRBrIgIkAAJ/AkACQAJAAkACQEEDIAAoAgBBgICAgHhzIgMgA0EFTxtBAWsOBAECAwQACyABQZi8wABBDBDlAwwECyACIABBBWo2AgwgAUG0vMAAQQxBwLzAAEEDIABBBGpBpLzAAEHDvMAAQQMgAkEMakGsu8AAEMMBDAMLIAIgAEEEajYCDCABQdi8wABBDCACQQxqQci8wAAQfwwCCyACIAA2AgwgAUGEvcAAQcC8wAAgAEEMakHkvMAAQZ69wAAgAEEQakHkvMAAQaq9wAAgAkEMakH0vMAAEL4BDAELIAIgAEEEajYCDCABQb69wABBDkHAvMAAQQMgAkEMakHgu8AAEMkBCyACQRBqJAALlgIBAn8jAEEQayICJAACfwJAAkACQAJAAkBBAyAAKAIAQYCAgIB4cyIDIANBBU8bQQFrDgQBAgMEAAsgAUHm3sAAQQwQ5QMMBAsgAiAAQQVqNgIMIAFBhN/AAEEMQZDfwABBAyAAQQRqQfTewABBk9/AAEEDIAJBDGpB+NrAABDDAQwDCyACIABBBGo2AgwgAUGo38AAQQwgAkEMakGY38AAEH8MAgsgAiAANgIMIAFB1N/AAEGQ38AAIABBDGpBtN/AAEHu38AAIABBEGpBtN/AAEH638AAIAJBDGpBxN/AABC+AQwBCyACIABBBGo2AgwgAUGO4MAAQQ5BkN/AAEEDIAJBDGpB+NzAABDJAQsgAkEQaiQAC5YCAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAQQMgACgCAEGAgICAeHMiAyADQQVPG0EBaw4EAQIDBAALIAFBrIfBAEEMEOUDDAQLIAIgAEEFajYCDCABQciHwQBBDEHUh8EAQQMgAEEEakG4h8EAQdeHwQBBAyACQQxqQcCGwQAQwwEMAwsgAiAAQQRqNgIMIAFB7IfBAEEMIAJBDGpB3IfBABB/DAILIAIgADYCDCABQZiIwQBB1IfBACAAQQxqQfiHwQBBsojBACAAQRBqQfiHwQBBvojBACACQQxqQYiIwQAQvgEMAQsgAiAAQQRqNgIMIAFB0ojBAEEOQdSHwQBBAyACQQxqQfSGwQAQyQELIAJBEGokAAv/BgIIfwF+IAIgASgCBCIJIAEoAgwiBCAEIAEoAggiBkkiBxsgBmsgBEEAIAcbaiIITQRAIAggAmsiBSADaiEKIAYgCSAHGyAEa0EAIAYgBxtqIgRBAWsiBkEAIAQgBk8bIgQgA0kEQCABIAMgBGsQgAELAkAgCCAKTwRAIAEgBSADEC4MAQsgA0UNACADIQQDQCABIAUgBCACIAIgBEsbIgYQLiAFIAZqIQUgBCAGayIEDQALCyAAQQI2AgAgASABKQMQIAOtfDcDEA8LIAEoAgQhBiABKAIIIQUgASgCDCEEAkAgASkDECIMIAE1AnBWBEAgACACNgIEIABBATYCACAAIAYgBCAEIAVJIgAbIAVrIARBACAAG2o2AggMAQsCQAJAAkACQAJAAkACQAJAAkACQCABKAJ8IgggAiAFaiIKIAZBACAEIAVJIgkbIARqIgtrIgJPBEAgCCACayEHIAIgA08EQCADIAdqIgIgB0kNAiACIAhLDQMgA0UNCiABKAJ4IAUgBiAJGyAEa0EAIAUgCRtqIghBAWsiCUEAIAggCU8bIgggA0kEQCABIAMgCGsQgAEgASgCBCEGIAEoAgghBSABKAIMIQQLIAdqIQcgBSAGIAQgBUkbIgggBGsiAiADIAIgA0kiCRshAiABKAIAIQUgBCAIRwRAIAQgBWogByACEDsaCyAJDQQMCQsgCiALRg0GIAEoAnghCCAFIAYgCRsgBGtBACAFIAkbaiIJQQFrIgpBACAJIApPGyIJIAJJBEAgASACIAlrEIABIAEoAgQhBiABKAIIIQUgASgCDCEECyAHIAhqIQggBSAGIAQgBUkbIgogBGsiByACIAIgB0siCxshByABKAIAIQkgBCAKRwRAIAQgCWogCCAHEDsaCyALDQQMBQsgACACNgIIIAAgCDYCBCAAQQA2AgAMCgsgByACQaD3wQAQrAQACyACIAhBoPfBABCrBAALIAUgAiAHaiADIAJrEDsaDAQLIAkgByAIaiACIAdrEDsaCyAGRQ0BIAEgAiAEaiAGcCIENgIMIAEpAxAhDAsgASAMIAKtfDcDECAAIAEgBiAEIAQgBUkiABsgBWsgBEEAIAAbaiADIAJrELEBDAQLQbDpwQAQlAMACyAGRQ0BIAEgAyAEaiAGcDYCDAsgAEECNgIADAELQbDpwQAQlAMACwvUAQIGfwF+IwBBIGsiAiQAQQQgACgCACIEQQFqIgMgBEEBdCIFIAMgBUsbIgMgA0EETRsiBa1CDH4iCEIgiFBFBEBBAEEAIAEQ1wMACwJAIAinIgdB/P///wdNBEBBACEDIAIgBAR/IAIgBEEMbDYCHCACIAAoAgQ2AhRBBAUgAws2AhggAkEIakEEIAcgAkEUahDbASACKAIIQQFHDQEgAigCDCEGIAIoAhAhAwsgBiADIAEQ1wMACyACKAIMIQEgACAFNgIAIAAgATYCBCACQSBqJAAL3AEBA38jAEEQayIDJAACfyACKAIAQQFxBEBB3KDCACEEQQkMAQsgA0EEaiACKAIEIAIoAggQPUHcoMIAIAMoAgggAygCBCICGyEEQQkgAygCDCACGwshAiAEIAIgARDaAQJAIAAoAgAiAUGAgICAeEcEQCABRQ0BIAAoAgQgAUEBEKcEDAELIAAtAARBA0cNACAAKAIIIgAoAgAhASAAQQRqKAIAIgIoAgAiBQRAIAEgBREDAAsgAigCBCIFBEAgASAFIAIoAggQpwQLIABBDEEEEKcECyADQRBqJAALywEBBX8jAEEgayICJAAgACgCACIFQQFqIgMgBUEBdCIGIAMgBksbIgNB/////wNLBEBBAEEAIAEQ1wMACwJAQQQgAyADQQRNGyIDQQJ0IgZB/P///wdNBH8gAiAFBH8gAiAFQQJ0NgIcIAIgACgCBDYCFEEEBSAECzYCGCACQQhqQQQgBiACQRRqENsBIAIoAghBAUcNASACKAIQIQQgAigCDAUgBAsgBCABENcDAAsgAigCDCEBIAAgAzYCACAAIAE2AgQgAkEgaiQAC+0BAQN/IwBBIGsiAiQAIAJBCGoiAyABQSRqKAIANgIAQYXlwgAtAAAaIAIgASkCHDcDAEEMQQQQ9QMiBARAIAQgAikDADcCACAEQQhqIAMoAgA2AgACQCABKAIEQQJHDQACQAJAIAEtABhBAWsOAgIAAQsgAkEBNgIEIAJB9ILAADYCACACQgA3AgwgAiACQRxqNgIIIAJB+IPAABCkAwALIAFBCGoQqQEgASgCCCIDRQ0AIAEoAgwgA0EMbEEEEKcECyABQShBBBCnBCAAQZCMwAA2AgQgACAENgIAIAJBIGokAA8LQQRBDBDTBAAL7QEBA38jAEEgayICJAAgAkEIaiIDIAFBJGooAgA2AgBBheXCAC0AABogAiABKQIcNwMAQQxBBBD1AyIEBEAgBCACKQMANwIAIARBCGogAygCADYCAAJAIAEoAgRBAkcNAAJAAkAgAS0AGEEBaw4CAgABCyACQQE2AgQgAkG0/sAANgIAIAJCADcCDCACIAJBHGo2AgggAkG4/8AAEKQDAAsgAUEIahCpASABKAIIIgNFDQAgASgCDCADQQxsQQQQpwQLIAFBKEEEEKcEIABBoJfAADYCBCAAIAQ2AgAgAkEgaiQADwtBBEEMENMEAAvdAQEFfyMAQSBrIgEkAAJAIAAoAgRBAkcNAAJAAkAgAC0AGEEBaw4CAgABCyABQQE2AgggAUG0/sAANgIEIAFCADcCECABIAFBHGo2AgwgAUEEakG4/8AAEKQDAAsgAEEIahCpASAAKAIIIgJFDQAgACgCDCACQQxsQQQQpwQLIAAtABxBA0YEQCAAKAIgIgIoAgAhBCACQQRqKAIAIgUoAgAiAwRAIAQgAxEDAAsgBSgCBCIDBEAgBCADIAUoAggQpwQLIAJBDEEEEKcECyAAQSRBBBCnBCABQSBqJAALxgQCBn8BfiMAQRBrIgQkAAJAAkAgACgCAEECRwRAIwBB4ABrIgIkAAJ/AkAgACgCAEUEQEEBIAEgACgCECAAKAIUEOUDDQIaDAELIAIgAEEEajYCCCABKAIUIQMgAiABNgIUIAJCgICAgIDI0Ac3AgwgAkEIaq1CgICAgIDCAIQhCAJAAn8gA0EEcQRAIAIgCDcDMCACQQE2AiwgAkEBNgIcIAJBxLvCADYCGCACQQE2AiQgAkEDOgBYIAJBBDYCVCACQiA3AkwgAkECNgJEIAJBAjYCPCACIAJBPGo2AiggAiACQTBqNgIgIAJBDGpBgLHCACACQRhqEEUMAQsgAkEBNgJAIAJBxLvCADYCPCACQgE3AkggAiAINwMYIAIgAkEYajYCRCACQQxqQYCxwgAgAkE8ahBFCyIDQQAgAigCDCIFG0UEQCADDQEgBUUNAkHwu8IAQTcgAkHfAGpB4LvCAEGovMIAEKACAAsgAUHMu8IAQRQQ5QNFDQELQQEMAQsgASAAKAIYIAAoAhwQ5QMLIAJB4ABqJAAhBQwBCyAAKAIkIgJFDQAgACgCICEAA0AgBEEEaiAAIAIQPQJAAkAgBCgCBEUEQCAEKAIIIAQoAgwgARDVBA0BDAQLIAQtAA0hAyAELQAMIQYgBCgCCCEHQeWgwgBBAyABENUERQ0BC0EBIQUMAgsgBkEBcUUNASACIAMgB2oiA0kNAiAAIANqIQAgAiADayICDQALCyAEQRBqJAAgBQ8LIAMgAkHUosIAEKoEAAu8AQECfyMAQSBrIgMkAAJAAn9BACABIAEgAmoiAksNABpBAEEIIAIgACgCACIBQQF0IgQgAiAESxsiAiACQQhNGyIEQQBIDQAaQQAhAiADIAEEfyADIAE2AhwgAyAAKAIENgIUQQEFIAILNgIYIANBCGpBASAEIANBFGoQ2wEgAygCCEEBRw0BIAMoAhAhACADKAIMCyAAQZy/wgAQ1wMACyADKAIMIQEgACAENgIAIAAgATYCBCADQSBqJAAL2QEAIABBIEkEQEEADwsgAEH/AEkEQEEBDwsgAEGAgARPBEAgAEGAgAhPBEAgAEHg//8AcUHgzQpHIABB/v//AHFBnvAKR3EgAEHA7gprQXpJcSAAQbCdC2tBcklxIABB8NcLa0FxSXEgAEGA8AtrQd5sSXEgAEGAgAxrQZ50SXEgAEHQpgxrQXtJcSAAQYCCOGtBsMVUSXEgAEHwgzhJcQ8LIABBiM3CAEEsQeDNwgBB0AFBsM/CAEHmAxBxDwsgAEGW08IAQShB5tPCAEGiAkGI1sIAQakCEHEL1AEBBH8jAEEgayIBJAACQCAAKAIEQQJHDQACQAJAIAAtABhBAWsOAgIAAQsgAUEBNgIIIAFBtP7AADYCBCABQgA3AhAgASABQRxqNgIMIAFBBGpBuP/AABCkAwALIABBCGoQqQEgACgCCCICRQ0AIAAoAgwgAkEMbEEEEKcECyAALQAcQQNGBEAgACgCICIAKAIAIQIgAEEEaigCACIEKAIAIgMEQCACIAMRAwALIAQoAgQiAwRAIAIgAyAEKAIIEKcECyAAQQxBBBCnBAsgAUEgaiQAC8kBAgN/AX4jAEEQayIEJAACQCAAKAIQIgNFBEAMAQtBASECQe65wgBBASADENUEDQAgAVAEQEHuuMIAQQEgAxDVBCECDAELAkAgASAANQIUIgVYBEAgBSABfSIBQhpUDQFB7rjCAEEBIAMQ1QQNAiAEIAE3AwggBEEIaiADEK8EIQIMAgtBxLnCAEEQIAMQ1QQNAUEAIQIgAEEAOgAEIABBADYCAAwBCyAEIAGnQeEAajYCBCAEQQRqIAMQjQEhAgsgBEEQaiQAIAIL2QEBBH8jAEEgayICJABBheXCAC0AABogASgCICEDIAEoAhwhBUEIQQQQ9QMiBARAIAQgAzYCBCAEIAU2AgACQCABKAIEQQJHDQACQAJAIAEtABhBAWsOAgIAAQsgAkEBNgIIIAJBtP7AADYCBCACQgA3AhAgAiACQRxqNgIMIAJBBGpBuP/AABCkAwALIAFBCGoQqQEgASgCCCIDRQ0AIAEoAgwgA0EMbEEEEKcECyABQSRBBBCnBCAAQdyXwAA2AgQgACAENgIAIAJBIGokAA8LQQRBCBDTBAALzwEBAX8jAEEQayILJAAgACgCHCABQRogACgCICgCDBECACEBIAtBADoADSALIAE6AAwgCyAANgIIIAtBCGogAkEDIAMgBBBvIAVBDCAGIAcQbyAIQRQgCSAKEG8hASALLQANIgIgCy0ADCIDciEAAkAgA0EBcSACQQFHcg0AIAEoAgAiAC0AFEEEcUUEQCAAKAIcQYfEwgBBAiAAKAIgKAIMEQIAIQAMAQsgACgCHEGGxMIAQQEgACgCICgCDBECACEACyALQRBqJAAgAEEBcQuuAQEEfwJAIAAoAgBBAkcEfyAALQDMAyEBAkAgAC0AEEEEcQRAIAFBAXFFDQMgACgCGA0BDAMLIAFBAXFFDQILIAAoApQCIAAoApwCIgEgASAAKAKYAiIASSICGyAAayABQQAgAhtqBSABCw8LIAAoApwCIgFBACABIAAoApgCIgJJIgMbIgQgACgClAIgASADGyIBaiACIAAoAoADIgBqa0EAIAEgAmsgBGogAEsbC8EBAgN/AX4jAEEwayICJAAgASgCAEGAgICAeEYEQCABKAIMIQMgAkEUaiIEQQA2AgAgAkKAgICAEDcCDCACQSBqIAMoAgAiA0EIaikCADcDACACQShqIANBEGopAgA3AwAgAiADKQIANwMYIAJBDGpBvJTCACACQRhqEEUaIAJBCGogBCgCACIDNgIAIAIgAikCDCIFNwMAIAFBCGogAzYCACABIAU3AgALIABByKHCADYCBCAAIAE2AgAgAkEwaiQAC5YCAQJ/IwBBIGsiBSQAQaTlwgBBpOXCACgCACIGQQFqNgIAAkACf0EAIAZBAEgNABpBAUHw6MIALQAADQAaQfDowgBBAToAAEHs6MIAQezowgAoAgBBAWo2AgBBAgtB/wFxIgZBAkcEQCAGQQFxRQ0BIAVBCGogACABKAIYEQEAAAtBmOXCACgCACIGQQBIDQBBmOXCACAGQQFqNgIAQZjlwgBBnOXCACgCAAR/IAUgACABKAIUEQEAIAUgBDoAHSAFIAM6ABwgBSACNgIYIAUgBSkDADcCEEGc5cIAKAIAIAVBEGpBoOXCACgCACgCFBEBAEGY5cIAKAIAQQFrBSAGCzYCAEHw6MIAQQA6AAAgA0UNAAALAAuuAQEEfyMAQSBrIgIkAEEIIAAoAgAiBEEBaiIDIARBAXQiBSADIAVLGyIDIANBCE0bIgNBAEgEQEEAQQAgARDXAwALQQAhBSACIAQEfyACIAQ2AhwgAiAAKAIENgIUQQEFIAULNgIYIAJBCGpBASADIAJBFGoQ2wEgAigCCEEBRgRAIAIoAgwgAigCECABENcDAAsgAigCDCEBIAAgAzYCACAAIAE2AgQgAkEgaiQAC8UBAQF/IwBBEGsiCyQAIAAoAhwgASACIAAoAiAoAgwRAgAhASALQQA6AA0gCyABOgAMIAsgADYCCCALQQhqIAMgBCAFIAYQbyAHIAggCSAKEG8hASALLQANIgIgCy0ADCIDciEAAkAgA0EBcSACQQFHcg0AIAEoAgAiAC0AFEEEcUUEQCAAKAIcQYfEwgBBAiAAKAIgKAIMEQIAIQAMAQsgACgCHEGGxMIAQQEgACgCICgCDBECACEACyALQRBqJAAgAEEBcQvNAQIDfwF+IwBBIGsiAiQAQYXlwgAtAAAaIAEpAhwhBUEIQQQQ9QMiAwRAIAMgBTcCAAJAIAEoAgRBAkcNAAJAAkAgAS0AGEEBaw4CAgABCyACQQE2AgggAkG0/sAANgIEIAJCADcCECACIAJBHGo2AgwgAkEEakG4/8AAEKQDAAsgAUEIahCpASABKAIIIgRFDQAgASgCDCAEQQxsQQQQpwQLIAFBJEEEEKcEIABBqJbAADYCBCAAIAM2AgAgAkEgaiQADwtBBEEIENMEAAunAQEDfyMAQRBrIgMkAEEDIQIgAC0AACIAIQQgAEEKTwRAIAMgACAAQeQAbiIEQeQAbGtB/wFxQQF0IgJBksTCAGotAAA6AA8gAyACQZHEwgBqLQAAOgAOQQEhAgtBACAAIAQbRQRAIAJBAWsiAiADQQ1qaiAEQQF0Qf4BcUGSxMIAai0AADoAAAsgAUEBQQFBACADQQ1qIAJqQQMgAmsQNSADQRBqJAAL4AEBBX8CQAJAIABBhAFJDQAgANBvJgEQmAFBjOTCACgCACEEQZDkwgAoAgAhAUGM5MIAQgA3AgBBiOTCACgCACECQYTkwgAoAgAhA0GE5MIAQgQ3AgBBgOTCACgCACEFQYDkwgBBADYCACAAIAFJDQEgACABayIAIAJPDQEgAyAAQQJ0aiAENgIAQZDkwgAgATYCAEGM5MIAIAA2AgBBiOTCACACNgIAQYTkwgAoAgBBhOTCACADNgIAQYDkwgAoAgAhAEGA5MIAIAU2AgAgAEUNACAAQQJ0QQQQpwQLDwsAC8YBAQJ/IwBBEGsiAiQAAn8CQAJAAkBBASAAKAIAIgAtAABBAmsiAyADQf8BcUEDTxtB/wFxQQFrDgIBAgALIAIgAEEBajYCBCABQcihwQBBGUHUh8EAQQMgAkEEakHAhsEAEMkBDAILIAIgADYCCCABQeyHwQBBDCACQQhqQdyHwQAQfwwBCyACIABBCGo2AgwgAUHhocEAQQ5Bt43BAEEEIABBBGpB6IXBAEGii8EAQQQgAkEMakHAhsEAEMMBCyACQRBqJAALxgEBAn8jAEEQayICJAACfwJAAkACQEEBIAAoAgAiAC0AAEECayIDIANB/wFxQQNPG0H/AXFBAWsOAgECAAsgAiAAQQFqNgIEIAFBjdnBAEEZQYvOwQBBAyACQQRqQYTNwQAQyQEMAgsgAiAANgIIIAFB6NTBAEEMIAJBCGpB2NTBABB/DAELIAIgAEEIajYCDCABQabZwQBBDkGw18EAQQQgAEEEakH0zMEAQbfTwQBBBCACQQxqQYTNwQAQwwELIAJBEGokAAu7AQEBfyMAQRBrIgckACAAKAIcIAEgAiAAKAIgKAIMEQIAIQEgB0EAOgANIAcgAToADCAHIAA2AgggB0EIaiADIAQgBSAGEG8hASAHLQANIgIgBy0ADCIDciEAAkAgA0EBcSACQQFHcg0AIAEoAgAiAC0AFEEEcUUEQCAAKAIcQYfEwgBBAiAAKAIgKAIMEQIAIQAMAQsgACgCHEGGxMIAQQEgACgCICgCDBECACEACyAHQRBqJAAgAEEBcQueAQIEfwJ+AkACQCAAKAIIIgMoAggiBCAAKQMAIgenIgJLBEAgAygCBCACQQF0ai0AASICDQEMAgsgAiAEQZz5wQAQrQIACyACIAEtABQiBU0EQCABIAUgAmsiAzoAFEJ/IAKthkJ/hSABKQMIIANBP3GtiIMhBgwBCyABIAIQWyEGIAMoAgghBAsgACAErUIBfSAHIAKthoMgBoQ3AwALrgEBAX8jAEEQayIGJAACQCABBEAgBkEEaiABIAMgBCAFIAIoAhARBgACQCAGKAIEIgIgBigCDCIBTQRAIAYoAgghBQwBCyACQQJ0IQIgBigCCCEDIAFFBEBBBCEFIAMgAkEEEKcEDAELIAMgAkEEIAFBAnQiAhDfAyIFRQ0CCyAAIAE2AgQgACAFNgIAIAZBEGokAA8LQfiPwgBBMhDIBAALQQQgAkHoj8IAENcDAAvBAQECfyMAQRBrIgIkAAJ/AkACQAJAQQEgAC0AAEECayIDIANB/wFxQQNPG0H/AXFBAWsOAgECAAsgAiAAQQFqNgIEIAFBuLXAAEEZQayZwABBAyACQQRqQZiYwAAQyQEMAgsgAiAANgIIIAFBxJnAAEEMIAJBCGpBtJnAABB/DAELIAIgAEEIajYCDCABQdG1wABBDkHzocAAQQQgAEEEakGImMAAQfqcwABBBCACQQxqQZiYwAAQwwELIAJBEGokAAvBAQECfyMAQRBrIgIkAAJ/AkACQAJAQQEgAC0AAEECayIDIANB/wFxQQNPG0H/AXFBAWsOAgECAAsgAiAAQQFqNgIEIAFBzNjAAEEZQcC8wABBAyACQQRqQay7wAAQyQEMAgsgAiAANgIIIAFB2LzAAEEMIAJBCGpByLzAABB/DAELIAIgAEEIajYCDCABQeXYwABBDkGHxcAAQQQgAEEEakGcu8AAQY7AwABBBCACQQxqQay7wAAQwwELIAJBEGokAAvBAQECfyMAQRBrIgIkAAJ/AkACQAJAQQEgAC0AAEECayIDIANB/wFxQQNPG0H/AXFBAWsOAgECAAsgAiAAQQFqNgIEIAFBtPvAAEEZQZDfwABBAyACQQRqQfjawAAQyQEMAgsgAiAANgIIIAFBqN/AAEEMIAJBCGpBmN/AABB/DAELIAIgAEEIajYCDCABQc37wABBDkGw58AAQQQgAEEEakGM3sAAQd7iwABBBCACQQxqQfjawAAQwwELIAJBEGokAAvBAQECfyMAQRBrIgIkAAJ/AkACQAJAQQEgAC0AAEECayIDIANB/wFxQQNPG0H/AXFBAWsOAgECAAsgAiAAQQFqNgIEIAFByKHBAEEZQdSHwQBBAyACQQRqQcCGwQAQyQEMAgsgAiAANgIIIAFB7IfBAEEMIAJBCGpB3IfBABB/DAELIAIgAEEIajYCDCABQeGhwQBBDkG3jcEAQQQgAEEEakHohcEAQaKLwQBBBCACQQxqQcCGwQAQwwELIAJBEGokAAuzAQEDfyABKAIMIQICQAJAAkACQAJAAkAgASgCBA4CAAECCyACDQFBASEDQQAhAUEBIQIMAwsgAkUNAQsgACABEGgPCyABKAIAIgIoAgQiAUEASA0BIAIoAgAhAyABRQRAQQEhAkEAIQEMAQtBheXCAC0AABpBASEEIAFBARD1AyICRQ0BCyACIAMgARA7IQIgACABNgIIIAAgAjYCBCAAIAE2AgAPCyAEIAFBlIHAABDXAwALswEBA38gASgCDCECAkACQAJAAkACQAJAIAEoAgQOAgABAgsgAg0BQQEhA0EAIQFBASECDAMLIAJFDQELIAAgARBoDwsgASgCACICKAIEIgFBAEgNASACKAIAIQMgAUUEQEEBIQJBACEBDAELQYXlwgAtAAAaQQEhBCABQQEQ9QMiAkUNAQsgAiADIAEQOyECIAAgATYCCCAAIAI2AgQgACABNgIADwsgBCABQYiJwAAQ1wMAC7YBAQJ/IwBBEGsiAiQAAn8CQAJAAkACQCAAKAIAIgAtAAAiA0EDa0EAIANBBGtB/wFxQQNJG0EBaw4DAQIDAAsgAiAANgIEIAFBnJTBAEEJIAJBBGpBjJTBABB/DAMLIAFBpZTBAEESEOUDDAILIAIgAEEBajYCCCABQciUwQBBDiACQQhqQbiUwQAQfwwBCyACIABBBGo2AgwgAUHolMEAQQ4gAkEMakHYlMEAEH8LIAJBEGokAAuxAQECfyMAQRBrIgIkAAJ/AkACQAJAAkAgAC0AACIDQQNrQQAgA0EEa0H/AXFBA0kbQQFrDgMBAgMACyACIAA2AgQgAUGMqMAAQQkgAkEEakHknsAAEH8MAwsgAUGVqMAAQRIQ5QMMAgsgAiAAQQFqNgIIIAFBuKjAAEEOIAJBCGpBqKjAABB/DAELIAIgAEEEajYCDCABQdiowABBDiACQQxqQciowAAQfwsgAkEQaiQAC7EBAQJ/IwBBEGsiAiQAAn8CQAJAAkACQCAALQAAIgNBA2tBACADQQRrQf8BcUEDSRtBAWsOAwECAwALIAIgADYCBCABQaDLwABBCSACQQRqQfjBwAAQfwwDCyABQanLwABBEhDlAwwCCyACIABBAWo2AgggAUHMy8AAQQ4gAkEIakG8y8AAEH8MAQsgAiAAQQRqNgIMIAFB7MvAAEEOIAJBDGpB3MvAABB/CyACQRBqJAALsQEBAn8jAEEQayICJAACfwJAAkACQAJAIAAtAAAiA0EDa0EAIANBBGtB/wFxQQNJG0EBaw4DAQIDAAsgAiAANgIEIAFBiO7AAEEJIAJBBGpBmNzAABB/DAMLIAFBke7AAEESEOUDDAILIAIgAEEBajYCCCABQbTuwABBDiACQQhqQaTuwAAQfwwBCyACIABBBGo2AgwgAUHU7sAAQQ4gAkEMakHE7sAAEH8LIAJBEGokAAuxAQECfyMAQRBrIgIkAAJ/AkACQAJAAkAgAC0AACIDQQNrQQAgA0EEa0H/AXFBA0kbQQFrDgMBAgMACyACIAA2AgQgAUGclMEAQQkgAkEEakGMlMEAEH8MAwsgAUGllMEAQRIQ5QMMAgsgAiAAQQFqNgIIIAFByJTBAEEOIAJBCGpBuJTBABB/DAELIAIgAEEEajYCDCABQeiUwQBBDiACQQxqQdiUwQAQfwsgAkEQaiQAC6YBAQF/IwBBQGoiAiQAIAAoAgAhACACQgA3AzggAkE4aiAAJQEQGiACIAIoAjwiADYCNCACIAIoAjg2AjAgAiAANgIsIAIgAkEsaq1CgICAgNA9hDcDICACQQI2AgwgAkG0kMIANgIIIAJCATcCFCACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRSACKAIsIgEEQCACKAIwIAFBARCnBAsgAkFAayQAC5YBAQJ/IwBBEGsiAiQAIAAoAgAhACACQQRqIgMgARCnAyACIAA2AgwgAyACQQxqQfjawAAQggEgAiAAQQFqNgIMIAJBBGogAkEMakH42sAAEIIBIAIgAEECajYCDCACQQRqIAJBDGpB+NrAABCCASACIABBA2o2AgwgAkEEaiACQQxqQfjawAAQggEgAxCgAyACQRBqJAALlgEBAn8jAEEQayICJAAgACgCACEAIAJBBGoiAyABEKcDIAIgADYCDCADIAJBDGpB3PfBABCCASACIABBAWo2AgwgAkEEaiACQQxqQdz3wQAQggEgAiAAQQJqNgIMIAJBBGogAkEMakHc98EAEIIBIAIgAEEDajYCDCACQQRqIAJBDGpB3PfBABCCASADEKADIAJBEGokAAujAQECfyMAQSBrIgMkAAJAIAFFBEBBAUEAIAIQ1QQhAAwBCyADIAE2AgwgAyAANgIIIANBEGogA0EIahBTIAMoAhAiAQRAA0AgAygCFCEEIAMoAhxFBEAgASAEIAIQ1QQhAAwDC0EBIQAgAiABIAQQ5QMNAiACQf3/AxDrAw0CIANBEGogA0EIahBTIAMoAhAiAQ0ACwtBACEACyADQSBqJAAgAAuLAQEBfwJAIAJBAE4EQAJ/IAMoAgQEQAJAIAMoAggiBEUEQAwBCyADKAIAIAQgASACEN8DDAILCyABIAJFDQAaQYXlwgAtAAAaIAIgARD1AwsiAwRAIAAgAjYCCCAAIAM2AgQgAEEANgIADwsgACACNgIIIAAgATYCBAwBCyAAQQA2AgQLIABBATYCAAudAQEEfwJAQQggACgCACIAKAIAIgJBgICAgHhzIgEgAUEITxsiAUEBa0EHSQ0AIAEEQCACRQ0BIAAoAgQgAkEBEKcEDAELIAAtAARBA0cNACAAKAIIIgIoAgAhASACQQRqKAIAIgQoAgAiAwRAIAEgAxEDAAsgBCgCBCIDBEAgASADIAQoAggQpwQLIAJBDEEEEKcECyAAQQxBBBCnBAu1AQECfyMAQRBrIgIkAAJ/AkACQAJAAkBBAyAAKAIAIgAoAgBBB2siAyADQQNPG0EBaw4DAQIDAAsgAUH4nMEAQRQQ5QMMAwsgAUGMncEAQR0Q5QMMAgsgAiAAQQRqNgIIIAFBnJTBAEEJQbydwQBBBCAAQQxqQaydwQBBwJ3BAEEGIAJBCGpBjJTBABDDAQwBCyACIAA2AgwgAUHYncEAQRQgAkEMakHIncEAEH8LIAJBEGokAAu3AQECfwJAAn8CQAJAAkACQAJAAkACQAJAIAEoAgAOCgABCQIDBAUJBgcJCyABQQRqIQJB+KTAACEDDAgLIAFBCGohAkG0pcAAIQMMBwsgAUEEaiECQfClwAAhAwwGCyABQQRqIQJBrKbAACEDDAULIAFBBGohAkHopsAAIQMMBAsgAUEEagwCCyABQQhqIQJBtKXAACEDDAILIAFBBGoLIQJBqJbAACEDCyAAIAM2AgQgACACNgIAC7cBAQJ/AkACfwJAAkACQAJAAkACQAJAAkAgASgCAA4KAAEJAgMEBQkGBwkLIAFBBGohAkGMyMAAIQMMCAsgAUEIaiECQcjIwAAhAwwHCyABQQRqIQJBhMnAACEDDAYLIAFBBGohAkHAycAAIQMMBQsgAUEEaiECQfzJwAAhAwwECyABQQRqDAILIAFBCGohAkHIyMAAIQMMAgsgAUEEagshAkHUt8AAIQMLIAAgAzYCBCAAIAI2AgALtwEBAn8CQAJ/AkACQAJAAkACQAJAAkACQCABKAIADgoAAQkCAwQFCQYHCQsgAUEEaiECQbjqwAAhAwwICyABQQhqIQJB9OrAACEDDAcLIAFBBGohAkGw68AAIQMMBgsgAUEEaiECQezrwAAhAwwFCyABQQRqIQJBqOzAACEDDAQLIAFBBGoMAgsgAUEIaiECQfTqwAAhAwwCCyABQQRqCyECQeTswAAhAwsgACADNgIEIAAgAjYCAAu3AQECfwJAAn8CQAJAAkACQAJAAkACQAJAIAEoAgAOCgABCQIDBAUJBgcJCyABQQRqIQJBvJDBACEDDAgLIAFBCGohAkH4kMEAIQMMBwsgAUEEaiECQbSRwQAhAwwGCyABQQRqIQJB8JHBACEDDAULIAFBBGohAkGsksEAIQMMBAsgAUEEagwCCyABQQhqIQJB+JDBACEDDAILIAFBBGoLIQJB6JLBACEDCyAAIAM2AgQgACACNgIAC48BAQJ/IwBBEGsiAiQAIAJBBGoiAyABEKcDIAIgADYCDCADIAJBDGpB3PfBABCCASACIABBAWo2AgwgAkEEaiACQQxqQdz3wQAQggEgAiAAQQJqNgIMIAJBBGogAkEMakHc98EAEIIBIAIgAEEDajYCDCACQQRqIAJBDGpB3PfBABCCASADEKADIAJBEGokAAuwAQECfyMAQRBrIgIkAAJ/AkACQAJAAkBBAyAAKAIAQQdrIgMgA0EDTxtBAWsOAwECAwALIAFB6LDAAEEUEOUDDAMLIAFB/LDAAEEdEOUDDAILIAIgAEEEajYCCCABQYyowABBCUGsscAAQQQgAEEMakGcscAAQbCxwABBBiACQQhqQeSewAAQwwEMAQsgAiAANgIMIAFByLHAAEEUIAJBDGpBuLHAABB/CyACQRBqJAALsAEBAn8jAEEQayICJAACfwJAAkACQAJAQQMgACgCAEEHayIDIANBA08bQQFrDgMBAgMACyABQfzTwABBFBDlAwwDCyABQZDUwABBHRDlAwwCCyACIABBBGo2AgggAUGgy8AAQQlBwNTAAEEEIABBDGpBsNTAAEHE1MAAQQYgAkEIakH4wcAAEMMBDAELIAIgADYCDCABQdzUwABBFCACQQxqQczUwAAQfwsgAkEQaiQAC7ABAQJ/IwBBEGsiAiQAAn8CQAJAAkACQEEDIAAoAgBBB2siAyADQQNPG0EBaw4DAQIDAAsgAUHk9sAAQRQQ5QMMAwsgAUH49sAAQR0Q5QMMAgsgAiAAQQRqNgIIIAFBiO7AAEEJQaj3wABBBCAAQQxqQZj3wABBrPfAAEEGIAJBCGpBmNzAABDDAQwBCyACIAA2AgwgAUHE98AAQRQgAkEMakG098AAEH8LIAJBEGokAAuwAQECfyMAQRBrIgIkAAJ/AkACQAJAAkBBAyAAKAIAQQdrIgMgA0EDTxtBAWsOAwECAwALIAFB+JzBAEEUEOUDDAMLIAFBjJ3BAEEdEOUDDAILIAIgAEEEajYCCCABQZyUwQBBCUG8ncEAQQQgAEEMakGsncEAQcCdwQBBBiACQQhqQYyUwQAQwwEMAQsgAiAANgIMIAFB2J3BAEEUIAJBDGpByJ3BABB/CyACQRBqJAALowEBAn8jAEEgayIBJAACQCAAKAIEIgJBA0YgAkECSXINAAJAAkAgAC0AGEEBaw4CAgABCyABQQE2AgggAUH0gsAANgIEIAFCADcCECABIAFBHGo2AgwgAUEEakH4g8AAEKQDAAsgAEEIahCpASAAKAIIIgJFDQAgACgCDCACQQxsQQQQpwQLIAAoAhwiAgRAIAAoAiAgAkEBEKcECyABQSBqJAALkgECA38BfiABKAIAIgUtACUiA0UEQCAAQQI6AAAPCwJ+IAMgAi0AFCIETQRAIAIgBCADayIEOgAUQn8gA62GQn+FIAIpAwggBEE/ca2IgwwBCyACIAMQWwshBiAFKAIIIgMgBqciAksEQCABIAUoAgQgAkEDdGopAgA3AgQgAEEDOgAADwsgAiADQayAwgAQrQIAC5IBAQN/IwBBIGsiAyQAIAMgACgCACIFENwEIgA2AgAgAyACNgIEIAAgAkYEQBDtAyIEENwDIgAgASACENYDIQEgBEGEAU8EQCAEEMYBCyAAQYQBTwRAIAAQxgELIAUgAUEAEKYEIAFBhAFPBEAgARDGAQsgA0EgaiQADwsgA0EANgIIIAMgA0EEaiADQQhqEIwDAAukAQECfyMAQSBrIgEkAAJAIAAoAgRBAkcNAAJAAkAgAC0AGEEBaw4CAgABCyABQQE2AgggAUH0gsAANgIEIAFCADcCECABIAFBHGo2AgwgAUEEakH4g8AAEKQDAAsgAEEIahCpASAAKAIIIgJFDQAgACgCDCACQQxsQQQQpwQLIAAoAhwiAgRAIAAoAiAgAkEBEKcECyAAQShBBBCnBCABQSBqJAALpAEBAn8jAEEgayIBJAACQCAAKAIEQQJHDQACQAJAIAAtABhBAWsOAgIAAQsgAUEBNgIIIAFBtP7AADYCBCABQgA3AhAgASABQRxqNgIMIAFBBGpBuP/AABCkAwALIABBCGoQqQEgACgCCCICRQ0AIAAoAgwgAkEMbEEEEKcECyAAKAIcIgIEQCAAKAIgIAJBARCnBAsgAEEoQQQQpwQgAUEgaiQAC4sBAgJ/AX4CfkIAIAAtAAgiAkUNABogAiABLQAUIgNNBEAgASADIAJrIgM6ABRCfyACrYZCf4UgASkDCCADQT9xrYiDDAELIAEgAhBbCyEEIAAoAgQgBKdqIgEgACgCACICKAIIIgNJBEAgACACKAIEIAFBA3RqKQIANwIEDwsgASADQbyAwgAQrQIAC6MBAQJ/IwBBEGsiAiQAAn8CQAJAAkAgACgCACIAKAIAIgNBAWtBACADQQJPG0EBaw4CAQIACyACIAA2AgggAUGkmcEAQREgAkEIakGUmcEAEH8MAgsgAiAAQQhqNgIMIAFBtZnBAEEZQc6ZwQBBBiAAQQRqQeiFwQBBt43BAEEEIAJBDGpB9IbBABDDAQwBCyABQfyOwQBBChDlAwsgAkEQaiQAC6MBAQJ/IwBBEGsiAiQAAn8CQAJAAkAgACgCACIAKAIAIgNBAWtBACADQQJPG0EBaw4CAQIACyACIAA2AgggAUGA18EAQREgAkEIakHw1sEAEH8MAgsgAiAAQQhqNgIMIAFBkdfBAEEZQarXwQBBBiAAQQRqQfTMwQBBsNfBAEEEIAJBDGpBuM3BABDDAQwBCyABQbTXwQBBChDlAwsgAkEQaiQAC5sBAQJ/IwBBIGsiASQAAkAgACgCBEECRw0AAkACQCAALQAYQQFrDgICAAELIAFBATYCCCABQbT+wAA2AgQgAUIANwIQIAEgAUEcajYCDCABQQRqQbj/wAAQpAMACyAAQQhqEKkBIAAoAggiAkUNACAAKAIMIAJBDGxBBBCnBAsgACgCHCICBEAgACgCICACQQEQpwQLIAFBIGokAAupAQECfyMAQSBrIgEkAAJAAkACQAJAAkBBkOXCAC0AAA4CAAECC0GQ5cIAQQE6AAALIABBATYCAAwBC0GR5cIALQAAIQJBkeXCAEEBOgAAIAEgAjoAByACQQFGDQEgAEEAOgAUIABBADYCAEGR5cIAQQA6AAALIAFBIGokAA8LIAFCADcCFCABQoGAgIDAADcCDCABQbCfwgA2AgggAUEHaiABQQhqEIoDAAuoAQEDfyMAQRBrIgIkAEHencIAIQNBEyEEAkACQAJAAkAgAS0AAEEBaw4DAgABAwsgASgCBCIBKAIEIQQgASgCACEDDAILIAJBCGogASgCBCIBKAIAIAEoAgQoAiARAQAgAigCDCEEIAIoAgghAwwBCyABLQABQQJ0IgFB9KnCAGooAgAhAyABQcyowgBqKAIAIQQLIAAgBDYCBCAAIAM2AgAgAkEQaiQAC5IBAQR/IwBBEGsiAiQAQQEhBAJAIAEoAhwiA0EnIAEoAiAiBSgCECIBEQAADQAgAkEEaiAAKAIAQYECEDkCQCACLQAEQYABRgRAIAMgAigCCCABEQAARQ0BDAILIAMgAi0ADiIAIAJBBGpqIAItAA8gAGsgBSgCDBECAA0BCyADQScgAREAACEECyACQRBqJAAgBAueAQECfyMAQRBrIgIkAAJ/AkACQAJAIAAoAgAiA0EBa0EAIANBAk8bQQFrDgIBAgALIAIgADYCCCABQZStwABBESACQQhqQYStwAAQfwwCCyACIABBCGo2AgwgAUGlrcAAQRlBvq3AAEEGIABBBGpBiJjAAEHzocAAQQQgAkEMakHMmMAAEMMBDAELIAFBuKPAAEEKEOUDCyACQRBqJAALngEBAn8jAEEQayICJAACfwJAAkACQCAAKAIAIgNBAWtBACADQQJPG0EBaw4CAQIACyACIAA2AgggAUGo0MAAQREgAkEIakGY0MAAEH8MAgsgAiAAQQhqNgIMIAFBudDAAEEZQdLQwABBBiAAQQRqQZy7wABBh8XAAEEEIAJBDGpB4LvAABDDAQwBCyABQczGwABBChDlAwsgAkEQaiQAC54BAQJ/IwBBEGsiAiQAAn8CQAJAAkAgACgCACIDQQFrQQAgA0ECTxtBAWsOAgECAAsgAiAANgIIIAFBkPPAAEERIAJBCGpBgPPAABB/DAILIAIgAEEIajYCDCABQaHzwABBGUG688AAQQYgAEEEakGM3sAAQbDnwABBBCACQQxqQfjcwAAQwwEMAQsgAUH46MAAQQoQ5QMLIAJBEGokAAueAQECfyMAQRBrIgIkAAJ/AkACQAJAIAAoAgAiA0EBa0EAIANBAk8bQQFrDgIBAgALIAIgADYCCCABQaSZwQBBESACQQhqQZSZwQAQfwwCCyACIABBCGo2AgwgAUG1mcEAQRlBzpnBAEEGIABBBGpB6IXBAEG3jcEAQQQgAkEMakH0hsEAEMMBDAELIAFB/I7BAEEKEOUDCyACQRBqJAALmwEBAX8jAEEQayICJAACfwJAAkACQCAAKAIAIgAtAABBAWsOAgECAAsgAiAAQQFqNgIEIAFB5JjBAEELQdSHwQBBAyACQQRqQdSYwQAQyQEMAgsgAiAAQQRqNgIIIAFB8IvBAEENIAJBCGpB4IvBABB/DAELIAIgAEEEajYCDCABQYCZwQBBESACQQxqQfCYwQAQfwsgAkEQaiQAC5sBAQF/IwBBEGsiAiQAAn8CQAJAAkAgACgCACIALQAAQQFrDgIBAgALIAIgAEEBajYCBCABQeTTwQBBC0GLzsEAQQMgAkEEakHU08EAEMkBDAILIAIgAEEEajYCCCABQYDUwQBBDSACQQhqQfDTwQAQfwwBCyACIABBBGo2AgwgAUGg1MEAQREgAkEMakGQ1MEAEH8LIAJBEGokAAuEAQEDfwJ/AkAgACgCACIBRQ0AA0ACQCAAKAIIIgMgACgCBE8NACABIANqLQAAQcUARw0AIAAgA0EBajYCCAwCCwJAIAJFDQAgACgCECIBRQ0AQfW5wgBBAiABENUERQ0AQQEPC0EBIABBARAgDQIaIAJBAWshAiAAKAIAIgENAAsLQQALC5YBAQJ/IwBBIGsiASQAAkAgACgCBEECRw0AAkACQCAALQAYQQFrDgICAAELIAFBATYCCCABQbT+wAA2AgQgAUIANwIQIAEgAUEcajYCDCABQQRqQbj/wAAQpAMACyAAQQhqEKkBIAAoAggiAkUNACAAKAIMIAJBDGxBBBCnBAsgAEEgahBUIABBwABBCBCnBCABQSBqJAALiAEBAX8jAEEwayICJAACfyAALQAAQQJHBEAgAiAANgIMIAJBATYCFCACQfCnwQA2AhAgAkIBNwIcIAIgAkEMaq1CgICAgJA4hDcDKCACIAJBKGo2AhggASgCHCABKAIgIAJBEGoQRQwBCyABKAIcQdTFwQBBJCABKAIgKAIMEQIACyACQTBqJAALdwEDfyMAQYABayIDJAAgAC0AACEEQQAhAANAIAAgA2pB/wBqIARBD3EiAkEwciACQTdqIAJBCkkbOgAAIABBAWshACAEIgJBBHYhBCACQQ9LDQALIAFBAUGPxMIAQQIgACADakGAAWpBACAAaxA1IANBgAFqJAALeAEDfyMAQYABayIDJAAgAC0AACEEQQAhAANAIAAgA2pB/wBqIARBD3EiAkEwciACQdcAaiACQQpJGzoAACAAQQFrIQAgBCICQQR2IQQgAkEPSw0ACyABQQFBj8TCAEECIAAgA2pBgAFqQQAgAGsQNSADQYABaiQAC3kCAX4CfyMAQYABayIEJAAgACkDACECQQAhAANAIAAgBGpB/wBqIAKnQQ9xIgNBMHIgA0HXAGogA0EKSRs6AAAgAEEBayEAIAJCD1YgAkIEiCECDQALIAFBAUGPxMIAQQIgACAEakGAAWpBACAAaxA1IARBgAFqJAALlgEBAX8jAEEQayICJAACfwJAAkACQCAALQAAQQFrDgIBAgALIAIgAEEBajYCBCABQdSswABBC0GsmcAAQQMgAkEEakHErMAAEMkBDAILIAIgAEEEajYCCCABQaygwABBDSACQQhqQZygwAAQfwwBCyACIABBBGo2AgwgAUHwrMAAQREgAkEMakHgrMAAEH8LIAJBEGokAAuWAQEBfyMAQRBrIgIkAAJ/AkACQAJAIAAtAABBAWsOAgECAAsgAiAAQQFqNgIEIAFB6M/AAEELQcC8wABBAyACQQRqQdjPwAAQyQEMAgsgAiAAQQRqNgIIIAFBwMPAAEENIAJBCGpBsMPAABB/DAELIAIgAEEEajYCDCABQYTQwABBESACQQxqQfTPwAAQfwsgAkEQaiQAC5YBAQF/IwBBEGsiAiQAAn8CQAJAAkAgAC0AAEEBaw4CAQIACyACIABBAWo2AgQgAUHQ8sAAQQtBkN/AAEEDIAJBBGpBwPLAABDJAQwCCyACIABBBGo2AgggAUH85cAAQQ0gAkEIakHs5cAAEH8MAQsgAiAAQQRqNgIMIAFB7PLAAEERIAJBDGpB3PLAABB/CyACQRBqJAALlgEBAX8jAEEQayICJAACfwJAAkACQCAALQAAQQFrDgIBAgALIAIgAEEBajYCBCABQeSYwQBBC0HUh8EAQQMgAkEEakHUmMEAEMkBDAILIAIgAEEEajYCCCABQfCLwQBBDSACQQhqQeCLwQAQfwwBCyACIABBBGo2AgwgAUGAmcEAQREgAkEMakHwmMEAEH8LIAJBEGokAAtyAQN/IwBBgAFrIgQkACAAKAIAIQADQCACIARqQf8AaiAAQQ9xIgNBMHIgA0HXAGogA0EKSRs6AAAgAkEBayECIABBD0sgAEEEdiEADQALIAFBAUGPxMIAQQIgAiAEakGAAWpBACACaxA1IARBgAFqJAALcQEDfyMAQYABayIEJAAgACgCACEAA0AgAiAEakH/AGogAEEPcSIDQTByIANBN2ogA0EKSRs6AAAgAkEBayECIABBD0sgAEEEdiEADQALIAFBAUGPxMIAQQIgAiAEakGAAWpBACACaxA1IARBgAFqJAALdwECfyMAQRBrIgIkACAAKAIAIgBBCGooAgAhAyAAQQRqKAIAIQAgAkEEaiABEKcDIAMEQCADQQJ0IQEDQCACIAA2AgwgAkEEaiACQQxqQejawAAQggEgAEEEaiEAIAFBBGsiAQ0ACwsgAkEEahCgAyACQRBqJAALmAEBAn8jAEEQayICJAAgACgCACIAQQRqIQMCfyAALQAARQRAIAIgAEEBajYCCCABQdCGwQBBC0HbhsEAQRIgA0HohcEAQe2GwQBBBSACQQhqQcCGwQAQwwEMAQsgAiAAQQhqNgIMIAFBhIfBAEEWQZqHwQBBCSADQeiFwQBBo4fBAEEJIAJBDGpB9IbBABDDAQsgAkEQaiQAC5kBAQN/IwBBEGsiAiQAIAAoAgAiAEEIaiEDIABBBGohBAJ/IAAoAgBFBEAgAiADNgIIIAFBiIvBAEEaQdSHwQBBAyAEQeiFwQBBoovBAEEEIAJBCGpB9IbBABDDAQwBCyACIAM2AgwgAUGmi8EAQQxBsovBAEEGIARB6IXBAEG4i8EAQQcgAkEMakH0hsEAEMMBCyACQRBqJAALmAEBAn8jAEEQayICJAAgACgCACIAQQRqIQMCfyAALQAARQRAIAIgAEEBajYCCCABQZTNwQBBC0GfzcEAQRIgA0H0zMEAQbHNwQBBBSACQQhqQYTNwQAQwwEMAQsgAiAAQQhqNgIMIAFByM3BAEEWQd7NwQBBCSADQfTMwQBB583BAEEJIAJBDGpBuM3BABDDAQsgAkEQaiQAC5kBAQN/IwBBEGsiAiQAIAAoAgAiAEEIaiEDIABBBGohBAJ/IAAoAgBFBEAgAiADNgIIIAFBndPBAEEaQYvOwQBBAyAEQfTMwQBBt9PBAEEEIAJBCGpBuM3BABDDAQwBCyACIAM2AgwgAUG708EAQQxBx9PBAEEGIARB9MzBAEHN08EAQQcgAkEMakG4zcEAEMMBCyACQRBqJAALdwECfyMAQRBrIgIkACAAKAIAIgBBCGooAgAhAyAAQQRqKAIAIQAgAkEEaiABEKcDIAMEQCADQQJ0IQEDQCACIAA2AgwgAkEEaiACQQxqQez3wQAQggEgAEEEaiEAIAFBBGsiAQ0ACwsgAkEEahCgAyACQRBqJAALewEBfyMAQTBrIgIkACACIABBBGo2AgAgAiAANgIEIAJBAzYCDCACQZzDwQA2AgggAkICNwIUIAIgAkEEaq1CgICAgPA1hDcDKCACIAKtQoCAgIDgNIQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUgAkEwaiQAC3oBAX8jAEEgayICJAACfyAAKAIAQYCAgIB4RwRAIAEgACgCBCAAKAIIEOUDDAELIAJBEGogACgCDCgCACIAQQhqKQIANwMAIAJBGGogAEEQaikCADcDACACIAApAgA3AwggASgCHCABKAIgIAJBCGoQRQsgAkEgaiQAC44BAQJ/IwBBIGsiAyQAAkAgACgCBEECRw0AAkACQCAALQAYQQFrDgICAAELIANBATYCCCADQfSCwAA2AgQgA0IANwIQIAMgA0EcajYCDCADQQRqQfiDwAAQpAMACyAAQQhqEKkBIAAoAggiBEUNACAAKAIMIARBDGxBBBCnBAsgAEEoQQQQpwQgA0EgaiQAC44BAQJ/IwBBIGsiASQAAkAgACgCBEECRw0AAkACQCAALQAYQQFrDgICAAELIAFBATYCCCABQbT+wAA2AgQgAUIANwIQIAEgAUEcajYCDCABQQRqQbj/wAAQpAMACyAAQQhqEKkBIAAoAggiAkUNACAAKAIMIAJBDGxBBBCnBAsgAEEkQQQQpwQgAUEgaiQAC44BAQJ/IwBBIGsiAyQAAkAgACgCBEECRw0AAkACQCAALQAYQQFrDgICAAELIANBATYCCCADQbT+wAA2AgQgA0IANwIQIAMgA0EcajYCDCADQQRqQbj/wAAQpAMACyAAQQhqEKkBIAAoAggiBEUNACAAKAIMIARBDGxBBBCnBAsgAEEkQQQQpwQgA0EgaiQAC48BAQJ/IwBBIGsiAyQAAkAgACgCBEECRw0AAkACQCAALQAYQQFrDgICAAELIANBATYCCCADQbT+wAA2AgQgA0IANwIQIAMgA0EcajYCDCADQQRqQbj/wAAQpAMACyAAQQhqEKkBIAAoAggiBEUNACAAKAIMIARBDGxBBBCnBAsgAEHAAEEIEKcEIANBIGokAAuOAQECfyMAQSBrIgMkAAJAIAAoAgRBAkcNAAJAAkAgAC0AGEEBaw4CAgABCyADQQE2AgggA0G0/sAANgIEIANCADcCECADIANBHGo2AgwgA0EEakG4/8AAEKQDAAsgAEEIahCpASAAKAIIIgRFDQAgACgCDCAEQQxsQQQQpwQLIABBKEEEEKcEIANBIGokAAuTAQECfyMAQRBrIgIkACAAQQRqIQMCfyAALQAARQRAIAIgAEEBajYCCCABQaiYwABBC0GzmMAAQRIgA0GImMAAQcWYwABBBSACQQhqQZiYwAAQwwEMAQsgAiAAQQhqNgIMIAFB3JjAAEEWQfKYwABBCSADQYiYwABB+5jAAEEJIAJBDGpBzJjAABDDAQsgAkEQaiQAC5QBAQN/IwBBEGsiAiQAIABBCGohAyAAQQRqIQQCfyAAKAIARQRAIAIgAzYCCCABQeCcwABBGkGsmcAAQQMgBEGImMAAQfqcwABBBCACQQhqQcyYwAAQwwEMAQsgAiADNgIMIAFB/pzAAEEMQYqdwABBBiAEQYiYwABBkJ3AAEEHIAJBDGpBzJjAABDDAQsgAkEQaiQAC4wBAQJ/IwBBIGsiASQAAkAgACgCBEECRw0AAkACQCAALQAYQQFrDgICAAELIAFBATYCCCABQbT+wAA2AgQgAUIANwIQIAEgAUEcajYCDCABQQRqQbj/wAAQpAMACyAAQQhqEKkBIAAoAggiAkUNACAAKAIMIAJBDGxBBBCnBAsgAEEgahBUIAFBIGokAAuTAQECfyMAQRBrIgIkACAAQQRqIQMCfyAALQAARQRAIAIgAEEBajYCCCABQby7wABBC0HHu8AAQRIgA0Gcu8AAQdm7wABBBSACQQhqQay7wAAQwwEMAQsgAiAAQQhqNgIMIAFB8LvAAEEWQYa8wABBCSADQZy7wABBj7zAAEEJIAJBDGpB4LvAABDDAQsgAkEQaiQAC5QBAQN/IwBBEGsiAiQAIABBCGohAyAAQQRqIQQCfyAAKAIARQRAIAIgAzYCCCABQfS/wABBGkHAvMAAQQMgBEGcu8AAQY7AwABBBCACQQhqQeC7wAAQwwEMAQsgAiADNgIMIAFBksDAAEEMQZ7AwABBBiAEQZy7wABBpMDAAEEHIAJBDGpB4LvAABDDAQsgAkEQaiQAC5MBAQJ/IwBBEGsiAiQAIABBBGohAwJ/IAAtAABFBEAgAiAAQQFqNgIIIAFBnN7AAEELQafewABBEiADQYzewABBud7AAEEFIAJBCGpB+NrAABDDAQwBCyACIABBCGo2AgwgAUG+3sAAQRZB1N7AAEEJIANBjN7AAEHd3sAAQQkgAkEMakH43MAAEMMBCyACQRBqJAALlAEBA38jAEEQayICJAAgAEEIaiEDIABBBGohBAJ/IAAoAgBFBEAgAiADNgIIIAFBxOLAAEEaQZDfwABBAyAEQYzewABB3uLAAEEEIAJBCGpB+NzAABDDAQwBCyACIAM2AgwgAUHi4sAAQQxB7uLAAEEGIARBjN7AAEH04sAAQQcgAkEMakH43MAAEMMBCyACQRBqJAALkwEBAn8jAEEQayICJAAgAEEEaiEDAn8gAC0AAEUEQCACIABBAWo2AgggAUHQhsEAQQtB24bBAEESIANB6IXBAEHthsEAQQUgAkEIakHAhsEAEMMBDAELIAIgAEEIajYCDCABQYSHwQBBFkGah8EAQQkgA0HohcEAQaOHwQBBCSACQQxqQfSGwQAQwwELIAJBEGokAAuUAQEDfyMAQRBrIgIkACAAQQhqIQMgAEEEaiEEAn8gACgCAEUEQCACIAM2AgggAUGIi8EAQRpB1IfBAEEDIARB6IXBAEGii8EAQQQgAkEIakH0hsEAEMMBDAELIAIgAzYCDCABQaaLwQBBDEGyi8EAQQYgBEHohcEAQbiLwQBBByACQQxqQfSGwQAQwwELIAJBEGokAAtJAQN+IAAgAUL/////D4MiAkI+fiIDQgAiAiABQiCIQj5+fCIBQiCGfCIENwMAIAAgAyAEVq0gASACVK1CIIYgAUIgiIR8NwMIC5YBAQJ/AkACQAJAAkACQAJAAkAgASgCAEEBaw4GBgECAwQFAAsgAUEEaiECQaiWwAAhAwwFCyABQQRqIQJBzK7AACEDDAQLIAFBBGohAkGIr8AAIQMMAwsgAUEEaiECQcSvwAAhAwwCCyABQQRqIQJBgLDAACEDDAELIAFBBGohAkG8sMAAIQMLIAAgAzYCBCAAIAI2AgALlgEBAn8CQAJAAkACQAJAAkACQCABKAIAQQFrDgYGAQIDBAUACyABQQRqIQJB1LfAACEDDAULIAFBBGohAkHg0cAAIQMMBAsgAUEEaiECQZzSwAAhAwwDCyABQQRqIQJB2NLAACEDDAILIAFBBGohAkGU08AAIQMMAQsgAUEEaiECQdDTwAAhAwsgACADNgIEIAAgAjYCAAuWAQECfwJAAkACQAJAAkACQAJAIAEoAgBBAWsOBgYBAgMEBQALIAFBBGohAkHk7MAAIQMMBQsgAUEEaiECQcj0wAAhAwwECyABQQRqIQJBhPXAACEDDAMLIAFBBGohAkHA9cAAIQMMAgsgAUEEaiECQfz1wAAhAwwBCyABQQRqIQJBuPbAACEDCyAAIAM2AgQgACACNgIAC5YBAQJ/AkACQAJAAkACQAJAAkAgASgCAEEBaw4GBgECAwQFAAsgAUEEaiECQeiSwQAhAwwFCyABQQRqIQJB3JrBACEDDAQLIAFBBGohAkGYm8EAIQMMAwsgAUEEaiECQdSbwQAhAwwCCyABQQRqIQJBkJzBACEDDAELIAFBBGohAkHMnMEAIQMLIAAgAzYCBCAAIAI2AgALfgEBfyMAQUBqIgUkACAFIAE2AgwgBSAANgIIIAUgAzYCFCAFIAI2AhAgBUECNgIcIAVB0MPCADYCGCAFQgI3AiQgBSAFQRBqrUKAgICAgMQAhDcDOCAFIAVBCGqtQoCAgICQxACENwMwIAUgBUEwajYCICAFQRhqIAQQpAMAC28BAX8jAEEwayICJAAgAiAAKAIANgIEIAJBAjYCDCACQbivwQA2AgggAkICNwIUIAIgAkEEaq1CgICAgIA2hDcDKCACQvSuwYAQNwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFIAJBMGokAAt8AQN/AkACQAJAQQMgACgCAEEHayIBIAFBA08bQQJrDgIBAAILIAAQpAEMAQsgAC0ABEEDRw0AIAAoAggiACgCACEBIABBBGooAgAiAygCACICBEAgASACEQMACyADKAIEIgIEQCABIAIgAygCCBCnBAsgAEEMQQQQpwQLC4UBAQJ/IwBBIGsiASQAAkAgACgCBEECRw0AAkACQCAALQAYQQFrDgICAAELIAFBATYCCCABQbT+wAA2AgQgAUIANwIQIAEgAUEcajYCDCABQQRqQbj/wAAQpAMACyAAQQhqEKkBIAAoAggiAkUNACAAKAIMIAJBDGxBBBCnBAsgAUEgaiQAC2wBAX8jAEEwayICJAAgAiAANgIEIAJBAjYCDCACQbivwQA2AgggAkICNwIUIAIgAkEEaq1CgICAgIA2hDcDKCACQvSuwYAQNwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFIAJBMGokAAt4AQN/AkAgACgCACIBQYCAgIB4RwRAIAFFDQEgACgCBCABQQEQpwQPCyAALQAEQQNHDQAgACgCCCIAKAIAIQEgAEEEaigCACIDKAIAIgIEQCABIAIRAwALIAMoAgQiAgRAIAEgAiADKAIIEKcECyAAQQxBBBCnBAsLcwECfwJAAn8CQAJAAkACQAJAAkAgAS0AAA4HAAcBAgMEBQcLIAFBBGoMBQsgAUEEagwECyABQQFqIQJB8KLAACEDDAQLIAFBBGoMAgsgAUEEagwBCyABQQRqCyECQaiWwAAhAwsgACADNgIEIAAgAjYCAAtzAQJ/AkACfwJAAkACQAJAAkACQCABLQAADgcABwECAwQFBwsgAUEEagwFCyABQQRqDAQLIAFBAWohAkGExsAAIQMMBAsgAUEEagwCCyABQQRqDAELIAFBBGoLIQJB1LfAACEDCyAAIAM2AgQgACACNgIAC3MBAn8CQAJ/AkACQAJAAkACQAJAIAEtAAAOBwAHAQIDBAUHCyABQQRqDAULIAFBBGoMBAsgAUEBaiECQbDowAAhAwwECyABQQRqDAILIAFBBGoMAQsgAUEEagshAkHk7MAAIQMLIAAgAzYCBCAAIAI2AgALcwECfwJAAn8CQAJAAkACQAJAAkAgAS0AAA4HAAcBAgMEBQcLIAFBBGoMBQsgAUEEagwECyABQQFqIQJBtI7BACEDDAQLIAFBBGoMAgsgAUEEagwBCyABQQRqCyECQeiSwQAhAwsgACADNgIEIAAgAjYCAAtlAQJ/IwBBEGsiAiQAIAAoAgQhAyAAKAIAIQAgAkEEaiABEKcDIAMEQANAIAIgADYCDCACQQRqIAJBDGpB8K3CABCCASAAQQFqIQAgA0EBayIDDQALCyACQQRqEKADIAJBEGokAAvxAQEEfyMAQRBrIgMkACAAKAIMIQICfwJAAkACQAJAIAAoAgQOAgABAgsgAg0BQQFBABCfAwwDCyACRQ0BCyADQQRqIgIgABBoIwBBIGsiBCQAIARBCGoiABDwAQJ/QYXlwgAtAAAaQShBBBD1AyIBBEAgAUGAu8AANgIAIAEgACkCADcCBCABIAIpAgA3AhwgAUEMaiAAQQhqKQIANwIAIAFBFGogAEEQaikCADcCACABQSRqIAJBCGooAgA2AgAgAQwBC0EEQSgQ0wQACyAEQSBqJAAMAQsgACgCACIAKAIAIAAoAgQQnwMLIANBEGokAAt8AQJ/AkACQAJAAkAgAC0AAA4CAwEACyAAKAIEIgFB+////wdqIgJBDU0gAkECR3ENAiABQYSAgIB4Sg0BIAFBg4CAgHhHDQIMAQsgACgCBCIBQYSAgIB4Sg0AIAFBg4CAgHhHDQELIAFFDQAgACgCCCABQQJ0QQQQpwQLC2kCAX8BfiMAQTBrIgMkACADIAE2AgQgAyAANgIAIANBAjYCDCADQZzCwgA2AgggA0ICNwIUIANCgICAgBAiBCADrYQ3AyggAyAEIANBBGqthDcDICADIANBIGo2AhAgA0EIaiACEKQDAAttAQF/IAAtAAQhASAALQAFBEAgAAJ/QQEgAUEBcQ0AGiAAKAIAIgEtABRBBHFFBEAgASgCHEGHxMIAQQIgASgCICgCDBECAAwBCyABKAIcQYbEwgBBASABKAIgKAIMEQIACyIBOgAECyABQQFxC2QBAX8jAEEwayICJAAgAiAAKAIANgIMIAJBAjYCFCACQeSuwQA2AhAgAkIBNwIcIAIgAkEMaq1CgICAgOA0hDcDKCACIAJBKGo2AhggASgCHCABKAIgIAJBEGoQRSACQTBqJAALWgECfyAAKAIILQBkIgJFBEAgAEIANwMADwsgAiABLQAUIgNNBEAgASADIAJrIgM6ABQgAEJ/IAKthkJ/hSABKQMIIANBP3GtiIM3AwAPCyAAIAEgAhBbNwMAC2QBAX8jAEEQayIAJAACfyACKAIABEBB3KDCACEDQQkMAQsgAEEEaiACKAIEIAIoAggQPUHcoMIAIAAoAgggACgCBCICGyEDQQkgACgCDCACGwshAiADIAIgARDaASAAQRBqJAALZgAjAEEwayIAJABBhOXCAC0AAARAIABBAjYCDCAAQYyhwgA2AgggAEIBNwIUIAAgATYCLCAAIABBLGqtQoCAgIAQhDcDICAAIABBIGo2AhAgAEEIakG0ocIAEKQDAAsgAEEwaiQAC2EBAX8jAEEwayICJAAgAiAANgIMIAJBAjYCFCACQZymwQA2AhAgAkIBNwIcIAIgAkEMaq1CgICAgOA0hDcDKCACIAJBKGo2AhggASgCHCABKAIgIAJBEGoQRSACQTBqJAALYQEBfyMAQTBrIgIkACACIAA2AgwgAkECNgIUIAJB5K7BADYCECACQgE3AhwgAiACQQxqrUKAgICA4DSENwMoIAIgAkEoajYCGCABKAIcIAEoAiAgAkEQahBFIAJBMGokAAthAQF/IwBBMGsiAiQAIAIgADYCDCACQQE2AhQgAkHwp8EANgIQIAJCATcCHCACIAJBDGqtQoCAgICQOIQ3AyggAiACQShqNgIYIAEoAhwgASgCICACQRBqEEUgAkEwaiQAC18BAn8CQCAAKAIAIgFB7f///wdqIgJBCk0gAkEDR3ENACABRSABQfv///8HaiICQQ1NIAJBAkdxIAFBg4CAgHhHIAFBhICAgHhMcXJyDQAgACgCBCABQQJ0QQQQpwQLC1wBA38gAC0AACIBQQNLIAFBA0dyRQRAIAAoAgQiACgCACEBIABBBGooAgAiAygCACICBEAgASACEQMACyADKAIEIgIEQCABIAIgAygCCBCnBAsgAEEMQQQQpwQLC2sBAn9BqJbAACECAkACQAJAAkAgAS0AACIDQQNrQQAgA0EEa0H/AXFBA0kbQQFrDgMAAQIDC0EAIQEMAgsgAUEBaiEBQdStwAAhAgwBCyABQQRqIQFBkK7AACECCyAAIAI2AgQgACABNgIAC2gBA38CQAJAAkACQEEDIAEoAgBB7f///wdqIgQgBEELTxtBAmsOAwABAgMLIAFBBGohAkGcm8AAIQMMAgtB2LPAACEDIAEhAgwBCyABQQRqIQJBjLXAACEDCyAAIAM2AgQgACACNgIAC2sBAn9B1LfAACECAkACQAJAAkAgAS0AACIDQQNrQQAgA0EEa0H/AXFBA0kbQQFrDgMAAQIDC0EAIQEMAgsgAUEBaiEBQejQwAAhAgwBCyABQQRqIQFBpNHAACECCyAAIAI2AgQgACABNgIAC2gBA38CQAJAAkACQEEDIAEoAgBB7f///wdqIgQgBEELTxtBAmsOAwABAgMLIAFBBGohAkGwvsAAIQMMAgtB7NbAACEDIAEhAgwBCyABQQRqIQJBoNjAACEDCyAAIAM2AgQgACACNgIAC2sBAn9B5OzAACECAkACQAJAAkAgAS0AACIDQQNrQQAgA0EEa0H/AXFBA0kbQQFrDgMAAQIDC0EAIQEMAgsgAUEBaiEBQdDzwAAhAgwBCyABQQRqIQFBjPTAACECCyAAIAI2AgQgACABNgIAC2gBA38CQAJAAkACQEEDIAEoAgBB7f///wdqIgQgBEELTxtBAmsOAwABAgMLIAFBBGohAkGA4cAAIQMMAgtB1PnAACEDIAEhAgwBCyABQQRqIQJBiPvAACEDCyAAIAM2AgQgACACNgIAC2sBAn9B6JLBACECAkACQAJAAkAgAS0AACIDQQNrQQAgA0EEa0H/AXFBA0kbQQFrDgMAAQIDC0EAIQEMAgsgAUEBaiEBQeSZwQAhAgwBCyABQQRqIQFBoJrBACECCyAAIAI2AgQgACABNgIAC2gBA38CQAJAAkACQEEDIAEoAgBB7f///wdqIgQgBEELTxtBAmsOAwABAgMLIAFBBGohAkHEicEAIQMMAgtB6J/BACEDIAEhAgwBCyABQQRqIQJBnKHBACEDCyAAIAM2AgQgACACNgIAC1gBAn8jAEEQayICJAAgAS0AAEEDRwR/QQAFIAJBCGogASgCBCIBKAIAIAEoAgQoAiQRAQAgAigCDCEDIAIoAggLIQEgACADNgIEIAAgATYCACACQRBqJAALWAECfyMAQRBrIgIkACABLQAAQQNHBH9BAAUgAkEIaiABKAIEIgEoAgAgASgCBCgCGBEBACACKAIMIQMgAigCCAshASAAIAM2AgQgACABNgIAIAJBEGokAAueGQITfwF+IwBBIGsiDiQAAn8gACgCACIAKAIABEACfyABIQsjAEEwayIIJAAgACgCCCERIAAoAgQhCSAAKAIAIQ0CQAJAAkACQANAAkAgESAQIgpGBEBBACEADAELIAlFDQUgCiARRyESIApBAWohECAJQQFrIQUgDSIBLQAAIQZBACECAkACQANAAkAgBsBBAEgEQCAGQR9xIQAgASACaiIDQQFqLQAAQT9xIQQgBkH/AXEiDUHfAU0EQCAAQQZ0IARyIQMMAgsgA0ECai0AAEE/cSAEQQZ0ciEEIA1B8AFJBEAgBCAAQQx0ciEDDAILIABBEnRBgIDwAHEgA0EDai0AAEE/cSAEQQZ0cnIiA0GAgMQARw0BDAoLIAZB/wFxIQMLAkACQCADQTBrQQlNBEAgAiAFRg0LIAEgAmoiAEEBaiwAACIGQb9/Sg0BIAAgCSACayIAQQEgAEG8ssIAEOwDAAsgAg0BQQAhBAwDCyACQQFqIQIMAQsLAkAgASACaiIHLAAAQb9/SgRAIAEtAAAhAAJAIAJBAUYEQEEBIQQgASEDIABBK2sOAwQBBAELIABBK0YEQCACQQFrIQQgAUEBaiEDIAJBCkkNAQwDCyABIQMgAiEEIAJBCU8NAgtBACEFA0AgAy0AAEEwayIAQQlLBEBBASEEDAQLIANBAWohAyAAIAVBCmxqIQUgBEEBayIEDQALDAMLIAEgCUEAIAJBzLLCABDsAwALQQAhBSAEIQADQCAARQ0CIAMtAABBMGsiDUEJSwRAQQEhBAwCC0ECIQQgBa1CCn4iFUIgiKcNASADQQFqIQMgAEEBayEAIA0gFaciDGoiBSAMTw0ACwsgCCAEOgAUQYCwwgBBKyAIQRRqQbC0wgBBwLTCABCgAgALIAkgBWshDAJAAkACQAJAIAVFDQAgCSACayIAIAVNBEAgAiAMRg0BDAkLIAEgBWogAmoiAywAAEG/f0wNCCADLAAAQb9/TA0BCyABIAVqIAJqIQ0gECARRw0CIAVFIAsoAhRBBHFFIAZB/wFxQegAR3JyDQIgBUEBRwRAIAdBAWosAABBv39MDQILIAdBAWohBgNAQQAhACAGIA1GDQQCfyAGLAAAIgNBAE4EQCADQf8BcSEDIAZBAWoMAQsgBi0AAUE/cSEJIANBH3EhBCADQV9NBEAgBEEGdCAJciEDIAZBAmoMAQsgBi0AAkE/cSAJQQZ0ciEJIANBcEkEQCAJIARBDHRyIQMgBkEDagwBCyAEQRJ0QYCA8ABxIAYtAANBP3EgCUEGdHJyIgNBgIDEAEYNBSAGQQRqCyEGIANBwQBrQV5xQQpqIANBMGsgA0E5SxtBEEkNAAsMAgsgByAAQQAgBUHsssIAEOwDAAsgByAFQQEgBUGcssIAEOwDAAsCQCAKRQ0AIAtB/LLCAEECEOUDRQ0AIBIhAAwBCyABIAJqIQoCQAJAAkAgBUECSQ0AIAovAABB38gARw0AIAdBAWoiCiwAAEG/f0wNASAFQQFrIQULIAwgAmshCQNAIAohAQJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQCAFIgRFDQACQCABLQAAQSRrDgsCAQEBAQEBAQEBAAELIARBAUYNBSABLAABQb9/Sg0EIAEgBEEBIARB/LPCABDsAwALIAEgBGohCkEAIQIgASEGA0AgAiEAIAYiAiAKRg0RAn8gAiwAACIDQQBOBEAgA0H/AXEhBSACQQFqDAELIAItAAFBP3EhBSADQR9xIQYgA0FfTQRAIAZBBnQgBXIhBSACQQJqDAELIAItAAJBP3EgBUEGdHIhBSADQXBJBEAgBSAGQQx0ciEFIAJBA2oMAQsgBkESdEGAgPAAcSACLQADQT9xIAVBBnRyciEFIAJBBGoLIgYgACACa2ohAiAFQSRrDgsCAAAAAAAAAAAAAgALAAsgBEEBRg0BIAEsAAFBv39KDQEgASAEQQEgBEGws8IAEOwDAAsCQAJAAkAgAARAAkAgACAESSICRQRAIAAgBEcNASALIAEgABDlA0UNBEEBIQAMFQsgACABaiwAAEG/f0oNAgsgASAEQQAgAEGQs8IAEOwDAAsgCyABIAAQ5QNFDQJBASEADBILIAsgASAAEOUDRQ0AQQEhAAwRCyACRQRAIAAgBEYNAQwUCyAAIAFqLAAAQUBIDRMLIAAgAWohCiAEIABrIQUMDAsgCCAEQQFrIgA2AiQgCEEANgIgIAggADYCHCAIQSQ2AhQgCEEkNgIoIAhBAToALCAIIAFBAWoiADYCGCAIQQhqIAhBFGoQUCAIKAIIQQFHDQ0CQCAIKAIMIgdBf0cEQCAHQQFqIQIgBEEBRw0BDAULIwBBIGsiACQAIABBADYCGCAAQQE2AgwgAEG8x8IANgIIIABCBDcCECAAQQhqQcCzwgAQpAMACyAALAAAQb9/Sg0DDAQLAkACfyABLAABIgBBAE4EQCAAQf8BcQwBCyABLQACQT9xIgMgAEEfcSICQQZ0ciAAQV9NDQAaIAEtAANBP3EgA0EGdHIiAyACQQx0ciAAQXBJDQAaIAJBEnRBgIDwAHEgAS0ABEE/cSADQQZ0cnILQS5HBEBBASEAIAtBnLTCAEEBEOUDDQ8gASwAAUFASA0BDAMLIAtB/LLCAEECEOUDBEBBASEADA8LAkAgBEEDTwRAIAEsAAJBQEgNAQsgAUECaiEKIARBAmshBQwMCyABIARBAiAEQYy0wgAQ7AMACyABIARBASAEQaC0wgAQ7AMAC0EBIQAgC0GctMIAQQEQ5QMNDAsgAUEBaiEKIARBAWshBQwICwJAIAIgBE8EQCACIARHDQIgB0ECaiICDQEMBgsgASACaiwAAEFASA0BIAdBAmohAgsgAiAESQ0BIAIgBEYNAgwDCyABIARBASACQcCzwgAQ7AMACyABIAJqLAAAQUBIDQELIAEgAmohCiAEIAJrIQUCQAJAAkACQCAHDgMKAQAFCyAALwAAQdOgAUYEQEH7s8IAIQIMAwsgAC8AAEHCoAFGBEBB+rPCACECDAMLIAAvAABB0owBRgRAQfmzwgAhAgwDCyAALwAAQcyoAUYEQEH4s8IAIQIMAwsgAC8AAEHHqAFGBEBB97PCACECDAMLIAAvAABBzKABRgRAQfazwgAhAgwDCyAALwAAQdKgAUcNAUH1s8IAIQIMAgsgAC0AAEHDAEYEQEH0s8IAIQIMAgsgAC0AAEH1AEYNBQwICyAALQAAQfUARw0HDAMLQQEhACALIAJBARDlA0UNBAwHCyABIAQgAiAEQdCzwgAQ7AMACyABLQABQfUARw0EIAdBAk8NAEEBIQcMBwsgASwAAkG/f0wNBgsgACAHaiEUIAdBAWshACABQQJqIgYhAgJAA0BBASETIAIgFEYNAQJ/IAIsAAAiA0EATgRAIANB/wFxIQMgAkEBagwBCyACLQABQT9xIQ8gA0EfcSEMIANBX00EQCAMQQZ0IA9yIQMgAkECagwBCyACLQACQT9xIA9BBnRyIQ8gA0FwSQRAIA8gDEEMdHIhAyACQQNqDAELIAxBEnRBgIDwAHEgAi0AA0E/cSAPQQZ0cnIiA0GAgMQARg0CIAJBBGoLIQIgA0Ewa0EKSSADQeEAa0EGSXINAAtBACETCwJAAkACQAJAIAdBAWsOAgYAAQtBASEAIAYtAABBK2sOAwUBBQELAkAgBi0AAEErRgRAIAdBAmshACABQQNqIQYgB0ELTw0BDAILIAdBCkkNAQtBACEDA0AgBi0AACICQcEAa0FfcUEKaiACQTBrIAJBOUsbIgJBD0sgA0H/////AEtyDQUgBkEBaiEGIAIgA0EEdHIhAyAAQQFrIgANAAsMAQtBACEDA0AgBi0AACICQcEAa0FfcUEKaiACQTBrIAJBOUsbIgJBD0sNBCAGQQFqIQYgAiADQQR0ciEDIABBAWsiAA0ACwsgE0VBgIDEACADIANBgLADc0GAgMQAa0GAkLx/SRsiAEGAgMQARnINAiAIIAA2AgQgAEEgSSAAQf8Aa0EhSXINAiAIQQRqIAsQjQFFDQALQQEhAAwCCyAHIAVBASAFQYCzwgAQ7AMACyASIQAgCyABIAQQ5QNFDQELCyAIQTBqJAAgAAwECyAAIAdBASAHQeSzwgAQ7AMACyABIAQgACAEQaCzwgAQ7AMACyAHIAAgBSAAQdyywgAQ7AMAC0GsssIAEK4EAAsMAQsgDkEANgIcIA4gATYCGCAOQgA3AhAgDiAAKQIENwIIIA5BCGpBARAfCyAOQSBqJAALXAEBfyMAQTBrIgMkACADIAE2AgwgAyAANgIIIANBATYCFCADQYzBwgA2AhAgA0IBNwIcIAMgA0EIaq1CgICAgJDEAIQ3AyggAyADQShqNgIYIANBEGogAhCkAwALZQEDfwJAAkACQAJAQQIgASgCAEH7////B2oiBCAEQQ5PGw4DAAECAwsgAUEEaiECQZybwAAhAwwCCyABQQRqIQJBpKfAACEDDAELQeCnwAAhAyABIQILIAAgAzYCBCAAIAI2AgALZQEDfwJAAkACQAJAQQIgASgCAEH7////B2oiBCAEQQxPGw4DAAECAwsgAUEEaiECQZybwAAhAwwCCyABQQRqIQJBpKfAACEDDAELQeCnwAAhAyABIQILIAAgAzYCBCAAIAI2AgALZQEDfwJAAkACQAJAQQIgASgCAEH7////B2oiBCAEQQ5PGw4DAAECAwsgAUEEaiECQbC+wAAhAwwCCyABQQRqIQJBuMrAACEDDAELQfTKwAAhAyABIQILIAAgAzYCBCAAIAI2AgALZQEDfwJAAkACQAJAQQIgASgCAEH7////B2oiBCAEQQxPGw4DAAECAwsgAUEEaiECQbC+wAAhAwwCCyABQQRqIQJBuMrAACEDDAELQfTKwAAhAyABIQILIAAgAzYCBCAAIAI2AgALZQEDfwJAAkACQAJAQQIgASgCAEH7////B2oiBCAEQQ5PGw4DAAECAwsgAUEEaiECQYDhwAAhAwwCCyABQQRqIQJBoO3AACEDDAELQdztwAAhAyABIQILIAAgAzYCBCAAIAI2AgALZQEDfwJAAkACQAJAQQIgASgCAEH7////B2oiBCAEQQxPGw4DAAECAwsgAUEEaiECQYDhwAAhAwwCCyABQQRqIQJBoO3AACEDDAELQdztwAAhAyABIQILIAAgAzYCBCAAIAI2AgALZQEDfwJAAkACQAJAQQIgASgCAEH7////B2oiBCAEQQ5PGw4DAAECAwsgAUEEaiECQcSJwQAhAwwCCyABQQRqIQJBpJPBACEDDAELQeCTwQAhAyABIQILIAAgAzYCBCAAIAI2AgALZQEDfwJAAkACQAJAQQIgASgCAEH7////B2oiBCAEQQxPGw4DAAECAwsgAUEEaiECQcSJwQAhAwwCCyABQQRqIQJBpJPBACEDDAELQeCTwQAhAyABIQILIAAgAzYCBCAAIAI2AgALnAECA38BbyMAQSBrIgMkACADIAAoAgAQ3AQiBDYCACADIAI2AgQgAiAERwRAIANBADYCCCADIANBBGogA0EIahCMAwALEO0DIgQQ3AMiBSUBEA0hBhBpIgIgBiYBIAVBhAFPBEAgBRDGAQsgAiAAKAIAIAFBAnYQpgQgAkGEAU8EQCACEMYBCyAEQYQBTwRAIAQQxgELIANBIGokAAtTAQN/IAAtAABBA0YEQCAAKAIEIgAoAgAhAiAAQQRqKAIAIgMoAgAiAQRAIAIgAREDAAsgAygCBCIBBEAgAiABIAMoAggQpwQLIABBDEEEEKcECwttAQF/IAEoAhwhAiABKAIgKAIMIQECQAJAAkACQCAAKAIALQAAQQFrDgMBAgMACyACQcD3wQBBAyABEQIADwsgAkHD98EAQQMgARECAA8LIAJBxvfBAEEKIAERAgAPCyACQdD3wQBBCSABEQIAC1IBAX8jAEEQayICJAACfyAAKAIAIgAtAABFBEAgAUHq3cAAQQQQ5QMMAQsgAiAAQQFqNgIMIAFB7t3AAEEEIAJBDGpB+NrAABB/CyACQRBqJAALUQEBfyMAQRBrIgIkAAJ/IAAoAgAiAC0AAEECRwRAIAIgADYCDCABQeyHwQBBDCACQQxqQdyHwQAQfwwBCyABQZ6JwQBBFBDlAwsgAkEQaiQAC1EBAX8jAEEQayICJAACfyAAKAIAIgAtAABBAkcEQCACIAA2AgwgAUHo1MEAQQwgAkEMakHY1MEAEH8MAQsgAUHE2sEAQRQQ5QMLIAJBEGokAAtQAQF/IwBBMGsiACQAIABBATYCDCAAQdCWwgA2AgggAEIBNwIUIAAgAEEvaq1CgICAgPA9hDcDICAAIABBIGo2AhAgAEEIakH8h8AAEKQDAAtRAQF/IwBBMGsiACQAIABBATYCDCAAQbTBwgA2AgggAEIBNwIUIAAgAEEvaq1CgICAgPDDAIQ3AyAgACAAQSBqNgIQIABBCGpBjIjAABCkAwALQwEDfwJAIAJFDQADQCAALQAAIgQgAS0AACIFRgRAIABBAWohACABQQFqIQEgAkEBayICDQEMAgsLIAQgBWshAwsgAwtMAQF/IwBBEGsiAiQAAn8gAC0AAEECRwRAIAIgADYCDCABQcSZwABBDCACQQxqQbSZwAAQfwwBCyABQfaawABBFBDlAwsgAkEQaiQAC1ABA38CQAJAAkBBAyABKAIAQQdrIgQgBEEDTxtBAmsOAgABAgsgAUEEaiECQaiWwAAhAwwBC0HQtMAAIQMgASECCyAAIAM2AgQgACACNgIAC0wBAX8jAEEQayICJAACfyAALQAAQQJHBEAgAiAANgIMIAFB2LzAAEEMIAJBDGpByLzAABB/DAELIAFBir7AAEEUEOUDCyACQRBqJAALUAEDfwJAAkACQEEDIAEoAgBBB2siBCAEQQNPG0ECaw4CAAECCyABQQRqIQJB1LfAACEDDAELQeTXwAAhAyABIQILIAAgAzYCBCAAIAI2AgALTAEBfyMAQRBrIgIkAAJ/IAAtAABBAkcEQCACIAA2AgwgAUGo38AAQQwgAkEMakGY38AAEH8MAQsgAUHa4MAAQRQQ5QMLIAJBEGokAAtQAQN/AkACQAJAQQMgASgCAEEHayIEIARBA08bQQJrDgIAAQILIAFBBGohAkHk7MAAIQMMAQtBzPrAACEDIAEhAgsgACADNgIEIAAgAjYCAAtQAQN/AkACQAJAQQMgASgCAEEHayIEIARBA08bQQJrDgIAAQILIAFBBGohAkHoksEAIQMMAQtB4KDBACEDIAEhAgsgACADNgIEIAAgAjYCAAtMAQF/IwBBEGsiAiQAAn8gAC0AAEECRwRAIAIgADYCDCABQeyHwQBBDCACQQxqQdyHwQAQfwwBCyABQZ6JwQBBFBDlAwsgAkEQaiQAC14AIAEoAgAlASACKAIAJQEgAygCACUBEBkhAUEBIQMCQEGI5cIAKAIAQQFGBEAgAEGM5cIAKAIANgIEDAELIAAgAUEARzoAAUEAIQMLIAAgAzoAAEGI5cIAQgA3AgALSAECfyAAKAIAIgFB+////wdqIgJBDU0gAkECR3EgAUGDgICAeEcgAUGEgICAeExxciABRXJFBEAgACgCBCABQQJ0QQQQpwQLC0gBAn8gACgCACIBQfv///8HaiICQQtNIAJBAkdxIAFBg4CAgHhHIAFBhICAgHhMcXIgAUVyRQRAIAAoAgQgAUECdEEEEKcECwtCAQF/IAIgACgCACAAKAIIIgNrSwRAIAAgAyACEJMBIAAoAgghAwsgACgCBCADaiABIAIQOxogACACIANqNgIIQQALQgEBfyACIAAoAgAgACgCCCIDa0sEQCAAIAMgAhCgASAAKAIIIQMLIAAoAgQgA2ogASACEDsaIAAgAiADajYCCEEAC08BAn8gACgCBCECIAAoAgAhAwJAIAAoAggiAC0AAEUNACADQfjDwgBBBCACKAIMEQIARQ0AQQEPCyAAIAFBCkY6AAAgAyABIAIoAhARAAALTgEBfyMAQRBrIgIkACACIAAoAgAiADYCDCABQeGhwQBBDkHvocEAQQ0gAEEEakG4h8EAQdSHwQBBAyACQQxqQfSGwQAQwwEgAkEQaiQAC04BAX8jAEEQayICJAAgAiAAKAIAIgBBBGo2AgwgAUGIhsEAQQlBkYbBAEELIABB6IXBAEGchsEAQQkgAkEMakH4hcEAEMMBIAJBEGokAAtOAQF/IwBBEGsiAiQAIAIgACgCACIANgIMIAFBptnBAEEOQcTZwQBBDSAAQQRqQbTZwQBBi87BAEEDIAJBDGpBuM3BABDDASACQRBqJAALSAEBfyMAQRBrIgIkACACQQhqIAEQ8wIgAiACKAIIIAIoAgwoAhgRAQAgAigCBCEBIAAgAigCADYCACAAIAE2AgQgAkEQaiQAC08BAn9BheXCAC0AABogASgCBCECIAEoAgAhA0EIQQQQ9QMiAUUEQEEEQQgQ0wQACyABIAI2AgQgASADNgIAIABB2KHCADYCBCAAIAE2AgALQgEBfyACIAAoAgAgACgCCCIDa0sEQCAAIAMgAhC5ASAAKAIIIQMLIAAoAgQgA2ogASACEDsaIAAgAiADajYCCEEAC0kBAX8jAEEQayICJAAgAiAANgIMIAFB0bXAAEEOQd+1wABBDSAAQQRqQZCZwABBrJnAAEEDIAJBDGpBzJjAABDDASACQRBqJAALSQEBfyMAQRBrIgIkACACIAA2AgwgAUHl2MAAQQ5B89jAAEENIABBBGpBpLzAAEHAvMAAQQMgAkEMakHgu8AAEMMBIAJBEGokAAtJAQF/IwBBEGsiAiQAIAIgADYCDCABQc37wABBDkHb+8AAQQ0gAEEEakH03sAAQZDfwABBAyACQQxqQfjcwAAQwwEgAkEQaiQAC0kBAX8jAEEQayICJAAgAiAANgIMIAFB4aHBAEEOQe+hwQBBDSAAQQRqQbiHwQBB1IfBAEEDIAJBDGpB9IbBABDDASACQRBqJAALQgEBfyMAQSBrIgMkACADQQA2AhAgA0EBNgIEIANCBDcCCCADIAE2AhwgAyAANgIYIAMgA0EYajYCACADIAIQpAMACz0BAn8gACAAKAIEIgMgAms2AgQgACAAKAIAIAIgA0tyIgQ2AgBBASEDIAQEfyADBSAAKAIIIAEgAhDlAwsLRgECfwJAAkACQCABLQAAQQFrDgIAAQILIAFBBGohAkHgp8AAIQMMAQsgAUEEaiECQdizwAAhAwsgACADNgIEIAAgAjYCAAtGAQJ/AkACQAJAIAEtAABBAWsOAgABAgsgAUEEaiECQfTKwAAhAwwBCyABQQRqIQJB7NbAACEDCyAAIAM2AgQgACACNgIAC0YBAn8CQAJAAkAgAS0AAEEBaw4CAAECCyABQQRqIQJB3O3AACEDDAELIAFBBGohAkHU+cAAIQMLIAAgAzYCBCAAIAI2AgALRgECfwJAAkACQCABLQAAQQFrDgIAAQILIAFBBGohAkHgk8EAIQMMAQsgAUEEaiECQeifwQAhAwsgACADNgIEIAAgAjYCAAs+AQF/IwBBEGsiAiQAIAJBCGogASABKAIAKAIEEQEAIAIoAgwhASAAIAIoAgg2AgAgACABNgIEIAJBEGokAAumAQICfwF+IAAoAgAhACABKAIUIgJBEHFFBEAgAkEgcUUEQCAAIAEQrwQPCyMAQYABayICJAAgACkDACEEQQAhAANAIAAgAmpB/wBqIASnQQ9xIgNBMHIgA0E3aiADQQpJGzoAACAAQQFrIQAgBEIPViAEQgSIIQQNAAsgAUEBQY/EwgBBAiAAIAJqQYABakEAIABrEDUgAkGAAWokAA8LIAAgARD+AQs5AQF/IAAoAgAhACABKAIUIgJBEHFFBEAgAkEgcUUEQCAAIAEQxQEPCyAAIAEQ/AEPCyAAIAEQ/QELOQEBfyAAKAIAIQAgASgCFCICQRBxRQRAIAJBIHFFBEAgACABEKkDDwsgACABEIQCDwsgACABEIMCCzkBAX8gACgCACEAIAEoAhQiAkEQcUUEQCACQSBxRQRAIAAgARCtBA8LIAAgARCEAg8LIAAgARCDAgs7AQF/IwBBEGsiAiQAIAIgACgCADYCDCABQYWJwQBBFkGbicEAQQMgAkEMakHAhsEAEMkBIAJBEGokAAs7AQF/IwBBEGsiAiQAIAIgACgCADYCDCABQfCIwQBBEUGBicEAQQQgAkEMakHgiMEAEMkBIAJBEGokAAs7AQF/IwBBEGsiAiQAIAIgACgCADYCDCABQYWXwQBBG0HUh8EAQQMgAkEMakHAhsEAEMkBIAJBEGokAAs9AQF+QYXlwgAtAAAaIAApAgAhAUEMQQQQ9QMiAARAIAAgATcCBCAAQYCAgIB4NgIAIAAPC0EEQQwQ0wQACzsBAX8jAEEQayICJAAgAiAAKAIANgIMIAFB8M3BAEEbQYvOwQBBAyACQQxqQYTNwQAQyQEgAkEQaiQACzgAAkAgAkGAgMQARg0AIAAgAiABKAIQEQAARQ0AQQEPCyADRQRAQQAPCyAAIAMgBCABKAIMEQIACzgBAX8jAEEQayICJAAgAiAANgIMIAFByJrAAEERQdmawABBBCACQQxqQbiawAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFB3ZrAAEEWQfOawABBAyACQQxqQZiYwAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFB9arAAEEbQayZwABBAyACQQxqQZiYwAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFB3L3AAEERQe29wABBBCACQQxqQcy9wAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFB8b3AAEEWQYe+wABBAyACQQxqQay7wAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFBic7AAEEbQcC8wABBAyACQQxqQay7wAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFBrODAAEERQb3gwABBBCACQQxqQZzgwAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFBweDAAEEWQdfgwABBAyACQQxqQfjawAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFB8fDAAEEbQZDfwABBAyACQQxqQfjawAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFB8IjBAEERQYGJwQBBBCACQQxqQeCIwQAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFBhYnBAEEWQZuJwQBBAyACQQxqQcCGwQAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFBhZfBAEEbQdSHwQBBAyACQQxqQcCGwQAQyQEgAkEQaiQACzwBAX8jAEEQayICJAAgAkGQksIANgIMIAIgADYCCCACQQhqQZSSwgAgAkEMakGUksIAIAFB5J/CABBrAAs4AQF/IwBBEGsiAiQAIAIgADYCDCABQeywwgBBDUH5sMIAQQQgAkEMakHcsMIAEMkBIAJBEGokAAs5AQF/IwBBEGsiAyQAIAMgATYCDCADIAA2AgggA0EIakGswsIAIANBDGpBrMLCACACQeyOwgAQawALMAEBfyMAQRBrIgIkACACQQhqIAAQ8wIgAigCCCABIAIoAgwoAhARAAAgAkEQaiQACzIBAX8gASgCFCICQRBxRQRAIAJBIHFFBEAgACABEMUBDwsgACABEPwBDwsgACABEP0BCzIBAX8gASgCFCICQRBxRQRAIAJBIHFFBEAgACABEK0EDwsgACABEIQCDwsgACABEIMCCzIBAX8gASgCFCICQRBxRQRAIAJBIHFFBEAgACABEKkDDwsgACABEIQCDwsgACABEIMCCzMBAX8jAEEQayICJAAgAiAAKAIANgIMIAFB7IfBAEEMIAJBDGpB3IfBABB/IAJBEGokAAszAQF/IwBBEGsiAiQAIAIgACgCADYCDCABQejUwQBBDCACQQxqQdjUwQAQfyACQRBqJAALLQACQCAAIAEQrANFDQAgAARAQYXlwgAtAAAaIAAgARD1AyIBRQ0BCyABDwsACzcBAX8jAEEgayIBJAAgAUEANgIYIAFBATYCDCABQdzZwgA2AgggAUIENwIQIAFBCGogABCkAwALMwEBfyAAKAIAIgFBhICAgHhMIAFBg4CAgHhHcSABRXJFBEAgACgCBCABQQJ0QQQQpwQLCzABAX8jAEEQayICJAAgAiAANgIMIAFBxJnAAEEMIAJBDGpBtJnAABB/IAJBEGokAAsvACAAQZybwAA2AgQgACABIAFBACABLQAAQQJrQf8BcSIAQQFGGyAAQQJLGzYCAAswAQF/IwBBEGsiAiQAIAIgADYCDCABQdi8wABBDCACQQxqQci8wAAQfyACQRBqJAALLwAgAEGwvsAANgIEIAAgASABQQAgAS0AAEECa0H/AXEiAEEBRhsgAEECSxs2AgALMAEBfyMAQRBrIgIkACACIAA2AgwgAUGo38AAQQwgAkEMakGY38AAEH8gAkEQaiQACy8AIABBgOHAADYCBCAAIAEgAUEAIAEtAABBAmtB/wFxIgBBAUYbIABBAksbNgIACy8AIABBxInBADYCBCAAIAEgAUEAIAEtAABBAmtB/wFxIgBBAUYbIABBAksbNgIACzABAX8jAEEQayICJAAgAiAANgIMIAFB7IfBAEEMIAJBDGpB3IfBABB/IAJBEGokAAssAQF/IwBBEGsiACQAIABBCGoiAiABQfyVwgBBCxCmAyACEK4CIABBEGokAAuEAQEDfyMAQSBrIgQkACAEQQhqIgMQ8AECf0GF5cIALQAAGkEkQQQQ9QMiAgRAIAJB5LrAADYCACACIAE2AiAgAiAANgIcIAIgAykCADcCBCACQQxqIANBCGopAgA3AgAgAkEUaiADQRBqKQIANwIAIAIMAQtBBEEkENMEAAsgBEEgaiQACzgBAX9BASEBIAAtAARFBEAgACgCACIBKAIcQY7EwgBBASABKAIgKAIMEQIAIQELIAAgAToABCABC5ABAQN/IwBBIGsiAyQAIANBCGoiAhDwAQJ/QYXlwgAtAAAaQShBBBD1AyIBBEAgAUGcgsAANgIAIAEgAikCADcCBCABIAApAgA3AhwgAUEMaiACQQhqKQIANwIAIAFBFGogAkEQaikCADcCACABQSRqIABBCGooAgA2AgAgAQwBC0EEQSgQ0wQACyADQSBqJAALhgECAn8BfiMAQSBrIgIkACACQQhqIgEQ8AECf0GF5cIALQAAGiAAKQIAIQNBJEEEEPUDIgAEQCAAQci6wAA2AgAgACADNwIcIAAgASkCADcCBCAAQQxqIAFBCGopAgA3AgAgAEEUaiABQRBqKQIANwIAIAAMAQtBBEEkENMEAAsgAkEgaiQAC5kSAhd/EH0QaSIMIAkmASMAQfAAayILJAAgCyAMNgIsIAsgCDYCKCALIAc4AiQgCyAGOAIgIAsgBTgCHCALIAQ4AhggCyADOAIUIAsgAjgCECALIAE4AgwgCyAAOAIIIAsgCkEARzoAMyALQQA2AjwgC0KAgICAwAA3AjQgCyALQSRqNgJsIAsgC0EgajYCaCALIAtBHGo2AmQgCyALQRhqNgJgIAsgC0EUajYCXCALIAtBEGo2AlggCyALQQxqNgJUIAsgC0EIajYCUCALIAtBNGo2AkwgCyALQTNqNgJIIAsgC0EsajYCRCALIAtBKGo2AkAgC0FAayIeIQgjAEEgayIMJAACQAJAAkBBAEGIh8AAKAIAEQQAIhIEQCASKAIADQIgCCgCLCEUIAgoAighFSAIKAIkIRYgCCgCICEXIAgoAhwhGCAIKAIYIRkgCCgCFCEaIAgoAhAhGyAIKAIMIQ8gCCgCCCEfIAgoAgQhICAIKAIAIRwgEkF/NgIAIBIgHCgCACINBH8gEkEMaigCACEdIBJBCGooAgAhCgNAIAwgICATQQJ0IBNBgIAEIA0gE2siCCAIQYCABE8bIghqIhNBAnQQqQQ2AgQgCEECdCINIB1LDQMgDEEEaiAKIA0QzAICQCAfLQAARQRAIAwgGSoCADgCECAMIBoqAgA4AgwgDCAbKgIAOAIIIAwgFioCADgCHCAMIBcqAgA4AhggDCAYKgIAOAIUIAohCCAVKgIAISQgFCoCACEjIwBBEGsiECQAIA0EQCAMQRRqIg4qAgAiACAAlCAOKgIEIgEgAZSSIA4qAggiAiAClJIhAyAMQQhqIg4qAgghIiAOKgIEISUgDioCACEmA0BBBCANIA1BBE8bIQ4CQCAILQADs0MAAH9DlUPNzMw9XQ0AIBBBBGogCCAOEEEgDUEDSwRAIAAgJiAQKgIEkyIElCABICUgECoCCJMiBZSSIAIgIiAQKgIMkyIGlJIiByAHlCADIAQgBJQgBSAFlJIgBiAGlJIgCCgCDCIREKUDIBFBCHYQpQOSIBFBEHYQpQOSQwAAQECVIgQgBJSTlJMiBEMAAAAAXQ0BIAeMIASRkyADlSIEICRgRSAEICNfRXINASAPKAIIIhEgDygCAEYEQCAPQdyMwAAQtAELIA8oAgQgEUECdGogBDgCACAPIBFBAWo2AggMAQtBAyAOQZyNwAAQrQIACyAIIA5BAnRqIQggDSAOayINDQALCwwBCyAMIBkqAgA4AhAgDCAaKgIAOAIMIAwgGyoCADgCCCAMIBYqAgA4AhwgDCAXKgIAOAIYIAwgGCoCADgCFCAKIQggFSoCACEtIBQqAgAhLiMAQRBrIhAkACANBEAgDEEUaiIOKgIAISUgDioCBCEmIA4qAgghKyAMQQhqIg4qAgghLyAOKgIEITAgDioCACExA0BBBCANIA1BBE8bIQ4CQCAILQADs0MAAH9DlUPNzMw9XQ0AIBBBBGogCCAOEEECQCANQQNLBEAgECoCDCEoIBAqAgghKSAQKgIEISogCCgCDCIREKUDIQMgEUEIdhClAyEEIBFBEHYQpQMhBSArIAgoAggiIUEYdbJDAAD+QpUiACAmIBFBGHWyQwAA/kKVIgGUICsgAJSTIiOUICFBEHbAskMAAP5ClSICICsgApQgJSABlJMiIpSTICUgAJQgJiAClJMiJ0MAAIA/IAIgApSTIAAgAJSTIAEgAZSTQwAAAAAQ1QORIgaUkiIHIAeSkiEHICYgAiAnlCABICOUkyAiIAaUkiIkICSSkiEkICUgASAilCAAICeUkyAjIAaUkiIjICOSkiEjIC8gKJMiIiAAIDAgKZMiJyABlCAiIACUkyIolCACICIgApQgMSAqkyIpIAGUkyIqlJMgKSAAlCAnIAKUkyIsIAaUkiIiICKSkiEiICcgAiAslCABICiUkyAqIAaUkiICIAKSkiECICkgASAqlCAAICyUkyAoIAaUkiIAIACSkiEAIAUgAyAEENUDIAUQ1QNDCtcjPJQiAV1FBEAgASAEXkUEQCABIANeRQRAQwAAgD8gBZUiBSAilCIBIAUgB5QiBZRDAACAPyADlSIDIACUIgAgAyAjlCIDlEMAAIA/IASVIgQgApQiAiAEICSUIgSUkpIiBiAGlCAFIAWUIAMgA5QgBCAElJKSIgMgASABlCAAIACUIAIgApSSkkMAAIC/kpSTIgBDAAAAAF0NBSAGjCAAkZMgA5UhAAwECyAji0O9N4Y1XQ0EIAIgJCAAjCAjlSIAlJIgBJUiASABlCAiIAcgAJSSIAWVIgEgAZSSQwAAgD9eRQ0DDAQLICSLQ703hjVdDQMgACAjIAKMICSVIgCUkiADlSIBIAGUICIgByAAlJIgBZUiASABlJJDAACAP14NAwwCCyAHi0O9N4Y1XQ0CIAAgIyAijCAHlSIAlJIgA5UiASABlCACICQgAJSSIASVIgEgAZSSQwAAgD9eRQ0BDAILQQMgDkGcjcAAEK0CAAsgACAtYEUgACAuX0VyDQAgDygCCCIRIA8oAgBGBEAgD0HsjMAAELQBCyAPKAIEIBFBAnRqIAA4AgAgDyARQQFqNgIICyAIIA5BAnRqIQggDSAOayINDQALCwsgEEEQaiQAIAwoAgQiCEGEAU8EQCAIEMYBCyATIBwoAgAiDUkNAAsgEigCAEEBagVBAAs2AgAgDEEgaiQADAMLENICAAsgDSAdQciLwAAQqwQACxDTAgALIAsoAjwQGCEJEGkiCCAJJgEgCyAINgJAIAsoAjghECALKAI8IQwjAEEgayIKJAAgCiAeKAIAIhIlARASIg02AgAgCiAMNgIEAkAgDCANRgRAEO0DIg0Q3AMiDyUBIBAgDBAQIQkQaSIMIAkmASANQYQBTwRAIA0QxgELIA9BhAFPBEAgDxDGAQsgEiUBIAwlAUEAEBEgDEGEAU8EQCAMEMYBCyAKQSBqJAAMAQsgCkEANgIIIAogCkEEaiAKQQhqEIwDAAsgCygCNCIKBEAgCygCOCAKQQJ0QQQQpwQLIAsoAiwiCkGEAU8EQCAKEMYBCyALQfAAaiQAIAglASAIEMYBC/wBAgJ/AX4jAEEQayICJAAgAkEBOwEMIAIgATYCCCACIAA2AgQjAEEQayIBJAAgAkEEaiIAKQIAIQQgASAANgIMIAEgBDcCBCMAQRBrIgAkACABQQRqIgEoAgAiAigCDCEDAkACQAJAAkAgAigCBA4CAAECCyADDQFBASECQQAhAwwCCyADDQAgAigCACICKAIEIQMgAigCACECDAELIABBgICAgHg2AgAgACABNgIMIABBhKLCACABKAIEIAEoAggiAC0ACCAALQAJEMEBAAsgACADNgIEIAAgAjYCACAAQeihwgAgASgCBCABKAIIIgAtAAggAC0ACRDBAQALKgAgAEH/AXFFBEBDAAAAAA8LIABBAWtB/wFxs0NFIpE9lEMAABDBkhBSCy0AIAEoAhwgAiADIAEoAiAoAgwRAgAhAiAAQQA6AAUgACACOgAEIAAgATYCAAsyAQF/IAEoAhxBvMHCAEEBIAEoAiAoAgwRAgAhAiAAQQA6AAUgACACOgAEIAAgATYCAAshAAJAIAEgAxCsAwRAIAAgASADIAIQ3wMiAA0BCwALIAALIgEBfyAAKAIAIgAgAEEfdSICcyACayAAQX9zQR92IAEQbAslACAARQRAQfiPwgBBMhDIBAALIAAgAiADIAQgBSABKAIQEQsACygAIAEgACgCAC0AAEECdCIAQeC8wgBqKAIAIABBzLzCAGooAgAQ5QMLGQEBf0GAgICAeCABayAATyACIAFpQQFGGwslACABIAAtAABBAnQiAEH8tcAAaigCACAAQey1wABqKAIAEOUDCyUAIABBnJvAADYCBCAAIAFBBGpBACABKAIAQYKAgIB4Rhs2AgALIQAgAEHwosAANgIEIAAgAUEBakEAIAEtAABBAkYbNgIACyUAIAEgAC0AAEECdCIAQZDZwABqKAIAIABBgNnAAGooAgAQ5QMLJQAgAEGwvsAANgIEIAAgAUEEakEAIAEoAgBBgoCAgHhGGzYCAAshACAAQYTGwAA2AgQgACABQQFqQQAgAS0AAEECRhs2AgALJQAgASAALQAAQQJ0IgBB+PvAAGooAgAgAEHo+8AAaigCABDlAwslACAAQYDhwAA2AgQgACABQQRqQQAgASgCAEGCgICAeEYbNgIACyEAIABBsOjAADYCBCAAIAFBAWpBACABLQAAQQJGGzYCAAshACAAQbSOwQA2AgQgACABQQFqQQAgAS0AAEECRhs2AgALJQAgAEHEicEANgIEIAAgAUEEakEAIAEoAgBBgoCAgHhGGzYCAAslACABIAAtAABBAnQiAEGMosEAaigCACAAQfyhwQBqKAIAEOUDCyMAIABFBEBB+I/CAEEyEMgEAAsgACACIAMgBCABKAIQEQcACyMAIABFBEBB+I/CAEEyEMgEAAsgACACIAMgBCABKAIQESUACyMAIABFBEBB+I/CAEEyEMgEAAsgACACIAMgBCABKAIQERMACyMAIABFBEBB+I/CAEEyEMgEAAsgACACIAMgBCABKAIQEScACyMAIABFBEBB+I/CAEEyEMgEAAsgACACIAMgBCABKAIQESkACygBAX8gACgCACIBQYCAgIB4ckGAgICAeEcEQCAAKAIEIAFBARCnBAsLJQAgASAALQAAQQJ0IgBBxKzCAGooAgAgAEGcq8IAaigCABDlAwsnACAAQRxqQQAgAkLj4Nah9qKXnVZRG0EAIAFC0Jamw5Le7cA3URsLKQAgAEEgakEAIAJC3f7B4L2j6uiCf1EbQQAgAUKX2/aYrfP7zY5/URsLKQAgAEEcakEAIAJC7bqtts2F1PXjAFEbQQAgAUL4gpm9le7Gxbl/URsLKQAgAEEcakEAIAJCy4fr+uCou7bQAFEbQQAgAULEr9zF2tKv9bh/URsLIQAgAEUEQEH4j8IAQTIQyAQACyAAIAIgAyABKAIQEQUAC5sRAQ5/An8QaSIEIAImARBpIgUgAyYBIwBBMGsiByQAIAcgBTYCBCAHIAQ2AgAgByAANgIIIAcgATYCDCAHIAcoAgAlARADNgIQIAcgB0EAEMcEIgA2AhggB0EYaiIBEKgEBEAgByAANgIYIAcgASgCABDaBEECdjYCFCAAQYQBTwRAIAAQxgELIAcgB0EEajYCLCAHIAc2AiggByAHQQxqNgIkIAcgB0EUajYCICAHIAdBEGo2AhwgByAHQQhqNgIYAn8gB0EYaiEAIwBBQGoiBSQAAkACQAJAAkACQEEAQfCGwAAoAgARBAAiDwRAIA8oAgBFBEAgACgCFCERIAAoAhAhECAAKAIMIQwgACgCCCELIA9BfzYCACAAKAIEIQ0gACgCACgCACIEIA9BBGoiBigCCCIBSwRAIAQgASIAayIIIAYoAgAgAGtLBEAgBiAAIAhBBEEEEI8BIAYoAgghAAsgBigCBCIOIABBAnRqIQkgCEECTwRAIAlBACABQX9zIARqQQJ0EFoaIAAgBGpBAnQgAUECdGsgDmpBBGshCSAAIAhqQQFrIQALIAlBADYCACAGIABBAWo2AggLIAYoAhQiASAESQRAIAQgASIAayIIIAYoAgwgAGtLBEAgBkEMaiAAIAhBBEEEEI8BIAYoAhQhAAsgBigCECIOIABBAnRqIQkgCEECTwRAIAlBACABQX9zIARqQQJ0EFoaIAAgBGpBAnQgAUECdGsgDmpBBGshCSAAIAhqQQFrIQALIAlBADYCACAGIABBAWo2AhQLIAYoAiAiAEGA+AFNBEBBgfgBIAAiAWsiBCAGKAIYIABrSwRAIAZBGGogACAEQQRBBBCPASAGKAIgIQELIAYoAhwiCSABQQJ0IghqIQQgAEGA+AFHBH8gBEEAQYDgByAAQQJ0IgRrEFoaIAEgAGtBgPgBaiEBIAggBGsgCWpBgOAHagUgBAtBADYCACAGIAFBAWo2AiALAkAgDSgCACIJBEBBACEAA0AgDCgCACAAayIBIAsoAgAiBCABIARJGyIEBEAgBSAQIAoQxwQiATYCICAFQSBqIggQqARFDQMgBSABNgIgIAgoAgAlARAUIQIQaSIBIAImASAFIAE2AhQgBSgCICIBQYQBTwRAIAEQxgELIAUgBUEUaigCAEEAIAQQ1gM2AiAgACAEaiIBIARJDQYgASAPKAIMIghLDQcgBUEgaiAPKAIIIABBAnRqIAQQzAIgBSgCICIAQYQBTwRAIAAQxgELIAUoAhQiAEGEAU8EQCAAEMYBCyABIQALIAkgCkEBaiIKRw0ACwsgBUEIaiEQIAwoAgAhDCMAQUBqIgkkAAJAIAwgBigCCCIATQRAIAYoAgQhASAGQQA2AiBBACEAIAYoAhhBgPgBTQRAIAZBGGpBAEGB+AFBBEEEEI8BIAYoAiAhAAsgBigCHCIEIABBAnRqQQBBgOAHEFogBiAAQYH4AWoiCjYCIEGA4AdqQQA2AgACQCAMRQ0AIAxBAWtB/////wNxIAEhAAJAIAxBAXFFDQAgAEEEaiEAIAEoAgBB//8BcSILQf/3AUsNACAEIAtBAnRqIgsgCygCAEEBajYCAAtFDQAgASAMQQJ0aiEIA0AgACgCAEH//wFxIgtBgPgBSQRAIAQgC0ECdGoiCyALKAIAQQFqNgIACyAAQQRqKAIAQf//AXEiC0H/9wFNBEAgBCALQQJ0aiILIAsoAgBBAWo2AgALIABBCGoiACAIRw0ACwsgCkH8////A3EhCCAKQQNxIQtBACEKIAQhAANAIAAoAgAhDSAAIAo2AgAgCSAKIA1qIgo2AgggAEEEaiINKAIAIQ4gDSAKNgIAIAkgCiAOaiIKNgIIIABBCGoiDSgCACEOIA0gCjYCACAJIAogDmoiCjYCCCAAQQxqIg0oAgAhDiANIAo2AgAgCSAKIA5qIgo2AgggAEEQaiEAIAhBBGsiCA0ACyALBEAgC0ECdCELQQAhCANAIAAgCGoiDSgCACEOIA0gCjYCACAJIAogDmoiCjYCCCALIAhBBGoiCEcNAAsLIAwEQCAMQQJ0IQggBigCECENIAYoAhQhBkEAIQADQAJAIAEoAgBB//8BcSIMQYD4AU8NACAGIAQgDEECdGoiDCgCACILSwRAIA0gC0ECdGogADYCACAMIAwoAgBBAWo2AgAMAQsgCyAGQeiEwAAQrQIACyABQQRqIQEgAEEBaiEAIAhBBGsiCA0ACwsgCiAEKAKA4AdGBEBBACEADAILIAlBAjYCHCAJQdiEwAA2AhggCUICNwIkIAkgBEGA4AdqrUKAgICAEIQ3AzggCSAJQQhqrUKAgICAEIQ3AzAgCSAJQTBqNgIgIAlBDGoiACAJQRhqENABIAAQoQMhCkEBIQAMAQsgDCAAQaiEwAAQqwQACyAQIAo2AgQgECAANgIAIAlBQGskACAFKAIMIQAgBSgCCARAIAUgADYCECAFQQE2AiQgBUHEisAANgIgIAVCATcCLCAFIAVBEGqtQoCAgIAghDcDOCAFIAVBOGo2AiggBUEUaiAFQSBqENEBIAUoAhggBSgCHBDIBAALIAANBQwGCyAFIAE2AiBB7IrAAEErIAVBIGpB3IrAAEGYi8AAEKACAAsQ0wIACxDSAgALIAAgAUHMisAAEKwEAAsgASAIQcyKwAAQqwQACyAPKAIYIgEgAEkNASAPKAIUIQQgBSARQQAgABCpBCIBNgIgIAVBIGogBCAAEOkBIAFBhAFJDQAgARDGAQsgDyAPKAIAQQFqNgIAIAVBQGskACAADAELIAAgAUG0isAAEKsEAAsgBygCBCIBQYQBTwRAIAEQxgELIAcoAgAiAUGEAU8EQCABEMYBCyAHQTBqJAAMAQsgByAANgIYQZyGwABBKyAHQRhqQYyGwABB9IbAABCgAgALCx4AIABBnJvAADYCBCAAIAFBACABLQAAQQJHGzYCAAseACAAQZS0wAA2AgQgACABQQAgASgCAEECSRs2AgALHgAgAEGwvsAANgIEIAAgAUEAIAEtAABBAkcbNgIACx4AIABBqNfAADYCBCAAIAFBACABKAIAQQJJGzYCAAseACAAQYDhwAA2AgQgACABQQAgAS0AAEECRxs2AgALHgAgAEGQ+sAANgIEIAAgAUEAIAEoAgBBAkkbNgIACxsAIAAoAgAiAEEEaigCACAAQQhqKAIAIAEQMAseACAAQcSJwQA2AgQgACABQQAgAS0AAEECRxs2AgALHgAgAEGkoMEANgIEIAAgAUEAIAEoAgBBAkkbNgIACx8AIABFBEBB+I/CAEEyEMgEAAsgACACIAEoAhARAAALno4BAx1/Bn4IfRBpIgMgACYBAn8jAEHwAGsiDyQAIA8gAzYCCCAPIA9BCGooAgAQ3QMiCDYCGCAPQQxqIQUCQAJAIA9BGGooAgAiBxDaBCIDQQBIDQACQCADRQRAQQEhBgwBC0GF5cIALQAAGkEBIQsgA0EBEPUDIgZFDQELEO0DIgkQ3AMiBBDdAyELIARBhAFPBEAgBBDGAQsgCyUBIAclASAGEAcgC0GEAU8EQCALEMYBCyAJQYQBTwRAIAkQxgELIAUgBxDaBDYCCCAFIAY2AgQgBSADNgIADAELIAsgA0HsjsIAENcDAAsgCEGEAU8EQCAIEMYBCyAPQRhqIRogDygCECEcIA8oAhQhCCMAQeAAayIRJAAgEUIANwNQAkACQAJAAkACQAJAIAhBCE8EQCARIBwpAAA3A1AMAQtB4NnAACkCACIgQv8Bg0IEUg0BCyARQQg2AlwgESARQdAAajYCWCMAQRBrIgMkACARQQhqIgYCfwJAIBFB2ABqIgUoAgQiB0UEQCADQoHKADcDCCAGIANBCGoQ+wI2AgQMAQsgBSAHQQFrIgk2AgQgBSAFKAIAIgtBAWo2AgAgCUUEQCADQoHKADcDCCAGIANBCGoQ+wI2AgQMAQsgCy0AACEJIAUgB0ECayIENgIEIAUgC0ECajYCACAERQRAIANCgcoANwMIIAYgA0EIahD7AjYCBAwBCyALLQABIQQgBSAHQQNrIg02AgQgBSALQQNqNgIAIAYCfyANRQRAIANCgcoANwMIIANBCGoQ+wIMAQsgBiALLQACOgADIAYgBDoAAiAGIAk6AAEgBSAHQQRrNgIEIAUgC0EEajYCACAGIAstAAM6AARBAAwCCzYCBAtBAQs6AAAgA0EQaiQAIBECfyARLQAIQQFGBEAgESgCDAwBCyARKAJcQQNLDQIgEUKBygA3AwggEUEIahD7Ags2AghBzI/AAEErIBFBCGpBvI/AAEGMkMAAEKACAAsgESAgNwMIIBFBCGoQogMhAyAaQYCAgIB4NgIQIBogAzYCAAwBCyARMwAJIBExAAtCEIaEIBExAAxCGIaEQteYnYIDUgRAIBFBADYCGCARQQE2AgwgEUGUkcAANgIIIBFCBDcCECARQQhqEKsCIQMgGkGAgICAeDYCECAaIAM2AgAMAQsgESgCWCgAACIDQQFrQQJPBEAgEUEANgIYIBFBATYCDCARQfSQwAA2AgggEUIENwIQIBFBCGoQqwIhAyAaQYCAgIB4NgIQIBogAzYCAAwBCyARQQE6AC4gEUGBAjsBLCARQYECOwEoIBFBADYCJCARIANBBHQiA0G7kMAAai0AADoALyARIANBtpDAAGovAQA7ASogESADQayQwABqKAIANgIgIBFBADYCECARQoCAgIDAADcCCCAIQQhJDQECfyAcQQhqIQYgCEEIayELIBFBCGohFkEAIQhCACEgIwBB8ABrIgokAAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQCAKAn8CQAJAAkAgEUEgaiIZLQANRQ0AAkACQCALBEAgC0EBcSEHIAtBAUcNAUG1tdTVASEEIAYhAwwCCyAZLQAIDQRBASEDDAMLIAtBfnEhBUG1tdTVASEEIAYhAwNAIAMgCCADLQAAIgkgBEGNzOUAbEHf5rvjA2pBCHZzIg1BBXQgDUH4AXFBA3ZyczoAACADQQFqIgggCSAILQAAIgggBEGpueG5AWxBstLAugRqIgRBCHZzIg1BBXQgDUH4AXFBA3ZyczoAACADQQJqIQMgBUECayIFDQALCyAHRQ0AIAMgAy0AACAEQY3MAWxB3+YDakEIdnMiA0EFdCADQfgBcUEDdnIgCHM6AAALIBktAAgNAUEAIQQgC0EASA0DIAtFBEBBASEDDAELQYXlwgAtAAAaQQEhBCALQQEQ9QMiA0UNAwsgAyAGIAsQOxogCwwBCyAKQShqIRgjAEGACGsiCSQAIAlBmARqIRRBACEFIwBBgAtrIgckACAHIAs2AgQgByAGNgIAIAdBADYC4AMgB0EANgLYAyAHQQI2AgggB0HgCmohBEEAIQZBACELIwBBEGsiDiQAIAcoAgAhAwJAAkACQAJAAkACQAJAAkACQAJAAkACQCAHKAIEIgxBA00EQCAHQQA2AgQgByADIAxqNgIAQfD/wAApAwAiIEL/AYNCBFENASAEICA3AwggBEEAOgAEIARBAjYCAAwMCyAHIAxBBGsiCDYCBCAHIANBBGoiDTYCACAOIAMoAAAiBjYCBCAGQXBxQdDUtMIBRg0BIAZBqOq+aUYNAgsgBCAGNgIIIARBAToABCAEQQI2AgAMCgsgCEEESQ0BIAcgDEEIazYCBCAHIANBCGo2AgAgAygABCELDAILAkAgCEUEQCAHQQA2AgRB8P/AACkDACIgQv8Bg0IEUg0BIA5CADcDCEEBIQxBKCEIQQUhFwwGCyAHIAxBBWsiBjYCBEEFIRcgByADQQVqIg02AgAgDiADLQAEIgg6AAQgCEEgcSITDQQgBgRAIAcgDEEGayIGNgIEQQYhFyAHIANBBmoiDTYCACAOIAMtAAUiCzoABAwFC0EAIQYgB0EANgIEQfD/wAApAwAiIkL/AYNCBFEEQEEGIRcgCCELDAULIAQgIjcDCCAEQQQ6AAQgBEECNgIADAkLIAQgIDcDCCAEQQI6AAQgBEECNgIADAgLIAdBADYCBCAHIAMgDGo2AgAgBiELQfD/wAApAwAiIEL/AYNCBFINAQsgBCALNgIMIAQgBjYCCCAEQQc6AAQgBEECNgIADAYLIAQgIDcDCCAEQQI6AAQgBEECNgIADAULAkACQAJ/AkACQAJ/AkACQAJAIAhBA3EiEkEBaw4DAgEACAtBBCESCyAGIBJPDQIgEgwBCyAGDQJBAQshDCAHQQA2AgQgByAGIA1qIg02AgBB8P/AACkDACIiQv8Bg0IEUQ0DIAQgIjcDCCAEQQU6AAQgBEECNgIADAkLIA5BBGogDSASEDsaIAYgEmshBSANIBJqIQ0gEgwBCyAOIA0tAAA6AAQgBkEBayEFIA1BAWohDUEBCyEMIAcgBTYCBCAHIA02AgALIAUhBgJ/IA4tAAQiAyAMQQFGDQAaIA4tAAVBCHQgA3IiAyAMQQJGDQAaIA4tAAZBEHQgDi0AB0EYdHIgA3ILIgVBAEchEiAMIBdqIRcLQQEhA0ECIQwgBwJ/AkACQAJAAkACQCAIQQZ2QQFrDgMDAgABC0EAIQNBCCEMDAILIBMNAgwHC0EAIQNBBCEMCyAOQgA3AwggBiAMSQ0DIA5BCGogDSAMEDsaIAwgDWohDSAGIAxrDAELIA5CADcDCCAGRQRAQQEhDAwCCyAOIA0tAAA6AAhBASEMIA1BAWohDUEAIQMgBkEBaws2AgQgByANNgIADAILQQAhBkEAIQMLIAdBADYCBCAHIAYgDWo2AgBB8P/AACkDACIgQv8Bg0IEUQ0AIAQgIDcDCCAEQQY6AAQgBEECNgIADAILAn4gDjEACCIgIAxBAUYNABogDjEACUIIhiAghCIgIAxBAkYNABogDjEACkIQhiAOMQALQhiGhCAghCIgIAxBBEYNABogDjEADEIghiAOMQANQiiGhCAOMQAOQjCGhCAOMQAPQjiGhCAghAsiIEKAAnwgICADGyEgIAwgF2ohFwsgBCAXOgAYIAQgCzoAESAEIAg6ABAgBCAgNwMIIAQgBTYCBCAEIBI2AgALIA5BEGokACAHKQPoCiEiIAcoAuQKIQ0CQAJAIAcoAuAKIgVBAkYNACAHMQD4CiEjICIhIAJAIAcpA/AKIiFCIINCAFINAEIBICFCCIgiIKdB+AFxQQN2QQpqrYYiJEIDiCAgQgeDfiAkfCIgQoCAgICA+ABUDQAgB0EAOgCgB0EBIRAgBykDoAchIgwBCyAgpyEGIAdBuAdqIQNBheXCAC0AABoCQAJAAkACQAJAAkBBgAJBARD1AyILBEBBheXCAC0AABpBgAJBARD1AyIIRQ0BQYXlwgAtAAAaQSxBBBD1AyIERQ0CQYXlwgAtAAAaQSxBBBD1AyIORQ0DQYXlwgAtAAAaQYAIQQQQ9QMiDEUNBEGF5cIALQAAGkGACEEEEPUDIhJFDQUgA0IENwJAIANB/wE7AWAgA0EANgJcIAMgEjYCWCADQoCAgICAIDcCUCADIAw2AkwgA0GAAjYCSCADQQA6AGQgAyALNgIQIANCgICAgIAgNwIIIANCgICAgBA3AgAgA0IANwI4IAMgDjYCNCADQoCAgICwATcCLCADIAQ2AiggA0KAgICAsAE3AiAgAyAINgIcIANCgICAgIAgNwIUDAYLQQFBgAJBrPnBABDXAwALQQFBgAJBvPnBABDXAwALQQRBLEHM+cEAENcDAAtBBEEsQdz5wQAQ1wMAC0EEQYAIQcyAwgAQ1wMAC0EEQYAIQdyAwgAQ1wMAC0GF5cIALQAAGgJAAkBBgAhBBBD1AyILBEACQEGF5cIALQAAGkGACEEEEPUDIghFDQJBheXCAC0AABpBgAhBBBD1AyIERQ0AQYXlwgAtAAAaQYAIQQQQ9QMiDkUNAkGF5cIALQAAGkGACEEEEPUDIgxFDQBBheXCAC0AABpBgAhBBBD1AyISRQ0CIANCADcDqAIgA0EBNgLoASADQQA6AOQBIANBADoA4gEgA0EAOgDgASADQTQ7AdwBIANBADYC2AEgAyASNgLUASADQoCAgICAIDcCzAEgAyAMNgLIASADQoCAgICAIDcDwAEgA0KAgICAwAA3A7gBIANBIzsBtAEgA0EANgKwASADIA42AqwBIANCgICAgIAgNwKkASADIAQ2AqABIANCgICAgIAgNwOYASADQoCAgIDAADcDkAEgA0EfOwGMASADQQA2AogBIAMgCDYChAEgA0KAgICAgCA3AnwgAyALNgJ4IANCgICAgIAgNwNwIANCgICAgMAANwNoIANBwAJqQgA3AwAgA0G4AmpCADcDACADQbACakIANwMAIANB/AFqQQA2AgAgA0H0AWpCADcCACADQgA3AuwBIANC1uuC7ur9ifXgADcDgAIgA0LP1tO+0ser2UI3A4gCIANCADcDkAIgA0L56tDQ58mh5OEANwOYAiADQgA3A6ACIANBADYCyAIgA0IANwPQAiADIAY2AtgCIANBADYC5AIgA0EINgKUAyADQoCAgIAQNwLcAiADQoGAgIDAADcCjAMgA0EANgKIAyADQoCAgIAQNwPoAiADQgA3A/ACIANCBDcD+AIgA0KAgICAEDcDgAMMAwsLQQRBgAhBzIDCABDXAwALQQRBgAhB3IDCABDXAwALIAdBADYCqAcgB0EANgKwByAHQQA6ANwKIAdBADYC2AogByAjNwPQCiAHKQOoByEgIAcpA7AHISMgB0HoA2oiBiADQagDEDsaIAdBCGoQSSAHICM3AyggByAgNwMgIAcgITcDGCAHIA02AgwgByAiPgIQIAcgIkIgiD4CFCAHIAU2AgggB0EwaiAGQagDEDshCCAFQQFxBEBBDCEQIAcoAtgDIhJFDQEgBygC3AMhFwNAIBJB1AFrIQQgEkEEaiEGIBIvAd4WIgNBAnQhC0F/IQUCQAJAA0AgC0UEQCADIQUMAgsgBigCACEOIAVBAWohBSAEQYQCaiEEIAtBBGshCyAGQQRqIQZBfyANIA5HIA0gDkkbIg5BAUYNAAsgDkH/AXFFDQELIBdFDQMgF0EBayEXIBIgBUECdGpB4BZqKAIAIRIMAQsLIAdBDDYCkAcgByANNgKUByAHQZAHahAqQQAhBSAIQegAaiAEEIcBIAhBkAFqIARBKGoQhwEgCEG4AWogBEHQAGoQhwEgCEEAOgBkIAhBADYCFCAIQQA2AgggCEEANgJcIAhBADYCOCAIQQA2AiwgCEEANgIgIAhBADYCUCAIQQA6AGEgCEEANgJEIAggBC8BeDsB4AEgCCAEKAF6NgHiASAEKAKIASIDQQF0IQYgBCgChAEhCyADIAgoAgBLBEAgCEEAIANBAUECEJIBIAgoAgghBQsgCCgCBCAFQQF0aiALIAYQOxogCCADIAVqNgIIIAQoApABIQYgBCgClAEiAyAIKAIMIAgoAhQiBWtLBEAgCEEMaiAFIANBAUEBEJIBIAgoAhQhBQsgCCgCECAFaiAGIAMQOxogCCADIAVqNgIUIAggBC0A5AE6AGQgBCgCnAEhBiAEKAKgASIDIAgoAhggCCgCICIFa0sEQCAIQRhqIAUgA0EBQQEQkgEgCCgCICEFCyAIKAIcIAVqIAYgAxA7GiAIIAMgBWo2AiAgBCgCuAEiA0ECdCEGIAQoArQBIQsgAyAIKAIwIAgoAjgiBWtLBEAgCEEwaiAFIANBBEEEEJIBIAgoAjghBQsgCCgCNCAFQQJ0aiALIAYQOxogCCADIAVqNgI4IAhBPGogBEG8AWoQhwFBACEFIAhBADYC5AIgCEGUA2ogBEGAAmooAgA2AgAgCCAEKQL4ATcCjAMgBCgC7AEhBiAEKALwASIDIAgoAtwCSwRAIAhB3AJqQQAgA0EBQQEQkgEgCCgC5AIhBQsgCCgC4AIgBWogBiADEDsaIAggAyAFajYC5AIgByANNgIsIAdBATYCKAsgFCAHQQhqQeADEDsgBykCADcD4AMMAQsgFEKAgICAgPgANwMYIBQgIjcDECAUIA02AgwgFCAQNgIIIBRBAzYCACAHQQhqEEkgB0HYA2oQKwsgB0GAC2okAAJAIAkoApgEIgNBA0cEQCAJQZAEaiIFIAlBvARqKAIANgIAIAlBiARqIgYgCUG0BGopAgA3AwAgCUGABGoiCyAJQawEaikCADcDACAJQfgDaiIIIAlBpARqKQIANwMAIAkgCSkCnAQ3A/ADIAlBMGogCUHABGpBwAMQOxogCUEUaiAIKQMANwIAIAlBHGogCykDADcCACAJQSRqIAYpAwA3AgAgCUEsaiAFKAIANgIAIAkgAzYCCCAJIAkpA/ADNwIMIAlBADYCoAQgCUKAgICAEDcCmAQgCUHwA2ohBCAJQQhqIQ4jAEEgayIHJABBgMAAIQwCQAJAIBQoAgAiCCAUKAIIIgVrQSBPBEAgCCEGIAUhAwwBCyAHQRBqIA4gFBByAkACQCAHLQAQQQRGBEAgBygCFCENDAELIAcpAxAiIEIgiKchDSAgpyIDQf8BcUEERw0BCyANBEAgFCgCACEGIBQoAgghAwwCCyAEQQQ6AAAgBEEANgIEDAILIAQgDTYCBCAEIAM6AAAgBEEDaiADQRh2OgAAIAQgA0EIdjsAAQwBC0EAIQ0DQAJAIAMgBkcgBiAIR3INACAHQRBqIA4gFBByAkACQAJAIActABBBBEYEQCAHKAIUIQYMAQsgBykDECIgQiCIpyEGICCnIgNB/wFxQQRHDQELIBQoAgghAyAGRQ0BIBQoAgAhBgwCCyAEIAY2AgQgBCADOgAAIARBA2ogA0EYdjoAACAEIANBCHY7AAEMAwsgBEEEOgAAIAQgAyAFazYCBAwCCwJAAkACQCADIAZGBEAgBkEgaiILIAZBAXQiEiALIBJLGyILQQBIDQEgByAGBH8gByAGNgIYIAcgFCgCBDYCEEEBBUEACzYCFCAHQQRqQQEgCyAHQRBqENsBIAcoAgRBAUYNASAHKAIIIQYgFCALNgIAIBQgBjYCBCALIQYLIBQoAgQgA2oiEiANakEAIAwgBiADayIXIAwgF0kbIgsgDWsQWhogB0EQaiAOIBIgCxAoIActABBBBEYNAQJAA0ACQCAHKQMQIiBCIIgiIqchDQJAAkACQAJAICCnIhBB/wFxQQFrDgQAAgEGBAsgIEKA/gODQoDGAFENAgwDCyANLQAIQSNHDQIgDSgCACEQIA1BBGooAgAiEygCACIVBEAgECAVEQMACyATKAIEIhUEQCAQIBUgEygCCBCnBAsgDUEMQQQQpwQMAQsgDS0ACEEjRw0BCyAHQRBqIA4gEiALECggBy0AEEEERw0BDAQLCyAEIBA6AAAgFCADNgIIIARBB2ogIkIYiDwAACAEQQVqICJCCIg9AAAgBCAgQgiIQv///weDICJCGIaEPgABDAULIBQgAzYCCAwCCyAEQoHMADcCAAwDCyAHKAIUIhIgC0sEQEGYo8EAQSlBuKTBABDtAgALIBQgAyASaiIDNgIIIBJFDQAgCyASayENIAsgEkcgDCAXS3INAUF/IAxBAXQgDEEASBshDAwBCwsgBEEEOgAAIAQgAyAFazYCBAsgB0EgaiQAIAktAPADQQRGBEAgGCAJKQKYBDcCACAYQQhqIAlBoARqKAIANgIAIA4QRwwCCyAJIAkpA/ADIiCnIgNBGHY6APMDIAkgA0EIdjsA8QMgCSAgQiCIPgL0AyAJICA8APADIAlB8ANqEKIDIQMgGEGAgICAeDYCACAYIAM2AgQgCSgCmAQiAwRAIAkoApwEIANBARCnBAsgCUEIahBHDAELIAlBjARqIAlBuARqKQMAIiA3AgAgCUGEBGogCUGwBGoiAykDACIiNwIAIAlB/ANqIAlBqARqIgUpAwAiITcCACAJIAkpA6AEIiM3AvQDIAMgIDcDACAFICI3AwAgCUGgBGogITcDACAJICM3A5gEIwBBIGsiCyQAIAtBCGoiBhDwAQJ/IwBBMGsiAyQAIANBKGogCUGYBGoiBUEYaikCADcCACADQSBqIAVBEGopAgA3AgAgA0EYaiAFQQhqKQIANwIAQYXlwgAtAAAaIAMgBSkCADcCEEHAAEEIEPUDIgUEQCAFQay6wAA2AgAgBSADKQIMNwIcIAUgBikCADcCBCAFQQxqIAZBCGopAgA3AgAgBUEUaiAGQRBqKQIANwIAIAVBJGogA0EUaikCADcCACAFQSxqIANBHGopAgA3AgAgBUE0aiADQSRqKQIANwIAIAVBPGogA0EsaigCADYCACADQTBqJAAgBQwBC0EIQcAAENMEAAshAyALQSBqJAAgGEGAgICAeDYCACAYIAM2AgQLIAlBgAhqJAAgCigCLCEDIAooAigiC0GAgICAeEYNESAKKAIwCzYCFCAKIAM2AhAgCiALNgIMIApCADcDGCAKIApBDGo2AiAgCkEoaiEHQgAhIiMAQfAAayIFJAAgBUEoaiIIQgA3AwAgBUEgaiIJQgA3AwAgBUEYaiIEQgA3AwAgBUEQaiINQgA3AwAgBUEIaiIOQgA3AwAgBUIANwMAAkAgCkEYaiIGKAIIIhQoAggiAyADIAYpAwAiIKcgICADrSIhVhsiC08EQAJAAkAgAyALa0EwTwRAIAggFCgCBCALaiIDQShqKQAANwMAIAkgA0EgaikAADcDACAEIANBGGopAAA3AwAgDSADQRBqKQAANwMAIA4gA0EIaikAADcDACAFIAMpAAA3AwBBBCEDDAELQeDZwAApAgAiI0IIiCEiICOnIQMgI0L/AYNCBFINAQsgIEIwfCEhCyAGICE3AwACQCADQf8BcUEERgRAIAVBMDYCOCAFIAU2AjQjAEEgayIDJAAgBUE8aiILAn8CQCALAn8gBUE0aiIGKAIEIglBA00EQCADQQA6AAsgA0ElOwAJIANBADYCDCADQQE6AAggCyADQQhqEPsCNgIEDAILIAYgCUEEayIENgIEIAYgBigCACIIQQRqNgIAIARBA00EQCADQQA6AAsgA0ElOwAJIANBADYCDCADQQE6AAggCyADQQhqEPsCNgIEDAILIAgqAAAhJyAGIAlBCGsiBDYCBCAGIAhBCGo2AgAgBEEDTQRAIANBADoACyADQSU7AAkgA0EANgIMIANBAToACCALIANBCGoQ+wI2AgQMAgsgCCgABCEOIAYgCUEMayIENgIEIAYgCEEMajYCACAEQQNNBEAgA0EAOgALIANBJTsACSADQQA2AgwgA0EBOgAIIAsgA0EIahD7AjYCBAwCCyAIKAAIIRQgBiAJQRBrIgQ2AgQgBiAIQRBqNgIAIARBBEkEQCADQQA6AAsgA0ElOwAJIANBADYCDCADQQE6AAggCyADQQhqEPsCNgIEDAILIAgoAAwhDCAGIAlBFGsiBDYCBCAGIAhBFGo2AgAgBEEESQRAIANBADoACyADQSU7AAkgA0EANgIMIANBAToACCALIANBCGoQ+wI2AgQMAgsgCCoAECEmIAYgCUEYayIENgIEIAYgCEEYajYCACAEQQNNBEAgA0KBygA3AwggCyADQQhqEPsCNgIEDAILIAgqABQhKCAGIAlBHGsiBDYCBCAGIAhBHGo2AgAgBEEDTQRAIANCgcoANwMIIAsgA0EIahD7AjYCBAwCCyAIKAAYIRIgBiAJQSBrNgIEIAYgCEEgajYCACAIKAAcIRcjAEEQayIIJAAgA0EIaiIJAn8CQCAGKAIEIg1BA00EQCAIQoHKADcDCCAJIAhBCGoQ+wI2AgQMAQsgBiANQQRrIhg2AgQgBiAGKAIAIgRBBGo2AgAgGEEDTQRAIAhCgcoANwMIIAkgCEEIahD7AjYCBAwBCyAEKAAAIRggBiANQQhrIhA2AgQgBiAEQQhqNgIAIBBBA00EQCAIQoHKADcDCCAJIAhBCGoQ+wI2AgQMAQsgBCgABCEQIAYgDUEMayITNgIEIAYgBEEMajYCACAJAn8gE0EDTQRAIAhCgcoANwMIIAhBCGoQ+wIMAQsgCSAEKAAINgIMIAkgEDYCCCAJIBg2AgQgBiANQRBrNgIEIAYgBEEQajYCACAJIAQoAAw2AhBBAAwCCzYCBAtBAQs2AgAgCEEQaiQAIAMoAgwiBiADKAIIDQAaIAsgAykCEDcCCCALQRBqIANBGGooAgA2AgAgCyAXNgIwIAsgEjYCLCALICg4AiggCyAmOAIkIAsgDDYCICALIBQ2AhwgCyAONgIYIAsgJzgCFCALIAY2AgRBAAwCCzYCBAtBAQs2AgAgA0EgaiQAIAUoAkAhAyAFKAI8RQRAIAcgBSkCRDcCCCAHQTBqIAVB7ABqKAIANgIAIAdBKGogBUHkAGopAgA3AgAgB0EgaiAFQdwAaikCADcCACAHQRhqIAVB1ABqKQIANwIAIAdBEGogBUHMAGopAgA3AgAgB0EANgIAIAcgAzYCBAwCCyAFIAM2AjxBzI/AAEErIAVBPGpBvI/AAEGckMAAEKACAAsgB0EBNgIAIAcgA61C/wGDICJCCIaENwIECyAFQfAAaiQADAELIAVBADYCTCAFQQE2AkAgBUGs2cAANgI8IAVCBDcCRCAFQTxqQdjawAAQpAMACwJAAkAgCigCKEUEQCAKQegAaiAKQcgAaigCADYCACAKIAopAkA3A2AgCioCPCEmIAoqAkwhJyAKKgJQISggCigCVCIHQQJ0IhchBSAWIBYoAggiAyAXSQR/IBcgAyIEayIFIBYoAgAgA2tLBEAgFiADIAVBBEEEEJABIBYoAgghBAsgFigCBCILIARBAnQiCGohBiAFQQJPBH8gBkEAIBcgA0F/c2pBAnQQWhogBCAFakEBayEEIAdBBHQgA0ECdGsgC2ogCGpBBGsFIAYLQQA2AgAgBEEBagUgBQs2AgggGS0ADkUEQCAKQQA2AjggCkEBNgIsIApB7JPAADYCKCAKQgQ3AjAgCkEoahCrAiEDDBMLQQAhAyAHQQBIDQICQCAHRQRAQQEhCAwBC0GF5cIALQAAGkEBIQMgB0EBEPYDIghFDQMLIBktAAwNASAKQQA2AjggCkEBNgIsIApB0JTAADYCKCAKQgQ3AjAgCkEoahCrAiEDDBELIAogCikCLDcDKCAKQShqEKIDIQMMEQtBACEDAkAgB0H/////A0sgF0H8////B0tyDQBBBCEGIBcEQEGF5cIALQAAGkEEIQMgF0EEEPYDIgZFDQEgByEbCyAmQ///f0tDAP9/RyAZLQAPIh8blSEqIAdBAnQhFCAHQQNxIQ0gB0H8////A3EhHSAHQQJrIRggB0EBayISQQNxIQ4gEkF8cSEeIBktAAkgB0EBS3EhGUHg2cAAKQIAIiBC/wGDISQgIEIIiCEiIAetISMgIKchC0EAIQkDQCAHBEAgBkEAIBcQWhoLAkACQAJAAn8CQCAfRQ0AAkACQCAKKAIgIgQoAggiAyADIAopAxgiIKcgICADrSIhVhsiBU8EQAJAAkAgByADIAVrTQRAIAQoAgQgBWohAyAHQQFHBEAgCCADIAcQOxpBBCEDDAILIAggAy0AADoAAEEEIQMMAQsgCyEDICRCBFINAQsgICAjfCEhCyAKICE3AxggA0H/AXFBBEYEQCAZRQ0CIAgtAAAhBEEBIQMgGEEDTwRAQQAhBQNAIAUgCGoiA0EBaiIMIAQgDC0AAGoiBDoAACADQQJqIgwgBCAMLQAAaiIEOgAAIANBA2oiDCAEIAwtAABqIgQ6AAAgA0EEaiIDIAQgAy0AAGoiBDoAACAeIAVBBGoiBUcNAAsgBUEBaiEDCyAORQ0DIAMgCGohAyAOIQUDQCADIAQgAy0AAGoiBDoAACADQQFqIQMgBUEBayIFDQALDAMLIAogIj4AKSAKQS9qICJCMIg8AAAgCkEtaiAiQiCIPQAAIAogAzoAKCAKQShqEKIDDAQLDBsLIAdFDQELQQAhBSASQQNJBH8gCAUgBiEDA0AgAyAFIAhqIgQtAABBEHQ2AgAgA0EEaiAEQQFqLQAAQRB0NgIAIANBCGogBEECai0AAEEQdDYCACADQQxqIARBA2otAABBEHQ2AgAgA0EQaiEDIB0gBUEEaiIFRw0ACyAFIAhqCyEDIA1FDQAgBiAFQQJ0aiEEIA0hBQNAIAQgAy0AAEEQdDYCACAEQQRqIQQgA0EBaiEDIAVBAWsiBQ0ACwsCQAJAAkAgCigCICIEKAIIIgMgAyAKKQMYIiCnICAgA60iIVYbIgVPBEACQAJAIAcgAyAFa00EQCAEKAIEIAVqIQMgB0EBRwRAIAggAyAHEDsaQQQhAwwCCyAIIAMtAAA6AABBBCEDDAELIAshAyAkQgRSDQELICAgI3whIQsgCiAhNwMYIANB/wFxQQRHBEAgCiAiPgApIApBL2ogIkIwiDwAACAKQS1qICJCIIg9AAAgCiADOgAoIApBKGoQogMMBQsgGUUNASAILQAAIQRBASEDIBhBA08EQEEAIQUDQCAFIAhqIgNBAWoiDCAEIAwtAABqIgQ6AAAgA0ECaiIMIAQgDC0AAGoiBDoAACADQQNqIgwgBCAMLQAAaiIEOgAAIANBBGoiAyAEIAMtAABqIgQ6AAAgHiAFQQRqIgVHDQALIAVBAWohAwsgDkUNAiADIAhqIQMgDiEFA0AgAyAEIAMtAABqIgQ6AAAgA0EBaiEDIAVBAWsiBQ0ACwwCCwwbCyAHRQ0BC0EAIQUgEkEDSQR/IAgFIAYhAwNAIAMgAygCACAFIAhqIgQtAABBCHRyNgIAIANBBGoiDCAMKAIAIARBAWotAABBCHRyNgIAIANBCGoiDCAMKAIAIARBAmotAABBCHRyNgIAIANBDGoiDCAMKAIAIARBA2otAABBCHRyNgIAIANBEGohAyAdIAVBBGoiBUcNAAsgBSAIagshBCANRQ0AIAYgBUECdGohAyANIQUDQCADIAMoAgAgBC0AAEEIdHI2AgAgA0EEaiEDIARBAWohBCAFQQFrIgUNAAsLAkAgCigCICIEKAIIIgMgAyAKKQMYIiCnICAgA60iIVYbIgVPBEACQAJAIAcgAyAFa00EQCAEKAIEIAVqIQMgB0EBRwRAIAggAyAHEDsaQQQhAwwCCyAIIAMtAAA6AABBBCEDDAELIAshAyAkQgRSDQELICAgI3whIQsgCiAhNwMYIANB/wFxQQRHDQEgGUUNAyAILQAAIQRBASEDIBhBA08EQEEAIQUDQCAFIAhqIgNBAWoiDCAEIAwtAABqIgQ6AAAgA0ECaiIMIAQgDC0AAGoiBDoAACADQQNqIgwgBCAMLQAAaiIEOgAAIANBBGoiAyAEIAMtAABqIgQ6AAAgHiAFQQRqIgVHDQALIAVBAWohAwsgDkUNBCADIAhqIQMgDiEFA0AgAyAEIAMtAABqIgQ6AAAgA0EBaiEDIAVBAWsiBQ0ACwwECwwZCyAKICI+ACkgCkEvaiAiQjCIPAAAIApBLWogIkIgiD0AACAKIAM6ACggCkEoahCiAwshAyAbRQ0UIAYgG0ECdEEEEKcEDBQLIAdFDQELQQAhBSASQQNJBH8gCAUgBiEDA0AgAyADKAIAIAUgCGoiBC0AAHI2AgAgA0EEaiIMIAwoAgAgBEEBai0AAHI2AgAgA0EIaiIMIAwoAgAgBEECai0AAHI2AgAgA0EMaiIMIAwoAgAgBEEDai0AAHI2AgAgA0EQaiEDIB0gBUEEaiIFRw0ACyAFIAhqCyEEIA0EQCAGIAVBAnRqIQMgDSEFA0AgAyADKAIAIAQtAAByNgIAIANBBGohAyAEQQFqIQQgBUEBayIFDQALCyAKQeAAaiAJQQJ0aioCACErQQAhAyAUIQUgBiEEA0AgKyAqIAQoAgCzlJIhJgJAAkACfwJAAkACQAJAAkACQAJAAkACQAJAIAkOAwECAwALQfSNwABBKEGcjsAAEO0CAAsgJrwiE0H///8DcSEVIBNBgICAgHhxIQwgE0GAgID8B3EiEEGAgID8B0YEQCAVQQ12IAxBEHZyIBVBAEdBCXRyQYD4AXIhDAwICyAMQRB2IQwgEEGAgIC4BEsNAiAQQYCAgMQDTwRAIBNBDHYgE0H/3wBxQQBHcSAQQQ12IBVBDXZqQYCAAWogDHJqIQwMCAsgEEGAgICYA0kNByAVQYCAgARyIhNBHiAQQRd2IhVrdiEQIBNBHSAVayIVdkEBcQR/IBBBAyAVdEEBayATcUEAR2oFIBALIAxyIQwMBwsgJrwiE0H///8DcSEVIBNBgICAgHhxIQwgE0GAgID8B3EiEEGAgID8B0YEQCAVQQ12IAxBEHZyIBVBAEdBCXRyQYD4AXIhDAwGCyAMQRB2IQwgEEGAgIC4BEsNAiAQQYCAgMQDTwRAIBNBDHYgE0H/3wBxQQBHcSAQQQ12IBVBDXZqQYCAAWogDHJqIQwMBgsgEEGAgICYA0kNBSAVQYCAgARyIhNBHiAQQRd2IhVrdiEQIBNBHSAVayIVdkEBcQR/IBBBAyAVdEEBayATcUEAR2oFIBALIAxyIQwMBQsgJrwiE0H///8DcSEVIBNBgICAgHhxIQwgE0GAgID8B3EiEEGAgID8B0YEQCAVQQ12IAxBEHZyIBVBAEdBCXRyQYD4AXIhDAwECyAMQRB2IQwgEEGAgIC4BEsNAiAQQYCAgMQDTwRAIBNBDHYgE0H/3wBxQQBHcSAQQQ12IBVBDXZqQYCAAWogDHJqIQwMBAsgEEGAgICYA0kNAyAVQYCAgARyIhNBHiAQQRd2IhVrdiEQIBNBHSAVayIVdkEBcQR/IBBBAyAVdEEBayATcUEAR2oFIBALIAxyIQwMAwsgDEGA+AFyIQwMBAsgDEGA+AFyIQwMAgsgDEGA+AFyIQwLIANBAnRBAnIiECAWKAIIIhNJBEAgDEH//wNxIQwgFigCBCAQQQJ0agwDCyAQIBNB5I3AABCtAgALIANBAnRBAXIiECAWKAIIIhNJBEAgDEEQdCEMIBYoAgQgEEECdGoMAgsgECATQdSNwAAQrQIACyADQQJ0QQFyIhAgFigCCCITTw0BIAxB//8DcSEMIBYoAgQgEEECdGoLIhAgECgCACAMcjYCAAwBCyAQIBNBxI3AABCtAgALIANBAWohAyAEQQRqIQQgBUEEayIFDQALCyAJQQFqIglBA0cNAAsgGwRAIAYgG0ECdEEEEKcECwJAIAooAiAiBigCCCIDIAMgCikDGCIhpyAhIAOtIiBWGyIFTwRAAkACQCAHIAMgBWtNBEAgBigCBCAFaiEDIAdBAUcEQCAIIAMgBxA7GkEEIQMMAgsgCCADLQAAOgAAQQQhAwwBCyALIQMgJEIEUg0BCyAhICN8ISALIAogIDcDGCADQf8BcUEERw0HICggJ5MhKCAHRQ0GIBYoAgRBDGohAyAWKAIIIQ1BAyEEIAchCSAIIQUDQEEAIQYgJyAoIAUtAACzQwAAf0OVlJIQUiImQwAAAABcBEBDAAB/Q0MAAAAAICYQqgFDAAAQQZJDRSKRPZVDAACAP5IiJiAmQwAAAABdGyImICZDAAB/Q14bENgDIiZDAAAAAGAhBkH/AQJ/ICZDAACAT10gJkMAAAAAYHEEQCAmqQwBC0EAC0EAIAYbICZDAAB/Q14bIQYLIAQgDU8NAiAFQQFqIQUgAyADKAIAIAZyNgIAIANBEGohAyAEQQRqIQQgCUEBayIJDQALDAULDBQLIAQgDUGsjsAAEK0CAAsgAyAXQdiUwAAQ1wMACyADIAdBjJTAABDXAwALIAQgC0Gwk8AAENcDAAsgCikDGCEgCyAKKAIgIgYoAggiAyADICCnICAgA60iIVYbIgVJDQ4CQAJAIAcgAyAFa00EQCAGKAIEIAVqIQMgB0EBRwRAIAggAyAHEDsaQQQhAwwCCyAIIAMtAAA6AABBBCEDDAELIAshAyAkQgRSDQELICAgI3whIQsgCiAhNwMYIANB/wFxQQRHDQAgBwRAIBYoAgRBDGohAyAWKAIIIQ1BAyEEIAchCSAIIQUDQEEAIQYgJyAoIAUtAACzQwAAf0OVlJIQUiImQwAAAABcBEBDAAB/Q0MAAAAAICYQqgFDAAAQQZJDRSKRPZVDAACAP5IiJiAmQwAAAABdGyImICZDAAB/Q14bENgDIiZDAAAAAGAhBkH/AQJ/ICZDAACAT10gJkMAAAAAYHEEQCAmqQwBC0EAC0EAIAYbICZDAAB/Q14bIQYLIAQgDU8NAyAFQQFqIQUgAyADKAIAIAZBCHRyNgIAIANBEGohAyAEQQRqIQQgCUEBayIJDQALIAopAxghIQsgCigCICIGKAIIIgMgAyAhpyAhIAOtIiBWGyIFSQ0OAkACQCAHIAMgBWtNBEAgBigCBCAFaiEDIAdBAUcEQCAIIAMgBxA7GkEEIQMMAgsgCCADLQAAOgAAQQQhAwwBCyALIQMgJEIEUg0BCyAhICN8ISALIAogIDcDGCADQf8BcUEERw0AAn8gB0UEQEEBIQVBACEEQQAMAQsgFigCBEEMaiEDIBYoAgghDUEDIQQgByEJIAghBQNAQQAhBiAnICggBS0AALNDAAB/Q5WUkhBSIiZDAAAAAFwEQEMAAH9DQwAAAAAgJhCqAUMAABBBkkNFIpE9lUMAAIA/kiImICZDAAAAAF0bIiYgJkMAAH9DXhsQ2AMiJkMAAAAAYCEGQf8BAn8gJkMAAIBPXSAmQwAAAABgcQRAICapDAELQQALQQAgBhsgJkMAAH9DXhshBgsgBCANTw0EIAVBAWohBSADIAMoAgAgBkEQdHI2AgAgA0EQaiEDIARBBGohBCAJQQFrIgkNAAtBACEDIAdBA2wiBEEASA0EIAdFBEBBASEFQQAMAQtBheXCAC0AABpBASEDIARBARD2AyIFRQ0EIAQLIQ0gCigCICIJKAIIIgMgAyAKKQMYIiGnICEgA60iIFYbIgZJDQ4CQAJAIAcgAyAGa00EQCAJKAIEIAZqIQMgB0EBRwRAIAggAyAHEDsaQQQhAwwCCyAIIAMtAAA6AABBBCEDDAELIAshAyAkQgRSDQELICEgI3whIAsgCiAgNwMYAkACQCADQf8BcUEERw0AIAcEQEEAIQMgByEJIAghBgNAIAMgBE8NAyADIAVqIAYtAAA6AAAgA0EDaiEDIAZBAWohBiAJQQFrIgkNAAsgCikDGCEgCyAKKAIgIgkoAggiAyADICCnICAgA60iIVYbIgZJDRACQAJAIAcgAyAGa00EQCAJKAIEIAZqIQMgB0EBRwRAIAggAyAHEDsaQQQhAwwCCyAIIAMtAAA6AABBBCEDDAELIAshAyAkQgRSDQELICAgI3whIQsgCiAhNwMYIANB/wFxQQRHDQAgBwRAIAchCUEBIQMgCCEGA0AgAyAETw0DIAMgBWogBi0AADoAACADQQNqIQMgBkEBaiEGIAlBAWsiCQ0ACyAKKQMYISELIAooAiAiCSgCCCIDIAMgIacgISADrSIgVhsiBkkNEAJAAkAgByADIAZrTQRAIAkoAgQgBmohAyAHQQFHBEAgCCADIAcQOxpBBCEDDAILIAggAy0AADoAAEEEIQMMAQsgCyEDICRCBFINAQsgISAjfCEgCyAKICA3AxggA0H/AXFBBEcNAAJAAkAgBwRAQQAhBkECIQMDQCADIARPDQUgAyAFaiAGIAhqLQAAOgAAIANBA2ohAyAHIAZBAWoiBkcNAAtBACEDQQAhBgNAIAMgBE8NAiADQQFqIARPDQMgA0ECaiAETw0KIAMgBWoiCSwAACEOIAlBAmosAAAhGyAKIAlBAWosAACyQwAA/kKVIic4AiwgCiAOskMAAP5ClSImOAIoIAogG7JDAAD+QpUiKDgCMCAKQwAAgD8gJiAmlCAnICeUkiAoICiUkpNDAAAAABDVA5E4AjRDAAAAACErIApBKGoiCSoCCCEoIAkqAgQhKiAJKgIAIScgCSoCDCImQwAAAABdBEAgJowhJiAojCEoICqMISogJ4whJwtDAACAPyEsAn0CQCAmvCIOQf////8HcSIJQf////sDTQRAIAlBgICA+ANPBEAgDkEATgRAQwAAgD8gJpNDAAAAP5QiJpEiKSAmICYgJkNr0w28lEO6Ey+9kpRDdaoqPpKUICZDruU0v5RDAACAP5KVlCAmICm8QYBgcb4iJiAmlJMgKSAmkpWSICaSIiYgJpIMBAtD2g/JPyAmQwAAgD+SQwAAAD+UIiaRIikgKSAmICYgJkNr0w28lEO6Ey+9kpRDdaoqPpKUICZDruU0v5RDAACAP5KVlENoIaKzkpKTIiYgJpIhKQwCC0PaD8k/ISkgCUGBgICUA0kNAUNoIaIzICYgJpQiKSApIClDa9MNvJRDuhMvvZKUQ3WqKj6SlCApQ67lNL+UQwAAgD+SlSAmlJMgJpND2g/JP5IMAgtDAAAAACAmICaTlSAJQYCAgPwDRw0BGkMAAAAAQ9oPSUAgDkEAThsMAQsgKQshLUMAAAAAISYgKCAolCAqICqUICcgJ5SSkpEiKUO9N4Y1XUUEQCAoICmVISsgJyAplSEsICogKZUhJgsgJiAriyAmiyAsi5KSIieVISYgLCAnlSEoAkAgK0MAAAAAYARAICYhJwwBC0MAAIA/ICiLk0MAAMB/QwAAgD8gJpggJiAmXBuUISdDAACAPyAmi5NDAADAf0MAAIA/ICiYICggKFwblCEoCwJAIAZBAnQiG0ECciIOIBYoAggiCUkEQEH/AQJ/ICdDAAAAP5RDAAAAP5JDAAB/Q5QQ2AMiJ0MAAIBPXSAnQwAAAABgIhRxBEAgJ6kMAQtBAAtBACAUGyAnQwAAf0NeG0EYdCEUIChDAAAAP5RDAAAAP5JDAAB/Q5QQ2AMiJ0MAAAAAYCEMIBYoAgQiFyAOQQJ0aiIOIA4oAgBB/wECfyAnQwAAgE9dICdDAAAAAGBxBEAgJ6kMAQtBAAtBACAMGyAnQwAAf0NeG0EQdCAUcnI2AgAgCSAbQQNyIg5LBEACf0MAAH9DQwAAAAAgLSAtkkOKVqJClBDYAyInICdDAAAAAF0bIicgJ0MAAH9DXhsiJ0MAAIBPXSAnQwAAAABgIglxBEAgJ6kMAQtBAAshGyAXIA5BAnRqIg4gDigCAEH/ASAbQQAgCRsgJ0MAAH9DXhtBGHRyNgIADAILIA4gCUHsjsAAEK0CAAsgDiAJQdyOwAAQrQIACyADQQNqIQMgBkEBaiIGIAdHDQALCyANBEAgBSANQQEQpwQLIAooAiAiBigCCCIDIAMgCikDGCIlpyAlIAOtIiFWGyIFSQ0SAkACQCAHIAMgBWtNBEAgBigCBCAFaiEDAkAgB0EBRwRAIAggAyAHEDsaDAELIAggAy0AADoAAAtBBCEDQgAhIAwBCyAiISAgCyEDICRCBFINAQsgIyAlfCEhCyAKICE3AxggA0H/AXFBBEYEQCAZBEAgEkEDcSEGIAgtAAAhBEEBIQMgGEEDTwRAIBJBfHEhCUEAIQUDQCAFIAhqIgNBAWoiDSAEIA0tAABqIgQ6AAAgA0ECaiINIAQgDS0AAGoiBDoAACADQQNqIg0gBCANLQAAaiIEOgAAIANBBGoiAyAEIAMtAABqIgQ6AAAgCSAFQQRqIgVHDQALIAVBAWohAwsgBkUNCyADIAhqIQMDQCADIAQgAy0AAGoiBDoAACADQQFqIQMgBkEBayIGDQALDAsLIAcNCgwLCyAKICA+ACkgCkEvaiAgQjCIPAAAIApBLWogIEIgiD0AACAKIAM6ACggCkEoahCiAyEDDA8LIAMgBEGYlcAAEK0CAAsgA0EBaiAEQaiVwAAQrQIACyAKICI+ACkgCkEvaiAiQjCIPAAAIApBLWogIkIgiD0AACAKIAM6ACggCkEoahCiAyEDIA1FDQwgBSANQQEQpwQMDAsgAyAEQciVwAAQrQIACyAKICI+ACkgCkEvaiAiQjCIPAAAIApBLWogIkIgiD0AACAKIAM6ACggCkEoahCiAyEDDAoLIAQgDUG8jsAAEK0CAAsgBCANQcyOwAAQrQIACyADIARB6JTAABDXAwALIANBAmogBEG4lcAAEK0CAAsgFigCBCEDIBYoAgghCUEAIQQgByEGIAghBQNAIAQgCU8NAiADIAMoAgAgBS0AAEEYdHI2AgAgA0EQaiEDIARBBGohBCAFQQFqIQUgBkEBayIGDQALCyAKKAIgIgYoAggiAyADIAopAxgiIKcgICADrSIhVhsiBU8EQAJAAkAgByADIAVrTQRAIAYoAgQgBWohAyAHQQFHBEAgCCADIAcQOxpBBCEDDAILIAggAy0AADoAAEEEIQMMAQsgCyEDICRCBFINAQsgICAjfCEhCyAKICE3AxggA0H/AXFBBEcNBAJAIBlFBEAgBw0BDAULIBJBA3EhBiAILQAAIQRBASEDIBhBA08EQCASQXxxIQlBACEFA0AgBSAIaiIDQQFqIg0gBCANLQAAaiIEOgAAIANBAmoiDSAEIA0tAABqIgQ6AAAgA0EDaiINIAQgDS0AAGoiBDoAACADQQRqIgMgBCADLQAAaiIEOgAAIAkgBUEEaiIFRw0ACyAFQQFqIQMLIAZFDQAgAyAIaiEDA0AgAyAEIAMtAABqIgQ6AAAgA0EBaiEDIAZBAWsiBg0ACwsgFigCBCEDIBYoAgghCUEAIQQgByEGIAghBQNAIAQgCU8NAyADIAMoAgAgBS0AAHI2AgAgA0EQaiEDIARBBGohBCAFQQFqIQUgBkEBayIGDQALDAMLDAcLIAQgCUGsj8AAEK0CAAsgBCAJQfyOwAAQrQIACwJAAkACQAJAAkACQAJAAkACQCAKKAIgIgYoAggiAyADIAopAxgiIKcgICADrSIhVhsiBU8EQAJAAkAgByADIAVrTQRAIAYoAgQgBWohAyAHQQFHBEAgCCADIAcQOxpBBCELDAILIAggAy0AADoAAEEEIQsMAQsgJEIEUg0BCyAgICN8ISELIAogITcDGCALQf8BcUEERwRAIAshAwwLCyAZRQ0BIBJBA3EhBiAILQAAIQRBASEDIBhBA08EQCASQXxxIQtBACEFA0AgBSAIaiIDQQFqIgkgBCAJLQAAaiIJOgAAIANBAmoiBCAJIAQtAABqIgk6AAAgA0EDaiIEIAkgBC0AAGoiCToAACADQQRqIgMgCSADLQAAaiIEOgAAIAsgBUEEaiIFRw0ACyAFQQFqIQMLIAZFDQIgAyAIaiEDA0AgAyAEIAMtAABqIgQ6AAAgA0EBaiEDIAZBAWsiBg0ACwwCCwwNCyAHRQ0BCyAWKAIEIQMgFigCCCELQQAhBCAHIQYgCCEFA0AgBCALTw0CIAMgAygCACAFLQAAQQh0cjYCACADQRBqIQMgBEEEaiEEIAVBAWohBSAGQQFrIgYNAAsLIAooAiAiBigCCCIDIAMgCikDGCIgpyAgIAOtIiFWGyIFSQ0KAkACQCAHIAMgBWtNBEAgBigCBCAFaiEDIAdBAUcEQCAIIAMgBxA7GkEEIQMMAgsgCCADLQAAOgAAQQQhAwwBC0Hg2cAAKQIAIiRCCIghIiAkpyEDICRC/wGDQgRSDQELICAgI3whIQsgCiAhNwMYIANB/wFxQQRHDQYgGUUNASASQQNxIQYgCC0AACEEQQEhAyAYQQNPBEAgEkF8cSELQQAhBQNAIAUgCGoiA0EBaiIJIAQgCS0AAGoiCToAACADQQJqIgQgCSAELQAAaiIJOgAAIANBA2oiBCAJIAQtAABqIgk6AAAgA0EEaiIDIAkgAy0AAGoiBDoAACALIAVBBGoiBUcNAAsgBUEBaiEDCyAGRQ0CIAMgCGohAwNAIAMgBCADLQAAaiIEOgAAIANBAWohAyAGQQFrIgYNAAsMAgsgBCALQYyPwAAQrQIACyAHRQ0BCyAWKAIEIQMgFigCCCELQQAhBCAHIQYgCCEFA0AgBCALTw0CIAMgAygCACAFLQAAQRB0cjYCACADQRBqIQMgBEEEaiEEIAVBAWohBSAGQQFrIgYNAAsLIAooAhQgCigCGEcNASAHBEAgCCAHQQEQpwQLIAooAgwiAwRAIAooAhAgA0EBEKcEC0EAIQMMBQsgBCALQZyPwAAQrQIACyAKQQA2AjggCkEBNgIsIApBkJXAADYCKCAKQgQ3AjAgCkEoahCrAiEDDAELIAogIj4AKSAKQS9qICJCMIg8AAAgCkEtaiAiQiCIPQAAIAogAzoAKCAKQShqEKIDIQMLIAdFDQAgCCAHQQEQpwQLIAooAgwiBUUNACAKKAIQIAVBARCnBAsgCkHwAGokACADDAELIApBADYCOCAKQQE2AiwgCkGs2cAANgIoIApCBDcCMCAKQShqQdjawAAQpAMACyIDRQRAIBogESkCIDcCACAaQRBqIBEpAgg3AgAgGkEIaiARQShqKQIANwIAIBpBGGogEUEQaigCADYCAAwBCyAaQYCAgIB4NgIQIBogAzYCACARKAIIIgNFDQAgESgCDCADQQJ0QQQQpwQLIBFB4ABqJAAMAQtBCCAIQZyRwAAQqgQACwJAAkACQCAPKAIoIgVBgICAgHhHBEAgDygCLCEGAn8gDygCMCILQQJ2IgMgAUUNABogAyACRQ0AGiABIAMgAW4iCCADIAEgCGxHaiIIIAIgAiAISxtsIgFFDQIgAyABbiICIAMgASACbEdqIAFsC0ECdBAWIQAQaSIBIAAmASAPIAE2AmQgDyAPQeQAakEAIAsQqQQ2AmggD0HoAGogBiALEOkBEAQhABBpIgEgACYBIA8gATYCbCAPQfSFwABBCRDbAyIBNgJYIAO4EAEhABBpIgIgACYBIA8gAjYCNCAPQRhqIA9B7ABqIA9B2ABqIA9BNGoQ3QIgDy0AGA0CIAJBhAFPBEAgAhDGASAPKAJYIQELIAFBhAFPBEAgARDGAQsgD0H9hcAAQQwQ2wMiATYCWCAPIA8oAmQiAjYCNCAPQRhqIA9B7ABqIA9B2ABqIA9BNGoQ3QIgDy0AGA0DIAJBhAFPBEAgAhDGASAPKAJYIQELIAFBhAFPBEAgARDGAQsgDygCbCAPKAJoIgJBhAFPBEAgAhDGAQsgBQRAIAYgBUECdEEEEKcECyAPKAIMIgIEQCAcIAJBARCnBAsgDygCCCICQYQBTwRAIAIQxgELIA9B8ABqJAAMBAsgDyAPKAIYNgJsIA9BATYCRCAPQeiGwAA2AkAgD0IBNwJMIA8gD0HsAGqtQoCAgIAghDcDWCAPIA9B2ABqNgJIIA9BNGogD0FAaxDQASAPKAI4IA8oAjwQyAQACyMAQSBrIgEkACABQQA2AhggAUEBNgIMIAFBmNnCADYCCCABQgQ3AhAgAUEIakHkhcAAEKQDAAsgDyAPKAIcNgJAQZyGwABBKyAPQUBrQYyGwABB2IbAABCgAgALIA8gDygCHDYCQEGchsAAQSsgD0FAa0GMhsAAQciGwAAQoAIACyIBJQEgARDGAQvvDgEOfxBpIgQgASYBEGkiBSACJgEjAEEgayIKJAAgCiAFNgIIIAogBDYCBCAKIAA2AgAgCiAKQQRqIgAoAgAQ2wQ2AgwgCiAKQQhqNgIcIAogCjYCGCAKIAA2AhQgCiAKQQxqNgIQIApBEGohACMAQUBqIggkAAJAAkACQAJAQQBBhIfAACgCABEEACINBEAgDSgCAEUEQCAAKAIMIQ8gACgCCCEHIA1BfzYCACAAKAIEIAAoAgAoAgAiBiANQQRqIgUoAggiBEsEQCAGIAQiAGsiCSAFKAIAIABrSwRAIAUgACAJQQJBAhCPASAFKAIIIQALIAUoAgQiDiAAQQF0aiEDIAlBAk8EQCADQQAgBEF/cyAGakEBdBBaGiAAIAZqQQF0IARBAXRrIA5qQQJrIQMgACAJakEBayEACyADQQA7AQAgBSAAQQFqNgIICyAFKAIUIgQgBkkEQCAGIAQiAGsiCSAFKAIMIABrSwRAIAVBDGogACAJQQRBBBCPASAFKAIUIQALIAUoAhAiDiAAQQJ0aiEDIAlBAk8EQCADQQAgBEF/cyAGakECdBBaGiAAIAZqQQJ0IARBAnRrIA5qQQRrIQMgACAJakEBayEACyADQQA2AgAgBSAAQQFqNgIUCyAFKAIgIgBBgPgBTQRAIAAhBEGB+AEgAGsiAyAFKAIYIABrSwRAIAVBGGogACADQQRBBBCPASAFKAIgIQQLIAUoAhwiBiAEQQJ0IglqIQMgAEGA+AFHBH8gA0EAQYDgByAAQQJ0IgNrEFoaIAQgAGtBgPgBaiEEIAkgA2sgBmpBgOAHagUgAwtBADYCACAFIARBAWo2AiALKAIAJQFBACAHKAIAEBUhARBpIgAgASYBIAggADYCDCAHKAIAIgQgDSgCDCIASw0CIA0oAgghCSMAQSBrIgAkACAAIAhBDGoiDCgCABDbBCIDNgIAIAAgBDYCBCADIARHBEAgAEEANgIIIAAgAEEEaiAAQQhqEIwDAAsQ7QMiAxDcAyIGJQEQCSEBEGkiBCABJgEgBkGEAU8EQCAGEMYBCyAEJQEgDCgCACUBIAlBAXYQCiAEQYQBTwRAIAQQxgELIANBhAFPBEAgAxDGAQsgAEEgaiQAIAcoAgAhDEEAIQcjAEFAaiIGJAACQCAMIAUoAggiAE0EQCAFKAIEIQQgBUEANgIgIAUoAhhBgPgBTQRAIAVBGGpBAEGB+AFBBEEEEI8BIAUoAiAhBwsgBSgCHCIJIAdBAnRqQQBBgOAHEFogBSAHQYH4AWoiDjYCIEGA4AdqQQA2AgACQCAMBEAgDEEBdCEDIAQhAANAIAAvAQAiC0GA+AFJBEAgCyAOTw0DIAkgC0ECdGoiCyALKAIAQQFqNgIACyAAQQJqIQAgA0ECayIDDQALCyAJIA5BAnRqQQhrIgAoAgAhAyAAQQA2AgAgBiADNgIIIAAgCUcEQCAHQQFrQQNxIgcEQANAIABBBGsiACgCACELIAAgAzYCACAGIAMgC2oiAzYCCCAHQQFrIgcNAAsLIABBEGshAANAIABBDGoiBygCACELIAcgAzYCACAGIAMgC2oiAzYCCCAAQQhqIgcoAgAhCyAHIAM2AgAgBiADIAtqIgM2AgggAEEEaiIHKAIAIQsgByADNgIAIAYgAyALaiIDNgIIIAAoAgAhByAAIAM2AgAgBiADIAdqIgM2AgggACAJRiAAQRBrIQBFDQALCyAMRQ0CIAxBAXQhByAFKAIQIRAgBSgCFCEMQQAhAANAIAQvAQAiBUGA+AFJBEACQCAFIA5JBEAgCSAFQQJ0aiIFKAIAIgsgDEkNASALIAxBmIXAABCtAgALIAUgDkGIhcAAEK0CAAsgECALQQJ0aiAANgIAIAUgBSgCAEEBajYCAAsgBEECaiEEIABBAWohACAHQQJrIgcNAAsMAgsgCyAOQaiFwAAQrQIACyAMIABB+ITAABCrBAALIAMgCSgCAEYEf0EABSAGQQI2AhwgBkHYhMAANgIYIAZCAjcCJCAGIAmtQoCAgIAQhDcDOCAGIAZBCGqtQoCAgIAQhDcDMCAGIAZBMGo2AiAgBkEMaiIAIAZBGGoQ0AEgABChAyEDQQELIQAgCCADNgIEIAggADYCACAGQUBrJAAgCCgCBCEAIAgoAgANAyAARQ0FIA0oAhgiBCAASQ0EIA0oAhQhBSAIIA9BACAAEKkEIgQ2AiAgCEEgaiAFIAAQ6QEgBEGEAUkNBSAEEMYBDAULENMCAAsQ0gIACyAEIABBqIvAABCrBAALIAggADYCECAIQQE2AiQgCEHEisAANgIgIAhCATcCLCAIIAhBEGqtQoCAgIAghDcDOCAIIAhBOGo2AiggCEEUaiAIQSBqENEBIAgoAhggCCgCHBDIBAALIAAgBEG4i8AAEKsEAAsgCCgCDCIEQYQBTwRAIAQQxgELIA0gDSgCAEEBajYCACAIQUBrJAAgCigCCCIEQYQBTwRAIAQQxgELIAooAgQiBEGEAU8EQCAEEMYBCyAKQSBqJAAgAAsaAQF/IAAoAgAiAQRAIAAoAgQgAUEBEKcECwsaAQF/IAAoAgQiAQRAIAAoAgAgAUEBEKcECwscACAAKAIAIgAoAgAgASAAQQRqKAIAKAIMEQAACxQAIAEgASAAIAAgAV0bIAAgAFwbCxoBAW8gACUBIAEgAhAMIQMQaSIAIAMmASAAC0MAIABFBEAjAEEgayIAJAAgAEEANgIYIABBATYCDCAAQfi+wgA2AgggAEIENwIQIABBCGogAhCkAwALIAAgARDTBAALGAAgALxBgICAgHhxQf////cDcr4gAJKPCxUAIAAoAgAiAEGEAU8EQCAAEMYBCwscACAAQQA2AhAgAEIANwIIIABCgICAgMAANwIACxYBAW8gACABEAAhAhBpIgAgAiYBIAALFgEBbyAAJQEQBSEBEGkiACABJgEgAAsWAQFvIAAlARAGIQEQaSIAIAEmASAACxYAIABBtIHAADYCBCAAIAFBHGo2AgAL2gYBBn8CfwJAAkACQAJAAkAgAEEEayIFKAIAIgZBeHEiBEEEQQggBkEDcSIHGyABak8EQCAHQQAgAUEnaiIJIARJGw0BAkACQCACQQlPBEAgAiADEGUiCA0BQQAMCQsgA0HM/3tLDQFBECADQQtqQXhxIANBC0kbIQECQCAHRQRAIAFBgAJJIAQgAUEEcklyIAQgAWtBgYAIT3INAQwJCyAAQQhrIgIgBGohBwJAAkACQAJAIAEgBEsEQCAHQdTowgAoAgBGDQQgB0HQ6MIAKAIARg0CIAcoAgQiBkECcQ0FIAZBeHEiBiAEaiIEIAFJDQUgByAGEHUgBCABayIDQRBJDQEgBSABIAUoAgBBAXFyQQJyNgIAIAEgAmoiASADQQNyNgIEIAIgBGoiAiACKAIEQQFyNgIEIAEgAxBYDA0LIAQgAWsiA0EPSw0CDAwLIAUgBCAFKAIAQQFxckECcjYCACACIARqIgEgASgCBEEBcjYCBAwLC0HI6MIAKAIAIARqIgQgAUkNAgJAIAQgAWsiA0EPTQRAIAUgBkEBcSAEckECcjYCACACIARqIgEgASgCBEEBcjYCBEEAIQNBACEBDAELIAUgASAGQQFxckECcjYCACABIAJqIgEgA0EBcjYCBCACIARqIgIgAzYCACACIAIoAgRBfnE2AgQLQdDowgAgATYCAEHI6MIAIAM2AgAMCgsgBSABIAZBAXFyQQJyNgIAIAEgAmoiASADQQNyNgIEIAcgBygCBEEBcjYCBCABIAMQWAwJC0HM6MIAKAIAIARqIgQgAUsNBwsgAxAeIgFFDQEgASAAQXxBeCAFKAIAIgFBA3EbIAFBeHFqIgEgAyABIANJGxA7IAAQPgwICyAIIAAgAyABIAEgA0sbEDsaIAUoAgAiAkF4cSIDIAFBBEEIIAJBA3EiAhtqSQ0DIAJBACADIAlLGw0EIAAQPgsgCAwGC0H9lMIAQS5BrJXCABDtAgALQbyVwgBBLkHslcIAEO0CAAtB/ZTCAEEuQayVwgAQ7QIAC0G8lcIAQS5B7JXCABDtAgALIAUgASAGQQFxckECcjYCACABIAJqIgIgBCABayIBQQFyNgIEQczowgAgATYCAEHU6MIAIAI2AgAgAAwBCyAACwsWACAAQdy2wAA2AgQgACABQSBqNgIACxYAIABBmLfAADYCBCAAIAFBHGo2AgALFgAgAEHUt8AANgIEIAAgAUEcajYCAAsWACAAQZC4wAA2AgQgACABQRxqNgIACxkAIAEoAhxBlMHCAEEOIAEoAiAoAgwRAgALFgAgACgCHCABIAIgACgCICgCDBECAAvzAQEDf0Hw5MIAKAIARQRAAkACQAJAAkAgAEUNACAAKAIAIABBADYCAEEBcUUNACAAKAIQIQEgACgCDCECIAAoAgghAyAAKAIEIQAMAQtBACEAQYXlwgAtAAAaQYCAECEBQYCAECEDQYCAwABBBBD2AyICRQ0BC0GA5cIAIAE2AgBB9OTCACAANgIAQfzkwgAoAgAhAUH85MIAIAI2AgBB+OTCACgCACEAQfjkwgAgAzYCAEHw5MIAKAIAQfDkwgBBATYCAEUgAEVyRQRAIAEgAEECdEEEEKcECwwBC0EEQYCAwABB1IXAABDXAwALC0H05MIAC/sCAQl/QcTkwgAoAgBFBEACfwJAIABFDQAgACgCACAAQQA2AgBBAXFFDQAgACgCKCEBIAAoAiQhByAAKAIgIQIgACgCHCEDIAAoAhghCCAAKAIUIQQgACgCECEFIAAoAgwhCSAAKAIIIQYgACgCBAwBC0EEIQdBACEBQQQhCEEEIQlBAAshAEHs5MIAIAE2AgBB4OTCACADNgIAQdTkwgAgBTYCAEHI5MIAIAA2AgBB6OTCACgCACEFQejkwgAgBzYCAEHk5MIAKAIAIQBB5OTCACACNgIAQdzkwgAoAgAhAUHc5MIAIAg2AgBB2OTCACgCACECQdjkwgAgBDYCAEHQ5MIAKAIAIQRB0OTCACAJNgIAQczkwgAoAgAhA0HM5MIAIAY2AgBBxOTCACgCACEGQcTkwgBBATYCAAJAIAZFDQAgAwRAIAQgA0ECdEEEEKcECyACBEAgASACQQJ0QQQQpwQLIABFDQAgBSAAQQJ0QQQQpwQLC0HI5MIAC/sCAQl/QZjkwgAoAgBFBEACfwJAIABFDQAgACgCACAAQQA2AgBBAXFFDQAgACgCKCEBIAAoAiQhByAAKAIgIQIgACgCHCEDIAAoAhghCCAAKAIUIQQgACgCECEFIAAoAgwhCSAAKAIIIQYgACgCBAwBC0ECIQlBBCEHQQAhAUEEIQhBAAshAEHA5MIAIAE2AgBBtOTCACADNgIAQajkwgAgBTYCAEGc5MIAIAA2AgBBvOTCACgCACEFQbzkwgAgBzYCAEG45MIAKAIAIQBBuOTCACACNgIAQbDkwgAoAgAhAUGw5MIAIAg2AgBBrOTCACgCACECQazkwgAgBDYCAEGk5MIAKAIAIQRBpOTCACAJNgIAQaDkwgAoAgAhA0Gg5MIAIAY2AgBBmOTCACgCACEGQZjkwgBBATYCAAJAIAZFDQAgAwRAIAQgA0EBdEECEKcECyACBEAgASACQQJ0QQQQpwQLIABFDQAgBSAAQQJ0QQQQpwQLC0Gc5MIACxQAIAAoAgAgASAAKAIEKAIQEQAACxQAIAAoAgAgASAAKAIEKAIMEQAACxQAIAAoAhwgASAAKAIgKAIQEQAAC9MIAQV/IwBB8ABrIgUkACAFIAM2AgwgBSACNgIIAkACQAJAAkACQAJAIAUCfyAAAn8CQCABQYECTwRAQQMgACwAgAJBv39KDQIaIAAsAP8BQb9/TA0BQQIMAgsgBSABNgIUIAUgADYCEEEBIQZBAAwCCyAALAD+AUG/f0oLQf0BaiIGaiwAAEG/f0wNASAFIAY2AhQgBSAANgIQQdDKwgAhBkEFCzYCHCAFIAY2AhggASACSSIGIAEgA0lyRQRAIAIgA0sNAiACRSABIAJNckUEQCAFQQxqIAVBCGogACACaiwAAEG/f0obKAIAIQMLIAUgAzYCICADIAEiAkkEQCADQQFqIgcgA0EDayICQQAgAiADTRsiAkkNBAJAIAIgB0YNACAHIAJrIQggACADaiwAAEG/f0oEQCAIQQFrIQYMAQsgAiADRg0AIAAgB2oiA0ECayIJLAAAQb9/SgRAIAhBAmshBgwBCyAJIAAgAmoiB0YNACADQQNrIgksAABBv39KBEAgCEEDayEGDAELIAcgCUYNACADQQRrIgMsAABBv39KBEAgCEEEayEGDAELIAMgB0YNACAIQQVrIQYLIAIgBmohAgsCQCACRQ0AIAEgAk0EQCABIAJGDQEMBwsgACACaiwAAEG/f0wNBgsgASACRg0EAn8CQAJAIAAgAmoiASwAACIAQQBIBEAgAS0AAUE/cSEGIABBH3EhAyAAQV9LDQEgA0EGdCAGciEADAILIAUgAEH/AXE2AiRBAQwCCyABLQACQT9xIAZBBnRyIQYgAEFwSQRAIAYgA0EMdHIhAAwBCyADQRJ0QYCA8ABxIAEtAANBP3EgBkEGdHJyIgBBgIDEAEYNBgsgBSAANgIkQQEgAEGAAUkNABpBAiAAQYAQSQ0AGkEDQQQgAEGAgARJGwshACAFIAI2AiggBSAAIAJqNgIsIAVBBTYCNCAFQdjLwgA2AjAgBUIFNwI8IAUgBUEYaq1CgICAgJDEAIQ3A2ggBSAFQRBqrUKAgICAkMQAhDcDYCAFIAVBKGqtQoCAgICwxACENwNYIAUgBUEkaq1CgICAgMDEAIQ3A1AgBSAFQSBqrUKAgICAEIQ3A0gMBgsgBSACIAMgBhs2AiggBUEDNgI0IAVBmMzCADYCMCAFQgM3AjwgBSAFQRhqrUKAgICAkMQAhDcDWCAFIAVBEGqtQoCAgICQxACENwNQIAUgBUEoaq1CgICAgBCENwNIDAULIAAgAUEAIAYgBBDsAwALIAVBBDYCNCAFQfjKwgA2AjAgBUIENwI8IAUgBUEYaq1CgICAgJDEAIQ3A2AgBSAFQRBqrUKAgICAkMQAhDcDWCAFIAVBDGqtQoCAgIAQhDcDUCAFIAVBCGqtQoCAgIAQhDcDSAwDCyACIAdBsMzCABCsBAALIAQQrgQACyAAIAEgAiABIAQQ7AMACyAFIAVByABqNgI4IAVBMGogBBCkAwALFAIBbwF/EBwhABBpIgEgACYBIAELEwAgAEEoNgIEIABBgIDAADYCAAsgACAAQtXs7rbz2sHXSzcDCCAAQrn13fLSq/jYETcDAAsTACAAQfCBwAA2AgQgACABNgIACxAAIAAoAgQgACgCCCABEDALEQAgACgCBCAAKAIIIAEQ1QQLEwAgAEEoNgIEIABB2IvAADYCAAshACAAQvy0pPP2z/uuxAA3AwggAELk7Puo4OKsxmo3AwALGQACfyABQQlPBEAgASAAEGUMAQsgABAeCws6AAJAAn8gAUEJTwRAIAEgABBlDAELIAAQHgsiAUUNACABQQRrLQAAQQNxRQ0AIAFBACAAEFoaCyABCxMAIABBKDYCBCAAQdiVwAA2AgALIgAgAEK9i+HvyI377t8ANwMIIABCiITn+s3+j4OKfzcDAAshACAAQoaY8YHS0uCozQA3AwggAELwgJS4o8zQ9hc3AwALIgAgAELMjMSn19CF/vgANwMIIABCtPOHgpX6kcv1ADcDAAsTACAAQZybwAA2AgQgACABNgIACxMAIABBKDYCBCAAQYy2wAA2AgALEwAgAEHMuMAANgIEIAAgATYCAAsTACAAQYi5wAA2AgQgACABNgIACxMAIABBxLnAADYCBCAAIAE2AgALEwAgAEGAusAANgIEIAAgATYCAAsTACAAQbC+wAA2AgQgACABNgIACxMAIABBKDYCBCAAQYjbwAA2AgALEwAgAEGA4cAANgIEIAAgATYCAAshACAAQqTFo/yfjvDjADcDCCAAQqqooLmusOaw6QA3AwALEAAgACgCACAAKAIEIAEQMAsRACAAKAIAIAAoAgQgARDVBAsiACAAQsuH6/rgqLu20AA3AwggAELEr9zF2tKv9bh/NwMACxMAIABBKDYCBCAAQcCFwQA2AgALEwAgAEHEicEANgIEIAAgATYCAAsgACAAQrz8k7Ko16DsTDcDCCAAQuuYqJm2gbKefzcDAAshACAAQriynYTMrpfUQjcDCCAAQu/Dv6KOjcrEoH83AwALIAAgAEKcnaLxgrvwoHU3AwggAELRqsqvpcqt8kA3AwALIQAgAEL7wqCWlfy/yHo3AwggAELmsfLlkYe/ybF/NwMACyIAIABC9auQ77TsvKaWfzcDCCAAQrHh7P30uYbLwgA3AwALIAAgAELNnq77nqC2sEE3AwggAELxps+Y0aSn/gE3AwALIAAgAEK3v8ue+N2SoEM3AwggAEKvuaX0x5vV+zA3AwALIQAgAEKWl7rs79nZo3Q3AwggAEKH+OXLhuPSwtQANwMACyEAIABC/O6Qyq7osdU1NwMIIABC2OvVj+a1zN2OfzcDAAshACAAQrzprN2Y1v7ui383AwggAEKk3Nqt0/nNwEU3AwALIQAgAELl6obQ6cP/7Xk3AwggAEL30OLk1cPQ6ad/NwMACyEAIABC5sHsgPKk3YtlNwMIIABChu7u8+efmIeefzcDAAshACAAQs7Is8mT6a+2pX83AwggAELt66KMv7HLkg83AwALIgAgAEKcrtGn56WAwMIANwMIIABC16rLiaf+wYLHADcDAAsiACAAQt3+weC9o+rogn83AwggAEKX2/aYrfP7zY5/NwMACyEAIABCgsDc4LCv07mnfzcDCCAAQpbk17fDtcOKAzcDAAshACAAQrvV0cb1jfDEkH83AwggAELVi9bpuKS4kXk3AwALIQAgAEKynOer2rGju98ANwMIIABCvfif/8L+hsNVNwMACyIAIABC9tzrg9PWkOr2ADcDCCAAQuamkMP/nOzgtn83AwALIQAgAEKv1ajhhPu04u0ANwMIIABCjM/Fj7KFi+lnNwMACyEAIABCoKPa7PvI3KZuNwMIIABC7fH6/5z2yOa9fzcDAAsRACABIAAoAgAgACgCBBDlAwsWAEGM5cIAIAA2AgBBiOXCAEEBNgIACyAAIABC4+DWofail51WNwMIIABC0Jamw5Le7cA3NwMACyIAIABC7bqtts2F1PXjADcDCCAAQviCmb2V7sbFuX83AwALEwAgAEHYocIANgIEIAAgATYCAAsQACABIAAoAgAgACgCBBA2CxAAIAEoAhwgASgCICAAEEULDgAgACUBIAElASACEA4LYQEBfwJAAkAgAEEEaygCACICQXhxIgNBBEEIIAJBA3EiAhsgAWpPBEAgAkEAIAMgAUEnaksbDQEgABA+DAILQf2UwgBBLkGslcIAEO0CAAtBvJXCAEEuQeyVwgAQ7QIACwsOACAAKAIAJQEQE0EARwsdAQFvIAAoAgAlASABIAIQFyEDEGkiACADJgEgAAtpAQF/IwBBMGsiAyQAIAMgATYCBCADIAA2AgAgA0ECNgIMIANBmNrCADYCCCADQgI3AhQgAyADQQRqrUKAgICAEIQ3AyggAyADrUKAgICAEIQ3AyAgAyADQSBqNgIQIANBCGogAhCkAwALaQEBfyMAQTBrIgMkACADIAE2AgQgAyAANgIAIANBAjYCDCADQbjawgA2AgggA0ICNwIUIAMgA0EEaq1CgICAgBCENwMoIAMgA61CgICAgBCENwMgIAMgA0EgajYCECADQQhqIAIQpAMAC2kBAX8jAEEwayIDJAAgAyABNgIEIAMgADYCACADQQI2AgwgA0Hs2sIANgIIIANCAjcCFCADIANBBGqtQoCAgIAQhDcDKCADIAOtQoCAgIAQhDcDICADIANBIGo2AhAgA0EIaiACEKQDAAsNACAAKAIAQQEgARBsCw8AQb3BwgBBKyAAEO0CAAvxAgIFfwN+IAApAwAhCSMAQSBrIgMkAEEUIQAgCSIHQugHWgRAIAchCANAIANBDGogAGoiAkEDayAIIAhCkM4AgCIHQpDOAH59pyIEQf//A3FB5ABuIgVBAXQiBkGSxMIAai0AADoAACACQQRrIAZBkcTCAGotAAA6AAAgAkEBayAEIAVB5ABsa0H//wNxQQF0IgRBksTCAGotAAA6AAAgAkECayAEQZHEwgBqLQAAOgAAIABBBGshACAIQv+s4gRWIAchCA0ACwsgB0IJVgRAIAAgA2pBC2ogB6ciAiACQf//A3FB5ABuIgJB5ABsa0H//wNxQQF0IgRBksTCAGotAAA6AAAgAEECayIAIANBDGpqIARBkcTCAGotAAA6AAAgAq0hBwsgCVBFIAdQcUUEQCAAQQFrIgAgA0EMamogB6dBAXRBHnFBksTCAGotAAA6AAALIAFBAUEBQQAgA0EMaiAAakEUIABrEDUgA0EgaiQACw4AIAFBiP3AAEEUEOUDCwwAIAAoAgAgARDZBAsLACAAKAIAIAEQfAsMACAAKAIAIAEQngELDAAgACgCACABEIYBCwwAIAAoAgAgARCXAQsLACAAKAIAIAEQZAsLACAAKAIAIAEQTgsMACAAKAIAIAEQsAELDAAgACgCACABEKIBCwwAIAAoAgAgARCRAQsLACAAKAIAIAEQQAsMACAAKAIAIAEQrQQLDAAgACgCACABEKkDCwwAIAAoAgAgARDFAQsMACAAKAIAIAEQrwQLDAAgACgCACABEIQCCwsAIAAoAgAgARBqCw0AIABBxIPCACABEEULDQAgAEHQiMIAIAEQRQsKACAAIAEgAhBFCw4AIAFBxIrCAEEFEOUDC6gDAgd/AX4gACgCACEAIwBB0ABrIgIkACACQSBqIAAgACgCACgCBBEBACACIAJByABqrUKAgICAsDuENwMoQQEhAyACQQE2AjQgAkG4jMIANgIwIAJCATcCPCACIAIpAyA3AkggAiACQShqNgI4AkAgASgCHCIHIAEoAiAiCCACQTBqEEUNACABLQAUQQRxRQRAQQAhAwwBCyACQRhqIAAgACgCACgCBBEBACACQShqrUKAgICAsDuEIQkgAigCHCEEIAIoAhghBUEAIQBBASEGA0ACQCAAQQFxBEAgBCEBIAUhAAwBCyAFIQAgBCEBA0AgAEUEQEEAIQMMBAsgAkEQaiAAIAEoAhgRAQAgAigCFCEBIAIoAhAhACAGQQFrIgYNAAsLIABBAEchAyAARQ0BIAJBCGogACABKAIYEQEAIAIoAgwhBCACKAIIIQUgAiABNgIsIAIgADYCKEEBIQAgAkEBNgI0IAJBxIzCADYCMCACQgE3AjwgAiAJNwNIIAIgAkHIAGo2AjhBACEGIAcgCCACQTBqEMQERQ0ACwsgAkHQAGokACADCxsBAW8gACgCACUBIAEQAiECEGkiACACJgEgAAsJACAAIAEQGwALKQACfyAAKAIALQAARQRAIAFB9MXCAEEFEDYMAQsgAUH5xcIAQQQQNgsLDQAgAEG8lMIAIAEQRQvOAQEGfyAAKAIAIQIjAEGAAWsiBCQAIAEoAgQhByABKAIAIQYgASgCFCIFIQACQCAFQQRxRQ0AIAVBCHIhACAGDQAgAUKBgICAoAE3AgALIAEgAEEEcjYCFEEAIQADQCAAIARqQf8AaiACQQ9xIgNBMHIgA0HXAGogA0EKSRs6AAAgAEEBayEAIAJBD0sgAkEEdiECDQALIAFBAUGPxMIAQQIgACAEakGAAWpBACAAaxA1IAEgBTYCFCABIAc2AgQgASAGNgIAIARBgAFqJAALDAAgACABKQIANwMACw0AIAFB7K3CAEECEDYLDQAgAEGAscIAIAEQRQsOACABQauwwgBBBRDlAwsOACABQbi8wgBBEhDlAwsNACAAQcy+wgAgARBFCw4AIAFBxL7CAEEFEOUDCxoAIAAgAUGU5cIAKAIAIgBB9QMgABsRAQAACw0AIABB4MPCACABEEULCgAgAiAAIAEQNgu3CQEHfwJAAkAgAiIFIAAiAyABa0sEQCABIAJqIQAgAiADaiEDIAJBEEkNAUEAIANBA3EiBmshCAJAIANBfHEiBCADTw0AIAZBAWsCQCAGRQRAIAAhAgwBCyAGIQcgACECA0AgA0EBayIDIAJBAWsiAi0AADoAACAHQQFrIgcNAAsLQQNJDQAgAkEEayECA0AgA0EBayACQQNqLQAAOgAAIANBAmsgAkECai0AADoAACADQQNrIAJBAWotAAA6AAAgA0EEayIDIAItAAA6AAAgAkEEayECIAMgBEsNAAsLIAQgBSAGayICQXxxIgVrIQNBACAFayEGAkAgACAIaiIAQQNxRQRAIAMgBE8NASABIAJqQQRrIQEDQCAEQQRrIgQgASgCADYCACABQQRrIQEgAyAESQ0ACwwBCyADIARPDQAgAEEDdCIFQRhxIQcgAEF8cSIIQQRrIQFBACAFa0EYcSEJIAgoAgAhBQNAIARBBGsiBCAFIAl0IAEoAgAiBSAHdnI2AgAgAUEEayEBIAMgBEkNAAsLIAJBA3EhBSAAIAZqIQAMAQsgBUEQTwRAAkAgA0EAIANrQQNxIgZqIgIgA00NACABIQQgBgRAIAYhAANAIAMgBC0AADoAACAEQQFqIQQgA0EBaiEDIABBAWsiAA0ACwsgBkEBa0EHSQ0AA0AgAyAELQAAOgAAIANBAWogBEEBai0AADoAACADQQJqIARBAmotAAA6AAAgA0EDaiAEQQNqLQAAOgAAIANBBGogBEEEai0AADoAACADQQVqIARBBWotAAA6AAAgA0EGaiAEQQZqLQAAOgAAIANBB2ogBEEHai0AADoAACAEQQhqIQQgA0EIaiIDIAJHDQALCyACIAUgBmsiBEF8cSIHaiEDAkAgASAGaiIAQQNxRQRAIAIgA08NASAAIQEDQCACIAEoAgA2AgAgAUEEaiEBIAJBBGoiAiADSQ0ACwwBCyACIANPDQAgAEEDdCIFQRhxIQYgAEF8cSIIQQRqIQFBACAFa0EYcSEJIAgoAgAhBQNAIAIgBSAGdiABKAIAIgUgCXRyNgIAIAFBBGohASACQQRqIgIgA0kNAAsLIARBA3EhBSAAIAdqIQELIAMgAyAFaiIATw0BIAVBB3EiBARAA0AgAyABLQAAOgAAIAFBAWohASADQQFqIQMgBEEBayIEDQALCyAFQQFrQQdJDQEDQCADIAEtAAA6AAAgA0EBaiABQQFqLQAAOgAAIANBAmogAUECai0AADoAACADQQNqIAFBA2otAAA6AAAgA0EEaiABQQRqLQAAOgAAIANBBWogAUEFai0AADoAACADQQZqIAFBBmotAAA6AAAgA0EHaiABQQdqLQAAOgAAIAFBCGohASADQQhqIgMgAEcNAAsMAQsgAyAFayICIANPDQAgBUEDcSIBBEADQCADQQFrIgMgAEEBayIALQAAOgAAIAFBAWsiAQ0ACwsgBUEBa0EDSQ0AIABBBGshAQNAIANBAWsgAUEDai0AADoAACADQQJrIAFBAmotAAA6AAAgA0EDayABQQFqLQAAOgAAIANBBGsiAyABLQAAOgAAIAFBBGshASACIANJDQALCwsJACAAQQA2AgAL3zYCHX8BfiMAQYABayIGJAAgBkEoaiAAIAAoAgAoAgQRAQAgBiAGKAIsIgI2AjQgBiAGKAIoIgQ2AjACQAJAAkACQAJAIAEiDi0AFEEEcUUEQEEBIRUgBkEBNgJgIAZBuIzCADYCXCAGQgE3AmggBiAGQTBqrUKAgICAsDuENwNAIAYgBkFAazYCZCABKAIcIAEoAiAgBkHcAGoQRQ0FIAZBIGogBigCMCAGKAI0KAIYEQEAIAYoAiAiAgRAIAYoAiQhASAOKAIcQcyMwgBBDCAOKAIgKAIMEQIADQYgBkEYaiACIAEoAhgRAQAgBkE4aq1CgICAgLA7hCEfIAYoAhhBAEchBwNAIAZBEGogAiABKAIYEQEAIAYoAhQgBigCECEIIAYgATYCPCAGIAI2AjggDigCHEHYjMIAQQEgDigCICgCDBECAA0HIAZBADoATCAGIAM2AkQgBiAHNgJAIAYgDjYCSCAGQQE2AmAgBkG4jMIANgJcIAZCATcCaCAGIB83A1AgBiAGQdAAajYCZCAGQUBrQZyLwgAgBkHcAGoQRQ0HIANBAWohAyEBIAgiAg0ACwsCQCAAKAIEIgJBA0cEQCAAQQRqIQAMAQsgACAAKAIAKAIYEQQAIgBFDQIgACgCACECCyACQQJHDQQgBkEANgJIIAZCgICAgBA3AkAgBkHoiMIANgJ8IAZBAzoAdCAGQiA3AmwgBkEANgJkIAZBADYCXCAGIAZBQGs2AnggBkHcAGohAiMAQaABayIDJAACfwJAAkACQAJAAkACfwJAAkACQAJAIAAoAgBBAWsOAgABAgsgAkHFl8IAQRIQ5QMMCQsgAC0AFEEDRwRAIAMgAEEEajYCOCADQThqIQQjAEEgayIBJAACQAJAAkACQAJAAkACQAJAIABBFGoiCC0AAEEBaw4DAgUBAAsgCEECOgAAIAQoAgAgBEEANgIARQ0CQZHlwgAtAAAhBEGR5cIAQQE6AAAgASAEOgAHIARBAUYNA0GR5cIAQQA6AAAgCEEDOgAACyABQSBqJAAMBQsgAUEANgIYIAFBATYCDCABQYSowgA2AggMAwtBmKDCABCuBAALIAFCADcCFCABQoGAgIDAADcCDCABQbCfwgA2AgggAUEHaiABQQhqEIoDAAsgAUEANgIYIAFBATYCDCABQcSowgA2AggLIAFCBDcCECABQQhqQcygwgAQpAMACwsgACgCDCEBIAIoAhRBBHEiCEUNASAAKAIIDAILIAJBsJfCAEEVEOUDDAcLIAEgACgCECIESQ0BIAEgBGshASAAKAIIIARBDGxqCyERIANBgICAgHg2AgwgA0Gol8IAKQMANwIQIAMgCEECdiIAOgAYIAMgADoALCADQQA2AiggAyACNgIcIANB6JfCADYCJCADIANBDGo2AiAgAUUNAiARIAFBDGxqIRggA0E8aiETIANBhAFqIRQDQAJAIBEoAggiAEUEQCADQQA2AmQgAyADQRxqNgJgIANBAzYCOCADQQI2AoABIANB4ABqIANBOGogA0GAAWpBACADQQAgAxAiIAMoAmAiASABKAIMQQFqNgIMRQ0BDAcLIABBLGwhGSARKAIEIRpBACEWA0AgA0EANgI0IAMgA0EcajYCMAJAIBYgGmoiD0EgaigCAEGAgICAeEYEQCADQQM2AjgMAQsgA0GAAWoiEiAPQSRqKAIAIhsgD0EoaigCACIcED1BAiEAAkAgAygCgAENACADKAKEASEJIAMoAogBIQEjAEEgayILJAAjAEHgAGsiByQAIAdBEGogCSABQfC6wgBBBhAhAkACQAJAAkACfwJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkAgBygCEEUEQANAIAdB1ABqIAdBEGoQLCAHKAJUIgBBAUYNAAsCQAJAIABBAWsOAgQBAAsgByAHKQJYNwIIIAdBATYCBAwCCyAHQQA2AgQMAQsgB0EYaiEAIAcoAkwhAiAHKAJIIQQgBygCRCEIIAcoAkAhBSAHKAI0QX9HBEAgB0EEaiAAIAUgCCAEIAJBABBWDAELIAdBBGogACAFIAggBCACQQEQVgsgBygCBEUNAgJAIAcoAggiBEEGaiIARQ0AIAAgAU8EQCAAIAFGDQEMEQsgACAJaiwAAEG/f0wNEAsgASAJaiEKIAAgCWohAANAAkAgACAKRg0AAn8gACwAACICQQBOBEAgAkH/AXEhAiAAQQFqDAELIAAtAAFBP3EhBSACQR9xIQggAkFfTQRAIAhBBnQgBXIhAiAAQQJqDAELIAAtAAJBP3EgBUEGdHIhBSACQXBJBEAgBSAIQQx0ciECIABBA2oMAQsgCEESdEGAgPAAcSAALQADQT9xIAVBBnRyciICQYCAxABGDQEgAEEEagshACACQUBqQQdJIAJBMGtBCklyDQEMBAsLIARFBEBBACEBDAQLIAEgBE0EQCABIARGDQMMAgsgBCAJaiwAAEG/f0wNASAEIQEMAgsACyAJIAFBACAEQbS7wgAQ7AMACwJAAkAgAUEDTwRAAkACQAJAQbixwgAgCUEDENQCBEAgCS8AAEHanAFGDQEgAUEDRg0GIAkoAABB377p8gRHDQZBfCECQQQhACABQQVPDQJBBCEBDAULQQMhAEF9IQIgAUEDRgRAQQMhAQwFCyAJLAADQb9/Sg0EIAkgAUEDIAFBjLLCABDsAwALIAksAAJBv39MDQFBAiEAQX4hAgwDCyAJLAAEQb9/Sg0CIAkgAUEEIAFB7LHCABDsAwALIAkgAUECIAFB/LHCABDsAwALQQIhACABQQJHDQIgCS8AAEHanAFHBEBBAiEBDAMLQX4hAkECIQELIAAgCWoiBCABIAJqIghqIRAgCCEAIAQhAgJAA0AgAARAIABBAWshACACLAAAIAJBAWohAkEATg0BDAILCyAIRQ0AAn8gBCwAACIAQQBOBEAgAEH/AXEhACAEQQFqDAELIAQtAAFBP3EhBSAAQR9xIQIgAEFfTQRAIAJBBnQgBXIhACAEQQJqDAELIAQtAAJBP3EgBUEGdHIhBSAAQXBJBEAgBSACQQx0ciEAIARBA2oMAQsgAkESdEGAgPAAcSAELQADQT9xIAVBBnRyciEAIARBBGoLIQICQCAAQcUARgRAQQAhCgwBCyAAQYCAxABGDQFBACEKA0AgAEEwa0EJSw0CQQAhBQNAIABBMGsiDUEKTwRAIAUEQANAIAIgEEYNBgJ/IAIsAAAiAEEATgRAIABB/wFxIQAgAkEBagwBCyACLQABQT9xIQwgAEEfcSENIABBX00EQCANQQZ0IAxyIQAgAkECagwBCyACLQACQT9xIAxBBnRyIQwgAEFwSQRAIAwgDUEMdHIhACACQQNqDAELIA1BEnRBgIDwAHEgAi0AA0E/cSAMQQZ0cnIiAEGAgMQARg0HIAJBBGoLIQIgBUEBayIFDQALCyAKQQFqIQogAEHFAEcNAgwDCyAFrUIKfiIfQiCIpw0DIAIgEEYgH6ciACANaiIFIABJcg0DAn8gAiwAACIAQQBOBEAgAEH/AXEhACACQQFqDAELIAItAAFBP3EhDCAAQR9xIQ0gAEFfTQRAIA1BBnQgDHIhACACQQJqDAELIAItAAJBP3EgDEEGdHIhDCAAQXBJBEAgDCANQQx0ciEAIAJBA2oMAQsgDUESdEGAgPAAcSACLQADQT9xIAxBBnRyciEAIAJBBGoLIQIgAEGAgMQARw0ACwsMAQsgECACayEQDAgLIAFBAk0NAQsgCS8AAEHfpAFHDQEgCSwAAiICQb9/TA0DIAlBAmohCEF+IQoMBQtBAiEAQQAhCiABQQJHDQcgCS0AAEHSAEYNAQwICyAJLQAAQdIARw0CIAEhAAsgCSwAASICQb9/SgRAIAlBAWohCEF/IQogACEBDAMLIAkgAEEBIABBkLXCABDsAwALIAkgAUECIAFBoLXCABDsAwALQQMhAEEAIQogAUEDRg0EQdC0wgAgCUEDENQCDQMgCSwAAyICQb9/SgRAIAlBA2ohCEF9IQoMAQsgCSABQQMgAUGAtcIAEOwDAAsgAkHBAGtB/wFxQRlLDQEgASAKaiEKQQAhAANAIAAgCkcEQCAAIAhqIABBAWohACwAAEEATg0BDAMLCyAHQSBqQgA3AgAgB0IANwIYIAcgCjYCFCAHIAg2AhACQCAHQRBqQQAQH0UEQCAHLQAUIQUCQCAHKAIQIgJFDQAgBygCGCIAIAcvABUgB0EXai0AAEEQdHJBCHQgBXIiBU8NAiAAIAJqLQAAQcEAa0H/AXFBGk8NAiAHKAIcIQQgB0IANwIgIAcgBDYCHCAHIAA2AhggByAFNgIUIAcgAjYCECAHQRBqQQAQHw0KIActABQhBSAHKAIQIgJFDQAgBygCGCEAIAcvABUgB0EXai0AAEEQdHJBCHQgBXIhBQwCCyAFQQFxIQoMBAsMCAsCQAJAIABFDQAgACAFTwRAIAAgBUYNAQwCCyAAIAJqLAAAQb9/TA0BCyAFIABrIRAgACACaiECQQAhBAwBCyACIAUgACAFQZC2wgAQ7AMACwJAAkAgEEUEQEEAIRAMAQtBLiEFQQAhDSACLQAAQS5HDQEgAiAQaiEdIAIhAANAAn8gBcBBAEgEQCAALQABQT9xIRcgBUEfcSEMIAVB/wFxIh5B3wFNBEAgDEEGdCAXciEFIABBAmoMAgsgAC0AAkE/cSAXQQZ0ciEFIB5B8AFJBEAgBSAMQQx0ciEFIABBA2oMAgsgDEESdEGAgPAAcSAALQADQT9xIAVBBnRyciIFQYCAxABGDQMgAEEEagwBCyAFQf8BcSEFIABBAWoLIQACQCAFQd///wBxQcEAa0EaSSAFQTBrQQpJciAFQSFrQQ9Jcg0AAkAgBUE6aw4nAQEBAQEBAQAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAQEBAQEBAAsgBUH7AGtBA0sNAwsgACAdRg0BIAAtAAAhBQwACwALQQEhDSABIQAMBQsgASEAQQEMAwtBACEKCyABIQALQQAhCEEAIQRBACENQQELIQJBACEQCyALIBA2AhwgCyACNgIYIAsgADYCFCALIAk2AhAgCyAKNgIMIAsgCDYCCCALIAQ2AgQgCyANNgIAIAdB4ABqJAAMAgsgCSABIAAgAUGku8IAEOwDAAtBwLXCAEE9IAdB1ABqQbC1wgBBgLbCABCgAgALAkAgCygCAARAIBIgCykCADcCACASQRhqIAtBGGopAgA3AgAgEkEQaiALQRBqKQIANwIAIBJBCGogC0EIaikCADcCAAwBCyASQQI2AgALIAtBIGokACADKAKAASIAQQJGDQAgA0H4AGogFEEYaigCADYCACADQfAAaiAUQRBqKQIANwMAIANB6ABqIBRBCGopAgA3AwAgAyAUKQIANwNgCyATIAMpA2A3AgAgE0EYaiADQfgAaigCADYCACATQRBqIANB8ABqKQMANwIAIBNBCGogA0HoAGopAwA3AgAgAyAcNgJcIAMgGzYCWCADIAA2AjgLIA9BEGooAgAiAEECRwRAIAMgD0EYaikCADcChAELIAMgADYCgAEgA0EwaiADQThqIANBgAFqIA8oAgAgD0EEaigCACAPQQhqKAIAIA9BDGooAgAQIiADKAIwIgEgASgCDEEBajYCDA0HIBkgFkEsaiIWRw0ACwsgGCARQQxqIhFHDQALDAELIAQgAUHYl8IAEKoEAAsgAygCDCIAQYCAgIB4Rg0AIABFDQEgAygCECAAQQEQpwRBAAwDCyADLQAQQQNHDQAgAygCFCIAKAIAIQEgAEEEaigCACICKAIAIgQEQCABIAQRAwALIAIoAgQiBARAIAEgBCACKAIIEKcECyAAQQxBBBCnBAtBAAwBCwJAIAMoAgwiAEGAgICAeEcEQCAARQ0BIAMoAhAgAEEBEKcEQQEMAgsgAy0AEEEDRw0AIAMoAhQiACgCACEBIABBBGooAgAiAigCACIEBEAgASAEEQMACyACKAIEIgQEQCABIAQgAigCCBCnBAsgAEEMQQQQpwQLQQELIANBoAFqJAANAiAGQdgAaiAGQcgAaigCADYCACAGIAYpAkA3A1ACQAJAIA4oAhxB2YzCAEECIA4oAiAoAgwRAgANAAJAAkAgBigCWEEQTwRAQduMwgAgBigCVEEQENQCRQ0BCyAGQQA2AmwgBkEBNgJgIAZB/IzCADYCXCAGQgQ3AmQgDigCHCAOKAIgIAZB3ABqEMQERQ0BDAILIwBBQGoiCCQAIAhBATYCECAIQQA2AgwgBkHQAGoiBCgCBCEDAkACQCAEKAIIIgBBAU0EQCAAQQFHDQEMAgsgA0EBaiwAAEG/f0oNAQtBiIbCAEEqQbCHwgAQ7QIACyAIIAhBEGo2AjwgCEEBNgI4IAhBADYCMCAIIAhBDGo2AjRBACECIAhBMGoiBygCBCEBAkACQAJAIAcoAgBBAWsOAgECAAsgASgCACECDAELIAEoAgAiAUF/RwRAIAFBAWohAgwBCyMAQSBrIgAkACAAQQA2AhggAEEBNgIMIABB1MbCADYCCCAAQgQ3AhAgAEEIakHohcIAEKQDAAsgBygCDCEFIAAhAQJAAkACQCAHKAIIQQFrDgIBAgALIAUoAgAiAUF/RwRAIAFBAWohAQwCCyMAQSBrIgAkACAAQQA2AhggAEEBNgIMIABBiMfCADYCCCAAQgQ3AhAgAEEIakH4hcIAEKQDAAsgBSgCACEBCwJAIAEgAk8EQCAAIAFPDQEgASAAQbSDwgAQqwQACyACIAFBtIPCABCsBAALIAggATYCBCAIIAI2AgAgCCgCBCEBIAQgCCgCACICNgIIIAggBDYCHCAIIAE2AiAgCCAAIAFrNgIkIAhBhI3CADYCKCAIQYWNwgA2AiwgCCABIANqNgIYIAggAiADajYCFCAIQRRqIgVCgYCAgBA3AgACQCAFKAIQIgtFBEAgBSgCGCIHIAUoAhQiAWsiACAFKAIIIgIoAgAgAigCCCIEa0sEQCACIAQgABCTASACKAIIIQQLIAEgB0cEQCACKAIEIQkCQCAAQQNxIgNFBEAgASEADAELIAEhAANAIAQgCWogAC0AADoAACAEQQFqIQQgAEEBaiEAIANBAWsiAw0ACwsgBSABIAdrQXxNBH8gBCAJaiEJQQAhAQNAIAEgCWoiBSAAIAFqIgMtAAA6AAAgBUEBaiADQQFqLQAAOgAAIAVBAmogA0ECai0AADoAACAFQQNqIANBA2otAAA6AAAgAUEEaiEBIANBBGogB0cNAAsgASAEaiEEIAAgAWoFIAALNgIUCyACIAQ2AggMAQsCQCAFKAIMIgEgBSgCCCIHKAIIIgBGBEAgBSgCGCEEIAUoAhQhAwwBCyABIABrIQkgBygCBCAAaiEAIAUoAhghBCAFKAIUIQMDQCADIARGDQIgACADLQAAOgAAIAUgA0EBaiIDNgIUIAcgBygCCEEBajYCCCAAQQFqIQAgCUEBayIJDQALCwJAIAMgBEYNACAEIANrIgAgBygCACABIAtqIgJrSwRAIAcgAiAAEJMBCyAHKAIEIgkgACABaiICaiABIAlqIAsQ1gQgBSACNgIMIAIgBygCCCIJRgRAIAIhAQwBCyAHKAIEIAlqIQAgASAEaiAJayADayEJA0AgAyAERg0CIAAgAy0AADoAACAFIANBAWoiAzYCFCAHIAcoAghBAWo2AgggAEEBaiEAIAlBAWsiCQ0ACyACIQELQQAhCQJAIAQgA2siCkEASA0AIAMgBEYiEA0BQQAhAEGF5cIALQAAGkEBIQkgCkEBEPUDIgJFDQAgCkEDcSEJIAMgBGtBfE0EQCAKQXxxIREDQCAAIAJqIgQgACADaiIPLQAAOgAAIARBAWogD0EBai0AADoAACAEQQJqIA9BAmotAAA6AAAgBEEDaiAPQQNqLQAAOgAAIBEgAEEEaiIARw0ACyAAIANqIQMLIAkEQANAIAAgAmogAy0AADoAACAAQQFqIQAgA0EBaiEDIAlBAWsiCQ0ACwsgBSADNgIUAkAgAEUNACAAIAcoAgAgASALaiIEa0sEQCAHIAQgABCTAQsgBygCBCIDIAAgAWoiBGogASADaiALENYEIAUgBDYCDCAEIAcoAggiA0YNACADIAFrIQEgBygCBCADaiEDIAIhBANAIABFDQEgAyAELQAAOgAAIAcgBygCCEEBajYCCCAEQQFqIQQgA0EBaiEDIAEgAEEBayIARw0ACwsgEA0BIAIgCkEBEKcEDAELIAkgCkGAjsIAENcDAAsgCCgCJCEAAkACQAJAIAgoAhggCCgCFEcEQCAARQ0DIAgoAhwiAUEIaiEEIAgoAiAiAyABKAIIIgJHDQEMAgsgAEUNAiAIKAIcIgFBCGohBCAIKAIgIgMgASgCCCICRg0BCyABKAIEIgEgAmogASADaiAAENYECyAEIAAgAmo2AgALIAhBQGskAAsgBkEIaiEIIAYoAlQhBEEAIQMCQCAGKAJYIgciAEUNACAAIARqIQADQAJAIAAiAkEBayIALAAAIgFBAEgEQCABQT9xAn8gAkECayIALQAAIgHAIgVBQE4EQCABQR9xDAELIAVBP3ECfyACQQNrIgAtAAAiAcAiBUFATgRAIAFBD3EMAQsgBUE/cSACQQRrIgAtAABBB3FBBnRyC0EGdHILQQZ0ciEBCwJAIAFBIEYgAUEJa0EFSXINACABQYABSQ0BAkACQAJAAkAgAUEIdiIFQRZrDhsDBQUFBQUFBQUFAQUFBQUFBQUFBQUFBQUFBQACCyABQYDgAEcNBAwDCyABQf8BcUHz4cIAai0AAEECcUUNAwwCCyAFDQIgAUH/AXFB8+HCAGotAABBAXENAQwCCyABQYAtRw0BCyAAIARHDQEMAgsLIAIgBGshAwsgCCADNgIEIAggBDYCACAGKAIMIgAgB00EQCAARSAAIAdPckUEQCAAIARqLAAAQb9/TA0HCyAGIAA2AlgLIAZBATYCYCAGQbiMwgA2AlwgBkIBNwJoIAYgBkHQAGqtQoCAgIDAO4Q3A0AgBiAGQUBrNgJkIA4oAhwgDigCICAGQdwAahBFRQ0BCyAGKAJQIgBFDQYgBigCVCAAQQEQpwQMBgsgBigCUCIARQ0EIAYoAlQgAEEBEKcEDAQLIAQgDiACKAIMEQAAIRUMBAtBtIvCAEEYQaiMwgAQwwIAC0GQicIAQTcgBkE4akGAicIAQbSKwgAQoAIAC0HcisIAQTBBjIvCABDtAgALQQAhFQsgBkGAAWokACAVC7sHAgR/AX4CfyMAQSBrIgIkAAJAAkACQAJAAkACQCAALQAAQQFrDgMBAgMACyACIAAoAgQ2AgQgAkEIaiIAIAFB8Z3CAEECEKYDIABBhJ7CAEEEIAJBBGpB9J3CABBvIAJBKToAE0GYnsIAQQQgAkETakGInsIAEG9BheXCAC0AABpBFEEBEPUDIgBFDQQgAEEQakHWp8IAKAAANgAAIABBCGpBzqfCACkAADcAACAAQcanwgApAAA3AAAgAkEUNgIcIAIgADYCGCACQRQ2AhRBrJ7CAEEHIAJBFGpBnJ7CABBvEK4CIQAgAigCFCIBRQ0DIAIoAhggAUEBEKcEDAMLIAIgAC0AAToACCACQRRqIgAgASgCHEGznsIAQQQgASgCICgCDBECADoACCAAIAE2AgQgAEEAOgAJIABBADYCACACQQhqIQUjAEFAaiIBJAAgACgCACEEIAACf0EBIAAtAAgNABogACgCBCIDLQAUQQRxRQRAQQEgAygCHEH/w8IAQYnEwgAgBBtBAkEBIAQbIAMoAiAoAgwRAgANARogBSADQZSewgAoAgARAAAMAQsgBEUEQEEBIAMoAhxBisTCAEECIAMoAiAoAgwRAgANARoLIAFBAToAFyABQSBqIANBCGopAgA3AwAgAUEoaiADQRBqKQIANwMAIAFBMGogA0EYaigCADYCACABIAMpAhw3AgggAykCACEGIAFB4MPCADYCOCABIAY3AxggASABQRdqNgIQIAEgAUEIajYCNEEBIAUgAUEYakGUnsIAKAIAEQAADQAaIAEoAjRBhMTCAEECIAEoAjgoAgwRAgALOgAIIAAgBEEBajYCACABQUBrJAAgACIBLQAIIQMCQCABKAIAIgRFBEAgAyEADAELQQEhAAJAIANBAXFFBEAgBEEBRw0BIAEtAAlFDQEgASgCBCIDLQAUQQRxDQEgAygCHEGMxMIAQQEgAygCICgCDBECAEUNAQsgAUEBOgAIDAELIAEgASgCBCIAKAIcQfnAwgBBASAAKAIgKAIMEQIAIgA6AAgLIABBAXEhAAwCCyAAKAIEIQAgAkEUaiIDIAFBt57CAEEFEKYDIANBmJ7CAEEEIABBCGpBiJ7CABBvQayewgBBByAAQbyewgAQbxCuAiEADAELIAIgACgCBCIANgIUIAFB3J7CAEEGQZiewgBBBCAAQQhqQYiewgBB4p7CAEEFIAJBFGpBzJ7CABDDASEACyACQSBqJAAgAAwBC0EBQRRB8JLCABDXAwALCwgAIAAlARAICwgAIAAlARALCwgAIAAlARAPCwQAQQALAgALC43iAhAAQYCAwAALqRBkZXNjcmlwdGlvbigpIGlzIGRlcHJlY2F0ZWQ7IHVzZSBEaXNwbGF5L1VzZXJzL2R5bGFuLy5ydXN0dXAvdG9vbGNoYWlucy9zdGFibGUtYWFyY2g2NC1hcHBsZS1kYXJ3aW4vbGliL3J1c3RsaWIvc3JjL3J1c3QvbGlicmFyeS9hbGxvYy9zcmMvc2xpY2UucnMAKAAQAGsAAACiAAAAGQAAAAMAAAAMAAAABAAAAAQAAAADAAAADAAAAAQAAAAFAAAABAAAAKQAEAAGAAAABwAAAAgAAAAGAAAACQAAAAoAAAAoAAAABAAAAAsAAAAKAAAAKAAAAAQAAAAMAAAACwAAAOAAEAANAAAADgAAAA8AAAANAAAAEAAAABEAAA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EBAEHrzMAACwEBAEHPzcAACwU/AAAAvwBB7M3AAAsBNgBwCXByb2R1Y2VycwIIbGFuZ3VhZ2UBBFJ1c3QADHByb2Nlc3NlZC1ieQMFcnVzdGMdMS44Mi4wIChmNmU1MTFlZWMgMjAyNC0xMC0xNSkGd2FscnVzBjAuMjMuMwx3YXNtLWJpbmRnZW4HMC4yLjEwMABJD3RhcmdldF9mZWF0dXJlcwQrD211dGFibGUtZ2xvYmFscysIc2lnbi1leHQrD3JlZmVyZW5jZS10eXBlcysKbXVsdGl2YWx1ZQ==", typeof document === "undefined" ? require("url").pathToFileURL(__filename).href : _documentCurrentScript && _documentCurrentScript.tagName.toUpperCase() === "SCRIPT" && _documentCurrentScript.src || new URL("forge.cjs.js", document.baseURI).href); } const imports = __wbg_get_imports(); if (typeof module_or_path === "string" || typeof Request === "function" && module_or_path instanceof Request || typeof URL === "function" && module_or_path instanceof URL) { @@ -8300,7 +8113,7 @@ function getNumSh(properties) { } return numSh; } -const jsContent = '(function() {\n "use strict";\n let wasm;\n function addToExternrefTable0(obj) {\n const idx = wasm.__externref_table_alloc();\n wasm.__wbindgen_export_2.set(idx, obj);\n return idx;\n }\n function handleError(f, args) {\n try {\n return f.apply(this, args);\n } catch (e) {\n const idx = addToExternrefTable0(e);\n wasm.__wbindgen_exn_store(idx);\n }\n }\n function debugString(val) {\n const type = typeof val;\n if (type == "number" || type == "boolean" || val == null) {\n return `${val}`;\n }\n if (type == "string") {\n return `"${val}"`;\n }\n if (type == "symbol") {\n const description = val.description;\n if (description == null) {\n return "Symbol";\n } else {\n return `Symbol(${description})`;\n }\n }\n if (type == "function") {\n const name = val.name;\n if (typeof name == "string" && name.length > 0) {\n return `Function(${name})`;\n } else {\n return "Function";\n }\n }\n if (Array.isArray(val)) {\n const length = val.length;\n let debug = "[";\n if (length > 0) {\n debug += debugString(val[0]);\n }\n for (let i2 = 1; i2 < length; i2++) {\n debug += ", " + debugString(val[i2]);\n }\n debug += "]";\n return debug;\n }\n const builtInMatches = /\\[object ([^\\]]+)\\]/.exec(toString.call(val));\n let className;\n if (builtInMatches && builtInMatches.length > 1) {\n className = builtInMatches[1];\n } else {\n return toString.call(val);\n }\n if (className == "Object") {\n try {\n return "Object(" + JSON.stringify(val) + ")";\n } catch (_) {\n return "Object";\n }\n }\n if (val instanceof Error) {\n return `${val.name}: ${val.message}\n${val.stack}`;\n }\n return className;\n }\n let WASM_VECTOR_LEN = 0;\n let cachedUint8ArrayMemory0 = null;\n function getUint8ArrayMemory0() {\n if (cachedUint8ArrayMemory0 === null || cachedUint8ArrayMemory0.byteLength === 0) {\n cachedUint8ArrayMemory0 = new Uint8Array(wasm.memory.buffer);\n }\n return cachedUint8ArrayMemory0;\n }\n const cachedTextEncoder = typeof TextEncoder !== "undefined" ? new TextEncoder("utf-8") : { encode: () => {\n throw Error("TextEncoder not available");\n } };\n const encodeString = typeof cachedTextEncoder.encodeInto === "function" ? function(arg, view) {\n return cachedTextEncoder.encodeInto(arg, view);\n } : function(arg, view) {\n const buf = cachedTextEncoder.encode(arg);\n view.set(buf);\n return {\n read: arg.length,\n written: buf.length\n };\n };\n function passStringToWasm0(arg, malloc, realloc) {\n if (realloc === void 0) {\n const buf = cachedTextEncoder.encode(arg);\n const ptr2 = malloc(buf.length, 1) >>> 0;\n getUint8ArrayMemory0().subarray(ptr2, ptr2 + buf.length).set(buf);\n WASM_VECTOR_LEN = buf.length;\n return ptr2;\n }\n let len = arg.length;\n let ptr = malloc(len, 1) >>> 0;\n const mem = getUint8ArrayMemory0();\n let offset = 0;\n for (; offset < len; offset++) {\n const code = arg.charCodeAt(offset);\n if (code > 127) break;\n mem[ptr + offset] = code;\n }\n if (offset !== len) {\n if (offset !== 0) {\n arg = arg.slice(offset);\n }\n ptr = realloc(ptr, len, len = offset + arg.length * 3, 1) >>> 0;\n const view = getUint8ArrayMemory0().subarray(ptr + offset, ptr + len);\n const ret = encodeString(arg, view);\n offset += ret.written;\n ptr = realloc(ptr, len, offset, 1) >>> 0;\n }\n WASM_VECTOR_LEN = offset;\n return ptr;\n }\n let cachedDataViewMemory0 = null;\n function getDataViewMemory0() {\n if (cachedDataViewMemory0 === null || cachedDataViewMemory0.buffer.detached === true || cachedDataViewMemory0.buffer.detached === void 0 && cachedDataViewMemory0.buffer !== wasm.memory.buffer) {\n cachedDataViewMemory0 = new DataView(wasm.memory.buffer);\n }\n return cachedDataViewMemory0;\n }\n const cachedTextDecoder = typeof TextDecoder !== "undefined" ? new TextDecoder("utf-8", { ignoreBOM: true, fatal: true }) : { decode: () => {\n throw Error("TextDecoder not available");\n } };\n if (typeof TextDecoder !== "undefined") {\n cachedTextDecoder.decode();\n }\n function getStringFromWasm0(ptr, len) {\n ptr = ptr >>> 0;\n return cachedTextDecoder.decode(getUint8ArrayMemory0().subarray(ptr, ptr + len));\n }\n function decode_wlg(bytes, tex_width, tex_height) {\n const ret = wasm.decode_wlg(bytes, tex_width, tex_height);\n return ret;\n }\n function old_sort_splats(max_splats, total_splats, readback, ordering) {\n const ret = wasm.old_sort_splats(max_splats, total_splats, readback, ordering);\n return ret >>> 0;\n }\n function sort_splats(num_splats, readback, ordering) 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Falling back to `WebAssembly.instantiate` which is slower. Original error:\\n", e);\n } else {\n throw e;\n }\n }\n }\n const bytes = await module.arrayBuffer();\n return await WebAssembly.instantiate(bytes, imports);\n } else {\n const instance = await WebAssembly.instantiate(module, imports);\n if (instance instanceof WebAssembly.Instance) {\n return { instance, module };\n } else {\n return instance;\n }\n }\n }\n function __wbg_get_imports() {\n const imports = {};\n imports.wbg = {};\n imports.wbg.__wbg_buffer_09165b52af8c5237 = function(arg0) {\n const ret = arg0.buffer;\n return ret;\n };\n imports.wbg.__wbg_buffer_609cc3eee51ed158 = function(arg0) {\n const ret = arg0.buffer;\n return ret;\n };\n imports.wbg.__wbg_get_b9b93047fe3cf45b = function(arg0, arg1) {\n const ret = arg0[arg1 >>> 0];\n return ret;\n };\n imports.wbg.__wbg_instanceof_Uint8Array_17156bcf118086a9 = function(arg0) {\n let result;\n try {\n result = arg0 instanceof Uint8Array;\n } catch (_) {\n result = false;\n }\n const ret = result;\n return ret;\n };\n imports.wbg.__wbg_length_3b4f022188ae8db6 = function(arg0) {\n const ret = arg0.length;\n return ret;\n };\n imports.wbg.__wbg_length_6ca527665d89694d = function(arg0) {\n const ret = arg0.length;\n return ret;\n };\n imports.wbg.__wbg_length_8cfd2c6409af88ad = function(arg0) {\n const ret = arg0.length;\n return ret;\n };\n imports.wbg.__wbg_length_a446193dc22c12f8 = function(arg0) {\n const ret = arg0.length;\n return ret;\n };\n imports.wbg.__wbg_length_e2d2a49132c1b256 = function(arg0) {\n const ret = arg0.length;\n return ret;\n };\n imports.wbg.__wbg_new_405e22f390576ce2 = function() {\n const ret = new Object();\n return ret;\n };\n imports.wbg.__wbg_new_9fee97a409b32b68 = function(arg0) {\n const ret = new Uint16Array(arg0);\n return ret;\n };\n imports.wbg.__wbg_new_a12002a7f91c75be = function(arg0) {\n const ret = new Uint8Array(arg0);\n return ret;\n };\n imports.wbg.__wbg_new_e3b321dcfef89fc7 = function(arg0) {\n const ret = new Uint32Array(arg0);\n return ret;\n };\n imports.wbg.__wbg_newwithbyteoffsetandlength_e6b7e69acd4c7354 = function(arg0, arg1, arg2) {\n const ret = new Float32Array(arg0, arg1 >>> 0, arg2 >>> 0);\n return ret;\n };\n imports.wbg.__wbg_newwithbyteoffsetandlength_f1dead44d1fc7212 = function(arg0, arg1, arg2) {\n const ret = new Uint32Array(arg0, arg1 >>> 0, arg2 >>> 0);\n return ret;\n };\n imports.wbg.__wbg_newwithlength_5a5efe313cfd59f1 = function(arg0) {\n const ret = new Float32Array(arg0 >>> 0);\n return ret;\n };\n imports.wbg.__wbg_newwithlength_bd3de93688d68fbc = function(arg0) {\n const ret = new Uint32Array(arg0 >>> 0);\n return ret;\n };\n imports.wbg.__wbg_set_10bad9bee0e9c58b = function(arg0, arg1, arg2) {\n arg0.set(arg1, arg2 >>> 0);\n };\n imports.wbg.__wbg_set_65595bdd868b3009 = function(arg0, arg1, arg2) {\n arg0.set(arg1, arg2 >>> 0);\n };\n imports.wbg.__wbg_set_bb8cecf6a62b9f46 = function() {\n return handleError(function(arg0, arg1, arg2) {\n const ret = Reflect.set(arg0, arg1, arg2);\n return ret;\n }, arguments);\n };\n imports.wbg.__wbg_set_d23661d19148b229 = function(arg0, arg1, arg2) {\n arg0.set(arg1, arg2 >>> 0);\n };\n imports.wbg.__wbg_set_f4f1f0daa30696fc = function(arg0, arg1, arg2) {\n arg0.set(arg1, arg2 >>> 0);\n };\n imports.wbg.__wbg_subarray_3aaeec89bb2544f0 = function(arg0, arg1, arg2) {\n const ret = arg0.subarray(arg1 >>> 0, arg2 >>> 0);\n return ret;\n };\n imports.wbg.__wbg_subarray_769e1e0f81bb259b = function(arg0, arg1, arg2) {\n const ret = arg0.subarray(arg1 >>> 0, arg2 >>> 0);\n return ret;\n };\n imports.wbg.__wbindgen_debug_string = function(arg0, arg1) {\n const ret = debugString(arg1);\n const ptr1 = passStringToWasm0(ret, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc);\n const len1 = WASM_VECTOR_LEN;\n getDataViewMemory0().setInt32(arg0 + 4 * 1, len1, true);\n getDataViewMemory0().setInt32(arg0 + 4 * 0, ptr1, true);\n };\n imports.wbg.__wbindgen_init_externref_table = function() {\n const table = wasm.__wbindgen_export_2;\n const offset = 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(Object.getPrototypeOf(module_or_path) === Object.prototype) {\n ({ module_or_path } = module_or_path);\n } else {\n console.warn("using deprecated parameters for the initialization function; pass a single object instead");\n }\n }\n if (typeof module_or_path === "undefined") {\n module_or_path = new 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", self.location.href);\n }\n const imports = __wbg_get_imports();\n if (typeof module_or_path === "string" || typeof Request === "function" && module_or_path instanceof Request || typeof URL === "function" && module_or_path instanceof URL) {\n module_or_path = fetch(module_or_path);\n }\n const { instance, module } = await __wbg_load(await module_or_path, imports);\n return __wbg_finalize_init(instance, module);\n }\n var u8 = Uint8Array, u16 = Uint16Array, i32 = Int32Array;\n var fleb = new u8([\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 1,\n 1,\n 1,\n 1,\n 2,\n 2,\n 2,\n 2,\n 3,\n 3,\n 3,\n 3,\n 4,\n 4,\n 4,\n 4,\n 5,\n 5,\n 5,\n 5,\n 0,\n /* unused */\n 0,\n 0,\n /* impossible */\n 0\n ]);\n var fdeb = new u8([\n 0,\n 0,\n 0,\n 0,\n 1,\n 1,\n 2,\n 2,\n 3,\n 3,\n 4,\n 4,\n 5,\n 5,\n 6,\n 6,\n 7,\n 7,\n 8,\n 8,\n 9,\n 9,\n 10,\n 10,\n 11,\n 11,\n 12,\n 12,\n 13,\n 13,\n /* unused */\n 0,\n 0\n ]);\n var clim = new u8([16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15]);\n var freb = function(eb, start) {\n var b = new u16(31);\n for (var i2 = 0; i2 < 31; ++i2) {\n b[i2] = start += 1 << eb[i2 - 1];\n }\n var r = new i32(b[30]);\n for (var i2 = 1; i2 < 30; ++i2) {\n for (var j = b[i2]; j < b[i2 + 1]; ++j) {\n r[j] = j - b[i2] << 5 | i2;\n }\n }\n return { b, r };\n };\n var _a = freb(fleb, 2), fl = _a.b, revfl = _a.r;\n fl[28] = 258, revfl[258] = 28;\n var _b = freb(fdeb, 0), fd = _b.b;\n var rev = new u16(32768);\n for (var i = 0; i < 32768; ++i) {\n var x = (i & 43690) >> 1 | (i & 21845) << 1;\n x = (x & 52428) >> 2 | (x & 13107) << 2;\n x = (x & 61680) >> 4 | (x & 3855) << 4;\n rev[i] = ((x & 65280) >> 8 | (x & 255) << 8) >> 1;\n }\n var hMap = function(cd, mb, r) {\n var s = cd.length;\n var i2 = 0;\n var l = new u16(mb);\n for (; i2 < s; ++i2) {\n if (cd[i2])\n ++l[cd[i2] - 1];\n }\n var le = new u16(mb);\n for (i2 = 1; i2 < mb; ++i2) {\n le[i2] = le[i2 - 1] + l[i2 - 1] << 1;\n }\n var co;\n if (r) {\n co = new u16(1 << mb);\n var rvb = 15 - mb;\n for (i2 = 0; i2 < s; ++i2) {\n if (cd[i2]) {\n var sv = i2 << 4 | cd[i2];\n var r_1 = mb - cd[i2];\n var v = le[cd[i2] - 1]++ << r_1;\n for (var m = v | (1 << r_1) - 1; v <= m; ++v) {\n co[rev[v] >> rvb] = sv;\n }\n }\n }\n } else {\n co = new u16(s);\n for (i2 = 0; i2 < s; ++i2) {\n if (cd[i2]) {\n co[i2] = rev[le[cd[i2] - 1]++] >> 15 - cd[i2];\n }\n }\n }\n return co;\n };\n var flt = new u8(288);\n for (var i = 0; i < 144; ++i)\n flt[i] = 8;\n for (var i = 144; i < 256; ++i)\n flt[i] = 9;\n for (var i = 256; i < 280; ++i)\n flt[i] = 7;\n for (var i = 280; i < 288; ++i)\n flt[i] = 8;\n var fdt = new u8(32);\n for (var i = 0; i < 32; ++i)\n fdt[i] = 5;\n var flrm = /* @__PURE__ */ hMap(flt, 9, 1);\n var fdrm = /* @__PURE__ */ hMap(fdt, 5, 1);\n var max = function(a) {\n var m = a[0];\n for (var i2 = 1; i2 < a.length; ++i2) {\n if (a[i2] > m)\n m = a[i2];\n }\n return m;\n };\n var bits = function(d, p, m) {\n var o = p / 8 | 0;\n return (d[o] | d[o + 1] << 8) >> (p & 7) & m;\n };\n var bits16 = function(d, p) {\n var o = p / 8 | 0;\n return (d[o] | d[o + 1] << 8 | d[o + 2] << 16) >> (p & 7);\n };\n var shft = function(p) {\n return (p + 7) / 8 | 0;\n };\n var slc = function(v, s, e) {\n if (s == null || s < 0)\n s = 0;\n if (e == null || e > v.length)\n e = v.length;\n return new u8(v.subarray(s, e));\n };\n var ec = [\n "unexpected EOF",\n "invalid block type",\n "invalid length/literal",\n "invalid distance",\n "stream finished",\n "no stream handler",\n ,\n "no callback",\n "invalid UTF-8 data",\n "extra field too long",\n "date not in range 1980-2099",\n "filename too long",\n "stream finishing",\n "invalid zip data"\n // determined by unknown compression method\n ];\n var err = function(ind, msg, nt) {\n var e = new Error(msg || ec[ind]);\n e.code = ind;\n if (Error.captureStackTrace)\n Error.captureStackTrace(e, err);\n if (!nt)\n throw e;\n return e;\n };\n var inflt = function(dat, st, buf, dict) {\n var sl = dat.length, dl = 0;\n if (!sl || st.f && !st.l)\n return buf || new u8(0);\n var noBuf = !buf;\n var resize = noBuf || st.i != 2;\n var noSt = st.i;\n if (noBuf)\n buf = new u8(sl * 3);\n var cbuf = function(l2) {\n var bl = buf.length;\n if (l2 > bl) {\n var nbuf = new u8(Math.max(bl * 2, l2));\n nbuf.set(buf);\n buf = nbuf;\n }\n };\n var final = st.f || 0, pos = st.p || 0, bt = st.b || 0, lm = st.l, dm = st.d, lbt = st.m, dbt = st.n;\n var tbts = sl * 8;\n do {\n if (!lm) {\n final = bits(dat, pos, 1);\n var type = bits(dat, pos + 1, 3);\n pos += 3;\n if (!type) {\n var s = shft(pos) + 4, l = dat[s - 4] | dat[s - 3] << 8, t = s + l;\n if (t > sl) {\n if (noSt)\n err(0);\n break;\n }\n if (resize)\n cbuf(bt + l);\n buf.set(dat.subarray(s, t), bt);\n st.b = bt += l, st.p = pos = t * 8, st.f = final;\n continue;\n } else if (type == 1)\n lm = flrm, dm = fdrm, lbt = 9, dbt = 5;\n else if (type == 2) {\n var hLit = bits(dat, pos, 31) + 257, hcLen = bits(dat, pos + 10, 15) + 4;\n var tl = hLit + bits(dat, pos + 5, 31) + 1;\n pos += 14;\n var ldt = new u8(tl);\n var clt = new u8(19);\n for (var i2 = 0; i2 < hcLen; ++i2) {\n clt[clim[i2]] = bits(dat, pos + i2 * 3, 7);\n }\n pos += hcLen * 3;\n var clb = max(clt), clbmsk = (1 << clb) - 1;\n var clm = hMap(clt, clb, 1);\n for (var i2 = 0; i2 < tl; ) {\n var r = clm[bits(dat, pos, clbmsk)];\n pos += r & 15;\n var s = r >> 4;\n if (s < 16) {\n ldt[i2++] = s;\n } else {\n var c = 0, n = 0;\n if (s == 16)\n n = 3 + bits(dat, pos, 3), pos += 2, c = ldt[i2 - 1];\n else if (s == 17)\n n = 3 + bits(dat, pos, 7), pos += 3;\n else if (s == 18)\n n = 11 + bits(dat, pos, 127), pos += 7;\n while (n--)\n ldt[i2++] = c;\n }\n }\n var lt = ldt.subarray(0, hLit), dt = ldt.subarray(hLit);\n lbt = max(lt);\n dbt = max(dt);\n lm = hMap(lt, lbt, 1);\n dm = hMap(dt, dbt, 1);\n } else\n err(1);\n if (pos > tbts) {\n if (noSt)\n err(0);\n break;\n }\n }\n if (resize)\n cbuf(bt + 131072);\n var lms = (1 << lbt) - 1, dms = (1 << dbt) - 1;\n var lpos = pos;\n for (; ; lpos = pos) {\n var c = lm[bits16(dat, pos) & lms], sym = c >> 4;\n pos += c & 15;\n if (pos > tbts) {\n if (noSt)\n err(0);\n break;\n }\n if (!c)\n err(2);\n if (sym < 256)\n buf[bt++] = sym;\n else if (sym == 256) {\n lpos = pos, lm = null;\n break;\n } else {\n var add2 = sym - 254;\n if (sym > 264) {\n var i2 = sym - 257, b = fleb[i2];\n add2 = bits(dat, pos, (1 << b) - 1) + fl[i2];\n pos += b;\n }\n var d = dm[bits16(dat, pos) & dms], dsym = d >> 4;\n if (!d)\n err(3);\n pos += d & 15;\n var dt = fd[dsym];\n if (dsym > 3) {\n var b = fdeb[dsym];\n dt += bits16(dat, pos) & (1 << b) - 1, pos += b;\n }\n if (pos > tbts) {\n if (noSt)\n err(0);\n break;\n }\n if (resize)\n cbuf(bt + 131072);\n var end = bt + add2;\n if (bt < dt) {\n var shift = dl - dt, dend = Math.min(dt, end);\n if (shift + bt < 0)\n err(3);\n for (; bt < dend; ++bt)\n buf[bt] = dict[shift + bt];\n }\n for (; bt < end; ++bt)\n buf[bt] = buf[bt - dt];\n }\n }\n st.l = lm, st.p = lpos, st.b = bt, st.f = final;\n if (lm)\n final = 1, st.m = lbt, st.d = dm, st.n = dbt;\n } while (!final);\n return bt != buf.length && noBuf ? slc(buf, 0, bt) : buf.subarray(0, bt);\n };\n var et = /* @__PURE__ */ new u8(0);\n var gzs = function(d) {\n if (d[0] != 31 || d[1] != 139 || d[2] != 8)\n err(6, "invalid gzip data");\n var flg = d[3];\n var st = 10;\n if (flg & 4)\n st += (d[10] | d[11] << 8) + 2;\n for (var zs = (flg >> 3 & 1) + (flg >> 4 & 1); zs > 0; zs -= !d[st++])\n ;\n return st + (flg & 2);\n };\n var Inflate = /* @__PURE__ */ function() {\n function Inflate2(opts, cb) {\n if (typeof opts == "function")\n cb = opts, opts = {};\n this.ondata = cb;\n var dict = opts && opts.dictionary && opts.dictionary.subarray(-32768);\n this.s = { i: 0, b: dict ? dict.length : 0 };\n this.o = new u8(32768);\n this.p = new u8(0);\n if (dict)\n this.o.set(dict);\n }\n Inflate2.prototype.e = function(c) {\n if (!this.ondata)\n err(5);\n if (this.d)\n err(4);\n if (!this.p.length)\n this.p = c;\n else if (c.length) {\n var n = new u8(this.p.length + c.length);\n n.set(this.p), n.set(c, this.p.length), this.p = n;\n }\n };\n Inflate2.prototype.c = function(final) {\n this.s.i = +(this.d = final || false);\n var bts = this.s.b;\n var dt = inflt(this.p, this.s, this.o);\n this.ondata(slc(dt, bts, this.s.b), this.d);\n this.o = slc(dt, this.s.b - 32768), this.s.b = this.o.length;\n this.p = slc(this.p, this.s.p / 8 | 0), this.s.p &= 7;\n };\n Inflate2.prototype.push = function(chunk, final) {\n this.e(chunk), this.c(final);\n };\n return Inflate2;\n }();\n var Gunzip = /* @__PURE__ */ function() {\n function Gunzip2(opts, cb) {\n this.v = 1;\n this.r = 0;\n Inflate.call(this, opts, cb);\n }\n Gunzip2.prototype.push = function(chunk, final) {\n Inflate.prototype.e.call(this, chunk);\n this.r += chunk.length;\n if (this.v) {\n var p = this.p.subarray(this.v - 1);\n var s = p.length > 3 ? gzs(p) : 4;\n if (s > p.length) {\n if (!final)\n return;\n } else if (this.v > 1 && this.onmember) {\n this.onmember(this.r - p.length);\n }\n this.p = p.subarray(s), this.v = 0;\n }\n Inflate.prototype.c.call(this, final);\n if (this.s.f && !this.s.l && !final) {\n this.v = shft(this.s.p) + 9;\n this.s = { i: 0 };\n this.o = new u8(0);\n this.push(new u8(0), final);\n }\n };\n return Gunzip2;\n }();\n var td = typeof TextDecoder != "undefined" && /* @__PURE__ */ new TextDecoder();\n var tds = 0;\n try {\n td.decode(et, { stream: true });\n tds = 1;\n } catch (e) {\n }\n /**\n * @license\n * Copyright 2010-2024 Three.js Authors\n * SPDX-License-Identifier: MIT\n */\n const REVISION = "172";\n const FrontSide = 0;\n const BackSide = 1;\n const NormalBlending = 1;\n const AddEquation = 100;\n const SrcAlphaFactor = 204;\n const OneMinusSrcAlphaFactor = 205;\n const LessEqualDepth = 3;\n const MultiplyOperation = 0;\n const UVMapping = 300;\n const RepeatWrapping = 1e3;\n const ClampToEdgeWrapping = 1001;\n const MirroredRepeatWrapping = 1002;\n const NearestFilter = 1003;\n const LinearFilter = 1006;\n const LinearMipmapLinearFilter = 1008;\n const UnsignedByteType = 1009;\n const UnsignedIntType = 1014;\n const FloatType = 1015;\n const RGBAFormat = 1023;\n const RGIntegerFormat = 1031;\n const RGBAIntegerFormat = 1033;\n const NoColorSpace = "";\n const SRGBColorSpace = "srgb";\n const LinearSRGBColorSpace = "srgb-linear";\n const LinearTransfer = "linear";\n const SRGBTransfer = "srgb";\n const KeepStencilOp = 7680;\n const AlwaysStencilFunc = 519;\n const StaticDrawUsage = 35044;\n const GLSL3 = "300 es";\n const WebGLCoordinateSystem = 2e3;\n const WebGPUCoordinateSystem = 2001;\n class EventDispatcher {\n addEventListener(type, listener) {\n if (this._listeners === void 0) this._listeners = {};\n const listeners = this._listeners;\n if (listeners[type] === void 0) {\n listeners[type] = [];\n }\n if (listeners[type].indexOf(listener) === -1) {\n listeners[type].push(listener);\n }\n }\n hasEventListener(type, listener) {\n if (this._listeners === void 0) return false;\n const listeners = this._listeners;\n return listeners[type] !== void 0 && listeners[type].indexOf(listener) !== -1;\n }\n removeEventListener(type, listener) {\n if (this._listeners === void 0) return;\n const listeners = this._listeners;\n const listenerArray = listeners[type];\n if (listenerArray !== void 0) {\n const index = listenerArray.indexOf(listener);\n if (index !== -1) {\n listenerArray.splice(index, 1);\n }\n }\n }\n dispatchEvent(event) {\n if (this._listeners === void 0) return;\n const listeners = this._listeners;\n const listenerArray = listeners[event.type];\n if (listenerArray !== void 0) {\n event.target = this;\n const array = listenerArray.slice(0);\n for (let i2 = 0, l = array.length; i2 < l; i2++) {\n array[i2].call(this, event);\n }\n event.target = null;\n }\n }\n }\n const _lut = ["00", "01", "02", "03", "04", "05", "06", "07", "08", "09", "0a", "0b", "0c", "0d", "0e", "0f", "10", "11", "12", "13", "14", "15", "16", "17", "18", "19", "1a", "1b", "1c", "1d", "1e", "1f", "20", "21", "22", "23", "24", "25", "26", "27", "28", "29", "2a", "2b", "2c", "2d", "2e", "2f", "30", "31", "32", "33", "34", "35", "36", "37", "38", "39", "3a", "3b", "3c", "3d", "3e", "3f", "40", "41", "42", "43", "44", "45", "46", "47", "48", "49", "4a", "4b", "4c", "4d", "4e", "4f", "50", "51", "52", "53", "54", "55", "56", "57", "58", "59", "5a", "5b", "5c", "5d", "5e", "5f", "60", "61", "62", "63", "64", "65", "66", "67", "68", "69", "6a", "6b", "6c", "6d", "6e", "6f", "70", "71", "72", "73", "74", "75", "76", "77", "78", "79", "7a", "7b", "7c", "7d", "7e", "7f", "80", "81", "82", "83", "84", "85", "86", "87", "88", "89", "8a", "8b", "8c", "8d", "8e", "8f", "90", "91", "92", "93", "94", "95", "96", "97", "98", "99", "9a", "9b", "9c", "9d", "9e", "9f", "a0", "a1", "a2", "a3", "a4", "a5", "a6", "a7", "a8", "a9", "aa", "ab", "ac", "ad", "ae", "af", "b0", "b1", "b2", "b3", "b4", "b5", "b6", "b7", "b8", "b9", "ba", "bb", "bc", "bd", "be", "bf", "c0", "c1", "c2", "c3", "c4", "c5", "c6", "c7", "c8", "c9", "ca", "cb", "cc", "cd", "ce", "cf", "d0", "d1", "d2", "d3", "d4", "d5", "d6", "d7", "d8", "d9", "da", "db", "dc", "dd", "de", "df", "e0", "e1", "e2", "e3", "e4", "e5", "e6", "e7", "e8", "e9", "ea", "eb", "ec", "ed", "ee", "ef", "f0", "f1", "f2", "f3", "f4", "f5", "f6", "f7", "f8", "f9", "fa", "fb", "fc", "fd", "fe", "ff"];\n function generateUUID() {\n const d0 = Math.random() * 4294967295 | 0;\n const d1 = Math.random() * 4294967295 | 0;\n const d2 = Math.random() * 4294967295 | 0;\n const d3 = Math.random() * 4294967295 | 0;\n const uuid = _lut[d0 & 255] + _lut[d0 >> 8 & 255] + _lut[d0 >> 16 & 255] + _lut[d0 >> 24 & 255] + "-" + _lut[d1 & 255] + _lut[d1 >> 8 & 255] + "-" + _lut[d1 >> 16 & 15 | 64] + _lut[d1 >> 24 & 255] + "-" + _lut[d2 & 63 | 128] + _lut[d2 >> 8 & 255] + "-" + _lut[d2 >> 16 & 255] + _lut[d2 >> 24 & 255] + _lut[d3 & 255] + _lut[d3 >> 8 & 255] + _lut[d3 >> 16 & 255] + _lut[d3 >> 24 & 255];\n return uuid.toLowerCase();\n }\n function clamp(value, min, max2) {\n return Math.max(min, Math.min(max2, value));\n }\n function euclideanModulo(n, m) {\n return (n % m + m) % m;\n }\n function lerp(x2, y, t) {\n return (1 - t) * x2 + t * y;\n }\n function denormalize(value, array) {\n switch (array.constructor) {\n case Float32Array:\n return value;\n case Uint32Array:\n return value / 4294967295;\n case Uint16Array:\n return value / 65535;\n case Uint8Array:\n return value / 255;\n case Int32Array:\n return Math.max(value / 2147483647, -1);\n case Int16Array:\n return Math.max(value / 32767, -1);\n case Int8Array:\n return Math.max(value / 127, -1);\n default:\n throw new Error("Invalid component type.");\n }\n }\n function normalize$1(value, array) {\n switch (array.constructor) {\n case Float32Array:\n return value;\n case Uint32Array:\n return Math.round(value * 4294967295);\n case Uint16Array:\n return Math.round(value * 65535);\n case Uint8Array:\n return Math.round(value * 255);\n case Int32Array:\n return Math.round(value * 2147483647);\n case Int16Array:\n return Math.round(value * 32767);\n case Int8Array:\n return Math.round(value * 127);\n default:\n throw new Error("Invalid component type.");\n }\n }\n class Vector2 {\n constructor(x2 = 0, y = 0) {\n Vector2.prototype.isVector2 = true;\n this.x = x2;\n this.y = y;\n }\n get width() {\n return this.x;\n }\n set width(value) {\n this.x = value;\n }\n get height() {\n return this.y;\n }\n set height(value) {\n this.y = value;\n }\n set(x2, y) {\n this.x = x2;\n this.y = y;\n return this;\n }\n setScalar(scalar) {\n this.x = scalar;\n this.y = scalar;\n return this;\n }\n setX(x2) {\n this.x = x2;\n return this;\n }\n setY(y) {\n this.y = y;\n return this;\n }\n setComponent(index, value) {\n switch (index) {\n case 0:\n this.x = value;\n break;\n case 1:\n this.y = value;\n break;\n default:\n throw new Error("index is out of range: " + index);\n }\n return this;\n }\n getComponent(index) {\n switch (index) {\n case 0:\n return this.x;\n case 1:\n return this.y;\n default:\n throw new Error("index is out of range: " + index);\n }\n }\n clone() {\n return new this.constructor(this.x, this.y);\n }\n copy(v) {\n this.x = v.x;\n this.y = v.y;\n return this;\n }\n add(v) {\n this.x += v.x;\n this.y += v.y;\n return this;\n }\n addScalar(s) {\n this.x += s;\n this.y += s;\n return this;\n }\n addVectors(a, b) {\n this.x = a.x + b.x;\n this.y = a.y + b.y;\n return this;\n }\n addScaledVector(v, s) {\n this.x += v.x * s;\n this.y += v.y * s;\n return this;\n }\n sub(v) {\n this.x -= v.x;\n this.y -= v.y;\n return this;\n }\n subScalar(s) {\n this.x -= s;\n this.y -= s;\n return this;\n }\n subVectors(a, b) {\n this.x = a.x - b.x;\n this.y = a.y - b.y;\n return this;\n }\n multiply(v) {\n this.x *= v.x;\n this.y *= v.y;\n return this;\n }\n multiplyScalar(scalar) {\n this.x *= scalar;\n this.y *= scalar;\n return this;\n }\n divide(v) {\n this.x /= v.x;\n this.y /= v.y;\n return this;\n }\n divideScalar(scalar) {\n return this.multiplyScalar(1 / scalar);\n }\n applyMatrix3(m) {\n const x2 = this.x, y = this.y;\n const e = m.elements;\n this.x = e[0] * x2 + e[3] * y + e[6];\n this.y = e[1] * x2 + e[4] * y + e[7];\n return this;\n }\n min(v) {\n this.x = Math.min(this.x, v.x);\n this.y = Math.min(this.y, v.y);\n return this;\n }\n max(v) {\n this.x = Math.max(this.x, v.x);\n this.y = Math.max(this.y, v.y);\n return this;\n }\n clamp(min, max2) {\n this.x = clamp(this.x, min.x, max2.x);\n this.y = clamp(this.y, min.y, max2.y);\n return this;\n }\n clampScalar(minVal, maxVal) {\n this.x = clamp(this.x, minVal, maxVal);\n this.y = clamp(this.y, minVal, maxVal);\n return this;\n }\n clampLength(min, max2) {\n const length = this.length();\n return this.divideScalar(length || 1).multiplyScalar(clamp(length, min, max2));\n }\n floor() {\n this.x = Math.floor(this.x);\n this.y = Math.floor(this.y);\n return this;\n }\n ceil() {\n this.x = Math.ceil(this.x);\n this.y = Math.ceil(this.y);\n return this;\n }\n round() {\n this.x = Math.round(this.x);\n this.y = Math.round(this.y);\n return this;\n }\n roundToZero() {\n this.x = Math.trunc(this.x);\n this.y = Math.trunc(this.y);\n return this;\n }\n negate() {\n this.x = -this.x;\n this.y = -this.y;\n return this;\n }\n dot(v) {\n return this.x * v.x + this.y * v.y;\n }\n cross(v) {\n return this.x * v.y - this.y * v.x;\n }\n lengthSq() {\n return this.x * this.x + this.y * this.y;\n }\n length() {\n return Math.sqrt(this.x * this.x + this.y * this.y);\n }\n manhattanLength() {\n return Math.abs(this.x) + Math.abs(this.y);\n }\n normalize() {\n return this.divideScalar(this.length() || 1);\n }\n angle() {\n const angle = Math.atan2(-this.y, -this.x) + Math.PI;\n return angle;\n }\n angleTo(v) {\n const denominator = Math.sqrt(this.lengthSq() * v.lengthSq());\n if (denominator === 0) return Math.PI / 2;\n const theta = this.dot(v) / denominator;\n return Math.acos(clamp(theta, -1, 1));\n }\n distanceTo(v) {\n return Math.sqrt(this.distanceToSquared(v));\n }\n distanceToSquared(v) {\n const dx = this.x - v.x, dy = this.y - v.y;\n return dx * dx + dy * dy;\n }\n manhattanDistanceTo(v) {\n return Math.abs(this.x - v.x) + Math.abs(this.y - v.y);\n }\n setLength(length) {\n return this.normalize().multiplyScalar(length);\n }\n lerp(v, alpha) {\n this.x += (v.x - this.x) * alpha;\n this.y += (v.y - this.y) * alpha;\n return this;\n }\n lerpVectors(v1, v2, alpha) {\n this.x = v1.x + (v2.x - v1.x) * alpha;\n this.y = v1.y + (v2.y - v1.y) * alpha;\n return this;\n }\n equals(v) {\n return v.x === this.x && v.y === this.y;\n }\n fromArray(array, offset = 0) {\n this.x = array[offset];\n this.y = array[offset + 1];\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this.x;\n array[offset + 1] = this.y;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this.x = attribute.getX(index);\n this.y = attribute.getY(index);\n return this;\n }\n rotateAround(center, angle) {\n const c = Math.cos(angle), s = Math.sin(angle);\n const x2 = this.x - center.x;\n const y = this.y - center.y;\n this.x = x2 * c - y * s + center.x;\n this.y = x2 * s + y * c + center.y;\n return this;\n }\n random() {\n this.x = Math.random();\n this.y = Math.random();\n return this;\n }\n *[Symbol.iterator]() {\n yield this.x;\n yield this.y;\n }\n }\n class Matrix3 {\n constructor(n11, n12, n13, n21, n22, n23, n31, n32, n33) {\n Matrix3.prototype.isMatrix3 = true;\n this.elements = [\n 1,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 1\n ];\n if (n11 !== void 0) {\n this.set(n11, n12, n13, n21, n22, n23, n31, n32, n33);\n }\n }\n set(n11, n12, n13, n21, n22, n23, n31, n32, n33) {\n const te = this.elements;\n te[0] = n11;\n te[1] = n21;\n te[2] = n31;\n te[3] = n12;\n te[4] = n22;\n te[5] = n32;\n te[6] = n13;\n te[7] = n23;\n te[8] = n33;\n return this;\n }\n identity() {\n this.set(\n 1,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n copy(m) {\n const te = this.elements;\n const me = m.elements;\n te[0] = me[0];\n te[1] = me[1];\n te[2] = me[2];\n te[3] = me[3];\n te[4] = me[4];\n te[5] = me[5];\n te[6] = me[6];\n te[7] = me[7];\n te[8] = me[8];\n return this;\n }\n extractBasis(xAxis, yAxis, zAxis) {\n xAxis.setFromMatrix3Column(this, 0);\n yAxis.setFromMatrix3Column(this, 1);\n zAxis.setFromMatrix3Column(this, 2);\n return this;\n }\n setFromMatrix4(m) {\n const me = m.elements;\n this.set(\n me[0],\n me[4],\n me[8],\n me[1],\n me[5],\n me[9],\n me[2],\n me[6],\n me[10]\n );\n return this;\n }\n multiply(m) {\n return this.multiplyMatrices(this, m);\n }\n premultiply(m) {\n return this.multiplyMatrices(m, this);\n }\n multiplyMatrices(a, b) {\n const ae = a.elements;\n const be = b.elements;\n const te = this.elements;\n const a11 = ae[0], a12 = ae[3], a13 = ae[6];\n const a21 = ae[1], a22 = ae[4], a23 = ae[7];\n const a31 = ae[2], a32 = ae[5], a33 = ae[8];\n const b11 = be[0], b12 = be[3], b13 = be[6];\n const b21 = be[1], b22 = be[4], b23 = be[7];\n const b31 = be[2], b32 = be[5], b33 = be[8];\n te[0] = a11 * b11 + a12 * b21 + a13 * b31;\n te[3] = a11 * b12 + a12 * b22 + a13 * b32;\n te[6] = a11 * b13 + a12 * b23 + a13 * b33;\n te[1] = a21 * b11 + a22 * b21 + a23 * b31;\n te[4] = a21 * b12 + a22 * b22 + a23 * b32;\n te[7] = a21 * b13 + a22 * b23 + a23 * b33;\n te[2] = a31 * b11 + a32 * b21 + a33 * b31;\n te[5] = a31 * b12 + a32 * b22 + a33 * b32;\n te[8] = a31 * b13 + a32 * b23 + a33 * b33;\n return this;\n }\n multiplyScalar(s) {\n const te = this.elements;\n te[0] *= s;\n te[3] *= s;\n te[6] *= s;\n te[1] *= s;\n te[4] *= s;\n te[7] *= s;\n te[2] *= s;\n te[5] *= s;\n te[8] *= s;\n return this;\n }\n determinant() {\n const te = this.elements;\n const a = te[0], b = te[1], c = te[2], d = te[3], e = te[4], f = te[5], g = te[6], h = te[7], i2 = te[8];\n return a * e * i2 - a * f * h - b * d * i2 + b * f * g + c * d * h - c * e * g;\n }\n invert() {\n const te = this.elements, n11 = te[0], n21 = te[1], n31 = te[2], n12 = te[3], n22 = te[4], n32 = te[5], n13 = te[6], n23 = te[7], n33 = te[8], t11 = n33 * n22 - n32 * n23, t12 = n32 * n13 - n33 * n12, t13 = n23 * n12 - n22 * n13, det = n11 * t11 + n21 * t12 + n31 * t13;\n if (det === 0) return this.set(0, 0, 0, 0, 0, 0, 0, 0, 0);\n const detInv = 1 / det;\n te[0] = t11 * detInv;\n te[1] = (n31 * n23 - n33 * n21) * detInv;\n te[2] = (n32 * n21 - n31 * n22) * detInv;\n te[3] = t12 * detInv;\n te[4] = (n33 * n11 - n31 * n13) * detInv;\n te[5] = (n31 * n12 - n32 * n11) * detInv;\n te[6] = t13 * detInv;\n te[7] = (n21 * n13 - n23 * n11) * detInv;\n te[8] = (n22 * n11 - n21 * n12) * detInv;\n return this;\n }\n transpose() {\n let tmp;\n const m = this.elements;\n tmp = m[1];\n m[1] = m[3];\n m[3] = tmp;\n tmp = m[2];\n m[2] = m[6];\n m[6] = tmp;\n tmp = m[5];\n m[5] = m[7];\n m[7] = tmp;\n return this;\n }\n getNormalMatrix(matrix4) {\n return this.setFromMatrix4(matrix4).invert().transpose();\n }\n transposeIntoArray(r) {\n const m = this.elements;\n r[0] = m[0];\n r[1] = m[3];\n r[2] = m[6];\n r[3] = m[1];\n r[4] = m[4];\n r[5] = m[7];\n r[6] = m[2];\n r[7] = m[5];\n r[8] = m[8];\n return this;\n }\n setUvTransform(tx, ty, sx, sy, rotation, cx, cy) {\n const c = Math.cos(rotation);\n const s = Math.sin(rotation);\n this.set(\n sx * c,\n sx * s,\n -sx * (c * cx + s * cy) + cx + tx,\n -sy * s,\n sy * c,\n -sy * (-s * cx + c * cy) + cy + ty,\n 0,\n 0,\n 1\n );\n return this;\n }\n //\n scale(sx, sy) {\n this.premultiply(_m3.makeScale(sx, sy));\n return this;\n }\n rotate(theta) {\n this.premultiply(_m3.makeRotation(-theta));\n return this;\n }\n translate(tx, ty) {\n this.premultiply(_m3.makeTranslation(tx, ty));\n return this;\n }\n // for 2D Transforms\n makeTranslation(x2, y) {\n if (x2.isVector2) {\n this.set(\n 1,\n 0,\n x2.x,\n 0,\n 1,\n x2.y,\n 0,\n 0,\n 1\n );\n } else {\n this.set(\n 1,\n 0,\n x2,\n 0,\n 1,\n y,\n 0,\n 0,\n 1\n );\n }\n return this;\n }\n makeRotation(theta) {\n const c = Math.cos(theta);\n const s = Math.sin(theta);\n this.set(\n c,\n -s,\n 0,\n s,\n c,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeScale(x2, y) {\n this.set(\n x2,\n 0,\n 0,\n 0,\n y,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n //\n equals(matrix) {\n const te = this.elements;\n const me = matrix.elements;\n for (let i2 = 0; i2 < 9; i2++) {\n if (te[i2] !== me[i2]) return false;\n }\n return true;\n }\n fromArray(array, offset = 0) {\n for (let i2 = 0; i2 < 9; i2++) {\n this.elements[i2] = array[i2 + offset];\n }\n return this;\n }\n toArray(array = [], offset = 0) {\n const te = this.elements;\n array[offset] = te[0];\n array[offset + 1] = te[1];\n array[offset + 2] = te[2];\n array[offset + 3] = te[3];\n array[offset + 4] = te[4];\n array[offset + 5] = te[5];\n array[offset + 6] = te[6];\n array[offset + 7] = te[7];\n array[offset + 8] = te[8];\n return array;\n }\n clone() {\n return new this.constructor().fromArray(this.elements);\n }\n }\n const _m3 = /* @__PURE__ */ new Matrix3();\n function arrayNeedsUint32(array) {\n for (let i2 = array.length - 1; i2 >= 0; --i2) {\n if (array[i2] >= 65535) return true;\n }\n return false;\n }\n function createElementNS(name) {\n return document.createElementNS("http://www.w3.org/1999/xhtml", name);\n }\n const LINEAR_REC709_TO_XYZ = /* @__PURE__ */ new Matrix3().set(\n 0.4123908,\n 0.3575843,\n 0.1804808,\n 0.212639,\n 0.7151687,\n 0.0721923,\n 0.0193308,\n 0.1191948,\n 0.9505322\n );\n const XYZ_TO_LINEAR_REC709 = /* @__PURE__ */ new Matrix3().set(\n 3.2409699,\n -1.5373832,\n -0.4986108,\n -0.9692436,\n 1.8759675,\n 0.0415551,\n 0.0556301,\n -0.203977,\n 1.0569715\n );\n function createColorManagement() {\n const ColorManagement2 = {\n enabled: true,\n workingColorSpace: LinearSRGBColorSpace,\n /**\n * Implementations of supported color spaces.\n *\n * Required:\n * - primaries: chromaticity coordinates [ rx ry gx gy bx by ]\n * - whitePoint: reference white [ x y ]\n * - transfer: transfer function (pre-defined)\n * - toXYZ: Matrix3 RGB to XYZ transform\n * - fromXYZ: Matrix3 XYZ to RGB transform\n * - luminanceCoefficients: RGB luminance coefficients\n *\n * Optional:\n * - outputColorSpaceConfig: { drawingBufferColorSpace: ColorSpace }\n * - workingColorSpaceConfig: { unpackColorSpace: ColorSpace }\n *\n * Reference:\n * - https://www.russellcottrell.com/photo/matrixCalculator.htm\n */\n spaces: {},\n convert: function(color, sourceColorSpace, targetColorSpace) {\n if (this.enabled === false || sourceColorSpace === targetColorSpace || !sourceColorSpace || !targetColorSpace) {\n return color;\n }\n if (this.spaces[sourceColorSpace].transfer === SRGBTransfer) {\n color.r = SRGBToLinear(color.r);\n color.g = SRGBToLinear(color.g);\n color.b = SRGBToLinear(color.b);\n }\n if (this.spaces[sourceColorSpace].primaries !== this.spaces[targetColorSpace].primaries) {\n color.applyMatrix3(this.spaces[sourceColorSpace].toXYZ);\n color.applyMatrix3(this.spaces[targetColorSpace].fromXYZ);\n }\n if (this.spaces[targetColorSpace].transfer === SRGBTransfer) {\n color.r = LinearToSRGB(color.r);\n color.g = LinearToSRGB(color.g);\n color.b = LinearToSRGB(color.b);\n }\n return color;\n },\n fromWorkingColorSpace: function(color, targetColorSpace) {\n return this.convert(color, this.workingColorSpace, targetColorSpace);\n },\n toWorkingColorSpace: function(color, sourceColorSpace) {\n return this.convert(color, sourceColorSpace, this.workingColorSpace);\n },\n getPrimaries: function(colorSpace) {\n return this.spaces[colorSpace].primaries;\n },\n getTransfer: function(colorSpace) {\n if (colorSpace === NoColorSpace) return LinearTransfer;\n return this.spaces[colorSpace].transfer;\n },\n getLuminanceCoefficients: function(target, colorSpace = this.workingColorSpace) {\n return target.fromArray(this.spaces[colorSpace].luminanceCoefficients);\n },\n define: function(colorSpaces) {\n Object.assign(this.spaces, colorSpaces);\n },\n // Internal APIs\n _getMatrix: function(targetMatrix, sourceColorSpace, targetColorSpace) {\n return targetMatrix.copy(this.spaces[sourceColorSpace].toXYZ).multiply(this.spaces[targetColorSpace].fromXYZ);\n },\n _getDrawingBufferColorSpace: function(colorSpace) {\n return this.spaces[colorSpace].outputColorSpaceConfig.drawingBufferColorSpace;\n },\n _getUnpackColorSpace: function(colorSpace = this.workingColorSpace) {\n return this.spaces[colorSpace].workingColorSpaceConfig.unpackColorSpace;\n }\n };\n const REC709_PRIMARIES = [0.64, 0.33, 0.3, 0.6, 0.15, 0.06];\n const REC709_LUMINANCE_COEFFICIENTS = [0.2126, 0.7152, 0.0722];\n const D65 = [0.3127, 0.329];\n ColorManagement2.define({\n [LinearSRGBColorSpace]: {\n primaries: REC709_PRIMARIES,\n whitePoint: D65,\n transfer: LinearTransfer,\n toXYZ: LINEAR_REC709_TO_XYZ,\n fromXYZ: XYZ_TO_LINEAR_REC709,\n luminanceCoefficients: REC709_LUMINANCE_COEFFICIENTS,\n workingColorSpaceConfig: { unpackColorSpace: SRGBColorSpace },\n outputColorSpaceConfig: { drawingBufferColorSpace: SRGBColorSpace }\n },\n [SRGBColorSpace]: {\n primaries: REC709_PRIMARIES,\n whitePoint: D65,\n transfer: SRGBTransfer,\n toXYZ: LINEAR_REC709_TO_XYZ,\n fromXYZ: XYZ_TO_LINEAR_REC709,\n luminanceCoefficients: REC709_LUMINANCE_COEFFICIENTS,\n outputColorSpaceConfig: { drawingBufferColorSpace: SRGBColorSpace }\n }\n });\n return ColorManagement2;\n }\n const ColorManagement = /* @__PURE__ */ createColorManagement();\n function SRGBToLinear(c) {\n return c < 0.04045 ? c * 0.0773993808 : Math.pow(c * 0.9478672986 + 0.0521327014, 2.4);\n }\n function LinearToSRGB(c) {\n return c < 31308e-7 ? c * 12.92 : 1.055 * Math.pow(c, 0.41666) - 0.055;\n }\n let _canvas;\n class ImageUtils {\n static getDataURL(image) {\n if (/^data:/i.test(image.src)) {\n return image.src;\n }\n if (typeof HTMLCanvasElement === "undefined") {\n return image.src;\n }\n let canvas;\n if (image instanceof HTMLCanvasElement) {\n canvas = image;\n } else {\n if (_canvas === void 0) _canvas = createElementNS("canvas");\n _canvas.width = image.width;\n _canvas.height = image.height;\n const context = _canvas.getContext("2d");\n if (image instanceof ImageData) {\n context.putImageData(image, 0, 0);\n } else {\n context.drawImage(image, 0, 0, image.width, image.height);\n }\n canvas = _canvas;\n }\n if (canvas.width > 2048 || canvas.height > 2048) {\n console.warn("THREE.ImageUtils.getDataURL: Image converted to jpg for performance reasons", image);\n return canvas.toDataURL("image/jpeg", 0.6);\n } else {\n return canvas.toDataURL("image/png");\n }\n }\n static sRGBToLinear(image) {\n if (typeof HTMLImageElement !== "undefined" && image instanceof HTMLImageElement || typeof HTMLCanvasElement !== "undefined" && image instanceof HTMLCanvasElement || typeof ImageBitmap !== "undefined" && image instanceof ImageBitmap) {\n const canvas = createElementNS("canvas");\n canvas.width = image.width;\n canvas.height = image.height;\n const context = canvas.getContext("2d");\n context.drawImage(image, 0, 0, image.width, image.height);\n const imageData = context.getImageData(0, 0, image.width, image.height);\n const data = imageData.data;\n for (let i2 = 0; i2 < data.length; i2++) {\n data[i2] = SRGBToLinear(data[i2] / 255) * 255;\n }\n context.putImageData(imageData, 0, 0);\n return canvas;\n } else if (image.data) {\n const data = image.data.slice(0);\n for (let i2 = 0; i2 < data.length; i2++) {\n if (data instanceof Uint8Array || data instanceof Uint8ClampedArray) {\n data[i2] = Math.floor(SRGBToLinear(data[i2] / 255) * 255);\n } else {\n data[i2] = SRGBToLinear(data[i2]);\n }\n }\n return {\n data,\n width: image.width,\n height: image.height\n };\n } else {\n console.warn("THREE.ImageUtils.sRGBToLinear(): Unsupported image type. No color space conversion applied.");\n return image;\n }\n }\n }\n let _sourceId = 0;\n class Source {\n constructor(data = null) {\n this.isSource = true;\n Object.defineProperty(this, "id", { value: _sourceId++ });\n this.uuid = generateUUID();\n this.data = data;\n this.dataReady = true;\n this.version = 0;\n }\n set needsUpdate(value) {\n if (value === true) this.version++;\n }\n toJSON(meta) {\n const isRootObject = meta === void 0 || typeof meta === "string";\n if (!isRootObject && meta.images[this.uuid] !== void 0) {\n return meta.images[this.uuid];\n }\n const output = {\n uuid: this.uuid,\n url: ""\n };\n const data = this.data;\n if (data !== null) {\n let url;\n if (Array.isArray(data)) {\n url = [];\n for (let i2 = 0, l = data.length; i2 < l; i2++) {\n if (data[i2].isDataTexture) {\n url.push(serializeImage(data[i2].image));\n } else {\n url.push(serializeImage(data[i2]));\n }\n }\n } else {\n url = serializeImage(data);\n }\n output.url = url;\n }\n if (!isRootObject) {\n meta.images[this.uuid] = output;\n }\n return output;\n }\n }\n function serializeImage(image) {\n if (typeof HTMLImageElement !== "undefined" && image instanceof HTMLImageElement || typeof HTMLCanvasElement !== "undefined" && image instanceof HTMLCanvasElement || typeof ImageBitmap !== "undefined" && image instanceof ImageBitmap) {\n return ImageUtils.getDataURL(image);\n } else {\n if (image.data) {\n return {\n data: Array.from(image.data),\n width: image.width,\n height: image.height,\n type: image.data.constructor.name\n };\n } else {\n console.warn("THREE.Texture: Unable to serialize Texture.");\n return {};\n }\n }\n }\n let _textureId = 0;\n class Texture extends EventDispatcher {\n constructor(image = Texture.DEFAULT_IMAGE, mapping = Texture.DEFAULT_MAPPING, wrapS = ClampToEdgeWrapping, wrapT = ClampToEdgeWrapping, magFilter = LinearFilter, minFilter = LinearMipmapLinearFilter, format = RGBAFormat, type = UnsignedByteType, anisotropy = Texture.DEFAULT_ANISOTROPY, colorSpace = NoColorSpace) {\n super();\n this.isTexture = true;\n Object.defineProperty(this, "id", { value: _textureId++ });\n this.uuid = generateUUID();\n this.name = "";\n this.source = new Source(image);\n this.mipmaps = [];\n this.mapping = mapping;\n this.channel = 0;\n this.wrapS = wrapS;\n this.wrapT = wrapT;\n this.magFilter = magFilter;\n this.minFilter = minFilter;\n this.anisotropy = anisotropy;\n this.format = format;\n this.internalFormat = null;\n this.type = type;\n this.offset = new Vector2(0, 0);\n this.repeat = new Vector2(1, 1);\n this.center = new Vector2(0, 0);\n this.rotation = 0;\n this.matrixAutoUpdate = true;\n this.matrix = new Matrix3();\n this.generateMipmaps = true;\n this.premultiplyAlpha = false;\n this.flipY = true;\n this.unpackAlignment = 4;\n this.colorSpace = colorSpace;\n this.userData = {};\n this.version = 0;\n this.onUpdate = null;\n this.renderTarget = null;\n this.isRenderTargetTexture = false;\n this.pmremVersion = 0;\n }\n get image() {\n return this.source.data;\n }\n set image(value = null) {\n this.source.data = value;\n }\n updateMatrix() {\n this.matrix.setUvTransform(this.offset.x, this.offset.y, this.repeat.x, this.repeat.y, this.rotation, this.center.x, this.center.y);\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(source) {\n this.name = source.name;\n this.source = source.source;\n this.mipmaps = source.mipmaps.slice(0);\n this.mapping = source.mapping;\n this.channel = source.channel;\n this.wrapS = source.wrapS;\n this.wrapT = source.wrapT;\n this.magFilter = source.magFilter;\n this.minFilter = source.minFilter;\n this.anisotropy = source.anisotropy;\n this.format = source.format;\n this.internalFormat = source.internalFormat;\n this.type = source.type;\n this.offset.copy(source.offset);\n this.repeat.copy(source.repeat);\n this.center.copy(source.center);\n this.rotation = source.rotation;\n this.matrixAutoUpdate = source.matrixAutoUpdate;\n this.matrix.copy(source.matrix);\n this.generateMipmaps = source.generateMipmaps;\n this.premultiplyAlpha = source.premultiplyAlpha;\n this.flipY = source.flipY;\n this.unpackAlignment = source.unpackAlignment;\n this.colorSpace = source.colorSpace;\n this.renderTarget = source.renderTarget;\n this.isRenderTargetTexture = source.isRenderTargetTexture;\n this.userData = JSON.parse(JSON.stringify(source.userData));\n this.needsUpdate = true;\n return this;\n }\n toJSON(meta) {\n const isRootObject = meta === void 0 || typeof meta === "string";\n if (!isRootObject && meta.textures[this.uuid] !== void 0) {\n return meta.textures[this.uuid];\n }\n const output = {\n metadata: {\n version: 4.6,\n type: "Texture",\n generator: "Texture.toJSON"\n },\n uuid: this.uuid,\n name: this.name,\n image: this.source.toJSON(meta).uuid,\n mapping: this.mapping,\n channel: this.channel,\n repeat: [this.repeat.x, this.repeat.y],\n offset: [this.offset.x, this.offset.y],\n center: [this.center.x, this.center.y],\n rotation: this.rotation,\n wrap: [this.wrapS, this.wrapT],\n format: this.format,\n internalFormat: this.internalFormat,\n type: this.type,\n colorSpace: this.colorSpace,\n minFilter: this.minFilter,\n magFilter: this.magFilter,\n anisotropy: this.anisotropy,\n flipY: this.flipY,\n generateMipmaps: this.generateMipmaps,\n premultiplyAlpha: this.premultiplyAlpha,\n unpackAlignment: this.unpackAlignment\n };\n if (Object.keys(this.userData).length > 0) output.userData = this.userData;\n if (!isRootObject) {\n meta.textures[this.uuid] = output;\n }\n return output;\n }\n dispose() {\n this.dispatchEvent({ type: "dispose" });\n }\n transformUv(uv) {\n if (this.mapping !== UVMapping) return uv;\n uv.applyMatrix3(this.matrix);\n if (uv.x < 0 || uv.x > 1) {\n switch (this.wrapS) {\n case RepeatWrapping:\n uv.x = uv.x - Math.floor(uv.x);\n break;\n case ClampToEdgeWrapping:\n uv.x = uv.x < 0 ? 0 : 1;\n break;\n case MirroredRepeatWrapping:\n if (Math.abs(Math.floor(uv.x) % 2) === 1) {\n uv.x = Math.ceil(uv.x) - uv.x;\n } else {\n uv.x = uv.x - Math.floor(uv.x);\n }\n break;\n }\n }\n if (uv.y < 0 || uv.y > 1) {\n switch (this.wrapT) {\n case RepeatWrapping:\n uv.y = uv.y - Math.floor(uv.y);\n break;\n case ClampToEdgeWrapping:\n uv.y = uv.y < 0 ? 0 : 1;\n break;\n case MirroredRepeatWrapping:\n if (Math.abs(Math.floor(uv.y) % 2) === 1) {\n uv.y = Math.ceil(uv.y) - uv.y;\n } else {\n uv.y = uv.y - Math.floor(uv.y);\n }\n break;\n }\n }\n if (this.flipY) {\n uv.y = 1 - uv.y;\n }\n return uv;\n }\n set needsUpdate(value) {\n if (value === true) {\n this.version++;\n this.source.needsUpdate = true;\n }\n }\n set needsPMREMUpdate(value) {\n if (value === true) {\n this.pmremVersion++;\n }\n }\n }\n Texture.DEFAULT_IMAGE = null;\n Texture.DEFAULT_MAPPING = UVMapping;\n Texture.DEFAULT_ANISOTROPY = 1;\n class Vector4 {\n constructor(x2 = 0, y = 0, z = 0, w = 1) {\n Vector4.prototype.isVector4 = true;\n this.x = x2;\n this.y = y;\n this.z = z;\n this.w = w;\n }\n get width() {\n return this.z;\n }\n set width(value) {\n this.z = value;\n }\n get height() {\n return this.w;\n }\n set height(value) {\n this.w = value;\n }\n set(x2, y, z, w) {\n this.x = x2;\n this.y = y;\n this.z = z;\n this.w = w;\n return this;\n }\n setScalar(scalar) {\n this.x = scalar;\n this.y = scalar;\n this.z = scalar;\n this.w = scalar;\n return this;\n }\n setX(x2) {\n this.x = x2;\n return this;\n }\n setY(y) {\n this.y = y;\n return this;\n }\n setZ(z) {\n this.z = z;\n return this;\n }\n setW(w) {\n this.w = w;\n return this;\n }\n setComponent(index, value) {\n switch (index) {\n case 0:\n this.x = value;\n break;\n case 1:\n this.y = value;\n break;\n case 2:\n this.z = value;\n break;\n case 3:\n this.w = value;\n break;\n default:\n throw new Error("index is out of range: " + index);\n }\n return this;\n }\n getComponent(index) {\n switch (index) {\n case 0:\n return this.x;\n case 1:\n return this.y;\n case 2:\n return this.z;\n case 3:\n return this.w;\n default:\n throw new Error("index is out of range: " + index);\n }\n }\n clone() {\n return new this.constructor(this.x, this.y, this.z, this.w);\n }\n copy(v) {\n this.x = v.x;\n this.y = v.y;\n this.z = v.z;\n this.w = v.w !== void 0 ? v.w : 1;\n return this;\n }\n add(v) {\n this.x += v.x;\n this.y += v.y;\n this.z += v.z;\n this.w += v.w;\n return this;\n }\n addScalar(s) {\n this.x += s;\n this.y += s;\n this.z += s;\n this.w += s;\n return this;\n }\n addVectors(a, b) {\n this.x = a.x + b.x;\n this.y = a.y + b.y;\n this.z = a.z + b.z;\n this.w = a.w + b.w;\n return this;\n }\n addScaledVector(v, s) {\n this.x += v.x * s;\n this.y += v.y * s;\n this.z += v.z * s;\n this.w += v.w * s;\n return this;\n }\n sub(v) {\n this.x -= v.x;\n this.y -= v.y;\n this.z -= v.z;\n this.w -= v.w;\n return this;\n }\n subScalar(s) {\n this.x -= s;\n this.y -= s;\n this.z -= s;\n this.w -= s;\n return this;\n }\n subVectors(a, b) {\n this.x = a.x - b.x;\n this.y = a.y - b.y;\n this.z = a.z - b.z;\n this.w = a.w - b.w;\n return this;\n }\n multiply(v) {\n this.x *= v.x;\n this.y *= v.y;\n this.z *= v.z;\n this.w *= v.w;\n return this;\n }\n multiplyScalar(scalar) {\n this.x *= scalar;\n this.y *= scalar;\n this.z *= scalar;\n this.w *= scalar;\n return this;\n }\n applyMatrix4(m) {\n const x2 = this.x, y = this.y, z = this.z, w = this.w;\n const e = m.elements;\n this.x = e[0] * x2 + e[4] * y + e[8] * z + e[12] * w;\n this.y = e[1] * x2 + e[5] * y + e[9] * z + e[13] * w;\n this.z = e[2] * x2 + e[6] * y + e[10] * z + e[14] * w;\n this.w = e[3] * x2 + e[7] * y + e[11] * z + e[15] * w;\n return this;\n }\n divide(v) {\n this.x /= v.x;\n this.y /= v.y;\n this.z /= v.z;\n this.w /= v.w;\n return this;\n }\n divideScalar(scalar) {\n return this.multiplyScalar(1 / scalar);\n }\n setAxisAngleFromQuaternion(q) {\n this.w = 2 * Math.acos(q.w);\n const s = Math.sqrt(1 - q.w * q.w);\n if (s < 1e-4) {\n this.x = 1;\n this.y = 0;\n this.z = 0;\n } else {\n this.x = q.x / s;\n this.y = q.y / s;\n this.z = q.z / s;\n }\n return this;\n }\n setAxisAngleFromRotationMatrix(m) {\n let angle, x2, y, z;\n const epsilon = 0.01, epsilon2 = 0.1, te = m.elements, m11 = te[0], m12 = te[4], m13 = te[8], m21 = te[1], m22 = te[5], m23 = te[9], m31 = te[2], m32 = te[6], m33 = te[10];\n if (Math.abs(m12 - m21) < epsilon && Math.abs(m13 - m31) < epsilon && Math.abs(m23 - m32) < epsilon) {\n if (Math.abs(m12 + m21) < epsilon2 && Math.abs(m13 + m31) < epsilon2 && Math.abs(m23 + m32) < epsilon2 && Math.abs(m11 + m22 + m33 - 3) < epsilon2) {\n this.set(1, 0, 0, 0);\n return this;\n }\n angle = Math.PI;\n const xx = (m11 + 1) / 2;\n const yy = (m22 + 1) / 2;\n const zz = (m33 + 1) / 2;\n const xy = (m12 + m21) / 4;\n const xz = (m13 + m31) / 4;\n const yz = (m23 + m32) / 4;\n if (xx > yy && xx > zz) {\n if (xx < epsilon) {\n x2 = 0;\n y = 0.707106781;\n z = 0.707106781;\n } else {\n x2 = Math.sqrt(xx);\n y = xy / x2;\n z = xz / x2;\n }\n } else if (yy > zz) {\n if (yy < epsilon) {\n x2 = 0.707106781;\n y = 0;\n z = 0.707106781;\n } else {\n y = Math.sqrt(yy);\n x2 = xy / y;\n z = yz / y;\n }\n } else {\n if (zz < epsilon) {\n x2 = 0.707106781;\n y = 0.707106781;\n z = 0;\n } else {\n z = Math.sqrt(zz);\n x2 = xz / z;\n y = yz / z;\n }\n }\n this.set(x2, y, z, angle);\n return this;\n }\n let s = Math.sqrt((m32 - m23) * (m32 - m23) + (m13 - m31) * (m13 - m31) + (m21 - m12) * (m21 - m12));\n if (Math.abs(s) < 1e-3) s = 1;\n this.x = (m32 - m23) / s;\n this.y = (m13 - m31) / s;\n this.z = (m21 - m12) / s;\n this.w = Math.acos((m11 + m22 + m33 - 1) / 2);\n return this;\n }\n setFromMatrixPosition(m) {\n const e = m.elements;\n this.x = e[12];\n this.y = e[13];\n this.z = e[14];\n this.w = e[15];\n return this;\n }\n min(v) {\n this.x = Math.min(this.x, v.x);\n this.y = Math.min(this.y, v.y);\n this.z = Math.min(this.z, v.z);\n this.w = Math.min(this.w, v.w);\n return this;\n }\n max(v) {\n this.x = Math.max(this.x, v.x);\n this.y = Math.max(this.y, v.y);\n this.z = Math.max(this.z, v.z);\n this.w = Math.max(this.w, v.w);\n return this;\n }\n clamp(min, max2) {\n this.x = clamp(this.x, min.x, max2.x);\n this.y = clamp(this.y, min.y, max2.y);\n this.z = clamp(this.z, min.z, max2.z);\n this.w = clamp(this.w, min.w, max2.w);\n return this;\n }\n clampScalar(minVal, maxVal) {\n this.x = clamp(this.x, minVal, maxVal);\n this.y = clamp(this.y, minVal, maxVal);\n this.z = clamp(this.z, minVal, maxVal);\n this.w = clamp(this.w, minVal, maxVal);\n return this;\n }\n clampLength(min, max2) {\n const length = this.length();\n return this.divideScalar(length || 1).multiplyScalar(clamp(length, min, max2));\n }\n floor() {\n this.x = Math.floor(this.x);\n this.y = Math.floor(this.y);\n this.z = Math.floor(this.z);\n this.w = Math.floor(this.w);\n return this;\n }\n ceil() {\n this.x = Math.ceil(this.x);\n this.y = Math.ceil(this.y);\n this.z = Math.ceil(this.z);\n this.w = Math.ceil(this.w);\n return this;\n }\n round() {\n this.x = Math.round(this.x);\n this.y = Math.round(this.y);\n this.z = Math.round(this.z);\n this.w = Math.round(this.w);\n return this;\n }\n roundToZero() {\n this.x = Math.trunc(this.x);\n this.y = Math.trunc(this.y);\n this.z = Math.trunc(this.z);\n this.w = Math.trunc(this.w);\n return this;\n }\n negate() {\n this.x = -this.x;\n this.y = -this.y;\n this.z = -this.z;\n this.w = -this.w;\n return this;\n }\n dot(v) {\n return this.x * v.x + this.y * v.y + this.z * v.z + this.w * v.w;\n }\n lengthSq() {\n return this.x * this.x + this.y * this.y + this.z * this.z + this.w * this.w;\n }\n length() {\n return Math.sqrt(this.x * this.x + this.y * this.y + this.z * this.z + this.w * this.w);\n }\n manhattanLength() {\n return Math.abs(this.x) + Math.abs(this.y) + Math.abs(this.z) + Math.abs(this.w);\n }\n normalize() {\n return this.divideScalar(this.length() || 1);\n }\n setLength(length) {\n return this.normalize().multiplyScalar(length);\n }\n lerp(v, alpha) {\n this.x += (v.x - this.x) * alpha;\n this.y += (v.y - this.y) * alpha;\n this.z += (v.z - this.z) * alpha;\n this.w += (v.w - this.w) * alpha;\n return this;\n }\n lerpVectors(v1, v2, alpha) {\n this.x = v1.x + (v2.x - v1.x) * alpha;\n this.y = v1.y + (v2.y - v1.y) * alpha;\n this.z = v1.z + (v2.z - v1.z) * alpha;\n this.w = v1.w + (v2.w - v1.w) * alpha;\n return this;\n }\n equals(v) {\n return v.x === this.x && v.y === this.y && v.z === this.z && v.w === this.w;\n }\n fromArray(array, offset = 0) {\n this.x = array[offset];\n this.y = array[offset + 1];\n this.z = array[offset + 2];\n this.w = array[offset + 3];\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this.x;\n array[offset + 1] = this.y;\n array[offset + 2] = this.z;\n array[offset + 3] = this.w;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this.x = attribute.getX(index);\n this.y = attribute.getY(index);\n this.z = attribute.getZ(index);\n this.w = attribute.getW(index);\n return this;\n }\n random() {\n this.x = Math.random();\n this.y = Math.random();\n this.z = Math.random();\n this.w = Math.random();\n return this;\n }\n *[Symbol.iterator]() {\n yield this.x;\n yield this.y;\n yield this.z;\n yield this.w;\n }\n }\n class RenderTarget extends EventDispatcher {\n constructor(width = 1, height = 1, options = {}) {\n super();\n this.isRenderTarget = true;\n this.width = width;\n this.height = height;\n this.depth = 1;\n this.scissor = new Vector4(0, 0, width, height);\n this.scissorTest = false;\n this.viewport = new Vector4(0, 0, width, height);\n const image = { width, height, depth: 1 };\n options = Object.assign({\n generateMipmaps: false,\n internalFormat: null,\n minFilter: LinearFilter,\n depthBuffer: true,\n stencilBuffer: false,\n resolveDepthBuffer: true,\n resolveStencilBuffer: true,\n depthTexture: null,\n samples: 0,\n count: 1\n }, options);\n const texture = new Texture(image, options.mapping, options.wrapS, options.wrapT, options.magFilter, options.minFilter, options.format, options.type, options.anisotropy, options.colorSpace);\n texture.flipY = false;\n texture.generateMipmaps = options.generateMipmaps;\n texture.internalFormat = options.internalFormat;\n this.textures = [];\n const count = options.count;\n for (let i2 = 0; i2 < count; i2++) {\n this.textures[i2] = texture.clone();\n this.textures[i2].isRenderTargetTexture = true;\n this.textures[i2].renderTarget = this;\n }\n this.depthBuffer = options.depthBuffer;\n this.stencilBuffer = options.stencilBuffer;\n this.resolveDepthBuffer = options.resolveDepthBuffer;\n this.resolveStencilBuffer = options.resolveStencilBuffer;\n this._depthTexture = null;\n this.depthTexture = options.depthTexture;\n this.samples = options.samples;\n }\n get texture() {\n return this.textures[0];\n }\n set texture(value) {\n this.textures[0] = value;\n }\n set depthTexture(current) {\n if (this._depthTexture !== null) this._depthTexture.renderTarget = null;\n if (current !== null) current.renderTarget = this;\n this._depthTexture = current;\n }\n get depthTexture() {\n return this._depthTexture;\n }\n setSize(width, height, depth = 1) {\n if (this.width !== width || this.height !== height || this.depth !== depth) {\n this.width = width;\n this.height = height;\n this.depth = depth;\n for (let i2 = 0, il = this.textures.length; i2 < il; i2++) {\n this.textures[i2].image.width = width;\n this.textures[i2].image.height = height;\n this.textures[i2].image.depth = depth;\n }\n this.dispose();\n }\n this.viewport.set(0, 0, width, height);\n this.scissor.set(0, 0, width, height);\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(source) {\n this.width = source.width;\n this.height = source.height;\n this.depth = source.depth;\n this.scissor.copy(source.scissor);\n this.scissorTest = source.scissorTest;\n this.viewport.copy(source.viewport);\n this.textures.length = 0;\n for (let i2 = 0, il = source.textures.length; i2 < il; i2++) {\n this.textures[i2] = source.textures[i2].clone();\n this.textures[i2].isRenderTargetTexture = true;\n this.textures[i2].renderTarget = this;\n }\n const image = Object.assign({}, source.texture.image);\n this.texture.source = new Source(image);\n this.depthBuffer = source.depthBuffer;\n this.stencilBuffer = source.stencilBuffer;\n this.resolveDepthBuffer = source.resolveDepthBuffer;\n this.resolveStencilBuffer = source.resolveStencilBuffer;\n if (source.depthTexture !== null) this.depthTexture = source.depthTexture.clone();\n this.samples = source.samples;\n return this;\n }\n dispose() {\n this.dispatchEvent({ type: "dispose" });\n }\n }\n class WebGLRenderTarget extends RenderTarget {\n constructor(width = 1, height = 1, options = {}) {\n super(width, height, options);\n this.isWebGLRenderTarget = true;\n }\n }\n class DataArrayTexture extends Texture {\n constructor(data = null, width = 1, height = 1, depth = 1) {\n super(null);\n this.isDataArrayTexture = true;\n this.image = { data, width, height, depth };\n this.magFilter = NearestFilter;\n this.minFilter = NearestFilter;\n this.wrapR = ClampToEdgeWrapping;\n this.generateMipmaps = false;\n this.flipY = false;\n this.unpackAlignment = 1;\n this.layerUpdates = /* @__PURE__ */ new Set();\n }\n addLayerUpdate(layerIndex) {\n this.layerUpdates.add(layerIndex);\n }\n clearLayerUpdates() {\n this.layerUpdates.clear();\n }\n }\n class WebGLArrayRenderTarget extends WebGLRenderTarget {\n constructor(width = 1, height = 1, depth = 1, options = {}) {\n super(width, height, options);\n this.isWebGLArrayRenderTarget = true;\n this.depth = depth;\n this.texture = new DataArrayTexture(null, width, height, depth);\n this.texture.isRenderTargetTexture = true;\n }\n }\n class Quaternion {\n constructor(x2 = 0, y = 0, z = 0, w = 1) {\n this.isQuaternion = true;\n this._x = x2;\n this._y = y;\n this._z = z;\n this._w = w;\n }\n static slerpFlat(dst, dstOffset, src0, srcOffset0, src1, srcOffset1, t) {\n let x0 = src0[srcOffset0 + 0], y0 = src0[srcOffset0 + 1], z0 = src0[srcOffset0 + 2], w0 = src0[srcOffset0 + 3];\n const x1 = src1[srcOffset1 + 0], y1 = src1[srcOffset1 + 1], z1 = src1[srcOffset1 + 2], w1 = src1[srcOffset1 + 3];\n if (t === 0) {\n dst[dstOffset + 0] = x0;\n dst[dstOffset + 1] = y0;\n dst[dstOffset + 2] = z0;\n dst[dstOffset + 3] = w0;\n return;\n }\n if (t === 1) {\n dst[dstOffset + 0] = x1;\n dst[dstOffset + 1] = y1;\n dst[dstOffset + 2] = z1;\n dst[dstOffset + 3] = w1;\n return;\n }\n if (w0 !== w1 || x0 !== x1 || y0 !== y1 || z0 !== z1) {\n let s = 1 - t;\n const cos = x0 * x1 + y0 * y1 + z0 * z1 + w0 * w1, dir = cos >= 0 ? 1 : -1, sqrSin = 1 - cos * cos;\n if (sqrSin > Number.EPSILON) {\n const sin = Math.sqrt(sqrSin), len = Math.atan2(sin, cos * dir);\n s = Math.sin(s * len) / sin;\n t = Math.sin(t * len) / sin;\n }\n const tDir = t * dir;\n x0 = x0 * s + x1 * tDir;\n y0 = y0 * s + y1 * tDir;\n z0 = z0 * s + z1 * tDir;\n w0 = w0 * s + w1 * tDir;\n if (s === 1 - t) {\n const f = 1 / Math.sqrt(x0 * x0 + y0 * y0 + z0 * z0 + w0 * w0);\n x0 *= f;\n y0 *= f;\n z0 *= f;\n w0 *= f;\n }\n }\n dst[dstOffset] = x0;\n dst[dstOffset + 1] = y0;\n dst[dstOffset + 2] = z0;\n dst[dstOffset + 3] = w0;\n }\n static multiplyQuaternionsFlat(dst, dstOffset, src0, srcOffset0, src1, srcOffset1) {\n const x0 = src0[srcOffset0];\n const y0 = src0[srcOffset0 + 1];\n const z0 = src0[srcOffset0 + 2];\n const w0 = src0[srcOffset0 + 3];\n const x1 = src1[srcOffset1];\n const y1 = src1[srcOffset1 + 1];\n const z1 = src1[srcOffset1 + 2];\n const w1 = src1[srcOffset1 + 3];\n dst[dstOffset] = x0 * w1 + w0 * x1 + y0 * z1 - z0 * y1;\n dst[dstOffset + 1] = y0 * w1 + w0 * y1 + z0 * x1 - x0 * z1;\n dst[dstOffset + 2] = z0 * w1 + w0 * z1 + x0 * y1 - y0 * x1;\n dst[dstOffset + 3] = w0 * w1 - x0 * x1 - y0 * y1 - z0 * z1;\n return dst;\n }\n get x() {\n return this._x;\n }\n set x(value) {\n this._x = value;\n this._onChangeCallback();\n }\n get y() {\n return this._y;\n }\n set y(value) {\n this._y = value;\n this._onChangeCallback();\n }\n get z() {\n return this._z;\n }\n set z(value) {\n this._z = value;\n this._onChangeCallback();\n }\n get w() {\n return this._w;\n }\n set w(value) {\n this._w = value;\n this._onChangeCallback();\n }\n set(x2, y, z, w) {\n this._x = x2;\n this._y = y;\n this._z = z;\n this._w = w;\n this._onChangeCallback();\n return this;\n }\n clone() {\n return new this.constructor(this._x, this._y, this._z, this._w);\n }\n copy(quaternion) {\n this._x = quaternion.x;\n this._y = quaternion.y;\n this._z = quaternion.z;\n this._w = quaternion.w;\n this._onChangeCallback();\n return this;\n }\n setFromEuler(euler, update = true) {\n const x2 = euler._x, y = euler._y, z = euler._z, order = euler._order;\n const cos = Math.cos;\n const sin = Math.sin;\n const c1 = cos(x2 / 2);\n const c2 = cos(y / 2);\n const c3 = cos(z / 2);\n const s1 = sin(x2 / 2);\n const s2 = sin(y / 2);\n const s3 = sin(z / 2);\n switch (order) {\n case "XYZ":\n this._x = s1 * c2 * c3 + c1 * s2 * s3;\n this._y = c1 * s2 * c3 - s1 * c2 * s3;\n this._z = c1 * c2 * s3 + s1 * s2 * c3;\n this._w = c1 * c2 * c3 - s1 * s2 * s3;\n break;\n case "YXZ":\n this._x = s1 * c2 * c3 + c1 * s2 * s3;\n this._y = c1 * s2 * c3 - s1 * c2 * s3;\n this._z = c1 * c2 * s3 - s1 * s2 * c3;\n this._w = c1 * c2 * c3 + s1 * s2 * s3;\n break;\n case "ZXY":\n this._x = s1 * c2 * c3 - c1 * s2 * s3;\n this._y = c1 * s2 * c3 + s1 * c2 * s3;\n this._z = c1 * c2 * s3 + s1 * s2 * c3;\n this._w = c1 * c2 * c3 - s1 * s2 * s3;\n break;\n case "ZYX":\n this._x = s1 * c2 * c3 - c1 * s2 * s3;\n this._y = c1 * s2 * c3 + s1 * c2 * s3;\n this._z = c1 * c2 * s3 - s1 * s2 * c3;\n this._w = c1 * c2 * c3 + s1 * s2 * s3;\n break;\n case "YZX":\n this._x = s1 * c2 * c3 + c1 * s2 * s3;\n this._y = c1 * s2 * c3 + s1 * c2 * s3;\n this._z = c1 * c2 * s3 - s1 * s2 * c3;\n this._w = c1 * c2 * c3 - s1 * s2 * s3;\n break;\n case "XZY":\n this._x = s1 * c2 * c3 - c1 * s2 * s3;\n this._y = c1 * s2 * c3 - s1 * c2 * s3;\n this._z = c1 * c2 * s3 + s1 * s2 * c3;\n this._w = c1 * c2 * c3 + s1 * s2 * s3;\n break;\n default:\n console.warn("THREE.Quaternion: .setFromEuler() encountered an unknown order: " + order);\n }\n if (update === true) this._onChangeCallback();\n return this;\n }\n setFromAxisAngle(axis, angle) {\n const halfAngle = angle / 2, s = Math.sin(halfAngle);\n this._x = axis.x * s;\n this._y = axis.y * s;\n this._z = axis.z * s;\n this._w = Math.cos(halfAngle);\n this._onChangeCallback();\n return this;\n }\n setFromRotationMatrix(m) {\n const te = m.elements, m11 = te[0], m12 = te[4], m13 = te[8], m21 = te[1], m22 = te[5], m23 = te[9], m31 = te[2], m32 = te[6], m33 = te[10], trace = m11 + m22 + m33;\n if (trace > 0) {\n const s = 0.5 / Math.sqrt(trace + 1);\n this._w = 0.25 / s;\n this._x = (m32 - m23) * s;\n this._y = (m13 - m31) * s;\n this._z = (m21 - m12) * s;\n } else if (m11 > m22 && m11 > m33) {\n const s = 2 * Math.sqrt(1 + m11 - m22 - m33);\n this._w = (m32 - m23) / s;\n this._x = 0.25 * s;\n this._y = (m12 + m21) / s;\n this._z = (m13 + m31) / s;\n } else if (m22 > m33) {\n const s = 2 * Math.sqrt(1 + m22 - m11 - m33);\n this._w = (m13 - m31) / s;\n this._x = (m12 + m21) / s;\n this._y = 0.25 * s;\n this._z = (m23 + m32) / s;\n } else {\n const s = 2 * Math.sqrt(1 + m33 - m11 - m22);\n this._w = (m21 - m12) / s;\n this._x = (m13 + m31) / s;\n this._y = (m23 + m32) / s;\n this._z = 0.25 * s;\n }\n this._onChangeCallback();\n return this;\n }\n setFromUnitVectors(vFrom, vTo) {\n let r = vFrom.dot(vTo) + 1;\n if (r < Number.EPSILON) {\n r = 0;\n if (Math.abs(vFrom.x) > Math.abs(vFrom.z)) {\n this._x = -vFrom.y;\n this._y = vFrom.x;\n this._z = 0;\n this._w = r;\n } else {\n this._x = 0;\n this._y = -vFrom.z;\n this._z = vFrom.y;\n this._w = r;\n }\n } else {\n this._x = vFrom.y * vTo.z - vFrom.z * vTo.y;\n this._y = vFrom.z * vTo.x - vFrom.x * vTo.z;\n this._z = vFrom.x * vTo.y - vFrom.y * vTo.x;\n this._w = r;\n }\n return this.normalize();\n }\n angleTo(q) {\n return 2 * Math.acos(Math.abs(clamp(this.dot(q), -1, 1)));\n }\n rotateTowards(q, step) {\n const angle = this.angleTo(q);\n if (angle === 0) return this;\n const t = Math.min(1, step / angle);\n this.slerp(q, t);\n return this;\n }\n identity() {\n return this.set(0, 0, 0, 1);\n }\n invert() {\n return this.conjugate();\n }\n conjugate() {\n this._x *= -1;\n this._y *= -1;\n this._z *= -1;\n this._onChangeCallback();\n return this;\n }\n dot(v) {\n return this._x * v._x + this._y * v._y + this._z * v._z + this._w * v._w;\n }\n lengthSq() {\n return this._x * this._x + this._y * this._y + this._z * this._z + this._w * this._w;\n }\n length() {\n return Math.sqrt(this._x * this._x + this._y * this._y + this._z * this._z + this._w * this._w);\n }\n normalize() {\n let l = this.length();\n if (l === 0) {\n this._x = 0;\n this._y = 0;\n this._z = 0;\n this._w = 1;\n } else {\n l = 1 / l;\n this._x = this._x * l;\n this._y = this._y * l;\n this._z = this._z * l;\n this._w = this._w * l;\n }\n this._onChangeCallback();\n return this;\n }\n multiply(q) {\n return this.multiplyQuaternions(this, q);\n }\n premultiply(q) {\n return this.multiplyQuaternions(q, this);\n }\n multiplyQuaternions(a, b) {\n const qax = a._x, qay = a._y, qaz = a._z, qaw = a._w;\n const qbx = b._x, qby = b._y, qbz = b._z, qbw = b._w;\n this._x = qax * qbw + qaw * qbx + qay * qbz - qaz * qby;\n this._y = qay * qbw + qaw * qby + qaz * qbx - qax * qbz;\n this._z = qaz * qbw + qaw * qbz + qax * qby - qay * qbx;\n this._w = qaw * qbw - qax * qbx - qay * qby - qaz * qbz;\n this._onChangeCallback();\n return this;\n }\n slerp(qb, t) {\n if (t === 0) return this;\n if (t === 1) return this.copy(qb);\n const x2 = this._x, y = this._y, z = this._z, w = this._w;\n let cosHalfTheta = w * qb._w + x2 * qb._x + y * qb._y + z * qb._z;\n if (cosHalfTheta < 0) {\n this._w = -qb._w;\n this._x = -qb._x;\n this._y = -qb._y;\n this._z = -qb._z;\n cosHalfTheta = -cosHalfTheta;\n } else {\n this.copy(qb);\n }\n if (cosHalfTheta >= 1) {\n this._w = w;\n this._x = x2;\n this._y = y;\n this._z = z;\n return this;\n }\n const sqrSinHalfTheta = 1 - cosHalfTheta * cosHalfTheta;\n if (sqrSinHalfTheta <= Number.EPSILON) {\n const s = 1 - t;\n this._w = s * w + t * this._w;\n this._x = s * x2 + t * this._x;\n this._y = s * y + t * this._y;\n this._z = s * z + t * this._z;\n this.normalize();\n return this;\n }\n const sinHalfTheta = Math.sqrt(sqrSinHalfTheta);\n const halfTheta = Math.atan2(sinHalfTheta, cosHalfTheta);\n const ratioA = Math.sin((1 - t) * halfTheta) / sinHalfTheta, ratioB = Math.sin(t * halfTheta) / sinHalfTheta;\n this._w = w * ratioA + this._w * ratioB;\n this._x = x2 * ratioA + this._x * ratioB;\n this._y = y * ratioA + this._y * ratioB;\n this._z = z * ratioA + this._z * ratioB;\n this._onChangeCallback();\n return this;\n }\n slerpQuaternions(qa, qb, t) {\n return this.copy(qa).slerp(qb, t);\n }\n random() {\n const theta1 = 2 * Math.PI * Math.random();\n const theta2 = 2 * Math.PI * Math.random();\n const x0 = Math.random();\n const r1 = Math.sqrt(1 - x0);\n const r2 = Math.sqrt(x0);\n return this.set(\n r1 * Math.sin(theta1),\n r1 * Math.cos(theta1),\n r2 * Math.sin(theta2),\n r2 * Math.cos(theta2)\n );\n }\n equals(quaternion) {\n return quaternion._x === this._x && quaternion._y === this._y && quaternion._z === this._z && quaternion._w === this._w;\n }\n fromArray(array, offset = 0) {\n this._x = array[offset];\n this._y = array[offset + 1];\n this._z = array[offset + 2];\n this._w = array[offset + 3];\n this._onChangeCallback();\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this._x;\n array[offset + 1] = this._y;\n array[offset + 2] = this._z;\n array[offset + 3] = this._w;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this._x = attribute.getX(index);\n this._y = attribute.getY(index);\n this._z = attribute.getZ(index);\n this._w = attribute.getW(index);\n this._onChangeCallback();\n return this;\n }\n toJSON() {\n return this.toArray();\n }\n _onChange(callback) {\n this._onChangeCallback = callback;\n return this;\n }\n _onChangeCallback() {\n }\n *[Symbol.iterator]() {\n yield this._x;\n yield this._y;\n yield this._z;\n yield this._w;\n }\n }\n class Vector3 {\n constructor(x2 = 0, y = 0, z = 0) {\n Vector3.prototype.isVector3 = true;\n this.x = x2;\n this.y = y;\n this.z = z;\n }\n set(x2, y, z) {\n if (z === void 0) z = this.z;\n this.x = x2;\n this.y = y;\n this.z = z;\n return this;\n }\n setScalar(scalar) {\n this.x = scalar;\n this.y = scalar;\n this.z = scalar;\n return this;\n }\n setX(x2) {\n this.x = x2;\n return this;\n }\n setY(y) {\n this.y = y;\n return this;\n }\n setZ(z) {\n this.z = z;\n return this;\n }\n setComponent(index, value) {\n switch (index) {\n case 0:\n this.x = value;\n break;\n case 1:\n this.y = value;\n break;\n case 2:\n this.z = value;\n break;\n default:\n throw new Error("index is out of range: " + index);\n }\n return this;\n }\n getComponent(index) {\n switch (index) {\n case 0:\n return this.x;\n case 1:\n return this.y;\n case 2:\n return this.z;\n default:\n throw new Error("index is out of range: " + index);\n }\n }\n clone() {\n return new this.constructor(this.x, this.y, this.z);\n }\n copy(v) {\n this.x = v.x;\n this.y = v.y;\n this.z = v.z;\n return this;\n }\n add(v) {\n this.x += v.x;\n this.y += v.y;\n this.z += v.z;\n return this;\n }\n addScalar(s) {\n this.x += s;\n this.y += s;\n this.z += s;\n return this;\n }\n addVectors(a, b) {\n this.x = a.x + b.x;\n this.y = a.y + b.y;\n this.z = a.z + b.z;\n return this;\n }\n addScaledVector(v, s) {\n this.x += v.x * s;\n this.y += v.y * s;\n this.z += v.z * s;\n return this;\n }\n sub(v) {\n this.x -= v.x;\n this.y -= v.y;\n this.z -= v.z;\n return this;\n }\n subScalar(s) {\n this.x -= s;\n this.y -= s;\n this.z -= s;\n return this;\n }\n subVectors(a, b) {\n this.x = a.x - b.x;\n this.y = a.y - b.y;\n this.z = a.z - b.z;\n return this;\n }\n multiply(v) {\n this.x *= v.x;\n this.y *= v.y;\n this.z *= v.z;\n return this;\n }\n multiplyScalar(scalar) {\n this.x *= scalar;\n this.y *= scalar;\n this.z *= scalar;\n return this;\n }\n multiplyVectors(a, b) {\n this.x = a.x * b.x;\n this.y = a.y * b.y;\n this.z = a.z * b.z;\n return this;\n }\n applyEuler(euler) {\n return this.applyQuaternion(_quaternion$4.setFromEuler(euler));\n }\n applyAxisAngle(axis, angle) {\n return this.applyQuaternion(_quaternion$4.setFromAxisAngle(axis, angle));\n }\n applyMatrix3(m) {\n const x2 = this.x, y = this.y, z = this.z;\n const e = m.elements;\n this.x = e[0] * x2 + e[3] * y + e[6] * z;\n this.y = e[1] * x2 + e[4] * y + e[7] * z;\n this.z = e[2] * x2 + e[5] * y + e[8] * z;\n return this;\n }\n applyNormalMatrix(m) {\n return this.applyMatrix3(m).normalize();\n }\n applyMatrix4(m) {\n const x2 = this.x, y = this.y, z = this.z;\n const e = m.elements;\n const w = 1 / (e[3] * x2 + e[7] * y + e[11] * z + e[15]);\n this.x = (e[0] * x2 + e[4] * y + e[8] * z + e[12]) * w;\n this.y = (e[1] * x2 + e[5] * y + e[9] * z + e[13]) * w;\n this.z = (e[2] * x2 + e[6] * y + e[10] * z + e[14]) * w;\n return this;\n }\n applyQuaternion(q) {\n const vx = this.x, vy = this.y, vz = this.z;\n const qx = q.x, qy = q.y, qz = q.z, qw = q.w;\n const tx = 2 * (qy * vz - qz * vy);\n const ty = 2 * (qz * vx - qx * vz);\n const tz = 2 * (qx * vy - qy * vx);\n this.x = vx + qw * tx + qy * tz - qz * ty;\n this.y = vy + qw * ty + qz * tx - qx * tz;\n this.z = vz + qw * tz + qx * ty - qy * tx;\n return this;\n }\n project(camera) {\n return this.applyMatrix4(camera.matrixWorldInverse).applyMatrix4(camera.projectionMatrix);\n }\n unproject(camera) {\n return this.applyMatrix4(camera.projectionMatrixInverse).applyMatrix4(camera.matrixWorld);\n }\n transformDirection(m) {\n const x2 = this.x, y = this.y, z = this.z;\n const e = m.elements;\n this.x = e[0] * x2 + e[4] * y + e[8] * z;\n this.y = e[1] * x2 + e[5] * y + e[9] * z;\n this.z = e[2] * x2 + e[6] * y + e[10] * z;\n return this.normalize();\n }\n divide(v) {\n this.x /= v.x;\n this.y /= v.y;\n this.z /= v.z;\n return this;\n }\n divideScalar(scalar) {\n return this.multiplyScalar(1 / scalar);\n }\n min(v) {\n this.x = Math.min(this.x, v.x);\n this.y = Math.min(this.y, v.y);\n this.z = Math.min(this.z, v.z);\n return this;\n }\n max(v) {\n this.x = Math.max(this.x, v.x);\n this.y = Math.max(this.y, v.y);\n this.z = Math.max(this.z, v.z);\n return this;\n }\n clamp(min, max2) {\n this.x = clamp(this.x, min.x, max2.x);\n this.y = clamp(this.y, min.y, max2.y);\n this.z = clamp(this.z, min.z, max2.z);\n return this;\n }\n clampScalar(minVal, maxVal) {\n this.x = clamp(this.x, minVal, maxVal);\n this.y = clamp(this.y, minVal, maxVal);\n this.z = clamp(this.z, minVal, maxVal);\n return this;\n }\n clampLength(min, max2) {\n const length = this.length();\n return this.divideScalar(length || 1).multiplyScalar(clamp(length, min, max2));\n }\n floor() {\n this.x = Math.floor(this.x);\n this.y = Math.floor(this.y);\n this.z = Math.floor(this.z);\n return this;\n }\n ceil() {\n this.x = Math.ceil(this.x);\n this.y = Math.ceil(this.y);\n this.z = Math.ceil(this.z);\n return this;\n }\n round() {\n this.x = Math.round(this.x);\n this.y = Math.round(this.y);\n this.z = Math.round(this.z);\n return this;\n }\n roundToZero() {\n this.x = Math.trunc(this.x);\n this.y = Math.trunc(this.y);\n this.z = Math.trunc(this.z);\n return this;\n }\n negate() {\n this.x = -this.x;\n this.y = -this.y;\n this.z = -this.z;\n return this;\n }\n dot(v) {\n return this.x * v.x + this.y * v.y + this.z * v.z;\n }\n // TODO lengthSquared?\n lengthSq() {\n return this.x * this.x + this.y * this.y + this.z * this.z;\n }\n length() {\n return Math.sqrt(this.x * this.x + this.y * this.y + this.z * this.z);\n }\n manhattanLength() {\n return Math.abs(this.x) + Math.abs(this.y) + Math.abs(this.z);\n }\n normalize() {\n return this.divideScalar(this.length() || 1);\n }\n setLength(length) {\n return this.normalize().multiplyScalar(length);\n }\n lerp(v, alpha) {\n this.x += (v.x - this.x) * alpha;\n this.y += (v.y - this.y) * alpha;\n this.z += (v.z - this.z) * alpha;\n return this;\n }\n lerpVectors(v1, v2, alpha) {\n this.x = v1.x + (v2.x - v1.x) * alpha;\n this.y = v1.y + (v2.y - v1.y) * alpha;\n this.z = v1.z + (v2.z - v1.z) * alpha;\n return this;\n }\n cross(v) {\n return this.crossVectors(this, v);\n }\n crossVectors(a, b) {\n const ax = a.x, ay = a.y, az = a.z;\n const bx = b.x, by = b.y, bz = b.z;\n this.x = ay * bz - az * by;\n this.y = az * bx - ax * bz;\n this.z = ax * by - ay * bx;\n return this;\n }\n projectOnVector(v) {\n const denominator = v.lengthSq();\n if (denominator === 0) return this.set(0, 0, 0);\n const scalar = v.dot(this) / denominator;\n return this.copy(v).multiplyScalar(scalar);\n }\n projectOnPlane(planeNormal) {\n _vector$c.copy(this).projectOnVector(planeNormal);\n return this.sub(_vector$c);\n }\n reflect(normal) {\n return this.sub(_vector$c.copy(normal).multiplyScalar(2 * this.dot(normal)));\n }\n angleTo(v) {\n const denominator = Math.sqrt(this.lengthSq() * v.lengthSq());\n if (denominator === 0) return Math.PI / 2;\n const theta = this.dot(v) / denominator;\n return Math.acos(clamp(theta, -1, 1));\n }\n distanceTo(v) {\n return Math.sqrt(this.distanceToSquared(v));\n }\n distanceToSquared(v) {\n const dx = this.x - v.x, dy = this.y - v.y, dz = this.z - v.z;\n return dx * dx + dy * dy + dz * dz;\n }\n manhattanDistanceTo(v) {\n return Math.abs(this.x - v.x) + Math.abs(this.y - v.y) + Math.abs(this.z - v.z);\n }\n setFromSpherical(s) {\n return this.setFromSphericalCoords(s.radius, s.phi, s.theta);\n }\n setFromSphericalCoords(radius, phi, theta) {\n const sinPhiRadius = Math.sin(phi) * radius;\n this.x = sinPhiRadius * Math.sin(theta);\n this.y = Math.cos(phi) * radius;\n this.z = sinPhiRadius * Math.cos(theta);\n return this;\n }\n setFromCylindrical(c) {\n return this.setFromCylindricalCoords(c.radius, c.theta, c.y);\n }\n setFromCylindricalCoords(radius, theta, y) {\n this.x = radius * Math.sin(theta);\n this.y = y;\n this.z = radius * Math.cos(theta);\n return this;\n }\n setFromMatrixPosition(m) {\n const e = m.elements;\n this.x = e[12];\n this.y = e[13];\n this.z = e[14];\n return this;\n }\n setFromMatrixScale(m) {\n const sx = this.setFromMatrixColumn(m, 0).length();\n const sy = this.setFromMatrixColumn(m, 1).length();\n const sz = this.setFromMatrixColumn(m, 2).length();\n this.x = sx;\n this.y = sy;\n this.z = sz;\n return this;\n }\n setFromMatrixColumn(m, index) {\n return this.fromArray(m.elements, index * 4);\n }\n setFromMatrix3Column(m, index) {\n return this.fromArray(m.elements, index * 3);\n }\n setFromEuler(e) {\n this.x = e._x;\n this.y = e._y;\n this.z = e._z;\n return this;\n }\n setFromColor(c) {\n this.x = c.r;\n this.y = c.g;\n this.z = c.b;\n return this;\n }\n equals(v) {\n return v.x === this.x && v.y === this.y && v.z === this.z;\n }\n fromArray(array, offset = 0) {\n this.x = array[offset];\n this.y = array[offset + 1];\n this.z = array[offset + 2];\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this.x;\n array[offset + 1] = this.y;\n array[offset + 2] = this.z;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this.x = attribute.getX(index);\n this.y = attribute.getY(index);\n this.z = attribute.getZ(index);\n return this;\n }\n random() {\n this.x = Math.random();\n this.y = Math.random();\n this.z = Math.random();\n return this;\n }\n randomDirection() {\n const theta = Math.random() * Math.PI * 2;\n const u = Math.random() * 2 - 1;\n const c = Math.sqrt(1 - u * u);\n this.x = c * Math.cos(theta);\n this.y = u;\n this.z = c * Math.sin(theta);\n return this;\n }\n *[Symbol.iterator]() {\n yield this.x;\n yield this.y;\n yield this.z;\n }\n }\n const _vector$c = /* @__PURE__ */ new Vector3();\n const _quaternion$4 = /* @__PURE__ */ new Quaternion();\n class Box3 {\n constructor(min = new Vector3(Infinity, Infinity, Infinity), max2 = new Vector3(-Infinity, -Infinity, -Infinity)) {\n this.isBox3 = true;\n this.min = min;\n this.max = max2;\n }\n set(min, max2) {\n this.min.copy(min);\n this.max.copy(max2);\n return this;\n }\n setFromArray(array) {\n this.makeEmpty();\n for (let i2 = 0, il = array.length; i2 < il; i2 += 3) {\n this.expandByPoint(_vector$b.fromArray(array, i2));\n }\n return this;\n }\n setFromBufferAttribute(attribute) {\n this.makeEmpty();\n for (let i2 = 0, il = attribute.count; i2 < il; i2++) {\n this.expandByPoint(_vector$b.fromBufferAttribute(attribute, i2));\n }\n return this;\n }\n setFromPoints(points) {\n this.makeEmpty();\n for (let i2 = 0, il = points.length; i2 < il; i2++) {\n this.expandByPoint(points[i2]);\n }\n return this;\n }\n setFromCenterAndSize(center, size) {\n const halfSize = _vector$b.copy(size).multiplyScalar(0.5);\n this.min.copy(center).sub(halfSize);\n this.max.copy(center).add(halfSize);\n return this;\n }\n setFromObject(object, precise = false) {\n this.makeEmpty();\n return this.expandByObject(object, precise);\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(box) {\n this.min.copy(box.min);\n this.max.copy(box.max);\n return this;\n }\n makeEmpty() {\n this.min.x = this.min.y = this.min.z = Infinity;\n this.max.x = this.max.y = this.max.z = -Infinity;\n return this;\n }\n isEmpty() {\n return this.max.x < this.min.x || this.max.y < this.min.y || this.max.z < this.min.z;\n }\n getCenter(target) {\n return this.isEmpty() ? target.set(0, 0, 0) : target.addVectors(this.min, this.max).multiplyScalar(0.5);\n }\n getSize(target) {\n return this.isEmpty() ? target.set(0, 0, 0) : target.subVectors(this.max, this.min);\n }\n expandByPoint(point) {\n this.min.min(point);\n this.max.max(point);\n return this;\n }\n expandByVector(vector) {\n this.min.sub(vector);\n this.max.add(vector);\n return this;\n }\n expandByScalar(scalar) {\n this.min.addScalar(-scalar);\n this.max.addScalar(scalar);\n return this;\n }\n expandByObject(object, precise = false) {\n object.updateWorldMatrix(false, false);\n const geometry = object.geometry;\n if (geometry !== void 0) {\n const positionAttribute = geometry.getAttribute("position");\n if (precise === true && positionAttribute !== void 0 && object.isInstancedMesh !== true) {\n for (let i2 = 0, l = positionAttribute.count; i2 < l; i2++) {\n if (object.isMesh === true) {\n object.getVertexPosition(i2, _vector$b);\n } else {\n _vector$b.fromBufferAttribute(positionAttribute, i2);\n }\n _vector$b.applyMatrix4(object.matrixWorld);\n this.expandByPoint(_vector$b);\n }\n } else {\n if (object.boundingBox !== void 0) {\n if (object.boundingBox === null) {\n object.computeBoundingBox();\n }\n _box$4.copy(object.boundingBox);\n } else {\n if (geometry.boundingBox === null) {\n geometry.computeBoundingBox();\n }\n _box$4.copy(geometry.boundingBox);\n }\n _box$4.applyMatrix4(object.matrixWorld);\n this.union(_box$4);\n }\n }\n const children = object.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n this.expandByObject(children[i2], precise);\n }\n return this;\n }\n containsPoint(point) {\n return point.x >= this.min.x && point.x <= this.max.x && point.y >= this.min.y && point.y <= this.max.y && point.z >= this.min.z && point.z <= this.max.z;\n }\n containsBox(box) {\n return this.min.x <= box.min.x && box.max.x <= this.max.x && this.min.y <= box.min.y && box.max.y <= this.max.y && this.min.z <= box.min.z && box.max.z <= this.max.z;\n }\n getParameter(point, target) {\n return target.set(\n (point.x - this.min.x) / (this.max.x - this.min.x),\n (point.y - this.min.y) / (this.max.y - this.min.y),\n (point.z - this.min.z) / (this.max.z - this.min.z)\n );\n }\n intersectsBox(box) {\n return box.max.x >= this.min.x && box.min.x <= this.max.x && box.max.y >= this.min.y && box.min.y <= this.max.y && box.max.z >= this.min.z && box.min.z <= this.max.z;\n }\n intersectsSphere(sphere) {\n this.clampPoint(sphere.center, _vector$b);\n return _vector$b.distanceToSquared(sphere.center) <= sphere.radius * sphere.radius;\n }\n intersectsPlane(plane) {\n let min, max2;\n if (plane.normal.x > 0) {\n min = plane.normal.x * this.min.x;\n max2 = plane.normal.x * this.max.x;\n } else {\n min = plane.normal.x * this.max.x;\n max2 = plane.normal.x * this.min.x;\n }\n if (plane.normal.y > 0) {\n min += plane.normal.y * this.min.y;\n max2 += plane.normal.y * this.max.y;\n } else {\n min += plane.normal.y * this.max.y;\n max2 += plane.normal.y * this.min.y;\n }\n if (plane.normal.z > 0) {\n min += plane.normal.z * this.min.z;\n max2 += plane.normal.z * this.max.z;\n } else {\n min += plane.normal.z * this.max.z;\n max2 += plane.normal.z * this.min.z;\n }\n return min <= -plane.constant && max2 >= -plane.constant;\n }\n intersectsTriangle(triangle) {\n if (this.isEmpty()) {\n return false;\n }\n this.getCenter(_center);\n _extents.subVectors(this.max, _center);\n _v0$2.subVectors(triangle.a, _center);\n _v1$7.subVectors(triangle.b, _center);\n _v2$4.subVectors(triangle.c, _center);\n _f0.subVectors(_v1$7, _v0$2);\n _f1.subVectors(_v2$4, _v1$7);\n _f2.subVectors(_v0$2, _v2$4);\n let axes = [\n 0,\n -_f0.z,\n _f0.y,\n 0,\n -_f1.z,\n _f1.y,\n 0,\n -_f2.z,\n _f2.y,\n _f0.z,\n 0,\n -_f0.x,\n _f1.z,\n 0,\n -_f1.x,\n _f2.z,\n 0,\n -_f2.x,\n -_f0.y,\n _f0.x,\n 0,\n -_f1.y,\n _f1.x,\n 0,\n -_f2.y,\n _f2.x,\n 0\n ];\n if (!satForAxes(axes, _v0$2, _v1$7, _v2$4, _extents)) {\n return false;\n }\n axes = [1, 0, 0, 0, 1, 0, 0, 0, 1];\n if (!satForAxes(axes, _v0$2, _v1$7, _v2$4, _extents)) {\n return false;\n }\n _triangleNormal.crossVectors(_f0, _f1);\n axes = [_triangleNormal.x, _triangleNormal.y, _triangleNormal.z];\n return satForAxes(axes, _v0$2, _v1$7, _v2$4, _extents);\n }\n clampPoint(point, target) {\n return target.copy(point).clamp(this.min, this.max);\n }\n distanceToPoint(point) {\n return this.clampPoint(point, _vector$b).distanceTo(point);\n }\n getBoundingSphere(target) {\n if (this.isEmpty()) {\n target.makeEmpty();\n } else {\n this.getCenter(target.center);\n target.radius = this.getSize(_vector$b).length() * 0.5;\n }\n return target;\n }\n intersect(box) {\n this.min.max(box.min);\n this.max.min(box.max);\n if (this.isEmpty()) this.makeEmpty();\n return this;\n }\n union(box) {\n this.min.min(box.min);\n this.max.max(box.max);\n return this;\n }\n applyMatrix4(matrix) {\n if (this.isEmpty()) return this;\n _points[0].set(this.min.x, this.min.y, this.min.z).applyMatrix4(matrix);\n _points[1].set(this.min.x, this.min.y, this.max.z).applyMatrix4(matrix);\n _points[2].set(this.min.x, this.max.y, this.min.z).applyMatrix4(matrix);\n _points[3].set(this.min.x, this.max.y, this.max.z).applyMatrix4(matrix);\n _points[4].set(this.max.x, this.min.y, this.min.z).applyMatrix4(matrix);\n _points[5].set(this.max.x, this.min.y, this.max.z).applyMatrix4(matrix);\n _points[6].set(this.max.x, this.max.y, this.min.z).applyMatrix4(matrix);\n _points[7].set(this.max.x, this.max.y, this.max.z).applyMatrix4(matrix);\n this.setFromPoints(_points);\n return this;\n }\n translate(offset) {\n this.min.add(offset);\n this.max.add(offset);\n return this;\n }\n equals(box) {\n return box.min.equals(this.min) && box.max.equals(this.max);\n }\n }\n const _points = [\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3()\n ];\n const _vector$b = /* @__PURE__ */ new Vector3();\n const _box$4 = /* @__PURE__ */ new Box3();\n const _v0$2 = /* @__PURE__ */ new Vector3();\n const _v1$7 = /* @__PURE__ */ new Vector3();\n const _v2$4 = /* @__PURE__ */ new Vector3();\n const _f0 = /* @__PURE__ */ new Vector3();\n const _f1 = /* @__PURE__ */ new Vector3();\n const _f2 = /* @__PURE__ */ new Vector3();\n const _center = /* @__PURE__ */ new Vector3();\n const _extents = /* @__PURE__ */ new Vector3();\n const _triangleNormal = /* @__PURE__ */ new Vector3();\n const _testAxis = /* @__PURE__ */ new Vector3();\n function satForAxes(axes, v0, v1, v2, extents) {\n for (let i2 = 0, j = axes.length - 3; i2 <= j; i2 += 3) {\n _testAxis.fromArray(axes, i2);\n const r = extents.x * Math.abs(_testAxis.x) + extents.y * Math.abs(_testAxis.y) + extents.z * Math.abs(_testAxis.z);\n const p0 = v0.dot(_testAxis);\n const p1 = v1.dot(_testAxis);\n const p2 = v2.dot(_testAxis);\n if (Math.max(-Math.max(p0, p1, p2), Math.min(p0, p1, p2)) > r) {\n return false;\n }\n }\n return true;\n }\n const _box$3 = /* @__PURE__ */ new Box3();\n const _v1$6 = /* @__PURE__ */ new Vector3();\n const _v2$3 = /* @__PURE__ */ new Vector3();\n class Sphere {\n constructor(center = new Vector3(), radius = -1) {\n this.isSphere = true;\n this.center = center;\n this.radius = radius;\n }\n set(center, radius) {\n this.center.copy(center);\n this.radius = radius;\n return this;\n }\n setFromPoints(points, optionalCenter) {\n const center = this.center;\n if (optionalCenter !== void 0) {\n center.copy(optionalCenter);\n } else {\n _box$3.setFromPoints(points).getCenter(center);\n }\n let maxRadiusSq = 0;\n for (let i2 = 0, il = points.length; i2 < il; i2++) {\n maxRadiusSq = Math.max(maxRadiusSq, center.distanceToSquared(points[i2]));\n }\n this.radius = Math.sqrt(maxRadiusSq);\n return this;\n }\n copy(sphere) {\n this.center.copy(sphere.center);\n this.radius = sphere.radius;\n return this;\n }\n isEmpty() {\n return this.radius < 0;\n }\n makeEmpty() {\n this.center.set(0, 0, 0);\n this.radius = -1;\n return this;\n }\n containsPoint(point) {\n return point.distanceToSquared(this.center) <= this.radius * this.radius;\n }\n distanceToPoint(point) {\n return point.distanceTo(this.center) - this.radius;\n }\n intersectsSphere(sphere) {\n const radiusSum = this.radius + sphere.radius;\n return sphere.center.distanceToSquared(this.center) <= radiusSum * radiusSum;\n }\n intersectsBox(box) {\n return box.intersectsSphere(this);\n }\n intersectsPlane(plane) {\n return Math.abs(plane.distanceToPoint(this.center)) <= this.radius;\n }\n clampPoint(point, target) {\n const deltaLengthSq = this.center.distanceToSquared(point);\n target.copy(point);\n if (deltaLengthSq > this.radius * this.radius) {\n target.sub(this.center).normalize();\n target.multiplyScalar(this.radius).add(this.center);\n }\n return target;\n }\n getBoundingBox(target) {\n if (this.isEmpty()) {\n target.makeEmpty();\n return target;\n }\n target.set(this.center, this.center);\n target.expandByScalar(this.radius);\n return target;\n }\n applyMatrix4(matrix) {\n this.center.applyMatrix4(matrix);\n this.radius = this.radius * matrix.getMaxScaleOnAxis();\n return this;\n }\n translate(offset) {\n this.center.add(offset);\n return this;\n }\n expandByPoint(point) {\n if (this.isEmpty()) {\n this.center.copy(point);\n this.radius = 0;\n return this;\n }\n _v1$6.subVectors(point, this.center);\n const lengthSq = _v1$6.lengthSq();\n if (lengthSq > this.radius * this.radius) {\n const length = Math.sqrt(lengthSq);\n const delta = (length - this.radius) * 0.5;\n this.center.addScaledVector(_v1$6, delta / length);\n this.radius += delta;\n }\n return this;\n }\n union(sphere) {\n if (sphere.isEmpty()) {\n return this;\n }\n if (this.isEmpty()) {\n this.copy(sphere);\n return this;\n }\n if (this.center.equals(sphere.center) === true) {\n this.radius = Math.max(this.radius, sphere.radius);\n } else {\n _v2$3.subVectors(sphere.center, this.center).setLength(sphere.radius);\n this.expandByPoint(_v1$6.copy(sphere.center).add(_v2$3));\n this.expandByPoint(_v1$6.copy(sphere.center).sub(_v2$3));\n }\n return this;\n }\n equals(sphere) {\n return sphere.center.equals(this.center) && sphere.radius === this.radius;\n }\n clone() {\n return new this.constructor().copy(this);\n }\n }\n const _vector$a = /* @__PURE__ */ new Vector3();\n const _segCenter = /* @__PURE__ */ new Vector3();\n const _segDir = /* @__PURE__ */ new Vector3();\n const _diff = /* @__PURE__ */ new Vector3();\n const _edge1 = /* @__PURE__ */ new Vector3();\n const _edge2 = /* @__PURE__ */ new Vector3();\n const _normal$1 = /* @__PURE__ */ new Vector3();\n class Ray {\n constructor(origin = new Vector3(), direction = new Vector3(0, 0, -1)) {\n this.origin = origin;\n this.direction = direction;\n }\n set(origin, direction) {\n this.origin.copy(origin);\n this.direction.copy(direction);\n return this;\n }\n copy(ray) {\n this.origin.copy(ray.origin);\n this.direction.copy(ray.direction);\n return this;\n }\n at(t, target) {\n return target.copy(this.origin).addScaledVector(this.direction, t);\n }\n lookAt(v) {\n this.direction.copy(v).sub(this.origin).normalize();\n return this;\n }\n recast(t) {\n this.origin.copy(this.at(t, _vector$a));\n return this;\n }\n closestPointToPoint(point, target) {\n target.subVectors(point, this.origin);\n const directionDistance = target.dot(this.direction);\n if (directionDistance < 0) {\n return target.copy(this.origin);\n }\n return target.copy(this.origin).addScaledVector(this.direction, directionDistance);\n }\n distanceToPoint(point) {\n return Math.sqrt(this.distanceSqToPoint(point));\n }\n distanceSqToPoint(point) {\n const directionDistance = _vector$a.subVectors(point, this.origin).dot(this.direction);\n if (directionDistance < 0) {\n return this.origin.distanceToSquared(point);\n }\n _vector$a.copy(this.origin).addScaledVector(this.direction, directionDistance);\n return _vector$a.distanceToSquared(point);\n }\n distanceSqToSegment(v0, v1, optionalPointOnRay, optionalPointOnSegment) {\n _segCenter.copy(v0).add(v1).multiplyScalar(0.5);\n _segDir.copy(v1).sub(v0).normalize();\n _diff.copy(this.origin).sub(_segCenter);\n const segExtent = v0.distanceTo(v1) * 0.5;\n const a01 = -this.direction.dot(_segDir);\n const b0 = _diff.dot(this.direction);\n const b1 = -_diff.dot(_segDir);\n const c = _diff.lengthSq();\n const det = Math.abs(1 - a01 * a01);\n let s0, s1, sqrDist, extDet;\n if (det > 0) {\n s0 = a01 * b1 - b0;\n s1 = a01 * b0 - b1;\n extDet = segExtent * det;\n if (s0 >= 0) {\n if (s1 >= -extDet) {\n if (s1 <= extDet) {\n const invDet = 1 / det;\n s0 *= invDet;\n s1 *= invDet;\n sqrDist = s0 * (s0 + a01 * s1 + 2 * b0) + s1 * (a01 * s0 + s1 + 2 * b1) + c;\n } else {\n s1 = segExtent;\n s0 = Math.max(0, -(a01 * s1 + b0));\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n }\n } else {\n s1 = -segExtent;\n s0 = Math.max(0, -(a01 * s1 + b0));\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n }\n } else {\n if (s1 <= -extDet) {\n s0 = Math.max(0, -(-a01 * segExtent + b0));\n s1 = s0 > 0 ? -segExtent : Math.min(Math.max(-segExtent, -b1), segExtent);\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n } else if (s1 <= extDet) {\n s0 = 0;\n s1 = Math.min(Math.max(-segExtent, -b1), segExtent);\n sqrDist = s1 * (s1 + 2 * b1) + c;\n } else {\n s0 = Math.max(0, -(a01 * segExtent + b0));\n s1 = s0 > 0 ? segExtent : Math.min(Math.max(-segExtent, -b1), segExtent);\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n }\n }\n } else {\n s1 = a01 > 0 ? -segExtent : segExtent;\n s0 = Math.max(0, -(a01 * s1 + b0));\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n }\n if (optionalPointOnRay) {\n optionalPointOnRay.copy(this.origin).addScaledVector(this.direction, s0);\n }\n if (optionalPointOnSegment) {\n optionalPointOnSegment.copy(_segCenter).addScaledVector(_segDir, s1);\n }\n return sqrDist;\n }\n intersectSphere(sphere, target) {\n _vector$a.subVectors(sphere.center, this.origin);\n const tca = _vector$a.dot(this.direction);\n const d2 = _vector$a.dot(_vector$a) - tca * tca;\n const radius2 = sphere.radius * sphere.radius;\n if (d2 > radius2) return null;\n const thc = Math.sqrt(radius2 - d2);\n const t0 = tca - thc;\n const t1 = tca + thc;\n if (t1 < 0) return null;\n if (t0 < 0) return this.at(t1, target);\n return this.at(t0, target);\n }\n intersectsSphere(sphere) {\n return this.distanceSqToPoint(sphere.center) <= sphere.radius * sphere.radius;\n }\n distanceToPlane(plane) {\n const denominator = plane.normal.dot(this.direction);\n if (denominator === 0) {\n if (plane.distanceToPoint(this.origin) === 0) {\n return 0;\n }\n return null;\n }\n const t = -(this.origin.dot(plane.normal) + plane.constant) / denominator;\n return t >= 0 ? t : null;\n }\n intersectPlane(plane, target) {\n const t = this.distanceToPlane(plane);\n if (t === null) {\n return null;\n }\n return this.at(t, target);\n }\n intersectsPlane(plane) {\n const distToPoint = plane.distanceToPoint(this.origin);\n if (distToPoint === 0) {\n return true;\n }\n const denominator = plane.normal.dot(this.direction);\n if (denominator * distToPoint < 0) {\n return true;\n }\n return false;\n }\n intersectBox(box, target) {\n let tmin, tmax, tymin, tymax, tzmin, tzmax;\n const invdirx = 1 / this.direction.x, invdiry = 1 / this.direction.y, invdirz = 1 / this.direction.z;\n const origin = this.origin;\n if (invdirx >= 0) {\n tmin = (box.min.x - origin.x) * invdirx;\n tmax = (box.max.x - origin.x) * invdirx;\n } else {\n tmin = (box.max.x - origin.x) * invdirx;\n tmax = (box.min.x - origin.x) * invdirx;\n }\n if (invdiry >= 0) {\n tymin = (box.min.y - origin.y) * invdiry;\n tymax = (box.max.y - origin.y) * invdiry;\n } else {\n tymin = (box.max.y - origin.y) * invdiry;\n tymax = (box.min.y - origin.y) * invdiry;\n }\n if (tmin > tymax || tymin > tmax) return null;\n if (tymin > tmin || isNaN(tmin)) tmin = tymin;\n if (tymax < tmax || isNaN(tmax)) tmax = tymax;\n if (invdirz >= 0) {\n tzmin = (box.min.z - origin.z) * invdirz;\n tzmax = (box.max.z - origin.z) * invdirz;\n } else {\n tzmin = (box.max.z - origin.z) * invdirz;\n tzmax = (box.min.z - origin.z) * invdirz;\n }\n if (tmin > tzmax || tzmin > tmax) return null;\n if (tzmin > tmin || tmin !== tmin) tmin = tzmin;\n if (tzmax < tmax || tmax !== tmax) tmax = tzmax;\n if (tmax < 0) return null;\n return this.at(tmin >= 0 ? tmin : tmax, target);\n }\n intersectsBox(box) {\n return this.intersectBox(box, _vector$a) !== null;\n }\n intersectTriangle(a, b, c, backfaceCulling, target) {\n _edge1.subVectors(b, a);\n _edge2.subVectors(c, a);\n _normal$1.crossVectors(_edge1, _edge2);\n let DdN = this.direction.dot(_normal$1);\n let sign;\n if (DdN > 0) {\n if (backfaceCulling) return null;\n sign = 1;\n } else if (DdN < 0) {\n sign = -1;\n DdN = -DdN;\n } else {\n return null;\n }\n _diff.subVectors(this.origin, a);\n const DdQxE2 = sign * this.direction.dot(_edge2.crossVectors(_diff, _edge2));\n if (DdQxE2 < 0) {\n return null;\n }\n const DdE1xQ = sign * this.direction.dot(_edge1.cross(_diff));\n if (DdE1xQ < 0) {\n return null;\n }\n if (DdQxE2 + DdE1xQ > DdN) {\n return null;\n }\n const QdN = -sign * _diff.dot(_normal$1);\n if (QdN < 0) {\n return null;\n }\n return this.at(QdN / DdN, target);\n }\n applyMatrix4(matrix4) {\n this.origin.applyMatrix4(matrix4);\n this.direction.transformDirection(matrix4);\n return this;\n }\n equals(ray) {\n return ray.origin.equals(this.origin) && ray.direction.equals(this.direction);\n }\n clone() {\n return new this.constructor().copy(this);\n }\n }\n class Matrix4 {\n constructor(n11, n12, n13, n14, n21, n22, n23, n24, n31, n32, n33, n34, n41, n42, n43, n44) {\n Matrix4.prototype.isMatrix4 = true;\n this.elements = [\n 1,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1\n ];\n if (n11 !== void 0) {\n this.set(n11, n12, n13, n14, n21, n22, n23, n24, n31, n32, n33, n34, n41, n42, n43, n44);\n }\n }\n set(n11, n12, n13, n14, n21, n22, n23, n24, n31, n32, n33, n34, n41, n42, n43, n44) {\n const te = this.elements;\n te[0] = n11;\n te[4] = n12;\n te[8] = n13;\n te[12] = n14;\n te[1] = n21;\n te[5] = n22;\n te[9] = n23;\n te[13] = n24;\n te[2] = n31;\n te[6] = n32;\n te[10] = n33;\n te[14] = n34;\n te[3] = n41;\n te[7] = n42;\n te[11] = n43;\n te[15] = n44;\n return this;\n }\n identity() {\n this.set(\n 1,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n clone() {\n return new Matrix4().fromArray(this.elements);\n }\n copy(m) {\n const te = this.elements;\n const me = m.elements;\n te[0] = me[0];\n te[1] = me[1];\n te[2] = me[2];\n te[3] = me[3];\n te[4] = me[4];\n te[5] = me[5];\n te[6] = me[6];\n te[7] = me[7];\n te[8] = me[8];\n te[9] = me[9];\n te[10] = me[10];\n te[11] = me[11];\n te[12] = me[12];\n te[13] = me[13];\n te[14] = me[14];\n te[15] = me[15];\n return this;\n }\n copyPosition(m) {\n const te = this.elements, me = m.elements;\n te[12] = me[12];\n te[13] = me[13];\n te[14] = me[14];\n return this;\n }\n setFromMatrix3(m) {\n const me = m.elements;\n this.set(\n me[0],\n me[3],\n me[6],\n 0,\n me[1],\n me[4],\n me[7],\n 0,\n me[2],\n me[5],\n me[8],\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n extractBasis(xAxis, yAxis, zAxis) {\n xAxis.setFromMatrixColumn(this, 0);\n yAxis.setFromMatrixColumn(this, 1);\n zAxis.setFromMatrixColumn(this, 2);\n return this;\n }\n makeBasis(xAxis, yAxis, zAxis) {\n this.set(\n xAxis.x,\n yAxis.x,\n zAxis.x,\n 0,\n xAxis.y,\n yAxis.y,\n zAxis.y,\n 0,\n xAxis.z,\n yAxis.z,\n zAxis.z,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n extractRotation(m) {\n const te = this.elements;\n const me = m.elements;\n const scaleX = 1 / _v1$5.setFromMatrixColumn(m, 0).length();\n const scaleY = 1 / _v1$5.setFromMatrixColumn(m, 1).length();\n const scaleZ = 1 / _v1$5.setFromMatrixColumn(m, 2).length();\n te[0] = me[0] * scaleX;\n te[1] = me[1] * scaleX;\n te[2] = me[2] * scaleX;\n te[3] = 0;\n te[4] = me[4] * scaleY;\n te[5] = me[5] * scaleY;\n te[6] = me[6] * scaleY;\n te[7] = 0;\n te[8] = me[8] * scaleZ;\n te[9] = me[9] * scaleZ;\n te[10] = me[10] * scaleZ;\n te[11] = 0;\n te[12] = 0;\n te[13] = 0;\n te[14] = 0;\n te[15] = 1;\n return this;\n }\n makeRotationFromEuler(euler) {\n const te = this.elements;\n const x2 = euler.x, y = euler.y, z = euler.z;\n const a = Math.cos(x2), b = Math.sin(x2);\n const c = Math.cos(y), d = Math.sin(y);\n const e = Math.cos(z), f = Math.sin(z);\n if (euler.order === "XYZ") {\n const ae = a * e, af = a * f, be = b * e, bf = b * f;\n te[0] = c * e;\n te[4] = -c * f;\n te[8] = d;\n te[1] = af + be * d;\n te[5] = ae - bf * d;\n te[9] = -b * c;\n te[2] = bf - ae * d;\n te[6] = be + af * d;\n te[10] = a * c;\n } else if (euler.order === "YXZ") {\n const ce = c * e, cf = c * f, de = d * e, df = d * f;\n te[0] = ce + df * b;\n te[4] = de * b - cf;\n te[8] = a * d;\n te[1] = a * f;\n te[5] = a * e;\n te[9] = -b;\n te[2] = cf * b - de;\n te[6] = df + ce * b;\n te[10] = a * c;\n } else if (euler.order === "ZXY") {\n const ce = c * e, cf = c * f, de = d * e, df = d * f;\n te[0] = ce - df * b;\n te[4] = -a * f;\n te[8] = de + cf * b;\n te[1] = cf + de * b;\n te[5] = a * e;\n te[9] = df - ce * b;\n te[2] = -a * d;\n te[6] = b;\n te[10] = a * c;\n } else if (euler.order === "ZYX") {\n const ae = a * e, af = a * f, be = b * e, bf = b * f;\n te[0] = c * e;\n te[4] = be * d - af;\n te[8] = ae * d + bf;\n te[1] = c * f;\n te[5] = bf * d + ae;\n te[9] = af * d - be;\n te[2] = -d;\n te[6] = b * c;\n te[10] = a * c;\n } else if (euler.order === "YZX") {\n const ac = a * c, ad = a * d, bc = b * c, bd = b * d;\n te[0] = c * e;\n te[4] = bd - ac * f;\n te[8] = bc * f + ad;\n te[1] = f;\n te[5] = a * e;\n te[9] = -b * e;\n te[2] = -d * e;\n te[6] = ad * f + bc;\n te[10] = ac - bd * f;\n } else if (euler.order === "XZY") {\n const ac = a * c, ad = a * d, bc = b * c, bd = b * d;\n te[0] = c * e;\n te[4] = -f;\n te[8] = d * e;\n te[1] = ac * f + bd;\n te[5] = a * e;\n te[9] = ad * f - bc;\n te[2] = bc * f - ad;\n te[6] = b * e;\n te[10] = bd * f + ac;\n }\n te[3] = 0;\n te[7] = 0;\n te[11] = 0;\n te[12] = 0;\n te[13] = 0;\n te[14] = 0;\n te[15] = 1;\n return this;\n }\n makeRotationFromQuaternion(q) {\n return this.compose(_zero, q, _one);\n }\n lookAt(eye, target, up) {\n const te = this.elements;\n _z.subVectors(eye, target);\n if (_z.lengthSq() === 0) {\n _z.z = 1;\n }\n _z.normalize();\n _x.crossVectors(up, _z);\n if (_x.lengthSq() === 0) {\n if (Math.abs(up.z) === 1) {\n _z.x += 1e-4;\n } else {\n _z.z += 1e-4;\n }\n _z.normalize();\n _x.crossVectors(up, _z);\n }\n _x.normalize();\n _y.crossVectors(_z, _x);\n te[0] = _x.x;\n te[4] = _y.x;\n te[8] = _z.x;\n te[1] = _x.y;\n te[5] = _y.y;\n te[9] = _z.y;\n te[2] = _x.z;\n te[6] = _y.z;\n te[10] = _z.z;\n return this;\n }\n multiply(m) {\n return this.multiplyMatrices(this, m);\n }\n premultiply(m) {\n return this.multiplyMatrices(m, this);\n }\n multiplyMatrices(a, b) {\n const ae = a.elements;\n const be = b.elements;\n const te = this.elements;\n const a11 = ae[0], a12 = ae[4], a13 = ae[8], a14 = ae[12];\n const a21 = ae[1], a22 = ae[5], a23 = ae[9], a24 = ae[13];\n const a31 = ae[2], a32 = ae[6], a33 = ae[10], a34 = ae[14];\n const a41 = ae[3], a42 = ae[7], a43 = ae[11], a44 = ae[15];\n const b11 = be[0], b12 = be[4], b13 = be[8], b14 = be[12];\n const b21 = be[1], b22 = be[5], b23 = be[9], b24 = be[13];\n const b31 = be[2], b32 = be[6], b33 = be[10], b34 = be[14];\n const b41 = be[3], b42 = be[7], b43 = be[11], b44 = be[15];\n te[0] = a11 * b11 + a12 * b21 + a13 * b31 + a14 * b41;\n te[4] = a11 * b12 + a12 * b22 + a13 * b32 + a14 * b42;\n te[8] = a11 * b13 + a12 * b23 + a13 * b33 + a14 * b43;\n te[12] = a11 * b14 + a12 * b24 + a13 * b34 + a14 * b44;\n te[1] = a21 * b11 + a22 * b21 + a23 * b31 + a24 * b41;\n te[5] = a21 * b12 + a22 * b22 + a23 * b32 + a24 * b42;\n te[9] = a21 * b13 + a22 * b23 + a23 * b33 + a24 * b43;\n te[13] = a21 * b14 + a22 * b24 + a23 * b34 + a24 * b44;\n te[2] = a31 * b11 + a32 * b21 + a33 * b31 + a34 * b41;\n te[6] = a31 * b12 + a32 * b22 + a33 * b32 + a34 * b42;\n te[10] = a31 * b13 + a32 * b23 + a33 * b33 + a34 * b43;\n te[14] = a31 * b14 + a32 * b24 + a33 * b34 + a34 * b44;\n te[3] = a41 * b11 + a42 * b21 + a43 * b31 + a44 * b41;\n te[7] = a41 * b12 + a42 * b22 + a43 * b32 + a44 * b42;\n te[11] = a41 * b13 + a42 * b23 + a43 * b33 + a44 * b43;\n te[15] = a41 * b14 + a42 * b24 + a43 * b34 + a44 * b44;\n return this;\n }\n multiplyScalar(s) {\n const te = this.elements;\n te[0] *= s;\n te[4] *= s;\n te[8] *= s;\n te[12] *= s;\n te[1] *= s;\n te[5] *= s;\n te[9] *= s;\n te[13] *= s;\n te[2] *= s;\n te[6] *= s;\n te[10] *= s;\n te[14] *= s;\n te[3] *= s;\n te[7] *= s;\n te[11] *= s;\n te[15] *= s;\n return this;\n }\n determinant() {\n const te = this.elements;\n const n11 = te[0], n12 = te[4], n13 = te[8], n14 = te[12];\n const n21 = te[1], n22 = te[5], n23 = te[9], n24 = te[13];\n const n31 = te[2], n32 = te[6], n33 = te[10], n34 = te[14];\n const n41 = te[3], n42 = te[7], n43 = te[11], n44 = te[15];\n return n41 * (+n14 * n23 * n32 - n13 * n24 * n32 - n14 * n22 * n33 + n12 * n24 * n33 + n13 * n22 * n34 - n12 * n23 * n34) + n42 * (+n11 * n23 * n34 - n11 * n24 * n33 + n14 * n21 * n33 - n13 * n21 * n34 + n13 * n24 * n31 - n14 * n23 * n31) + n43 * (+n11 * n24 * n32 - n11 * n22 * n34 - n14 * n21 * n32 + n12 * n21 * n34 + n14 * n22 * n31 - n12 * n24 * n31) + n44 * (-n13 * n22 * n31 - n11 * n23 * n32 + n11 * n22 * n33 + n13 * n21 * n32 - n12 * n21 * n33 + n12 * n23 * n31);\n }\n transpose() {\n const te = this.elements;\n let tmp;\n tmp = te[1];\n te[1] = te[4];\n te[4] = tmp;\n tmp = te[2];\n te[2] = te[8];\n te[8] = tmp;\n tmp = te[6];\n te[6] = te[9];\n te[9] = tmp;\n tmp = te[3];\n te[3] = te[12];\n te[12] = tmp;\n tmp = te[7];\n te[7] = te[13];\n te[13] = tmp;\n tmp = te[11];\n te[11] = te[14];\n te[14] = tmp;\n return this;\n }\n setPosition(x2, y, z) {\n const te = this.elements;\n if (x2.isVector3) {\n te[12] = x2.x;\n te[13] = x2.y;\n te[14] = x2.z;\n } else {\n te[12] = x2;\n te[13] = y;\n te[14] = z;\n }\n return this;\n }\n invert() {\n const te = this.elements, n11 = te[0], n21 = te[1], n31 = te[2], n41 = te[3], n12 = te[4], n22 = te[5], n32 = te[6], n42 = te[7], n13 = te[8], n23 = te[9], n33 = te[10], n43 = te[11], n14 = te[12], n24 = te[13], n34 = te[14], n44 = te[15], t11 = n23 * n34 * n42 - n24 * n33 * n42 + n24 * n32 * n43 - n22 * n34 * n43 - n23 * n32 * n44 + n22 * n33 * n44, t12 = n14 * n33 * n42 - n13 * n34 * n42 - n14 * n32 * n43 + n12 * n34 * n43 + n13 * n32 * n44 - n12 * n33 * n44, t13 = n13 * n24 * n42 - n14 * n23 * n42 + n14 * n22 * n43 - n12 * n24 * n43 - n13 * n22 * n44 + n12 * n23 * n44, t14 = n14 * n23 * n32 - n13 * n24 * n32 - n14 * n22 * n33 + n12 * n24 * n33 + n13 * n22 * n34 - n12 * n23 * n34;\n const det = n11 * t11 + n21 * t12 + n31 * t13 + n41 * t14;\n if (det === 0) return this.set(0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0);\n const detInv = 1 / det;\n te[0] = t11 * detInv;\n te[1] = (n24 * n33 * n41 - n23 * n34 * n41 - n24 * n31 * n43 + n21 * n34 * n43 + n23 * n31 * n44 - n21 * n33 * n44) * detInv;\n te[2] = (n22 * n34 * n41 - n24 * n32 * n41 + n24 * n31 * n42 - n21 * n34 * n42 - n22 * n31 * n44 + n21 * n32 * n44) * detInv;\n te[3] = (n23 * n32 * n41 - n22 * n33 * n41 - n23 * n31 * n42 + n21 * n33 * n42 + n22 * n31 * n43 - n21 * n32 * n43) * detInv;\n te[4] = t12 * detInv;\n te[5] = (n13 * n34 * n41 - n14 * n33 * n41 + n14 * n31 * n43 - n11 * n34 * n43 - n13 * n31 * n44 + n11 * n33 * n44) * detInv;\n te[6] = (n14 * n32 * n41 - n12 * n34 * n41 - n14 * n31 * n42 + n11 * n34 * n42 + n12 * n31 * n44 - n11 * n32 * n44) * detInv;\n te[7] = (n12 * n33 * n41 - n13 * n32 * n41 + n13 * n31 * n42 - n11 * n33 * n42 - n12 * n31 * n43 + n11 * n32 * n43) * detInv;\n te[8] = t13 * detInv;\n te[9] = (n14 * n23 * n41 - n13 * n24 * n41 - n14 * n21 * n43 + n11 * n24 * n43 + n13 * n21 * n44 - n11 * n23 * n44) * detInv;\n te[10] = (n12 * n24 * n41 - n14 * n22 * n41 + n14 * n21 * n42 - n11 * n24 * n42 - n12 * n21 * n44 + n11 * n22 * n44) * detInv;\n te[11] = (n13 * n22 * n41 - n12 * n23 * n41 - n13 * n21 * n42 + n11 * n23 * n42 + n12 * n21 * n43 - n11 * n22 * n43) * detInv;\n te[12] = t14 * detInv;\n te[13] = (n13 * n24 * n31 - n14 * n23 * n31 + n14 * n21 * n33 - n11 * n24 * n33 - n13 * n21 * n34 + n11 * n23 * n34) * detInv;\n te[14] = (n14 * n22 * n31 - n12 * n24 * n31 - n14 * n21 * n32 + n11 * n24 * n32 + n12 * n21 * n34 - n11 * n22 * n34) * detInv;\n te[15] = (n12 * n23 * n31 - n13 * n22 * n31 + n13 * n21 * n32 - n11 * n23 * n32 - n12 * n21 * n33 + n11 * n22 * n33) * detInv;\n return this;\n }\n scale(v) {\n const te = this.elements;\n const x2 = v.x, y = v.y, z = v.z;\n te[0] *= x2;\n te[4] *= y;\n te[8] *= z;\n te[1] *= x2;\n te[5] *= y;\n te[9] *= z;\n te[2] *= x2;\n te[6] *= y;\n te[10] *= z;\n te[3] *= x2;\n te[7] *= y;\n te[11] *= z;\n return this;\n }\n getMaxScaleOnAxis() {\n const te = this.elements;\n const scaleXSq = te[0] * te[0] + te[1] * te[1] + te[2] * te[2];\n const scaleYSq = te[4] * te[4] + te[5] * te[5] + te[6] * te[6];\n const scaleZSq = te[8] * te[8] + te[9] * te[9] + te[10] * te[10];\n return Math.sqrt(Math.max(scaleXSq, scaleYSq, scaleZSq));\n }\n makeTranslation(x2, y, z) {\n if (x2.isVector3) {\n this.set(\n 1,\n 0,\n 0,\n x2.x,\n 0,\n 1,\n 0,\n x2.y,\n 0,\n 0,\n 1,\n x2.z,\n 0,\n 0,\n 0,\n 1\n );\n } else {\n this.set(\n 1,\n 0,\n 0,\n x2,\n 0,\n 1,\n 0,\n y,\n 0,\n 0,\n 1,\n z,\n 0,\n 0,\n 0,\n 1\n );\n }\n return this;\n }\n makeRotationX(theta) {\n const c = Math.cos(theta), s = Math.sin(theta);\n this.set(\n 1,\n 0,\n 0,\n 0,\n 0,\n c,\n -s,\n 0,\n 0,\n s,\n c,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeRotationY(theta) {\n const c = Math.cos(theta), s = Math.sin(theta);\n this.set(\n c,\n 0,\n s,\n 0,\n 0,\n 1,\n 0,\n 0,\n -s,\n 0,\n c,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeRotationZ(theta) {\n const c = Math.cos(theta), s = Math.sin(theta);\n this.set(\n c,\n -s,\n 0,\n 0,\n s,\n c,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeRotationAxis(axis, angle) {\n const c = Math.cos(angle);\n const s = Math.sin(angle);\n const t = 1 - c;\n const x2 = axis.x, y = axis.y, z = axis.z;\n const tx = t * x2, ty = t * y;\n this.set(\n tx * x2 + c,\n tx * y - s * z,\n tx * z + s * y,\n 0,\n tx * y + s * z,\n ty * y + c,\n ty * z - s * x2,\n 0,\n tx * z - s * y,\n ty * z + s * x2,\n t * z * z + c,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeScale(x2, y, z) {\n this.set(\n x2,\n 0,\n 0,\n 0,\n 0,\n y,\n 0,\n 0,\n 0,\n 0,\n z,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeShear(xy, xz, yx, yz, zx, zy) {\n this.set(\n 1,\n yx,\n zx,\n 0,\n xy,\n 1,\n zy,\n 0,\n xz,\n yz,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n compose(position, quaternion, scale) {\n const te = this.elements;\n const x2 = quaternion._x, y = quaternion._y, z = quaternion._z, w = quaternion._w;\n const x22 = x2 + x2, y2 = y + y, z2 = z + z;\n const xx = x2 * x22, xy = x2 * y2, xz = x2 * z2;\n const yy = y * y2, yz = y * z2, zz = z * z2;\n const wx = w * x22, wy = w * y2, wz = w * z2;\n const sx = scale.x, sy = scale.y, sz = scale.z;\n te[0] = (1 - (yy + zz)) * sx;\n te[1] = (xy + wz) * sx;\n te[2] = (xz - wy) * sx;\n te[3] = 0;\n te[4] = (xy - wz) * sy;\n te[5] = (1 - (xx + zz)) * sy;\n te[6] = (yz + wx) * sy;\n te[7] = 0;\n te[8] = (xz + wy) * sz;\n te[9] = (yz - wx) * sz;\n te[10] = (1 - (xx + yy)) * sz;\n te[11] = 0;\n te[12] = position.x;\n te[13] = position.y;\n te[14] = position.z;\n te[15] = 1;\n return this;\n }\n decompose(position, quaternion, scale) {\n const te = this.elements;\n let sx = _v1$5.set(te[0], te[1], te[2]).length();\n const sy = _v1$5.set(te[4], te[5], te[6]).length();\n const sz = _v1$5.set(te[8], te[9], te[10]).length();\n const det = this.determinant();\n if (det < 0) sx = -sx;\n position.x = te[12];\n position.y = te[13];\n position.z = te[14];\n _m1$2.copy(this);\n const invSX = 1 / sx;\n const invSY = 1 / sy;\n const invSZ = 1 / sz;\n _m1$2.elements[0] *= invSX;\n _m1$2.elements[1] *= invSX;\n _m1$2.elements[2] *= invSX;\n _m1$2.elements[4] *= invSY;\n _m1$2.elements[5] *= invSY;\n _m1$2.elements[6] *= invSY;\n _m1$2.elements[8] *= invSZ;\n _m1$2.elements[9] *= invSZ;\n _m1$2.elements[10] *= invSZ;\n quaternion.setFromRotationMatrix(_m1$2);\n scale.x = sx;\n scale.y = sy;\n scale.z = sz;\n return this;\n }\n makePerspective(left, right, top, bottom, near, far, coordinateSystem = WebGLCoordinateSystem) {\n const te = this.elements;\n const x2 = 2 * near / (right - left);\n const y = 2 * near / (top - bottom);\n const a = (right + left) / (right - left);\n const b = (top + bottom) / (top - bottom);\n let c, d;\n if (coordinateSystem === WebGLCoordinateSystem) {\n c = -(far + near) / (far - near);\n d = -2 * far * near / (far - near);\n } else if (coordinateSystem === WebGPUCoordinateSystem) {\n c = -far / (far - near);\n d = -far * near / (far - near);\n } else {\n throw new Error("THREE.Matrix4.makePerspective(): Invalid coordinate system: " + coordinateSystem);\n }\n te[0] = x2;\n te[4] = 0;\n te[8] = a;\n te[12] = 0;\n te[1] = 0;\n te[5] = y;\n te[9] = b;\n te[13] = 0;\n te[2] = 0;\n te[6] = 0;\n te[10] = c;\n te[14] = d;\n te[3] = 0;\n te[7] = 0;\n te[11] = -1;\n te[15] = 0;\n return this;\n }\n makeOrthographic(left, right, top, bottom, near, far, coordinateSystem = WebGLCoordinateSystem) {\n const te = this.elements;\n const w = 1 / (right - left);\n const h = 1 / (top - bottom);\n const p = 1 / (far - near);\n const x2 = (right + left) * w;\n const y = (top + bottom) * h;\n let z, zInv;\n if (coordinateSystem === WebGLCoordinateSystem) {\n z = (far + near) * p;\n zInv = -2 * p;\n } else if (coordinateSystem === WebGPUCoordinateSystem) {\n z = near * p;\n zInv = -1 * p;\n } else {\n throw new Error("THREE.Matrix4.makeOrthographic(): Invalid coordinate system: " + coordinateSystem);\n }\n te[0] = 2 * w;\n te[4] = 0;\n te[8] = 0;\n te[12] = -x2;\n te[1] = 0;\n te[5] = 2 * h;\n te[9] = 0;\n te[13] = -y;\n te[2] = 0;\n te[6] = 0;\n te[10] = zInv;\n te[14] = -z;\n te[3] = 0;\n te[7] = 0;\n te[11] = 0;\n te[15] = 1;\n return this;\n }\n equals(matrix) {\n const te = this.elements;\n const me = matrix.elements;\n for (let i2 = 0; i2 < 16; i2++) {\n if (te[i2] !== me[i2]) return false;\n }\n return true;\n }\n fromArray(array, offset = 0) {\n for (let i2 = 0; i2 < 16; i2++) {\n this.elements[i2] = array[i2 + offset];\n }\n return this;\n }\n toArray(array = [], offset = 0) {\n const te = this.elements;\n array[offset] = te[0];\n array[offset + 1] = te[1];\n array[offset + 2] = te[2];\n array[offset + 3] = te[3];\n array[offset + 4] = te[4];\n array[offset + 5] = te[5];\n array[offset + 6] = te[6];\n array[offset + 7] = te[7];\n array[offset + 8] = te[8];\n array[offset + 9] = te[9];\n array[offset + 10] = te[10];\n array[offset + 11] = te[11];\n array[offset + 12] = te[12];\n array[offset + 13] = te[13];\n array[offset + 14] = te[14];\n array[offset + 15] = te[15];\n return array;\n }\n }\n const _v1$5 = /* @__PURE__ */ new Vector3();\n const _m1$2 = /* @__PURE__ */ new Matrix4();\n const _zero = /* @__PURE__ */ new Vector3(0, 0, 0);\n const _one = /* @__PURE__ */ new Vector3(1, 1, 1);\n const _x = /* @__PURE__ */ new Vector3();\n const _y = /* @__PURE__ */ new Vector3();\n const _z = /* @__PURE__ */ new Vector3();\n const _matrix$2 = /* @__PURE__ */ new Matrix4();\n const _quaternion$3 = /* @__PURE__ */ new Quaternion();\n class Euler {\n constructor(x2 = 0, y = 0, z = 0, order = Euler.DEFAULT_ORDER) {\n this.isEuler = true;\n this._x = x2;\n this._y = y;\n this._z = z;\n this._order = order;\n }\n get x() {\n return this._x;\n }\n set x(value) {\n this._x = value;\n this._onChangeCallback();\n }\n get y() {\n return this._y;\n }\n set y(value) {\n this._y = value;\n this._onChangeCallback();\n }\n get z() {\n return this._z;\n }\n set z(value) {\n this._z = value;\n this._onChangeCallback();\n }\n get order() {\n return this._order;\n }\n set order(value) {\n this._order = value;\n this._onChangeCallback();\n }\n set(x2, y, z, order = this._order) {\n this._x = x2;\n this._y = y;\n this._z = z;\n this._order = order;\n this._onChangeCallback();\n return this;\n }\n clone() {\n return new this.constructor(this._x, this._y, this._z, this._order);\n }\n copy(euler) {\n this._x = euler._x;\n this._y = euler._y;\n this._z = euler._z;\n this._order = euler._order;\n this._onChangeCallback();\n return this;\n }\n setFromRotationMatrix(m, order = this._order, update = true) {\n const te = m.elements;\n const m11 = te[0], m12 = te[4], m13 = te[8];\n const m21 = te[1], m22 = te[5], m23 = te[9];\n const m31 = te[2], m32 = te[6], m33 = te[10];\n switch (order) {\n case "XYZ":\n this._y = Math.asin(clamp(m13, -1, 1));\n if (Math.abs(m13) < 0.9999999) {\n this._x = Math.atan2(-m23, m33);\n this._z = Math.atan2(-m12, m11);\n } else {\n this._x = Math.atan2(m32, m22);\n this._z = 0;\n }\n break;\n case "YXZ":\n this._x = Math.asin(-clamp(m23, -1, 1));\n if (Math.abs(m23) < 0.9999999) {\n this._y = Math.atan2(m13, m33);\n this._z = Math.atan2(m21, m22);\n } else {\n this._y = Math.atan2(-m31, m11);\n this._z = 0;\n }\n break;\n case "ZXY":\n this._x = Math.asin(clamp(m32, -1, 1));\n if (Math.abs(m32) < 0.9999999) {\n this._y = Math.atan2(-m31, m33);\n this._z = Math.atan2(-m12, m22);\n } else {\n this._y = 0;\n this._z = Math.atan2(m21, m11);\n }\n break;\n case "ZYX":\n this._y = Math.asin(-clamp(m31, -1, 1));\n if (Math.abs(m31) < 0.9999999) {\n this._x = Math.atan2(m32, m33);\n this._z = Math.atan2(m21, m11);\n } else {\n this._x = 0;\n this._z = Math.atan2(-m12, m22);\n }\n break;\n case "YZX":\n this._z = Math.asin(clamp(m21, -1, 1));\n if (Math.abs(m21) < 0.9999999) {\n this._x = Math.atan2(-m23, m22);\n this._y = Math.atan2(-m31, m11);\n } else {\n this._x = 0;\n this._y = Math.atan2(m13, m33);\n }\n break;\n case "XZY":\n this._z = Math.asin(-clamp(m12, -1, 1));\n if (Math.abs(m12) < 0.9999999) {\n this._x = Math.atan2(m32, m22);\n this._y = Math.atan2(m13, m11);\n } else {\n this._x = Math.atan2(-m23, m33);\n this._y = 0;\n }\n break;\n default:\n console.warn("THREE.Euler: .setFromRotationMatrix() encountered an unknown order: " + order);\n }\n this._order = order;\n if (update === true) this._onChangeCallback();\n return this;\n }\n setFromQuaternion(q, order, update) {\n _matrix$2.makeRotationFromQuaternion(q);\n return this.setFromRotationMatrix(_matrix$2, order, update);\n }\n setFromVector3(v, order = this._order) {\n return this.set(v.x, v.y, v.z, order);\n }\n reorder(newOrder) {\n _quaternion$3.setFromEuler(this);\n return this.setFromQuaternion(_quaternion$3, newOrder);\n }\n equals(euler) {\n return euler._x === this._x && euler._y === this._y && euler._z === this._z && euler._order === this._order;\n }\n fromArray(array) {\n this._x = array[0];\n this._y = array[1];\n this._z = array[2];\n if (array[3] !== void 0) this._order = array[3];\n this._onChangeCallback();\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this._x;\n array[offset + 1] = this._y;\n array[offset + 2] = this._z;\n array[offset + 3] = this._order;\n return array;\n }\n _onChange(callback) {\n this._onChangeCallback = callback;\n return this;\n }\n _onChangeCallback() {\n }\n *[Symbol.iterator]() {\n yield this._x;\n yield this._y;\n yield this._z;\n yield this._order;\n }\n }\n Euler.DEFAULT_ORDER = "XYZ";\n class Layers {\n constructor() {\n this.mask = 1 | 0;\n }\n set(channel) {\n this.mask = (1 << channel | 0) >>> 0;\n }\n enable(channel) {\n this.mask |= 1 << channel | 0;\n }\n enableAll() {\n this.mask = 4294967295 | 0;\n }\n toggle(channel) {\n this.mask ^= 1 << channel | 0;\n }\n disable(channel) {\n this.mask &= ~(1 << channel | 0);\n }\n disableAll() {\n this.mask = 0;\n }\n test(layers) {\n return (this.mask & layers.mask) !== 0;\n }\n isEnabled(channel) {\n return (this.mask & (1 << channel | 0)) !== 0;\n }\n }\n let _object3DId = 0;\n const _v1$4 = /* @__PURE__ */ new Vector3();\n const _q1 = /* @__PURE__ */ new Quaternion();\n const _m1$1 = /* @__PURE__ */ new Matrix4();\n const _target = /* @__PURE__ */ new Vector3();\n const _position$3 = /* @__PURE__ */ new Vector3();\n const _scale$2 = /* @__PURE__ */ new Vector3();\n const _quaternion$2 = /* @__PURE__ */ new Quaternion();\n const _xAxis = /* @__PURE__ */ new Vector3(1, 0, 0);\n const _yAxis = /* @__PURE__ */ new Vector3(0, 1, 0);\n const _zAxis = /* @__PURE__ */ new Vector3(0, 0, 1);\n const _addedEvent = { type: "added" };\n const _removedEvent = { type: "removed" };\n const _childaddedEvent = { type: "childadded", child: null };\n const _childremovedEvent = { type: "childremoved", child: null };\n class Object3D extends EventDispatcher {\n constructor() {\n super();\n this.isObject3D = true;\n Object.defineProperty(this, "id", { value: _object3DId++ });\n this.uuid = generateUUID();\n this.name = "";\n this.type = "Object3D";\n this.parent = null;\n this.children = [];\n this.up = Object3D.DEFAULT_UP.clone();\n const position = new Vector3();\n const rotation = new Euler();\n const quaternion = new Quaternion();\n const scale = new Vector3(1, 1, 1);\n function onRotationChange() {\n quaternion.setFromEuler(rotation, false);\n }\n function onQuaternionChange() {\n rotation.setFromQuaternion(quaternion, void 0, false);\n }\n rotation._onChange(onRotationChange);\n quaternion._onChange(onQuaternionChange);\n Object.defineProperties(this, {\n position: {\n configurable: true,\n enumerable: true,\n value: position\n },\n rotation: {\n configurable: true,\n enumerable: true,\n value: rotation\n },\n quaternion: {\n configurable: true,\n enumerable: true,\n value: quaternion\n },\n scale: {\n configurable: true,\n enumerable: true,\n value: scale\n },\n modelViewMatrix: {\n value: new Matrix4()\n },\n normalMatrix: {\n value: new Matrix3()\n }\n });\n this.matrix = new Matrix4();\n this.matrixWorld = new Matrix4();\n this.matrixAutoUpdate = Object3D.DEFAULT_MATRIX_AUTO_UPDATE;\n this.matrixWorldAutoUpdate = Object3D.DEFAULT_MATRIX_WORLD_AUTO_UPDATE;\n this.matrixWorldNeedsUpdate = false;\n this.layers = new Layers();\n this.visible = true;\n this.castShadow = false;\n this.receiveShadow = false;\n this.frustumCulled = true;\n this.renderOrder = 0;\n this.animations = [];\n this.userData = {};\n }\n onBeforeShadow() {\n }\n onAfterShadow() {\n }\n onBeforeRender() {\n }\n onAfterRender() {\n }\n applyMatrix4(matrix) {\n if (this.matrixAutoUpdate) this.updateMatrix();\n this.matrix.premultiply(matrix);\n this.matrix.decompose(this.position, this.quaternion, this.scale);\n }\n applyQuaternion(q) {\n this.quaternion.premultiply(q);\n return this;\n }\n setRotationFromAxisAngle(axis, angle) {\n this.quaternion.setFromAxisAngle(axis, angle);\n }\n setRotationFromEuler(euler) {\n this.quaternion.setFromEuler(euler, true);\n }\n setRotationFromMatrix(m) {\n this.quaternion.setFromRotationMatrix(m);\n }\n setRotationFromQuaternion(q) {\n this.quaternion.copy(q);\n }\n rotateOnAxis(axis, angle) {\n _q1.setFromAxisAngle(axis, angle);\n this.quaternion.multiply(_q1);\n return this;\n }\n rotateOnWorldAxis(axis, angle) {\n _q1.setFromAxisAngle(axis, angle);\n this.quaternion.premultiply(_q1);\n return this;\n }\n rotateX(angle) {\n return this.rotateOnAxis(_xAxis, angle);\n }\n rotateY(angle) {\n return this.rotateOnAxis(_yAxis, angle);\n }\n rotateZ(angle) {\n return this.rotateOnAxis(_zAxis, angle);\n }\n translateOnAxis(axis, distance) {\n _v1$4.copy(axis).applyQuaternion(this.quaternion);\n this.position.add(_v1$4.multiplyScalar(distance));\n return this;\n }\n translateX(distance) {\n return this.translateOnAxis(_xAxis, distance);\n }\n translateY(distance) {\n return this.translateOnAxis(_yAxis, distance);\n }\n translateZ(distance) {\n return this.translateOnAxis(_zAxis, distance);\n }\n localToWorld(vector) {\n this.updateWorldMatrix(true, false);\n return vector.applyMatrix4(this.matrixWorld);\n }\n worldToLocal(vector) {\n this.updateWorldMatrix(true, false);\n return vector.applyMatrix4(_m1$1.copy(this.matrixWorld).invert());\n }\n lookAt(x2, y, z) {\n if (x2.isVector3) {\n _target.copy(x2);\n } else {\n _target.set(x2, y, z);\n }\n const parent = this.parent;\n this.updateWorldMatrix(true, false);\n _position$3.setFromMatrixPosition(this.matrixWorld);\n if (this.isCamera || this.isLight) {\n _m1$1.lookAt(_position$3, _target, this.up);\n } else {\n _m1$1.lookAt(_target, _position$3, this.up);\n }\n this.quaternion.setFromRotationMatrix(_m1$1);\n if (parent) {\n _m1$1.extractRotation(parent.matrixWorld);\n _q1.setFromRotationMatrix(_m1$1);\n this.quaternion.premultiply(_q1.invert());\n }\n }\n add(object) {\n if (arguments.length > 1) {\n for (let i2 = 0; i2 < arguments.length; i2++) {\n this.add(arguments[i2]);\n }\n return this;\n }\n if (object === this) {\n console.error("THREE.Object3D.add: object can\'t be added as a child of itself.", object);\n return this;\n }\n if (object && object.isObject3D) {\n object.removeFromParent();\n object.parent = this;\n this.children.push(object);\n object.dispatchEvent(_addedEvent);\n _childaddedEvent.child = object;\n this.dispatchEvent(_childaddedEvent);\n _childaddedEvent.child = null;\n } else {\n console.error("THREE.Object3D.add: object not an instance of THREE.Object3D.", object);\n }\n return this;\n }\n remove(object) {\n if (arguments.length > 1) {\n for (let i2 = 0; i2 < arguments.length; i2++) {\n this.remove(arguments[i2]);\n }\n return this;\n }\n const index = this.children.indexOf(object);\n if (index !== -1) {\n object.parent = null;\n this.children.splice(index, 1);\n object.dispatchEvent(_removedEvent);\n _childremovedEvent.child = object;\n this.dispatchEvent(_childremovedEvent);\n _childremovedEvent.child = null;\n }\n return this;\n }\n removeFromParent() {\n const parent = this.parent;\n if (parent !== null) {\n parent.remove(this);\n }\n return this;\n }\n clear() {\n return this.remove(...this.children);\n }\n attach(object) {\n this.updateWorldMatrix(true, false);\n _m1$1.copy(this.matrixWorld).invert();\n if (object.parent !== null) {\n object.parent.updateWorldMatrix(true, false);\n _m1$1.multiply(object.parent.matrixWorld);\n }\n object.applyMatrix4(_m1$1);\n object.removeFromParent();\n object.parent = this;\n this.children.push(object);\n object.updateWorldMatrix(false, true);\n object.dispatchEvent(_addedEvent);\n _childaddedEvent.child = object;\n this.dispatchEvent(_childaddedEvent);\n _childaddedEvent.child = null;\n return this;\n }\n getObjectById(id) {\n return this.getObjectByProperty("id", id);\n }\n getObjectByName(name) {\n return this.getObjectByProperty("name", name);\n }\n getObjectByProperty(name, value) {\n if (this[name] === value) return this;\n for (let i2 = 0, l = this.children.length; i2 < l; i2++) {\n const child = this.children[i2];\n const object = child.getObjectByProperty(name, value);\n if (object !== void 0) {\n return object;\n }\n }\n return void 0;\n }\n getObjectsByProperty(name, value, result = []) {\n if (this[name] === value) result.push(this);\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n children[i2].getObjectsByProperty(name, value, result);\n }\n return result;\n }\n getWorldPosition(target) {\n this.updateWorldMatrix(true, false);\n return target.setFromMatrixPosition(this.matrixWorld);\n }\n getWorldQuaternion(target) {\n this.updateWorldMatrix(true, false);\n this.matrixWorld.decompose(_position$3, target, _scale$2);\n return target;\n }\n getWorldScale(target) {\n this.updateWorldMatrix(true, false);\n this.matrixWorld.decompose(_position$3, _quaternion$2, target);\n return target;\n }\n getWorldDirection(target) {\n this.updateWorldMatrix(true, false);\n const e = this.matrixWorld.elements;\n return target.set(e[8], e[9], e[10]).normalize();\n }\n raycast() {\n }\n traverse(callback) {\n callback(this);\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n children[i2].traverse(callback);\n }\n }\n traverseVisible(callback) {\n if (this.visible === false) return;\n callback(this);\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n children[i2].traverseVisible(callback);\n }\n }\n traverseAncestors(callback) {\n const parent = this.parent;\n if (parent !== null) {\n callback(parent);\n parent.traverseAncestors(callback);\n }\n }\n updateMatrix() {\n this.matrix.compose(this.position, this.quaternion, this.scale);\n this.matrixWorldNeedsUpdate = true;\n }\n updateMatrixWorld(force) {\n if (this.matrixAutoUpdate) this.updateMatrix();\n if (this.matrixWorldNeedsUpdate || force) {\n if (this.matrixWorldAutoUpdate === true) {\n if (this.parent === null) {\n this.matrixWorld.copy(this.matrix);\n } else {\n this.matrixWorld.multiplyMatrices(this.parent.matrixWorld, this.matrix);\n }\n }\n this.matrixWorldNeedsUpdate = false;\n force = true;\n }\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n const child = children[i2];\n child.updateMatrixWorld(force);\n }\n }\n updateWorldMatrix(updateParents, updateChildren) {\n const parent = this.parent;\n if (updateParents === true && parent !== null) {\n parent.updateWorldMatrix(true, false);\n }\n if (this.matrixAutoUpdate) this.updateMatrix();\n if (this.matrixWorldAutoUpdate === true) {\n if (this.parent === null) {\n this.matrixWorld.copy(this.matrix);\n } else {\n this.matrixWorld.multiplyMatrices(this.parent.matrixWorld, this.matrix);\n }\n }\n if (updateChildren === true) {\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n const child = children[i2];\n child.updateWorldMatrix(false, true);\n }\n }\n }\n toJSON(meta) {\n const isRootObject = meta === void 0 || typeof meta === "string";\n const output = {};\n if (isRootObject) {\n meta = {\n geometries: {},\n materials: {},\n textures: {},\n images: {},\n shapes: {},\n skeletons: {},\n animations: {},\n nodes: {}\n };\n output.metadata = {\n version: 4.6,\n type: "Object",\n generator: "Object3D.toJSON"\n };\n }\n const object = {};\n object.uuid = this.uuid;\n object.type = this.type;\n if (this.name !== "") object.name = this.name;\n if (this.castShadow === true) object.castShadow = true;\n if (this.receiveShadow === true) object.receiveShadow = true;\n if (this.visible === false) object.visible = false;\n if (this.frustumCulled === false) object.frustumCulled = false;\n if (this.renderOrder !== 0) object.renderOrder = this.renderOrder;\n if (Object.keys(this.userData).length > 0) object.userData = this.userData;\n object.layers = this.layers.mask;\n object.matrix = this.matrix.toArray();\n object.up = this.up.toArray();\n if (this.matrixAutoUpdate === false) object.matrixAutoUpdate = false;\n if (this.isInstancedMesh) {\n object.type = "InstancedMesh";\n object.count = this.count;\n object.instanceMatrix = this.instanceMatrix.toJSON();\n if (this.instanceColor !== null) object.instanceColor = this.instanceColor.toJSON();\n }\n if (this.isBatchedMesh) {\n object.type = "BatchedMesh";\n object.perObjectFrustumCulled = this.perObjectFrustumCulled;\n object.sortObjects = this.sortObjects;\n object.drawRanges = this._drawRanges;\n object.reservedRanges = this._reservedRanges;\n object.visibility = this._visibility;\n object.active = this._active;\n object.bounds = this._bounds.map((bound) => ({\n boxInitialized: bound.boxInitialized,\n boxMin: bound.box.min.toArray(),\n boxMax: bound.box.max.toArray(),\n sphereInitialized: bound.sphereInitialized,\n sphereRadius: bound.sphere.radius,\n sphereCenter: bound.sphere.center.toArray()\n }));\n object.maxInstanceCount = this._maxInstanceCount;\n object.maxVertexCount = this._maxVertexCount;\n object.maxIndexCount = this._maxIndexCount;\n object.geometryInitialized = this._geometryInitialized;\n object.geometryCount = this._geometryCount;\n object.matricesTexture = this._matricesTexture.toJSON(meta);\n if (this._colorsTexture !== null) object.colorsTexture = this._colorsTexture.toJSON(meta);\n if (this.boundingSphere !== null) {\n object.boundingSphere = {\n center: object.boundingSphere.center.toArray(),\n radius: object.boundingSphere.radius\n };\n }\n if (this.boundingBox !== null) {\n object.boundingBox = {\n min: object.boundingBox.min.toArray(),\n max: object.boundingBox.max.toArray()\n };\n }\n }\n function serialize(library, element) {\n if (library[element.uuid] === void 0) {\n library[element.uuid] = element.toJSON(meta);\n }\n return element.uuid;\n }\n if (this.isScene) {\n if (this.background) {\n if (this.background.isColor) {\n object.background = this.background.toJSON();\n } else if (this.background.isTexture) {\n object.background = this.background.toJSON(meta).uuid;\n }\n }\n if (this.environment && this.environment.isTexture && this.environment.isRenderTargetTexture !== true) {\n object.environment = this.environment.toJSON(meta).uuid;\n }\n } else if (this.isMesh || this.isLine || this.isPoints) {\n object.geometry = serialize(meta.geometries, this.geometry);\n const parameters = this.geometry.parameters;\n if (parameters !== void 0 && parameters.shapes !== void 0) {\n const shapes = parameters.shapes;\n if (Array.isArray(shapes)) {\n for (let i2 = 0, l = shapes.length; i2 < l; i2++) {\n const shape = shapes[i2];\n serialize(meta.shapes, shape);\n }\n } else {\n serialize(meta.shapes, shapes);\n }\n }\n }\n if (this.isSkinnedMesh) {\n object.bindMode = this.bindMode;\n object.bindMatrix = this.bindMatrix.toArray();\n if (this.skeleton !== void 0) {\n serialize(meta.skeletons, this.skeleton);\n object.skeleton = this.skeleton.uuid;\n }\n }\n if (this.material !== void 0) {\n if (Array.isArray(this.material)) {\n const uuids = [];\n for (let i2 = 0, l = this.material.length; i2 < l; i2++) {\n uuids.push(serialize(meta.materials, this.material[i2]));\n }\n object.material = uuids;\n } else {\n object.material = serialize(meta.materials, this.material);\n }\n }\n if (this.children.length > 0) {\n object.children = [];\n for (let i2 = 0; i2 < this.children.length; i2++) {\n object.children.push(this.children[i2].toJSON(meta).object);\n }\n }\n if (this.animations.length > 0) {\n object.animations = [];\n for (let i2 = 0; i2 < this.animations.length; i2++) {\n const animation = this.animations[i2];\n object.animations.push(serialize(meta.animations, animation));\n }\n }\n if (isRootObject) {\n const geometries = extractFromCache(meta.geometries);\n const materials = extractFromCache(meta.materials);\n const textures = extractFromCache(meta.textures);\n const images = extractFromCache(meta.images);\n const shapes = extractFromCache(meta.shapes);\n const skeletons = extractFromCache(meta.skeletons);\n const animations = extractFromCache(meta.animations);\n const nodes = extractFromCache(meta.nodes);\n if (geometries.length > 0) output.geometries = geometries;\n if (materials.length > 0) output.materials = materials;\n if (textures.length > 0) output.textures = textures;\n if (images.length > 0) output.images = images;\n if (shapes.length > 0) output.shapes = shapes;\n if (skeletons.length > 0) output.skeletons = skeletons;\n if (animations.length > 0) output.animations = animations;\n if (nodes.length > 0) output.nodes = nodes;\n }\n output.object = object;\n return output;\n function extractFromCache(cache) {\n const values = [];\n for (const key in cache) {\n const data = cache[key];\n delete data.metadata;\n values.push(data);\n }\n return values;\n }\n }\n clone(recursive) {\n return new this.constructor().copy(this, recursive);\n }\n copy(source, recursive = true) {\n this.name = source.name;\n this.up.copy(source.up);\n this.position.copy(source.position);\n this.rotation.order = source.rotation.order;\n this.quaternion.copy(source.quaternion);\n this.scale.copy(source.scale);\n this.matrix.copy(source.matrix);\n this.matrixWorld.copy(source.matrixWorld);\n this.matrixAutoUpdate = source.matrixAutoUpdate;\n this.matrixWorldAutoUpdate = source.matrixWorldAutoUpdate;\n this.matrixWorldNeedsUpdate = source.matrixWorldNeedsUpdate;\n this.layers.mask = source.layers.mask;\n this.visible = source.visible;\n this.castShadow = source.castShadow;\n this.receiveShadow = source.receiveShadow;\n this.frustumCulled = source.frustumCulled;\n this.renderOrder = source.renderOrder;\n this.animations = source.animations.slice();\n this.userData = JSON.parse(JSON.stringify(source.userData));\n if (recursive === true) {\n for (let i2 = 0; i2 < source.children.length; i2++) {\n const child = source.children[i2];\n this.add(child.clone());\n }\n }\n return this;\n }\n }\n Object3D.DEFAULT_UP = /* @__PURE__ */ new Vector3(0, 1, 0);\n Object3D.DEFAULT_MATRIX_AUTO_UPDATE = true;\n Object3D.DEFAULT_MATRIX_WORLD_AUTO_UPDATE = true;\n const _v0$1 = /* @__PURE__ */ new Vector3();\n const _v1$3 = /* @__PURE__ */ new Vector3();\n const _v2$2 = /* @__PURE__ */ new Vector3();\n const _v3$2 = /* @__PURE__ */ new Vector3();\n const _vab = /* @__PURE__ */ new Vector3();\n const _vac = /* @__PURE__ */ new Vector3();\n const _vbc = /* @__PURE__ */ new Vector3();\n const _vap = /* @__PURE__ */ new Vector3();\n const _vbp = /* @__PURE__ */ new Vector3();\n const _vcp = /* @__PURE__ */ new Vector3();\n const _v40 = /* @__PURE__ */ new Vector4();\n const _v41 = /* @__PURE__ */ new Vector4();\n const _v42 = /* @__PURE__ */ new Vector4();\n class Triangle {\n constructor(a = new Vector3(), b = new Vector3(), c = new Vector3()) {\n this.a = a;\n this.b = b;\n this.c = c;\n }\n static getNormal(a, b, c, target) {\n target.subVectors(c, b);\n _v0$1.subVectors(a, b);\n target.cross(_v0$1);\n const targetLengthSq = target.lengthSq();\n if (targetLengthSq > 0) {\n return target.multiplyScalar(1 / Math.sqrt(targetLengthSq));\n }\n return target.set(0, 0, 0);\n }\n // static/instance method to calculate barycentric coordinates\n // based on: http://www.blackpawn.com/texts/pointinpoly/default.html\n static getBarycoord(point, a, b, c, target) {\n _v0$1.subVectors(c, a);\n _v1$3.subVectors(b, a);\n _v2$2.subVectors(point, a);\n const dot00 = _v0$1.dot(_v0$1);\n const dot01 = _v0$1.dot(_v1$3);\n const dot02 = _v0$1.dot(_v2$2);\n const dot11 = _v1$3.dot(_v1$3);\n const dot12 = _v1$3.dot(_v2$2);\n const denom = dot00 * dot11 - dot01 * dot01;\n if (denom === 0) {\n target.set(0, 0, 0);\n return null;\n }\n const invDenom = 1 / denom;\n const u = (dot11 * dot02 - dot01 * dot12) * invDenom;\n const v = (dot00 * dot12 - dot01 * dot02) * invDenom;\n return target.set(1 - u - v, v, u);\n }\n static containsPoint(point, a, b, c) {\n if (this.getBarycoord(point, a, b, c, _v3$2) === null) {\n return false;\n }\n return _v3$2.x >= 0 && _v3$2.y >= 0 && _v3$2.x + _v3$2.y <= 1;\n }\n static getInterpolation(point, p1, p2, p3, v1, v2, v3, target) {\n if (this.getBarycoord(point, p1, p2, p3, _v3$2) === null) {\n target.x = 0;\n target.y = 0;\n if ("z" in target) target.z = 0;\n if ("w" in target) target.w = 0;\n return null;\n }\n target.setScalar(0);\n target.addScaledVector(v1, _v3$2.x);\n target.addScaledVector(v2, _v3$2.y);\n target.addScaledVector(v3, _v3$2.z);\n return target;\n }\n static getInterpolatedAttribute(attr, i1, i2, i3, barycoord, target) {\n _v40.setScalar(0);\n _v41.setScalar(0);\n _v42.setScalar(0);\n _v40.fromBufferAttribute(attr, i1);\n _v41.fromBufferAttribute(attr, i2);\n _v42.fromBufferAttribute(attr, i3);\n target.setScalar(0);\n target.addScaledVector(_v40, barycoord.x);\n target.addScaledVector(_v41, barycoord.y);\n target.addScaledVector(_v42, barycoord.z);\n return target;\n }\n static isFrontFacing(a, b, c, direction) {\n _v0$1.subVectors(c, b);\n _v1$3.subVectors(a, b);\n return _v0$1.cross(_v1$3).dot(direction) < 0 ? true : false;\n }\n set(a, b, c) {\n this.a.copy(a);\n this.b.copy(b);\n this.c.copy(c);\n return this;\n }\n setFromPointsAndIndices(points, i0, i1, i2) {\n this.a.copy(points[i0]);\n this.b.copy(points[i1]);\n this.c.copy(points[i2]);\n return this;\n }\n setFromAttributeAndIndices(attribute, i0, i1, i2) {\n this.a.fromBufferAttribute(attribute, i0);\n this.b.fromBufferAttribute(attribute, i1);\n this.c.fromBufferAttribute(attribute, i2);\n return this;\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(triangle) {\n this.a.copy(triangle.a);\n this.b.copy(triangle.b);\n this.c.copy(triangle.c);\n return this;\n }\n getArea() {\n _v0$1.subVectors(this.c, this.b);\n _v1$3.subVectors(this.a, this.b);\n return _v0$1.cross(_v1$3).length() * 0.5;\n }\n getMidpoint(target) {\n return target.addVectors(this.a, this.b).add(this.c).multiplyScalar(1 / 3);\n }\n getNormal(target) {\n return Triangle.getNormal(this.a, this.b, this.c, target);\n }\n getPlane(target) {\n return target.setFromCoplanarPoints(this.a, this.b, this.c);\n }\n getBarycoord(point, target) {\n return Triangle.getBarycoord(point, this.a, this.b, this.c, target);\n }\n getInterpolation(point, v1, v2, v3, target) {\n return Triangle.getInterpolation(point, this.a, this.b, this.c, v1, v2, v3, target);\n }\n containsPoint(point) {\n return Triangle.containsPoint(point, this.a, this.b, this.c);\n }\n isFrontFacing(direction) {\n return Triangle.isFrontFacing(this.a, this.b, this.c, direction);\n }\n intersectsBox(box) {\n return box.intersectsTriangle(this);\n }\n closestPointToPoint(p, target) {\n const a = this.a, b = this.b, c = this.c;\n let v, w;\n _vab.subVectors(b, a);\n _vac.subVectors(c, a);\n _vap.subVectors(p, a);\n const d1 = _vab.dot(_vap);\n const d2 = _vac.dot(_vap);\n if (d1 <= 0 && d2 <= 0) {\n return target.copy(a);\n }\n _vbp.subVectors(p, b);\n const d3 = _vab.dot(_vbp);\n const d4 = _vac.dot(_vbp);\n if (d3 >= 0 && d4 <= d3) {\n return target.copy(b);\n }\n const vc = d1 * d4 - d3 * d2;\n if (vc <= 0 && d1 >= 0 && d3 <= 0) {\n v = d1 / (d1 - d3);\n return target.copy(a).addScaledVector(_vab, v);\n }\n _vcp.subVectors(p, c);\n const d5 = _vab.dot(_vcp);\n const d6 = _vac.dot(_vcp);\n if (d6 >= 0 && d5 <= d6) {\n return target.copy(c);\n }\n const vb = d5 * d2 - d1 * d6;\n if (vb <= 0 && d2 >= 0 && d6 <= 0) {\n w = d2 / (d2 - d6);\n return target.copy(a).addScaledVector(_vac, w);\n }\n const va = d3 * d6 - d5 * d4;\n if (va <= 0 && d4 - d3 >= 0 && d5 - d6 >= 0) {\n _vbc.subVectors(c, b);\n w = (d4 - d3) / (d4 - d3 + (d5 - d6));\n return target.copy(b).addScaledVector(_vbc, w);\n }\n const denom = 1 / (va + vb + vc);\n v = vb * denom;\n w = vc * denom;\n return target.copy(a).addScaledVector(_vab, v).addScaledVector(_vac, w);\n }\n equals(triangle) {\n return triangle.a.equals(this.a) && triangle.b.equals(this.b) && triangle.c.equals(this.c);\n }\n }\n const _colorKeywords = {\n "aliceblue": 15792383,\n "antiquewhite": 16444375,\n "aqua": 65535,\n "aquamarine": 8388564,\n "azure": 15794175,\n "beige": 16119260,\n "bisque": 16770244,\n "black": 0,\n "blanchedalmond": 16772045,\n "blue": 255,\n "blueviolet": 9055202,\n "brown": 10824234,\n "burlywood": 14596231,\n "cadetblue": 6266528,\n "chartreuse": 8388352,\n "chocolate": 13789470,\n "coral": 16744272,\n "cornflowerblue": 6591981,\n "cornsilk": 16775388,\n "crimson": 14423100,\n "cyan": 65535,\n "darkblue": 139,\n "darkcyan": 35723,\n "darkgoldenrod": 12092939,\n "darkgray": 11119017,\n "darkgreen": 25600,\n "darkgrey": 11119017,\n "darkkhaki": 12433259,\n "darkmagenta": 9109643,\n "darkolivegreen": 5597999,\n "darkorange": 16747520,\n "darkorchid": 10040012,\n "darkred": 9109504,\n "darksalmon": 15308410,\n "darkseagreen": 9419919,\n "darkslateblue": 4734347,\n "darkslategray": 3100495,\n "darkslategrey": 3100495,\n "darkturquoise": 52945,\n "darkviolet": 9699539,\n "deeppink": 16716947,\n "deepskyblue": 49151,\n "dimgray": 6908265,\n "dimgrey": 6908265,\n "dodgerblue": 2003199,\n "firebrick": 11674146,\n "floralwhite": 16775920,\n "forestgreen": 2263842,\n "fuchsia": 16711935,\n "gainsboro": 14474460,\n "ghostwhite": 16316671,\n "gold": 16766720,\n "goldenrod": 14329120,\n "gray": 8421504,\n "green": 32768,\n "greenyellow": 11403055,\n "grey": 8421504,\n "honeydew": 15794160,\n "hotpink": 16738740,\n "indianred": 13458524,\n "indigo": 4915330,\n "ivory": 16777200,\n "khaki": 15787660,\n "lavender": 15132410,\n "lavenderblush": 16773365,\n "lawngreen": 8190976,\n "lemonchiffon": 16775885,\n "lightblue": 11393254,\n "lightcoral": 15761536,\n "lightcyan": 14745599,\n "lightgoldenrodyellow": 16448210,\n "lightgray": 13882323,\n "lightgreen": 9498256,\n "lightgrey": 13882323,\n "lightpink": 16758465,\n "lightsalmon": 16752762,\n "lightseagreen": 2142890,\n "lightskyblue": 8900346,\n "lightslategray": 7833753,\n "lightslategrey": 7833753,\n "lightsteelblue": 11584734,\n "lightyellow": 16777184,\n "lime": 65280,\n "limegreen": 3329330,\n "linen": 16445670,\n "magenta": 16711935,\n "maroon": 8388608,\n "mediumaquamarine": 6737322,\n "mediumblue": 205,\n "mediumorchid": 12211667,\n "mediumpurple": 9662683,\n "mediumseagreen": 3978097,\n "mediumslateblue": 8087790,\n "mediumspringgreen": 64154,\n "mediumturquoise": 4772300,\n "mediumvioletred": 13047173,\n "midnightblue": 1644912,\n "mintcream": 16121850,\n "mistyrose": 16770273,\n "moccasin": 16770229,\n "navajowhite": 16768685,\n "navy": 128,\n "oldlace": 16643558,\n "olive": 8421376,\n "olivedrab": 7048739,\n "orange": 16753920,\n "orangered": 16729344,\n "orchid": 14315734,\n "palegoldenrod": 15657130,\n "palegreen": 10025880,\n "paleturquoise": 11529966,\n "palevioletred": 14381203,\n "papayawhip": 16773077,\n "peachpuff": 16767673,\n "peru": 13468991,\n "pink": 16761035,\n "plum": 14524637,\n "powderblue": 11591910,\n "purple": 8388736,\n "rebeccapurple": 6697881,\n "red": 16711680,\n "rosybrown": 12357519,\n "royalblue": 4286945,\n "saddlebrown": 9127187,\n "salmon": 16416882,\n "sandybrown": 16032864,\n "seagreen": 3050327,\n "seashell": 16774638,\n "sienna": 10506797,\n "silver": 12632256,\n "skyblue": 8900331,\n "slateblue": 6970061,\n "slategray": 7372944,\n "slategrey": 7372944,\n "snow": 16775930,\n "springgreen": 65407,\n "steelblue": 4620980,\n "tan": 13808780,\n "teal": 32896,\n "thistle": 14204888,\n "tomato": 16737095,\n "turquoise": 4251856,\n "violet": 15631086,\n "wheat": 16113331,\n "white": 16777215,\n "whitesmoke": 16119285,\n "yellow": 16776960,\n "yellowgreen": 10145074\n };\n const _hslA = { h: 0, s: 0, l: 0 };\n const _hslB = { h: 0, s: 0, l: 0 };\n function hue2rgb(p, q, t) {\n if (t < 0) t += 1;\n if (t > 1) t -= 1;\n if (t < 1 / 6) return p + (q - p) * 6 * t;\n if (t < 1 / 2) return q;\n if (t < 2 / 3) return p + (q - p) * 6 * (2 / 3 - t);\n return p;\n }\n class Color {\n constructor(r, g, b) {\n this.isColor = true;\n this.r = 1;\n this.g = 1;\n this.b = 1;\n return this.set(r, g, b);\n }\n set(r, g, b) {\n if (g === void 0 && b === void 0) {\n const value = r;\n if (value && value.isColor) {\n this.copy(value);\n } else if (typeof value === "number") {\n this.setHex(value);\n } else if (typeof value === "string") {\n this.setStyle(value);\n }\n } else {\n this.setRGB(r, g, b);\n }\n return this;\n }\n setScalar(scalar) {\n this.r = scalar;\n this.g = scalar;\n this.b = scalar;\n return this;\n }\n setHex(hex, colorSpace = SRGBColorSpace) {\n hex = Math.floor(hex);\n this.r = (hex >> 16 & 255) / 255;\n this.g = (hex >> 8 & 255) / 255;\n this.b = (hex & 255) / 255;\n ColorManagement.toWorkingColorSpace(this, colorSpace);\n return this;\n }\n setRGB(r, g, b, colorSpace = ColorManagement.workingColorSpace) {\n this.r = r;\n this.g = g;\n this.b = b;\n ColorManagement.toWorkingColorSpace(this, colorSpace);\n return this;\n }\n setHSL(h, s, l, colorSpace = ColorManagement.workingColorSpace) {\n h = euclideanModulo(h, 1);\n s = clamp(s, 0, 1);\n l = clamp(l, 0, 1);\n if (s === 0) {\n this.r = this.g = this.b = l;\n } else {\n const p = l <= 0.5 ? l * (1 + s) : l + s - l * s;\n const q = 2 * l - p;\n this.r = hue2rgb(q, p, h + 1 / 3);\n this.g = hue2rgb(q, p, h);\n this.b = hue2rgb(q, p, h - 1 / 3);\n }\n ColorManagement.toWorkingColorSpace(this, colorSpace);\n return this;\n }\n setStyle(style, colorSpace = SRGBColorSpace) {\n function handleAlpha(string) {\n if (string === void 0) return;\n if (parseFloat(string) < 1) {\n console.warn("THREE.Color: Alpha component of " + style + " will be ignored.");\n }\n }\n let m;\n if (m = /^(\\w+)\\(([^\\)]*)\\)/.exec(style)) {\n let color;\n const name = m[1];\n const components = m[2];\n switch (name) {\n case "rgb":\n case "rgba":\n if (color = /^\\s*(\\d+)\\s*,\\s*(\\d+)\\s*,\\s*(\\d+)\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(components)) {\n handleAlpha(color[4]);\n return this.setRGB(\n Math.min(255, parseInt(color[1], 10)) / 255,\n Math.min(255, parseInt(color[2], 10)) / 255,\n Math.min(255, parseInt(color[3], 10)) / 255,\n colorSpace\n );\n }\n if (color = /^\\s*(\\d+)\\%\\s*,\\s*(\\d+)\\%\\s*,\\s*(\\d+)\\%\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(components)) {\n handleAlpha(color[4]);\n return this.setRGB(\n Math.min(100, parseInt(color[1], 10)) / 100,\n Math.min(100, parseInt(color[2], 10)) / 100,\n Math.min(100, parseInt(color[3], 10)) / 100,\n colorSpace\n );\n }\n break;\n case "hsl":\n case "hsla":\n if (color = /^\\s*(\\d*\\.?\\d+)\\s*,\\s*(\\d*\\.?\\d+)\\%\\s*,\\s*(\\d*\\.?\\d+)\\%\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(components)) {\n handleAlpha(color[4]);\n return this.setHSL(\n parseFloat(color[1]) / 360,\n parseFloat(color[2]) / 100,\n parseFloat(color[3]) / 100,\n colorSpace\n );\n }\n break;\n default:\n console.warn("THREE.Color: Unknown color model " + style);\n }\n } else if (m = /^\\#([A-Fa-f\\d]+)$/.exec(style)) {\n const hex = m[1];\n const size = hex.length;\n if (size === 3) {\n return this.setRGB(\n parseInt(hex.charAt(0), 16) / 15,\n parseInt(hex.charAt(1), 16) / 15,\n parseInt(hex.charAt(2), 16) / 15,\n colorSpace\n );\n } else if (size === 6) {\n return this.setHex(parseInt(hex, 16), colorSpace);\n } else {\n console.warn("THREE.Color: Invalid hex color " + style);\n }\n } else if (style && style.length > 0) {\n return this.setColorName(style, colorSpace);\n }\n return this;\n }\n setColorName(style, colorSpace = SRGBColorSpace) {\n const hex = _colorKeywords[style.toLowerCase()];\n if (hex !== void 0) {\n this.setHex(hex, colorSpace);\n } else {\n console.warn("THREE.Color: Unknown color " + style);\n }\n return this;\n }\n clone() {\n return new this.constructor(this.r, this.g, this.b);\n }\n copy(color) {\n this.r = color.r;\n this.g = color.g;\n this.b = color.b;\n return this;\n }\n copySRGBToLinear(color) {\n this.r = SRGBToLinear(color.r);\n this.g = SRGBToLinear(color.g);\n this.b = SRGBToLinear(color.b);\n return this;\n }\n copyLinearToSRGB(color) {\n this.r = LinearToSRGB(color.r);\n this.g = LinearToSRGB(color.g);\n this.b = LinearToSRGB(color.b);\n return this;\n }\n convertSRGBToLinear() {\n this.copySRGBToLinear(this);\n return this;\n }\n convertLinearToSRGB() {\n this.copyLinearToSRGB(this);\n return this;\n }\n getHex(colorSpace = SRGBColorSpace) {\n ColorManagement.fromWorkingColorSpace(_color.copy(this), colorSpace);\n return Math.round(clamp(_color.r * 255, 0, 255)) * 65536 + Math.round(clamp(_color.g * 255, 0, 255)) * 256 + Math.round(clamp(_color.b * 255, 0, 255));\n }\n getHexString(colorSpace = SRGBColorSpace) {\n return ("000000" + this.getHex(colorSpace).toString(16)).slice(-6);\n }\n getHSL(target, colorSpace = ColorManagement.workingColorSpace) {\n ColorManagement.fromWorkingColorSpace(_color.copy(this), colorSpace);\n const r = _color.r, g = _color.g, b = _color.b;\n const max2 = Math.max(r, g, b);\n const min = Math.min(r, g, b);\n let hue, saturation;\n const lightness = (min + max2) / 2;\n if (min === max2) {\n hue = 0;\n saturation = 0;\n } else {\n const delta = max2 - min;\n saturation = lightness <= 0.5 ? delta / (max2 + min) : delta / (2 - max2 - min);\n switch (max2) {\n case r:\n hue = (g - b) / delta + (g < b ? 6 : 0);\n break;\n case g:\n hue = (b - r) / delta + 2;\n break;\n case b:\n hue = (r - g) / delta + 4;\n break;\n }\n hue /= 6;\n }\n target.h = hue;\n target.s = saturation;\n target.l = lightness;\n return target;\n }\n getRGB(target, colorSpace = ColorManagement.workingColorSpace) {\n ColorManagement.fromWorkingColorSpace(_color.copy(this), colorSpace);\n target.r = _color.r;\n target.g = _color.g;\n target.b = _color.b;\n return target;\n }\n getStyle(colorSpace = SRGBColorSpace) {\n ColorManagement.fromWorkingColorSpace(_color.copy(this), colorSpace);\n const r = _color.r, g = _color.g, b = _color.b;\n if (colorSpace !== SRGBColorSpace) {\n return `color(${colorSpace} ${r.toFixed(3)} ${g.toFixed(3)} ${b.toFixed(3)})`;\n }\n return `rgb(${Math.round(r * 255)},${Math.round(g * 255)},${Math.round(b * 255)})`;\n }\n offsetHSL(h, s, l) {\n this.getHSL(_hslA);\n return this.setHSL(_hslA.h + h, _hslA.s + s, _hslA.l + l);\n }\n add(color) {\n this.r += color.r;\n this.g += color.g;\n this.b += color.b;\n return this;\n }\n addColors(color1, color2) {\n this.r = color1.r + color2.r;\n this.g = color1.g + color2.g;\n this.b = color1.b + color2.b;\n return this;\n }\n addScalar(s) {\n this.r += s;\n this.g += s;\n this.b += s;\n return this;\n }\n sub(color) {\n this.r = Math.max(0, this.r - color.r);\n this.g = Math.max(0, this.g - color.g);\n this.b = Math.max(0, this.b - color.b);\n return this;\n }\n multiply(color) {\n this.r *= color.r;\n this.g *= color.g;\n this.b *= color.b;\n return this;\n }\n multiplyScalar(s) {\n this.r *= s;\n this.g *= s;\n this.b *= s;\n return this;\n }\n lerp(color, alpha) {\n this.r += (color.r - this.r) * alpha;\n this.g += (color.g - this.g) * alpha;\n this.b += (color.b - this.b) * alpha;\n return this;\n }\n lerpColors(color1, color2, alpha) {\n this.r = color1.r + (color2.r - color1.r) * alpha;\n this.g = color1.g + (color2.g - color1.g) * alpha;\n this.b = color1.b + (color2.b - color1.b) * alpha;\n return this;\n }\n lerpHSL(color, alpha) {\n this.getHSL(_hslA);\n color.getHSL(_hslB);\n const h = lerp(_hslA.h, _hslB.h, alpha);\n const s = lerp(_hslA.s, _hslB.s, alpha);\n const l = lerp(_hslA.l, _hslB.l, alpha);\n this.setHSL(h, s, l);\n return this;\n }\n setFromVector3(v) {\n this.r = v.x;\n this.g = v.y;\n this.b = v.z;\n return this;\n }\n applyMatrix3(m) {\n const r = this.r, g = this.g, b = this.b;\n const e = m.elements;\n this.r = e[0] * r + e[3] * g + e[6] * b;\n this.g = e[1] * r + e[4] * g + e[7] * b;\n this.b = e[2] * r + e[5] * g + e[8] * b;\n return this;\n }\n equals(c) {\n return c.r === this.r && c.g === this.g && c.b === this.b;\n }\n fromArray(array, offset = 0) {\n this.r = array[offset];\n this.g = array[offset + 1];\n this.b = array[offset + 2];\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this.r;\n array[offset + 1] = this.g;\n array[offset + 2] = this.b;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this.r = attribute.getX(index);\n this.g = attribute.getY(index);\n this.b = attribute.getZ(index);\n return this;\n }\n toJSON() {\n return this.getHex();\n }\n *[Symbol.iterator]() {\n yield this.r;\n yield this.g;\n yield this.b;\n }\n }\n const _color = /* @__PURE__ */ new Color();\n Color.NAMES = _colorKeywords;\n let _materialId = 0;\n class Material extends EventDispatcher {\n constructor() {\n super();\n this.isMaterial = true;\n Object.defineProperty(this, "id", { value: _materialId++ });\n this.uuid = generateUUID();\n this.name = "";\n this.type = "Material";\n this.blending = NormalBlending;\n this.side = FrontSide;\n this.vertexColors = false;\n this.opacity = 1;\n this.transparent = false;\n this.alphaHash = false;\n this.blendSrc = SrcAlphaFactor;\n this.blendDst = OneMinusSrcAlphaFactor;\n this.blendEquation = AddEquation;\n this.blendSrcAlpha = null;\n this.blendDstAlpha = null;\n this.blendEquationAlpha = null;\n this.blendColor = new Color(0, 0, 0);\n this.blendAlpha = 0;\n this.depthFunc = LessEqualDepth;\n this.depthTest = true;\n this.depthWrite = true;\n this.stencilWriteMask = 255;\n this.stencilFunc = AlwaysStencilFunc;\n this.stencilRef = 0;\n this.stencilFuncMask = 255;\n this.stencilFail = KeepStencilOp;\n this.stencilZFail = KeepStencilOp;\n this.stencilZPass = KeepStencilOp;\n this.stencilWrite = false;\n this.clippingPlanes = null;\n this.clipIntersection = false;\n this.clipShadows = false;\n this.shadowSide = null;\n this.colorWrite = true;\n this.precision = null;\n this.polygonOffset = false;\n this.polygonOffsetFactor = 0;\n this.polygonOffsetUnits = 0;\n this.dithering = false;\n this.alphaToCoverage = false;\n this.premultipliedAlpha = false;\n this.forceSinglePass = false;\n this.visible = true;\n this.toneMapped = true;\n this.userData = {};\n this.version = 0;\n this._alphaTest = 0;\n }\n get alphaTest() {\n return this._alphaTest;\n }\n set alphaTest(value) {\n if (this._alphaTest > 0 !== value > 0) {\n this.version++;\n }\n this._alphaTest = value;\n }\n // onBeforeRender and onBeforeCompile only supported in WebGLRenderer\n onBeforeRender() {\n }\n onBeforeCompile() {\n }\n customProgramCacheKey() {\n return this.onBeforeCompile.toString();\n }\n setValues(values) {\n if (values === void 0) return;\n for (const key in values) {\n const newValue = values[key];\n if (newValue === void 0) {\n console.warn(`THREE.Material: parameter \'${key}\' has value of undefined.`);\n continue;\n }\n const currentValue = this[key];\n if (currentValue === void 0) {\n console.warn(`THREE.Material: \'${key}\' is not a property of THREE.${this.type}.`);\n continue;\n }\n if (currentValue && currentValue.isColor) {\n currentValue.set(newValue);\n } else if (currentValue && currentValue.isVector3 && (newValue && newValue.isVector3)) {\n currentValue.copy(newValue);\n } else {\n this[key] = newValue;\n }\n }\n }\n toJSON(meta) {\n const isRootObject = meta === void 0 || typeof meta === "string";\n if (isRootObject) {\n meta = {\n textures: {},\n images: {}\n };\n }\n const data = {\n metadata: {\n version: 4.6,\n type: "Material",\n generator: "Material.toJSON"\n }\n };\n data.uuid = this.uuid;\n data.type = this.type;\n if (this.name !== "") data.name = this.name;\n if (this.color && this.color.isColor) data.color = this.color.getHex();\n if (this.roughness !== void 0) data.roughness = this.roughness;\n if (this.metalness !== void 0) data.metalness = this.metalness;\n if (this.sheen !== void 0) data.sheen = this.sheen;\n if (this.sheenColor && this.sheenColor.isColor) data.sheenColor = this.sheenColor.getHex();\n if (this.sheenRoughness !== void 0) data.sheenRoughness = this.sheenRoughness;\n if (this.emissive && this.emissive.isColor) data.emissive = this.emissive.getHex();\n if (this.emissiveIntensity !== void 0 && this.emissiveIntensity !== 1) data.emissiveIntensity = this.emissiveIntensity;\n if (this.specular && this.specular.isColor) data.specular = this.specular.getHex();\n if (this.specularIntensity !== void 0) data.specularIntensity = this.specularIntensity;\n if (this.specularColor && this.specularColor.isColor) data.specularColor = this.specularColor.getHex();\n if (this.shininess !== void 0) data.shininess = this.shininess;\n if (this.clearcoat !== void 0) data.clearcoat = this.clearcoat;\n if (this.clearcoatRoughness !== void 0) data.clearcoatRoughness = this.clearcoatRoughness;\n if (this.clearcoatMap && this.clearcoatMap.isTexture) {\n data.clearcoatMap = this.clearcoatMap.toJSON(meta).uuid;\n }\n if (this.clearcoatRoughnessMap && this.clearcoatRoughnessMap.isTexture) {\n data.clearcoatRoughnessMap = this.clearcoatRoughnessMap.toJSON(meta).uuid;\n }\n if (this.clearcoatNormalMap && this.clearcoatNormalMap.isTexture) {\n data.clearcoatNormalMap = this.clearcoatNormalMap.toJSON(meta).uuid;\n data.clearcoatNormalScale = this.clearcoatNormalScale.toArray();\n }\n if (this.dispersion !== void 0) data.dispersion = this.dispersion;\n if (this.iridescence !== void 0) data.iridescence = this.iridescence;\n if (this.iridescenceIOR !== void 0) data.iridescenceIOR = this.iridescenceIOR;\n if (this.iridescenceThicknessRange !== void 0) data.iridescenceThicknessRange = this.iridescenceThicknessRange;\n if (this.iridescenceMap && this.iridescenceMap.isTexture) {\n data.iridescenceMap = this.iridescenceMap.toJSON(meta).uuid;\n }\n if (this.iridescenceThicknessMap && this.iridescenceThicknessMap.isTexture) {\n data.iridescenceThicknessMap = this.iridescenceThicknessMap.toJSON(meta).uuid;\n }\n if (this.anisotropy !== void 0) data.anisotropy = this.anisotropy;\n if (this.anisotropyRotation !== void 0) data.anisotropyRotation = this.anisotropyRotation;\n if (this.anisotropyMap && this.anisotropyMap.isTexture) {\n data.anisotropyMap = this.anisotropyMap.toJSON(meta).uuid;\n }\n if (this.map && this.map.isTexture) data.map = this.map.toJSON(meta).uuid;\n if (this.matcap && this.matcap.isTexture) data.matcap = this.matcap.toJSON(meta).uuid;\n if (this.alphaMap && this.alphaMap.isTexture) data.alphaMap = this.alphaMap.toJSON(meta).uuid;\n if (this.lightMap && this.lightMap.isTexture) {\n data.lightMap = this.lightMap.toJSON(meta).uuid;\n data.lightMapIntensity = this.lightMapIntensity;\n }\n if (this.aoMap && this.aoMap.isTexture) {\n data.aoMap = this.aoMap.toJSON(meta).uuid;\n data.aoMapIntensity = this.aoMapIntensity;\n }\n if (this.bumpMap && this.bumpMap.isTexture) {\n data.bumpMap = this.bumpMap.toJSON(meta).uuid;\n data.bumpScale = this.bumpScale;\n }\n if (this.normalMap && this.normalMap.isTexture) {\n data.normalMap = this.normalMap.toJSON(meta).uuid;\n data.normalMapType = this.normalMapType;\n data.normalScale = this.normalScale.toArray();\n }\n if (this.displacementMap && this.displacementMap.isTexture) {\n data.displacementMap = this.displacementMap.toJSON(meta).uuid;\n data.displacementScale = this.displacementScale;\n data.displacementBias = this.displacementBias;\n }\n if (this.roughnessMap && this.roughnessMap.isTexture) data.roughnessMap = this.roughnessMap.toJSON(meta).uuid;\n if (this.metalnessMap && this.metalnessMap.isTexture) data.metalnessMap = this.metalnessMap.toJSON(meta).uuid;\n if (this.emissiveMap && this.emissiveMap.isTexture) data.emissiveMap = this.emissiveMap.toJSON(meta).uuid;\n if (this.specularMap && this.specularMap.isTexture) data.specularMap = this.specularMap.toJSON(meta).uuid;\n if (this.specularIntensityMap && this.specularIntensityMap.isTexture) data.specularIntensityMap = this.specularIntensityMap.toJSON(meta).uuid;\n if (this.specularColorMap && this.specularColorMap.isTexture) data.specularColorMap = this.specularColorMap.toJSON(meta).uuid;\n if (this.envMap && this.envMap.isTexture) {\n data.envMap = this.envMap.toJSON(meta).uuid;\n if (this.combine !== void 0) data.combine = this.combine;\n }\n if (this.envMapRotation !== void 0) data.envMapRotation = this.envMapRotation.toArray();\n if (this.envMapIntensity !== void 0) data.envMapIntensity = this.envMapIntensity;\n if (this.reflectivity !== void 0) data.reflectivity = this.reflectivity;\n if (this.refractionRatio !== void 0) data.refractionRatio = this.refractionRatio;\n if (this.gradientMap && this.gradientMap.isTexture) {\n data.gradientMap = this.gradientMap.toJSON(meta).uuid;\n }\n if (this.transmission !== void 0) data.transmission = this.transmission;\n if (this.transmissionMap && this.transmissionMap.isTexture) data.transmissionMap = this.transmissionMap.toJSON(meta).uuid;\n if (this.thickness !== void 0) data.thickness = this.thickness;\n if (this.thicknessMap && this.thicknessMap.isTexture) data.thicknessMap = this.thicknessMap.toJSON(meta).uuid;\n if (this.attenuationDistance !== void 0 && this.attenuationDistance !== Infinity) data.attenuationDistance = this.attenuationDistance;\n if (this.attenuationColor !== void 0) data.attenuationColor = this.attenuationColor.getHex();\n if (this.size !== void 0) data.size = this.size;\n if (this.shadowSide !== null) data.shadowSide = this.shadowSide;\n if (this.sizeAttenuation !== void 0) data.sizeAttenuation = this.sizeAttenuation;\n if (this.blending !== NormalBlending) data.blending = this.blending;\n if (this.side !== FrontSide) data.side = this.side;\n if (this.vertexColors === true) data.vertexColors = true;\n if (this.opacity < 1) data.opacity = this.opacity;\n if (this.transparent === true) data.transparent = true;\n if (this.blendSrc !== SrcAlphaFactor) data.blendSrc = this.blendSrc;\n if (this.blendDst !== OneMinusSrcAlphaFactor) data.blendDst = this.blendDst;\n if (this.blendEquation !== AddEquation) data.blendEquation = this.blendEquation;\n if (this.blendSrcAlpha !== null) data.blendSrcAlpha = this.blendSrcAlpha;\n if (this.blendDstAlpha !== null) data.blendDstAlpha = this.blendDstAlpha;\n if (this.blendEquationAlpha !== null) data.blendEquationAlpha = this.blendEquationAlpha;\n if (this.blendColor && this.blendColor.isColor) data.blendColor = this.blendColor.getHex();\n if (this.blendAlpha !== 0) data.blendAlpha = this.blendAlpha;\n if (this.depthFunc !== LessEqualDepth) data.depthFunc = this.depthFunc;\n if (this.depthTest === false) data.depthTest = this.depthTest;\n if (this.depthWrite === false) data.depthWrite = this.depthWrite;\n if (this.colorWrite === false) data.colorWrite = this.colorWrite;\n if (this.stencilWriteMask !== 255) data.stencilWriteMask = this.stencilWriteMask;\n if (this.stencilFunc !== AlwaysStencilFunc) data.stencilFunc = this.stencilFunc;\n if (this.stencilRef !== 0) data.stencilRef = this.stencilRef;\n if (this.stencilFuncMask !== 255) data.stencilFuncMask = this.stencilFuncMask;\n if (this.stencilFail !== KeepStencilOp) data.stencilFail = this.stencilFail;\n if (this.stencilZFail !== KeepStencilOp) data.stencilZFail = this.stencilZFail;\n if (this.stencilZPass !== KeepStencilOp) data.stencilZPass = this.stencilZPass;\n if (this.stencilWrite === true) data.stencilWrite = this.stencilWrite;\n if (this.rotation !== void 0 && this.rotation !== 0) data.rotation = this.rotation;\n if (this.polygonOffset === true) data.polygonOffset = true;\n if (this.polygonOffsetFactor !== 0) data.polygonOffsetFactor = this.polygonOffsetFactor;\n if (this.polygonOffsetUnits !== 0) data.polygonOffsetUnits = this.polygonOffsetUnits;\n if (this.linewidth !== void 0 && this.linewidth !== 1) data.linewidth = this.linewidth;\n if (this.dashSize !== void 0) data.dashSize = this.dashSize;\n if (this.gapSize !== void 0) data.gapSize = this.gapSize;\n if (this.scale !== void 0) data.scale = this.scale;\n if (this.dithering === true) data.dithering = true;\n if (this.alphaTest > 0) data.alphaTest = this.alphaTest;\n if (this.alphaHash === true) data.alphaHash = true;\n if (this.alphaToCoverage === true) data.alphaToCoverage = true;\n if (this.premultipliedAlpha === true) data.premultipliedAlpha = true;\n if (this.forceSinglePass === true) data.forceSinglePass = true;\n if (this.wireframe === true) data.wireframe = true;\n if (this.wireframeLinewidth > 1) data.wireframeLinewidth = this.wireframeLinewidth;\n if (this.wireframeLinecap !== "round") data.wireframeLinecap = this.wireframeLinecap;\n if (this.wireframeLinejoin !== "round") data.wireframeLinejoin = this.wireframeLinejoin;\n if (this.flatShading === true) data.flatShading = true;\n if (this.visible === false) data.visible = false;\n if (this.toneMapped === false) data.toneMapped = false;\n if (this.fog === false) data.fog = false;\n if (Object.keys(this.userData).length > 0) data.userData = this.userData;\n function extractFromCache(cache) {\n const values = [];\n for (const key in cache) {\n const data2 = cache[key];\n delete data2.metadata;\n values.push(data2);\n }\n return values;\n }\n if (isRootObject) {\n const textures = extractFromCache(meta.textures);\n const images = extractFromCache(meta.images);\n if (textures.length > 0) data.textures = textures;\n if (images.length > 0) data.images = images;\n }\n return data;\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(source) {\n this.name = source.name;\n this.blending = source.blending;\n this.side = source.side;\n this.vertexColors = source.vertexColors;\n this.opacity = source.opacity;\n this.transparent = source.transparent;\n this.blendSrc = source.blendSrc;\n this.blendDst = source.blendDst;\n this.blendEquation = source.blendEquation;\n this.blendSrcAlpha = source.blendSrcAlpha;\n this.blendDstAlpha = source.blendDstAlpha;\n this.blendEquationAlpha = source.blendEquationAlpha;\n this.blendColor.copy(source.blendColor);\n this.blendAlpha = source.blendAlpha;\n this.depthFunc = source.depthFunc;\n this.depthTest = source.depthTest;\n this.depthWrite = source.depthWrite;\n this.stencilWriteMask = source.stencilWriteMask;\n this.stencilFunc = source.stencilFunc;\n this.stencilRef = source.stencilRef;\n this.stencilFuncMask = source.stencilFuncMask;\n this.stencilFail = source.stencilFail;\n this.stencilZFail = source.stencilZFail;\n this.stencilZPass = source.stencilZPass;\n this.stencilWrite = source.stencilWrite;\n const srcPlanes = source.clippingPlanes;\n let dstPlanes = null;\n if (srcPlanes !== null) {\n const n = srcPlanes.length;\n dstPlanes = new Array(n);\n for (let i2 = 0; i2 !== n; ++i2) {\n dstPlanes[i2] = srcPlanes[i2].clone();\n }\n }\n this.clippingPlanes = dstPlanes;\n this.clipIntersection = source.clipIntersection;\n this.clipShadows = source.clipShadows;\n this.shadowSide = source.shadowSide;\n this.colorWrite = source.colorWrite;\n this.precision = source.precision;\n this.polygonOffset = source.polygonOffset;\n this.polygonOffsetFactor = source.polygonOffsetFactor;\n this.polygonOffsetUnits = source.polygonOffsetUnits;\n this.dithering = source.dithering;\n this.alphaTest = source.alphaTest;\n this.alphaHash = source.alphaHash;\n this.alphaToCoverage = source.alphaToCoverage;\n this.premultipliedAlpha = source.premultipliedAlpha;\n this.forceSinglePass = source.forceSinglePass;\n this.visible = source.visible;\n this.toneMapped = source.toneMapped;\n this.userData = JSON.parse(JSON.stringify(source.userData));\n return this;\n }\n dispose() {\n this.dispatchEvent({ type: "dispose" });\n }\n set needsUpdate(value) {\n if (value === true) this.version++;\n }\n onBuild() {\n console.warn("Material: onBuild() has been removed.");\n }\n }\n class MeshBasicMaterial extends Material {\n constructor(parameters) {\n super();\n this.isMeshBasicMaterial = true;\n this.type = "MeshBasicMaterial";\n this.color = new Color(16777215);\n this.map = null;\n this.lightMap = null;\n this.lightMapIntensity = 1;\n this.aoMap = null;\n this.aoMapIntensity = 1;\n this.specularMap = null;\n this.alphaMap = null;\n this.envMap = null;\n this.envMapRotation = new Euler();\n this.combine = MultiplyOperation;\n this.reflectivity = 1;\n this.refractionRatio = 0.98;\n this.wireframe = false;\n this.wireframeLinewidth = 1;\n this.wireframeLinecap = "round";\n this.wireframeLinejoin = "round";\n this.fog = true;\n this.setValues(parameters);\n }\n copy(source) {\n super.copy(source);\n this.color.copy(source.color);\n this.map = source.map;\n this.lightMap = source.lightMap;\n this.lightMapIntensity = source.lightMapIntensity;\n this.aoMap = source.aoMap;\n this.aoMapIntensity = source.aoMapIntensity;\n this.specularMap = source.specularMap;\n this.alphaMap = source.alphaMap;\n this.envMap = source.envMap;\n this.envMapRotation.copy(source.envMapRotation);\n this.combine = source.combine;\n this.reflectivity = source.reflectivity;\n this.refractionRatio = source.refractionRatio;\n this.wireframe = source.wireframe;\n this.wireframeLinewidth = source.wireframeLinewidth;\n this.wireframeLinecap = source.wireframeLinecap;\n this.wireframeLinejoin = source.wireframeLinejoin;\n this.fog = source.fog;\n return this;\n }\n }\n const _vector$9 = /* @__PURE__ */ new Vector3();\n const _vector2$1 = /* @__PURE__ */ new Vector2();\n class BufferAttribute {\n constructor(array, itemSize, normalized = false) {\n if (Array.isArray(array)) {\n throw new TypeError("THREE.BufferAttribute: array should be a Typed Array.");\n }\n this.isBufferAttribute = true;\n this.name = "";\n this.array = array;\n this.itemSize = itemSize;\n this.count = array !== void 0 ? array.length / itemSize : 0;\n this.normalized = normalized;\n this.usage = StaticDrawUsage;\n this.updateRanges = [];\n this.gpuType = FloatType;\n this.version = 0;\n }\n onUploadCallback() {\n }\n set needsUpdate(value) {\n if (value === true) this.version++;\n }\n setUsage(value) {\n this.usage = value;\n return this;\n }\n addUpdateRange(start, count) {\n this.updateRanges.push({ start, count });\n }\n clearUpdateRanges() {\n this.updateRanges.length = 0;\n }\n copy(source) {\n this.name = source.name;\n this.array = new source.array.constructor(source.array);\n this.itemSize = source.itemSize;\n this.count = source.count;\n this.normalized = source.normalized;\n this.usage = source.usage;\n this.gpuType = source.gpuType;\n return this;\n }\n copyAt(index1, attribute, index2) {\n index1 *= this.itemSize;\n index2 *= attribute.itemSize;\n for (let i2 = 0, l = this.itemSize; i2 < l; i2++) {\n this.array[index1 + i2] = attribute.array[index2 + i2];\n }\n return this;\n }\n copyArray(array) {\n this.array.set(array);\n return this;\n }\n applyMatrix3(m) {\n if (this.itemSize === 2) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector2$1.fromBufferAttribute(this, i2);\n _vector2$1.applyMatrix3(m);\n this.setXY(i2, _vector2$1.x, _vector2$1.y);\n }\n } else if (this.itemSize === 3) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector$9.fromBufferAttribute(this, i2);\n _vector$9.applyMatrix3(m);\n this.setXYZ(i2, _vector$9.x, _vector$9.y, _vector$9.z);\n }\n }\n return this;\n }\n applyMatrix4(m) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector$9.fromBufferAttribute(this, i2);\n _vector$9.applyMatrix4(m);\n this.setXYZ(i2, _vector$9.x, _vector$9.y, _vector$9.z);\n }\n return this;\n }\n applyNormalMatrix(m) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector$9.fromBufferAttribute(this, i2);\n _vector$9.applyNormalMatrix(m);\n this.setXYZ(i2, _vector$9.x, _vector$9.y, _vector$9.z);\n }\n return this;\n }\n transformDirection(m) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector$9.fromBufferAttribute(this, i2);\n _vector$9.transformDirection(m);\n this.setXYZ(i2, _vector$9.x, _vector$9.y, _vector$9.z);\n }\n return this;\n }\n set(value, offset = 0) {\n this.array.set(value, offset);\n return this;\n }\n getComponent(index, component) {\n let value = this.array[index * this.itemSize + component];\n if (this.normalized) value = denormalize(value, this.array);\n return value;\n }\n setComponent(index, component, value) {\n if (this.normalized) value = normalize$1(value, this.array);\n this.array[index * this.itemSize + component] = value;\n return this;\n }\n getX(index) {\n let x2 = this.array[index * this.itemSize];\n if (this.normalized) x2 = denormalize(x2, this.array);\n return x2;\n }\n setX(index, x2) {\n if (this.normalized) x2 = normalize$1(x2, this.array);\n this.array[index * this.itemSize] = x2;\n return this;\n }\n getY(index) {\n let y = this.array[index * this.itemSize + 1];\n if (this.normalized) y = denormalize(y, this.array);\n return y;\n }\n setY(index, y) {\n if (this.normalized) y = normalize$1(y, this.array);\n this.array[index * this.itemSize + 1] = y;\n return this;\n }\n getZ(index) {\n let z = this.array[index * this.itemSize + 2];\n if (this.normalized) z = denormalize(z, this.array);\n return z;\n }\n setZ(index, z) {\n if (this.normalized) z = normalize$1(z, this.array);\n this.array[index * this.itemSize + 2] = z;\n return this;\n }\n getW(index) {\n let w = this.array[index * this.itemSize + 3];\n if (this.normalized) w = denormalize(w, this.array);\n return w;\n }\n setW(index, w) {\n if (this.normalized) w = normalize$1(w, this.array);\n this.array[index * this.itemSize + 3] = w;\n return this;\n }\n setXY(index, x2, y) {\n index *= this.itemSize;\n if (this.normalized) {\n x2 = normalize$1(x2, this.array);\n y = normalize$1(y, this.array);\n }\n this.array[index + 0] = x2;\n this.array[index + 1] = y;\n return this;\n }\n setXYZ(index, x2, y, z) {\n index *= this.itemSize;\n if (this.normalized) {\n x2 = normalize$1(x2, this.array);\n y = normalize$1(y, this.array);\n z = normalize$1(z, this.array);\n }\n this.array[index + 0] = x2;\n this.array[index + 1] = y;\n this.array[index + 2] = z;\n return this;\n }\n setXYZW(index, x2, y, z, w) {\n index *= this.itemSize;\n if (this.normalized) {\n x2 = normalize$1(x2, this.array);\n y = normalize$1(y, this.array);\n z = normalize$1(z, this.array);\n w = normalize$1(w, this.array);\n }\n this.array[index + 0] = x2;\n this.array[index + 1] = y;\n this.array[index + 2] = z;\n this.array[index + 3] = w;\n return this;\n }\n onUpload(callback) {\n this.onUploadCallback = callback;\n return this;\n }\n clone() {\n return new this.constructor(this.array, this.itemSize).copy(this);\n }\n toJSON() {\n const data = {\n itemSize: this.itemSize,\n type: this.array.constructor.name,\n array: Array.from(this.array),\n normalized: this.normalized\n };\n if (this.name !== "") data.name = this.name;\n if (this.usage !== StaticDrawUsage) data.usage = this.usage;\n return data;\n }\n }\n class Uint16BufferAttribute extends BufferAttribute {\n constructor(array, itemSize, normalized) {\n super(new Uint16Array(array), itemSize, normalized);\n }\n }\n class Uint32BufferAttribute extends BufferAttribute {\n constructor(array, itemSize, normalized) {\n super(new Uint32Array(array), itemSize, normalized);\n }\n }\n class Float32BufferAttribute extends BufferAttribute {\n constructor(array, itemSize, normalized) {\n super(new Float32Array(array), itemSize, normalized);\n }\n }\n let _id$1 = 0;\n const _m1 = /* @__PURE__ */ new Matrix4();\n const _obj = /* @__PURE__ */ new Object3D();\n const _offset = /* @__PURE__ */ new Vector3();\n const _box$2 = /* @__PURE__ */ new Box3();\n const _boxMorphTargets = /* @__PURE__ */ new Box3();\n const _vector$8 = /* @__PURE__ */ new Vector3();\n class BufferGeometry extends EventDispatcher {\n constructor() {\n super();\n this.isBufferGeometry = true;\n Object.defineProperty(this, "id", { value: _id$1++ });\n this.uuid = generateUUID();\n this.name = "";\n this.type = "BufferGeometry";\n this.index = null;\n this.indirect = null;\n this.attributes = {};\n this.morphAttributes = {};\n this.morphTargetsRelative = false;\n this.groups = [];\n this.boundingBox = null;\n this.boundingSphere = null;\n this.drawRange = { start: 0, count: Infinity };\n this.userData = {};\n }\n getIndex() {\n return this.index;\n }\n setIndex(index) {\n if (Array.isArray(index)) {\n this.index = new (arrayNeedsUint32(index) ? Uint32BufferAttribute : Uint16BufferAttribute)(index, 1);\n } else {\n this.index = index;\n }\n return this;\n }\n setIndirect(indirect) {\n this.indirect = indirect;\n return this;\n }\n getIndirect() {\n return this.indirect;\n }\n getAttribute(name) {\n return this.attributes[name];\n }\n setAttribute(name, attribute) {\n this.attributes[name] = attribute;\n return this;\n }\n deleteAttribute(name) {\n delete this.attributes[name];\n return this;\n }\n hasAttribute(name) {\n return this.attributes[name] !== void 0;\n }\n addGroup(start, count, materialIndex = 0) {\n this.groups.push({\n start,\n count,\n materialIndex\n });\n }\n clearGroups() {\n this.groups = [];\n }\n setDrawRange(start, count) {\n this.drawRange.start = start;\n this.drawRange.count = count;\n }\n applyMatrix4(matrix) {\n const position = this.attributes.position;\n if (position !== void 0) {\n position.applyMatrix4(matrix);\n position.needsUpdate = true;\n }\n const normal = this.attributes.normal;\n if (normal !== void 0) {\n const normalMatrix = new Matrix3().getNormalMatrix(matrix);\n normal.applyNormalMatrix(normalMatrix);\n normal.needsUpdate = true;\n }\n const tangent = this.attributes.tangent;\n if (tangent !== void 0) {\n tangent.transformDirection(matrix);\n tangent.needsUpdate = true;\n }\n if (this.boundingBox !== null) {\n this.computeBoundingBox();\n }\n if (this.boundingSphere !== null) {\n this.computeBoundingSphere();\n }\n return this;\n }\n applyQuaternion(q) {\n _m1.makeRotationFromQuaternion(q);\n this.applyMatrix4(_m1);\n return this;\n }\n rotateX(angle) {\n _m1.makeRotationX(angle);\n this.applyMatrix4(_m1);\n return this;\n }\n rotateY(angle) {\n _m1.makeRotationY(angle);\n this.applyMatrix4(_m1);\n return this;\n }\n rotateZ(angle) {\n _m1.makeRotationZ(angle);\n this.applyMatrix4(_m1);\n return this;\n }\n translate(x2, y, z) {\n _m1.makeTranslation(x2, y, z);\n this.applyMatrix4(_m1);\n return this;\n }\n scale(x2, y, z) {\n _m1.makeScale(x2, y, z);\n this.applyMatrix4(_m1);\n return this;\n }\n lookAt(vector) {\n _obj.lookAt(vector);\n _obj.updateMatrix();\n this.applyMatrix4(_obj.matrix);\n return this;\n }\n center() {\n this.computeBoundingBox();\n this.boundingBox.getCenter(_offset).negate();\n this.translate(_offset.x, _offset.y, _offset.z);\n return this;\n }\n setFromPoints(points) {\n const positionAttribute = this.getAttribute("position");\n if (positionAttribute === void 0) {\n const position = [];\n for (let i2 = 0, l = points.length; i2 < l; i2++) {\n const point = points[i2];\n position.push(point.x, point.y, point.z || 0);\n }\n this.setAttribute("position", new Float32BufferAttribute(position, 3));\n } else {\n const l = Math.min(points.length, positionAttribute.count);\n for (let i2 = 0; i2 < l; i2++) {\n const point = points[i2];\n positionAttribute.setXYZ(i2, point.x, point.y, point.z || 0);\n }\n if (points.length > positionAttribute.count) {\n console.warn("THREE.BufferGeometry: Buffer size too small for points data. Use .dispose() and create a new geometry.");\n }\n positionAttribute.needsUpdate = true;\n }\n return this;\n }\n computeBoundingBox() {\n if (this.boundingBox === null) {\n this.boundingBox = new Box3();\n }\n const position = this.attributes.position;\n const morphAttributesPosition = this.morphAttributes.position;\n if (position && position.isGLBufferAttribute) {\n console.error("THREE.BufferGeometry.computeBoundingBox(): GLBufferAttribute requires a manual bounding box.", this);\n this.boundingBox.set(\n new Vector3(-Infinity, -Infinity, -Infinity),\n new Vector3(Infinity, Infinity, Infinity)\n );\n return;\n }\n if (position !== void 0) {\n this.boundingBox.setFromBufferAttribute(position);\n if (morphAttributesPosition) {\n for (let i2 = 0, il = morphAttributesPosition.length; i2 < il; i2++) {\n const morphAttribute = morphAttributesPosition[i2];\n _box$2.setFromBufferAttribute(morphAttribute);\n if (this.morphTargetsRelative) {\n _vector$8.addVectors(this.boundingBox.min, _box$2.min);\n this.boundingBox.expandByPoint(_vector$8);\n _vector$8.addVectors(this.boundingBox.max, _box$2.max);\n this.boundingBox.expandByPoint(_vector$8);\n } else {\n this.boundingBox.expandByPoint(_box$2.min);\n this.boundingBox.expandByPoint(_box$2.max);\n }\n }\n }\n } else {\n this.boundingBox.makeEmpty();\n }\n if (isNaN(this.boundingBox.min.x) || isNaN(this.boundingBox.min.y) || isNaN(this.boundingBox.min.z)) {\n console.error(\'THREE.BufferGeometry.computeBoundingBox(): Computed min/max have NaN values. The "position" attribute is likely to have NaN values.\', this);\n }\n }\n computeBoundingSphere() {\n if (this.boundingSphere === null) {\n this.boundingSphere = new Sphere();\n }\n const position = this.attributes.position;\n const morphAttributesPosition = this.morphAttributes.position;\n if (position && position.isGLBufferAttribute) {\n console.error("THREE.BufferGeometry.computeBoundingSphere(): GLBufferAttribute requires a manual bounding sphere.", this);\n this.boundingSphere.set(new Vector3(), Infinity);\n return;\n }\n if (position) {\n const center = this.boundingSphere.center;\n _box$2.setFromBufferAttribute(position);\n if (morphAttributesPosition) {\n for (let i2 = 0, il = morphAttributesPosition.length; i2 < il; i2++) {\n const morphAttribute = morphAttributesPosition[i2];\n _boxMorphTargets.setFromBufferAttribute(morphAttribute);\n if (this.morphTargetsRelative) {\n _vector$8.addVectors(_box$2.min, _boxMorphTargets.min);\n _box$2.expandByPoint(_vector$8);\n _vector$8.addVectors(_box$2.max, _boxMorphTargets.max);\n _box$2.expandByPoint(_vector$8);\n } else {\n _box$2.expandByPoint(_boxMorphTargets.min);\n _box$2.expandByPoint(_boxMorphTargets.max);\n }\n }\n }\n _box$2.getCenter(center);\n let maxRadiusSq = 0;\n for (let i2 = 0, il = position.count; i2 < il; i2++) {\n _vector$8.fromBufferAttribute(position, i2);\n maxRadiusSq = Math.max(maxRadiusSq, center.distanceToSquared(_vector$8));\n }\n if (morphAttributesPosition) {\n for (let i2 = 0, il = morphAttributesPosition.length; i2 < il; i2++) {\n const morphAttribute = morphAttributesPosition[i2];\n const morphTargetsRelative = this.morphTargetsRelative;\n for (let j = 0, jl = morphAttribute.count; j < jl; j++) {\n _vector$8.fromBufferAttribute(morphAttribute, j);\n if (morphTargetsRelative) {\n _offset.fromBufferAttribute(position, j);\n _vector$8.add(_offset);\n }\n maxRadiusSq = Math.max(maxRadiusSq, center.distanceToSquared(_vector$8));\n }\n }\n }\n this.boundingSphere.radius = Math.sqrt(maxRadiusSq);\n if (isNaN(this.boundingSphere.radius)) {\n console.error(\'THREE.BufferGeometry.computeBoundingSphere(): Computed radius is NaN. The "position" attribute is likely to have NaN values.\', this);\n }\n }\n }\n computeTangents() {\n const index = this.index;\n const attributes = this.attributes;\n if (index === null || attributes.position === void 0 || attributes.normal === void 0 || attributes.uv === void 0) {\n console.error("THREE.BufferGeometry: .computeTangents() failed. Missing required attributes (index, position, normal or uv)");\n return;\n }\n const positionAttribute = attributes.position;\n const normalAttribute = attributes.normal;\n const uvAttribute = attributes.uv;\n if (this.hasAttribute("tangent") === false) {\n this.setAttribute("tangent", new BufferAttribute(new Float32Array(4 * positionAttribute.count), 4));\n }\n const tangentAttribute = this.getAttribute("tangent");\n const tan1 = [], tan2 = [];\n for (let i2 = 0; i2 < positionAttribute.count; i2++) {\n tan1[i2] = new Vector3();\n tan2[i2] = new Vector3();\n }\n const vA = new Vector3(), vB = new Vector3(), vC = new Vector3(), uvA = new Vector2(), uvB = new Vector2(), uvC = new Vector2(), sdir = new Vector3(), tdir = new Vector3();\n function handleTriangle(a, b, c) {\n vA.fromBufferAttribute(positionAttribute, a);\n vB.fromBufferAttribute(positionAttribute, b);\n vC.fromBufferAttribute(positionAttribute, c);\n uvA.fromBufferAttribute(uvAttribute, a);\n uvB.fromBufferAttribute(uvAttribute, b);\n uvC.fromBufferAttribute(uvAttribute, c);\n vB.sub(vA);\n vC.sub(vA);\n uvB.sub(uvA);\n uvC.sub(uvA);\n const r = 1 / (uvB.x * uvC.y - uvC.x * uvB.y);\n if (!isFinite(r)) return;\n sdir.copy(vB).multiplyScalar(uvC.y).addScaledVector(vC, -uvB.y).multiplyScalar(r);\n tdir.copy(vC).multiplyScalar(uvB.x).addScaledVector(vB, -uvC.x).multiplyScalar(r);\n tan1[a].add(sdir);\n tan1[b].add(sdir);\n tan1[c].add(sdir);\n tan2[a].add(tdir);\n tan2[b].add(tdir);\n tan2[c].add(tdir);\n }\n let groups = this.groups;\n if (groups.length === 0) {\n groups = [{\n start: 0,\n count: index.count\n }];\n }\n for (let i2 = 0, il = groups.length; i2 < il; ++i2) {\n const group = groups[i2];\n const start = group.start;\n const count = group.count;\n for (let j = start, jl = start + count; j < jl; j += 3) {\n handleTriangle(\n index.getX(j + 0),\n index.getX(j + 1),\n index.getX(j + 2)\n );\n }\n }\n const tmp = new Vector3(), tmp2 = new Vector3();\n const n = new Vector3(), n2 = new Vector3();\n function handleVertex(v) {\n n.fromBufferAttribute(normalAttribute, v);\n n2.copy(n);\n const t = tan1[v];\n tmp.copy(t);\n tmp.sub(n.multiplyScalar(n.dot(t))).normalize();\n tmp2.crossVectors(n2, t);\n const test = tmp2.dot(tan2[v]);\n const w = test < 0 ? -1 : 1;\n tangentAttribute.setXYZW(v, tmp.x, tmp.y, tmp.z, w);\n }\n for (let i2 = 0, il = groups.length; i2 < il; ++i2) {\n const group = groups[i2];\n const start = group.start;\n const count = group.count;\n for (let j = start, jl = start + count; j < jl; j += 3) {\n handleVertex(index.getX(j + 0));\n handleVertex(index.getX(j + 1));\n handleVertex(index.getX(j + 2));\n }\n }\n }\n computeVertexNormals() {\n const index = this.index;\n const positionAttribute = this.getAttribute("position");\n if (positionAttribute !== void 0) {\n let normalAttribute = this.getAttribute("normal");\n if (normalAttribute === void 0) {\n normalAttribute = new BufferAttribute(new Float32Array(positionAttribute.count * 3), 3);\n this.setAttribute("normal", normalAttribute);\n } else {\n for (let i2 = 0, il = normalAttribute.count; i2 < il; i2++) {\n normalAttribute.setXYZ(i2, 0, 0, 0);\n }\n }\n const pA = new Vector3(), pB = new Vector3(), pC = new Vector3();\n const nA = new Vector3(), nB = new Vector3(), nC = new Vector3();\n const cb = new Vector3(), ab = new Vector3();\n if (index) {\n for (let i2 = 0, il = index.count; i2 < il; i2 += 3) {\n const vA = index.getX(i2 + 0);\n const vB = index.getX(i2 + 1);\n const vC = index.getX(i2 + 2);\n pA.fromBufferAttribute(positionAttribute, vA);\n pB.fromBufferAttribute(positionAttribute, vB);\n pC.fromBufferAttribute(positionAttribute, vC);\n cb.subVectors(pC, pB);\n ab.subVectors(pA, pB);\n cb.cross(ab);\n nA.fromBufferAttribute(normalAttribute, vA);\n nB.fromBufferAttribute(normalAttribute, vB);\n nC.fromBufferAttribute(normalAttribute, vC);\n nA.add(cb);\n nB.add(cb);\n nC.add(cb);\n normalAttribute.setXYZ(vA, nA.x, nA.y, nA.z);\n normalAttribute.setXYZ(vB, nB.x, nB.y, nB.z);\n normalAttribute.setXYZ(vC, nC.x, nC.y, nC.z);\n }\n } else {\n for (let i2 = 0, il = positionAttribute.count; i2 < il; i2 += 3) {\n pA.fromBufferAttribute(positionAttribute, i2 + 0);\n pB.fromBufferAttribute(positionAttribute, i2 + 1);\n pC.fromBufferAttribute(positionAttribute, i2 + 2);\n cb.subVectors(pC, pB);\n ab.subVectors(pA, pB);\n cb.cross(ab);\n normalAttribute.setXYZ(i2 + 0, cb.x, cb.y, cb.z);\n normalAttribute.setXYZ(i2 + 1, cb.x, cb.y, cb.z);\n normalAttribute.setXYZ(i2 + 2, cb.x, cb.y, cb.z);\n }\n }\n this.normalizeNormals();\n normalAttribute.needsUpdate = true;\n }\n }\n normalizeNormals() {\n const normals = this.attributes.normal;\n for (let i2 = 0, il = normals.count; i2 < il; i2++) {\n _vector$8.fromBufferAttribute(normals, i2);\n _vector$8.normalize();\n normals.setXYZ(i2, _vector$8.x, _vector$8.y, _vector$8.z);\n }\n }\n toNonIndexed() {\n function convertBufferAttribute(attribute, indices2) {\n const array = attribute.array;\n const itemSize = attribute.itemSize;\n const normalized = attribute.normalized;\n const array2 = new array.constructor(indices2.length * itemSize);\n let index = 0, index2 = 0;\n for (let i2 = 0, l = indices2.length; i2 < l; i2++) {\n if (attribute.isInterleavedBufferAttribute) {\n index = indices2[i2] * attribute.data.stride + attribute.offset;\n } else {\n index = indices2[i2] * itemSize;\n }\n for (let j = 0; j < itemSize; j++) {\n array2[index2++] = array[index++];\n }\n }\n return new BufferAttribute(array2, itemSize, normalized);\n }\n if (this.index === null) {\n console.warn("THREE.BufferGeometry.toNonIndexed(): BufferGeometry is already non-indexed.");\n return this;\n }\n const geometry2 = new BufferGeometry();\n const indices = this.index.array;\n const attributes = this.attributes;\n for (const name in attributes) {\n const attribute = attributes[name];\n const newAttribute = convertBufferAttribute(attribute, indices);\n geometry2.setAttribute(name, newAttribute);\n }\n const morphAttributes = this.morphAttributes;\n for (const name in morphAttributes) {\n const morphArray = [];\n const morphAttribute = morphAttributes[name];\n for (let i2 = 0, il = morphAttribute.length; i2 < il; i2++) {\n const attribute = morphAttribute[i2];\n const newAttribute = convertBufferAttribute(attribute, indices);\n morphArray.push(newAttribute);\n }\n geometry2.morphAttributes[name] = morphArray;\n }\n geometry2.morphTargetsRelative = this.morphTargetsRelative;\n const groups = this.groups;\n for (let i2 = 0, l = groups.length; i2 < l; i2++) {\n const group = groups[i2];\n geometry2.addGroup(group.start, group.count, group.materialIndex);\n }\n return geometry2;\n }\n toJSON() {\n const data = {\n metadata: {\n version: 4.6,\n type: "BufferGeometry",\n generator: "BufferGeometry.toJSON"\n }\n };\n data.uuid = this.uuid;\n data.type = this.type;\n if (this.name !== "") data.name = this.name;\n if (Object.keys(this.userData).length > 0) data.userData = this.userData;\n if (this.parameters !== void 0) {\n const parameters = this.parameters;\n for (const key in parameters) {\n if (parameters[key] !== void 0) data[key] = parameters[key];\n }\n return data;\n }\n data.data = { attributes: {} };\n const index = this.index;\n if (index !== null) {\n data.data.index = {\n type: index.array.constructor.name,\n array: Array.prototype.slice.call(index.array)\n };\n }\n const attributes = this.attributes;\n for (const key in attributes) {\n const attribute = attributes[key];\n data.data.attributes[key] = attribute.toJSON(data.data);\n }\n const morphAttributes = {};\n let hasMorphAttributes = false;\n for (const key in this.morphAttributes) {\n const attributeArray = this.morphAttributes[key];\n const array = [];\n for (let i2 = 0, il = attributeArray.length; i2 < il; i2++) {\n const attribute = attributeArray[i2];\n array.push(attribute.toJSON(data.data));\n }\n if (array.length > 0) {\n morphAttributes[key] = array;\n hasMorphAttributes = true;\n }\n }\n if (hasMorphAttributes) {\n data.data.morphAttributes = morphAttributes;\n data.data.morphTargetsRelative = this.morphTargetsRelative;\n }\n const groups = this.groups;\n if (groups.length > 0) {\n data.data.groups = JSON.parse(JSON.stringify(groups));\n }\n const boundingSphere = this.boundingSphere;\n if (boundingSphere !== null) {\n data.data.boundingSphere = {\n center: boundingSphere.center.toArray(),\n radius: boundingSphere.radius\n };\n }\n return data;\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(source) {\n this.index = null;\n this.attributes = {};\n this.morphAttributes = {};\n this.groups = [];\n this.boundingBox = null;\n this.boundingSphere = null;\n const data = {};\n this.name = source.name;\n const index = source.index;\n if (index !== null) {\n this.setIndex(index.clone(data));\n }\n const attributes = source.attributes;\n for (const name in attributes) {\n const attribute = attributes[name];\n this.setAttribute(name, attribute.clone(data));\n }\n const morphAttributes = source.morphAttributes;\n for (const name in morphAttributes) {\n const array = [];\n const morphAttribute = morphAttributes[name];\n for (let i2 = 0, l = morphAttribute.length; i2 < l; i2++) {\n array.push(morphAttribute[i2].clone(data));\n }\n this.morphAttributes[name] = array;\n }\n this.morphTargetsRelative = source.morphTargetsRelative;\n const groups = source.groups;\n for (let i2 = 0, l = groups.length; i2 < l; i2++) {\n const group = groups[i2];\n this.addGroup(group.start, group.count, group.materialIndex);\n }\n const boundingBox = source.boundingBox;\n if (boundingBox !== null) {\n this.boundingBox = boundingBox.clone();\n }\n const boundingSphere = source.boundingSphere;\n if (boundingSphere !== null) {\n this.boundingSphere = boundingSphere.clone();\n }\n this.drawRange.start = source.drawRange.start;\n this.drawRange.count = source.drawRange.count;\n this.userData = source.userData;\n return this;\n }\n dispose() {\n this.dispatchEvent({ type: "dispose" });\n }\n }\n const _inverseMatrix$3 = /* @__PURE__ */ new Matrix4();\n const _ray$3 = /* @__PURE__ */ new Ray();\n const _sphere$6 = /* @__PURE__ */ new Sphere();\n const _sphereHitAt = /* @__PURE__ */ new Vector3();\n const _vA$1 = /* @__PURE__ */ new Vector3();\n const _vB$1 = /* @__PURE__ */ new Vector3();\n const _vC$1 = /* @__PURE__ */ new Vector3();\n const _tempA = /* @__PURE__ */ new Vector3();\n const _morphA = /* @__PURE__ */ new Vector3();\n const _intersectionPoint = /* @__PURE__ */ new Vector3();\n const _intersectionPointWorld = /* @__PURE__ */ new Vector3();\n class Mesh extends Object3D {\n constructor(geometry = new BufferGeometry(), material = new MeshBasicMaterial()) {\n super();\n this.isMesh = true;\n this.type = "Mesh";\n this.geometry = geometry;\n this.material = material;\n this.updateMorphTargets();\n }\n copy(source, recursive) {\n super.copy(source, recursive);\n if (source.morphTargetInfluences !== void 0) {\n this.morphTargetInfluences = source.morphTargetInfluences.slice();\n }\n if (source.morphTargetDictionary !== void 0) {\n this.morphTargetDictionary = Object.assign({}, source.morphTargetDictionary);\n }\n this.material = Array.isArray(source.material) ? source.material.slice() : source.material;\n this.geometry = source.geometry;\n return this;\n }\n updateMorphTargets() {\n const geometry = this.geometry;\n const morphAttributes = geometry.morphAttributes;\n const keys = Object.keys(morphAttributes);\n if (keys.length > 0) {\n const morphAttribute = morphAttributes[keys[0]];\n if (morphAttribute !== void 0) {\n this.morphTargetInfluences = [];\n this.morphTargetDictionary = {};\n for (let m = 0, ml = morphAttribute.length; m < ml; m++) {\n const name = morphAttribute[m].name || String(m);\n this.morphTargetInfluences.push(0);\n this.morphTargetDictionary[name] = m;\n }\n }\n }\n }\n getVertexPosition(index, target) {\n const geometry = this.geometry;\n const position = geometry.attributes.position;\n const morphPosition = geometry.morphAttributes.position;\n const morphTargetsRelative = geometry.morphTargetsRelative;\n target.fromBufferAttribute(position, index);\n const morphInfluences = this.morphTargetInfluences;\n if (morphPosition && morphInfluences) {\n _morphA.set(0, 0, 0);\n for (let i2 = 0, il = morphPosition.length; i2 < il; i2++) {\n const influence = morphInfluences[i2];\n const morphAttribute = morphPosition[i2];\n if (influence === 0) continue;\n _tempA.fromBufferAttribute(morphAttribute, index);\n if (morphTargetsRelative) {\n _morphA.addScaledVector(_tempA, influence);\n } else {\n _morphA.addScaledVector(_tempA.sub(target), influence);\n }\n }\n target.add(_morphA);\n }\n return target;\n }\n raycast(raycaster, intersects) {\n const geometry = this.geometry;\n const material = this.material;\n const matrixWorld = this.matrixWorld;\n if (material === void 0) return;\n if (geometry.boundingSphere === null) geometry.computeBoundingSphere();\n _sphere$6.copy(geometry.boundingSphere);\n _sphere$6.applyMatrix4(matrixWorld);\n _ray$3.copy(raycaster.ray).recast(raycaster.near);\n if (_sphere$6.containsPoint(_ray$3.origin) === false) {\n if (_ray$3.intersectSphere(_sphere$6, _sphereHitAt) === null) return;\n if (_ray$3.origin.distanceToSquared(_sphereHitAt) > (raycaster.far - raycaster.near) ** 2) return;\n }\n _inverseMatrix$3.copy(matrixWorld).invert();\n _ray$3.copy(raycaster.ray).applyMatrix4(_inverseMatrix$3);\n if (geometry.boundingBox !== null) {\n if (_ray$3.intersectsBox(geometry.boundingBox) === false) return;\n }\n this._computeIntersections(raycaster, intersects, _ray$3);\n }\n _computeIntersections(raycaster, intersects, rayLocalSpace) {\n let intersection;\n const geometry = this.geometry;\n const material = this.material;\n const index = geometry.index;\n const position = geometry.attributes.position;\n const uv = geometry.attributes.uv;\n const uv1 = geometry.attributes.uv1;\n const normal = geometry.attributes.normal;\n const groups = geometry.groups;\n const drawRange = geometry.drawRange;\n if (index !== null) {\n if (Array.isArray(material)) {\n for (let i2 = 0, il = groups.length; i2 < il; i2++) {\n const group = groups[i2];\n const groupMaterial = material[group.materialIndex];\n const start = Math.max(group.start, drawRange.start);\n const end = Math.min(index.count, Math.min(group.start + group.count, drawRange.start + drawRange.count));\n for (let j = start, jl = end; j < jl; j += 3) {\n const a = index.getX(j);\n const b = index.getX(j + 1);\n const c = index.getX(j + 2);\n intersection = checkGeometryIntersection(this, groupMaterial, raycaster, rayLocalSpace, uv, uv1, normal, a, b, c);\n if (intersection) {\n intersection.faceIndex = Math.floor(j / 3);\n intersection.face.materialIndex = group.materialIndex;\n intersects.push(intersection);\n }\n }\n }\n } else {\n const start = Math.max(0, drawRange.start);\n const end = Math.min(index.count, drawRange.start + drawRange.count);\n for (let i2 = start, il = end; i2 < il; i2 += 3) {\n const a = index.getX(i2);\n const b = index.getX(i2 + 1);\n const c = index.getX(i2 + 2);\n intersection = checkGeometryIntersection(this, material, raycaster, rayLocalSpace, uv, uv1, normal, a, b, c);\n if (intersection) {\n intersection.faceIndex = Math.floor(i2 / 3);\n intersects.push(intersection);\n }\n }\n }\n } else if (position !== void 0) {\n if (Array.isArray(material)) {\n for (let i2 = 0, il = groups.length; i2 < il; i2++) {\n const group = groups[i2];\n const groupMaterial = material[group.materialIndex];\n const start = Math.max(group.start, drawRange.start);\n const end = Math.min(position.count, Math.min(group.start + group.count, drawRange.start + drawRange.count));\n for (let j = start, jl = end; j < jl; j += 3) {\n const a = j;\n const b = j + 1;\n const c = j + 2;\n intersection = checkGeometryIntersection(this, groupMaterial, raycaster, rayLocalSpace, uv, uv1, normal, a, b, c);\n if (intersection) {\n intersection.faceIndex = Math.floor(j / 3);\n intersection.face.materialIndex = group.materialIndex;\n intersects.push(intersection);\n }\n }\n }\n } else {\n const start = Math.max(0, drawRange.start);\n const end = Math.min(position.count, drawRange.start + drawRange.count);\n for (let i2 = start, il = end; i2 < il; i2 += 3) {\n const a = i2;\n const b = i2 + 1;\n const c = i2 + 2;\n intersection = checkGeometryIntersection(this, material, raycaster, rayLocalSpace, uv, uv1, normal, a, b, c);\n if (intersection) {\n intersection.faceIndex = Math.floor(i2 / 3);\n intersects.push(intersection);\n }\n }\n }\n }\n }\n }\n function checkIntersection$1(object, material, raycaster, ray, pA, pB, pC, point) {\n let intersect;\n if (material.side === BackSide) {\n intersect = ray.intersectTriangle(pC, pB, pA, true, point);\n } else {\n intersect = ray.intersectTriangle(pA, pB, pC, material.side === FrontSide, point);\n }\n if (intersect === null) return null;\n _intersectionPointWorld.copy(point);\n _intersectionPointWorld.applyMatrix4(object.matrixWorld);\n const distance = raycaster.ray.origin.distanceTo(_intersectionPointWorld);\n if (distance < raycaster.near || distance > raycaster.far) return null;\n return {\n distance,\n point: _intersectionPointWorld.clone(),\n object\n };\n }\n function checkGeometryIntersection(object, material, raycaster, ray, uv, uv1, normal, a, b, c) {\n object.getVertexPosition(a, _vA$1);\n object.getVertexPosition(b, _vB$1);\n object.getVertexPosition(c, _vC$1);\n const intersection = checkIntersection$1(object, material, raycaster, ray, _vA$1, _vB$1, _vC$1, _intersectionPoint);\n if (intersection) {\n const barycoord = new Vector3();\n Triangle.getBarycoord(_intersectionPoint, _vA$1, _vB$1, _vC$1, barycoord);\n if (uv) {\n intersection.uv = Triangle.getInterpolatedAttribute(uv, a, b, c, barycoord, new Vector2());\n }\n if (uv1) {\n intersection.uv1 = Triangle.getInterpolatedAttribute(uv1, a, b, c, barycoord, new Vector2());\n }\n if (normal) {\n intersection.normal = Triangle.getInterpolatedAttribute(normal, a, b, c, barycoord, new Vector3());\n if (intersection.normal.dot(ray.direction) > 0) {\n intersection.normal.multiplyScalar(-1);\n }\n }\n const face = {\n a,\n b,\n c,\n normal: new Vector3(),\n materialIndex: 0\n };\n Triangle.getNormal(_vA$1, _vB$1, _vC$1, face.normal);\n intersection.face = face;\n intersection.barycoord = barycoord;\n }\n return intersection;\n }\n function cloneUniforms(src) {\n const dst = {};\n for (const u in src) {\n dst[u] = {};\n for (const p in src[u]) {\n const property = src[u][p];\n if (property && (property.isColor || property.isMatrix3 || property.isMatrix4 || property.isVector2 || property.isVector3 || property.isVector4 || property.isTexture || property.isQuaternion)) {\n if (property.isRenderTargetTexture) {\n console.warn("UniformsUtils: Textures of render targets cannot be cloned via cloneUniforms() or mergeUniforms().");\n dst[u][p] = null;\n } else {\n dst[u][p] = property.clone();\n }\n } else if (Array.isArray(property)) {\n dst[u][p] = property.slice();\n } else {\n dst[u][p] = property;\n }\n }\n }\n return dst;\n }\n function cloneUniformsGroups(src) {\n const dst = [];\n for (let u = 0; u < src.length; u++) {\n dst.push(src[u].clone());\n }\n return dst;\n }\n var default_vertex = "void main() {\\n gl_Position = projectionMatrix * modelViewMatrix * vec4( position, 1.0 );\\n}";\n var default_fragment = "void main() {\\n gl_FragColor = vec4( 1.0, 0.0, 0.0, 1.0 );\\n}";\n class ShaderMaterial extends Material {\n constructor(parameters) {\n super();\n this.isShaderMaterial = true;\n this.type = "ShaderMaterial";\n this.defines = {};\n this.uniforms = {};\n this.uniformsGroups = [];\n this.vertexShader = default_vertex;\n this.fragmentShader = default_fragment;\n this.linewidth = 1;\n this.wireframe = false;\n this.wireframeLinewidth = 1;\n this.fog = false;\n this.lights = false;\n this.clipping = false;\n this.forceSinglePass = true;\n this.extensions = {\n clipCullDistance: false,\n // set to use vertex shader clipping\n multiDraw: false\n // set to use vertex shader multi_draw / enable gl_DrawID\n };\n this.defaultAttributeValues = {\n "color": [1, 1, 1],\n "uv": [0, 0],\n "uv1": [0, 0]\n };\n this.index0AttributeName = void 0;\n this.uniformsNeedUpdate = false;\n this.glslVersion = null;\n if (parameters !== void 0) {\n this.setValues(parameters);\n }\n }\n copy(source) {\n super.copy(source);\n this.fragmentShader = source.fragmentShader;\n this.vertexShader = source.vertexShader;\n this.uniforms = cloneUniforms(source.uniforms);\n this.uniformsGroups = cloneUniformsGroups(source.uniformsGroups);\n this.defines = Object.assign({}, source.defines);\n this.wireframe = source.wireframe;\n this.wireframeLinewidth = source.wireframeLinewidth;\n this.fog = source.fog;\n this.lights = source.lights;\n this.clipping = source.clipping;\n this.extensions = Object.assign({}, source.extensions);\n this.glslVersion = source.glslVersion;\n return this;\n }\n toJSON(meta) {\n const data = super.toJSON(meta);\n data.glslVersion = this.glslVersion;\n data.uniforms = {};\n for (const name in this.uniforms) {\n const uniform = this.uniforms[name];\n const value = uniform.value;\n if (value && value.isTexture) {\n data.uniforms[name] = {\n type: "t",\n value: value.toJSON(meta).uuid\n };\n } else if (value && value.isColor) {\n data.uniforms[name] = {\n type: "c",\n value: value.getHex()\n };\n } else if (value && value.isVector2) {\n data.uniforms[name] = {\n type: "v2",\n value: value.toArray()\n };\n } else if (value && value.isVector3) {\n data.uniforms[name] = {\n type: "v3",\n value: value.toArray()\n };\n } else if (value && value.isVector4) {\n data.uniforms[name] = {\n type: "v4",\n value: value.toArray()\n };\n } else if (value && value.isMatrix3) {\n data.uniforms[name] = {\n type: "m3",\n value: value.toArray()\n };\n } else if (value && value.isMatrix4) {\n data.uniforms[name] = {\n type: "m4",\n value: value.toArray()\n };\n } else {\n data.uniforms[name] = {\n value\n };\n }\n }\n if (Object.keys(this.defines).length > 0) data.defines = this.defines;\n data.vertexShader = this.vertexShader;\n data.fragmentShader = this.fragmentShader;\n data.lights = this.lights;\n data.clipping = this.clipping;\n const extensions = {};\n for (const key in this.extensions) {\n if (this.extensions[key] === true) extensions[key] = true;\n }\n if (Object.keys(extensions).length > 0) data.extensions = extensions;\n return data;\n }\n }\n class Camera extends Object3D {\n constructor() {\n super();\n this.isCamera = true;\n this.type = "Camera";\n this.matrixWorldInverse = new Matrix4();\n this.projectionMatrix = new Matrix4();\n this.projectionMatrixInverse = new Matrix4();\n this.coordinateSystem = WebGLCoordinateSystem;\n }\n copy(source, recursive) {\n super.copy(source, recursive);\n this.matrixWorldInverse.copy(source.matrixWorldInverse);\n this.projectionMatrix.copy(source.projectionMatrix);\n this.projectionMatrixInverse.copy(source.projectionMatrixInverse);\n this.coordinateSystem = source.coordinateSystem;\n return this;\n }\n getWorldDirection(target) {\n return super.getWorldDirection(target).negate();\n }\n updateMatrixWorld(force) {\n super.updateMatrixWorld(force);\n this.matrixWorldInverse.copy(this.matrixWorld).invert();\n }\n updateWorldMatrix(updateParents, updateChildren) {\n super.updateWorldMatrix(updateParents, updateChildren);\n this.matrixWorldInverse.copy(this.matrixWorld).invert();\n }\n clone() {\n return new this.constructor().copy(this);\n }\n }\n class Scene extends Object3D {\n constructor() {\n super();\n this.isScene = true;\n this.type = "Scene";\n this.background = null;\n this.environment = null;\n this.fog = null;\n this.backgroundBlurriness = 0;\n this.backgroundIntensity = 1;\n this.backgroundRotation = new Euler();\n this.environmentIntensity = 1;\n this.environmentRotation = new Euler();\n this.overrideMaterial = null;\n if (typeof __THREE_DEVTOOLS__ !== "undefined") {\n __THREE_DEVTOOLS__.dispatchEvent(new CustomEvent("observe", { detail: this }));\n }\n }\n copy(source, recursive) {\n super.copy(source, recursive);\n if (source.background !== null) this.background = source.background.clone();\n if (source.environment !== null) this.environment = source.environment.clone();\n if (source.fog !== null) this.fog = source.fog.clone();\n this.backgroundBlurriness = source.backgroundBlurriness;\n this.backgroundIntensity = source.backgroundIntensity;\n this.backgroundRotation.copy(source.backgroundRotation);\n this.environmentIntensity = source.environmentIntensity;\n this.environmentRotation.copy(source.environmentRotation);\n if (source.overrideMaterial !== null) this.overrideMaterial = source.overrideMaterial.clone();\n this.matrixAutoUpdate = source.matrixAutoUpdate;\n return this;\n }\n toJSON(meta) {\n const data = super.toJSON(meta);\n if (this.fog !== null) data.object.fog = this.fog.toJSON();\n if (this.backgroundBlurriness > 0) data.object.backgroundBlurriness = this.backgroundBlurriness;\n if (this.backgroundIntensity !== 1) data.object.backgroundIntensity = this.backgroundIntensity;\n data.object.backgroundRotation = this.backgroundRotation.toArray();\n if (this.environmentIntensity !== 1) data.object.environmentIntensity = this.environmentIntensity;\n data.object.environmentRotation = this.environmentRotation.toArray();\n return data;\n }\n }\n class DataTexture extends Texture {\n constructor(data = null, width = 1, height = 1, format, type, mapping, wrapS, wrapT, magFilter = NearestFilter, minFilter = NearestFilter, anisotropy, colorSpace) {\n super(null, mapping, wrapS, wrapT, magFilter, minFilter, format, type, anisotropy, colorSpace);\n this.isDataTexture = true;\n this.image = { data, width, height };\n this.generateMipmaps = false;\n this.flipY = false;\n this.unpackAlignment = 1;\n }\n }\n class PlaneGeometry extends BufferGeometry {\n constructor(width = 1, height = 1, widthSegments = 1, heightSegments = 1) {\n super();\n this.type = "PlaneGeometry";\n this.parameters = {\n width,\n height,\n widthSegments,\n heightSegments\n };\n const width_half = width / 2;\n const height_half = height / 2;\n const gridX = Math.floor(widthSegments);\n const gridY = Math.floor(heightSegments);\n const gridX1 = gridX + 1;\n const gridY1 = gridY + 1;\n const segment_width = width / gridX;\n const segment_height = height / gridY;\n const indices = [];\n const vertices = [];\n const normals = [];\n const uvs = [];\n for (let iy = 0; iy < gridY1; iy++) {\n const y = iy * segment_height - height_half;\n for (let ix = 0; ix < gridX1; ix++) {\n const x2 = ix * segment_width - width_half;\n vertices.push(x2, -y, 0);\n normals.push(0, 0, 1);\n uvs.push(ix / gridX);\n uvs.push(1 - iy / gridY);\n }\n }\n for (let iy = 0; iy < gridY; iy++) {\n for (let ix = 0; ix < gridX; ix++) {\n const a = ix + gridX1 * iy;\n const b = ix + gridX1 * (iy + 1);\n const c = ix + 1 + gridX1 * (iy + 1);\n const d = ix + 1 + gridX1 * iy;\n indices.push(a, b, d);\n indices.push(b, c, d);\n }\n }\n this.setIndex(indices);\n this.setAttribute("position", new Float32BufferAttribute(vertices, 3));\n this.setAttribute("normal", new Float32BufferAttribute(normals, 3));\n this.setAttribute("uv", new Float32BufferAttribute(uvs, 2));\n }\n copy(source) {\n super.copy(source);\n this.parameters = Object.assign({}, source.parameters);\n return this;\n }\n static fromJSON(data) {\n return new PlaneGeometry(data.width, data.height, data.widthSegments, data.heightSegments);\n }\n }\n class RawShaderMaterial extends ShaderMaterial {\n constructor(parameters) {\n super(parameters);\n this.isRawShaderMaterial = true;\n this.type = "RawShaderMaterial";\n }\n }\n class Matrix2 {\n constructor(n11, n12, n21, n22) {\n Matrix2.prototype.isMatrix2 = true;\n this.elements = [\n 1,\n 0,\n 0,\n 1\n ];\n if (n11 !== void 0) {\n this.set(n11, n12, n21, n22);\n }\n }\n identity() {\n this.set(\n 1,\n 0,\n 0,\n 1\n );\n return this;\n }\n fromArray(array, offset = 0) {\n for (let i2 = 0; i2 < 4; i2++) {\n this.elements[i2] = array[i2 + offset];\n }\n return this;\n }\n set(n11, n12, n21, n22) {\n const te = this.elements;\n te[0] = n11;\n te[2] = n12;\n te[1] = n21;\n te[3] = n22;\n return this;\n }\n }\n if (typeof __THREE_DEVTOOLS__ !== "undefined") {\n __THREE_DEVTOOLS__.dispatchEvent(new CustomEvent("register", { detail: {\n revision: REVISION\n } }));\n }\n if (typeof window !== "undefined") {\n if (window.__THREE__) {\n console.warn("WARNING: Multiple instances of Three.js being imported.");\n } else {\n window.__THREE__ = REVISION;\n }\n }\n const LN_SCALE_MIN = -9;\n const LN_SCALE_MAX = 9;\n const LN_RESCALE = (LN_SCALE_MAX - LN_SCALE_MIN) / 254;\n const SCALE_MIN = Math.exp(LN_SCALE_MIN);\n const SPLAT_TEX_WIDTH_BITS = 11;\n const SPLAT_TEX_HEIGHT_BITS = 11;\n const SPLAT_TEX_WIDTH = 1 << SPLAT_TEX_WIDTH_BITS;\n const SPLAT_TEX_HEIGHT = 1 << SPLAT_TEX_HEIGHT_BITS;\n const SPLAT_TEX_MIN_HEIGHT = 1;\n const WASM_SPLAT_SORT = true;\n function isIntType(type) {\n return type === "int" || type === "ivec2" || type === "ivec3" || type === "ivec4";\n }\n function isUintType(type) {\n return type === "uint" || type === "uvec2" || type === "uvec3" || type === "uvec4";\n }\n function isFloatType(type) {\n return type === "float" || type === "vec2" || type === "vec3" || type === "vec4";\n }\n function isMatFloatType(type) {\n return type === "mat2" || type === "mat2x2" || type === "mat2x3" || type === "mat2x4" || type === "mat3" || type === "mat3x2" || type === "mat3x3" || type === "mat3x4" || type === "mat4" || type === "mat4x2" || type === "mat4x3" || type === "mat4x4";\n }\n function isAllFloatType(type) {\n return isFloatType(type) || isMatFloatType(type);\n }\n function isMat2(type) {\n return type === "mat2" || type === "mat2x2";\n }\n function isMat3(type) {\n return type === "mat3" || type === "mat3x3";\n }\n function isMat4(type) {\n return type === "mat4" || type === "mat4x4";\n }\n function numberAsInt(value) {\n return Math.trunc(value).toString();\n }\n function numberAsUint(value) {\n const v = Math.max(0, Math.trunc(value));\n return `${v.toString()}u`;\n }\n function numberAsFloat(value) {\n return value === Number.POSITIVE_INFINITY ? "INFINITY" : value === Number.NEGATIVE_INFINITY ? "-INFINITY" : Number.isInteger(value) ? value.toFixed(1) : value.toString();\n }\n function valType(val) {\n if (val instanceof DynoValue) {\n return val.type;\n }\n const value = val.dynoOut();\n return value.type;\n }\n class DynoValue {\n constructor(type) {\n this.__isDynoValue = true;\n this.type = type;\n }\n }\n class DynoOutput extends DynoValue {\n constructor(dyno2, key) {\n super(dyno2.outTypes[key]);\n this.dyno = dyno2;\n this.key = key;\n }\n }\n class DynoLiteral extends DynoValue {\n constructor(type, literal) {\n super(type);\n this.literal = literal;\n }\n getLiteral() {\n return this.literal;\n }\n }\n class DynoConst extends DynoLiteral {\n constructor(type, value) {\n super(type, "");\n this.value = value;\n }\n getLiteral() {\n const { type, value } = this;\n switch (type) {\n case "bool":\n return value ? "true" : "false";\n case "uint":\n return numberAsUint(value);\n case "int":\n return numberAsInt(value);\n case "float":\n return numberAsFloat(value);\n case "bvec2": {\n const v = value;\n return `bvec2(${v[0]}, ${v[1]})`;\n }\n case "uvec2": {\n if (value instanceof Vector2) {\n return `uvec2(${numberAsUint(value.x)}, ${numberAsUint(value.y)})`;\n }\n const v = value;\n return `uvec2(${numberAsUint(v[0])}, ${numberAsUint(v[1])})`;\n }\n case "ivec2": {\n if (value instanceof Vector2) {\n return `ivec2(${numberAsInt(value.x)}, ${numberAsInt(value.y)})`;\n }\n const v = value;\n return `ivec2(${numberAsInt(v[0])}, ${numberAsInt(v[1])})`;\n }\n case "vec2": {\n if (value instanceof Vector2) {\n return `vec2(${numberAsFloat(value.x)}, ${numberAsFloat(value.y)})`;\n }\n const v = value;\n return `vec2(${numberAsFloat(v[0])}, ${numberAsFloat(v[1])})`;\n }\n case "bvec3": {\n const v = value;\n return `bvec3(${v[0]}, ${v[1]}, ${v[2]})`;\n }\n case "uvec3": {\n if (value instanceof Vector3) {\n return `uvec3(${numberAsUint(value.x)}, ${numberAsUint(value.y)}, ${numberAsUint(value.z)})`;\n }\n const v = value;\n return `uvec3(${numberAsUint(v[0])}, ${numberAsUint(v[1])}, ${numberAsUint(v[2])})`;\n }\n case "ivec3": {\n if (value instanceof Vector3) {\n return `ivec3(${numberAsInt(value.x)}, ${numberAsInt(value.y)}, ${numberAsInt(value.z)})`;\n }\n const v = value;\n return `ivec3(${numberAsInt(v[0])}, ${numberAsInt(v[1])}, ${numberAsInt(v[2])})`;\n }\n case "vec3": {\n if (value instanceof Vector3) {\n return `vec3(${numberAsFloat(value.x)}, ${numberAsFloat(value.y)}, ${numberAsFloat(value.z)})`;\n }\n const v = value;\n return `vec3(${numberAsFloat(v[0])}, ${numberAsFloat(v[1])}, ${numberAsFloat(v[2])})`;\n }\n case "bvec4": {\n const v = value;\n return `bvec4(${v[0]}, ${v[1]}, ${v[2]}, ${v[3]})`;\n }\n case "uvec4": {\n if (value instanceof Vector4) {\n return `uvec4(${numberAsUint(value.x)}, ${numberAsUint(value.y)}, ${numberAsUint(value.z)}, ${numberAsUint(value.w)})`;\n }\n const v = value;\n return `uvec4(${numberAsUint(v[0])}, ${numberAsUint(v[1])}, ${numberAsUint(v[2])}, ${numberAsUint(v[3])})`;\n }\n case "ivec4": {\n if (value instanceof Vector4) {\n return `ivec4(${numberAsInt(value.x)}, ${numberAsInt(value.y)}, ${numberAsInt(value.z)}, ${numberAsInt(value.w)})`;\n }\n const v = value;\n return `ivec4(${numberAsInt(v[0])}, ${numberAsInt(v[1])}, ${numberAsInt(v[2])}, ${numberAsInt(v[3])})`;\n }\n case "vec4": {\n if (value instanceof Vector4) {\n return `vec4(${numberAsFloat(value.x)}, ${numberAsFloat(value.y)}, ${numberAsFloat(value.z)}, ${numberAsFloat(value.w)})`;\n }\n if (value instanceof Quaternion) {\n return `vec4(${numberAsFloat(value.x)}, ${numberAsFloat(value.y)}, ${numberAsFloat(value.z)}, ${numberAsFloat(value.w)})`;\n }\n const v = value;\n return `vec4(${numberAsFloat(v[0])}, ${numberAsFloat(v[1])}, ${numberAsFloat(v[2])}, ${numberAsFloat(v[3])})`;\n }\n case "mat2":\n case "mat2x2": {\n const m = value;\n const e = m instanceof Matrix2 ? m.elements : value;\n const arg = new Array(4).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat2x3": {\n const e = value;\n const arg = new Array(6).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat2x4": {\n const e = value;\n const arg = new Array(8).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat3":\n case "mat3x3": {\n const m = value;\n const e = m instanceof Matrix3 ? m.elements : value;\n const arg = new Array(9).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat3x2": {\n const e = value;\n const arg = new Array(6).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat3x4": {\n const e = value;\n const arg = new Array(12).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat4":\n case "mat4x4": {\n const m = value;\n const e = m instanceof Matrix4 ? m.elements : value;\n const arg = new Array(16).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat4x2": {\n const e = value;\n const arg = new Array(8).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat4x3": {\n const e = value;\n const arg = new Array(12).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n default:\n throw new Error(`Type not implemented: ${String(type)}`);\n }\n }\n }\n function dynoConst(type, value) {\n return new DynoConst(type, value);\n }\n const DEFAULT_INDENT = " ";\n class Compilation {\n constructor({ indent } = {}) {\n this.globals = /* @__PURE__ */ new Set();\n this.statements = [];\n this.uniforms = {};\n this.declares = /* @__PURE__ */ new Set();\n this.updaters = [];\n this.sequence = 0;\n this.indent = DEFAULT_INDENT;\n this.indent = indent ?? DEFAULT_INDENT;\n }\n nextSequence() {\n return this.sequence++;\n }\n }\n class Dyno {\n constructor({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n statements,\n generate\n }) {\n this.inTypes = inTypes ?? {};\n this.outTypes = outTypes ?? {};\n this.inputs = inputs ?? {};\n this.update = update;\n this.globals = globals;\n this.statements = statements;\n this.generate = generate ?? (({ inputs: inputs2, outputs, compile }) => {\n var _a2, _b2;\n return {\n globals: (_a2 = this.globals) == null ? void 0 : _a2.call(this, { inputs: inputs2, outputs, compile }),\n statements: (_b2 = this.statements) == null ? void 0 : _b2.call(this, { inputs: inputs2, outputs, compile })\n };\n });\n }\n get outputs() {\n const outputs = {};\n for (const key in this.outTypes) {\n outputs[key] = new DynoOutput(this, key);\n }\n return outputs;\n }\n apply(inputs) {\n Object.assign(this.inputs, inputs);\n return this.outputs;\n }\n compile({\n inputs,\n outputs,\n compile\n }) {\n const result = [\n `// ${this.constructor.name}(${Object.values(inputs).join(", ")}) => (${Object.values(outputs).join(", ")})`\n ];\n const declares = [];\n for (const key in outputs) {\n const name = outputs[key];\n if (name && !compile.declares.has(name)) {\n compile.declares.add(name);\n declares.push(key);\n }\n }\n const { globals, statements, uniforms } = this.generate({\n inputs,\n outputs,\n compile\n });\n for (const global of globals ?? []) {\n compile.globals.add(global);\n }\n for (const key in uniforms) {\n compile.uniforms[key] = uniforms[key];\n }\n if (this.update) {\n compile.updaters.push(this.update);\n }\n for (const key of declares) {\n const name = outputs[key];\n if (name) {\n if (!compile.uniforms[name]) {\n result.push(`${dynoDeclare(name, this.outTypes[key])};`);\n }\n }\n }\n if (statements == null ? void 0 : statements.length) {\n result.push("{");\n result.push(...statements.map((line) => compile.indent + line));\n result.push("}");\n }\n return result;\n }\n }\n class DynoBlock extends Dyno {\n constructor({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n construct\n }) {\n super({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n generate: (args) => this.generateBlock(args)\n });\n this.construct = construct;\n }\n generateBlock({\n inputs,\n outputs,\n compile\n }) {\n var _a2, _b2;\n const blockInputs = {};\n const blockOutputs = {};\n for (const key in inputs) {\n if (inputs[key] != null) {\n blockInputs[key] = new DynoLiteral(this.inTypes[key], inputs[key]);\n }\n }\n for (const key in outputs) {\n if (outputs[key] != null) {\n blockOutputs[key] = new DynoValue(this.outTypes[key]);\n }\n }\n const options = { roots: [] };\n const returned = this.construct(blockInputs, blockOutputs, options);\n for (const global of ((_a2 = this.globals) == null ? void 0 : _a2.call(this, { inputs, outputs, compile })) ?? []) {\n compile.globals.add(global);\n }\n const ordering = [];\n const nodeOuts = /* @__PURE__ */ new Map();\n function visit(node, outKey, outName) {\n let outs = nodeOuts.get(node);\n if (!outs) {\n outs = {\n sequence: compile.nextSequence(),\n outNames: /* @__PURE__ */ new Map(),\n newOuts: /* @__PURE__ */ new Set()\n };\n nodeOuts.set(node, outs);\n for (const key in node.inputs) {\n let input = node.inputs[key];\n while (input) {\n if (input instanceof DynoValue) {\n if (input instanceof DynoOutput) {\n visit(input.dyno, input.key);\n }\n break;\n }\n input = input.dynoOut();\n }\n }\n ordering.push(node);\n }\n if (outKey) {\n if (!outName) {\n outs.newOuts.add(outKey);\n }\n outs.outNames.set(outKey, outName ?? `${outKey}_${outs.sequence}`);\n }\n }\n for (const root of options.roots) {\n visit(root);\n }\n for (const key in blockOutputs) {\n let value = (returned == null ? void 0 : returned[key]) ?? blockOutputs[key];\n while (value) {\n if (value instanceof DynoValue) {\n if (value instanceof DynoOutput) {\n visit(value.dyno, value.key, outputs[key]);\n }\n break;\n }\n value = value.dynoOut();\n }\n blockOutputs[key] = value;\n }\n const steps = [];\n for (const dyno2 of ordering) {\n const inputs2 = {};\n const outputs2 = {};\n for (const key in dyno2.inputs) {\n let value = dyno2.inputs[key];\n while (value) {\n if (value instanceof DynoValue) {\n if (value instanceof DynoLiteral) {\n inputs2[key] = value.getLiteral();\n } else if (value instanceof DynoOutput) {\n const source = (_b2 = nodeOuts.get(value.dyno)) == null ? void 0 : _b2.outNames.get(value.key);\n if (!source) {\n throw new Error(\n `Source not found for ${value.dyno.constructor.name}.${value.key}`\n );\n }\n inputs2[key] = source;\n }\n break;\n }\n value = value.dynoOut();\n }\n }\n const outs = nodeOuts.get(dyno2) ?? { outNames: /* @__PURE__ */ new Map() };\n for (const [key, name] of outs.outNames.entries()) {\n outputs2[key] = name;\n }\n const newSteps = dyno2.compile({ inputs: inputs2, outputs: outputs2, compile });\n steps.push(newSteps);\n }\n const literalOutputs = [];\n for (const key in outputs) {\n if (blockOutputs[key] instanceof DynoLiteral) {\n literalOutputs.push(\n `${outputs[key]} = ${blockOutputs[key].getLiteral()};`\n );\n }\n }\n if (literalOutputs.length > 0) {\n steps.push(literalOutputs);\n }\n const statements = steps.flatMap((step, index) => {\n return index === 0 ? step : ["", ...step];\n });\n return { statements };\n }\n }\n function dynoBlock(inTypes, outTypes, construct, { update, globals } = {}) {\n return new DynoBlock({ inTypes, outTypes, construct, update, globals });\n }\n function dyno({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n statements,\n generate\n }) {\n return new Dyno({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n statements,\n generate\n });\n }\n function dynoDeclare(name, type, count) {\n const typeStr = typeof type === "string" ? type : type.type;\n if (!typeStr) {\n throw new Error(`Invalid DynoType: ${String(type)}`);\n }\n return `${typeStr} ${name}${count != null ? `[${count}]` : ""}`;\n }\n function unindentLines(s) {\n var _a2;\n let seenNonEmpty = false;\n const lines = s.split("\\n").map((line) => {\n const trimmedLine = line.trimEnd();\n if (seenNonEmpty) {\n return trimmedLine;\n }\n if (trimmedLine.length > 0) {\n seenNonEmpty = true;\n return trimmedLine;\n }\n return null;\n }).filter((line) => line != null);\n while (lines.length > 0 && lines[lines.length - 1].length === 0) {\n lines.pop();\n }\n if (lines.length === 0) {\n return [];\n }\n const indent = (_a2 = lines[0].match(/^\\s*/)) == null ? void 0 : _a2[0];\n if (!indent) {\n return lines;\n }\n const regex = new RegExp(`^${indent}`);\n return lines.map((line) => line.replace(regex, ""));\n }\n function unindent(s) {\n return unindentLines(s).join("\\n");\n }\n class UnaryOp extends Dyno {\n constructor({\n a,\n outKey,\n outTypeFunc\n }) {\n const inTypes = { a: valType(a) };\n const outType = outTypeFunc(valType(a));\n const outTypes = { [outKey]: outType };\n super({ inTypes, outTypes, inputs: { a } });\n this.outKey = outKey;\n }\n dynoOut() {\n return new DynoOutput(this, this.outKey);\n }\n }\n class BinaryOp extends Dyno {\n constructor({\n a,\n b,\n outKey,\n outTypeFunc\n }) {\n const inTypes = { a: valType(a), b: valType(b) };\n const outType = outTypeFunc(valType(a), valType(b));\n const outTypes = { [outKey]: outType };\n super({ inTypes, outTypes, inputs: { a, b } });\n this.outKey = outKey;\n }\n dynoOut() {\n return new DynoOutput(this, this.outKey);\n }\n }\n const f32buffer = new Float32Array(1);\n const u32buffer = new Uint32Array(f32buffer.buffer);\n function toHalf(f) {\n f32buffer[0] = f;\n const bits2 = u32buffer[0];\n const sign = bits2 >> 31 & 1;\n const exp = bits2 >> 23 & 255;\n const frac = bits2 & 8388607;\n const halfSign = sign << 15;\n if (exp === 255) {\n if (frac !== 0) {\n return halfSign | 32767;\n }\n return halfSign | 31744;\n }\n const newExp = exp - 127 + 15;\n if (newExp >= 31) {\n return halfSign | 31744;\n }\n if (newExp <= 0) {\n if (newExp < -10) {\n return halfSign;\n }\n const subFrac = (frac | 8388608) >> 1 - newExp + 13;\n return halfSign | subFrac;\n }\n const halfFrac = frac >> 13;\n return halfSign | newExp << 10 | halfFrac;\n }\n function fromHalf(h) {\n const sign = h >> 15 & 1;\n const exp = h >> 10 & 31;\n const frac = h & 1023;\n let f32bits;\n if (exp === 0) {\n if (frac === 0) {\n f32bits = sign << 31;\n } else {\n let mant = frac;\n let e = -14;\n while ((mant & 1024) === 0) {\n mant <<= 1;\n e--;\n }\n mant &= 1023;\n const newExp = e + 127;\n const newFrac = mant << 13;\n f32bits = sign << 31 | newExp << 23 | newFrac;\n }\n } else if (exp === 31) {\n if (frac === 0) {\n f32bits = sign << 31 | 2139095040;\n } else {\n f32bits = sign << 31 | 2143289344;\n }\n } else {\n const newExp = exp - 15 + 127;\n const newFrac = frac << 13;\n f32bits = sign << 31 | newExp << 23 | newFrac;\n }\n u32buffer[0] = f32bits;\n return f32buffer[0];\n }\n function floatToUint8(v) {\n return Math.max(0, Math.min(255, Math.round(v * 255)));\n }\n function getArrayBuffers(ctx) {\n const buffers = [];\n const seen = /* @__PURE__ */ new Set();\n function traverse(obj) {\n if (obj && typeof obj === "object" && !seen.has(obj)) {\n seen.add(obj);\n if (obj instanceof ArrayBuffer) {\n buffers.push(obj);\n } else if (ArrayBuffer.isView(obj)) {\n buffers.push(obj.buffer);\n } else if (Array.isArray(obj)) {\n obj.forEach(traverse);\n } else {\n Object.values(obj).forEach(traverse);\n }\n }\n }\n traverse(ctx);\n return buffers;\n }\n function setPackedSplat(packedSplats, index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) {\n const uR = floatToUint8(r);\n const uG = floatToUint8(g);\n const uB = floatToUint8(b);\n const uA = floatToUint8(opacity);\n const uQuat = encodeQuatOctXy88R8(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n const uQuatX = uQuat & 255;\n const uQuatY = uQuat >>> 8 & 255;\n const uQuatZ = uQuat >>> 16 & 255;\n const uScaleX = scaleX === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleX) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uScaleY = scaleY === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleY) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uScaleZ = scaleZ === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleZ) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uCenterX = toHalf(x2);\n const uCenterY = toHalf(y);\n const uCenterZ = toHalf(z);\n const i4 = index * 4;\n packedSplats[i4] = uR | uG << 8 | uB << 16 | uA << 24;\n packedSplats[i4 + 1] = uCenterX | uCenterY << 16;\n packedSplats[i4 + 2] = uCenterZ | uQuatX << 16 | uQuatY << 24;\n packedSplats[i4 + 3] = uScaleX | uScaleY << 8 | uScaleZ << 16 | uQuatZ << 24;\n }\n function setPackedSplatCenter(packedSplats, index, x2, y, z) {\n const uCenterX = toHalf(x2);\n const uCenterY = toHalf(y);\n const uCenterZ = toHalf(z);\n const i4 = index * 4;\n packedSplats[i4 + 1] = uCenterX | uCenterY << 16;\n packedSplats[i4 + 2] = uCenterZ | packedSplats[i4 + 2] & 4294901760;\n }\n function setPackedSplatScales(packedSplats, index, scaleX, scaleY, scaleZ) {\n const uScaleX = scaleX === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleX) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uScaleY = scaleY === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleY) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uScaleZ = scaleZ === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleZ) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const i4 = index * 4;\n packedSplats[i4 + 3] = uScaleX | uScaleY << 8 | uScaleZ << 16 | packedSplats[i4 + 3] & 4278190080;\n }\n function setPackedSplatQuat(packedSplats, index, quatX, quatY, quatZ, quatW) {\n const uQuat = encodeQuatOctXy88R8(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n const uQuatX = uQuat & 255;\n const uQuatY = uQuat >>> 8 & 255;\n const uQuatZ = uQuat >>> 16 & 255;\n const i4 = index * 4;\n packedSplats[i4 + 2] = packedSplats[i4 + 2] & 65535 | uQuatX << 16 | uQuatY << 24;\n packedSplats[i4 + 3] = packedSplats[i4 + 3] & 16777215 | uQuatZ << 24;\n }\n function setPackedSplatRgb(packedSplats, index, r, g, b) {\n const uR = floatToUint8(r);\n const uG = floatToUint8(g);\n const uB = floatToUint8(b);\n const i4 = index * 4;\n packedSplats[i4] = uR | uG << 8 | uB << 16 | packedSplats[i4] & 4278190080;\n }\n function setPackedSplatOpacity(packedSplats, index, opacity) {\n const uA = floatToUint8(opacity);\n const i4 = index * 4;\n packedSplats[i4] = packedSplats[i4] & 16777215 | uA << 24;\n }\n const packedCenter = new Vector3();\n const packedScales = new Vector3();\n const packedQuaternion = new Quaternion();\n const packedColor = new Color();\n const packedFields = {\n center: packedCenter,\n scales: packedScales,\n quaternion: packedQuaternion,\n color: packedColor,\n opacity: 0\n };\n function unpackSplat(packedSplats, index) {\n const result = packedFields;\n const i4 = index * 4;\n const word0 = packedSplats[i4];\n const word1 = packedSplats[i4 + 1];\n const word2 = packedSplats[i4 + 2];\n const word3 = packedSplats[i4 + 3];\n result.color.set(\n (word0 & 255) / 255,\n (word0 >>> 8 & 255) / 255,\n (word0 >>> 16 & 255) / 255\n );\n result.opacity = (word0 >>> 24 & 255) / 255;\n result.center.set(\n fromHalf(word1 & 65535),\n fromHalf(word1 >>> 16 & 65535),\n fromHalf(word2 & 65535)\n );\n const uScalesX = word3 & 255;\n result.scales.x = uScalesX === 0 ? 0 : Math.exp(LN_SCALE_MIN + (uScalesX - 1) * LN_RESCALE);\n const uScalesY = word3 >>> 8 & 255;\n result.scales.y = uScalesY === 0 ? 0 : Math.exp(LN_SCALE_MIN + (uScalesY - 1) * LN_RESCALE);\n const uScalesZ = word3 >>> 16 & 255;\n result.scales.z = uScalesZ === 0 ? 0 : Math.exp(LN_SCALE_MIN + (uScalesZ - 1) * LN_RESCALE);\n const uQuat = word2 >>> 16 & 65535 | word3 >>> 8 & 16711680;\n decodeQuatOctXy88R8(uQuat, result.quaternion);\n return result;\n }\n function getTextureSize(numSplats) {\n const width = SPLAT_TEX_WIDTH;\n const height = Math.max(\n SPLAT_TEX_MIN_HEIGHT,\n Math.min(SPLAT_TEX_HEIGHT, Math.ceil(numSplats / width))\n );\n const depth = Math.ceil(numSplats / (width * height));\n const maxSplats = width * height * depth;\n return { width, height, depth, maxSplats };\n }\n function computeMaxSplats(numSplats) {\n const width = SPLAT_TEX_WIDTH;\n const height = Math.max(\n SPLAT_TEX_MIN_HEIGHT,\n Math.min(SPLAT_TEX_HEIGHT, Math.ceil(numSplats / width))\n );\n const depth = Math.ceil(numSplats / (width * height));\n return width * height * depth;\n }\n const IDENT_VERTEX_SHADER = unindent(`\n precision highp float;\n\n in vec3 position;\n\n void main() {\n gl_Position = vec4(position.xy, 0.0, 1.0);\n }\n`);\n function encodeQuatOctXy88R8(q) {\n const qnorm = q.clone().normalize();\n if (qnorm.w < 0) {\n qnorm.set(-qnorm.x, -qnorm.y, -qnorm.z, -qnorm.w);\n }\n const theta = 2 * Math.acos(qnorm.w);\n const xyz_norm = Math.sqrt(\n qnorm.x * qnorm.x + qnorm.y * qnorm.y + qnorm.z * qnorm.z\n );\n const axis = xyz_norm < 1e-6 ? new Vector3(1, 0, 0) : new Vector3(qnorm.x, qnorm.y, qnorm.z).divideScalar(xyz_norm);\n const sum = Math.abs(axis.x) + Math.abs(axis.y) + Math.abs(axis.z);\n let p_x = axis.x / sum;\n let p_y = axis.y / sum;\n if (axis.z < 0) {\n const tmp = p_x;\n p_x = (1 - Math.abs(p_y)) * (p_x >= 0 ? 1 : -1);\n p_y = (1 - Math.abs(tmp)) * (p_y >= 0 ? 1 : -1);\n }\n const u_f = p_x * 0.5 + 0.5;\n const v_f = p_y * 0.5 + 0.5;\n const quantU = Math.round(u_f * 255);\n const quantV = Math.round(v_f * 255);\n const angleInt = Math.round(theta * (255 / Math.PI));\n return angleInt << 16 | quantV << 8 | quantU;\n }\n function decodeQuatOctXy88R8(encoded, out) {\n const quantU = encoded & 255;\n const quantV = encoded >>> 8 & 255;\n const angleInt = encoded >>> 16 & 255;\n const u_f = quantU / 255;\n const v_f = quantV / 255;\n let f_x = (u_f - 0.5) * 2;\n let f_y = (v_f - 0.5) * 2;\n const f_z = 1 - (Math.abs(f_x) + Math.abs(f_y));\n const t = Math.max(-f_z, 0);\n f_x += f_x >= 0 ? -t : t;\n f_y += f_y >= 0 ? -t : t;\n const axis = new Vector3(f_x, f_y, f_z).normalize();\n const theta = angleInt / 255 * Math.PI;\n const halfTheta = theta * 0.5;\n const s = Math.sin(halfTheta);\n const w = Math.cos(halfTheta);\n out.set(axis.x * s, axis.y * s, axis.z * s, w);\n return out;\n }\n function packSint8Bytes(b0, b1, b2, b3) {\n const clampedB0 = Math.max(-127, Math.min(127, b0 * 127));\n const clampedB1 = Math.max(-127, Math.min(127, b1 * 127));\n const clampedB2 = Math.max(-127, Math.min(127, b2 * 127));\n const clampedB3 = Math.max(-127, Math.min(127, b3 * 127));\n return clampedB0 & 255 | (clampedB1 & 255) << 8 | (clampedB2 & 255) << 16 | (clampedB3 & 255) << 24;\n }\n function encodeSh1Rgb(sh1Array, index, sh1Rgb) {\n const base = index * 2;\n for (let i2 = 0; i2 < 9; ++i2) {\n const value = Math.max(-63, Math.min(63, sh1Rgb[i2] * 63)) & 127;\n const bitStart = i2 * 7;\n const bitEnd = bitStart + 7;\n const wordStart = Math.floor(bitStart / 32);\n const bitOffset = bitStart - wordStart * 32;\n const firstWord = value << bitOffset & 4294967295;\n sh1Array[base + wordStart] |= firstWord;\n if (bitEnd > wordStart * 32 + 32) {\n const secondWord = value >>> 32 - bitOffset & 4294967295;\n sh1Array[base + wordStart + 1] |= secondWord;\n }\n }\n }\n function encodeSh2Rgb(sh2Array, index, sh2Rgb) {\n sh2Array[index * 4 + 0] = packSint8Bytes(\n sh2Rgb[0],\n sh2Rgb[1],\n sh2Rgb[2],\n sh2Rgb[3]\n );\n sh2Array[index * 4 + 1] = packSint8Bytes(\n sh2Rgb[4],\n sh2Rgb[5],\n sh2Rgb[6],\n sh2Rgb[7]\n );\n sh2Array[index * 4 + 2] = packSint8Bytes(\n sh2Rgb[8],\n sh2Rgb[9],\n sh2Rgb[10],\n sh2Rgb[11]\n );\n sh2Array[index * 4 + 3] = packSint8Bytes(\n sh2Rgb[12],\n sh2Rgb[13],\n sh2Rgb[14],\n 0\n );\n }\n function encodeSh3Rgb(sh3Array, index, sh3Rgb) {\n const base = index * 4;\n for (let i2 = 0; i2 < 21; ++i2) {\n const value = Math.max(-31, Math.min(31, sh3Rgb[i2] * 31)) & 63;\n const bitStart = i2 * 6;\n const bitEnd = bitStart + 6;\n const wordStart = Math.floor(bitStart / 32);\n const bitOffset = bitStart - wordStart * 32;\n const firstWord = value << bitOffset & 4294967295;\n sh3Array[base + wordStart] |= firstWord;\n if (bitEnd > wordStart * 32 + 32) {\n const secondWord = value >>> 32 - bitOffset & 4294967295;\n sh3Array[base + wordStart + 1] |= secondWord;\n }\n }\n }\n function decompressPartialGzip(fileBytes, numBytes) {\n const chunks = [];\n let totalBytes = 0;\n let result = null;\n const gunzip = new Gunzip((data, final) => {\n chunks.push(data);\n totalBytes += data.length;\n if (final || totalBytes >= numBytes) {\n const allBytes = new Uint8Array(totalBytes);\n let offset2 = 0;\n for (const chunk of chunks) {\n allBytes.set(chunk, offset2);\n offset2 += chunk.length;\n }\n result = allBytes.slice(0, numBytes);\n }\n });\n const CHUNK_SIZE = 1024;\n let offset = 0;\n while (result == null && offset < fileBytes.length) {\n const chunk = fileBytes.slice(offset, offset + CHUNK_SIZE);\n gunzip.push(chunk, false);\n offset += CHUNK_SIZE;\n }\n if (result == null) {\n gunzip.push(new Uint8Array(), true);\n if (result == null) {\n throw new Error("Failed to decompress partial gzip");\n }\n }\n return result;\n }\n class GunzipReader {\n constructor({\n fileBytes,\n chunkBytes = 64 * 1024\n }) {\n this.fileBytes = fileBytes;\n this.chunkBytes = chunkBytes;\n this.offset = 0;\n this.chunks = [];\n this.totalBytes = 0;\n this.gunzip = new Gunzip((chunk, _final) => {\n this.chunks.push(chunk);\n this.totalBytes += chunk.length;\n });\n }\n read(numBytes) {\n while (this.totalBytes < numBytes && this.offset < this.fileBytes.length) {\n const end = Math.min(\n this.offset + this.chunkBytes,\n this.fileBytes.length\n );\n this.gunzip.push(this.fileBytes.subarray(this.offset, end), false);\n this.offset = end;\n }\n if (this.totalBytes < numBytes && this.offset >= this.fileBytes.length) {\n this.gunzip.push(new Uint8Array(0), true);\n }\n if (this.totalBytes < numBytes) {\n throw new Error(\n `Unexpected EOF: needed ${numBytes}, got ${this.totalBytes}`\n );\n }\n const allBytes = new Uint8Array(this.totalBytes);\n let outOffset = 0;\n for (const chunk of this.chunks) {\n allBytes.set(chunk, outOffset);\n outOffset += chunk.length;\n }\n const result = allBytes.subarray(0, numBytes);\n this.chunks = [allBytes.subarray(numBytes)];\n this.totalBytes -= numBytes;\n return result;\n }\n }\n function decodeAntiSplat(fileBytes, initNumSplats, splatCallback) {\n const numSplats = Math.floor(fileBytes.length / 32);\n if (numSplats * 32 !== fileBytes.length) {\n throw new Error("Invalid .splat file size");\n }\n initNumSplats(numSplats);\n const f32 = new Float32Array(fileBytes.buffer);\n for (let i2 = 0; i2 < numSplats; ++i2) {\n const i322 = i2 * 32;\n const i8 = i2 * 8;\n const x2 = f32[i8 + 0];\n const y = f32[i8 + 1];\n const z = f32[i8 + 2];\n const scaleX = f32[i8 + 3];\n const scaleY = f32[i8 + 4];\n const scaleZ = f32[i8 + 5];\n const r = fileBytes[i322 + 24] / 255;\n const g = fileBytes[i322 + 25] / 255;\n const b = fileBytes[i322 + 26] / 255;\n const opacity = fileBytes[i322 + 27] / 255;\n const quatW = (fileBytes[i322 + 28] - 128) / 128;\n const quatX = (fileBytes[i322 + 29] - 128) / 128;\n const quatY = (fileBytes[i322 + 30] - 128) / 128;\n const quatZ = (fileBytes[i322 + 31] - 128) / 128;\n splatCallback(\n i2,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n }\n }\n function unpackAntiSplat(fileBytes) {\n let numSplats = 0;\n let maxSplats = 0;\n let packedArray = new Uint32Array(0);\n decodeAntiSplat(\n fileBytes,\n (cbNumSplats) => {\n numSplats = cbNumSplats;\n maxSplats = computeMaxSplats(numSplats);\n packedArray = new Uint32Array(maxSplats * 4);\n },\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n setPackedSplat(\n packedArray,\n index,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n }\n );\n return { packedArray, numSplats };\n }\n const KSPLAT_COMPRESSION = {\n 0: {\n bytesPerCenter: 12,\n bytesPerScale: 12,\n bytesPerRotation: 16,\n bytesPerColor: 4,\n bytesPerSphericalHarmonicsComponent: 4,\n scaleOffsetBytes: 12,\n rotationOffsetBytes: 24,\n colorOffsetBytes: 40,\n sphericalHarmonicsOffsetBytes: 44,\n scaleRange: 1\n },\n 1: {\n bytesPerCenter: 6,\n bytesPerScale: 6,\n bytesPerRotation: 8,\n bytesPerColor: 4,\n bytesPerSphericalHarmonicsComponent: 2,\n scaleOffsetBytes: 6,\n rotationOffsetBytes: 12,\n colorOffsetBytes: 20,\n sphericalHarmonicsOffsetBytes: 24,\n scaleRange: 32767\n },\n 2: {\n bytesPerCenter: 6,\n bytesPerScale: 6,\n bytesPerRotation: 8,\n bytesPerColor: 4,\n bytesPerSphericalHarmonicsComponent: 1,\n scaleOffsetBytes: 6,\n rotationOffsetBytes: 12,\n colorOffsetBytes: 20,\n sphericalHarmonicsOffsetBytes: 24,\n scaleRange: 32767\n }\n };\n const KSPLAT_SH_DEGREE_TO_COMPONENTS = {\n 0: 0,\n 1: 9,\n 2: 24,\n 3: 45\n };\n function decodeKsplat(fileBytes, initNumSplats, splatCallback, shCallback) {\n var _a2;\n const HEADER_BYTES = 4096;\n const SECTION_BYTES = 1024;\n let headerOffset = 0;\n const header = new DataView(fileBytes.buffer, headerOffset, HEADER_BYTES);\n headerOffset += HEADER_BYTES;\n const versionMajor = header.getUint8(0);\n const versionMinor = header.getUint8(1);\n if (versionMajor !== 0 || versionMinor < 1) {\n throw new Error(\n `Unsupported .ksplat version: ${versionMajor}.${versionMinor}`\n );\n }\n const maxSectionCount = header.getUint32(4, true);\n header.getUint32(16, true);\n const compressionLevel = header.getUint16(20, true);\n if (compressionLevel < 0 || compressionLevel > 2) {\n throw new Error(`Invalid .ksplat compression level: ${compressionLevel}`);\n }\n header.getFloat32(36, true) || -1.5;\n header.getFloat32(40, true) || 1.5;\n let sectionBase = HEADER_BYTES + maxSectionCount * SECTION_BYTES;\n for (let section = 0; section < maxSectionCount; ++section) {\n const section2 = new DataView(fileBytes.buffer, headerOffset, SECTION_BYTES);\n headerOffset += SECTION_BYTES;\n const sectionSplatCount = section2.getUint32(0, true);\n const sectionMaxSplatCount = section2.getUint32(4, true);\n const bucketSize = section2.getUint32(8, true);\n const bucketCount = section2.getUint32(12, true);\n const bucketBlockSize = section2.getFloat32(16, true);\n const bucketStorageSizeBytes = section2.getUint16(20, true);\n const compressionScaleRange = (section2.getUint32(24, true) || ((_a2 = KSPLAT_COMPRESSION[compressionLevel]) == null ? void 0 : _a2.scaleRange)) ?? 1;\n const partiallyFilledBucketCount = section2.getUint32(36, true);\n const bucketsMetaDataSizeBytes = partiallyFilledBucketCount * 4;\n const bucketsStorageSizeBytes = bucketStorageSizeBytes * bucketCount + bucketsMetaDataSizeBytes;\n const sphericalHarmonicsDegree = section2.getUint16(40, true);\n const shComponents = KSPLAT_SH_DEGREE_TO_COMPONENTS[sphericalHarmonicsDegree];\n const {\n bytesPerCenter,\n bytesPerScale,\n bytesPerRotation,\n bytesPerColor,\n bytesPerSphericalHarmonicsComponent,\n scaleOffsetBytes,\n rotationOffsetBytes,\n colorOffsetBytes,\n sphericalHarmonicsOffsetBytes\n } = KSPLAT_COMPRESSION[compressionLevel];\n const bytesPerSplat = bytesPerCenter + bytesPerScale + bytesPerRotation + bytesPerColor + shComponents * bytesPerSphericalHarmonicsComponent;\n const splatDataStorageSizeBytes = bytesPerSplat * sectionMaxSplatCount;\n const storageSizeBytes = splatDataStorageSizeBytes + bucketsStorageSizeBytes;\n const sh1 = sphericalHarmonicsDegree >= 1 ? new Float32Array(3 * 3) : void 0;\n const sh2 = sphericalHarmonicsDegree >= 2 ? new Float32Array(5 * 3) : void 0;\n const sh3 = sphericalHarmonicsDegree >= 3 ? new Float32Array(7 * 3) : void 0;\n const compressionScaleFactor = bucketBlockSize / 2 / compressionScaleRange;\n const bucketsBase = sectionBase + bucketsMetaDataSizeBytes;\n const dataBase = sectionBase + bucketsStorageSizeBytes;\n const data = new DataView(\n fileBytes.buffer,\n dataBase,\n splatDataStorageSizeBytes\n );\n const bucketArray = new Float32Array(\n fileBytes.buffer,\n bucketsBase,\n bucketCount * 3\n );\n for (let i2 = 0; i2 < sectionSplatCount; ++i2) {\n const splatOffset = i2 * bytesPerSplat;\n const bucketIndex = Math.floor(i2 / bucketSize);\n const x2 = compressionLevel === 0 ? data.getFloat32(splatOffset + 0, true) : (data.getUint16(splatOffset + 0, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 0];\n const y = compressionLevel === 0 ? data.getFloat32(splatOffset + 4, true) : (data.getUint16(splatOffset + 2, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 1];\n const z = compressionLevel === 0 ? data.getFloat32(splatOffset + 8, true) : (data.getUint16(splatOffset + 4, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 2];\n const scaleX = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 0, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 0, true));\n const scaleY = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 4, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 2, true));\n const scaleZ = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 8, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 4, true));\n const quatW = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 0, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 0, true)\n );\n const quatX = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 4, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 2, true)\n );\n const quatY = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 8, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 4, true)\n );\n const quatZ = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 12, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 6, true)\n );\n const r = data.getUint8(splatOffset + colorOffsetBytes + 0) / 255;\n const g = data.getUint8(splatOffset + colorOffsetBytes + 1) / 255;\n const b = data.getUint8(splatOffset + colorOffsetBytes + 2) / 255;\n const opacity = data.getUint8(splatOffset + colorOffsetBytes + 3) / 255;\n splatCallback(\n i2,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n if (sphericalHarmonicsDegree >= 1 && sh1) {\n shCallback == null ? void 0 : shCallback(i2, sh1, sh2, sh3);\n }\n }\n sectionBase += storageSizeBytes;\n }\n }\n function unpackKsplat(fileBytes) {\n var _a2;\n const HEADER_BYTES = 4096;\n const SECTION_BYTES = 1024;\n let headerOffset = 0;\n const header = new DataView(fileBytes.buffer, headerOffset, HEADER_BYTES);\n headerOffset += HEADER_BYTES;\n const versionMajor = header.getUint8(0);\n const versionMinor = header.getUint8(1);\n if (versionMajor !== 0 || versionMinor < 1) {\n throw new Error(\n `Unsupported .ksplat version: ${versionMajor}.${versionMinor}`\n );\n }\n const maxSectionCount = header.getUint32(4, true);\n const splatCount = header.getUint32(16, true);\n const compressionLevel = header.getUint16(20, true);\n if (compressionLevel < 0 || compressionLevel > 2) {\n throw new Error(`Invalid .ksplat compression level: ${compressionLevel}`);\n }\n const minSphericalHarmonicsCoeff = header.getFloat32(36, true) || -1.5;\n const maxSphericalHarmonicsCoeff = header.getFloat32(40, true) || 1.5;\n const numSplats = splatCount;\n const maxSplats = computeMaxSplats(numSplats);\n const packedArray = new Uint32Array(maxSplats * 4);\n const extra = {};\n let sectionBase = HEADER_BYTES + maxSectionCount * SECTION_BYTES;\n for (let section = 0; section < maxSectionCount; ++section) {\n let getSh = function(splatOffset, component) {\n if (compressionLevel === 0) {\n return data.getFloat32(\n splatOffset + sphericalHarmonicsOffsetBytes + component * 4,\n true\n );\n }\n if (compressionLevel === 1) {\n return fromHalf(\n data.getUint16(\n splatOffset + sphericalHarmonicsOffsetBytes + component * 2,\n true\n )\n );\n }\n const t = data.getUint8(splatOffset + sphericalHarmonicsOffsetBytes + component) / 255;\n return minSphericalHarmonicsCoeff + t * (maxSphericalHarmonicsCoeff - minSphericalHarmonicsCoeff);\n };\n const section2 = new DataView(fileBytes.buffer, headerOffset, SECTION_BYTES);\n headerOffset += SECTION_BYTES;\n const sectionSplatCount = section2.getUint32(0, true);\n const sectionMaxSplatCount = section2.getUint32(4, true);\n const bucketSize = section2.getUint32(8, true);\n const bucketCount = section2.getUint32(12, true);\n const bucketBlockSize = section2.getFloat32(16, true);\n const bucketStorageSizeBytes = section2.getUint16(20, true);\n const compressionScaleRange = (section2.getUint32(24, true) || ((_a2 = KSPLAT_COMPRESSION[compressionLevel]) == null ? void 0 : _a2.scaleRange)) ?? 1;\n const partiallyFilledBucketCount = section2.getUint32(36, true);\n const bucketsMetaDataSizeBytes = partiallyFilledBucketCount * 4;\n const bucketsStorageSizeBytes = bucketStorageSizeBytes * bucketCount + bucketsMetaDataSizeBytes;\n const sphericalHarmonicsDegree = section2.getUint16(40, true);\n const shComponents = KSPLAT_SH_DEGREE_TO_COMPONENTS[sphericalHarmonicsDegree];\n const {\n bytesPerCenter,\n bytesPerScale,\n bytesPerRotation,\n bytesPerColor,\n bytesPerSphericalHarmonicsComponent,\n scaleOffsetBytes,\n rotationOffsetBytes,\n colorOffsetBytes,\n sphericalHarmonicsOffsetBytes\n } = KSPLAT_COMPRESSION[compressionLevel];\n const bytesPerSplat = bytesPerCenter + bytesPerScale + bytesPerRotation + bytesPerColor + shComponents * bytesPerSphericalHarmonicsComponent;\n const splatDataStorageSizeBytes = bytesPerSplat * sectionMaxSplatCount;\n const storageSizeBytes = splatDataStorageSizeBytes + bucketsStorageSizeBytes;\n const sh1Index = [0, 3, 6, 1, 4, 7, 2, 5, 8];\n const sh2Index = [\n 9,\n 14,\n 19,\n 10,\n 15,\n 20,\n 11,\n 16,\n 21,\n 12,\n 17,\n 22,\n 13,\n 18,\n 23\n ];\n const sh3Index = [\n 24,\n 31,\n 38,\n 25,\n 32,\n 39,\n 26,\n 33,\n 40,\n 27,\n 34,\n 41,\n 28,\n 35,\n 42,\n 29,\n 36,\n 43,\n 30,\n 37,\n 44\n ];\n const sh1 = sphericalHarmonicsDegree >= 1 ? new Float32Array(3 * 3) : void 0;\n const sh2 = sphericalHarmonicsDegree >= 2 ? new Float32Array(5 * 3) : void 0;\n const sh3 = sphericalHarmonicsDegree >= 3 ? new Float32Array(7 * 3) : void 0;\n const compressionScaleFactor = bucketBlockSize / 2 / compressionScaleRange;\n const bucketsBase = sectionBase + bucketsMetaDataSizeBytes;\n const dataBase = sectionBase + bucketsStorageSizeBytes;\n const data = new DataView(\n fileBytes.buffer,\n dataBase,\n splatDataStorageSizeBytes\n );\n const bucketArray = new Float32Array(\n fileBytes.buffer,\n bucketsBase,\n bucketCount * 3\n );\n for (let i2 = 0; i2 < sectionSplatCount; ++i2) {\n const splatOffset = i2 * bytesPerSplat;\n const bucketIndex = Math.floor(i2 / bucketSize);\n const x2 = compressionLevel === 0 ? data.getFloat32(splatOffset + 0, true) : (data.getUint16(splatOffset + 0, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 0];\n const y = compressionLevel === 0 ? data.getFloat32(splatOffset + 4, true) : (data.getUint16(splatOffset + 2, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 1];\n const z = compressionLevel === 0 ? data.getFloat32(splatOffset + 8, true) : (data.getUint16(splatOffset + 4, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 2];\n const scaleX = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 0, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 0, true));\n const scaleY = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 4, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 2, true));\n const scaleZ = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 8, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 4, true));\n const quatW = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 0, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 0, true)\n );\n const quatX = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 4, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 2, true)\n );\n const quatY = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 8, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 4, true)\n );\n const quatZ = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 12, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 6, true)\n );\n const r = data.getUint8(splatOffset + colorOffsetBytes + 0) / 255;\n const g = data.getUint8(splatOffset + colorOffsetBytes + 1) / 255;\n const b = data.getUint8(splatOffset + colorOffsetBytes + 2) / 255;\n const opacity = data.getUint8(splatOffset + colorOffsetBytes + 3) / 255;\n setPackedSplat(\n packedArray,\n i2,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n if (sphericalHarmonicsDegree >= 1) {\n if (sh1) {\n if (!extra.sh1) {\n extra.sh1 = new Uint32Array(numSplats * 2);\n }\n for (const [i22, key] of sh1Index.entries()) {\n sh1[i22] = getSh(splatOffset, key);\n }\n encodeSh1Rgb(extra.sh1, i2, sh1);\n }\n if (sh2) {\n if (!extra.sh2) {\n extra.sh2 = new Uint32Array(numSplats * 4);\n }\n for (const [i22, key] of sh2Index.entries()) {\n sh2[i22] = getSh(splatOffset, key);\n }\n encodeSh2Rgb(extra.sh2, i2, sh2);\n }\n if (sh3) {\n if (!extra.sh3) {\n extra.sh3 = new Uint32Array(numSplats * 4);\n }\n for (const [i22, key] of sh3Index.entries()) {\n sh3[i22] = getSh(splatOffset, key);\n }\n encodeSh3Rgb(extra.sh3, i2, sh3);\n }\n }\n }\n sectionBase += storageSizeBytes;\n }\n return { packedArray, numSplats, extra };\n }\n const _PlyReader = class _PlyReader {\n // Create a PlyReader from a Uint8Array/ArrayBuffer, no parsing done yet\n constructor({ fileBytes }) {\n this.header = "";\n this.littleEndian = true;\n this.elements = {};\n this.comments = [];\n this.data = null;\n this.numSplats = 0;\n this.fileBytes = fileBytes instanceof ArrayBuffer ? new Uint8Array(fileBytes) : fileBytes;\n }\n // Identify and parse the PLY text header (assumed to be <64KB in size).\n // this.elements will contain all the elements in the file, typically\n // "vertex" contains the Gsplat data.\n async parseHeader() {\n const bufferStream = new ReadableStream({\n start: (controller) => {\n controller.enqueue(this.fileBytes.slice(0, 65536));\n controller.close();\n }\n });\n const decoder = bufferStream.pipeThrough(new TextDecoderStream()).getReader();\n this.header = "";\n const headerTerminator = "end_header\\n";\n while (true) {\n const { value, done } = await decoder.read();\n if (done) {\n throw new Error("Failed to read header");\n }\n this.header += value;\n const endHeader = this.header.indexOf(headerTerminator);\n if (endHeader >= 0) {\n this.header = this.header.slice(0, endHeader + headerTerminator.length);\n break;\n }\n }\n const headerLen = new TextEncoder().encode(this.header).length;\n this.data = new DataView(this.fileBytes.buffer, headerLen);\n this.elements = {};\n let curElement = null;\n this.comments = [];\n this.header.trim().split("\\n").forEach((line, lineIndex) => {\n const trimmedLine = line.trim();\n if (lineIndex === 0) {\n if (trimmedLine !== "ply") {\n throw new Error("Invalid PLY header");\n }\n return;\n }\n if (trimmedLine.length === 0) {\n return;\n }\n const fields = trimmedLine.split(" ");\n switch (fields[0]) {\n case "format":\n if (fields[1] === "binary_little_endian") {\n this.littleEndian = true;\n } else if (fields[1] === "binary_big_endian") {\n this.littleEndian = false;\n } else {\n throw new Error(`Unsupported PLY format: ${fields[1]}`);\n }\n if (fields[2] !== "1.0") {\n throw new Error(`Unsupported PLY version: ${fields[2]}`);\n }\n break;\n case "end_header":\n break;\n case "comment":\n this.comments.push(trimmedLine.slice("comment ".length));\n break;\n case "element": {\n const name = fields[1];\n curElement = {\n name,\n count: Number.parseInt(fields[2]),\n properties: {}\n };\n this.elements[name] = curElement;\n break;\n }\n case "property":\n if (curElement == null) {\n throw new Error("Property must be inside an element");\n }\n if (fields[1] === "list") {\n curElement.properties[fields[4]] = {\n isList: true,\n type: fields[3],\n countType: fields[2]\n };\n } else {\n curElement.properties[fields[2]] = {\n isList: false,\n type: fields[1]\n };\n }\n break;\n }\n });\n if (this.elements.vertex) {\n this.numSplats = this.elements.vertex.count;\n }\n }\n parseData(elementCallback) {\n let offset = 0;\n const data = this.data;\n if (data == null) {\n throw new Error("No data to parse");\n }\n for (const elementName in this.elements) {\n const element = this.elements[elementName];\n const { count, properties } = element;\n const item = {};\n const parsers = [];\n for (const [propertyName, property] of Object.entries(properties)) {\n if (!property.isList) {\n item[propertyName] = 0;\n parsers.push(() => {\n item[propertyName] = PARSE_FIELD[property.type](\n data,\n offset,\n this.littleEndian\n );\n offset += FIELD_BYTES[property.type];\n });\n } else {\n item[propertyName] = [];\n parsers.push(() => {\n const list = item[propertyName];\n list.length = PARSE_FIELD[property.countType](\n data,\n offset,\n this.littleEndian\n );\n offset += FIELD_BYTES[property.countType];\n for (let i2 = 0; i2 < list.length; i2++) {\n list[i2] = PARSE_FIELD[property.type](\n data,\n offset,\n this.littleEndian\n );\n offset += FIELD_BYTES[property.type];\n }\n });\n }\n }\n const callback = elementCallback(element) ?? (() => {\n });\n for (let index = 0; index < count; index++) {\n for (const parser of parsers) {\n parser();\n }\n callback(index, item);\n }\n }\n }\n // Parse all the Gsplat data in the PLY file in go, invoking the given\n // callbacks for each Gsplat.\n parseSplats(splatCallback, shCallback) {\n if (this.elements.vertex == null) {\n throw new Error("No vertex element found");\n }\n let isSuperSplat = false;\n const ssChunks = [];\n let numSh = 0;\n let sh1Props = [];\n let sh2Props = [];\n let sh3Props = [];\n let sh1 = void 0;\n let sh2 = void 0;\n let sh3 = void 0;\n function prepareSh() {\n const num_f_rest = NUM_SH_TO_NUM_F_REST[numSh];\n sh1Props = new Array(3).fill(null).flatMap(\n (_, k) => [0, 1, 2].map((_2, d) => `f_rest_${k + d * num_f_rest / 3}`)\n );\n sh2Props = new Array(5).fill(null).flatMap(\n (_, k) => [0, 1, 2].map((_2, d) => `f_rest_${3 + k + d * num_f_rest / 3}`)\n );\n sh3Props = new Array(7).fill(null).flatMap(\n (_, k) => [0, 1, 2].map((_2, d) => `f_rest_${8 + k + d * num_f_rest / 3}`)\n );\n sh1 = numSh >= 1 ? new Float32Array(3 * 3) : void 0;\n sh2 = numSh >= 2 ? new Float32Array(5 * 3) : void 0;\n sh3 = numSh >= 3 ? new Float32Array(7 * 3) : void 0;\n }\n function ssShCallback(index, item) {\n if (!sh1) {\n throw new Error("Missing sh1");\n }\n for (const [i2, key] of sh1Props.entries()) {\n sh1[i2] = item[key] * 8 / 255 - 4;\n }\n if (sh2) {\n for (const [i2, key] of sh2Props.entries()) {\n sh2[i2] = item[key] * 8 / 255 - 4;\n }\n }\n if (sh3) {\n for (const [i2, key] of sh3Props.entries()) {\n sh3[i2] = item[key] * 8 / 255 - 4;\n }\n }\n shCallback == null ? void 0 : shCallback(index, sh1, sh2, sh3);\n }\n function initSuperSplat(element) {\n const {\n min_x,\n min_y,\n min_z,\n max_x,\n max_y,\n max_z,\n min_scale_x,\n min_scale_y,\n min_scale_z,\n max_scale_x,\n max_scale_y,\n max_scale_z,\n min_r,\n min_g,\n min_b,\n max_r,\n max_g,\n max_b\n } = element.properties;\n if (!min_x || !min_y || !min_z || !max_x || !max_y || !max_z || !min_scale_x || !min_scale_y || !min_scale_z || !max_scale_x || !max_scale_y || !max_scale_z || !min_r || !min_g || !min_b || !max_r || !max_g || !max_b) {\n throw new Error("Missing PLY chunk properties");\n }\n isSuperSplat = true;\n return (index, item) => {\n const {\n min_x: min_x2,\n min_y: min_y2,\n min_z: min_z2,\n max_x: max_x2,\n max_y: max_y2,\n max_z: max_z2,\n min_scale_x: min_scale_x2,\n min_scale_y: min_scale_y2,\n min_scale_z: min_scale_z2,\n max_scale_x: max_scale_x2,\n max_scale_y: max_scale_y2,\n max_scale_z: max_scale_z2,\n min_r: min_r2,\n min_g: min_g2,\n min_b: min_b2,\n max_r: max_r2,\n max_g: max_g2,\n max_b: max_b2\n } = item;\n ssChunks.push({\n min_x: min_x2,\n min_y: min_y2,\n min_z: min_z2,\n max_x: max_x2,\n max_y: max_y2,\n max_z: max_z2,\n min_scale_x: min_scale_x2,\n min_scale_y: min_scale_y2,\n min_scale_z: min_scale_z2,\n max_scale_x: max_scale_x2,\n max_scale_y: max_scale_y2,\n max_scale_z: max_scale_z2,\n min_r: min_r2,\n min_g: min_g2,\n min_b: min_b2,\n max_r: max_r2,\n max_g: max_g2,\n max_b: max_b2\n });\n };\n }\n function decodeSuperSplat(element) {\n if (shCallback && element.name === "sh") {\n numSh = getNumSh(element.properties);\n prepareSh();\n return ssShCallback;\n }\n if (element.name !== "vertex") {\n return null;\n }\n const { packed_position, packed_rotation, packed_scale, packed_color } = element.properties;\n if (!packed_position || !packed_rotation || !packed_scale || !packed_color) {\n throw new Error(\n "Missing PLY properties: packed_position, packed_rotation, packed_scale, packed_color"\n );\n }\n const SQRT2 = Math.sqrt(2);\n return (index, item) => {\n const chunk = ssChunks[index >>> 8];\n if (chunk == null) {\n throw new Error("Missing PLY chunk");\n }\n const {\n min_x,\n min_y,\n min_z,\n max_x,\n max_y,\n max_z,\n min_scale_x,\n min_scale_y,\n min_scale_z,\n max_scale_x,\n max_scale_y,\n max_scale_z,\n min_r,\n min_g,\n min_b,\n max_r,\n max_g,\n max_b\n } = chunk;\n const { packed_position: packed_position2, packed_rotation: packed_rotation2, packed_scale: packed_scale2, packed_color: packed_color2 } = item;\n const x2 = (packed_position2 >>> 21 & 2047) / 2047 * (max_x - min_x) + min_x;\n const y = (packed_position2 >>> 11 & 1023) / 1023 * (max_y - min_y) + min_y;\n const z = (packed_position2 & 2047) / 2047 * (max_z - min_z) + min_z;\n const r0 = ((packed_rotation2 >>> 20 & 1023) / 1023 - 0.5) * SQRT2;\n const r1 = ((packed_rotation2 >>> 10 & 1023) / 1023 - 0.5) * SQRT2;\n const r2 = ((packed_rotation2 & 1023) / 1023 - 0.5) * SQRT2;\n const rr = Math.sqrt(Math.max(0, 1 - r0 * r0 - r1 * r1 - r2 * r2));\n const rOrder = packed_rotation2 >>> 30;\n const quatX = rOrder === 0 ? r0 : rOrder === 1 ? rr : r1;\n const quatY = rOrder <= 1 ? r1 : rOrder === 2 ? rr : r2;\n const quatZ = rOrder <= 2 ? r2 : rr;\n const quatW = rOrder === 0 ? rr : r0;\n const scaleX = Math.exp(\n (packed_scale2 >>> 21 & 2047) / 2047 * (max_scale_x - min_scale_x) + min_scale_x\n );\n const scaleY = Math.exp(\n (packed_scale2 >>> 11 & 1023) / 1023 * (max_scale_y - min_scale_y) + min_scale_y\n );\n const scaleZ = Math.exp(\n (packed_scale2 & 2047) / 2047 * (max_scale_z - min_scale_z) + min_scale_z\n );\n const r = (packed_color2 >>> 24 & 255) / 255 * (max_r - min_r) + min_r;\n const g = (packed_color2 >>> 16 & 255) / 255 * (max_g - min_g) + min_g;\n const b = (packed_color2 >>> 8 & 255) / 255 * (max_b - min_b) + min_b;\n const opacity = (packed_color2 & 255) / 255;\n splatCallback(\n index,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n };\n }\n const elementCallback = (element) => {\n if (element.name === "chunk") {\n if (this.comments.some(\n (comment) => comment.toLowerCase().includes("supersplat")\n )) {\n return initSuperSplat(element);\n }\n }\n if (isSuperSplat) {\n return decodeSuperSplat(element);\n }\n if (element.name !== "vertex") {\n return null;\n }\n const {\n x: x2,\n y,\n z,\n scale_0,\n scale_1,\n scale_2,\n rot_0,\n rot_1,\n rot_2,\n rot_3,\n opacity,\n f_dc_0,\n f_dc_1,\n f_dc_2,\n red,\n green,\n blue,\n alpha\n } = element.properties;\n if (!x2 || !y || !z) {\n throw new Error("Missing PLY properties: x, y, z");\n }\n const hasScales = scale_0 && scale_1 && scale_2;\n const hasRots = rot_0 && rot_1 && rot_2 && rot_3;\n const alphaDiv = alpha != null ? FIELD_SCALE[alpha.type] : 1;\n const redDiv = red != null ? FIELD_SCALE[red.type] : 1;\n const greenDiv = green != null ? FIELD_SCALE[green.type] : 1;\n const blueDiv = blue != null ? FIELD_SCALE[blue.type] : 1;\n numSh = getNumSh(element.properties);\n prepareSh();\n return (index, item) => {\n const scaleX = hasScales ? Math.exp(item.scale_0) : _PlyReader.defaultPointScale;\n const scaleY = hasScales ? Math.exp(item.scale_1) : _PlyReader.defaultPointScale;\n const scaleZ = hasScales ? Math.exp(item.scale_2) : _PlyReader.defaultPointScale;\n const quatX = hasRots ? item.rot_1 : 0;\n const quatY = hasRots ? item.rot_2 : 0;\n const quatZ = hasRots ? item.rot_3 : 0;\n const quatW = hasRots ? item.rot_0 : 1;\n const op = opacity != null ? 1 / (1 + Math.exp(-item.opacity)) : alpha != null ? item.alpha / alphaDiv : 1;\n const r = f_dc_0 != null ? item.f_dc_0 * SH_C0$1 + 0.5 : red != null ? item.red / redDiv : 1;\n const g = f_dc_1 != null ? item.f_dc_1 * SH_C0$1 + 0.5 : green != null ? item.green / greenDiv : 1;\n const b = f_dc_2 != null ? item.f_dc_2 * SH_C0$1 + 0.5 : blue != null ? item.blue / blueDiv : 1;\n splatCallback(\n index,\n item.x,\n item.y,\n item.z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n op,\n r,\n g,\n b\n );\n if (shCallback && sh1) {\n if (sh1) {\n for (const [i2, key] of sh1Props.entries()) {\n sh1[i2] = item[key];\n }\n }\n if (sh2) {\n for (const [i2, key] of sh2Props.entries()) {\n sh2[i2] = item[key];\n }\n }\n if (sh3) {\n for (const [i2, key] of sh3Props.entries()) {\n sh3[i2] = item[key];\n }\n }\n shCallback(index, sh1, sh2, sh3);\n }\n };\n };\n this.parseData(elementCallback);\n }\n // Inject RGBA values into original PLY file, which can be used to modify\n // the color/opacity of the Gsplats and write out the modified PLY file.\n injectRgba(rgba) {\n let offset = 0;\n const data = this.data;\n if (data == null) {\n throw new Error("No parsed data");\n }\n if (rgba.length !== this.numSplats * 4) {\n throw new Error("Invalid RGBA array length");\n }\n for (const elementName in this.elements) {\n const element = this.elements[elementName];\n const { count, properties } = element;\n const parsers = [];\n let rgbaOffset = 0;\n const isVertex = elementName === "vertex";\n if (isVertex) {\n for (const name of ["opacity", "f_dc_0", "f_dc_1", "f_dc_2"]) {\n if (!properties[name] || properties[name].type !== "float") {\n throw new Error(`Can\'t injectRgba due to property: ${name}`);\n }\n }\n }\n for (const [propertyName, property] of Object.entries(properties)) {\n if (!property.isList) {\n if (isVertex) {\n if (propertyName === "f_dc_0" || propertyName === "f_dc_1" || propertyName === "f_dc_2") {\n const component = Number.parseInt(\n propertyName.slice("f_dc_".length)\n );\n parsers.push(() => {\n const value = (rgba[rgbaOffset + component] / 255 - 0.5) / SH_C0$1;\n SET_FIELD[property.type](\n data,\n offset,\n this.littleEndian,\n value\n );\n });\n } else if (propertyName === "opacity") {\n parsers.push(() => {\n const value = Math.max(\n -100,\n Math.min(\n 100,\n -Math.log(1 / (rgba[rgbaOffset + 3] / 255) - 1)\n )\n );\n SET_FIELD[property.type](\n data,\n offset,\n this.littleEndian,\n value\n );\n });\n }\n }\n parsers.push(() => {\n offset += FIELD_BYTES[property.type];\n });\n } else {\n parsers.push(() => {\n const length = PARSE_FIELD[property.countType](\n data,\n offset,\n this.littleEndian\n );\n offset += FIELD_BYTES[property.countType];\n offset += length * FIELD_BYTES[property.type];\n });\n }\n }\n for (let index = 0; index < count; index++) {\n for (const parser of parsers) {\n parser();\n }\n if (isVertex) {\n rgbaOffset += 4;\n }\n }\n }\n }\n };\n _PlyReader.defaultPointScale = 1e-3;\n let PlyReader = _PlyReader;\n const SH_C0$1 = 0.28209479177387814;\n const PARSE_FIELD = {\n char: (data, offset, littleEndian) => {\n return data.getInt8(offset);\n },\n uchar: (data, offset, littleEndian) => {\n return data.getUint8(offset);\n },\n short: (data, offset, littleEndian) => {\n return data.getInt16(offset, littleEndian);\n },\n ushort: (data, offset, littleEndian) => {\n return data.getUint16(offset, littleEndian);\n },\n int: (data, offset, littleEndian) => {\n return data.getInt32(offset, littleEndian);\n },\n uint: (data, offset, littleEndian) => {\n return data.getUint32(offset, littleEndian);\n },\n float: (data, offset, littleEndian) => {\n return data.getFloat32(offset, littleEndian);\n },\n double: (data, offset, littleEndian) => {\n return data.getFloat64(offset, littleEndian);\n }\n };\n const SET_FIELD = {\n char: (data, offset, littleEndian, value) => {\n data.setInt8(offset, value);\n },\n uchar: (data, offset, littleEndian, value) => {\n data.setUint8(offset, value);\n },\n short: (data, offset, littleEndian, value) => {\n data.setInt16(offset, value, littleEndian);\n },\n ushort: (data, offset, littleEndian, value) => {\n data.setUint16(offset, value, littleEndian);\n },\n int: (data, offset, littleEndian, value) => {\n data.setInt32(offset, value, littleEndian);\n },\n uint: (data, offset, littleEndian, value) => {\n data.setUint32(offset, value, littleEndian);\n },\n float: (data, offset, littleEndian, value) => {\n data.setFloat32(offset, value, littleEndian);\n },\n double: (data, offset, littleEndian, value) => {\n data.setFloat64(offset, value, littleEndian);\n }\n };\n const FIELD_BYTES = {\n char: 1,\n uchar: 1,\n short: 2,\n ushort: 2,\n int: 4,\n uint: 4,\n float: 4,\n double: 8\n };\n const FIELD_SCALE = {\n char: 127,\n uchar: 255,\n short: 32767,\n ushort: 65535,\n int: 2147483647,\n uint: 4294967295,\n float: 1,\n double: 1\n };\n const NUM_F_REST_TO_NUM_SH = {\n 0: 0,\n 9: 1,\n 24: 2,\n 45: 3\n };\n const NUM_SH_TO_NUM_F_REST = {\n 0: 0,\n 1: 9,\n 2: 24,\n 3: 45\n };\n function getNumSh(properties) {\n let num_f_rest = 0;\n while (properties[`f_rest_${num_f_rest}`]) {\n num_f_rest += 1;\n }\n const numSh = NUM_F_REST_TO_NUM_SH[num_f_rest];\n if (numSh == null) {\n throw new Error(`Unsupported number of SH coefficients: ${num_f_rest}`);\n }\n return numSh;\n }\n const Gsplat = { type: "Gsplat" };\n const TPackedSplats = { type: "PackedSplats" };\n const readPackedSplat = (packedSplats, index) => new ReadPackedSplat({ packedSplats, index });\n const readPackedSplatRange = (packedSplats, index, base, count) => new ReadPackedSplatRange({ packedSplats, index, base, count });\n const splitGsplat = (gsplat) => new SplitGsplat({ gsplat });\n const combineGsplat = ({\n gsplat,\n flags,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n }) => {\n return new CombineGsplat({\n gsplat,\n flags,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n });\n };\n const transformGsplat = (gsplat, {\n scale,\n rotate,\n translate,\n recolor\n }) => {\n return new TransformGsplat({ gsplat, scale, rotate, translate, recolor });\n };\n const defineGsplat = unindent(`\n struct Gsplat {\n vec3 center;\n uint flags;\n vec3 scales;\n int index;\n vec4 quaternion;\n vec4 rgba;\n };\n const uint GSPLAT_FLAG_ACTIVE = 1u << 0u;\n\n bool isGsplatActive(uint flags) {\n return (flags & GSPLAT_FLAG_ACTIVE) != 0u;\n }\n`);\n const definePackedSplats = unindent(`\n struct PackedSplats {\n usampler2DArray texture;\n int numSplats;\n };\n`);\n const defineReadPackedSplat = unindent(`\n bool readPackedSplat(usampler2DArray texture, int numSplats, int index, out Gsplat gsplat) {\n if ((index >= 0) && (index < numSplats)) {\n uvec4 packed = texelFetch(texture, splatTexCoord(index), 0);\n unpackSplat(packed, gsplat.center, gsplat.scales, gsplat.quaternion, gsplat.rgba);\n return true;\n } else {\n return false;\n }\n }\n`);\n class ReadPackedSplat extends Dyno {\n constructor({\n packedSplats,\n index\n }) {\n super({\n inTypes: { packedSplats: TPackedSplats, index: "int" },\n outTypes: { gsplat: Gsplat },\n inputs: { packedSplats, index },\n globals: () => [defineGsplat, definePackedSplats, defineReadPackedSplat],\n statements: ({ inputs, outputs }) => {\n const { gsplat } = outputs;\n if (!gsplat) {\n return [];\n }\n const { packedSplats: packedSplats2, index: index2 } = inputs;\n let statements;\n if (packedSplats2 && index2) {\n statements = unindentLines(`\n if (readPackedSplat(${packedSplats2}.texture, ${packedSplats2}.numSplats, ${index2}, ${gsplat})) {\n bool zeroSize = all(equal(${gsplat}.scales, vec3(0.0, 0.0, 0.0)));\n ${gsplat}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;\n } else {\n ${gsplat}.flags = 0u;\n }\n `);\n } else {\n statements = [`${gsplat}.flags = 0u;`];\n }\n statements.push(`${gsplat}.index = ${index2 ?? "0"};`);\n return statements;\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "gsplat");\n }\n }\n class ReadPackedSplatRange extends Dyno {\n constructor({\n packedSplats,\n index,\n base,\n count\n }) {\n super({\n inTypes: {\n packedSplats: TPackedSplats,\n index: "int",\n base: "int",\n count: "int"\n },\n outTypes: { gsplat: Gsplat },\n inputs: { packedSplats, index, base, count },\n globals: () => [defineGsplat, definePackedSplats, defineReadPackedSplat],\n statements: ({ inputs, outputs }) => {\n const { gsplat } = outputs;\n if (!gsplat) {\n return [];\n }\n const { packedSplats: packedSplats2, index: index2, base: base2, count: count2 } = inputs;\n let statements;\n if (packedSplats2 && index2 && base2 && count2) {\n statements = unindentLines(`\n ${gsplat}.flags = 0u;\n if ((${index2} >= ${base2}) && (${index2} < (${base2} + ${count2}))) {\n if (readPackedSplat(${packedSplats2}.texture, ${packedSplats2}.numSplats, ${index2}, ${gsplat})) {\n bool zeroSize = all(equal(${gsplat}.scales, vec3(0.0, 0.0, 0.0)));\n ${gsplat}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;\n }\n }\n `);\n } else {\n statements = [`${gsplat}.flags = 0u;`];\n }\n statements.push(`${gsplat}.index = ${index2 ?? "0"};`);\n return statements;\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "gsplat");\n }\n }\n class SplitGsplat extends Dyno {\n constructor({ gsplat }) {\n super({\n inTypes: { gsplat: Gsplat },\n outTypes: {\n flags: "uint",\n active: "bool",\n index: "int",\n center: "vec3",\n scales: "vec3",\n quaternion: "vec4",\n rgba: "vec4",\n rgb: "vec3",\n opacity: "float",\n x: "float",\n y: "float",\n z: "float",\n r: "float",\n g: "float",\n b: "float"\n },\n inputs: { gsplat },\n globals: () => [defineGsplat],\n statements: ({ inputs, outputs }) => {\n const { gsplat: gsplat2 } = inputs;\n const {\n flags,\n active,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n } = outputs;\n return [\n !flags ? null : `${flags} = ${gsplat2 ? `${gsplat2}.flags` : "0u"};`,\n !active ? null : `${active} = isGsplatActive(${gsplat2 ? `${gsplat2}.flags` : "0u"});`,\n !index ? null : `${index} = ${gsplat2 ? `${gsplat2}.index` : "0"};`,\n !center ? null : `${center} = ${gsplat2 ? `${gsplat2}.center` : "vec3(0.0, 0.0, 0.0)"};`,\n !scales ? null : `${scales} = ${gsplat2 ? `${gsplat2}.scales` : "vec3(0.0, 0.0, 0.0)"};`,\n !quaternion ? null : `${quaternion} = ${gsplat2 ? `${gsplat2}.quaternion` : "vec4(0.0, 0.0, 0.0, 1.0)"};`,\n !rgba ? null : `${rgba} = ${gsplat2 ? `${gsplat2}.rgba` : "vec4(0.0, 0.0, 0.0, 0.0)"};`,\n !rgb ? null : `${rgb} = ${gsplat2 ? `${gsplat2}.rgba.rgb` : "vec3(0.0, 0.0, 0.0)"};`,\n !opacity ? null : `${opacity} = ${gsplat2 ? `${gsplat2}.rgba.a` : "0.0"};`,\n !x2 ? null : `${x2} = ${gsplat2 ? `${gsplat2}.center.x` : "0.0"};`,\n !y ? null : `${y} = ${gsplat2 ? `${gsplat2}.center.y` : "0.0"};`,\n !z ? null : `${z} = ${gsplat2 ? `${gsplat2}.center.z` : "0.0"};`,\n !r ? null : `${r} = ${gsplat2 ? `${gsplat2}.rgba.r` : "0.0"};`,\n !g ? null : `${g} = ${gsplat2 ? `${gsplat2}.rgba.g` : "0.0"};`,\n !b ? null : `${b} = ${gsplat2 ? `${gsplat2}.rgba.b` : "0.0"};`\n ].filter(Boolean);\n }\n });\n }\n }\n class CombineGsplat extends Dyno {\n constructor({\n gsplat,\n flags,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n }) {\n super({\n inTypes: {\n gsplat: Gsplat,\n flags: "uint",\n index: "int",\n center: "vec3",\n scales: "vec3",\n quaternion: "vec4",\n rgba: "vec4",\n rgb: "vec3",\n opacity: "float",\n x: "float",\n y: "float",\n z: "float",\n r: "float",\n g: "float",\n b: "float"\n },\n outTypes: { gsplat: Gsplat },\n inputs: {\n gsplat,\n flags,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n },\n globals: () => [defineGsplat],\n statements: ({ inputs, outputs }) => {\n const { gsplat: outGsplat } = outputs;\n if (!outGsplat) {\n return [];\n }\n const {\n gsplat: gsplat2,\n flags: flags2,\n index: index2,\n center: center2,\n scales: scales2,\n quaternion: quaternion2,\n rgba: rgba2,\n rgb: rgb2,\n opacity: opacity2,\n x: x22,\n y: y2,\n z: z2,\n r: r2,\n g: g2,\n b: b2\n } = inputs;\n return [\n `${outGsplat}.flags = ${flags2 ?? (gsplat2 ? `${gsplat2}.flags` : "0u")};`,\n `${outGsplat}.index = ${index2 ?? (gsplat2 ? `${gsplat2}.index` : "0")};`,\n `${outGsplat}.center = ${center2 ?? (gsplat2 ? `${gsplat2}.center` : "vec3(0.0, 0.0, 0.0)")};`,\n `${outGsplat}.scales = ${scales2 ?? (gsplat2 ? `${gsplat2}.scales` : "vec3(0.0, 0.0, 0.0)")};`,\n `${outGsplat}.quaternion = ${quaternion2 ?? (gsplat2 ? `${gsplat2}.quaternion` : "vec4(0.0, 0.0, 0.0, 1.0)")};`,\n `${outGsplat}.rgba = ${rgba2 ?? (gsplat2 ? `${gsplat2}.rgba` : "vec4(0.0, 0.0, 0.0, 0.0)")};`,\n !rgb2 ? null : `${outGsplat}.rgba.rgb = ${rgb2};`,\n !opacity2 ? null : `${outGsplat}.rgba.a = ${opacity2};`,\n !x22 ? null : `${outGsplat}.center.x = ${x22};`,\n !y2 ? null : `${outGsplat}.center.y = ${y2};`,\n !z2 ? null : `${outGsplat}.center.z = ${z2};`,\n !r2 ? null : `${outGsplat}.rgba.r = ${r2};`,\n !g2 ? null : `${outGsplat}.rgba.g = ${g2};`,\n !b2 ? null : `${outGsplat}.rgba.b = ${b2};`\n ].filter(Boolean);\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "gsplat");\n }\n }\n unindent(`\n vec3 gsplatNormal(vec3 scales, vec4 quaternion) {\n float minScale = min(scales.x, min(scales.y, scales.z));\n vec3 normal;\n if (scales.z == minScale) {\n normal = vec3(0.0, 0.0, 1.0);\n } else if (scales.y == minScale) {\n normal = vec3(0.0, 1.0, 0.0);\n } else {\n normal = vec3(1.0, 0.0, 0.0);\n }\n return quatVec(quaternion, normal);\n }\n`);\n class TransformGsplat extends Dyno {\n constructor({\n gsplat,\n scale,\n rotate,\n translate,\n recolor\n }) {\n super({\n inTypes: {\n gsplat: Gsplat,\n scale: "float",\n rotate: "vec4",\n translate: "vec3",\n recolor: "vec4"\n },\n outTypes: { gsplat: Gsplat },\n inputs: { gsplat, scale, rotate, translate, recolor },\n globals: () => [defineGsplat],\n statements: ({ inputs, outputs, compile }) => {\n const { gsplat: gsplat2 } = outputs;\n if (!gsplat2 || !inputs.gsplat) {\n return [];\n }\n const { scale: scale2, rotate: rotate2, translate: translate2, recolor: recolor2 } = inputs;\n const indent = compile.indent;\n const statements = [\n `${gsplat2} = ${inputs.gsplat};`,\n `if (isGsplatActive(${gsplat2}.flags)) {`,\n scale2 ? `${indent}${gsplat2}.center *= ${scale2};` : null,\n rotate2 ? `${indent}${gsplat2}.center = quatVec(${rotate2}, ${gsplat2}.center);` : null,\n translate2 ? `${indent}${gsplat2}.center += ${translate2};` : null,\n scale2 ? `${indent}${gsplat2}.scales *= ${scale2};` : null,\n rotate2 ? `${indent}${gsplat2}.quaternion = quatQuat(${rotate2}, ${gsplat2}.quaternion);` : null,\n recolor2 ? `${indent}${gsplat2}.rgba *= ${recolor2};` : null,\n "}"\n ].filter(Boolean);\n return statements;\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "gsplat");\n }\n }\n const outputPackedSplat = (gsplat) => new OutputPackedSplat({ gsplat });\n class OutputPackedSplat extends Dyno {\n constructor({ gsplat }) {\n super({\n inTypes: { gsplat: Gsplat },\n inputs: { gsplat },\n globals: () => [defineGsplat],\n statements: ({ inputs, outputs }) => {\n const { output } = outputs;\n if (!output) {\n return [];\n }\n const { gsplat: gsplat2 } = inputs;\n if (gsplat2) {\n return unindentLines(`\n if (isGsplatActive(${gsplat2}.flags)) {\n ${output} = packSplat(${gsplat2}.center, ${gsplat2}.scales, ${gsplat2}.quaternion, ${gsplat2}.rgba);\n } else {\n ${output} = uvec4(0u, 0u, 0u, 0u);\n }\n `);\n }\n return [`${output} = uvec4(0u, 0u, 0u, 0u);`];\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "output");\n }\n }\n class OutputRgba8 extends Dyno {\n constructor({ rgba8 }) {\n super({\n inTypes: { rgba8: "vec4" },\n inputs: { rgba8 },\n statements: ({ inputs, outputs }) => [\n `target = ${inputs.rgba8 ?? "vec4(0.0, 0.0, 0.0, 0.0)"};`\n ]\n });\n }\n dynoOut() {\n return new DynoOutput(this, "rgba8");\n }\n }\n class DynoUniform extends Dyno {\n constructor({\n key,\n type,\n count,\n value,\n update,\n globals\n }) {\n key = key ?? "value";\n super({\n outTypes: { [key]: type },\n update: () => {\n if (update) {\n const value2 = update(this.value);\n if (value2 !== void 0) {\n this.value = value2;\n }\n }\n this.uniform.value = this.value;\n },\n generate: ({ inputs, outputs }) => {\n const allGlobals = (globals == null ? void 0 : globals({ inputs, outputs })) ?? [];\n const uniforms = {};\n const name = outputs[key];\n if (name) {\n allGlobals.push(`uniform ${dynoDeclare(name, type, count)};`);\n uniforms[name] = this.uniform;\n }\n return { globals: allGlobals, uniforms };\n }\n });\n this.type = type;\n this.count = count;\n this.value = value;\n this.uniform = { value };\n this.outKey = key;\n }\n dynoOut() {\n return new DynoOutput(this, this.outKey);\n }\n }\n class DynoInt extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "int", value, update });\n }\n }\n class DynoFloat extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "float", value, update });\n }\n }\n class DynoVec3 extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "vec3", value, update });\n }\n }\n class DynoVec4 extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "vec4", value, update });\n }\n }\n class DynoUsampler2DArray extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "usampler2DArray", value, update });\n }\n }\n class DynoProgram {\n constructor({\n graph,\n inputs,\n outputs,\n template\n }) {\n this.graph = graph;\n this.template = template;\n this.inputs = inputs ?? {};\n this.outputs = outputs ?? {};\n const compile = new Compilation({ indent: this.template.indent });\n for (const key in this.outputs) {\n if (this.outputs[key]) {\n compile.declares.add(this.outputs[key]);\n }\n }\n const statements = graph.compile({\n inputs: this.inputs,\n outputs: this.outputs,\n compile\n });\n this.shader = template.generate({ globals: compile.globals, statements });\n this.uniforms = compile.uniforms;\n this.updaters = compile.updaters;\n }\n prepareMaterial() {\n return getMaterial(this);\n }\n update() {\n for (const updater of this.updaters) {\n updater();\n }\n }\n }\n class DynoProgramTemplate {\n constructor(template) {\n const globals = template.match(/^([ \\t]*)\\{\\{\\s*GLOBALS\\s*\\}\\}/m);\n const statements = template.match(/^([ \\t]*)\\{\\{\\s*STATEMENTS\\s*\\}\\}/m);\n if (!globals || !statements) {\n throw new Error(\n "Template must contain {{ GLOBALS }} and {{ STATEMENTS }}"\n );\n }\n this.before = template.substring(0, globals.index);\n this.between = template.substring(\n globals.index + globals[0].length,\n statements.index\n );\n this.after = template.substring(\n statements.index + statements[0].length\n );\n this.indent = statements[1];\n }\n generate({\n globals,\n statements\n }) {\n return this.before + Array.from(globals).join("\\n\\n") + this.between + statements.map((s) => this.indent + s).join("\\n") + this.after;\n }\n }\n const programMaterial = /* @__PURE__ */ new Map();\n function getMaterial(program) {\n let material = programMaterial.get(program);\n if (material) {\n return material;\n }\n material = new RawShaderMaterial({\n glslVersion: GLSL3,\n vertexShader: IDENT_VERTEX_SHADER,\n fragmentShader: program.shader,\n uniforms: program.uniforms\n });\n programMaterial.set(program, material);\n return material;\n }\n function addOutputType(a, b, operation = "add") {\n const error = () => {\n throw new Error(`Invalid ${operation} types: ${a}, ${b}`);\n };\n if (a === b) return a;\n if (a === "int") {\n if (isIntType(b)) return b;\n error();\n }\n if (b === "int") {\n if (isIntType(a)) return a;\n error();\n }\n if (a === "uint") {\n if (isUintType(b)) return b;\n error();\n }\n if (b === "uint") {\n if (isUintType(a)) return a;\n error();\n }\n if (a === "float") {\n if (isAllFloatType(b)) return b;\n error();\n }\n if (b === "float") {\n if (isAllFloatType(a)) return a;\n error();\n }\n throw new Error(`Invalid ${operation} types: ${a}, ${b}`);\n }\n function subOutputType(a, b) {\n return addOutputType(a, b, "sub");\n }\n function mulOutputType(a, b) {\n const error = () => {\n throw new Error(`Invalid mul types: ${a}, ${b}`);\n };\n const result = (value) => value;\n if (a === "int") {\n if (isIntType(b)) return result(b);\n error();\n }\n if (b === "int") {\n if (isIntType(a)) return result(a);\n error();\n }\n if (a === "uint") {\n if (isUintType(b)) return result(b);\n error();\n }\n if (b === "uint") {\n if (isUintType(a)) return result(a);\n error();\n }\n if (a === "float") {\n if (isAllFloatType(b)) return result(b);\n error();\n }\n if (b === "float") {\n if (isAllFloatType(a)) return result(a);\n error();\n }\n if (isIntType(a) || isUintType(a) || isIntType(b) || isUintType(b)) {\n if (a === b) return result(a);\n error();\n }\n if (a === "vec2") {\n if (b === "vec2" || isMat2(b)) return result("vec2");\n if (b === "mat3x2") return result("vec3");\n if (b === "mat4x2") return result("vec4");\n error();\n }\n if (a === "vec3") {\n if (b === "mat2x3") return result("vec2");\n if (b === "vec3" || isMat3(b)) return result("vec3");\n if (b === "mat4x3") return result("vec4");\n error();\n }\n if (a === "vec4") {\n if (b === "mat2x4") return result("vec2");\n if (b === "mat3x4") return result("vec3");\n if (b === "vec4" || isMat4(b)) return result("vec4");\n error();\n }\n if (b === "vec2") {\n if (isMat2(a)) return result("vec2");\n if (a === "mat2x3") return result("vec3");\n if (a === "mat2x4") return result("vec4");\n error();\n }\n if (b === "vec3") {\n if (a === "mat3x2") return result("vec2");\n if (isMat3(a)) return result("vec3");\n if (a === "mat3x4") return result("vec4");\n error();\n }\n if (b === "vec4") {\n if (a === "mat4x2") return result("vec2");\n if (a === "mat4x3") return result("vec3");\n if (isMat4(a)) return result("vec4");\n error();\n }\n if (isMat2(a)) {\n if (isMat2(b)) return result("mat2");\n if (b === "mat3x2") return result("mat3x2");\n if (b === "mat4x2") return result("mat4x2");\n error();\n }\n if (a === "mat2x3") {\n if (isMat2(b)) return result("mat2x3");\n if (b === "mat3x2") return result("mat3");\n if (b === "mat4x2") return result("mat4x3");\n error();\n }\n if (a === "mat2x4") {\n if (isMat2(b)) return result("mat2x4");\n if (b === "mat3x2") return result("mat3x4");\n if (b === "mat4x2") return result("mat4");\n error();\n }\n if (a === "mat3x2") {\n if (b === "mat2x3") return result("mat2");\n if (isMat3(b)) return result("mat3x2");\n if (b === "mat4x3") return result("mat4x2");\n error();\n }\n if (isMat3(a)) {\n if (b === "mat2x3") return result("mat2x3");\n if (isMat3(b)) return result("mat3");\n if (b === "mat4x3") return result("mat4x3");\n error();\n }\n if (a === "mat3x4") {\n if (b === "mat2x3") return result("mat2x4");\n if (isMat3(b)) return result("mat3x4");\n if (b === "mat4x3") return result("mat4");\n error();\n }\n if (a === "mat4x2") {\n if (b === "mat2x4") return result("mat2");\n if (b === "mat3x4") return result("mat3x2");\n if (isMat4(b)) return result("mat4x2");\n error();\n }\n if (a === "mat4x3") {\n if (b === "mat2x4") return result("mat2x3");\n if (b === "mat3x4") return result("mat3");\n if (isMat4(b)) return result("mat4x3");\n error();\n }\n if (isMat4(a)) {\n if (b === "mat2x4") return result("mat2x4");\n if (b === "mat3x4") return result("mat3x4");\n if (isMat4(b)) return result("mat4");\n error();\n }\n throw new Error(`Invalid mul types: ${a}, ${b}`);\n }\n const add = (a, b) => new Add({ a, b });\n const sub = (a, b) => new Sub({ a, b });\n const mul = (a, b) => new Mul({ a, b });\n class Add extends BinaryOp {\n constructor({ a, b }) {\n super({ a, b, outKey: "sum", outTypeFunc: addOutputType });\n this.statements = ({ inputs, outputs }) => {\n return [`${outputs.sum} = ${inputs.a} + ${inputs.b};`];\n };\n }\n }\n class Sub extends BinaryOp {\n constructor({ a, b }) {\n super({ a, b, outKey: "difference", outTypeFunc: subOutputType });\n this.statements = ({ inputs, outputs }) => {\n return [`${outputs.difference} = ${inputs.a} - ${inputs.b};`];\n };\n }\n }\n class Mul extends BinaryOp {\n constructor({ a, b }) {\n super({ a, b, outKey: "product", outTypeFunc: mulOutputType });\n this.statements = ({ inputs, outputs }) => {\n return [`${outputs.product} = ${inputs.a} * ${inputs.b};`];\n };\n }\n }\n const normalize = (a) => new Normalize({ a });\n const extendVec = (a, b) => new ExtendVec({ a, b });\n class Normalize extends UnaryOp {\n constructor({ a }) {\n super({ a, outTypeFunc: (aType) => aType, outKey: "normalize" });\n this.statements = ({ inputs, outputs }) => [\n `${outputs.normalize} = normalize(${inputs.a});`\n ];\n }\n }\n function extendVecOutputType(type) {\n if (type === "float") return "vec2";\n if (type === "vec2") return "vec3";\n if (type === "vec3") return "vec4";\n throw new Error("Invalid type");\n }\n class ExtendVec extends BinaryOp {\n constructor({ a, b }) {\n const type = valType(a);\n const outType = extendVecOutputType(type);\n super({ a, b, outKey: "extend", outTypeFunc: () => outType });\n this.statements = ({ inputs, outputs }) => [\n `${outputs.extend} = ${outType}(${inputs.a}, ${inputs.b});`\n ];\n }\n }\n const transformPos = (position, {\n scale,\n scales,\n rotate,\n translate\n }) => {\n return new TransformPosition({ position, scale, scales, rotate, translate }).outputs.position;\n };\n const transformDir = (dir, {\n scale,\n scales,\n rotate\n }) => {\n return new TransformDir({ dir, scale, scales, rotate }).outputs.dir;\n };\n class TransformPosition extends Dyno {\n constructor({\n position,\n scale,\n scales,\n rotate,\n translate\n }) {\n super({\n inTypes: {\n position: "vec3",\n scale: "float",\n scales: "vec3",\n rotate: "vec4",\n translate: "vec3"\n },\n outTypes: { position: "vec3" },\n inputs: { position, scale, scales, rotate, translate },\n statements: ({ inputs, outputs }) => {\n const { position: position2 } = outputs;\n if (!position2) {\n return [];\n }\n const { scale: scale2, scales: scales2, rotate: rotate2, translate: translate2 } = inputs;\n return [\n `${position2} = ${inputs.position ?? "vec3(0.0, 0.0, 0.0)"};`,\n !scale2 ? null : `${position2} *= ${scale2};`,\n !scales2 ? null : `${position2} *= ${scales2};`,\n !rotate2 ? null : `${position2} = quatVec(${rotate2}, ${position2});`,\n !translate2 ? null : `${position2} += ${translate2};`\n ].filter(Boolean);\n }\n });\n }\n }\n class TransformDir extends Dyno {\n constructor({\n dir,\n scale,\n scales,\n rotate\n }) {\n super({\n inTypes: { dir: "vec3", scale: "float", scales: "vec3", rotate: "vec4" },\n outTypes: { dir: "vec3" },\n inputs: { dir, scale, scales, rotate },\n statements: ({ inputs, outputs }) => {\n const { dir: dir2 } = outputs;\n if (!dir2) {\n return [];\n }\n const { scale: scale2, scales: scales2, rotate: rotate2 } = inputs;\n return [\n `${dir2} = ${inputs.dir ?? "vec3(0.0, 0.0, 0.0)"};`,\n !scale2 ? null : `${dir2} *= ${scale2};`,\n !scales2 ? null : `${dir2} *= ${scales2};`,\n !rotate2 ? null : `${dir2} = quatVec(${rotate2}, ${dir2});`\n ].filter(Boolean);\n }\n });\n }\n }\n var computeUvec4_default = "precision highp float;\\nprecision highp int;\\nprecision highp sampler2D;\\nprecision highp usampler2D;\\nprecision highp isampler2D;\\nprecision highp sampler2DArray;\\nprecision highp usampler2DArray;\\nprecision highp isampler2DArray;\\nprecision highp sampler3D;\\nprecision highp usampler3D;\\nprecision highp isampler3D;\\n\\n#include \\n\\nuniform uint targetLayer;\\nuniform int targetBase;\\nuniform int targetCount;\\n\\nout uvec4 target;\\n\\n{{ GLOBALS }}\\n\\nvoid produceSplat(int index) {\\n {{ STATEMENTS }}\\n}\\n\\nvoid main() {\\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\\n int index = targetIndex - targetBase;\\n\\n if ((index >= 0) && (index < targetCount)) {\\n produceSplat(index);\\n } else {\\n target = uvec4(0u, 0u, 0u, 0u);\\n }\\n}";\n const _PackedSplats = class _PackedSplats {\n constructor(options = {}) {\n this.maxSplats = 0;\n this.numSplats = 0;\n this.packedArray = null;\n this.isInitialized = false;\n this.target = null;\n this.source = null;\n this.needsUpdate = true;\n this.extra = {};\n this.dyno = new DynoPackedSplats({ packedSplats: this });\n this.initialized = Promise.resolve(this);\n this.reinitialize(options);\n }\n reinitialize(options) {\n this.isInitialized = false;\n if (options.url || options.fileBytes || options.construct) {\n this.initialized = this.asyncInitialize(options).then(() => {\n this.isInitialized = true;\n return this;\n });\n } else {\n this.initialize(options);\n this.isInitialized = true;\n this.initialized = Promise.resolve(this);\n }\n }\n initialize(options) {\n if (options.packedArray) {\n this.packedArray = options.packedArray;\n this.maxSplats = Math.floor(this.packedArray.length / 4);\n this.maxSplats = Math.floor(this.maxSplats / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n this.numSplats = Math.min(\n this.maxSplats,\n options.numSplats ?? Number.POSITIVE_INFINITY\n );\n } else {\n this.maxSplats = options.maxSplats ?? 0;\n this.numSplats = 0;\n }\n this.extra = options.extra ?? {};\n }\n async asyncInitialize(options) {\n let { url, fileBytes, construct } = options;\n if (url) {\n fileBytes = await fetch(url).then(async (response) => {\n if (!response.ok) {\n throw new Error(\n `${response.status} "${response.statusText}" fetching URL: ${url}`\n );\n }\n const arrayBuffer = await response.arrayBuffer();\n return arrayBuffer;\n });\n }\n if (fileBytes) {\n const unpacked = await unpackSplats({\n input: fileBytes,\n fileType: options.fileType,\n pathOrUrl: options.fileName ?? url\n });\n this.initialize(unpacked);\n }\n if (construct) {\n const maybePromise = construct(this);\n if (maybePromise instanceof Promise) {\n await maybePromise;\n }\n }\n }\n // Call this when you are finished with the PackedSplats and want to free\n // any buffers it holds.\n dispose() {\n if (this.target) {\n this.target.dispose();\n this.target = null;\n }\n if (this.source) {\n this.source.dispose();\n this.source = null;\n }\n }\n // Ensures that this.packedArray can fit numSplats Gsplats. If it\'s too small,\n // resize exponentially and copy over the original data.\n //\n // Typically you don\'t need to call this, because calling this.setSplat(index, ...)\n // and this.pushSplat(...) will automatically call ensureSplats() so we have\n // enough splats.\n ensureSplats(numSplats) {\n const targetSize = numSplats <= this.maxSplats ? this.maxSplats : (\n // Grow exponentially to avoid frequent reallocations\n Math.max(numSplats, 2 * this.maxSplats)\n );\n const currentSize = !this.packedArray ? 0 : this.packedArray.length / 4;\n if (!this.packedArray || targetSize > currentSize) {\n this.maxSplats = getTextureSize(targetSize).maxSplats;\n const newArray = new Uint32Array(this.maxSplats * 4);\n if (this.packedArray) {\n newArray.set(this.packedArray);\n }\n this.packedArray = newArray;\n }\n return this.packedArray;\n }\n // Ensure the extra array for the given level is large enough to hold numSplats\n ensureSplatsSh(level, numSplats) {\n let wordsPerSplat;\n let key;\n if (level === 0) {\n return this.ensureSplats(numSplats);\n }\n if (level === 1) {\n wordsPerSplat = 2;\n key = "sh1";\n } else if (level === 2) {\n wordsPerSplat = 4;\n key = "sh2";\n } else if (level === 3) {\n wordsPerSplat = 4;\n key = "sh3";\n } else {\n throw new Error(`Invalid level: ${level}`);\n }\n let maxSplats = !this.extra[key] ? 0 : this.extra[key].length / wordsPerSplat;\n const targetSize = numSplats <= maxSplats ? maxSplats : Math.max(numSplats, 2 * maxSplats);\n if (!this.extra[key] || targetSize > maxSplats) {\n maxSplats = getTextureSize(targetSize).maxSplats;\n const newArray = new Uint32Array(maxSplats * wordsPerSplat);\n if (this.extra[key]) {\n newArray.set(this.extra[key]);\n }\n this.extra[key] = newArray;\n }\n return this.extra[key];\n }\n // Unpack the 16-byte Gsplat data at index into the Three.js components\n // center: THREE.Vector3, scales: THREE.Vector3, quaternion: THREE.Quaternion,\n // opacity: number 0..1, color: THREE.Color 0..1.\n getSplat(index) {\n if (!this.packedArray || index >= this.numSplats) {\n throw new Error("Invalid index");\n }\n return unpackSplat(this.packedArray, index);\n }\n // Set all PackedSplat components at index with the provided Gsplat attributes\n // (can be the same objects returned by getSplat). Ensures there is capacity\n // for at least index+1 Gsplats.\n setSplat(index, center, scales, quaternion, opacity, color) {\n const packedSplats = this.ensureSplats(index + 1);\n setPackedSplat(\n packedSplats,\n index,\n center.x,\n center.y,\n center.z,\n scales.x,\n scales.y,\n scales.z,\n quaternion.x,\n quaternion.y,\n quaternion.z,\n quaternion.w,\n opacity,\n color.r,\n color.g,\n color.b\n );\n this.numSplats = Math.max(this.numSplats, index + 1);\n }\n // Effectively calls this.setSplat(this.numSplats++, center, ...), useful on\n // construction where you just want to iterate and create a collection of Gsplats.\n pushSplat(center, scales, quaternion, opacity, color) {\n const packedSplats = this.ensureSplats(this.numSplats + 1);\n setPackedSplat(\n packedSplats,\n this.numSplats,\n center.x,\n center.y,\n center.z,\n scales.x,\n scales.y,\n scales.z,\n quaternion.x,\n quaternion.y,\n quaternion.z,\n quaternion.w,\n opacity,\n color.r,\n color.g,\n color.b\n );\n ++this.numSplats;\n }\n // Iterate over Gsplats index 0..=(this.numSplats-1), unpack each Gsplat\n // and invoke the callback function with the Gsplat attributes.\n forEachSplat(callback) {\n if (!this.packedArray || !this.numSplats) {\n return;\n }\n for (let i2 = 0; i2 < this.numSplats; ++i2) {\n const unpacked = unpackSplat(this.packedArray, i2);\n callback(\n i2,\n unpacked.center,\n unpacked.scales,\n unpacked.quaternion,\n unpacked.opacity,\n unpacked.color\n );\n }\n }\n // Ensures our PackedSplats.target render target has enough space to generate\n // maxSplats total Gsplats, and reallocate if not large enough.\n ensureGenerate(maxSplats) {\n if (this.target && (maxSplats ?? 1) <= this.maxSplats) {\n return false;\n }\n this.dispose();\n const textureSize = getTextureSize(maxSplats ?? 1);\n const { width, height, depth } = textureSize;\n this.maxSplats = textureSize.maxSplats;\n this.target = new WebGLArrayRenderTarget(width, height, depth, {\n depthBuffer: false,\n stencilBuffer: false,\n generateMipmaps: false,\n magFilter: NearestFilter,\n minFilter: NearestFilter\n });\n this.target.texture.format = RGBAIntegerFormat;\n this.target.texture.type = UnsignedIntType;\n this.target.texture.internalFormat = "RGBA32UI";\n return true;\n }\n // Given an array of splatCounts (.numSplats for each\n // SplatGenerator/SplatMesh in the scene), compute a\n // "mapping layout" in the composite array of generated outputs.\n generateMapping(splatCounts) {\n let maxSplats = 0;\n const mapping = splatCounts.map((numSplats) => {\n const base = maxSplats;\n const rounded = Math.ceil(numSplats / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n maxSplats += rounded;\n return { base, count: numSplats };\n });\n return { maxSplats, mapping };\n }\n // Returns a THREE.DataArrayTexture representing the PackedSplats content as\n // a Uint32x4 data array texture (2048 x 2048 x depth in size)\n getTexture() {\n if (this.target) {\n return this.target.texture;\n }\n if (this.source || this.packedArray) {\n const source = this.maybeUpdateSource();\n return source;\n }\n return _PackedSplats.getEmpty();\n }\n // Check if source texture needs to be created/updated\n maybeUpdateSource() {\n if (!this.packedArray) {\n throw new Error("No packed splats");\n }\n if (this.needsUpdate || !this.source) {\n this.needsUpdate = false;\n if (this.source) {\n const { width, height, depth } = this.source.image;\n if (this.maxSplats !== width * height * depth) {\n this.source.dispose();\n this.source = null;\n }\n }\n if (!this.source) {\n const { width, height, depth } = getTextureSize(this.maxSplats);\n this.source = new DataArrayTexture(\n this.packedArray,\n width,\n height,\n depth\n );\n this.source.format = RGBAIntegerFormat;\n this.source.type = UnsignedIntType;\n this.source.internalFormat = "RGBA32UI";\n this.source.needsUpdate = true;\n } else if (this.packedArray.buffer !== this.source.image.data.buffer) {\n this.source.image.data = new Uint8Array(this.packedArray.buffer);\n }\n this.source.needsUpdate = true;\n }\n return this.source;\n }\n // Can be used where you need an uninitialized THREE.DataArrayTexture like\n // a uniform you will update with the result of this.getTexture() later.\n static getEmpty() {\n if (!_PackedSplats.emptySource) {\n const { width, height, depth, maxSplats } = getTextureSize(1);\n const emptyArray = new Uint32Array(maxSplats * 4);\n _PackedSplats.emptySource = new DataArrayTexture(\n emptyArray,\n width,\n height,\n depth\n );\n _PackedSplats.emptySource.format = RGBAIntegerFormat;\n _PackedSplats.emptySource.type = UnsignedIntType;\n _PackedSplats.emptySource.internalFormat = "RGBA32UI";\n _PackedSplats.emptySource.needsUpdate = true;\n }\n return _PackedSplats.emptySource;\n }\n // Get a program and THREE.RawShaderMaterial for a given GsplatGenerator,\n // generating it if necessary and caching the result.\n prepareProgramMaterial(generator) {\n let program = _PackedSplats.generatorProgram.get(generator);\n if (!program) {\n const graph = dynoBlock(\n { index: "int" },\n { output: "uvec4" },\n ({ index }) => {\n generator.inputs.index = index;\n const gsplat = generator.outputs.gsplat;\n const output = outputPackedSplat(gsplat);\n return { output };\n }\n );\n if (!_PackedSplats.programTemplate) {\n _PackedSplats.programTemplate = new DynoProgramTemplate(\n computeUvec4_default\n );\n }\n program = new DynoProgram({\n graph,\n inputs: { index: "index" },\n outputs: { output: "target" },\n template: _PackedSplats.programTemplate\n });\n Object.assign(program.uniforms, {\n targetLayer: { value: 0 },\n targetBase: { value: 0 },\n targetCount: { value: 0 }\n });\n _PackedSplats.generatorProgram.set(generator, program);\n }\n const material = program.prepareMaterial();\n _PackedSplats.mesh.material = material;\n return { program, material };\n }\n saveRenderState(renderer) {\n return {\n xrPresenting: renderer.xr.isPresenting,\n autoClear: renderer.autoClear,\n scissorTest: renderer.getScissorTest(),\n pixelRatio: renderer.getPixelRatio()\n };\n }\n resetRenderState(renderer, state) {\n renderer.setRenderTarget(null);\n renderer.setPixelRatio(state.pixelRatio);\n renderer.xr.isPresenting = state.xrPresenting;\n renderer.autoClear = state.autoClear;\n renderer.setScissorTest(state.scissorTest);\n }\n // Executes a dyno program specified by generator which is any DynoBlock that\n // maps { index: "int" } to { gsplat: Gsplat }. This is called in\n // ForgeRenderer.updateInternal() to re-generate Gsplats in the scene for\n // SplatGenerator instances whose version is newer than what was generated\n // for it last time.\n generate({\n generator,\n base,\n count,\n renderer\n }) {\n if (!this.target) {\n throw new Error("Target must be initialized with ensureSplats");\n }\n if (base + count > this.maxSplats) {\n throw new Error("Base + count exceeds maxSplats");\n }\n const { program, material } = this.prepareProgramMaterial(generator);\n program.update();\n const renderState = this.saveRenderState(renderer);\n const nextBase = Math.ceil((base + count) / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n const layerSize = SPLAT_TEX_WIDTH * SPLAT_TEX_HEIGHT;\n material.uniforms.targetBase.value = base;\n material.uniforms.targetCount.value = count;\n while (base < nextBase) {\n const layer = Math.floor(base / layerSize);\n material.uniforms.targetLayer.value = layer;\n const layerBase = layer * layerSize;\n const layerYStart = Math.floor((base - layerBase) / SPLAT_TEX_WIDTH);\n const layerYEnd = Math.min(\n SPLAT_TEX_HEIGHT,\n Math.ceil((nextBase - layerBase) / SPLAT_TEX_WIDTH)\n );\n renderer.setPixelRatio(1);\n renderer.setRenderTarget(this.target, layer);\n renderer.xr.isPresenting = false;\n renderer.autoClear = false;\n renderer.setScissorTest(true);\n renderer.setScissor(\n 0,\n layerYStart,\n SPLAT_TEX_WIDTH,\n layerYEnd - layerYStart\n );\n renderer.render(_PackedSplats.scene, _PackedSplats.camera);\n base += SPLAT_TEX_WIDTH * (layerYEnd - layerYStart);\n }\n this.resetRenderState(renderer, renderState);\n return { nextBase };\n }\n };\n _PackedSplats.emptySource = null;\n _PackedSplats.programTemplate = null;\n _PackedSplats.generatorProgram = /* @__PURE__ */ new Map();\n _PackedSplats.geometry = new PlaneGeometry(2, 2);\n _PackedSplats.mesh = new Mesh(\n _PackedSplats.geometry,\n new RawShaderMaterial({ visible: false })\n );\n _PackedSplats.scene = new Scene().add(_PackedSplats.mesh);\n _PackedSplats.camera = new Camera();\n let PackedSplats = _PackedSplats;\n class DynoPackedSplats extends DynoUniform {\n constructor({ packedSplats } = {}) {\n super({\n key: "packedSplats",\n type: TPackedSplats,\n globals: () => [definePackedSplats],\n value: {\n texture: PackedSplats.getEmpty(),\n numSplats: 0\n },\n update: (value) => {\n var _a2, _b2;\n value.texture = ((_a2 = this.packedSplats) == null ? void 0 : _a2.getTexture()) ?? PackedSplats.getEmpty();\n value.numSplats = ((_b2 = this.packedSplats) == null ? void 0 : _b2.numSplats) ?? 0;\n return value;\n }\n });\n this.packedSplats = packedSplats;\n }\n }\n var computeVec4_default = "precision highp float;\\nprecision highp int;\\nprecision highp sampler2D;\\nprecision highp usampler2D;\\nprecision highp isampler2D;\\nprecision highp sampler2DArray;\\nprecision highp usampler2DArray;\\nprecision highp isampler2DArray;\\nprecision highp sampler3D;\\nprecision highp usampler3D;\\nprecision highp isampler3D;\\n\\n#include \\n\\nuniform uint targetLayer;\\nuniform int targetBase;\\nuniform int targetCount;\\n\\nout vec4 target;\\n\\n{{ GLOBALS }}\\n\\nvoid computeReadback(int index) {\\n {{ STATEMENTS }}\\n}\\n\\nvoid main() {\\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\\n int index = targetIndex - targetBase;\\n\\n if ((index >= 0) && (index < targetCount)) {\\n computeReadback(index);\\n } else {\\n target = vec4(0.0, 0.0, 0.0, 0.0);\\n }\\n}";\n const _Readback = class _Readback {\n constructor({ renderer } = {}) {\n this.renderer = renderer;\n this.capacity = 0;\n this.count = 0;\n }\n dispose() {\n if (this.target) {\n this.target.dispose();\n this.target = void 0;\n }\n }\n // Ensure we have a buffer large enough for the readback of count indices.\n // Pass in previous bufer of the desired type.\n ensureBuffer(count, buffer) {\n const roundedCount = Math.ceil(Math.max(1, count) / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n const bytes = roundedCount * 4;\n if (buffer.byteLength >= bytes) {\n return buffer;\n }\n const newBuffer = new ArrayBuffer(bytes);\n if (buffer instanceof ArrayBuffer) {\n return newBuffer;\n }\n const ctor = buffer.constructor;\n return new ctor(newBuffer);\n }\n // Ensure our render target is large enough for the readback of capacity indices.\n ensureCapacity(capacity) {\n const { width, height, depth, maxSplats } = getTextureSize(capacity);\n if (!this.target || maxSplats > this.capacity) {\n this.dispose();\n this.capacity = maxSplats;\n this.target = new WebGLArrayRenderTarget(width, height, depth, {\n depthBuffer: false,\n stencilBuffer: false,\n generateMipmaps: false,\n magFilter: NearestFilter,\n minFilter: NearestFilter\n });\n this.target.texture.format = RGBAFormat;\n this.target.texture.type = UnsignedByteType;\n this.target.texture.internalFormat = "RGBA8";\n }\n }\n // Get a program and THREE.RawShaderMaterial for a given Rgba8Readback,\n // generating it if necessary and caching the result.\n prepareProgramMaterial(reader) {\n let program = _Readback.readbackProgram.get(reader);\n if (!program) {\n const graph = dynoBlock(\n { index: "int" },\n { rgba8: "vec4" },\n ({ index }) => {\n reader.inputs.index = index;\n const rgba8 = new OutputRgba8({ rgba8: reader.outputs.rgba8 });\n return { rgba8 };\n }\n );\n if (!_Readback.programTemplate) {\n _Readback.programTemplate = new DynoProgramTemplate(computeVec4_default);\n }\n program = new DynoProgram({\n graph,\n inputs: { index: "index" },\n outputs: { rgba8: "target" },\n template: _Readback.programTemplate\n });\n Object.assign(program.uniforms, {\n targetLayer: { value: 0 },\n targetBase: { value: 0 },\n targetCount: { value: 0 }\n });\n _Readback.readbackProgram.set(reader, program);\n }\n const material = program.prepareMaterial();\n _Readback.mesh.material = material;\n return { program, material };\n }\n saveRenderState(renderer) {\n return {\n xrPresenting: renderer.xr.isPresenting,\n autoClear: renderer.autoClear,\n scissorTest: renderer.getScissorTest(),\n pixelRatio: renderer.getPixelRatio()\n };\n }\n resetRenderState(renderer, state) {\n renderer.setRenderTarget(null);\n renderer.setPixelRatio(state.pixelRatio);\n renderer.xr.isPresenting = state.xrPresenting;\n renderer.autoClear = state.autoClear;\n renderer.setScissorTest(state.scissorTest);\n }\n process({\n count,\n material\n }) {\n const renderer = this.renderer;\n if (!renderer) {\n throw new Error("No renderer");\n }\n if (!this.target) {\n throw new Error("No target");\n }\n const layerSize = SPLAT_TEX_WIDTH * SPLAT_TEX_HEIGHT;\n material.uniforms.targetBase.value = 0;\n material.uniforms.targetCount.value = count;\n let baseIndex = 0;\n while (baseIndex < count) {\n const layer = Math.floor(baseIndex / layerSize);\n const layerBase = layer * layerSize;\n const layerYEnd = Math.min(\n SPLAT_TEX_HEIGHT,\n Math.ceil((count - layerBase) / SPLAT_TEX_WIDTH)\n );\n material.uniforms.targetLayer.value = layer;\n renderer.setPixelRatio(1);\n renderer.setRenderTarget(this.target, layer);\n renderer.xr.isPresenting = false;\n renderer.autoClear = false;\n renderer.setScissorTest(true);\n renderer.setScissor(0, 0, SPLAT_TEX_WIDTH, layerYEnd);\n renderer.render(_Readback.scene, _Readback.camera);\n baseIndex += SPLAT_TEX_WIDTH * layerYEnd;\n }\n this.count = count;\n }\n async read({\n readback\n }) {\n const renderer = this.renderer;\n if (!renderer) {\n throw new Error("No renderer");\n }\n if (!this.target) {\n throw new Error("No target");\n }\n const roundedCount = Math.ceil(this.count / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n if (readback.byteLength < roundedCount * 4) {\n throw new Error(\n `Readback buffer too small: ${readback.byteLength} < ${roundedCount * 4}`\n );\n }\n const readbackUint8 = new Uint8Array(\n readback instanceof ArrayBuffer ? readback : readback.buffer\n );\n const layerSize = SPLAT_TEX_WIDTH * SPLAT_TEX_HEIGHT;\n let baseIndex = 0;\n const promises = [];\n while (baseIndex < this.count) {\n const layer = Math.floor(baseIndex / layerSize);\n const layerBase = layer * layerSize;\n const layerYEnd = Math.min(\n SPLAT_TEX_HEIGHT,\n Math.ceil((this.count - layerBase) / SPLAT_TEX_WIDTH)\n );\n renderer.setPixelRatio(1);\n renderer.setRenderTarget(this.target, layer);\n const readbackSize = SPLAT_TEX_WIDTH * layerYEnd * 4;\n const subReadback = readbackUint8.subarray(\n layerBase * 4,\n layerBase * 4 + readbackSize\n );\n const promise = renderer == null ? void 0 : renderer.readRenderTargetPixelsAsync(\n this.target,\n 0,\n 0,\n SPLAT_TEX_WIDTH,\n layerYEnd,\n subReadback\n );\n promises.push(promise);\n baseIndex += SPLAT_TEX_WIDTH * layerYEnd;\n }\n return Promise.all(promises).then(() => readback);\n }\n // Perform render operation to run the Rgba8Readback program\n // but don\'t perform the readback yet.\n render({\n reader,\n count,\n renderer\n }) {\n this.renderer = renderer || this.renderer;\n if (!this.renderer) {\n throw new Error("No renderer");\n }\n this.ensureCapacity(count);\n const { program, material } = this.prepareProgramMaterial(reader);\n program.update();\n const renderState = this.saveRenderState(this.renderer);\n this.process({ count, material });\n this.resetRenderState(this.renderer, renderState);\n }\n // Perform a readback of the render target, returning a buffer of the\n // given type.\n async readback({\n readback\n }) {\n if (!this.renderer) {\n throw new Error("No renderer");\n }\n const renderState = this.saveRenderState(this.renderer);\n const promise = this.read({ readback });\n this.resetRenderState(this.renderer, renderState);\n return promise;\n }\n // Perform a render and readback operation for the given Rgba8Readback,\n // and readback buffer (call ensureBuffer first).\n async renderReadback({\n reader,\n count,\n renderer,\n readback\n }) {\n this.renderer = renderer || this.renderer;\n if (!this.renderer) {\n throw new Error("No renderer");\n }\n this.ensureCapacity(count);\n const { program, material } = this.prepareProgramMaterial(reader);\n program.update();\n const renderState = this.saveRenderState(this.renderer);\n this.process({ count, material });\n const promise = this.read({ readback });\n this.resetRenderState(this.renderer, renderState);\n return promise;\n }\n getTexture() {\n var _a2;\n return (_a2 = this.target) == null ? void 0 : _a2.texture;\n }\n };\n _Readback.programTemplate = null;\n _Readback.readbackProgram = /* @__PURE__ */ new Map();\n _Readback.geometry = new PlaneGeometry(2, 2);\n _Readback.mesh = new Mesh(\n _Readback.geometry,\n new RawShaderMaterial({ visible: false })\n );\n _Readback.scene = new Scene().add(_Readback.mesh);\n _Readback.camera = new Camera();\n let Readback = _Readback;\n const _RgbaArray = class _RgbaArray {\n constructor(options = {}) {\n this.capacity = 0;\n this.count = 0;\n this.array = null;\n this.readback = null;\n this.source = null;\n this.needsUpdate = true;\n this.dyno = new DynoUniform({\n key: "rgbaArray",\n type: TRgbaArray,\n globals: () => [defineRgbaArray],\n value: {\n texture: _RgbaArray.getEmpty(),\n count: 0\n },\n update: (value) => {\n var _a2;\n value.texture = ((_a2 = this.readback) == null ? void 0 : _a2.getTexture()) ?? this.source ?? _RgbaArray.getEmpty();\n value.count = this.count;\n return value;\n }\n });\n if (options.array) {\n this.array = options.array;\n this.capacity = Math.floor(this.array.length / 4);\n this.capacity = Math.floor(this.capacity / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n this.count = Math.min(\n this.capacity,\n options.count ?? Number.POSITIVE_INFINITY\n );\n } else {\n this.capacity = options.capacity ?? 0;\n this.count = 0;\n }\n }\n // Free up resources\n dispose() {\n if (this.readback) {\n this.readback.dispose();\n this.readback = null;\n }\n if (this.source) {\n this.source.dispose();\n this.source = null;\n }\n }\n // Ensure that our array is large enough to hold capacity RGBA8 values.\n ensureCapacity(capacity) {\n var _a2;\n if (!this.array || capacity > (((_a2 = this.array) == null ? void 0 : _a2.length) ?? 0) / 4) {\n this.capacity = getTextureSize(capacity).maxSplats;\n const newArray = new Uint8Array(this.capacity * 4);\n if (this.array) {\n newArray.set(this.array);\n }\n this.array = newArray;\n }\n return this.array;\n }\n // Get the THREE.DataArrayTexture from either the readback or the source.\n getTexture() {\n var _a2;\n let texture = (_a2 = this.readback) == null ? void 0 : _a2.getTexture();\n if (this.source || this.array) {\n texture = this.maybeUpdateSource();\n }\n return texture ?? _RgbaArray.getEmpty();\n }\n // Create or get a THREE.DataArrayTexture from the data array.\n maybeUpdateSource() {\n if (!this.array) {\n throw new Error("No array");\n }\n if (this.needsUpdate || !this.source) {\n this.needsUpdate = false;\n if (this.source) {\n const { width, height, depth } = this.source.image;\n if (this.capacity !== width * height * depth) {\n this.source.dispose();\n this.source = null;\n }\n }\n if (!this.source) {\n const { width, height, depth } = getTextureSize(this.capacity);\n this.source = new DataArrayTexture(\n this.array,\n width,\n height,\n depth\n );\n this.source.format = RGBAFormat;\n this.source.type = UnsignedByteType;\n this.source.internalFormat = "RGBA8";\n this.source.needsUpdate = true;\n } else if (this.array.buffer !== this.source.image.data.buffer) {\n this.source.image.data = new Uint8Array(this.array.buffer);\n }\n this.source.needsUpdate = true;\n }\n return this.source;\n }\n // Generate the RGBA8 values from a Rgba8Readback dyno program.\n render({\n reader,\n count,\n renderer\n }) {\n if (!this.readback) {\n this.readback = new Readback({ renderer });\n }\n this.readback.render({ reader, count, renderer });\n this.capacity = this.readback.capacity;\n this.count = this.readback.count;\n }\n // Extract the RGBA8 values from a PackedSplats collection.\n fromPackedSplats({\n packedSplats,\n base,\n count,\n renderer\n }) {\n const { dynoSplats, dynoBase, dynoCount, reader } = _RgbaArray.makeDynos();\n dynoSplats.packedSplats = packedSplats;\n dynoBase.value = base;\n dynoCount.value = count;\n this.render({ reader, count, renderer });\n return this;\n }\n // Read back the RGBA8 values from the readback buffer.\n async read() {\n if (!this.readback) {\n throw new Error("No readback");\n }\n if (!this.array || this.array.length < this.count * 4) {\n this.array = new Uint8Array(this.capacity * 4);\n }\n const result = await this.readback.readback({ readback: this.array });\n return result.subarray(0, this.count * 4);\n }\n // Can be used where you need an uninitialized THREE.DataArrayTexture like\n // a uniform you will update with the result of this.getTexture() later.\n static getEmpty() {\n if (!_RgbaArray.emptySource) {\n const emptyArray = new Uint8Array(1 * 4);\n _RgbaArray.emptySource = new DataArrayTexture(emptyArray, 1, 1, 1);\n _RgbaArray.emptySource.format = RGBAFormat;\n _RgbaArray.emptySource.type = UnsignedByteType;\n _RgbaArray.emptySource.internalFormat = "RGBA8";\n _RgbaArray.emptySource.needsUpdate = true;\n }\n return _RgbaArray.emptySource;\n }\n // Create a dyno program that can extract RGBA8 values from a PackedSplats\n static makeDynos() {\n if (!_RgbaArray.dynos) {\n const dynoSplats = new DynoPackedSplats();\n const dynoBase = new DynoInt({ value: 0 });\n const dynoCount = new DynoInt({ value: 0 });\n const reader = dynoBlock(\n { index: "int" },\n { rgba8: "vec4" },\n ({ index }) => {\n if (!index) {\n throw new Error("index is undefined");\n }\n index = add(index, dynoBase);\n const gsplat = readPackedSplatRange(\n dynoSplats,\n index,\n dynoBase,\n dynoCount\n );\n return { rgba8: splitGsplat(gsplat).outputs.rgba };\n }\n );\n _RgbaArray.dynos = { dynoSplats, dynoBase, dynoCount, reader };\n }\n return _RgbaArray.dynos;\n }\n };\n _RgbaArray.emptySource = null;\n _RgbaArray.dynos = null;\n let RgbaArray = _RgbaArray;\n const TRgbaArray = { type: "RgbaArray" };\n const defineRgbaArray = unindent(`\n struct RgbaArray {\n sampler2DArray texture;\n int count;\n };\n`);\n function readRgbaArray(rgba, index) {\n const dyno2 = new Dyno({\n inTypes: { rgba: TRgbaArray, index: "int" },\n outTypes: { rgba: "vec4" },\n inputs: { rgba, index },\n globals: () => [defineRgbaArray],\n statements: ({ inputs, outputs }) => unindentLines(`\n if ((index >= 0) && (index < ${inputs.rgba}.count)) {\n ${outputs.rgba} = texelFetch(${inputs.rgba}.texture, splatTexCoord(index), 0);\n } else {\n ${outputs.rgba} = vec4(0.0, 0.0, 0.0, 0.0);\n }\n `)\n });\n return dyno2.outputs.rgba;\n }\n function sdfTypeToNumber(type) {\n switch (type) {\n case "all":\n return 0;\n case "plane":\n return 1;\n case "sphere":\n return 2;\n case "box":\n return 3;\n case "ellipsoid":\n return 4;\n case "cylinder":\n return 5;\n case "capsule":\n return 6;\n case "infinite_cone":\n return 7;\n default:\n throw new Error(`Unknown SDF type: ${type}`);\n }\n }\n function rgbaBlendModeToNumber(mode) {\n switch (mode) {\n case "multiply":\n return 0;\n case "set_rgb":\n return 1;\n case "add_rgba":\n return 2;\n default:\n throw new Error(`Unknown blend mode: ${mode}`);\n }\n }\n class SplatEditSdf extends Object3D {\n constructor(options = {}) {\n super();\n const { type, invert, opacity, color, displace, radius } = options;\n this.type = type ?? "sphere";\n this.invert = invert ?? false;\n this.opacity = opacity ?? 1;\n this.color = color ?? new Color(1, 1, 1);\n this.displace = displace ?? new Vector3(0, 0, 0);\n this.radius = radius ?? 0;\n }\n }\n const _SplatEdit = class _SplatEdit extends Object3D {\n constructor(options = {}) {\n const {\n name,\n rgbaBlendMode = "multiply",\n sdfSmooth = 0,\n softEdge = 0,\n invert = false,\n sdfs = null\n } = options;\n super();\n this.rgbaBlendMode = rgbaBlendMode;\n this.sdfSmooth = sdfSmooth;\n this.softEdge = softEdge;\n this.invert = invert;\n this.sdfs = sdfs;\n this.ordering = _SplatEdit.nextOrdering++;\n this.name = name ?? `Edit ${this.ordering}`;\n }\n addSdf(sdf) {\n if (this.sdfs == null) {\n this.sdfs = [];\n }\n this.sdfs.push(sdf);\n }\n removeSdf(sdf) {\n if (this.sdfs == null) {\n return;\n }\n this.sdfs = this.sdfs.filter((s) => s !== sdf);\n }\n };\n _SplatEdit.nextOrdering = 1;\n let SplatEdit = _SplatEdit;\n class SplatEdits {\n constructor({ maxSdfs, maxEdits }) {\n this.maxSdfs = Math.max(16, maxSdfs ?? 0);\n this.numSdfs = 0;\n this.sdfData = new Uint32Array(this.maxSdfs * 8 * 4);\n this.sdfFloatData = new Float32Array(this.sdfData.buffer);\n this.sdfTexture = this.newSdfTexture(this.sdfData, this.maxSdfs);\n this.dynoSdfArray = new DynoUniform({\n key: "sdfArray",\n type: SdfArray,\n globals: () => [defineSdfArray],\n value: {\n numSdfs: 0,\n sdfTexture: this.sdfTexture\n },\n update: (uniform) => {\n uniform.numSdfs = this.numSdfs;\n uniform.sdfTexture = this.sdfTexture;\n return uniform;\n }\n });\n this.maxEdits = Math.max(16, maxEdits ?? 0);\n this.numEdits = 0;\n this.editData = new Uint32Array(this.maxEdits * 4);\n this.editFloatData = new Float32Array(this.editData.buffer);\n this.dynoNumEdits = new DynoInt({ value: 0 });\n this.dynoEdits = this.newEdits(this.editData, this.maxEdits);\n }\n newSdfTexture(data, maxSdfs) {\n const texture = new DataTexture(\n data,\n 8,\n maxSdfs,\n RGBAIntegerFormat,\n UnsignedIntType\n );\n texture.internalFormat = "RGBA32UI";\n texture.needsUpdate = true;\n return texture;\n }\n newEdits(data, maxEdits) {\n return new DynoUniform({\n key: "edits",\n type: "uvec4",\n count: maxEdits,\n globals: () => [defineEdit],\n value: data\n });\n }\n // Ensure our SDF texture and edits uniform array have enough capacity.\n // Reallocate if not.\n ensureCapacity({\n maxSdfs,\n maxEdits\n }) {\n let dynoUpdated = false;\n if (maxSdfs > this.sdfTexture.image.height) {\n this.sdfTexture.dispose();\n this.maxSdfs = Math.max(this.maxSdfs * 2, maxSdfs);\n this.sdfData = new Uint32Array(this.maxSdfs * 8 * 4);\n this.sdfFloatData = new Float32Array(this.sdfData.buffer);\n this.sdfTexture = this.newSdfTexture(this.sdfData, this.maxSdfs);\n }\n if (maxEdits > (this.dynoEdits.count ?? 0)) {\n this.maxEdits = Math.max(this.maxEdits * 2, maxEdits);\n this.editData = new Uint32Array(this.maxEdits * 4);\n this.editFloatData = new Float32Array(this.editData.buffer);\n this.dynoEdits = this.newEdits(this.editData, this.maxEdits);\n dynoUpdated = true;\n }\n return dynoUpdated;\n }\n updateEditData(offset, value) {\n const updated = this.editData[offset] !== value;\n this.editData[offset] = value;\n return updated;\n }\n updateEditFloatData(offset, value) {\n tempFloat32[0] = value;\n const updated = this.editFloatData[offset] !== tempFloat32[0];\n if (updated) {\n this.editFloatData[offset] = tempFloat32[0];\n }\n return updated;\n }\n encodeEdit(editIndex, {\n sdfFirst,\n sdfCount,\n invert,\n rgbaBlendMode,\n softEdge,\n sdfSmooth\n }) {\n const base = editIndex * 4;\n let updated = false;\n updated = this.updateEditData(base + 0, rgbaBlendMode | (invert ? 1 << 8 : 0)) || updated;\n updated = this.updateEditData(base + 1, sdfFirst | sdfCount << 16) || updated;\n updated = this.updateEditFloatData(base + 2, softEdge) || updated;\n updated = this.updateEditFloatData(base + 3, sdfSmooth) || updated;\n return updated;\n }\n updateSdfData(offset, value) {\n const updated = this.sdfData[offset] !== value;\n this.sdfData[offset] = value;\n return updated;\n }\n updateSdfFloatData(offset, value) {\n tempFloat32[0] = value;\n const updated = this.sdfFloatData[offset] !== tempFloat32[0];\n if (updated) {\n this.sdfFloatData[offset] = tempFloat32[0];\n }\n return updated;\n }\n encodeSdf(sdfIndex, {\n sdfType,\n invert,\n center,\n quaternion,\n scale,\n sizes\n }, values) {\n const base = sdfIndex * (8 * 4);\n const flags = sdfType | (invert ? 1 << 8 : 0);\n let updated = false;\n updated = this.updateSdfFloatData(base + 0, (center == null ? void 0 : center.x) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 1, (center == null ? void 0 : center.y) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 2, (center == null ? void 0 : center.z) ?? 0) || updated;\n updated = this.updateSdfData(base + 3, flags) || updated;\n updated = this.updateSdfFloatData(base + 4, (quaternion == null ? void 0 : quaternion.x) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 5, (quaternion == null ? void 0 : quaternion.y) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 6, (quaternion == null ? void 0 : quaternion.z) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 7, (quaternion == null ? void 0 : quaternion.w) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 8, (scale == null ? void 0 : scale.x) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 9, (scale == null ? void 0 : scale.y) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 10, (scale == null ? void 0 : scale.z) ?? 0) || updated;\n updated = this.updateSdfData(base + 11, 0) || updated;\n updated = this.updateSdfFloatData(base + 12, (sizes == null ? void 0 : sizes.x) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 13, (sizes == null ? void 0 : sizes.y) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 14, (sizes == null ? void 0 : sizes.z) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 15, (sizes == null ? void 0 : sizes.w) ?? 0) || updated;\n const nValues = Math.min(4, values.length);\n for (let i2 = 0; i2 < nValues; ++i2) {\n const vBase = base + 16 + i2 * 4;\n updated = this.updateSdfFloatData(vBase + 0, values[i2].x) || updated;\n updated = this.updateSdfFloatData(vBase + 1, values[i2].y) || updated;\n updated = this.updateSdfFloatData(vBase + 2, values[i2].z) || updated;\n updated = this.updateSdfFloatData(vBase + 3, values[i2].w) || updated;\n }\n return updated;\n }\n // Update the SDFs and edits from an array of SplatEdits and their\n // associated SplatEditSdfs, updating it for the dyno shader program.\n update(edits) {\n const sdfCount = edits.reduce((total, { sdfs }) => total + sdfs.length, 0);\n const dynoUpdated = this.ensureCapacity({\n maxEdits: edits.length,\n maxSdfs: sdfCount\n });\n const values = [new Vector4(), new Vector4()];\n const center = new Vector3();\n const quaternion = new Quaternion();\n const scale = new Vector3();\n const sizes = new Vector4();\n let sdfIndex = 0;\n let updated = dynoUpdated;\n if (edits.length !== this.dynoNumEdits.value) {\n this.dynoNumEdits.value = edits.length;\n this.numEdits = edits.length;\n updated = true;\n }\n for (const [editIndex, { edit, sdfs }] of edits.entries()) {\n updated = this.encodeEdit(editIndex, {\n sdfFirst: sdfIndex,\n sdfCount: sdfs.length,\n invert: edit.invert,\n rgbaBlendMode: rgbaBlendModeToNumber(edit.rgbaBlendMode),\n softEdge: edit.softEdge,\n sdfSmooth: edit.sdfSmooth\n }) || updated;\n let sdfUpdated = false;\n for (const sdf of sdfs) {\n sizes.set(sdf.scale.x, sdf.scale.y, sdf.scale.z, sdf.radius);\n sdf.scale.setScalar(1);\n sdf.updateMatrixWorld();\n const worldToSdf = sdf.matrixWorld.clone().invert();\n worldToSdf.decompose(center, quaternion, scale);\n sdf.scale.set(sizes.x, sizes.y, sizes.z);\n sdf.updateMatrixWorld();\n values[0].set(sdf.color.r, sdf.color.g, sdf.color.b, sdf.opacity);\n values[1].set(sdf.displace.x, sdf.displace.y, sdf.displace.z, 1);\n sdfUpdated = this.encodeSdf(\n sdfIndex,\n {\n sdfType: sdfTypeToNumber(sdf.type),\n invert: sdf.invert,\n center,\n quaternion,\n scale,\n sizes\n },\n values\n ) || sdfUpdated;\n sdfIndex += 1;\n }\n this.numSdfs = sdfIndex;\n if (sdfUpdated) {\n this.sdfTexture.needsUpdate = true;\n }\n updated || (updated = sdfUpdated);\n }\n return { updated, dynoUpdated };\n }\n // Modify a Gsplat in a dyno shader program using the current edits and SDFs.\n modify(gsplat) {\n return applyGsplatRgbaDisplaceEdits(\n gsplat,\n this.dynoSdfArray,\n this.dynoNumEdits,\n this.dynoEdits\n );\n }\n }\n const SdfArray = { type: "SdfArray" };\n const defineSdfArray = unindent(`\n struct SdfArray {\n int numSdfs;\n usampler2D sdfTexture;\n };\n\n void unpackSdfArray(\n usampler2D sdfTexture, int sdfIndex, out uint flags,\n out vec3 center, out vec4 quaternion, out vec3 scale, out vec4 sizes,\n int numValues, out vec4 values[4]\n ) {\n uvec4 temp = texelFetch(sdfTexture, ivec2(0, sdfIndex), 0);\n flags = temp.w;\n center = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z));\n\n temp = texelFetch(sdfTexture, ivec2(1, sdfIndex), 0);\n quaternion = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n\n temp = texelFetch(sdfTexture, ivec2(2, sdfIndex), 0);\n scale = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z));\n\n temp = texelFetch(sdfTexture, ivec2(3, sdfIndex), 0);\n sizes = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n\n for (int i = 0; i < numValues; ++i) {\n temp = texelFetch(sdfTexture, ivec2(4 + i, sdfIndex), 0);\n values[i] = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n }\n }\n\n const uint SDF_FLAG_TYPE = 0xFFu;\n const uint SDF_FLAG_INVERT = 1u << 8u;\n\n const uint SDF_TYPE_ALL = 0u;\n const uint SDF_TYPE_PLANE = 1u;\n const uint SDF_TYPE_SPHERE = 2u;\n const uint SDF_TYPE_BOX = 3u;\n const uint SDF_TYPE_ELLIPSOID = 4u;\n const uint SDF_TYPE_CYLINDER = 5u;\n const uint SDF_TYPE_CAPSULE = 6u;\n const uint SDF_TYPE_INFINITE_CONE = 7u;\n\n float evaluateSdfArray(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos,\n float smoothK, int numValues, out vec4 outValues[4]\n ) {\n float distanceAccum = (smoothK == 0.0) ? 1.0 / 0.0 : 0.0;\n float maxExp = -1.0 / 0.0;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] = vec4(0.0);\n }\n\n uint flags;\n vec3 center, scale;\n vec4 quaternion, sizes;\n vec4 values[4];\n\n int sdfLast = min(sdfFirst + sdfCount, numSdfs);\n for (int index = sdfFirst; index < sdfLast; ++index) {\n unpackSdfArray(sdfTexture, index, flags, center, quaternion, scale, sizes, numValues, values);\n uint sdfType = flags & SDF_FLAG_TYPE;\n vec3 sdfPos = quatVec(quaternion, pos * scale) + center;\n\n float distance;\n switch (sdfType) {\n case SDF_TYPE_ALL:\n distance = -1.0 / 0.0;\n break;\n case SDF_TYPE_PLANE: {\n distance = sdfPos.z;\n break;\n }\n case SDF_TYPE_SPHERE: {\n distance = length(sdfPos) - sizes.w;\n break;\n }\n case SDF_TYPE_BOX: {\n vec3 q = abs(sdfPos) - sizes.xyz + sizes.w;\n distance = length(max(q, 0.0)) + min(max(q.x, max(q.y, q.z)), 0.0) - sizes.w;\n break;\n }\n case SDF_TYPE_ELLIPSOID: {\n vec3 sizes = sizes.xyz;\n float k0 = length(sdfPos / sizes);\n float k1 = length(sdfPos / dot(sizes, sizes));\n distance = k0 * (k0 - 1.0) / k1;\n break;\n }\n case SDF_TYPE_CYLINDER: {\n vec2 d = abs(vec2(length(sdfPos.xz), sdfPos.y)) - sizes.wy;\n distance = min(max(d.x, d.y), 0.0) + length(max(d, 0.0));\n break;\n }\n case SDF_TYPE_CAPSULE: {\n sdfPos.y -= clamp(sdfPos.y, -0.5 * sizes.y, 0.5 * sizes.y);\n distance = length(sdfPos) - sizes.w;\n break;\n }\n case SDF_TYPE_INFINITE_CONE: {\n float angle = 0.25 * PI * sizes.w;\n vec2 c = vec2(sin(angle), cos(angle));\n vec2 q = vec2(length(sdfPos.xy), -sdfPos.z);\n float d = length(q - c * max(dot(q, c), 0.0));\n distance = d * (((q.x * c.y - q.y * c.x) < 0.0) ? -1.0 : 1.0);\n break;\n }\n }\n\n if ((flags & SDF_FLAG_INVERT) != 0u) {\n distance = -distance;\n }\n\n if (smoothK == 0.0) {\n if (distance < distanceAccum) {\n distanceAccum = distance;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] = values[i];\n }\n }\n } else {\n float scaledDistance = -distance / smoothK;\n if (scaledDistance > maxExp) {\n float scale = exp(maxExp - scaledDistance);\n distanceAccum *= scale;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] *= scale;\n }\n maxExp = scaledDistance;\n }\n\n float weight = exp(scaledDistance - maxExp);\n distanceAccum += weight;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] += weight * values[i];\n }\n }\n }\n\n if (smoothK == 0.0) {\n return distanceAccum;\n } else {\n // Very distant SDFs may result in 0 accumulation\n if (distanceAccum == 0.0) {\n return 1.0 / 0.0;\n }\n for (int i = 0; i < numValues; ++i) {\n outValues[i] /= distanceAccum;\n }\n return (-log(distanceAccum) - maxExp) * smoothK;\n }\n }\n\n float modulateSdfArray(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos,\n float smoothK, int numValues, out vec4 values[4],\n float softEdge, bool invert\n ) {\n float distance = evaluateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, numValues, values);\n if (invert) {\n distance = -distance;\n }\n\n return (softEdge == 0.0) ? ((distance < 0.0) ? 1.0 : 0.0)\n : clamp(-distance / softEdge + 0.5, 0.0, 1.0);\n }\n`);\n const defineEdit = unindent(`\n const uint EDIT_FLAG_BLEND = 0xFFu;\n const uint EDIT_BLEND_MULTIPLY = 0u;\n const uint EDIT_BLEND_SET_RGB = 1u;\n const uint EDIT_BLEND_ADD_RGBA = 2u;\n const uint EDIT_FLAG_INVERT = 0x100u;\n\n void decodeEdit(\n uvec4 packedEdit, out int sdfFirst, out int sdfCount,\n out bool invert, out uint rgbaBlendMode, out float softEdge, out float sdfSmooth\n ) {\n rgbaBlendMode = packedEdit.x & EDIT_FLAG_BLEND;\n invert = (packedEdit.x & EDIT_FLAG_INVERT) != 0u;\n\n sdfFirst = int(packedEdit.y & 0xFFFFu);\n sdfCount = int(packedEdit.y >> 16u);\n\n softEdge = uintBitsToFloat(packedEdit.z);\n sdfSmooth = uintBitsToFloat(packedEdit.w);\n }\n\n void applyRgbaDisplaceEdit(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, inout vec3 pos,\n float smoothK, float softEdge, bool invert, uint rgbaBlendMode, inout vec4 rgba\n ) {\n vec4 values[4];\n float modulate = modulateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, 2, values, softEdge, invert);\n // On Android, moving values[0] is necessary to work around a compiler bug.\n vec4 sdfRgba = values[0];\n vec4 sdfDisplaceScale = values[1];\n\n vec4 target;\n switch (rgbaBlendMode) {\n case EDIT_BLEND_MULTIPLY:\n target = rgba * sdfRgba;\n break;\n case EDIT_BLEND_SET_RGB:\n target = vec4(sdfRgba.rgb, rgba.a * sdfRgba.a);\n break;\n case EDIT_BLEND_ADD_RGBA:\n target = rgba + sdfRgba;\n break;\n default:\n // Debug output if blend mode not set\n target = vec4(fract(pos), 1.0);\n }\n rgba = mix(rgba, target, modulate);\n pos += sdfDisplaceScale.xyz * modulate;\n }\n\n void applyPackedRgbaDisplaceEdit(uvec4 packedEdit, usampler2D sdfTexture, int numSdfs, inout vec3 pos, inout vec4 rgba) {\n int sdfFirst, sdfCount;\n bool invert;\n uint rgbaBlendMode;\n float softEdge, sdfSmooth;\n decodeEdit(packedEdit, sdfFirst, sdfCount, invert, rgbaBlendMode, softEdge, sdfSmooth);\n applyRgbaDisplaceEdit(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, sdfSmooth, softEdge, invert, rgbaBlendMode, rgba);\n }\n`);\n function applyGsplatRgbaDisplaceEdits(gsplat, sdfArray, numEdits, rgbaDisplaceEdits) {\n const dyno2 = new Dyno({\n inTypes: {\n gsplat: Gsplat,\n sdfArray: SdfArray,\n numEdits: "int",\n rgbaDisplaceEdits: "uvec4"\n },\n outTypes: { gsplat: Gsplat },\n globals: () => [defineSdfArray, defineEdit],\n inputs: { gsplat, sdfArray, numEdits, rgbaDisplaceEdits },\n statements: ({ inputs, outputs }) => {\n const { sdfArray: sdfArray2, numEdits: numEdits2, rgbaDisplaceEdits: rgbaDisplaceEdits2 } = inputs;\n const { gsplat: gsplat2 } = outputs;\n return unindentLines(`\n ${gsplat2} = ${inputs.gsplat};\n if (isGsplatActive(${gsplat2}.flags)) {\n for (int editIndex = 0; editIndex < ${numEdits2}; ++editIndex) {\n applyPackedRgbaDisplaceEdit(\n ${rgbaDisplaceEdits2}[editIndex], ${sdfArray2}.sdfTexture, ${sdfArray2}.numSdfs,\n ${gsplat2}.center, ${gsplat2}.rgba\n );\n }\n }\n `);\n }\n });\n return dyno2.outputs.gsplat;\n }\n const tempFloat32 = new Float32Array(1);\n class SplatTransformer {\n // Create the dyno uniforms that parameterize the transform, setting them\n // to initial values that are different from any valid transform.\n constructor() {\n this.scale = new DynoFloat({ value: Number.NEGATIVE_INFINITY });\n this.rotate = new DynoVec4({\n value: new Quaternion(\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY\n )\n });\n this.translate = new DynoVec3({\n value: new Vector3(\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY\n )\n });\n }\n // Apply the transform to a Vec3 position in a dyno program.\n apply(position) {\n return transformPos(position, {\n scale: this.scale,\n rotate: this.rotate,\n translate: this.translate\n });\n }\n applyDir(dir) {\n return transformDir(dir, {\n rotate: this.rotate\n });\n }\n // Apply the transform to a Gsplat in a dyno program.\n applyGsplat(gsplat) {\n return transformGsplat(gsplat, {\n scale: this.scale,\n rotate: this.rotate,\n translate: this.translate\n });\n }\n // Update the uniforms to match the given transform matrix.\n updateFromMatrix(transform) {\n const scale = new Vector3();\n const quaternion = new Quaternion();\n const position = new Vector3();\n transform.decompose(position, quaternion, scale);\n const newScale = (scale.x + scale.y + scale.z) / 3;\n let updated = false;\n if (newScale !== this.scale.value) {\n this.scale.value = newScale;\n updated = true;\n }\n if (!position.equals(this.translate.value)) {\n this.translate.value.copy(position);\n updated = true;\n }\n if (!quaternion.equals(this.rotate.value)) {\n this.rotate.value.copy(quaternion);\n updated = true;\n }\n return updated;\n }\n // Update this transform to match the object\'s to-world transform.\n update(object) {\n object.updateMatrixWorld();\n return this.updateFromMatrix(object.matrixWorld);\n }\n }\n class SplatGenerator extends Object3D {\n constructor({\n numSplats,\n generator,\n construct,\n update\n }) {\n super();\n this.numSplats = numSplats ?? 0;\n this.generator = generator;\n this.frameUpdate = update;\n this.version = 0;\n if (construct) {\n const constructed = construct(this);\n Object.assign(this, constructed);\n }\n }\n updateVersion() {\n this.version += 1;\n }\n set needsUpdate(value) {\n if (value) {\n this.updateVersion();\n }\n }\n }\n const _SplatMesh = class _SplatMesh extends SplatGenerator {\n constructor(options = {}) {\n const transform = new SplatTransformer();\n const viewToWorld = new SplatTransformer();\n const worldToView = new SplatTransformer();\n const viewToObject = new SplatTransformer();\n const recolor = new DynoVec4({\n value: new Vector4(\n Number.NEGATIVE_INFINITY,\n Number.NEGATIVE_INFINITY,\n Number.NEGATIVE_INFINITY,\n Number.NEGATIVE_INFINITY\n )\n });\n const time = new DynoFloat({ value: 0 });\n const deltaTime = new DynoFloat({ value: 0 });\n const context = {\n transform,\n viewToWorld,\n worldToView,\n viewToObject,\n recolor,\n time,\n deltaTime\n };\n super({\n update: ({ time: time2, deltaTime: deltaTime2, viewToWorld: viewToWorld2, globalEdits }) => this.update({ time: time2, deltaTime: deltaTime2, viewToWorld: viewToWorld2, globalEdits })\n });\n this.isInitialized = false;\n this.recolor = new Color(1, 1, 1);\n this.opacity = 1;\n this.enableViewToObject = false;\n this.enableViewToWorld = false;\n this.enableWorldToView = false;\n this.skinning = null;\n this.edits = null;\n this.rgbaDisplaceEdits = null;\n this.splatRgba = null;\n this.maxSh = 3;\n this.packedSplats = options.packedSplats ?? new PackedSplats();\n this.numSplats = this.packedSplats.numSplats;\n this.editable = options.editable ?? true;\n this.onFrame = options.onFrame;\n this.context = context;\n this.objectModifier = options.objectModifier;\n this.worldModifier = options.worldModifier;\n this.updateGenerator();\n if (options.url || options.fileBytes || options.constructSplats || options.packedSplats && !options.packedSplats.isInitialized) {\n this.initialized = this.asyncInitialize(options).then(async () => {\n this.updateGenerator();\n this.isInitialized = true;\n if (options.onLoad) {\n const maybePromise = options.onLoad(this);\n if (maybePromise instanceof Promise) {\n await maybePromise;\n }\n }\n return this;\n });\n } else {\n this.isInitialized = true;\n this.initialized = Promise.resolve(this);\n if (options.onLoad) {\n const maybePromise = options.onLoad(this);\n if (maybePromise instanceof Promise) {\n this.initialized = maybePromise.then(() => this);\n }\n }\n }\n }\n async asyncInitialize(options) {\n const { url, fileBytes, fileType, fileName, maxSplats, constructSplats } = options;\n if (url || fileBytes || constructSplats) {\n const packedSplatsOptions = {\n url,\n fileBytes,\n fileType,\n fileName,\n maxSplats,\n construct: constructSplats\n };\n this.packedSplats.reinitialize(packedSplatsOptions);\n }\n if (this.packedSplats) {\n await this.packedSplats.initialized;\n this.numSplats = this.packedSplats.numSplats;\n this.updateGenerator();\n }\n }\n static async staticInitialize() {\n await __wbg_init();\n _SplatMesh.isStaticInitialized = true;\n }\n // Creates a new Gsplat with the provided parameters (all values in "float" space,\n // i.e. 0-1 for opacity and color) and adds it to the end of the packedSplats,\n // increasing numSplats by 1. If necessary, reallocates the buffer with an exponential\n // doubling strategy to fit the new data, so it\'s fairly efficient to just\n // pushSplat(...) each Gsplat you want to create in a loop.\n pushSplat(center, scales, quaternion, opacity, color) {\n this.packedSplats.pushSplat(center, scales, quaternion, opacity, color);\n }\n // This method iterates over all Gsplats in this instance\'s packedSplats,\n // invoking the provided callback with index: number in 0..=(this.numSplats-1) and\n // center: THREE.Vector3, scales: THREE.Vector3, quaternion: THREE.Quaternion,\n // opacity: number (0..1), and color: THREE.Color (rgb values in 0..1).\n // Note that the objects passed in as center etc. are the same for every callback\n // invocation: these objects are reused for efficiency. Changing these values has\n // no effect as they are decoded/unpacked copies of the underlying data. To update\n // the packedSplats, call .packedSplats.setSplat(index, center, scales,\n // quaternion, opacity, color).\n forEachSplat(callback) {\n this.packedSplats.forEachSplat(callback);\n }\n // Call this when you are finished with the SplatMesh and want to free\n // any buffers it holds (via packedSplats).\n dispose() {\n this.packedSplats.dispose();\n }\n constructGenerator(context) {\n const { transform, viewToObject, recolor } = context;\n const generator = dynoBlock(\n { index: "int" },\n { gsplat: Gsplat },\n ({ index }) => {\n if (!index) {\n throw new Error("index is undefined");\n }\n let gsplat = readPackedSplat(this.packedSplats.dyno, index);\n if (this.maxSh >= 1) {\n const { sh1Texture, sh2Texture, sh3Texture } = this.ensureShTextures();\n if (sh1Texture) {\n const viewCenterInObject = viewToObject.translate;\n const { center } = splitGsplat(gsplat).outputs;\n const viewDir = normalize(sub(center, viewCenterInObject));\n let rgb = evaluateSH1(gsplat, sh1Texture, viewDir);\n if (this.maxSh >= 2 && sh2Texture) {\n rgb = add(rgb, evaluateSH2(gsplat, sh2Texture, viewDir));\n }\n if (this.maxSh >= 3 && sh3Texture) {\n rgb = add(rgb, evaluateSH3(gsplat, sh3Texture, viewDir));\n }\n let { rgba } = splitGsplat(gsplat).outputs;\n rgba = add(rgba, extendVec(rgb, dynoConst("float", 0)));\n gsplat = combineGsplat({ gsplat, rgba });\n }\n }\n if (this.splatRgba) {\n const rgba = readRgbaArray(this.splatRgba.dyno, index);\n gsplat = combineGsplat({ gsplat, rgba });\n }\n if (this.skinning) {\n gsplat = this.skinning.modify(gsplat);\n }\n if (this.objectModifier) {\n gsplat = this.objectModifier.apply({ gsplat }).gsplat;\n }\n gsplat = transform.applyGsplat(gsplat);\n const recolorRgba = mul(recolor, splitGsplat(gsplat).outputs.rgba);\n gsplat = combineGsplat({ gsplat, rgba: recolorRgba });\n if (this.rgbaDisplaceEdits) {\n gsplat = this.rgbaDisplaceEdits.modify(gsplat);\n }\n if (this.worldModifier) {\n gsplat = this.worldModifier.apply({ gsplat }).gsplat;\n }\n return { gsplat };\n }\n );\n this.generator = generator;\n }\n // Call this whenever something changes in the Gsplat processing pipeline,\n // for example changing maxSh or updating objectModifier or worldModifier.\n // Compiled generators are cached for efficiency and re-use when the same\n // pipeline structure emerges after successive changes.\n updateGenerator() {\n this.constructGenerator(this.context);\n }\n // This is called automatically by ForgeRenderer and you should not have to\n // call it. It updates parameters for the generated pipeline and calls\n // updateGenerator() if the pipeline needs to change.\n update({\n time,\n viewToWorld,\n deltaTime,\n globalEdits\n }) {\n var _a2;\n this.numSplats = this.packedSplats.numSplats;\n this.context.time.value = time;\n this.context.deltaTime.value = deltaTime;\n _SplatMesh.dynoTime.value = time;\n const { transform, viewToObject, recolor } = this.context;\n let updated = transform.update(this);\n if (this.context.viewToWorld.updateFromMatrix(viewToWorld) && this.enableViewToWorld) {\n updated = true;\n }\n const worldToView = viewToWorld.clone().invert();\n if (this.context.worldToView.updateFromMatrix(worldToView) && this.enableWorldToView) {\n updated = true;\n }\n const objectToWorld = new Matrix4().compose(\n transform.translate.value,\n transform.rotate.value,\n new Vector3().setScalar(transform.scale.value)\n );\n const worldToObject = objectToWorld.invert();\n const viewToObjectMatrix = worldToObject.multiply(viewToWorld);\n if (viewToObject.updateFromMatrix(viewToObjectMatrix) && (this.enableViewToObject || this.packedSplats.extra.sh1)) {\n updated = true;\n }\n const newRecolor = new Vector4(\n this.recolor.r,\n this.recolor.g,\n this.recolor.b,\n this.opacity\n );\n if (!newRecolor.equals(recolor.value)) {\n recolor.value.copy(newRecolor);\n updated = true;\n }\n const edits = this.editable ? (this.edits ?? []).concat(globalEdits) : [];\n if (this.editable && !this.edits) {\n this.traverseVisible((node) => {\n if (node instanceof SplatEdit) {\n edits.push(node);\n }\n });\n }\n edits.sort((a, b) => a.ordering - b.ordering);\n const editsSdfs = edits.map((edit) => {\n if (edit.sdfs != null) {\n return { edit, sdfs: edit.sdfs };\n }\n const sdfs = [];\n edit.traverseVisible((node) => {\n if (node instanceof SplatEditSdf) {\n sdfs.push(node);\n }\n });\n return { edit, sdfs };\n });\n if (editsSdfs.length > 0 && !this.rgbaDisplaceEdits) {\n const edits2 = editsSdfs.length;\n const sdfs = editsSdfs.reduce(\n (total, edit) => total + edit.sdfs.length,\n 0\n );\n this.rgbaDisplaceEdits = new SplatEdits({\n maxEdits: edits2,\n maxSdfs: sdfs\n });\n this.updateGenerator();\n }\n if (this.rgbaDisplaceEdits) {\n const editResult = this.rgbaDisplaceEdits.update(editsSdfs);\n updated || (updated = editResult.updated);\n if (editResult.dynoUpdated) {\n this.updateGenerator();\n }\n }\n if (updated) {\n this.updateVersion();\n }\n (_a2 = this.onFrame) == null ? void 0 : _a2.call(this, { mesh: this, time, deltaTime });\n }\n // This method conforms to the standard THREE.Raycaster API, performing object-ray\n // intersections using this method to populate the provided intersects[] array\n // with each intersection point.\n raycast(raycaster, intersects) {\n if (!this.packedSplats.packedArray || !this.packedSplats.numSplats) {\n return;\n }\n const { near, far, ray } = raycaster;\n const worldToMesh = this.matrixWorld.clone().invert();\n const worldToMeshRot = new Matrix3().setFromMatrix4(worldToMesh);\n const origin = ray.origin.clone().applyMatrix4(worldToMesh);\n const direction = ray.direction.clone().applyMatrix3(worldToMeshRot);\n const scales = new Vector3();\n worldToMesh.decompose(new Vector3(), new Quaternion(), scales);\n (scales.x * scales.y * scales.z) ** (1 / 3);\n const RAYCAST_ELLIPSOID = true;\n const distances = raycast_splats(\n origin.x,\n origin.y,\n origin.z,\n direction.x,\n direction.y,\n direction.z,\n near,\n far,\n this.packedSplats.numSplats,\n this.packedSplats.packedArray,\n RAYCAST_ELLIPSOID\n );\n for (const distance of distances) {\n const point = ray.direction.clone().multiplyScalar(distance).add(ray.origin);\n intersects.push({\n distance,\n point,\n object: this\n });\n }\n }\n ensureShTextures() {\n if (!this.packedSplats.extra.sh1) {\n return {};\n }\n let sh1Texture = this.packedSplats.extra.sh1Texture;\n if (!sh1Texture) {\n let sh1 = this.packedSplats.extra.sh1;\n const { width, height, depth, maxSplats } = getTextureSize(\n sh1.length / 2\n );\n if (sh1.length < maxSplats * 2) {\n const newSh1 = new Uint32Array(maxSplats * 2);\n newSh1.set(sh1);\n this.packedSplats.extra.sh1 = newSh1;\n sh1 = newSh1;\n }\n const texture = new DataArrayTexture(sh1, width, height, depth);\n texture.format = RGIntegerFormat;\n texture.type = UnsignedIntType;\n texture.internalFormat = "RG32UI";\n texture.needsUpdate = true;\n sh1Texture = new DynoUsampler2DArray({\n value: texture,\n key: "sh1"\n });\n this.packedSplats.extra.sh1Texture = sh1Texture;\n }\n if (!this.packedSplats.extra.sh2) {\n return { sh1Texture };\n }\n let sh2Texture = this.packedSplats.extra.sh2Texture;\n if (!sh2Texture) {\n let sh2 = this.packedSplats.extra.sh2;\n const { width, height, depth, maxSplats } = getTextureSize(\n sh2.length / 4\n );\n if (sh2.length < maxSplats * 4) {\n const newSh2 = new Uint32Array(maxSplats * 4);\n newSh2.set(sh2);\n this.packedSplats.extra.sh2 = newSh2;\n sh2 = newSh2;\n }\n const texture = new DataArrayTexture(sh2, width, height, depth);\n texture.format = RGBAIntegerFormat;\n texture.type = UnsignedIntType;\n texture.internalFormat = "RGBA32UI";\n texture.needsUpdate = true;\n sh2Texture = new DynoUsampler2DArray({\n value: texture,\n key: "sh2"\n });\n this.packedSplats.extra.sh2Texture = sh2Texture;\n }\n if (!this.packedSplats.extra.sh3) {\n return { sh1Texture, sh2Texture };\n }\n let sh3Texture = this.packedSplats.extra.sh3Texture;\n if (!sh3Texture) {\n let sh3 = this.packedSplats.extra.sh3;\n const { width, height, depth, maxSplats } = getTextureSize(\n sh3.length / 4\n );\n if (sh3.length < maxSplats * 4) {\n const newSh3 = new Uint32Array(maxSplats * 4);\n newSh3.set(sh3);\n this.packedSplats.extra.sh3 = newSh3;\n sh3 = newSh3;\n }\n const texture = new DataArrayTexture(sh3, width, height, depth);\n texture.format = RGBAIntegerFormat;\n texture.type = UnsignedIntType;\n texture.internalFormat = "RGBA32UI";\n texture.needsUpdate = true;\n sh3Texture = new DynoUsampler2DArray({\n value: texture,\n key: "sh3"\n });\n this.packedSplats.extra.sh3Texture = sh3Texture;\n }\n return { sh1Texture, sh2Texture, sh3Texture };\n }\n };\n _SplatMesh.staticInitialized = _SplatMesh.staticInitialize();\n _SplatMesh.isStaticInitialized = false;\n _SplatMesh.dynoTime = new DynoFloat({ value: 0 });\n let SplatMesh = _SplatMesh;\n const defineEvaluateSH1 = unindent(`\n vec3 evaluateSH1(Gsplat gsplat, usampler2DArray sh1, vec3 viewDir) {\n // Extract sint7 values packed into 2 x uint32\n uvec2 packed = texelFetch(sh1, splatTexCoord(gsplat.index), 0).rg;\n vec3 sh1_0 = vec3(ivec3(\n int(packed.x << 25u) >> 25,\n int(packed.x << 18u) >> 25,\n int(packed.x << 11u) >> 25\n )) / 63.0;\n vec3 sh1_1 = vec3(ivec3(\n int(packed.x << 4u) >> 25,\n int((packed.x >> 3u) | (packed.y << 29u)) >> 25,\n int(packed.y << 22u) >> 25\n )) / 63.0;\n vec3 sh1_2 = vec3(ivec3(\n int(packed.y << 15u) >> 25,\n int(packed.y << 8u) >> 25,\n int(packed.y << 1u) >> 25\n )) / 63.0;\n\n return sh1_0 * (-0.4886025 * viewDir.y)\n + sh1_1 * (0.4886025 * viewDir.z)\n + sh1_2 * (-0.4886025 * viewDir.x);\n }\n`);\n const defineEvaluateSH2 = unindent(`\n vec3 evaluateSH2(Gsplat gsplat, usampler2DArray sh2, vec3 viewDir) {\n // Extract sint8 values packed into 4 x uint32\n uvec4 packed = texelFetch(sh2, splatTexCoord(gsplat.index), 0);\n vec3 sh2_0 = vec3(ivec3(\n int(packed.x << 24u) >> 24,\n int(packed.x << 16u) >> 24,\n int(packed.x << 8u) >> 24\n )) / 127.0;\n vec3 sh2_1 = vec3(ivec3(\n int(packed.x) >> 24,\n int(packed.y << 24u) >> 24,\n int(packed.y << 16u) >> 24\n )) / 127.0;\n vec3 sh2_2 = vec3(ivec3(\n int(packed.y << 8u) >> 24,\n int(packed.y) >> 24,\n int(packed.z << 24u) >> 24\n )) / 127.0;\n vec3 sh2_3 = vec3(ivec3(\n int(packed.z << 16u) >> 24,\n int(packed.z << 8u) >> 24,\n int(packed.z) >> 24\n )) / 127.0;\n vec3 sh2_4 = vec3(ivec3(\n int(packed.w << 24u) >> 24,\n int(packed.w << 16u) >> 24,\n int(packed.w << 8u) >> 24\n )) / 127.0;\n\n return sh2_0 * (1.0925484 * viewDir.x * viewDir.y)\n + sh2_1 * (1.0925484 * viewDir.y * viewDir.z)\n + sh2_2 * (0.3153915 * (2.0 * viewDir.z * viewDir.z - viewDir.x * viewDir.x - viewDir.y * viewDir.y))\n + sh2_3 * (1.0925484 * viewDir.x * viewDir.z)\n + sh2_4 * (0.5462742 * (viewDir.x * viewDir.x - viewDir.y * viewDir.y));\n }\n`);\n const defineEvaluateSH3 = unindent(`\n vec3 evaluateSH3(Gsplat gsplat, usampler2DArray sh3, vec3 viewDir) {\n // Extract sint6 values packed into 4 x uint32\n uvec4 packed = texelFetch(sh3, splatTexCoord(gsplat.index), 0);\n vec3 sh3_0 = vec3(ivec3(\n int(packed.x << 26u) >> 26,\n int(packed.x << 20u) >> 26,\n int(packed.x << 14u) >> 26\n )) / 31.0;\n vec3 sh3_1 = vec3(ivec3(\n int(packed.x << 8u) >> 26,\n int(packed.x << 2u) >> 26,\n int((packed.x >> 4u) | (packed.y << 28u)) >> 26\n )) / 31.0;\n vec3 sh3_2 = vec3(ivec3(\n int(packed.y << 22u) >> 26,\n int(packed.y << 16u) >> 26,\n int(packed.y << 10u) >> 26\n )) / 31.0;\n vec3 sh3_3 = vec3(ivec3(\n int(packed.y << 4u) >> 26,\n int((packed.y >> 2u) | (packed.z << 30u)) >> 26,\n int(packed.z << 24u) >> 26\n )) / 31.0;\n vec3 sh3_4 = vec3(ivec3(\n int(packed.z << 18u) >> 26,\n int(packed.z << 12u) >> 26,\n int(packed.z << 6u) >> 26\n )) / 31.0;\n vec3 sh3_5 = vec3(ivec3(\n int(packed.z) >> 26,\n int(packed.w << 26u) >> 26,\n int(packed.w << 20u) >> 26\n )) / 31.0;\n vec3 sh3_6 = vec3(ivec3(\n int(packed.w << 14u) >> 26,\n int(packed.w << 8u) >> 26,\n int(packed.w << 2u) >> 26\n )) / 31.0;\n\n float xx = viewDir.x * viewDir.x;\n float yy = viewDir.y * viewDir.y;\n float zz = viewDir.z * viewDir.z;\n float xy = viewDir.x * viewDir.y;\n float yz = viewDir.y * viewDir.z;\n float zx = viewDir.z * viewDir.x;\n\n return sh3_0 * (-0.5900436 * viewDir.y * (3.0 * xx - yy))\n + sh3_1 * (2.8906114 * xy * viewDir.z) +\n + sh3_2 * (-0.4570458 * viewDir.y * (4.0 * zz - xx - yy))\n + sh3_3 * (0.3731763 * viewDir.z * (2.0 * zz - 3.0 * xx - 3.0 * yy))\n + sh3_4 * (-0.4570458 * viewDir.x * (4.0 * zz - xx - yy))\n + sh3_5 * (1.4453057 * viewDir.z * (xx - yy))\n + sh3_6 * (-0.5900436 * viewDir.x * (xx - 3.0 * yy));\n }\n`);\n function evaluateSH1(gsplat, sh1, viewDir) {\n return dyno({\n inTypes: { gsplat: Gsplat, sh1: "usampler2DArray", viewDir: "vec3" },\n outTypes: { rgb: "vec3" },\n inputs: { gsplat, sh1, viewDir },\n globals: () => [defineGsplat, defineEvaluateSH1],\n statements: ({ inputs, outputs }) => {\n const statements = unindentLines(`\n if (isGsplatActive(${inputs.gsplat}.flags)) {\n ${outputs.rgb} = evaluateSH1(${inputs.gsplat}, ${inputs.sh1}, ${inputs.viewDir});\n } else {\n ${outputs.rgb} = vec3(0.0);\n }\n `);\n return statements;\n }\n }).outputs.rgb;\n }\n function evaluateSH2(gsplat, sh2, viewDir) {\n return dyno({\n inTypes: { gsplat: Gsplat, sh2: "usampler2DArray", viewDir: "vec3" },\n outTypes: { rgb: "vec3" },\n inputs: { gsplat, sh2, viewDir },\n globals: () => [defineGsplat, defineEvaluateSH2],\n statements: ({ inputs, outputs }) => unindentLines(`\n if (isGsplatActive(${inputs.gsplat}.flags)) {\n ${outputs.rgb} = evaluateSH2(${inputs.gsplat}, ${inputs.sh2}, ${inputs.viewDir});\n } else {\n ${outputs.rgb} = vec3(0.0);\n }\n `)\n }).outputs.rgb;\n }\n function evaluateSH3(gsplat, sh3, viewDir) {\n return dyno({\n inTypes: { gsplat: Gsplat, sh3: "usampler2DArray", viewDir: "vec3" },\n outTypes: { rgb: "vec3" },\n inputs: { gsplat, sh3, viewDir },\n globals: () => [defineGsplat, defineEvaluateSH3],\n statements: ({ inputs, outputs }) => unindentLines(`\n if (isGsplatActive(${inputs.gsplat}.flags)) {\n ${outputs.rgb} = evaluateSH3(${inputs.gsplat}, ${inputs.sh3}, ${inputs.viewDir});\n } else {\n ${outputs.rgb} = vec3(0.0);\n }\n `)\n }).outputs.rgb;\n }\n function WorkerWrapper(options) {\n return new Worker(\n self.location.href,\n {\n name: options == null ? void 0 : options.name\n }\n );\n }\n class SplatWorker {\n constructor() {\n this.messages = {};\n this.messageIdNext = 0;\n this.worker = new WorkerWrapper();\n this.worker.onmessage = (event) => this.onMessage(event);\n }\n makeMessageId() {\n return ++this.messageIdNext;\n }\n makeMessagePromiseId() {\n const id = this.makeMessageId();\n const promise = new Promise((resolve, reject) => {\n this.messages[id] = { resolve, reject };\n });\n return { id, promise };\n }\n onMessage(event) {\n const { id, result, error } = event.data;\n const handler = this.messages[id];\n if (handler) {\n delete this.messages[id];\n if (error) {\n handler.reject(error);\n } else {\n handler.resolve(result);\n }\n }\n }\n // Invoke an RPC on the worker with the given name and arguments.\n // The normal usage of a worker is to run one activity at a time,\n // but this function allows for concurrent calls, tagging each request\n // with a unique message Id and awaiting a response to that same Id.\n // The method will automatically transfer any ArrayBuffers in the\n // arguments to the worker. If you\'d like to transfer a copy of a\n // buffer then you must clone it before passing to this function.\n async call(name, args) {\n const { id, promise } = this.makeMessagePromiseId();\n this.worker.postMessage(\n { name, args, id },\n { transfer: getArrayBuffers(args) }\n );\n return promise;\n }\n }\n let maxWorkers = 4;\n let numWorkers = 0;\n const freeWorkers = [];\n const workerQueue = [];\n async function allocWorker() {\n const worker = freeWorkers.shift();\n if (worker) {\n return worker;\n }\n if (numWorkers < maxWorkers) {\n const worker2 = new SplatWorker();\n numWorkers += 1;\n return worker2;\n }\n return new Promise((resolve) => {\n workerQueue.push(resolve);\n });\n }\n function freeWorker(worker) {\n if (numWorkers > maxWorkers) {\n numWorkers -= 1;\n return;\n }\n const waiter = workerQueue.shift();\n if (waiter) {\n waiter(worker);\n return;\n }\n freeWorkers.push(worker);\n }\n async function withWorker(callback) {\n const worker = await allocWorker();\n try {\n return await callback(worker);\n } finally {\n freeWorker(worker);\n }\n }\n var SplatFileType = /* @__PURE__ */ ((SplatFileType2) => {\n SplatFileType2["PLY"] = "ply";\n SplatFileType2["WLG0"] = "wlg0";\n SplatFileType2["SPZ"] = "spz";\n SplatFileType2["SPLAT"] = "splat";\n SplatFileType2["KSPLAT"] = "ksplat";\n return SplatFileType2;\n })(SplatFileType || {});\n function getSplatFileType(fileBytes) {\n const view = new DataView(fileBytes.buffer);\n if ((view.getUint32(0, true) & 16777215) === 7957616) {\n return "ply";\n }\n if (view.getUint32(0, true) === 809978967) {\n return "wlg0";\n }\n if ((view.getUint32(0, true) & 16777215) === 559903) {\n const header = decompressPartialGzip(fileBytes, 4);\n const gView = new DataView(header.buffer);\n if (gView.getUint32(0, true) === 1347635022) {\n return "spz";\n }\n return void 0;\n }\n return void 0;\n }\n function getFileExtension(pathOrUrl) {\n const noTrailing = pathOrUrl.split(/[?#]/, 1)[0];\n const lastSlash = Math.max(\n noTrailing.lastIndexOf("/"),\n noTrailing.lastIndexOf("\\\\")\n );\n const filename = noTrailing.slice(lastSlash + 1);\n const lastDot = filename.lastIndexOf(".");\n if (lastDot <= 0 || lastDot === filename.length - 1) {\n return "";\n }\n return filename.slice(lastDot + 1).toLowerCase();\n }\n function getSplatFileTypeFromPath(pathOrUrl) {\n const extension = getFileExtension(pathOrUrl);\n if (extension === "ply") {\n return "ply";\n }\n if (extension === "wlg") {\n return "wlg0";\n }\n if (extension === "spz") {\n return "spz";\n }\n if (extension === "splat") {\n return "splat";\n }\n if (extension === "ksplat") {\n return "ksplat";\n }\n return void 0;\n }\n async function unpackSplats({\n input,\n fileType,\n pathOrUrl\n }) {\n const fileBytes = input instanceof ArrayBuffer ? new Uint8Array(input) : input;\n let splatFileType = fileType;\n if (!fileType) {\n splatFileType = getSplatFileType(fileBytes);\n if (!splatFileType && pathOrUrl) {\n splatFileType = getSplatFileTypeFromPath(pathOrUrl);\n }\n }\n switch (splatFileType) {\n case "wlg0":\n return await withWorker(async (worker) => {\n const { packedArray, numSplats } = await worker.call("decodeWlg", {\n fileBytes\n });\n return { packedArray, numSplats };\n });\n case "ply": {\n const ply = new PlyReader({ fileBytes });\n await ply.parseHeader();\n const numSplats = ply.numSplats;\n const maxSplats = getTextureSize(numSplats).maxSplats;\n const args = { fileBytes, packedArray: new Uint32Array(maxSplats * 4) };\n return await withWorker(async (worker) => {\n const { packedArray, numSplats: numSplats2, extra } = await worker.call(\n "unpackPly",\n args\n );\n return { packedArray, numSplats: numSplats2, extra };\n });\n }\n case "spz": {\n return await withWorker(async (worker) => {\n const { packedArray, numSplats, extra } = await worker.call(\n "decodeSpz",\n {\n fileBytes\n }\n );\n return { packedArray, numSplats, extra };\n });\n }\n case "splat": {\n return await withWorker(async (worker) => {\n const { packedArray, numSplats } = await worker.call(\n "decodeAntiSplat",\n {\n fileBytes\n }\n );\n return { packedArray, numSplats };\n });\n }\n case "ksplat":\n return await withWorker(async (worker) => {\n const { packedArray, numSplats, extra } = await worker.call(\n "decodeKsplat",\n { fileBytes }\n );\n return { packedArray, numSplats, extra };\n });\n default: {\n throw new Error(`Unknown splat file type: ${splatFileType}`);\n }\n }\n }\n class SplatData {\n constructor({ maxSplats = 1 } = {}) {\n this.numSplats = 0;\n this.maxSplats = getTextureSize(maxSplats).maxSplats;\n this.centers = new Float32Array(this.maxSplats * 3);\n this.scales = new Float32Array(this.maxSplats * 3);\n this.quaternions = new Float32Array(this.maxSplats * 4);\n this.opacities = new Float32Array(this.maxSplats);\n this.colors = new Float32Array(this.maxSplats * 3);\n }\n pushSplat() {\n const index = this.numSplats;\n this.ensureIndex(index);\n this.numSplats += 1;\n return index;\n }\n unpushSplat(index) {\n if (index === this.numSplats - 1) {\n this.numSplats -= 1;\n } else {\n throw new Error("Cannot unpush splat from non-last position");\n }\n }\n ensureCapacity(numSplats) {\n if (numSplats > this.maxSplats) {\n const targetSplats = Math.max(numSplats, this.maxSplats * 2);\n const newCenters = new Float32Array(targetSplats * 3);\n const newScales = new Float32Array(targetSplats * 3);\n const newQuaternions = new Float32Array(targetSplats * 4);\n const newOpacities = new Float32Array(targetSplats);\n const newColors = new Float32Array(targetSplats * 3);\n newCenters.set(this.centers);\n newScales.set(this.scales);\n newQuaternions.set(this.quaternions);\n newOpacities.set(this.opacities);\n newColors.set(this.colors);\n this.centers = newCenters;\n this.scales = newScales;\n this.quaternions = newQuaternions;\n this.opacities = newOpacities;\n this.colors = newColors;\n if (this.sh1) {\n const newSh1 = new Float32Array(targetSplats * 9);\n newSh1.set(this.sh1);\n this.sh1 = newSh1;\n }\n if (this.sh2) {\n const newSh2 = new Float32Array(targetSplats * 15);\n newSh2.set(this.sh2);\n this.sh2 = newSh2;\n }\n if (this.sh3) {\n const newSh3 = new Float32Array(targetSplats * 21);\n newSh3.set(this.sh3);\n this.sh3 = newSh3;\n }\n this.maxSplats = targetSplats;\n }\n }\n ensureIndex(index) {\n this.ensureCapacity(index + 1);\n }\n setCenter(index, x2, y, z) {\n this.centers[index * 3] = x2;\n this.centers[index * 3 + 1] = y;\n this.centers[index * 3 + 2] = z;\n }\n setScale(index, scaleX, scaleY, scaleZ) {\n this.scales[index * 3] = scaleX;\n this.scales[index * 3 + 1] = scaleY;\n this.scales[index * 3 + 2] = scaleZ;\n }\n setQuaternion(index, x2, y, z, w) {\n this.quaternions[index * 4] = x2;\n this.quaternions[index * 4 + 1] = y;\n this.quaternions[index * 4 + 2] = z;\n this.quaternions[index * 4 + 3] = w;\n }\n setOpacity(index, opacity) {\n this.opacities[index] = opacity;\n }\n setColor(index, r, g, b) {\n this.colors[index * 3] = r;\n this.colors[index * 3 + 1] = g;\n this.colors[index * 3 + 2] = b;\n }\n setSh1(index, sh1) {\n if (!this.sh1) {\n this.sh1 = new Float32Array(this.maxSplats * 9);\n }\n for (let j = 0; j < 9; ++j) {\n this.sh1[index * 9 + j] = sh1[j];\n }\n }\n setSh2(index, sh2) {\n if (!this.sh2) {\n this.sh2 = new Float32Array(this.maxSplats * 15);\n }\n for (let j = 0; j < 15; ++j) {\n this.sh2[index * 15 + j] = sh2[j];\n }\n }\n setSh3(index, sh3) {\n if (!this.sh3) {\n this.sh3 = new Float32Array(this.maxSplats * 21);\n }\n for (let j = 0; j < 21; ++j) {\n this.sh3[index * 21 + j] = sh3[j];\n }\n }\n }\n class SpzReader {\n constructor({ fileBytes }) {\n this.fileBytes = fileBytes instanceof ArrayBuffer ? new Uint8Array(fileBytes) : fileBytes;\n this.reader = new GunzipReader({ fileBytes: this.fileBytes });\n const header = new DataView(this.reader.read(16).buffer);\n if (header.getUint32(0, true) !== 1347635022) {\n throw new Error("Invalid SPZ file");\n }\n this.version = header.getUint32(4, true);\n if (this.version < 1 || this.version > 2) {\n throw new Error(`Unsupported SPZ version: ${this.version}`);\n }\n this.numSplats = header.getUint32(8, true);\n this.shDegree = header.getUint8(12);\n this.fractionalBits = header.getUint8(13);\n this.flags = header.getUint8(14);\n this.flagAntiAlias = (this.flags & 1) !== 0;\n this.reserved = header.getUint8(15);\n this.parsed = false;\n }\n parseSplats(centerCallback, alphaCallback, rgbCallback, scalesCallback, quatCallback, shCallback) {\n if (this.parsed) {\n throw new Error("SPZ file already parsed");\n }\n this.parsed = true;\n if (this.version === 1) {\n const centerBytes = this.reader.read(this.numSplats * 3 * 2);\n const centerUint16 = new Uint16Array(centerBytes.buffer);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i3 = i2 * 3;\n const x2 = fromHalf(centerUint16[i3]);\n const y = fromHalf(centerUint16[i3 + 1]);\n const z = fromHalf(centerUint16[i3 + 2]);\n centerCallback == null ? void 0 : centerCallback(i2, x2, y, z);\n }\n } else if (this.version === 2) {\n const fixed = 1 << this.fractionalBits;\n const centerBytes = this.reader.read(this.numSplats * 3 * 3);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i9 = i2 * 9;\n const x2 = ((centerBytes[i9 + 2] << 24 | centerBytes[i9 + 1] << 16 | centerBytes[i9] << 8) >> 8) / fixed;\n const y = ((centerBytes[i9 + 5] << 24 | centerBytes[i9 + 4] << 16 | centerBytes[i9 + 3] << 8) >> 8) / fixed;\n const z = ((centerBytes[i9 + 8] << 24 | centerBytes[i9 + 7] << 16 | centerBytes[i9 + 6] << 8) >> 8) / fixed;\n centerCallback == null ? void 0 : centerCallback(i2, x2, y, z);\n }\n } else {\n throw new Error("Unreachable");\n }\n {\n const bytes = this.reader.read(this.numSplats);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n alphaCallback == null ? void 0 : alphaCallback(i2, bytes[i2] / 255);\n }\n }\n {\n const rgbBytes = this.reader.read(this.numSplats * 3);\n const scale = SH_C0 / 0.15;\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i3 = i2 * 3;\n const r = (rgbBytes[i3] / 255 - 0.5) * scale + 0.5;\n const g = (rgbBytes[i3 + 1] / 255 - 0.5) * scale + 0.5;\n const b = (rgbBytes[i3 + 2] / 255 - 0.5) * scale + 0.5;\n rgbCallback == null ? void 0 : rgbCallback(i2, r, g, b);\n }\n }\n {\n const scalesBytes = this.reader.read(this.numSplats * 3);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i3 = i2 * 3;\n const scaleX = Math.exp(scalesBytes[i3] / 16 - 10);\n const scaleY = Math.exp(scalesBytes[i3 + 1] / 16 - 10);\n const scaleZ = Math.exp(scalesBytes[i3 + 2] / 16 - 10);\n scalesCallback == null ? void 0 : scalesCallback(i2, scaleX, scaleY, scaleZ);\n }\n }\n {\n const quatBytes = this.reader.read(this.numSplats * 3);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i3 = i2 * 3;\n const quatX = quatBytes[i3] / 127.5 - 1;\n const quatY = quatBytes[i3 + 1] / 127.5 - 1;\n const quatZ = quatBytes[i3 + 2] / 127.5 - 1;\n const quatW = Math.sqrt(\n Math.max(0, 1 - quatX * quatX - quatY * quatY - quatZ * quatZ)\n );\n quatCallback == null ? void 0 : quatCallback(i2, quatX, quatY, quatZ, quatW);\n }\n }\n if (shCallback && this.shDegree >= 1) {\n const sh1 = new Float32Array(3 * 3);\n const sh2 = this.shDegree >= 2 ? new Float32Array(5 * 3) : void 0;\n const sh3 = this.shDegree >= 3 ? new Float32Array(7 * 3) : void 0;\n const shBytes = this.reader.read(\n this.numSplats * SH_DEGREE_TO_VECS[this.shDegree] * 3\n );\n let offset = 0;\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n for (let j = 0; j < 9; ++j) {\n sh1[j] = (shBytes[offset + j] - 128) / 128;\n }\n offset += 9;\n if (sh2) {\n for (let j = 0; j < 15; ++j) {\n sh2[j] = (shBytes[offset + j] - 128) / 128;\n }\n offset += 15;\n }\n if (sh3) {\n for (let j = 0; j < 21; ++j) {\n sh3[j] = (shBytes[offset + j] - 128) / 128;\n }\n offset += 21;\n }\n shCallback == null ? void 0 : shCallback(i2, sh1, sh2, sh3);\n }\n }\n }\n }\n const SH_DEGREE_TO_VECS = { 1: 3, 2: 8, 3: 15 };\n const SH_C0 = 0.28209479177387814;\n const SPZ_MAGIC = 1347635022;\n const SPZ_VERSION = 2;\n const FLAG_ANTIALIASED = 1;\n class SpzWriter {\n constructor({\n numSplats,\n shDegree,\n fractionalBits = 12,\n flagAntiAlias = true\n }) {\n this.clippedCount = 0;\n const splatSize = 9 + 1 + 3 + 3 + 3 + (shDegree >= 1 ? 9 : 0) + (shDegree >= 2 ? 15 : 0) + (shDegree >= 3 ? 21 : 0);\n const bufferSize = 16 + numSplats * splatSize;\n this.buffer = new ArrayBuffer(bufferSize);\n this.view = new DataView(this.buffer);\n this.view.setUint32(0, SPZ_MAGIC, true);\n this.view.setUint32(4, SPZ_VERSION, true);\n this.view.setUint32(8, numSplats, true);\n this.view.setUint8(12, shDegree);\n this.view.setUint8(13, fractionalBits);\n this.view.setUint8(14, flagAntiAlias ? FLAG_ANTIALIASED : 0);\n this.view.setUint8(15, 0);\n this.numSplats = numSplats;\n this.shDegree = shDegree;\n this.fractionalBits = fractionalBits;\n this.fraction = 1 << fractionalBits;\n this.flagAntiAlias = flagAntiAlias;\n }\n setCenter(index, x2, y, z) {\n const xRounded = Math.round(x2 * this.fraction);\n const xInt = Math.max(-8388607, Math.min(8388607, xRounded));\n const yRounded = Math.round(y * this.fraction);\n const yInt = Math.max(-8388607, Math.min(8388607, yRounded));\n const zRounded = Math.round(z * this.fraction);\n const zInt = Math.max(-8388607, Math.min(8388607, zRounded));\n const clipped = xRounded !== xInt || yRounded !== yInt || zRounded !== zInt;\n if (clipped) {\n this.clippedCount += 1;\n }\n const i9 = index * 9;\n const base = 16 + i9;\n this.view.setUint8(base, xInt & 255);\n this.view.setUint8(base + 1, xInt >> 8 & 255);\n this.view.setUint8(base + 2, xInt >> 16 & 255);\n this.view.setUint8(base + 3, yInt & 255);\n this.view.setUint8(base + 4, yInt >> 8 & 255);\n this.view.setUint8(base + 5, yInt >> 16 & 255);\n this.view.setUint8(base + 6, zInt & 255);\n this.view.setUint8(base + 7, zInt >> 8 & 255);\n this.view.setUint8(base + 8, zInt >> 16 & 255);\n }\n setAlpha(index, alpha) {\n const base = 16 + this.numSplats * 9 + index;\n this.view.setUint8(\n base,\n Math.max(0, Math.min(255, Math.round(alpha * 255)))\n );\n }\n static scaleRgb(r) {\n const v = ((r - 0.5) / (SH_C0 / 0.15) + 0.5) * 255;\n return Math.max(0, Math.min(255, Math.round(v)));\n }\n setRgb(index, r, g, b) {\n const base = 16 + this.numSplats * 10 + index * 3;\n this.view.setUint8(base, SpzWriter.scaleRgb(r));\n this.view.setUint8(base + 1, SpzWriter.scaleRgb(g));\n this.view.setUint8(base + 2, SpzWriter.scaleRgb(b));\n }\n setScale(index, scaleX, scaleY, scaleZ) {\n const base = 16 + this.numSplats * 13 + index * 3;\n this.view.setUint8(\n base,\n Math.max(0, Math.min(255, Math.round((Math.log(scaleX) + 10) * 16)))\n );\n this.view.setUint8(\n base + 1,\n Math.max(0, Math.min(255, Math.round((Math.log(scaleY) + 10) * 16)))\n );\n this.view.setUint8(\n base + 2,\n Math.max(0, Math.min(255, Math.round((Math.log(scaleZ) + 10) * 16)))\n );\n }\n setQuat(index, quatX, quatY, quatZ, quatW) {\n const base = 16 + this.numSplats * 16 + index * 3;\n const quatNeg = quatW < 0;\n this.view.setUint8(\n base,\n Math.max(\n 0,\n Math.min(255, Math.round(((quatNeg ? -quatX : quatX) + 1) * 127.5))\n )\n );\n this.view.setUint8(\n base + 1,\n Math.max(\n 0,\n Math.min(255, Math.round(((quatNeg ? -quatY : quatY) + 1) * 127.5))\n )\n );\n this.view.setUint8(\n base + 2,\n Math.max(\n 0,\n Math.min(255, Math.round(((quatNeg ? -quatZ : quatZ) + 1) * 127.5))\n )\n );\n }\n static quantizeSh(sh, bits2) {\n const value = Math.round(sh * 128) + 128;\n const bucketSize = 1 << 8 - bits2;\n const quantized = Math.floor((value + bucketSize / 2) / bucketSize) * bucketSize;\n return Math.max(0, Math.min(255, quantized));\n }\n setSh(index, sh1, sh2, sh3) {\n const shVecs = SH_DEGREE_TO_VECS[this.shDegree] || 0;\n const base1 = 16 + this.numSplats * 19 + index * shVecs * 3;\n for (let j = 0; j < 9; ++j) {\n this.view.setUint8(base1 + j, SpzWriter.quantizeSh(sh1[j], 5));\n }\n if (sh2) {\n const base2 = base1 + 9;\n for (let j = 0; j < 15; ++j) {\n this.view.setUint8(base2 + j, SpzWriter.quantizeSh(sh2[j], 4));\n }\n if (sh3) {\n const base3 = base2 + 15;\n for (let j = 0; j < 21; ++j) {\n this.view.setUint8(base3 + j, SpzWriter.quantizeSh(sh3[j], 4));\n }\n }\n }\n }\n async finalize() {\n const input = new Uint8Array(this.buffer);\n const stream = new ReadableStream({\n async start(controller) {\n controller.enqueue(input);\n controller.close();\n }\n });\n const compressed = stream.pipeThrough(new CompressionStream("gzip"));\n const response = new Response(compressed);\n const buffer = await response.arrayBuffer();\n console.log(\n "Compressed",\n input.length,\n "bytes to",\n buffer.byteLength,\n "bytes"\n );\n return new Uint8Array(buffer);\n }\n }\n async function transcodeSpz(input) {\n var _a2, _b2, _c;\n const splats = new SplatData();\n const {\n inputs,\n clipXyz,\n maxSh,\n fractionalBits = 12,\n opacityThreshold\n } = input;\n for (const input2 of inputs) {\n let transformPos2 = function(pos) {\n pos.multiplyScalar(scale);\n pos.applyQuaternion(quaternion);\n pos.add(translate);\n return pos;\n }, transformScales = function(scales) {\n scales.multiplyScalar(scale);\n return scales;\n }, transformQuaternion = function(quat) {\n quat.premultiply(quaternion);\n return quat;\n }, withinClip = function(p) {\n return !clip || clip.containsPoint(p);\n }, withinOpacity = function(opacity) {\n return opacityThreshold !== void 0 ? opacity >= opacityThreshold : true;\n };\n const scale = ((_a2 = input2.transform) == null ? void 0 : _a2.scale) ?? 1;\n const quaternion = new Quaternion().fromArray(\n ((_b2 = input2.transform) == null ? void 0 : _b2.quaternion) ?? [0, 0, 0, 1]\n );\n const translate = new Vector3().fromArray(\n ((_c = input2.transform) == null ? void 0 : _c.translate) ?? [0, 0, 0]\n );\n const clip = clipXyz ? new Box3(\n new Vector3().fromArray(clipXyz.min),\n new Vector3().fromArray(clipXyz.max)\n ) : void 0;\n let fileType = input2.fileType;\n if (!fileType) {\n fileType = getSplatFileType(input2.fileBytes);\n if (!fileType && input2.pathOrUrl) {\n fileType = getSplatFileTypeFromPath(input2.pathOrUrl);\n }\n }\n switch (fileType) {\n case SplatFileType.WLG0: {\n await __wbg_init();\n const decoded = decode_wlg(\n input2.fileBytes,\n SPLAT_TEX_WIDTH,\n SPLAT_TEX_HEIGHT\n );\n for (let i2 = 0; i2 < decoded.numSplats; ++i2) {\n let { center, scales, quaternion: quaternion2, opacity, color } = unpackSplat(\n decoded.packedSplats,\n i2\n );\n center = transformPos2(center);\n if (withinClip(center) && withinOpacity(opacity)) {\n const index = splats.pushSplat();\n splats.setCenter(index, center.x, center.y, center.z);\n scales = transformScales(scales);\n splats.setScale(index, scales.x, scales.y, scales.z);\n quaternion2 = transformQuaternion(quaternion2);\n splats.setQuaternion(\n index,\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n splats.setOpacity(index, opacity);\n splats.setColor(index, color.r, color.g, color.b);\n }\n }\n break;\n }\n case SplatFileType.PLY: {\n const ply = new PlyReader({ fileBytes: input2.fileBytes });\n await ply.parseHeader();\n let lastIndex = null;\n ply.parseSplats(\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n const center = transformPos2(new Vector3(x2, y, z));\n if (withinClip(center) && withinOpacity(opacity)) {\n lastIndex = splats.pushSplat();\n splats.setCenter(lastIndex, center.x, center.y, center.z);\n const scales = transformScales(\n new Vector3(scaleX, scaleY, scaleZ)\n );\n splats.setScale(lastIndex, scales.x, scales.y, scales.z);\n const quaternion2 = transformQuaternion(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n splats.setQuaternion(\n lastIndex,\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n splats.setOpacity(lastIndex, opacity);\n splats.setColor(lastIndex, r, g, b);\n } else {\n lastIndex = null;\n }\n },\n (index, sh1, sh2, sh3) => {\n if (sh1 && lastIndex !== null) {\n splats.setSh1(lastIndex, sh1);\n }\n if (sh2 && lastIndex !== null) {\n splats.setSh2(lastIndex, sh2);\n }\n if (sh3 && lastIndex !== null) {\n splats.setSh3(lastIndex, sh3);\n }\n }\n );\n break;\n }\n case SplatFileType.SPZ: {\n const spz2 = new SpzReader({ fileBytes: input2.fileBytes });\n const mapping = new Int32Array(spz2.numSplats);\n mapping.fill(-1);\n const centers = new Float32Array(spz2.numSplats * 3);\n const center = new Vector3();\n spz2.parseSplats(\n (index, x2, y, z) => {\n const center2 = transformPos2(new Vector3(x2, y, z));\n centers[index * 3] = center2.x;\n centers[index * 3 + 1] = center2.y;\n centers[index * 3 + 2] = center2.z;\n },\n (index, alpha) => {\n center.fromArray(centers, index * 3);\n if (withinClip(center) && withinOpacity(alpha)) {\n mapping[index] = splats.pushSplat();\n splats.setCenter(mapping[index], center.x, center.y, center.z);\n splats.setOpacity(mapping[index], alpha);\n }\n },\n (index, r, g, b) => {\n if (mapping[index] >= 0) {\n splats.setColor(mapping[index], r, g, b);\n }\n },\n (index, scaleX, scaleY, scaleZ) => {\n if (mapping[index] >= 0) {\n const scales = transformScales(\n new Vector3(scaleX, scaleY, scaleZ)\n );\n splats.setScale(mapping[index], scales.x, scales.y, scales.z);\n }\n },\n (index, quatX, quatY, quatZ, quatW) => {\n if (mapping[index] >= 0) {\n const quaternion2 = transformQuaternion(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n splats.setQuaternion(\n mapping[index],\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n }\n },\n (index, sh1, sh2, sh3) => {\n if (mapping[index] >= 0) {\n splats.setSh1(mapping[index], sh1);\n if (sh2) {\n splats.setSh2(mapping[index], sh2);\n }\n if (sh3) {\n splats.setSh3(mapping[index], sh3);\n }\n }\n }\n );\n break;\n }\n case SplatFileType.SPLAT:\n decodeAntiSplat(\n input2.fileBytes,\n (numSplats) => {\n },\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n const center = transformPos2(new Vector3(x2, y, z));\n if (withinClip(center) && withinOpacity(opacity)) {\n const index2 = splats.pushSplat();\n splats.setCenter(index2, center.x, center.y, center.z);\n const scales = transformScales(\n new Vector3(scaleX, scaleY, scaleZ)\n );\n splats.setScale(index2, scales.x, scales.y, scales.z);\n const quaternion2 = transformQuaternion(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n splats.setQuaternion(\n index2,\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n splats.setOpacity(index2, opacity);\n splats.setColor(index2, r, g, b);\n }\n }\n );\n break;\n case SplatFileType.KSPLAT: {\n let lastIndex = null;\n decodeKsplat(\n input2.fileBytes,\n (numSplats) => {\n },\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n const center = transformPos2(new Vector3(x2, y, z));\n if (withinClip(center) && withinOpacity(opacity)) {\n lastIndex = splats.pushSplat();\n splats.setCenter(lastIndex, center.x, center.y, center.z);\n const scales = transformScales(\n new Vector3(scaleX, scaleY, scaleZ)\n );\n splats.setScale(lastIndex, scales.x, scales.y, scales.z);\n const quaternion2 = transformQuaternion(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n splats.setQuaternion(\n lastIndex,\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n splats.setOpacity(lastIndex, opacity);\n splats.setColor(lastIndex, r, g, b);\n } else {\n lastIndex = null;\n }\n },\n (index, sh1, sh2, sh3) => {\n if (lastIndex !== null) {\n splats.setSh1(lastIndex, sh1);\n if (sh2) {\n splats.setSh2(lastIndex, sh2);\n }\n if (sh3) {\n splats.setSh3(lastIndex, sh3);\n }\n }\n }\n );\n break;\n }\n default:\n throw new Error(`transcodeSpz not implemented for ${fileType}`);\n }\n }\n const shDegree = Math.min(\n maxSh ?? 3,\n splats.sh3 ? 3 : splats.sh2 ? 2 : splats.sh1 ? 1 : 0\n );\n const spz = new SpzWriter({\n numSplats: splats.numSplats,\n shDegree,\n fractionalBits,\n flagAntiAlias: true\n });\n for (let i2 = 0; i2 < splats.numSplats; ++i2) {\n const i3 = i2 * 3;\n const i4 = i2 * 4;\n spz.setCenter(\n i2,\n splats.centers[i3],\n splats.centers[i3 + 1],\n splats.centers[i3 + 2]\n );\n spz.setScale(\n i2,\n splats.scales[i3],\n splats.scales[i3 + 1],\n splats.scales[i3 + 2]\n );\n spz.setQuat(\n i2,\n splats.quaternions[i4],\n splats.quaternions[i4 + 1],\n splats.quaternions[i4 + 2],\n splats.quaternions[i4 + 3]\n );\n spz.setAlpha(i2, splats.opacities[i2]);\n spz.setRgb(\n i2,\n splats.colors[i3],\n splats.colors[i3 + 1],\n splats.colors[i3 + 2]\n );\n if (splats.sh1 && shDegree >= 1) {\n spz.setSh(\n i2,\n splats.sh1.slice(i2 * 9, (i2 + 1) * 9),\n shDegree >= 2 && splats.sh2 ? splats.sh2.slice(i2 * 15, (i2 + 1) * 15) : void 0,\n shDegree >= 3 && splats.sh3 ? splats.sh3.slice(i2 * 21, (i2 + 1) * 21) : void 0\n );\n }\n }\n const spzBytes = await spz.finalize();\n return { fileBytes: spzBytes, clippedCount: spz.clippedCount };\n }\n async function onMessage(event) {\n const { name, args, id } = event.data;\n let result = void 0;\n let error = void 0;\n try {\n switch (name) {\n case "unpackPly": {\n const { packedArray, fileBytes } = args;\n const decoded = await unpackPly({ packedArray, fileBytes });\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedArray,\n extra: decoded.extra\n };\n break;\n }\n case "decodeWlg": {\n const { fileBytes } = args;\n const decoded = decode_wlg(\n fileBytes,\n SPLAT_TEX_WIDTH,\n SPLAT_TEX_HEIGHT\n );\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedSplats\n };\n break;\n }\n case "decodeSpz": {\n const { fileBytes } = args;\n const decoded = unpackSpz(fileBytes);\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedArray,\n extra: decoded.extra\n };\n break;\n }\n case "decodeAntiSplat": {\n const { fileBytes } = args;\n const decoded = unpackAntiSplat(fileBytes);\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedArray\n };\n break;\n }\n case "decodeKsplat": {\n const { fileBytes } = args;\n const decoded = unpackKsplat(fileBytes);\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedArray,\n extra: decoded.extra\n };\n break;\n }\n case "sortSplats": {\n const { maxSplats, totalSplats, readback, ordering } = args;\n if (WASM_SPLAT_SORT) {\n result = {\n id,\n readback,\n ordering,\n activeSplats: old_sort_splats(\n maxSplats,\n totalSplats,\n readback,\n ordering\n )\n };\n }\n break;\n }\n case "sortDoubleSplats": {\n const { numSplats, readback, ordering } = args;\n result = {\n id,\n readback,\n ordering\n };\n if (WASM_SPLAT_SORT) {\n result = {\n id,\n readback,\n ordering,\n activeSplats: sort_splats(numSplats, readback, ordering)\n };\n }\n break;\n }\n case "transcodeSpz": {\n const input = args;\n const spzBytes = await transcodeSpz(input);\n result = {\n id,\n fileBytes: spzBytes,\n input\n };\n break;\n }\n default: {\n throw new Error(`Unknown name: ${name}`);\n }\n }\n } catch (e) {\n error = e;\n }\n self.postMessage(\n { id, result, error },\n { transfer: getArrayBuffers(result) }\n );\n }\n async function unpackPly({\n packedArray,\n fileBytes\n }) {\n const ply = new PlyReader({ fileBytes });\n await ply.parseHeader();\n const numSplats = ply.numSplats;\n const extra = {};\n const ZERO_CUTOFF = Math.exp(-20);\n ply.parseSplats(\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n setPackedSplat(\n packedArray,\n index,\n x2,\n y,\n z,\n scaleX < ZERO_CUTOFF ? 0 : Math.max(SCALE_MIN, scaleX),\n scaleY < ZERO_CUTOFF ? 0 : Math.max(SCALE_MIN, scaleY),\n scaleZ < ZERO_CUTOFF ? 0 : Math.max(SCALE_MIN, scaleZ),\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n },\n (index, sh1, sh2, sh3) => {\n if (sh1) {\n if (!extra.sh1) {\n extra.sh1 = new Uint32Array(numSplats * 2);\n }\n encodeSh1Rgb(extra.sh1, index, sh1);\n }\n if (sh2) {\n if (!extra.sh2) {\n extra.sh2 = new Uint32Array(numSplats * 4);\n }\n encodeSh2Rgb(extra.sh2, index, sh2);\n }\n if (sh3) {\n if (!extra.sh3) {\n extra.sh3 = new Uint32Array(numSplats * 4);\n }\n encodeSh3Rgb(extra.sh3, index, sh3);\n }\n }\n );\n return { packedArray, numSplats, extra };\n }\n function unpackSpz(fileBytes) {\n const spz = new SpzReader({ fileBytes });\n const numSplats = spz.numSplats;\n const maxSplats = computeMaxSplats(numSplats);\n const packedArray = new Uint32Array(maxSplats * 4);\n const extra = {};\n spz.parseSplats(\n (index, x2, y, z) => {\n setPackedSplatCenter(packedArray, index, x2, y, z);\n },\n (index, alpha) => {\n setPackedSplatOpacity(packedArray, index, alpha);\n },\n (index, r, g, b) => {\n setPackedSplatRgb(packedArray, index, r, g, b);\n },\n (index, scaleX, scaleY, scaleZ) => {\n setPackedSplatScales(packedArray, index, scaleX, scaleY, scaleZ);\n },\n (index, quatX, quatY, quatZ, quatW) => {\n setPackedSplatQuat(packedArray, index, quatX, quatY, quatZ, quatW);\n },\n (index, sh1, sh2, sh3) => {\n if (sh1) {\n if (!extra.sh1) {\n extra.sh1 = new Uint32Array(numSplats * 2);\n }\n encodeSh1Rgb(extra.sh1, index, sh1);\n }\n if (sh2) {\n if (!extra.sh2) {\n extra.sh2 = new Uint32Array(numSplats * 4);\n }\n encodeSh2Rgb(extra.sh2, index, sh2);\n }\n if (sh3) {\n if (!extra.sh3) {\n extra.sh3 = new Uint32Array(numSplats * 4);\n }\n encodeSh3Rgb(extra.sh3, index, sh3);\n }\n }\n );\n return { packedArray, numSplats, extra };\n }\n const DEPTH_INFINITY = 31744;\n const DEPTH_SIZE = DEPTH_INFINITY + 1;\n let depthArray = null;\n function oldSortSplats({\n totalSplats,\n readback,\n ordering\n }) {\n if (!depthArray) {\n depthArray = new Uint32Array(DEPTH_SIZE);\n }\n depthArray.fill(0);\n const readbackUint32 = readback.map((layer) => new Uint32Array(layer.buffer));\n const layerSize = readbackUint32[0].length;\n const numLayers = Math.ceil(totalSplats / layerSize);\n let layerBase = 0;\n for (let layer = 0; layer < numLayers; ++layer) {\n const readbackLayer = readbackUint32[layer];\n const layerSplats = Math.min(readbackLayer.length, totalSplats - layerBase);\n for (let i2 = 0; i2 < layerSplats; ++i2) {\n const pri = readbackLayer[i2] & 32767;\n if (pri < DEPTH_INFINITY) {\n depthArray[pri] += 1;\n }\n }\n layerBase += layerSplats;\n }\n let activeSplats = 0;\n for (let j = 0; j < DEPTH_SIZE; ++j) {\n const nextIndex = activeSplats + depthArray[j];\n depthArray[j] = activeSplats;\n activeSplats = nextIndex;\n }\n layerBase = 0;\n for (let layer = 0; layer < numLayers; ++layer) {\n const readbackLayer = readbackUint32[layer];\n const layerSplats = Math.min(readbackLayer.length, totalSplats - layerBase);\n for (let i2 = 0; i2 < layerSplats; ++i2) {\n const pri = readbackLayer[i2] & 32767;\n if (pri < DEPTH_INFINITY) {\n ordering[depthArray[pri]] = layerBase + i2;\n depthArray[pri] += 1;\n }\n }\n layerBase += layerSplats;\n }\n if (depthArray[DEPTH_SIZE - 1] !== activeSplats) {\n throw new Error(\n `Expected ${activeSplats} active splats but got ${depthArray[DEPTH_SIZE - 1]}`\n );\n }\n return { activeSplats, ordering };\n }\n function sortSplats({\n numSplats,\n readback,\n ordering\n }) {\n if (!depthArray) {\n depthArray = new Uint32Array(DEPTH_SIZE);\n }\n depthArray.fill(0);\n for (let i2 = 0; i2 < numSplats; ++i2) {\n const pri = readback[i2];\n if (pri < DEPTH_INFINITY) {\n depthArray[pri] += 1;\n }\n }\n let activeSplats = 0;\n for (let j = DEPTH_INFINITY - 1; j >= 0; --j) {\n const nextIndex = activeSplats + depthArray[j];\n depthArray[j] = activeSplats;\n activeSplats = nextIndex;\n }\n for (let i2 = 0; i2 < numSplats; ++i2) {\n const pri = readback[i2];\n if (pri < DEPTH_INFINITY) {\n ordering[depthArray[pri]] = i2;\n depthArray[pri] += 1;\n }\n }\n if (depthArray[0] !== activeSplats) {\n throw new Error(\n `Expected ${activeSplats} active splats but got ${depthArray[0]}`\n );\n }\n return { activeSplats, ordering };\n }\n const messageBuffer = [];\n function bufferMessage(event) {\n messageBuffer.push(event);\n }\n async function initialize() {\n self.addEventListener("message", bufferMessage);\n await __wbg_init();\n self.removeEventListener("message", bufferMessage);\n self.addEventListener("message", onMessage);\n for (const event of messageBuffer) {\n onMessage(event);\n }\n messageBuffer.length = 0;\n }\n initialize().catch(console.error);\n})();\n'; +const jsContent = '(function() {\n "use strict";\n let wasm;\n const cachedTextDecoder = typeof TextDecoder !== "undefined" ? new TextDecoder("utf-8", { ignoreBOM: true, fatal: true }) : { decode: () => {\n throw Error("TextDecoder not available");\n } };\n if (typeof TextDecoder !== "undefined") {\n cachedTextDecoder.decode();\n }\n let cachedUint8ArrayMemory0 = null;\n function getUint8ArrayMemory0() {\n if (cachedUint8ArrayMemory0 === null || cachedUint8ArrayMemory0.byteLength === 0) {\n cachedUint8ArrayMemory0 = new Uint8Array(wasm.memory.buffer);\n }\n return cachedUint8ArrayMemory0;\n }\n function getStringFromWasm0(ptr, len) {\n ptr = ptr >>> 0;\n return cachedTextDecoder.decode(getUint8ArrayMemory0().subarray(ptr, ptr + len));\n }\n function sort_splats(num_splats, readback, ordering) {\n const ret = wasm.sort_splats(num_splats, readback, ordering);\n return ret >>> 0;\n }\n function raycast_splats(origin_x, origin_y, origin_z, dir_x, dir_y, dir_z, near, far, num_splats, packed_splats, raycast_ellipsoid) {\n const ret = wasm.raycast_splats(origin_x, origin_y, origin_z, dir_x, dir_y, dir_z, near, far, num_splats, packed_splats, raycast_ellipsoid);\n return ret;\n }\n async function __wbg_load(module, imports) {\n if (typeof Response === "function" && module instanceof Response) {\n if (typeof WebAssembly.instantiateStreaming === "function") {\n try {\n return await WebAssembly.instantiateStreaming(module, imports);\n } catch (e) {\n if (module.headers.get("Content-Type") != "application/wasm") {\n console.warn("`WebAssembly.instantiateStreaming` failed because your server does not serve Wasm with `application/wasm` MIME type. Falling back to `WebAssembly.instantiate` which is slower. Original error:\\n", e);\n } else {\n throw e;\n }\n }\n }\n const bytes = await module.arrayBuffer();\n return await WebAssembly.instantiate(bytes, imports);\n } else {\n const instance = await WebAssembly.instantiate(module, imports);\n if (instance instanceof WebAssembly.Instance) {\n return { instance, module };\n } else {\n return instance;\n }\n }\n }\n function __wbg_get_imports() {\n const imports = {};\n imports.wbg = {};\n imports.wbg.__wbg_buffer_609cc3eee51ed158 = function(arg0) {\n const ret = arg0.buffer;\n return ret;\n };\n imports.wbg.__wbg_length_3b4f022188ae8db6 = function(arg0) {\n const ret = arg0.length;\n return ret;\n };\n imports.wbg.__wbg_length_6ca527665d89694d = function(arg0) {\n const ret = arg0.length;\n return ret;\n };\n imports.wbg.__wbg_length_8cfd2c6409af88ad = function(arg0) {\n const ret = arg0.length;\n return ret;\n };\n imports.wbg.__wbg_new_9fee97a409b32b68 = function(arg0) {\n const ret = new Uint16Array(arg0);\n return ret;\n };\n imports.wbg.__wbg_new_e3b321dcfef89fc7 = function(arg0) {\n const ret = new Uint32Array(arg0);\n return ret;\n };\n imports.wbg.__wbg_newwithbyteoffsetandlength_e6b7e69acd4c7354 = function(arg0, arg1, arg2) {\n const ret = new Float32Array(arg0, arg1 >>> 0, arg2 >>> 0);\n return ret;\n };\n imports.wbg.__wbg_newwithbyteoffsetandlength_f1dead44d1fc7212 = function(arg0, arg1, arg2) {\n const ret = new Uint32Array(arg0, arg1 >>> 0, arg2 >>> 0);\n return ret;\n };\n imports.wbg.__wbg_newwithlength_5a5efe313cfd59f1 = function(arg0) {\n const ret = new Float32Array(arg0 >>> 0);\n return ret;\n };\n imports.wbg.__wbg_set_10bad9bee0e9c58b = function(arg0, arg1, arg2) {\n arg0.set(arg1, arg2 >>> 0);\n };\n imports.wbg.__wbg_set_d23661d19148b229 = function(arg0, arg1, arg2) {\n arg0.set(arg1, arg2 >>> 0);\n };\n imports.wbg.__wbg_set_f4f1f0daa30696fc = function(arg0, arg1, arg2) {\n arg0.set(arg1, arg2 >>> 0);\n };\n imports.wbg.__wbg_subarray_3aaeec89bb2544f0 = function(arg0, arg1, arg2) {\n const ret = arg0.subarray(arg1 >>> 0, arg2 >>> 0);\n return ret;\n };\n imports.wbg.__wbg_subarray_769e1e0f81bb259b = function(arg0, arg1, arg2) {\n const ret = arg0.subarray(arg1 >>> 0, arg2 >>> 0);\n return ret;\n };\n imports.wbg.__wbindgen_init_externref_table = function() {\n const table = wasm.__wbindgen_export_0;\n const offset = table.grow(4);\n table.set(0, void 0);\n table.set(offset + 0, void 0);\n table.set(offset + 1, null);\n table.set(offset + 2, true);\n table.set(offset + 3, false);\n };\n imports.wbg.__wbindgen_memory = function() {\n const ret = wasm.memory;\n return ret;\n };\n imports.wbg.__wbindgen_throw = function(arg0, arg1) {\n throw new Error(getStringFromWasm0(arg0, arg1));\n };\n return imports;\n }\n function __wbg_finalize_init(instance, module) {\n wasm = instance.exports;\n __wbg_init.__wbindgen_wasm_module = module;\n cachedUint8ArrayMemory0 = null;\n wasm.__wbindgen_start();\n return wasm;\n }\n async function __wbg_init(module_or_path) {\n if (wasm !== void 0) return wasm;\n if (typeof module_or_path !== "undefined") {\n if (Object.getPrototypeOf(module_or_path) === Object.prototype) {\n ({ module_or_path } = module_or_path);\n } else {\n console.warn("using deprecated parameters for the initialization function; pass a single object instead");\n }\n }\n if (typeof module_or_path === "undefined") {\n module_or_path = new 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EBAEHrzMAACwEBAEHPzcAACwU/AAAAvwBB7M3AAAsBNgBwCXByb2R1Y2VycwIIbGFuZ3VhZ2UBBFJ1c3QADHByb2Nlc3NlZC1ieQMFcnVzdGMdMS44Mi4wIChmNmU1MTFlZWMgMjAyNC0xMC0xNSkGd2FscnVzBjAuMjMuMwx3YXNtLWJpbmRnZW4HMC4yLjEwMABJD3RhcmdldF9mZWF0dXJlcwQrD211dGFibGUtZ2xvYmFscysIc2lnbi1leHQrD3JlZmVyZW5jZS10eXBlcysKbXVsdGl2YWx1ZQ==", self.location.href);\n }\n const imports = __wbg_get_imports();\n if (typeof module_or_path === "string" || typeof Request === "function" && module_or_path instanceof Request || typeof URL === "function" && module_or_path instanceof URL) {\n module_or_path = fetch(module_or_path);\n }\n const { instance, module } = await __wbg_load(await module_or_path, imports);\n return __wbg_finalize_init(instance, module);\n }\n var u8 = Uint8Array, u16 = Uint16Array, i32 = Int32Array;\n var fleb = new u8([\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 1,\n 1,\n 1,\n 1,\n 2,\n 2,\n 2,\n 2,\n 3,\n 3,\n 3,\n 3,\n 4,\n 4,\n 4,\n 4,\n 5,\n 5,\n 5,\n 5,\n 0,\n /* unused */\n 0,\n 0,\n /* impossible */\n 0\n ]);\n var fdeb = new u8([\n 0,\n 0,\n 0,\n 0,\n 1,\n 1,\n 2,\n 2,\n 3,\n 3,\n 4,\n 4,\n 5,\n 5,\n 6,\n 6,\n 7,\n 7,\n 8,\n 8,\n 9,\n 9,\n 10,\n 10,\n 11,\n 11,\n 12,\n 12,\n 13,\n 13,\n /* unused */\n 0,\n 0\n ]);\n var clim = new u8([16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15]);\n var freb = function(eb, start) {\n var b = new u16(31);\n for (var i2 = 0; i2 < 31; ++i2) {\n b[i2] = start += 1 << eb[i2 - 1];\n }\n var r = new i32(b[30]);\n for (var i2 = 1; i2 < 30; ++i2) {\n for (var j = b[i2]; j < b[i2 + 1]; ++j) {\n r[j] = j - b[i2] << 5 | i2;\n }\n }\n return { b, r };\n };\n var _a = freb(fleb, 2), fl = _a.b, revfl = _a.r;\n fl[28] = 258, revfl[258] = 28;\n var _b = freb(fdeb, 0), fd = _b.b;\n var rev = new u16(32768);\n for (var i = 0; i < 32768; ++i) {\n var x = (i & 43690) >> 1 | (i & 21845) << 1;\n x = (x & 52428) >> 2 | (x & 13107) << 2;\n x = (x & 61680) >> 4 | (x & 3855) << 4;\n rev[i] = ((x & 65280) >> 8 | (x & 255) << 8) >> 1;\n }\n var hMap = function(cd, mb, r) {\n var s = cd.length;\n var i2 = 0;\n var l = new u16(mb);\n for (; i2 < s; ++i2) {\n if (cd[i2])\n ++l[cd[i2] - 1];\n }\n var le = new u16(mb);\n for (i2 = 1; i2 < mb; ++i2) {\n le[i2] = le[i2 - 1] + l[i2 - 1] << 1;\n }\n var co;\n if (r) {\n co = new u16(1 << mb);\n var rvb = 15 - mb;\n for (i2 = 0; i2 < s; ++i2) {\n if (cd[i2]) {\n var sv = i2 << 4 | cd[i2];\n var r_1 = mb - cd[i2];\n var v = le[cd[i2] - 1]++ << r_1;\n for (var m = v | (1 << r_1) - 1; v <= m; ++v) {\n co[rev[v] >> rvb] = sv;\n }\n }\n }\n } else {\n co = new u16(s);\n for (i2 = 0; i2 < s; ++i2) {\n if (cd[i2]) {\n co[i2] = rev[le[cd[i2] - 1]++] >> 15 - cd[i2];\n }\n }\n }\n return co;\n };\n var flt = new u8(288);\n for (var i = 0; i < 144; ++i)\n flt[i] = 8;\n for (var i = 144; i < 256; ++i)\n flt[i] = 9;\n for (var i = 256; i < 280; ++i)\n flt[i] = 7;\n for (var i = 280; i < 288; ++i)\n flt[i] = 8;\n var fdt = new u8(32);\n for (var i = 0; i < 32; ++i)\n fdt[i] = 5;\n var flrm = /* @__PURE__ */ hMap(flt, 9, 1);\n var fdrm = /* @__PURE__ */ hMap(fdt, 5, 1);\n var max = function(a) {\n var m = a[0];\n for (var i2 = 1; i2 < a.length; ++i2) {\n if (a[i2] > m)\n m = a[i2];\n }\n return m;\n };\n var bits = function(d, p, m) {\n var o = p / 8 | 0;\n return (d[o] | d[o + 1] << 8) >> (p & 7) & m;\n };\n var bits16 = function(d, p) {\n var o = p / 8 | 0;\n return (d[o] | d[o + 1] << 8 | d[o + 2] << 16) >> (p & 7);\n };\n var shft = function(p) {\n return (p + 7) / 8 | 0;\n };\n var slc = function(v, s, e) {\n if (s == null || s < 0)\n s = 0;\n if (e == null || e > v.length)\n e = v.length;\n return new u8(v.subarray(s, e));\n };\n var ec = [\n "unexpected EOF",\n "invalid block type",\n "invalid length/literal",\n "invalid distance",\n "stream finished",\n "no stream handler",\n ,\n "no callback",\n "invalid UTF-8 data",\n "extra field too long",\n "date not in range 1980-2099",\n "filename too long",\n "stream finishing",\n "invalid zip data"\n // determined by unknown compression method\n ];\n var err = function(ind, msg, nt) {\n var e = new Error(msg || ec[ind]);\n e.code = ind;\n if (Error.captureStackTrace)\n Error.captureStackTrace(e, err);\n if (!nt)\n throw e;\n return e;\n };\n var inflt = function(dat, st, buf, dict) {\n var sl = dat.length, dl = 0;\n if (!sl || st.f && !st.l)\n return buf || new u8(0);\n var noBuf = !buf;\n var resize = noBuf || st.i != 2;\n var noSt = st.i;\n if (noBuf)\n buf = new u8(sl * 3);\n var cbuf = function(l2) {\n var bl = buf.length;\n if (l2 > bl) {\n var nbuf = new u8(Math.max(bl * 2, l2));\n nbuf.set(buf);\n buf = nbuf;\n }\n };\n var final = st.f || 0, pos = st.p || 0, bt = st.b || 0, lm = st.l, dm = st.d, lbt = st.m, dbt = st.n;\n var tbts = sl * 8;\n do {\n if (!lm) {\n final = bits(dat, pos, 1);\n var type = bits(dat, pos + 1, 3);\n pos += 3;\n if (!type) {\n var s = shft(pos) + 4, l = dat[s - 4] | dat[s - 3] << 8, t = s + l;\n if (t > sl) {\n if (noSt)\n err(0);\n break;\n }\n if (resize)\n cbuf(bt + l);\n buf.set(dat.subarray(s, t), bt);\n st.b = bt += l, st.p = pos = t * 8, st.f = final;\n continue;\n } else if (type == 1)\n lm = flrm, dm = fdrm, lbt = 9, dbt = 5;\n else if (type == 2) {\n var hLit = bits(dat, pos, 31) + 257, hcLen = bits(dat, pos + 10, 15) + 4;\n var tl = hLit + bits(dat, pos + 5, 31) + 1;\n pos += 14;\n var ldt = new u8(tl);\n var clt = new u8(19);\n for (var i2 = 0; i2 < hcLen; ++i2) {\n clt[clim[i2]] = bits(dat, pos + i2 * 3, 7);\n }\n pos += hcLen * 3;\n var clb = max(clt), clbmsk = (1 << clb) - 1;\n var clm = hMap(clt, clb, 1);\n for (var i2 = 0; i2 < tl; ) {\n var r = clm[bits(dat, pos, clbmsk)];\n pos += r & 15;\n var s = r >> 4;\n if (s < 16) {\n ldt[i2++] = s;\n } else {\n var c = 0, n = 0;\n if (s == 16)\n n = 3 + bits(dat, pos, 3), pos += 2, c = ldt[i2 - 1];\n else if (s == 17)\n n = 3 + bits(dat, pos, 7), pos += 3;\n else if (s == 18)\n n = 11 + bits(dat, pos, 127), pos += 7;\n while (n--)\n ldt[i2++] = c;\n }\n }\n var lt = ldt.subarray(0, hLit), dt = ldt.subarray(hLit);\n lbt = max(lt);\n dbt = max(dt);\n lm = hMap(lt, lbt, 1);\n dm = hMap(dt, dbt, 1);\n } else\n err(1);\n if (pos > tbts) {\n if (noSt)\n err(0);\n break;\n }\n }\n if (resize)\n cbuf(bt + 131072);\n var lms = (1 << lbt) - 1, dms = (1 << dbt) - 1;\n var lpos = pos;\n for (; ; lpos = pos) {\n var c = lm[bits16(dat, pos) & lms], sym = c >> 4;\n pos += c & 15;\n if (pos > tbts) {\n if (noSt)\n err(0);\n break;\n }\n if (!c)\n err(2);\n if (sym < 256)\n buf[bt++] = sym;\n else if (sym == 256) {\n lpos = pos, lm = null;\n break;\n } else {\n var add2 = sym - 254;\n if (sym > 264) {\n var i2 = sym - 257, b = fleb[i2];\n add2 = bits(dat, pos, (1 << b) - 1) + fl[i2];\n pos += b;\n }\n var d = dm[bits16(dat, pos) & dms], dsym = d >> 4;\n if (!d)\n err(3);\n pos += d & 15;\n var dt = fd[dsym];\n if (dsym > 3) {\n var b = fdeb[dsym];\n dt += bits16(dat, pos) & (1 << b) - 1, pos += b;\n }\n if (pos > tbts) {\n if (noSt)\n err(0);\n break;\n }\n if (resize)\n cbuf(bt + 131072);\n var end = bt + add2;\n if (bt < dt) {\n var shift = dl - dt, dend = Math.min(dt, end);\n if (shift + bt < 0)\n err(3);\n for (; bt < dend; ++bt)\n buf[bt] = dict[shift + bt];\n }\n for (; bt < end; ++bt)\n buf[bt] = buf[bt - dt];\n }\n }\n st.l = lm, st.p = lpos, st.b = bt, st.f = final;\n if (lm)\n final = 1, st.m = lbt, st.d = dm, st.n = dbt;\n } while (!final);\n return bt != buf.length && noBuf ? slc(buf, 0, bt) : buf.subarray(0, bt);\n };\n var et = /* @__PURE__ */ new u8(0);\n var gzs = function(d) {\n if (d[0] != 31 || d[1] != 139 || d[2] != 8)\n err(6, "invalid gzip data");\n var flg = d[3];\n var st = 10;\n if (flg & 4)\n st += (d[10] | d[11] << 8) + 2;\n for (var zs = (flg >> 3 & 1) + (flg >> 4 & 1); zs > 0; zs -= !d[st++])\n ;\n return st + (flg & 2);\n };\n var Inflate = /* @__PURE__ */ function() {\n function Inflate2(opts, cb) {\n if (typeof opts == "function")\n cb = opts, opts = {};\n this.ondata = cb;\n var dict = opts && opts.dictionary && opts.dictionary.subarray(-32768);\n this.s = { i: 0, b: dict ? dict.length : 0 };\n this.o = new u8(32768);\n this.p = new u8(0);\n if (dict)\n this.o.set(dict);\n }\n Inflate2.prototype.e = function(c) {\n if (!this.ondata)\n err(5);\n if (this.d)\n err(4);\n if (!this.p.length)\n this.p = c;\n else if (c.length) {\n var n = new u8(this.p.length + c.length);\n n.set(this.p), n.set(c, this.p.length), this.p = n;\n }\n };\n Inflate2.prototype.c = function(final) {\n this.s.i = +(this.d = final || false);\n var bts = this.s.b;\n var dt = inflt(this.p, this.s, this.o);\n this.ondata(slc(dt, bts, this.s.b), this.d);\n this.o = slc(dt, this.s.b - 32768), this.s.b = this.o.length;\n this.p = slc(this.p, this.s.p / 8 | 0), this.s.p &= 7;\n };\n Inflate2.prototype.push = function(chunk, final) {\n this.e(chunk), this.c(final);\n };\n return Inflate2;\n }();\n var Gunzip = /* @__PURE__ */ function() {\n function Gunzip2(opts, cb) {\n this.v = 1;\n this.r = 0;\n Inflate.call(this, opts, cb);\n }\n Gunzip2.prototype.push = function(chunk, final) {\n Inflate.prototype.e.call(this, chunk);\n this.r += chunk.length;\n if (this.v) {\n var p = this.p.subarray(this.v - 1);\n var s = p.length > 3 ? gzs(p) : 4;\n if (s > p.length) {\n if (!final)\n return;\n } else if (this.v > 1 && this.onmember) {\n this.onmember(this.r - p.length);\n }\n this.p = p.subarray(s), this.v = 0;\n }\n Inflate.prototype.c.call(this, final);\n if (this.s.f && !this.s.l && !final) {\n this.v = shft(this.s.p) + 9;\n this.s = { i: 0 };\n this.o = new u8(0);\n this.push(new u8(0), final);\n }\n };\n return Gunzip2;\n }();\n var td = typeof TextDecoder != "undefined" && /* @__PURE__ */ new TextDecoder();\n var tds = 0;\n try {\n td.decode(et, { stream: true });\n tds = 1;\n } catch (e) {\n }\n /**\n * @license\n * Copyright 2010-2024 Three.js Authors\n * SPDX-License-Identifier: MIT\n */\n const REVISION = "172";\n const FrontSide = 0;\n const BackSide = 1;\n const NormalBlending = 1;\n const AddEquation = 100;\n const SrcAlphaFactor = 204;\n const OneMinusSrcAlphaFactor = 205;\n const LessEqualDepth = 3;\n const MultiplyOperation = 0;\n const UVMapping = 300;\n const RepeatWrapping = 1e3;\n const ClampToEdgeWrapping = 1001;\n const MirroredRepeatWrapping = 1002;\n const NearestFilter = 1003;\n const LinearFilter = 1006;\n const LinearMipmapLinearFilter = 1008;\n const UnsignedByteType = 1009;\n const UnsignedIntType = 1014;\n const FloatType = 1015;\n const RGBAFormat = 1023;\n const RGIntegerFormat = 1031;\n const RGBAIntegerFormat = 1033;\n const NoColorSpace = "";\n const SRGBColorSpace = "srgb";\n const LinearSRGBColorSpace = "srgb-linear";\n const LinearTransfer = "linear";\n const SRGBTransfer = "srgb";\n const KeepStencilOp = 7680;\n const AlwaysStencilFunc = 519;\n const StaticDrawUsage = 35044;\n const GLSL3 = "300 es";\n const WebGLCoordinateSystem = 2e3;\n const WebGPUCoordinateSystem = 2001;\n class EventDispatcher {\n addEventListener(type, listener) {\n if (this._listeners === void 0) this._listeners = {};\n const listeners = this._listeners;\n if (listeners[type] === void 0) {\n listeners[type] = [];\n }\n if (listeners[type].indexOf(listener) === -1) {\n listeners[type].push(listener);\n }\n }\n hasEventListener(type, listener) {\n if (this._listeners === void 0) return false;\n const listeners = this._listeners;\n return listeners[type] !== void 0 && listeners[type].indexOf(listener) !== -1;\n }\n removeEventListener(type, listener) {\n if (this._listeners === void 0) return;\n const listeners = this._listeners;\n const listenerArray = listeners[type];\n if (listenerArray !== void 0) {\n const index = listenerArray.indexOf(listener);\n if (index !== -1) {\n listenerArray.splice(index, 1);\n }\n }\n }\n dispatchEvent(event) {\n if (this._listeners === void 0) return;\n const listeners = this._listeners;\n const listenerArray = listeners[event.type];\n if (listenerArray !== void 0) {\n event.target = this;\n const array = listenerArray.slice(0);\n for (let i2 = 0, l = array.length; i2 < l; i2++) {\n array[i2].call(this, event);\n }\n event.target = null;\n }\n }\n }\n const _lut = ["00", "01", "02", "03", "04", "05", "06", "07", "08", "09", "0a", "0b", "0c", "0d", "0e", "0f", "10", "11", "12", "13", "14", "15", "16", "17", "18", "19", "1a", "1b", "1c", "1d", "1e", "1f", "20", "21", "22", "23", "24", "25", "26", "27", "28", "29", "2a", "2b", "2c", "2d", "2e", "2f", "30", "31", "32", "33", "34", "35", "36", "37", "38", "39", "3a", "3b", "3c", "3d", "3e", "3f", "40", "41", "42", "43", "44", "45", "46", "47", "48", "49", "4a", "4b", "4c", "4d", "4e", "4f", "50", "51", "52", "53", "54", "55", "56", "57", "58", "59", "5a", "5b", "5c", "5d", "5e", "5f", "60", "61", "62", "63", "64", "65", "66", "67", "68", "69", "6a", "6b", "6c", "6d", "6e", "6f", "70", "71", "72", "73", "74", "75", "76", "77", "78", "79", "7a", "7b", "7c", "7d", "7e", "7f", "80", "81", "82", "83", "84", "85", "86", "87", "88", "89", "8a", "8b", "8c", "8d", "8e", "8f", "90", "91", "92", "93", "94", "95", "96", "97", "98", "99", "9a", "9b", "9c", "9d", "9e", "9f", "a0", "a1", "a2", "a3", "a4", "a5", "a6", "a7", "a8", "a9", "aa", "ab", "ac", "ad", "ae", "af", "b0", "b1", "b2", "b3", "b4", "b5", "b6", "b7", "b8", "b9", "ba", "bb", "bc", "bd", "be", "bf", "c0", "c1", "c2", "c3", "c4", "c5", "c6", "c7", "c8", "c9", "ca", "cb", "cc", "cd", "ce", "cf", "d0", "d1", "d2", "d3", "d4", "d5", "d6", "d7", "d8", "d9", "da", "db", "dc", "dd", "de", "df", "e0", "e1", "e2", "e3", "e4", "e5", "e6", "e7", "e8", "e9", "ea", "eb", "ec", "ed", "ee", "ef", "f0", "f1", "f2", "f3", "f4", "f5", "f6", "f7", "f8", "f9", "fa", "fb", "fc", "fd", "fe", "ff"];\n function generateUUID() {\n const d0 = Math.random() * 4294967295 | 0;\n const d1 = Math.random() * 4294967295 | 0;\n const d2 = Math.random() * 4294967295 | 0;\n const d3 = Math.random() * 4294967295 | 0;\n const uuid = _lut[d0 & 255] + _lut[d0 >> 8 & 255] + _lut[d0 >> 16 & 255] + _lut[d0 >> 24 & 255] + "-" + _lut[d1 & 255] + _lut[d1 >> 8 & 255] + "-" + _lut[d1 >> 16 & 15 | 64] + _lut[d1 >> 24 & 255] + "-" + _lut[d2 & 63 | 128] + _lut[d2 >> 8 & 255] + "-" + _lut[d2 >> 16 & 255] + _lut[d2 >> 24 & 255] + _lut[d3 & 255] + _lut[d3 >> 8 & 255] + _lut[d3 >> 16 & 255] + _lut[d3 >> 24 & 255];\n return uuid.toLowerCase();\n }\n function clamp(value, min, max2) {\n return Math.max(min, Math.min(max2, value));\n }\n function euclideanModulo(n, m) {\n return (n % m + m) % m;\n }\n function lerp(x2, y, t) {\n return (1 - t) * x2 + t * y;\n }\n function denormalize(value, array) {\n switch (array.constructor) {\n case Float32Array:\n return value;\n case Uint32Array:\n return value / 4294967295;\n case Uint16Array:\n return value / 65535;\n case Uint8Array:\n return value / 255;\n case Int32Array:\n return Math.max(value / 2147483647, -1);\n case Int16Array:\n return Math.max(value / 32767, -1);\n case Int8Array:\n return Math.max(value / 127, -1);\n default:\n throw new Error("Invalid component type.");\n }\n }\n function normalize$1(value, array) {\n switch (array.constructor) {\n case Float32Array:\n return value;\n case Uint32Array:\n return Math.round(value * 4294967295);\n case Uint16Array:\n return Math.round(value * 65535);\n case Uint8Array:\n return Math.round(value * 255);\n case Int32Array:\n return Math.round(value * 2147483647);\n case Int16Array:\n return Math.round(value * 32767);\n case Int8Array:\n return Math.round(value * 127);\n default:\n throw new Error("Invalid component type.");\n }\n }\n class Vector2 {\n constructor(x2 = 0, y = 0) {\n Vector2.prototype.isVector2 = true;\n this.x = x2;\n this.y = y;\n }\n get width() {\n return this.x;\n }\n set width(value) {\n this.x = value;\n }\n get height() {\n return this.y;\n }\n set height(value) {\n this.y = value;\n }\n set(x2, y) {\n this.x = x2;\n this.y = y;\n return this;\n }\n setScalar(scalar) {\n this.x = scalar;\n this.y = scalar;\n return this;\n }\n setX(x2) {\n this.x = x2;\n return this;\n }\n setY(y) {\n this.y = y;\n return this;\n }\n setComponent(index, value) {\n switch (index) {\n case 0:\n this.x = value;\n break;\n case 1:\n this.y = value;\n break;\n default:\n throw new Error("index is out of range: " + index);\n }\n return this;\n }\n getComponent(index) {\n switch (index) {\n case 0:\n return this.x;\n case 1:\n return this.y;\n default:\n throw new Error("index is out of range: " + index);\n }\n }\n clone() {\n return new this.constructor(this.x, this.y);\n }\n copy(v) {\n this.x = v.x;\n this.y = v.y;\n return this;\n }\n add(v) {\n this.x += v.x;\n this.y += v.y;\n return this;\n }\n addScalar(s) {\n this.x += s;\n this.y += s;\n return this;\n }\n addVectors(a, b) {\n this.x = a.x + b.x;\n this.y = a.y + b.y;\n return this;\n }\n addScaledVector(v, s) {\n this.x += v.x * s;\n this.y += v.y * s;\n return this;\n }\n sub(v) {\n this.x -= v.x;\n this.y -= v.y;\n return this;\n }\n subScalar(s) {\n this.x -= s;\n this.y -= s;\n return this;\n }\n subVectors(a, b) {\n this.x = a.x - b.x;\n this.y = a.y - b.y;\n return this;\n }\n multiply(v) {\n this.x *= v.x;\n this.y *= v.y;\n return this;\n }\n multiplyScalar(scalar) {\n this.x *= scalar;\n this.y *= scalar;\n return this;\n }\n divide(v) {\n this.x /= v.x;\n this.y /= v.y;\n return this;\n }\n divideScalar(scalar) {\n return this.multiplyScalar(1 / scalar);\n }\n applyMatrix3(m) {\n const x2 = this.x, y = this.y;\n const e = m.elements;\n this.x = e[0] * x2 + e[3] * y + e[6];\n this.y = e[1] * x2 + e[4] * y + e[7];\n return this;\n }\n min(v) {\n this.x = Math.min(this.x, v.x);\n this.y = Math.min(this.y, v.y);\n return this;\n }\n max(v) {\n this.x = Math.max(this.x, v.x);\n this.y = Math.max(this.y, v.y);\n return this;\n }\n clamp(min, max2) {\n this.x = clamp(this.x, min.x, max2.x);\n this.y = clamp(this.y, min.y, max2.y);\n return this;\n }\n clampScalar(minVal, maxVal) {\n this.x = clamp(this.x, minVal, maxVal);\n this.y = clamp(this.y, minVal, maxVal);\n return this;\n }\n clampLength(min, max2) {\n const length = this.length();\n return this.divideScalar(length || 1).multiplyScalar(clamp(length, min, max2));\n }\n floor() {\n this.x = Math.floor(this.x);\n this.y = Math.floor(this.y);\n return this;\n }\n ceil() {\n this.x = Math.ceil(this.x);\n this.y = Math.ceil(this.y);\n return this;\n }\n round() {\n this.x = Math.round(this.x);\n this.y = Math.round(this.y);\n return this;\n }\n roundToZero() {\n this.x = Math.trunc(this.x);\n this.y = Math.trunc(this.y);\n return this;\n }\n negate() {\n this.x = -this.x;\n this.y = -this.y;\n return this;\n }\n dot(v) {\n return this.x * v.x + this.y * v.y;\n }\n cross(v) {\n return this.x * v.y - this.y * v.x;\n }\n lengthSq() {\n return this.x * this.x + this.y * this.y;\n }\n length() {\n return Math.sqrt(this.x * this.x + this.y * this.y);\n }\n manhattanLength() {\n return Math.abs(this.x) + Math.abs(this.y);\n }\n normalize() {\n return this.divideScalar(this.length() || 1);\n }\n angle() {\n const angle = Math.atan2(-this.y, -this.x) + Math.PI;\n return angle;\n }\n angleTo(v) {\n const denominator = Math.sqrt(this.lengthSq() * v.lengthSq());\n if (denominator === 0) return Math.PI / 2;\n const theta = this.dot(v) / denominator;\n return Math.acos(clamp(theta, -1, 1));\n }\n distanceTo(v) {\n return Math.sqrt(this.distanceToSquared(v));\n }\n distanceToSquared(v) {\n const dx = this.x - v.x, dy = this.y - v.y;\n return dx * dx + dy * dy;\n }\n manhattanDistanceTo(v) {\n return Math.abs(this.x - v.x) + Math.abs(this.y - v.y);\n }\n setLength(length) {\n return this.normalize().multiplyScalar(length);\n }\n lerp(v, alpha) {\n this.x += (v.x - this.x) * alpha;\n this.y += (v.y - this.y) * alpha;\n return this;\n }\n lerpVectors(v1, v2, alpha) {\n this.x = v1.x + (v2.x - v1.x) * alpha;\n this.y = v1.y + (v2.y - v1.y) * alpha;\n return this;\n }\n equals(v) {\n return v.x === this.x && v.y === this.y;\n }\n fromArray(array, offset = 0) {\n this.x = array[offset];\n this.y = array[offset + 1];\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this.x;\n array[offset + 1] = this.y;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this.x = attribute.getX(index);\n this.y = attribute.getY(index);\n return this;\n }\n rotateAround(center, angle) {\n const c = Math.cos(angle), s = Math.sin(angle);\n const x2 = this.x - center.x;\n const y = this.y - center.y;\n this.x = x2 * c - y * s + center.x;\n this.y = x2 * s + y * c + center.y;\n return this;\n }\n random() {\n this.x = Math.random();\n this.y = Math.random();\n return this;\n }\n *[Symbol.iterator]() {\n yield this.x;\n yield this.y;\n }\n }\n class Matrix3 {\n constructor(n11, n12, n13, n21, n22, n23, n31, n32, n33) {\n Matrix3.prototype.isMatrix3 = true;\n this.elements = [\n 1,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 1\n ];\n if (n11 !== void 0) {\n this.set(n11, n12, n13, n21, n22, n23, n31, n32, n33);\n }\n }\n set(n11, n12, n13, n21, n22, n23, n31, n32, n33) {\n const te = this.elements;\n te[0] = n11;\n te[1] = n21;\n te[2] = n31;\n te[3] = n12;\n te[4] = n22;\n te[5] = n32;\n te[6] = n13;\n te[7] = n23;\n te[8] = n33;\n return this;\n }\n identity() {\n this.set(\n 1,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n copy(m) {\n const te = this.elements;\n const me = m.elements;\n te[0] = me[0];\n te[1] = me[1];\n te[2] = me[2];\n te[3] = me[3];\n te[4] = me[4];\n te[5] = me[5];\n te[6] = me[6];\n te[7] = me[7];\n te[8] = me[8];\n return this;\n }\n extractBasis(xAxis, yAxis, zAxis) {\n xAxis.setFromMatrix3Column(this, 0);\n yAxis.setFromMatrix3Column(this, 1);\n zAxis.setFromMatrix3Column(this, 2);\n return this;\n }\n setFromMatrix4(m) {\n const me = m.elements;\n this.set(\n me[0],\n me[4],\n me[8],\n me[1],\n me[5],\n me[9],\n me[2],\n me[6],\n me[10]\n );\n return this;\n }\n multiply(m) {\n return this.multiplyMatrices(this, m);\n }\n premultiply(m) {\n return this.multiplyMatrices(m, this);\n }\n multiplyMatrices(a, b) {\n const ae = a.elements;\n const be = b.elements;\n const te = this.elements;\n const a11 = ae[0], a12 = ae[3], a13 = ae[6];\n const a21 = ae[1], a22 = ae[4], a23 = ae[7];\n const a31 = ae[2], a32 = ae[5], a33 = ae[8];\n const b11 = be[0], b12 = be[3], b13 = be[6];\n const b21 = be[1], b22 = be[4], b23 = be[7];\n const b31 = be[2], b32 = be[5], b33 = be[8];\n te[0] = a11 * b11 + a12 * b21 + a13 * b31;\n te[3] = a11 * b12 + a12 * b22 + a13 * b32;\n te[6] = a11 * b13 + a12 * b23 + a13 * b33;\n te[1] = a21 * b11 + a22 * b21 + a23 * b31;\n te[4] = a21 * b12 + a22 * b22 + a23 * b32;\n te[7] = a21 * b13 + a22 * b23 + a23 * b33;\n te[2] = a31 * b11 + a32 * b21 + a33 * b31;\n te[5] = a31 * b12 + a32 * b22 + a33 * b32;\n te[8] = a31 * b13 + a32 * b23 + a33 * b33;\n return this;\n }\n multiplyScalar(s) {\n const te = this.elements;\n te[0] *= s;\n te[3] *= s;\n te[6] *= s;\n te[1] *= s;\n te[4] *= s;\n te[7] *= s;\n te[2] *= s;\n te[5] *= s;\n te[8] *= s;\n return this;\n }\n determinant() {\n const te = this.elements;\n const a = te[0], b = te[1], c = te[2], d = te[3], e = te[4], f = te[5], g = te[6], h = te[7], i2 = te[8];\n return a * e * i2 - a * f * h - b * d * i2 + b * f * g + c * d * h - c * e * g;\n }\n invert() {\n const te = this.elements, n11 = te[0], n21 = te[1], n31 = te[2], n12 = te[3], n22 = te[4], n32 = te[5], n13 = te[6], n23 = te[7], n33 = te[8], t11 = n33 * n22 - n32 * n23, t12 = n32 * n13 - n33 * n12, t13 = n23 * n12 - n22 * n13, det = n11 * t11 + n21 * t12 + n31 * t13;\n if (det === 0) return this.set(0, 0, 0, 0, 0, 0, 0, 0, 0);\n const detInv = 1 / det;\n te[0] = t11 * detInv;\n te[1] = (n31 * n23 - n33 * n21) * detInv;\n te[2] = (n32 * n21 - n31 * n22) * detInv;\n te[3] = t12 * detInv;\n te[4] = (n33 * n11 - n31 * n13) * detInv;\n te[5] = (n31 * n12 - n32 * n11) * detInv;\n te[6] = t13 * detInv;\n te[7] = (n21 * n13 - n23 * n11) * detInv;\n te[8] = (n22 * n11 - n21 * n12) * detInv;\n return this;\n }\n transpose() {\n let tmp;\n const m = this.elements;\n tmp = m[1];\n m[1] = m[3];\n m[3] = tmp;\n tmp = m[2];\n m[2] = m[6];\n m[6] = tmp;\n tmp = m[5];\n m[5] = m[7];\n m[7] = tmp;\n return this;\n }\n getNormalMatrix(matrix4) {\n return this.setFromMatrix4(matrix4).invert().transpose();\n }\n transposeIntoArray(r) {\n const m = this.elements;\n r[0] = m[0];\n r[1] = m[3];\n r[2] = m[6];\n r[3] = m[1];\n r[4] = m[4];\n r[5] = m[7];\n r[6] = m[2];\n r[7] = m[5];\n r[8] = m[8];\n return this;\n }\n setUvTransform(tx, ty, sx, sy, rotation, cx, cy) {\n const c = Math.cos(rotation);\n const s = Math.sin(rotation);\n this.set(\n sx * c,\n sx * s,\n -sx * (c * cx + s * cy) + cx + tx,\n -sy * s,\n sy * c,\n -sy * (-s * cx + c * cy) + cy + ty,\n 0,\n 0,\n 1\n );\n return this;\n }\n //\n scale(sx, sy) {\n this.premultiply(_m3.makeScale(sx, sy));\n return this;\n }\n rotate(theta) {\n this.premultiply(_m3.makeRotation(-theta));\n return this;\n }\n translate(tx, ty) {\n this.premultiply(_m3.makeTranslation(tx, ty));\n return this;\n }\n // for 2D Transforms\n makeTranslation(x2, y) {\n if (x2.isVector2) {\n this.set(\n 1,\n 0,\n x2.x,\n 0,\n 1,\n x2.y,\n 0,\n 0,\n 1\n );\n } else {\n this.set(\n 1,\n 0,\n x2,\n 0,\n 1,\n y,\n 0,\n 0,\n 1\n );\n }\n return this;\n }\n makeRotation(theta) {\n const c = Math.cos(theta);\n const s = Math.sin(theta);\n this.set(\n c,\n -s,\n 0,\n s,\n c,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeScale(x2, y) {\n this.set(\n x2,\n 0,\n 0,\n 0,\n y,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n //\n equals(matrix) {\n const te = this.elements;\n const me = matrix.elements;\n for (let i2 = 0; i2 < 9; i2++) {\n if (te[i2] !== me[i2]) return false;\n }\n return true;\n }\n fromArray(array, offset = 0) {\n for (let i2 = 0; i2 < 9; i2++) {\n this.elements[i2] = array[i2 + offset];\n }\n return this;\n }\n toArray(array = [], offset = 0) {\n const te = this.elements;\n array[offset] = te[0];\n array[offset + 1] = te[1];\n array[offset + 2] = te[2];\n array[offset + 3] = te[3];\n array[offset + 4] = te[4];\n array[offset + 5] = te[5];\n array[offset + 6] = te[6];\n array[offset + 7] = te[7];\n array[offset + 8] = te[8];\n return array;\n }\n clone() {\n return new this.constructor().fromArray(this.elements);\n }\n }\n const _m3 = /* @__PURE__ */ new Matrix3();\n function arrayNeedsUint32(array) {\n for (let i2 = array.length - 1; i2 >= 0; --i2) {\n if (array[i2] >= 65535) return true;\n }\n return false;\n }\n function createElementNS(name) {\n return document.createElementNS("http://www.w3.org/1999/xhtml", name);\n }\n const LINEAR_REC709_TO_XYZ = /* @__PURE__ */ new Matrix3().set(\n 0.4123908,\n 0.3575843,\n 0.1804808,\n 0.212639,\n 0.7151687,\n 0.0721923,\n 0.0193308,\n 0.1191948,\n 0.9505322\n );\n const XYZ_TO_LINEAR_REC709 = /* @__PURE__ */ new Matrix3().set(\n 3.2409699,\n -1.5373832,\n -0.4986108,\n -0.9692436,\n 1.8759675,\n 0.0415551,\n 0.0556301,\n -0.203977,\n 1.0569715\n );\n function createColorManagement() {\n const ColorManagement2 = {\n enabled: true,\n workingColorSpace: LinearSRGBColorSpace,\n /**\n * Implementations of supported color spaces.\n *\n * Required:\n * - primaries: chromaticity coordinates [ rx ry gx gy bx by ]\n * - whitePoint: reference white [ x y ]\n * - transfer: transfer function (pre-defined)\n * - toXYZ: Matrix3 RGB to XYZ transform\n * - fromXYZ: Matrix3 XYZ to RGB transform\n * - luminanceCoefficients: RGB luminance coefficients\n *\n * Optional:\n * - outputColorSpaceConfig: { drawingBufferColorSpace: ColorSpace }\n * - workingColorSpaceConfig: { unpackColorSpace: ColorSpace }\n *\n * Reference:\n * - https://www.russellcottrell.com/photo/matrixCalculator.htm\n */\n spaces: {},\n convert: function(color, sourceColorSpace, targetColorSpace) {\n if (this.enabled === false || sourceColorSpace === targetColorSpace || !sourceColorSpace || !targetColorSpace) {\n return color;\n }\n if (this.spaces[sourceColorSpace].transfer === SRGBTransfer) {\n color.r = SRGBToLinear(color.r);\n color.g = SRGBToLinear(color.g);\n color.b = SRGBToLinear(color.b);\n }\n if (this.spaces[sourceColorSpace].primaries !== this.spaces[targetColorSpace].primaries) {\n color.applyMatrix3(this.spaces[sourceColorSpace].toXYZ);\n color.applyMatrix3(this.spaces[targetColorSpace].fromXYZ);\n }\n if (this.spaces[targetColorSpace].transfer === SRGBTransfer) {\n color.r = LinearToSRGB(color.r);\n color.g = LinearToSRGB(color.g);\n color.b = LinearToSRGB(color.b);\n }\n return color;\n },\n fromWorkingColorSpace: function(color, targetColorSpace) {\n return this.convert(color, this.workingColorSpace, targetColorSpace);\n },\n toWorkingColorSpace: function(color, sourceColorSpace) {\n return this.convert(color, sourceColorSpace, this.workingColorSpace);\n },\n getPrimaries: function(colorSpace) {\n return this.spaces[colorSpace].primaries;\n },\n getTransfer: function(colorSpace) {\n if (colorSpace === NoColorSpace) return LinearTransfer;\n return this.spaces[colorSpace].transfer;\n },\n getLuminanceCoefficients: function(target, colorSpace = this.workingColorSpace) {\n return target.fromArray(this.spaces[colorSpace].luminanceCoefficients);\n },\n define: function(colorSpaces) {\n Object.assign(this.spaces, colorSpaces);\n },\n // Internal APIs\n _getMatrix: function(targetMatrix, sourceColorSpace, targetColorSpace) {\n return targetMatrix.copy(this.spaces[sourceColorSpace].toXYZ).multiply(this.spaces[targetColorSpace].fromXYZ);\n },\n _getDrawingBufferColorSpace: function(colorSpace) {\n return this.spaces[colorSpace].outputColorSpaceConfig.drawingBufferColorSpace;\n },\n _getUnpackColorSpace: function(colorSpace = this.workingColorSpace) {\n return this.spaces[colorSpace].workingColorSpaceConfig.unpackColorSpace;\n }\n };\n const REC709_PRIMARIES = [0.64, 0.33, 0.3, 0.6, 0.15, 0.06];\n const REC709_LUMINANCE_COEFFICIENTS = [0.2126, 0.7152, 0.0722];\n const D65 = [0.3127, 0.329];\n ColorManagement2.define({\n [LinearSRGBColorSpace]: {\n primaries: REC709_PRIMARIES,\n whitePoint: D65,\n transfer: LinearTransfer,\n toXYZ: LINEAR_REC709_TO_XYZ,\n fromXYZ: XYZ_TO_LINEAR_REC709,\n luminanceCoefficients: REC709_LUMINANCE_COEFFICIENTS,\n workingColorSpaceConfig: { unpackColorSpace: SRGBColorSpace },\n outputColorSpaceConfig: { drawingBufferColorSpace: SRGBColorSpace }\n },\n [SRGBColorSpace]: {\n primaries: REC709_PRIMARIES,\n whitePoint: D65,\n transfer: SRGBTransfer,\n toXYZ: LINEAR_REC709_TO_XYZ,\n fromXYZ: XYZ_TO_LINEAR_REC709,\n luminanceCoefficients: REC709_LUMINANCE_COEFFICIENTS,\n outputColorSpaceConfig: { drawingBufferColorSpace: SRGBColorSpace }\n }\n });\n return ColorManagement2;\n }\n const ColorManagement = /* @__PURE__ */ createColorManagement();\n function SRGBToLinear(c) {\n return c < 0.04045 ? c * 0.0773993808 : Math.pow(c * 0.9478672986 + 0.0521327014, 2.4);\n }\n function LinearToSRGB(c) {\n return c < 31308e-7 ? c * 12.92 : 1.055 * Math.pow(c, 0.41666) - 0.055;\n }\n let _canvas;\n class ImageUtils {\n static getDataURL(image) {\n if (/^data:/i.test(image.src)) {\n return image.src;\n }\n if (typeof HTMLCanvasElement === "undefined") {\n return image.src;\n }\n let canvas;\n if (image instanceof HTMLCanvasElement) {\n canvas = image;\n } else {\n if (_canvas === void 0) _canvas = createElementNS("canvas");\n _canvas.width = image.width;\n _canvas.height = image.height;\n const context = _canvas.getContext("2d");\n if (image instanceof ImageData) {\n context.putImageData(image, 0, 0);\n } else {\n context.drawImage(image, 0, 0, image.width, image.height);\n }\n canvas = _canvas;\n }\n if (canvas.width > 2048 || canvas.height > 2048) {\n console.warn("THREE.ImageUtils.getDataURL: Image converted to jpg for performance reasons", image);\n return canvas.toDataURL("image/jpeg", 0.6);\n } else {\n return canvas.toDataURL("image/png");\n }\n }\n static sRGBToLinear(image) {\n if (typeof HTMLImageElement !== "undefined" && image instanceof HTMLImageElement || typeof HTMLCanvasElement !== "undefined" && image instanceof HTMLCanvasElement || typeof ImageBitmap !== "undefined" && image instanceof ImageBitmap) {\n const canvas = createElementNS("canvas");\n canvas.width = image.width;\n canvas.height = image.height;\n const context = canvas.getContext("2d");\n context.drawImage(image, 0, 0, image.width, image.height);\n const imageData = context.getImageData(0, 0, image.width, image.height);\n const data = imageData.data;\n for (let i2 = 0; i2 < data.length; i2++) {\n data[i2] = SRGBToLinear(data[i2] / 255) * 255;\n }\n context.putImageData(imageData, 0, 0);\n return canvas;\n } else if (image.data) {\n const data = image.data.slice(0);\n for (let i2 = 0; i2 < data.length; i2++) {\n if (data instanceof Uint8Array || data instanceof Uint8ClampedArray) {\n data[i2] = Math.floor(SRGBToLinear(data[i2] / 255) * 255);\n } else {\n data[i2] = SRGBToLinear(data[i2]);\n }\n }\n return {\n data,\n width: image.width,\n height: image.height\n };\n } else {\n console.warn("THREE.ImageUtils.sRGBToLinear(): Unsupported image type. No color space conversion applied.");\n return image;\n }\n }\n }\n let _sourceId = 0;\n class Source {\n constructor(data = null) {\n this.isSource = true;\n Object.defineProperty(this, "id", { value: _sourceId++ });\n this.uuid = generateUUID();\n this.data = data;\n this.dataReady = true;\n this.version = 0;\n }\n set needsUpdate(value) {\n if (value === true) this.version++;\n }\n toJSON(meta) {\n const isRootObject = meta === void 0 || typeof meta === "string";\n if (!isRootObject && meta.images[this.uuid] !== void 0) {\n return meta.images[this.uuid];\n }\n const output = {\n uuid: this.uuid,\n url: ""\n };\n const data = this.data;\n if (data !== null) {\n let url;\n if (Array.isArray(data)) {\n url = [];\n for (let i2 = 0, l = data.length; i2 < l; i2++) {\n if (data[i2].isDataTexture) {\n url.push(serializeImage(data[i2].image));\n } else {\n url.push(serializeImage(data[i2]));\n }\n }\n } else {\n url = serializeImage(data);\n }\n output.url = url;\n }\n if (!isRootObject) {\n meta.images[this.uuid] = output;\n }\n return output;\n }\n }\n function serializeImage(image) {\n if (typeof HTMLImageElement !== "undefined" && image instanceof HTMLImageElement || typeof HTMLCanvasElement !== "undefined" && image instanceof HTMLCanvasElement || typeof ImageBitmap !== "undefined" && image instanceof ImageBitmap) {\n return ImageUtils.getDataURL(image);\n } else {\n if (image.data) {\n return {\n data: Array.from(image.data),\n width: image.width,\n height: image.height,\n type: image.data.constructor.name\n };\n } else {\n console.warn("THREE.Texture: Unable to serialize Texture.");\n return {};\n }\n }\n }\n let _textureId = 0;\n class Texture extends EventDispatcher {\n constructor(image = Texture.DEFAULT_IMAGE, mapping = Texture.DEFAULT_MAPPING, wrapS = ClampToEdgeWrapping, wrapT = ClampToEdgeWrapping, magFilter = LinearFilter, minFilter = LinearMipmapLinearFilter, format = RGBAFormat, type = UnsignedByteType, anisotropy = Texture.DEFAULT_ANISOTROPY, colorSpace = NoColorSpace) {\n super();\n this.isTexture = true;\n Object.defineProperty(this, "id", { value: _textureId++ });\n this.uuid = generateUUID();\n this.name = "";\n this.source = new Source(image);\n this.mipmaps = [];\n this.mapping = mapping;\n this.channel = 0;\n this.wrapS = wrapS;\n this.wrapT = wrapT;\n this.magFilter = magFilter;\n this.minFilter = minFilter;\n this.anisotropy = anisotropy;\n this.format = format;\n this.internalFormat = null;\n this.type = type;\n this.offset = new Vector2(0, 0);\n this.repeat = new Vector2(1, 1);\n this.center = new Vector2(0, 0);\n this.rotation = 0;\n this.matrixAutoUpdate = true;\n this.matrix = new Matrix3();\n this.generateMipmaps = true;\n this.premultiplyAlpha = false;\n this.flipY = true;\n this.unpackAlignment = 4;\n this.colorSpace = colorSpace;\n this.userData = {};\n this.version = 0;\n this.onUpdate = null;\n this.renderTarget = null;\n this.isRenderTargetTexture = false;\n this.pmremVersion = 0;\n }\n get image() {\n return this.source.data;\n }\n set image(value = null) {\n this.source.data = value;\n }\n updateMatrix() {\n this.matrix.setUvTransform(this.offset.x, this.offset.y, this.repeat.x, this.repeat.y, this.rotation, this.center.x, this.center.y);\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(source) {\n this.name = source.name;\n this.source = source.source;\n this.mipmaps = source.mipmaps.slice(0);\n this.mapping = source.mapping;\n this.channel = source.channel;\n this.wrapS = source.wrapS;\n this.wrapT = source.wrapT;\n this.magFilter = source.magFilter;\n this.minFilter = source.minFilter;\n this.anisotropy = source.anisotropy;\n this.format = source.format;\n this.internalFormat = source.internalFormat;\n this.type = source.type;\n this.offset.copy(source.offset);\n this.repeat.copy(source.repeat);\n this.center.copy(source.center);\n this.rotation = source.rotation;\n this.matrixAutoUpdate = source.matrixAutoUpdate;\n this.matrix.copy(source.matrix);\n this.generateMipmaps = source.generateMipmaps;\n this.premultiplyAlpha = source.premultiplyAlpha;\n this.flipY = source.flipY;\n this.unpackAlignment = source.unpackAlignment;\n this.colorSpace = source.colorSpace;\n this.renderTarget = source.renderTarget;\n this.isRenderTargetTexture = source.isRenderTargetTexture;\n this.userData = JSON.parse(JSON.stringify(source.userData));\n this.needsUpdate = true;\n return this;\n }\n toJSON(meta) {\n const isRootObject = meta === void 0 || typeof meta === "string";\n if (!isRootObject && meta.textures[this.uuid] !== void 0) {\n return meta.textures[this.uuid];\n }\n const output = {\n metadata: {\n version: 4.6,\n type: "Texture",\n generator: "Texture.toJSON"\n },\n uuid: this.uuid,\n name: this.name,\n image: this.source.toJSON(meta).uuid,\n mapping: this.mapping,\n channel: this.channel,\n repeat: [this.repeat.x, this.repeat.y],\n offset: [this.offset.x, this.offset.y],\n center: [this.center.x, this.center.y],\n rotation: this.rotation,\n wrap: [this.wrapS, this.wrapT],\n format: this.format,\n internalFormat: this.internalFormat,\n type: this.type,\n colorSpace: this.colorSpace,\n minFilter: this.minFilter,\n magFilter: this.magFilter,\n anisotropy: this.anisotropy,\n flipY: this.flipY,\n generateMipmaps: this.generateMipmaps,\n premultiplyAlpha: this.premultiplyAlpha,\n unpackAlignment: this.unpackAlignment\n };\n if (Object.keys(this.userData).length > 0) output.userData = this.userData;\n if (!isRootObject) {\n meta.textures[this.uuid] = output;\n }\n return output;\n }\n dispose() {\n this.dispatchEvent({ type: "dispose" });\n }\n transformUv(uv) {\n if (this.mapping !== UVMapping) return uv;\n uv.applyMatrix3(this.matrix);\n if (uv.x < 0 || uv.x > 1) {\n switch (this.wrapS) {\n case RepeatWrapping:\n uv.x = uv.x - Math.floor(uv.x);\n break;\n case ClampToEdgeWrapping:\n uv.x = uv.x < 0 ? 0 : 1;\n break;\n case MirroredRepeatWrapping:\n if (Math.abs(Math.floor(uv.x) % 2) === 1) {\n uv.x = Math.ceil(uv.x) - uv.x;\n } else {\n uv.x = uv.x - Math.floor(uv.x);\n }\n break;\n }\n }\n if (uv.y < 0 || uv.y > 1) {\n switch (this.wrapT) {\n case RepeatWrapping:\n uv.y = uv.y - Math.floor(uv.y);\n break;\n case ClampToEdgeWrapping:\n uv.y = uv.y < 0 ? 0 : 1;\n break;\n case MirroredRepeatWrapping:\n if (Math.abs(Math.floor(uv.y) % 2) === 1) {\n uv.y = Math.ceil(uv.y) - uv.y;\n } else {\n uv.y = uv.y - Math.floor(uv.y);\n }\n break;\n }\n }\n if (this.flipY) {\n uv.y = 1 - uv.y;\n }\n return uv;\n }\n set needsUpdate(value) {\n if (value === true) {\n this.version++;\n this.source.needsUpdate = true;\n }\n }\n set needsPMREMUpdate(value) {\n if (value === true) {\n this.pmremVersion++;\n }\n }\n }\n Texture.DEFAULT_IMAGE = null;\n Texture.DEFAULT_MAPPING = UVMapping;\n Texture.DEFAULT_ANISOTROPY = 1;\n class Vector4 {\n constructor(x2 = 0, y = 0, z = 0, w = 1) {\n Vector4.prototype.isVector4 = true;\n this.x = x2;\n this.y = y;\n this.z = z;\n this.w = w;\n }\n get width() {\n return this.z;\n }\n set width(value) {\n this.z = value;\n }\n get height() {\n return this.w;\n }\n set height(value) {\n this.w = value;\n }\n set(x2, y, z, w) {\n this.x = x2;\n this.y = y;\n this.z = z;\n this.w = w;\n return this;\n }\n setScalar(scalar) {\n this.x = scalar;\n this.y = scalar;\n this.z = scalar;\n this.w = scalar;\n return this;\n }\n setX(x2) {\n this.x = x2;\n return this;\n }\n setY(y) {\n this.y = y;\n return this;\n }\n setZ(z) {\n this.z = z;\n return this;\n }\n setW(w) {\n this.w = w;\n return this;\n }\n setComponent(index, value) {\n switch (index) {\n case 0:\n this.x = value;\n break;\n case 1:\n this.y = value;\n break;\n case 2:\n this.z = value;\n break;\n case 3:\n this.w = value;\n break;\n default:\n throw new Error("index is out of range: " + index);\n }\n return this;\n }\n getComponent(index) {\n switch (index) {\n case 0:\n return this.x;\n case 1:\n return this.y;\n case 2:\n return this.z;\n case 3:\n return this.w;\n default:\n throw new Error("index is out of range: " + index);\n }\n }\n clone() {\n return new this.constructor(this.x, this.y, this.z, this.w);\n }\n copy(v) {\n this.x = v.x;\n this.y = v.y;\n this.z = v.z;\n this.w = v.w !== void 0 ? v.w : 1;\n return this;\n }\n add(v) {\n this.x += v.x;\n this.y += v.y;\n this.z += v.z;\n this.w += v.w;\n return this;\n }\n addScalar(s) {\n this.x += s;\n this.y += s;\n this.z += s;\n this.w += s;\n return this;\n }\n addVectors(a, b) {\n this.x = a.x + b.x;\n this.y = a.y + b.y;\n this.z = a.z + b.z;\n this.w = a.w + b.w;\n return this;\n }\n addScaledVector(v, s) {\n this.x += v.x * s;\n this.y += v.y * s;\n this.z += v.z * s;\n this.w += v.w * s;\n return this;\n }\n sub(v) {\n this.x -= v.x;\n this.y -= v.y;\n this.z -= v.z;\n this.w -= v.w;\n return this;\n }\n subScalar(s) {\n this.x -= s;\n this.y -= s;\n this.z -= s;\n this.w -= s;\n return this;\n }\n subVectors(a, b) {\n this.x = a.x - b.x;\n this.y = a.y - b.y;\n this.z = a.z - b.z;\n this.w = a.w - b.w;\n return this;\n }\n multiply(v) {\n this.x *= v.x;\n this.y *= v.y;\n this.z *= v.z;\n this.w *= v.w;\n return this;\n }\n multiplyScalar(scalar) {\n this.x *= scalar;\n this.y *= scalar;\n this.z *= scalar;\n this.w *= scalar;\n return this;\n }\n applyMatrix4(m) {\n const x2 = this.x, y = this.y, z = this.z, w = this.w;\n const e = m.elements;\n this.x = e[0] * x2 + e[4] * y + e[8] * z + e[12] * w;\n this.y = e[1] * x2 + e[5] * y + e[9] * z + e[13] * w;\n this.z = e[2] * x2 + e[6] * y + e[10] * z + e[14] * w;\n this.w = e[3] * x2 + e[7] * y + e[11] * z + e[15] * w;\n return this;\n }\n divide(v) {\n this.x /= v.x;\n this.y /= v.y;\n this.z /= v.z;\n this.w /= v.w;\n return this;\n }\n divideScalar(scalar) {\n return this.multiplyScalar(1 / scalar);\n }\n setAxisAngleFromQuaternion(q) {\n this.w = 2 * Math.acos(q.w);\n const s = Math.sqrt(1 - q.w * q.w);\n if (s < 1e-4) {\n this.x = 1;\n this.y = 0;\n this.z = 0;\n } else {\n this.x = q.x / s;\n this.y = q.y / s;\n this.z = q.z / s;\n }\n return this;\n }\n setAxisAngleFromRotationMatrix(m) {\n let angle, x2, y, z;\n const epsilon = 0.01, epsilon2 = 0.1, te = m.elements, m11 = te[0], m12 = te[4], m13 = te[8], m21 = te[1], m22 = te[5], m23 = te[9], m31 = te[2], m32 = te[6], m33 = te[10];\n if (Math.abs(m12 - m21) < epsilon && Math.abs(m13 - m31) < epsilon && Math.abs(m23 - m32) < epsilon) {\n if (Math.abs(m12 + m21) < epsilon2 && Math.abs(m13 + m31) < epsilon2 && Math.abs(m23 + m32) < epsilon2 && Math.abs(m11 + m22 + m33 - 3) < epsilon2) {\n this.set(1, 0, 0, 0);\n return this;\n }\n angle = Math.PI;\n const xx = (m11 + 1) / 2;\n const yy = (m22 + 1) / 2;\n const zz = (m33 + 1) / 2;\n const xy = (m12 + m21) / 4;\n const xz = (m13 + m31) / 4;\n const yz = (m23 + m32) / 4;\n if (xx > yy && xx > zz) {\n if (xx < epsilon) {\n x2 = 0;\n y = 0.707106781;\n z = 0.707106781;\n } else {\n x2 = Math.sqrt(xx);\n y = xy / x2;\n z = xz / x2;\n }\n } else if (yy > zz) {\n if (yy < epsilon) {\n x2 = 0.707106781;\n y = 0;\n z = 0.707106781;\n } else {\n y = Math.sqrt(yy);\n x2 = xy / y;\n z = yz / y;\n }\n } else {\n if (zz < epsilon) {\n x2 = 0.707106781;\n y = 0.707106781;\n z = 0;\n } else {\n z = Math.sqrt(zz);\n x2 = xz / z;\n y = yz / z;\n }\n }\n this.set(x2, y, z, angle);\n return this;\n }\n let s = Math.sqrt((m32 - m23) * (m32 - m23) + (m13 - m31) * (m13 - m31) + (m21 - m12) * (m21 - m12));\n if (Math.abs(s) < 1e-3) s = 1;\n this.x = (m32 - m23) / s;\n this.y = (m13 - m31) / s;\n this.z = (m21 - m12) / s;\n this.w = Math.acos((m11 + m22 + m33 - 1) / 2);\n return this;\n }\n setFromMatrixPosition(m) {\n const e = m.elements;\n this.x = e[12];\n this.y = e[13];\n this.z = e[14];\n this.w = e[15];\n return this;\n }\n min(v) {\n this.x = Math.min(this.x, v.x);\n this.y = Math.min(this.y, v.y);\n this.z = Math.min(this.z, v.z);\n this.w = Math.min(this.w, v.w);\n return this;\n }\n max(v) {\n this.x = Math.max(this.x, v.x);\n this.y = Math.max(this.y, v.y);\n this.z = Math.max(this.z, v.z);\n this.w = Math.max(this.w, v.w);\n return this;\n }\n clamp(min, max2) {\n this.x = clamp(this.x, min.x, max2.x);\n this.y = clamp(this.y, min.y, max2.y);\n this.z = clamp(this.z, min.z, max2.z);\n this.w = clamp(this.w, min.w, max2.w);\n return this;\n }\n clampScalar(minVal, maxVal) {\n this.x = clamp(this.x, minVal, maxVal);\n this.y = clamp(this.y, minVal, maxVal);\n this.z = clamp(this.z, minVal, maxVal);\n this.w = clamp(this.w, minVal, maxVal);\n return this;\n }\n clampLength(min, max2) {\n const length = this.length();\n return this.divideScalar(length || 1).multiplyScalar(clamp(length, min, max2));\n }\n floor() {\n this.x = Math.floor(this.x);\n this.y = Math.floor(this.y);\n this.z = Math.floor(this.z);\n this.w = Math.floor(this.w);\n return this;\n }\n ceil() {\n this.x = Math.ceil(this.x);\n this.y = Math.ceil(this.y);\n this.z = Math.ceil(this.z);\n this.w = Math.ceil(this.w);\n return this;\n }\n round() {\n this.x = Math.round(this.x);\n this.y = Math.round(this.y);\n this.z = Math.round(this.z);\n this.w = Math.round(this.w);\n return this;\n }\n roundToZero() {\n this.x = Math.trunc(this.x);\n this.y = Math.trunc(this.y);\n this.z = Math.trunc(this.z);\n this.w = Math.trunc(this.w);\n return this;\n }\n negate() {\n this.x = -this.x;\n this.y = -this.y;\n this.z = -this.z;\n this.w = -this.w;\n return this;\n }\n dot(v) {\n return this.x * v.x + this.y * v.y + this.z * v.z + this.w * v.w;\n }\n lengthSq() {\n return this.x * this.x + this.y * this.y + this.z * this.z + this.w * this.w;\n }\n length() {\n return Math.sqrt(this.x * this.x + this.y * this.y + this.z * this.z + this.w * this.w);\n }\n manhattanLength() {\n return Math.abs(this.x) + Math.abs(this.y) + Math.abs(this.z) + Math.abs(this.w);\n }\n normalize() {\n return this.divideScalar(this.length() || 1);\n }\n setLength(length) {\n return this.normalize().multiplyScalar(length);\n }\n lerp(v, alpha) {\n this.x += (v.x - this.x) * alpha;\n this.y += (v.y - this.y) * alpha;\n this.z += (v.z - this.z) * alpha;\n this.w += (v.w - this.w) * alpha;\n return this;\n }\n lerpVectors(v1, v2, alpha) {\n this.x = v1.x + (v2.x - v1.x) * alpha;\n this.y = v1.y + (v2.y - v1.y) * alpha;\n this.z = v1.z + (v2.z - v1.z) * alpha;\n this.w = v1.w + (v2.w - v1.w) * alpha;\n return this;\n }\n equals(v) {\n return v.x === this.x && v.y === this.y && v.z === this.z && v.w === this.w;\n }\n fromArray(array, offset = 0) {\n this.x = array[offset];\n this.y = array[offset + 1];\n this.z = array[offset + 2];\n this.w = array[offset + 3];\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this.x;\n array[offset + 1] = this.y;\n array[offset + 2] = this.z;\n array[offset + 3] = this.w;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this.x = attribute.getX(index);\n this.y = attribute.getY(index);\n this.z = attribute.getZ(index);\n this.w = attribute.getW(index);\n return this;\n }\n random() {\n this.x = Math.random();\n this.y = Math.random();\n this.z = Math.random();\n this.w = Math.random();\n return this;\n }\n *[Symbol.iterator]() {\n yield this.x;\n yield this.y;\n yield this.z;\n yield this.w;\n }\n }\n class RenderTarget extends EventDispatcher {\n constructor(width = 1, height = 1, options = {}) {\n super();\n this.isRenderTarget = true;\n this.width = width;\n this.height = height;\n this.depth = 1;\n this.scissor = new Vector4(0, 0, width, height);\n this.scissorTest = false;\n this.viewport = new Vector4(0, 0, width, height);\n const image = { width, height, depth: 1 };\n options = Object.assign({\n generateMipmaps: false,\n internalFormat: null,\n minFilter: LinearFilter,\n depthBuffer: true,\n stencilBuffer: false,\n resolveDepthBuffer: true,\n resolveStencilBuffer: true,\n depthTexture: null,\n samples: 0,\n count: 1\n }, options);\n const texture = new Texture(image, options.mapping, options.wrapS, options.wrapT, options.magFilter, options.minFilter, options.format, options.type, options.anisotropy, options.colorSpace);\n texture.flipY = false;\n texture.generateMipmaps = options.generateMipmaps;\n texture.internalFormat = options.internalFormat;\n this.textures = [];\n const count = options.count;\n for (let i2 = 0; i2 < count; i2++) {\n this.textures[i2] = texture.clone();\n this.textures[i2].isRenderTargetTexture = true;\n this.textures[i2].renderTarget = this;\n }\n this.depthBuffer = options.depthBuffer;\n this.stencilBuffer = options.stencilBuffer;\n this.resolveDepthBuffer = options.resolveDepthBuffer;\n this.resolveStencilBuffer = options.resolveStencilBuffer;\n this._depthTexture = null;\n this.depthTexture = options.depthTexture;\n this.samples = options.samples;\n }\n get texture() {\n return this.textures[0];\n }\n set texture(value) {\n this.textures[0] = value;\n }\n set depthTexture(current) {\n if (this._depthTexture !== null) this._depthTexture.renderTarget = null;\n if (current !== null) current.renderTarget = this;\n this._depthTexture = current;\n }\n get depthTexture() {\n return this._depthTexture;\n }\n setSize(width, height, depth = 1) {\n if (this.width !== width || this.height !== height || this.depth !== depth) {\n this.width = width;\n this.height = height;\n this.depth = depth;\n for (let i2 = 0, il = this.textures.length; i2 < il; i2++) {\n this.textures[i2].image.width = width;\n this.textures[i2].image.height = height;\n this.textures[i2].image.depth = depth;\n }\n this.dispose();\n }\n this.viewport.set(0, 0, width, height);\n this.scissor.set(0, 0, width, height);\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(source) {\n this.width = source.width;\n this.height = source.height;\n this.depth = source.depth;\n this.scissor.copy(source.scissor);\n this.scissorTest = source.scissorTest;\n this.viewport.copy(source.viewport);\n this.textures.length = 0;\n for (let i2 = 0, il = source.textures.length; i2 < il; i2++) {\n this.textures[i2] = source.textures[i2].clone();\n this.textures[i2].isRenderTargetTexture = true;\n this.textures[i2].renderTarget = this;\n }\n const image = Object.assign({}, source.texture.image);\n this.texture.source = new Source(image);\n this.depthBuffer = source.depthBuffer;\n this.stencilBuffer = source.stencilBuffer;\n this.resolveDepthBuffer = source.resolveDepthBuffer;\n this.resolveStencilBuffer = source.resolveStencilBuffer;\n if (source.depthTexture !== null) this.depthTexture = source.depthTexture.clone();\n this.samples = source.samples;\n return this;\n }\n dispose() {\n this.dispatchEvent({ type: "dispose" });\n }\n }\n class WebGLRenderTarget extends RenderTarget {\n constructor(width = 1, height = 1, options = {}) {\n super(width, height, options);\n this.isWebGLRenderTarget = true;\n }\n }\n class DataArrayTexture extends Texture {\n constructor(data = null, width = 1, height = 1, depth = 1) {\n super(null);\n this.isDataArrayTexture = true;\n this.image = { data, width, height, depth };\n this.magFilter = NearestFilter;\n this.minFilter = NearestFilter;\n this.wrapR = ClampToEdgeWrapping;\n this.generateMipmaps = false;\n this.flipY = false;\n this.unpackAlignment = 1;\n this.layerUpdates = /* @__PURE__ */ new Set();\n }\n addLayerUpdate(layerIndex) {\n this.layerUpdates.add(layerIndex);\n }\n clearLayerUpdates() {\n this.layerUpdates.clear();\n }\n }\n class WebGLArrayRenderTarget extends WebGLRenderTarget {\n constructor(width = 1, height = 1, depth = 1, options = {}) {\n super(width, height, options);\n this.isWebGLArrayRenderTarget = true;\n this.depth = depth;\n this.texture = new DataArrayTexture(null, width, height, depth);\n this.texture.isRenderTargetTexture = true;\n }\n }\n class Quaternion {\n constructor(x2 = 0, y = 0, z = 0, w = 1) {\n this.isQuaternion = true;\n this._x = x2;\n this._y = y;\n this._z = z;\n this._w = w;\n }\n static slerpFlat(dst, dstOffset, src0, srcOffset0, src1, srcOffset1, t) {\n let x0 = src0[srcOffset0 + 0], y0 = src0[srcOffset0 + 1], z0 = src0[srcOffset0 + 2], w0 = src0[srcOffset0 + 3];\n const x1 = src1[srcOffset1 + 0], y1 = src1[srcOffset1 + 1], z1 = src1[srcOffset1 + 2], w1 = src1[srcOffset1 + 3];\n if (t === 0) {\n dst[dstOffset + 0] = x0;\n dst[dstOffset + 1] = y0;\n dst[dstOffset + 2] = z0;\n dst[dstOffset + 3] = w0;\n return;\n }\n if (t === 1) {\n dst[dstOffset + 0] = x1;\n dst[dstOffset + 1] = y1;\n dst[dstOffset + 2] = z1;\n dst[dstOffset + 3] = w1;\n return;\n }\n if (w0 !== w1 || x0 !== x1 || y0 !== y1 || z0 !== z1) {\n let s = 1 - t;\n const cos = x0 * x1 + y0 * y1 + z0 * z1 + w0 * w1, dir = cos >= 0 ? 1 : -1, sqrSin = 1 - cos * cos;\n if (sqrSin > Number.EPSILON) {\n const sin = Math.sqrt(sqrSin), len = Math.atan2(sin, cos * dir);\n s = Math.sin(s * len) / sin;\n t = Math.sin(t * len) / sin;\n }\n const tDir = t * dir;\n x0 = x0 * s + x1 * tDir;\n y0 = y0 * s + y1 * tDir;\n z0 = z0 * s + z1 * tDir;\n w0 = w0 * s + w1 * tDir;\n if (s === 1 - t) {\n const f = 1 / Math.sqrt(x0 * x0 + y0 * y0 + z0 * z0 + w0 * w0);\n x0 *= f;\n y0 *= f;\n z0 *= f;\n w0 *= f;\n }\n }\n dst[dstOffset] = x0;\n dst[dstOffset + 1] = y0;\n dst[dstOffset + 2] = z0;\n dst[dstOffset + 3] = w0;\n }\n static multiplyQuaternionsFlat(dst, dstOffset, src0, srcOffset0, src1, srcOffset1) {\n const x0 = src0[srcOffset0];\n const y0 = src0[srcOffset0 + 1];\n const z0 = src0[srcOffset0 + 2];\n const w0 = src0[srcOffset0 + 3];\n const x1 = src1[srcOffset1];\n const y1 = src1[srcOffset1 + 1];\n const z1 = src1[srcOffset1 + 2];\n const w1 = src1[srcOffset1 + 3];\n dst[dstOffset] = x0 * w1 + w0 * x1 + y0 * z1 - z0 * y1;\n dst[dstOffset + 1] = y0 * w1 + w0 * y1 + z0 * x1 - x0 * z1;\n dst[dstOffset + 2] = z0 * w1 + w0 * z1 + x0 * y1 - y0 * x1;\n dst[dstOffset + 3] = w0 * w1 - x0 * x1 - y0 * y1 - z0 * z1;\n return dst;\n }\n get x() {\n return this._x;\n }\n set x(value) {\n this._x = value;\n this._onChangeCallback();\n }\n get y() {\n return this._y;\n }\n set y(value) {\n this._y = value;\n this._onChangeCallback();\n }\n get z() {\n return this._z;\n }\n set z(value) {\n this._z = value;\n this._onChangeCallback();\n }\n get w() {\n return this._w;\n }\n set w(value) {\n this._w = value;\n this._onChangeCallback();\n }\n set(x2, y, z, w) {\n this._x = x2;\n this._y = y;\n this._z = z;\n this._w = w;\n this._onChangeCallback();\n return this;\n }\n clone() {\n return new this.constructor(this._x, this._y, this._z, this._w);\n }\n copy(quaternion) {\n this._x = quaternion.x;\n this._y = quaternion.y;\n this._z = quaternion.z;\n this._w = quaternion.w;\n this._onChangeCallback();\n return this;\n }\n setFromEuler(euler, update = true) {\n const x2 = euler._x, y = euler._y, z = euler._z, order = euler._order;\n const cos = Math.cos;\n const sin = Math.sin;\n const c1 = cos(x2 / 2);\n const c2 = cos(y / 2);\n const c3 = cos(z / 2);\n const s1 = sin(x2 / 2);\n const s2 = sin(y / 2);\n const s3 = sin(z / 2);\n switch (order) {\n case "XYZ":\n this._x = s1 * c2 * c3 + c1 * s2 * s3;\n this._y = c1 * s2 * c3 - s1 * c2 * s3;\n this._z = c1 * c2 * s3 + s1 * s2 * c3;\n this._w = c1 * c2 * c3 - s1 * s2 * s3;\n break;\n case "YXZ":\n this._x = s1 * c2 * c3 + c1 * s2 * s3;\n this._y = c1 * s2 * c3 - s1 * c2 * s3;\n this._z = c1 * c2 * s3 - s1 * s2 * c3;\n this._w = c1 * c2 * c3 + s1 * s2 * s3;\n break;\n case "ZXY":\n this._x = s1 * c2 * c3 - c1 * s2 * s3;\n this._y = c1 * s2 * c3 + s1 * c2 * s3;\n this._z = c1 * c2 * s3 + s1 * s2 * c3;\n this._w = c1 * c2 * c3 - s1 * s2 * s3;\n break;\n case "ZYX":\n this._x = s1 * c2 * c3 - c1 * s2 * s3;\n this._y = c1 * s2 * c3 + s1 * c2 * s3;\n this._z = c1 * c2 * s3 - s1 * s2 * c3;\n this._w = c1 * c2 * c3 + s1 * s2 * s3;\n break;\n case "YZX":\n this._x = s1 * c2 * c3 + c1 * s2 * s3;\n this._y = c1 * s2 * c3 + s1 * c2 * s3;\n this._z = c1 * c2 * s3 - s1 * s2 * c3;\n this._w = c1 * c2 * c3 - s1 * s2 * s3;\n break;\n case "XZY":\n this._x = s1 * c2 * c3 - c1 * s2 * s3;\n this._y = c1 * s2 * c3 - s1 * c2 * s3;\n this._z = c1 * c2 * s3 + s1 * s2 * c3;\n this._w = c1 * c2 * c3 + s1 * s2 * s3;\n break;\n default:\n console.warn("THREE.Quaternion: .setFromEuler() encountered an unknown order: " + order);\n }\n if (update === true) this._onChangeCallback();\n return this;\n }\n setFromAxisAngle(axis, angle) {\n const halfAngle = angle / 2, s = Math.sin(halfAngle);\n this._x = axis.x * s;\n this._y = axis.y * s;\n this._z = axis.z * s;\n this._w = Math.cos(halfAngle);\n this._onChangeCallback();\n return this;\n }\n setFromRotationMatrix(m) {\n const te = m.elements, m11 = te[0], m12 = te[4], m13 = te[8], m21 = te[1], m22 = te[5], m23 = te[9], m31 = te[2], m32 = te[6], m33 = te[10], trace = m11 + m22 + m33;\n if (trace > 0) {\n const s = 0.5 / Math.sqrt(trace + 1);\n this._w = 0.25 / s;\n this._x = (m32 - m23) * s;\n this._y = (m13 - m31) * s;\n this._z = (m21 - m12) * s;\n } else if (m11 > m22 && m11 > m33) {\n const s = 2 * Math.sqrt(1 + m11 - m22 - m33);\n this._w = (m32 - m23) / s;\n this._x = 0.25 * s;\n this._y = (m12 + m21) / s;\n this._z = (m13 + m31) / s;\n } else if (m22 > m33) {\n const s = 2 * Math.sqrt(1 + m22 - m11 - m33);\n this._w = (m13 - m31) / s;\n this._x = (m12 + m21) / s;\n this._y = 0.25 * s;\n this._z = (m23 + m32) / s;\n } else {\n const s = 2 * Math.sqrt(1 + m33 - m11 - m22);\n this._w = (m21 - m12) / s;\n this._x = (m13 + m31) / s;\n this._y = (m23 + m32) / s;\n this._z = 0.25 * s;\n }\n this._onChangeCallback();\n return this;\n }\n setFromUnitVectors(vFrom, vTo) {\n let r = vFrom.dot(vTo) + 1;\n if (r < Number.EPSILON) {\n r = 0;\n if (Math.abs(vFrom.x) > Math.abs(vFrom.z)) {\n this._x = -vFrom.y;\n this._y = vFrom.x;\n this._z = 0;\n this._w = r;\n } else {\n this._x = 0;\n this._y = -vFrom.z;\n this._z = vFrom.y;\n this._w = r;\n }\n } else {\n this._x = vFrom.y * vTo.z - vFrom.z * vTo.y;\n this._y = vFrom.z * vTo.x - vFrom.x * vTo.z;\n this._z = vFrom.x * vTo.y - vFrom.y * vTo.x;\n this._w = r;\n }\n return this.normalize();\n }\n angleTo(q) {\n return 2 * Math.acos(Math.abs(clamp(this.dot(q), -1, 1)));\n }\n rotateTowards(q, step) {\n const angle = this.angleTo(q);\n if (angle === 0) return this;\n const t = Math.min(1, step / angle);\n this.slerp(q, t);\n return this;\n }\n identity() {\n return this.set(0, 0, 0, 1);\n }\n invert() {\n return this.conjugate();\n }\n conjugate() {\n this._x *= -1;\n this._y *= -1;\n this._z *= -1;\n this._onChangeCallback();\n return this;\n }\n dot(v) {\n return this._x * v._x + this._y * v._y + this._z * v._z + this._w * v._w;\n }\n lengthSq() {\n return this._x * this._x + this._y * this._y + this._z * this._z + this._w * this._w;\n }\n length() {\n return Math.sqrt(this._x * this._x + this._y * this._y + this._z * this._z + this._w * this._w);\n }\n normalize() {\n let l = this.length();\n if (l === 0) {\n this._x = 0;\n this._y = 0;\n this._z = 0;\n this._w = 1;\n } else {\n l = 1 / l;\n this._x = this._x * l;\n this._y = this._y * l;\n this._z = this._z * l;\n this._w = this._w * l;\n }\n this._onChangeCallback();\n return this;\n }\n multiply(q) {\n return this.multiplyQuaternions(this, q);\n }\n premultiply(q) {\n return this.multiplyQuaternions(q, this);\n }\n multiplyQuaternions(a, b) {\n const qax = a._x, qay = a._y, qaz = a._z, qaw = a._w;\n const qbx = b._x, qby = b._y, qbz = b._z, qbw = b._w;\n this._x = qax * qbw + qaw * qbx + qay * qbz - qaz * qby;\n this._y = qay * qbw + qaw * qby + qaz * qbx - qax * qbz;\n this._z = qaz * qbw + qaw * qbz + qax * qby - qay * qbx;\n this._w = qaw * qbw - qax * qbx - qay * qby - qaz * qbz;\n this._onChangeCallback();\n return this;\n }\n slerp(qb, t) {\n if (t === 0) return this;\n if (t === 1) return this.copy(qb);\n const x2 = this._x, y = this._y, z = this._z, w = this._w;\n let cosHalfTheta = w * qb._w + x2 * qb._x + y * qb._y + z * qb._z;\n if (cosHalfTheta < 0) {\n this._w = -qb._w;\n this._x = -qb._x;\n this._y = -qb._y;\n this._z = -qb._z;\n cosHalfTheta = -cosHalfTheta;\n } else {\n this.copy(qb);\n }\n if (cosHalfTheta >= 1) {\n this._w = w;\n this._x = x2;\n this._y = y;\n this._z = z;\n return this;\n }\n const sqrSinHalfTheta = 1 - cosHalfTheta * cosHalfTheta;\n if (sqrSinHalfTheta <= Number.EPSILON) {\n const s = 1 - t;\n this._w = s * w + t * this._w;\n this._x = s * x2 + t * this._x;\n this._y = s * y + t * this._y;\n this._z = s * z + t * this._z;\n this.normalize();\n return this;\n }\n const sinHalfTheta = Math.sqrt(sqrSinHalfTheta);\n const halfTheta = Math.atan2(sinHalfTheta, cosHalfTheta);\n const ratioA = Math.sin((1 - t) * halfTheta) / sinHalfTheta, ratioB = Math.sin(t * halfTheta) / sinHalfTheta;\n this._w = w * ratioA + this._w * ratioB;\n this._x = x2 * ratioA + this._x * ratioB;\n this._y = y * ratioA + this._y * ratioB;\n this._z = z * ratioA + this._z * ratioB;\n this._onChangeCallback();\n return this;\n }\n slerpQuaternions(qa, qb, t) {\n return this.copy(qa).slerp(qb, t);\n }\n random() {\n const theta1 = 2 * Math.PI * Math.random();\n const theta2 = 2 * Math.PI * Math.random();\n const x0 = Math.random();\n const r1 = Math.sqrt(1 - x0);\n const r2 = Math.sqrt(x0);\n return this.set(\n r1 * Math.sin(theta1),\n r1 * Math.cos(theta1),\n r2 * Math.sin(theta2),\n r2 * Math.cos(theta2)\n );\n }\n equals(quaternion) {\n return quaternion._x === this._x && quaternion._y === this._y && quaternion._z === this._z && quaternion._w === this._w;\n }\n fromArray(array, offset = 0) {\n this._x = array[offset];\n this._y = array[offset + 1];\n this._z = array[offset + 2];\n this._w = array[offset + 3];\n this._onChangeCallback();\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this._x;\n array[offset + 1] = this._y;\n array[offset + 2] = this._z;\n array[offset + 3] = this._w;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this._x = attribute.getX(index);\n this._y = attribute.getY(index);\n this._z = attribute.getZ(index);\n this._w = attribute.getW(index);\n this._onChangeCallback();\n return this;\n }\n toJSON() {\n return this.toArray();\n }\n _onChange(callback) {\n this._onChangeCallback = callback;\n return this;\n }\n _onChangeCallback() {\n }\n *[Symbol.iterator]() {\n yield this._x;\n yield this._y;\n yield this._z;\n yield this._w;\n }\n }\n class Vector3 {\n constructor(x2 = 0, y = 0, z = 0) {\n Vector3.prototype.isVector3 = true;\n this.x = x2;\n this.y = y;\n this.z = z;\n }\n set(x2, y, z) {\n if (z === void 0) z = this.z;\n this.x = x2;\n this.y = y;\n this.z = z;\n return this;\n }\n setScalar(scalar) {\n this.x = scalar;\n this.y = scalar;\n this.z = scalar;\n return this;\n }\n setX(x2) {\n this.x = x2;\n return this;\n }\n setY(y) {\n this.y = y;\n return this;\n }\n setZ(z) {\n this.z = z;\n return this;\n }\n setComponent(index, value) {\n switch (index) {\n case 0:\n this.x = value;\n break;\n case 1:\n this.y = value;\n break;\n case 2:\n this.z = value;\n break;\n default:\n throw new Error("index is out of range: " + index);\n }\n return this;\n }\n getComponent(index) {\n switch (index) {\n case 0:\n return this.x;\n case 1:\n return this.y;\n case 2:\n return this.z;\n default:\n throw new Error("index is out of range: " + index);\n }\n }\n clone() {\n return new this.constructor(this.x, this.y, this.z);\n }\n copy(v) {\n this.x = v.x;\n this.y = v.y;\n this.z = v.z;\n return this;\n }\n add(v) {\n this.x += v.x;\n this.y += v.y;\n this.z += v.z;\n return this;\n }\n addScalar(s) {\n this.x += s;\n this.y += s;\n this.z += s;\n return this;\n }\n addVectors(a, b) {\n this.x = a.x + b.x;\n this.y = a.y + b.y;\n this.z = a.z + b.z;\n return this;\n }\n addScaledVector(v, s) {\n this.x += v.x * s;\n this.y += v.y * s;\n this.z += v.z * s;\n return this;\n }\n sub(v) {\n this.x -= v.x;\n this.y -= v.y;\n this.z -= v.z;\n return this;\n }\n subScalar(s) {\n this.x -= s;\n this.y -= s;\n this.z -= s;\n return this;\n }\n subVectors(a, b) {\n this.x = a.x - b.x;\n this.y = a.y - b.y;\n this.z = a.z - b.z;\n return this;\n }\n multiply(v) {\n this.x *= v.x;\n this.y *= v.y;\n this.z *= v.z;\n return this;\n }\n multiplyScalar(scalar) {\n this.x *= scalar;\n this.y *= scalar;\n this.z *= scalar;\n return this;\n }\n multiplyVectors(a, b) {\n this.x = a.x * b.x;\n this.y = a.y * b.y;\n this.z = a.z * b.z;\n return this;\n }\n applyEuler(euler) {\n return this.applyQuaternion(_quaternion$4.setFromEuler(euler));\n }\n applyAxisAngle(axis, angle) {\n return this.applyQuaternion(_quaternion$4.setFromAxisAngle(axis, angle));\n }\n applyMatrix3(m) {\n const x2 = this.x, y = this.y, z = this.z;\n const e = m.elements;\n this.x = e[0] * x2 + e[3] * y + e[6] * z;\n this.y = e[1] * x2 + e[4] * y + e[7] * z;\n this.z = e[2] * x2 + e[5] * y + e[8] * z;\n return this;\n }\n applyNormalMatrix(m) {\n return this.applyMatrix3(m).normalize();\n }\n applyMatrix4(m) {\n const x2 = this.x, y = this.y, z = this.z;\n const e = m.elements;\n const w = 1 / (e[3] * x2 + e[7] * y + e[11] * z + e[15]);\n this.x = (e[0] * x2 + e[4] * y + e[8] * z + e[12]) * w;\n this.y = (e[1] * x2 + e[5] * y + e[9] * z + e[13]) * w;\n this.z = (e[2] * x2 + e[6] * y + e[10] * z + e[14]) * w;\n return this;\n }\n applyQuaternion(q) {\n const vx = this.x, vy = this.y, vz = this.z;\n const qx = q.x, qy = q.y, qz = q.z, qw = q.w;\n const tx = 2 * (qy * vz - qz * vy);\n const ty = 2 * (qz * vx - qx * vz);\n const tz = 2 * (qx * vy - qy * vx);\n this.x = vx + qw * tx + qy * tz - qz * ty;\n this.y = vy + qw * ty + qz * tx - qx * tz;\n this.z = vz + qw * tz + qx * ty - qy * tx;\n return this;\n }\n project(camera) {\n return this.applyMatrix4(camera.matrixWorldInverse).applyMatrix4(camera.projectionMatrix);\n }\n unproject(camera) {\n return this.applyMatrix4(camera.projectionMatrixInverse).applyMatrix4(camera.matrixWorld);\n }\n transformDirection(m) {\n const x2 = this.x, y = this.y, z = this.z;\n const e = m.elements;\n this.x = e[0] * x2 + e[4] * y + e[8] * z;\n this.y = e[1] * x2 + e[5] * y + e[9] * z;\n this.z = e[2] * x2 + e[6] * y + e[10] * z;\n return this.normalize();\n }\n divide(v) {\n this.x /= v.x;\n this.y /= v.y;\n this.z /= v.z;\n return this;\n }\n divideScalar(scalar) {\n return this.multiplyScalar(1 / scalar);\n }\n min(v) {\n this.x = Math.min(this.x, v.x);\n this.y = Math.min(this.y, v.y);\n this.z = Math.min(this.z, v.z);\n return this;\n }\n max(v) {\n this.x = Math.max(this.x, v.x);\n this.y = Math.max(this.y, v.y);\n this.z = Math.max(this.z, v.z);\n return this;\n }\n clamp(min, max2) {\n this.x = clamp(this.x, min.x, max2.x);\n this.y = clamp(this.y, min.y, max2.y);\n this.z = clamp(this.z, min.z, max2.z);\n return this;\n }\n clampScalar(minVal, maxVal) {\n this.x = clamp(this.x, minVal, maxVal);\n this.y = clamp(this.y, minVal, maxVal);\n this.z = clamp(this.z, minVal, maxVal);\n return this;\n }\n clampLength(min, max2) {\n const length = this.length();\n return this.divideScalar(length || 1).multiplyScalar(clamp(length, min, max2));\n }\n floor() {\n this.x = Math.floor(this.x);\n this.y = Math.floor(this.y);\n this.z = Math.floor(this.z);\n return this;\n }\n ceil() {\n this.x = Math.ceil(this.x);\n this.y = Math.ceil(this.y);\n this.z = Math.ceil(this.z);\n return this;\n }\n round() {\n this.x = Math.round(this.x);\n this.y = Math.round(this.y);\n this.z = Math.round(this.z);\n return this;\n }\n roundToZero() {\n this.x = Math.trunc(this.x);\n this.y = Math.trunc(this.y);\n this.z = Math.trunc(this.z);\n return this;\n }\n negate() {\n this.x = -this.x;\n this.y = -this.y;\n this.z = -this.z;\n return this;\n }\n dot(v) {\n return this.x * v.x + this.y * v.y + this.z * v.z;\n }\n // TODO lengthSquared?\n lengthSq() {\n return this.x * this.x + this.y * this.y + this.z * this.z;\n }\n length() {\n return Math.sqrt(this.x * this.x + this.y * this.y + this.z * this.z);\n }\n manhattanLength() {\n return Math.abs(this.x) + Math.abs(this.y) + Math.abs(this.z);\n }\n normalize() {\n return this.divideScalar(this.length() || 1);\n }\n setLength(length) {\n return this.normalize().multiplyScalar(length);\n }\n lerp(v, alpha) {\n this.x += (v.x - this.x) * alpha;\n this.y += (v.y - this.y) * alpha;\n this.z += (v.z - this.z) * alpha;\n return this;\n }\n lerpVectors(v1, v2, alpha) {\n this.x = v1.x + (v2.x - v1.x) * alpha;\n this.y = v1.y + (v2.y - v1.y) * alpha;\n this.z = v1.z + (v2.z - v1.z) * alpha;\n return this;\n }\n cross(v) {\n return this.crossVectors(this, v);\n }\n crossVectors(a, b) {\n const ax = a.x, ay = a.y, az = a.z;\n const bx = b.x, by = b.y, bz = b.z;\n this.x = ay * bz - az * by;\n this.y = az * bx - ax * bz;\n this.z = ax * by - ay * bx;\n return this;\n }\n projectOnVector(v) {\n const denominator = v.lengthSq();\n if (denominator === 0) return this.set(0, 0, 0);\n const scalar = v.dot(this) / denominator;\n return this.copy(v).multiplyScalar(scalar);\n }\n projectOnPlane(planeNormal) {\n _vector$c.copy(this).projectOnVector(planeNormal);\n return this.sub(_vector$c);\n }\n reflect(normal) {\n return this.sub(_vector$c.copy(normal).multiplyScalar(2 * this.dot(normal)));\n }\n angleTo(v) {\n const denominator = Math.sqrt(this.lengthSq() * v.lengthSq());\n if (denominator === 0) return Math.PI / 2;\n const theta = this.dot(v) / denominator;\n return Math.acos(clamp(theta, -1, 1));\n }\n distanceTo(v) {\n return Math.sqrt(this.distanceToSquared(v));\n }\n distanceToSquared(v) {\n const dx = this.x - v.x, dy = this.y - v.y, dz = this.z - v.z;\n return dx * dx + dy * dy + dz * dz;\n }\n manhattanDistanceTo(v) {\n return Math.abs(this.x - v.x) + Math.abs(this.y - v.y) + Math.abs(this.z - v.z);\n }\n setFromSpherical(s) {\n return this.setFromSphericalCoords(s.radius, s.phi, s.theta);\n }\n setFromSphericalCoords(radius, phi, theta) {\n const sinPhiRadius = Math.sin(phi) * radius;\n this.x = sinPhiRadius * Math.sin(theta);\n this.y = Math.cos(phi) * radius;\n this.z = sinPhiRadius * Math.cos(theta);\n return this;\n }\n setFromCylindrical(c) {\n return this.setFromCylindricalCoords(c.radius, c.theta, c.y);\n }\n setFromCylindricalCoords(radius, theta, y) {\n this.x = radius * Math.sin(theta);\n this.y = y;\n this.z = radius * Math.cos(theta);\n return this;\n }\n setFromMatrixPosition(m) {\n const e = m.elements;\n this.x = e[12];\n this.y = e[13];\n this.z = e[14];\n return this;\n }\n setFromMatrixScale(m) {\n const sx = this.setFromMatrixColumn(m, 0).length();\n const sy = this.setFromMatrixColumn(m, 1).length();\n const sz = this.setFromMatrixColumn(m, 2).length();\n this.x = sx;\n this.y = sy;\n this.z = sz;\n return this;\n }\n setFromMatrixColumn(m, index) {\n return this.fromArray(m.elements, index * 4);\n }\n setFromMatrix3Column(m, index) {\n return this.fromArray(m.elements, index * 3);\n }\n setFromEuler(e) {\n this.x = e._x;\n this.y = e._y;\n this.z = e._z;\n return this;\n }\n setFromColor(c) {\n this.x = c.r;\n this.y = c.g;\n this.z = c.b;\n return this;\n }\n equals(v) {\n return v.x === this.x && v.y === this.y && v.z === this.z;\n }\n fromArray(array, offset = 0) {\n this.x = array[offset];\n this.y = array[offset + 1];\n this.z = array[offset + 2];\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this.x;\n array[offset + 1] = this.y;\n array[offset + 2] = this.z;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this.x = attribute.getX(index);\n this.y = attribute.getY(index);\n this.z = attribute.getZ(index);\n return this;\n }\n random() {\n this.x = Math.random();\n this.y = Math.random();\n this.z = Math.random();\n return this;\n }\n randomDirection() {\n const theta = Math.random() * Math.PI * 2;\n const u = Math.random() * 2 - 1;\n const c = Math.sqrt(1 - u * u);\n this.x = c * Math.cos(theta);\n this.y = u;\n this.z = c * Math.sin(theta);\n return this;\n }\n *[Symbol.iterator]() {\n yield this.x;\n yield this.y;\n yield this.z;\n }\n }\n const _vector$c = /* @__PURE__ */ new Vector3();\n const _quaternion$4 = /* @__PURE__ */ new Quaternion();\n class Box3 {\n constructor(min = new Vector3(Infinity, Infinity, Infinity), max2 = new Vector3(-Infinity, -Infinity, -Infinity)) {\n this.isBox3 = true;\n this.min = min;\n this.max = max2;\n }\n set(min, max2) {\n this.min.copy(min);\n this.max.copy(max2);\n return this;\n }\n setFromArray(array) {\n this.makeEmpty();\n for (let i2 = 0, il = array.length; i2 < il; i2 += 3) {\n this.expandByPoint(_vector$b.fromArray(array, i2));\n }\n return this;\n }\n setFromBufferAttribute(attribute) {\n this.makeEmpty();\n for (let i2 = 0, il = attribute.count; i2 < il; i2++) {\n this.expandByPoint(_vector$b.fromBufferAttribute(attribute, i2));\n }\n return this;\n }\n setFromPoints(points) {\n this.makeEmpty();\n for (let i2 = 0, il = points.length; i2 < il; i2++) {\n this.expandByPoint(points[i2]);\n }\n return this;\n }\n setFromCenterAndSize(center, size) {\n const halfSize = _vector$b.copy(size).multiplyScalar(0.5);\n this.min.copy(center).sub(halfSize);\n this.max.copy(center).add(halfSize);\n return this;\n }\n setFromObject(object, precise = false) {\n this.makeEmpty();\n return this.expandByObject(object, precise);\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(box) {\n this.min.copy(box.min);\n this.max.copy(box.max);\n return this;\n }\n makeEmpty() {\n this.min.x = this.min.y = this.min.z = Infinity;\n this.max.x = this.max.y = this.max.z = -Infinity;\n return this;\n }\n isEmpty() {\n return this.max.x < this.min.x || this.max.y < this.min.y || this.max.z < this.min.z;\n }\n getCenter(target) {\n return this.isEmpty() ? target.set(0, 0, 0) : target.addVectors(this.min, this.max).multiplyScalar(0.5);\n }\n getSize(target) {\n return this.isEmpty() ? target.set(0, 0, 0) : target.subVectors(this.max, this.min);\n }\n expandByPoint(point) {\n this.min.min(point);\n this.max.max(point);\n return this;\n }\n expandByVector(vector) {\n this.min.sub(vector);\n this.max.add(vector);\n return this;\n }\n expandByScalar(scalar) {\n this.min.addScalar(-scalar);\n this.max.addScalar(scalar);\n return this;\n }\n expandByObject(object, precise = false) {\n object.updateWorldMatrix(false, false);\n const geometry = object.geometry;\n if (geometry !== void 0) {\n const positionAttribute = geometry.getAttribute("position");\n if (precise === true && positionAttribute !== void 0 && object.isInstancedMesh !== true) {\n for (let i2 = 0, l = positionAttribute.count; i2 < l; i2++) {\n if (object.isMesh === true) {\n object.getVertexPosition(i2, _vector$b);\n } else {\n _vector$b.fromBufferAttribute(positionAttribute, i2);\n }\n _vector$b.applyMatrix4(object.matrixWorld);\n this.expandByPoint(_vector$b);\n }\n } else {\n if (object.boundingBox !== void 0) {\n if (object.boundingBox === null) {\n object.computeBoundingBox();\n }\n _box$4.copy(object.boundingBox);\n } else {\n if (geometry.boundingBox === null) {\n geometry.computeBoundingBox();\n }\n _box$4.copy(geometry.boundingBox);\n }\n _box$4.applyMatrix4(object.matrixWorld);\n this.union(_box$4);\n }\n }\n const children = object.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n this.expandByObject(children[i2], precise);\n }\n return this;\n }\n containsPoint(point) {\n return point.x >= this.min.x && point.x <= this.max.x && point.y >= this.min.y && point.y <= this.max.y && point.z >= this.min.z && point.z <= this.max.z;\n }\n containsBox(box) {\n return this.min.x <= box.min.x && box.max.x <= this.max.x && this.min.y <= box.min.y && box.max.y <= this.max.y && this.min.z <= box.min.z && box.max.z <= this.max.z;\n }\n getParameter(point, target) {\n return target.set(\n (point.x - this.min.x) / (this.max.x - this.min.x),\n (point.y - this.min.y) / (this.max.y - this.min.y),\n (point.z - this.min.z) / (this.max.z - this.min.z)\n );\n }\n intersectsBox(box) {\n return box.max.x >= this.min.x && box.min.x <= this.max.x && box.max.y >= this.min.y && box.min.y <= this.max.y && box.max.z >= this.min.z && box.min.z <= this.max.z;\n }\n intersectsSphere(sphere) {\n this.clampPoint(sphere.center, _vector$b);\n return _vector$b.distanceToSquared(sphere.center) <= sphere.radius * sphere.radius;\n }\n intersectsPlane(plane) {\n let min, max2;\n if (plane.normal.x > 0) {\n min = plane.normal.x * this.min.x;\n max2 = plane.normal.x * this.max.x;\n } else {\n min = plane.normal.x * this.max.x;\n max2 = plane.normal.x * this.min.x;\n }\n if (plane.normal.y > 0) {\n min += plane.normal.y * this.min.y;\n max2 += plane.normal.y * this.max.y;\n } else {\n min += plane.normal.y * this.max.y;\n max2 += plane.normal.y * this.min.y;\n }\n if (plane.normal.z > 0) {\n min += plane.normal.z * this.min.z;\n max2 += plane.normal.z * this.max.z;\n } else {\n min += plane.normal.z * this.max.z;\n max2 += plane.normal.z * this.min.z;\n }\n return min <= -plane.constant && max2 >= -plane.constant;\n }\n intersectsTriangle(triangle) {\n if (this.isEmpty()) {\n return false;\n }\n this.getCenter(_center);\n _extents.subVectors(this.max, _center);\n _v0$2.subVectors(triangle.a, _center);\n _v1$7.subVectors(triangle.b, _center);\n _v2$4.subVectors(triangle.c, _center);\n _f0.subVectors(_v1$7, _v0$2);\n _f1.subVectors(_v2$4, _v1$7);\n _f2.subVectors(_v0$2, _v2$4);\n let axes = [\n 0,\n -_f0.z,\n _f0.y,\n 0,\n -_f1.z,\n _f1.y,\n 0,\n -_f2.z,\n _f2.y,\n _f0.z,\n 0,\n -_f0.x,\n _f1.z,\n 0,\n -_f1.x,\n _f2.z,\n 0,\n -_f2.x,\n -_f0.y,\n _f0.x,\n 0,\n -_f1.y,\n _f1.x,\n 0,\n -_f2.y,\n _f2.x,\n 0\n ];\n if (!satForAxes(axes, _v0$2, _v1$7, _v2$4, _extents)) {\n return false;\n }\n axes = [1, 0, 0, 0, 1, 0, 0, 0, 1];\n if (!satForAxes(axes, _v0$2, _v1$7, _v2$4, _extents)) {\n return false;\n }\n _triangleNormal.crossVectors(_f0, _f1);\n axes = [_triangleNormal.x, _triangleNormal.y, _triangleNormal.z];\n return satForAxes(axes, _v0$2, _v1$7, _v2$4, _extents);\n }\n clampPoint(point, target) {\n return target.copy(point).clamp(this.min, this.max);\n }\n distanceToPoint(point) {\n return this.clampPoint(point, _vector$b).distanceTo(point);\n }\n getBoundingSphere(target) {\n if (this.isEmpty()) {\n target.makeEmpty();\n } else {\n this.getCenter(target.center);\n target.radius = this.getSize(_vector$b).length() * 0.5;\n }\n return target;\n }\n intersect(box) {\n this.min.max(box.min);\n this.max.min(box.max);\n if (this.isEmpty()) this.makeEmpty();\n return this;\n }\n union(box) {\n this.min.min(box.min);\n this.max.max(box.max);\n return this;\n }\n applyMatrix4(matrix) {\n if (this.isEmpty()) return this;\n _points[0].set(this.min.x, this.min.y, this.min.z).applyMatrix4(matrix);\n _points[1].set(this.min.x, this.min.y, this.max.z).applyMatrix4(matrix);\n _points[2].set(this.min.x, this.max.y, this.min.z).applyMatrix4(matrix);\n _points[3].set(this.min.x, this.max.y, this.max.z).applyMatrix4(matrix);\n _points[4].set(this.max.x, this.min.y, this.min.z).applyMatrix4(matrix);\n _points[5].set(this.max.x, this.min.y, this.max.z).applyMatrix4(matrix);\n _points[6].set(this.max.x, this.max.y, this.min.z).applyMatrix4(matrix);\n _points[7].set(this.max.x, this.max.y, this.max.z).applyMatrix4(matrix);\n this.setFromPoints(_points);\n return this;\n }\n translate(offset) {\n this.min.add(offset);\n this.max.add(offset);\n return this;\n }\n equals(box) {\n return box.min.equals(this.min) && box.max.equals(this.max);\n }\n }\n const _points = [\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3()\n ];\n const _vector$b = /* @__PURE__ */ new Vector3();\n const _box$4 = /* @__PURE__ */ new Box3();\n const _v0$2 = /* @__PURE__ */ new Vector3();\n const _v1$7 = /* @__PURE__ */ new Vector3();\n const _v2$4 = /* @__PURE__ */ new Vector3();\n const _f0 = /* @__PURE__ */ new Vector3();\n const _f1 = /* @__PURE__ */ new Vector3();\n const _f2 = /* @__PURE__ */ new Vector3();\n const _center = /* @__PURE__ */ new Vector3();\n const _extents = /* @__PURE__ */ new Vector3();\n const _triangleNormal = /* @__PURE__ */ new Vector3();\n const _testAxis = /* @__PURE__ */ new Vector3();\n function satForAxes(axes, v0, v1, v2, extents) {\n for (let i2 = 0, j = axes.length - 3; i2 <= j; i2 += 3) {\n _testAxis.fromArray(axes, i2);\n const r = extents.x * Math.abs(_testAxis.x) + extents.y * Math.abs(_testAxis.y) + extents.z * Math.abs(_testAxis.z);\n const p0 = v0.dot(_testAxis);\n const p1 = v1.dot(_testAxis);\n const p2 = v2.dot(_testAxis);\n if (Math.max(-Math.max(p0, p1, p2), Math.min(p0, p1, p2)) > r) {\n return false;\n }\n }\n return true;\n }\n const _box$3 = /* @__PURE__ */ new Box3();\n const _v1$6 = /* @__PURE__ */ new Vector3();\n const _v2$3 = /* @__PURE__ */ new Vector3();\n class Sphere {\n constructor(center = new Vector3(), radius = -1) {\n this.isSphere = true;\n this.center = center;\n this.radius = radius;\n }\n set(center, radius) {\n this.center.copy(center);\n this.radius = radius;\n return this;\n }\n setFromPoints(points, optionalCenter) {\n const center = this.center;\n if (optionalCenter !== void 0) {\n center.copy(optionalCenter);\n } else {\n _box$3.setFromPoints(points).getCenter(center);\n }\n let maxRadiusSq = 0;\n for (let i2 = 0, il = points.length; i2 < il; i2++) {\n maxRadiusSq = Math.max(maxRadiusSq, center.distanceToSquared(points[i2]));\n }\n this.radius = Math.sqrt(maxRadiusSq);\n return this;\n }\n copy(sphere) {\n this.center.copy(sphere.center);\n this.radius = sphere.radius;\n return this;\n }\n isEmpty() {\n return this.radius < 0;\n }\n makeEmpty() {\n this.center.set(0, 0, 0);\n this.radius = -1;\n return this;\n }\n containsPoint(point) {\n return point.distanceToSquared(this.center) <= this.radius * this.radius;\n }\n distanceToPoint(point) {\n return point.distanceTo(this.center) - this.radius;\n }\n intersectsSphere(sphere) {\n const radiusSum = this.radius + sphere.radius;\n return sphere.center.distanceToSquared(this.center) <= radiusSum * radiusSum;\n }\n intersectsBox(box) {\n return box.intersectsSphere(this);\n }\n intersectsPlane(plane) {\n return Math.abs(plane.distanceToPoint(this.center)) <= this.radius;\n }\n clampPoint(point, target) {\n const deltaLengthSq = this.center.distanceToSquared(point);\n target.copy(point);\n if (deltaLengthSq > this.radius * this.radius) {\n target.sub(this.center).normalize();\n target.multiplyScalar(this.radius).add(this.center);\n }\n return target;\n }\n getBoundingBox(target) {\n if (this.isEmpty()) {\n target.makeEmpty();\n return target;\n }\n target.set(this.center, this.center);\n target.expandByScalar(this.radius);\n return target;\n }\n applyMatrix4(matrix) {\n this.center.applyMatrix4(matrix);\n this.radius = this.radius * matrix.getMaxScaleOnAxis();\n return this;\n }\n translate(offset) {\n this.center.add(offset);\n return this;\n }\n expandByPoint(point) {\n if (this.isEmpty()) {\n this.center.copy(point);\n this.radius = 0;\n return this;\n }\n _v1$6.subVectors(point, this.center);\n const lengthSq = _v1$6.lengthSq();\n if (lengthSq > this.radius * this.radius) {\n const length = Math.sqrt(lengthSq);\n const delta = (length - this.radius) * 0.5;\n this.center.addScaledVector(_v1$6, delta / length);\n this.radius += delta;\n }\n return this;\n }\n union(sphere) {\n if (sphere.isEmpty()) {\n return this;\n }\n if (this.isEmpty()) {\n this.copy(sphere);\n return this;\n }\n if (this.center.equals(sphere.center) === true) {\n this.radius = Math.max(this.radius, sphere.radius);\n } else {\n _v2$3.subVectors(sphere.center, this.center).setLength(sphere.radius);\n this.expandByPoint(_v1$6.copy(sphere.center).add(_v2$3));\n this.expandByPoint(_v1$6.copy(sphere.center).sub(_v2$3));\n }\n return this;\n }\n equals(sphere) {\n return sphere.center.equals(this.center) && sphere.radius === this.radius;\n }\n clone() {\n return new this.constructor().copy(this);\n }\n }\n const _vector$a = /* @__PURE__ */ new Vector3();\n const _segCenter = /* @__PURE__ */ new Vector3();\n const _segDir = /* @__PURE__ */ new Vector3();\n const _diff = /* @__PURE__ */ new Vector3();\n const _edge1 = /* @__PURE__ */ new Vector3();\n const _edge2 = /* @__PURE__ */ new Vector3();\n const _normal$1 = /* @__PURE__ */ new Vector3();\n class Ray {\n constructor(origin = new Vector3(), direction = new Vector3(0, 0, -1)) {\n this.origin = origin;\n this.direction = direction;\n }\n set(origin, direction) {\n this.origin.copy(origin);\n this.direction.copy(direction);\n return this;\n }\n copy(ray) {\n this.origin.copy(ray.origin);\n this.direction.copy(ray.direction);\n return this;\n }\n at(t, target) {\n return target.copy(this.origin).addScaledVector(this.direction, t);\n }\n lookAt(v) {\n this.direction.copy(v).sub(this.origin).normalize();\n return this;\n }\n recast(t) {\n this.origin.copy(this.at(t, _vector$a));\n return this;\n }\n closestPointToPoint(point, target) {\n target.subVectors(point, this.origin);\n const directionDistance = target.dot(this.direction);\n if (directionDistance < 0) {\n return target.copy(this.origin);\n }\n return target.copy(this.origin).addScaledVector(this.direction, directionDistance);\n }\n distanceToPoint(point) {\n return Math.sqrt(this.distanceSqToPoint(point));\n }\n distanceSqToPoint(point) {\n const directionDistance = _vector$a.subVectors(point, this.origin).dot(this.direction);\n if (directionDistance < 0) {\n return this.origin.distanceToSquared(point);\n }\n _vector$a.copy(this.origin).addScaledVector(this.direction, directionDistance);\n return _vector$a.distanceToSquared(point);\n }\n distanceSqToSegment(v0, v1, optionalPointOnRay, optionalPointOnSegment) {\n _segCenter.copy(v0).add(v1).multiplyScalar(0.5);\n _segDir.copy(v1).sub(v0).normalize();\n _diff.copy(this.origin).sub(_segCenter);\n const segExtent = v0.distanceTo(v1) * 0.5;\n const a01 = -this.direction.dot(_segDir);\n const b0 = _diff.dot(this.direction);\n const b1 = -_diff.dot(_segDir);\n const c = _diff.lengthSq();\n const det = Math.abs(1 - a01 * a01);\n let s0, s1, sqrDist, extDet;\n if (det > 0) {\n s0 = a01 * b1 - b0;\n s1 = a01 * b0 - b1;\n extDet = segExtent * det;\n if (s0 >= 0) {\n if (s1 >= -extDet) {\n if (s1 <= extDet) {\n const invDet = 1 / det;\n s0 *= invDet;\n s1 *= invDet;\n sqrDist = s0 * (s0 + a01 * s1 + 2 * b0) + s1 * (a01 * s0 + s1 + 2 * b1) + c;\n } else {\n s1 = segExtent;\n s0 = Math.max(0, -(a01 * s1 + b0));\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n }\n } else {\n s1 = -segExtent;\n s0 = Math.max(0, -(a01 * s1 + b0));\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n }\n } else {\n if (s1 <= -extDet) {\n s0 = Math.max(0, -(-a01 * segExtent + b0));\n s1 = s0 > 0 ? -segExtent : Math.min(Math.max(-segExtent, -b1), segExtent);\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n } else if (s1 <= extDet) {\n s0 = 0;\n s1 = Math.min(Math.max(-segExtent, -b1), segExtent);\n sqrDist = s1 * (s1 + 2 * b1) + c;\n } else {\n s0 = Math.max(0, -(a01 * segExtent + b0));\n s1 = s0 > 0 ? segExtent : Math.min(Math.max(-segExtent, -b1), segExtent);\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n }\n }\n } else {\n s1 = a01 > 0 ? -segExtent : segExtent;\n s0 = Math.max(0, -(a01 * s1 + b0));\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n }\n if (optionalPointOnRay) {\n optionalPointOnRay.copy(this.origin).addScaledVector(this.direction, s0);\n }\n if (optionalPointOnSegment) {\n optionalPointOnSegment.copy(_segCenter).addScaledVector(_segDir, s1);\n }\n return sqrDist;\n }\n intersectSphere(sphere, target) {\n _vector$a.subVectors(sphere.center, this.origin);\n const tca = _vector$a.dot(this.direction);\n const d2 = _vector$a.dot(_vector$a) - tca * tca;\n const radius2 = sphere.radius * sphere.radius;\n if (d2 > radius2) return null;\n const thc = Math.sqrt(radius2 - d2);\n const t0 = tca - thc;\n const t1 = tca + thc;\n if (t1 < 0) return null;\n if (t0 < 0) return this.at(t1, target);\n return this.at(t0, target);\n }\n intersectsSphere(sphere) {\n return this.distanceSqToPoint(sphere.center) <= sphere.radius * sphere.radius;\n }\n distanceToPlane(plane) {\n const denominator = plane.normal.dot(this.direction);\n if (denominator === 0) {\n if (plane.distanceToPoint(this.origin) === 0) {\n return 0;\n }\n return null;\n }\n const t = -(this.origin.dot(plane.normal) + plane.constant) / denominator;\n return t >= 0 ? t : null;\n }\n intersectPlane(plane, target) {\n const t = this.distanceToPlane(plane);\n if (t === null) {\n return null;\n }\n return this.at(t, target);\n }\n intersectsPlane(plane) {\n const distToPoint = plane.distanceToPoint(this.origin);\n if (distToPoint === 0) {\n return true;\n }\n const denominator = plane.normal.dot(this.direction);\n if (denominator * distToPoint < 0) {\n return true;\n }\n return false;\n }\n intersectBox(box, target) {\n let tmin, tmax, tymin, tymax, tzmin, tzmax;\n const invdirx = 1 / this.direction.x, invdiry = 1 / this.direction.y, invdirz = 1 / this.direction.z;\n const origin = this.origin;\n if (invdirx >= 0) {\n tmin = (box.min.x - origin.x) * invdirx;\n tmax = (box.max.x - origin.x) * invdirx;\n } else {\n tmin = (box.max.x - origin.x) * invdirx;\n tmax = (box.min.x - origin.x) * invdirx;\n }\n if (invdiry >= 0) {\n tymin = (box.min.y - origin.y) * invdiry;\n tymax = (box.max.y - origin.y) * invdiry;\n } else {\n tymin = (box.max.y - origin.y) * invdiry;\n tymax = (box.min.y - origin.y) * invdiry;\n }\n if (tmin > tymax || tymin > tmax) return null;\n if (tymin > tmin || isNaN(tmin)) tmin = tymin;\n if (tymax < tmax || isNaN(tmax)) tmax = tymax;\n if (invdirz >= 0) {\n tzmin = (box.min.z - origin.z) * invdirz;\n tzmax = (box.max.z - origin.z) * invdirz;\n } else {\n tzmin = (box.max.z - origin.z) * invdirz;\n tzmax = (box.min.z - origin.z) * invdirz;\n }\n if (tmin > tzmax || tzmin > tmax) return null;\n if (tzmin > tmin || tmin !== tmin) tmin = tzmin;\n if (tzmax < tmax || tmax !== tmax) tmax = tzmax;\n if (tmax < 0) return null;\n return this.at(tmin >= 0 ? tmin : tmax, target);\n }\n intersectsBox(box) {\n return this.intersectBox(box, _vector$a) !== null;\n }\n intersectTriangle(a, b, c, backfaceCulling, target) {\n _edge1.subVectors(b, a);\n _edge2.subVectors(c, a);\n _normal$1.crossVectors(_edge1, _edge2);\n let DdN = this.direction.dot(_normal$1);\n let sign;\n if (DdN > 0) {\n if (backfaceCulling) return null;\n sign = 1;\n } else if (DdN < 0) {\n sign = -1;\n DdN = -DdN;\n } else {\n return null;\n }\n _diff.subVectors(this.origin, a);\n const DdQxE2 = sign * this.direction.dot(_edge2.crossVectors(_diff, _edge2));\n if (DdQxE2 < 0) {\n return null;\n }\n const DdE1xQ = sign * this.direction.dot(_edge1.cross(_diff));\n if (DdE1xQ < 0) {\n return null;\n }\n if (DdQxE2 + DdE1xQ > DdN) {\n return null;\n }\n const QdN = -sign * _diff.dot(_normal$1);\n if (QdN < 0) {\n return null;\n }\n return this.at(QdN / DdN, target);\n }\n applyMatrix4(matrix4) {\n this.origin.applyMatrix4(matrix4);\n this.direction.transformDirection(matrix4);\n return this;\n }\n equals(ray) {\n return ray.origin.equals(this.origin) && ray.direction.equals(this.direction);\n }\n clone() {\n return new this.constructor().copy(this);\n }\n }\n class Matrix4 {\n constructor(n11, n12, n13, n14, n21, n22, n23, n24, n31, n32, n33, n34, n41, n42, n43, n44) {\n Matrix4.prototype.isMatrix4 = true;\n this.elements = [\n 1,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1\n ];\n if (n11 !== void 0) {\n this.set(n11, n12, n13, n14, n21, n22, n23, n24, n31, n32, n33, n34, n41, n42, n43, n44);\n }\n }\n set(n11, n12, n13, n14, n21, n22, n23, n24, n31, n32, n33, n34, n41, n42, n43, n44) {\n const te = this.elements;\n te[0] = n11;\n te[4] = n12;\n te[8] = n13;\n te[12] = n14;\n te[1] = n21;\n te[5] = n22;\n te[9] = n23;\n te[13] = n24;\n te[2] = n31;\n te[6] = n32;\n te[10] = n33;\n te[14] = n34;\n te[3] = n41;\n te[7] = n42;\n te[11] = n43;\n te[15] = n44;\n return this;\n }\n identity() {\n this.set(\n 1,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n clone() {\n return new Matrix4().fromArray(this.elements);\n }\n copy(m) {\n const te = this.elements;\n const me = m.elements;\n te[0] = me[0];\n te[1] = me[1];\n te[2] = me[2];\n te[3] = me[3];\n te[4] = me[4];\n te[5] = me[5];\n te[6] = me[6];\n te[7] = me[7];\n te[8] = me[8];\n te[9] = me[9];\n te[10] = me[10];\n te[11] = me[11];\n te[12] = me[12];\n te[13] = me[13];\n te[14] = me[14];\n te[15] = me[15];\n return this;\n }\n copyPosition(m) {\n const te = this.elements, me = m.elements;\n te[12] = me[12];\n te[13] = me[13];\n te[14] = me[14];\n return this;\n }\n setFromMatrix3(m) {\n const me = m.elements;\n this.set(\n me[0],\n me[3],\n me[6],\n 0,\n me[1],\n me[4],\n me[7],\n 0,\n me[2],\n me[5],\n me[8],\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n extractBasis(xAxis, yAxis, zAxis) {\n xAxis.setFromMatrixColumn(this, 0);\n yAxis.setFromMatrixColumn(this, 1);\n zAxis.setFromMatrixColumn(this, 2);\n return this;\n }\n makeBasis(xAxis, yAxis, zAxis) {\n this.set(\n xAxis.x,\n yAxis.x,\n zAxis.x,\n 0,\n xAxis.y,\n yAxis.y,\n zAxis.y,\n 0,\n xAxis.z,\n yAxis.z,\n zAxis.z,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n extractRotation(m) {\n const te = this.elements;\n const me = m.elements;\n const scaleX = 1 / _v1$5.setFromMatrixColumn(m, 0).length();\n const scaleY = 1 / _v1$5.setFromMatrixColumn(m, 1).length();\n const scaleZ = 1 / _v1$5.setFromMatrixColumn(m, 2).length();\n te[0] = me[0] * scaleX;\n te[1] = me[1] * scaleX;\n te[2] = me[2] * scaleX;\n te[3] = 0;\n te[4] = me[4] * scaleY;\n te[5] = me[5] * scaleY;\n te[6] = me[6] * scaleY;\n te[7] = 0;\n te[8] = me[8] * scaleZ;\n te[9] = me[9] * scaleZ;\n te[10] = me[10] * scaleZ;\n te[11] = 0;\n te[12] = 0;\n te[13] = 0;\n te[14] = 0;\n te[15] = 1;\n return this;\n }\n makeRotationFromEuler(euler) {\n const te = this.elements;\n const x2 = euler.x, y = euler.y, z = euler.z;\n const a = Math.cos(x2), b = Math.sin(x2);\n const c = Math.cos(y), d = Math.sin(y);\n const e = Math.cos(z), f = Math.sin(z);\n if (euler.order === "XYZ") {\n const ae = a * e, af = a * f, be = b * e, bf = b * f;\n te[0] = c * e;\n te[4] = -c * f;\n te[8] = d;\n te[1] = af + be * d;\n te[5] = ae - bf * d;\n te[9] = -b * c;\n te[2] = bf - ae * d;\n te[6] = be + af * d;\n te[10] = a * c;\n } else if (euler.order === "YXZ") {\n const ce = c * e, cf = c * f, de = d * e, df = d * f;\n te[0] = ce + df * b;\n te[4] = de * b - cf;\n te[8] = a * d;\n te[1] = a * f;\n te[5] = a * e;\n te[9] = -b;\n te[2] = cf * b - de;\n te[6] = df + ce * b;\n te[10] = a * c;\n } else if (euler.order === "ZXY") {\n const ce = c * e, cf = c * f, de = d * e, df = d * f;\n te[0] = ce - df * b;\n te[4] = -a * f;\n te[8] = de + cf * b;\n te[1] = cf + de * b;\n te[5] = a * e;\n te[9] = df - ce * b;\n te[2] = -a * d;\n te[6] = b;\n te[10] = a * c;\n } else if (euler.order === "ZYX") {\n const ae = a * e, af = a * f, be = b * e, bf = b * f;\n te[0] = c * e;\n te[4] = be * d - af;\n te[8] = ae * d + bf;\n te[1] = c * f;\n te[5] = bf * d + ae;\n te[9] = af * d - be;\n te[2] = -d;\n te[6] = b * c;\n te[10] = a * c;\n } else if (euler.order === "YZX") {\n const ac = a * c, ad = a * d, bc = b * c, bd = b * d;\n te[0] = c * e;\n te[4] = bd - ac * f;\n te[8] = bc * f + ad;\n te[1] = f;\n te[5] = a * e;\n te[9] = -b * e;\n te[2] = -d * e;\n te[6] = ad * f + bc;\n te[10] = ac - bd * f;\n } else if (euler.order === "XZY") {\n const ac = a * c, ad = a * d, bc = b * c, bd = b * d;\n te[0] = c * e;\n te[4] = -f;\n te[8] = d * e;\n te[1] = ac * f + bd;\n te[5] = a * e;\n te[9] = ad * f - bc;\n te[2] = bc * f - ad;\n te[6] = b * e;\n te[10] = bd * f + ac;\n }\n te[3] = 0;\n te[7] = 0;\n te[11] = 0;\n te[12] = 0;\n te[13] = 0;\n te[14] = 0;\n te[15] = 1;\n return this;\n }\n makeRotationFromQuaternion(q) {\n return this.compose(_zero, q, _one);\n }\n lookAt(eye, target, up) {\n const te = this.elements;\n _z.subVectors(eye, target);\n if (_z.lengthSq() === 0) {\n _z.z = 1;\n }\n _z.normalize();\n _x.crossVectors(up, _z);\n if (_x.lengthSq() === 0) {\n if (Math.abs(up.z) === 1) {\n _z.x += 1e-4;\n } else {\n _z.z += 1e-4;\n }\n _z.normalize();\n _x.crossVectors(up, _z);\n }\n _x.normalize();\n _y.crossVectors(_z, _x);\n te[0] = _x.x;\n te[4] = _y.x;\n te[8] = _z.x;\n te[1] = _x.y;\n te[5] = _y.y;\n te[9] = _z.y;\n te[2] = _x.z;\n te[6] = _y.z;\n te[10] = _z.z;\n return this;\n }\n multiply(m) {\n return this.multiplyMatrices(this, m);\n }\n premultiply(m) {\n return this.multiplyMatrices(m, this);\n }\n multiplyMatrices(a, b) {\n const ae = a.elements;\n const be = b.elements;\n const te = this.elements;\n const a11 = ae[0], a12 = ae[4], a13 = ae[8], a14 = ae[12];\n const a21 = ae[1], a22 = ae[5], a23 = ae[9], a24 = ae[13];\n const a31 = ae[2], a32 = ae[6], a33 = ae[10], a34 = ae[14];\n const a41 = ae[3], a42 = ae[7], a43 = ae[11], a44 = ae[15];\n const b11 = be[0], b12 = be[4], b13 = be[8], b14 = be[12];\n const b21 = be[1], b22 = be[5], b23 = be[9], b24 = be[13];\n const b31 = be[2], b32 = be[6], b33 = be[10], b34 = be[14];\n const b41 = be[3], b42 = be[7], b43 = be[11], b44 = be[15];\n te[0] = a11 * b11 + a12 * b21 + a13 * b31 + a14 * b41;\n te[4] = a11 * b12 + a12 * b22 + a13 * b32 + a14 * b42;\n te[8] = a11 * b13 + a12 * b23 + a13 * b33 + a14 * b43;\n te[12] = a11 * b14 + a12 * b24 + a13 * b34 + a14 * b44;\n te[1] = a21 * b11 + a22 * b21 + a23 * b31 + a24 * b41;\n te[5] = a21 * b12 + a22 * b22 + a23 * b32 + a24 * b42;\n te[9] = a21 * b13 + a22 * b23 + a23 * b33 + a24 * b43;\n te[13] = a21 * b14 + a22 * b24 + a23 * b34 + a24 * b44;\n te[2] = a31 * b11 + a32 * b21 + a33 * b31 + a34 * b41;\n te[6] = a31 * b12 + a32 * b22 + a33 * b32 + a34 * b42;\n te[10] = a31 * b13 + a32 * b23 + a33 * b33 + a34 * b43;\n te[14] = a31 * b14 + a32 * b24 + a33 * b34 + a34 * b44;\n te[3] = a41 * b11 + a42 * b21 + a43 * b31 + a44 * b41;\n te[7] = a41 * b12 + a42 * b22 + a43 * b32 + a44 * b42;\n te[11] = a41 * b13 + a42 * b23 + a43 * b33 + a44 * b43;\n te[15] = a41 * b14 + a42 * b24 + a43 * b34 + a44 * b44;\n return this;\n }\n multiplyScalar(s) {\n const te = this.elements;\n te[0] *= s;\n te[4] *= s;\n te[8] *= s;\n te[12] *= s;\n te[1] *= s;\n te[5] *= s;\n te[9] *= s;\n te[13] *= s;\n te[2] *= s;\n te[6] *= s;\n te[10] *= s;\n te[14] *= s;\n te[3] *= s;\n te[7] *= s;\n te[11] *= s;\n te[15] *= s;\n return this;\n }\n determinant() {\n const te = this.elements;\n const n11 = te[0], n12 = te[4], n13 = te[8], n14 = te[12];\n const n21 = te[1], n22 = te[5], n23 = te[9], n24 = te[13];\n const n31 = te[2], n32 = te[6], n33 = te[10], n34 = te[14];\n const n41 = te[3], n42 = te[7], n43 = te[11], n44 = te[15];\n return n41 * (+n14 * n23 * n32 - n13 * n24 * n32 - n14 * n22 * n33 + n12 * n24 * n33 + n13 * n22 * n34 - n12 * n23 * n34) + n42 * (+n11 * n23 * n34 - n11 * n24 * n33 + n14 * n21 * n33 - n13 * n21 * n34 + n13 * n24 * n31 - n14 * n23 * n31) + n43 * (+n11 * n24 * n32 - n11 * n22 * n34 - n14 * n21 * n32 + n12 * n21 * n34 + n14 * n22 * n31 - n12 * n24 * n31) + n44 * (-n13 * n22 * n31 - n11 * n23 * n32 + n11 * n22 * n33 + n13 * n21 * n32 - n12 * n21 * n33 + n12 * n23 * n31);\n }\n transpose() {\n const te = this.elements;\n let tmp;\n tmp = te[1];\n te[1] = te[4];\n te[4] = tmp;\n tmp = te[2];\n te[2] = te[8];\n te[8] = tmp;\n tmp = te[6];\n te[6] = te[9];\n te[9] = tmp;\n tmp = te[3];\n te[3] = te[12];\n te[12] = tmp;\n tmp = te[7];\n te[7] = te[13];\n te[13] = tmp;\n tmp = te[11];\n te[11] = te[14];\n te[14] = tmp;\n return this;\n }\n setPosition(x2, y, z) {\n const te = this.elements;\n if (x2.isVector3) {\n te[12] = x2.x;\n te[13] = x2.y;\n te[14] = x2.z;\n } else {\n te[12] = x2;\n te[13] = y;\n te[14] = z;\n }\n return this;\n }\n invert() {\n const te = this.elements, n11 = te[0], n21 = te[1], n31 = te[2], n41 = te[3], n12 = te[4], n22 = te[5], n32 = te[6], n42 = te[7], n13 = te[8], n23 = te[9], n33 = te[10], n43 = te[11], n14 = te[12], n24 = te[13], n34 = te[14], n44 = te[15], t11 = n23 * n34 * n42 - n24 * n33 * n42 + n24 * n32 * n43 - n22 * n34 * n43 - n23 * n32 * n44 + n22 * n33 * n44, t12 = n14 * n33 * n42 - n13 * n34 * n42 - n14 * n32 * n43 + n12 * n34 * n43 + n13 * n32 * n44 - n12 * n33 * n44, t13 = n13 * n24 * n42 - n14 * n23 * n42 + n14 * n22 * n43 - n12 * n24 * n43 - n13 * n22 * n44 + n12 * n23 * n44, t14 = n14 * n23 * n32 - n13 * n24 * n32 - n14 * n22 * n33 + n12 * n24 * n33 + n13 * n22 * n34 - n12 * n23 * n34;\n const det = n11 * t11 + n21 * t12 + n31 * t13 + n41 * t14;\n if (det === 0) return this.set(0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0);\n const detInv = 1 / det;\n te[0] = t11 * detInv;\n te[1] = (n24 * n33 * n41 - n23 * n34 * n41 - n24 * n31 * n43 + n21 * n34 * n43 + n23 * n31 * n44 - n21 * n33 * n44) * detInv;\n te[2] = (n22 * n34 * n41 - n24 * n32 * n41 + n24 * n31 * n42 - n21 * n34 * n42 - n22 * n31 * n44 + n21 * n32 * n44) * detInv;\n te[3] = (n23 * n32 * n41 - n22 * n33 * n41 - n23 * n31 * n42 + n21 * n33 * n42 + n22 * n31 * n43 - n21 * n32 * n43) * detInv;\n te[4] = t12 * detInv;\n te[5] = (n13 * n34 * n41 - n14 * n33 * n41 + n14 * n31 * n43 - n11 * n34 * n43 - n13 * n31 * n44 + n11 * n33 * n44) * detInv;\n te[6] = (n14 * n32 * n41 - n12 * n34 * n41 - n14 * n31 * n42 + n11 * n34 * n42 + n12 * n31 * n44 - n11 * n32 * n44) * detInv;\n te[7] = (n12 * n33 * n41 - n13 * n32 * n41 + n13 * n31 * n42 - n11 * n33 * n42 - n12 * n31 * n43 + n11 * n32 * n43) * detInv;\n te[8] = t13 * detInv;\n te[9] = (n14 * n23 * n41 - n13 * n24 * n41 - n14 * n21 * n43 + n11 * n24 * n43 + n13 * n21 * n44 - n11 * n23 * n44) * detInv;\n te[10] = (n12 * n24 * n41 - n14 * n22 * n41 + n14 * n21 * n42 - n11 * n24 * n42 - n12 * n21 * n44 + n11 * n22 * n44) * detInv;\n te[11] = (n13 * n22 * n41 - n12 * n23 * n41 - n13 * n21 * n42 + n11 * n23 * n42 + n12 * n21 * n43 - n11 * n22 * n43) * detInv;\n te[12] = t14 * detInv;\n te[13] = (n13 * n24 * n31 - n14 * n23 * n31 + n14 * n21 * n33 - n11 * n24 * n33 - n13 * n21 * n34 + n11 * n23 * n34) * detInv;\n te[14] = (n14 * n22 * n31 - n12 * n24 * n31 - n14 * n21 * n32 + n11 * n24 * n32 + n12 * n21 * n34 - n11 * n22 * n34) * detInv;\n te[15] = (n12 * n23 * n31 - n13 * n22 * n31 + n13 * n21 * n32 - n11 * n23 * n32 - n12 * n21 * n33 + n11 * n22 * n33) * detInv;\n return this;\n }\n scale(v) {\n const te = this.elements;\n const x2 = v.x, y = v.y, z = v.z;\n te[0] *= x2;\n te[4] *= y;\n te[8] *= z;\n te[1] *= x2;\n te[5] *= y;\n te[9] *= z;\n te[2] *= x2;\n te[6] *= y;\n te[10] *= z;\n te[3] *= x2;\n te[7] *= y;\n te[11] *= z;\n return this;\n }\n getMaxScaleOnAxis() {\n const te = this.elements;\n const scaleXSq = te[0] * te[0] + te[1] * te[1] + te[2] * te[2];\n const scaleYSq = te[4] * te[4] + te[5] * te[5] + te[6] * te[6];\n const scaleZSq = te[8] * te[8] + te[9] * te[9] + te[10] * te[10];\n return Math.sqrt(Math.max(scaleXSq, scaleYSq, scaleZSq));\n }\n makeTranslation(x2, y, z) {\n if (x2.isVector3) {\n this.set(\n 1,\n 0,\n 0,\n x2.x,\n 0,\n 1,\n 0,\n x2.y,\n 0,\n 0,\n 1,\n x2.z,\n 0,\n 0,\n 0,\n 1\n );\n } else {\n this.set(\n 1,\n 0,\n 0,\n x2,\n 0,\n 1,\n 0,\n y,\n 0,\n 0,\n 1,\n z,\n 0,\n 0,\n 0,\n 1\n );\n }\n return this;\n }\n makeRotationX(theta) {\n const c = Math.cos(theta), s = Math.sin(theta);\n this.set(\n 1,\n 0,\n 0,\n 0,\n 0,\n c,\n -s,\n 0,\n 0,\n s,\n c,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeRotationY(theta) {\n const c = Math.cos(theta), s = Math.sin(theta);\n this.set(\n c,\n 0,\n s,\n 0,\n 0,\n 1,\n 0,\n 0,\n -s,\n 0,\n c,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeRotationZ(theta) {\n const c = Math.cos(theta), s = Math.sin(theta);\n this.set(\n c,\n -s,\n 0,\n 0,\n s,\n c,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeRotationAxis(axis, angle) {\n const c = Math.cos(angle);\n const s = Math.sin(angle);\n const t = 1 - c;\n const x2 = axis.x, y = axis.y, z = axis.z;\n const tx = t * x2, ty = t * y;\n this.set(\n tx * x2 + c,\n tx * y - s * z,\n tx * z + s * y,\n 0,\n tx * y + s * z,\n ty * y + c,\n ty * z - s * x2,\n 0,\n tx * z - s * y,\n ty * z + s * x2,\n t * z * z + c,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeScale(x2, y, z) {\n this.set(\n x2,\n 0,\n 0,\n 0,\n 0,\n y,\n 0,\n 0,\n 0,\n 0,\n z,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeShear(xy, xz, yx, yz, zx, zy) {\n this.set(\n 1,\n yx,\n zx,\n 0,\n xy,\n 1,\n zy,\n 0,\n xz,\n yz,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n compose(position, quaternion, scale) {\n const te = this.elements;\n const x2 = quaternion._x, y = quaternion._y, z = quaternion._z, w = quaternion._w;\n const x22 = x2 + x2, y2 = y + y, z2 = z + z;\n const xx = x2 * x22, xy = x2 * y2, xz = x2 * z2;\n const yy = y * y2, yz = y * z2, zz = z * z2;\n const wx = w * x22, wy = w * y2, wz = w * z2;\n const sx = scale.x, sy = scale.y, sz = scale.z;\n te[0] = (1 - (yy + zz)) * sx;\n te[1] = (xy + wz) * sx;\n te[2] = (xz - wy) * sx;\n te[3] = 0;\n te[4] = (xy - wz) * sy;\n te[5] = (1 - (xx + zz)) * sy;\n te[6] = (yz + wx) * sy;\n te[7] = 0;\n te[8] = (xz + wy) * sz;\n te[9] = (yz - wx) * sz;\n te[10] = (1 - (xx + yy)) * sz;\n te[11] = 0;\n te[12] = position.x;\n te[13] = position.y;\n te[14] = position.z;\n te[15] = 1;\n return this;\n }\n decompose(position, quaternion, scale) {\n const te = this.elements;\n let sx = _v1$5.set(te[0], te[1], te[2]).length();\n const sy = _v1$5.set(te[4], te[5], te[6]).length();\n const sz = _v1$5.set(te[8], te[9], te[10]).length();\n const det = this.determinant();\n if (det < 0) sx = -sx;\n position.x = te[12];\n position.y = te[13];\n position.z = te[14];\n _m1$2.copy(this);\n const invSX = 1 / sx;\n const invSY = 1 / sy;\n const invSZ = 1 / sz;\n _m1$2.elements[0] *= invSX;\n _m1$2.elements[1] *= invSX;\n _m1$2.elements[2] *= invSX;\n _m1$2.elements[4] *= invSY;\n _m1$2.elements[5] *= invSY;\n _m1$2.elements[6] *= invSY;\n _m1$2.elements[8] *= invSZ;\n _m1$2.elements[9] *= invSZ;\n _m1$2.elements[10] *= invSZ;\n quaternion.setFromRotationMatrix(_m1$2);\n scale.x = sx;\n scale.y = sy;\n scale.z = sz;\n return this;\n }\n makePerspective(left, right, top, bottom, near, far, coordinateSystem = WebGLCoordinateSystem) {\n const te = this.elements;\n const x2 = 2 * near / (right - left);\n const y = 2 * near / (top - bottom);\n const a = (right + left) / (right - left);\n const b = (top + bottom) / (top - bottom);\n let c, d;\n if (coordinateSystem === WebGLCoordinateSystem) {\n c = -(far + near) / (far - near);\n d = -2 * far * near / (far - near);\n } else if (coordinateSystem === WebGPUCoordinateSystem) {\n c = -far / (far - near);\n d = -far * near / (far - near);\n } else {\n throw new Error("THREE.Matrix4.makePerspective(): Invalid coordinate system: " + coordinateSystem);\n }\n te[0] = x2;\n te[4] = 0;\n te[8] = a;\n te[12] = 0;\n te[1] = 0;\n te[5] = y;\n te[9] = b;\n te[13] = 0;\n te[2] = 0;\n te[6] = 0;\n te[10] = c;\n te[14] = d;\n te[3] = 0;\n te[7] = 0;\n te[11] = -1;\n te[15] = 0;\n return this;\n }\n makeOrthographic(left, right, top, bottom, near, far, coordinateSystem = WebGLCoordinateSystem) {\n const te = this.elements;\n const w = 1 / (right - left);\n const h = 1 / (top - bottom);\n const p = 1 / (far - near);\n const x2 = (right + left) * w;\n const y = (top + bottom) * h;\n let z, zInv;\n if (coordinateSystem === WebGLCoordinateSystem) {\n z = (far + near) * p;\n zInv = -2 * p;\n } else if (coordinateSystem === WebGPUCoordinateSystem) {\n z = near * p;\n zInv = -1 * p;\n } else {\n throw new Error("THREE.Matrix4.makeOrthographic(): Invalid coordinate system: " + coordinateSystem);\n }\n te[0] = 2 * w;\n te[4] = 0;\n te[8] = 0;\n te[12] = -x2;\n te[1] = 0;\n te[5] = 2 * h;\n te[9] = 0;\n te[13] = -y;\n te[2] = 0;\n te[6] = 0;\n te[10] = zInv;\n te[14] = -z;\n te[3] = 0;\n te[7] = 0;\n te[11] = 0;\n te[15] = 1;\n return this;\n }\n equals(matrix) {\n const te = this.elements;\n const me = matrix.elements;\n for (let i2 = 0; i2 < 16; i2++) {\n if (te[i2] !== me[i2]) return false;\n }\n return true;\n }\n fromArray(array, offset = 0) {\n for (let i2 = 0; i2 < 16; i2++) {\n this.elements[i2] = array[i2 + offset];\n }\n return this;\n }\n toArray(array = [], offset = 0) {\n const te = this.elements;\n array[offset] = te[0];\n array[offset + 1] = te[1];\n array[offset + 2] = te[2];\n array[offset + 3] = te[3];\n array[offset + 4] = te[4];\n array[offset + 5] = te[5];\n array[offset + 6] = te[6];\n array[offset + 7] = te[7];\n array[offset + 8] = te[8];\n array[offset + 9] = te[9];\n array[offset + 10] = te[10];\n array[offset + 11] = te[11];\n array[offset + 12] = te[12];\n array[offset + 13] = te[13];\n array[offset + 14] = te[14];\n array[offset + 15] = te[15];\n return array;\n }\n }\n const _v1$5 = /* @__PURE__ */ new Vector3();\n const _m1$2 = /* @__PURE__ */ new Matrix4();\n const _zero = /* @__PURE__ */ new Vector3(0, 0, 0);\n const _one = /* @__PURE__ */ new Vector3(1, 1, 1);\n const _x = /* @__PURE__ */ new Vector3();\n const _y = /* @__PURE__ */ new Vector3();\n const _z = /* @__PURE__ */ new Vector3();\n const _matrix$2 = /* @__PURE__ */ new Matrix4();\n const _quaternion$3 = /* @__PURE__ */ new Quaternion();\n class Euler {\n constructor(x2 = 0, y = 0, z = 0, order = Euler.DEFAULT_ORDER) {\n this.isEuler = true;\n this._x = x2;\n this._y = y;\n this._z = z;\n this._order = order;\n }\n get x() {\n return this._x;\n }\n set x(value) {\n this._x = value;\n this._onChangeCallback();\n }\n get y() {\n return this._y;\n }\n set y(value) {\n this._y = value;\n this._onChangeCallback();\n }\n get z() {\n return this._z;\n }\n set z(value) {\n this._z = value;\n this._onChangeCallback();\n }\n get order() {\n return this._order;\n }\n set order(value) {\n this._order = value;\n this._onChangeCallback();\n }\n set(x2, y, z, order = this._order) {\n this._x = x2;\n this._y = y;\n this._z = z;\n this._order = order;\n this._onChangeCallback();\n return this;\n }\n clone() {\n return new this.constructor(this._x, this._y, this._z, this._order);\n }\n copy(euler) {\n this._x = euler._x;\n this._y = euler._y;\n this._z = euler._z;\n this._order = euler._order;\n this._onChangeCallback();\n return this;\n }\n setFromRotationMatrix(m, order = this._order, update = true) {\n const te = m.elements;\n const m11 = te[0], m12 = te[4], m13 = te[8];\n const m21 = te[1], m22 = te[5], m23 = te[9];\n const m31 = te[2], m32 = te[6], m33 = te[10];\n switch (order) {\n case "XYZ":\n this._y = Math.asin(clamp(m13, -1, 1));\n if (Math.abs(m13) < 0.9999999) {\n this._x = Math.atan2(-m23, m33);\n this._z = Math.atan2(-m12, m11);\n } else {\n this._x = Math.atan2(m32, m22);\n this._z = 0;\n }\n break;\n case "YXZ":\n this._x = Math.asin(-clamp(m23, -1, 1));\n if (Math.abs(m23) < 0.9999999) {\n this._y = Math.atan2(m13, m33);\n this._z = Math.atan2(m21, m22);\n } else {\n this._y = Math.atan2(-m31, m11);\n this._z = 0;\n }\n break;\n case "ZXY":\n this._x = Math.asin(clamp(m32, -1, 1));\n if (Math.abs(m32) < 0.9999999) {\n this._y = Math.atan2(-m31, m33);\n this._z = Math.atan2(-m12, m22);\n } else {\n this._y = 0;\n this._z = Math.atan2(m21, m11);\n }\n break;\n case "ZYX":\n this._y = Math.asin(-clamp(m31, -1, 1));\n if (Math.abs(m31) < 0.9999999) {\n this._x = Math.atan2(m32, m33);\n this._z = Math.atan2(m21, m11);\n } else {\n this._x = 0;\n this._z = Math.atan2(-m12, m22);\n }\n break;\n case "YZX":\n this._z = Math.asin(clamp(m21, -1, 1));\n if (Math.abs(m21) < 0.9999999) {\n this._x = Math.atan2(-m23, m22);\n this._y = Math.atan2(-m31, m11);\n } else {\n this._x = 0;\n this._y = Math.atan2(m13, m33);\n }\n break;\n case "XZY":\n this._z = Math.asin(-clamp(m12, -1, 1));\n if (Math.abs(m12) < 0.9999999) {\n this._x = Math.atan2(m32, m22);\n this._y = Math.atan2(m13, m11);\n } else {\n this._x = Math.atan2(-m23, m33);\n this._y = 0;\n }\n break;\n default:\n console.warn("THREE.Euler: .setFromRotationMatrix() encountered an unknown order: " + order);\n }\n this._order = order;\n if (update === true) this._onChangeCallback();\n return this;\n }\n setFromQuaternion(q, order, update) {\n _matrix$2.makeRotationFromQuaternion(q);\n return this.setFromRotationMatrix(_matrix$2, order, update);\n }\n setFromVector3(v, order = this._order) {\n return this.set(v.x, v.y, v.z, order);\n }\n reorder(newOrder) {\n _quaternion$3.setFromEuler(this);\n return this.setFromQuaternion(_quaternion$3, newOrder);\n }\n equals(euler) {\n return euler._x === this._x && euler._y === this._y && euler._z === this._z && euler._order === this._order;\n }\n fromArray(array) {\n this._x = array[0];\n this._y = array[1];\n this._z = array[2];\n if (array[3] !== void 0) this._order = array[3];\n this._onChangeCallback();\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this._x;\n array[offset + 1] = this._y;\n array[offset + 2] = this._z;\n array[offset + 3] = this._order;\n return array;\n }\n _onChange(callback) {\n this._onChangeCallback = callback;\n return this;\n }\n _onChangeCallback() {\n }\n *[Symbol.iterator]() {\n yield this._x;\n yield this._y;\n yield this._z;\n yield this._order;\n }\n }\n Euler.DEFAULT_ORDER = "XYZ";\n class Layers {\n constructor() {\n this.mask = 1 | 0;\n }\n set(channel) {\n this.mask = (1 << channel | 0) >>> 0;\n }\n enable(channel) {\n this.mask |= 1 << channel | 0;\n }\n enableAll() {\n this.mask = 4294967295 | 0;\n }\n toggle(channel) {\n this.mask ^= 1 << channel | 0;\n }\n disable(channel) {\n this.mask &= ~(1 << channel | 0);\n }\n disableAll() {\n this.mask = 0;\n }\n test(layers) {\n return (this.mask & layers.mask) !== 0;\n }\n isEnabled(channel) {\n return (this.mask & (1 << channel | 0)) !== 0;\n }\n }\n let _object3DId = 0;\n const _v1$4 = /* @__PURE__ */ new Vector3();\n const _q1 = /* @__PURE__ */ new Quaternion();\n const _m1$1 = /* @__PURE__ */ new Matrix4();\n const _target = /* @__PURE__ */ new Vector3();\n const _position$3 = /* @__PURE__ */ new Vector3();\n const _scale$2 = /* @__PURE__ */ new Vector3();\n const _quaternion$2 = /* @__PURE__ */ new Quaternion();\n const _xAxis = /* @__PURE__ */ new Vector3(1, 0, 0);\n const _yAxis = /* @__PURE__ */ new Vector3(0, 1, 0);\n const _zAxis = /* @__PURE__ */ new Vector3(0, 0, 1);\n const _addedEvent = { type: "added" };\n const _removedEvent = { type: "removed" };\n const _childaddedEvent = { type: "childadded", child: null };\n const _childremovedEvent = { type: "childremoved", child: null };\n class Object3D extends EventDispatcher {\n constructor() {\n super();\n this.isObject3D = true;\n Object.defineProperty(this, "id", { value: _object3DId++ });\n this.uuid = generateUUID();\n this.name = "";\n this.type = "Object3D";\n this.parent = null;\n this.children = [];\n this.up = Object3D.DEFAULT_UP.clone();\n const position = new Vector3();\n const rotation = new Euler();\n const quaternion = new Quaternion();\n const scale = new Vector3(1, 1, 1);\n function onRotationChange() {\n quaternion.setFromEuler(rotation, false);\n }\n function onQuaternionChange() {\n rotation.setFromQuaternion(quaternion, void 0, false);\n }\n rotation._onChange(onRotationChange);\n quaternion._onChange(onQuaternionChange);\n Object.defineProperties(this, {\n position: {\n configurable: true,\n enumerable: true,\n value: position\n },\n rotation: {\n configurable: true,\n enumerable: true,\n value: rotation\n },\n quaternion: {\n configurable: true,\n enumerable: true,\n value: quaternion\n },\n scale: {\n configurable: true,\n enumerable: true,\n value: scale\n },\n modelViewMatrix: {\n value: new Matrix4()\n },\n normalMatrix: {\n value: new Matrix3()\n }\n });\n this.matrix = new Matrix4();\n this.matrixWorld = new Matrix4();\n this.matrixAutoUpdate = Object3D.DEFAULT_MATRIX_AUTO_UPDATE;\n this.matrixWorldAutoUpdate = Object3D.DEFAULT_MATRIX_WORLD_AUTO_UPDATE;\n this.matrixWorldNeedsUpdate = false;\n this.layers = new Layers();\n this.visible = true;\n this.castShadow = false;\n this.receiveShadow = false;\n this.frustumCulled = true;\n this.renderOrder = 0;\n this.animations = [];\n this.userData = {};\n }\n onBeforeShadow() {\n }\n onAfterShadow() {\n }\n onBeforeRender() {\n }\n onAfterRender() {\n }\n applyMatrix4(matrix) {\n if (this.matrixAutoUpdate) this.updateMatrix();\n this.matrix.premultiply(matrix);\n this.matrix.decompose(this.position, this.quaternion, this.scale);\n }\n applyQuaternion(q) {\n this.quaternion.premultiply(q);\n return this;\n }\n setRotationFromAxisAngle(axis, angle) {\n this.quaternion.setFromAxisAngle(axis, angle);\n }\n setRotationFromEuler(euler) {\n this.quaternion.setFromEuler(euler, true);\n }\n setRotationFromMatrix(m) {\n this.quaternion.setFromRotationMatrix(m);\n }\n setRotationFromQuaternion(q) {\n this.quaternion.copy(q);\n }\n rotateOnAxis(axis, angle) {\n _q1.setFromAxisAngle(axis, angle);\n this.quaternion.multiply(_q1);\n return this;\n }\n rotateOnWorldAxis(axis, angle) {\n _q1.setFromAxisAngle(axis, angle);\n this.quaternion.premultiply(_q1);\n return this;\n }\n rotateX(angle) {\n return this.rotateOnAxis(_xAxis, angle);\n }\n rotateY(angle) {\n return this.rotateOnAxis(_yAxis, angle);\n }\n rotateZ(angle) {\n return this.rotateOnAxis(_zAxis, angle);\n }\n translateOnAxis(axis, distance) {\n _v1$4.copy(axis).applyQuaternion(this.quaternion);\n this.position.add(_v1$4.multiplyScalar(distance));\n return this;\n }\n translateX(distance) {\n return this.translateOnAxis(_xAxis, distance);\n }\n translateY(distance) {\n return this.translateOnAxis(_yAxis, distance);\n }\n translateZ(distance) {\n return this.translateOnAxis(_zAxis, distance);\n }\n localToWorld(vector) {\n this.updateWorldMatrix(true, false);\n return vector.applyMatrix4(this.matrixWorld);\n }\n worldToLocal(vector) {\n this.updateWorldMatrix(true, false);\n return vector.applyMatrix4(_m1$1.copy(this.matrixWorld).invert());\n }\n lookAt(x2, y, z) {\n if (x2.isVector3) {\n _target.copy(x2);\n } else {\n _target.set(x2, y, z);\n }\n const parent = this.parent;\n this.updateWorldMatrix(true, false);\n _position$3.setFromMatrixPosition(this.matrixWorld);\n if (this.isCamera || this.isLight) {\n _m1$1.lookAt(_position$3, _target, this.up);\n } else {\n _m1$1.lookAt(_target, _position$3, this.up);\n }\n this.quaternion.setFromRotationMatrix(_m1$1);\n if (parent) {\n _m1$1.extractRotation(parent.matrixWorld);\n _q1.setFromRotationMatrix(_m1$1);\n this.quaternion.premultiply(_q1.invert());\n }\n }\n add(object) {\n if (arguments.length > 1) {\n for (let i2 = 0; i2 < arguments.length; i2++) {\n this.add(arguments[i2]);\n }\n return this;\n }\n if (object === this) {\n console.error("THREE.Object3D.add: object can\'t be added as a child of itself.", object);\n return this;\n }\n if (object && object.isObject3D) {\n object.removeFromParent();\n object.parent = this;\n this.children.push(object);\n object.dispatchEvent(_addedEvent);\n _childaddedEvent.child = object;\n this.dispatchEvent(_childaddedEvent);\n _childaddedEvent.child = null;\n } else {\n console.error("THREE.Object3D.add: object not an instance of THREE.Object3D.", object);\n }\n return this;\n }\n remove(object) {\n if (arguments.length > 1) {\n for (let i2 = 0; i2 < arguments.length; i2++) {\n this.remove(arguments[i2]);\n }\n return this;\n }\n const index = this.children.indexOf(object);\n if (index !== -1) {\n object.parent = null;\n this.children.splice(index, 1);\n object.dispatchEvent(_removedEvent);\n _childremovedEvent.child = object;\n this.dispatchEvent(_childremovedEvent);\n _childremovedEvent.child = null;\n }\n return this;\n }\n removeFromParent() {\n const parent = this.parent;\n if (parent !== null) {\n parent.remove(this);\n }\n return this;\n }\n clear() {\n return this.remove(...this.children);\n }\n attach(object) {\n this.updateWorldMatrix(true, false);\n _m1$1.copy(this.matrixWorld).invert();\n if (object.parent !== null) {\n object.parent.updateWorldMatrix(true, false);\n _m1$1.multiply(object.parent.matrixWorld);\n }\n object.applyMatrix4(_m1$1);\n object.removeFromParent();\n object.parent = this;\n this.children.push(object);\n object.updateWorldMatrix(false, true);\n object.dispatchEvent(_addedEvent);\n _childaddedEvent.child = object;\n this.dispatchEvent(_childaddedEvent);\n _childaddedEvent.child = null;\n return this;\n }\n getObjectById(id) {\n return this.getObjectByProperty("id", id);\n }\n getObjectByName(name) {\n return this.getObjectByProperty("name", name);\n }\n getObjectByProperty(name, value) {\n if (this[name] === value) return this;\n for (let i2 = 0, l = this.children.length; i2 < l; i2++) {\n const child = this.children[i2];\n const object = child.getObjectByProperty(name, value);\n if (object !== void 0) {\n return object;\n }\n }\n return void 0;\n }\n getObjectsByProperty(name, value, result = []) {\n if (this[name] === value) result.push(this);\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n children[i2].getObjectsByProperty(name, value, result);\n }\n return result;\n }\n getWorldPosition(target) {\n this.updateWorldMatrix(true, false);\n return target.setFromMatrixPosition(this.matrixWorld);\n }\n getWorldQuaternion(target) {\n this.updateWorldMatrix(true, false);\n this.matrixWorld.decompose(_position$3, target, _scale$2);\n return target;\n }\n getWorldScale(target) {\n this.updateWorldMatrix(true, false);\n this.matrixWorld.decompose(_position$3, _quaternion$2, target);\n return target;\n }\n getWorldDirection(target) {\n this.updateWorldMatrix(true, false);\n const e = this.matrixWorld.elements;\n return target.set(e[8], e[9], e[10]).normalize();\n }\n raycast() {\n }\n traverse(callback) {\n callback(this);\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n children[i2].traverse(callback);\n }\n }\n traverseVisible(callback) {\n if (this.visible === false) return;\n callback(this);\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n children[i2].traverseVisible(callback);\n }\n }\n traverseAncestors(callback) {\n const parent = this.parent;\n if (parent !== null) {\n callback(parent);\n parent.traverseAncestors(callback);\n }\n }\n updateMatrix() {\n this.matrix.compose(this.position, this.quaternion, this.scale);\n this.matrixWorldNeedsUpdate = true;\n }\n updateMatrixWorld(force) {\n if (this.matrixAutoUpdate) this.updateMatrix();\n if (this.matrixWorldNeedsUpdate || force) {\n if (this.matrixWorldAutoUpdate === true) {\n if (this.parent === null) {\n this.matrixWorld.copy(this.matrix);\n } else {\n this.matrixWorld.multiplyMatrices(this.parent.matrixWorld, this.matrix);\n }\n }\n this.matrixWorldNeedsUpdate = false;\n force = true;\n }\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n const child = children[i2];\n child.updateMatrixWorld(force);\n }\n }\n updateWorldMatrix(updateParents, updateChildren) {\n const parent = this.parent;\n if (updateParents === true && parent !== null) {\n parent.updateWorldMatrix(true, false);\n }\n if (this.matrixAutoUpdate) this.updateMatrix();\n if (this.matrixWorldAutoUpdate === true) {\n if (this.parent === null) {\n this.matrixWorld.copy(this.matrix);\n } else {\n this.matrixWorld.multiplyMatrices(this.parent.matrixWorld, this.matrix);\n }\n }\n if (updateChildren === true) {\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n const child = children[i2];\n child.updateWorldMatrix(false, true);\n }\n }\n }\n toJSON(meta) {\n const isRootObject = meta === void 0 || typeof meta === "string";\n const output = {};\n if (isRootObject) {\n meta = {\n geometries: {},\n materials: {},\n textures: {},\n images: {},\n shapes: {},\n skeletons: {},\n animations: {},\n nodes: {}\n };\n output.metadata = {\n version: 4.6,\n type: "Object",\n generator: "Object3D.toJSON"\n };\n }\n const object = {};\n object.uuid = this.uuid;\n object.type = this.type;\n if (this.name !== "") object.name = this.name;\n if (this.castShadow === true) object.castShadow = true;\n if (this.receiveShadow === true) object.receiveShadow = true;\n if (this.visible === false) object.visible = false;\n if (this.frustumCulled === false) object.frustumCulled = false;\n if (this.renderOrder !== 0) object.renderOrder = this.renderOrder;\n if (Object.keys(this.userData).length > 0) object.userData = this.userData;\n object.layers = this.layers.mask;\n object.matrix = this.matrix.toArray();\n object.up = this.up.toArray();\n if (this.matrixAutoUpdate === false) object.matrixAutoUpdate = false;\n if (this.isInstancedMesh) {\n object.type = "InstancedMesh";\n object.count = this.count;\n object.instanceMatrix = this.instanceMatrix.toJSON();\n if (this.instanceColor !== null) object.instanceColor = this.instanceColor.toJSON();\n }\n if (this.isBatchedMesh) {\n object.type = "BatchedMesh";\n object.perObjectFrustumCulled = this.perObjectFrustumCulled;\n object.sortObjects = this.sortObjects;\n object.drawRanges = this._drawRanges;\n object.reservedRanges = this._reservedRanges;\n object.visibility = this._visibility;\n object.active = this._active;\n object.bounds = this._bounds.map((bound) => ({\n boxInitialized: bound.boxInitialized,\n boxMin: bound.box.min.toArray(),\n boxMax: bound.box.max.toArray(),\n sphereInitialized: bound.sphereInitialized,\n sphereRadius: bound.sphere.radius,\n sphereCenter: bound.sphere.center.toArray()\n }));\n object.maxInstanceCount = this._maxInstanceCount;\n object.maxVertexCount = this._maxVertexCount;\n object.maxIndexCount = this._maxIndexCount;\n object.geometryInitialized = this._geometryInitialized;\n object.geometryCount = this._geometryCount;\n object.matricesTexture = this._matricesTexture.toJSON(meta);\n if (this._colorsTexture !== null) object.colorsTexture = this._colorsTexture.toJSON(meta);\n if (this.boundingSphere !== null) {\n object.boundingSphere = {\n center: object.boundingSphere.center.toArray(),\n radius: object.boundingSphere.radius\n };\n }\n if (this.boundingBox !== null) {\n object.boundingBox = {\n min: object.boundingBox.min.toArray(),\n max: object.boundingBox.max.toArray()\n };\n }\n }\n function serialize(library, element) {\n if (library[element.uuid] === void 0) {\n library[element.uuid] = element.toJSON(meta);\n }\n return element.uuid;\n }\n if (this.isScene) {\n if (this.background) {\n if (this.background.isColor) {\n object.background = this.background.toJSON();\n } else if (this.background.isTexture) {\n object.background = this.background.toJSON(meta).uuid;\n }\n }\n if (this.environment && this.environment.isTexture && this.environment.isRenderTargetTexture !== true) {\n object.environment = this.environment.toJSON(meta).uuid;\n }\n } else if (this.isMesh || this.isLine || this.isPoints) {\n object.geometry = serialize(meta.geometries, this.geometry);\n const parameters = this.geometry.parameters;\n if (parameters !== void 0 && parameters.shapes !== void 0) {\n const shapes = parameters.shapes;\n if (Array.isArray(shapes)) {\n for (let i2 = 0, l = shapes.length; i2 < l; i2++) {\n const shape = shapes[i2];\n serialize(meta.shapes, shape);\n }\n } else {\n serialize(meta.shapes, shapes);\n }\n }\n }\n if (this.isSkinnedMesh) {\n object.bindMode = this.bindMode;\n object.bindMatrix = this.bindMatrix.toArray();\n if (this.skeleton !== void 0) {\n serialize(meta.skeletons, this.skeleton);\n object.skeleton = this.skeleton.uuid;\n }\n }\n if (this.material !== void 0) {\n if (Array.isArray(this.material)) {\n const uuids = [];\n for (let i2 = 0, l = this.material.length; i2 < l; i2++) {\n uuids.push(serialize(meta.materials, this.material[i2]));\n }\n object.material = uuids;\n } else {\n object.material = serialize(meta.materials, this.material);\n }\n }\n if (this.children.length > 0) {\n object.children = [];\n for (let i2 = 0; i2 < this.children.length; i2++) {\n object.children.push(this.children[i2].toJSON(meta).object);\n }\n }\n if (this.animations.length > 0) {\n object.animations = [];\n for (let i2 = 0; i2 < this.animations.length; i2++) {\n const animation = this.animations[i2];\n object.animations.push(serialize(meta.animations, animation));\n }\n }\n if (isRootObject) {\n const geometries = extractFromCache(meta.geometries);\n const materials = extractFromCache(meta.materials);\n const textures = extractFromCache(meta.textures);\n const images = extractFromCache(meta.images);\n const shapes = extractFromCache(meta.shapes);\n const skeletons = extractFromCache(meta.skeletons);\n const animations = extractFromCache(meta.animations);\n const nodes = extractFromCache(meta.nodes);\n if (geometries.length > 0) output.geometries = geometries;\n if (materials.length > 0) output.materials = materials;\n if (textures.length > 0) output.textures = textures;\n if (images.length > 0) output.images = images;\n if (shapes.length > 0) output.shapes = shapes;\n if (skeletons.length > 0) output.skeletons = skeletons;\n if (animations.length > 0) output.animations = animations;\n if (nodes.length > 0) output.nodes = nodes;\n }\n output.object = object;\n return output;\n function extractFromCache(cache) {\n const values = [];\n for (const key in cache) {\n const data = cache[key];\n delete data.metadata;\n values.push(data);\n }\n return values;\n }\n }\n clone(recursive) {\n return new this.constructor().copy(this, recursive);\n }\n copy(source, recursive = true) {\n this.name = source.name;\n this.up.copy(source.up);\n this.position.copy(source.position);\n this.rotation.order = source.rotation.order;\n this.quaternion.copy(source.quaternion);\n this.scale.copy(source.scale);\n this.matrix.copy(source.matrix);\n this.matrixWorld.copy(source.matrixWorld);\n this.matrixAutoUpdate = source.matrixAutoUpdate;\n this.matrixWorldAutoUpdate = source.matrixWorldAutoUpdate;\n this.matrixWorldNeedsUpdate = source.matrixWorldNeedsUpdate;\n this.layers.mask = source.layers.mask;\n this.visible = source.visible;\n this.castShadow = source.castShadow;\n this.receiveShadow = source.receiveShadow;\n this.frustumCulled = source.frustumCulled;\n this.renderOrder = source.renderOrder;\n this.animations = source.animations.slice();\n this.userData = JSON.parse(JSON.stringify(source.userData));\n if (recursive === true) {\n for (let i2 = 0; i2 < source.children.length; i2++) {\n const child = source.children[i2];\n this.add(child.clone());\n }\n }\n return this;\n }\n }\n Object3D.DEFAULT_UP = /* @__PURE__ */ new Vector3(0, 1, 0);\n Object3D.DEFAULT_MATRIX_AUTO_UPDATE = true;\n Object3D.DEFAULT_MATRIX_WORLD_AUTO_UPDATE = true;\n const _v0$1 = /* @__PURE__ */ new Vector3();\n const _v1$3 = /* @__PURE__ */ new Vector3();\n const _v2$2 = /* @__PURE__ */ new Vector3();\n const _v3$2 = /* @__PURE__ */ new Vector3();\n const _vab = /* @__PURE__ */ new Vector3();\n const _vac = /* @__PURE__ */ new Vector3();\n const _vbc = /* @__PURE__ */ new Vector3();\n const _vap = /* @__PURE__ */ new Vector3();\n const _vbp = /* @__PURE__ */ new Vector3();\n const _vcp = /* @__PURE__ */ new Vector3();\n const _v40 = /* @__PURE__ */ new Vector4();\n const _v41 = /* @__PURE__ */ new Vector4();\n const _v42 = /* @__PURE__ */ new Vector4();\n class Triangle {\n constructor(a = new Vector3(), b = new Vector3(), c = new Vector3()) {\n this.a = a;\n this.b = b;\n this.c = c;\n }\n static getNormal(a, b, c, target) {\n target.subVectors(c, b);\n _v0$1.subVectors(a, b);\n target.cross(_v0$1);\n const targetLengthSq = target.lengthSq();\n if (targetLengthSq > 0) {\n return target.multiplyScalar(1 / Math.sqrt(targetLengthSq));\n }\n return target.set(0, 0, 0);\n }\n // static/instance method to calculate barycentric coordinates\n // based on: http://www.blackpawn.com/texts/pointinpoly/default.html\n static getBarycoord(point, a, b, c, target) {\n _v0$1.subVectors(c, a);\n _v1$3.subVectors(b, a);\n _v2$2.subVectors(point, a);\n const dot00 = _v0$1.dot(_v0$1);\n const dot01 = _v0$1.dot(_v1$3);\n const dot02 = _v0$1.dot(_v2$2);\n const dot11 = _v1$3.dot(_v1$3);\n const dot12 = _v1$3.dot(_v2$2);\n const denom = dot00 * dot11 - dot01 * dot01;\n if (denom === 0) {\n target.set(0, 0, 0);\n return null;\n }\n const invDenom = 1 / denom;\n const u = (dot11 * dot02 - dot01 * dot12) * invDenom;\n const v = (dot00 * dot12 - dot01 * dot02) * invDenom;\n return target.set(1 - u - v, v, u);\n }\n static containsPoint(point, a, b, c) {\n if (this.getBarycoord(point, a, b, c, _v3$2) === null) {\n return false;\n }\n return _v3$2.x >= 0 && _v3$2.y >= 0 && _v3$2.x + _v3$2.y <= 1;\n }\n static getInterpolation(point, p1, p2, p3, v1, v2, v3, target) {\n if (this.getBarycoord(point, p1, p2, p3, _v3$2) === null) {\n target.x = 0;\n target.y = 0;\n if ("z" in target) target.z = 0;\n if ("w" in target) target.w = 0;\n return null;\n }\n target.setScalar(0);\n target.addScaledVector(v1, _v3$2.x);\n target.addScaledVector(v2, _v3$2.y);\n target.addScaledVector(v3, _v3$2.z);\n return target;\n }\n static getInterpolatedAttribute(attr, i1, i2, i3, barycoord, target) {\n _v40.setScalar(0);\n _v41.setScalar(0);\n _v42.setScalar(0);\n _v40.fromBufferAttribute(attr, i1);\n _v41.fromBufferAttribute(attr, i2);\n _v42.fromBufferAttribute(attr, i3);\n target.setScalar(0);\n target.addScaledVector(_v40, barycoord.x);\n target.addScaledVector(_v41, barycoord.y);\n target.addScaledVector(_v42, barycoord.z);\n return target;\n }\n static isFrontFacing(a, b, c, direction) {\n _v0$1.subVectors(c, b);\n _v1$3.subVectors(a, b);\n return _v0$1.cross(_v1$3).dot(direction) < 0 ? true : false;\n }\n set(a, b, c) {\n this.a.copy(a);\n this.b.copy(b);\n this.c.copy(c);\n return this;\n }\n setFromPointsAndIndices(points, i0, i1, i2) {\n this.a.copy(points[i0]);\n this.b.copy(points[i1]);\n this.c.copy(points[i2]);\n return this;\n }\n setFromAttributeAndIndices(attribute, i0, i1, i2) {\n this.a.fromBufferAttribute(attribute, i0);\n this.b.fromBufferAttribute(attribute, i1);\n this.c.fromBufferAttribute(attribute, i2);\n return this;\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(triangle) {\n this.a.copy(triangle.a);\n this.b.copy(triangle.b);\n this.c.copy(triangle.c);\n return this;\n }\n getArea() {\n _v0$1.subVectors(this.c, this.b);\n _v1$3.subVectors(this.a, this.b);\n return _v0$1.cross(_v1$3).length() * 0.5;\n }\n getMidpoint(target) {\n return target.addVectors(this.a, this.b).add(this.c).multiplyScalar(1 / 3);\n }\n getNormal(target) {\n return Triangle.getNormal(this.a, this.b, this.c, target);\n }\n getPlane(target) {\n return target.setFromCoplanarPoints(this.a, this.b, this.c);\n }\n getBarycoord(point, target) {\n return Triangle.getBarycoord(point, this.a, this.b, this.c, target);\n }\n getInterpolation(point, v1, v2, v3, target) {\n return Triangle.getInterpolation(point, this.a, this.b, this.c, v1, v2, v3, target);\n }\n containsPoint(point) {\n return Triangle.containsPoint(point, this.a, this.b, this.c);\n }\n isFrontFacing(direction) {\n return Triangle.isFrontFacing(this.a, this.b, this.c, direction);\n }\n intersectsBox(box) {\n return box.intersectsTriangle(this);\n }\n closestPointToPoint(p, target) {\n const a = this.a, b = this.b, c = this.c;\n let v, w;\n _vab.subVectors(b, a);\n _vac.subVectors(c, a);\n _vap.subVectors(p, a);\n const d1 = _vab.dot(_vap);\n const d2 = _vac.dot(_vap);\n if (d1 <= 0 && d2 <= 0) {\n return target.copy(a);\n }\n _vbp.subVectors(p, b);\n const d3 = _vab.dot(_vbp);\n const d4 = _vac.dot(_vbp);\n if (d3 >= 0 && d4 <= d3) {\n return target.copy(b);\n }\n const vc = d1 * d4 - d3 * d2;\n if (vc <= 0 && d1 >= 0 && d3 <= 0) {\n v = d1 / (d1 - d3);\n return target.copy(a).addScaledVector(_vab, v);\n }\n _vcp.subVectors(p, c);\n const d5 = _vab.dot(_vcp);\n const d6 = _vac.dot(_vcp);\n if (d6 >= 0 && d5 <= d6) {\n return target.copy(c);\n }\n const vb = d5 * d2 - d1 * d6;\n if (vb <= 0 && d2 >= 0 && d6 <= 0) {\n w = d2 / (d2 - d6);\n return target.copy(a).addScaledVector(_vac, w);\n }\n const va = d3 * d6 - d5 * d4;\n if (va <= 0 && d4 - d3 >= 0 && d5 - d6 >= 0) {\n _vbc.subVectors(c, b);\n w = (d4 - d3) / (d4 - d3 + (d5 - d6));\n return target.copy(b).addScaledVector(_vbc, w);\n }\n const denom = 1 / (va + vb + vc);\n v = vb * denom;\n w = vc * denom;\n return target.copy(a).addScaledVector(_vab, v).addScaledVector(_vac, w);\n }\n equals(triangle) {\n return triangle.a.equals(this.a) && triangle.b.equals(this.b) && triangle.c.equals(this.c);\n }\n }\n const _colorKeywords = {\n "aliceblue": 15792383,\n "antiquewhite": 16444375,\n "aqua": 65535,\n "aquamarine": 8388564,\n "azure": 15794175,\n "beige": 16119260,\n "bisque": 16770244,\n "black": 0,\n "blanchedalmond": 16772045,\n "blue": 255,\n "blueviolet": 9055202,\n "brown": 10824234,\n "burlywood": 14596231,\n "cadetblue": 6266528,\n "chartreuse": 8388352,\n "chocolate": 13789470,\n "coral": 16744272,\n "cornflowerblue": 6591981,\n "cornsilk": 16775388,\n "crimson": 14423100,\n "cyan": 65535,\n "darkblue": 139,\n "darkcyan": 35723,\n "darkgoldenrod": 12092939,\n "darkgray": 11119017,\n "darkgreen": 25600,\n "darkgrey": 11119017,\n "darkkhaki": 12433259,\n "darkmagenta": 9109643,\n "darkolivegreen": 5597999,\n "darkorange": 16747520,\n "darkorchid": 10040012,\n "darkred": 9109504,\n "darksalmon": 15308410,\n "darkseagreen": 9419919,\n "darkslateblue": 4734347,\n "darkslategray": 3100495,\n "darkslategrey": 3100495,\n "darkturquoise": 52945,\n "darkviolet": 9699539,\n "deeppink": 16716947,\n "deepskyblue": 49151,\n "dimgray": 6908265,\n "dimgrey": 6908265,\n "dodgerblue": 2003199,\n "firebrick": 11674146,\n "floralwhite": 16775920,\n "forestgreen": 2263842,\n "fuchsia": 16711935,\n "gainsboro": 14474460,\n "ghostwhite": 16316671,\n "gold": 16766720,\n "goldenrod": 14329120,\n "gray": 8421504,\n "green": 32768,\n "greenyellow": 11403055,\n "grey": 8421504,\n "honeydew": 15794160,\n "hotpink": 16738740,\n "indianred": 13458524,\n "indigo": 4915330,\n "ivory": 16777200,\n "khaki": 15787660,\n "lavender": 15132410,\n "lavenderblush": 16773365,\n "lawngreen": 8190976,\n "lemonchiffon": 16775885,\n "lightblue": 11393254,\n "lightcoral": 15761536,\n "lightcyan": 14745599,\n "lightgoldenrodyellow": 16448210,\n "lightgray": 13882323,\n "lightgreen": 9498256,\n "lightgrey": 13882323,\n "lightpink": 16758465,\n "lightsalmon": 16752762,\n "lightseagreen": 2142890,\n "lightskyblue": 8900346,\n "lightslategray": 7833753,\n "lightslategrey": 7833753,\n "lightsteelblue": 11584734,\n "lightyellow": 16777184,\n "lime": 65280,\n "limegreen": 3329330,\n "linen": 16445670,\n "magenta": 16711935,\n "maroon": 8388608,\n "mediumaquamarine": 6737322,\n "mediumblue": 205,\n "mediumorchid": 12211667,\n "mediumpurple": 9662683,\n "mediumseagreen": 3978097,\n "mediumslateblue": 8087790,\n "mediumspringgreen": 64154,\n "mediumturquoise": 4772300,\n "mediumvioletred": 13047173,\n "midnightblue": 1644912,\n "mintcream": 16121850,\n "mistyrose": 16770273,\n "moccasin": 16770229,\n "navajowhite": 16768685,\n "navy": 128,\n "oldlace": 16643558,\n "olive": 8421376,\n "olivedrab": 7048739,\n "orange": 16753920,\n "orangered": 16729344,\n "orchid": 14315734,\n "palegoldenrod": 15657130,\n "palegreen": 10025880,\n "paleturquoise": 11529966,\n "palevioletred": 14381203,\n "papayawhip": 16773077,\n "peachpuff": 16767673,\n "peru": 13468991,\n "pink": 16761035,\n "plum": 14524637,\n "powderblue": 11591910,\n "purple": 8388736,\n "rebeccapurple": 6697881,\n "red": 16711680,\n "rosybrown": 12357519,\n "royalblue": 4286945,\n "saddlebrown": 9127187,\n "salmon": 16416882,\n "sandybrown": 16032864,\n "seagreen": 3050327,\n "seashell": 16774638,\n "sienna": 10506797,\n "silver": 12632256,\n "skyblue": 8900331,\n "slateblue": 6970061,\n "slategray": 7372944,\n "slategrey": 7372944,\n "snow": 16775930,\n "springgreen": 65407,\n "steelblue": 4620980,\n "tan": 13808780,\n "teal": 32896,\n "thistle": 14204888,\n "tomato": 16737095,\n "turquoise": 4251856,\n "violet": 15631086,\n "wheat": 16113331,\n "white": 16777215,\n "whitesmoke": 16119285,\n "yellow": 16776960,\n "yellowgreen": 10145074\n };\n const _hslA = { h: 0, s: 0, l: 0 };\n const _hslB = { h: 0, s: 0, l: 0 };\n function hue2rgb(p, q, t) {\n if (t < 0) t += 1;\n if (t > 1) t -= 1;\n if (t < 1 / 6) return p + (q - p) * 6 * t;\n if (t < 1 / 2) return q;\n if (t < 2 / 3) return p + (q - p) * 6 * (2 / 3 - t);\n return p;\n }\n class Color {\n constructor(r, g, b) {\n this.isColor = true;\n this.r = 1;\n this.g = 1;\n this.b = 1;\n return this.set(r, g, b);\n }\n set(r, g, b) {\n if (g === void 0 && b === void 0) {\n const value = r;\n if (value && value.isColor) {\n this.copy(value);\n } else if (typeof value === "number") {\n this.setHex(value);\n } else if (typeof value === "string") {\n this.setStyle(value);\n }\n } else {\n this.setRGB(r, g, b);\n }\n return this;\n }\n setScalar(scalar) {\n this.r = scalar;\n this.g = scalar;\n this.b = scalar;\n return this;\n }\n setHex(hex, colorSpace = SRGBColorSpace) {\n hex = Math.floor(hex);\n this.r = (hex >> 16 & 255) / 255;\n this.g = (hex >> 8 & 255) / 255;\n this.b = (hex & 255) / 255;\n ColorManagement.toWorkingColorSpace(this, colorSpace);\n return this;\n }\n setRGB(r, g, b, colorSpace = ColorManagement.workingColorSpace) {\n this.r = r;\n this.g = g;\n this.b = b;\n ColorManagement.toWorkingColorSpace(this, colorSpace);\n return this;\n }\n setHSL(h, s, l, colorSpace = ColorManagement.workingColorSpace) {\n h = euclideanModulo(h, 1);\n s = clamp(s, 0, 1);\n l = clamp(l, 0, 1);\n if (s === 0) {\n this.r = this.g = this.b = l;\n } else {\n const p = l <= 0.5 ? l * (1 + s) : l + s - l * s;\n const q = 2 * l - p;\n this.r = hue2rgb(q, p, h + 1 / 3);\n this.g = hue2rgb(q, p, h);\n this.b = hue2rgb(q, p, h - 1 / 3);\n }\n ColorManagement.toWorkingColorSpace(this, colorSpace);\n return this;\n }\n setStyle(style, colorSpace = SRGBColorSpace) {\n function handleAlpha(string) {\n if (string === void 0) return;\n if (parseFloat(string) < 1) {\n console.warn("THREE.Color: Alpha component of " + style + " will be ignored.");\n }\n }\n let m;\n if (m = /^(\\w+)\\(([^\\)]*)\\)/.exec(style)) {\n let color;\n const name = m[1];\n const components = m[2];\n switch (name) {\n case "rgb":\n case "rgba":\n if (color = /^\\s*(\\d+)\\s*,\\s*(\\d+)\\s*,\\s*(\\d+)\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(components)) {\n handleAlpha(color[4]);\n return this.setRGB(\n Math.min(255, parseInt(color[1], 10)) / 255,\n Math.min(255, parseInt(color[2], 10)) / 255,\n Math.min(255, parseInt(color[3], 10)) / 255,\n colorSpace\n );\n }\n if (color = /^\\s*(\\d+)\\%\\s*,\\s*(\\d+)\\%\\s*,\\s*(\\d+)\\%\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(components)) {\n handleAlpha(color[4]);\n return this.setRGB(\n Math.min(100, parseInt(color[1], 10)) / 100,\n Math.min(100, parseInt(color[2], 10)) / 100,\n Math.min(100, parseInt(color[3], 10)) / 100,\n colorSpace\n );\n }\n break;\n case "hsl":\n case "hsla":\n if (color = /^\\s*(\\d*\\.?\\d+)\\s*,\\s*(\\d*\\.?\\d+)\\%\\s*,\\s*(\\d*\\.?\\d+)\\%\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(components)) {\n handleAlpha(color[4]);\n return this.setHSL(\n parseFloat(color[1]) / 360,\n parseFloat(color[2]) / 100,\n parseFloat(color[3]) / 100,\n colorSpace\n );\n }\n break;\n default:\n console.warn("THREE.Color: Unknown color model " + style);\n }\n } else if (m = /^\\#([A-Fa-f\\d]+)$/.exec(style)) {\n const hex = m[1];\n const size = hex.length;\n if (size === 3) {\n return this.setRGB(\n parseInt(hex.charAt(0), 16) / 15,\n parseInt(hex.charAt(1), 16) / 15,\n parseInt(hex.charAt(2), 16) / 15,\n colorSpace\n );\n } else if (size === 6) {\n return this.setHex(parseInt(hex, 16), colorSpace);\n } else {\n console.warn("THREE.Color: Invalid hex color " + style);\n }\n } else if (style && style.length > 0) {\n return this.setColorName(style, colorSpace);\n }\n return this;\n }\n setColorName(style, colorSpace = SRGBColorSpace) {\n const hex = _colorKeywords[style.toLowerCase()];\n if (hex !== void 0) {\n this.setHex(hex, colorSpace);\n } else {\n console.warn("THREE.Color: Unknown color " + style);\n }\n return this;\n }\n clone() {\n return new this.constructor(this.r, this.g, this.b);\n }\n copy(color) {\n this.r = color.r;\n this.g = color.g;\n this.b = color.b;\n return this;\n }\n copySRGBToLinear(color) {\n this.r = SRGBToLinear(color.r);\n this.g = SRGBToLinear(color.g);\n this.b = SRGBToLinear(color.b);\n return this;\n }\n copyLinearToSRGB(color) {\n this.r = LinearToSRGB(color.r);\n this.g = LinearToSRGB(color.g);\n this.b = LinearToSRGB(color.b);\n return this;\n }\n convertSRGBToLinear() {\n this.copySRGBToLinear(this);\n return this;\n }\n convertLinearToSRGB() {\n this.copyLinearToSRGB(this);\n return this;\n }\n getHex(colorSpace = SRGBColorSpace) {\n ColorManagement.fromWorkingColorSpace(_color.copy(this), colorSpace);\n return Math.round(clamp(_color.r * 255, 0, 255)) * 65536 + Math.round(clamp(_color.g * 255, 0, 255)) * 256 + Math.round(clamp(_color.b * 255, 0, 255));\n }\n getHexString(colorSpace = SRGBColorSpace) {\n return ("000000" + this.getHex(colorSpace).toString(16)).slice(-6);\n }\n getHSL(target, colorSpace = ColorManagement.workingColorSpace) {\n ColorManagement.fromWorkingColorSpace(_color.copy(this), colorSpace);\n const r = _color.r, g = _color.g, b = _color.b;\n const max2 = Math.max(r, g, b);\n const min = Math.min(r, g, b);\n let hue, saturation;\n const lightness = (min + max2) / 2;\n if (min === max2) {\n hue = 0;\n saturation = 0;\n } else {\n const delta = max2 - min;\n saturation = lightness <= 0.5 ? delta / (max2 + min) : delta / (2 - max2 - min);\n switch (max2) {\n case r:\n hue = (g - b) / delta + (g < b ? 6 : 0);\n break;\n case g:\n hue = (b - r) / delta + 2;\n break;\n case b:\n hue = (r - g) / delta + 4;\n break;\n }\n hue /= 6;\n }\n target.h = hue;\n target.s = saturation;\n target.l = lightness;\n return target;\n }\n getRGB(target, colorSpace = ColorManagement.workingColorSpace) {\n ColorManagement.fromWorkingColorSpace(_color.copy(this), colorSpace);\n target.r = _color.r;\n target.g = _color.g;\n target.b = _color.b;\n return target;\n }\n getStyle(colorSpace = SRGBColorSpace) {\n ColorManagement.fromWorkingColorSpace(_color.copy(this), colorSpace);\n const r = _color.r, g = _color.g, b = _color.b;\n if (colorSpace !== SRGBColorSpace) {\n return `color(${colorSpace} ${r.toFixed(3)} ${g.toFixed(3)} ${b.toFixed(3)})`;\n }\n return `rgb(${Math.round(r * 255)},${Math.round(g * 255)},${Math.round(b * 255)})`;\n }\n offsetHSL(h, s, l) {\n this.getHSL(_hslA);\n return this.setHSL(_hslA.h + h, _hslA.s + s, _hslA.l + l);\n }\n add(color) {\n this.r += color.r;\n this.g += color.g;\n this.b += color.b;\n return this;\n }\n addColors(color1, color2) {\n this.r = color1.r + color2.r;\n this.g = color1.g + color2.g;\n this.b = color1.b + color2.b;\n return this;\n }\n addScalar(s) {\n this.r += s;\n this.g += s;\n this.b += s;\n return this;\n }\n sub(color) {\n this.r = Math.max(0, this.r - color.r);\n this.g = Math.max(0, this.g - color.g);\n this.b = Math.max(0, this.b - color.b);\n return this;\n }\n multiply(color) {\n this.r *= color.r;\n this.g *= color.g;\n this.b *= color.b;\n return this;\n }\n multiplyScalar(s) {\n this.r *= s;\n this.g *= s;\n this.b *= s;\n return this;\n }\n lerp(color, alpha) {\n this.r += (color.r - this.r) * alpha;\n this.g += (color.g - this.g) * alpha;\n this.b += (color.b - this.b) * alpha;\n return this;\n }\n lerpColors(color1, color2, alpha) {\n this.r = color1.r + (color2.r - color1.r) * alpha;\n this.g = color1.g + (color2.g - color1.g) * alpha;\n this.b = color1.b + (color2.b - color1.b) * alpha;\n return this;\n }\n lerpHSL(color, alpha) {\n this.getHSL(_hslA);\n color.getHSL(_hslB);\n const h = lerp(_hslA.h, _hslB.h, alpha);\n const s = lerp(_hslA.s, _hslB.s, alpha);\n const l = lerp(_hslA.l, _hslB.l, alpha);\n this.setHSL(h, s, l);\n return this;\n }\n setFromVector3(v) {\n this.r = v.x;\n this.g = v.y;\n this.b = v.z;\n return this;\n }\n applyMatrix3(m) {\n const r = this.r, g = this.g, b = this.b;\n const e = m.elements;\n this.r = e[0] * r + e[3] * g + e[6] * b;\n this.g = e[1] * r + e[4] * g + e[7] * b;\n this.b = e[2] * r + e[5] * g + e[8] * b;\n return this;\n }\n equals(c) {\n return c.r === this.r && c.g === this.g && c.b === this.b;\n }\n fromArray(array, offset = 0) {\n this.r = array[offset];\n this.g = array[offset + 1];\n this.b = array[offset + 2];\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this.r;\n array[offset + 1] = this.g;\n array[offset + 2] = this.b;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this.r = attribute.getX(index);\n this.g = attribute.getY(index);\n this.b = attribute.getZ(index);\n return this;\n }\n toJSON() {\n return this.getHex();\n }\n *[Symbol.iterator]() {\n yield this.r;\n yield this.g;\n yield this.b;\n }\n }\n const _color = /* @__PURE__ */ new Color();\n Color.NAMES = _colorKeywords;\n let _materialId = 0;\n class Material extends EventDispatcher {\n constructor() {\n super();\n this.isMaterial = true;\n Object.defineProperty(this, "id", { value: _materialId++ });\n this.uuid = generateUUID();\n this.name = "";\n this.type = "Material";\n this.blending = NormalBlending;\n this.side = FrontSide;\n this.vertexColors = false;\n this.opacity = 1;\n this.transparent = false;\n this.alphaHash = false;\n this.blendSrc = SrcAlphaFactor;\n this.blendDst = OneMinusSrcAlphaFactor;\n this.blendEquation = AddEquation;\n this.blendSrcAlpha = null;\n this.blendDstAlpha = null;\n this.blendEquationAlpha = null;\n this.blendColor = new Color(0, 0, 0);\n this.blendAlpha = 0;\n this.depthFunc = LessEqualDepth;\n this.depthTest = true;\n this.depthWrite = true;\n this.stencilWriteMask = 255;\n this.stencilFunc = AlwaysStencilFunc;\n this.stencilRef = 0;\n this.stencilFuncMask = 255;\n this.stencilFail = KeepStencilOp;\n this.stencilZFail = KeepStencilOp;\n this.stencilZPass = KeepStencilOp;\n this.stencilWrite = false;\n this.clippingPlanes = null;\n this.clipIntersection = false;\n this.clipShadows = false;\n this.shadowSide = null;\n this.colorWrite = true;\n this.precision = null;\n this.polygonOffset = false;\n this.polygonOffsetFactor = 0;\n this.polygonOffsetUnits = 0;\n this.dithering = false;\n this.alphaToCoverage = false;\n this.premultipliedAlpha = false;\n this.forceSinglePass = false;\n this.visible = true;\n this.toneMapped = true;\n this.userData = {};\n this.version = 0;\n this._alphaTest = 0;\n }\n get alphaTest() {\n return this._alphaTest;\n }\n set alphaTest(value) {\n if (this._alphaTest > 0 !== value > 0) {\n this.version++;\n }\n this._alphaTest = value;\n }\n // onBeforeRender and onBeforeCompile only supported in WebGLRenderer\n onBeforeRender() {\n }\n onBeforeCompile() {\n }\n customProgramCacheKey() {\n return this.onBeforeCompile.toString();\n }\n setValues(values) {\n if (values === void 0) return;\n for (const key in values) {\n const newValue = values[key];\n if (newValue === void 0) {\n console.warn(`THREE.Material: parameter \'${key}\' has value of undefined.`);\n continue;\n }\n const currentValue = this[key];\n if (currentValue === void 0) {\n console.warn(`THREE.Material: \'${key}\' is not a property of THREE.${this.type}.`);\n continue;\n }\n if (currentValue && currentValue.isColor) {\n currentValue.set(newValue);\n } else if (currentValue && currentValue.isVector3 && (newValue && newValue.isVector3)) {\n currentValue.copy(newValue);\n } else {\n this[key] = newValue;\n }\n }\n }\n toJSON(meta) {\n const isRootObject = meta === void 0 || typeof meta === "string";\n if (isRootObject) {\n meta = {\n textures: {},\n images: {}\n };\n }\n const data = {\n metadata: {\n version: 4.6,\n type: "Material",\n generator: "Material.toJSON"\n }\n };\n data.uuid = this.uuid;\n data.type = this.type;\n if (this.name !== "") data.name = this.name;\n if (this.color && this.color.isColor) data.color = this.color.getHex();\n if (this.roughness !== void 0) data.roughness = this.roughness;\n if (this.metalness !== void 0) data.metalness = this.metalness;\n if (this.sheen !== void 0) data.sheen = this.sheen;\n if (this.sheenColor && this.sheenColor.isColor) data.sheenColor = this.sheenColor.getHex();\n if (this.sheenRoughness !== void 0) data.sheenRoughness = this.sheenRoughness;\n if (this.emissive && this.emissive.isColor) data.emissive = this.emissive.getHex();\n if (this.emissiveIntensity !== void 0 && this.emissiveIntensity !== 1) data.emissiveIntensity = this.emissiveIntensity;\n if (this.specular && this.specular.isColor) data.specular = this.specular.getHex();\n if (this.specularIntensity !== void 0) data.specularIntensity = this.specularIntensity;\n if (this.specularColor && this.specularColor.isColor) data.specularColor = this.specularColor.getHex();\n if (this.shininess !== void 0) data.shininess = this.shininess;\n if (this.clearcoat !== void 0) data.clearcoat = this.clearcoat;\n if (this.clearcoatRoughness !== void 0) data.clearcoatRoughness = this.clearcoatRoughness;\n if (this.clearcoatMap && this.clearcoatMap.isTexture) {\n data.clearcoatMap = this.clearcoatMap.toJSON(meta).uuid;\n }\n if (this.clearcoatRoughnessMap && this.clearcoatRoughnessMap.isTexture) {\n data.clearcoatRoughnessMap = this.clearcoatRoughnessMap.toJSON(meta).uuid;\n }\n if (this.clearcoatNormalMap && this.clearcoatNormalMap.isTexture) {\n data.clearcoatNormalMap = this.clearcoatNormalMap.toJSON(meta).uuid;\n data.clearcoatNormalScale = this.clearcoatNormalScale.toArray();\n }\n if (this.dispersion !== void 0) data.dispersion = this.dispersion;\n if (this.iridescence !== void 0) data.iridescence = this.iridescence;\n if (this.iridescenceIOR !== void 0) data.iridescenceIOR = this.iridescenceIOR;\n if (this.iridescenceThicknessRange !== void 0) data.iridescenceThicknessRange = this.iridescenceThicknessRange;\n if (this.iridescenceMap && this.iridescenceMap.isTexture) {\n data.iridescenceMap = this.iridescenceMap.toJSON(meta).uuid;\n }\n if (this.iridescenceThicknessMap && this.iridescenceThicknessMap.isTexture) {\n data.iridescenceThicknessMap = this.iridescenceThicknessMap.toJSON(meta).uuid;\n }\n if (this.anisotropy !== void 0) data.anisotropy = this.anisotropy;\n if (this.anisotropyRotation !== void 0) data.anisotropyRotation = this.anisotropyRotation;\n if (this.anisotropyMap && this.anisotropyMap.isTexture) {\n data.anisotropyMap = this.anisotropyMap.toJSON(meta).uuid;\n }\n if (this.map && this.map.isTexture) data.map = this.map.toJSON(meta).uuid;\n if (this.matcap && this.matcap.isTexture) data.matcap = this.matcap.toJSON(meta).uuid;\n if (this.alphaMap && this.alphaMap.isTexture) data.alphaMap = this.alphaMap.toJSON(meta).uuid;\n if (this.lightMap && this.lightMap.isTexture) {\n data.lightMap = this.lightMap.toJSON(meta).uuid;\n data.lightMapIntensity = this.lightMapIntensity;\n }\n if (this.aoMap && this.aoMap.isTexture) {\n data.aoMap = this.aoMap.toJSON(meta).uuid;\n data.aoMapIntensity = this.aoMapIntensity;\n }\n if (this.bumpMap && this.bumpMap.isTexture) {\n data.bumpMap = this.bumpMap.toJSON(meta).uuid;\n data.bumpScale = this.bumpScale;\n }\n if (this.normalMap && this.normalMap.isTexture) {\n data.normalMap = this.normalMap.toJSON(meta).uuid;\n data.normalMapType = this.normalMapType;\n data.normalScale = this.normalScale.toArray();\n }\n if (this.displacementMap && this.displacementMap.isTexture) {\n data.displacementMap = this.displacementMap.toJSON(meta).uuid;\n data.displacementScale = this.displacementScale;\n data.displacementBias = this.displacementBias;\n }\n if (this.roughnessMap && this.roughnessMap.isTexture) data.roughnessMap = this.roughnessMap.toJSON(meta).uuid;\n if (this.metalnessMap && this.metalnessMap.isTexture) data.metalnessMap = this.metalnessMap.toJSON(meta).uuid;\n if (this.emissiveMap && this.emissiveMap.isTexture) data.emissiveMap = this.emissiveMap.toJSON(meta).uuid;\n if (this.specularMap && this.specularMap.isTexture) data.specularMap = this.specularMap.toJSON(meta).uuid;\n if (this.specularIntensityMap && this.specularIntensityMap.isTexture) data.specularIntensityMap = this.specularIntensityMap.toJSON(meta).uuid;\n if (this.specularColorMap && this.specularColorMap.isTexture) data.specularColorMap = this.specularColorMap.toJSON(meta).uuid;\n if (this.envMap && this.envMap.isTexture) {\n data.envMap = this.envMap.toJSON(meta).uuid;\n if (this.combine !== void 0) data.combine = this.combine;\n }\n if (this.envMapRotation !== void 0) data.envMapRotation = this.envMapRotation.toArray();\n if (this.envMapIntensity !== void 0) data.envMapIntensity = this.envMapIntensity;\n if (this.reflectivity !== void 0) data.reflectivity = this.reflectivity;\n if (this.refractionRatio !== void 0) data.refractionRatio = this.refractionRatio;\n if (this.gradientMap && this.gradientMap.isTexture) {\n data.gradientMap = this.gradientMap.toJSON(meta).uuid;\n }\n if (this.transmission !== void 0) data.transmission = this.transmission;\n if (this.transmissionMap && this.transmissionMap.isTexture) data.transmissionMap = this.transmissionMap.toJSON(meta).uuid;\n if (this.thickness !== void 0) data.thickness = this.thickness;\n if (this.thicknessMap && this.thicknessMap.isTexture) data.thicknessMap = this.thicknessMap.toJSON(meta).uuid;\n if (this.attenuationDistance !== void 0 && this.attenuationDistance !== Infinity) data.attenuationDistance = this.attenuationDistance;\n if (this.attenuationColor !== void 0) data.attenuationColor = this.attenuationColor.getHex();\n if (this.size !== void 0) data.size = this.size;\n if (this.shadowSide !== null) data.shadowSide = this.shadowSide;\n if (this.sizeAttenuation !== void 0) data.sizeAttenuation = this.sizeAttenuation;\n if (this.blending !== NormalBlending) data.blending = this.blending;\n if (this.side !== FrontSide) data.side = this.side;\n if (this.vertexColors === true) data.vertexColors = true;\n if (this.opacity < 1) data.opacity = this.opacity;\n if (this.transparent === true) data.transparent = true;\n if (this.blendSrc !== SrcAlphaFactor) data.blendSrc = this.blendSrc;\n if (this.blendDst !== OneMinusSrcAlphaFactor) data.blendDst = this.blendDst;\n if (this.blendEquation !== AddEquation) data.blendEquation = this.blendEquation;\n if (this.blendSrcAlpha !== null) data.blendSrcAlpha = this.blendSrcAlpha;\n if (this.blendDstAlpha !== null) data.blendDstAlpha = this.blendDstAlpha;\n if (this.blendEquationAlpha !== null) data.blendEquationAlpha = this.blendEquationAlpha;\n if (this.blendColor && this.blendColor.isColor) data.blendColor = this.blendColor.getHex();\n if (this.blendAlpha !== 0) data.blendAlpha = this.blendAlpha;\n if (this.depthFunc !== LessEqualDepth) data.depthFunc = this.depthFunc;\n if (this.depthTest === false) data.depthTest = this.depthTest;\n if (this.depthWrite === false) data.depthWrite = this.depthWrite;\n if (this.colorWrite === false) data.colorWrite = this.colorWrite;\n if (this.stencilWriteMask !== 255) data.stencilWriteMask = this.stencilWriteMask;\n if (this.stencilFunc !== AlwaysStencilFunc) data.stencilFunc = this.stencilFunc;\n if (this.stencilRef !== 0) data.stencilRef = this.stencilRef;\n if (this.stencilFuncMask !== 255) data.stencilFuncMask = this.stencilFuncMask;\n if (this.stencilFail !== KeepStencilOp) data.stencilFail = this.stencilFail;\n if (this.stencilZFail !== KeepStencilOp) data.stencilZFail = this.stencilZFail;\n if (this.stencilZPass !== KeepStencilOp) data.stencilZPass = this.stencilZPass;\n if (this.stencilWrite === true) data.stencilWrite = this.stencilWrite;\n if (this.rotation !== void 0 && this.rotation !== 0) data.rotation = this.rotation;\n if (this.polygonOffset === true) data.polygonOffset = true;\n if (this.polygonOffsetFactor !== 0) data.polygonOffsetFactor = this.polygonOffsetFactor;\n if (this.polygonOffsetUnits !== 0) data.polygonOffsetUnits = this.polygonOffsetUnits;\n if (this.linewidth !== void 0 && this.linewidth !== 1) data.linewidth = this.linewidth;\n if (this.dashSize !== void 0) data.dashSize = this.dashSize;\n if (this.gapSize !== void 0) data.gapSize = this.gapSize;\n if (this.scale !== void 0) data.scale = this.scale;\n if (this.dithering === true) data.dithering = true;\n if (this.alphaTest > 0) data.alphaTest = this.alphaTest;\n if (this.alphaHash === true) data.alphaHash = true;\n if (this.alphaToCoverage === true) data.alphaToCoverage = true;\n if (this.premultipliedAlpha === true) data.premultipliedAlpha = true;\n if (this.forceSinglePass === true) data.forceSinglePass = true;\n if (this.wireframe === true) data.wireframe = true;\n if (this.wireframeLinewidth > 1) data.wireframeLinewidth = this.wireframeLinewidth;\n if (this.wireframeLinecap !== "round") data.wireframeLinecap = this.wireframeLinecap;\n if (this.wireframeLinejoin !== "round") data.wireframeLinejoin = this.wireframeLinejoin;\n if (this.flatShading === true) data.flatShading = true;\n if (this.visible === false) data.visible = false;\n if (this.toneMapped === false) data.toneMapped = false;\n if (this.fog === false) data.fog = false;\n if (Object.keys(this.userData).length > 0) data.userData = this.userData;\n function extractFromCache(cache) {\n const values = [];\n for (const key in cache) {\n const data2 = cache[key];\n delete data2.metadata;\n values.push(data2);\n }\n return values;\n }\n if (isRootObject) {\n const textures = extractFromCache(meta.textures);\n const images = extractFromCache(meta.images);\n if (textures.length > 0) data.textures = textures;\n if (images.length > 0) data.images = images;\n }\n return data;\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(source) {\n this.name = source.name;\n this.blending = source.blending;\n this.side = source.side;\n this.vertexColors = source.vertexColors;\n this.opacity = source.opacity;\n this.transparent = source.transparent;\n this.blendSrc = source.blendSrc;\n this.blendDst = source.blendDst;\n this.blendEquation = source.blendEquation;\n this.blendSrcAlpha = source.blendSrcAlpha;\n this.blendDstAlpha = source.blendDstAlpha;\n this.blendEquationAlpha = source.blendEquationAlpha;\n this.blendColor.copy(source.blendColor);\n this.blendAlpha = source.blendAlpha;\n this.depthFunc = source.depthFunc;\n this.depthTest = source.depthTest;\n this.depthWrite = source.depthWrite;\n this.stencilWriteMask = source.stencilWriteMask;\n this.stencilFunc = source.stencilFunc;\n this.stencilRef = source.stencilRef;\n this.stencilFuncMask = source.stencilFuncMask;\n this.stencilFail = source.stencilFail;\n this.stencilZFail = source.stencilZFail;\n this.stencilZPass = source.stencilZPass;\n this.stencilWrite = source.stencilWrite;\n const srcPlanes = source.clippingPlanes;\n let dstPlanes = null;\n if (srcPlanes !== null) {\n const n = srcPlanes.length;\n dstPlanes = new Array(n);\n for (let i2 = 0; i2 !== n; ++i2) {\n dstPlanes[i2] = srcPlanes[i2].clone();\n }\n }\n this.clippingPlanes = dstPlanes;\n this.clipIntersection = source.clipIntersection;\n this.clipShadows = source.clipShadows;\n this.shadowSide = source.shadowSide;\n this.colorWrite = source.colorWrite;\n this.precision = source.precision;\n this.polygonOffset = source.polygonOffset;\n this.polygonOffsetFactor = source.polygonOffsetFactor;\n this.polygonOffsetUnits = source.polygonOffsetUnits;\n this.dithering = source.dithering;\n this.alphaTest = source.alphaTest;\n this.alphaHash = source.alphaHash;\n this.alphaToCoverage = source.alphaToCoverage;\n this.premultipliedAlpha = source.premultipliedAlpha;\n this.forceSinglePass = source.forceSinglePass;\n this.visible = source.visible;\n this.toneMapped = source.toneMapped;\n this.userData = JSON.parse(JSON.stringify(source.userData));\n return this;\n }\n dispose() {\n this.dispatchEvent({ type: "dispose" });\n }\n set needsUpdate(value) {\n if (value === true) this.version++;\n }\n onBuild() {\n console.warn("Material: onBuild() has been removed.");\n }\n }\n class MeshBasicMaterial extends Material {\n constructor(parameters) {\n super();\n this.isMeshBasicMaterial = true;\n this.type = "MeshBasicMaterial";\n this.color = new Color(16777215);\n this.map = null;\n this.lightMap = null;\n this.lightMapIntensity = 1;\n this.aoMap = null;\n this.aoMapIntensity = 1;\n this.specularMap = null;\n this.alphaMap = null;\n this.envMap = null;\n this.envMapRotation = new Euler();\n this.combine = MultiplyOperation;\n this.reflectivity = 1;\n this.refractionRatio = 0.98;\n this.wireframe = false;\n this.wireframeLinewidth = 1;\n this.wireframeLinecap = "round";\n this.wireframeLinejoin = "round";\n this.fog = true;\n this.setValues(parameters);\n }\n copy(source) {\n super.copy(source);\n this.color.copy(source.color);\n this.map = source.map;\n this.lightMap = source.lightMap;\n this.lightMapIntensity = source.lightMapIntensity;\n this.aoMap = source.aoMap;\n this.aoMapIntensity = source.aoMapIntensity;\n this.specularMap = source.specularMap;\n this.alphaMap = source.alphaMap;\n this.envMap = source.envMap;\n this.envMapRotation.copy(source.envMapRotation);\n this.combine = source.combine;\n this.reflectivity = source.reflectivity;\n this.refractionRatio = source.refractionRatio;\n this.wireframe = source.wireframe;\n this.wireframeLinewidth = source.wireframeLinewidth;\n this.wireframeLinecap = source.wireframeLinecap;\n this.wireframeLinejoin = source.wireframeLinejoin;\n this.fog = source.fog;\n return this;\n }\n }\n const _vector$9 = /* @__PURE__ */ new Vector3();\n const _vector2$1 = /* @__PURE__ */ new Vector2();\n class BufferAttribute {\n constructor(array, itemSize, normalized = false) {\n if (Array.isArray(array)) {\n throw new TypeError("THREE.BufferAttribute: array should be a Typed Array.");\n }\n this.isBufferAttribute = true;\n this.name = "";\n this.array = array;\n this.itemSize = itemSize;\n this.count = array !== void 0 ? array.length / itemSize : 0;\n this.normalized = normalized;\n this.usage = StaticDrawUsage;\n this.updateRanges = [];\n this.gpuType = FloatType;\n this.version = 0;\n }\n onUploadCallback() {\n }\n set needsUpdate(value) {\n if (value === true) this.version++;\n }\n setUsage(value) {\n this.usage = value;\n return this;\n }\n addUpdateRange(start, count) {\n this.updateRanges.push({ start, count });\n }\n clearUpdateRanges() {\n this.updateRanges.length = 0;\n }\n copy(source) {\n this.name = source.name;\n this.array = new source.array.constructor(source.array);\n this.itemSize = source.itemSize;\n this.count = source.count;\n this.normalized = source.normalized;\n this.usage = source.usage;\n this.gpuType = source.gpuType;\n return this;\n }\n copyAt(index1, attribute, index2) {\n index1 *= this.itemSize;\n index2 *= attribute.itemSize;\n for (let i2 = 0, l = this.itemSize; i2 < l; i2++) {\n this.array[index1 + i2] = attribute.array[index2 + i2];\n }\n return this;\n }\n copyArray(array) {\n this.array.set(array);\n return this;\n }\n applyMatrix3(m) {\n if (this.itemSize === 2) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector2$1.fromBufferAttribute(this, i2);\n _vector2$1.applyMatrix3(m);\n this.setXY(i2, _vector2$1.x, _vector2$1.y);\n }\n } else if (this.itemSize === 3) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector$9.fromBufferAttribute(this, i2);\n _vector$9.applyMatrix3(m);\n this.setXYZ(i2, _vector$9.x, _vector$9.y, _vector$9.z);\n }\n }\n return this;\n }\n applyMatrix4(m) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector$9.fromBufferAttribute(this, i2);\n _vector$9.applyMatrix4(m);\n this.setXYZ(i2, _vector$9.x, _vector$9.y, _vector$9.z);\n }\n return this;\n }\n applyNormalMatrix(m) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector$9.fromBufferAttribute(this, i2);\n _vector$9.applyNormalMatrix(m);\n this.setXYZ(i2, _vector$9.x, _vector$9.y, _vector$9.z);\n }\n return this;\n }\n transformDirection(m) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector$9.fromBufferAttribute(this, i2);\n _vector$9.transformDirection(m);\n this.setXYZ(i2, _vector$9.x, _vector$9.y, _vector$9.z);\n }\n return this;\n }\n set(value, offset = 0) {\n this.array.set(value, offset);\n return this;\n }\n getComponent(index, component) {\n let value = this.array[index * this.itemSize + component];\n if (this.normalized) value = denormalize(value, this.array);\n return value;\n }\n setComponent(index, component, value) {\n if (this.normalized) value = normalize$1(value, this.array);\n this.array[index * this.itemSize + component] = value;\n return this;\n }\n getX(index) {\n let x2 = this.array[index * this.itemSize];\n if (this.normalized) x2 = denormalize(x2, this.array);\n return x2;\n }\n setX(index, x2) {\n if (this.normalized) x2 = normalize$1(x2, this.array);\n this.array[index * this.itemSize] = x2;\n return this;\n }\n getY(index) {\n let y = this.array[index * this.itemSize + 1];\n if (this.normalized) y = denormalize(y, this.array);\n return y;\n }\n setY(index, y) {\n if (this.normalized) y = normalize$1(y, this.array);\n this.array[index * this.itemSize + 1] = y;\n return this;\n }\n getZ(index) {\n let z = this.array[index * this.itemSize + 2];\n if (this.normalized) z = denormalize(z, this.array);\n return z;\n }\n setZ(index, z) {\n if (this.normalized) z = normalize$1(z, this.array);\n this.array[index * this.itemSize + 2] = z;\n return this;\n }\n getW(index) {\n let w = this.array[index * this.itemSize + 3];\n if (this.normalized) w = denormalize(w, this.array);\n return w;\n }\n setW(index, w) {\n if (this.normalized) w = normalize$1(w, this.array);\n this.array[index * this.itemSize + 3] = w;\n return this;\n }\n setXY(index, x2, y) {\n index *= this.itemSize;\n if (this.normalized) {\n x2 = normalize$1(x2, this.array);\n y = normalize$1(y, this.array);\n }\n this.array[index + 0] = x2;\n this.array[index + 1] = y;\n return this;\n }\n setXYZ(index, x2, y, z) {\n index *= this.itemSize;\n if (this.normalized) {\n x2 = normalize$1(x2, this.array);\n y = normalize$1(y, this.array);\n z = normalize$1(z, this.array);\n }\n this.array[index + 0] = x2;\n this.array[index + 1] = y;\n this.array[index + 2] = z;\n return this;\n }\n setXYZW(index, x2, y, z, w) {\n index *= this.itemSize;\n if (this.normalized) {\n x2 = normalize$1(x2, this.array);\n y = normalize$1(y, this.array);\n z = normalize$1(z, this.array);\n w = normalize$1(w, this.array);\n }\n this.array[index + 0] = x2;\n this.array[index + 1] = y;\n this.array[index + 2] = z;\n this.array[index + 3] = w;\n return this;\n }\n onUpload(callback) {\n this.onUploadCallback = callback;\n return this;\n }\n clone() {\n return new this.constructor(this.array, this.itemSize).copy(this);\n }\n toJSON() {\n const data = {\n itemSize: this.itemSize,\n type: this.array.constructor.name,\n array: Array.from(this.array),\n normalized: this.normalized\n };\n if (this.name !== "") data.name = this.name;\n if (this.usage !== StaticDrawUsage) data.usage = this.usage;\n return data;\n }\n }\n class Uint16BufferAttribute extends BufferAttribute {\n constructor(array, itemSize, normalized) {\n super(new Uint16Array(array), itemSize, normalized);\n }\n }\n class Uint32BufferAttribute extends BufferAttribute {\n constructor(array, itemSize, normalized) {\n super(new Uint32Array(array), itemSize, normalized);\n }\n }\n class Float32BufferAttribute extends BufferAttribute {\n constructor(array, itemSize, normalized) {\n super(new Float32Array(array), itemSize, normalized);\n }\n }\n let _id$1 = 0;\n const _m1 = /* @__PURE__ */ new Matrix4();\n const _obj = /* @__PURE__ */ new Object3D();\n const _offset = /* @__PURE__ */ new Vector3();\n const _box$2 = /* @__PURE__ */ new Box3();\n const _boxMorphTargets = /* @__PURE__ */ new Box3();\n const _vector$8 = /* @__PURE__ */ new Vector3();\n class BufferGeometry extends EventDispatcher {\n constructor() {\n super();\n this.isBufferGeometry = true;\n Object.defineProperty(this, "id", { value: _id$1++ });\n this.uuid = generateUUID();\n this.name = "";\n this.type = "BufferGeometry";\n this.index = null;\n this.indirect = null;\n this.attributes = {};\n this.morphAttributes = {};\n this.morphTargetsRelative = false;\n this.groups = [];\n this.boundingBox = null;\n this.boundingSphere = null;\n this.drawRange = { start: 0, count: Infinity };\n this.userData = {};\n }\n getIndex() {\n return this.index;\n }\n setIndex(index) {\n if (Array.isArray(index)) {\n this.index = new (arrayNeedsUint32(index) ? Uint32BufferAttribute : Uint16BufferAttribute)(index, 1);\n } else {\n this.index = index;\n }\n return this;\n }\n setIndirect(indirect) {\n this.indirect = indirect;\n return this;\n }\n getIndirect() {\n return this.indirect;\n }\n getAttribute(name) {\n return this.attributes[name];\n }\n setAttribute(name, attribute) {\n this.attributes[name] = attribute;\n return this;\n }\n deleteAttribute(name) {\n delete this.attributes[name];\n return this;\n }\n hasAttribute(name) {\n return this.attributes[name] !== void 0;\n }\n addGroup(start, count, materialIndex = 0) {\n this.groups.push({\n start,\n count,\n materialIndex\n });\n }\n clearGroups() {\n this.groups = [];\n }\n setDrawRange(start, count) {\n this.drawRange.start = start;\n this.drawRange.count = count;\n }\n applyMatrix4(matrix) {\n const position = this.attributes.position;\n if (position !== void 0) {\n position.applyMatrix4(matrix);\n position.needsUpdate = true;\n }\n const normal = this.attributes.normal;\n if (normal !== void 0) {\n const normalMatrix = new Matrix3().getNormalMatrix(matrix);\n normal.applyNormalMatrix(normalMatrix);\n normal.needsUpdate = true;\n }\n const tangent = this.attributes.tangent;\n if (tangent !== void 0) {\n tangent.transformDirection(matrix);\n tangent.needsUpdate = true;\n }\n if (this.boundingBox !== null) {\n this.computeBoundingBox();\n }\n if (this.boundingSphere !== null) {\n this.computeBoundingSphere();\n }\n return this;\n }\n applyQuaternion(q) {\n _m1.makeRotationFromQuaternion(q);\n this.applyMatrix4(_m1);\n return this;\n }\n rotateX(angle) {\n _m1.makeRotationX(angle);\n this.applyMatrix4(_m1);\n return this;\n }\n rotateY(angle) {\n _m1.makeRotationY(angle);\n this.applyMatrix4(_m1);\n return this;\n }\n rotateZ(angle) {\n _m1.makeRotationZ(angle);\n this.applyMatrix4(_m1);\n return this;\n }\n translate(x2, y, z) {\n _m1.makeTranslation(x2, y, z);\n this.applyMatrix4(_m1);\n return this;\n }\n scale(x2, y, z) {\n _m1.makeScale(x2, y, z);\n this.applyMatrix4(_m1);\n return this;\n }\n lookAt(vector) {\n _obj.lookAt(vector);\n _obj.updateMatrix();\n this.applyMatrix4(_obj.matrix);\n return this;\n }\n center() {\n this.computeBoundingBox();\n this.boundingBox.getCenter(_offset).negate();\n this.translate(_offset.x, _offset.y, _offset.z);\n return this;\n }\n setFromPoints(points) {\n const positionAttribute = this.getAttribute("position");\n if (positionAttribute === void 0) {\n const position = [];\n for (let i2 = 0, l = points.length; i2 < l; i2++) {\n const point = points[i2];\n position.push(point.x, point.y, point.z || 0);\n }\n this.setAttribute("position", new Float32BufferAttribute(position, 3));\n } else {\n const l = Math.min(points.length, positionAttribute.count);\n for (let i2 = 0; i2 < l; i2++) {\n const point = points[i2];\n positionAttribute.setXYZ(i2, point.x, point.y, point.z || 0);\n }\n if (points.length > positionAttribute.count) {\n console.warn("THREE.BufferGeometry: Buffer size too small for points data. Use .dispose() and create a new geometry.");\n }\n positionAttribute.needsUpdate = true;\n }\n return this;\n }\n computeBoundingBox() {\n if (this.boundingBox === null) {\n this.boundingBox = new Box3();\n }\n const position = this.attributes.position;\n const morphAttributesPosition = this.morphAttributes.position;\n if (position && position.isGLBufferAttribute) {\n console.error("THREE.BufferGeometry.computeBoundingBox(): GLBufferAttribute requires a manual bounding box.", this);\n this.boundingBox.set(\n new Vector3(-Infinity, -Infinity, -Infinity),\n new Vector3(Infinity, Infinity, Infinity)\n );\n return;\n }\n if (position !== void 0) {\n this.boundingBox.setFromBufferAttribute(position);\n if (morphAttributesPosition) {\n for (let i2 = 0, il = morphAttributesPosition.length; i2 < il; i2++) {\n const morphAttribute = morphAttributesPosition[i2];\n _box$2.setFromBufferAttribute(morphAttribute);\n if (this.morphTargetsRelative) {\n _vector$8.addVectors(this.boundingBox.min, _box$2.min);\n this.boundingBox.expandByPoint(_vector$8);\n _vector$8.addVectors(this.boundingBox.max, _box$2.max);\n this.boundingBox.expandByPoint(_vector$8);\n } else {\n this.boundingBox.expandByPoint(_box$2.min);\n this.boundingBox.expandByPoint(_box$2.max);\n }\n }\n }\n } else {\n this.boundingBox.makeEmpty();\n }\n if (isNaN(this.boundingBox.min.x) || isNaN(this.boundingBox.min.y) || isNaN(this.boundingBox.min.z)) {\n console.error(\'THREE.BufferGeometry.computeBoundingBox(): Computed min/max have NaN values. The "position" attribute is likely to have NaN values.\', this);\n }\n }\n computeBoundingSphere() {\n if (this.boundingSphere === null) {\n this.boundingSphere = new Sphere();\n }\n const position = this.attributes.position;\n const morphAttributesPosition = this.morphAttributes.position;\n if (position && position.isGLBufferAttribute) {\n console.error("THREE.BufferGeometry.computeBoundingSphere(): GLBufferAttribute requires a manual bounding sphere.", this);\n this.boundingSphere.set(new Vector3(), Infinity);\n return;\n }\n if (position) {\n const center = this.boundingSphere.center;\n _box$2.setFromBufferAttribute(position);\n if (morphAttributesPosition) {\n for (let i2 = 0, il = morphAttributesPosition.length; i2 < il; i2++) {\n const morphAttribute = morphAttributesPosition[i2];\n _boxMorphTargets.setFromBufferAttribute(morphAttribute);\n if (this.morphTargetsRelative) {\n _vector$8.addVectors(_box$2.min, _boxMorphTargets.min);\n _box$2.expandByPoint(_vector$8);\n _vector$8.addVectors(_box$2.max, _boxMorphTargets.max);\n _box$2.expandByPoint(_vector$8);\n } else {\n _box$2.expandByPoint(_boxMorphTargets.min);\n _box$2.expandByPoint(_boxMorphTargets.max);\n }\n }\n }\n _box$2.getCenter(center);\n let maxRadiusSq = 0;\n for (let i2 = 0, il = position.count; i2 < il; i2++) {\n _vector$8.fromBufferAttribute(position, i2);\n maxRadiusSq = Math.max(maxRadiusSq, center.distanceToSquared(_vector$8));\n }\n if (morphAttributesPosition) {\n for (let i2 = 0, il = morphAttributesPosition.length; i2 < il; i2++) {\n const morphAttribute = morphAttributesPosition[i2];\n const morphTargetsRelative = this.morphTargetsRelative;\n for (let j = 0, jl = morphAttribute.count; j < jl; j++) {\n _vector$8.fromBufferAttribute(morphAttribute, j);\n if (morphTargetsRelative) {\n _offset.fromBufferAttribute(position, j);\n _vector$8.add(_offset);\n }\n maxRadiusSq = Math.max(maxRadiusSq, center.distanceToSquared(_vector$8));\n }\n }\n }\n this.boundingSphere.radius = Math.sqrt(maxRadiusSq);\n if (isNaN(this.boundingSphere.radius)) {\n console.error(\'THREE.BufferGeometry.computeBoundingSphere(): Computed radius is NaN. The "position" attribute is likely to have NaN values.\', this);\n }\n }\n }\n computeTangents() {\n const index = this.index;\n const attributes = this.attributes;\n if (index === null || attributes.position === void 0 || attributes.normal === void 0 || attributes.uv === void 0) {\n console.error("THREE.BufferGeometry: .computeTangents() failed. Missing required attributes (index, position, normal or uv)");\n return;\n }\n const positionAttribute = attributes.position;\n const normalAttribute = attributes.normal;\n const uvAttribute = attributes.uv;\n if (this.hasAttribute("tangent") === false) {\n this.setAttribute("tangent", new BufferAttribute(new Float32Array(4 * positionAttribute.count), 4));\n }\n const tangentAttribute = this.getAttribute("tangent");\n const tan1 = [], tan2 = [];\n for (let i2 = 0; i2 < positionAttribute.count; i2++) {\n tan1[i2] = new Vector3();\n tan2[i2] = new Vector3();\n }\n const vA = new Vector3(), vB = new Vector3(), vC = new Vector3(), uvA = new Vector2(), uvB = new Vector2(), uvC = new Vector2(), sdir = new Vector3(), tdir = new Vector3();\n function handleTriangle(a, b, c) {\n vA.fromBufferAttribute(positionAttribute, a);\n vB.fromBufferAttribute(positionAttribute, b);\n vC.fromBufferAttribute(positionAttribute, c);\n uvA.fromBufferAttribute(uvAttribute, a);\n uvB.fromBufferAttribute(uvAttribute, b);\n uvC.fromBufferAttribute(uvAttribute, c);\n vB.sub(vA);\n vC.sub(vA);\n uvB.sub(uvA);\n uvC.sub(uvA);\n const r = 1 / (uvB.x * uvC.y - uvC.x * uvB.y);\n if (!isFinite(r)) return;\n sdir.copy(vB).multiplyScalar(uvC.y).addScaledVector(vC, -uvB.y).multiplyScalar(r);\n tdir.copy(vC).multiplyScalar(uvB.x).addScaledVector(vB, -uvC.x).multiplyScalar(r);\n tan1[a].add(sdir);\n tan1[b].add(sdir);\n tan1[c].add(sdir);\n tan2[a].add(tdir);\n tan2[b].add(tdir);\n tan2[c].add(tdir);\n }\n let groups = this.groups;\n if (groups.length === 0) {\n groups = [{\n start: 0,\n count: index.count\n }];\n }\n for (let i2 = 0, il = groups.length; i2 < il; ++i2) {\n const group = groups[i2];\n const start = group.start;\n const count = group.count;\n for (let j = start, jl = start + count; j < jl; j += 3) {\n handleTriangle(\n index.getX(j + 0),\n index.getX(j + 1),\n index.getX(j + 2)\n );\n }\n }\n const tmp = new Vector3(), tmp2 = new Vector3();\n const n = new Vector3(), n2 = new Vector3();\n function handleVertex(v) {\n n.fromBufferAttribute(normalAttribute, v);\n n2.copy(n);\n const t = tan1[v];\n tmp.copy(t);\n tmp.sub(n.multiplyScalar(n.dot(t))).normalize();\n tmp2.crossVectors(n2, t);\n const test = tmp2.dot(tan2[v]);\n const w = test < 0 ? -1 : 1;\n tangentAttribute.setXYZW(v, tmp.x, tmp.y, tmp.z, w);\n }\n for (let i2 = 0, il = groups.length; i2 < il; ++i2) {\n const group = groups[i2];\n const start = group.start;\n const count = group.count;\n for (let j = start, jl = start + count; j < jl; j += 3) {\n handleVertex(index.getX(j + 0));\n handleVertex(index.getX(j + 1));\n handleVertex(index.getX(j + 2));\n }\n }\n }\n computeVertexNormals() {\n const index = this.index;\n const positionAttribute = this.getAttribute("position");\n if (positionAttribute !== void 0) {\n let normalAttribute = this.getAttribute("normal");\n if (normalAttribute === void 0) {\n normalAttribute = new BufferAttribute(new Float32Array(positionAttribute.count * 3), 3);\n this.setAttribute("normal", normalAttribute);\n } else {\n for (let i2 = 0, il = normalAttribute.count; i2 < il; i2++) {\n normalAttribute.setXYZ(i2, 0, 0, 0);\n }\n }\n const pA = new Vector3(), pB = new Vector3(), pC = new Vector3();\n const nA = new Vector3(), nB = new Vector3(), nC = new Vector3();\n const cb = new Vector3(), ab = new Vector3();\n if (index) {\n for (let i2 = 0, il = index.count; i2 < il; i2 += 3) {\n const vA = index.getX(i2 + 0);\n const vB = index.getX(i2 + 1);\n const vC = index.getX(i2 + 2);\n pA.fromBufferAttribute(positionAttribute, vA);\n pB.fromBufferAttribute(positionAttribute, vB);\n pC.fromBufferAttribute(positionAttribute, vC);\n cb.subVectors(pC, pB);\n ab.subVectors(pA, pB);\n cb.cross(ab);\n nA.fromBufferAttribute(normalAttribute, vA);\n nB.fromBufferAttribute(normalAttribute, vB);\n nC.fromBufferAttribute(normalAttribute, vC);\n nA.add(cb);\n nB.add(cb);\n nC.add(cb);\n normalAttribute.setXYZ(vA, nA.x, nA.y, nA.z);\n normalAttribute.setXYZ(vB, nB.x, nB.y, nB.z);\n normalAttribute.setXYZ(vC, nC.x, nC.y, nC.z);\n }\n } else {\n for (let i2 = 0, il = positionAttribute.count; i2 < il; i2 += 3) {\n pA.fromBufferAttribute(positionAttribute, i2 + 0);\n pB.fromBufferAttribute(positionAttribute, i2 + 1);\n pC.fromBufferAttribute(positionAttribute, i2 + 2);\n cb.subVectors(pC, pB);\n ab.subVectors(pA, pB);\n cb.cross(ab);\n normalAttribute.setXYZ(i2 + 0, cb.x, cb.y, cb.z);\n normalAttribute.setXYZ(i2 + 1, cb.x, cb.y, cb.z);\n normalAttribute.setXYZ(i2 + 2, cb.x, cb.y, cb.z);\n }\n }\n this.normalizeNormals();\n normalAttribute.needsUpdate = true;\n }\n }\n normalizeNormals() {\n const normals = this.attributes.normal;\n for (let i2 = 0, il = normals.count; i2 < il; i2++) {\n _vector$8.fromBufferAttribute(normals, i2);\n _vector$8.normalize();\n normals.setXYZ(i2, _vector$8.x, _vector$8.y, _vector$8.z);\n }\n }\n toNonIndexed() {\n function convertBufferAttribute(attribute, indices2) {\n const array = attribute.array;\n const itemSize = attribute.itemSize;\n const normalized = attribute.normalized;\n const array2 = new array.constructor(indices2.length * itemSize);\n let index = 0, index2 = 0;\n for (let i2 = 0, l = indices2.length; i2 < l; i2++) {\n if (attribute.isInterleavedBufferAttribute) {\n index = indices2[i2] * attribute.data.stride + attribute.offset;\n } else {\n index = indices2[i2] * itemSize;\n }\n for (let j = 0; j < itemSize; j++) {\n array2[index2++] = array[index++];\n }\n }\n return new BufferAttribute(array2, itemSize, normalized);\n }\n if (this.index === null) {\n console.warn("THREE.BufferGeometry.toNonIndexed(): BufferGeometry is already non-indexed.");\n return this;\n }\n const geometry2 = new BufferGeometry();\n const indices = this.index.array;\n const attributes = this.attributes;\n for (const name in attributes) {\n const attribute = attributes[name];\n const newAttribute = convertBufferAttribute(attribute, indices);\n geometry2.setAttribute(name, newAttribute);\n }\n const morphAttributes = this.morphAttributes;\n for (const name in morphAttributes) {\n const morphArray = [];\n const morphAttribute = morphAttributes[name];\n for (let i2 = 0, il = morphAttribute.length; i2 < il; i2++) {\n const attribute = morphAttribute[i2];\n const newAttribute = convertBufferAttribute(attribute, indices);\n morphArray.push(newAttribute);\n }\n geometry2.morphAttributes[name] = morphArray;\n }\n geometry2.morphTargetsRelative = this.morphTargetsRelative;\n const groups = this.groups;\n for (let i2 = 0, l = groups.length; i2 < l; i2++) {\n const group = groups[i2];\n geometry2.addGroup(group.start, group.count, group.materialIndex);\n }\n return geometry2;\n }\n toJSON() {\n const data = {\n metadata: {\n version: 4.6,\n type: "BufferGeometry",\n generator: "BufferGeometry.toJSON"\n }\n };\n data.uuid = this.uuid;\n data.type = this.type;\n if (this.name !== "") data.name = this.name;\n if (Object.keys(this.userData).length > 0) data.userData = this.userData;\n if (this.parameters !== void 0) {\n const parameters = this.parameters;\n for (const key in parameters) {\n if (parameters[key] !== void 0) data[key] = parameters[key];\n }\n return data;\n }\n data.data = { attributes: {} };\n const index = this.index;\n if (index !== null) {\n data.data.index = {\n type: index.array.constructor.name,\n array: Array.prototype.slice.call(index.array)\n };\n }\n const attributes = this.attributes;\n for (const key in attributes) {\n const attribute = attributes[key];\n data.data.attributes[key] = attribute.toJSON(data.data);\n }\n const morphAttributes = {};\n let hasMorphAttributes = false;\n for (const key in this.morphAttributes) {\n const attributeArray = this.morphAttributes[key];\n const array = [];\n for (let i2 = 0, il = attributeArray.length; i2 < il; i2++) {\n const attribute = attributeArray[i2];\n array.push(attribute.toJSON(data.data));\n }\n if (array.length > 0) {\n morphAttributes[key] = array;\n hasMorphAttributes = true;\n }\n }\n if (hasMorphAttributes) {\n data.data.morphAttributes = morphAttributes;\n data.data.morphTargetsRelative = this.morphTargetsRelative;\n }\n const groups = this.groups;\n if (groups.length > 0) {\n data.data.groups = JSON.parse(JSON.stringify(groups));\n }\n const boundingSphere = this.boundingSphere;\n if (boundingSphere !== null) {\n data.data.boundingSphere = {\n center: boundingSphere.center.toArray(),\n radius: boundingSphere.radius\n };\n }\n return data;\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(source) {\n this.index = null;\n this.attributes = {};\n this.morphAttributes = {};\n this.groups = [];\n this.boundingBox = null;\n this.boundingSphere = null;\n const data = {};\n this.name = source.name;\n const index = source.index;\n if (index !== null) {\n this.setIndex(index.clone(data));\n }\n const attributes = source.attributes;\n for (const name in attributes) {\n const attribute = attributes[name];\n this.setAttribute(name, attribute.clone(data));\n }\n const morphAttributes = source.morphAttributes;\n for (const name in morphAttributes) {\n const array = [];\n const morphAttribute = morphAttributes[name];\n for (let i2 = 0, l = morphAttribute.length; i2 < l; i2++) {\n array.push(morphAttribute[i2].clone(data));\n }\n this.morphAttributes[name] = array;\n }\n this.morphTargetsRelative = source.morphTargetsRelative;\n const groups = source.groups;\n for (let i2 = 0, l = groups.length; i2 < l; i2++) {\n const group = groups[i2];\n this.addGroup(group.start, group.count, group.materialIndex);\n }\n const boundingBox = source.boundingBox;\n if (boundingBox !== null) {\n this.boundingBox = boundingBox.clone();\n }\n const boundingSphere = source.boundingSphere;\n if (boundingSphere !== null) {\n this.boundingSphere = boundingSphere.clone();\n }\n this.drawRange.start = source.drawRange.start;\n this.drawRange.count = source.drawRange.count;\n this.userData = source.userData;\n return this;\n }\n dispose() {\n this.dispatchEvent({ type: "dispose" });\n }\n }\n const _inverseMatrix$3 = /* @__PURE__ */ new Matrix4();\n const _ray$3 = /* @__PURE__ */ new Ray();\n const _sphere$6 = /* @__PURE__ */ new Sphere();\n const _sphereHitAt = /* @__PURE__ */ new Vector3();\n const _vA$1 = /* @__PURE__ */ new Vector3();\n const _vB$1 = /* @__PURE__ */ new Vector3();\n const _vC$1 = /* @__PURE__ */ new Vector3();\n const _tempA = /* @__PURE__ */ new Vector3();\n const _morphA = /* @__PURE__ */ new Vector3();\n const _intersectionPoint = /* @__PURE__ */ new Vector3();\n const _intersectionPointWorld = /* @__PURE__ */ new Vector3();\n class Mesh extends Object3D {\n constructor(geometry = new BufferGeometry(), material = new MeshBasicMaterial()) {\n super();\n this.isMesh = true;\n this.type = "Mesh";\n this.geometry = geometry;\n this.material = material;\n this.updateMorphTargets();\n }\n copy(source, recursive) {\n super.copy(source, recursive);\n if (source.morphTargetInfluences !== void 0) {\n this.morphTargetInfluences = source.morphTargetInfluences.slice();\n }\n if (source.morphTargetDictionary !== void 0) {\n this.morphTargetDictionary = Object.assign({}, source.morphTargetDictionary);\n }\n this.material = Array.isArray(source.material) ? source.material.slice() : source.material;\n this.geometry = source.geometry;\n return this;\n }\n updateMorphTargets() {\n const geometry = this.geometry;\n const morphAttributes = geometry.morphAttributes;\n const keys = Object.keys(morphAttributes);\n if (keys.length > 0) {\n const morphAttribute = morphAttributes[keys[0]];\n if (morphAttribute !== void 0) {\n this.morphTargetInfluences = [];\n this.morphTargetDictionary = {};\n for (let m = 0, ml = morphAttribute.length; m < ml; m++) {\n const name = morphAttribute[m].name || String(m);\n this.morphTargetInfluences.push(0);\n this.morphTargetDictionary[name] = m;\n }\n }\n }\n }\n getVertexPosition(index, target) {\n const geometry = this.geometry;\n const position = geometry.attributes.position;\n const morphPosition = geometry.morphAttributes.position;\n const morphTargetsRelative = geometry.morphTargetsRelative;\n target.fromBufferAttribute(position, index);\n const morphInfluences = this.morphTargetInfluences;\n if (morphPosition && morphInfluences) {\n _morphA.set(0, 0, 0);\n for (let i2 = 0, il = morphPosition.length; i2 < il; i2++) {\n const influence = morphInfluences[i2];\n const morphAttribute = morphPosition[i2];\n if (influence === 0) continue;\n _tempA.fromBufferAttribute(morphAttribute, index);\n if (morphTargetsRelative) {\n _morphA.addScaledVector(_tempA, influence);\n } else {\n _morphA.addScaledVector(_tempA.sub(target), influence);\n }\n }\n target.add(_morphA);\n }\n return target;\n }\n raycast(raycaster, intersects) {\n const geometry = this.geometry;\n const material = this.material;\n const matrixWorld = this.matrixWorld;\n if (material === void 0) return;\n if (geometry.boundingSphere === null) geometry.computeBoundingSphere();\n _sphere$6.copy(geometry.boundingSphere);\n _sphere$6.applyMatrix4(matrixWorld);\n _ray$3.copy(raycaster.ray).recast(raycaster.near);\n if (_sphere$6.containsPoint(_ray$3.origin) === false) {\n if (_ray$3.intersectSphere(_sphere$6, _sphereHitAt) === null) return;\n if (_ray$3.origin.distanceToSquared(_sphereHitAt) > (raycaster.far - raycaster.near) ** 2) return;\n }\n _inverseMatrix$3.copy(matrixWorld).invert();\n _ray$3.copy(raycaster.ray).applyMatrix4(_inverseMatrix$3);\n if (geometry.boundingBox !== null) {\n if (_ray$3.intersectsBox(geometry.boundingBox) === false) return;\n }\n this._computeIntersections(raycaster, intersects, _ray$3);\n }\n _computeIntersections(raycaster, intersects, rayLocalSpace) {\n let intersection;\n const geometry = this.geometry;\n const material = this.material;\n const index = geometry.index;\n const position = geometry.attributes.position;\n const uv = geometry.attributes.uv;\n const uv1 = geometry.attributes.uv1;\n const normal = geometry.attributes.normal;\n const groups = geometry.groups;\n const drawRange = geometry.drawRange;\n if (index !== null) {\n if (Array.isArray(material)) {\n for (let i2 = 0, il = groups.length; i2 < il; i2++) {\n const group = groups[i2];\n const groupMaterial = material[group.materialIndex];\n const start = Math.max(group.start, drawRange.start);\n const end = Math.min(index.count, Math.min(group.start + group.count, drawRange.start + drawRange.count));\n for (let j = start, jl = end; j < jl; j += 3) {\n const a = index.getX(j);\n const b = index.getX(j + 1);\n const c = index.getX(j + 2);\n intersection = checkGeometryIntersection(this, groupMaterial, raycaster, rayLocalSpace, uv, uv1, normal, a, b, c);\n if (intersection) {\n intersection.faceIndex = Math.floor(j / 3);\n intersection.face.materialIndex = group.materialIndex;\n intersects.push(intersection);\n }\n }\n }\n } else {\n const start = Math.max(0, drawRange.start);\n const end = Math.min(index.count, drawRange.start + drawRange.count);\n for (let i2 = start, il = end; i2 < il; i2 += 3) {\n const a = index.getX(i2);\n const b = index.getX(i2 + 1);\n const c = index.getX(i2 + 2);\n intersection = checkGeometryIntersection(this, material, raycaster, rayLocalSpace, uv, uv1, normal, a, b, c);\n if (intersection) {\n intersection.faceIndex = Math.floor(i2 / 3);\n intersects.push(intersection);\n }\n }\n }\n } else if (position !== void 0) {\n if (Array.isArray(material)) {\n for (let i2 = 0, il = groups.length; i2 < il; i2++) {\n const group = groups[i2];\n const groupMaterial = material[group.materialIndex];\n const start = Math.max(group.start, drawRange.start);\n const end = Math.min(position.count, Math.min(group.start + group.count, drawRange.start + drawRange.count));\n for (let j = start, jl = end; j < jl; j += 3) {\n const a = j;\n const b = j + 1;\n const c = j + 2;\n intersection = checkGeometryIntersection(this, groupMaterial, raycaster, rayLocalSpace, uv, uv1, normal, a, b, c);\n if (intersection) {\n intersection.faceIndex = Math.floor(j / 3);\n intersection.face.materialIndex = group.materialIndex;\n intersects.push(intersection);\n }\n }\n }\n } else {\n const start = Math.max(0, drawRange.start);\n const end = Math.min(position.count, drawRange.start + drawRange.count);\n for (let i2 = start, il = end; i2 < il; i2 += 3) {\n const a = i2;\n const b = i2 + 1;\n const c = i2 + 2;\n intersection = checkGeometryIntersection(this, material, raycaster, rayLocalSpace, uv, uv1, normal, a, b, c);\n if (intersection) {\n intersection.faceIndex = Math.floor(i2 / 3);\n intersects.push(intersection);\n }\n }\n }\n }\n }\n }\n function checkIntersection$1(object, material, raycaster, ray, pA, pB, pC, point) {\n let intersect;\n if (material.side === BackSide) {\n intersect = ray.intersectTriangle(pC, pB, pA, true, point);\n } else {\n intersect = ray.intersectTriangle(pA, pB, pC, material.side === FrontSide, point);\n }\n if (intersect === null) return null;\n _intersectionPointWorld.copy(point);\n _intersectionPointWorld.applyMatrix4(object.matrixWorld);\n const distance = raycaster.ray.origin.distanceTo(_intersectionPointWorld);\n if (distance < raycaster.near || distance > raycaster.far) return null;\n return {\n distance,\n point: _intersectionPointWorld.clone(),\n object\n };\n }\n function checkGeometryIntersection(object, material, raycaster, ray, uv, uv1, normal, a, b, c) {\n object.getVertexPosition(a, _vA$1);\n object.getVertexPosition(b, _vB$1);\n object.getVertexPosition(c, _vC$1);\n const intersection = checkIntersection$1(object, material, raycaster, ray, _vA$1, _vB$1, _vC$1, _intersectionPoint);\n if (intersection) {\n const barycoord = new Vector3();\n Triangle.getBarycoord(_intersectionPoint, _vA$1, _vB$1, _vC$1, barycoord);\n if (uv) {\n intersection.uv = Triangle.getInterpolatedAttribute(uv, a, b, c, barycoord, new Vector2());\n }\n if (uv1) {\n intersection.uv1 = Triangle.getInterpolatedAttribute(uv1, a, b, c, barycoord, new Vector2());\n }\n if (normal) {\n intersection.normal = Triangle.getInterpolatedAttribute(normal, a, b, c, barycoord, new Vector3());\n if (intersection.normal.dot(ray.direction) > 0) {\n intersection.normal.multiplyScalar(-1);\n }\n }\n const face = {\n a,\n b,\n c,\n normal: new Vector3(),\n materialIndex: 0\n };\n Triangle.getNormal(_vA$1, _vB$1, _vC$1, face.normal);\n intersection.face = face;\n intersection.barycoord = barycoord;\n }\n return intersection;\n }\n function cloneUniforms(src) {\n const dst = {};\n for (const u in src) {\n dst[u] = {};\n for (const p in src[u]) {\n const property = src[u][p];\n if (property && (property.isColor || property.isMatrix3 || property.isMatrix4 || property.isVector2 || property.isVector3 || property.isVector4 || property.isTexture || property.isQuaternion)) {\n if (property.isRenderTargetTexture) {\n console.warn("UniformsUtils: Textures of render targets cannot be cloned via cloneUniforms() or mergeUniforms().");\n dst[u][p] = null;\n } else {\n dst[u][p] = property.clone();\n }\n } else if (Array.isArray(property)) {\n dst[u][p] = property.slice();\n } else {\n dst[u][p] = property;\n }\n }\n }\n return dst;\n }\n function cloneUniformsGroups(src) {\n const dst = [];\n for (let u = 0; u < src.length; u++) {\n dst.push(src[u].clone());\n }\n return dst;\n }\n var default_vertex = "void main() {\\n gl_Position = projectionMatrix * modelViewMatrix * vec4( position, 1.0 );\\n}";\n var default_fragment = "void main() {\\n gl_FragColor = vec4( 1.0, 0.0, 0.0, 1.0 );\\n}";\n class ShaderMaterial extends Material {\n constructor(parameters) {\n super();\n this.isShaderMaterial = true;\n this.type = "ShaderMaterial";\n this.defines = {};\n this.uniforms = {};\n this.uniformsGroups = [];\n this.vertexShader = default_vertex;\n this.fragmentShader = default_fragment;\n this.linewidth = 1;\n this.wireframe = false;\n this.wireframeLinewidth = 1;\n this.fog = false;\n this.lights = false;\n this.clipping = false;\n this.forceSinglePass = true;\n this.extensions = {\n clipCullDistance: false,\n // set to use vertex shader clipping\n multiDraw: false\n // set to use vertex shader multi_draw / enable gl_DrawID\n };\n this.defaultAttributeValues = {\n "color": [1, 1, 1],\n "uv": [0, 0],\n "uv1": [0, 0]\n };\n this.index0AttributeName = void 0;\n this.uniformsNeedUpdate = false;\n this.glslVersion = null;\n if (parameters !== void 0) {\n this.setValues(parameters);\n }\n }\n copy(source) {\n super.copy(source);\n this.fragmentShader = source.fragmentShader;\n this.vertexShader = source.vertexShader;\n this.uniforms = cloneUniforms(source.uniforms);\n this.uniformsGroups = cloneUniformsGroups(source.uniformsGroups);\n this.defines = Object.assign({}, source.defines);\n this.wireframe = source.wireframe;\n this.wireframeLinewidth = source.wireframeLinewidth;\n this.fog = source.fog;\n this.lights = source.lights;\n this.clipping = source.clipping;\n this.extensions = Object.assign({}, source.extensions);\n this.glslVersion = source.glslVersion;\n return this;\n }\n toJSON(meta) {\n const data = super.toJSON(meta);\n data.glslVersion = this.glslVersion;\n data.uniforms = {};\n for (const name in this.uniforms) {\n const uniform = this.uniforms[name];\n const value = uniform.value;\n if (value && value.isTexture) {\n data.uniforms[name] = {\n type: "t",\n value: value.toJSON(meta).uuid\n };\n } else if (value && value.isColor) {\n data.uniforms[name] = {\n type: "c",\n value: value.getHex()\n };\n } else if (value && value.isVector2) {\n data.uniforms[name] = {\n type: "v2",\n value: value.toArray()\n };\n } else if (value && value.isVector3) {\n data.uniforms[name] = {\n type: "v3",\n value: value.toArray()\n };\n } else if (value && value.isVector4) {\n data.uniforms[name] = {\n type: "v4",\n value: value.toArray()\n };\n } else if (value && value.isMatrix3) {\n data.uniforms[name] = {\n type: "m3",\n value: value.toArray()\n };\n } else if (value && value.isMatrix4) {\n data.uniforms[name] = {\n type: "m4",\n value: value.toArray()\n };\n } else {\n data.uniforms[name] = {\n value\n };\n }\n }\n if (Object.keys(this.defines).length > 0) data.defines = this.defines;\n data.vertexShader = this.vertexShader;\n data.fragmentShader = this.fragmentShader;\n data.lights = this.lights;\n data.clipping = this.clipping;\n const extensions = {};\n for (const key in this.extensions) {\n if (this.extensions[key] === true) extensions[key] = true;\n }\n if (Object.keys(extensions).length > 0) data.extensions = extensions;\n return data;\n }\n }\n class Camera extends Object3D {\n constructor() {\n super();\n this.isCamera = true;\n this.type = "Camera";\n this.matrixWorldInverse = new Matrix4();\n this.projectionMatrix = new Matrix4();\n this.projectionMatrixInverse = new Matrix4();\n this.coordinateSystem = WebGLCoordinateSystem;\n }\n copy(source, recursive) {\n super.copy(source, recursive);\n this.matrixWorldInverse.copy(source.matrixWorldInverse);\n this.projectionMatrix.copy(source.projectionMatrix);\n this.projectionMatrixInverse.copy(source.projectionMatrixInverse);\n this.coordinateSystem = source.coordinateSystem;\n return this;\n }\n getWorldDirection(target) {\n return super.getWorldDirection(target).negate();\n }\n updateMatrixWorld(force) {\n super.updateMatrixWorld(force);\n this.matrixWorldInverse.copy(this.matrixWorld).invert();\n }\n updateWorldMatrix(updateParents, updateChildren) {\n super.updateWorldMatrix(updateParents, updateChildren);\n this.matrixWorldInverse.copy(this.matrixWorld).invert();\n }\n clone() {\n return new this.constructor().copy(this);\n }\n }\n class Scene extends Object3D {\n constructor() {\n super();\n this.isScene = true;\n this.type = "Scene";\n this.background = null;\n this.environment = null;\n this.fog = null;\n this.backgroundBlurriness = 0;\n this.backgroundIntensity = 1;\n this.backgroundRotation = new Euler();\n this.environmentIntensity = 1;\n this.environmentRotation = new Euler();\n this.overrideMaterial = null;\n if (typeof __THREE_DEVTOOLS__ !== "undefined") {\n __THREE_DEVTOOLS__.dispatchEvent(new CustomEvent("observe", { detail: this }));\n }\n }\n copy(source, recursive) {\n super.copy(source, recursive);\n if (source.background !== null) this.background = source.background.clone();\n if (source.environment !== null) this.environment = source.environment.clone();\n if (source.fog !== null) this.fog = source.fog.clone();\n this.backgroundBlurriness = source.backgroundBlurriness;\n this.backgroundIntensity = source.backgroundIntensity;\n this.backgroundRotation.copy(source.backgroundRotation);\n this.environmentIntensity = source.environmentIntensity;\n this.environmentRotation.copy(source.environmentRotation);\n if (source.overrideMaterial !== null) this.overrideMaterial = source.overrideMaterial.clone();\n this.matrixAutoUpdate = source.matrixAutoUpdate;\n return this;\n }\n toJSON(meta) {\n const data = super.toJSON(meta);\n if (this.fog !== null) data.object.fog = this.fog.toJSON();\n if (this.backgroundBlurriness > 0) data.object.backgroundBlurriness = this.backgroundBlurriness;\n if (this.backgroundIntensity !== 1) data.object.backgroundIntensity = this.backgroundIntensity;\n data.object.backgroundRotation = this.backgroundRotation.toArray();\n if (this.environmentIntensity !== 1) data.object.environmentIntensity = this.environmentIntensity;\n data.object.environmentRotation = this.environmentRotation.toArray();\n return data;\n }\n }\n class DataTexture extends Texture {\n constructor(data = null, width = 1, height = 1, format, type, mapping, wrapS, wrapT, magFilter = NearestFilter, minFilter = NearestFilter, anisotropy, colorSpace) {\n super(null, mapping, wrapS, wrapT, magFilter, minFilter, format, type, anisotropy, colorSpace);\n this.isDataTexture = true;\n this.image = { data, width, height };\n this.generateMipmaps = false;\n this.flipY = false;\n this.unpackAlignment = 1;\n }\n }\n class PlaneGeometry extends BufferGeometry {\n constructor(width = 1, height = 1, widthSegments = 1, heightSegments = 1) {\n super();\n this.type = "PlaneGeometry";\n this.parameters = {\n width,\n height,\n widthSegments,\n heightSegments\n };\n const width_half = width / 2;\n const height_half = height / 2;\n const gridX = Math.floor(widthSegments);\n const gridY = Math.floor(heightSegments);\n const gridX1 = gridX + 1;\n const gridY1 = gridY + 1;\n const segment_width = width / gridX;\n const segment_height = height / gridY;\n const indices = [];\n const vertices = [];\n const normals = [];\n const uvs = [];\n for (let iy = 0; iy < gridY1; iy++) {\n const y = iy * segment_height - height_half;\n for (let ix = 0; ix < gridX1; ix++) {\n const x2 = ix * segment_width - width_half;\n vertices.push(x2, -y, 0);\n normals.push(0, 0, 1);\n uvs.push(ix / gridX);\n uvs.push(1 - iy / gridY);\n }\n }\n for (let iy = 0; iy < gridY; iy++) {\n for (let ix = 0; ix < gridX; ix++) {\n const a = ix + gridX1 * iy;\n const b = ix + gridX1 * (iy + 1);\n const c = ix + 1 + gridX1 * (iy + 1);\n const d = ix + 1 + gridX1 * iy;\n indices.push(a, b, d);\n indices.push(b, c, d);\n }\n }\n this.setIndex(indices);\n this.setAttribute("position", new Float32BufferAttribute(vertices, 3));\n this.setAttribute("normal", new Float32BufferAttribute(normals, 3));\n this.setAttribute("uv", new Float32BufferAttribute(uvs, 2));\n }\n copy(source) {\n super.copy(source);\n this.parameters = Object.assign({}, source.parameters);\n return this;\n }\n static fromJSON(data) {\n return new PlaneGeometry(data.width, data.height, data.widthSegments, data.heightSegments);\n }\n }\n class RawShaderMaterial extends ShaderMaterial {\n constructor(parameters) {\n super(parameters);\n this.isRawShaderMaterial = true;\n this.type = "RawShaderMaterial";\n }\n }\n class Matrix2 {\n constructor(n11, n12, n21, n22) {\n Matrix2.prototype.isMatrix2 = true;\n this.elements = [\n 1,\n 0,\n 0,\n 1\n ];\n if (n11 !== void 0) {\n this.set(n11, n12, n21, n22);\n }\n }\n identity() {\n this.set(\n 1,\n 0,\n 0,\n 1\n );\n return this;\n }\n fromArray(array, offset = 0) {\n for (let i2 = 0; i2 < 4; i2++) {\n this.elements[i2] = array[i2 + offset];\n }\n return this;\n }\n set(n11, n12, n21, n22) {\n const te = this.elements;\n te[0] = n11;\n te[2] = n12;\n te[1] = n21;\n te[3] = n22;\n return this;\n }\n }\n if (typeof __THREE_DEVTOOLS__ !== "undefined") {\n __THREE_DEVTOOLS__.dispatchEvent(new CustomEvent("register", { detail: {\n revision: REVISION\n } }));\n }\n if (typeof window !== "undefined") {\n if (window.__THREE__) {\n console.warn("WARNING: Multiple instances of Three.js being imported.");\n } else {\n window.__THREE__ = REVISION;\n }\n }\n const LN_SCALE_MIN = -9;\n const LN_SCALE_MAX = 9;\n const LN_RESCALE = (LN_SCALE_MAX - LN_SCALE_MIN) / 254;\n const SCALE_MIN = Math.exp(LN_SCALE_MIN);\n const SPLAT_TEX_WIDTH_BITS = 11;\n const SPLAT_TEX_HEIGHT_BITS = 11;\n const SPLAT_TEX_WIDTH = 1 << SPLAT_TEX_WIDTH_BITS;\n const SPLAT_TEX_HEIGHT = 1 << SPLAT_TEX_HEIGHT_BITS;\n const SPLAT_TEX_MIN_HEIGHT = 1;\n const WASM_SPLAT_SORT = true;\n function isIntType(type) {\n return type === "int" || type === "ivec2" || type === "ivec3" || type === "ivec4";\n }\n function isUintType(type) {\n return type === "uint" || type === "uvec2" || type === "uvec3" || type === "uvec4";\n }\n function isFloatType(type) {\n return type === "float" || type === "vec2" || type === "vec3" || type === "vec4";\n }\n function isMatFloatType(type) {\n return type === "mat2" || type === "mat2x2" || type === "mat2x3" || type === "mat2x4" || type === "mat3" || type === "mat3x2" || type === "mat3x3" || type === "mat3x4" || type === "mat4" || type === "mat4x2" || type === "mat4x3" || type === "mat4x4";\n }\n function isAllFloatType(type) {\n return isFloatType(type) || isMatFloatType(type);\n }\n function isMat2(type) {\n return type === "mat2" || type === "mat2x2";\n }\n function isMat3(type) {\n return type === "mat3" || type === "mat3x3";\n }\n function isMat4(type) {\n return type === "mat4" || type === "mat4x4";\n }\n function numberAsInt(value) {\n return Math.trunc(value).toString();\n }\n function numberAsUint(value) {\n const v = Math.max(0, Math.trunc(value));\n return `${v.toString()}u`;\n }\n function numberAsFloat(value) {\n return value === Number.POSITIVE_INFINITY ? "INFINITY" : value === Number.NEGATIVE_INFINITY ? "-INFINITY" : Number.isInteger(value) ? value.toFixed(1) : value.toString();\n }\n function valType(val) {\n if (val instanceof DynoValue) {\n return val.type;\n }\n const value = val.dynoOut();\n return value.type;\n }\n class DynoValue {\n constructor(type) {\n this.__isDynoValue = true;\n this.type = type;\n }\n }\n class DynoOutput extends DynoValue {\n constructor(dyno2, key) {\n super(dyno2.outTypes[key]);\n this.dyno = dyno2;\n this.key = key;\n }\n }\n class DynoLiteral extends DynoValue {\n constructor(type, literal) {\n super(type);\n this.literal = literal;\n }\n getLiteral() {\n return this.literal;\n }\n }\n class DynoConst extends DynoLiteral {\n constructor(type, value) {\n super(type, "");\n this.value = value;\n }\n getLiteral() {\n const { type, value } = this;\n switch (type) {\n case "bool":\n return value ? "true" : "false";\n case "uint":\n return numberAsUint(value);\n case "int":\n return numberAsInt(value);\n case "float":\n return numberAsFloat(value);\n case "bvec2": {\n const v = value;\n return `bvec2(${v[0]}, ${v[1]})`;\n }\n case "uvec2": {\n if (value instanceof Vector2) {\n return `uvec2(${numberAsUint(value.x)}, ${numberAsUint(value.y)})`;\n }\n const v = value;\n return `uvec2(${numberAsUint(v[0])}, ${numberAsUint(v[1])})`;\n }\n case "ivec2": {\n if (value instanceof Vector2) {\n return `ivec2(${numberAsInt(value.x)}, ${numberAsInt(value.y)})`;\n }\n const v = value;\n return `ivec2(${numberAsInt(v[0])}, ${numberAsInt(v[1])})`;\n }\n case "vec2": {\n if (value instanceof Vector2) {\n return `vec2(${numberAsFloat(value.x)}, ${numberAsFloat(value.y)})`;\n }\n const v = value;\n return `vec2(${numberAsFloat(v[0])}, ${numberAsFloat(v[1])})`;\n }\n case "bvec3": {\n const v = value;\n return `bvec3(${v[0]}, ${v[1]}, ${v[2]})`;\n }\n case "uvec3": {\n if (value instanceof Vector3) {\n return `uvec3(${numberAsUint(value.x)}, ${numberAsUint(value.y)}, ${numberAsUint(value.z)})`;\n }\n const v = value;\n return `uvec3(${numberAsUint(v[0])}, ${numberAsUint(v[1])}, ${numberAsUint(v[2])})`;\n }\n case "ivec3": {\n if (value instanceof Vector3) {\n return `ivec3(${numberAsInt(value.x)}, ${numberAsInt(value.y)}, ${numberAsInt(value.z)})`;\n }\n const v = value;\n return `ivec3(${numberAsInt(v[0])}, ${numberAsInt(v[1])}, ${numberAsInt(v[2])})`;\n }\n case "vec3": {\n if (value instanceof Vector3) {\n return `vec3(${numberAsFloat(value.x)}, ${numberAsFloat(value.y)}, ${numberAsFloat(value.z)})`;\n }\n const v = value;\n return `vec3(${numberAsFloat(v[0])}, ${numberAsFloat(v[1])}, ${numberAsFloat(v[2])})`;\n }\n case "bvec4": {\n const v = value;\n return `bvec4(${v[0]}, ${v[1]}, ${v[2]}, ${v[3]})`;\n }\n case "uvec4": {\n if (value instanceof Vector4) {\n return `uvec4(${numberAsUint(value.x)}, ${numberAsUint(value.y)}, ${numberAsUint(value.z)}, ${numberAsUint(value.w)})`;\n }\n const v = value;\n return `uvec4(${numberAsUint(v[0])}, ${numberAsUint(v[1])}, ${numberAsUint(v[2])}, ${numberAsUint(v[3])})`;\n }\n case "ivec4": {\n if (value instanceof Vector4) {\n return `ivec4(${numberAsInt(value.x)}, ${numberAsInt(value.y)}, ${numberAsInt(value.z)}, ${numberAsInt(value.w)})`;\n }\n const v = value;\n return `ivec4(${numberAsInt(v[0])}, ${numberAsInt(v[1])}, ${numberAsInt(v[2])}, ${numberAsInt(v[3])})`;\n }\n case "vec4": {\n if (value instanceof Vector4) {\n return `vec4(${numberAsFloat(value.x)}, ${numberAsFloat(value.y)}, ${numberAsFloat(value.z)}, ${numberAsFloat(value.w)})`;\n }\n if (value instanceof Quaternion) {\n return `vec4(${numberAsFloat(value.x)}, ${numberAsFloat(value.y)}, ${numberAsFloat(value.z)}, ${numberAsFloat(value.w)})`;\n }\n const v = value;\n return `vec4(${numberAsFloat(v[0])}, ${numberAsFloat(v[1])}, ${numberAsFloat(v[2])}, ${numberAsFloat(v[3])})`;\n }\n case "mat2":\n case "mat2x2": {\n const m = value;\n const e = m instanceof Matrix2 ? m.elements : value;\n const arg = new Array(4).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat2x3": {\n const e = value;\n const arg = new Array(6).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat2x4": {\n const e = value;\n const arg = new Array(8).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat3":\n case "mat3x3": {\n const m = value;\n const e = m instanceof Matrix3 ? m.elements : value;\n const arg = new Array(9).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat3x2": {\n const e = value;\n const arg = new Array(6).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat3x4": {\n const e = value;\n const arg = new Array(12).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat4":\n case "mat4x4": {\n const m = value;\n const e = m instanceof Matrix4 ? m.elements : value;\n const arg = new Array(16).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat4x2": {\n const e = value;\n const arg = new Array(8).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat4x3": {\n const e = value;\n const arg = new Array(12).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n default:\n throw new Error(`Type not implemented: ${String(type)}`);\n }\n }\n }\n function dynoConst(type, value) {\n return new DynoConst(type, value);\n }\n const DEFAULT_INDENT = " ";\n class Compilation {\n constructor({ indent } = {}) {\n this.globals = /* @__PURE__ */ new Set();\n this.statements = [];\n this.uniforms = {};\n this.declares = /* @__PURE__ */ new Set();\n this.updaters = [];\n this.sequence = 0;\n this.indent = DEFAULT_INDENT;\n this.indent = indent ?? DEFAULT_INDENT;\n }\n nextSequence() {\n return this.sequence++;\n }\n }\n class Dyno {\n constructor({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n statements,\n generate\n }) {\n this.inTypes = inTypes ?? {};\n this.outTypes = outTypes ?? {};\n this.inputs = inputs ?? {};\n this.update = update;\n this.globals = globals;\n this.statements = statements;\n this.generate = generate ?? (({ inputs: inputs2, outputs, compile }) => {\n var _a2, _b2;\n return {\n globals: (_a2 = this.globals) == null ? void 0 : _a2.call(this, { inputs: inputs2, outputs, compile }),\n statements: (_b2 = this.statements) == null ? void 0 : _b2.call(this, { inputs: inputs2, outputs, compile })\n };\n });\n }\n get outputs() {\n const outputs = {};\n for (const key in this.outTypes) {\n outputs[key] = new DynoOutput(this, key);\n }\n return outputs;\n }\n apply(inputs) {\n Object.assign(this.inputs, inputs);\n return this.outputs;\n }\n compile({\n inputs,\n outputs,\n compile\n }) {\n const result = [\n `// ${this.constructor.name}(${Object.values(inputs).join(", ")}) => (${Object.values(outputs).join(", ")})`\n ];\n const declares = [];\n for (const key in outputs) {\n const name = outputs[key];\n if (name && !compile.declares.has(name)) {\n compile.declares.add(name);\n declares.push(key);\n }\n }\n const { globals, statements, uniforms } = this.generate({\n inputs,\n outputs,\n compile\n });\n for (const global of globals ?? []) {\n compile.globals.add(global);\n }\n for (const key in uniforms) {\n compile.uniforms[key] = uniforms[key];\n }\n if (this.update) {\n compile.updaters.push(this.update);\n }\n for (const key of declares) {\n const name = outputs[key];\n if (name) {\n if (!compile.uniforms[name]) {\n result.push(`${dynoDeclare(name, this.outTypes[key])};`);\n }\n }\n }\n if (statements == null ? void 0 : statements.length) {\n result.push("{");\n result.push(...statements.map((line) => compile.indent + line));\n result.push("}");\n }\n return result;\n }\n }\n class DynoBlock extends Dyno {\n constructor({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n construct\n }) {\n super({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n generate: (args) => this.generateBlock(args)\n });\n this.construct = construct;\n }\n generateBlock({\n inputs,\n outputs,\n compile\n }) {\n var _a2, _b2;\n const blockInputs = {};\n const blockOutputs = {};\n for (const key in inputs) {\n if (inputs[key] != null) {\n blockInputs[key] = new DynoLiteral(this.inTypes[key], inputs[key]);\n }\n }\n for (const key in outputs) {\n if (outputs[key] != null) {\n blockOutputs[key] = new DynoValue(this.outTypes[key]);\n }\n }\n const options = { roots: [] };\n const returned = this.construct(blockInputs, blockOutputs, options);\n for (const global of ((_a2 = this.globals) == null ? void 0 : _a2.call(this, { inputs, outputs, compile })) ?? []) {\n compile.globals.add(global);\n }\n const ordering = [];\n const nodeOuts = /* @__PURE__ */ new Map();\n function visit(node, outKey, outName) {\n let outs = nodeOuts.get(node);\n if (!outs) {\n outs = {\n sequence: compile.nextSequence(),\n outNames: /* @__PURE__ */ new Map(),\n newOuts: /* @__PURE__ */ new Set()\n };\n nodeOuts.set(node, outs);\n for (const key in node.inputs) {\n let input = node.inputs[key];\n while (input) {\n if (input instanceof DynoValue) {\n if (input instanceof DynoOutput) {\n visit(input.dyno, input.key);\n }\n break;\n }\n input = input.dynoOut();\n }\n }\n ordering.push(node);\n }\n if (outKey) {\n if (!outName) {\n outs.newOuts.add(outKey);\n }\n outs.outNames.set(outKey, outName ?? `${outKey}_${outs.sequence}`);\n }\n }\n for (const root of options.roots) {\n visit(root);\n }\n for (const key in blockOutputs) {\n let value = (returned == null ? void 0 : returned[key]) ?? blockOutputs[key];\n while (value) {\n if (value instanceof DynoValue) {\n if (value instanceof DynoOutput) {\n visit(value.dyno, value.key, outputs[key]);\n }\n break;\n }\n value = value.dynoOut();\n }\n blockOutputs[key] = value;\n }\n const steps = [];\n for (const dyno2 of ordering) {\n const inputs2 = {};\n const outputs2 = {};\n for (const key in dyno2.inputs) {\n let value = dyno2.inputs[key];\n while (value) {\n if (value instanceof DynoValue) {\n if (value instanceof DynoLiteral) {\n inputs2[key] = value.getLiteral();\n } else if (value instanceof DynoOutput) {\n const source = (_b2 = nodeOuts.get(value.dyno)) == null ? void 0 : _b2.outNames.get(value.key);\n if (!source) {\n throw new Error(\n `Source not found for ${value.dyno.constructor.name}.${value.key}`\n );\n }\n inputs2[key] = source;\n }\n break;\n }\n value = value.dynoOut();\n }\n }\n const outs = nodeOuts.get(dyno2) ?? { outNames: /* @__PURE__ */ new Map() };\n for (const [key, name] of outs.outNames.entries()) {\n outputs2[key] = name;\n }\n const newSteps = dyno2.compile({ inputs: inputs2, outputs: outputs2, compile });\n steps.push(newSteps);\n }\n const literalOutputs = [];\n for (const key in outputs) {\n if (blockOutputs[key] instanceof DynoLiteral) {\n literalOutputs.push(\n `${outputs[key]} = ${blockOutputs[key].getLiteral()};`\n );\n }\n }\n if (literalOutputs.length > 0) {\n steps.push(literalOutputs);\n }\n const statements = steps.flatMap((step, index) => {\n return index === 0 ? step : ["", ...step];\n });\n return { statements };\n }\n }\n function dynoBlock(inTypes, outTypes, construct, { update, globals } = {}) {\n return new DynoBlock({ inTypes, outTypes, construct, update, globals });\n }\n function dyno({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n statements,\n generate\n }) {\n return new Dyno({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n statements,\n generate\n });\n }\n function dynoDeclare(name, type, count) {\n const typeStr = typeof type === "string" ? type : type.type;\n if (!typeStr) {\n throw new Error(`Invalid DynoType: ${String(type)}`);\n }\n return `${typeStr} ${name}${count != null ? `[${count}]` : ""}`;\n }\n function unindentLines(s) {\n var _a2;\n let seenNonEmpty = false;\n const lines = s.split("\\n").map((line) => {\n const trimmedLine = line.trimEnd();\n if (seenNonEmpty) {\n return trimmedLine;\n }\n if (trimmedLine.length > 0) {\n seenNonEmpty = true;\n return trimmedLine;\n }\n return null;\n }).filter((line) => line != null);\n while (lines.length > 0 && lines[lines.length - 1].length === 0) {\n lines.pop();\n }\n if (lines.length === 0) {\n return [];\n }\n const indent = (_a2 = lines[0].match(/^\\s*/)) == null ? void 0 : _a2[0];\n if (!indent) {\n return lines;\n }\n const regex = new RegExp(`^${indent}`);\n return lines.map((line) => line.replace(regex, ""));\n }\n function unindent(s) {\n return unindentLines(s).join("\\n");\n }\n class UnaryOp extends Dyno {\n constructor({\n a,\n outKey,\n outTypeFunc\n }) {\n const inTypes = { a: valType(a) };\n const outType = outTypeFunc(valType(a));\n const outTypes = { [outKey]: outType };\n super({ inTypes, outTypes, inputs: { a } });\n this.outKey = outKey;\n }\n dynoOut() {\n return new DynoOutput(this, this.outKey);\n }\n }\n class BinaryOp extends Dyno {\n constructor({\n a,\n b,\n outKey,\n outTypeFunc\n }) {\n const inTypes = { a: valType(a), b: valType(b) };\n const outType = outTypeFunc(valType(a), valType(b));\n const outTypes = { [outKey]: outType };\n super({ inTypes, outTypes, inputs: { a, b } });\n this.outKey = outKey;\n }\n dynoOut() {\n return new DynoOutput(this, this.outKey);\n }\n }\n const f32buffer = new Float32Array(1);\n const u32buffer = new Uint32Array(f32buffer.buffer);\n function toHalf(f) {\n f32buffer[0] = f;\n const bits2 = u32buffer[0];\n const sign = bits2 >> 31 & 1;\n const exp = bits2 >> 23 & 255;\n const frac = bits2 & 8388607;\n const halfSign = sign << 15;\n if (exp === 255) {\n if (frac !== 0) {\n return halfSign | 32767;\n }\n return halfSign | 31744;\n }\n const newExp = exp - 127 + 15;\n if (newExp >= 31) {\n return halfSign | 31744;\n }\n if (newExp <= 0) {\n if (newExp < -10) {\n return halfSign;\n }\n const subFrac = (frac | 8388608) >> 1 - newExp + 13;\n return halfSign | subFrac;\n }\n const halfFrac = frac >> 13;\n return halfSign | newExp << 10 | halfFrac;\n }\n function fromHalf(h) {\n const sign = h >> 15 & 1;\n const exp = h >> 10 & 31;\n const frac = h & 1023;\n let f32bits;\n if (exp === 0) {\n if (frac === 0) {\n f32bits = sign << 31;\n } else {\n let mant = frac;\n let e = -14;\n while ((mant & 1024) === 0) {\n mant <<= 1;\n e--;\n }\n mant &= 1023;\n const newExp = e + 127;\n const newFrac = mant << 13;\n f32bits = sign << 31 | newExp << 23 | newFrac;\n }\n } else if (exp === 31) {\n if (frac === 0) {\n f32bits = sign << 31 | 2139095040;\n } else {\n f32bits = sign << 31 | 2143289344;\n }\n } else {\n const newExp = exp - 15 + 127;\n const newFrac = frac << 13;\n f32bits = sign << 31 | newExp << 23 | newFrac;\n }\n u32buffer[0] = f32bits;\n return f32buffer[0];\n }\n function floatToUint8(v) {\n return Math.max(0, Math.min(255, Math.round(v * 255)));\n }\n function getArrayBuffers(ctx) {\n const buffers = [];\n const seen = /* @__PURE__ */ new Set();\n function traverse(obj) {\n if (obj && typeof obj === "object" && !seen.has(obj)) {\n seen.add(obj);\n if (obj instanceof ArrayBuffer) {\n buffers.push(obj);\n } else if (ArrayBuffer.isView(obj)) {\n buffers.push(obj.buffer);\n } else if (Array.isArray(obj)) {\n obj.forEach(traverse);\n } else {\n Object.values(obj).forEach(traverse);\n }\n }\n }\n traverse(ctx);\n return buffers;\n }\n function setPackedSplat(packedSplats, index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) {\n const uR = floatToUint8(r);\n const uG = floatToUint8(g);\n const uB = floatToUint8(b);\n const uA = floatToUint8(opacity);\n const uQuat = encodeQuatOctXy88R8(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n const uQuatX = uQuat & 255;\n const uQuatY = uQuat >>> 8 & 255;\n const uQuatZ = uQuat >>> 16 & 255;\n const uScaleX = scaleX === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleX) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uScaleY = scaleY === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleY) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uScaleZ = scaleZ === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleZ) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uCenterX = toHalf(x2);\n const uCenterY = toHalf(y);\n const uCenterZ = toHalf(z);\n const i4 = index * 4;\n packedSplats[i4] = uR | uG << 8 | uB << 16 | uA << 24;\n packedSplats[i4 + 1] = uCenterX | uCenterY << 16;\n packedSplats[i4 + 2] = uCenterZ | uQuatX << 16 | uQuatY << 24;\n packedSplats[i4 + 3] = uScaleX | uScaleY << 8 | uScaleZ << 16 | uQuatZ << 24;\n }\n function setPackedSplatCenter(packedSplats, index, x2, y, z) {\n const uCenterX = toHalf(x2);\n const uCenterY = toHalf(y);\n const uCenterZ = toHalf(z);\n const i4 = index * 4;\n packedSplats[i4 + 1] = uCenterX | uCenterY << 16;\n packedSplats[i4 + 2] = uCenterZ | packedSplats[i4 + 2] & 4294901760;\n }\n function setPackedSplatScales(packedSplats, index, scaleX, scaleY, scaleZ) {\n const uScaleX = scaleX === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleX) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uScaleY = scaleY === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleY) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uScaleZ = scaleZ === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleZ) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const i4 = index * 4;\n packedSplats[i4 + 3] = uScaleX | uScaleY << 8 | uScaleZ << 16 | packedSplats[i4 + 3] & 4278190080;\n }\n function setPackedSplatQuat(packedSplats, index, quatX, quatY, quatZ, quatW) {\n const uQuat = encodeQuatOctXy88R8(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n const uQuatX = uQuat & 255;\n const uQuatY = uQuat >>> 8 & 255;\n const uQuatZ = uQuat >>> 16 & 255;\n const i4 = index * 4;\n packedSplats[i4 + 2] = packedSplats[i4 + 2] & 65535 | uQuatX << 16 | uQuatY << 24;\n packedSplats[i4 + 3] = packedSplats[i4 + 3] & 16777215 | uQuatZ << 24;\n }\n function setPackedSplatRgb(packedSplats, index, r, g, b) {\n const uR = floatToUint8(r);\n const uG = floatToUint8(g);\n const uB = floatToUint8(b);\n const i4 = index * 4;\n packedSplats[i4] = uR | uG << 8 | uB << 16 | packedSplats[i4] & 4278190080;\n }\n function setPackedSplatOpacity(packedSplats, index, opacity) {\n const uA = floatToUint8(opacity);\n const i4 = index * 4;\n packedSplats[i4] = packedSplats[i4] & 16777215 | uA << 24;\n }\n const packedCenter = new Vector3();\n const packedScales = new Vector3();\n const packedQuaternion = new Quaternion();\n const packedColor = new Color();\n const packedFields = {\n center: packedCenter,\n scales: packedScales,\n quaternion: packedQuaternion,\n color: packedColor,\n opacity: 0\n };\n function unpackSplat(packedSplats, index) {\n const result = packedFields;\n const i4 = index * 4;\n const word0 = packedSplats[i4];\n const word1 = packedSplats[i4 + 1];\n const word2 = packedSplats[i4 + 2];\n const word3 = packedSplats[i4 + 3];\n result.color.set(\n (word0 & 255) / 255,\n (word0 >>> 8 & 255) / 255,\n (word0 >>> 16 & 255) / 255\n );\n result.opacity = (word0 >>> 24 & 255) / 255;\n result.center.set(\n fromHalf(word1 & 65535),\n fromHalf(word1 >>> 16 & 65535),\n fromHalf(word2 & 65535)\n );\n const uScalesX = word3 & 255;\n result.scales.x = uScalesX === 0 ? 0 : Math.exp(LN_SCALE_MIN + (uScalesX - 1) * LN_RESCALE);\n const uScalesY = word3 >>> 8 & 255;\n result.scales.y = uScalesY === 0 ? 0 : Math.exp(LN_SCALE_MIN + (uScalesY - 1) * LN_RESCALE);\n const uScalesZ = word3 >>> 16 & 255;\n result.scales.z = uScalesZ === 0 ? 0 : Math.exp(LN_SCALE_MIN + (uScalesZ - 1) * LN_RESCALE);\n const uQuat = word2 >>> 16 & 65535 | word3 >>> 8 & 16711680;\n decodeQuatOctXy88R8(uQuat, result.quaternion);\n return result;\n }\n function getTextureSize(numSplats) {\n const width = SPLAT_TEX_WIDTH;\n const height = Math.max(\n SPLAT_TEX_MIN_HEIGHT,\n Math.min(SPLAT_TEX_HEIGHT, Math.ceil(numSplats / width))\n );\n const depth = Math.ceil(numSplats / (width * height));\n const maxSplats = width * height * depth;\n return { width, height, depth, maxSplats };\n }\n function computeMaxSplats(numSplats) {\n const width = SPLAT_TEX_WIDTH;\n const height = Math.max(\n SPLAT_TEX_MIN_HEIGHT,\n Math.min(SPLAT_TEX_HEIGHT, Math.ceil(numSplats / width))\n );\n const depth = Math.ceil(numSplats / (width * height));\n return width * height * depth;\n }\n const IDENT_VERTEX_SHADER = unindent(`\n precision highp float;\n\n in vec3 position;\n\n void main() {\n gl_Position = vec4(position.xy, 0.0, 1.0);\n }\n`);\n function encodeQuatOctXy88R8(q) {\n const qnorm = q.clone().normalize();\n if (qnorm.w < 0) {\n qnorm.set(-qnorm.x, -qnorm.y, -qnorm.z, -qnorm.w);\n }\n const theta = 2 * Math.acos(qnorm.w);\n const xyz_norm = Math.sqrt(\n qnorm.x * qnorm.x + qnorm.y * qnorm.y + qnorm.z * qnorm.z\n );\n const axis = xyz_norm < 1e-6 ? new Vector3(1, 0, 0) : new Vector3(qnorm.x, qnorm.y, qnorm.z).divideScalar(xyz_norm);\n const sum = Math.abs(axis.x) + Math.abs(axis.y) + Math.abs(axis.z);\n let p_x = axis.x / sum;\n let p_y = axis.y / sum;\n if (axis.z < 0) {\n const tmp = p_x;\n p_x = (1 - Math.abs(p_y)) * (p_x >= 0 ? 1 : -1);\n p_y = (1 - Math.abs(tmp)) * (p_y >= 0 ? 1 : -1);\n }\n const u_f = p_x * 0.5 + 0.5;\n const v_f = p_y * 0.5 + 0.5;\n const quantU = Math.round(u_f * 255);\n const quantV = Math.round(v_f * 255);\n const angleInt = Math.round(theta * (255 / Math.PI));\n return angleInt << 16 | quantV << 8 | quantU;\n }\n function decodeQuatOctXy88R8(encoded, out) {\n const quantU = encoded & 255;\n const quantV = encoded >>> 8 & 255;\n const angleInt = encoded >>> 16 & 255;\n const u_f = quantU / 255;\n const v_f = quantV / 255;\n let f_x = (u_f - 0.5) * 2;\n let f_y = (v_f - 0.5) * 2;\n const f_z = 1 - (Math.abs(f_x) + Math.abs(f_y));\n const t = Math.max(-f_z, 0);\n f_x += f_x >= 0 ? -t : t;\n f_y += f_y >= 0 ? -t : t;\n const axis = new Vector3(f_x, f_y, f_z).normalize();\n const theta = angleInt / 255 * Math.PI;\n const halfTheta = theta * 0.5;\n const s = Math.sin(halfTheta);\n const w = Math.cos(halfTheta);\n out.set(axis.x * s, axis.y * s, axis.z * s, w);\n return out;\n }\n function packSint8Bytes(b0, b1, b2, b3) {\n const clampedB0 = Math.max(-127, Math.min(127, b0 * 127));\n const clampedB1 = Math.max(-127, Math.min(127, b1 * 127));\n const clampedB2 = Math.max(-127, Math.min(127, b2 * 127));\n const clampedB3 = Math.max(-127, Math.min(127, b3 * 127));\n return clampedB0 & 255 | (clampedB1 & 255) << 8 | (clampedB2 & 255) << 16 | (clampedB3 & 255) << 24;\n }\n function encodeSh1Rgb(sh1Array, index, sh1Rgb) {\n const base = index * 2;\n for (let i2 = 0; i2 < 9; ++i2) {\n const value = Math.max(-63, Math.min(63, sh1Rgb[i2] * 63)) & 127;\n const bitStart = i2 * 7;\n const bitEnd = bitStart + 7;\n const wordStart = Math.floor(bitStart / 32);\n const bitOffset = bitStart - wordStart * 32;\n const firstWord = value << bitOffset & 4294967295;\n sh1Array[base + wordStart] |= firstWord;\n if (bitEnd > wordStart * 32 + 32) {\n const secondWord = value >>> 32 - bitOffset & 4294967295;\n sh1Array[base + wordStart + 1] |= secondWord;\n }\n }\n }\n function encodeSh2Rgb(sh2Array, index, sh2Rgb) {\n sh2Array[index * 4 + 0] = packSint8Bytes(\n sh2Rgb[0],\n sh2Rgb[1],\n sh2Rgb[2],\n sh2Rgb[3]\n );\n sh2Array[index * 4 + 1] = packSint8Bytes(\n sh2Rgb[4],\n sh2Rgb[5],\n sh2Rgb[6],\n sh2Rgb[7]\n );\n sh2Array[index * 4 + 2] = packSint8Bytes(\n sh2Rgb[8],\n sh2Rgb[9],\n sh2Rgb[10],\n sh2Rgb[11]\n );\n sh2Array[index * 4 + 3] = packSint8Bytes(\n sh2Rgb[12],\n sh2Rgb[13],\n sh2Rgb[14],\n 0\n );\n }\n function encodeSh3Rgb(sh3Array, index, sh3Rgb) {\n const base = index * 4;\n for (let i2 = 0; i2 < 21; ++i2) {\n const value = Math.max(-31, Math.min(31, sh3Rgb[i2] * 31)) & 63;\n const bitStart = i2 * 6;\n const bitEnd = bitStart + 6;\n const wordStart = Math.floor(bitStart / 32);\n const bitOffset = bitStart - wordStart * 32;\n const firstWord = value << bitOffset & 4294967295;\n sh3Array[base + wordStart] |= firstWord;\n if (bitEnd > wordStart * 32 + 32) {\n const secondWord = value >>> 32 - bitOffset & 4294967295;\n sh3Array[base + wordStart + 1] |= secondWord;\n }\n }\n }\n function decompressPartialGzip(fileBytes, numBytes) {\n const chunks = [];\n let totalBytes = 0;\n let result = null;\n const gunzip = new Gunzip((data, final) => {\n chunks.push(data);\n totalBytes += data.length;\n if (final || totalBytes >= numBytes) {\n const allBytes = new Uint8Array(totalBytes);\n let offset2 = 0;\n for (const chunk of chunks) {\n allBytes.set(chunk, offset2);\n offset2 += chunk.length;\n }\n result = allBytes.slice(0, numBytes);\n }\n });\n const CHUNK_SIZE = 1024;\n let offset = 0;\n while (result == null && offset < fileBytes.length) {\n const chunk = fileBytes.slice(offset, offset + CHUNK_SIZE);\n gunzip.push(chunk, false);\n offset += CHUNK_SIZE;\n }\n if (result == null) {\n gunzip.push(new Uint8Array(), true);\n if (result == null) {\n throw new Error("Failed to decompress partial gzip");\n }\n }\n return result;\n }\n class GunzipReader {\n constructor({\n fileBytes,\n chunkBytes = 64 * 1024\n }) {\n this.fileBytes = fileBytes;\n this.chunkBytes = chunkBytes;\n this.offset = 0;\n this.chunks = [];\n this.totalBytes = 0;\n this.gunzip = new Gunzip((chunk, _final) => {\n this.chunks.push(chunk);\n this.totalBytes += chunk.length;\n });\n }\n read(numBytes) {\n while (this.totalBytes < numBytes && this.offset < this.fileBytes.length) {\n const end = Math.min(\n this.offset + this.chunkBytes,\n this.fileBytes.length\n );\n this.gunzip.push(this.fileBytes.subarray(this.offset, end), false);\n this.offset = end;\n }\n if (this.totalBytes < numBytes && this.offset >= this.fileBytes.length) {\n this.gunzip.push(new Uint8Array(0), true);\n }\n if (this.totalBytes < numBytes) {\n throw new Error(\n `Unexpected EOF: needed ${numBytes}, got ${this.totalBytes}`\n );\n }\n const allBytes = new Uint8Array(this.totalBytes);\n let outOffset = 0;\n for (const chunk of this.chunks) {\n allBytes.set(chunk, outOffset);\n outOffset += chunk.length;\n }\n const result = allBytes.subarray(0, numBytes);\n this.chunks = [allBytes.subarray(numBytes)];\n this.totalBytes -= numBytes;\n return result;\n }\n }\n function decodeAntiSplat(fileBytes, initNumSplats, splatCallback) {\n const numSplats = Math.floor(fileBytes.length / 32);\n if (numSplats * 32 !== fileBytes.length) {\n throw new Error("Invalid .splat file size");\n }\n initNumSplats(numSplats);\n const f32 = new Float32Array(fileBytes.buffer);\n for (let i2 = 0; i2 < numSplats; ++i2) {\n const i322 = i2 * 32;\n const i8 = i2 * 8;\n const x2 = f32[i8 + 0];\n const y = f32[i8 + 1];\n const z = f32[i8 + 2];\n const scaleX = f32[i8 + 3];\n const scaleY = f32[i8 + 4];\n const scaleZ = f32[i8 + 5];\n const r = fileBytes[i322 + 24] / 255;\n const g = fileBytes[i322 + 25] / 255;\n const b = fileBytes[i322 + 26] / 255;\n const opacity = fileBytes[i322 + 27] / 255;\n const quatW = (fileBytes[i322 + 28] - 128) / 128;\n const quatX = (fileBytes[i322 + 29] - 128) / 128;\n const quatY = (fileBytes[i322 + 30] - 128) / 128;\n const quatZ = (fileBytes[i322 + 31] - 128) / 128;\n splatCallback(\n i2,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n }\n }\n function unpackAntiSplat(fileBytes) {\n let numSplats = 0;\n let maxSplats = 0;\n let packedArray = new Uint32Array(0);\n decodeAntiSplat(\n fileBytes,\n (cbNumSplats) => {\n numSplats = cbNumSplats;\n maxSplats = computeMaxSplats(numSplats);\n packedArray = new Uint32Array(maxSplats * 4);\n },\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n setPackedSplat(\n packedArray,\n index,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n }\n );\n return { packedArray, numSplats };\n }\n const KSPLAT_COMPRESSION = {\n 0: {\n bytesPerCenter: 12,\n bytesPerScale: 12,\n bytesPerRotation: 16,\n bytesPerColor: 4,\n bytesPerSphericalHarmonicsComponent: 4,\n scaleOffsetBytes: 12,\n rotationOffsetBytes: 24,\n colorOffsetBytes: 40,\n sphericalHarmonicsOffsetBytes: 44,\n scaleRange: 1\n },\n 1: {\n bytesPerCenter: 6,\n bytesPerScale: 6,\n bytesPerRotation: 8,\n bytesPerColor: 4,\n bytesPerSphericalHarmonicsComponent: 2,\n scaleOffsetBytes: 6,\n rotationOffsetBytes: 12,\n colorOffsetBytes: 20,\n sphericalHarmonicsOffsetBytes: 24,\n scaleRange: 32767\n },\n 2: {\n bytesPerCenter: 6,\n bytesPerScale: 6,\n bytesPerRotation: 8,\n bytesPerColor: 4,\n bytesPerSphericalHarmonicsComponent: 1,\n scaleOffsetBytes: 6,\n rotationOffsetBytes: 12,\n colorOffsetBytes: 20,\n sphericalHarmonicsOffsetBytes: 24,\n scaleRange: 32767\n }\n };\n const KSPLAT_SH_DEGREE_TO_COMPONENTS = {\n 0: 0,\n 1: 9,\n 2: 24,\n 3: 45\n };\n function decodeKsplat(fileBytes, initNumSplats, splatCallback, shCallback) {\n var _a2;\n const HEADER_BYTES = 4096;\n const SECTION_BYTES = 1024;\n let headerOffset = 0;\n const header = new DataView(fileBytes.buffer, headerOffset, HEADER_BYTES);\n headerOffset += HEADER_BYTES;\n const versionMajor = header.getUint8(0);\n const versionMinor = header.getUint8(1);\n if (versionMajor !== 0 || versionMinor < 1) {\n throw new Error(\n `Unsupported .ksplat version: ${versionMajor}.${versionMinor}`\n );\n }\n const maxSectionCount = header.getUint32(4, true);\n header.getUint32(16, true);\n const compressionLevel = header.getUint16(20, true);\n if (compressionLevel < 0 || compressionLevel > 2) {\n throw new Error(`Invalid .ksplat compression level: ${compressionLevel}`);\n }\n header.getFloat32(36, true) || -1.5;\n header.getFloat32(40, true) || 1.5;\n let sectionBase = HEADER_BYTES + maxSectionCount * SECTION_BYTES;\n for (let section = 0; section < maxSectionCount; ++section) {\n const section2 = new DataView(fileBytes.buffer, headerOffset, SECTION_BYTES);\n headerOffset += SECTION_BYTES;\n const sectionSplatCount = section2.getUint32(0, true);\n const sectionMaxSplatCount = section2.getUint32(4, true);\n const bucketSize = section2.getUint32(8, true);\n const bucketCount = section2.getUint32(12, true);\n const bucketBlockSize = section2.getFloat32(16, true);\n const bucketStorageSizeBytes = section2.getUint16(20, true);\n const compressionScaleRange = (section2.getUint32(24, true) || ((_a2 = KSPLAT_COMPRESSION[compressionLevel]) == null ? void 0 : _a2.scaleRange)) ?? 1;\n const partiallyFilledBucketCount = section2.getUint32(36, true);\n const bucketsMetaDataSizeBytes = partiallyFilledBucketCount * 4;\n const bucketsStorageSizeBytes = bucketStorageSizeBytes * bucketCount + bucketsMetaDataSizeBytes;\n const sphericalHarmonicsDegree = section2.getUint16(40, true);\n const shComponents = KSPLAT_SH_DEGREE_TO_COMPONENTS[sphericalHarmonicsDegree];\n const {\n bytesPerCenter,\n bytesPerScale,\n bytesPerRotation,\n bytesPerColor,\n bytesPerSphericalHarmonicsComponent,\n scaleOffsetBytes,\n rotationOffsetBytes,\n colorOffsetBytes,\n sphericalHarmonicsOffsetBytes\n } = KSPLAT_COMPRESSION[compressionLevel];\n const bytesPerSplat = bytesPerCenter + bytesPerScale + bytesPerRotation + bytesPerColor + shComponents * bytesPerSphericalHarmonicsComponent;\n const splatDataStorageSizeBytes = bytesPerSplat * sectionMaxSplatCount;\n const storageSizeBytes = splatDataStorageSizeBytes + bucketsStorageSizeBytes;\n const sh1 = sphericalHarmonicsDegree >= 1 ? new Float32Array(3 * 3) : void 0;\n const sh2 = sphericalHarmonicsDegree >= 2 ? new Float32Array(5 * 3) : void 0;\n const sh3 = sphericalHarmonicsDegree >= 3 ? new Float32Array(7 * 3) : void 0;\n const compressionScaleFactor = bucketBlockSize / 2 / compressionScaleRange;\n const bucketsBase = sectionBase + bucketsMetaDataSizeBytes;\n const dataBase = sectionBase + bucketsStorageSizeBytes;\n const data = new DataView(\n fileBytes.buffer,\n dataBase,\n splatDataStorageSizeBytes\n );\n const bucketArray = new Float32Array(\n fileBytes.buffer,\n bucketsBase,\n bucketCount * 3\n );\n for (let i2 = 0; i2 < sectionSplatCount; ++i2) {\n const splatOffset = i2 * bytesPerSplat;\n const bucketIndex = Math.floor(i2 / bucketSize);\n const x2 = compressionLevel === 0 ? data.getFloat32(splatOffset + 0, true) : (data.getUint16(splatOffset + 0, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 0];\n const y = compressionLevel === 0 ? data.getFloat32(splatOffset + 4, true) : (data.getUint16(splatOffset + 2, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 1];\n const z = compressionLevel === 0 ? data.getFloat32(splatOffset + 8, true) : (data.getUint16(splatOffset + 4, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 2];\n const scaleX = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 0, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 0, true));\n const scaleY = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 4, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 2, true));\n const scaleZ = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 8, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 4, true));\n const quatW = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 0, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 0, true)\n );\n const quatX = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 4, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 2, true)\n );\n const quatY = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 8, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 4, true)\n );\n const quatZ = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 12, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 6, true)\n );\n const r = data.getUint8(splatOffset + colorOffsetBytes + 0) / 255;\n const g = data.getUint8(splatOffset + colorOffsetBytes + 1) / 255;\n const b = data.getUint8(splatOffset + colorOffsetBytes + 2) / 255;\n const opacity = data.getUint8(splatOffset + colorOffsetBytes + 3) / 255;\n splatCallback(\n i2,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n if (sphericalHarmonicsDegree >= 1 && sh1) {\n shCallback == null ? void 0 : shCallback(i2, sh1, sh2, sh3);\n }\n }\n sectionBase += storageSizeBytes;\n }\n }\n function unpackKsplat(fileBytes) {\n var _a2;\n const HEADER_BYTES = 4096;\n const SECTION_BYTES = 1024;\n let headerOffset = 0;\n const header = new DataView(fileBytes.buffer, headerOffset, HEADER_BYTES);\n headerOffset += HEADER_BYTES;\n const versionMajor = header.getUint8(0);\n const versionMinor = header.getUint8(1);\n if (versionMajor !== 0 || versionMinor < 1) {\n throw new Error(\n `Unsupported .ksplat version: ${versionMajor}.${versionMinor}`\n );\n }\n const maxSectionCount = header.getUint32(4, true);\n const splatCount = header.getUint32(16, true);\n const compressionLevel = header.getUint16(20, true);\n if (compressionLevel < 0 || compressionLevel > 2) {\n throw new Error(`Invalid .ksplat compression level: ${compressionLevel}`);\n }\n const minSphericalHarmonicsCoeff = header.getFloat32(36, true) || -1.5;\n const maxSphericalHarmonicsCoeff = header.getFloat32(40, true) || 1.5;\n const numSplats = splatCount;\n const maxSplats = computeMaxSplats(numSplats);\n const packedArray = new Uint32Array(maxSplats * 4);\n const extra = {};\n let sectionBase = HEADER_BYTES + maxSectionCount * SECTION_BYTES;\n for (let section = 0; section < maxSectionCount; ++section) {\n let getSh = function(splatOffset, component) {\n if (compressionLevel === 0) {\n return data.getFloat32(\n splatOffset + sphericalHarmonicsOffsetBytes + component * 4,\n true\n );\n }\n if (compressionLevel === 1) {\n return fromHalf(\n data.getUint16(\n splatOffset + sphericalHarmonicsOffsetBytes + component * 2,\n true\n )\n );\n }\n const t = data.getUint8(splatOffset + sphericalHarmonicsOffsetBytes + component) / 255;\n return minSphericalHarmonicsCoeff + t * (maxSphericalHarmonicsCoeff - minSphericalHarmonicsCoeff);\n };\n const section2 = new DataView(fileBytes.buffer, headerOffset, SECTION_BYTES);\n headerOffset += SECTION_BYTES;\n const sectionSplatCount = section2.getUint32(0, true);\n const sectionMaxSplatCount = section2.getUint32(4, true);\n const bucketSize = section2.getUint32(8, true);\n const bucketCount = section2.getUint32(12, true);\n const bucketBlockSize = section2.getFloat32(16, true);\n const bucketStorageSizeBytes = section2.getUint16(20, true);\n const compressionScaleRange = (section2.getUint32(24, true) || ((_a2 = KSPLAT_COMPRESSION[compressionLevel]) == null ? void 0 : _a2.scaleRange)) ?? 1;\n const partiallyFilledBucketCount = section2.getUint32(36, true);\n const bucketsMetaDataSizeBytes = partiallyFilledBucketCount * 4;\n const bucketsStorageSizeBytes = bucketStorageSizeBytes * bucketCount + bucketsMetaDataSizeBytes;\n const sphericalHarmonicsDegree = section2.getUint16(40, true);\n const shComponents = KSPLAT_SH_DEGREE_TO_COMPONENTS[sphericalHarmonicsDegree];\n const {\n bytesPerCenter,\n bytesPerScale,\n bytesPerRotation,\n bytesPerColor,\n bytesPerSphericalHarmonicsComponent,\n scaleOffsetBytes,\n rotationOffsetBytes,\n colorOffsetBytes,\n sphericalHarmonicsOffsetBytes\n } = KSPLAT_COMPRESSION[compressionLevel];\n const bytesPerSplat = bytesPerCenter + bytesPerScale + bytesPerRotation + bytesPerColor + shComponents * bytesPerSphericalHarmonicsComponent;\n const splatDataStorageSizeBytes = bytesPerSplat * sectionMaxSplatCount;\n const storageSizeBytes = splatDataStorageSizeBytes + bucketsStorageSizeBytes;\n const sh1Index = [0, 3, 6, 1, 4, 7, 2, 5, 8];\n const sh2Index = [\n 9,\n 14,\n 19,\n 10,\n 15,\n 20,\n 11,\n 16,\n 21,\n 12,\n 17,\n 22,\n 13,\n 18,\n 23\n ];\n const sh3Index = [\n 24,\n 31,\n 38,\n 25,\n 32,\n 39,\n 26,\n 33,\n 40,\n 27,\n 34,\n 41,\n 28,\n 35,\n 42,\n 29,\n 36,\n 43,\n 30,\n 37,\n 44\n ];\n const sh1 = sphericalHarmonicsDegree >= 1 ? new Float32Array(3 * 3) : void 0;\n const sh2 = sphericalHarmonicsDegree >= 2 ? new Float32Array(5 * 3) : void 0;\n const sh3 = sphericalHarmonicsDegree >= 3 ? new Float32Array(7 * 3) : void 0;\n const compressionScaleFactor = bucketBlockSize / 2 / compressionScaleRange;\n const bucketsBase = sectionBase + bucketsMetaDataSizeBytes;\n const dataBase = sectionBase + bucketsStorageSizeBytes;\n const data = new DataView(\n fileBytes.buffer,\n dataBase,\n splatDataStorageSizeBytes\n );\n const bucketArray = new Float32Array(\n fileBytes.buffer,\n bucketsBase,\n bucketCount * 3\n );\n for (let i2 = 0; i2 < sectionSplatCount; ++i2) {\n const splatOffset = i2 * bytesPerSplat;\n const bucketIndex = Math.floor(i2 / bucketSize);\n const x2 = compressionLevel === 0 ? data.getFloat32(splatOffset + 0, true) : (data.getUint16(splatOffset + 0, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 0];\n const y = compressionLevel === 0 ? data.getFloat32(splatOffset + 4, true) : (data.getUint16(splatOffset + 2, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 1];\n const z = compressionLevel === 0 ? data.getFloat32(splatOffset + 8, true) : (data.getUint16(splatOffset + 4, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 2];\n const scaleX = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 0, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 0, true));\n const scaleY = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 4, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 2, true));\n const scaleZ = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 8, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 4, true));\n const quatW = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 0, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 0, true)\n );\n const quatX = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 4, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 2, true)\n );\n const quatY = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 8, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 4, true)\n );\n const quatZ = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 12, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 6, true)\n );\n const r = data.getUint8(splatOffset + colorOffsetBytes + 0) / 255;\n const g = data.getUint8(splatOffset + colorOffsetBytes + 1) / 255;\n const b = data.getUint8(splatOffset + colorOffsetBytes + 2) / 255;\n const opacity = data.getUint8(splatOffset + colorOffsetBytes + 3) / 255;\n setPackedSplat(\n packedArray,\n i2,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n if (sphericalHarmonicsDegree >= 1) {\n if (sh1) {\n if (!extra.sh1) {\n extra.sh1 = new Uint32Array(numSplats * 2);\n }\n for (const [i22, key] of sh1Index.entries()) {\n sh1[i22] = getSh(splatOffset, key);\n }\n encodeSh1Rgb(extra.sh1, i2, sh1);\n }\n if (sh2) {\n if (!extra.sh2) {\n extra.sh2 = new Uint32Array(numSplats * 4);\n }\n for (const [i22, key] of sh2Index.entries()) {\n sh2[i22] = getSh(splatOffset, key);\n }\n encodeSh2Rgb(extra.sh2, i2, sh2);\n }\n if (sh3) {\n if (!extra.sh3) {\n extra.sh3 = new Uint32Array(numSplats * 4);\n }\n for (const [i22, key] of sh3Index.entries()) {\n sh3[i22] = getSh(splatOffset, key);\n }\n encodeSh3Rgb(extra.sh3, i2, sh3);\n }\n }\n }\n sectionBase += storageSizeBytes;\n }\n return { packedArray, numSplats, extra };\n }\n const _PlyReader = class _PlyReader {\n // Create a PlyReader from a Uint8Array/ArrayBuffer, no parsing done yet\n constructor({ fileBytes }) {\n this.header = "";\n this.littleEndian = true;\n this.elements = {};\n this.comments = [];\n this.data = null;\n this.numSplats = 0;\n this.fileBytes = fileBytes instanceof ArrayBuffer ? new Uint8Array(fileBytes) : fileBytes;\n }\n // Identify and parse the PLY text header (assumed to be <64KB in size).\n // this.elements will contain all the elements in the file, typically\n // "vertex" contains the Gsplat data.\n async parseHeader() {\n const bufferStream = new ReadableStream({\n start: (controller) => {\n controller.enqueue(this.fileBytes.slice(0, 65536));\n controller.close();\n }\n });\n const decoder = bufferStream.pipeThrough(new TextDecoderStream()).getReader();\n this.header = "";\n const headerTerminator = "end_header\\n";\n while (true) {\n const { value, done } = await decoder.read();\n if (done) {\n throw new Error("Failed to read header");\n }\n this.header += value;\n const endHeader = this.header.indexOf(headerTerminator);\n if (endHeader >= 0) {\n this.header = this.header.slice(0, endHeader + headerTerminator.length);\n break;\n }\n }\n const headerLen = new TextEncoder().encode(this.header).length;\n this.data = new DataView(this.fileBytes.buffer, headerLen);\n this.elements = {};\n let curElement = null;\n this.comments = [];\n this.header.trim().split("\\n").forEach((line, lineIndex) => {\n const trimmedLine = line.trim();\n if (lineIndex === 0) {\n if (trimmedLine !== "ply") {\n throw new Error("Invalid PLY header");\n }\n return;\n }\n if (trimmedLine.length === 0) {\n return;\n }\n const fields = trimmedLine.split(" ");\n switch (fields[0]) {\n case "format":\n if (fields[1] === "binary_little_endian") {\n this.littleEndian = true;\n } else if (fields[1] === "binary_big_endian") {\n this.littleEndian = false;\n } else {\n throw new Error(`Unsupported PLY format: ${fields[1]}`);\n }\n if (fields[2] !== "1.0") {\n throw new Error(`Unsupported PLY version: ${fields[2]}`);\n }\n break;\n case "end_header":\n break;\n case "comment":\n this.comments.push(trimmedLine.slice("comment ".length));\n break;\n case "element": {\n const name = fields[1];\n curElement = {\n name,\n count: Number.parseInt(fields[2]),\n properties: {}\n };\n this.elements[name] = curElement;\n break;\n }\n case "property":\n if (curElement == null) {\n throw new Error("Property must be inside an element");\n }\n if (fields[1] === "list") {\n curElement.properties[fields[4]] = {\n isList: true,\n type: fields[3],\n countType: fields[2]\n };\n } else {\n curElement.properties[fields[2]] = {\n isList: false,\n type: fields[1]\n };\n }\n break;\n }\n });\n if (this.elements.vertex) {\n this.numSplats = this.elements.vertex.count;\n }\n }\n parseData(elementCallback) {\n let offset = 0;\n const data = this.data;\n if (data == null) {\n throw new Error("No data to parse");\n }\n for (const elementName in this.elements) {\n const element = this.elements[elementName];\n const { count, properties } = element;\n const item = {};\n const parsers = [];\n for (const [propertyName, property] of Object.entries(properties)) {\n if (!property.isList) {\n item[propertyName] = 0;\n parsers.push(() => {\n item[propertyName] = PARSE_FIELD[property.type](\n data,\n offset,\n this.littleEndian\n );\n offset += FIELD_BYTES[property.type];\n });\n } else {\n item[propertyName] = [];\n parsers.push(() => {\n const list = item[propertyName];\n list.length = PARSE_FIELD[property.countType](\n data,\n offset,\n this.littleEndian\n );\n offset += FIELD_BYTES[property.countType];\n for (let i2 = 0; i2 < list.length; i2++) {\n list[i2] = PARSE_FIELD[property.type](\n data,\n offset,\n this.littleEndian\n );\n offset += FIELD_BYTES[property.type];\n }\n });\n }\n }\n const callback = elementCallback(element) ?? (() => {\n });\n for (let index = 0; index < count; index++) {\n for (const parser of parsers) {\n parser();\n }\n callback(index, item);\n }\n }\n }\n // Parse all the Gsplat data in the PLY file in go, invoking the given\n // callbacks for each Gsplat.\n parseSplats(splatCallback, shCallback) {\n if (this.elements.vertex == null) {\n throw new Error("No vertex element found");\n }\n let isSuperSplat = false;\n const ssChunks = [];\n let numSh = 0;\n let sh1Props = [];\n let sh2Props = [];\n let sh3Props = [];\n let sh1 = void 0;\n let sh2 = void 0;\n let sh3 = void 0;\n function prepareSh() {\n const num_f_rest = NUM_SH_TO_NUM_F_REST[numSh];\n sh1Props = new Array(3).fill(null).flatMap(\n (_, k) => [0, 1, 2].map((_2, d) => `f_rest_${k + d * num_f_rest / 3}`)\n );\n sh2Props = new Array(5).fill(null).flatMap(\n (_, k) => [0, 1, 2].map((_2, d) => `f_rest_${3 + k + d * num_f_rest / 3}`)\n );\n sh3Props = new Array(7).fill(null).flatMap(\n (_, k) => [0, 1, 2].map((_2, d) => `f_rest_${8 + k + d * num_f_rest / 3}`)\n );\n sh1 = numSh >= 1 ? new Float32Array(3 * 3) : void 0;\n sh2 = numSh >= 2 ? new Float32Array(5 * 3) : void 0;\n sh3 = numSh >= 3 ? new Float32Array(7 * 3) : void 0;\n }\n function ssShCallback(index, item) {\n if (!sh1) {\n throw new Error("Missing sh1");\n }\n for (const [i2, key] of sh1Props.entries()) {\n sh1[i2] = item[key] * 8 / 255 - 4;\n }\n if (sh2) {\n for (const [i2, key] of sh2Props.entries()) {\n sh2[i2] = item[key] * 8 / 255 - 4;\n }\n }\n if (sh3) {\n for (const [i2, key] of sh3Props.entries()) {\n sh3[i2] = item[key] * 8 / 255 - 4;\n }\n }\n shCallback == null ? void 0 : shCallback(index, sh1, sh2, sh3);\n }\n function initSuperSplat(element) {\n const {\n min_x,\n min_y,\n min_z,\n max_x,\n max_y,\n max_z,\n min_scale_x,\n min_scale_y,\n min_scale_z,\n max_scale_x,\n max_scale_y,\n max_scale_z,\n min_r,\n min_g,\n min_b,\n max_r,\n max_g,\n max_b\n } = element.properties;\n if (!min_x || !min_y || !min_z || !max_x || !max_y || !max_z || !min_scale_x || !min_scale_y || !min_scale_z || !max_scale_x || !max_scale_y || !max_scale_z || !min_r || !min_g || !min_b || !max_r || !max_g || !max_b) {\n throw new Error("Missing PLY chunk properties");\n }\n isSuperSplat = true;\n return (index, item) => {\n const {\n min_x: min_x2,\n min_y: min_y2,\n min_z: min_z2,\n max_x: max_x2,\n max_y: max_y2,\n max_z: max_z2,\n min_scale_x: min_scale_x2,\n min_scale_y: min_scale_y2,\n min_scale_z: min_scale_z2,\n max_scale_x: max_scale_x2,\n max_scale_y: max_scale_y2,\n max_scale_z: max_scale_z2,\n min_r: min_r2,\n min_g: min_g2,\n min_b: min_b2,\n max_r: max_r2,\n max_g: max_g2,\n max_b: max_b2\n } = item;\n ssChunks.push({\n min_x: min_x2,\n min_y: min_y2,\n min_z: min_z2,\n max_x: max_x2,\n max_y: max_y2,\n max_z: max_z2,\n min_scale_x: min_scale_x2,\n min_scale_y: min_scale_y2,\n min_scale_z: min_scale_z2,\n max_scale_x: max_scale_x2,\n max_scale_y: max_scale_y2,\n max_scale_z: max_scale_z2,\n min_r: min_r2,\n min_g: min_g2,\n min_b: min_b2,\n max_r: max_r2,\n max_g: max_g2,\n max_b: max_b2\n });\n };\n }\n function decodeSuperSplat(element) {\n if (shCallback && element.name === "sh") {\n numSh = getNumSh(element.properties);\n prepareSh();\n return ssShCallback;\n }\n if (element.name !== "vertex") {\n return null;\n }\n const { packed_position, packed_rotation, packed_scale, packed_color } = element.properties;\n if (!packed_position || !packed_rotation || !packed_scale || !packed_color) {\n throw new Error(\n "Missing PLY properties: packed_position, packed_rotation, packed_scale, packed_color"\n );\n }\n const SQRT2 = Math.sqrt(2);\n return (index, item) => {\n const chunk = ssChunks[index >>> 8];\n if (chunk == null) {\n throw new Error("Missing PLY chunk");\n }\n const {\n min_x,\n min_y,\n min_z,\n max_x,\n max_y,\n max_z,\n min_scale_x,\n min_scale_y,\n min_scale_z,\n max_scale_x,\n max_scale_y,\n max_scale_z,\n min_r,\n min_g,\n min_b,\n max_r,\n max_g,\n max_b\n } = chunk;\n const { packed_position: packed_position2, packed_rotation: packed_rotation2, packed_scale: packed_scale2, packed_color: packed_color2 } = item;\n const x2 = (packed_position2 >>> 21 & 2047) / 2047 * (max_x - min_x) + min_x;\n const y = (packed_position2 >>> 11 & 1023) / 1023 * (max_y - min_y) + min_y;\n const z = (packed_position2 & 2047) / 2047 * (max_z - min_z) + min_z;\n const r0 = ((packed_rotation2 >>> 20 & 1023) / 1023 - 0.5) * SQRT2;\n const r1 = ((packed_rotation2 >>> 10 & 1023) / 1023 - 0.5) * SQRT2;\n const r2 = ((packed_rotation2 & 1023) / 1023 - 0.5) * SQRT2;\n const rr = Math.sqrt(Math.max(0, 1 - r0 * r0 - r1 * r1 - r2 * r2));\n const rOrder = packed_rotation2 >>> 30;\n const quatX = rOrder === 0 ? r0 : rOrder === 1 ? rr : r1;\n const quatY = rOrder <= 1 ? r1 : rOrder === 2 ? rr : r2;\n const quatZ = rOrder <= 2 ? r2 : rr;\n const quatW = rOrder === 0 ? rr : r0;\n const scaleX = Math.exp(\n (packed_scale2 >>> 21 & 2047) / 2047 * (max_scale_x - min_scale_x) + min_scale_x\n );\n const scaleY = Math.exp(\n (packed_scale2 >>> 11 & 1023) / 1023 * (max_scale_y - min_scale_y) + min_scale_y\n );\n const scaleZ = Math.exp(\n (packed_scale2 & 2047) / 2047 * (max_scale_z - min_scale_z) + min_scale_z\n );\n const r = (packed_color2 >>> 24 & 255) / 255 * (max_r - min_r) + min_r;\n const g = (packed_color2 >>> 16 & 255) / 255 * (max_g - min_g) + min_g;\n const b = (packed_color2 >>> 8 & 255) / 255 * (max_b - min_b) + min_b;\n const opacity = (packed_color2 & 255) / 255;\n splatCallback(\n index,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n };\n }\n const elementCallback = (element) => {\n if (element.name === "chunk") {\n if (this.comments.some(\n (comment) => comment.toLowerCase().includes("supersplat")\n )) {\n return initSuperSplat(element);\n }\n }\n if (isSuperSplat) {\n return decodeSuperSplat(element);\n }\n if (element.name !== "vertex") {\n return null;\n }\n const {\n x: x2,\n y,\n z,\n scale_0,\n scale_1,\n scale_2,\n rot_0,\n rot_1,\n rot_2,\n rot_3,\n opacity,\n f_dc_0,\n f_dc_1,\n f_dc_2,\n red,\n green,\n blue,\n alpha\n } = element.properties;\n if (!x2 || !y || !z) {\n throw new Error("Missing PLY properties: x, y, z");\n }\n const hasScales = scale_0 && scale_1 && scale_2;\n const hasRots = rot_0 && rot_1 && rot_2 && rot_3;\n const alphaDiv = alpha != null ? FIELD_SCALE[alpha.type] : 1;\n const redDiv = red != null ? FIELD_SCALE[red.type] : 1;\n const greenDiv = green != null ? FIELD_SCALE[green.type] : 1;\n const blueDiv = blue != null ? FIELD_SCALE[blue.type] : 1;\n numSh = getNumSh(element.properties);\n prepareSh();\n return (index, item) => {\n const scaleX = hasScales ? Math.exp(item.scale_0) : _PlyReader.defaultPointScale;\n const scaleY = hasScales ? Math.exp(item.scale_1) : _PlyReader.defaultPointScale;\n const scaleZ = hasScales ? Math.exp(item.scale_2) : _PlyReader.defaultPointScale;\n const quatX = hasRots ? item.rot_1 : 0;\n const quatY = hasRots ? item.rot_2 : 0;\n const quatZ = hasRots ? item.rot_3 : 0;\n const quatW = hasRots ? item.rot_0 : 1;\n const op = opacity != null ? 1 / (1 + Math.exp(-item.opacity)) : alpha != null ? item.alpha / alphaDiv : 1;\n const r = f_dc_0 != null ? item.f_dc_0 * SH_C0$1 + 0.5 : red != null ? item.red / redDiv : 1;\n const g = f_dc_1 != null ? item.f_dc_1 * SH_C0$1 + 0.5 : green != null ? item.green / greenDiv : 1;\n const b = f_dc_2 != null ? item.f_dc_2 * SH_C0$1 + 0.5 : blue != null ? item.blue / blueDiv : 1;\n splatCallback(\n index,\n item.x,\n item.y,\n item.z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n op,\n r,\n g,\n b\n );\n if (shCallback && sh1) {\n if (sh1) {\n for (const [i2, key] of sh1Props.entries()) {\n sh1[i2] = item[key];\n }\n }\n if (sh2) {\n for (const [i2, key] of sh2Props.entries()) {\n sh2[i2] = item[key];\n }\n }\n if (sh3) {\n for (const [i2, key] of sh3Props.entries()) {\n sh3[i2] = item[key];\n }\n }\n shCallback(index, sh1, sh2, sh3);\n }\n };\n };\n this.parseData(elementCallback);\n }\n // Inject RGBA values into original PLY file, which can be used to modify\n // the color/opacity of the Gsplats and write out the modified PLY file.\n injectRgba(rgba) {\n let offset = 0;\n const data = this.data;\n if (data == null) {\n throw new Error("No parsed data");\n }\n if (rgba.length !== this.numSplats * 4) {\n throw new Error("Invalid RGBA array length");\n }\n for (const elementName in this.elements) {\n const element = this.elements[elementName];\n const { count, properties } = element;\n const parsers = [];\n let rgbaOffset = 0;\n const isVertex = elementName === "vertex";\n if (isVertex) {\n for (const name of ["opacity", "f_dc_0", "f_dc_1", "f_dc_2"]) {\n if (!properties[name] || properties[name].type !== "float") {\n throw new Error(`Can\'t injectRgba due to property: ${name}`);\n }\n }\n }\n for (const [propertyName, property] of Object.entries(properties)) {\n if (!property.isList) {\n if (isVertex) {\n if (propertyName === "f_dc_0" || propertyName === "f_dc_1" || propertyName === "f_dc_2") {\n const component = Number.parseInt(\n propertyName.slice("f_dc_".length)\n );\n parsers.push(() => {\n const value = (rgba[rgbaOffset + component] / 255 - 0.5) / SH_C0$1;\n SET_FIELD[property.type](\n data,\n offset,\n this.littleEndian,\n value\n );\n });\n } else if (propertyName === "opacity") {\n parsers.push(() => {\n const value = Math.max(\n -100,\n Math.min(\n 100,\n -Math.log(1 / (rgba[rgbaOffset + 3] / 255) - 1)\n )\n );\n SET_FIELD[property.type](\n data,\n offset,\n this.littleEndian,\n value\n );\n });\n }\n }\n parsers.push(() => {\n offset += FIELD_BYTES[property.type];\n });\n } else {\n parsers.push(() => {\n const length = PARSE_FIELD[property.countType](\n data,\n offset,\n this.littleEndian\n );\n offset += FIELD_BYTES[property.countType];\n offset += length * FIELD_BYTES[property.type];\n });\n }\n }\n for (let index = 0; index < count; index++) {\n for (const parser of parsers) {\n parser();\n }\n if (isVertex) {\n rgbaOffset += 4;\n }\n }\n }\n }\n };\n _PlyReader.defaultPointScale = 1e-3;\n let PlyReader = _PlyReader;\n const SH_C0$1 = 0.28209479177387814;\n const PARSE_FIELD = {\n char: (data, offset, littleEndian) => {\n return data.getInt8(offset);\n },\n uchar: (data, offset, littleEndian) => {\n return data.getUint8(offset);\n },\n short: (data, offset, littleEndian) => {\n return data.getInt16(offset, littleEndian);\n },\n ushort: (data, offset, littleEndian) => {\n return data.getUint16(offset, littleEndian);\n },\n int: (data, offset, littleEndian) => {\n return data.getInt32(offset, littleEndian);\n },\n uint: (data, offset, littleEndian) => {\n return data.getUint32(offset, littleEndian);\n },\n float: (data, offset, littleEndian) => {\n return data.getFloat32(offset, littleEndian);\n },\n double: (data, offset, littleEndian) => {\n return data.getFloat64(offset, littleEndian);\n }\n };\n const SET_FIELD = {\n char: (data, offset, littleEndian, value) => {\n data.setInt8(offset, value);\n },\n uchar: (data, offset, littleEndian, value) => {\n data.setUint8(offset, value);\n },\n short: (data, offset, littleEndian, value) => {\n data.setInt16(offset, value, littleEndian);\n },\n ushort: (data, offset, littleEndian, value) => {\n data.setUint16(offset, value, littleEndian);\n },\n int: (data, offset, littleEndian, value) => {\n data.setInt32(offset, value, littleEndian);\n },\n uint: (data, offset, littleEndian, value) => {\n data.setUint32(offset, value, littleEndian);\n },\n float: (data, offset, littleEndian, value) => {\n data.setFloat32(offset, value, littleEndian);\n },\n double: (data, offset, littleEndian, value) => {\n data.setFloat64(offset, value, littleEndian);\n }\n };\n const FIELD_BYTES = {\n char: 1,\n uchar: 1,\n short: 2,\n ushort: 2,\n int: 4,\n uint: 4,\n float: 4,\n double: 8\n };\n const FIELD_SCALE = {\n char: 127,\n uchar: 255,\n short: 32767,\n ushort: 65535,\n int: 2147483647,\n uint: 4294967295,\n float: 1,\n double: 1\n };\n const NUM_F_REST_TO_NUM_SH = {\n 0: 0,\n 9: 1,\n 24: 2,\n 45: 3\n };\n const NUM_SH_TO_NUM_F_REST = {\n 0: 0,\n 1: 9,\n 2: 24,\n 3: 45\n };\n function getNumSh(properties) {\n let num_f_rest = 0;\n while (properties[`f_rest_${num_f_rest}`]) {\n num_f_rest += 1;\n }\n const numSh = NUM_F_REST_TO_NUM_SH[num_f_rest];\n if (numSh == null) {\n throw new Error(`Unsupported number of SH coefficients: ${num_f_rest}`);\n }\n return numSh;\n }\n const Gsplat = { type: "Gsplat" };\n const TPackedSplats = { type: "PackedSplats" };\n const readPackedSplat = (packedSplats, index) => new ReadPackedSplat({ packedSplats, index });\n const readPackedSplatRange = (packedSplats, index, base, count) => new ReadPackedSplatRange({ packedSplats, index, base, count });\n const splitGsplat = (gsplat) => new SplitGsplat({ gsplat });\n const combineGsplat = ({\n gsplat,\n flags,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n }) => {\n return new CombineGsplat({\n gsplat,\n flags,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n });\n };\n const transformGsplat = (gsplat, {\n scale,\n rotate,\n translate,\n recolor\n }) => {\n return new TransformGsplat({ gsplat, scale, rotate, translate, recolor });\n };\n const defineGsplat = unindent(`\n struct Gsplat {\n vec3 center;\n uint flags;\n vec3 scales;\n int index;\n vec4 quaternion;\n vec4 rgba;\n };\n const uint GSPLAT_FLAG_ACTIVE = 1u << 0u;\n\n bool isGsplatActive(uint flags) {\n return (flags & GSPLAT_FLAG_ACTIVE) != 0u;\n }\n`);\n const definePackedSplats = unindent(`\n struct PackedSplats {\n usampler2DArray texture;\n int numSplats;\n };\n`);\n const defineReadPackedSplat = unindent(`\n bool readPackedSplat(usampler2DArray texture, int numSplats, int index, out Gsplat gsplat) {\n if ((index >= 0) && (index < numSplats)) {\n uvec4 packed = texelFetch(texture, splatTexCoord(index), 0);\n unpackSplat(packed, gsplat.center, gsplat.scales, gsplat.quaternion, gsplat.rgba);\n return true;\n } else {\n return false;\n }\n }\n`);\n class ReadPackedSplat extends Dyno {\n constructor({\n packedSplats,\n index\n }) {\n super({\n inTypes: { packedSplats: TPackedSplats, index: "int" },\n outTypes: { gsplat: Gsplat },\n inputs: { packedSplats, index },\n globals: () => [defineGsplat, definePackedSplats, defineReadPackedSplat],\n statements: ({ inputs, outputs }) => {\n const { gsplat } = outputs;\n if (!gsplat) {\n return [];\n }\n const { packedSplats: packedSplats2, index: index2 } = inputs;\n let statements;\n if (packedSplats2 && index2) {\n statements = unindentLines(`\n if (readPackedSplat(${packedSplats2}.texture, ${packedSplats2}.numSplats, ${index2}, ${gsplat})) {\n bool zeroSize = all(equal(${gsplat}.scales, vec3(0.0, 0.0, 0.0)));\n ${gsplat}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;\n } else {\n ${gsplat}.flags = 0u;\n }\n `);\n } else {\n statements = [`${gsplat}.flags = 0u;`];\n }\n statements.push(`${gsplat}.index = ${index2 ?? "0"};`);\n return statements;\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "gsplat");\n }\n }\n class ReadPackedSplatRange extends Dyno {\n constructor({\n packedSplats,\n index,\n base,\n count\n }) {\n super({\n inTypes: {\n packedSplats: TPackedSplats,\n index: "int",\n base: "int",\n count: "int"\n },\n outTypes: { gsplat: Gsplat },\n inputs: { packedSplats, index, base, count },\n globals: () => [defineGsplat, definePackedSplats, defineReadPackedSplat],\n statements: ({ inputs, outputs }) => {\n const { gsplat } = outputs;\n if (!gsplat) {\n return [];\n }\n const { packedSplats: packedSplats2, index: index2, base: base2, count: count2 } = inputs;\n let statements;\n if (packedSplats2 && index2 && base2 && count2) {\n statements = unindentLines(`\n ${gsplat}.flags = 0u;\n if ((${index2} >= ${base2}) && (${index2} < (${base2} + ${count2}))) {\n if (readPackedSplat(${packedSplats2}.texture, ${packedSplats2}.numSplats, ${index2}, ${gsplat})) {\n bool zeroSize = all(equal(${gsplat}.scales, vec3(0.0, 0.0, 0.0)));\n ${gsplat}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;\n }\n }\n `);\n } else {\n statements = [`${gsplat}.flags = 0u;`];\n }\n statements.push(`${gsplat}.index = ${index2 ?? "0"};`);\n return statements;\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "gsplat");\n }\n }\n class SplitGsplat extends Dyno {\n constructor({ gsplat }) {\n super({\n inTypes: { gsplat: Gsplat },\n outTypes: {\n flags: "uint",\n active: "bool",\n index: "int",\n center: "vec3",\n scales: "vec3",\n quaternion: "vec4",\n rgba: "vec4",\n rgb: "vec3",\n opacity: "float",\n x: "float",\n y: "float",\n z: "float",\n r: "float",\n g: "float",\n b: "float"\n },\n inputs: { gsplat },\n globals: () => [defineGsplat],\n statements: ({ inputs, outputs }) => {\n const { gsplat: gsplat2 } = inputs;\n const {\n flags,\n active,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n } = outputs;\n return [\n !flags ? null : `${flags} = ${gsplat2 ? `${gsplat2}.flags` : "0u"};`,\n !active ? null : `${active} = isGsplatActive(${gsplat2 ? `${gsplat2}.flags` : "0u"});`,\n !index ? null : `${index} = ${gsplat2 ? `${gsplat2}.index` : "0"};`,\n !center ? null : `${center} = ${gsplat2 ? `${gsplat2}.center` : "vec3(0.0, 0.0, 0.0)"};`,\n !scales ? null : `${scales} = ${gsplat2 ? `${gsplat2}.scales` : "vec3(0.0, 0.0, 0.0)"};`,\n !quaternion ? null : `${quaternion} = ${gsplat2 ? `${gsplat2}.quaternion` : "vec4(0.0, 0.0, 0.0, 1.0)"};`,\n !rgba ? null : `${rgba} = ${gsplat2 ? `${gsplat2}.rgba` : "vec4(0.0, 0.0, 0.0, 0.0)"};`,\n !rgb ? null : `${rgb} = ${gsplat2 ? `${gsplat2}.rgba.rgb` : "vec3(0.0, 0.0, 0.0)"};`,\n !opacity ? null : `${opacity} = ${gsplat2 ? `${gsplat2}.rgba.a` : "0.0"};`,\n !x2 ? null : `${x2} = ${gsplat2 ? `${gsplat2}.center.x` : "0.0"};`,\n !y ? null : `${y} = ${gsplat2 ? `${gsplat2}.center.y` : "0.0"};`,\n !z ? null : `${z} = ${gsplat2 ? `${gsplat2}.center.z` : "0.0"};`,\n !r ? null : `${r} = ${gsplat2 ? `${gsplat2}.rgba.r` : "0.0"};`,\n !g ? null : `${g} = ${gsplat2 ? `${gsplat2}.rgba.g` : "0.0"};`,\n !b ? null : `${b} = ${gsplat2 ? `${gsplat2}.rgba.b` : "0.0"};`\n ].filter(Boolean);\n }\n });\n }\n }\n class CombineGsplat extends Dyno {\n constructor({\n gsplat,\n flags,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n }) {\n super({\n inTypes: {\n gsplat: Gsplat,\n flags: "uint",\n index: "int",\n center: "vec3",\n scales: "vec3",\n quaternion: "vec4",\n rgba: "vec4",\n rgb: "vec3",\n opacity: "float",\n x: "float",\n y: "float",\n z: "float",\n r: "float",\n g: "float",\n b: "float"\n },\n outTypes: { gsplat: Gsplat },\n inputs: {\n gsplat,\n flags,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n },\n globals: () => [defineGsplat],\n statements: ({ inputs, outputs }) => {\n const { gsplat: outGsplat } = outputs;\n if (!outGsplat) {\n return [];\n }\n const {\n gsplat: gsplat2,\n flags: flags2,\n index: index2,\n center: center2,\n scales: scales2,\n quaternion: quaternion2,\n rgba: rgba2,\n rgb: rgb2,\n opacity: opacity2,\n x: x22,\n y: y2,\n z: z2,\n r: r2,\n g: g2,\n b: b2\n } = inputs;\n return [\n `${outGsplat}.flags = ${flags2 ?? (gsplat2 ? `${gsplat2}.flags` : "0u")};`,\n `${outGsplat}.index = ${index2 ?? (gsplat2 ? `${gsplat2}.index` : "0")};`,\n `${outGsplat}.center = ${center2 ?? (gsplat2 ? `${gsplat2}.center` : "vec3(0.0, 0.0, 0.0)")};`,\n `${outGsplat}.scales = ${scales2 ?? (gsplat2 ? `${gsplat2}.scales` : "vec3(0.0, 0.0, 0.0)")};`,\n `${outGsplat}.quaternion = ${quaternion2 ?? (gsplat2 ? `${gsplat2}.quaternion` : "vec4(0.0, 0.0, 0.0, 1.0)")};`,\n `${outGsplat}.rgba = ${rgba2 ?? (gsplat2 ? `${gsplat2}.rgba` : "vec4(0.0, 0.0, 0.0, 0.0)")};`,\n !rgb2 ? null : `${outGsplat}.rgba.rgb = ${rgb2};`,\n !opacity2 ? null : `${outGsplat}.rgba.a = ${opacity2};`,\n !x22 ? null : `${outGsplat}.center.x = ${x22};`,\n !y2 ? null : `${outGsplat}.center.y = ${y2};`,\n !z2 ? null : `${outGsplat}.center.z = ${z2};`,\n !r2 ? null : `${outGsplat}.rgba.r = ${r2};`,\n !g2 ? null : `${outGsplat}.rgba.g = ${g2};`,\n !b2 ? null : `${outGsplat}.rgba.b = ${b2};`\n ].filter(Boolean);\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "gsplat");\n }\n }\n unindent(`\n vec3 gsplatNormal(vec3 scales, vec4 quaternion) {\n float minScale = min(scales.x, min(scales.y, scales.z));\n vec3 normal;\n if (scales.z == minScale) {\n normal = vec3(0.0, 0.0, 1.0);\n } else if (scales.y == minScale) {\n normal = vec3(0.0, 1.0, 0.0);\n } else {\n normal = vec3(1.0, 0.0, 0.0);\n }\n return quatVec(quaternion, normal);\n }\n`);\n class TransformGsplat extends Dyno {\n constructor({\n gsplat,\n scale,\n rotate,\n translate,\n recolor\n }) {\n super({\n inTypes: {\n gsplat: Gsplat,\n scale: "float",\n rotate: "vec4",\n translate: "vec3",\n recolor: "vec4"\n },\n outTypes: { gsplat: Gsplat },\n inputs: { gsplat, scale, rotate, translate, recolor },\n globals: () => [defineGsplat],\n statements: ({ inputs, outputs, compile }) => {\n const { gsplat: gsplat2 } = outputs;\n if (!gsplat2 || !inputs.gsplat) {\n return [];\n }\n const { scale: scale2, rotate: rotate2, translate: translate2, recolor: recolor2 } = inputs;\n const indent = compile.indent;\n const statements = [\n `${gsplat2} = ${inputs.gsplat};`,\n `if (isGsplatActive(${gsplat2}.flags)) {`,\n scale2 ? `${indent}${gsplat2}.center *= ${scale2};` : null,\n rotate2 ? `${indent}${gsplat2}.center = quatVec(${rotate2}, ${gsplat2}.center);` : null,\n translate2 ? `${indent}${gsplat2}.center += ${translate2};` : null,\n scale2 ? `${indent}${gsplat2}.scales *= ${scale2};` : null,\n rotate2 ? `${indent}${gsplat2}.quaternion = quatQuat(${rotate2}, ${gsplat2}.quaternion);` : null,\n recolor2 ? `${indent}${gsplat2}.rgba *= ${recolor2};` : null,\n "}"\n ].filter(Boolean);\n return statements;\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "gsplat");\n }\n }\n const outputPackedSplat = (gsplat) => new OutputPackedSplat({ gsplat });\n class OutputPackedSplat extends Dyno {\n constructor({ gsplat }) {\n super({\n inTypes: { gsplat: Gsplat },\n inputs: { gsplat },\n globals: () => [defineGsplat],\n statements: ({ inputs, outputs }) => {\n const { output } = outputs;\n if (!output) {\n return [];\n }\n const { gsplat: gsplat2 } = inputs;\n if (gsplat2) {\n return unindentLines(`\n if (isGsplatActive(${gsplat2}.flags)) {\n ${output} = packSplat(${gsplat2}.center, ${gsplat2}.scales, ${gsplat2}.quaternion, ${gsplat2}.rgba);\n } else {\n ${output} = uvec4(0u, 0u, 0u, 0u);\n }\n `);\n }\n return [`${output} = uvec4(0u, 0u, 0u, 0u);`];\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "output");\n }\n }\n class OutputRgba8 extends Dyno {\n constructor({ rgba8 }) {\n super({\n inTypes: { rgba8: "vec4" },\n inputs: { rgba8 },\n statements: ({ inputs, outputs }) => [\n `target = ${inputs.rgba8 ?? "vec4(0.0, 0.0, 0.0, 0.0)"};`\n ]\n });\n }\n dynoOut() {\n return new DynoOutput(this, "rgba8");\n }\n }\n class DynoUniform extends Dyno {\n constructor({\n key,\n type,\n count,\n value,\n update,\n globals\n }) {\n key = key ?? "value";\n super({\n outTypes: { [key]: type },\n update: () => {\n if (update) {\n const value2 = update(this.value);\n if (value2 !== void 0) {\n this.value = value2;\n }\n }\n this.uniform.value = this.value;\n },\n generate: ({ inputs, outputs }) => {\n const allGlobals = (globals == null ? void 0 : globals({ inputs, outputs })) ?? [];\n const uniforms = {};\n const name = outputs[key];\n if (name) {\n allGlobals.push(`uniform ${dynoDeclare(name, type, count)};`);\n uniforms[name] = this.uniform;\n }\n return { globals: allGlobals, uniforms };\n }\n });\n this.type = type;\n this.count = count;\n this.value = value;\n this.uniform = { value };\n this.outKey = key;\n }\n dynoOut() {\n return new DynoOutput(this, this.outKey);\n }\n }\n class DynoInt extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "int", value, update });\n }\n }\n class DynoFloat extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "float", value, update });\n }\n }\n class DynoVec3 extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "vec3", value, update });\n }\n }\n class DynoVec4 extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "vec4", value, update });\n }\n }\n class DynoUsampler2DArray extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "usampler2DArray", value, update });\n }\n }\n class DynoProgram {\n constructor({\n graph,\n inputs,\n outputs,\n template\n }) {\n this.graph = graph;\n this.template = template;\n this.inputs = inputs ?? {};\n this.outputs = outputs ?? {};\n const compile = new Compilation({ indent: this.template.indent });\n for (const key in this.outputs) {\n if (this.outputs[key]) {\n compile.declares.add(this.outputs[key]);\n }\n }\n const statements = graph.compile({\n inputs: this.inputs,\n outputs: this.outputs,\n compile\n });\n this.shader = template.generate({ globals: compile.globals, statements });\n this.uniforms = compile.uniforms;\n this.updaters = compile.updaters;\n }\n prepareMaterial() {\n return getMaterial(this);\n }\n update() {\n for (const updater of this.updaters) {\n updater();\n }\n }\n }\n class DynoProgramTemplate {\n constructor(template) {\n const globals = template.match(/^([ \\t]*)\\{\\{\\s*GLOBALS\\s*\\}\\}/m);\n const statements = template.match(/^([ \\t]*)\\{\\{\\s*STATEMENTS\\s*\\}\\}/m);\n if (!globals || !statements) {\n throw new Error(\n "Template must contain {{ GLOBALS }} and {{ STATEMENTS }}"\n );\n }\n this.before = template.substring(0, globals.index);\n this.between = template.substring(\n globals.index + globals[0].length,\n statements.index\n );\n this.after = template.substring(\n statements.index + statements[0].length\n );\n this.indent = statements[1];\n }\n generate({\n globals,\n statements\n }) {\n return this.before + Array.from(globals).join("\\n\\n") + this.between + statements.map((s) => this.indent + s).join("\\n") + this.after;\n }\n }\n const programMaterial = /* @__PURE__ */ new Map();\n function getMaterial(program) {\n let material = programMaterial.get(program);\n if (material) {\n return material;\n }\n material = new RawShaderMaterial({\n glslVersion: GLSL3,\n vertexShader: IDENT_VERTEX_SHADER,\n fragmentShader: program.shader,\n uniforms: program.uniforms\n });\n programMaterial.set(program, material);\n return material;\n }\n function addOutputType(a, b, operation = "add") {\n const error = () => {\n throw new Error(`Invalid ${operation} types: ${a}, ${b}`);\n };\n if (a === b) return a;\n if (a === "int") {\n if (isIntType(b)) return b;\n error();\n }\n if (b === "int") {\n if (isIntType(a)) return a;\n error();\n }\n if (a === "uint") {\n if (isUintType(b)) return b;\n error();\n }\n if (b === "uint") {\n if (isUintType(a)) return a;\n error();\n }\n if (a === "float") {\n if (isAllFloatType(b)) return b;\n error();\n }\n if (b === "float") {\n if (isAllFloatType(a)) return a;\n error();\n }\n throw new Error(`Invalid ${operation} types: ${a}, ${b}`);\n }\n function subOutputType(a, b) {\n return addOutputType(a, b, "sub");\n }\n function mulOutputType(a, b) {\n const error = () => {\n throw new Error(`Invalid mul types: ${a}, ${b}`);\n };\n const result = (value) => value;\n if (a === "int") {\n if (isIntType(b)) return result(b);\n error();\n }\n if (b === "int") {\n if (isIntType(a)) return result(a);\n error();\n }\n if (a === "uint") {\n if (isUintType(b)) return result(b);\n error();\n }\n if (b === "uint") {\n if (isUintType(a)) return result(a);\n error();\n }\n if (a === "float") {\n if (isAllFloatType(b)) return result(b);\n error();\n }\n if (b === "float") {\n if (isAllFloatType(a)) return result(a);\n error();\n }\n if (isIntType(a) || isUintType(a) || isIntType(b) || isUintType(b)) {\n if (a === b) return result(a);\n error();\n }\n if (a === "vec2") {\n if (b === "vec2" || isMat2(b)) return result("vec2");\n if (b === "mat3x2") return result("vec3");\n if (b === "mat4x2") return result("vec4");\n error();\n }\n if (a === "vec3") {\n if (b === "mat2x3") return result("vec2");\n if (b === "vec3" || isMat3(b)) return result("vec3");\n if (b === "mat4x3") return result("vec4");\n error();\n }\n if (a === "vec4") {\n if (b === "mat2x4") return result("vec2");\n if (b === "mat3x4") return result("vec3");\n if (b === "vec4" || isMat4(b)) return result("vec4");\n error();\n }\n if (b === "vec2") {\n if (isMat2(a)) return result("vec2");\n if (a === "mat2x3") return result("vec3");\n if (a === "mat2x4") return result("vec4");\n error();\n }\n if (b === "vec3") {\n if (a === "mat3x2") return result("vec2");\n if (isMat3(a)) return result("vec3");\n if (a === "mat3x4") return result("vec4");\n error();\n }\n if (b === "vec4") {\n if (a === "mat4x2") return result("vec2");\n if (a === "mat4x3") return result("vec3");\n if (isMat4(a)) return result("vec4");\n error();\n }\n if (isMat2(a)) {\n if (isMat2(b)) return result("mat2");\n if (b === "mat3x2") return result("mat3x2");\n if (b === "mat4x2") return result("mat4x2");\n error();\n }\n if (a === "mat2x3") {\n if (isMat2(b)) return result("mat2x3");\n if (b === "mat3x2") return result("mat3");\n if (b === "mat4x2") return result("mat4x3");\n error();\n }\n if (a === "mat2x4") {\n if (isMat2(b)) return result("mat2x4");\n if (b === "mat3x2") return result("mat3x4");\n if (b === "mat4x2") return result("mat4");\n error();\n }\n if (a === "mat3x2") {\n if (b === "mat2x3") return result("mat2");\n if (isMat3(b)) return result("mat3x2");\n if (b === "mat4x3") return result("mat4x2");\n error();\n }\n if (isMat3(a)) {\n if (b === "mat2x3") return result("mat2x3");\n if (isMat3(b)) return result("mat3");\n if (b === "mat4x3") return result("mat4x3");\n error();\n }\n if (a === "mat3x4") {\n if (b === "mat2x3") return result("mat2x4");\n if (isMat3(b)) return result("mat3x4");\n if (b === "mat4x3") return result("mat4");\n error();\n }\n if (a === "mat4x2") {\n if (b === "mat2x4") return result("mat2");\n if (b === "mat3x4") return result("mat3x2");\n if (isMat4(b)) return result("mat4x2");\n error();\n }\n if (a === "mat4x3") {\n if (b === "mat2x4") return result("mat2x3");\n if (b === "mat3x4") return result("mat3");\n if (isMat4(b)) return result("mat4x3");\n error();\n }\n if (isMat4(a)) {\n if (b === "mat2x4") return result("mat2x4");\n if (b === "mat3x4") return result("mat3x4");\n if (isMat4(b)) return result("mat4");\n error();\n }\n throw new Error(`Invalid mul types: ${a}, ${b}`);\n }\n const add = (a, b) => new Add({ a, b });\n const sub = (a, b) => new Sub({ a, b });\n const mul = (a, b) => new Mul({ a, b });\n class Add extends BinaryOp {\n constructor({ a, b }) {\n super({ a, b, outKey: "sum", outTypeFunc: addOutputType });\n this.statements = ({ inputs, outputs }) => {\n return [`${outputs.sum} = ${inputs.a} + ${inputs.b};`];\n };\n }\n }\n class Sub extends BinaryOp {\n constructor({ a, b }) {\n super({ a, b, outKey: "difference", outTypeFunc: subOutputType });\n this.statements = ({ inputs, outputs }) => {\n return [`${outputs.difference} = ${inputs.a} - ${inputs.b};`];\n };\n }\n }\n class Mul extends BinaryOp {\n constructor({ a, b }) {\n super({ a, b, outKey: "product", outTypeFunc: mulOutputType });\n this.statements = ({ inputs, outputs }) => {\n return [`${outputs.product} = ${inputs.a} * ${inputs.b};`];\n };\n }\n }\n const normalize = (a) => new Normalize({ a });\n const extendVec = (a, b) => new ExtendVec({ a, b });\n class Normalize extends UnaryOp {\n constructor({ a }) {\n super({ a, outTypeFunc: (aType) => aType, outKey: "normalize" });\n this.statements = ({ inputs, outputs }) => [\n `${outputs.normalize} = normalize(${inputs.a});`\n ];\n }\n }\n function extendVecOutputType(type) {\n if (type === "float") return "vec2";\n if (type === "vec2") return "vec3";\n if (type === "vec3") return "vec4";\n throw new Error("Invalid type");\n }\n class ExtendVec extends BinaryOp {\n constructor({ a, b }) {\n const type = valType(a);\n const outType = extendVecOutputType(type);\n super({ a, b, outKey: "extend", outTypeFunc: () => outType });\n this.statements = ({ inputs, outputs }) => [\n `${outputs.extend} = ${outType}(${inputs.a}, ${inputs.b});`\n ];\n }\n }\n const transformPos = (position, {\n scale,\n scales,\n rotate,\n translate\n }) => {\n return new TransformPosition({ position, scale, scales, rotate, translate }).outputs.position;\n };\n const transformDir = (dir, {\n scale,\n scales,\n rotate\n }) => {\n return new TransformDir({ dir, scale, scales, rotate }).outputs.dir;\n };\n class TransformPosition extends Dyno {\n constructor({\n position,\n scale,\n scales,\n rotate,\n translate\n }) {\n super({\n inTypes: {\n position: "vec3",\n scale: "float",\n scales: "vec3",\n rotate: "vec4",\n translate: "vec3"\n },\n outTypes: { position: "vec3" },\n inputs: { position, scale, scales, rotate, translate },\n statements: ({ inputs, outputs }) => {\n const { position: position2 } = outputs;\n if (!position2) {\n return [];\n }\n const { scale: scale2, scales: scales2, rotate: rotate2, translate: translate2 } = inputs;\n return [\n `${position2} = ${inputs.position ?? "vec3(0.0, 0.0, 0.0)"};`,\n !scale2 ? null : `${position2} *= ${scale2};`,\n !scales2 ? null : `${position2} *= ${scales2};`,\n !rotate2 ? null : `${position2} = quatVec(${rotate2}, ${position2});`,\n !translate2 ? null : `${position2} += ${translate2};`\n ].filter(Boolean);\n }\n });\n }\n }\n class TransformDir extends Dyno {\n constructor({\n dir,\n scale,\n scales,\n rotate\n }) {\n super({\n inTypes: { dir: "vec3", scale: "float", scales: "vec3", rotate: "vec4" },\n outTypes: { dir: "vec3" },\n inputs: { dir, scale, scales, rotate },\n statements: ({ inputs, outputs }) => {\n const { dir: dir2 } = outputs;\n if (!dir2) {\n return [];\n }\n const { scale: scale2, scales: scales2, rotate: rotate2 } = inputs;\n return [\n `${dir2} = ${inputs.dir ?? "vec3(0.0, 0.0, 0.0)"};`,\n !scale2 ? null : `${dir2} *= ${scale2};`,\n !scales2 ? null : `${dir2} *= ${scales2};`,\n !rotate2 ? null : `${dir2} = quatVec(${rotate2}, ${dir2});`\n ].filter(Boolean);\n }\n });\n }\n }\n var computeUvec4_default = "precision highp float;\\nprecision highp int;\\nprecision highp sampler2D;\\nprecision highp usampler2D;\\nprecision highp isampler2D;\\nprecision highp sampler2DArray;\\nprecision highp usampler2DArray;\\nprecision highp isampler2DArray;\\nprecision highp sampler3D;\\nprecision highp usampler3D;\\nprecision highp isampler3D;\\n\\n#include \\n\\nuniform uint targetLayer;\\nuniform int targetBase;\\nuniform int targetCount;\\n\\nout uvec4 target;\\n\\n{{ GLOBALS }}\\n\\nvoid produceSplat(int index) {\\n {{ STATEMENTS }}\\n}\\n\\nvoid main() {\\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\\n int index = targetIndex - targetBase;\\n\\n if ((index >= 0) && (index < targetCount)) {\\n produceSplat(index);\\n } else {\\n target = uvec4(0u, 0u, 0u, 0u);\\n }\\n}";\n const _PackedSplats = class _PackedSplats {\n constructor(options = {}) {\n this.maxSplats = 0;\n this.numSplats = 0;\n this.packedArray = null;\n this.isInitialized = false;\n this.target = null;\n this.source = null;\n this.needsUpdate = true;\n this.extra = {};\n this.dyno = new DynoPackedSplats({ packedSplats: this });\n this.initialized = Promise.resolve(this);\n this.reinitialize(options);\n }\n reinitialize(options) {\n this.isInitialized = false;\n if (options.url || options.fileBytes || options.construct) {\n this.initialized = this.asyncInitialize(options).then(() => {\n this.isInitialized = true;\n return this;\n });\n } else {\n this.initialize(options);\n this.isInitialized = true;\n this.initialized = Promise.resolve(this);\n }\n }\n initialize(options) {\n if (options.packedArray) {\n this.packedArray = options.packedArray;\n this.maxSplats = Math.floor(this.packedArray.length / 4);\n this.maxSplats = Math.floor(this.maxSplats / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n this.numSplats = Math.min(\n this.maxSplats,\n options.numSplats ?? Number.POSITIVE_INFINITY\n );\n } else {\n this.maxSplats = options.maxSplats ?? 0;\n this.numSplats = 0;\n }\n this.extra = options.extra ?? {};\n }\n async asyncInitialize(options) {\n let { url, fileBytes, construct } = options;\n if (url) {\n fileBytes = await fetch(url).then(async (response) => {\n if (!response.ok) {\n throw new Error(\n `${response.status} "${response.statusText}" fetching URL: ${url}`\n );\n }\n const arrayBuffer = await response.arrayBuffer();\n return arrayBuffer;\n });\n }\n if (fileBytes) {\n const unpacked = await unpackSplats({\n input: fileBytes,\n fileType: options.fileType,\n pathOrUrl: options.fileName ?? url\n });\n this.initialize(unpacked);\n }\n if (construct) {\n const maybePromise = construct(this);\n if (maybePromise instanceof Promise) {\n await maybePromise;\n }\n }\n }\n // Call this when you are finished with the PackedSplats and want to free\n // any buffers it holds.\n dispose() {\n if (this.target) {\n this.target.dispose();\n this.target = null;\n }\n if (this.source) {\n this.source.dispose();\n this.source = null;\n }\n }\n // Ensures that this.packedArray can fit numSplats Gsplats. If it\'s too small,\n // resize exponentially and copy over the original data.\n //\n // Typically you don\'t need to call this, because calling this.setSplat(index, ...)\n // and this.pushSplat(...) will automatically call ensureSplats() so we have\n // enough splats.\n ensureSplats(numSplats) {\n const targetSize = numSplats <= this.maxSplats ? this.maxSplats : (\n // Grow exponentially to avoid frequent reallocations\n Math.max(numSplats, 2 * this.maxSplats)\n );\n const currentSize = !this.packedArray ? 0 : this.packedArray.length / 4;\n if (!this.packedArray || targetSize > currentSize) {\n this.maxSplats = getTextureSize(targetSize).maxSplats;\n const newArray = new Uint32Array(this.maxSplats * 4);\n if (this.packedArray) {\n newArray.set(this.packedArray);\n }\n this.packedArray = newArray;\n }\n return this.packedArray;\n }\n // Ensure the extra array for the given level is large enough to hold numSplats\n ensureSplatsSh(level, numSplats) {\n let wordsPerSplat;\n let key;\n if (level === 0) {\n return this.ensureSplats(numSplats);\n }\n if (level === 1) {\n wordsPerSplat = 2;\n key = "sh1";\n } else if (level === 2) {\n wordsPerSplat = 4;\n key = "sh2";\n } else if (level === 3) {\n wordsPerSplat = 4;\n key = "sh3";\n } else {\n throw new Error(`Invalid level: ${level}`);\n }\n let maxSplats = !this.extra[key] ? 0 : this.extra[key].length / wordsPerSplat;\n const targetSize = numSplats <= maxSplats ? maxSplats : Math.max(numSplats, 2 * maxSplats);\n if (!this.extra[key] || targetSize > maxSplats) {\n maxSplats = getTextureSize(targetSize).maxSplats;\n const newArray = new Uint32Array(maxSplats * wordsPerSplat);\n if (this.extra[key]) {\n newArray.set(this.extra[key]);\n }\n this.extra[key] = newArray;\n }\n return this.extra[key];\n }\n // Unpack the 16-byte Gsplat data at index into the Three.js components\n // center: THREE.Vector3, scales: THREE.Vector3, quaternion: THREE.Quaternion,\n // opacity: number 0..1, color: THREE.Color 0..1.\n getSplat(index) {\n if (!this.packedArray || index >= this.numSplats) {\n throw new Error("Invalid index");\n }\n return unpackSplat(this.packedArray, index);\n }\n // Set all PackedSplat components at index with the provided Gsplat attributes\n // (can be the same objects returned by getSplat). Ensures there is capacity\n // for at least index+1 Gsplats.\n setSplat(index, center, scales, quaternion, opacity, color) {\n const packedSplats = this.ensureSplats(index + 1);\n setPackedSplat(\n packedSplats,\n index,\n center.x,\n center.y,\n center.z,\n scales.x,\n scales.y,\n scales.z,\n quaternion.x,\n quaternion.y,\n quaternion.z,\n quaternion.w,\n opacity,\n color.r,\n color.g,\n color.b\n );\n this.numSplats = Math.max(this.numSplats, index + 1);\n }\n // Effectively calls this.setSplat(this.numSplats++, center, ...), useful on\n // construction where you just want to iterate and create a collection of Gsplats.\n pushSplat(center, scales, quaternion, opacity, color) {\n const packedSplats = this.ensureSplats(this.numSplats + 1);\n setPackedSplat(\n packedSplats,\n this.numSplats,\n center.x,\n center.y,\n center.z,\n scales.x,\n scales.y,\n scales.z,\n quaternion.x,\n quaternion.y,\n quaternion.z,\n quaternion.w,\n opacity,\n color.r,\n color.g,\n color.b\n );\n ++this.numSplats;\n }\n // Iterate over Gsplats index 0..=(this.numSplats-1), unpack each Gsplat\n // and invoke the callback function with the Gsplat attributes.\n forEachSplat(callback) {\n if (!this.packedArray || !this.numSplats) {\n return;\n }\n for (let i2 = 0; i2 < this.numSplats; ++i2) {\n const unpacked = unpackSplat(this.packedArray, i2);\n callback(\n i2,\n unpacked.center,\n unpacked.scales,\n unpacked.quaternion,\n unpacked.opacity,\n unpacked.color\n );\n }\n }\n // Ensures our PackedSplats.target render target has enough space to generate\n // maxSplats total Gsplats, and reallocate if not large enough.\n ensureGenerate(maxSplats) {\n if (this.target && (maxSplats ?? 1) <= this.maxSplats) {\n return false;\n }\n this.dispose();\n const textureSize = getTextureSize(maxSplats ?? 1);\n const { width, height, depth } = textureSize;\n this.maxSplats = textureSize.maxSplats;\n this.target = new WebGLArrayRenderTarget(width, height, depth, {\n depthBuffer: false,\n stencilBuffer: false,\n generateMipmaps: false,\n magFilter: NearestFilter,\n minFilter: NearestFilter\n });\n this.target.texture.format = RGBAIntegerFormat;\n this.target.texture.type = UnsignedIntType;\n this.target.texture.internalFormat = "RGBA32UI";\n return true;\n }\n // Given an array of splatCounts (.numSplats for each\n // SplatGenerator/SplatMesh in the scene), compute a\n // "mapping layout" in the composite array of generated outputs.\n generateMapping(splatCounts) {\n let maxSplats = 0;\n const mapping = splatCounts.map((numSplats) => {\n const base = maxSplats;\n const rounded = Math.ceil(numSplats / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n maxSplats += rounded;\n return { base, count: numSplats };\n });\n return { maxSplats, mapping };\n }\n // Returns a THREE.DataArrayTexture representing the PackedSplats content as\n // a Uint32x4 data array texture (2048 x 2048 x depth in size)\n getTexture() {\n if (this.target) {\n return this.target.texture;\n }\n if (this.source || this.packedArray) {\n const source = this.maybeUpdateSource();\n return source;\n }\n return _PackedSplats.getEmpty();\n }\n // Check if source texture needs to be created/updated\n maybeUpdateSource() {\n if (!this.packedArray) {\n throw new Error("No packed splats");\n }\n if (this.needsUpdate || !this.source) {\n this.needsUpdate = false;\n if (this.source) {\n const { width, height, depth } = this.source.image;\n if (this.maxSplats !== width * height * depth) {\n this.source.dispose();\n this.source = null;\n }\n }\n if (!this.source) {\n const { width, height, depth } = getTextureSize(this.maxSplats);\n this.source = new DataArrayTexture(\n this.packedArray,\n width,\n height,\n depth\n );\n this.source.format = RGBAIntegerFormat;\n this.source.type = UnsignedIntType;\n this.source.internalFormat = "RGBA32UI";\n this.source.needsUpdate = true;\n } else if (this.packedArray.buffer !== this.source.image.data.buffer) {\n this.source.image.data = new Uint8Array(this.packedArray.buffer);\n }\n this.source.needsUpdate = true;\n }\n return this.source;\n }\n // Can be used where you need an uninitialized THREE.DataArrayTexture like\n // a uniform you will update with the result of this.getTexture() later.\n static getEmpty() {\n if (!_PackedSplats.emptySource) {\n const { width, height, depth, maxSplats } = getTextureSize(1);\n const emptyArray = new Uint32Array(maxSplats * 4);\n _PackedSplats.emptySource = new DataArrayTexture(\n emptyArray,\n width,\n height,\n depth\n );\n _PackedSplats.emptySource.format = RGBAIntegerFormat;\n _PackedSplats.emptySource.type = UnsignedIntType;\n _PackedSplats.emptySource.internalFormat = "RGBA32UI";\n _PackedSplats.emptySource.needsUpdate = true;\n }\n return _PackedSplats.emptySource;\n }\n // Get a program and THREE.RawShaderMaterial for a given GsplatGenerator,\n // generating it if necessary and caching the result.\n prepareProgramMaterial(generator) {\n let program = _PackedSplats.generatorProgram.get(generator);\n if (!program) {\n const graph = dynoBlock(\n { index: "int" },\n { output: "uvec4" },\n ({ index }) => {\n generator.inputs.index = index;\n const gsplat = generator.outputs.gsplat;\n const output = outputPackedSplat(gsplat);\n return { output };\n }\n );\n if (!_PackedSplats.programTemplate) {\n _PackedSplats.programTemplate = new DynoProgramTemplate(\n computeUvec4_default\n );\n }\n program = new DynoProgram({\n graph,\n inputs: { index: "index" },\n outputs: { output: "target" },\n template: _PackedSplats.programTemplate\n });\n Object.assign(program.uniforms, {\n targetLayer: { value: 0 },\n targetBase: { value: 0 },\n targetCount: { value: 0 }\n });\n _PackedSplats.generatorProgram.set(generator, program);\n }\n const material = program.prepareMaterial();\n _PackedSplats.mesh.material = material;\n return { program, material };\n }\n saveRenderState(renderer) {\n return {\n xrPresenting: renderer.xr.isPresenting,\n autoClear: renderer.autoClear,\n scissorTest: renderer.getScissorTest(),\n pixelRatio: renderer.getPixelRatio()\n };\n }\n resetRenderState(renderer, state) {\n renderer.setRenderTarget(null);\n renderer.setPixelRatio(state.pixelRatio);\n renderer.xr.isPresenting = state.xrPresenting;\n renderer.autoClear = state.autoClear;\n renderer.setScissorTest(state.scissorTest);\n }\n // Executes a dyno program specified by generator which is any DynoBlock that\n // maps { index: "int" } to { gsplat: Gsplat }. This is called in\n // ForgeRenderer.updateInternal() to re-generate Gsplats in the scene for\n // SplatGenerator instances whose version is newer than what was generated\n // for it last time.\n generate({\n generator,\n base,\n count,\n renderer\n }) {\n if (!this.target) {\n throw new Error("Target must be initialized with ensureSplats");\n }\n if (base + count > this.maxSplats) {\n throw new Error("Base + count exceeds maxSplats");\n }\n const { program, material } = this.prepareProgramMaterial(generator);\n program.update();\n const renderState = this.saveRenderState(renderer);\n const nextBase = Math.ceil((base + count) / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n const layerSize = SPLAT_TEX_WIDTH * SPLAT_TEX_HEIGHT;\n material.uniforms.targetBase.value = base;\n material.uniforms.targetCount.value = count;\n while (base < nextBase) {\n const layer = Math.floor(base / layerSize);\n material.uniforms.targetLayer.value = layer;\n const layerBase = layer * layerSize;\n const layerYStart = Math.floor((base - layerBase) / SPLAT_TEX_WIDTH);\n const layerYEnd = Math.min(\n SPLAT_TEX_HEIGHT,\n Math.ceil((nextBase - layerBase) / SPLAT_TEX_WIDTH)\n );\n renderer.setPixelRatio(1);\n renderer.setRenderTarget(this.target, layer);\n renderer.xr.isPresenting = false;\n renderer.autoClear = false;\n renderer.setScissorTest(true);\n renderer.setScissor(\n 0,\n layerYStart,\n SPLAT_TEX_WIDTH,\n layerYEnd - layerYStart\n );\n renderer.render(_PackedSplats.scene, _PackedSplats.camera);\n base += SPLAT_TEX_WIDTH * (layerYEnd - layerYStart);\n }\n this.resetRenderState(renderer, renderState);\n return { nextBase };\n }\n };\n _PackedSplats.emptySource = null;\n _PackedSplats.programTemplate = null;\n _PackedSplats.generatorProgram = /* @__PURE__ */ new Map();\n _PackedSplats.geometry = new PlaneGeometry(2, 2);\n _PackedSplats.mesh = new Mesh(\n _PackedSplats.geometry,\n new RawShaderMaterial({ visible: false })\n );\n _PackedSplats.scene = new Scene().add(_PackedSplats.mesh);\n _PackedSplats.camera = new Camera();\n let PackedSplats = _PackedSplats;\n class DynoPackedSplats extends DynoUniform {\n constructor({ packedSplats } = {}) {\n super({\n key: "packedSplats",\n type: TPackedSplats,\n globals: () => [definePackedSplats],\n value: {\n texture: PackedSplats.getEmpty(),\n numSplats: 0\n },\n update: (value) => {\n var _a2, _b2;\n value.texture = ((_a2 = this.packedSplats) == null ? void 0 : _a2.getTexture()) ?? PackedSplats.getEmpty();\n value.numSplats = ((_b2 = this.packedSplats) == null ? void 0 : _b2.numSplats) ?? 0;\n return value;\n }\n });\n this.packedSplats = packedSplats;\n }\n }\n var computeVec4_default = "precision highp float;\\nprecision highp int;\\nprecision highp sampler2D;\\nprecision highp usampler2D;\\nprecision highp isampler2D;\\nprecision highp sampler2DArray;\\nprecision highp usampler2DArray;\\nprecision highp isampler2DArray;\\nprecision highp sampler3D;\\nprecision highp usampler3D;\\nprecision highp isampler3D;\\n\\n#include \\n\\nuniform uint targetLayer;\\nuniform int targetBase;\\nuniform int targetCount;\\n\\nout vec4 target;\\n\\n{{ GLOBALS }}\\n\\nvoid computeReadback(int index) {\\n {{ STATEMENTS }}\\n}\\n\\nvoid main() {\\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\\n int index = targetIndex - targetBase;\\n\\n if ((index >= 0) && (index < targetCount)) {\\n computeReadback(index);\\n } else {\\n target = vec4(0.0, 0.0, 0.0, 0.0);\\n }\\n}";\n const _Readback = class _Readback {\n constructor({ renderer } = {}) {\n this.renderer = renderer;\n this.capacity = 0;\n this.count = 0;\n }\n dispose() {\n if (this.target) {\n this.target.dispose();\n this.target = void 0;\n }\n }\n // Ensure we have a buffer large enough for the readback of count indices.\n // Pass in previous bufer of the desired type.\n ensureBuffer(count, buffer) {\n const roundedCount = Math.ceil(Math.max(1, count) / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n const bytes = roundedCount * 4;\n if (buffer.byteLength >= bytes) {\n return buffer;\n }\n const newBuffer = new ArrayBuffer(bytes);\n if (buffer instanceof ArrayBuffer) {\n return newBuffer;\n }\n const ctor = buffer.constructor;\n return new ctor(newBuffer);\n }\n // Ensure our render target is large enough for the readback of capacity indices.\n ensureCapacity(capacity) {\n const { width, height, depth, maxSplats } = getTextureSize(capacity);\n if (!this.target || maxSplats > this.capacity) {\n this.dispose();\n this.capacity = maxSplats;\n this.target = new WebGLArrayRenderTarget(width, height, depth, {\n depthBuffer: false,\n stencilBuffer: false,\n generateMipmaps: false,\n magFilter: NearestFilter,\n minFilter: NearestFilter\n });\n this.target.texture.format = RGBAFormat;\n this.target.texture.type = UnsignedByteType;\n this.target.texture.internalFormat = "RGBA8";\n }\n }\n // Get a program and THREE.RawShaderMaterial for a given Rgba8Readback,\n // generating it if necessary and caching the result.\n prepareProgramMaterial(reader) {\n let program = _Readback.readbackProgram.get(reader);\n if (!program) {\n const graph = dynoBlock(\n { index: "int" },\n { rgba8: "vec4" },\n ({ index }) => {\n reader.inputs.index = index;\n const rgba8 = new OutputRgba8({ rgba8: reader.outputs.rgba8 });\n return { rgba8 };\n }\n );\n if (!_Readback.programTemplate) {\n _Readback.programTemplate = new DynoProgramTemplate(computeVec4_default);\n }\n program = new DynoProgram({\n graph,\n inputs: { index: "index" },\n outputs: { rgba8: "target" },\n template: _Readback.programTemplate\n });\n Object.assign(program.uniforms, {\n targetLayer: { value: 0 },\n targetBase: { value: 0 },\n targetCount: { value: 0 }\n });\n _Readback.readbackProgram.set(reader, program);\n }\n const material = program.prepareMaterial();\n _Readback.mesh.material = material;\n return { program, material };\n }\n saveRenderState(renderer) {\n return {\n xrPresenting: renderer.xr.isPresenting,\n autoClear: renderer.autoClear,\n scissorTest: renderer.getScissorTest(),\n pixelRatio: renderer.getPixelRatio()\n };\n }\n resetRenderState(renderer, state) {\n renderer.setRenderTarget(null);\n renderer.setPixelRatio(state.pixelRatio);\n renderer.xr.isPresenting = state.xrPresenting;\n renderer.autoClear = state.autoClear;\n renderer.setScissorTest(state.scissorTest);\n }\n process({\n count,\n material\n }) {\n const renderer = this.renderer;\n if (!renderer) {\n throw new Error("No renderer");\n }\n if (!this.target) {\n throw new Error("No target");\n }\n const layerSize = SPLAT_TEX_WIDTH * SPLAT_TEX_HEIGHT;\n material.uniforms.targetBase.value = 0;\n material.uniforms.targetCount.value = count;\n let baseIndex = 0;\n while (baseIndex < count) {\n const layer = Math.floor(baseIndex / layerSize);\n const layerBase = layer * layerSize;\n const layerYEnd = Math.min(\n SPLAT_TEX_HEIGHT,\n Math.ceil((count - layerBase) / SPLAT_TEX_WIDTH)\n );\n material.uniforms.targetLayer.value = layer;\n renderer.setPixelRatio(1);\n renderer.setRenderTarget(this.target, layer);\n renderer.xr.isPresenting = false;\n renderer.autoClear = false;\n renderer.setScissorTest(true);\n renderer.setScissor(0, 0, SPLAT_TEX_WIDTH, layerYEnd);\n renderer.render(_Readback.scene, _Readback.camera);\n baseIndex += SPLAT_TEX_WIDTH * layerYEnd;\n }\n this.count = count;\n }\n async read({\n readback\n }) {\n const renderer = this.renderer;\n if (!renderer) {\n throw new Error("No renderer");\n }\n if (!this.target) {\n throw new Error("No target");\n }\n const roundedCount = Math.ceil(this.count / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n if (readback.byteLength < roundedCount * 4) {\n throw new Error(\n `Readback buffer too small: ${readback.byteLength} < ${roundedCount * 4}`\n );\n }\n const readbackUint8 = new Uint8Array(\n readback instanceof ArrayBuffer ? readback : readback.buffer\n );\n const layerSize = SPLAT_TEX_WIDTH * SPLAT_TEX_HEIGHT;\n let baseIndex = 0;\n const promises = [];\n while (baseIndex < this.count) {\n const layer = Math.floor(baseIndex / layerSize);\n const layerBase = layer * layerSize;\n const layerYEnd = Math.min(\n SPLAT_TEX_HEIGHT,\n Math.ceil((this.count - layerBase) / SPLAT_TEX_WIDTH)\n );\n renderer.setPixelRatio(1);\n renderer.setRenderTarget(this.target, layer);\n const readbackSize = SPLAT_TEX_WIDTH * layerYEnd * 4;\n const subReadback = readbackUint8.subarray(\n layerBase * 4,\n layerBase * 4 + readbackSize\n );\n const promise = renderer == null ? void 0 : renderer.readRenderTargetPixelsAsync(\n this.target,\n 0,\n 0,\n SPLAT_TEX_WIDTH,\n layerYEnd,\n subReadback\n );\n promises.push(promise);\n baseIndex += SPLAT_TEX_WIDTH * layerYEnd;\n }\n return Promise.all(promises).then(() => readback);\n }\n // Perform render operation to run the Rgba8Readback program\n // but don\'t perform the readback yet.\n render({\n reader,\n count,\n renderer\n }) {\n this.renderer = renderer || this.renderer;\n if (!this.renderer) {\n throw new Error("No renderer");\n }\n this.ensureCapacity(count);\n const { program, material } = this.prepareProgramMaterial(reader);\n program.update();\n const renderState = this.saveRenderState(this.renderer);\n this.process({ count, material });\n this.resetRenderState(this.renderer, renderState);\n }\n // Perform a readback of the render target, returning a buffer of the\n // given type.\n async readback({\n readback\n }) {\n if (!this.renderer) {\n throw new Error("No renderer");\n }\n const renderState = this.saveRenderState(this.renderer);\n const promise = this.read({ readback });\n this.resetRenderState(this.renderer, renderState);\n return promise;\n }\n // Perform a render and readback operation for the given Rgba8Readback,\n // and readback buffer (call ensureBuffer first).\n async renderReadback({\n reader,\n count,\n renderer,\n readback\n }) {\n this.renderer = renderer || this.renderer;\n if (!this.renderer) {\n throw new Error("No renderer");\n }\n this.ensureCapacity(count);\n const { program, material } = this.prepareProgramMaterial(reader);\n program.update();\n const renderState = this.saveRenderState(this.renderer);\n this.process({ count, material });\n const promise = this.read({ readback });\n this.resetRenderState(this.renderer, renderState);\n return promise;\n }\n getTexture() {\n var _a2;\n return (_a2 = this.target) == null ? void 0 : _a2.texture;\n }\n };\n _Readback.programTemplate = null;\n _Readback.readbackProgram = /* @__PURE__ */ new Map();\n _Readback.geometry = new PlaneGeometry(2, 2);\n _Readback.mesh = new Mesh(\n _Readback.geometry,\n new RawShaderMaterial({ visible: false })\n );\n _Readback.scene = new Scene().add(_Readback.mesh);\n _Readback.camera = new Camera();\n let Readback = _Readback;\n const _RgbaArray = class _RgbaArray {\n constructor(options = {}) {\n this.capacity = 0;\n this.count = 0;\n this.array = null;\n this.readback = null;\n this.source = null;\n this.needsUpdate = true;\n this.dyno = new DynoUniform({\n key: "rgbaArray",\n type: TRgbaArray,\n globals: () => [defineRgbaArray],\n value: {\n texture: _RgbaArray.getEmpty(),\n count: 0\n },\n update: (value) => {\n var _a2;\n value.texture = ((_a2 = this.readback) == null ? void 0 : _a2.getTexture()) ?? this.source ?? _RgbaArray.getEmpty();\n value.count = this.count;\n return value;\n }\n });\n if (options.array) {\n this.array = options.array;\n this.capacity = Math.floor(this.array.length / 4);\n this.capacity = Math.floor(this.capacity / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n this.count = Math.min(\n this.capacity,\n options.count ?? Number.POSITIVE_INFINITY\n );\n } else {\n this.capacity = options.capacity ?? 0;\n this.count = 0;\n }\n }\n // Free up resources\n dispose() {\n if (this.readback) {\n this.readback.dispose();\n this.readback = null;\n }\n if (this.source) {\n this.source.dispose();\n this.source = null;\n }\n }\n // Ensure that our array is large enough to hold capacity RGBA8 values.\n ensureCapacity(capacity) {\n var _a2;\n if (!this.array || capacity > (((_a2 = this.array) == null ? void 0 : _a2.length) ?? 0) / 4) {\n this.capacity = getTextureSize(capacity).maxSplats;\n const newArray = new Uint8Array(this.capacity * 4);\n if (this.array) {\n newArray.set(this.array);\n }\n this.array = newArray;\n }\n return this.array;\n }\n // Get the THREE.DataArrayTexture from either the readback or the source.\n getTexture() {\n var _a2;\n let texture = (_a2 = this.readback) == null ? void 0 : _a2.getTexture();\n if (this.source || this.array) {\n texture = this.maybeUpdateSource();\n }\n return texture ?? _RgbaArray.getEmpty();\n }\n // Create or get a THREE.DataArrayTexture from the data array.\n maybeUpdateSource() {\n if (!this.array) {\n throw new Error("No array");\n }\n if (this.needsUpdate || !this.source) {\n this.needsUpdate = false;\n if (this.source) {\n const { width, height, depth } = this.source.image;\n if (this.capacity !== width * height * depth) {\n this.source.dispose();\n this.source = null;\n }\n }\n if (!this.source) {\n const { width, height, depth } = getTextureSize(this.capacity);\n this.source = new DataArrayTexture(\n this.array,\n width,\n height,\n depth\n );\n this.source.format = RGBAFormat;\n this.source.type = UnsignedByteType;\n this.source.internalFormat = "RGBA8";\n this.source.needsUpdate = true;\n } else if (this.array.buffer !== this.source.image.data.buffer) {\n this.source.image.data = new Uint8Array(this.array.buffer);\n }\n this.source.needsUpdate = true;\n }\n return this.source;\n }\n // Generate the RGBA8 values from a Rgba8Readback dyno program.\n render({\n reader,\n count,\n renderer\n }) {\n if (!this.readback) {\n this.readback = new Readback({ renderer });\n }\n this.readback.render({ reader, count, renderer });\n this.capacity = this.readback.capacity;\n this.count = this.readback.count;\n }\n // Extract the RGBA8 values from a PackedSplats collection.\n fromPackedSplats({\n packedSplats,\n base,\n count,\n renderer\n }) {\n const { dynoSplats, dynoBase, dynoCount, reader } = _RgbaArray.makeDynos();\n dynoSplats.packedSplats = packedSplats;\n dynoBase.value = base;\n dynoCount.value = count;\n this.render({ reader, count, renderer });\n return this;\n }\n // Read back the RGBA8 values from the readback buffer.\n async read() {\n if (!this.readback) {\n throw new Error("No readback");\n }\n if (!this.array || this.array.length < this.count * 4) {\n this.array = new Uint8Array(this.capacity * 4);\n }\n const result = await this.readback.readback({ readback: this.array });\n return result.subarray(0, this.count * 4);\n }\n // Can be used where you need an uninitialized THREE.DataArrayTexture like\n // a uniform you will update with the result of this.getTexture() later.\n static getEmpty() {\n if (!_RgbaArray.emptySource) {\n const emptyArray = new Uint8Array(1 * 4);\n _RgbaArray.emptySource = new DataArrayTexture(emptyArray, 1, 1, 1);\n _RgbaArray.emptySource.format = RGBAFormat;\n _RgbaArray.emptySource.type = UnsignedByteType;\n _RgbaArray.emptySource.internalFormat = "RGBA8";\n _RgbaArray.emptySource.needsUpdate = true;\n }\n return _RgbaArray.emptySource;\n }\n // Create a dyno program that can extract RGBA8 values from a PackedSplats\n static makeDynos() {\n if (!_RgbaArray.dynos) {\n const dynoSplats = new DynoPackedSplats();\n const dynoBase = new DynoInt({ value: 0 });\n const dynoCount = new DynoInt({ value: 0 });\n const reader = dynoBlock(\n { index: "int" },\n { rgba8: "vec4" },\n ({ index }) => {\n if (!index) {\n throw new Error("index is undefined");\n }\n index = add(index, dynoBase);\n const gsplat = readPackedSplatRange(\n dynoSplats,\n index,\n dynoBase,\n dynoCount\n );\n return { rgba8: splitGsplat(gsplat).outputs.rgba };\n }\n );\n _RgbaArray.dynos = { dynoSplats, dynoBase, dynoCount, reader };\n }\n return _RgbaArray.dynos;\n }\n };\n _RgbaArray.emptySource = null;\n _RgbaArray.dynos = null;\n let RgbaArray = _RgbaArray;\n const TRgbaArray = { type: "RgbaArray" };\n const defineRgbaArray = unindent(`\n struct RgbaArray {\n sampler2DArray texture;\n int count;\n };\n`);\n function readRgbaArray(rgba, index) {\n const dyno2 = new Dyno({\n inTypes: { rgba: TRgbaArray, index: "int" },\n outTypes: { rgba: "vec4" },\n inputs: { rgba, index },\n globals: () => [defineRgbaArray],\n statements: ({ inputs, outputs }) => unindentLines(`\n if ((index >= 0) && (index < ${inputs.rgba}.count)) {\n ${outputs.rgba} = texelFetch(${inputs.rgba}.texture, splatTexCoord(index), 0);\n } else {\n ${outputs.rgba} = vec4(0.0, 0.0, 0.0, 0.0);\n }\n `)\n });\n return dyno2.outputs.rgba;\n }\n function sdfTypeToNumber(type) {\n switch (type) {\n case "all":\n return 0;\n case "plane":\n return 1;\n case "sphere":\n return 2;\n case "box":\n return 3;\n case "ellipsoid":\n return 4;\n case "cylinder":\n return 5;\n case "capsule":\n return 6;\n case "infinite_cone":\n return 7;\n default:\n throw new Error(`Unknown SDF type: ${type}`);\n }\n }\n function rgbaBlendModeToNumber(mode) {\n switch (mode) {\n case "multiply":\n return 0;\n case "set_rgb":\n return 1;\n case "add_rgba":\n return 2;\n default:\n throw new Error(`Unknown blend mode: ${mode}`);\n }\n }\n class SplatEditSdf extends Object3D {\n constructor(options = {}) {\n super();\n const { type, invert, opacity, color, displace, radius } = options;\n this.type = type ?? "sphere";\n this.invert = invert ?? false;\n this.opacity = opacity ?? 1;\n this.color = color ?? new Color(1, 1, 1);\n this.displace = displace ?? new Vector3(0, 0, 0);\n this.radius = radius ?? 0;\n }\n }\n const _SplatEdit = class _SplatEdit extends Object3D {\n constructor(options = {}) {\n const {\n name,\n rgbaBlendMode = "multiply",\n sdfSmooth = 0,\n softEdge = 0,\n invert = false,\n sdfs = null\n } = options;\n super();\n this.rgbaBlendMode = rgbaBlendMode;\n this.sdfSmooth = sdfSmooth;\n this.softEdge = softEdge;\n this.invert = invert;\n this.sdfs = sdfs;\n this.ordering = _SplatEdit.nextOrdering++;\n this.name = name ?? `Edit ${this.ordering}`;\n }\n addSdf(sdf) {\n if (this.sdfs == null) {\n this.sdfs = [];\n }\n this.sdfs.push(sdf);\n }\n removeSdf(sdf) {\n if (this.sdfs == null) {\n return;\n }\n this.sdfs = this.sdfs.filter((s) => s !== sdf);\n }\n };\n _SplatEdit.nextOrdering = 1;\n let SplatEdit = _SplatEdit;\n class SplatEdits {\n constructor({ maxSdfs, maxEdits }) {\n this.maxSdfs = Math.max(16, maxSdfs ?? 0);\n this.numSdfs = 0;\n this.sdfData = new Uint32Array(this.maxSdfs * 8 * 4);\n this.sdfFloatData = new Float32Array(this.sdfData.buffer);\n this.sdfTexture = this.newSdfTexture(this.sdfData, this.maxSdfs);\n this.dynoSdfArray = new DynoUniform({\n key: "sdfArray",\n type: SdfArray,\n globals: () => [defineSdfArray],\n value: {\n numSdfs: 0,\n sdfTexture: this.sdfTexture\n },\n update: (uniform) => {\n uniform.numSdfs = this.numSdfs;\n uniform.sdfTexture = this.sdfTexture;\n return uniform;\n }\n });\n this.maxEdits = Math.max(16, maxEdits ?? 0);\n this.numEdits = 0;\n this.editData = new Uint32Array(this.maxEdits * 4);\n this.editFloatData = new Float32Array(this.editData.buffer);\n this.dynoNumEdits = new DynoInt({ value: 0 });\n this.dynoEdits = this.newEdits(this.editData, this.maxEdits);\n }\n newSdfTexture(data, maxSdfs) {\n const texture = new DataTexture(\n data,\n 8,\n maxSdfs,\n RGBAIntegerFormat,\n UnsignedIntType\n );\n texture.internalFormat = "RGBA32UI";\n texture.needsUpdate = true;\n return texture;\n }\n newEdits(data, maxEdits) {\n return new DynoUniform({\n key: "edits",\n type: "uvec4",\n count: maxEdits,\n globals: () => [defineEdit],\n value: data\n });\n }\n // Ensure our SDF texture and edits uniform array have enough capacity.\n // Reallocate if not.\n ensureCapacity({\n maxSdfs,\n maxEdits\n }) {\n let dynoUpdated = false;\n if (maxSdfs > this.sdfTexture.image.height) {\n this.sdfTexture.dispose();\n this.maxSdfs = Math.max(this.maxSdfs * 2, maxSdfs);\n this.sdfData = new Uint32Array(this.maxSdfs * 8 * 4);\n this.sdfFloatData = new Float32Array(this.sdfData.buffer);\n this.sdfTexture = this.newSdfTexture(this.sdfData, this.maxSdfs);\n }\n if (maxEdits > (this.dynoEdits.count ?? 0)) {\n this.maxEdits = Math.max(this.maxEdits * 2, maxEdits);\n this.editData = new Uint32Array(this.maxEdits * 4);\n this.editFloatData = new Float32Array(this.editData.buffer);\n this.dynoEdits = this.newEdits(this.editData, this.maxEdits);\n dynoUpdated = true;\n }\n return dynoUpdated;\n }\n updateEditData(offset, value) {\n const updated = this.editData[offset] !== value;\n this.editData[offset] = value;\n return updated;\n }\n updateEditFloatData(offset, value) {\n tempFloat32[0] = value;\n const updated = this.editFloatData[offset] !== tempFloat32[0];\n if (updated) {\n this.editFloatData[offset] = tempFloat32[0];\n }\n return updated;\n }\n encodeEdit(editIndex, {\n sdfFirst,\n sdfCount,\n invert,\n rgbaBlendMode,\n softEdge,\n sdfSmooth\n }) {\n const base = editIndex * 4;\n let updated = false;\n updated = this.updateEditData(base + 0, rgbaBlendMode | (invert ? 1 << 8 : 0)) || updated;\n updated = this.updateEditData(base + 1, sdfFirst | sdfCount << 16) || updated;\n updated = this.updateEditFloatData(base + 2, softEdge) || updated;\n updated = this.updateEditFloatData(base + 3, sdfSmooth) || updated;\n return updated;\n }\n updateSdfData(offset, value) {\n const updated = this.sdfData[offset] !== value;\n this.sdfData[offset] = value;\n return updated;\n }\n updateSdfFloatData(offset, value) {\n tempFloat32[0] = value;\n const updated = this.sdfFloatData[offset] !== tempFloat32[0];\n if (updated) {\n this.sdfFloatData[offset] = tempFloat32[0];\n }\n return updated;\n }\n encodeSdf(sdfIndex, {\n sdfType,\n invert,\n center,\n quaternion,\n scale,\n sizes\n }, values) {\n const base = sdfIndex * (8 * 4);\n const flags = sdfType | (invert ? 1 << 8 : 0);\n let updated = false;\n updated = this.updateSdfFloatData(base + 0, (center == null ? void 0 : center.x) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 1, (center == null ? void 0 : center.y) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 2, (center == null ? void 0 : center.z) ?? 0) || updated;\n updated = this.updateSdfData(base + 3, flags) || updated;\n updated = this.updateSdfFloatData(base + 4, (quaternion == null ? void 0 : quaternion.x) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 5, (quaternion == null ? void 0 : quaternion.y) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 6, (quaternion == null ? void 0 : quaternion.z) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 7, (quaternion == null ? void 0 : quaternion.w) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 8, (scale == null ? void 0 : scale.x) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 9, (scale == null ? void 0 : scale.y) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 10, (scale == null ? void 0 : scale.z) ?? 0) || updated;\n updated = this.updateSdfData(base + 11, 0) || updated;\n updated = this.updateSdfFloatData(base + 12, (sizes == null ? void 0 : sizes.x) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 13, (sizes == null ? void 0 : sizes.y) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 14, (sizes == null ? void 0 : sizes.z) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 15, (sizes == null ? void 0 : sizes.w) ?? 0) || updated;\n const nValues = Math.min(4, values.length);\n for (let i2 = 0; i2 < nValues; ++i2) {\n const vBase = base + 16 + i2 * 4;\n updated = this.updateSdfFloatData(vBase + 0, values[i2].x) || updated;\n updated = this.updateSdfFloatData(vBase + 1, values[i2].y) || updated;\n updated = this.updateSdfFloatData(vBase + 2, values[i2].z) || updated;\n updated = this.updateSdfFloatData(vBase + 3, values[i2].w) || updated;\n }\n return updated;\n }\n // Update the SDFs and edits from an array of SplatEdits and their\n // associated SplatEditSdfs, updating it for the dyno shader program.\n update(edits) {\n const sdfCount = edits.reduce((total, { sdfs }) => total + sdfs.length, 0);\n const dynoUpdated = this.ensureCapacity({\n maxEdits: edits.length,\n maxSdfs: sdfCount\n });\n const values = [new Vector4(), new Vector4()];\n const center = new Vector3();\n const quaternion = new Quaternion();\n const scale = new Vector3();\n const sizes = new Vector4();\n let sdfIndex = 0;\n let updated = dynoUpdated;\n if (edits.length !== this.dynoNumEdits.value) {\n this.dynoNumEdits.value = edits.length;\n this.numEdits = edits.length;\n updated = true;\n }\n for (const [editIndex, { edit, sdfs }] of edits.entries()) {\n updated = this.encodeEdit(editIndex, {\n sdfFirst: sdfIndex,\n sdfCount: sdfs.length,\n invert: edit.invert,\n rgbaBlendMode: rgbaBlendModeToNumber(edit.rgbaBlendMode),\n softEdge: edit.softEdge,\n sdfSmooth: edit.sdfSmooth\n }) || updated;\n let sdfUpdated = false;\n for (const sdf of sdfs) {\n sizes.set(sdf.scale.x, sdf.scale.y, sdf.scale.z, sdf.radius);\n sdf.scale.setScalar(1);\n sdf.updateMatrixWorld();\n const worldToSdf = sdf.matrixWorld.clone().invert();\n worldToSdf.decompose(center, quaternion, scale);\n sdf.scale.set(sizes.x, sizes.y, sizes.z);\n sdf.updateMatrixWorld();\n values[0].set(sdf.color.r, sdf.color.g, sdf.color.b, sdf.opacity);\n values[1].set(sdf.displace.x, sdf.displace.y, sdf.displace.z, 1);\n sdfUpdated = this.encodeSdf(\n sdfIndex,\n {\n sdfType: sdfTypeToNumber(sdf.type),\n invert: sdf.invert,\n center,\n quaternion,\n scale,\n sizes\n },\n values\n ) || sdfUpdated;\n sdfIndex += 1;\n }\n this.numSdfs = sdfIndex;\n if (sdfUpdated) {\n this.sdfTexture.needsUpdate = true;\n }\n updated || (updated = sdfUpdated);\n }\n return { updated, dynoUpdated };\n }\n // Modify a Gsplat in a dyno shader program using the current edits and SDFs.\n modify(gsplat) {\n return applyGsplatRgbaDisplaceEdits(\n gsplat,\n this.dynoSdfArray,\n this.dynoNumEdits,\n this.dynoEdits\n );\n }\n }\n const SdfArray = { type: "SdfArray" };\n const defineSdfArray = unindent(`\n struct SdfArray {\n int numSdfs;\n usampler2D sdfTexture;\n };\n\n void unpackSdfArray(\n usampler2D sdfTexture, int sdfIndex, out uint flags,\n out vec3 center, out vec4 quaternion, out vec3 scale, out vec4 sizes,\n int numValues, out vec4 values[4]\n ) {\n uvec4 temp = texelFetch(sdfTexture, ivec2(0, sdfIndex), 0);\n flags = temp.w;\n center = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z));\n\n temp = texelFetch(sdfTexture, ivec2(1, sdfIndex), 0);\n quaternion = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n\n temp = texelFetch(sdfTexture, ivec2(2, sdfIndex), 0);\n scale = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z));\n\n temp = texelFetch(sdfTexture, ivec2(3, sdfIndex), 0);\n sizes = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n\n for (int i = 0; i < numValues; ++i) {\n temp = texelFetch(sdfTexture, ivec2(4 + i, sdfIndex), 0);\n values[i] = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n }\n }\n\n const uint SDF_FLAG_TYPE = 0xFFu;\n const uint SDF_FLAG_INVERT = 1u << 8u;\n\n const uint SDF_TYPE_ALL = 0u;\n const uint SDF_TYPE_PLANE = 1u;\n const uint SDF_TYPE_SPHERE = 2u;\n const uint SDF_TYPE_BOX = 3u;\n const uint SDF_TYPE_ELLIPSOID = 4u;\n const uint SDF_TYPE_CYLINDER = 5u;\n const uint SDF_TYPE_CAPSULE = 6u;\n const uint SDF_TYPE_INFINITE_CONE = 7u;\n\n float evaluateSdfArray(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos,\n float smoothK, int numValues, out vec4 outValues[4]\n ) {\n float distanceAccum = (smoothK == 0.0) ? 1.0 / 0.0 : 0.0;\n float maxExp = -1.0 / 0.0;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] = vec4(0.0);\n }\n\n uint flags;\n vec3 center, scale;\n vec4 quaternion, sizes;\n vec4 values[4];\n\n int sdfLast = min(sdfFirst + sdfCount, numSdfs);\n for (int index = sdfFirst; index < sdfLast; ++index) {\n unpackSdfArray(sdfTexture, index, flags, center, quaternion, scale, sizes, numValues, values);\n uint sdfType = flags & SDF_FLAG_TYPE;\n vec3 sdfPos = quatVec(quaternion, pos * scale) + center;\n\n float distance;\n switch (sdfType) {\n case SDF_TYPE_ALL:\n distance = -1.0 / 0.0;\n break;\n case SDF_TYPE_PLANE: {\n distance = sdfPos.z;\n break;\n }\n case SDF_TYPE_SPHERE: {\n distance = length(sdfPos) - sizes.w;\n break;\n }\n case SDF_TYPE_BOX: {\n vec3 q = abs(sdfPos) - sizes.xyz + sizes.w;\n distance = length(max(q, 0.0)) + min(max(q.x, max(q.y, q.z)), 0.0) - sizes.w;\n break;\n }\n case SDF_TYPE_ELLIPSOID: {\n vec3 sizes = sizes.xyz;\n float k0 = length(sdfPos / sizes);\n float k1 = length(sdfPos / dot(sizes, sizes));\n distance = k0 * (k0 - 1.0) / k1;\n break;\n }\n case SDF_TYPE_CYLINDER: {\n vec2 d = abs(vec2(length(sdfPos.xz), sdfPos.y)) - sizes.wy;\n distance = min(max(d.x, d.y), 0.0) + length(max(d, 0.0));\n break;\n }\n case SDF_TYPE_CAPSULE: {\n sdfPos.y -= clamp(sdfPos.y, -0.5 * sizes.y, 0.5 * sizes.y);\n distance = length(sdfPos) - sizes.w;\n break;\n }\n case SDF_TYPE_INFINITE_CONE: {\n float angle = 0.25 * PI * sizes.w;\n vec2 c = vec2(sin(angle), cos(angle));\n vec2 q = vec2(length(sdfPos.xy), -sdfPos.z);\n float d = length(q - c * max(dot(q, c), 0.0));\n distance = d * (((q.x * c.y - q.y * c.x) < 0.0) ? -1.0 : 1.0);\n break;\n }\n }\n\n if ((flags & SDF_FLAG_INVERT) != 0u) {\n distance = -distance;\n }\n\n if (smoothK == 0.0) {\n if (distance < distanceAccum) {\n distanceAccum = distance;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] = values[i];\n }\n }\n } else {\n float scaledDistance = -distance / smoothK;\n if (scaledDistance > maxExp) {\n float scale = exp(maxExp - scaledDistance);\n distanceAccum *= scale;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] *= scale;\n }\n maxExp = scaledDistance;\n }\n\n float weight = exp(scaledDistance - maxExp);\n distanceAccum += weight;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] += weight * values[i];\n }\n }\n }\n\n if (smoothK == 0.0) {\n return distanceAccum;\n } else {\n // Very distant SDFs may result in 0 accumulation\n if (distanceAccum == 0.0) {\n return 1.0 / 0.0;\n }\n for (int i = 0; i < numValues; ++i) {\n outValues[i] /= distanceAccum;\n }\n return (-log(distanceAccum) - maxExp) * smoothK;\n }\n }\n\n float modulateSdfArray(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos,\n float smoothK, int numValues, out vec4 values[4],\n float softEdge, bool invert\n ) {\n float distance = evaluateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, numValues, values);\n if (invert) {\n distance = -distance;\n }\n\n return (softEdge == 0.0) ? ((distance < 0.0) ? 1.0 : 0.0)\n : clamp(-distance / softEdge + 0.5, 0.0, 1.0);\n }\n`);\n const defineEdit = unindent(`\n const uint EDIT_FLAG_BLEND = 0xFFu;\n const uint EDIT_BLEND_MULTIPLY = 0u;\n const uint EDIT_BLEND_SET_RGB = 1u;\n const uint EDIT_BLEND_ADD_RGBA = 2u;\n const uint EDIT_FLAG_INVERT = 0x100u;\n\n void decodeEdit(\n uvec4 packedEdit, out int sdfFirst, out int sdfCount,\n out bool invert, out uint rgbaBlendMode, out float softEdge, out float sdfSmooth\n ) {\n rgbaBlendMode = packedEdit.x & EDIT_FLAG_BLEND;\n invert = (packedEdit.x & EDIT_FLAG_INVERT) != 0u;\n\n sdfFirst = int(packedEdit.y & 0xFFFFu);\n sdfCount = int(packedEdit.y >> 16u);\n\n softEdge = uintBitsToFloat(packedEdit.z);\n sdfSmooth = uintBitsToFloat(packedEdit.w);\n }\n\n void applyRgbaDisplaceEdit(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, inout vec3 pos,\n float smoothK, float softEdge, bool invert, uint rgbaBlendMode, inout vec4 rgba\n ) {\n vec4 values[4];\n float modulate = modulateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, 2, values, softEdge, invert);\n // On Android, moving values[0] is necessary to work around a compiler bug.\n vec4 sdfRgba = values[0];\n vec4 sdfDisplaceScale = values[1];\n\n vec4 target;\n switch (rgbaBlendMode) {\n case EDIT_BLEND_MULTIPLY:\n target = rgba * sdfRgba;\n break;\n case EDIT_BLEND_SET_RGB:\n target = vec4(sdfRgba.rgb, rgba.a * sdfRgba.a);\n break;\n case EDIT_BLEND_ADD_RGBA:\n target = rgba + sdfRgba;\n break;\n default:\n // Debug output if blend mode not set\n target = vec4(fract(pos), 1.0);\n }\n rgba = mix(rgba, target, modulate);\n pos += sdfDisplaceScale.xyz * modulate;\n }\n\n void applyPackedRgbaDisplaceEdit(uvec4 packedEdit, usampler2D sdfTexture, int numSdfs, inout vec3 pos, inout vec4 rgba) {\n int sdfFirst, sdfCount;\n bool invert;\n uint rgbaBlendMode;\n float softEdge, sdfSmooth;\n decodeEdit(packedEdit, sdfFirst, sdfCount, invert, rgbaBlendMode, softEdge, sdfSmooth);\n applyRgbaDisplaceEdit(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, sdfSmooth, softEdge, invert, rgbaBlendMode, rgba);\n }\n`);\n function applyGsplatRgbaDisplaceEdits(gsplat, sdfArray, numEdits, rgbaDisplaceEdits) {\n const dyno2 = new Dyno({\n inTypes: {\n gsplat: Gsplat,\n sdfArray: SdfArray,\n numEdits: "int",\n rgbaDisplaceEdits: "uvec4"\n },\n outTypes: { gsplat: Gsplat },\n globals: () => [defineSdfArray, defineEdit],\n inputs: { gsplat, sdfArray, numEdits, rgbaDisplaceEdits },\n statements: ({ inputs, outputs }) => {\n const { sdfArray: sdfArray2, numEdits: numEdits2, rgbaDisplaceEdits: rgbaDisplaceEdits2 } = inputs;\n const { gsplat: gsplat2 } = outputs;\n return unindentLines(`\n ${gsplat2} = ${inputs.gsplat};\n if (isGsplatActive(${gsplat2}.flags)) {\n for (int editIndex = 0; editIndex < ${numEdits2}; ++editIndex) {\n applyPackedRgbaDisplaceEdit(\n ${rgbaDisplaceEdits2}[editIndex], ${sdfArray2}.sdfTexture, ${sdfArray2}.numSdfs,\n ${gsplat2}.center, ${gsplat2}.rgba\n );\n }\n }\n `);\n }\n });\n return dyno2.outputs.gsplat;\n }\n const tempFloat32 = new Float32Array(1);\n class SplatTransformer {\n // Create the dyno uniforms that parameterize the transform, setting them\n // to initial values that are different from any valid transform.\n constructor() {\n this.scale = new DynoFloat({ value: Number.NEGATIVE_INFINITY });\n this.rotate = new DynoVec4({\n value: new Quaternion(\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY\n )\n });\n this.translate = new DynoVec3({\n value: new Vector3(\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY\n )\n });\n }\n // Apply the transform to a Vec3 position in a dyno program.\n apply(position) {\n return transformPos(position, {\n scale: this.scale,\n rotate: this.rotate,\n translate: this.translate\n });\n }\n applyDir(dir) {\n return transformDir(dir, {\n rotate: this.rotate\n });\n }\n // Apply the transform to a Gsplat in a dyno program.\n applyGsplat(gsplat) {\n return transformGsplat(gsplat, {\n scale: this.scale,\n rotate: this.rotate,\n translate: this.translate\n });\n }\n // Update the uniforms to match the given transform matrix.\n updateFromMatrix(transform) {\n const scale = new Vector3();\n const quaternion = new Quaternion();\n const position = new Vector3();\n transform.decompose(position, quaternion, scale);\n const newScale = (scale.x + scale.y + scale.z) / 3;\n let updated = false;\n if (newScale !== this.scale.value) {\n this.scale.value = newScale;\n updated = true;\n }\n if (!position.equals(this.translate.value)) {\n this.translate.value.copy(position);\n updated = true;\n }\n if (!quaternion.equals(this.rotate.value)) {\n this.rotate.value.copy(quaternion);\n updated = true;\n }\n return updated;\n }\n // Update this transform to match the object\'s to-world transform.\n update(object) {\n object.updateMatrixWorld();\n return this.updateFromMatrix(object.matrixWorld);\n }\n }\n class SplatGenerator extends Object3D {\n constructor({\n numSplats,\n generator,\n construct,\n update\n }) {\n super();\n this.numSplats = numSplats ?? 0;\n this.generator = generator;\n this.frameUpdate = update;\n this.version = 0;\n if (construct) {\n const constructed = construct(this);\n Object.assign(this, constructed);\n }\n }\n updateVersion() {\n this.version += 1;\n }\n set needsUpdate(value) {\n if (value) {\n this.updateVersion();\n }\n }\n }\n const _SplatMesh = class _SplatMesh extends SplatGenerator {\n constructor(options = {}) {\n const transform = new SplatTransformer();\n const viewToWorld = new SplatTransformer();\n const worldToView = new SplatTransformer();\n const viewToObject = new SplatTransformer();\n const recolor = new DynoVec4({\n value: new Vector4(\n Number.NEGATIVE_INFINITY,\n Number.NEGATIVE_INFINITY,\n Number.NEGATIVE_INFINITY,\n Number.NEGATIVE_INFINITY\n )\n });\n const time = new DynoFloat({ value: 0 });\n const deltaTime = new DynoFloat({ value: 0 });\n const context = {\n transform,\n viewToWorld,\n worldToView,\n viewToObject,\n recolor,\n time,\n deltaTime\n };\n super({\n update: ({ time: time2, deltaTime: deltaTime2, viewToWorld: viewToWorld2, globalEdits }) => this.update({ time: time2, deltaTime: deltaTime2, viewToWorld: viewToWorld2, globalEdits })\n });\n this.isInitialized = false;\n this.recolor = new Color(1, 1, 1);\n this.opacity = 1;\n this.enableViewToObject = false;\n this.enableViewToWorld = false;\n this.enableWorldToView = false;\n this.skinning = null;\n this.edits = null;\n this.rgbaDisplaceEdits = null;\n this.splatRgba = null;\n this.maxSh = 3;\n this.packedSplats = options.packedSplats ?? new PackedSplats();\n this.numSplats = this.packedSplats.numSplats;\n this.editable = options.editable ?? true;\n this.onFrame = options.onFrame;\n this.context = context;\n this.objectModifier = options.objectModifier;\n this.worldModifier = options.worldModifier;\n this.updateGenerator();\n if (options.url || options.fileBytes || options.constructSplats || options.packedSplats && !options.packedSplats.isInitialized) {\n this.initialized = this.asyncInitialize(options).then(async () => {\n this.updateGenerator();\n this.isInitialized = true;\n if (options.onLoad) {\n const maybePromise = options.onLoad(this);\n if (maybePromise instanceof Promise) {\n await maybePromise;\n }\n }\n return this;\n });\n } else {\n this.isInitialized = true;\n this.initialized = Promise.resolve(this);\n if (options.onLoad) {\n const maybePromise = options.onLoad(this);\n if (maybePromise instanceof Promise) {\n this.initialized = maybePromise.then(() => this);\n }\n }\n }\n }\n async asyncInitialize(options) {\n const { url, fileBytes, fileType, fileName, maxSplats, constructSplats } = options;\n if (url || fileBytes || constructSplats) {\n const packedSplatsOptions = {\n url,\n fileBytes,\n fileType,\n fileName,\n maxSplats,\n construct: constructSplats\n };\n this.packedSplats.reinitialize(packedSplatsOptions);\n }\n if (this.packedSplats) {\n await this.packedSplats.initialized;\n this.numSplats = this.packedSplats.numSplats;\n this.updateGenerator();\n }\n }\n static async staticInitialize() {\n await __wbg_init();\n _SplatMesh.isStaticInitialized = true;\n }\n // Creates a new Gsplat with the provided parameters (all values in "float" space,\n // i.e. 0-1 for opacity and color) and adds it to the end of the packedSplats,\n // increasing numSplats by 1. If necessary, reallocates the buffer with an exponential\n // doubling strategy to fit the new data, so it\'s fairly efficient to just\n // pushSplat(...) each Gsplat you want to create in a loop.\n pushSplat(center, scales, quaternion, opacity, color) {\n this.packedSplats.pushSplat(center, scales, quaternion, opacity, color);\n }\n // This method iterates over all Gsplats in this instance\'s packedSplats,\n // invoking the provided callback with index: number in 0..=(this.numSplats-1) and\n // center: THREE.Vector3, scales: THREE.Vector3, quaternion: THREE.Quaternion,\n // opacity: number (0..1), and color: THREE.Color (rgb values in 0..1).\n // Note that the objects passed in as center etc. are the same for every callback\n // invocation: these objects are reused for efficiency. Changing these values has\n // no effect as they are decoded/unpacked copies of the underlying data. To update\n // the packedSplats, call .packedSplats.setSplat(index, center, scales,\n // quaternion, opacity, color).\n forEachSplat(callback) {\n this.packedSplats.forEachSplat(callback);\n }\n // Call this when you are finished with the SplatMesh and want to free\n // any buffers it holds (via packedSplats).\n dispose() {\n this.packedSplats.dispose();\n }\n constructGenerator(context) {\n const { transform, viewToObject, recolor } = context;\n const generator = dynoBlock(\n { index: "int" },\n { gsplat: Gsplat },\n ({ index }) => {\n if (!index) {\n throw new Error("index is undefined");\n }\n let gsplat = readPackedSplat(this.packedSplats.dyno, index);\n if (this.maxSh >= 1) {\n const { sh1Texture, sh2Texture, sh3Texture } = this.ensureShTextures();\n if (sh1Texture) {\n const viewCenterInObject = viewToObject.translate;\n const { center } = splitGsplat(gsplat).outputs;\n const viewDir = normalize(sub(center, viewCenterInObject));\n let rgb = evaluateSH1(gsplat, sh1Texture, viewDir);\n if (this.maxSh >= 2 && sh2Texture) {\n rgb = add(rgb, evaluateSH2(gsplat, sh2Texture, viewDir));\n }\n if (this.maxSh >= 3 && sh3Texture) {\n rgb = add(rgb, evaluateSH3(gsplat, sh3Texture, viewDir));\n }\n let { rgba } = splitGsplat(gsplat).outputs;\n rgba = add(rgba, extendVec(rgb, dynoConst("float", 0)));\n gsplat = combineGsplat({ gsplat, rgba });\n }\n }\n if (this.splatRgba) {\n const rgba = readRgbaArray(this.splatRgba.dyno, index);\n gsplat = combineGsplat({ gsplat, rgba });\n }\n if (this.skinning) {\n gsplat = this.skinning.modify(gsplat);\n }\n if (this.objectModifier) {\n gsplat = this.objectModifier.apply({ gsplat }).gsplat;\n }\n gsplat = transform.applyGsplat(gsplat);\n const recolorRgba = mul(recolor, splitGsplat(gsplat).outputs.rgba);\n gsplat = combineGsplat({ gsplat, rgba: recolorRgba });\n if (this.rgbaDisplaceEdits) {\n gsplat = this.rgbaDisplaceEdits.modify(gsplat);\n }\n if (this.worldModifier) {\n gsplat = this.worldModifier.apply({ gsplat }).gsplat;\n }\n return { gsplat };\n }\n );\n this.generator = generator;\n }\n // Call this whenever something changes in the Gsplat processing pipeline,\n // for example changing maxSh or updating objectModifier or worldModifier.\n // Compiled generators are cached for efficiency and re-use when the same\n // pipeline structure emerges after successive changes.\n updateGenerator() {\n this.constructGenerator(this.context);\n }\n // This is called automatically by ForgeRenderer and you should not have to\n // call it. It updates parameters for the generated pipeline and calls\n // updateGenerator() if the pipeline needs to change.\n update({\n time,\n viewToWorld,\n deltaTime,\n globalEdits\n }) {\n var _a2;\n this.numSplats = this.packedSplats.numSplats;\n this.context.time.value = time;\n this.context.deltaTime.value = deltaTime;\n _SplatMesh.dynoTime.value = time;\n const { transform, viewToObject, recolor } = this.context;\n let updated = transform.update(this);\n if (this.context.viewToWorld.updateFromMatrix(viewToWorld) && this.enableViewToWorld) {\n updated = true;\n }\n const worldToView = viewToWorld.clone().invert();\n if (this.context.worldToView.updateFromMatrix(worldToView) && this.enableWorldToView) {\n updated = true;\n }\n const objectToWorld = new Matrix4().compose(\n transform.translate.value,\n transform.rotate.value,\n new Vector3().setScalar(transform.scale.value)\n );\n const worldToObject = objectToWorld.invert();\n const viewToObjectMatrix = worldToObject.multiply(viewToWorld);\n if (viewToObject.updateFromMatrix(viewToObjectMatrix) && (this.enableViewToObject || this.packedSplats.extra.sh1)) {\n updated = true;\n }\n const newRecolor = new Vector4(\n this.recolor.r,\n this.recolor.g,\n this.recolor.b,\n this.opacity\n );\n if (!newRecolor.equals(recolor.value)) {\n recolor.value.copy(newRecolor);\n updated = true;\n }\n const edits = this.editable ? (this.edits ?? []).concat(globalEdits) : [];\n if (this.editable && !this.edits) {\n this.traverseVisible((node) => {\n if (node instanceof SplatEdit) {\n edits.push(node);\n }\n });\n }\n edits.sort((a, b) => a.ordering - b.ordering);\n const editsSdfs = edits.map((edit) => {\n if (edit.sdfs != null) {\n return { edit, sdfs: edit.sdfs };\n }\n const sdfs = [];\n edit.traverseVisible((node) => {\n if (node instanceof SplatEditSdf) {\n sdfs.push(node);\n }\n });\n return { edit, sdfs };\n });\n if (editsSdfs.length > 0 && !this.rgbaDisplaceEdits) {\n const edits2 = editsSdfs.length;\n const sdfs = editsSdfs.reduce(\n (total, edit) => total + edit.sdfs.length,\n 0\n );\n this.rgbaDisplaceEdits = new SplatEdits({\n maxEdits: edits2,\n maxSdfs: sdfs\n });\n this.updateGenerator();\n }\n if (this.rgbaDisplaceEdits) {\n const editResult = this.rgbaDisplaceEdits.update(editsSdfs);\n updated || (updated = editResult.updated);\n if (editResult.dynoUpdated) {\n this.updateGenerator();\n }\n }\n if (updated) {\n this.updateVersion();\n }\n (_a2 = this.onFrame) == null ? void 0 : _a2.call(this, { mesh: this, time, deltaTime });\n }\n // This method conforms to the standard THREE.Raycaster API, performing object-ray\n // intersections using this method to populate the provided intersects[] array\n // with each intersection point.\n raycast(raycaster, intersects) {\n if (!this.packedSplats.packedArray || !this.packedSplats.numSplats) {\n return;\n }\n const { near, far, ray } = raycaster;\n const worldToMesh = this.matrixWorld.clone().invert();\n const worldToMeshRot = new Matrix3().setFromMatrix4(worldToMesh);\n const origin = ray.origin.clone().applyMatrix4(worldToMesh);\n const direction = ray.direction.clone().applyMatrix3(worldToMeshRot);\n const scales = new Vector3();\n worldToMesh.decompose(new Vector3(), new Quaternion(), scales);\n (scales.x * scales.y * scales.z) ** (1 / 3);\n const RAYCAST_ELLIPSOID = true;\n const distances = raycast_splats(\n origin.x,\n origin.y,\n origin.z,\n direction.x,\n direction.y,\n direction.z,\n near,\n far,\n this.packedSplats.numSplats,\n this.packedSplats.packedArray,\n RAYCAST_ELLIPSOID\n );\n for (const distance of distances) {\n const point = ray.direction.clone().multiplyScalar(distance).add(ray.origin);\n intersects.push({\n distance,\n point,\n object: this\n });\n }\n }\n ensureShTextures() {\n if (!this.packedSplats.extra.sh1) {\n return {};\n }\n let sh1Texture = this.packedSplats.extra.sh1Texture;\n if (!sh1Texture) {\n let sh1 = this.packedSplats.extra.sh1;\n const { width, height, depth, maxSplats } = getTextureSize(\n sh1.length / 2\n );\n if (sh1.length < maxSplats * 2) {\n const newSh1 = new Uint32Array(maxSplats * 2);\n newSh1.set(sh1);\n this.packedSplats.extra.sh1 = newSh1;\n sh1 = newSh1;\n }\n const texture = new DataArrayTexture(sh1, width, height, depth);\n texture.format = RGIntegerFormat;\n texture.type = UnsignedIntType;\n texture.internalFormat = "RG32UI";\n texture.needsUpdate = true;\n sh1Texture = new DynoUsampler2DArray({\n value: texture,\n key: "sh1"\n });\n this.packedSplats.extra.sh1Texture = sh1Texture;\n }\n if (!this.packedSplats.extra.sh2) {\n return { sh1Texture };\n }\n let sh2Texture = this.packedSplats.extra.sh2Texture;\n if (!sh2Texture) {\n let sh2 = this.packedSplats.extra.sh2;\n const { width, height, depth, maxSplats } = getTextureSize(\n sh2.length / 4\n );\n if (sh2.length < maxSplats * 4) {\n const newSh2 = new Uint32Array(maxSplats * 4);\n newSh2.set(sh2);\n this.packedSplats.extra.sh2 = newSh2;\n sh2 = newSh2;\n }\n const texture = new DataArrayTexture(sh2, width, height, depth);\n texture.format = RGBAIntegerFormat;\n texture.type = UnsignedIntType;\n texture.internalFormat = "RGBA32UI";\n texture.needsUpdate = true;\n sh2Texture = new DynoUsampler2DArray({\n value: texture,\n key: "sh2"\n });\n this.packedSplats.extra.sh2Texture = sh2Texture;\n }\n if (!this.packedSplats.extra.sh3) {\n return { sh1Texture, sh2Texture };\n }\n let sh3Texture = this.packedSplats.extra.sh3Texture;\n if (!sh3Texture) {\n let sh3 = this.packedSplats.extra.sh3;\n const { width, height, depth, maxSplats } = getTextureSize(\n sh3.length / 4\n );\n if (sh3.length < maxSplats * 4) {\n const newSh3 = new Uint32Array(maxSplats * 4);\n newSh3.set(sh3);\n this.packedSplats.extra.sh3 = newSh3;\n sh3 = newSh3;\n }\n const texture = new DataArrayTexture(sh3, width, height, depth);\n texture.format = RGBAIntegerFormat;\n texture.type = UnsignedIntType;\n texture.internalFormat = "RGBA32UI";\n texture.needsUpdate = true;\n sh3Texture = new DynoUsampler2DArray({\n value: texture,\n key: "sh3"\n });\n this.packedSplats.extra.sh3Texture = sh3Texture;\n }\n return { sh1Texture, sh2Texture, sh3Texture };\n }\n };\n _SplatMesh.staticInitialized = _SplatMesh.staticInitialize();\n _SplatMesh.isStaticInitialized = false;\n _SplatMesh.dynoTime = new DynoFloat({ value: 0 });\n let SplatMesh = _SplatMesh;\n const defineEvaluateSH1 = unindent(`\n vec3 evaluateSH1(Gsplat gsplat, usampler2DArray sh1, vec3 viewDir) {\n // Extract sint7 values packed into 2 x uint32\n uvec2 packed = texelFetch(sh1, splatTexCoord(gsplat.index), 0).rg;\n vec3 sh1_0 = vec3(ivec3(\n int(packed.x << 25u) >> 25,\n int(packed.x << 18u) >> 25,\n int(packed.x << 11u) >> 25\n )) / 63.0;\n vec3 sh1_1 = vec3(ivec3(\n int(packed.x << 4u) >> 25,\n int((packed.x >> 3u) | (packed.y << 29u)) >> 25,\n int(packed.y << 22u) >> 25\n )) / 63.0;\n vec3 sh1_2 = vec3(ivec3(\n int(packed.y << 15u) >> 25,\n int(packed.y << 8u) >> 25,\n int(packed.y << 1u) >> 25\n )) / 63.0;\n\n return sh1_0 * (-0.4886025 * viewDir.y)\n + sh1_1 * (0.4886025 * viewDir.z)\n + sh1_2 * (-0.4886025 * viewDir.x);\n }\n`);\n const defineEvaluateSH2 = unindent(`\n vec3 evaluateSH2(Gsplat gsplat, usampler2DArray sh2, vec3 viewDir) {\n // Extract sint8 values packed into 4 x uint32\n uvec4 packed = texelFetch(sh2, splatTexCoord(gsplat.index), 0);\n vec3 sh2_0 = vec3(ivec3(\n int(packed.x << 24u) >> 24,\n int(packed.x << 16u) >> 24,\n int(packed.x << 8u) >> 24\n )) / 127.0;\n vec3 sh2_1 = vec3(ivec3(\n int(packed.x) >> 24,\n int(packed.y << 24u) >> 24,\n int(packed.y << 16u) >> 24\n )) / 127.0;\n vec3 sh2_2 = vec3(ivec3(\n int(packed.y << 8u) >> 24,\n int(packed.y) >> 24,\n int(packed.z << 24u) >> 24\n )) / 127.0;\n vec3 sh2_3 = vec3(ivec3(\n int(packed.z << 16u) >> 24,\n int(packed.z << 8u) >> 24,\n int(packed.z) >> 24\n )) / 127.0;\n vec3 sh2_4 = vec3(ivec3(\n int(packed.w << 24u) >> 24,\n int(packed.w << 16u) >> 24,\n int(packed.w << 8u) >> 24\n )) / 127.0;\n\n return sh2_0 * (1.0925484 * viewDir.x * viewDir.y)\n + sh2_1 * (1.0925484 * viewDir.y * viewDir.z)\n + sh2_2 * (0.3153915 * (2.0 * viewDir.z * viewDir.z - viewDir.x * viewDir.x - viewDir.y * viewDir.y))\n + sh2_3 * (1.0925484 * viewDir.x * viewDir.z)\n + sh2_4 * (0.5462742 * (viewDir.x * viewDir.x - viewDir.y * viewDir.y));\n }\n`);\n const defineEvaluateSH3 = unindent(`\n vec3 evaluateSH3(Gsplat gsplat, usampler2DArray sh3, vec3 viewDir) {\n // Extract sint6 values packed into 4 x uint32\n uvec4 packed = texelFetch(sh3, splatTexCoord(gsplat.index), 0);\n vec3 sh3_0 = vec3(ivec3(\n int(packed.x << 26u) >> 26,\n int(packed.x << 20u) >> 26,\n int(packed.x << 14u) >> 26\n )) / 31.0;\n vec3 sh3_1 = vec3(ivec3(\n int(packed.x << 8u) >> 26,\n int(packed.x << 2u) >> 26,\n int((packed.x >> 4u) | (packed.y << 28u)) >> 26\n )) / 31.0;\n vec3 sh3_2 = vec3(ivec3(\n int(packed.y << 22u) >> 26,\n int(packed.y << 16u) >> 26,\n int(packed.y << 10u) >> 26\n )) / 31.0;\n vec3 sh3_3 = vec3(ivec3(\n int(packed.y << 4u) >> 26,\n int((packed.y >> 2u) | (packed.z << 30u)) >> 26,\n int(packed.z << 24u) >> 26\n )) / 31.0;\n vec3 sh3_4 = vec3(ivec3(\n int(packed.z << 18u) >> 26,\n int(packed.z << 12u) >> 26,\n int(packed.z << 6u) >> 26\n )) / 31.0;\n vec3 sh3_5 = vec3(ivec3(\n int(packed.z) >> 26,\n int(packed.w << 26u) >> 26,\n int(packed.w << 20u) >> 26\n )) / 31.0;\n vec3 sh3_6 = vec3(ivec3(\n int(packed.w << 14u) >> 26,\n int(packed.w << 8u) >> 26,\n int(packed.w << 2u) >> 26\n )) / 31.0;\n\n float xx = viewDir.x * viewDir.x;\n float yy = viewDir.y * viewDir.y;\n float zz = viewDir.z * viewDir.z;\n float xy = viewDir.x * viewDir.y;\n float yz = viewDir.y * viewDir.z;\n float zx = viewDir.z * viewDir.x;\n\n return sh3_0 * (-0.5900436 * viewDir.y * (3.0 * xx - yy))\n + sh3_1 * (2.8906114 * xy * viewDir.z) +\n + sh3_2 * (-0.4570458 * viewDir.y * (4.0 * zz - xx - yy))\n + sh3_3 * (0.3731763 * viewDir.z * (2.0 * zz - 3.0 * xx - 3.0 * yy))\n + sh3_4 * (-0.4570458 * viewDir.x * (4.0 * zz - xx - yy))\n + sh3_5 * (1.4453057 * viewDir.z * (xx - yy))\n + sh3_6 * (-0.5900436 * viewDir.x * (xx - 3.0 * yy));\n }\n`);\n function evaluateSH1(gsplat, sh1, viewDir) {\n return dyno({\n inTypes: { gsplat: Gsplat, sh1: "usampler2DArray", viewDir: "vec3" },\n outTypes: { rgb: "vec3" },\n inputs: { gsplat, sh1, viewDir },\n globals: () => [defineGsplat, defineEvaluateSH1],\n statements: ({ inputs, outputs }) => {\n const statements = unindentLines(`\n if (isGsplatActive(${inputs.gsplat}.flags)) {\n ${outputs.rgb} = evaluateSH1(${inputs.gsplat}, ${inputs.sh1}, ${inputs.viewDir});\n } else {\n ${outputs.rgb} = vec3(0.0);\n }\n `);\n return statements;\n }\n }).outputs.rgb;\n }\n function evaluateSH2(gsplat, sh2, viewDir) {\n return dyno({\n inTypes: { gsplat: Gsplat, sh2: "usampler2DArray", viewDir: "vec3" },\n outTypes: { rgb: "vec3" },\n inputs: { gsplat, sh2, viewDir },\n globals: () => [defineGsplat, defineEvaluateSH2],\n statements: ({ inputs, outputs }) => unindentLines(`\n if (isGsplatActive(${inputs.gsplat}.flags)) {\n ${outputs.rgb} = evaluateSH2(${inputs.gsplat}, ${inputs.sh2}, ${inputs.viewDir});\n } else {\n ${outputs.rgb} = vec3(0.0);\n }\n `)\n }).outputs.rgb;\n }\n function evaluateSH3(gsplat, sh3, viewDir) {\n return dyno({\n inTypes: { gsplat: Gsplat, sh3: "usampler2DArray", viewDir: "vec3" },\n outTypes: { rgb: "vec3" },\n inputs: { gsplat, sh3, viewDir },\n globals: () => [defineGsplat, defineEvaluateSH3],\n statements: ({ inputs, outputs }) => unindentLines(`\n if (isGsplatActive(${inputs.gsplat}.flags)) {\n ${outputs.rgb} = evaluateSH3(${inputs.gsplat}, ${inputs.sh3}, ${inputs.viewDir});\n } else {\n ${outputs.rgb} = vec3(0.0);\n }\n `)\n }).outputs.rgb;\n }\n function WorkerWrapper(options) {\n return new Worker(\n self.location.href,\n {\n name: options == null ? void 0 : options.name\n }\n );\n }\n class SplatWorker {\n constructor() {\n this.messages = {};\n this.messageIdNext = 0;\n this.worker = new WorkerWrapper();\n this.worker.onmessage = (event) => this.onMessage(event);\n }\n makeMessageId() {\n return ++this.messageIdNext;\n }\n makeMessagePromiseId() {\n const id = this.makeMessageId();\n const promise = new Promise((resolve, reject) => {\n this.messages[id] = { resolve, reject };\n });\n return { id, promise };\n }\n onMessage(event) {\n const { id, result, error } = event.data;\n const handler = this.messages[id];\n if (handler) {\n delete this.messages[id];\n if (error) {\n handler.reject(error);\n } else {\n handler.resolve(result);\n }\n }\n }\n // Invoke an RPC on the worker with the given name and arguments.\n // The normal usage of a worker is to run one activity at a time,\n // but this function allows for concurrent calls, tagging each request\n // with a unique message Id and awaiting a response to that same Id.\n // The method will automatically transfer any ArrayBuffers in the\n // arguments to the worker. If you\'d like to transfer a copy of a\n // buffer then you must clone it before passing to this function.\n async call(name, args) {\n const { id, promise } = this.makeMessagePromiseId();\n this.worker.postMessage(\n { name, args, id },\n { transfer: getArrayBuffers(args) }\n );\n return promise;\n }\n }\n let maxWorkers = 4;\n let numWorkers = 0;\n const freeWorkers = [];\n const workerQueue = [];\n async function allocWorker() {\n const worker = freeWorkers.shift();\n if (worker) {\n return worker;\n }\n if (numWorkers < maxWorkers) {\n const worker2 = new SplatWorker();\n numWorkers += 1;\n return worker2;\n }\n return new Promise((resolve) => {\n workerQueue.push(resolve);\n });\n }\n function freeWorker(worker) {\n if (numWorkers > maxWorkers) {\n numWorkers -= 1;\n return;\n }\n const waiter = workerQueue.shift();\n if (waiter) {\n waiter(worker);\n return;\n }\n freeWorkers.push(worker);\n }\n async function withWorker(callback) {\n const worker = await allocWorker();\n try {\n return await callback(worker);\n } finally {\n freeWorker(worker);\n }\n }\n var SplatFileType = /* @__PURE__ */ ((SplatFileType2) => {\n SplatFileType2["PLY"] = "ply";\n SplatFileType2["SPZ"] = "spz";\n SplatFileType2["SPLAT"] = "splat";\n SplatFileType2["KSPLAT"] = "ksplat";\n return SplatFileType2;\n })(SplatFileType || {});\n function getSplatFileType(fileBytes) {\n const view = new DataView(fileBytes.buffer);\n if ((view.getUint32(0, true) & 16777215) === 7957616) {\n return "ply";\n }\n if ((view.getUint32(0, true) & 16777215) === 559903) {\n const header = decompressPartialGzip(fileBytes, 4);\n const gView = new DataView(header.buffer);\n if (gView.getUint32(0, true) === 1347635022) {\n return "spz";\n }\n return void 0;\n }\n return void 0;\n }\n function getFileExtension(pathOrUrl) {\n const noTrailing = pathOrUrl.split(/[?#]/, 1)[0];\n const lastSlash = Math.max(\n noTrailing.lastIndexOf("/"),\n noTrailing.lastIndexOf("\\\\")\n );\n const filename = noTrailing.slice(lastSlash + 1);\n const lastDot = filename.lastIndexOf(".");\n if (lastDot <= 0 || lastDot === filename.length - 1) {\n return "";\n }\n return filename.slice(lastDot + 1).toLowerCase();\n }\n function getSplatFileTypeFromPath(pathOrUrl) {\n const extension = getFileExtension(pathOrUrl);\n if (extension === "ply") {\n return "ply";\n }\n if (extension === "spz") {\n return "spz";\n }\n if (extension === "splat") {\n return "splat";\n }\n if (extension === "ksplat") {\n return "ksplat";\n }\n return void 0;\n }\n async function unpackSplats({\n input,\n fileType,\n pathOrUrl\n }) {\n const fileBytes = input instanceof ArrayBuffer ? new Uint8Array(input) : input;\n let splatFileType = fileType;\n if (!fileType) {\n splatFileType = getSplatFileType(fileBytes);\n if (!splatFileType && pathOrUrl) {\n splatFileType = getSplatFileTypeFromPath(pathOrUrl);\n }\n }\n switch (splatFileType) {\n case "ply": {\n const ply = new PlyReader({ fileBytes });\n await ply.parseHeader();\n const numSplats = ply.numSplats;\n const maxSplats = getTextureSize(numSplats).maxSplats;\n const args = { fileBytes, packedArray: new Uint32Array(maxSplats * 4) };\n return await withWorker(async (worker) => {\n const { packedArray, numSplats: numSplats2, extra } = await worker.call(\n "unpackPly",\n args\n );\n return { packedArray, numSplats: numSplats2, extra };\n });\n }\n case "spz": {\n return await withWorker(async (worker) => {\n const { packedArray, numSplats, extra } = await worker.call(\n "decodeSpz",\n {\n fileBytes\n }\n );\n return { packedArray, numSplats, extra };\n });\n }\n case "splat": {\n return await withWorker(async (worker) => {\n const { packedArray, numSplats } = await worker.call(\n "decodeAntiSplat",\n {\n fileBytes\n }\n );\n return { packedArray, numSplats };\n });\n }\n case "ksplat":\n return await withWorker(async (worker) => {\n const { packedArray, numSplats, extra } = await worker.call(\n "decodeKsplat",\n { fileBytes }\n );\n return { packedArray, numSplats, extra };\n });\n default: {\n throw new Error(`Unknown splat file type: ${splatFileType}`);\n }\n }\n }\n class SplatData {\n constructor({ maxSplats = 1 } = {}) {\n this.numSplats = 0;\n this.maxSplats = getTextureSize(maxSplats).maxSplats;\n this.centers = new Float32Array(this.maxSplats * 3);\n this.scales = new Float32Array(this.maxSplats * 3);\n this.quaternions = new Float32Array(this.maxSplats * 4);\n this.opacities = new Float32Array(this.maxSplats);\n this.colors = new Float32Array(this.maxSplats * 3);\n }\n pushSplat() {\n const index = this.numSplats;\n this.ensureIndex(index);\n this.numSplats += 1;\n return index;\n }\n unpushSplat(index) {\n if (index === this.numSplats - 1) {\n this.numSplats -= 1;\n } else {\n throw new Error("Cannot unpush splat from non-last position");\n }\n }\n ensureCapacity(numSplats) {\n if (numSplats > this.maxSplats) {\n const targetSplats = Math.max(numSplats, this.maxSplats * 2);\n const newCenters = new Float32Array(targetSplats * 3);\n const newScales = new Float32Array(targetSplats * 3);\n const newQuaternions = new Float32Array(targetSplats * 4);\n const newOpacities = new Float32Array(targetSplats);\n const newColors = new Float32Array(targetSplats * 3);\n newCenters.set(this.centers);\n newScales.set(this.scales);\n newQuaternions.set(this.quaternions);\n newOpacities.set(this.opacities);\n newColors.set(this.colors);\n this.centers = newCenters;\n this.scales = newScales;\n this.quaternions = newQuaternions;\n this.opacities = newOpacities;\n this.colors = newColors;\n if (this.sh1) {\n const newSh1 = new Float32Array(targetSplats * 9);\n newSh1.set(this.sh1);\n this.sh1 = newSh1;\n }\n if (this.sh2) {\n const newSh2 = new Float32Array(targetSplats * 15);\n newSh2.set(this.sh2);\n this.sh2 = newSh2;\n }\n if (this.sh3) {\n const newSh3 = new Float32Array(targetSplats * 21);\n newSh3.set(this.sh3);\n this.sh3 = newSh3;\n }\n this.maxSplats = targetSplats;\n }\n }\n ensureIndex(index) {\n this.ensureCapacity(index + 1);\n }\n setCenter(index, x2, y, z) {\n this.centers[index * 3] = x2;\n this.centers[index * 3 + 1] = y;\n this.centers[index * 3 + 2] = z;\n }\n setScale(index, scaleX, scaleY, scaleZ) {\n this.scales[index * 3] = scaleX;\n this.scales[index * 3 + 1] = scaleY;\n this.scales[index * 3 + 2] = scaleZ;\n }\n setQuaternion(index, x2, y, z, w) {\n this.quaternions[index * 4] = x2;\n this.quaternions[index * 4 + 1] = y;\n this.quaternions[index * 4 + 2] = z;\n this.quaternions[index * 4 + 3] = w;\n }\n setOpacity(index, opacity) {\n this.opacities[index] = opacity;\n }\n setColor(index, r, g, b) {\n this.colors[index * 3] = r;\n this.colors[index * 3 + 1] = g;\n this.colors[index * 3 + 2] = b;\n }\n setSh1(index, sh1) {\n if (!this.sh1) {\n this.sh1 = new Float32Array(this.maxSplats * 9);\n }\n for (let j = 0; j < 9; ++j) {\n this.sh1[index * 9 + j] = sh1[j];\n }\n }\n setSh2(index, sh2) {\n if (!this.sh2) {\n this.sh2 = new Float32Array(this.maxSplats * 15);\n }\n for (let j = 0; j < 15; ++j) {\n this.sh2[index * 15 + j] = sh2[j];\n }\n }\n setSh3(index, sh3) {\n if (!this.sh3) {\n this.sh3 = new Float32Array(this.maxSplats * 21);\n }\n for (let j = 0; j < 21; ++j) {\n this.sh3[index * 21 + j] = sh3[j];\n }\n }\n }\n class SpzReader {\n constructor({ fileBytes }) {\n this.fileBytes = fileBytes instanceof ArrayBuffer ? new Uint8Array(fileBytes) : fileBytes;\n this.reader = new GunzipReader({ fileBytes: this.fileBytes });\n const header = new DataView(this.reader.read(16).buffer);\n if (header.getUint32(0, true) !== 1347635022) {\n throw new Error("Invalid SPZ file");\n }\n this.version = header.getUint32(4, true);\n if (this.version < 1 || this.version > 2) {\n throw new Error(`Unsupported SPZ version: ${this.version}`);\n }\n this.numSplats = header.getUint32(8, true);\n this.shDegree = header.getUint8(12);\n this.fractionalBits = header.getUint8(13);\n this.flags = header.getUint8(14);\n this.flagAntiAlias = (this.flags & 1) !== 0;\n this.reserved = header.getUint8(15);\n this.parsed = false;\n }\n parseSplats(centerCallback, alphaCallback, rgbCallback, scalesCallback, quatCallback, shCallback) {\n if (this.parsed) {\n throw new Error("SPZ file already parsed");\n }\n this.parsed = true;\n if (this.version === 1) {\n const centerBytes = this.reader.read(this.numSplats * 3 * 2);\n const centerUint16 = new Uint16Array(centerBytes.buffer);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i3 = i2 * 3;\n const x2 = fromHalf(centerUint16[i3]);\n const y = fromHalf(centerUint16[i3 + 1]);\n const z = fromHalf(centerUint16[i3 + 2]);\n centerCallback == null ? void 0 : centerCallback(i2, x2, y, z);\n }\n } else if (this.version === 2) {\n const fixed = 1 << this.fractionalBits;\n const centerBytes = this.reader.read(this.numSplats * 3 * 3);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i9 = i2 * 9;\n const x2 = ((centerBytes[i9 + 2] << 24 | centerBytes[i9 + 1] << 16 | centerBytes[i9] << 8) >> 8) / fixed;\n const y = ((centerBytes[i9 + 5] << 24 | centerBytes[i9 + 4] << 16 | centerBytes[i9 + 3] << 8) >> 8) / fixed;\n const z = ((centerBytes[i9 + 8] << 24 | centerBytes[i9 + 7] << 16 | centerBytes[i9 + 6] << 8) >> 8) / fixed;\n centerCallback == null ? void 0 : centerCallback(i2, x2, y, z);\n }\n } else {\n throw new Error("Unreachable");\n }\n {\n const bytes = this.reader.read(this.numSplats);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n alphaCallback == null ? void 0 : alphaCallback(i2, bytes[i2] / 255);\n }\n }\n {\n const rgbBytes = this.reader.read(this.numSplats * 3);\n const scale = SH_C0 / 0.15;\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i3 = i2 * 3;\n const r = (rgbBytes[i3] / 255 - 0.5) * scale + 0.5;\n const g = (rgbBytes[i3 + 1] / 255 - 0.5) * scale + 0.5;\n const b = (rgbBytes[i3 + 2] / 255 - 0.5) * scale + 0.5;\n rgbCallback == null ? void 0 : rgbCallback(i2, r, g, b);\n }\n }\n {\n const scalesBytes = this.reader.read(this.numSplats * 3);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i3 = i2 * 3;\n const scaleX = Math.exp(scalesBytes[i3] / 16 - 10);\n const scaleY = Math.exp(scalesBytes[i3 + 1] / 16 - 10);\n const scaleZ = Math.exp(scalesBytes[i3 + 2] / 16 - 10);\n scalesCallback == null ? void 0 : scalesCallback(i2, scaleX, scaleY, scaleZ);\n }\n }\n {\n const quatBytes = this.reader.read(this.numSplats * 3);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i3 = i2 * 3;\n const quatX = quatBytes[i3] / 127.5 - 1;\n const quatY = quatBytes[i3 + 1] / 127.5 - 1;\n const quatZ = quatBytes[i3 + 2] / 127.5 - 1;\n const quatW = Math.sqrt(\n Math.max(0, 1 - quatX * quatX - quatY * quatY - quatZ * quatZ)\n );\n quatCallback == null ? void 0 : quatCallback(i2, quatX, quatY, quatZ, quatW);\n }\n }\n if (shCallback && this.shDegree >= 1) {\n const sh1 = new Float32Array(3 * 3);\n const sh2 = this.shDegree >= 2 ? new Float32Array(5 * 3) : void 0;\n const sh3 = this.shDegree >= 3 ? new Float32Array(7 * 3) : void 0;\n const shBytes = this.reader.read(\n this.numSplats * SH_DEGREE_TO_VECS[this.shDegree] * 3\n );\n let offset = 0;\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n for (let j = 0; j < 9; ++j) {\n sh1[j] = (shBytes[offset + j] - 128) / 128;\n }\n offset += 9;\n if (sh2) {\n for (let j = 0; j < 15; ++j) {\n sh2[j] = (shBytes[offset + j] - 128) / 128;\n }\n offset += 15;\n }\n if (sh3) {\n for (let j = 0; j < 21; ++j) {\n sh3[j] = (shBytes[offset + j] - 128) / 128;\n }\n offset += 21;\n }\n shCallback == null ? void 0 : shCallback(i2, sh1, sh2, sh3);\n }\n }\n }\n }\n const SH_DEGREE_TO_VECS = { 1: 3, 2: 8, 3: 15 };\n const SH_C0 = 0.28209479177387814;\n const SPZ_MAGIC = 1347635022;\n const SPZ_VERSION = 2;\n const FLAG_ANTIALIASED = 1;\n class SpzWriter {\n constructor({\n numSplats,\n shDegree,\n fractionalBits = 12,\n flagAntiAlias = true\n }) {\n this.clippedCount = 0;\n const splatSize = 9 + 1 + 3 + 3 + 3 + (shDegree >= 1 ? 9 : 0) + (shDegree >= 2 ? 15 : 0) + (shDegree >= 3 ? 21 : 0);\n const bufferSize = 16 + numSplats * splatSize;\n this.buffer = new ArrayBuffer(bufferSize);\n this.view = new DataView(this.buffer);\n this.view.setUint32(0, SPZ_MAGIC, true);\n this.view.setUint32(4, SPZ_VERSION, true);\n this.view.setUint32(8, numSplats, true);\n this.view.setUint8(12, shDegree);\n this.view.setUint8(13, fractionalBits);\n this.view.setUint8(14, flagAntiAlias ? FLAG_ANTIALIASED : 0);\n this.view.setUint8(15, 0);\n this.numSplats = numSplats;\n this.shDegree = shDegree;\n this.fractionalBits = fractionalBits;\n this.fraction = 1 << fractionalBits;\n this.flagAntiAlias = flagAntiAlias;\n }\n setCenter(index, x2, y, z) {\n const xRounded = Math.round(x2 * this.fraction);\n const xInt = Math.max(-8388607, Math.min(8388607, xRounded));\n const yRounded = Math.round(y * this.fraction);\n const yInt = Math.max(-8388607, Math.min(8388607, yRounded));\n const zRounded = Math.round(z * this.fraction);\n const zInt = Math.max(-8388607, Math.min(8388607, zRounded));\n const clipped = xRounded !== xInt || yRounded !== yInt || zRounded !== zInt;\n if (clipped) {\n this.clippedCount += 1;\n }\n const i9 = index * 9;\n const base = 16 + i9;\n this.view.setUint8(base, xInt & 255);\n this.view.setUint8(base + 1, xInt >> 8 & 255);\n this.view.setUint8(base + 2, xInt >> 16 & 255);\n this.view.setUint8(base + 3, yInt & 255);\n this.view.setUint8(base + 4, yInt >> 8 & 255);\n this.view.setUint8(base + 5, yInt >> 16 & 255);\n this.view.setUint8(base + 6, zInt & 255);\n this.view.setUint8(base + 7, zInt >> 8 & 255);\n this.view.setUint8(base + 8, zInt >> 16 & 255);\n }\n setAlpha(index, alpha) {\n const base = 16 + this.numSplats * 9 + index;\n this.view.setUint8(\n base,\n Math.max(0, Math.min(255, Math.round(alpha * 255)))\n );\n }\n static scaleRgb(r) {\n const v = ((r - 0.5) / (SH_C0 / 0.15) + 0.5) * 255;\n return Math.max(0, Math.min(255, Math.round(v)));\n }\n setRgb(index, r, g, b) {\n const base = 16 + this.numSplats * 10 + index * 3;\n this.view.setUint8(base, SpzWriter.scaleRgb(r));\n this.view.setUint8(base + 1, SpzWriter.scaleRgb(g));\n this.view.setUint8(base + 2, SpzWriter.scaleRgb(b));\n }\n setScale(index, scaleX, scaleY, scaleZ) {\n const base = 16 + this.numSplats * 13 + index * 3;\n this.view.setUint8(\n base,\n Math.max(0, Math.min(255, Math.round((Math.log(scaleX) + 10) * 16)))\n );\n this.view.setUint8(\n base + 1,\n Math.max(0, Math.min(255, Math.round((Math.log(scaleY) + 10) * 16)))\n );\n this.view.setUint8(\n base + 2,\n Math.max(0, Math.min(255, Math.round((Math.log(scaleZ) + 10) * 16)))\n );\n }\n setQuat(index, quatX, quatY, quatZ, quatW) {\n const base = 16 + this.numSplats * 16 + index * 3;\n const quatNeg = quatW < 0;\n this.view.setUint8(\n base,\n Math.max(\n 0,\n Math.min(255, Math.round(((quatNeg ? -quatX : quatX) + 1) * 127.5))\n )\n );\n this.view.setUint8(\n base + 1,\n Math.max(\n 0,\n Math.min(255, Math.round(((quatNeg ? -quatY : quatY) + 1) * 127.5))\n )\n );\n this.view.setUint8(\n base + 2,\n Math.max(\n 0,\n Math.min(255, Math.round(((quatNeg ? -quatZ : quatZ) + 1) * 127.5))\n )\n );\n }\n static quantizeSh(sh, bits2) {\n const value = Math.round(sh * 128) + 128;\n const bucketSize = 1 << 8 - bits2;\n const quantized = Math.floor((value + bucketSize / 2) / bucketSize) * bucketSize;\n return Math.max(0, Math.min(255, quantized));\n }\n setSh(index, sh1, sh2, sh3) {\n const shVecs = SH_DEGREE_TO_VECS[this.shDegree] || 0;\n const base1 = 16 + this.numSplats * 19 + index * shVecs * 3;\n for (let j = 0; j < 9; ++j) {\n this.view.setUint8(base1 + j, SpzWriter.quantizeSh(sh1[j], 5));\n }\n if (sh2) {\n const base2 = base1 + 9;\n for (let j = 0; j < 15; ++j) {\n this.view.setUint8(base2 + j, SpzWriter.quantizeSh(sh2[j], 4));\n }\n if (sh3) {\n const base3 = base2 + 15;\n for (let j = 0; j < 21; ++j) {\n this.view.setUint8(base3 + j, SpzWriter.quantizeSh(sh3[j], 4));\n }\n }\n }\n }\n async finalize() {\n const input = new Uint8Array(this.buffer);\n const stream = new ReadableStream({\n async start(controller) {\n controller.enqueue(input);\n controller.close();\n }\n });\n const compressed = stream.pipeThrough(new CompressionStream("gzip"));\n const response = new Response(compressed);\n const buffer = await response.arrayBuffer();\n console.log(\n "Compressed",\n input.length,\n "bytes to",\n buffer.byteLength,\n "bytes"\n );\n return new Uint8Array(buffer);\n }\n }\n async function transcodeSpz(input) {\n var _a2, _b2, _c;\n const splats = new SplatData();\n const {\n inputs,\n clipXyz,\n maxSh,\n fractionalBits = 12,\n opacityThreshold\n } = input;\n for (const input2 of inputs) {\n let transformPos2 = function(pos) {\n pos.multiplyScalar(scale);\n pos.applyQuaternion(quaternion);\n pos.add(translate);\n return pos;\n }, transformScales = function(scales) {\n scales.multiplyScalar(scale);\n return scales;\n }, transformQuaternion = function(quat) {\n quat.premultiply(quaternion);\n return quat;\n }, withinClip = function(p) {\n return !clip || clip.containsPoint(p);\n }, withinOpacity = function(opacity) {\n return opacityThreshold !== void 0 ? opacity >= opacityThreshold : true;\n };\n const scale = ((_a2 = input2.transform) == null ? void 0 : _a2.scale) ?? 1;\n const quaternion = new Quaternion().fromArray(\n ((_b2 = input2.transform) == null ? void 0 : _b2.quaternion) ?? [0, 0, 0, 1]\n );\n const translate = new Vector3().fromArray(\n ((_c = input2.transform) == null ? void 0 : _c.translate) ?? [0, 0, 0]\n );\n const clip = clipXyz ? new Box3(\n new Vector3().fromArray(clipXyz.min),\n new Vector3().fromArray(clipXyz.max)\n ) : void 0;\n let fileType = input2.fileType;\n if (!fileType) {\n fileType = getSplatFileType(input2.fileBytes);\n if (!fileType && input2.pathOrUrl) {\n fileType = getSplatFileTypeFromPath(input2.pathOrUrl);\n }\n }\n switch (fileType) {\n case SplatFileType.PLY: {\n const ply = new PlyReader({ fileBytes: input2.fileBytes });\n await ply.parseHeader();\n let lastIndex = null;\n ply.parseSplats(\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n const center = transformPos2(new Vector3(x2, y, z));\n if (withinClip(center) && withinOpacity(opacity)) {\n lastIndex = splats.pushSplat();\n splats.setCenter(lastIndex, center.x, center.y, center.z);\n const scales = transformScales(\n new Vector3(scaleX, scaleY, scaleZ)\n );\n splats.setScale(lastIndex, scales.x, scales.y, scales.z);\n const quaternion2 = transformQuaternion(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n splats.setQuaternion(\n lastIndex,\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n splats.setOpacity(lastIndex, opacity);\n splats.setColor(lastIndex, r, g, b);\n } else {\n lastIndex = null;\n }\n },\n (index, sh1, sh2, sh3) => {\n if (sh1 && lastIndex !== null) {\n splats.setSh1(lastIndex, sh1);\n }\n if (sh2 && lastIndex !== null) {\n splats.setSh2(lastIndex, sh2);\n }\n if (sh3 && lastIndex !== null) {\n splats.setSh3(lastIndex, sh3);\n }\n }\n );\n break;\n }\n case SplatFileType.SPZ: {\n const spz2 = new SpzReader({ fileBytes: input2.fileBytes });\n const mapping = new Int32Array(spz2.numSplats);\n mapping.fill(-1);\n const centers = new Float32Array(spz2.numSplats * 3);\n const center = new Vector3();\n spz2.parseSplats(\n (index, x2, y, z) => {\n const center2 = transformPos2(new Vector3(x2, y, z));\n centers[index * 3] = center2.x;\n centers[index * 3 + 1] = center2.y;\n centers[index * 3 + 2] = center2.z;\n },\n (index, alpha) => {\n center.fromArray(centers, index * 3);\n if (withinClip(center) && withinOpacity(alpha)) {\n mapping[index] = splats.pushSplat();\n splats.setCenter(mapping[index], center.x, center.y, center.z);\n splats.setOpacity(mapping[index], alpha);\n }\n },\n (index, r, g, b) => {\n if (mapping[index] >= 0) {\n splats.setColor(mapping[index], r, g, b);\n }\n },\n (index, scaleX, scaleY, scaleZ) => {\n if (mapping[index] >= 0) {\n const scales = transformScales(\n new Vector3(scaleX, scaleY, scaleZ)\n );\n splats.setScale(mapping[index], scales.x, scales.y, scales.z);\n }\n },\n (index, quatX, quatY, quatZ, quatW) => {\n if (mapping[index] >= 0) {\n const quaternion2 = transformQuaternion(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n splats.setQuaternion(\n mapping[index],\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n }\n },\n (index, sh1, sh2, sh3) => {\n if (mapping[index] >= 0) {\n splats.setSh1(mapping[index], sh1);\n if (sh2) {\n splats.setSh2(mapping[index], sh2);\n }\n if (sh3) {\n splats.setSh3(mapping[index], sh3);\n }\n }\n }\n );\n break;\n }\n case SplatFileType.SPLAT:\n decodeAntiSplat(\n input2.fileBytes,\n (numSplats) => {\n },\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n const center = transformPos2(new Vector3(x2, y, z));\n if (withinClip(center) && withinOpacity(opacity)) {\n const index2 = splats.pushSplat();\n splats.setCenter(index2, center.x, center.y, center.z);\n const scales = transformScales(\n new Vector3(scaleX, scaleY, scaleZ)\n );\n splats.setScale(index2, scales.x, scales.y, scales.z);\n const quaternion2 = transformQuaternion(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n splats.setQuaternion(\n index2,\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n splats.setOpacity(index2, opacity);\n splats.setColor(index2, r, g, b);\n }\n }\n );\n break;\n case SplatFileType.KSPLAT: {\n let lastIndex = null;\n decodeKsplat(\n input2.fileBytes,\n (numSplats) => {\n },\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n const center = transformPos2(new Vector3(x2, y, z));\n if (withinClip(center) && withinOpacity(opacity)) {\n lastIndex = splats.pushSplat();\n splats.setCenter(lastIndex, center.x, center.y, center.z);\n const scales = transformScales(\n new Vector3(scaleX, scaleY, scaleZ)\n );\n splats.setScale(lastIndex, scales.x, scales.y, scales.z);\n const quaternion2 = transformQuaternion(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n splats.setQuaternion(\n lastIndex,\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n splats.setOpacity(lastIndex, opacity);\n splats.setColor(lastIndex, r, g, b);\n } else {\n lastIndex = null;\n }\n },\n (index, sh1, sh2, sh3) => {\n if (lastIndex !== null) {\n splats.setSh1(lastIndex, sh1);\n if (sh2) {\n splats.setSh2(lastIndex, sh2);\n }\n if (sh3) {\n splats.setSh3(lastIndex, sh3);\n }\n }\n }\n );\n break;\n }\n default:\n throw new Error(`transcodeSpz not implemented for ${fileType}`);\n }\n }\n const shDegree = Math.min(\n maxSh ?? 3,\n splats.sh3 ? 3 : splats.sh2 ? 2 : splats.sh1 ? 1 : 0\n );\n const spz = new SpzWriter({\n numSplats: splats.numSplats,\n shDegree,\n fractionalBits,\n flagAntiAlias: true\n });\n for (let i2 = 0; i2 < splats.numSplats; ++i2) {\n const i3 = i2 * 3;\n const i4 = i2 * 4;\n spz.setCenter(\n i2,\n splats.centers[i3],\n splats.centers[i3 + 1],\n splats.centers[i3 + 2]\n );\n spz.setScale(\n i2,\n splats.scales[i3],\n splats.scales[i3 + 1],\n splats.scales[i3 + 2]\n );\n spz.setQuat(\n i2,\n splats.quaternions[i4],\n splats.quaternions[i4 + 1],\n splats.quaternions[i4 + 2],\n splats.quaternions[i4 + 3]\n );\n spz.setAlpha(i2, splats.opacities[i2]);\n spz.setRgb(\n i2,\n splats.colors[i3],\n splats.colors[i3 + 1],\n splats.colors[i3 + 2]\n );\n if (splats.sh1 && shDegree >= 1) {\n spz.setSh(\n i2,\n splats.sh1.slice(i2 * 9, (i2 + 1) * 9),\n shDegree >= 2 && splats.sh2 ? splats.sh2.slice(i2 * 15, (i2 + 1) * 15) : void 0,\n shDegree >= 3 && splats.sh3 ? splats.sh3.slice(i2 * 21, (i2 + 1) * 21) : void 0\n );\n }\n }\n const spzBytes = await spz.finalize();\n return { fileBytes: spzBytes, clippedCount: spz.clippedCount };\n }\n async function onMessage(event) {\n const { name, args, id } = event.data;\n let result = void 0;\n let error = void 0;\n try {\n switch (name) {\n case "unpackPly": {\n const { packedArray, fileBytes } = args;\n const decoded = await unpackPly({ packedArray, fileBytes });\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedArray,\n extra: decoded.extra\n };\n break;\n }\n case "decodeSpz": {\n const { fileBytes } = args;\n const decoded = unpackSpz(fileBytes);\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedArray,\n extra: decoded.extra\n };\n break;\n }\n case "decodeAntiSplat": {\n const { fileBytes } = args;\n const decoded = unpackAntiSplat(fileBytes);\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedArray\n };\n break;\n }\n case "decodeKsplat": {\n const { fileBytes } = args;\n const decoded = unpackKsplat(fileBytes);\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedArray,\n extra: decoded.extra\n };\n break;\n }\n case "sortSplats": {\n const { maxSplats, totalSplats, readback, ordering } = args;\n result = {\n id,\n readback,\n ...sortSplats({ totalSplats, readback, ordering })\n };\n break;\n }\n case "sortDoubleSplats": {\n const { numSplats, readback, ordering } = args;\n result = {\n id,\n readback,\n ordering\n };\n if (WASM_SPLAT_SORT) {\n result = {\n id,\n readback,\n ordering,\n activeSplats: sort_splats(numSplats, readback, ordering)\n };\n }\n break;\n }\n case "transcodeSpz": {\n const input = args;\n const spzBytes = await transcodeSpz(input);\n result = {\n id,\n fileBytes: spzBytes,\n input\n };\n break;\n }\n default: {\n throw new Error(`Unknown name: ${name}`);\n }\n }\n } catch (e) {\n error = e;\n }\n self.postMessage(\n { id, result, error },\n { transfer: getArrayBuffers(result) }\n );\n }\n async function unpackPly({\n packedArray,\n fileBytes\n }) {\n const ply = new PlyReader({ fileBytes });\n await ply.parseHeader();\n const numSplats = ply.numSplats;\n const extra = {};\n const ZERO_CUTOFF = Math.exp(-20);\n ply.parseSplats(\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n setPackedSplat(\n packedArray,\n index,\n x2,\n y,\n z,\n scaleX < ZERO_CUTOFF ? 0 : Math.max(SCALE_MIN, scaleX),\n scaleY < ZERO_CUTOFF ? 0 : Math.max(SCALE_MIN, scaleY),\n scaleZ < ZERO_CUTOFF ? 0 : Math.max(SCALE_MIN, scaleZ),\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n },\n (index, sh1, sh2, sh3) => {\n if (sh1) {\n if (!extra.sh1) {\n extra.sh1 = new Uint32Array(numSplats * 2);\n }\n encodeSh1Rgb(extra.sh1, index, sh1);\n }\n if (sh2) {\n if (!extra.sh2) {\n extra.sh2 = new Uint32Array(numSplats * 4);\n }\n encodeSh2Rgb(extra.sh2, index, sh2);\n }\n if (sh3) {\n if (!extra.sh3) {\n extra.sh3 = new Uint32Array(numSplats * 4);\n }\n encodeSh3Rgb(extra.sh3, index, sh3);\n }\n }\n );\n return { packedArray, numSplats, extra };\n }\n function unpackSpz(fileBytes) {\n const spz = new SpzReader({ fileBytes });\n const numSplats = spz.numSplats;\n const maxSplats = computeMaxSplats(numSplats);\n const packedArray = new Uint32Array(maxSplats * 4);\n const extra = {};\n spz.parseSplats(\n (index, x2, y, z) => {\n setPackedSplatCenter(packedArray, index, x2, y, z);\n },\n (index, alpha) => {\n setPackedSplatOpacity(packedArray, index, alpha);\n },\n (index, r, g, b) => {\n setPackedSplatRgb(packedArray, index, r, g, b);\n },\n (index, scaleX, scaleY, scaleZ) => {\n setPackedSplatScales(packedArray, index, scaleX, scaleY, scaleZ);\n },\n (index, quatX, quatY, quatZ, quatW) => {\n setPackedSplatQuat(packedArray, index, quatX, quatY, quatZ, quatW);\n },\n (index, sh1, sh2, sh3) => {\n if (sh1) {\n if (!extra.sh1) {\n extra.sh1 = new Uint32Array(numSplats * 2);\n }\n encodeSh1Rgb(extra.sh1, index, sh1);\n }\n if (sh2) {\n if (!extra.sh2) {\n extra.sh2 = new Uint32Array(numSplats * 4);\n }\n encodeSh2Rgb(extra.sh2, index, sh2);\n }\n if (sh3) {\n if (!extra.sh3) {\n extra.sh3 = new Uint32Array(numSplats * 4);\n }\n encodeSh3Rgb(extra.sh3, index, sh3);\n }\n }\n );\n return { packedArray, numSplats, extra };\n }\n const DEPTH_INFINITY = 31744;\n const DEPTH_SIZE = DEPTH_INFINITY + 1;\n let depthArray = null;\n function sortSplats({\n totalSplats,\n readback,\n ordering\n }) {\n if (!depthArray) {\n depthArray = new Uint32Array(DEPTH_SIZE);\n }\n depthArray.fill(0);\n const readbackUint32 = readback.map((layer) => new Uint32Array(layer.buffer));\n const layerSize = readbackUint32[0].length;\n const numLayers = Math.ceil(totalSplats / layerSize);\n let layerBase = 0;\n for (let layer = 0; layer < numLayers; ++layer) {\n const readbackLayer = readbackUint32[layer];\n const layerSplats = Math.min(readbackLayer.length, totalSplats - layerBase);\n for (let i2 = 0; i2 < layerSplats; ++i2) {\n const pri = readbackLayer[i2] & 32767;\n if (pri < DEPTH_INFINITY) {\n depthArray[pri] += 1;\n }\n }\n layerBase += layerSplats;\n }\n let activeSplats = 0;\n for (let j = 0; j < DEPTH_SIZE; ++j) {\n const nextIndex = activeSplats + depthArray[j];\n depthArray[j] = activeSplats;\n activeSplats = nextIndex;\n }\n layerBase = 0;\n for (let layer = 0; layer < numLayers; ++layer) {\n const readbackLayer = readbackUint32[layer];\n const layerSplats = Math.min(readbackLayer.length, totalSplats - layerBase);\n for (let i2 = 0; i2 < layerSplats; ++i2) {\n const pri = readbackLayer[i2] & 32767;\n if (pri < DEPTH_INFINITY) {\n ordering[depthArray[pri]] = layerBase + i2;\n depthArray[pri] += 1;\n }\n }\n layerBase += layerSplats;\n }\n if (depthArray[DEPTH_SIZE - 1] !== activeSplats) {\n throw new Error(\n `Expected ${activeSplats} active splats but got ${depthArray[DEPTH_SIZE - 1]}`\n );\n }\n return { activeSplats, ordering };\n }\n function sortDoubleSplats({\n numSplats,\n readback,\n ordering\n }) {\n if (!depthArray) {\n depthArray = new Uint32Array(DEPTH_SIZE);\n }\n depthArray.fill(0);\n for (let i2 = 0; i2 < numSplats; ++i2) {\n const pri = readback[i2];\n if (pri < DEPTH_INFINITY) {\n depthArray[pri] += 1;\n }\n }\n let activeSplats = 0;\n for (let j = DEPTH_INFINITY - 1; j >= 0; --j) {\n const nextIndex = activeSplats + depthArray[j];\n depthArray[j] = activeSplats;\n activeSplats = nextIndex;\n }\n for (let i2 = 0; i2 < numSplats; ++i2) {\n const pri = readback[i2];\n if (pri < DEPTH_INFINITY) {\n ordering[depthArray[pri]] = i2;\n depthArray[pri] += 1;\n }\n }\n if (depthArray[0] !== activeSplats) {\n throw new Error(\n `Expected ${activeSplats} active splats but got ${depthArray[0]}`\n );\n }\n return { activeSplats, ordering };\n }\n const messageBuffer = [];\n function bufferMessage(event) {\n messageBuffer.push(event);\n }\n async function initialize() {\n self.addEventListener("message", bufferMessage);\n await __wbg_init();\n self.removeEventListener("message", bufferMessage);\n self.addEventListener("message", onMessage);\n for (const event of messageBuffer) {\n onMessage(event);\n }\n messageBuffer.length = 0;\n }\n initialize().catch(console.error);\n})();\n'; const blob = typeof self !== "undefined" && self.Blob && new Blob([jsContent], { type: "text/javascript;charset=utf-8" }); function WorkerWrapper(options) { let objURL; @@ -8455,7 +8268,6 @@ class SplatLoader extends THREE.Loader { } var SplatFileType = /* @__PURE__ */ ((SplatFileType2) => { SplatFileType2["PLY"] = "ply"; - SplatFileType2["WLG0"] = "wlg0"; SplatFileType2["SPZ"] = "spz"; SplatFileType2["SPLAT"] = "splat"; SplatFileType2["KSPLAT"] = "ksplat"; @@ -8466,9 +8278,6 @@ function getSplatFileType(fileBytes) { if ((view.getUint32(0, true) & 16777215) === 7957616) { return "ply"; } - if (view.getUint32(0, true) === 809978967) { - return "wlg0"; - } if ((view.getUint32(0, true) & 16777215) === 559903) { const header = decompressPartialGzip(fileBytes, 4); const gView = new DataView(header.buffer); @@ -8497,9 +8306,6 @@ function getSplatFileTypeFromPath(pathOrUrl) { if (extension === "ply") { return "ply"; } - if (extension === "wlg") { - return "wlg0"; - } if (extension === "spz") { return "spz"; } @@ -8525,13 +8331,6 @@ async function unpackSplats({ } } switch (splatFileType) { - case "wlg0": - return await withWorker(async (worker) => { - const { packedArray, numSplats } = await worker.call("decodeWlg", { - fileBytes - }); - return { packedArray, numSplats }; - }); case "ply": { const ply = new PlyReader({ fileBytes }); await ply.parseHeader(); @@ -10830,38 +10629,6 @@ async function transcodeSpz(input) { } } switch (fileType) { - case SplatFileType.WLG0: { - await __wbg_init(); - const decoded = decode_wlg( - input2.fileBytes, - SPLAT_TEX_WIDTH, - SPLAT_TEX_HEIGHT - ); - for (let i = 0; i < decoded.numSplats; ++i) { - let { center, scales, quaternion: quaternion2, opacity, color } = unpackSplat( - decoded.packedSplats, - i - ); - center = transformPos2(center); - if (withinClip(center) && withinOpacity(opacity)) { - const index = splats.pushSplat(); - splats.setCenter(index, center.x, center.y, center.z); - scales = transformScales(scales); - splats.setScale(index, scales.x, scales.y, scales.z); - quaternion2 = transformQuaternion(quaternion2); - splats.setQuaternion( - index, - quaternion2.x, - quaternion2.y, - quaternion2.z, - quaternion2.w - ); - splats.setOpacity(index, opacity); - splats.setColor(index, color.r, color.g, color.b); - } - } - break; - } case SplatFileType.PLY: { const ply = new PlyReader({ fileBytes: input2.fileBytes }); await ply.parseHeader(); diff --git a/dist/forge.cjs.min.js b/dist/forge.cjs.min.js index 65cd6bd..8cc6115 100644 --- a/dist/forge.cjs.min.js +++ 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in e){const Q=e[I];Q&&!s.declares.has(Q)&&(s.declares.add(Q),n.push(I))}const{globals:a,statements:r,uniforms:g}=this.generate({inputs:A,outputs:e,compile:s});for(const I of a??[])s.globals.add(I);for(const I in g)s.uniforms[I]=g[I];this.update&&s.updaters.push(this.update);for(const I of n){const Q=e[I];Q&&(s.uniforms[Q]||i.push(`${ve(Q,this.outTypes[I])};`))}return r!=null&&r.length&&(i.push("{"),i.push(...r.map(I=>s.indent+I)),i.push("}")),i}}class KA extends V{constructor({inTypes:A,outTypes:e,inputs:s,update:i,globals:n,construct:a}){super({inTypes:A,outTypes:e,inputs:s,update:i,globals:n,generate:r=>this.generateBlock(r)}),this.construct=a}generateBlock({inputs:A,outputs:e,compile:s}){var c,h;const i={},n={};for(const l in A)A[l]!=null&&(i[l]=new ht(this.inTypes[l],A[l]));for(const l in e)e[l]!=null&&(n[l]=new $A(this.outTypes[l]));const a={roots:[]},r=this.construct(i,n,a);for(const l of((c=this.globals)==null?void 0:c.call(this,{inputs:A,outputs:e,compile:s}))??[])s.globals.add(l);const g=[],I=new Map;function Q(l,u,w){let d=I.get(l);if(!d){d={sequence:s.nextSequence(),outNames:new Map,newOuts:new Set},I.set(l,d);for(const p in l.inputs){let y=l.inputs[p];for(;y;){if(y instanceof $A){y instanceof z&&Q(y.dyno,y.key);break}y=y.dynoOut()}}g.push(l)}u&&(w||d.newOuts.add(u),d.outNames.set(u,w??`${u}_${d.sequence}`))}for(const l of a.roots)Q(l);for(const l in n){let u=(r==null?void 0:r[l])??n[l];for(;u;){if(u instanceof $A){u instanceof z&&Q(u.dyno,u.key,e[l]);break}u=u.dynoOut()}n[l]=u}const o=[];for(const l of g){const u={},w={};for(const y in l.inputs){let m=l.inputs[y];for(;m;){if(m instanceof $A){if(m instanceof ht)u[y]=m.getLiteral();else if(m instanceof z){const F=(h=I.get(m.dyno))==null?void 0:h.outNames.get(m.key);if(!F)throw new Error(`Source not found for ${m.dyno.constructor.name}.${m.key}`);u[y]=F}break}m=m.dynoOut()}}const d=I.get(l)??{outNames:new Map};for(const[y,m]of d.outNames.entries())w[y]=m;const p=l.compile({inputs:u,outputs:w,compile:s});o.push(p)}const E=[];for(const l in e)n[l]instanceof ht&&E.push(`${e[l]} = ${n[l].getLiteral()};`);return E.length>0&&o.push(E),{statements:o.flatMap((l,u)=>u===0?l:["",...l])}}}function GA(t,A,e,{update:s,globals:i}={}){return new KA({inTypes:t,outTypes:A,construct:e,update:s,globals:i})}function Kt({inTypes:t,outTypes:A,inputs:e,update:s,globals:i,statements:n,generate:a}){return new V({inTypes:t,outTypes:A,inputs:e,update:s,globals:i,statements:n,generate:a})}function ve(t,A,e){const s=typeof A=="string"?A:A.type;if(!s)throw new Error(`Invalid DynoType: ${String(A)}`);return`${s} ${t}${e!=null?`[${e}]`:""}`}function kA(t){var n;let A=!1;const e=t.split(` +`).map(a=>{const r=a.trimEnd();return A?r:r.length>0?(A=!0,r):null}).filter(a=>a!=null);for(;e.length>0&&e[e.length-1].length===0;)e.pop();if(e.length===0)return[];const s=(n=e[0].match(/^\s*/))==null?void 0:n[0];if(!s)return e;const i=new RegExp(`^${s}`);return e.map(a=>a.replace(i,""))}function QA(t){return kA(t).join(` +`)}class x extends V{constructor({a:A,outKey:e,outTypeFunc:s}){const i={a:q(A)},n=s(q(A)),a={[e]:n};super({inTypes:i,outTypes:a,inputs:{a:A}}),this.outKey=e}dynoOut(){return new z(this,this.outKey)}}class W extends V{constructor({a:A,b:e,outKey:s,outTypeFunc:i}){const n={a:q(A),b:q(e)},a=i(q(A),q(e)),r={[s]:a};super({inTypes:n,outTypes:r,inputs:{a:A,b:e}}),this.outKey=s}dynoOut(){return new z(this,this.outKey)}}class It extends V{constructor({a:A,b:e,c:s,outKey:i,outTypeFunc:n}){const a={a:q(A),b:q(e),c:q(s)},r=n(q(A),q(e),q(s)),g={[i]:r};super({inTypes:a,outTypes:g,inputs:{a:A,b:e,c:s}}),this.outKey=i}dynoOut(){return new z(this,this.outKey)}}const sA={type:"Gsplat"},qt={type:"PackedSplats"},gg=t=>new Cs({packedSplats:t}),Rt=(t,A)=>new hs({packedSplats:t,index:A}),Es=(t,A,e,s)=>new ls({packedSplats:t,index:A,base:e,count:s}),Mt=t=>new us({gsplat:t}),lt=({gsplat:t,flags:A,index:e,center:s,scales:i,quaternion:n,rgba:a,rgb:r,opacity:g,x:I,y:Q,z:o,r:E,g:C,b:c})=>new ds({gsplat:t,flags:A,index:e,center:s,scales:i,quaternion:n,rgba:a,rgb:r,opacity:g,x:I,y:Q,z:o,r:E,g:C,b:c}),og=t=>new ys({gsplat:t}),Le=(t,{scale:A,rotate:e,translate:s,recolor:i})=>new ps({gsplat:t,scale:A,rotate:e,translate:s,recolor:i}),MA=QA(` struct Gsplat { vec3 center; uint flags; @@ -15,12 +14,12 @@ ${g.stack}`:B}let fI=0,Mg=null;function AI(){return(Mg===null||Mg.byteLength===0 bool isGsplatActive(uint flags) { return (flags & GSPLAT_FLAG_ACTIVE) != 0u; } -`),rI=nA(` +`),Be=QA(` struct PackedSplats { usampler2DArray texture; int numSplats; }; -`);class uB extends R{constructor({packedSplats:A}){super({a:A,outKey:"numSplats",outTypeFunc:()=>"int"}),this.statements=({inputs:I,outputs:B})=>[`${B.numSplats} = ${I.a}.numSplats;`]}}const dB=nA(` +`);class Cs extends x{constructor({packedSplats:A}){super({a:A,outKey:"numSplats",outTypeFunc:()=>"int"}),this.statements=({inputs:e,outputs:s})=>[`${s.numSplats} = ${e.a}.numSplats;`]}}const cs=QA(` bool readPackedSplat(usampler2DArray texture, int numSplats, int index, out Gsplat gsplat) { if ((index >= 0) && (index < numSplats)) { uvec4 packed = texelFetch(texture, splatTexCoord(index), 0); @@ -30,22 +29,22 @@ ${g.stack}`:B}let fI=0,Mg=null;function AI(){return(Mg===null||Mg.byteLength===0 return false; } } -`);class GB extends T{constructor({packedSplats:A,index:I}){super({inTypes:{packedSplats:Vg,index:"int"},outTypes:{gsplat:BA},inputs:{packedSplats:A,index:I},globals:()=>[kA,rI,dB],statements:({inputs:B,outputs:Q})=>{const{gsplat:C}=Q;if(!C)return[];const{packedSplats:E,index:t}=B;let i;return E&&t?i=fA(` - if (readPackedSplat(${E}.texture, ${E}.numSplats, ${t}, ${C})) { - bool zeroSize = all(equal(${C}.scales, vec3(0.0, 0.0, 0.0))); - ${C}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE; +`);class hs extends V{constructor({packedSplats:A,index:e}){super({inTypes:{packedSplats:qt,index:"int"},outTypes:{gsplat:sA},inputs:{packedSplats:A,index:e},globals:()=>[MA,Be,cs],statements:({inputs:s,outputs:i})=>{const{gsplat:n}=i;if(!n)return[];const{packedSplats:a,index:r}=s;let g;return a&&r?g=kA(` + if (readPackedSplat(${a}.texture, ${a}.numSplats, ${r}, ${n})) { + bool zeroSize = all(equal(${n}.scales, vec3(0.0, 0.0, 0.0))); + ${n}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE; } else { - ${C}.flags = 0u; + ${n}.flags = 0u; } - `):i=[`${C}.flags = 0u;`],i.push(`${C}.index = ${t??"0"};`),i}})}dynoOut(){return new W(this,"gsplat")}}class MB extends T{constructor({packedSplats:A,index:I,base:B,count:Q}){super({inTypes:{packedSplats:Vg,index:"int",base:"int",count:"int"},outTypes:{gsplat:BA},inputs:{packedSplats:A,index:I,base:B,count:Q},globals:()=>[kA,rI,dB],statements:({inputs:C,outputs:E})=>{const{gsplat:t}=E;if(!t)return[];const{packedSplats:i,index:e,base:n,count:s}=C;let o;return i&&e&&n&&s?o=fA(` - ${t}.flags = 0u; - if ((${e} >= ${n}) && (${e} < (${n} + ${s}))) { - if (readPackedSplat(${i}.texture, ${i}.numSplats, ${e}, ${t})) { - bool zeroSize = all(equal(${t}.scales, vec3(0.0, 0.0, 0.0))); - ${t}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE; + `):g=[`${n}.flags = 0u;`],g.push(`${n}.index = ${r??"0"};`),g}})}dynoOut(){return new z(this,"gsplat")}}class ls extends V{constructor({packedSplats:A,index:e,base:s,count:i}){super({inTypes:{packedSplats:qt,index:"int",base:"int",count:"int"},outTypes:{gsplat:sA},inputs:{packedSplats:A,index:e,base:s,count:i},globals:()=>[MA,Be,cs],statements:({inputs:n,outputs:a})=>{const{gsplat:r}=a;if(!r)return[];const{packedSplats:g,index:I,base:Q,count:o}=n;let E;return g&&I&&Q&&o?E=kA(` + ${r}.flags = 0u; + if ((${I} >= ${Q}) && (${I} < (${Q} + ${o}))) { + if (readPackedSplat(${g}.texture, ${g}.numSplats, ${I}, ${r})) { + bool zeroSize = all(equal(${r}.scales, vec3(0.0, 0.0, 0.0))); + ${r}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE; } } - `):o=[`${t}.flags = 0u;`],o.push(`${t}.index = ${e??"0"};`),o}})}dynoOut(){return new W(this,"gsplat")}}class NB extends T{constructor({gsplat:A}){super({inTypes:{gsplat:BA},outTypes:{flags:"uint",active:"bool",index:"int",center:"vec3",scales:"vec3",quaternion:"vec4",rgba:"vec4",rgb:"vec3",opacity:"float",x:"float",y:"float",z:"float",r:"float",g:"float",b:"float"},inputs:{gsplat:A},globals:()=>[kA],statements:({inputs:I,outputs:B})=>{const{gsplat:Q}=I,{flags:C,active:E,index:t,center:i,scales:e,quaternion:n,rgba:s,rgb:o,opacity:r,x:c,y:h,z:w,r:D,g:y,b:l}=B;return[C?`${C} = ${Q?`${Q}.flags`:"0u"};`:null,E?`${E} = isGsplatActive(${Q?`${Q}.flags`:"0u"});`:null,t?`${t} = ${Q?`${Q}.index`:"0"};`:null,i?`${i} = ${Q?`${Q}.center`:"vec3(0.0, 0.0, 0.0)"};`:null,e?`${e} = ${Q?`${Q}.scales`:"vec3(0.0, 0.0, 0.0)"};`:null,n?`${n} = ${Q?`${Q}.quaternion`:"vec4(0.0, 0.0, 0.0, 1.0)"};`:null,s?`${s} = ${Q?`${Q}.rgba`:"vec4(0.0, 0.0, 0.0, 0.0)"};`:null,o?`${o} = ${Q?`${Q}.rgba.rgb`:"vec3(0.0, 0.0, 0.0)"};`:null,r?`${r} = ${Q?`${Q}.rgba.a`:"0.0"};`:null,c?`${c} = ${Q?`${Q}.center.x`:"0.0"};`:null,h?`${h} = ${Q?`${Q}.center.y`:"0.0"};`:null,w?`${w} = ${Q?`${Q}.center.z`:"0.0"};`:null,D?`${D} = ${Q?`${Q}.rgba.r`:"0.0"};`:null,y?`${y} = ${Q?`${Q}.rgba.g`:"0.0"};`:null,l?`${l} = ${Q?`${Q}.rgba.b`:"0.0"};`:null].filter(Boolean)}})}}class pB extends T{constructor({gsplat:A,flags:I,index:B,center:Q,scales:C,quaternion:E,rgba:t,rgb:i,opacity:e,x:n,y:s,z:o,r,g:c,b:h}){super({inTypes:{gsplat:BA,flags:"uint",index:"int",center:"vec3",scales:"vec3",quaternion:"vec4",rgba:"vec4",rgb:"vec3",opacity:"float",x:"float",y:"float",z:"float",r:"float",g:"float",b:"float"},outTypes:{gsplat:BA},inputs:{gsplat:A,flags:I,index:B,center:Q,scales:C,quaternion:E,rgba:t,rgb:i,opacity:e,x:n,y:s,z:o,r,g:c,b:h},globals:()=>[kA],statements:({inputs:w,outputs:D})=>{const{gsplat:y}=D;if(!y)return[];const{gsplat:l,flags:d,index:u,center:p,scales:m,quaternion:M,rgba:G,rgb:J,opacity:k,x:N,y:Y,z:F,r:f,g:U,b:L}=w;return[`${y}.flags = ${d??(l?`${l}.flags`:"0u")};`,`${y}.index = ${u??(l?`${l}.index`:"0")};`,`${y}.center = ${p??(l?`${l}.center`:"vec3(0.0, 0.0, 0.0)")};`,`${y}.scales = ${m??(l?`${l}.scales`:"vec3(0.0, 0.0, 0.0)")};`,`${y}.quaternion = ${M??(l?`${l}.quaternion`:"vec4(0.0, 0.0, 0.0, 1.0)")};`,`${y}.rgba = ${G??(l?`${l}.rgba`:"vec4(0.0, 0.0, 0.0, 0.0)")};`,J?`${y}.rgba.rgb = ${J};`:null,k?`${y}.rgba.a = ${k};`:null,N?`${y}.center.x = ${N};`:null,Y?`${y}.center.y = ${Y};`:null,F?`${y}.center.z = ${F};`:null,f?`${y}.rgba.r = ${f};`:null,U?`${y}.rgba.g = ${U};`:null,L?`${y}.rgba.b = ${L};`:null].filter(Boolean)}})}dynoOut(){return new W(this,"gsplat")}}const kB=nA(` + `):E=[`${r}.flags = 0u;`],E.push(`${r}.index = ${I??"0"};`),E}})}dynoOut(){return new z(this,"gsplat")}}class us extends V{constructor({gsplat:A}){super({inTypes:{gsplat:sA},outTypes:{flags:"uint",active:"bool",index:"int",center:"vec3",scales:"vec3",quaternion:"vec4",rgba:"vec4",rgb:"vec3",opacity:"float",x:"float",y:"float",z:"float",r:"float",g:"float",b:"float"},inputs:{gsplat:A},globals:()=>[MA],statements:({inputs:e,outputs:s})=>{const{gsplat:i}=e,{flags:n,active:a,index:r,center:g,scales:I,quaternion:Q,rgba:o,rgb:E,opacity:C,x:c,y:h,z:l,r:u,g:w,b:d}=s;return[n?`${n} = ${i?`${i}.flags`:"0u"};`:null,a?`${a} = isGsplatActive(${i?`${i}.flags`:"0u"});`:null,r?`${r} = ${i?`${i}.index`:"0"};`:null,g?`${g} = ${i?`${i}.center`:"vec3(0.0, 0.0, 0.0)"};`:null,I?`${I} = ${i?`${i}.scales`:"vec3(0.0, 0.0, 0.0)"};`:null,Q?`${Q} = ${i?`${i}.quaternion`:"vec4(0.0, 0.0, 0.0, 1.0)"};`:null,o?`${o} = ${i?`${i}.rgba`:"vec4(0.0, 0.0, 0.0, 0.0)"};`:null,E?`${E} = ${i?`${i}.rgba.rgb`:"vec3(0.0, 0.0, 0.0)"};`:null,C?`${C} = ${i?`${i}.rgba.a`:"0.0"};`:null,c?`${c} = ${i?`${i}.center.x`:"0.0"};`:null,h?`${h} = ${i?`${i}.center.y`:"0.0"};`:null,l?`${l} = ${i?`${i}.center.z`:"0.0"};`:null,u?`${u} = ${i?`${i}.rgba.r`:"0.0"};`:null,w?`${w} = ${i?`${i}.rgba.g`:"0.0"};`:null,d?`${d} = ${i?`${i}.rgba.b`:"0.0"};`:null].filter(Boolean)}})}}class ds extends V{constructor({gsplat:A,flags:e,index:s,center:i,scales:n,quaternion:a,rgba:r,rgb:g,opacity:I,x:Q,y:o,z:E,r:C,g:c,b:h}){super({inTypes:{gsplat:sA,flags:"uint",index:"int",center:"vec3",scales:"vec3",quaternion:"vec4",rgba:"vec4",rgb:"vec3",opacity:"float",x:"float",y:"float",z:"float",r:"float",g:"float",b:"float"},outTypes:{gsplat:sA},inputs:{gsplat:A,flags:e,index:s,center:i,scales:n,quaternion:a,rgba:r,rgb:g,opacity:I,x:Q,y:o,z:E,r:C,g:c,b:h},globals:()=>[MA],statements:({inputs:l,outputs:u})=>{const{gsplat:w}=u;if(!w)return[];const{gsplat:d,flags:p,index:y,center:m,scales:F,quaternion:D,rgba:f,rgb:R,opacity:S,x:M,y:b,z:N,r:U,g:G,b:L}=l;return[`${w}.flags = ${p??(d?`${d}.flags`:"0u")};`,`${w}.index = ${y??(d?`${d}.index`:"0")};`,`${w}.center = ${m??(d?`${d}.center`:"vec3(0.0, 0.0, 0.0)")};`,`${w}.scales = ${F??(d?`${d}.scales`:"vec3(0.0, 0.0, 0.0)")};`,`${w}.quaternion = ${D??(d?`${d}.quaternion`:"vec4(0.0, 0.0, 0.0, 1.0)")};`,`${w}.rgba = ${f??(d?`${d}.rgba`:"vec4(0.0, 0.0, 0.0, 0.0)")};`,R?`${w}.rgba.rgb = ${R};`:null,S?`${w}.rgba.a = ${S};`:null,M?`${w}.center.x = ${M};`:null,b?`${w}.center.y = ${b};`:null,N?`${w}.center.z = ${N};`:null,U?`${w}.rgba.r = ${U};`:null,G?`${w}.rgba.g = ${G};`:null,L?`${w}.rgba.b = ${L};`:null].filter(Boolean)}})}dynoOut(){return new z(this,"gsplat")}}const ws=QA(` vec3 gsplatNormal(vec3 scales, vec4 quaternion) { float minScale = min(scales.x, min(scales.y, scales.z)); vec3 normal; @@ -58,13 +57,13 @@ ${g.stack}`:B}let fI=0,Mg=null;function AI(){return(Mg===null||Mg.byteLength===0 } return quatVec(quaternion, normal); } -`);class FB extends R{constructor({gsplat:A}){super({a:A,outKey:"normal",outTypeFunc:()=>"vec3"}),this.globals=()=>[kA,kB],this.statements=({inputs:I,outputs:B})=>[`${B.normal} = gsplatNormal(${I.a}.scales, ${I.a}.quaternion);`]}}class RB extends T{constructor({gsplat:A,scale:I,rotate:B,translate:Q,recolor:C}){super({inTypes:{gsplat:BA,scale:"float",rotate:"vec4",translate:"vec3",recolor:"vec4"},outTypes:{gsplat:BA},inputs:{gsplat:A,scale:I,rotate:B,translate:Q,recolor:C},globals:()=>[kA],statements:({inputs:E,outputs:t,compile:i})=>{const{gsplat:e}=t;if(!e||!E.gsplat)return[];const{scale:n,rotate:s,translate:o,recolor:r}=E,c=i.indent;return[`${e} = ${E.gsplat};`,`if (isGsplatActive(${e}.flags)) {`,n?`${c}${e}.center *= ${n};`:null,s?`${c}${e}.center = quatVec(${s}, ${e}.center);`:null,o?`${c}${e}.center += ${o};`:null,n?`${c}${e}.scales *= ${n};`:null,s?`${c}${e}.quaternion = quatQuat(${s}, ${e}.quaternion);`:null,r?`${c}${e}.rgba *= ${r};`:null,"}"].filter(Boolean)}})}dynoOut(){return new W(this,"gsplat")}}const JB=g=>new mB({gsplat:g}),li=g=>new WI({rgba8:g});class mB extends T{constructor({gsplat:A}){super({inTypes:{gsplat:BA},inputs:{gsplat:A},globals:()=>[kA],statements:({inputs:I,outputs:B})=>{const{output:Q}=B;if(!Q)return[];const{gsplat:C}=I;return C?fA(` - if (isGsplatActive(${C}.flags)) { - ${Q} = packSplat(${C}.center, ${C}.scales, ${C}.quaternion, ${C}.rgba); +`);class ys extends x{constructor({gsplat:A}){super({a:A,outKey:"normal",outTypeFunc:()=>"vec3"}),this.globals=()=>[MA,ws],this.statements=({inputs:e,outputs:s})=>[`${s.normal} = gsplatNormal(${e.a}.scales, ${e.a}.quaternion);`]}}class ps extends V{constructor({gsplat:A,scale:e,rotate:s,translate:i,recolor:n}){super({inTypes:{gsplat:sA,scale:"float",rotate:"vec4",translate:"vec3",recolor:"vec4"},outTypes:{gsplat:sA},inputs:{gsplat:A,scale:e,rotate:s,translate:i,recolor:n},globals:()=>[MA],statements:({inputs:a,outputs:r,compile:g})=>{const{gsplat:I}=r;if(!I||!a.gsplat)return[];const{scale:Q,rotate:o,translate:E,recolor:C}=a,c=g.indent;return[`${I} = ${a.gsplat};`,`if 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qQ(g,A="isNan"){if(g==="float")return"bool";if(g==="vec2")return"bvec2";if(g==="vec3")return"bvec3";if(g==="vec4")return"bvec4";throw new Error(`Invalid ${A} types: ${g}`)}function Ge(g){return qQ(g,"isInf")}const pA=(g,A)=>new TQ({a:g,b:A}),xg=(g,A)=>new XQ({a:g,b:A}),cA=(g,A)=>new zQ({a:g,b:A}),BI=(g,A)=>new jQ({a:g,b:A}),YI=(g,A)=>new OQ({a:g,b:A}),vQ=(g,A)=>new PQ({a:g,b:A}),Me=g=>new _Q({a:g}).outputs,Ne=g=>new $Q({a:g}),pe=g=>new AC({a:g}),ke=g=>new gC({a:g}),Fe=g=>new IC({a:g}),Re=g=>new BC({a:g}),Je=g=>new QC({a:g}),me=g=>new CC({a:g}),QI=g=>new EC({a:g}),fe=(g,A)=>new tC({a:g,b:A}),Se=g=>new iC({a:g}),Ye=g=>new sC({a:g}),Ue=g=>new eC({a:g}),xe=g=>new aC({a:g}),Le=g=>new nC({a:g}),be=g=>new oC({a:g}),He=g=>new rC({a:g}),Ke=(g,A)=>new cC({a:g,b:A}),WQ=(g,A)=>new hC({a:g,b:A}),Ze=(g,A,I)=>new wC({a:g,min:A,max:I}),VQ=(g,A,I)=>new DC({a:g,b:A,t:I}),qe=(g,A)=>new lC({edge:g,x:A}),ve=(g,A,I)=>new yC({edge0:g,edge1:A,x:I}),We=g=>new uC({a:g}),Ve=g=>new dC({a:g});class TQ extends O{constructor({a:A,b:I}){super({a:A,b:I,outKey:"sum",outTypeFunc:zI}),this.statements=({inputs:B,outputs:Q})=>[`${Q.sum} = ${B.a} + ${B.b};`]}}class XQ extends O{constructor({a:A,b:I}){super({a:A,b:I,outKey:"difference",outTypeFunc:Ps}),this.statements=({inputs:B,outputs:Q})=>[`${Q.difference} = ${B.a} - ${B.b};`]}}class zQ extends O{constructor({a:A,b:I}){super({a:A,b:I,outKey:"product",outTypeFunc:_s}),this.statements=({inputs:B,outputs:Q})=>[`${Q.product} = ${B.a} * ${B.b};`]}}class jQ extends O{constructor({a:A,b:I}){super({a:A,b:I,outKey:"quotient",outTypeFunc:$s}),this.statements=({inputs:B,outputs:Q})=>[`${Q.quotient} = ${B.a} / ${B.b};`]}}class OQ extends O{constructor({a:A,b:I}){super({a:A,b:I,outKey:"remainder",outTypeFunc:Ae}),this.statements=({inputs:B,outputs:Q})=>[`${Q.remainder} = ${B.a} % ${B.b};`]}}class PQ extends O{constructor({a:A,b:I}){super({a:A,b:I,outKey:"remainder",outTypeFunc:ge}),this.statements=({inputs:B,outputs:Q})=>[`${Q.remainder} = mod(${B.a}, ${B.b});`]}}class _Q extends T{constructor({a:A}){const I={a:v(A)},B=I.a,Q={fract:B,integer:B};super({inTypes:I,outTypes:Q,inputs:{a:A}}),this.statements=({inputs:C,outputs:E})=>[`${E.fract} = modf(${C.a}, ${E.integer});`]}}class $Q extends R{constructor({a:A}){super({a:A,outKey:"neg",outTypeFunc:Ie}),this.statements=({inputs:I,outputs:B})=>[`${B.neg} = -${I.a};`]}}class AC extends R{constructor({a:A}){super({a:A,outKey:"abs",outTypeFunc:Be}),this.statements=({inputs:I,outputs:B})=>[`${B.abs} = abs(${I.a});`]}}class gC extends R{constructor({a:A}){super({a:A,outKey:"sign",outTypeFunc:Qe}),this.statements=({inputs:I,outputs:B})=>[`${B.sign} = sign(${I.a});`]}}class IC extends R{constructor({a:A}){super({a:A,outKey:"floor",outTypeFunc:Ce}),this.statements=({inputs:I,outputs:B})=>[`${B.floor} = floor(${I.a});`]}}class BC extends R{constructor({a:A}){super({a:A,outKey:"ceil",outTypeFunc:Ee}),this.statements=({inputs:I,outputs:B})=>[`${B.ceil} = ceil(${I.a});`]}}class QC extends R{constructor({a:A}){super({a:A,outKey:"trunc",outTypeFunc:te}),this.statements=({inputs:I,outputs:B})=>[`${B.trunc} = trunc(${I.a});`]}}class CC extends R{constructor({a:A}){super({a:A,outKey:"round",outTypeFunc:ie}),this.statements=({inputs:I,outputs:B})=>[`${B.round} = round(${I.a});`]}}class EC extends R{constructor({a:A}){super({a:A,outKey:"fract",outTypeFunc:se}),this.statements=({inputs:I,outputs:B})=>[`${B.fract} = fract(${I.a});`]}}class tC extends O{constructor({a:A,b:I}){super({a:A,b:I,outKey:"power",outTypeFunc:ee}),this.statements=({inputs:B,outputs:Q})=>[`${Q.power} = pow(${B.a}, ${B.b});`]}}class iC extends R{constructor({a:A}){super({a:A,outKey:"exp",outTypeFunc:ae}),this.statements=({inputs:I,outputs:B})=>[`${B.exp} = exp(${I.a});`]}}class sC extends R{constructor({a:A}){super({a:A,outKey:"exp2",outTypeFunc:ne}),this.statements=({inputs:I,outputs:B})=>[`${B.exp2} = exp2(${I.a});`]}}class eC extends R{constructor({a:A}){super({a:A,outKey:"log",outTypeFunc:oe}),this.statements=({inputs:I,outputs:B})=>[`${B.log} = log(${I.a});`]}}class aC extends R{constructor({a:A}){super({a:A,outKey:"log2",outTypeFunc:re}),this.statements=({inputs:I,outputs:B})=>[`${B.log2} = log2(${I.a});`]}}class nC extends R{constructor({a:A}){super({a:A,outKey:"sqr",outTypeFunc:ce}),this.statements=({inputs:I,outputs:B})=>[`${B.sqr} = ${I.a} * ${I.a};`]}}class oC extends R{constructor({a:A}){super({a:A,outKey:"sqrt",outTypeFunc:he}),this.statements=({inputs:I,outputs:B})=>[`${B.sqrt} = sqrt(${I.a});`]}}class rC extends R{constructor({a:A}){super({a:A,outKey:"inversesqrt",outTypeFunc:we}),this.statements=({inputs:I,outputs:B})=>[`${B.inversesqrt} = inversesqrt(${I.a});`]}}class cC extends O{constructor({a:A,b:I}){super({a:A,b:I,outKey:"min",outTypeFunc:ZQ}),this.statements=({inputs:B,outputs:Q})=>[`${Q.min} = min(${B.a}, ${B.b});`]}}class hC extends O{constructor({a:A,b:I}){super({a:A,b:I,outKey:"max",outTypeFunc:De}),this.statements=({inputs:B,outputs:Q})=>[`${Q.max} = max(${B.a}, ${B.b});`]}}class wC extends ng{constructor({a:A,min:I,max:B}){super({a:A,b:I,c:B,outKey:"clamp",outTypeFunc:le}),this.statements=({inputs:Q,outputs:C})=>{const{a:E,b:t,c:i}=Q;return[`${C.clamp} = clamp(${E}, ${t}, ${i});`]}}}class DC extends ng{constructor({a:A,b:I,t:B}){super({a:A,b:I,c:B,outKey:"mix",outTypeFunc:ye}),this.statements=({inputs:Q,outputs:C})=>{const{a:E,b:t,c:i}=Q;return[`${C.mix} = mix(${E}, ${t}, ${i});`]}}}class lC extends O{constructor({edge:A,x:I}){super({a:A,b:I,outKey:"step",outTypeFunc:ue}),this.statements=({inputs:B,outputs:Q})=>{const{a:C,b:E}=B;return[`${Q.step} = step(${C}, ${E});`]}}}class yC extends ng{constructor({edge0:A,edge1:I,x:B}){super({a:A,b:I,c:B,outKey:"smoothstep",outTypeFunc:de}),this.statements=({inputs:Q,outputs:C})=>{const{a:E,b:t,c:i}=Q;return[`${C.smoothstep} = smoothstep(${E}, ${t}, ${i});`]}}}class uC extends R{constructor({a:A}){super({a:A,outKey:"isNan",outTypeFunc:qQ}),this.statements=({inputs:I,outputs:B})=>[`${B.isNan} = isNan(${I.a});`]}}class dC extends R{constructor({a:A}){super({a:A,outKey:"isInf",outTypeFunc:Ge}),this.statements=({inputs:I,outputs:B})=>[`${B.isInf} = isInf(${I.a});`]}}const Te=(g,A)=>new GC({a:g,b:A}),Xe=(g,A)=>new MC({a:g,b:A}),ze=(g,A)=>new NC({a:g,b:A}),je=g=>new pC({a:g}),Oe=(g,A)=>new kC({a:g,b:A}),Pe=(g,A)=>new FC({a:g,b:A}),_e=(g,A)=>new RC({a:g,b:A}),$e=(g,A)=>new JC({a:g,b:A}),Aa=(g,A)=>new mC({a:g,b:A}),ga=(g,A)=>new fC({a:g,b:A}),Ia=g=>new SC({a:g}),Ba=g=>new YC({a:g}),Qa=(g,A,I)=>new UC({cond:g,t:A,f:I}),Ca=g=>new LC({a:g});class GC extends O{constructor({a:A,b:I}){super({a:A,b:I,outTypeFunc:(B,Q)=>B,outKey:"and"}),this.statements=({inputs:B,outputs:Q})=>this.outTypes.and==="bool"?[`${Q.and} = ${B.a} && ${B.b};`]:[`${Q.and} = ${B.a} & ${B.b};`]}}class MC extends O{constructor({a:A,b:I}){super({a:A,b:I,outTypeFunc:(B,Q)=>B,outKey:"or"}),this.statements=({inputs:B,outputs:Q})=>this.outTypes.or==="bool"?[`${Q.or} = ${B.a} || ${B.b};`]:[`${Q.or} = ${B.a} | ${B.b};`]}}class NC extends O{constructor({a:A,b:I}){super({a:A,b:I,outTypeFunc:(B,Q)=>B,outKey:"xor"}),this.statements=({inputs:B,outputs:Q})=>this.outTypes.xor==="bool"?[`${Q.xor} = ${B.a} ^^ ${B.b};`]:[`${Q.xor} = ${B.a} ^ ${B.b};`]}}class pC extends R{constructor({a:A}){super({a:A,outTypeFunc:I=>I,outKey:"not"}),this.statements=({inputs:I,outputs:B})=>this.outTypes.not==="bool"?[`${B.not} = !${I.a};`]:[`${B.not} = not(${I.a});`]}}class kC extends O{constructor({a:A,b:I}){super({a:A,b:I,outTypeFunc:(B,Q)=>hI(B,"lessThan"),outKey:"lessThan"}),this.statements=({inputs:B,outputs:Q})=>this.outTypes.lessThan==="bool"?[`${Q.lessThan} = ${B.a} < ${B.b};`]:[`${Q.lessThan} = lessThan(${B.a}, ${B.b});`]}}class FC extends O{constructor({a:A,b:I}){super({a:A,b:I,outTypeFunc:(B,Q)=>hI(B,"lessThanEqual"),outKey:"lessThanEqual"}),this.statements=({inputs:B,outputs:Q})=>this.outTypes.lessThanEqual==="bool"?[`${Q.lessThanEqual} = ${B.a} <= ${B.b};`]:[`${Q.lessThanEqual} = lessThanEqual(${B.a}, ${B.b});`]}}class RC extends O{constructor({a:A,b:I}){super({a:A,b:I,outTypeFunc:(B,Q)=>hI(B,"greaterThan"),outKey:"greaterThan"}),this.statements=({inputs:B,outputs:Q})=>this.outTypes.greaterThan==="bool"?[`${Q.greaterThan} = ${B.a} > ${B.b};`]:[`${Q.greaterThan} = greaterThan(${B.a}, ${B.b});`]}}class JC extends O{constructor({a:A,b:I}){super({a:A,b:I,outTypeFunc:(B,Q)=>hI(B,"greaterThanEqual"),outKey:"greaterThanEqual"}),this.statements=({inputs:B,outputs:Q})=>this.outTypes.greaterThanEqual==="bool"?[`${Q.greaterThanEqual} = ${B.a} >= ${B.b};`]:[`${Q.greaterThanEqual} = greaterThanEqual(${B.a}, ${B.b});`]}}class mC extends O{constructor({a:A,b:I}){super({a:A,b:I,outTypeFunc:xC,outKey:"equal"}),this.statements=({inputs:B,outputs:Q})=>this.outTypes.equal==="bool"?[`${Q.equal} = ${B.a} == ${B.b};`]:[`${Q.equal} = equal(${B.a}, ${B.b});`]}}class fC extends O{constructor({a:A,b:I}){super({a:A,b:I,outTypeFunc:Ea,outKey:"notEqual"}),this.statements=({inputs:B,outputs:Q})=>this.outTypes.notEqual==="bool"?[`${Q.notEqual} = ${B.a} != ${B.b};`]:[`${Q.notEqual} = notEqual(${B.a}, ${B.b});`]}}class SC extends R{constructor({a:A}){super({a:A,outTypeFunc:I=>"bool",outKey:"any"}),this.statements=({inputs:I,outputs:B})=>[`${B.any} = any(${I.a});`]}}class YC extends R{constructor({a:A}){super({a:A,outTypeFunc:I=>"bool",outKey:"all"}),this.statements=({inputs:I,outputs:B})=>[`${B.all} = all(${I.a});`]}}class UC extends ng{constructor({cond:A,t:I,f:B}){super({a:A,b:I,c:B,outKey:"select",outTypeFunc:(Q,C,E)=>C}),this.statements=({inputs:Q,outputs:C})=>{const{a:E,b:t,c:i}=Q;return[`${C.select} = (${E}) ? (${t}) : (${i});`]}}}function hI(g,A){if(ag(g))return"bool";if(g==="ivec2"||g==="uvec2"||g==="vec2")return"bvec2";if(g==="ivec3"||g==="uvec3"||g==="vec3")return"bvec3";if(g==="ivec4"||g==="uvec4"||g==="vec4")return"bvec4";throw new Error(`Invalid ${A} type: ${g}`)}function xC(g,A="equal"){if(ag(g))return"bool";if(eg(g))return g;if(g==="ivec2"||g==="uvec2"||g==="vec2")return"bvec2";if(g==="ivec3"||g==="uvec3"||g==="vec3")return"bvec3";if(g==="ivec4"||g==="uvec4"||g==="vec4")return"bvec4";throw new Error(`Invalid ${A} type: ${g}`)}function Ea(g){return xC(g,"notEqual")}function ta(g){if(eg(g))return"bool";if(DA(g))return"int";if(lA(g))return"uint";throw new Error(`Invalid compXor type: ${g}`)}class LC extends R{constructor({a:A}){const I=ta(v(A));super({a:A,outTypeFunc:B=>I,outKey:"compXor"}),this.statements=({inputs:B,outputs:Q})=>{if(ag(this.outTypes.compXor))return[`${Q.compXor} = ${B.a};`];const E=(ug(I)?["x","y"]:dg(I)?["x","y","z"]:["x","y","z","w"]).map(i=>`${B.a}.${i}`),t=eg(I)?"^^":"^";return[`${Q.compXor} = ${E.join(` ${t} `)};`]}}}const ia=g=>new WC({value:g}),sa=g=>new VC({value:g}),ea=g=>new TC({value:g}),bC=g=>new XC({value:g}),aa=g=>new zC({value:g}),na=g=>new jC({value:g}),oa=g=>new OC({value:g}),ra=g=>new PC({value:g}),ca=g=>new _C({value:g}),ha=g=>new $C({value:g}),wa=g=>new AE({value:g}),Da=g=>new gE({value:g}),la=g=>new IE({value:g}),HC=g=>new BE({value:g}),sg=g=>new QE({value:g}),KC=g=>new CE({value:g}),ya=g=>new EE({value:g}),ua=g=>new tE({value:g}),da=g=>new iE({value:g}),ZC=g=>new sE({value:g}),Ga=g=>new eE({value:g}),Ma=g=>new aE({value:g}),Na=g=>new nE({value:g}),pa=g=>new oE({value:g}),ka=g=>new rE({value:g}),Fa=g=>new cE({value:g}),Ra=g=>new hE({value:g}),qC=g=>new wE({value:g}),Ja=g=>new DE({value:g}),vC=g=>new lE({value:g});class iA extends R{constructor({value:A,outType:I,outKey:B}){super({a:A,outTypeFunc:()=>I,outKey:B}),this.statements=({inputs:Q,outputs:C})=>[`${C[B]} = ${wB(I)}(${Q.a});`]}}class WC extends iA{constructor({value:A}){super({value:A,outType:"bool",outKey:"bool"})}}class VC extends iA{constructor({value:A}){super({value:A,outType:"int",outKey:"int"})}}class TC extends iA{constructor({value:A}){super({value:A,outType:"uint",outKey:"uint"})}}class XC extends iA{constructor({value:A}){super({value:A,outType:"float",outKey:"float"})}}class zC extends iA{constructor({value:A}){super({value:A,outType:"bvec2",outKey:"bvec2"})}}class jC extends iA{constructor({value:A}){super({value:A,outType:"bvec3",outKey:"bvec3"})}}class OC extends iA{constructor({value:A}){super({value:A,outType:"bvec4",outKey:"bvec4"})}}class PC extends iA{constructor({value:A}){super({value:A,outType:"ivec2",outKey:"ivec2"})}}class _C extends iA{constructor({value:A}){super({value:A,outType:"ivec3",outKey:"ivec3"})}}class $C extends iA{constructor({value:A}){super({value:A,outType:"ivec4",outKey:"ivec4"})}}class AE extends iA{constructor({value:A}){super({value:A,outType:"uvec2",outKey:"uvec2"})}}class gE extends iA{constructor({value:A}){super({value:A,outType:"uvec3",outKey:"uvec3"})}}class IE extends iA{constructor({value:A}){super({value:A,outType:"uvec4",outKey:"uvec4"})}}class BE extends iA{constructor({value:A}){super({value:A,outType:"vec2",outKey:"vec2"})}}class QE extends iA{constructor({value:A}){super({value:A,outType:"vec3",outKey:"vec3"})}}class CE extends iA{constructor({value:A}){super({value:A,outType:"vec4",outKey:"vec4"})}}class EE extends iA{constructor({value:A}){super({value:A,outType:"mat2",outKey:"mat2"})}}class tE extends iA{constructor({value:A}){super({value:A,outType:"mat3",outKey:"mat3"})}}class iE extends iA{constructor({value:A}){super({value:A,outType:"mat4",outKey:"mat4"})}}class sE extends R{constructor({value:A}){super({a:A,outKey:"int",outTypeFunc:()=>"int"}),this.statements=({inputs:I,outputs:B})=>[`${B.int} = floatBitsToInt(${I.a});`]}}class eE extends R{constructor({value:A}){super({a:A,outKey:"uint",outTypeFunc:()=>"uint"}),this.statements=({inputs:I,outputs:B})=>[`${B.uint} = floatBitsToUint(${I.a});`]}}class aE extends R{constructor({value:A}){super({a:A,outKey:"float",outTypeFunc:()=>"float"}),this.statements=({inputs:I,outputs:B})=>[`${B.float} = intBitsToFloat(${I.a});`]}}class nE extends R{constructor({value:A}){super({a:A,outKey:"float",outTypeFunc:()=>"float"}),this.statements=({inputs:I,outputs:B})=>[`${B.float} = uintBitsToFloat(${I.a});`]}}class oE extends R{constructor({value:A}){super({a:A,outKey:"uint",outTypeFunc:()=>"uint"}),this.statements=({inputs:I,outputs:B})=>[`${B.uint} = packSnorm2x16(${I.a});`]}}class rE extends R{constructor({value:A}){super({a:A,outKey:"vec2",outTypeFunc:()=>"vec2"}),this.statements=({inputs:I,outputs:B})=>[`${B.vec2} = unpackSnorm2x16(${I.a});`]}}class cE extends R{constructor({value:A}){super({a:A,outKey:"uint",outTypeFunc:()=>"uint"}),this.statements=({inputs:I,outputs:B})=>[`${B.uint} = packUnorm2x16(${I.a});`]}}class hE extends R{constructor({value:A}){super({a:A,outKey:"vec2",outTypeFunc:()=>"vec2"}),this.statements=({inputs:I,outputs:B})=>[`${B.vec2} = unpackUnorm2x16(${I.a});`]}}class wE extends R{constructor({value:A}){super({a:A,outKey:"uint",outTypeFunc:()=>"uint"}),this.statements=({inputs:I,outputs:B})=>[`${B.uint} = packHalf2x16(${I.a});`]}}class DE extends R{constructor({value:A}){super({a:A,outKey:"vec2",outTypeFunc:()=>"vec2"}),this.statements=({inputs:I,outputs:B})=>[`${B.vec2} = unpackHalf2x16(${I.a});`]}}class lE extends R{constructor({value:A}){super({a:A,outKey:"rgba8",outTypeFunc:()=>"vec4"}),this.statements=({inputs:I,outputs:B})=>[`uvec4 uRgba = uvec4(${I.a} & 0xffu, (${I.a} >> 8u) & 0xffu, (${I.a} >> 16u) & 0xffu, (${I.a} >> 24u) & 0xffu);`,`${B.rgba8} = vec4(uRgba) / 255.0;`]}}const ma=g=>new dE({a:g}),fa=(g,A)=>new GE({a:g,b:A}),Sa=(g,A)=>new ME({a:g,b:A}),Ya=(g,A)=>new NE({a:g,b:A}),yE=g=>new pE({a:g}),Ua=(g,A,I)=>new RE({a:g,b:A,c:I}),xa=(g,A)=>new JE({incident:g,normal:A}),La=(g,A,I)=>new mE({incident:g,normal:A,eta:I}),mg=g=>new LE({vector:g}),qA=({vector:g,vectorType:A,x:I,y:B,z:Q,w:C,r:E,g:t,b:i,a:e})=>new bE({vector:g,vectorType:A,x:I,y:B,z:Q,w:C,r:E,g:t,b:i,a:e}),ba=g=>new kE({a:g}),uE=(g,A)=>new FE({a:g,b:A}),Ha=(g,A)=>new HE({vector:g,select:A}),Ka=(g,A)=>new fE({a:g,b:A}),Za=(g,A)=>new SE({a:g,b:A}),qa=g=>new YE({a:g}),va=g=>new UE({a:g}),Wa=g=>new xE({a:g});class dE extends R{constructor({a:A}){super({a:A,outTypeFunc:I=>"float",outKey:"length"}),this.statements=({inputs:I,outputs:B})=>[`${B.length} = length(${I.a});`]}}class GE extends O{constructor({a:A,b:I}){super({a:A,b:I,outKey:"distance",outTypeFunc:(B,Q)=>"float"}),this.statements=({inputs:B,outputs:Q})=>[`${Q.distance} = distance(${B.a}, ${B.b});`]}}class ME extends O{constructor({a:A,b:I}){super({a:A,b:I,outKey:"dot",outTypeFunc:(B,Q)=>"float"}),this.statements=({inputs:B,outputs:Q})=>[`${Q.dot} = dot(${B.a}, ${B.b});`]}}class NE extends O{constructor({a:A,b:I}){super({a:A,b:I,outKey:"cross",outTypeFunc:(B,Q)=>"vec3"}),this.statements=({inputs:B,outputs:Q})=>[`${Q.cross} = cross(${B.a}, ${B.b});`]}}class pE extends R{constructor({a:A}){super({a:A,outTypeFunc:I=>I,outKey:"normalize"}),this.statements=({inputs:I,outputs:B})=>[`${B.normalize} = normalize(${I.a});`]}}function Va(g){if(g==="vec3")return"vec2";if(g==="vec4")return"vec3";throw new Error("Invalid type")}class kE extends R{constructor({a:A}){super({a:A,outTypeFunc:I=>Va(I),outKey:"projected"}),this.statements=({inputs:I,outputs:B})=>{if(this.inTypes.a==="vec3")return[`${B.projected} = ${I.a}.xy / ${I.a}.z;`];if(this.inTypes.a==="vec4")return[`${B.projected} = ${I.a}.xyz / ${I.a}.w;`];throw new Error("Invalid type")}}}function Ta(g){if(g==="float")return"vec2";if(g==="vec2")return"vec3";if(g==="vec3")return"vec4";throw new Error("Invalid type")}class FE extends O{constructor({a:A,b:I}){const B=v(A),Q=Ta(B);super({a:A,b:I,outKey:"extend",outTypeFunc:()=>Q}),this.statements=({inputs:C,outputs:E})=>[`${E.extend} = ${Q}(${C.a}, ${C.b});`]}}class RE extends ng{constructor({a:A,b:I,c:B}){super({a:A,b:I,c:B,outKey:"forward",outTypeFunc:(Q,C,E)=>Q}),this.statements=({inputs:Q,outputs:C})=>[`${C.forward} = faceforward(${Q.a}, ${Q.b}, ${Q.c});`]}}class JE extends O{constructor({incident:A,normal:I}){super({a:A,b:I,outKey:"reflection",outTypeFunc:(B,Q)=>B}),this.statements=({inputs:B,outputs:Q})=>[`${Q.reflection} = reflect(${B.a}, ${B.b});`]}}class mE extends ng{constructor({incident:A,normal:I,eta:B}){super({a:A,b:I,c:B,outKey:"refraction",outTypeFunc:(Q,C,E)=>Q}),this.statements=({inputs:Q,outputs:C})=>[`${C.refraction} = refract(${Q.a}, ${Q.b}, ${Q.c});`]}}class fE extends O{constructor({a:A,b:I}){super({a:A,b:I,outKey:"product",outTypeFunc:(B,Q)=>B}),this.statements=({inputs:B,outputs:Q})=>[`${Q.product} = matrixCompMult(${A}, ${I});`]}}function Xa(g,A){if(g==="vec2"){if(A==="vec2")return"mat2";if(A==="vec3")return"mat3x2";if(A==="vec4")return"mat4x2"}if(g==="vec3"){if(A==="vec2")return"mat2x3";if(A==="vec3")return"mat3";if(A==="vec4")return"mat4x3"}if(g==="vec4"){if(A==="vec2")return"mat2x4";if(A==="vec3")return"mat3x4";if(A==="vec4")return"mat4"}throw new Error(`Invalid outer type: ${g}, ${A}`)}class SE extends O{constructor({a:A,b:I}){super({a:A,b:I,outKey:"outer",outTypeFunc:Xa}),this.statements=({inputs:B,outputs:Q})=>[`${Q.outer} = outerProduct(${B.a}, ${B.b});`]}}function za(g){if(g==="mat2")return"mat2";if(g==="mat3")return"mat3";if(g==="mat4")return"mat4";if(g==="mat2x2")return"mat2x2";if(g==="mat2x3")return"mat3x2";if(g==="mat2x4")return"mat4x2";if(g==="mat3x2")return"mat2x3";if(g==="mat3x3")return"mat3x3";if(g==="mat3x4")return"mat4x3";if(g==="mat4x2")return"mat2x4";if(g==="mat4x3")return"mat3x4";if(g==="mat4x4")return"mat4x4";throw new Error(`Invalid transpose type: ${g}`)}class YE extends R{constructor({a:A}){super({a:A,outKey:"transpose",outTypeFunc:za}),this.statements=({inputs:I,outputs:B})=>[`${B.transpose} = transpose(${I.a});`]}}class UE extends R{constructor({a:A}){super({a:A,outKey:"det",outTypeFunc:I=>"float"}),this.statements=({inputs:I,outputs:B})=>[`${B.det} = determinant(${I.a});`]}}class xE extends R{constructor({a:A}){super({a:A,outKey:"inverse",outTypeFunc:I=>I}),this.statements=({inputs:I,outputs:B})=>[`${B.inverse} = inverse(${A});`]}}function ja(g){const A=I=>I;switch(g){case"vec2":return A({x:"float",y:"float",r:"float",g:"float"});case"vec3":return A({x:"float",y:"float",z:"float",r:"float",g:"float",b:"float"});case"vec4":return A({x:"float",y:"float",z:"float",w:"float",r:"float",g:"float",b:"float",a:"float"});case"ivec2":return A({x:"int",y:"int",r:"int",g:"int"});case"ivec3":return A({x:"int",y:"int",z:"int",r:"int",g:"int",b:"int"});case"ivec4":return A({x:"int",y:"int",z:"int",w:"int",r:"int",g:"int",b:"int",a:"int"});case"uvec2":return A({x:"uint",y:"uint",r:"uint",g:"uint"});case"uvec3":return A({x:"uint",y:"uint",z:"uint",r:"uint",g:"uint",b:"uint"});case"uvec4":return A({x:"uint",y:"uint",z:"uint",w:"uint",r:"uint",g:"uint",b:"uint",a:"uint"});default:throw new Error(`Invalid vector type: ${g}`)}}class LE extends T{constructor({vector:A}){const B={vector:v(A)},Q=ja(B.vector);super({inTypes:B,outTypes:Q,inputs:{vector:A}}),this.statements=({inputs:C,outputs:E})=>{const{x:t,y:i,z:e,w:n,r:s,g:o,b:r,a:c}=E,{vector:h}=C;return[t?`${t} = ${h}.x;`:null,i?`${i} = ${h}.y;`:null,e?`${e} = ${h}.z;`:null,n?`${n} = ${h}.w;`:null,s?`${s} = ${h}.r;`:null,o?`${o} = ${h}.g;`:null,r?`${r} = ${h}.b;`:null,c?`${c} = ${h}.a;`:null].filter(Boolean)}}}class bE extends T{constructor({vector:A,vectorType:I,x:B,y:Q,z:C,w:E,r:t,g:i,b:e,a:n}){if(!A&&!I)throw new Error("Either vector or vectorType must be provided");const s=I??v(A),o=rB(s),r=cB(s),c={vector:s,x:o,y:o,r:o,g:o},h={vector:A,x:B,y:Q,r:t,g:i};r>=3&&(Object.assign(c,{z:o,b:o}),Object.assign(h,{z:C,b:e})),r>=4&&(Object.assign(c,{w:o,a:o}),Object.assign(h,{w:E,a:n})),super({inTypes:c,outTypes:{vector:s},inputs:h}),this.statements=({inputs:w,outputs:D})=>{const{vector:y}=D,{vector:l,x:d,y:u,z:p,w:m,r:M,g:G,b:J,a:k}=w,N=[`${y}.x = ${d??M??(l?`${l}.x`:Ng(o))};`,`${y}.y = ${u??G??(l?`${l}.y`:Ng(o))};`];return r>=3&&N.push(`${y}.z = ${p??J??(l?`${l}.z`:Ng(o))};`),r>=4&&N.push(`${y}.w = ${m??k??(l?`${l}.w`:Ng(o))};`),N}}dynoOut(){return new W(this,"vector")}}function Oa(g,A){let I=null;if(qg(g)?I=A.length===1?"float":A.length===2?"vec2":A.length===3?"vec3":A.length===4?"vec4":null:DA(g)?I=A.length===1?"int":A.length===2?"ivec2":A.length===3?"ivec3":A.length===4?"ivec4":null:lA(g)&&(I=A.length===1?"uint":A.length===2?"uvec2":A.length===3?"uvec3":A.length===4?"uvec4":null),I==null)throw new Error(`Invalid swizzle: ${A}`);return I}class HE extends R{constructor({vector:A,select:I}){super({a:A,outKey:"swizzle",outTypeFunc:B=>Oa(B,I)}),this.statements=({inputs:B,outputs:Q})=>[`${Q.swizzle} = ${B.a}.${I};`]}}const Pa=(g,A,I)=>new VE({index:g,from:A,to:I}),_a=g=>new Gg({value:g}),$a=g=>new JA({state:g}),An=g=>new mA({state:g}),KE=g=>new TE({value:g}),ZE=g=>new XE({value:g}),qE=g=>new zE({value:g}),vE=g=>new jE({value:g}),gn=g=>new OE({value:g}),In=g=>new PE({value:g}),WE=g=>new _E({value:g}),UI=g=>new $E({value:g});class VE extends T{constructor({from:A,to:I,index:B}){super({inTypes:{from:"int",to:"int",index:"int"},outTypes:{index:"int"},inputs:{from:A,to:I,index:B},statements:({inputs:Q,outputs:C})=>[`${C.index} = ${Q.index} - ${Q.from} + ${Q.to};`]})}dynoOut(){return new W(this,"index")}}class JA extends T{constructor({state:A}){const I=v(A);super({inTypes:{state:I},outTypes:{state:"uint"},inputs:{state:A},globals:()=>[nA(` +`)+this.between+e.map(s=>this.indent+s).join(` +`)+this.after}}const Oe=new Map;function Ko(t){let A=Oe.get(t);return A||(A=new B.RawShaderMaterial({glslVersion:B.GLSL3,vertexShader:Mi,fragmentShader:t.shader,uniforms:t.uniforms}),Oe.set(t,A),A)}function Ke(t,A,e="add"){const s=()=>{throw new Error(`Invalid ${e} types: ${t}, ${A}`)};if(t===A)return t;if(t==="int"){if(lA(A))return A;s()}if(A==="int"){if(lA(t))return t;s()}if(t==="uint"){if(uA(A))return A;s()}if(A==="uint"){if(uA(t))return t;s()}if(t==="float"){if(tt(A))return A;s()}if(A==="float"){if(tt(t))return t;s()}throw new Error(`Invalid ${e} types: ${t}, ${A}`)}function qo(t,A){return Ke(t,A,"sub")}function zo(t,A){const e=()=>{throw new Error(`Invalid mul types: ${t}, ${A}`)},s=i=>i;if(t==="int"){if(lA(A))return s(A);e()}if(A==="int"){if(lA(t))return s(t);e()}if(t==="uint"){if(uA(A))return s(A);e()}if(A==="uint"){if(uA(t))return s(t);e()}if(t==="float"){if(tt(A))return s(A);e()}if(A==="float"){if(tt(t))return s(t);e()}if(lA(t)||uA(t)||lA(A)||uA(A)){if(t===A)return s(t);e()}if(t==="vec2"){if(A==="vec2"||et(A))return s("vec2");if(A==="mat3x2")return s("vec3");if(A==="mat4x2")return s("vec4");e()}if(t==="vec3"){if(A==="mat2x3")return s("vec2");if(A==="vec3"||st(A))return s("vec3");if(A==="mat4x3")return s("vec4");e()}if(t==="vec4"){if(A==="mat2x4")return s("vec2");if(A==="mat3x4")return s("vec3");if(A==="vec4"||it(A))return s("vec4");e()}if(A==="vec2"){if(et(t))return s("vec2");if(t==="mat2x3")return s("vec3");if(t==="mat2x4")return s("vec4");e()}if(A==="vec3"){if(t==="mat3x2")return s("vec2");if(st(t))return s("vec3");if(t==="mat3x4")return s("vec4");e()}if(A==="vec4"){if(t==="mat4x2")return s("vec2");if(t==="mat4x3")return s("vec3");if(it(t))return s("vec4");e()}if(et(t)){if(et(A))return s("mat2");if(A==="mat3x2")return s("mat3x2");if(A==="mat4x2")return s("mat4x2");e()}if(t==="mat2x3"){if(et(A))return s("mat2x3");if(A==="mat3x2")return s("mat3");if(A==="mat4x2")return s("mat4x3");e()}if(t==="mat2x4"){if(et(A))return s("mat2x4");if(A==="mat3x2")return s("mat3x4");if(A==="mat4x2")return s("mat4");e()}if(t==="mat3x2"){if(A==="mat2x3")return s("mat2");if(st(A))return s("mat3x2");if(A==="mat4x3")return s("mat4x2");e()}if(st(t)){if(A==="mat2x3")return s("mat2x3");if(st(A))return s("mat3");if(A==="mat4x3")return s("mat4x3");e()}if(t==="mat3x4"){if(A==="mat2x3")return s("mat2x4");if(st(A))return s("mat3x4");if(A==="mat4x3")return s("mat4");e()}if(t==="mat4x2"){if(A==="mat2x4")return s("mat2");if(A==="mat3x4")return s("mat3x2");if(it(A))return s("mat4x2");e()}if(t==="mat4x3"){if(A==="mat2x4")return s("mat2x3");if(A==="mat3x4")return s("mat3");if(it(A))return s("mat4x3");e()}if(it(t)){if(A==="mat2x4")return s("mat2x4");if(A==="mat3x4")return s("mat3x4");if(it(A))return s("mat4");e()}throw new Error(`Invalid mul types: ${t}, ${A}`)}function _o(t,A){return Ke(t,A,"div")}function Vo(t,A){if(t===A)return t;if(t==="int"){if(lA(A))return A}else if(A==="int"){if(lA(t))return t}else if(t==="uint"){if(uA(A))return A}else if(A==="uint"&&uA(t))return t;throw new Error(`Invalid imod types: ${t}, ${A}`)}function Po(t,A){if(t===A||A==="float")return t;throw new Error(`Invalid mod types: ${t}, ${A}`)}function Zo(t){return t}function Oo(t){return t}function Wo(t){return t}function Xo(t){return t}function jo(t){return t}function $o(t){return t}function AI(t){return t}function tI(t){return t}function eI(t){return t}function sI(t){return t}function iI(t){return t}function nI(t){return t}function aI(t){return t}function rI(t){return t}function gI(t){return t}function oI(t){return t}function Gi(t,A,e="min"){if(t===A)return t;if(A==="float"){if(Tt(t))return t}else if(A==="int"){if(lA(t))return t}else if(A==="uint"&&uA(t))return t;throw new Error(`Invalid ${e} types: ${t}, ${A}`)}function II(t,A){return Gi(t,A,"max")}function BI(t,A,e){if(A==="float"){if(Tt(t))return t}else if(A==="int"){if(lA(t))return t}else if(A==="uint"&&uA(t))return t;throw new Error(`Invalid clamp types: ${t}, ${A}`)}function QI(t,A,e){if(e===t||e==="float"||e==="bool"&&t==="float"||e==="bvec2"&&t==="vec2"||e==="bvec3"&&t==="vec3"||e==="bvec4"&&t==="vec4")return t;throw new Error(`Invalid mix types: ${t}, ${A}, ${e}`)}function EI(t,A){if(t===A||A==="float")return A;throw new Error(`Invalid step types: ${t}, ${A}`)}function CI(t,A,e){if(t===A&&(t===e||t==="float"))return e;throw new Error(`Invalid smoothstep types: ${t}, ${A}, ${e}`)}function bi(t,A="isNan"){if(t==="float")return"bool";if(t==="vec2")return"bvec2";if(t==="vec3")return"bvec3";if(t==="vec4")return"bvec4";throw new Error(`Invalid ${A} types: ${t}`)}function cI(t){return bi(t,"isInf")}const mA=(t,A)=>new Yi({a:t,b:A}),Gt=(t,A)=>new Ti({a:t,b:A}),cA=(t,A)=>new Hi({a:t,b:A}),$t=(t,A)=>new Ki({a:t,b:A}),Fe=(t,A)=>new qi({a:t,b:A}),vi=(t,A)=>new zi({a:t,b:A}),hI=t=>new _i({a:t}).outputs,lI=t=>new Vi({a:t}),uI=t=>new Pi({a:t}),dI=t=>new Zi({a:t}),wI=t=>new Oi({a:t}),yI=t=>new Wi({a:t}),pI=t=>new Xi({a:t}),DI=t=>new ji({a:t}),Ae=t=>new $i({a:t}),fI=(t,A)=>new An({a:t,b:A}),mI=t=>new tn({a:t}),MI=t=>new en({a:t}),xI=t=>new sn({a:t}),SI=t=>new nn({a:t}),FI=t=>new an({a:t}),NI=t=>new rn({a:t}),kI=t=>new gn({a:t}),RI=(t,A)=>new on({a:t,b:A}),Li=(t,A)=>new In({a:t,b:A}),UI=(t,A,e)=>new Bn({a:t,min:A,max:e}),Ji=(t,A,e)=>new Qn({a:t,b:A,t:e}),GI=(t,A)=>new En({edge:t,x:A}),bI=(t,A,e)=>new Cn({edge0:t,edge1:A,x:e}),vI=t=>new cn({a:t}),LI=t=>new hn({a:t});class Yi extends W{constructor({a:A,b:e}){super({a:A,b:e,outKey:"sum",outTypeFunc:Ke}),this.statements=({inputs:s,outputs:i})=>[`${i.sum} = ${s.a} + ${s.b};`]}}class Ti extends W{constructor({a:A,b:e}){super({a:A,b:e,outKey:"difference",outTypeFunc:qo}),this.statements=({inputs:s,outputs:i})=>[`${i.difference} = ${s.a} - ${s.b};`]}}class Hi extends W{constructor({a:A,b:e}){super({a:A,b:e,outKey:"product",outTypeFunc:zo}),this.statements=({inputs:s,outputs:i})=>[`${i.product} = ${s.a} * ${s.b};`]}}class Ki extends W{constructor({a:A,b:e}){super({a:A,b:e,outKey:"quotient",outTypeFunc:_o}),this.statements=({inputs:s,outputs:i})=>[`${i.quotient} = ${s.a} / ${s.b};`]}}class qi extends W{constructor({a:A,b:e}){super({a:A,b:e,outKey:"remainder",outTypeFunc:Vo}),this.statements=({inputs:s,outputs:i})=>[`${i.remainder} = ${s.a} % ${s.b};`]}}class zi extends W{constructor({a:A,b:e}){super({a:A,b:e,outKey:"remainder",outTypeFunc:Po}),this.statements=({inputs:s,outputs:i})=>[`${i.remainder} = mod(${s.a}, ${s.b});`]}}class _i extends V{constructor({a:A}){const e={a:q(A)},s=e.a,i={fract:s,integer:s};super({inTypes:e,outTypes:i,inputs:{a:A}}),this.statements=({inputs:n,outputs:a})=>[`${a.fract} = modf(${n.a}, ${a.integer});`]}}class Vi extends x{constructor({a:A}){super({a:A,outKey:"neg",outTypeFunc:Zo}),this.statements=({inputs:e,outputs:s})=>[`${s.neg} = -${e.a};`]}}class Pi extends x{constructor({a:A}){super({a:A,outKey:"abs",outTypeFunc:Oo}),this.statements=({inputs:e,outputs:s})=>[`${s.abs} = abs(${e.a});`]}}class Zi extends x{constructor({a:A}){super({a:A,outKey:"sign",outTypeFunc:Wo}),this.statements=({inputs:e,outputs:s})=>[`${s.sign} = sign(${e.a});`]}}class Oi extends x{constructor({a:A}){super({a:A,outKey:"floor",outTypeFunc:Xo}),this.statements=({inputs:e,outputs:s})=>[`${s.floor} = floor(${e.a});`]}}class Wi extends x{constructor({a:A}){super({a:A,outKey:"ceil",outTypeFunc:jo}),this.statements=({inputs:e,outputs:s})=>[`${s.ceil} = ceil(${e.a});`]}}class Xi extends x{constructor({a:A}){super({a:A,outKey:"trunc",outTypeFunc:$o}),this.statements=({inputs:e,outputs:s})=>[`${s.trunc} = trunc(${e.a});`]}}class ji extends x{constructor({a:A}){super({a:A,outKey:"round",outTypeFunc:AI}),this.statements=({inputs:e,outputs:s})=>[`${s.round} = round(${e.a});`]}}class $i extends x{constructor({a:A}){super({a:A,outKey:"fract",outTypeFunc:tI}),this.statements=({inputs:e,outputs:s})=>[`${s.fract} = fract(${e.a});`]}}class An extends W{constructor({a:A,b:e}){super({a:A,b:e,outKey:"power",outTypeFunc:eI}),this.statements=({inputs:s,outputs:i})=>[`${i.power} = pow(${s.a}, ${s.b});`]}}class tn extends x{constructor({a:A}){super({a:A,outKey:"exp",outTypeFunc:sI}),this.statements=({inputs:e,outputs:s})=>[`${s.exp} = exp(${e.a});`]}}class en extends x{constructor({a:A}){super({a:A,outKey:"exp2",outTypeFunc:iI}),this.statements=({inputs:e,outputs:s})=>[`${s.exp2} = exp2(${e.a});`]}}class sn extends x{constructor({a:A}){super({a:A,outKey:"log",outTypeFunc:nI}),this.statements=({inputs:e,outputs:s})=>[`${s.log} = log(${e.a});`]}}class nn extends x{constructor({a:A}){super({a:A,outKey:"log2",outTypeFunc:aI}),this.statements=({inputs:e,outputs:s})=>[`${s.log2} = log2(${e.a});`]}}class an extends x{constructor({a:A}){super({a:A,outKey:"sqr",outTypeFunc:rI}),this.statements=({inputs:e,outputs:s})=>[`${s.sqr} = ${e.a} * ${e.a};`]}}class rn extends x{constructor({a:A}){super({a:A,outKey:"sqrt",outTypeFunc:gI}),this.statements=({inputs:e,outputs:s})=>[`${s.sqrt} = sqrt(${e.a});`]}}class gn extends x{constructor({a:A}){super({a:A,outKey:"inversesqrt",outTypeFunc:oI}),this.statements=({inputs:e,outputs:s})=>[`${s.inversesqrt} = inversesqrt(${e.a});`]}}class on extends W{constructor({a:A,b:e}){super({a:A,b:e,outKey:"min",outTypeFunc:Gi}),this.statements=({inputs:s,outputs:i})=>[`${i.min} = min(${s.a}, ${s.b});`]}}class In extends W{constructor({a:A,b:e}){super({a:A,b:e,outKey:"max",outTypeFunc:II}),this.statements=({inputs:s,outputs:i})=>[`${i.max} = max(${s.a}, ${s.b});`]}}class Bn extends It{constructor({a:A,min:e,max:s}){super({a:A,b:e,c:s,outKey:"clamp",outTypeFunc:BI}),this.statements=({inputs:i,outputs:n})=>{const{a,b:r,c:g}=i;return[`${n.clamp} = clamp(${a}, ${r}, ${g});`]}}}class Qn extends It{constructor({a:A,b:e,t:s}){super({a:A,b:e,c:s,outKey:"mix",outTypeFunc:QI}),this.statements=({inputs:i,outputs:n})=>{const{a,b:r,c:g}=i;return[`${n.mix} = mix(${a}, ${r}, ${g});`]}}}class En extends W{constructor({edge:A,x:e}){super({a:A,b:e,outKey:"step",outTypeFunc:EI}),this.statements=({inputs:s,outputs:i})=>{const{a:n,b:a}=s;return[`${i.step} = step(${n}, ${a});`]}}}class Cn extends It{constructor({edge0:A,edge1:e,x:s}){super({a:A,b:e,c:s,outKey:"smoothstep",outTypeFunc:CI}),this.statements=({inputs:i,outputs:n})=>{const{a,b:r,c:g}=i;return[`${n.smoothstep} = smoothstep(${a}, ${r}, ${g});`]}}}class cn extends x{constructor({a:A}){super({a:A,outKey:"isNan",outTypeFunc:bi}),this.statements=({inputs:e,outputs:s})=>[`${s.isNan} = isNan(${e.a});`]}}class hn extends x{constructor({a:A}){super({a:A,outKey:"isInf",outTypeFunc:cI}),this.statements=({inputs:e,outputs:s})=>[`${s.isInf} = isInf(${e.a});`]}}const JI=(t,A)=>new ln({a:t,b:A}),YI=(t,A)=>new un({a:t,b:A}),TI=(t,A)=>new dn({a:t,b:A}),HI=t=>new wn({a:t}),KI=(t,A)=>new yn({a:t,b:A}),qI=(t,A)=>new pn({a:t,b:A}),zI=(t,A)=>new Dn({a:t,b:A}),_I=(t,A)=>new fn({a:t,b:A}),VI=(t,A)=>new mn({a:t,b:A}),PI=(t,A)=>new Mn({a:t,b:A}),ZI=t=>new xn({a:t}),OI=t=>new Sn({a:t}),WI=(t,A,e)=>new Fn({cond:t,t:A,f:e}),XI=t=>new kn({a:t});class ln extends W{constructor({a:A,b:e}){super({a:A,b:e,outTypeFunc:(s,i)=>s,outKey:"and"}),this.statements=({inputs:s,outputs:i})=>this.outTypes.and==="bool"?[`${i.and} = ${s.a} && ${s.b};`]:[`${i.and} = ${s.a} & ${s.b};`]}}class un extends W{constructor({a:A,b:e}){super({a:A,b:e,outTypeFunc:(s,i)=>s,outKey:"or"}),this.statements=({inputs:s,outputs:i})=>this.outTypes.or==="bool"?[`${i.or} = ${s.a} || ${s.b};`]:[`${i.or} = ${s.a} | ${s.b};`]}}class dn extends W{constructor({a:A,b:e}){super({a:A,b:e,outTypeFunc:(s,i)=>s,outKey:"xor"}),this.statements=({inputs:s,outputs:i})=>this.outTypes.xor==="bool"?[`${i.xor} = ${s.a} ^^ ${s.b};`]:[`${i.xor} = ${s.a} ^ ${s.b};`]}}class wn extends x{constructor({a:A}){super({a:A,outTypeFunc:e=>e,outKey:"not"}),this.statements=({inputs:e,outputs:s})=>this.outTypes.not==="bool"?[`${s.not} = !${e.a};`]:[`${s.not} = not(${e.a});`]}}class yn extends W{constructor({a:A,b:e}){super({a:A,b:e,outTypeFunc:(s,i)=>Ee(s,"lessThan"),outKey:"lessThan"}),this.statements=({inputs:s,outputs:i})=>this.outTypes.lessThan==="bool"?[`${i.lessThan} = ${s.a} < ${s.b};`]:[`${i.lessThan} = lessThan(${s.a}, ${s.b});`]}}class pn extends W{constructor({a:A,b:e}){super({a:A,b:e,outTypeFunc:(s,i)=>Ee(s,"lessThanEqual"),outKey:"lessThanEqual"}),this.statements=({inputs:s,outputs:i})=>this.outTypes.lessThanEqual==="bool"?[`${i.lessThanEqual} = ${s.a} <= ${s.b};`]:[`${i.lessThanEqual} = lessThanEqual(${s.a}, ${s.b});`]}}class Dn extends W{constructor({a:A,b:e}){super({a:A,b:e,outTypeFunc:(s,i)=>Ee(s,"greaterThan"),outKey:"greaterThan"}),this.statements=({inputs:s,outputs:i})=>this.outTypes.greaterThan==="bool"?[`${i.greaterThan} = ${s.a} > ${s.b};`]:[`${i.greaterThan} = greaterThan(${s.a}, ${s.b});`]}}class fn extends W{constructor({a:A,b:e}){super({a:A,b:e,outTypeFunc:(s,i)=>Ee(s,"greaterThanEqual"),outKey:"greaterThanEqual"}),this.statements=({inputs:s,outputs:i})=>this.outTypes.greaterThanEqual==="bool"?[`${i.greaterThanEqual} = ${s.a} >= ${s.b};`]:[`${i.greaterThanEqual} = greaterThanEqual(${s.a}, ${s.b});`]}}class mn extends W{constructor({a:A,b:e}){super({a:A,b:e,outTypeFunc:Nn,outKey:"equal"}),this.statements=({inputs:s,outputs:i})=>this.outTypes.equal==="bool"?[`${i.equal} = ${s.a} == ${s.b};`]:[`${i.equal} = equal(${s.a}, ${s.b});`]}}class Mn extends W{constructor({a:A,b:e}){super({a:A,b:e,outTypeFunc:jI,outKey:"notEqual"}),this.statements=({inputs:s,outputs:i})=>this.outTypes.notEqual==="bool"?[`${i.notEqual} = ${s.a} != ${s.b};`]:[`${i.notEqual} = notEqual(${s.a}, ${s.b});`]}}class xn extends x{constructor({a:A}){super({a:A,outTypeFunc:e=>"bool",outKey:"any"}),this.statements=({inputs:e,outputs:s})=>[`${s.any} = any(${e.a});`]}}class Sn extends x{constructor({a:A}){super({a:A,outTypeFunc:e=>"bool",outKey:"all"}),this.statements=({inputs:e,outputs:s})=>[`${s.all} = all(${e.a});`]}}class Fn extends It{constructor({cond:A,t:e,f:s}){super({a:A,b:e,c:s,outKey:"select",outTypeFunc:(i,n,a)=>n}),this.statements=({inputs:i,outputs:n})=>{const{a,b:r,c:g}=i;return[`${n.select} = (${a}) ? (${r}) : (${g});`]}}}function Ee(t,A){if(ot(t))return"bool";if(t==="ivec2"||t==="uvec2"||t==="vec2")return"bvec2";if(t==="ivec3"||t==="uvec3"||t==="vec3")return"bvec3";if(t==="ivec4"||t==="uvec4"||t==="vec4")return"bvec4";throw new Error(`Invalid ${A} type: ${t}`)}function Nn(t,A="equal"){if(ot(t))return"bool";if(gt(t))return t;if(t==="ivec2"||t==="uvec2"||t==="vec2")return"bvec2";if(t==="ivec3"||t==="uvec3"||t==="vec3")return"bvec3";if(t==="ivec4"||t==="uvec4"||t==="vec4")return"bvec4";throw new Error(`Invalid ${A} type: ${t}`)}function jI(t){return Nn(t,"notEqual")}function $I(t){if(gt(t))return"bool";if(lA(t))return"int";if(uA(t))return"uint";throw new Error(`Invalid compXor type: ${t}`)}class kn extends x{constructor({a:A}){const e=$I(q(A));super({a:A,outTypeFunc:s=>e,outKey:"compXor"}),this.statements=({inputs:s,outputs:i})=>{if(ot(this.outTypes.compXor))return[`${i.compXor} = ${s.a};`];const a=(dt(e)?["x","y"]:wt(e)?["x","y","z"]:["x","y","z","w"]).map(g=>`${s.a}.${g}`),r=gt(e)?"^^":"^";return[`${i.compXor} = ${a.join(` ${r} `)};`]}}}const AB=t=>new Jn({value:t}),tB=t=>new Yn({value:t}),eB=t=>new Tn({value:t}),Rn=t=>new Hn({value:t}),sB=t=>new Kn({value:t}),iB=t=>new qn({value:t}),nB=t=>new zn({value:t}),aB=t=>new _n({value:t}),rB=t=>new Vn({value:t}),gB=t=>new Pn({value:t}),oB=t=>new Zn({value:t}),IB=t=>new On({value:t}),BB=t=>new Wn({value:t}),Un=t=>new Xn({value:t}),rt=t=>new jn({value:t}),Gn=t=>new $n({value:t}),QB=t=>new Aa({value:t}),EB=t=>new ta({value:t}),CB=t=>new ea({value:t}),bn=t=>new sa({value:t}),cB=t=>new ia({value:t}),hB=t=>new na({value:t}),lB=t=>new aa({value:t}),uB=t=>new ra({value:t}),dB=t=>new ga({value:t}),wB=t=>new oa({value:t}),yB=t=>new Ia({value:t}),vn=t=>new Ba({value:t}),pB=t=>new Qa({value:t}),Ln=t=>new Ea({value:t});class gA extends x{constructor({value:A,outType:e,outKey:s}){super({a:A,outTypeFunc:()=>e,outKey:s}),this.statements=({inputs:i,outputs:n})=>[`${n[s]} = ${Is(e)}(${i.a});`]}}class Jn extends gA{constructor({value:A}){super({value:A,outType:"bool",outKey:"bool"})}}class Yn extends gA{constructor({value:A}){super({value:A,outType:"int",outKey:"int"})}}class Tn extends gA{constructor({value:A}){super({value:A,outType:"uint",outKey:"uint"})}}class Hn extends gA{constructor({value:A}){super({value:A,outType:"float",outKey:"float"})}}class Kn extends gA{constructor({value:A}){super({value:A,outType:"bvec2",outKey:"bvec2"})}}class qn extends gA{constructor({value:A}){super({value:A,outType:"bvec3",outKey:"bvec3"})}}class zn extends gA{constructor({value:A}){super({value:A,outType:"bvec4",outKey:"bvec4"})}}class _n extends gA{constructor({value:A}){super({value:A,outType:"ivec2",outKey:"ivec2"})}}class Vn extends gA{constructor({value:A}){super({value:A,outType:"ivec3",outKey:"ivec3"})}}class Pn extends gA{constructor({value:A}){super({value:A,outType:"ivec4",outKey:"ivec4"})}}class Zn extends gA{constructor({value:A}){super({value:A,outType:"uvec2",outKey:"uvec2"})}}class On extends gA{constructor({value:A}){super({value:A,outType:"uvec3",outKey:"uvec3"})}}class Wn extends gA{constructor({value:A}){super({value:A,outType:"uvec4",outKey:"uvec4"})}}class Xn extends gA{constructor({value:A}){super({value:A,outType:"vec2",outKey:"vec2"})}}class jn extends gA{constructor({value:A}){super({value:A,outType:"vec3",outKey:"vec3"})}}class $n extends gA{constructor({value:A}){super({value:A,outType:"vec4",outKey:"vec4"})}}class Aa extends gA{constructor({value:A}){super({value:A,outType:"mat2",outKey:"mat2"})}}class ta extends gA{constructor({value:A}){super({value:A,outType:"mat3",outKey:"mat3"})}}class ea extends gA{constructor({value:A}){super({value:A,outType:"mat4",outKey:"mat4"})}}class sa extends x{constructor({value:A}){super({a:A,outKey:"int",outTypeFunc:()=>"int"}),this.statements=({inputs:e,outputs:s})=>[`${s.int} = floatBitsToInt(${e.a});`]}}class ia extends x{constructor({value:A}){super({a:A,outKey:"uint",outTypeFunc:()=>"uint"}),this.statements=({inputs:e,outputs:s})=>[`${s.uint} = floatBitsToUint(${e.a});`]}}class na extends x{constructor({value:A}){super({a:A,outKey:"float",outTypeFunc:()=>"float"}),this.statements=({inputs:e,outputs:s})=>[`${s.float} = intBitsToFloat(${e.a});`]}}class aa extends x{constructor({value:A}){super({a:A,outKey:"float",outTypeFunc:()=>"float"}),this.statements=({inputs:e,outputs:s})=>[`${s.float} = uintBitsToFloat(${e.a});`]}}class ra extends x{constructor({value:A}){super({a:A,outKey:"uint",outTypeFunc:()=>"uint"}),this.statements=({inputs:e,outputs:s})=>[`${s.uint} = packSnorm2x16(${e.a});`]}}class ga extends x{constructor({value:A}){super({a:A,outKey:"vec2",outTypeFunc:()=>"vec2"}),this.statements=({inputs:e,outputs:s})=>[`${s.vec2} = unpackSnorm2x16(${e.a});`]}}class oa extends x{constructor({value:A}){super({a:A,outKey:"uint",outTypeFunc:()=>"uint"}),this.statements=({inputs:e,outputs:s})=>[`${s.uint} = packUnorm2x16(${e.a});`]}}class Ia extends x{constructor({value:A}){super({a:A,outKey:"vec2",outTypeFunc:()=>"vec2"}),this.statements=({inputs:e,outputs:s})=>[`${s.vec2} = unpackUnorm2x16(${e.a});`]}}class Ba extends x{constructor({value:A}){super({a:A,outKey:"uint",outTypeFunc:()=>"uint"}),this.statements=({inputs:e,outputs:s})=>[`${s.uint} = packHalf2x16(${e.a});`]}}class Qa extends x{constructor({value:A}){super({a:A,outKey:"vec2",outTypeFunc:()=>"vec2"}),this.statements=({inputs:e,outputs:s})=>[`${s.vec2} = unpackHalf2x16(${e.a});`]}}class Ea extends x{constructor({value:A}){super({a:A,outKey:"rgba8",outTypeFunc:()=>"vec4"}),this.statements=({inputs:e,outputs:s})=>[`uvec4 uRgba = uvec4(${e.a} & 0xffu, (${e.a} >> 8u) & 0xffu, (${e.a} >> 16u) & 0xffu, (${e.a} >> 24u) & 0xffu);`,`${s.rgba8} = vec4(uRgba) / 255.0;`]}}const DB=t=>new ha({a:t}),fB=(t,A)=>new la({a:t,b:A}),mB=(t,A)=>new ua({a:t,b:A}),MB=(t,A)=>new da({a:t,b:A}),Ca=t=>new wa({a:t}),xB=(t,A,e)=>new Da({a:t,b:A,c:e}),SB=(t,A)=>new fa({incident:t,normal:A}),FB=(t,A,e)=>new ma({incident:t,normal:A,eta:e}),Nt=t=>new ka({vector:t}),HA=({vector:t,vectorType:A,x:e,y:s,z:i,w:n,r:a,g:r,b:g,a:I})=>new Ra({vector:t,vectorType:A,x:e,y:s,z:i,w:n,r:a,g:r,b:g,a:I}),NB=t=>new ya({a:t}),ca=(t,A)=>new pa({a:t,b:A}),kB=(t,A)=>new Ua({vector:t,select:A}),RB=(t,A)=>new Ma({a:t,b:A}),UB=(t,A)=>new xa({a:t,b:A}),GB=t=>new Sa({a:t}),bB=t=>new Fa({a:t}),vB=t=>new Na({a:t});class ha extends x{constructor({a:A}){super({a:A,outTypeFunc:e=>"float",outKey:"length"}),this.statements=({inputs:e,outputs:s})=>[`${s.length} = length(${e.a});`]}}class la extends W{constructor({a:A,b:e}){super({a:A,b:e,outKey:"distance",outTypeFunc:(s,i)=>"float"}),this.statements=({inputs:s,outputs:i})=>[`${i.distance} = distance(${s.a}, ${s.b});`]}}class ua extends W{constructor({a:A,b:e}){super({a:A,b:e,outKey:"dot",outTypeFunc:(s,i)=>"float"}),this.statements=({inputs:s,outputs:i})=>[`${i.dot} = dot(${s.a}, ${s.b});`]}}class da extends W{constructor({a:A,b:e}){super({a:A,b:e,outKey:"cross",outTypeFunc:(s,i)=>"vec3"}),this.statements=({inputs:s,outputs:i})=>[`${i.cross} = cross(${s.a}, ${s.b});`]}}class wa extends x{constructor({a:A}){super({a:A,outTypeFunc:e=>e,outKey:"normalize"}),this.statements=({inputs:e,outputs:s})=>[`${s.normalize} = normalize(${e.a});`]}}function LB(t){if(t==="vec3")return"vec2";if(t==="vec4")return"vec3";throw new Error("Invalid type")}class ya extends x{constructor({a:A}){super({a:A,outTypeFunc:e=>LB(e),outKey:"projected"}),this.statements=({inputs:e,outputs:s})=>{if(this.inTypes.a==="vec3")return[`${s.projected} = ${e.a}.xy / ${e.a}.z;`];if(this.inTypes.a==="vec4")return[`${s.projected} = ${e.a}.xyz / ${e.a}.w;`];throw new Error("Invalid type")}}}function JB(t){if(t==="float")return"vec2";if(t==="vec2")return"vec3";if(t==="vec3")return"vec4";throw new Error("Invalid type")}class pa extends W{constructor({a:A,b:e}){const s=q(A),i=JB(s);super({a:A,b:e,outKey:"extend",outTypeFunc:()=>i}),this.statements=({inputs:n,outputs:a})=>[`${a.extend} = ${i}(${n.a}, ${n.b});`]}}class Da extends It{constructor({a:A,b:e,c:s}){super({a:A,b:e,c:s,outKey:"forward",outTypeFunc:(i,n,a)=>i}),this.statements=({inputs:i,outputs:n})=>[`${n.forward} = faceforward(${i.a}, ${i.b}, ${i.c});`]}}class fa extends W{constructor({incident:A,normal:e}){super({a:A,b:e,outKey:"reflection",outTypeFunc:(s,i)=>s}),this.statements=({inputs:s,outputs:i})=>[`${i.reflection} = reflect(${s.a}, ${s.b});`]}}class ma extends It{constructor({incident:A,normal:e,eta:s}){super({a:A,b:e,c:s,outKey:"refraction",outTypeFunc:(i,n,a)=>i}),this.statements=({inputs:i,outputs:n})=>[`${n.refraction} = refract(${i.a}, ${i.b}, ${i.c});`]}}class Ma extends W{constructor({a:A,b:e}){super({a:A,b:e,outKey:"product",outTypeFunc:(s,i)=>s}),this.statements=({inputs:s,outputs:i})=>[`${i.product} = matrixCompMult(${A}, ${e});`]}}function YB(t,A){if(t==="vec2"){if(A==="vec2")return"mat2";if(A==="vec3")return"mat3x2";if(A==="vec4")return"mat4x2"}if(t==="vec3"){if(A==="vec2")return"mat2x3";if(A==="vec3")return"mat3";if(A==="vec4")return"mat4x3"}if(t==="vec4"){if(A==="vec2")return"mat2x4";if(A==="vec3")return"mat3x4";if(A==="vec4")return"mat4"}throw new Error(`Invalid outer type: ${t}, ${A}`)}class xa extends W{constructor({a:A,b:e}){super({a:A,b:e,outKey:"outer",outTypeFunc:YB}),this.statements=({inputs:s,outputs:i})=>[`${i.outer} = outerProduct(${s.a}, ${s.b});`]}}function TB(t){if(t==="mat2")return"mat2";if(t==="mat3")return"mat3";if(t==="mat4")return"mat4";if(t==="mat2x2")return"mat2x2";if(t==="mat2x3")return"mat3x2";if(t==="mat2x4")return"mat4x2";if(t==="mat3x2")return"mat2x3";if(t==="mat3x3")return"mat3x3";if(t==="mat3x4")return"mat4x3";if(t==="mat4x2")return"mat2x4";if(t==="mat4x3")return"mat3x4";if(t==="mat4x4")return"mat4x4";throw new Error(`Invalid transpose type: ${t}`)}class Sa extends x{constructor({a:A}){super({a:A,outKey:"transpose",outTypeFunc:TB}),this.statements=({inputs:e,outputs:s})=>[`${s.transpose} = transpose(${e.a});`]}}class Fa extends x{constructor({a:A}){super({a:A,outKey:"det",outTypeFunc:e=>"float"}),this.statements=({inputs:e,outputs:s})=>[`${s.det} = determinant(${e.a});`]}}class Na extends x{constructor({a:A}){super({a:A,outKey:"inverse",outTypeFunc:e=>e}),this.statements=({inputs:e,outputs:s})=>[`${s.inverse} = inverse(${A});`]}}function HB(t){const A=e=>e;switch(t){case"vec2":return 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mA({state:B}).outputs.hash;B=new JA({state:B}).outputs.state;const E=new mA({state:B}).outputs.hash;B=new JA({state:B}).outputs.state;const t=new mA({state:B}).outputs.hash;return{hash:qA({vectorType:"uvec4",x:Q,y:C,z:E,w:t})}}})}dynoOut(){return new W(this,"hash")}}class OE extends vA{constructor({value:A}){super({inTypes:{value:v(A)},outTypes:{hash:"float"},inputs:{value:A},construct:({value:I})=>{if(!I)throw new Error("value is required");const B=KE(I);return{hash:cA(bC(B),gA("float",1/2**32))}}})}dynoOut(){return new W(this,"hash")}}class PE extends vA{constructor({value:A}){super({inTypes:{value:v(A)},outTypes:{hash:"vec2"},inputs:{value:A},construct:({value:I})=>{if(!I)throw new Error("value is required");const B=ZE(I);return{hash:cA(HC(B),gA("float",1/2**32))}}})}dynoOut(){return new W(this,"hash")}}class _E extends vA{constructor({value:A}){super({inTypes:{value:v(A)},outTypes:{hash:"vec3"},inputs:{value:A},construct:({value:I})=>{if(!I)throw new Error("value is 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T{constructor({position:A,scale:I,scales:B,rotate:Q,translate:C}){super({inTypes:{position:"vec3",scale:"float",scales:"vec3",rotate:"vec4",translate:"vec3"},outTypes:{position:"vec3"},inputs:{position:A,scale:I,scales:B,rotate:Q,translate:C},statements:({inputs:E,outputs:t})=>{const{position:i}=t;if(!i)return[];const{scale:e,scales:n,rotate:s,translate:o}=E;return[`${i} = ${E.position??"vec3(0.0, 0.0, 0.0)"};`,e?`${i} *= ${e};`:null,n?`${i} *= ${n};`:null,s?`${i} = quatVec(${s}, ${i});`:null,o?`${i} += ${o};`:null].filter(Boolean)}})}}class Bt extends T{constructor({dir:A,scale:I,scales:B,rotate:Q}){super({inTypes:{dir:"vec3",scale:"float",scales:"vec3",rotate:"vec4"},outTypes:{dir:"vec3"},inputs:{dir:A,scale:I,scales:B,rotate:Q},statements:({inputs:C,outputs:E})=>{const{dir:t}=E;if(!t)return[];const{scale:i,scales:e,rotate:n}=C;return[`${t} = ${C.dir??"vec3(0.0, 0.0, 0.0)"};`,i?`${t} *= ${i};`:null,e?`${t} *= ${e};`:null,n?`${t} = quatVec(${n}, ${t});`:null].filter(Boolean)}})}}class Qt extends T{constructor({quaternion:A,rotate:I}){super({inTypes:{quaternion:"vec4",rotate:"vec4"},outTypes:{quaternion:"vec4"},inputs:{quaternion:A,rotate:I},statements:({inputs:B,outputs:Q})=>{const{quaternion:C}=Q;return C?[`${C} = ${B.quaternion??"vec4(0.0, 0.0, 0.0, 1.0)"};`,I?`${C} = quatQuat(${B.rotate}, ${C});`:null].filter(Boolean):[]}})}}const Qn=()=>{throw new Error("Not implemented")},Cn=()=>{throw new Error("Not implemented")},En=()=>{throw new Error("Not implemented")},tn=()=>{throw new Error("Not implemented")},sn=()=>{throw new Error("Not implemented")},en=()=>{throw new Error("Not implemented")},an=(g,A)=>new Ct({texture:g,lod:A}),nn=(g,A,I)=>new Et({texture:g,coord:A,bias:I}),on=(g,A,I)=>new tt({texture:g,coord:A,lod:I});class Ct extends T{constructor({texture:A,lod:I}){const B=v(A);super({inTypes:{texture:B,lod:"int"},outTypes:{size:it(B)},inputs:{texture:A,lod:I},statements:({inputs:Q,outputs:C})=>[`${C.size} = textureSize(${Q.texture}, 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it(g){switch(g){case"sampler2D":case"usampler2D":case"isampler2D":case"samplerCube":case"usamplerCube":case"isamplerCube":case"sampler2DShadow":case"samplerCubeShadow":return"ivec2";case"sampler3D":case"usampler3D":case"isampler3D":case"sampler2DArray":case"usampler2DArray":case"isampler2DArray":case"sampler2DArrayShadow":return"ivec3";default:throw new Error(`Invalid texture type: ${g}`)}}function rn(g){switch(g){case"sampler2D":case"usampler2D":case"isampler2D":return"vec2";case"sampler3D":case"usampler3D":case"isampler3D":case"samplerCube":case"usamplerCube":case"isamplerCube":case"sampler2DArray":case"usampler2DArray":case"isampler2DArray":case"sampler2DShadow":return"vec3";case"samplerCubeShadow":case"sampler2DArrayShadow":return"vec4";default:throw new Error(`Invalid texture type: ${g}`)}}function st(g){switch(g){case"sampler2D":case"sampler2DArray":case"sampler3D":case"samplerCube":case"sampler2DShadow":return"vec4";case"usampler2D":case"usampler2DArray":case"usampler3D":case"usamplerCube":return"uvec4";case"isampler2D":case"isampler2DArray":case"isampler3D":case"isamplerCube":return"ivec4";case"samplerCubeShadow":case"sampler2DArrayShadow":return"float";default:throw new Error(`Invalid texture type: ${g}`)}}const cn=g=>new et({degrees:g}),hn=g=>new at({radians:g}),xI=g=>new nt({radians:g}),wn=g=>new ot({radians:g}),Dn=g=>new rt({radians:g}),ln=g=>new ct({sin:g}),yn=g=>new ht({cos:g}),un=g=>new wt({tan:g}),dn=(g,A)=>new Dt({y:g,x:A}),Gn=g=>new lt({x:g}),Mn=g=>new yt({x:g}),Nn=g=>new ut({x:g}),pn=g=>new dt({x:g}),kn=g=>new Gt({x:g}),Fn=g=>new Mt({x:g});class et extends R{constructor({degrees:A}){super({a:A,outTypeFunc:I=>I,outKey:"radians"}),this.statements=({inputs:I,outputs:B})=>[`${B.radians} = radians(${I.a});`]}}class at extends R{constructor({radians:A}){super({a:A,outTypeFunc:I=>I,outKey:"degrees"}),this.statements=({inputs:I,outputs:B})=>[`${B.degrees} = degrees(${I.a});`]}}class nt extends R{constructor({radians:A}){super({a:A,outTypeFunc:I=>I,outKey:"sin"}),this.statements=({inputs:I,outputs:B})=>[`${B.sin} = sin(${I.a});`]}}class ot extends R{constructor({radians:A}){super({a:A,outTypeFunc:I=>I,outKey:"cos"}),this.statements=({inputs:I,outputs:B})=>[`${B.cos} = cos(${I.a});`]}}class rt extends R{constructor({radians:A}){super({a:A,outTypeFunc:I=>I,outKey:"tan"}),this.statements=({inputs:I,outputs:B})=>[`${B.tan} = tan(${I.a});`]}}class ct extends R{constructor({sin:A}){super({a:A,outTypeFunc:I=>I,outKey:"asin"}),this.statements=({inputs:I,outputs:B})=>[`${B.asin} = asin(${I.a});`]}}class ht extends R{constructor({cos:A}){super({a:A,outTypeFunc:I=>I,outKey:"acos"}),this.statements=({inputs:I,outputs:B})=>[`${B.acos} = acos(${I.a});`]}}class wt extends R{constructor({tan:A}){super({a:A,outTypeFunc:I=>I,outKey:"atan"}),this.statements=({inputs:I,outputs:B})=>[`${B.atan} = atan(${I.a});`]}}class Dt extends O{constructor({y:A,x:I}){super({a:A,b:I,outTypeFunc:(B,Q)=>B,outKey:"atan2"}),this.statements=({inputs:B,outputs:Q})=>[`${Q.atan2} = atan2(${B.a}, ${B.b});`]}}class lt extends R{constructor({x:A}){super({a:A,outTypeFunc:I=>I,outKey:"sinh"}),this.statements=({inputs:I,outputs:B})=>[`${B.sinh} = sinh(${I.a});`]}}class yt extends R{constructor({x:A}){super({a:A,outTypeFunc:I=>I,outKey:"cosh"}),this.statements=({inputs:I,outputs:B})=>[`${B.cosh} = cosh(${I.a});`]}}class ut extends R{constructor({x:A}){super({a:A,outTypeFunc:I=>I,outKey:"tanh"}),this.statements=({inputs:I,outputs:B})=>[`${B.tanh} = tanh(${I.a});`]}}class dt extends R{constructor({x:A}){super({a:A,outTypeFunc:I=>I,outKey:"asinh"}),this.statements=({inputs:I,outputs:B})=>[`${B.asinh} = asinh(${I.a});`]}}class Gt extends 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sr(t){switch(t){case"sampler2D":case"sampler2DArray":case"sampler3D":case"samplerCube":case"sampler2DShadow":return"vec4";case"usampler2D":case"usampler2DArray":case"usampler3D":case"usamplerCube":return"uvec4";case"isampler2D":case"isampler2DArray":case"isampler3D":case"isamplerCube":return"ivec4";case"samplerCubeShadow":case"sampler2DArrayShadow":return"float";default:throw new Error(`Invalid texture type: ${t}`)}}const aQ=t=>new ir({degrees:t}),rQ=t=>new nr({radians:t}),ke=t=>new ar({radians:t}),gQ=t=>new rr({radians:t}),oQ=t=>new gr({radians:t}),IQ=t=>new or({sin:t}),BQ=t=>new Ir({cos:t}),QQ=t=>new Br({tan:t}),EQ=(t,A)=>new Qr({y:t,x:A}),CQ=t=>new Er({x:t}),cQ=t=>new Cr({x:t}),hQ=t=>new cr({x:t}),lQ=t=>new hr({x:t}),uQ=t=>new lr({x:t}),dQ=t=>new ur({x:t});class ir extends x{constructor({degrees:A}){super({a:A,outTypeFunc:e=>e,outKey:"radians"}),this.statements=({inputs:e,outputs:s})=>[`${s.radians} = radians(${e.a});`]}}class nr extends 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x{constructor({tan:A}){super({a:A,outTypeFunc:e=>e,outKey:"atan"}),this.statements=({inputs:e,outputs:s})=>[`${s.atan} = atan(${e.a});`]}}class Qr extends W{constructor({y:A,x:e}){super({a:A,b:e,outTypeFunc:(s,i)=>s,outKey:"atan2"}),this.statements=({inputs:s,outputs:i})=>[`${i.atan2} = atan2(${s.a}, ${s.b});`]}}class Er extends x{constructor({x:A}){super({a:A,outTypeFunc:e=>e,outKey:"sinh"}),this.statements=({inputs:e,outputs:s})=>[`${s.sinh} = sinh(${e.a});`]}}class Cr extends x{constructor({x:A}){super({a:A,outTypeFunc:e=>e,outKey:"cosh"}),this.statements=({inputs:e,outputs:s})=>[`${s.cosh} = cosh(${e.a});`]}}class cr extends x{constructor({x:A}){super({a:A,outTypeFunc:e=>e,outKey:"tanh"}),this.statements=({inputs:e,outputs:s})=>[`${s.tanh} = tanh(${e.a});`]}}class hr extends x{constructor({x:A}){super({a:A,outTypeFunc:e=>e,outKey:"asinh"}),this.statements=({inputs:e,outputs:s})=>[`${s.asinh} = asinh(${e.a});`]}}class lr extends x{constructor({x:A}){super({a:A,outTypeFunc:e=>e,outKey:"acosh"}),this.statements=({inputs:e,outputs:s})=>[`${s.acosh} = acosh(${e.a});`]}}class ur extends x{constructor({x:A}){super({a:A,outTypeFunc:e=>e,outKey:"atanh"}),this.statements=({inputs:e,outputs:s})=>[`${s.atanh} = atanh(${e.a});`]}}const wQ=Object.freeze(Object.defineProperty({__proto__:null,Abs:Pi,Acos:Ir,Acosh:lr,Add:Yi,All:Sn,And:ln,Any:xn,Asin:or,Asinh:hr,Atan:Br,Atan2:Qr,Atanh:ur,BVec2:Kn,BVec3:qn,BVec4:zn,BinaryOp:W,Bool:Jn,Ceil:Wi,Clamp:Bn,Combine:Ra,CombineGsplat:ds,CompMult:Ma,CompXor:kn,Compilation:Qs,Cos:rr,Cosh:Cr,Cross:da,Degrees:nr,Determinant:Fa,Distance:la,Div:Ki,Dot:ua,Dyno:V,DynoBlock:KA,DynoBool:se,DynoBvec2:Ms,DynoBvec3:Ns,DynoBvec4:Us,DynoConst:Bs,DynoFloat:at,DynoInt:Ut,DynoIsampler2D:Os,DynoIsampler2DArray:Xs,DynoIsampler3D:Ai,DynoIsamplerCube:si,DynoIvec2:Ss,DynoIvec3:Rs,DynoIvec4:bs,DynoLiteral:ht,DynoMat2:vs,DynoMat2x2:Ls,DynoMat2x3:Js,DynoMat2x4:Ys,DynoMat3:Ts,DynoMat3x2:Hs,DynoMat3x3:Ks,DynoMat3x4:qs,DynoMat4:zs,DynoMat4x2:_s,DynoMat4x3:Vs,DynoMat4x4:Ps,DynoOutput:z,DynoProgram:Te,DynoProgramTemplate:He,DynoRemapIndex:Ya,DynoSampler2D:Ws,DynoSampler2DArray:js,DynoSampler2DArrayShadow:ai,DynoSampler2DShadow:ni,DynoSampler3D:ti,DynoSamplerCube:ii,DynoSamplerCubeShadow:ri,DynoUint:ms,DynoUniform:k,DynoUsampler2D:Zs,DynoUsampler2DArray:xt,DynoUsampler3D:$s,DynoUsamplerCube:ei,DynoUvec2:xs,DynoUvec3:ks,DynoUvec4:Gs,DynoValue:$A,DynoVec2:Fs,DynoVec3:ut,DynoVec4:zt,Equal:mn,Exp:tn,Exp2:en,ExtendVec:pa,FaceForward:Da,Float:Hn,FloatBitsToInt:sa,FloatBitsToUint:ia,Floor:Oi,Fract:$i,GreaterThan:Dn,GreaterThanEqual:fn,Gsplat:sA,GsplatNormal:ys,Hash:Ta,Hash2:Ha,Hash3:Ka,Hash4:qa,HashFloat:za,HashVec2:_a,HashVec3:Va,HashVec4:Pa,IMod:qi,IVec2:_n,IVec3:Vn,IVec4:Pn,Int:Yn,IntBitsToFloat:na,Inverse:Na,InverseSqrt:gn,IsInf:hn,IsNan:cn,Length:ha,LessThan:yn,LessThanEqual:pn,Log:sn,Log2:nn,Mat2:Aa,Mat3:ta,Mat4:ea,Max:In,Min:on,Mix:Qn,Mod:zi,Modf:_i,Mul:Hi,Neg:Vi,Normalize:wa,Not:wn,NotEqual:Mn,NumPackedSplats:Cs,Or:un,Outer:xa,OutputPackedSplat:fs,OutputRgba8:Je,PackHalf2x16:Ba,PackSnorm2x16:ra,PackUnorm2x16:oa,PcgHash:NA,PcgMix:yt,PcgNext:FA,Pow:An,ProjectH:ya,Radians:ir,ReadPackedSplat:hs,ReadPackedSplatRange:ls,ReflectVec:fa,RefractVec:ma,Round:ji,Select:Fn,Sign:Zi,SimpleCast:gA,Sin:ar,Sinh:Er,Smoothstep:Cn,Split:ka,SplitGsplat:us,Sqr:an,Sqrt:rn,Step:En,Sub:Ti,Swizzle:Ua,TPackedSplats:qt,Tan:gr,Tanh:cr,TexelFetch:tr,Texture:Ar,TextureSize:$a,TransformDir:Xa,TransformGsplat:ps,TransformPosition:Wa,TransformQuaternion:ja,Transpose:Sa,TrinaryOp:It,Trunc:Xi,UVec2:Zn,UVec3:On,UVec4:Wn,Uint:Tn,UintBitsToFloat:aa,UintToRgba8:Ea,UnaryOp:x,UnpackHalf2x16:Qa,UnpackSnorm2x16:ga,UnpackUnorm2x16:Ia,Vec2:Xn,Vec3:jn,Vec4:$n,Xor:dn,abs:uI,acos:BQ,acosh:uQ,add:mA,all:OI,and:JI,any:ZI,arrayIndex:AQ,arrayLength:tQ,asin:IQ,asinh:lQ,atan:QQ,atan2:EQ,atanh:dQ,bool:AB,bvec2:sB,bvec3:iB,bvec4:nB,ceil:yI,clamp:UI,combine:HA,combineGsplat:lt,comment:$B,compMult:RB,compXor:XI,cos:gQ,cosh:cQ,cross:MB,defineGsplat:MA,defineGsplatNormal:ws,definePackedSplats:Be,degrees:rQ,determinant:bB,distance:fB,div:$t,dot:mB,dyno:Kt,dynoBlock:GA,dynoBool:Qg,dynoBvec2:cg,dynoBvec3:dg,dynoBvec4:pg,dynoConst:tA,dynoDeclare:ve,dynoFloat:JA,dynoFor:jB,dynoIf:WB,dynoInt:Cg,dynoIsampler2D:Yg,dynoIsampler2DArray:Kg,dynoIsampler3D:_g,dynoIsamplerCube:Zg,dynoIvec2:lg,dynoIvec3:yg,dynoIvec4:fg,dynoLiteral:ee,dynoMat2:Mg,dynoMat2x2:xg,dynoMat2x3:Sg,dynoMat2x4:Fg,dynoMat3:Ng,dynoMat3x2:kg,dynoMat3x3:Rg,dynoMat3x4:Ug,dynoMat4:Gg,dynoMat4x2:bg,dynoMat4x3:vg,dynoMat4x4:Lg,dynoSampler2D:Tg,dynoSampler2DArray:qg,dynoSampler2DArrayShadow:Xg,dynoSampler2DShadow:Wg,dynoSampler3D:Vg,dynoSamplerCube:Og,dynoSamplerCubeShadow:jg,dynoSwitch:XB,dynoUint:Eg,dynoUsampler2D:Jg,dynoUsampler2DArray:Hg,dynoUsampler3D:zg,dynoUsamplerCube:Pg,dynoUvec2:hg,dynoUvec3:wg,dynoUvec4:Dg,dynoVec2:ug,dynoVec3:OA,dynoVec4:mg,equal:VI,exp:mI,exp2:MI,extendVec:ca,faceforward:xB,float:Rn,floatBitsToInt:bn,floatBitsToUint:cB,floor:wI,fract:Ae,greaterThan:zI,greaterThanEqual:_I,gsplatNormal:og,hash:Ga,hash2:ba,hash3:va,hash4:La,hashFloat:PB,hashVec2:ZB,hashVec3:Ja,hashVec4:Ne,imod:Fe,int:tB,intBitsToFloat:hB,inverse:vB,inversesqrt:kI,isAllFloatType:tt,isBoolType:gt,isFloatType:Tt,isInf:LI,isIntType:lA,isMat2:et,isMat3:st,isMat4:it,isMatFloatType:as,isNan:vI,isScalarType:ot,isUintType:uA,isVector2Type:dt,isVector3Type:wt,isVector4Type:Ht,isVectorType:sg,ivec2:aB,ivec3:rB,ivec4:gB,length:DB,lessThan:KI,lessThanEqual:qI,literalNegOne:rg,literalOne:ag,literalZero:Dt,log:xI,log2:SI,mat2:QB,mat3:EB,mat4:CB,max:Li,min:RI,mix:Ji,mod:vi,modf:hI,mul:cA,neg:lI,normalize:Ca,not:HI,notEqual:PI,numPackedSplats:gg,numberAsFloat:K,numberAsInt:aA,numberAsUint:rA,or:YI,outer:UB,outputPackedSplat:Ds,outputRgba8:Ig,packHalf2x16:vn,packSnorm2x16:uB,packUnorm2x16:wB,pcgHash:VB,pcgMix:zB,pcgNext:_B,pow:fI,projectH:NB,radians:aQ,readPackedSplat:Rt,readPackedSplatRange:Es,reflectVec:SB,refractVec:FB,remapIndex:qB,round:DI,sameSizeIvec:ng,sameSizeUvec:os,sameSizeVec:ig,select:WI,sign:dI,sin:ke,sinh:CQ,smoothstep:bI,split:Nt,splitGsplat:Mt,sqr:FI,sqrt:NI,step:GI,sub:Gt,swizzle:kB,tan:oQ,tanh:hQ,texelFetch:iQ,texture:sQ,textureSize:eQ,transformDir:Oa,transformGsplat:Le,transformPos:Za,transformQuat:OB,transpose:GB,trunc:pI,typeLiteral:Is,uint:eB,uintBitsToFloat:lB,uintToRgba8:Ln,uniform:Bg,unindent:QA,unindentLines:kA,unpackHalf2x16:pB,unpackSnorm2x16:dB,unpackUnorm2x16:yB,uvec2:oB,uvec3:IB,uvec4:BB,valType:q,vec2:Un,vec3:rt,vec4:Gn,vectorDim:gs,vectorElementType:rs,xor:TI},Symbol.toStringTag,{value:"Module"}));var yQ=`precision highp float; precision highp int; precision highp sampler2D; precision highp usampler2D; @@ -132,18 +131,18 @@ void main() { } else { target = vec4(0.0, 0.0, 0.0, 0.0); } -}`;const eA=class eA{constructor({renderer:A}={}){this.renderer=A,this.capacity=0,this.count=0}dispose(){this.target&&(this.target.dispose(),this.target=void 0)}ensureBuffer(A,I){const Q=Math.ceil(Math.max(1,A)/X)*X*4;if(I.byteLength>=Q)return I;const C=new ArrayBuffer(Q);if(I instanceof ArrayBuffer)return C;const E=I.constructor;return new E(C)}ensureCapacity(A){const{width:I,height:B,depth:Q,maxSplats:C}=MA(A);(!this.target||C>this.capacity)&&(this.dispose(),this.capacity=C,this.target=new a.WebGLArrayRenderTarget(I,B,Q,{depthBuffer:!1,stencilBuffer:!1,generateMipmaps:!1,magFilter:a.NearestFilter,minFilter:a.NearestFilter}),this.target.texture.format=a.RGBAFormat,this.target.texture.type=a.UnsignedByteType,this.target.texture.internalFormat="RGBA8")}prepareProgramMaterial(A){let I=eA.readbackProgram.get(A);if(!I){const Q=UA({index:"int"},{rgba8:"vec4"},({index:C})=>(A.inputs.index=C,{rgba8:new WI({rgba8:A.outputs.rgba8})}));eA.programTemplate||(eA.programTemplate=new XI(Jn)),I=new TI({graph:Q,inputs:{index:"index"},outputs:{rgba8:"target"},template:eA.programTemplate}),Object.assign(I.uniforms,{targetLayer:{value:0},targetBase:{value:0},targetCount:{value:0}}),eA.readbackProgram.set(A,I)}const B=I.prepareMaterial();return eA.mesh.material=B,{program:I,material:B}}saveRenderState(A){return{xrPresenting:A.xr.isPresenting,autoClear:A.autoClear,scissorTest:A.getScissorTest(),pixelRatio:A.getPixelRatio()}}resetRenderState(A,I){A.setRenderTarget(null),A.setPixelRatio(I.pixelRatio),A.xr.isPresenting=I.xrPresenting,A.autoClear=I.autoClear,A.setScissorTest(I.scissorTest)}process({count:A,material:I}){const B=this.renderer;if(!B)throw new Error("No renderer");if(!this.target)throw new Error("No target");const Q=X*TA;I.uniforms.targetBase.value=0,I.uniforms.targetCount.value=A;let C=0;for(;CA)}render({reader:A,count:I,renderer:B}){if(this.renderer=B||this.renderer,!this.renderer)throw new Error("No renderer");this.ensureCapacity(I);const{program:Q,material:C}=this.prepareProgramMaterial(A);Q.update();const E=this.saveRenderState(this.renderer);this.process({count:I,material:C}),this.resetRenderState(this.renderer,E)}async readback({readback:A}){if(!this.renderer)throw new Error("No renderer");const I=this.saveRenderState(this.renderer),B=this.read({readback:A});return this.resetRenderState(this.renderer,I),B}async renderReadback({reader:A,count:I,renderer:B,readback:Q}){if(this.renderer=B||this.renderer,!this.renderer)throw new Error("No renderer");this.ensureCapacity(I);const{program:C,material:E}=this.prepareProgramMaterial(A);C.update();const t=this.saveRenderState(this.renderer);this.process({count:I,material:E});const i=this.read({readback:Q});return this.resetRenderState(this.renderer,t),i}getTexture(){var A;return(A=this.target)==null?void 0:A.texture}};eA.programTemplate=null,eA.readbackProgram=new Map,eA.geometry=new a.PlaneGeometry(2,2),eA.mesh=new a.Mesh(eA.geometry,new a.RawShaderMaterial({visible:!1})),eA.scene=new a.Scene().add(eA.mesh),eA.camera=new a.Camera;let Lg=eA;const aA=class aA{constructor(A={}){this.capacity=0,this.count=0,this.array=null,this.readback=null,this.source=null,this.needsUpdate=!0,this.dyno=new S({key:"rgbaArray",type:Nt,globals:()=>[pt],value:{texture:aA.getEmpty(),count:0},update:I=>{var B;return I.texture=((B=this.readback)==null?void 0:B.getTexture())??this.source??aA.getEmpty(),I.count=this.count,I}}),A.array?(this.array=A.array,this.capacity=Math.floor(this.array.length/4),this.capacity=Math.floor(this.capacity/X)*X,this.count=Math.min(this.capacity,A.count??Number.POSITIVE_INFINITY)):(this.capacity=A.capacity??0,this.count=0)}dispose(){this.readback&&(this.readback.dispose(),this.readback=null),this.source&&(this.source.dispose(),this.source=null)}ensureCapacity(A){var I;if(!this.array||A>(((I=this.array)==null?void 0:I.length)??0)/4){this.capacity=MA(A).maxSplats;const B=new Uint8Array(this.capacity*4);this.array&&B.set(this.array),this.array=B}return this.array}getTexture(){var I;let A=(I=this.readback)==null?void 0:I.getTexture();return(this.source||this.array)&&(A=this.maybeUpdateSource()),A??aA.getEmpty()}maybeUpdateSource(){if(!this.array)throw new Error("No array");if(this.needsUpdate||!this.source){if(this.needsUpdate=!1,this.source){const{width:A,height:I,depth:B}=this.source.image;this.capacity!==A*I*B&&(this.source.dispose(),this.source=null)}if(this.source)this.array.buffer!==this.source.image.data.buffer&&(this.source.image.data=new Uint8Array(this.array.buffer));else{const{width:A,height:I,depth:B}=MA(this.capacity);this.source=new a.DataArrayTexture(this.array,A,I,B),this.source.format=a.RGBAFormat,this.source.type=a.UnsignedByteType,this.source.internalFormat="RGBA8",this.source.needsUpdate=!0}this.source.needsUpdate=!0}return this.source}render({reader:A,count:I,renderer:B}){this.readback||(this.readback=new Lg({renderer:B})),this.readback.render({reader:A,count:I,renderer:B}),this.capacity=this.readback.capacity,this.count=this.readback.count}fromPackedSplats({packedSplats:A,base:I,count:B,renderer:Q}){const{dynoSplats:C,dynoBase:E,dynoCount:t,reader:i}=aA.makeDynos();return C.packedSplats=A,E.value=I,t.value=B,this.render({reader:i,count:B,renderer:Q}),this}async read(){if(!this.readback)throw new Error("No readback");return(!this.array||this.array.length{if(!C)throw new Error("index is undefined");C=pA(C,I);const E=yB(A,C,I,B);return{rgba8:kg(E).outputs.rgba}});aA.dynos={dynoSplats:A,dynoBase:I,dynoCount:B,reader:Q}}return aA.dynos}};aA.emptySource=null,aA.dynos=null;let LI=aA;const Nt={type:"RgbaArray"},pt=nA(` +}`;const IA=class IA{constructor({renderer:A}={}){this.renderer=A,this.capacity=0,this.count=0}dispose(){this.target&&(this.target.dispose(),this.target=void 0)}ensureBuffer(A,e){const i=Math.ceil(Math.max(1,A)/O)*O*4;if(e.byteLength>=i)return e;const n=new ArrayBuffer(i);if(e instanceof ArrayBuffer)return n;const a=e.constructor;return new a(n)}ensureCapacity(A){const{width:e,height:s,depth:i,maxSplats:n}=DA(A);(!this.target||n>this.capacity)&&(this.dispose(),this.capacity=n,this.target=new B.WebGLArrayRenderTarget(e,s,i,{depthBuffer:!1,stencilBuffer:!1,generateMipmaps:!1,magFilter:B.NearestFilter,minFilter:B.NearestFilter}),this.target.texture.format=B.RGBAFormat,this.target.texture.type=B.UnsignedByteType,this.target.texture.internalFormat="RGBA8")}prepareProgramMaterial(A){let e=IA.readbackProgram.get(A);if(!e){const i=GA({index:"int"},{rgba8:"vec4"},({index:n})=>(A.inputs.index=n,{rgba8:new Je({rgba8:A.outputs.rgba8})}));IA.programTemplate||(IA.programTemplate=new He(yQ)),e=new Te({graph:i,inputs:{index:"index"},outputs:{rgba8:"target"},template:IA.programTemplate}),Object.assign(e.uniforms,{targetLayer:{value:0},targetBase:{value:0},targetCount:{value:0}}),IA.readbackProgram.set(A,e)}const s=e.prepareMaterial();return IA.mesh.material=s,{program:e,material:s}}saveRenderState(A){return{xrPresenting:A.xr.isPresenting,autoClear:A.autoClear,scissorTest:A.getScissorTest(),pixelRatio:A.getPixelRatio()}}resetRenderState(A,e){A.setRenderTarget(null),A.setPixelRatio(e.pixelRatio),A.xr.isPresenting=e.xrPresenting,A.autoClear=e.autoClear,A.setScissorTest(e.scissorTest)}process({count:A,material:e}){const s=this.renderer;if(!s)throw new Error("No renderer");if(!this.target)throw new Error("No target");const i=O*jA;e.uniforms.targetBase.value=0,e.uniforms.targetCount.value=A;let n=0;for(;nA)}render({reader:A,count:e,renderer:s}){if(this.renderer=s||this.renderer,!this.renderer)throw new Error("No renderer");this.ensureCapacity(e);const{program:i,material:n}=this.prepareProgramMaterial(A);i.update();const a=this.saveRenderState(this.renderer);this.process({count:e,material:n}),this.resetRenderState(this.renderer,a)}async readback({readback:A}){if(!this.renderer)throw new Error("No renderer");const e=this.saveRenderState(this.renderer),s=this.read({readback:A});return this.resetRenderState(this.renderer,e),s}async renderReadback({reader:A,count:e,renderer:s,readback:i}){if(this.renderer=s||this.renderer,!this.renderer)throw new Error("No renderer");this.ensureCapacity(e);const{program:n,material:a}=this.prepareProgramMaterial(A);n.update();const r=this.saveRenderState(this.renderer);this.process({count:e,material:a});const g=this.read({readback:i});return this.resetRenderState(this.renderer,r),g}getTexture(){var A;return(A=this.target)==null?void 0:A.texture}};IA.programTemplate=null,IA.readbackProgram=new Map,IA.geometry=new B.PlaneGeometry(2,2),IA.mesh=new B.Mesh(IA.geometry,new B.RawShaderMaterial({visible:!1})),IA.scene=new B.Scene().add(IA.mesh),IA.camera=new B.Camera;let bt=IA;const BA=class BA{constructor(A={}){this.capacity=0,this.count=0,this.array=null,this.readback=null,this.source=null,this.needsUpdate=!0,this.dyno=new k({key:"rgbaArray",type:dr,globals:()=>[wr],value:{texture:BA.getEmpty(),count:0},update:e=>{var s;return e.texture=((s=this.readback)==null?void 0:s.getTexture())??this.source??BA.getEmpty(),e.count=this.count,e}}),A.array?(this.array=A.array,this.capacity=Math.floor(this.array.length/4),this.capacity=Math.floor(this.capacity/O)*O,this.count=Math.min(this.capacity,A.count??Number.POSITIVE_INFINITY)):(this.capacity=A.capacity??0,this.count=0)}dispose(){this.readback&&(this.readback.dispose(),this.readback=null),this.source&&(this.source.dispose(),this.source=null)}ensureCapacity(A){var e;if(!this.array||A>(((e=this.array)==null?void 0:e.length)??0)/4){this.capacity=DA(A).maxSplats;const s=new Uint8Array(this.capacity*4);this.array&&s.set(this.array),this.array=s}return this.array}getTexture(){var e;let A=(e=this.readback)==null?void 0:e.getTexture();return(this.source||this.array)&&(A=this.maybeUpdateSource()),A??BA.getEmpty()}maybeUpdateSource(){if(!this.array)throw new Error("No array");if(this.needsUpdate||!this.source){if(this.needsUpdate=!1,this.source){const{width:A,height:e,depth:s}=this.source.image;this.capacity!==A*e*s&&(this.source.dispose(),this.source=null)}if(this.source)this.array.buffer!==this.source.image.data.buffer&&(this.source.image.data=new Uint8Array(this.array.buffer));else{const{width:A,height:e,depth:s}=DA(this.capacity);this.source=new B.DataArrayTexture(this.array,A,e,s),this.source.format=B.RGBAFormat,this.source.type=B.UnsignedByteType,this.source.internalFormat="RGBA8",this.source.needsUpdate=!0}this.source.needsUpdate=!0}return this.source}render({reader:A,count:e,renderer:s}){this.readback||(this.readback=new bt({renderer:s})),this.readback.render({reader:A,count:e,renderer:s}),this.capacity=this.readback.capacity,this.count=this.readback.count}fromPackedSplats({packedSplats:A,base:e,count:s,renderer:i}){const{dynoSplats:n,dynoBase:a,dynoCount:r,reader:g}=BA.makeDynos();return n.packedSplats=A,a.value=e,r.value=s,this.render({reader:g,count:s,renderer:i}),this}async read(){if(!this.readback)throw new Error("No readback");return(!this.array||this.array.length{if(!n)throw new Error("index is undefined");n=mA(n,e);const a=Es(A,n,e,s);return{rgba8:Mt(a).outputs.rgba}});BA.dynos={dynoSplats:A,dynoBase:e,dynoCount:s,reader:i}}return BA.dynos}};BA.emptySource=null,BA.dynos=null;let Re=BA;const dr={type:"RgbaArray"},wr=QA(` struct RgbaArray { sampler2DArray texture; int count; }; -`);function mn(g,A){return new T({inTypes:{rgba:Nt,index:"int"},outTypes:{rgba:"vec4"},inputs:{rgba:g,index:A},globals:()=>[pt],statements:({inputs:B,outputs:Q})=>fA(` - if ((index >= 0) && (index < ${B.rgba}.count)) { - ${Q.rgba} = texelFetch(${B.rgba}.texture, splatTexCoord(index), 0); +`);function pQ(t,A){return new V({inTypes:{rgba:dr,index:"int"},outTypes:{rgba:"vec4"},inputs:{rgba:t,index:A},globals:()=>[wr],statements:({inputs:s,outputs:i})=>kA(` + if ((index >= 0) && (index < ${s.rgba}.count)) { + ${i.rgba} = texelFetch(${s.rgba}.texture, splatTexCoord(index), 0); } else { - ${Q.rgba} = vec4(0.0, 0.0, 0.0, 0.0); + ${i.rgba} = vec4(0.0, 0.0, 0.0, 0.0); } - `)}).outputs.rgba}var kt=(g=>(g.ALL="all",g.PLANE="plane",g.SPHERE="sphere",g.BOX="box",g.ELLIPSOID="ellipsoid",g.CYLINDER="cylinder",g.CAPSULE="capsule",g.INFINITE_CONE="infinite_cone",g))(kt||{});function fn(g){switch(g){case"all":return 0;case"plane":return 1;case"sphere":return 2;case"box":return 3;case"ellipsoid":return 4;case"cylinder":return 5;case"capsule":return 6;case"infinite_cone":return 7;default:throw new Error(`Unknown SDF type: ${g}`)}}var Ft=(g=>(g.MULTIPLY="multiply",g.SET_RGB="set_rgb",g.ADD_RGBA="add_rgba",g))(Ft||{});function Sn(g){switch(g){case"multiply":return 0;case"set_rgb":return 1;case"add_rgba":return 2;default:throw new Error(`Unknown blend mode: ${g}`)}}class Rt extends a.Object3D{constructor(A={}){super();const{type:I,invert:B,opacity:Q,color:C,displace:E,radius:t}=A;this.type=I??"sphere",this.invert=B??!1,this.opacity=Q??1,this.color=C??new a.Color(1,1,1),this.displace=E??new a.Vector3(0,0,0),this.radius=t??0}}const oI=class oI extends a.Object3D{constructor(A={}){const{name:I,rgbaBlendMode:B="multiply",sdfSmooth:Q=0,softEdge:C=0,invert:E=!1,sdfs:t=null}=A;super(),this.rgbaBlendMode=B,this.sdfSmooth=Q,this.softEdge=C,this.invert=E,this.sdfs=t,this.ordering=oI.nextOrdering++,this.name=I??`Edit ${this.ordering}`}addSdf(A){this.sdfs==null&&(this.sdfs=[]),this.sdfs.push(A)}removeSdf(A){this.sdfs!=null&&(this.sdfs=this.sdfs.filter(I=>I!==A))}};oI.nextOrdering=1;let bg=oI;class Jt{constructor({maxSdfs:A,maxEdits:I}){this.maxSdfs=Math.max(16,A??0),this.numSdfs=0,this.sdfData=new Uint32Array(this.maxSdfs*8*4),this.sdfFloatData=new Float32Array(this.sdfData.buffer),this.sdfTexture=this.newSdfTexture(this.sdfData,this.maxSdfs),this.dynoSdfArray=new S({key:"sdfArray",type:mt,globals:()=>[ft],value:{numSdfs:0,sdfTexture:this.sdfTexture},update:B=>(B.numSdfs=this.numSdfs,B.sdfTexture=this.sdfTexture,B)}),this.maxEdits=Math.max(16,I??0),this.numEdits=0,this.editData=new Uint32Array(this.maxEdits*4),this.editFloatData=new Float32Array(this.editData.buffer),this.dynoNumEdits=new Yg({value:0}),this.dynoEdits=this.newEdits(this.editData,this.maxEdits)}newSdfTexture(A,I){const B=new a.DataTexture(A,8,I,a.RGBAIntegerFormat,a.UnsignedIntType);return B.internalFormat="RGBA32UI",B.needsUpdate=!0,B}newEdits(A,I){return new S({key:"edits",type:"uvec4",count:I,globals:()=>[St],value:A})}ensureCapacity({maxSdfs:A,maxEdits:I}){let B=!1;return A>this.sdfTexture.image.height&&(this.sdfTexture.dispose(),this.maxSdfs=Math.max(this.maxSdfs*2,A),this.sdfData=new Uint32Array(this.maxSdfs*8*4),this.sdfFloatData=new Float32Array(this.sdfData.buffer),this.sdfTexture=this.newSdfTexture(this.sdfData,this.maxSdfs)),I>(this.dynoEdits.count??0)&&(this.maxEdits=Math.max(this.maxEdits*2,I),this.editData=new Uint32Array(this.maxEdits*4),this.editFloatData=new Float32Array(this.editData.buffer),this.dynoEdits=this.newEdits(this.editData,this.maxEdits),B=!0),B}updateEditData(A,I){const B=this.editData[A]!==I;return this.editData[A]=I,B}updateEditFloatData(A,I){og[0]=I;const B=this.editFloatData[A]!==og[0];return B&&(this.editFloatData[A]=og[0]),B}encodeEdit(A,{sdfFirst:I,sdfCount:B,invert:Q,rgbaBlendMode:C,softEdge:E,sdfSmooth:t}){const i=A*4;let e=!1;return e=this.updateEditData(i+0,C|(Q?256:0))||e,e=this.updateEditData(i+1,I|B<<16)||e,e=this.updateEditFloatData(i+2,E)||e,e=this.updateEditFloatData(i+3,t)||e,e}updateSdfData(A,I){const B=this.sdfData[A]!==I;return this.sdfData[A]=I,B}updateSdfFloatData(A,I){og[0]=I;const B=this.sdfFloatData[A]!==og[0];return B&&(this.sdfFloatData[A]=og[0]),B}encodeSdf(A,{sdfType:I,invert:B,center:Q,quaternion:C,scale:E,sizes:t},i){const e=A*32,n=I|(B?256:0);let s=!1;s=this.updateSdfFloatData(e+0,(Q==null?void 0:Q.x)??0)||s,s=this.updateSdfFloatData(e+1,(Q==null?void 0:Q.y)??0)||s,s=this.updateSdfFloatData(e+2,(Q==null?void 0:Q.z)??0)||s,s=this.updateSdfData(e+3,n)||s,s=this.updateSdfFloatData(e+4,(C==null?void 0:C.x)??0)||s,s=this.updateSdfFloatData(e+5,(C==null?void 0:C.y)??0)||s,s=this.updateSdfFloatData(e+6,(C==null?void 0:C.z)??0)||s,s=this.updateSdfFloatData(e+7,(C==null?void 0:C.w)??0)||s,s=this.updateSdfFloatData(e+8,(E==null?void 0:E.x)??0)||s,s=this.updateSdfFloatData(e+9,(E==null?void 0:E.y)??0)||s,s=this.updateSdfFloatData(e+10,(E==null?void 0:E.z)??0)||s,s=this.updateSdfData(e+11,0)||s,s=this.updateSdfFloatData(e+12,(t==null?void 0:t.x)??0)||s,s=this.updateSdfFloatData(e+13,(t==null?void 0:t.y)??0)||s,s=this.updateSdfFloatData(e+14,(t==null?void 0:t.z)??0)||s,s=this.updateSdfFloatData(e+15,(t==null?void 0:t.w)??0)||s;const o=Math.min(4,i.length);for(let r=0;rs+o.length,0),B=this.ensureCapacity({maxEdits:A.length,maxSdfs:I}),Q=[new a.Vector4,new a.Vector4],C=new a.Vector3,E=new a.Quaternion,t=new a.Vector3,i=new a.Vector4;let e=0,n=B;A.length!==this.dynoNumEdits.value&&(this.dynoNumEdits.value=A.length,this.numEdits=A.length,n=!0);for(const[s,{edit:o,sdfs:r}]of A.entries()){n=this.encodeEdit(s,{sdfFirst:e,sdfCount:r.length,invert:o.invert,rgbaBlendMode:Sn(o.rgbaBlendMode),softEdge:o.softEdge,sdfSmooth:o.sdfSmooth})||n;let c=!1;for(const h of r)i.set(h.scale.x,h.scale.y,h.scale.z,h.radius),h.scale.setScalar(1),h.updateMatrixWorld(),h.matrixWorld.clone().invert().decompose(C,E,t),h.scale.set(i.x,i.y,i.z),h.updateMatrixWorld(),Q[0].set(h.color.r,h.color.g,h.color.b,h.opacity),Q[1].set(h.displace.x,h.displace.y,h.displace.z,1),c=this.encodeSdf(e,{sdfType:fn(h.type),invert:h.invert,center:C,quaternion:E,scale:t,sizes:i},Q)||c,e+=1;this.numSdfs=e,c&&(this.sdfTexture.needsUpdate=!0),n||(n=c)}return{updated:n,dynoUpdated:B}}modify(A){return Yn(A,this.dynoSdfArray,this.dynoNumEdits,this.dynoEdits)}}const mt={type:"SdfArray"},ft=nA(` + `)}).outputs.rgba}var yr=(t=>(t.ALL="all",t.PLANE="plane",t.SPHERE="sphere",t.BOX="box",t.ELLIPSOID="ellipsoid",t.CYLINDER="cylinder",t.CAPSULE="capsule",t.INFINITE_CONE="infinite_cone",t))(yr||{});function DQ(t){switch(t){case"all":return 0;case"plane":return 1;case"sphere":return 2;case"box":return 3;case"ellipsoid":return 4;case"cylinder":return 5;case"capsule":return 6;case"infinite_cone":return 7;default:throw new Error(`Unknown SDF type: ${t}`)}}var pr=(t=>(t.MULTIPLY="multiply",t.SET_RGB="set_rgb",t.ADD_RGBA="add_rgba",t))(pr||{});function fQ(t){switch(t){case"multiply":return 0;case"set_rgb":return 1;case"add_rgba":return 2;default:throw new Error(`Unknown blend mode: ${t}`)}}class Dr extends B.Object3D{constructor(A={}){super();const{type:e,invert:s,opacity:i,color:n,displace:a,radius:r}=A;this.type=e??"sphere",this.invert=s??!1,this.opacity=i??1,this.color=n??new B.Color(1,1,1),this.displace=a??new B.Vector3(0,0,0),this.radius=r??0}}const Ie=class Ie extends B.Object3D{constructor(A={}){const{name:e,rgbaBlendMode:s="multiply",sdfSmooth:i=0,softEdge:n=0,invert:a=!1,sdfs:r=null}=A;super(),this.rgbaBlendMode=s,this.sdfSmooth=i,this.softEdge=n,this.invert=a,this.sdfs=r,this.ordering=Ie.nextOrdering++,this.name=e??`Edit ${this.ordering}`}addSdf(A){this.sdfs==null&&(this.sdfs=[]),this.sdfs.push(A)}removeSdf(A){this.sdfs!=null&&(this.sdfs=this.sdfs.filter(e=>e!==A))}};Ie.nextOrdering=1;let vt=Ie;class fr{constructor({maxSdfs:A,maxEdits:e}){this.maxSdfs=Math.max(16,A??0),this.numSdfs=0,this.sdfData=new Uint32Array(this.maxSdfs*8*4),this.sdfFloatData=new Float32Array(this.sdfData.buffer),this.sdfTexture=this.newSdfTexture(this.sdfData,this.maxSdfs),this.dynoSdfArray=new k({key:"sdfArray",type:mr,globals:()=>[Mr],value:{numSdfs:0,sdfTexture:this.sdfTexture},update:s=>(s.numSdfs=this.numSdfs,s.sdfTexture=this.sdfTexture,s)}),this.maxEdits=Math.max(16,e??0),this.numEdits=0,this.editData=new Uint32Array(this.maxEdits*4),this.editFloatData=new Float32Array(this.editData.buffer),this.dynoNumEdits=new Ut({value:0}),this.dynoEdits=this.newEdits(this.editData,this.maxEdits)}newSdfTexture(A,e){const s=new B.DataTexture(A,8,e,B.RGBAIntegerFormat,B.UnsignedIntType);return s.internalFormat="RGBA32UI",s.needsUpdate=!0,s}newEdits(A,e){return new k({key:"edits",type:"uvec4",count:e,globals:()=>[xr],value:A})}ensureCapacity({maxSdfs:A,maxEdits:e}){let s=!1;return A>this.sdfTexture.image.height&&(this.sdfTexture.dispose(),this.maxSdfs=Math.max(this.maxSdfs*2,A),this.sdfData=new Uint32Array(this.maxSdfs*8*4),this.sdfFloatData=new Float32Array(this.sdfData.buffer),this.sdfTexture=this.newSdfTexture(this.sdfData,this.maxSdfs)),e>(this.dynoEdits.count??0)&&(this.maxEdits=Math.max(this.maxEdits*2,e),this.editData=new Uint32Array(this.maxEdits*4),this.editFloatData=new Float32Array(this.editData.buffer),this.dynoEdits=this.newEdits(this.editData,this.maxEdits),s=!0),s}updateEditData(A,e){const s=this.editData[A]!==e;return this.editData[A]=e,s}updateEditFloatData(A,e){Bt[0]=e;const s=this.editFloatData[A]!==Bt[0];return s&&(this.editFloatData[A]=Bt[0]),s}encodeEdit(A,{sdfFirst:e,sdfCount:s,invert:i,rgbaBlendMode:n,softEdge:a,sdfSmooth:r}){const g=A*4;let I=!1;return I=this.updateEditData(g+0,n|(i?256:0))||I,I=this.updateEditData(g+1,e|s<<16)||I,I=this.updateEditFloatData(g+2,a)||I,I=this.updateEditFloatData(g+3,r)||I,I}updateSdfData(A,e){const s=this.sdfData[A]!==e;return this.sdfData[A]=e,s}updateSdfFloatData(A,e){Bt[0]=e;const s=this.sdfFloatData[A]!==Bt[0];return s&&(this.sdfFloatData[A]=Bt[0]),s}encodeSdf(A,{sdfType:e,invert:s,center:i,quaternion:n,scale:a,sizes:r},g){const I=A*32,Q=e|(s?256:0);let o=!1;o=this.updateSdfFloatData(I+0,(i==null?void 0:i.x)??0)||o,o=this.updateSdfFloatData(I+1,(i==null?void 0:i.y)??0)||o,o=this.updateSdfFloatData(I+2,(i==null?void 0:i.z)??0)||o,o=this.updateSdfData(I+3,Q)||o,o=this.updateSdfFloatData(I+4,(n==null?void 0:n.x)??0)||o,o=this.updateSdfFloatData(I+5,(n==null?void 0:n.y)??0)||o,o=this.updateSdfFloatData(I+6,(n==null?void 0:n.z)??0)||o,o=this.updateSdfFloatData(I+7,(n==null?void 0:n.w)??0)||o,o=this.updateSdfFloatData(I+8,(a==null?void 0:a.x)??0)||o,o=this.updateSdfFloatData(I+9,(a==null?void 0:a.y)??0)||o,o=this.updateSdfFloatData(I+10,(a==null?void 0:a.z)??0)||o,o=this.updateSdfData(I+11,0)||o,o=this.updateSdfFloatData(I+12,(r==null?void 0:r.x)??0)||o,o=this.updateSdfFloatData(I+13,(r==null?void 0:r.y)??0)||o,o=this.updateSdfFloatData(I+14,(r==null?void 0:r.z)??0)||o,o=this.updateSdfFloatData(I+15,(r==null?void 0:r.w)??0)||o;const E=Math.min(4,g.length);for(let C=0;Co+E.length,0),s=this.ensureCapacity({maxEdits:A.length,maxSdfs:e}),i=[new B.Vector4,new B.Vector4],n=new B.Vector3,a=new B.Quaternion,r=new B.Vector3,g=new B.Vector4;let I=0,Q=s;A.length!==this.dynoNumEdits.value&&(this.dynoNumEdits.value=A.length,this.numEdits=A.length,Q=!0);for(const[o,{edit:E,sdfs:C}]of A.entries()){Q=this.encodeEdit(o,{sdfFirst:I,sdfCount:C.length,invert:E.invert,rgbaBlendMode:fQ(E.rgbaBlendMode),softEdge:E.softEdge,sdfSmooth:E.sdfSmooth})||Q;let c=!1;for(const h of C)g.set(h.scale.x,h.scale.y,h.scale.z,h.radius),h.scale.setScalar(1),h.updateMatrixWorld(),h.matrixWorld.clone().invert().decompose(n,a,r),h.scale.set(g.x,g.y,g.z),h.updateMatrixWorld(),i[0].set(h.color.r,h.color.g,h.color.b,h.opacity),i[1].set(h.displace.x,h.displace.y,h.displace.z,1),c=this.encodeSdf(I,{sdfType:DQ(h.type),invert:h.invert,center:n,quaternion:a,scale:r,sizes:g},i)||c,I+=1;this.numSdfs=I,c&&(this.sdfTexture.needsUpdate=!0),Q||(Q=c)}return{updated:Q,dynoUpdated:s}}modify(A){return mQ(A,this.dynoSdfArray,this.dynoNumEdits,this.dynoEdits)}}const mr={type:"SdfArray"},Mr=QA(` struct SdfArray { int numSdfs; usampler2D sdfTexture; @@ -308,7 +307,7 @@ void main() { return (softEdge == 0.0) ? ((distance < 0.0) ? 1.0 : 0.0) : clamp(-distance / softEdge + 0.5, 0.0, 1.0); } -`),St=nA(` +`),xr=QA(` const uint EDIT_FLAG_BLEND = 0xFFu; const uint EDIT_BLEND_MULTIPLY = 0u; const uint EDIT_BLEND_SET_RGB = 1u; @@ -366,17 +365,17 @@ void main() { decodeEdit(packedEdit, sdfFirst, sdfCount, invert, rgbaBlendMode, softEdge, sdfSmooth); applyRgbaDisplaceEdit(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, sdfSmooth, softEdge, invert, rgbaBlendMode, rgba); } -`);function Yn(g,A,I,B){return new T({inTypes:{gsplat:BA,sdfArray:mt,numEdits:"int",rgbaDisplaceEdits:"uvec4"},outTypes:{gsplat:BA},globals:()=>[ft,St],inputs:{gsplat:g,sdfArray:A,numEdits:I,rgbaDisplaceEdits:B},statements:({inputs:C,outputs:E})=>{const{sdfArray:t,numEdits:i,rgbaDisplaceEdits:e}=C,{gsplat:n}=E;return fA(` - ${n} = ${C.gsplat}; - if (isGsplatActive(${n}.flags)) { - for (int editIndex = 0; editIndex < ${i}; ++editIndex) { +`);function mQ(t,A,e,s){return new V({inTypes:{gsplat:sA,sdfArray:mr,numEdits:"int",rgbaDisplaceEdits:"uvec4"},outTypes:{gsplat:sA},globals:()=>[Mr,xr],inputs:{gsplat:t,sdfArray:A,numEdits:e,rgbaDisplaceEdits:s},statements:({inputs:n,outputs:a})=>{const{sdfArray:r,numEdits:g,rgbaDisplaceEdits:I}=n,{gsplat:Q}=a;return kA(` + ${Q} = ${n.gsplat}; + if (isGsplatActive(${Q}.flags)) { + for (int editIndex = 0; editIndex < ${g}; ++editIndex) { applyPackedRgbaDisplaceEdit( - ${e}[editIndex], ${t}.sdfTexture, ${t}.numSdfs, - ${n}.center, ${n}.rgba + ${I}[editIndex], ${r}.sdfTexture, ${r}.numSdfs, + ${Q}.center, ${Q}.rgba ); } } - `)}}).outputs.gsplat}const og=new Float32Array(1);class Yt{constructor(A){this.modifier=A,this.cache=new Map}apply(A){let I=this.cache.get(A);return I||(I=UA({index:"int"},{gsplat:BA},({index:B})=>{const{gsplat:Q}=A.apply({index:B});return this.modifier.apply({gsplat:Q})}),this.cache.set(A,I)),I}}class tg{constructor(){this.scale=new ig({value:Number.NEGATIVE_INFINITY}),this.rotate=new Tg({value:new a.Quaternion(Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY)}),this.translate=new yg({value:new a.Vector3(Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY)})}apply(A){return At(A,{scale:this.scale,rotate:this.rotate,translate:this.translate})}applyDir(A){return gt(A,{rotate:this.rotate})}applyGsplat(A){return vI(A,{scale:this.scale,rotate:this.rotate,translate:this.translate})}updateFromMatrix(A){const I=new a.Vector3,B=new a.Quaternion,Q=new a.Vector3;A.decompose(Q,B,I);const C=(I.x+I.y+I.z)/3;let E=!1;return C!==this.scale.value&&(this.scale.value=C,E=!0),Q.equals(this.translate.value)||(this.translate.value.copy(Q),E=!0),B.equals(this.rotate.value)||(this.rotate.value.copy(B),E=!0),E}update(A){return A.updateMatrixWorld(),this.updateFromMatrix(A.matrixWorld)}}class jg extends a.Object3D{constructor({numSplats:A,generator:I,construct:B,update:Q}){if(super(),this.numSplats=A??0,this.generator=I,this.frameUpdate=Q,this.version=0,B){const C=B(this);Object.assign(this,C)}}updateVersion(){this.version+=1}set needsUpdate(A){A&&this.updateVersion()}}const PA=class PA extends jg{constructor(A={}){const I=new tg,B=new tg,Q=new tg,C=new tg,E=new Tg({value:new a.Vector4(Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY)}),t=new ig({value:0}),i=new ig({value:0}),e={transform:I,viewToWorld:B,worldToView:Q,viewToObject:C,recolor:E,time:t,deltaTime:i};if(super({update:({time:n,deltaTime:s,viewToWorld:o,globalEdits:r})=>this.update({time:n,deltaTime:s,viewToWorld:o,globalEdits:r})}),this.isInitialized=!1,this.recolor=new a.Color(1,1,1),this.opacity=1,this.enableViewToObject=!1,this.enableViewToWorld=!1,this.enableWorldToView=!1,this.skinning=null,this.edits=null,this.rgbaDisplaceEdits=null,this.splatRgba=null,this.maxSh=3,this.packedSplats=A.packedSplats??new YA,this.numSplats=this.packedSplats.numSplats,this.editable=A.editable??!0,this.onFrame=A.onFrame,this.context=e,this.objectModifier=A.objectModifier,this.worldModifier=A.worldModifier,this.updateGenerator(),A.url||A.fileBytes||A.constructSplats||A.packedSplats&&!A.packedSplats.isInitialized)this.initialized=this.asyncInitialize(A).then(async()=>{if(this.updateGenerator(),this.isInitialized=!0,A.onLoad){const n=A.onLoad(this);n instanceof Promise&&await n}return this});else if(this.isInitialized=!0,this.initialized=Promise.resolve(this),A.onLoad){const n=A.onLoad(this);n instanceof Promise&&(this.initialized=n.then(()=>this))}}async asyncInitialize(A){const{url:I,fileBytes:B,fileType:Q,fileName:C,maxSplats:E,constructSplats:t}=A;if(I||B||t){const i={url:I,fileBytes:B,fileType:Q,fileName:C,maxSplats:E,construct:t};this.packedSplats.reinitialize(i)}this.packedSplats&&(await this.packedSplats.initialized,this.numSplats=this.packedSplats.numSplats,this.updateGenerator())}static async staticInitialize(){await ZI(),PA.isStaticInitialized=!0}pushSplat(A,I,B,Q,C){this.packedSplats.pushSplat(A,I,B,Q,C)}forEachSplat(A){this.packedSplats.forEachSplat(A)}dispose(){this.packedSplats.dispose()}constructGenerator(A){const{transform:I,viewToObject:B,recolor:Q}=A,C=UA({index:"int"},{gsplat:BA},({index:E})=>{if(!E)throw new Error("index is undefined");let t=Sg(this.packedSplats.dyno,E);if(this.maxSh>=1){const{sh1Texture:e,sh2Texture:n,sh3Texture:s}=this.ensureShTextures();if(e){const o=B.translate,{center:r}=kg(t).outputs,c=yE(xg(r,o));let h=bn(t,e,c);this.maxSh>=2&&n&&(h=pA(h,Hn(t,n,c))),this.maxSh>=3&&s&&(h=pA(h,Kn(t,s,c)));let{rgba:w}=kg(t).outputs;w=pA(w,uE(h,gA("float",0))),t=lg({gsplat:t,rgba:w})}}if(this.splatRgba){const e=mn(this.splatRgba.dyno,E);t=lg({gsplat:t,rgba:e})}this.skinning&&(t=this.skinning.modify(t)),this.objectModifier&&(t=this.objectModifier.apply({gsplat:t}).gsplat),t=I.applyGsplat(t);const i=cA(Q,kg(t).outputs.rgba);return t=lg({gsplat:t,rgba:i}),this.rgbaDisplaceEdits&&(t=this.rgbaDisplaceEdits.modify(t)),this.worldModifier&&(t=this.worldModifier.apply({gsplat:t}).gsplat),{gsplat:t}});this.generator=C}updateGenerator(){this.constructGenerator(this.context)}update({time:A,viewToWorld:I,deltaTime:B,globalEdits:Q}){var w;this.numSplats=this.packedSplats.numSplats,this.context.time.value=A,this.context.deltaTime.value=B,PA.dynoTime.value=A;const{transform:C,viewToObject:E,recolor:t}=this.context;let i=C.update(this);this.context.viewToWorld.updateFromMatrix(I)&&this.enableViewToWorld&&(i=!0);const e=I.clone().invert();this.context.worldToView.updateFromMatrix(e)&&this.enableWorldToView&&(i=!0);const o=new a.Matrix4().compose(C.translate.value,C.rotate.value,new a.Vector3().setScalar(C.scale.value)).invert().multiply(I);E.updateFromMatrix(o)&&(this.enableViewToObject||this.packedSplats.extra.sh1)&&(i=!0);const r=new a.Vector4(this.recolor.r,this.recolor.g,this.recolor.b,this.opacity);r.equals(t.value)||(t.value.copy(r),i=!0);const c=this.editable?(this.edits??[]).concat(Q):[];this.editable&&!this.edits&&this.traverseVisible(D=>{D instanceof bg&&c.push(D)}),c.sort((D,y)=>D.ordering-y.ordering);const h=c.map(D=>{if(D.sdfs!=null)return{edit:D,sdfs:D.sdfs};const y=[];return D.traverseVisible(l=>{l instanceof Rt&&y.push(l)}),{edit:D,sdfs:y}});if(h.length>0&&!this.rgbaDisplaceEdits){const D=h.length,y=h.reduce((l,d)=>l+d.sdfs.length,0);this.rgbaDisplaceEdits=new Jt({maxEdits:D,maxSdfs:y}),this.updateGenerator()}if(this.rgbaDisplaceEdits){const D=this.rgbaDisplaceEdits.update(h);i||(i=D.updated),D.dynoUpdated&&this.updateGenerator()}i&&this.updateVersion(),(w=this.onFrame)==null||w.call(this,{mesh:this,time:A,deltaTime:B})}raycast(A,I){if(!this.packedSplats.packedArray||!this.packedSplats.numSplats)return;const{near:B,far:Q,ray:C}=A,E=this.matrixWorld.clone().invert(),t=new a.Matrix3().setFromMatrix4(E),i=C.origin.clone().applyMatrix4(E),e=C.direction.clone().applyMatrix3(t),n=new a.Vector3;E.decompose(new a.Vector3,new a.Quaternion,n),(n.x*n.y*n.z)**(1/3);const o=Ci(i.x,i.y,i.z,e.x,e.y,e.z,B,Q,this.packedSplats.numSplats,this.packedSplats.packedArray,!0);for(const r of o){const c=C.direction.clone().multiplyScalar(r).add(C.origin);I.push({distance:r,point:c,object:this})}}ensureShTextures(){if(!this.packedSplats.extra.sh1)return{};let A=this.packedSplats.extra.sh1Texture;if(!A){let Q=this.packedSplats.extra.sh1;const{width:C,height:E,depth:t,maxSplats:i}=MA(Q.length/2);if(Q.length{const{gsplat:i}=A.apply({index:s});return this.modifier.apply({gsplat:i})}),this.cache.set(A,e)),e}}class nt{constructor(){this.scale=new at({value:Number.NEGATIVE_INFINITY}),this.rotate=new zt({value:new B.Quaternion(Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY)}),this.translate=new ut({value:new B.Vector3(Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY)})}apply(A){return Za(A,{scale:this.scale,rotate:this.rotate,translate:this.translate})}applyDir(A){return Oa(A,{rotate:this.rotate})}applyGsplat(A){return Le(A,{scale:this.scale,rotate:this.rotate,translate:this.translate})}updateFromMatrix(A){const e=new B.Vector3,s=new B.Quaternion,i=new B.Vector3;A.decompose(i,s,e);const n=(e.x+e.y+e.z)/3;let a=!1;return n!==this.scale.value&&(this.scale.value=n,a=!0),i.equals(this.translate.value)||(this.translate.value.copy(i),a=!0),s.equals(this.rotate.value)||(this.rotate.value.copy(s),a=!0),a}update(A){return A.updateMatrixWorld(),this.updateFromMatrix(A.matrixWorld)}}class Pt extends B.Object3D{constructor({numSplats:A,generator:e,construct:s,update:i}){if(super(),this.numSplats=A??0,this.generator=e,this.frameUpdate=i,this.version=0,s){const n=s(this);Object.assign(this,n)}}updateVersion(){this.version+=1}set needsUpdate(A){A&&this.updateVersion()}}const WA=class WA extends Pt{constructor(A={}){const e=new nt,s=new nt,i=new nt,n=new nt,a=new zt({value:new B.Vector4(Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY)}),r=new at({value:0}),g=new at({value:0}),I={transform:e,viewToWorld:s,worldToView:i,viewToObject:n,recolor:a,time:r,deltaTime:g};if(super({update:({time:Q,deltaTime:o,viewToWorld:E,globalEdits:C})=>this.update({time:Q,deltaTime:o,viewToWorld:E,globalEdits:C})}),this.isInitialized=!1,this.recolor=new B.Color(1,1,1),this.opacity=1,this.enableViewToObject=!1,this.enableViewToWorld=!1,this.enableWorldToView=!1,this.skinning=null,this.edits=null,this.rgbaDisplaceEdits=null,this.splatRgba=null,this.maxSh=3,this.packedSplats=A.packedSplats??new UA,this.numSplats=this.packedSplats.numSplats,this.editable=A.editable??!0,this.onFrame=A.onFrame,this.context=I,this.objectModifier=A.objectModifier,this.worldModifier=A.worldModifier,this.updateGenerator(),A.url||A.fileBytes||A.constructSplats||A.packedSplats&&!A.packedSplats.isInitialized)this.initialized=this.asyncInitialize(A).then(async()=>{if(this.updateGenerator(),this.isInitialized=!0,A.onLoad){const Q=A.onLoad(this);Q instanceof Promise&&await Q}return this});else if(this.isInitialized=!0,this.initialized=Promise.resolve(this),A.onLoad){const Q=A.onLoad(this);Q instanceof Promise&&(this.initialized=Q.then(()=>this))}}async asyncInitialize(A){const{url:e,fileBytes:s,fileType:i,fileName:n,maxSplats:a,constructSplats:r}=A;if(e||s||r){const g={url:e,fileBytes:s,fileType:i,fileName:n,maxSplats:a,construct:r};this.packedSplats.reinitialize(g)}this.packedSplats&&(await this.packedSplats.initialized,this.numSplats=this.packedSplats.numSplats,this.updateGenerator())}static async staticInitialize(){await is(),WA.isStaticInitialized=!0}pushSplat(A,e,s,i,n){this.packedSplats.pushSplat(A,e,s,i,n)}forEachSplat(A){this.packedSplats.forEachSplat(A)}dispose(){this.packedSplats.dispose()}constructGenerator(A){const{transform:e,viewToObject:s,recolor:i}=A,n=GA({index:"int"},{gsplat:sA},({index:a})=>{if(!a)throw new Error("index is undefined");let r=Rt(this.packedSplats.dyno,a);if(this.maxSh>=1){const{sh1Texture:I,sh2Texture:Q,sh3Texture:o}=this.ensureShTextures();if(I){const E=s.translate,{center:C}=Mt(r).outputs,c=Ca(Gt(C,E));let h=FQ(r,I,c);this.maxSh>=2&&Q&&(h=mA(h,NQ(r,Q,c))),this.maxSh>=3&&o&&(h=mA(h,kQ(r,o,c)));let{rgba:l}=Mt(r).outputs;l=mA(l,ca(h,tA("float",0))),r=lt({gsplat:r,rgba:l})}}if(this.splatRgba){const I=pQ(this.splatRgba.dyno,a);r=lt({gsplat:r,rgba:I})}this.skinning&&(r=this.skinning.modify(r)),this.objectModifier&&(r=this.objectModifier.apply({gsplat:r}).gsplat),r=e.applyGsplat(r);const g=cA(i,Mt(r).outputs.rgba);return r=lt({gsplat:r,rgba:g}),this.rgbaDisplaceEdits&&(r=this.rgbaDisplaceEdits.modify(r)),this.worldModifier&&(r=this.worldModifier.apply({gsplat:r}).gsplat),{gsplat:r}});this.generator=n}updateGenerator(){this.constructGenerator(this.context)}update({time:A,viewToWorld:e,deltaTime:s,globalEdits:i}){var l;this.numSplats=this.packedSplats.numSplats,this.context.time.value=A,this.context.deltaTime.value=s,WA.dynoTime.value=A;const{transform:n,viewToObject:a,recolor:r}=this.context;let g=n.update(this);this.context.viewToWorld.updateFromMatrix(e)&&this.enableViewToWorld&&(g=!0);const I=e.clone().invert();this.context.worldToView.updateFromMatrix(I)&&this.enableWorldToView&&(g=!0);const E=new B.Matrix4().compose(n.translate.value,n.rotate.value,new B.Vector3().setScalar(n.scale.value)).invert().multiply(e);a.updateFromMatrix(E)&&(this.enableViewToObject||this.packedSplats.extra.sh1)&&(g=!0);const C=new B.Vector4(this.recolor.r,this.recolor.g,this.recolor.b,this.opacity);C.equals(r.value)||(r.value.copy(C),g=!0);const c=this.editable?(this.edits??[]).concat(i):[];this.editable&&!this.edits&&this.traverseVisible(u=>{u instanceof vt&&c.push(u)}),c.sort((u,w)=>u.ordering-w.ordering);const h=c.map(u=>{if(u.sdfs!=null)return{edit:u,sdfs:u.sdfs};const w=[];return u.traverseVisible(d=>{d instanceof Dr&&w.push(d)}),{edit:u,sdfs:w}});if(h.length>0&&!this.rgbaDisplaceEdits){const u=h.length,w=h.reduce((d,p)=>d+p.sdfs.length,0);this.rgbaDisplaceEdits=new fr({maxEdits:u,maxSdfs:w}),this.updateGenerator()}if(this.rgbaDisplaceEdits){const u=this.rgbaDisplaceEdits.update(h);g||(g=u.updated),u.dynoUpdated&&this.updateGenerator()}g&&this.updateVersion(),(l=this.onFrame)==null||l.call(this,{mesh:this,time:A,deltaTime:s})}raycast(A,e){if(!this.packedSplats.packedArray||!this.packedSplats.numSplats)return;const{near:s,far:i,ray:n}=A,a=this.matrixWorld.clone().invert(),r=new B.Matrix3().setFromMatrix4(a),g=n.origin.clone().applyMatrix4(a),I=n.direction.clone().applyMatrix3(r),Q=new B.Vector3;a.decompose(new B.Vector3,new B.Quaternion,Q),(Q.x*Q.y*Q.z)**(1/3);const E=Wr(g.x,g.y,g.z,I.x,I.y,I.z,s,i,this.packedSplats.numSplats,this.packedSplats.packedArray,!0);for(const C of E){const c=n.direction.clone().multiplyScalar(C).add(n.origin);e.push({distance:C,point:c,object:this})}}ensureShTextures(){if(!this.packedSplats.extra.sh1)return{};let A=this.packedSplats.extra.sh1Texture;if(!A){let i=this.packedSplats.extra.sh1;const{width:n,height:a,depth:r,maxSplats:g}=DA(i.length/2);if(i.length[kA,Un],statements:({inputs:B,outputs:Q})=>fA(` - if (isGsplatActive(${B.gsplat}.flags)) { - ${Q.rgb} = evaluateSH1(${B.gsplat}, ${B.sh1}, ${B.viewDir}); +`);function FQ(t,A,e){return Kt({inTypes:{gsplat:sA,sh1:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:t,sh1:A,viewDir:e},globals:()=>[MA,MQ],statements:({inputs:s,outputs:i})=>kA(` + if (isGsplatActive(${s.gsplat}.flags)) { + ${i.rgb} = evaluateSH1(${s.gsplat}, ${s.sh1}, ${s.viewDir}); } else { - ${Q.rgb} = vec3(0.0); + ${i.rgb} = vec3(0.0); } - `)}).outputs.rgb}function Hn(g,A,I){return Wg({inTypes:{gsplat:BA,sh2:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:g,sh2:A,viewDir:I},globals:()=>[kA,xn],statements:({inputs:B,outputs:Q})=>fA(` - if (isGsplatActive(${B.gsplat}.flags)) { - ${Q.rgb} = evaluateSH2(${B.gsplat}, ${B.sh2}, ${B.viewDir}); + `)}).outputs.rgb}function NQ(t,A,e){return Kt({inTypes:{gsplat:sA,sh2:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:t,sh2:A,viewDir:e},globals:()=>[MA,xQ],statements:({inputs:s,outputs:i})=>kA(` + if (isGsplatActive(${s.gsplat}.flags)) { + ${i.rgb} = evaluateSH2(${s.gsplat}, ${s.sh2}, ${s.viewDir}); } else { - ${Q.rgb} = vec3(0.0); + ${i.rgb} = vec3(0.0); } - `)}).outputs.rgb}function Kn(g,A,I){return Wg({inTypes:{gsplat:BA,sh3:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:g,sh3:A,viewDir:I},globals:()=>[kA,Ln],statements:({inputs:B,outputs:Q})=>fA(` - if (isGsplatActive(${B.gsplat}.flags)) { - ${Q.rgb} = evaluateSH3(${B.gsplat}, ${B.sh3}, ${B.viewDir}); + `)}).outputs.rgb}function kQ(t,A,e){return Kt({inTypes:{gsplat:sA,sh3:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:t,sh3:A,viewDir:e},globals:()=>[MA,SQ],statements:({inputs:s,outputs:i})=>kA(` + if (isGsplatActive(${s.gsplat}.flags)) { + ${i.rgb} = evaluateSH3(${s.gsplat}, ${s.sh3}, ${s.viewDir}); } else { - ${Q.rgb} = vec3(0.0); + ${i.rgb} = vec3(0.0); } - `)}).outputs.rgb}const wg=class wg{constructor({fileBytes:A}){this.header="",this.littleEndian=!0,this.elements={},this.comments=[],this.data=null,this.numSplats=0,this.fileBytes=A instanceof ArrayBuffer?new Uint8Array(A):A}async parseHeader(){const I=new ReadableStream({start:E=>{E.enqueue(this.fileBytes.slice(0,65536)),E.close()}}).pipeThrough(new TextDecoderStream).getReader();this.header="";const B=`end_header -`;for(;;){const{value:E,done:t}=await I.read();if(t)throw new Error("Failed to read header");this.header+=E;const i=this.header.indexOf(B);if(i>=0){this.header=this.header.slice(0,i+B.length);break}}const Q=new TextEncoder().encode(this.header).length;this.data=new DataView(this.fileBytes.buffer,Q),this.elements={};let C=null;this.comments=[],this.header.trim().split(` -`).forEach((E,t)=>{const i=E.trim();if(t===0){if(i!=="ply")throw new Error("Invalid PLY header");return}if(i.length===0)return;const e=i.split(" ");switch(e[0]){case"format":if(e[1]==="binary_little_endian")this.littleEndian=!0;else if(e[1]==="binary_big_endian")this.littleEndian=!1;else throw new Error(`Unsupported PLY format: ${e[1]}`);if(e[2]!=="1.0")throw new Error(`Unsupported PLY version: ${e[2]}`);break;case"end_header":break;case"comment":this.comments.push(i.slice(8));break;case"element":{const n=e[1];C={name:n,count:Number.parseInt(e[2]),properties:{}},this.elements[n]=C;break}case"property":if(C==null)throw new Error("Property must be inside an element");e[1]==="list"?C.properties[e[4]]={isList:!0,type:e[3],countType:e[2]}:C.properties[e[2]]={isList:!1,type:e[1]};break}}),this.elements.vertex&&(this.numSplats=this.elements.vertex.count)}parseData(A){let I=0;const B=this.data;if(B==null)throw new Error("No data to parse");for(const Q in this.elements){const C=this.elements[Q],{count:E,properties:t}=C,i={},e=[];for(const[s,o]of Object.entries(t))o.isList?(i[s]=[],e.push(()=>{const r=i[s];r.length=_g[o.countType](B,I,this.littleEndian),I+=rg[o.countType];for(let c=0;c{i[s]=_g[o.type](B,I,this.littleEndian),I+=rg[o.type]}));const n=A(C)??(()=>{});for(let s=0;s[0,1,2].map((d,u)=>`f_rest_${l+u*D/3}`)),t=new Array(5).fill(null).flatMap((y,l)=>[0,1,2].map((d,u)=>`f_rest_${3+l+u*D/3}`)),i=new Array(7).fill(null).flatMap((y,l)=>[0,1,2].map((d,u)=>`f_rest_${8+l+u*D/3}`)),e=C>=1?new Float32Array(3*3):void 0,n=C>=2?new Float32Array(5*3):void 0,s=C>=3?new Float32Array(7*3):void 0}function r(D,y){if(!e)throw new Error("Missing sh1");for(const[l,d]of E.entries())e[l]=y[d]*8/255-4;if(n)for(const[l,d]of t.entries())n[l]=y[d]*8/255-4;if(s)for(const[l,d]of i.entries())s[l]=y[d]*8/255-4;I==null||I(D,e,n,s)}function 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this.convert(B,this.workingColorSpace,Q)},toWorkingColorSpace:function(B,Q){return this.convert(B,Q,this.workingColorSpace)},getPrimaries:function(B){return this.spaces[B].primaries},getTransfer:function(B){return B===NQ?kQ:this.spaces[B].transfer},getLuminanceCoefficients:function(B,Q=this.workingColorSpace){return B.fromArray(this.spaces[Q].luminanceCoefficients)},define:function(B){Object.assign(this.spaces,B)},_getMatrix:function(B,Q,t){return B.copy(this.spaces[Q].toXYZ).multiply(this.spaces[t].fromXYZ)},_getDrawingBufferColorSpace:function(B){return this.spaces[B].outputColorSpaceConfig.drawingBufferColorSpace},_getUnpackColorSpace:function(B=this.workingColorSpace){return this.spaces[B].workingColorSpaceConfig.unpackColorSpace}},A=[.64,.33,.3,.6,.15,.06],g=[.2126,.7152,.0722],I=[.3127,.329];return E.define({[FQ]:{primaries:A,whitePoint:I,transfer:kQ,toXYZ:mQ,fromXYZ:SQ,luminanceCoefficients:g,workingColorSpaceConfig:{unpackColorSpace:LA},outputColorSpaceConfig:{drawingBufferColorSpace:LA}},[LA]:{primaries:A,whitePoint:I,transfer:cB,toXYZ:mQ,fromXYZ:SQ,luminanceCoefficients:g,outputColorSpaceConfig:{drawingBufferColorSpace:LA}}}),E}const bA=nC();function XA(E){return E<.04045?E*.0773993808:Math.pow(E*.9478672986+.0521327014,2.4)}function pg(E){return E<.0031308?E*12.92:1.055*Math.pow(E,.41666)-.055}let fg;class oC{static getDataURL(A){if(/^data:/i.test(A.src)||typeof HTMLCanvasElement>"u")return A.src;let g;if(A instanceof HTMLCanvasElement)g=A;else{fg===void 0&&(fg=JQ("canvas")),fg.width=A.width,fg.height=A.height;const I=fg.getContext("2d");A instanceof ImageData?I.putImageData(A,0,0):I.drawImage(A,0,0,A.width,A.height),g=fg}return g.width>2048||g.height>2048?(console.warn("THREE.ImageUtils.getDataURL: Image converted to jpg for performance reasons",A),g.toDataURL("image/jpeg",.6)):g.toDataURL("image/png")}static sRGBToLinear(A){if(typeof HTMLImageElement<"u"&&A instanceof HTMLImageElement||typeof HTMLCanvasElement<"u"&&A instanceof HTMLCanvasElement||typeof ImageBitmap<"u"&&A instanceof ImageBitmap){const g=JQ("canvas");g.width=A.width,g.height=A.height;const I=g.getContext("2d");I.drawImage(A,0,0,A.width,A.height);const B=I.getImageData(0,0,A.width,A.height),Q=B.data;for(let t=0;t0&&(I.userData=this.userData),g||(A.textures[this.uuid]=I),I}dispose(){this.dispatchEvent({type:"dispose"})}transformUv(A){if(this.mapping!==uQ)return A;if(A.applyMatrix3(this.matrix),A.x<0||A.x>1)switch(this.wrapS){case dQ:A.x=A.x-Math.floor(A.x);break;case gI:A.x=A.x<0?0:1;break;case MQ:Math.abs(Math.floor(A.x)%2)===1?A.x=Math.ceil(A.x)-A.x:A.x=A.x-Math.floor(A.x);break}if(A.y<0||A.y>1)switch(this.wrapT){case dQ:A.y=A.y-Math.floor(A.y);break;case gI:A.y=A.y<0?0:1;break;case MQ:Math.abs(Math.floor(A.y)%2)===1?A.y=Math.ceil(A.y)-A.y:A.y=A.y-Math.floor(A.y);break}return this.flipY&&(A.y=1-A.y),A}set needsUpdate(A){A===!0&&(this.version++,this.source.needsUpdate=!0)}set needsPMREMUpdate(A){A===!0&&this.pmremVersion++}}vA.DEFAULT_IMAGE=null,vA.DEFAULT_MAPPING=uQ,vA.DEFAULT_ANISOTROPY=1;class lA{constructor(A=0,g=0,I=0,B=1){lA.prototype.isVector4=!0,this.x=A,this.y=g,this.z=I,this.w=B}get width(){return this.z}set width(A){this.z=A}get height(){return this.w}set height(A){this.w=A}set(A,g,I,B){return this.x=A,this.y=g,this.z=I,this.w=B,this}setScalar(A){return this.x=A,this.y=A,this.z=A,this.w=A,this}setX(A){return this.x=A,this}setY(A){return this.y=A,this}setZ(A){return this.z=A,this}setW(A){return this.w=A,this}setComponent(A,g){switch(A){case 0:this.x=g;break;case 1:this.y=g;break;case 2:this.z=g;break;case 3:this.w=g;break;default:throw new Error("index is out of range: "+A)}return this}getComponent(A){switch(A){case 0:return this.x;case 1:return this.y;case 2:return this.z;case 3:return this.w;default:throw new Error("index is out of range: "+A)}}clone(){return new this.constructor(this.x,this.y,this.z,this.w)}copy(A){return this.x=A.x,this.y=A.y,this.z=A.z,this.w=A.w!==void 0?A.w:1,this}add(A){return this.x+=A.x,this.y+=A.y,this.z+=A.z,this.w+=A.w,this}addScalar(A){return this.x+=A,this.y+=A,this.z+=A,this.w+=A,this}addVectors(A,g){return this.x=A.x+g.x,this.y=A.y+g.y,this.z=A.z+g.z,this.w=A.w+g.w,this}addScaledVector(A,g){return this.x+=A.x*g,this.y+=A.y*g,this.z+=A.z*g,this.w+=A.w*g,this}sub(A){return this.x-=A.x,this.y-=A.y,this.z-=A.z,this.w-=A.w,this}subScalar(A){return this.x-=A,this.y-=A,this.z-=A,this.w-=A,this}subVectors(A,g){return this.x=A.x-g.x,this.y=A.y-g.y,this.z=A.z-g.z,this.w=A.w-g.w,this}multiply(A){return this.x*=A.x,this.y*=A.y,this.z*=A.z,this.w*=A.w,this}multiplyScalar(A){return this.x*=A,this.y*=A,this.z*=A,this.w*=A,this}applyMatrix4(A){const g=this.x,I=this.y,B=this.z,Q=this.w,t=A.elements;return this.x=t[0]*g+t[4]*I+t[8]*B+t[12]*Q,this.y=t[1]*g+t[5]*I+t[9]*B+t[13]*Q,this.z=t[2]*g+t[6]*I+t[10]*B+t[14]*Q,this.w=t[3]*g+t[7]*I+t[11]*B+t[15]*Q,this}divide(A){return this.x/=A.x,this.y/=A.y,this.z/=A.z,this.w/=A.w,this}divideScalar(A){return this.multiplyScalar(1/A)}setAxisAngleFromQuaternion(A){this.w=2*Math.acos(A.w);const g=Math.sqrt(1-A.w*A.w);return g<1e-4?(this.x=1,this.y=0,this.z=0):(this.x=A.x/g,this.y=A.y/g,this.z=A.z/g),this}setAxisAngleFromRotationMatrix(A){let g,I,B,Q;const i=A.elements,s=i[0],a=i[4],e=i[8],n=i[1],o=i[5],r=i[9],h=i[2],c=i[6],w=i[10];if(Math.abs(a-n)<.01&&Math.abs(e-h)<.01&&Math.abs(r-c)<.01){if(Math.abs(a+n)<.1&&Math.abs(e+h)<.1&&Math.abs(r+c)<.1&&Math.abs(s+o+w-3)<.1)return this.set(1,0,0,0),this;g=Math.PI;const l=(s+1)/2,u=(o+1)/2,M=(w+1)/2,F=(a+n)/4,p=(e+h)/4,d=(r+c)/4;return l>u&&l>M?l<.01?(I=0,B=.707106781,Q=.707106781):(I=Math.sqrt(l),B=F/I,Q=p/I):u>M?u<.01?(I=.707106781,B=0,Q=.707106781):(B=Math.sqrt(u),I=F/B,Q=d/B):M<.01?(I=.707106781,B=.707106781,Q=0):(Q=Math.sqrt(M),I=p/Q,B=d/Q),this.set(I,B,Q,g),this}let y=Math.sqrt((c-r)*(c-r)+(e-h)*(e-h)+(n-a)*(n-a));return Math.abs(y)<.001&&(y=1),this.x=(c-r)/y,this.y=(e-h)/y,this.z=(n-a)/y,this.w=Math.acos((s+o+w-1)/2),this}setFromMatrixPosition(A){const g=A.elements;return this.x=g[12],this.y=g[13],this.z=g[14],this.w=g[15],this}min(A){return this.x=Math.min(this.x,A.x),this.y=Math.min(this.y,A.y),this.z=Math.min(this.z,A.z),this.w=Math.min(this.w,A.w),this}max(A){return this.x=Math.max(this.x,A.x),this.y=Math.max(this.y,A.y),this.z=Math.max(this.z,A.z),this.w=Math.max(this.w,A.w),this}clamp(A,g){return this.x=H(this.x,A.x,g.x),this.y=H(this.y,A.y,g.y),this.z=H(this.z,A.z,g.z),this.w=H(this.w,A.w,g.w),this}clampScalar(A,g){return this.x=H(this.x,A,g),this.y=H(this.y,A,g),this.z=H(this.z,A,g),this.w=H(this.w,A,g),this}clampLength(A,g){const I=this.length();return this.divideScalar(I||1).multiplyScalar(H(I,A,g))}floor(){return this.x=Math.floor(this.x),this.y=Math.floor(this.y),this.z=Math.floor(this.z),this.w=Math.floor(this.w),this}ceil(){return this.x=Math.ceil(this.x),this.y=Math.ceil(this.y),this.z=Math.ceil(this.z),this.w=Math.ceil(this.w),this}round(){return this.x=Math.round(this.x),this.y=Math.round(this.y),this.z=Math.round(this.z),this.w=Math.round(this.w),this}roundToZero(){return this.x=Math.trunc(this.x),this.y=Math.trunc(this.y),this.z=Math.trunc(this.z),this.w=Math.trunc(this.w),this}negate(){return this.x=-this.x,this.y=-this.y,this.z=-this.z,this.w=-this.w,this}dot(A){return this.x*A.x+this.y*A.y+this.z*A.z+this.w*A.w}lengthSq(){return this.x*this.x+this.y*this.y+this.z*this.z+this.w*this.w}length(){return Math.sqrt(this.x*this.x+this.y*this.y+this.z*this.z+this.w*this.w)}manhattanLength(){return Math.abs(this.x)+Math.abs(this.y)+Math.abs(this.z)+Math.abs(this.w)}normalize(){return this.divideScalar(this.length()||1)}setLength(A){return this.normalize().multiplyScalar(A)}lerp(A,g){return this.x+=(A.x-this.x)*g,this.y+=(A.y-this.y)*g,this.z+=(A.z-this.z)*g,this.w+=(A.w-this.w)*g,this}lerpVectors(A,g,I){return this.x=A.x+(g.x-A.x)*I,this.y=A.y+(g.y-A.y)*I,this.z=A.z+(g.z-A.z)*I,this.w=A.w+(g.w-A.w)*I,this}equals(A){return A.x===this.x&&A.y===this.y&&A.z===this.z&&A.w===this.w}fromArray(A,g=0){return this.x=A[g],this.y=A[g+1],this.z=A[g+2],this.w=A[g+3],this}toArray(A=[],g=0){return A[g]=this.x,A[g+1]=this.y,A[g+2]=this.z,A[g+3]=this.w,A}fromBufferAttribute(A,g){return this.x=A.getX(g),this.y=A.getY(g),this.z=A.getZ(g),this.w=A.getW(g),this}random(){return this.x=Math.random(),this.y=Math.random(),this.z=Math.random(),this.w=Math.random(),this}*[Symbol.iterator](){yield this.x,yield this.y,yield this.z,yield this.w}}class cC extends BI{constructor(A=1,g=1,I={}){super(),this.isRenderTarget=!0,this.width=A,this.height=g,this.depth=1,this.scissor=new lA(0,0,A,g),this.scissorTest=!1,this.viewport=new lA(0,0,A,g);const B={width:A,height:g,depth:1};I=Object.assign({generateMipmaps:!1,internalFormat:null,minFilter:GQ,depthBuffer:!0,stencilBuffer:!1,resolveDepthBuffer:!0,resolveStencilBuffer:!0,depthTexture:null,samples:0,count:1},I);const Q=new vA(B,I.mapping,I.wrapS,I.wrapT,I.magFilter,I.minFilter,I.format,I.type,I.anisotropy,I.colorSpace);Q.flipY=!1,Q.generateMipmaps=I.generateMipmaps,Q.internalFormat=I.internalFormat,this.textures=[];const t=I.count;for(let C=0;C=0?1:-1,l=1-w*w;if(l>Number.EPSILON){const M=Math.sqrt(l),F=Math.atan2(M,w*y);c=Math.sin(c*F)/M,C=Math.sin(C*F)/M}const u=C*y;if(i=i*c+n*u,s=s*c+o*u,a=a*c+r*u,e=e*c+h*u,c===1-C){const M=1/Math.sqrt(i*i+s*s+a*a+e*e);i*=M,s*=M,a*=M,e*=M}}A[g]=i,A[g+1]=s,A[g+2]=a,A[g+3]=e}static multiplyQuaternionsFlat(A,g,I,B,Q,t){const C=I[B],i=I[B+1],s=I[B+2],a=I[B+3],e=Q[t],n=Q[t+1],o=Q[t+2],r=Q[t+3];return A[g]=C*r+a*e+i*o-s*n,A[g+1]=i*r+a*n+s*e-C*o,A[g+2]=s*r+a*o+C*n-i*e,A[g+3]=a*r-C*e-i*n-s*o,A}get x(){return this._x}set x(A){this._x=A,this._onChangeCallback()}get y(){return this._y}set y(A){this._y=A,this._onChangeCallback()}get z(){return this._z}set z(A){this._z=A,this._onChangeCallback()}get w(){return this._w}set w(A){this._w=A,this._onChangeCallback()}set(A,g,I,B){return this._x=A,this._y=g,this._z=I,this._w=B,this._onChangeCallback(),this}clone(){return new this.constructor(this._x,this._y,this._z,this._w)}copy(A){return this._x=A.x,this._y=A.y,this._z=A.z,this._w=A.w,this._onChangeCallback(),this}setFromEuler(A,g=!0){const I=A._x,B=A._y,Q=A._z,t=A._order,C=Math.cos,i=Math.sin,s=C(I/2),a=C(B/2),e=C(Q/2),n=i(I/2),o=i(B/2),r=i(Q/2);switch(t){case"XYZ":this._x=n*a*e+s*o*r,this._y=s*o*e-n*a*r,this._z=s*a*r+n*o*e,this._w=s*a*e-n*o*r;break;case"YXZ":this._x=n*a*e+s*o*r,this._y=s*o*e-n*a*r,this._z=s*a*r-n*o*e,this._w=s*a*e+n*o*r;break;case"ZXY":this._x=n*a*e-s*o*r,this._y=s*o*e+n*a*r,this._z=s*a*r+n*o*e,this._w=s*a*e-n*o*r;break;case"ZYX":this._x=n*a*e-s*o*r,this._y=s*o*e+n*a*r,this._z=s*a*r-n*o*e,this._w=s*a*e+n*o*r;break;case"YZX":this._x=n*a*e+s*o*r,this._y=s*o*e+n*a*r,this._z=s*a*r-n*o*e,this._w=s*a*e-n*o*r;break;case"XZY":this._x=n*a*e-s*o*r,this._y=s*o*e-n*a*r,this._z=s*a*r+n*o*e,this._w=s*a*e+n*o*r;break;default:console.warn("THREE.Quaternion: .setFromEuler() encountered an unknown order: "+t)}return g===!0&&this._onChangeCallback(),this}setFromAxisAngle(A,g){const I=g/2,B=Math.sin(I);return this._x=A.x*B,this._y=A.y*B,this._z=A.z*B,this._w=Math.cos(I),this._onChangeCallback(),this}setFromRotationMatrix(A){const g=A.elements,I=g[0],B=g[4],Q=g[8],t=g[1],C=g[5],i=g[9],s=g[2],a=g[6],e=g[10],n=I+C+e;if(n>0){const o=.5/Math.sqrt(n+1);this._w=.25/o,this._x=(a-i)*o,this._y=(Q-s)*o,this._z=(t-B)*o}else if(I>C&&I>e){const o=2*Math.sqrt(1+I-C-e);this._w=(a-i)/o,this._x=.25*o,this._y=(B+t)/o,this._z=(Q+s)/o}else if(C>e){const o=2*Math.sqrt(1+C-I-e);this._w=(Q-s)/o,this._x=(B+t)/o,this._y=.25*o,this._z=(i+a)/o}else{const o=2*Math.sqrt(1+e-I-C);this._w=(t-B)/o,this._x=(Q+s)/o,this._y=(i+a)/o,this._z=.25*o}return this._onChangeCallback(),this}setFromUnitVectors(A,g){let I=A.dot(g)+1;return IMath.abs(A.z)?(this._x=-A.y,this._y=A.x,this._z=0,this._w=I):(this._x=0,this._y=-A.z,this._z=A.y,this._w=I)):(this._x=A.y*g.z-A.z*g.y,this._y=A.z*g.x-A.x*g.z,this._z=A.x*g.y-A.y*g.x,this._w=I),this.normalize()}angleTo(A){return 2*Math.acos(Math.abs(H(this.dot(A),-1,1)))}rotateTowards(A,g){const I=this.angleTo(A);if(I===0)return this;const B=Math.min(1,g/I);return this.slerp(A,B),this}identity(){return this.set(0,0,0,1)}invert(){return this.conjugate()}conjugate(){return this._x*=-1,this._y*=-1,this._z*=-1,this._onChangeCallback(),this}dot(A){return this._x*A._x+this._y*A._y+this._z*A._z+this._w*A._w}lengthSq(){return this._x*this._x+this._y*this._y+this._z*this._z+this._w*this._w}length(){return Math.sqrt(this._x*this._x+this._y*this._y+this._z*this._z+this._w*this._w)}normalize(){let A=this.length();return A===0?(this._x=0,this._y=0,this._z=0,this._w=1):(A=1/A,this._x=this._x*A,this._y=this._y*A,this._z=this._z*A,this._w=this._w*A),this._onChangeCallback(),this}multiply(A){return this.multiplyQuaternions(this,A)}premultiply(A){return this.multiplyQuaternions(A,this)}multiplyQuaternions(A,g){const I=A._x,B=A._y,Q=A._z,t=A._w,C=g._x,i=g._y,s=g._z,a=g._w;return this._x=I*a+t*C+B*s-Q*i,this._y=B*a+t*i+Q*C-I*s,this._z=Q*a+t*s+I*i-B*C,this._w=t*a-I*C-B*i-Q*s,this._onChangeCallback(),this}slerp(A,g){if(g===0)return this;if(g===1)return this.copy(A);const I=this._x,B=this._y,Q=this._z,t=this._w;let C=t*A._w+I*A._x+B*A._y+Q*A._z;if(C<0?(this._w=-A._w,this._x=-A._x,this._y=-A._y,this._z=-A._z,C=-C):this.copy(A),C>=1)return this._w=t,this._x=I,this._y=B,this._z=Q,this;const i=1-C*C;if(i<=Number.EPSILON){const o=1-g;return this._w=o*t+g*this._w,this._x=o*I+g*this._x,this._y=o*B+g*this._y,this._z=o*Q+g*this._z,this.normalize(),this}const s=Math.sqrt(i),a=Math.atan2(s,C),e=Math.sin((1-g)*a)/s,n=Math.sin(g*a)/s;return this._w=t*e+this._w*n,this._x=I*e+this._x*n,this._y=B*e+this._y*n,this._z=Q*e+this._z*n,this._onChangeCallback(),this}slerpQuaternions(A,g,I){return this.copy(A).slerp(g,I)}random(){const A=2*Math.PI*Math.random(),g=2*Math.PI*Math.random(),I=Math.random(),B=Math.sqrt(1-I),Q=Math.sqrt(I);return this.set(B*Math.sin(A),B*Math.cos(A),Q*Math.sin(g),Q*Math.cos(g))}equals(A){return A._x===this._x&&A._y===this._y&&A._z===this._z&&A._w===this._w}fromArray(A,g=0){return this._x=A[g],this._y=A[g+1],this._z=A[g+2],this._w=A[g+3],this._onChangeCallback(),this}toArray(A=[],g=0){return A[g]=this._x,A[g+1]=this._y,A[g+2]=this._z,A[g+3]=this._w,A}fromBufferAttribute(A,g){return this._x=A.getX(g),this._y=A.getY(g),this._z=A.getZ(g),this._w=A.getW(g),this._onChangeCallback(),this}toJSON(){return this.toArray()}_onChange(A){return this._onChangeCallback=A,this}_onChangeCallback(){}*[Symbol.iterator](){yield this._x,yield this._y,yield this._z,yield this._w}}class D{constructor(A=0,g=0,I=0){D.prototype.isVector3=!0,this.x=A,this.y=g,this.z=I}set(A,g,I){return I===void 0&&(I=this.z),this.x=A,this.y=g,this.z=I,this}setScalar(A){return this.x=A,this.y=A,this.z=A,this}setX(A){return this.x=A,this}setY(A){return this.y=A,this}setZ(A){return this.z=A,this}setComponent(A,g){switch(A){case 0:this.x=g;break;case 1:this.y=g;break;case 2:this.z=g;break;default:throw new Error("index is out of range: "+A)}return this}getComponent(A){switch(A){case 0:return this.x;case 1:return this.y;case 2:return this.z;default:throw new Error("index is out of range: "+A)}}clone(){return new this.constructor(this.x,this.y,this.z)}copy(A){return this.x=A.x,this.y=A.y,this.z=A.z,this}add(A){return this.x+=A.x,this.y+=A.y,this.z+=A.z,this}addScalar(A){return this.x+=A,this.y+=A,this.z+=A,this}addVectors(A,g){return this.x=A.x+g.x,this.y=A.y+g.y,this.z=A.z+g.z,this}addScaledVector(A,g){return this.x+=A.x*g,this.y+=A.y*g,this.z+=A.z*g,this}sub(A){return this.x-=A.x,this.y-=A.y,this.z-=A.z,this}subScalar(A){return this.x-=A,this.y-=A,this.z-=A,this}subVectors(A,g){return this.x=A.x-g.x,this.y=A.y-g.y,this.z=A.z-g.z,this}multiply(A){return this.x*=A.x,this.y*=A.y,this.z*=A.z,this}multiplyScalar(A){return this.x*=A,this.y*=A,this.z*=A,this}multiplyVectors(A,g){return this.x=A.x*g.x,this.y=A.y*g.y,this.z=A.z*g.z,this}applyEuler(A){return this.applyQuaternion(UQ.setFromEuler(A))}applyAxisAngle(A,g){return this.applyQuaternion(UQ.setFromAxisAngle(A,g))}applyMatrix3(A){const g=this.x,I=this.y,B=this.z,Q=A.elements;return this.x=Q[0]*g+Q[3]*I+Q[6]*B,this.y=Q[1]*g+Q[4]*I+Q[7]*B,this.z=Q[2]*g+Q[5]*I+Q[8]*B,this}applyNormalMatrix(A){return this.applyMatrix3(A).normalize()}applyMatrix4(A){const g=this.x,I=this.y,B=this.z,Q=A.elements,t=1/(Q[3]*g+Q[7]*I+Q[11]*B+Q[15]);return this.x=(Q[0]*g+Q[4]*I+Q[8]*B+Q[12])*t,this.y=(Q[1]*g+Q[5]*I+Q[9]*B+Q[13])*t,this.z=(Q[2]*g+Q[6]*I+Q[10]*B+Q[14])*t,this}applyQuaternion(A){const g=this.x,I=this.y,B=this.z,Q=A.x,t=A.y,C=A.z,i=A.w,s=2*(t*B-C*I),a=2*(C*g-Q*B),e=2*(Q*I-t*g);return this.x=g+i*s+t*e-C*a,this.y=I+i*a+C*s-Q*e,this.z=B+i*e+Q*a-t*s,this}project(A){return this.applyMatrix4(A.matrixWorldInverse).applyMatrix4(A.projectionMatrix)}unproject(A){return this.applyMatrix4(A.projectionMatrixInverse).applyMatrix4(A.matrixWorld)}transformDirection(A){const g=this.x,I=this.y,B=this.z,Q=A.elements;return this.x=Q[0]*g+Q[4]*I+Q[8]*B,this.y=Q[1]*g+Q[5]*I+Q[9]*B,this.z=Q[2]*g+Q[6]*I+Q[10]*B,this.normalize()}divide(A){return this.x/=A.x,this.y/=A.y,this.z/=A.z,this}divideScalar(A){return this.multiplyScalar(1/A)}min(A){return this.x=Math.min(this.x,A.x),this.y=Math.min(this.y,A.y),this.z=Math.min(this.z,A.z),this}max(A){return this.x=Math.max(this.x,A.x),this.y=Math.max(this.y,A.y),this.z=Math.max(this.z,A.z),this}clamp(A,g){return this.x=H(this.x,A.x,g.x),this.y=H(this.y,A.y,g.y),this.z=H(this.z,A.z,g.z),this}clampScalar(A,g){return this.x=H(this.x,A,g),this.y=H(this.y,A,g),this.z=H(this.z,A,g),this}clampLength(A,g){const I=this.length();return this.divideScalar(I||1).multiplyScalar(H(I,A,g))}floor(){return this.x=Math.floor(this.x),this.y=Math.floor(this.y),this.z=Math.floor(this.z),this}ceil(){return this.x=Math.ceil(this.x),this.y=Math.ceil(this.y),this.z=Math.ceil(this.z),this}round(){return this.x=Math.round(this.x),this.y=Math.round(this.y),this.z=Math.round(this.z),this}roundToZero(){return this.x=Math.trunc(this.x),this.y=Math.trunc(this.y),this.z=Math.trunc(this.z),this}negate(){return this.x=-this.x,this.y=-this.y,this.z=-this.z,this}dot(A){return this.x*A.x+this.y*A.y+this.z*A.z}lengthSq(){return this.x*this.x+this.y*this.y+this.z*this.z}length(){return Math.sqrt(this.x*this.x+this.y*this.y+this.z*this.z)}manhattanLength(){return Math.abs(this.x)+Math.abs(this.y)+Math.abs(this.z)}normalize(){return this.divideScalar(this.length()||1)}setLength(A){return this.normalize().multiplyScalar(A)}lerp(A,g){return this.x+=(A.x-this.x)*g,this.y+=(A.y-this.y)*g,this.z+=(A.z-this.z)*g,this}lerpVectors(A,g,I){return this.x=A.x+(g.x-A.x)*I,this.y=A.y+(g.y-A.y)*I,this.z=A.z+(g.z-A.z)*I,this}cross(A){return this.crossVectors(this,A)}crossVectors(A,g){const I=A.x,B=A.y,Q=A.z,t=g.x,C=g.y,i=g.z;return this.x=B*i-Q*C,this.y=Q*t-I*i,this.z=I*C-B*t,this}projectOnVector(A){const g=A.lengthSq();if(g===0)return this.set(0,0,0);const I=A.dot(this)/g;return this.copy(A).multiplyScalar(I)}projectOnPlane(A){return yB.copy(this).projectOnVector(A),this.sub(yB)}reflect(A){return this.sub(yB.copy(A).multiplyScalar(2*this.dot(A)))}angleTo(A){const g=Math.sqrt(this.lengthSq()*A.lengthSq());if(g===0)return Math.PI/2;const I=this.dot(A)/g;return Math.acos(H(I,-1,1))}distanceTo(A){return Math.sqrt(this.distanceToSquared(A))}distanceToSquared(A){const g=this.x-A.x,I=this.y-A.y,B=this.z-A.z;return g*g+I*I+B*B}manhattanDistanceTo(A){return Math.abs(this.x-A.x)+Math.abs(this.y-A.y)+Math.abs(this.z-A.z)}setFromSpherical(A){return this.setFromSphericalCoords(A.radius,A.phi,A.theta)}setFromSphericalCoords(A,g,I){const B=Math.sin(g)*A;return this.x=B*Math.sin(I),this.y=Math.cos(g)*A,this.z=B*Math.cos(I),this}setFromCylindrical(A){return this.setFromCylindricalCoords(A.radius,A.theta,A.y)}setFromCylindricalCoords(A,g,I){return this.x=A*Math.sin(g),this.y=I,this.z=A*Math.cos(g),this}setFromMatrixPosition(A){const g=A.elements;return this.x=g[12],this.y=g[13],this.z=g[14],this}setFromMatrixScale(A){const g=this.setFromMatrixColumn(A,0).length(),I=this.setFromMatrixColumn(A,1).length(),B=this.setFromMatrixColumn(A,2).length();return this.x=g,this.y=I,this.z=B,this}setFromMatrixColumn(A,g){return this.fromArray(A.elements,g*4)}setFromMatrix3Column(A,g){return this.fromArray(A.elements,g*3)}setFromEuler(A){return this.x=A._x,this.y=A._y,this.z=A._z,this}setFromColor(A){return this.x=A.r,this.y=A.g,this.z=A.b,this}equals(A){return A.x===this.x&&A.y===this.y&&A.z===this.z}fromArray(A,g=0){return this.x=A[g],this.y=A[g+1],this.z=A[g+2],this}toArray(A=[],g=0){return A[g]=this.x,A[g+1]=this.y,A[g+2]=this.z,A}fromBufferAttribute(A,g){return this.x=A.getX(g),this.y=A.getY(g),this.z=A.getZ(g),this}random(){return this.x=Math.random(),this.y=Math.random(),this.z=Math.random(),this}randomDirection(){const A=Math.random()*Math.PI*2,g=Math.random()*2-1,I=Math.sqrt(1-g*g);return this.x=I*Math.cos(A),this.y=g,this.z=I*Math.sin(A),this}*[Symbol.iterator](){yield this.x,yield this.y,yield this.z}}const yB=new D,UQ=new sA;class Rg{constructor(A=new D(1/0,1/0,1/0),g=new D(-1/0,-1/0,-1/0)){this.isBox3=!0,this.min=A,this.max=g}set(A,g){return this.min.copy(A),this.max.copy(g),this}setFromArray(A){this.makeEmpty();for(let g=0,I=A.length;g=this.min.x&&A.x<=this.max.x&&A.y>=this.min.y&&A.y<=this.max.y&&A.z>=this.min.z&&A.z<=this.max.z}containsBox(A){return this.min.x<=A.min.x&&A.max.x<=this.max.x&&this.min.y<=A.min.y&&A.max.y<=this.max.y&&this.min.z<=A.min.z&&A.max.z<=this.max.z}getParameter(A,g){return g.set((A.x-this.min.x)/(this.max.x-this.min.x),(A.y-this.min.y)/(this.max.y-this.min.y),(A.z-this.min.z)/(this.max.z-this.min.z))}intersectsBox(A){return A.max.x>=this.min.x&&A.min.x<=this.max.x&&A.max.y>=this.min.y&&A.min.y<=this.max.y&&A.max.z>=this.min.z&&A.min.z<=this.max.z}intersectsSphere(A){return this.clampPoint(A.center,HA),HA.distanceToSquared(A.center)<=A.radius*A.radius}intersectsPlane(A){let g,I;return A.normal.x>0?(g=A.normal.x*this.min.x,I=A.normal.x*this.max.x):(g=A.normal.x*this.max.x,I=A.normal.x*this.min.x),A.normal.y>0?(g+=A.normal.y*this.min.y,I+=A.normal.y*this.max.y):(g+=A.normal.y*this.max.y,I+=A.normal.y*this.min.y),A.normal.z>0?(g+=A.normal.z*this.min.z,I+=A.normal.z*this.max.z):(g+=A.normal.z*this.max.z,I+=A.normal.z*this.min.z),g<=-A.constant&&I>=-A.constant}intersectsTriangle(A){if(this.isEmpty())return!1;this.getCenter(CI),RI.subVectors(this.max,CI),Jg.subVectors(A.a,CI),mg.subVectors(A.b,CI),Sg.subVectors(A.c,CI),ig.subVectors(mg,Jg),sg.subVectors(Sg,mg),Dg.subVectors(Jg,Sg);let g=[0,-ig.z,ig.y,0,-sg.z,sg.y,0,-Dg.z,Dg.y,ig.z,0,-ig.x,sg.z,0,-sg.x,Dg.z,0,-Dg.x,-ig.y,ig.x,0,-sg.y,sg.x,0,-Dg.y,Dg.x,0];return!uB(g,Jg,mg,Sg,RI)||(g=[1,0,0,0,1,0,0,0,1],!uB(g,Jg,mg,Sg,RI))?!1:(JI.crossVectors(ig,sg),g=[JI.x,JI.y,JI.z],uB(g,Jg,mg,Sg,RI))}clampPoint(A,g){return g.copy(A).clamp(this.min,this.max)}distanceToPoint(A){return this.clampPoint(A,HA).distanceTo(A)}getBoundingSphere(A){return this.isEmpty()?A.makeEmpty():(this.getCenter(A.center),A.radius=this.getSize(HA).length()*.5),A}intersect(A){return this.min.max(A.min),this.max.min(A.max),this.isEmpty()&&this.makeEmpty(),this}union(A){return this.min.min(A.min),this.max.max(A.max),this}applyMatrix4(A){return this.isEmpty()?this:(jA[0].set(this.min.x,this.min.y,this.min.z).applyMatrix4(A),jA[1].set(this.min.x,this.min.y,this.max.z).applyMatrix4(A),jA[2].set(this.min.x,this.max.y,this.min.z).applyMatrix4(A),jA[3].set(this.min.x,this.max.y,this.max.z).applyMatrix4(A),jA[4].set(this.max.x,this.min.y,this.min.z).applyMatrix4(A),jA[5].set(this.max.x,this.min.y,this.max.z).applyMatrix4(A),jA[6].set(this.max.x,this.max.y,this.min.z).applyMatrix4(A),jA[7].set(this.max.x,this.max.y,this.max.z).applyMatrix4(A),this.setFromPoints(jA),this)}translate(A){return this.min.add(A),this.max.add(A),this}equals(A){return A.min.equals(this.min)&&A.max.equals(this.max)}}const jA=[new D,new D,new D,new D,new D,new D,new D,new D],HA=new D,fI=new Rg,Jg=new D,mg=new D,Sg=new D,ig=new D,sg=new D,Dg=new D,CI=new D,RI=new D,JI=new D,lg=new D;function uB(E,A,g,I,B){for(let Q=0,t=E.length-3;Q<=t;Q+=3){lg.fromArray(E,Q);const C=B.x*Math.abs(lg.x)+B.y*Math.abs(lg.y)+B.z*Math.abs(lg.z),i=A.dot(lg),s=g.dot(lg),a=I.dot(lg);if(Math.max(-Math.max(i,s,a),Math.min(i,s,a))>C)return!1}return!0}const DC=new Rg,EI=new D,dB=new D;class LQ{constructor(A=new D,g=-1){this.isSphere=!0,this.center=A,this.radius=g}set(A,g){return this.center.copy(A),this.radius=g,this}setFromPoints(A,g){const I=this.center;g!==void 0?I.copy(g):DC.setFromPoints(A).getCenter(I);let B=0;for(let Q=0,t=A.length;Qthis.radius*this.radius&&(g.sub(this.center).normalize(),g.multiplyScalar(this.radius).add(this.center)),g}getBoundingBox(A){return this.isEmpty()?(A.makeEmpty(),A):(A.set(this.center,this.center),A.expandByScalar(this.radius),A)}applyMatrix4(A){return this.center.applyMatrix4(A),this.radius=this.radius*A.getMaxScaleOnAxis(),this}translate(A){return this.center.add(A),this}expandByPoint(A){if(this.isEmpty())return this.center.copy(A),this.radius=0,this;EI.subVectors(A,this.center);const g=EI.lengthSq();if(g>this.radius*this.radius){const I=Math.sqrt(g),B=(I-this.radius)*.5;this.center.addScaledVector(EI,B/I),this.radius+=B}return this}union(A){return A.isEmpty()?this:this.isEmpty()?(this.copy(A),this):(this.center.equals(A.center)===!0?this.radius=Math.max(this.radius,A.radius):(dB.subVectors(A.center,this.center).setLength(A.radius),this.expandByPoint(EI.copy(A.center).add(dB)),this.expandByPoint(EI.copy(A.center).sub(dB))),this)}equals(A){return A.center.equals(this.center)&&A.radius===this.radius}clone(){return new this.constructor().copy(this)}}const OA=new D,MB=new D,mI=new D,eg=new D,GB=new D,SI=new D,NB=new D;class lC{constructor(A=new D,g=new D(0,0,-1)){this.origin=A,this.direction=g}set(A,g){return this.origin.copy(A),this.direction.copy(g),this}copy(A){return this.origin.copy(A.origin),this.direction.copy(A.direction),this}at(A,g){return g.copy(this.origin).addScaledVector(this.direction,A)}lookAt(A){return this.direction.copy(A).sub(this.origin).normalize(),this}recast(A){return this.origin.copy(this.at(A,OA)),this}closestPointToPoint(A,g){g.subVectors(A,this.origin);const I=g.dot(this.direction);return I<0?g.copy(this.origin):g.copy(this.origin).addScaledVector(this.direction,I)}distanceToPoint(A){return Math.sqrt(this.distanceSqToPoint(A))}distanceSqToPoint(A){const g=OA.subVectors(A,this.origin).dot(this.direction);return g<0?this.origin.distanceToSquared(A):(OA.copy(this.origin).addScaledVector(this.direction,g),OA.distanceToSquared(A))}distanceSqToSegment(A,g,I,B){MB.copy(A).add(g).multiplyScalar(.5),mI.copy(g).sub(A).normalize(),eg.copy(this.origin).sub(MB);const Q=A.distanceTo(g)*.5,t=-this.direction.dot(mI),C=eg.dot(this.direction),i=-eg.dot(mI),s=eg.lengthSq(),a=Math.abs(1-t*t);let e,n,o,r;if(a>0)if(e=t*i-C,n=t*C-i,r=Q*a,e>=0)if(n>=-r)if(n<=r){const h=1/a;e*=h,n*=h,o=e*(e+t*n+2*C)+n*(t*e+n+2*i)+s}else n=Q,e=Math.max(0,-(t*n+C)),o=-e*e+n*(n+2*i)+s;else n=-Q,e=Math.max(0,-(t*n+C)),o=-e*e+n*(n+2*i)+s;else n<=-r?(e=Math.max(0,-(-t*Q+C)),n=e>0?-Q:Math.min(Math.max(-Q,-i),Q),o=-e*e+n*(n+2*i)+s):n<=r?(e=0,n=Math.min(Math.max(-Q,-i),Q),o=n*(n+2*i)+s):(e=Math.max(0,-(t*Q+C)),n=e>0?Q:Math.min(Math.max(-Q,-i),Q),o=-e*e+n*(n+2*i)+s);else n=t>0?-Q:Q,e=Math.max(0,-(t*n+C)),o=-e*e+n*(n+2*i)+s;return I&&I.copy(this.origin).addScaledVector(this.direction,e),B&&B.copy(MB).addScaledVector(mI,n),o}intersectSphere(A,g){OA.subVectors(A.center,this.origin);const I=OA.dot(this.direction),B=OA.dot(OA)-I*I,Q=A.radius*A.radius;if(B>Q)return null;const t=Math.sqrt(Q-B),C=I-t,i=I+t;return i<0?null:C<0?this.at(i,g):this.at(C,g)}intersectsSphere(A){return this.distanceSqToPoint(A.center)<=A.radius*A.radius}distanceToPlane(A){const g=A.normal.dot(this.direction);if(g===0)return A.distanceToPoint(this.origin)===0?0:null;const I=-(this.origin.dot(A.normal)+A.constant)/g;return I>=0?I:null}intersectPlane(A,g){const I=this.distanceToPlane(A);return I===null?null:this.at(I,g)}intersectsPlane(A){const g=A.distanceToPoint(this.origin);return g===0||A.normal.dot(this.direction)*g<0}intersectBox(A,g){let I,B,Q,t,C,i;const s=1/this.direction.x,a=1/this.direction.y,e=1/this.direction.z,n=this.origin;return s>=0?(I=(A.min.x-n.x)*s,B=(A.max.x-n.x)*s):(I=(A.max.x-n.x)*s,B=(A.min.x-n.x)*s),a>=0?(Q=(A.min.y-n.y)*a,t=(A.max.y-n.y)*a):(Q=(A.max.y-n.y)*a,t=(A.min.y-n.y)*a),I>t||Q>B||((Q>I||isNaN(I))&&(I=Q),(t=0?(C=(A.min.z-n.z)*e,i=(A.max.z-n.z)*e):(C=(A.max.z-n.z)*e,i=(A.min.z-n.z)*e),I>i||C>B)||((C>I||I!==I)&&(I=C),(i=0?I:B,g)}intersectsBox(A){return this.intersectBox(A,OA)!==null}intersectTriangle(A,g,I,B,Q){GB.subVectors(g,A),SI.subVectors(I,A),NB.crossVectors(GB,SI);let t=this.direction.dot(NB),C;if(t>0){if(B)return null;C=1}else if(t<0)C=-1,t=-t;else return null;eg.subVectors(this.origin,A);const i=C*this.direction.dot(SI.crossVectors(eg,SI));if(i<0)return null;const s=C*this.direction.dot(GB.cross(eg));if(s<0||i+s>t)return null;const a=-C*eg.dot(NB);return a<0?null:this.at(a/t,Q)}applyMatrix4(A){return this.origin.applyMatrix4(A),this.direction.transformDirection(A),this}equals(A){return A.origin.equals(this.origin)&&A.direction.equals(this.direction)}clone(){return new this.constructor().copy(this)}}class cA{constructor(A,g,I,B,Q,t,C,i,s,a,e,n,o,r,h,c){cA.prototype.isMatrix4=!0,this.elements=[1,0,0,0,0,1,0,0,0,0,1,0,0,0,0,1],A!==void 0&&this.set(A,g,I,B,Q,t,C,i,s,a,e,n,o,r,h,c)}set(A,g,I,B,Q,t,C,i,s,a,e,n,o,r,h,c){const w=this.elements;return w[0]=A,w[4]=g,w[8]=I,w[12]=B,w[1]=Q,w[5]=t,w[9]=C,w[13]=i,w[2]=s,w[6]=a,w[10]=e,w[14]=n,w[3]=o,w[7]=r,w[11]=h,w[15]=c,this}identity(){return this.set(1,0,0,0,0,1,0,0,0,0,1,0,0,0,0,1),this}clone(){return new cA().fromArray(this.elements)}copy(A){const g=this.elements,I=A.elements;return g[0]=I[0],g[1]=I[1],g[2]=I[2],g[3]=I[3],g[4]=I[4],g[5]=I[5],g[6]=I[6],g[7]=I[7],g[8]=I[8],g[9]=I[9],g[10]=I[10],g[11]=I[11],g[12]=I[12],g[13]=I[13],g[14]=I[14],g[15]=I[15],this}copyPosition(A){const g=this.elements,I=A.elements;return g[12]=I[12],g[13]=I[13],g[14]=I[14],this}setFromMatrix3(A){const g=A.elements;return this.set(g[0],g[3],g[6],0,g[1],g[4],g[7],0,g[2],g[5],g[8],0,0,0,0,1),this}extractBasis(A,g,I){return A.setFromMatrixColumn(this,0),g.setFromMatrixColumn(this,1),I.setFromMatrixColumn(this,2),this}makeBasis(A,g,I){return this.set(A.x,g.x,I.x,0,A.y,g.y,I.y,0,A.z,g.z,I.z,0,0,0,0,1),this}extractRotation(A){const g=this.elements,I=A.elements,B=1/Yg.setFromMatrixColumn(A,0).length(),Q=1/Yg.setFromMatrixColumn(A,1).length(),t=1/Yg.setFromMatrixColumn(A,2).length();return g[0]=I[0]*B,g[1]=I[1]*B,g[2]=I[2]*B,g[3]=0,g[4]=I[4]*Q,g[5]=I[5]*Q,g[6]=I[6]*Q,g[7]=0,g[8]=I[8]*t,g[9]=I[9]*t,g[10]=I[10]*t,g[11]=0,g[12]=0,g[13]=0,g[14]=0,g[15]=1,this}makeRotationFromEuler(A){const g=this.elements,I=A.x,B=A.y,Q=A.z,t=Math.cos(I),C=Math.sin(I),i=Math.cos(B),s=Math.sin(B),a=Math.cos(Q),e=Math.sin(Q);if(A.order==="XYZ"){const n=t*a,o=t*e,r=C*a,h=C*e;g[0]=i*a,g[4]=-i*e,g[8]=s,g[1]=o+r*s,g[5]=n-h*s,g[9]=-C*i,g[2]=h-n*s,g[6]=r+o*s,g[10]=t*i}else if(A.order==="YXZ"){const n=i*a,o=i*e,r=s*a,h=s*e;g[0]=n+h*C,g[4]=r*C-o,g[8]=t*s,g[1]=t*e,g[5]=t*a,g[9]=-C,g[2]=o*C-r,g[6]=h+n*C,g[10]=t*i}else if(A.order==="ZXY"){const n=i*a,o=i*e,r=s*a,h=s*e;g[0]=n-h*C,g[4]=-t*e,g[8]=r+o*C,g[1]=o+r*C,g[5]=t*a,g[9]=h-n*C,g[2]=-t*s,g[6]=C,g[10]=t*i}else if(A.order==="ZYX"){const n=t*a,o=t*e,r=C*a,h=C*e;g[0]=i*a,g[4]=r*s-o,g[8]=n*s+h,g[1]=i*e,g[5]=h*s+n,g[9]=o*s-r,g[2]=-s,g[6]=C*i,g[10]=t*i}else if(A.order==="YZX"){const n=t*i,o=t*s,r=C*i,h=C*s;g[0]=i*a,g[4]=h-n*e,g[8]=r*e+o,g[1]=e,g[5]=t*a,g[9]=-C*a,g[2]=-s*a,g[6]=o*e+r,g[10]=n-h*e}else if(A.order==="XZY"){const n=t*i,o=t*s,r=C*i,h=C*s;g[0]=i*a,g[4]=-e,g[8]=s*a,g[1]=n*e+h,g[5]=t*a,g[9]=o*e-r,g[2]=r*e-o,g[6]=C*a,g[10]=h*e+n}return g[3]=0,g[7]=0,g[11]=0,g[12]=0,g[13]=0,g[14]=0,g[15]=1,this}makeRotationFromQuaternion(A){return this.compose(yC,A,uC)}lookAt(A,g,I){const B=this.elements;return kA.subVectors(A,g),kA.lengthSq()===0&&(kA.z=1),kA.normalize(),ag.crossVectors(I,kA),ag.lengthSq()===0&&(Math.abs(I.z)===1?kA.x+=1e-4:kA.z+=1e-4,kA.normalize(),ag.crossVectors(I,kA)),ag.normalize(),YI.crossVectors(kA,ag),B[0]=ag.x,B[4]=YI.x,B[8]=kA.x,B[1]=ag.y,B[5]=YI.y,B[9]=kA.y,B[2]=ag.z,B[6]=YI.z,B[10]=kA.z,this}multiply(A){return this.multiplyMatrices(this,A)}premultiply(A){return this.multiplyMatrices(A,this)}multiplyMatrices(A,g){const I=A.elements,B=g.elements,Q=this.elements,t=I[0],C=I[4],i=I[8],s=I[12],a=I[1],e=I[5],n=I[9],o=I[13],r=I[2],h=I[6],c=I[10],w=I[14],y=I[3],l=I[7],u=I[11],M=I[15],F=B[0],p=B[4],d=B[8],G=B[12],f=B[1],N=B[5],k=B[9],R=B[13],J=B[2],m=B[6],S=B[10],Y=B[14],q=B[3],Z=B[7],$=B[11],O=B[15];return Q[0]=t*F+C*f+i*J+s*q,Q[4]=t*p+C*N+i*m+s*Z,Q[8]=t*d+C*k+i*S+s*$,Q[12]=t*G+C*R+i*Y+s*O,Q[1]=a*F+e*f+n*J+o*q,Q[5]=a*p+e*N+n*m+o*Z,Q[9]=a*d+e*k+n*S+o*$,Q[13]=a*G+e*R+n*Y+o*O,Q[2]=r*F+h*f+c*J+w*q,Q[6]=r*p+h*N+c*m+w*Z,Q[10]=r*d+h*k+c*S+w*$,Q[14]=r*G+h*R+c*Y+w*O,Q[3]=y*F+l*f+u*J+M*q,Q[7]=y*p+l*N+u*m+M*Z,Q[11]=y*d+l*k+u*S+M*$,Q[15]=y*G+l*R+u*Y+M*O,this}multiplyScalar(A){const g=this.elements;return g[0]*=A,g[4]*=A,g[8]*=A,g[12]*=A,g[1]*=A,g[5]*=A,g[9]*=A,g[13]*=A,g[2]*=A,g[6]*=A,g[10]*=A,g[14]*=A,g[3]*=A,g[7]*=A,g[11]*=A,g[15]*=A,this}determinant(){const A=this.elements,g=A[0],I=A[4],B=A[8],Q=A[12],t=A[1],C=A[5],i=A[9],s=A[13],a=A[2],e=A[6],n=A[10],o=A[14],r=A[3],h=A[7],c=A[11],w=A[15];return r*(+Q*i*e-B*s*e-Q*C*n+I*s*n+B*C*o-I*i*o)+h*(+g*i*o-g*s*n+Q*t*n-B*t*o+B*s*a-Q*i*a)+c*(+g*s*e-g*C*o-Q*t*e+I*t*o+Q*C*a-I*s*a)+w*(-B*C*a-g*i*e+g*C*n+B*t*e-I*t*n+I*i*a)}transpose(){const A=this.elements;let g;return g=A[1],A[1]=A[4],A[4]=g,g=A[2],A[2]=A[8],A[8]=g,g=A[6],A[6]=A[9],A[9]=g,g=A[3],A[3]=A[12],A[12]=g,g=A[7],A[7]=A[13],A[13]=g,g=A[11],A[11]=A[14],A[14]=g,this}setPosition(A,g,I){const B=this.elements;return A.isVector3?(B[12]=A.x,B[13]=A.y,B[14]=A.z):(B[12]=A,B[13]=g,B[14]=I),this}invert(){const A=this.elements,g=A[0],I=A[1],B=A[2],Q=A[3],t=A[4],C=A[5],i=A[6],s=A[7],a=A[8],e=A[9],n=A[10],o=A[11],r=A[12],h=A[13],c=A[14],w=A[15],y=e*c*s-h*n*s+h*i*o-C*c*o-e*i*w+C*n*w,l=r*n*s-a*c*s-r*i*o+t*c*o+a*i*w-t*n*w,u=a*h*s-r*e*s+r*C*o-t*h*o-a*C*w+t*e*w,M=r*e*i-a*h*i-r*C*n+t*h*n+a*C*c-t*e*c,F=g*y+I*l+B*u+Q*M;if(F===0)return this.set(0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0);const p=1/F;return A[0]=y*p,A[1]=(h*n*Q-e*c*Q-h*B*o+I*c*o+e*B*w-I*n*w)*p,A[2]=(C*c*Q-h*i*Q+h*B*s-I*c*s-C*B*w+I*i*w)*p,A[3]=(e*i*Q-C*n*Q-e*B*s+I*n*s+C*B*o-I*i*o)*p,A[4]=l*p,A[5]=(a*c*Q-r*n*Q+r*B*o-g*c*o-a*B*w+g*n*w)*p,A[6]=(r*i*Q-t*c*Q-r*B*s+g*c*s+t*B*w-g*i*w)*p,A[7]=(t*n*Q-a*i*Q+a*B*s-g*n*s-t*B*o+g*i*o)*p,A[8]=u*p,A[9]=(r*e*Q-a*h*Q-r*I*o+g*h*o+a*I*w-g*e*w)*p,A[10]=(t*h*Q-r*C*Q+r*I*s-g*h*s-t*I*w+g*C*w)*p,A[11]=(a*C*Q-t*e*Q-a*I*s+g*e*s+t*I*o-g*C*o)*p,A[12]=M*p,A[13]=(a*h*B-r*e*B+r*I*n-g*h*n-a*I*c+g*e*c)*p,A[14]=(r*C*B-t*h*B-r*I*i+g*h*i+t*I*c-g*C*c)*p,A[15]=(t*e*B-a*C*B+a*I*i-g*e*i-t*I*n+g*C*n)*p,this}scale(A){const g=this.elements,I=A.x,B=A.y,Q=A.z;return g[0]*=I,g[4]*=B,g[8]*=Q,g[1]*=I,g[5]*=B,g[9]*=Q,g[2]*=I,g[6]*=B,g[10]*=Q,g[3]*=I,g[7]*=B,g[11]*=Q,this}getMaxScaleOnAxis(){const A=this.elements,g=A[0]*A[0]+A[1]*A[1]+A[2]*A[2],I=A[4]*A[4]+A[5]*A[5]+A[6]*A[6],B=A[8]*A[8]+A[9]*A[9]+A[10]*A[10];return Math.sqrt(Math.max(g,I,B))}makeTranslation(A,g,I){return A.isVector3?this.set(1,0,0,A.x,0,1,0,A.y,0,0,1,A.z,0,0,0,1):this.set(1,0,0,A,0,1,0,g,0,0,1,I,0,0,0,1),this}makeRotationX(A){const g=Math.cos(A),I=Math.sin(A);return this.set(1,0,0,0,0,g,-I,0,0,I,g,0,0,0,0,1),this}makeRotationY(A){const g=Math.cos(A),I=Math.sin(A);return this.set(g,0,I,0,0,1,0,0,-I,0,g,0,0,0,0,1),this}makeRotationZ(A){const g=Math.cos(A),I=Math.sin(A);return this.set(g,-I,0,0,I,g,0,0,0,0,1,0,0,0,0,1),this}makeRotationAxis(A,g){const I=Math.cos(g),B=Math.sin(g),Q=1-I,t=A.x,C=A.y,i=A.z,s=Q*t,a=Q*C;return this.set(s*t+I,s*C-B*i,s*i+B*C,0,s*C+B*i,a*C+I,a*i-B*t,0,s*i-B*C,a*i+B*t,Q*i*i+I,0,0,0,0,1),this}makeScale(A,g,I){return this.set(A,0,0,0,0,g,0,0,0,0,I,0,0,0,0,1),this}makeShear(A,g,I,B,Q,t){return this.set(1,I,Q,0,A,1,t,0,g,B,1,0,0,0,0,1),this}compose(A,g,I){const B=this.elements,Q=g._x,t=g._y,C=g._z,i=g._w,s=Q+Q,a=t+t,e=C+C,n=Q*s,o=Q*a,r=Q*e,h=t*a,c=t*e,w=C*e,y=i*s,l=i*a,u=i*e,M=I.x,F=I.y,p=I.z;return B[0]=(1-(h+w))*M,B[1]=(o+u)*M,B[2]=(r-l)*M,B[3]=0,B[4]=(o-u)*F,B[5]=(1-(n+w))*F,B[6]=(c+y)*F,B[7]=0,B[8]=(r+l)*p,B[9]=(c-y)*p,B[10]=(1-(n+h))*p,B[11]=0,B[12]=A.x,B[13]=A.y,B[14]=A.z,B[15]=1,this}decompose(A,g,I){const B=this.elements;let Q=Yg.set(B[0],B[1],B[2]).length();const t=Yg.set(B[4],B[5],B[6]).length(),C=Yg.set(B[8],B[9],B[10]).length();this.determinant()<0&&(Q=-Q),A.x=B[12],A.y=B[13],A.z=B[14],ZA.copy(this);const s=1/Q,a=1/t,e=1/C;return ZA.elements[0]*=s,ZA.elements[1]*=s,ZA.elements[2]*=s,ZA.elements[4]*=a,ZA.elements[5]*=a,ZA.elements[6]*=a,ZA.elements[8]*=e,ZA.elements[9]*=e,ZA.elements[10]*=e,g.setFromRotationMatrix(ZA),I.x=Q,I.y=t,I.z=C,this}makePerspective(A,g,I,B,Q,t,C=II){const i=this.elements,s=2*Q/(g-A),a=2*Q/(I-B),e=(g+A)/(g-A),n=(I+B)/(I-B);let o,r;if(C===II)o=-(t+Q)/(t-Q),r=-2*t*Q/(t-Q);else if(C===RQ)o=-t/(t-Q),r=-t*Q/(t-Q);else throw new Error("THREE.Matrix4.makePerspective(): Invalid coordinate system: "+C);return i[0]=s,i[4]=0,i[8]=e,i[12]=0,i[1]=0,i[5]=a,i[9]=n,i[13]=0,i[2]=0,i[6]=0,i[10]=o,i[14]=r,i[3]=0,i[7]=0,i[11]=-1,i[15]=0,this}makeOrthographic(A,g,I,B,Q,t,C=II){const i=this.elements,s=1/(g-A),a=1/(I-B),e=1/(t-Q),n=(g+A)*s,o=(I+B)*a;let r,h;if(C===II)r=(t+Q)*e,h=-2*e;else if(C===RQ)r=Q*e,h=-1*e;else throw new Error("THREE.Matrix4.makeOrthographic(): Invalid coordinate system: "+C);return i[0]=2*s,i[4]=0,i[8]=0,i[12]=-n,i[1]=0,i[5]=2*a,i[9]=0,i[13]=-o,i[2]=0,i[6]=0,i[10]=h,i[14]=-r,i[3]=0,i[7]=0,i[11]=0,i[15]=1,this}equals(A){const g=this.elements,I=A.elements;for(let B=0;B<16;B++)if(g[B]!==I[B])return!1;return!0}fromArray(A,g=0){for(let I=0;I<16;I++)this.elements[I]=A[I+g];return this}toArray(A=[],g=0){const I=this.elements;return A[g]=I[0],A[g+1]=I[1],A[g+2]=I[2],A[g+3]=I[3],A[g+4]=I[4],A[g+5]=I[5],A[g+6]=I[6],A[g+7]=I[7],A[g+8]=I[8],A[g+9]=I[9],A[g+10]=I[10],A[g+11]=I[11],A[g+12]=I[12],A[g+13]=I[13],A[g+14]=I[14],A[g+15]=I[15],A}}const Yg=new D,ZA=new cA,yC=new D(0,0,0),uC=new D(1,1,1),ag=new D,YI=new D,kA=new D,bQ=new cA,HQ=new sA;class yg{constructor(A=0,g=0,I=0,B=yg.DEFAULT_ORDER){this.isEuler=!0,this._x=A,this._y=g,this._z=I,this._order=B}get x(){return this._x}set x(A){this._x=A,this._onChangeCallback()}get y(){return this._y}set y(A){this._y=A,this._onChangeCallback()}get z(){return this._z}set z(A){this._z=A,this._onChangeCallback()}get order(){return this._order}set order(A){this._order=A,this._onChangeCallback()}set(A,g,I,B=this._order){return this._x=A,this._y=g,this._z=I,this._order=B,this._onChangeCallback(),this}clone(){return new this.constructor(this._x,this._y,this._z,this._order)}copy(A){return this._x=A._x,this._y=A._y,this._z=A._z,this._order=A._order,this._onChangeCallback(),this}setFromRotationMatrix(A,g=this._order,I=!0){const B=A.elements,Q=B[0],t=B[4],C=B[8],i=B[1],s=B[5],a=B[9],e=B[2],n=B[6],o=B[10];switch(g){case"XYZ":this._y=Math.asin(H(C,-1,1)),Math.abs(C)<.9999999?(this._x=Math.atan2(-a,o),this._z=Math.atan2(-t,Q)):(this._x=Math.atan2(n,s),this._z=0);break;case"YXZ":this._x=Math.asin(-H(a,-1,1)),Math.abs(a)<.9999999?(this._y=Math.atan2(C,o),this._z=Math.atan2(i,s)):(this._y=Math.atan2(-e,Q),this._z=0);break;case"ZXY":this._x=Math.asin(H(n,-1,1)),Math.abs(n)<.9999999?(this._y=Math.atan2(-e,o),this._z=Math.atan2(-t,s)):(this._y=0,this._z=Math.atan2(i,Q));break;case"ZYX":this._y=Math.asin(-H(e,-1,1)),Math.abs(e)<.9999999?(this._x=Math.atan2(n,o),this._z=Math.atan2(i,Q)):(this._x=0,this._z=Math.atan2(-t,s));break;case"YZX":this._z=Math.asin(H(i,-1,1)),Math.abs(i)<.9999999?(this._x=Math.atan2(-a,s),this._y=Math.atan2(-e,Q)):(this._x=0,this._y=Math.atan2(C,o));break;case"XZY":this._z=Math.asin(-H(t,-1,1)),Math.abs(t)<.9999999?(this._x=Math.atan2(n,s),this._y=Math.atan2(C,Q)):(this._x=Math.atan2(-a,o),this._y=0);break;default:console.warn("THREE.Euler: .setFromRotationMatrix() encountered an unknown order: "+g)}return this._order=g,I===!0&&this._onChangeCallback(),this}setFromQuaternion(A,g,I){return bQ.makeRotationFromQuaternion(A),this.setFromRotationMatrix(bQ,g,I)}setFromVector3(A,g=this._order){return this.set(A.x,A.y,A.z,g)}reorder(A){return HQ.setFromEuler(this),this.setFromQuaternion(HQ,A)}equals(A){return A._x===this._x&&A._y===this._y&&A._z===this._z&&A._order===this._order}fromArray(A){return this._x=A[0],this._y=A[1],this._z=A[2],A[3]!==void 0&&(this._order=A[3]),this._onChangeCallback(),this}toArray(A=[],g=0){return A[g]=this._x,A[g+1]=this._y,A[g+2]=this._z,A[g+3]=this._order,A}_onChange(A){return this._onChangeCallback=A,this}_onChangeCallback(){}*[Symbol.iterator](){yield this._x,yield this._y,yield this._z,yield this._order}}yg.DEFAULT_ORDER="XYZ";class dC{constructor(){this.mask=1}set(A){this.mask=(1<>>0}enable(A){this.mask|=1<1){for(let g=0;g1){for(let I=0;I0&&(B.userData=this.userData),B.layers=this.layers.mask,B.matrix=this.matrix.toArray(),B.up=this.up.toArray(),this.matrixAutoUpdate===!1&&(B.matrixAutoUpdate=!1),this.isInstancedMesh&&(B.type="InstancedMesh",B.count=this.count,B.instanceMatrix=this.instanceMatrix.toJSON(),this.instanceColor!==null&&(B.instanceColor=this.instanceColor.toJSON())),this.isBatchedMesh&&(B.type="BatchedMesh",B.perObjectFrustumCulled=this.perObjectFrustumCulled,B.sortObjects=this.sortObjects,B.drawRanges=this._drawRanges,B.reservedRanges=this._reservedRanges,B.visibility=this._visibility,B.active=this._active,B.bounds=this._bounds.map(C=>({boxInitialized:C.boxInitialized,boxMin:C.box.min.toArray(),boxMax:C.box.max.toArray(),sphereInitialized:C.sphereInitialized,sphereRadius:C.sphere.radius,sphereCenter:C.sphere.center.toArray()})),B.maxInstanceCount=this._maxInstanceCount,B.maxVertexCount=this._maxVertexCount,B.maxIndexCount=this._maxIndexCount,B.geometryInitialized=this._geometryInitialized,B.geometryCount=this._geometryCount,B.matricesTexture=this._matricesTexture.toJSON(A),this._colorsTexture!==null&&(B.colorsTexture=this._colorsTexture.toJSON(A)),this.boundingSphere!==null&&(B.boundingSphere={center:B.boundingSphere.center.toArray(),radius:B.boundingSphere.radius}),this.boundingBox!==null&&(B.boundingBox={min:B.boundingBox.min.toArray(),max:B.boundingBox.max.toArray()}));function Q(C,i){return C[i.uuid]===void 0&&(C[i.uuid]=i.toJSON(A)),i.uuid}if(this.isScene)this.background&&(this.background.isColor?B.background=this.background.toJSON():this.background.isTexture&&(B.background=this.background.toJSON(A).uuid)),this.environment&&this.environment.isTexture&&this.environment.isRenderTargetTexture!==!0&&(B.environment=this.environment.toJSON(A).uuid);else if(this.isMesh||this.isLine||this.isPoints){B.geometry=Q(A.geometries,this.geometry);const C=this.geometry.parameters;if(C!==void 0&&C.shapes!==void 0){const i=C.shapes;if(Array.isArray(i))for(let s=0,a=i.length;s0){B.children=[];for(let C=0;C0){B.animations=[];for(let C=0;C0&&(I.geometries=C),i.length>0&&(I.materials=i),s.length>0&&(I.textures=s),a.length>0&&(I.images=a),e.length>0&&(I.shapes=e),n.length>0&&(I.skeletons=n),o.length>0&&(I.animations=o),r.length>0&&(I.nodes=r)}return I.object=B,I;function t(C){const i=[];for(const s in C){const a=C[s];delete a.metadata,i.push(a)}return i}}clone(A){return new this.constructor().copy(this,A)}copy(A,g=!0){if(this.name=A.name,this.up.copy(A.up),this.position.copy(A.position),this.rotation.order=A.rotation.order,this.quaternion.copy(A.quaternion),this.scale.copy(A.scale),this.matrix.copy(A.matrix),this.matrixWorld.copy(A.matrixWorld),this.matrixAutoUpdate=A.matrixAutoUpdate,this.matrixWorldAutoUpdate=A.matrixWorldAutoUpdate,this.matrixWorldNeedsUpdate=A.matrixWorldNeedsUpdate,this.layers.mask=A.layers.mask,this.visible=A.visible,this.castShadow=A.castShadow,this.receiveShadow=A.receiveShadow,this.frustumCulled=A.frustumCulled,this.renderOrder=A.renderOrder,this.animations=A.animations.slice(),this.userData=JSON.parse(JSON.stringify(A.userData)),g===!0)for(let I=0;I0?B.multiplyScalar(1/Math.sqrt(Q)):B.set(0,0,0)}static getBarycoord(A,g,I,B,Q){KA.subVectors(B,g),_A.subVectors(I,g),kB.subVectors(A,g);const t=KA.dot(KA),C=KA.dot(_A),i=KA.dot(kB),s=_A.dot(_A),a=_A.dot(kB),e=t*s-C*C;if(e===0)return Q.set(0,0,0),null;const n=1/e,o=(s*i-C*a)*n,r=(t*a-C*i)*n;return Q.set(1-o-r,r,o)}static containsPoint(A,g,I,B){return this.getBarycoord(A,g,I,B,$A)===null?!1:$A.x>=0&&$A.y>=0&&$A.x+$A.y<=1}static getInterpolation(A,g,I,B,Q,t,C,i){return this.getBarycoord(A,g,I,B,$A)===null?(i.x=0,i.y=0,"z"in i&&(i.z=0),"w"in i&&(i.w=0),null):(i.setScalar(0),i.addScaledVector(Q,$A.x),i.addScaledVector(t,$A.y),i.addScaledVector(C,$A.z),i)}static getInterpolatedAttribute(A,g,I,B,Q,t){return JB.setScalar(0),mB.setScalar(0),SB.setScalar(0),JB.fromBufferAttribute(A,g),mB.fromBufferAttribute(A,I),SB.fromBufferAttribute(A,B),t.setScalar(0),t.addScaledVector(JB,Q.x),t.addScaledVector(mB,Q.y),t.addScaledVector(SB,Q.z),t}static isFrontFacing(A,g,I,B){return KA.subVectors(I,g),_A.subVectors(A,g),KA.cross(_A).dot(B)<0}set(A,g,I){return this.a.copy(A),this.b.copy(g),this.c.copy(I),this}setFromPointsAndIndices(A,g,I,B){return this.a.copy(A[g]),this.b.copy(A[I]),this.c.copy(A[B]),this}setFromAttributeAndIndices(A,g,I,B){return this.a.fromBufferAttribute(A,g),this.b.fromBufferAttribute(A,I),this.c.fromBufferAttribute(A,B),this}clone(){return new this.constructor().copy(this)}copy(A){return this.a.copy(A.a),this.b.copy(A.b),this.c.copy(A.c),this}getArea(){return KA.subVectors(this.c,this.b),_A.subVectors(this.a,this.b),KA.cross(_A).length()*.5}getMidpoint(A){return A.addVectors(this.a,this.b).add(this.c).multiplyScalar(1/3)}getNormal(A){return qA.getNormal(this.a,this.b,this.c,A)}getPlane(A){return A.setFromCoplanarPoints(this.a,this.b,this.c)}getBarycoord(A,g){return qA.getBarycoord(A,this.a,this.b,this.c,g)}getInterpolation(A,g,I,B,Q){return qA.getInterpolation(A,this.a,this.b,this.c,g,I,B,Q)}containsPoint(A){return qA.containsPoint(A,this.a,this.b,this.c)}isFrontFacing(A){return qA.isFrontFacing(this.a,this.b,this.c,A)}intersectsBox(A){return A.intersectsTriangle(this)}closestPointToPoint(A,g){const I=this.a,B=this.b,Q=this.c;let t,C;Lg.subVectors(B,I),bg.subVectors(Q,I),pB.subVectors(A,I);const i=Lg.dot(pB),s=bg.dot(pB);if(i<=0&&s<=0)return g.copy(I);fB.subVectors(A,B);const a=Lg.dot(fB),e=bg.dot(fB);if(a>=0&&e<=a)return g.copy(B);const n=i*e-a*s;if(n<=0&&i>=0&&a<=0)return t=i/(i-a),g.copy(I).addScaledVector(Lg,t);RB.subVectors(A,Q);const o=Lg.dot(RB),r=bg.dot(RB);if(r>=0&&o<=r)return g.copy(Q);const h=o*s-i*r;if(h<=0&&s>=0&&r<=0)return C=s/(s-r),g.copy(I).addScaledVector(bg,C);const c=a*r-o*e;if(c<=0&&e-a>=0&&o-r>=0)return TQ.subVectors(Q,B),C=(e-a)/(e-a+(o-r)),g.copy(B).addScaledVector(TQ,C);const w=1/(c+h+n);return t=h*w,C=n*w,g.copy(I).addScaledVector(Lg,t).addScaledVector(bg,C)}equals(A){return A.a.equals(this.a)&&A.b.equals(this.b)&&A.c.equals(this.c)}}const vQ={aliceblue:15792383,antiquewhite:16444375,aqua:65535,aquamarine:8388564,azure:15794175,beige:16119260,bisque:16770244,black:0,blanchedalmond:16772045,blue:255,blueviolet:9055202,brown:10824234,burlywood:14596231,cadetblue:6266528,chartreuse:8388352,chocolate:13789470,coral:16744272,cornflowerblue:6591981,cornsilk:16775388,crimson:14423100,cyan:65535,darkblue:139,darkcyan:35723,darkgoldenrod:12092939,darkgray:11119017,darkgreen:25600,darkgrey:11119017,darkkhaki:12433259,darkmagenta:9109643,darkolivegreen:5597999,darkorange:16747520,darkorchid:10040012,darkred:9109504,darksalmon:15308410,darkseagreen:9419919,darkslateblue:4734347,darkslategray:3100495,darkslategrey:3100495,darkturquoise:52945,darkviolet:9699539,deeppink:16716947,deepskyblue:49151,dimgray:6908265,dimgrey:6908265,dodgerblue:2003199,firebrick:11674146,floralwhite:16775920,forestgreen:2263842,fuchsia:16711935,gainsboro:14474460,ghostwhite:16316671,gold:16766720,goldenrod:14329120,gray:8421504,green:32768,greenyellow:11403055,grey:8421504,honeydew:15794160,hotpink:16738740,indianred:13458524,indigo:4915330,ivory:16777200,khaki:15787660,lavender:15132410,lavenderblush:16773365,lawngreen:8190976,lemonchiffon:16775885,lightblue:11393254,lightcoral:15761536,lightcyan:14745599,lightgoldenrodyellow:16448210,lightgray:13882323,lightgreen:9498256,lightgrey:13882323,lightpink:16758465,lightsalmon:16752762,lightseagreen:2142890,lightskyblue:8900346,lightslategray:7833753,lightslategrey:7833753,lightsteelblue:11584734,lightyellow:16777184,lime:65280,limegreen:3329330,linen:16445670,magenta:16711935,maroon:8388608,mediumaquamarine:6737322,mediumblue:205,mediumorchid:12211667,mediumpurple:9662683,mediumseagreen:3978097,mediumslateblue:8087790,mediumspringgreen:64154,mediumturquoise:4772300,mediumvioletred:13047173,midnightblue:1644912,mintcream:16121850,mistyrose:16770273,moccasin:16770229,navajowhite:16768685,navy:128,oldlace:16643558,olive:8421376,olivedrab:7048739,orange:16753920,orangered:16729344,orchid:14315734,palegoldenrod:15657130,palegreen:10025880,paleturquoise:11529966,palevioletred:14381203,papayawhip:16773077,peachpuff:16767673,peru:13468991,pink:16761035,plum:14524637,powderblue:11591910,purple:8388736,rebeccapurple:6697881,red:16711680,rosybrown:12357519,royalblue:4286945,saddlebrown:9127187,salmon:16416882,sandybrown:16032864,seagreen:3050327,seashell:16774638,sienna:10506797,silver:12632256,skyblue:8900331,slateblue:6970061,slategray:7372944,slategrey:7372944,snow:16775930,springgreen:65407,steelblue:4620980,tan:13808780,teal:32896,thistle:14204888,tomato:16737095,turquoise:4251856,violet:15631086,wheat:16113331,white:16777215,whitesmoke:16119285,yellow:16776960,yellowgreen:10145074},ng={h:0,s:0,l:0},UI={h:0,s:0,l:0};function YB(E,A,g){return g<0&&(g+=1),g>1&&(g-=1),g<1/6?E+(A-E)*6*g:g<1/2?A:g<2/3?E+(A-E)*6*(2/3-g):E}class ug{constructor(A,g,I){return this.isColor=!0,this.r=1,this.g=1,this.b=1,this.set(A,g,I)}set(A,g,I){if(g===void 0&&I===void 0){const B=A;B&&B.isColor?this.copy(B):typeof B=="number"?this.setHex(B):typeof B=="string"&&this.setStyle(B)}else this.setRGB(A,g,I);return this}setScalar(A){return this.r=A,this.g=A,this.b=A,this}setHex(A,g=LA){return A=Math.floor(A),this.r=(A>>16&255)/255,this.g=(A>>8&255)/255,this.b=(A&255)/255,bA.toWorkingColorSpace(this,g),this}setRGB(A,g,I,B=bA.workingColorSpace){return this.r=A,this.g=g,this.b=I,bA.toWorkingColorSpace(this,B),this}setHSL(A,g,I,B=bA.workingColorSpace){if(A=eC(A,1),g=H(g,0,1),I=H(I,0,1),g===0)this.r=this.g=this.b=I;else{const Q=I<=.5?I*(1+g):I+g-I*g,t=2*I-Q;this.r=YB(t,Q,A+1/3),this.g=YB(t,Q,A),this.b=YB(t,Q,A-1/3)}return bA.toWorkingColorSpace(this,B),this}setStyle(A,g=LA){function I(Q){Q!==void 0&&parseFloat(Q)<1&&console.warn("THREE.Color: Alpha component of "+A+" will be ignored.")}let B;if(B=/^(\\w+)\\(([^\\)]*)\\)/.exec(A)){let Q;const t=B[1],C=B[2];switch(t){case"rgb":case"rgba":if(Q=/^\\s*(\\d+)\\s*,\\s*(\\d+)\\s*,\\s*(\\d+)\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(C))return I(Q[4]),this.setRGB(Math.min(255,parseInt(Q[1],10))/255,Math.min(255,parseInt(Q[2],10))/255,Math.min(255,parseInt(Q[3],10))/255,g);if(Q=/^\\s*(\\d+)\\%\\s*,\\s*(\\d+)\\%\\s*,\\s*(\\d+)\\%\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(C))return I(Q[4]),this.setRGB(Math.min(100,parseInt(Q[1],10))/100,Math.min(100,parseInt(Q[2],10))/100,Math.min(100,parseInt(Q[3],10))/100,g);break;case"hsl":case"hsla":if(Q=/^\\s*(\\d*\\.?\\d+)\\s*,\\s*(\\d*\\.?\\d+)\\%\\s*,\\s*(\\d*\\.?\\d+)\\%\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(C))return I(Q[4]),this.setHSL(parseFloat(Q[1])/360,parseFloat(Q[2])/100,parseFloat(Q[3])/100,g);break;default:console.warn("THREE.Color: Unknown color model "+A)}}else if(B=/^\\#([A-Fa-f\\d]+)$/.exec(A)){const Q=B[1],t=Q.length;if(t===3)return this.setRGB(parseInt(Q.charAt(0),16)/15,parseInt(Q.charAt(1),16)/15,parseInt(Q.charAt(2),16)/15,g);if(t===6)return this.setHex(parseInt(Q,16),g);console.warn("THREE.Color: Invalid hex color "+A)}else if(A&&A.length>0)return this.setColorName(A,g);return this}setColorName(A,g=LA){const I=vQ[A.toLowerCase()];return I!==void 0?this.setHex(I,g):console.warn("THREE.Color: Unknown color "+A),this}clone(){return new this.constructor(this.r,this.g,this.b)}copy(A){return this.r=A.r,this.g=A.g,this.b=A.b,this}copySRGBToLinear(A){return this.r=XA(A.r),this.g=XA(A.g),this.b=XA(A.b),this}copyLinearToSRGB(A){return this.r=pg(A.r),this.g=pg(A.g),this.b=pg(A.b),this}convertSRGBToLinear(){return this.copySRGBToLinear(this),this}convertLinearToSRGB(){return this.copyLinearToSRGB(this),this}getHex(A=LA){return bA.fromWorkingColorSpace(wA.copy(this),A),Math.round(H(wA.r*255,0,255))*65536+Math.round(H(wA.g*255,0,255))*256+Math.round(H(wA.b*255,0,255))}getHexString(A=LA){return("000000"+this.getHex(A).toString(16)).slice(-6)}getHSL(A,g=bA.workingColorSpace){bA.fromWorkingColorSpace(wA.copy(this),g);const I=wA.r,B=wA.g,Q=wA.b,t=Math.max(I,B,Q),C=Math.min(I,B,Q);let i,s;const a=(C+t)/2;if(C===t)i=0,s=0;else{const e=t-C;switch(s=a<=.5?e/(t+C):e/(2-t-C),t){case I:i=(B-Q)/e+(B0!=A>0&&this.version++,this._alphaTest=A}onBeforeRender(){}onBeforeCompile(){}customProgramCacheKey(){return this.onBeforeCompile.toString()}setValues(A){if(A!==void 0)for(const g in A){const I=A[g];if(I===void 0){console.warn(`THREE.Material: parameter \'${g}\' has value of undefined.`);continue}const B=this[g];if(B===void 0){console.warn(`THREE.Material: \'${g}\' is not a property of THREE.${this.type}.`);continue}B&&B.isColor?B.set(I):B&&B.isVector3&&I&&I.isVector3?B.copy(I):this[g]=I}}toJSON(A){const g=A===void 0||typeof A=="string";g&&(A={textures:{},images:{}});const I={metadata:{version:4.6,type:"Material",generator:"Material.toJSON"}};I.uuid=this.uuid,I.type=this.type,this.name!==""&&(I.name=this.name),this.color&&this.color.isColor&&(I.color=this.color.getHex()),this.roughness!==void 0&&(I.roughness=this.roughness),this.metalness!==void 0&&(I.metalness=this.metalness),this.sheen!==void 0&&(I.sheen=this.sheen),this.sheenColor&&this.sheenColor.isColor&&(I.sheenColor=this.sheenColor.getHex()),this.sheenRoughness!==void 0&&(I.sheenRoughness=this.sheenRoughness),this.emissive&&this.emissive.isColor&&(I.emissive=this.emissive.getHex()),this.emissiveIntensity!==void 0&&this.emissiveIntensity!==1&&(I.emissiveIntensity=this.emissiveIntensity),this.specular&&this.specular.isColor&&(I.specular=this.specular.getHex()),this.specularIntensity!==void 0&&(I.specularIntensity=this.specularIntensity),this.specularColor&&this.specularColor.isColor&&(I.specularColor=this.specularColor.getHex()),this.shininess!==void 0&&(I.shininess=this.shininess),this.clearcoat!==void 0&&(I.clearcoat=this.clearcoat),this.clearcoatRoughness!==void 0&&(I.clearcoatRoughness=this.clearcoatRoughness),this.clearcoatMap&&this.clearcoatMap.isTexture&&(I.clearcoatMap=this.clearcoatMap.toJSON(A).uuid),this.clearcoatRoughnessMap&&this.clearcoatRoughnessMap.isTexture&&(I.clearcoatRoughnessMap=this.clearcoatRoughnessMap.toJSON(A).uuid),this.clearcoatNormalMap&&this.clearcoatNormalMap.isTexture&&(I.clearcoatNormalMap=this.clearcoatNormalMap.toJSON(A).uuid,I.clearcoatNormalScale=this.clearcoatNormalScale.toArray()),this.dispersion!==void 0&&(I.dispersion=this.dispersion),this.iridescence!==void 0&&(I.iridescence=this.iridescence),this.iridescenceIOR!==void 0&&(I.iridescenceIOR=this.iridescenceIOR),this.iridescenceThicknessRange!==void 0&&(I.iridescenceThicknessRange=this.iridescenceThicknessRange),this.iridescenceMap&&this.iridescenceMap.isTexture&&(I.iridescenceMap=this.iridescenceMap.toJSON(A).uuid),this.iridescenceThicknessMap&&this.iridescenceThicknessMap.isTexture&&(I.iridescenceThicknessMap=this.iridescenceThicknessMap.toJSON(A).uuid),this.anisotropy!==void 0&&(I.anisotropy=this.anisotropy),this.anisotropyRotation!==void 0&&(I.anisotropyRotation=this.anisotropyRotation),this.anisotropyMap&&this.anisotropyMap.isTexture&&(I.anisotropyMap=this.anisotropyMap.toJSON(A).uuid),this.map&&this.map.isTexture&&(I.map=this.map.toJSON(A).uuid),this.matcap&&this.matcap.isTexture&&(I.matcap=this.matcap.toJSON(A).uuid),this.alphaMap&&this.alphaMap.isTexture&&(I.alphaMap=this.alphaMap.toJSON(A).uuid),this.lightMap&&this.lightMap.isTexture&&(I.lightMap=this.lightMap.toJSON(A).uuid,I.lightMapIntensity=this.lightMapIntensity),this.aoMap&&this.aoMap.isTexture&&(I.aoMap=this.aoMap.toJSON(A).uuid,I.aoMapIntensity=this.aoMapIntensity),this.bumpMap&&this.bumpMap.isTexture&&(I.bumpMap=this.bumpMap.toJSON(A).uuid,I.bumpScale=this.bumpScale),this.normalMap&&this.normalMap.isTexture&&(I.normalMap=this.normalMap.toJSON(A).uuid,I.normalMapType=this.normalMapType,I.normalScale=this.normalScale.toArray()),this.displacementMap&&this.displacementMap.isTexture&&(I.displacementMap=this.displacementMap.toJSON(A).uuid,I.displacementScale=this.displacementScale,I.displacementBias=this.displacementBias),this.roughnessMap&&this.roughnessMap.isTexture&&(I.roughnessMap=this.roughnessMap.toJSON(A).uuid),this.metalnessMap&&this.metalnessMap.isTexture&&(I.metalnessMap=this.metalnessMap.toJSON(A).uuid),this.emissiveMap&&this.emissiveMap.isTexture&&(I.emissiveMap=this.emissiveMap.toJSON(A).uuid),this.specularMap&&this.specularMap.isTexture&&(I.specularMap=this.specularMap.toJSON(A).uuid),this.specularIntensityMap&&this.specularIntensityMap.isTexture&&(I.specularIntensityMap=this.specularIntensityMap.toJSON(A).uuid),this.specularColorMap&&this.specularColorMap.isTexture&&(I.specularColorMap=this.specularColorMap.toJSON(A).uuid),this.envMap&&this.envMap.isTexture&&(I.envMap=this.envMap.toJSON(A).uuid,this.combine!==void 0&&(I.combine=this.combine)),this.envMapRotation!==void 0&&(I.envMapRotation=this.envMapRotation.toArray()),this.envMapIntensity!==void 0&&(I.envMapIntensity=this.envMapIntensity),this.reflectivity!==void 0&&(I.reflectivity=this.reflectivity),this.refractionRatio!==void 0&&(I.refractionRatio=this.refractionRatio),this.gradientMap&&this.gradientMap.isTexture&&(I.gradientMap=this.gradientMap.toJSON(A).uuid),this.transmission!==void 0&&(I.transmission=this.transmission),this.transmissionMap&&this.transmissionMap.isTexture&&(I.transmissionMap=this.transmissionMap.toJSON(A).uuid),this.thickness!==void 0&&(I.thickness=this.thickness),this.thicknessMap&&this.thicknessMap.isTexture&&(I.thicknessMap=this.thicknessMap.toJSON(A).uuid),this.attenuationDistance!==void 0&&this.attenuationDistance!==1/0&&(I.attenuationDistance=this.attenuationDistance),this.attenuationColor!==void 0&&(I.attenuationColor=this.attenuationColor.getHex()),this.size!==void 0&&(I.size=this.size),this.shadowSide!==null&&(I.shadowSide=this.shadowSide),this.sizeAttenuation!==void 0&&(I.sizeAttenuation=this.sizeAttenuation),this.blending!==cQ&&(I.blending=this.blending),this.side!==hB&&(I.side=this.side),this.vertexColors===!0&&(I.vertexColors=!0),this.opacity<1&&(I.opacity=this.opacity),this.transparent===!0&&(I.transparent=!0),this.blendSrc!==DQ&&(I.blendSrc=this.blendSrc),this.blendDst!==lQ&&(I.blendDst=this.blendDst),this.blendEquation!==wQ&&(I.blendEquation=this.blendEquation),this.blendSrcAlpha!==null&&(I.blendSrcAlpha=this.blendSrcAlpha),this.blendDstAlpha!==null&&(I.blendDstAlpha=this.blendDstAlpha),this.blendEquationAlpha!==null&&(I.blendEquationAlpha=this.blendEquationAlpha),this.blendColor&&this.blendColor.isColor&&(I.blendColor=this.blendColor.getHex()),this.blendAlpha!==0&&(I.blendAlpha=this.blendAlpha),this.depthFunc!==yQ&&(I.depthFunc=this.depthFunc),this.depthTest===!1&&(I.depthTest=this.depthTest),this.depthWrite===!1&&(I.depthWrite=this.depthWrite),this.colorWrite===!1&&(I.colorWrite=this.colorWrite),this.stencilWriteMask!==255&&(I.stencilWriteMask=this.stencilWriteMask),this.stencilFunc!==pQ&&(I.stencilFunc=this.stencilFunc),this.stencilRef!==0&&(I.stencilRef=this.stencilRef),this.stencilFuncMask!==255&&(I.stencilFuncMask=this.stencilFuncMask),this.stencilFail!==kg&&(I.stencilFail=this.stencilFail),this.stencilZFail!==kg&&(I.stencilZFail=this.stencilZFail),this.stencilZPass!==kg&&(I.stencilZPass=this.stencilZPass),this.stencilWrite===!0&&(I.stencilWrite=this.stencilWrite),this.rotation!==void 0&&this.rotation!==0&&(I.rotation=this.rotation),this.polygonOffset===!0&&(I.polygonOffset=!0),this.polygonOffsetFactor!==0&&(I.polygonOffsetFactor=this.polygonOffsetFactor),this.polygonOffsetUnits!==0&&(I.polygonOffsetUnits=this.polygonOffsetUnits),this.linewidth!==void 0&&this.linewidth!==1&&(I.linewidth=this.linewidth),this.dashSize!==void 0&&(I.dashSize=this.dashSize),this.gapSize!==void 0&&(I.gapSize=this.gapSize),this.scale!==void 0&&(I.scale=this.scale),this.dithering===!0&&(I.dithering=!0),this.alphaTest>0&&(I.alphaTest=this.alphaTest),this.alphaHash===!0&&(I.alphaHash=!0),this.alphaToCoverage===!0&&(I.alphaToCoverage=!0),this.premultipliedAlpha===!0&&(I.premultipliedAlpha=!0),this.forceSinglePass===!0&&(I.forceSinglePass=!0),this.wireframe===!0&&(I.wireframe=!0),this.wireframeLinewidth>1&&(I.wireframeLinewidth=this.wireframeLinewidth),this.wireframeLinecap!=="round"&&(I.wireframeLinecap=this.wireframeLinecap),this.wireframeLinejoin!=="round"&&(I.wireframeLinejoin=this.wireframeLinejoin),this.flatShading===!0&&(I.flatShading=!0),this.visible===!1&&(I.visible=!1),this.toneMapped===!1&&(I.toneMapped=!1),this.fog===!1&&(I.fog=!1),Object.keys(this.userData).length>0&&(I.userData=this.userData);function B(Q){const t=[];for(const C in Q){const i=Q[C];delete i.metadata,t.push(i)}return t}if(g){const Q=B(A.textures),t=B(A.images);Q.length>0&&(I.textures=Q),t.length>0&&(I.images=t)}return I}clone(){return new this.constructor().copy(this)}copy(A){this.name=A.name,this.blending=A.blending,this.side=A.side,this.vertexColors=A.vertexColors,this.opacity=A.opacity,this.transparent=A.transparent,this.blendSrc=A.blendSrc,this.blendDst=A.blendDst,this.blendEquation=A.blendEquation,this.blendSrcAlpha=A.blendSrcAlpha,this.blendDstAlpha=A.blendDstAlpha,this.blendEquationAlpha=A.blendEquationAlpha,this.blendColor.copy(A.blendColor),this.blendAlpha=A.blendAlpha,this.depthFunc=A.depthFunc,this.depthTest=A.depthTest,this.depthWrite=A.depthWrite,this.stencilWriteMask=A.stencilWriteMask,this.stencilFunc=A.stencilFunc,this.stencilRef=A.stencilRef,this.stencilFuncMask=A.stencilFuncMask,this.stencilFail=A.stencilFail,this.stencilZFail=A.stencilZFail,this.stencilZPass=A.stencilZPass,this.stencilWrite=A.stencilWrite;const g=A.clippingPlanes;let I=null;if(g!==null){const B=g.length;I=new Array(B);for(let Q=0;Q!==B;++Q)I[Q]=g[Q].clone()}return this.clippingPlanes=I,this.clipIntersection=A.clipIntersection,this.clipShadows=A.clipShadows,this.shadowSide=A.shadowSide,this.colorWrite=A.colorWrite,this.precision=A.precision,this.polygonOffset=A.polygonOffset,this.polygonOffsetFactor=A.polygonOffsetFactor,this.polygonOffsetUnits=A.polygonOffsetUnits,this.dithering=A.dithering,this.alphaTest=A.alphaTest,this.alphaHash=A.alphaHash,this.alphaToCoverage=A.alphaToCoverage,this.premultipliedAlpha=A.premultipliedAlpha,this.forceSinglePass=A.forceSinglePass,this.visible=A.visible,this.toneMapped=A.toneMapped,this.userData=JSON.parse(JSON.stringify(A.userData)),this}dispose(){this.dispatchEvent({type:"dispose"})}set needsUpdate(A){A===!0&&this.version++}onBuild(){console.warn("Material: onBuild() has been removed.")}}class pC extends zQ{constructor(A){super(),this.isMeshBasicMaterial=!0,this.type="MeshBasicMaterial",this.color=new ug(16777215),this.map=null,this.lightMap=null,this.lightMapIntensity=1,this.aoMap=null,this.aoMapIntensity=1,this.specularMap=null,this.alphaMap=null,this.envMap=null,this.envMapRotation=new yg,this.combine=tC,this.reflectivity=1,this.refractionRatio=.98,this.wireframe=!1,this.wireframeLinewidth=1,this.wireframeLinecap="round",this.wireframeLinejoin="round",this.fog=!0,this.setValues(A)}copy(A){return super.copy(A),this.color.copy(A.color),this.map=A.map,this.lightMap=A.lightMap,this.lightMapIntensity=A.lightMapIntensity,this.aoMap=A.aoMap,this.aoMapIntensity=A.aoMapIntensity,this.specularMap=A.specularMap,this.alphaMap=A.alphaMap,this.envMap=A.envMap,this.envMapRotation.copy(A.envMapRotation),this.combine=A.combine,this.reflectivity=A.reflectivity,this.refractionRatio=A.refractionRatio,this.wireframe=A.wireframe,this.wireframeLinewidth=A.wireframeLinewidth,this.wireframeLinecap=A.wireframeLinecap,this.wireframeLinejoin=A.wireframeLinejoin,this.fog=A.fog,this}}const IA=new D,LI=new dA;class Hg{constructor(A,g,I=!1){if(Array.isArray(A))throw new TypeError("THREE.BufferAttribute: array should be a Typed Array.");this.isBufferAttribute=!0,this.name="",this.array=A,this.itemSize=g,this.count=A!==void 0?A.length/g:0,this.normalized=I,this.usage=fQ,this.updateRanges=[],this.gpuType=EC,this.version=0}onUploadCallback(){}set needsUpdate(A){A===!0&&this.version++}setUsage(A){return this.usage=A,this}addUpdateRange(A,g){this.updateRanges.push({start:A,count:g})}clearUpdateRanges(){this.updateRanges.length=0}copy(A){return this.name=A.name,this.array=new A.array.constructor(A.array),this.itemSize=A.itemSize,this.count=A.count,this.normalized=A.normalized,this.usage=A.usage,this.gpuType=A.gpuType,this}copyAt(A,g,I){A*=this.itemSize,I*=g.itemSize;for(let B=0,Q=this.itemSize;Bg.count&&console.warn("THREE.BufferGeometry: Buffer size too small for points data. Use .dispose() and create a new geometry."),g.needsUpdate=!0}return this}computeBoundingBox(){this.boundingBox===null&&(this.boundingBox=new Rg);const A=this.attributes.position,g=this.morphAttributes.position;if(A&&A.isGLBufferAttribute){console.error("THREE.BufferGeometry.computeBoundingBox(): GLBufferAttribute requires a manual bounding box.",this),this.boundingBox.set(new D(-1/0,-1/0,-1/0),new D(1/0,1/0,1/0));return}if(A!==void 0){if(this.boundingBox.setFromBufferAttribute(A),g)for(let I=0,B=g.length;I0&&(A.userData=this.userData),this.parameters!==void 0){const i=this.parameters;for(const s in i)i[s]!==void 0&&(A[s]=i[s]);return A}A.data={attributes:{}};const g=this.index;g!==null&&(A.data.index={type:g.array.constructor.name,array:Array.prototype.slice.call(g.array)});const I=this.attributes;for(const i in I){const s=I[i];A.data.attributes[i]=s.toJSON(A.data)}const B={};let Q=!1;for(const i in this.morphAttributes){const s=this.morphAttributes[i],a=[];for(let e=0,n=s.length;e0&&(B[i]=a,Q=!0)}Q&&(A.data.morphAttributes=B,A.data.morphTargetsRelative=this.morphTargetsRelative);const t=this.groups;t.length>0&&(A.data.groups=JSON.parse(JSON.stringify(t)));const C=this.boundingSphere;return C!==null&&(A.data.boundingSphere={center:C.center.toArray(),radius:C.radius}),A}clone(){return new this.constructor().copy(this)}copy(A){this.index=null,this.attributes={},this.morphAttributes={},this.groups=[],this.boundingBox=null,this.boundingSphere=null;const g={};this.name=A.name;const I=A.index;I!==null&&this.setIndex(I.clone(g));const B=A.attributes;for(const s in B){const a=B[s];this.setAttribute(s,a.clone(g))}const Q=A.morphAttributes;for(const s in Q){const a=[],e=Q[s];for(let n=0,o=e.length;n0){const B=g[I[0]];if(B!==void 0){this.morphTargetInfluences=[],this.morphTargetDictionary={};for(let Q=0,t=B.length;Q(A.far-A.near)**2))&&(XQ.copy(Q).invert(),dg.copy(A.ray).applyMatrix4(XQ),!(I.boundingBox!==null&&dg.intersectsBox(I.boundingBox)===!1)&&this._computeIntersections(A,g,dg)))}_computeIntersections(A,g,I){let B;const Q=this.geometry,t=this.material,C=Q.index,i=Q.attributes.position,s=Q.attributes.uv,a=Q.attributes.uv1,e=Q.attributes.normal,n=Q.groups,o=Q.drawRange;if(C!==null)if(Array.isArray(t))for(let r=0,h=n.length;rg.far?null:{distance:s,point:TI.clone(),object:E}}function vI(E,A,g,I,B,Q,t,C,i,s){E.getVertexPosition(C,KI),E.getVertexPosition(i,qI),E.getVertexPosition(s,WI);const a=mC(E,A,g,I,KI,qI,WI,OQ);if(a){const e=new D;qA.getBarycoord(OQ,KI,qI,WI,e),B&&(a.uv=qA.getInterpolatedAttribute(B,C,i,s,e,new dA)),Q&&(a.uv1=qA.getInterpolatedAttribute(Q,C,i,s,e,new dA)),t&&(a.normal=qA.getInterpolatedAttribute(t,C,i,s,e,new D),a.normal.dot(I.direction)>0&&a.normal.multiplyScalar(-1));const n={a:C,b:i,c:s,normal:new D,materialIndex:0};qA.getNormal(KI,qI,WI,n.normal),a.face=n,a.barycoord=e}return a}function SC(E){const A={};for(const g in E){A[g]={};for(const I in E[g]){const B=E[g][I];B&&(B.isColor||B.isMatrix3||B.isMatrix4||B.isVector2||B.isVector3||B.isVector4||B.isTexture||B.isQuaternion)?B.isRenderTargetTexture?(console.warn("UniformsUtils: Textures of render targets cannot be cloned via cloneUniforms() or mergeUniforms()."),A[g][I]=null):A[g][I]=B.clone():Array.isArray(B)?A[g][I]=B.slice():A[g][I]=B}}return A}function YC(E){const A=[];for(let g=0;g0&&(g.defines=this.defines),g.vertexShader=this.vertexShader,g.fragmentShader=this.fragmentShader,g.lights=this.lights,g.clipping=this.clipping;const I={};for(const B in this.extensions)this.extensions[B]===!0&&(I[B]=!0);return Object.keys(I).length>0&&(g.extensions=I),g}}class _Q extends MA{constructor(){super(),this.isCamera=!0,this.type="Camera",this.matrixWorldInverse=new cA,this.projectionMatrix=new cA,this.projectionMatrixInverse=new cA,this.coordinateSystem=II}copy(A,g){return super.copy(A,g),this.matrixWorldInverse.copy(A.matrixWorldInverse),this.projectionMatrix.copy(A.projectionMatrix),this.projectionMatrixInverse.copy(A.projectionMatrixInverse),this.coordinateSystem=A.coordinateSystem,this}getWorldDirection(A){return super.getWorldDirection(A).negate()}updateMatrixWorld(A){super.updateMatrixWorld(A),this.matrixWorldInverse.copy(this.matrixWorld).invert()}updateWorldMatrix(A,g){super.updateWorldMatrix(A,g),this.matrixWorldInverse.copy(this.matrixWorld).invert()}clone(){return new this.constructor().copy(this)}}class $Q extends MA{constructor(){super(),this.isScene=!0,this.type="Scene",this.background=null,this.environment=null,this.fog=null,this.backgroundBlurriness=0,this.backgroundIntensity=1,this.backgroundRotation=new yg,this.environmentIntensity=1,this.environmentRotation=new yg,this.overrideMaterial=null,typeof __THREE_DEVTOOLS__<"u"&&__THREE_DEVTOOLS__.dispatchEvent(new CustomEvent("observe",{detail:this}))}copy(A,g){return super.copy(A,g),A.background!==null&&(this.background=A.background.clone()),A.environment!==null&&(this.environment=A.environment.clone()),A.fog!==null&&(this.fog=A.fog.clone()),this.backgroundBlurriness=A.backgroundBlurriness,this.backgroundIntensity=A.backgroundIntensity,this.backgroundRotation.copy(A.backgroundRotation),this.environmentIntensity=A.environmentIntensity,this.environmentRotation.copy(A.environmentRotation),A.overrideMaterial!==null&&(this.overrideMaterial=A.overrideMaterial.clone()),this.matrixAutoUpdate=A.matrixAutoUpdate,this}toJSON(A){const g=super.toJSON(A);return this.fog!==null&&(g.object.fog=this.fog.toJSON()),this.backgroundBlurriness>0&&(g.object.backgroundBlurriness=this.backgroundBlurriness),this.backgroundIntensity!==1&&(g.object.backgroundIntensity=this.backgroundIntensity),g.object.backgroundRotation=this.backgroundRotation.toArray(),this.environmentIntensity!==1&&(g.object.environmentIntensity=this.environmentIntensity),g.object.environmentRotation=this.environmentRotation.toArray(),g}}class bC extends vA{constructor(A=null,g=1,I=1,B,Q,t,C,i,s=Cg,a=Cg,e,n){super(null,t,C,i,s,a,B,Q,e,n),this.isDataTexture=!0,this.image={data:A,width:g,height:I},this.generateMipmaps=!1,this.flipY=!1,this.unpackAlignment=1}}class zI extends HI{constructor(A=1,g=1,I=1,B=1){super(),this.type="PlaneGeometry",this.parameters={width:A,height:g,widthSegments:I,heightSegments:B};const Q=A/2,t=g/2,C=Math.floor(I),i=Math.floor(B),s=C+1,a=i+1,e=A/C,n=g/i,o=[],r=[],h=[],c=[];for(let w=0;wV(B[C]));return`${A}(${Q.join(", ")})`}case"mat2x3":{const I=g,B=new Array(6).fill(0).map((Q,t)=>V(I[t]));return`${A}(${B.join(", ")})`}case"mat2x4":{const I=g,B=new Array(8).fill(0).map((Q,t)=>V(I[t]));return`${A}(${B.join(", ")})`}case"mat3":case"mat3x3":{const I=g,B=I instanceof TA?I.elements:g,Q=new Array(9).fill(0).map((t,C)=>V(B[C]));return`${A}(${Q.join(", ")})`}case"mat3x2":{const I=g,B=new Array(6).fill(0).map((Q,t)=>V(I[t]));return`${A}(${B.join(", ")})`}case"mat3x4":{const I=g,B=new Array(12).fill(0).map((Q,t)=>V(I[t]));return`${A}(${B.join(", ")})`}case"mat4":case"mat4x4":{const I=g,B=I instanceof cA?I.elements:g,Q=new Array(16).fill(0).map((t,C)=>V(B[C]));return`${A}(${Q.join(", ")})`}case"mat4x2":{const I=g,B=new Array(8).fill(0).map((Q,t)=>V(I[t]));return`${A}(${B.join(", ")})`}case"mat4x3":{const I=g,B=new Array(12).fill(0).map((Q,t)=>V(I[t]));return`${A}(${B.join(", ")})`}default:throw new Error(`Type not implemented: ${String(A)}`)}}}function VC(E,A){return new WC(E,A)}const It=" ";class TC{constructor({indent:A}={}){this.globals=new Set,this.statements=[],this.uniforms={},this.declares=new Set,this.updaters=[],this.sequence=0,this.indent=It,this.indent=A??It}nextSequence(){return this.sequence++}}class DA{constructor({inTypes:A,outTypes:g,inputs:I,update:B,globals:Q,statements:t,generate:C}){this.inTypes=A??{},this.outTypes=g??{},this.inputs=I??{},this.update=B,this.globals=Q,this.statements=t,this.generate=C??(({inputs:i,outputs:s,compile:a})=>{var e,n;return{globals:(e=this.globals)==null?void 0:e.call(this,{inputs:i,outputs:s,compile:a}),statements:(n=this.statements)==null?void 0:n.call(this,{inputs:i,outputs:s,compile:a})}})}get outputs(){const A={};for(const g in this.outTypes)A[g]=new fA(this,g);return A}apply(A){return Object.assign(this.inputs,A),this.outputs}compile({inputs:A,outputs:g,compile:I}){const B=[`// ${this.constructor.name}(${Object.values(A).join(", ")}) => (${Object.values(g).join(", ")})`],Q=[];for(const s in g){const a=g[s];a&&!I.declares.has(a)&&(I.declares.add(a),Q.push(s))}const{globals:t,statements:C,uniforms:i}=this.generate({inputs:A,outputs:g,compile:I});for(const s of t??[])I.globals.add(s);for(const s in i)I.uniforms[s]=i[s];this.update&&I.updaters.push(this.update);for(const s of Q){const a=g[s];a&&(I.uniforms[a]||B.push(`${Bt(a,this.outTypes[s])};`))}return C!=null&&C.length&&(B.push("{"),B.push(...C.map(s=>I.indent+s)),B.push("}")),B}}class vC extends DA{constructor({inTypes:A,outTypes:g,inputs:I,update:B,globals:Q,construct:t}){super({inTypes:A,outTypes:g,inputs:I,update:B,globals:Q,generate:C=>this.generateBlock(C)}),this.construct=t}generateBlock({inputs:A,outputs:g,compile:I}){var r,h;const B={},Q={};for(const c in A)A[c]!=null&&(B[c]=new jI(this.inTypes[c],A[c]));for(const c in g)g[c]!=null&&(Q[c]=new Gg(this.outTypes[c]));const t={roots:[]},C=this.construct(B,Q,t);for(const c of((r=this.globals)==null?void 0:r.call(this,{inputs:A,outputs:g,compile:I}))??[])I.globals.add(c);const i=[],s=new Map;function a(c,w,y){let l=s.get(c);if(!l){l={sequence:I.nextSequence(),outNames:new Map,newOuts:new Set},s.set(c,l);for(const u in c.inputs){let M=c.inputs[u];for(;M;){if(M instanceof Gg){M instanceof fA&&a(M.dyno,M.key);break}M=M.dynoOut()}}i.push(c)}w&&(y||l.newOuts.add(w),l.outNames.set(w,y??`${w}_${l.sequence}`))}for(const c of t.roots)a(c);for(const c in Q){let w=(C==null?void 0:C[c])??Q[c];for(;w;){if(w instanceof Gg){w instanceof fA&&a(w.dyno,w.key,g[c]);break}w=w.dynoOut()}Q[c]=w}const e=[];for(const c of i){const w={},y={};for(const M in c.inputs){let F=c.inputs[M];for(;F;){if(F instanceof Gg){if(F instanceof jI)w[M]=F.getLiteral();else if(F instanceof fA){const p=(h=s.get(F.dyno))==null?void 0:h.outNames.get(F.key);if(!p)throw new Error(`Source not found for ${F.dyno.constructor.name}.${F.key}`);w[M]=p}break}F=F.dynoOut()}}const l=s.get(c)??{outNames:new Map};for(const[M,F]of l.outNames.entries())y[M]=F;const 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i.entries())e[QA]=x[AA];g(T,s,a,e)}}};this.parseData(c)}injectRgba(A){let g=0;const I=this.data;if(I==null)throw new Error("No parsed data");if(A.length!==this.numSplats*4)throw new Error("Invalid RGBA array length");for(const B in this.elements){const Q=this.elements[B],{count:t,properties:C}=Q,i=[];let s=0;const a=B==="vertex";if(a){for(const e of["opacity","f_dc_0","f_dc_1","f_dc_2"])if(!C[e]||C[e].type!=="float")throw new Error(`Can\'t injectRgba due to property: ${e}`)}for(const[e,n]of Object.entries(C))if(n.isList)i.push(()=>{const o=gB[n.countType](I,g,this.littleEndian);g+=zg[n.countType],g+=o*zg[n.type]});else{if(a)if(e==="f_dc_0"||e==="f_dc_1"||e==="f_dc_2"){const o=Number.parseInt(e.slice(5));i.push(()=>{const r=(A[s+o]/255-.5)/AB;st[n.type](I,g,this.littleEndian,r)})}else e==="opacity"&&i.push(()=>{const o=Math.max(-100,Math.min(100,-Math.log(1/(A[s+3]/255)-1)));st[n.type](I,g,this.littleEndian,o)});i.push(()=>{g+=zg[n.type]})}for(let e=0;eE.getInt8(A),uchar:(E,A,g)=>E.getUint8(A),short:(E,A,g)=>E.getInt16(A,g),ushort:(E,A,g)=>E.getUint16(A,g),int:(E,A,g)=>E.getInt32(A,g),uint:(E,A,g)=>E.getUint32(A,g),float:(E,A,g)=>E.getFloat32(A,g),double:(E,A,g)=>E.getFloat64(A,g)},st={char:(E,A,g,I)=>{E.setInt8(A,I)},uchar:(E,A,g,I)=>{E.setUint8(A,I)},short:(E,A,g,I)=>{E.setInt16(A,I,g)},ushort:(E,A,g,I)=>{E.setUint16(A,I,g)},int:(E,A,g,I)=>{E.setInt32(A,I,g)},uint:(E,A,g,I)=>{E.setUint32(A,I,g)},float:(E,A,g,I)=>{E.setFloat32(A,I,g)},double:(E,A,g,I)=>{E.setFloat64(A,I,g)}},zg={char:1,uchar:1,short:2,ushort:2,int:4,uint:4,float:4,double:8},IB={char:127,uchar:255,short:32767,ushort:65535,int:2147483647,uint:4294967295,float:1,double:1},aE={0:0,9:1,24:2,45:3},nE={0:0,1:9,2:24,3:45};function et(E){let A=0;for(;E[`f_rest_${A}`];)A+=1;const g=aE[A];if(g==null)throw new Error(`Unsupported number of SH coefficients: ${A}`);return g}const GA={type:"Gsplat"},zB={type:"PackedSplats"},oE=(E,A)=>new cE({packedSplats:E,index:A}),rE=(E,A,g,I)=>new wE({packedSplats:E,index:A,base:g,count:I}),BB=E=>new DE({gsplat:E}),XB=({gsplat:E,flags:A,index:g,center:I,scales:B,quaternion:Q,rgba:t,rgb:C,opacity:i,x:s,y:a,z:e,r:n,g:o,b:r})=>new lE({gsplat:E,flags:A,index:g,center:I,scales:B,quaternion:Q,rgba:t,rgb:C,opacity:i,x:s,y:a,z:e,r:n,g:o,b:r}),hE=(E,{scale:A,rotate:g,translate:I,recolor:B})=>new yE({gsplat:E,scale:A,rotate:g,translate:I,recolor:B}),Ig=VA(`\n struct Gsplat {\n vec3 center;\n uint flags;\n vec3 scales;\n int index;\n vec4 quaternion;\n vec4 rgba;\n };\n const uint GSPLAT_FLAG_ACTIVE = 1u << 0u;\n\n bool isGsplatActive(uint flags) {\n return (flags & GSPLAT_FLAG_ACTIVE) != 0u;\n }\n`),jB=VA(`\n struct PackedSplats {\n usampler2DArray texture;\n int numSplats;\n };\n`),at=VA(`\n bool readPackedSplat(usampler2DArray texture, int numSplats, int index, out Gsplat gsplat) {\n if ((index >= 0) && (index < numSplats)) {\n uvec4 packed = texelFetch(texture, splatTexCoord(index), 0);\n unpackSplat(packed, gsplat.center, gsplat.scales, gsplat.quaternion, gsplat.rgba);\n return true;\n } else {\n return false;\n }\n }\n`);class cE extends DA{constructor({packedSplats:A,index:g}){super({inTypes:{packedSplats:zB,index:"int"},outTypes:{gsplat:GA},inputs:{packedSplats:A,index:g},globals:()=>[Ig,jB,at],statements:({inputs:I,outputs:B})=>{const{gsplat:Q}=B;if(!Q)return[];const{packedSplats:t,index:C}=I;let i;return t&&C?i=gg(`\n if (readPackedSplat(${t}.texture, ${t}.numSplats, ${C}, ${Q})) {\n bool zeroSize = all(equal(${Q}.scales, vec3(0.0, 0.0, 0.0)));\n ${Q}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;\n } else {\n ${Q}.flags = 0u;\n }\n `):i=[`${Q}.flags = 0u;`],i.push(`${Q}.index = ${C??"0"};`),i}})}dynoOut(){return new fA(this,"gsplat")}}class wE extends DA{constructor({packedSplats:A,index:g,base:I,count:B}){super({inTypes:{packedSplats:zB,index:"int",base:"int",count:"int"},outTypes:{gsplat:GA},inputs:{packedSplats:A,index:g,base:I,count:B},globals:()=>[Ig,jB,at],statements:({inputs:Q,outputs:t})=>{const{gsplat:C}=t;if(!C)return[];const{packedSplats:i,index:s,base:a,count:e}=Q;let n;return i&&s&&a&&e?n=gg(`\n ${C}.flags = 0u;\n if ((${s} >= ${a}) && (${s} < (${a} + ${e}))) {\n if (readPackedSplat(${i}.texture, ${i}.numSplats, ${s}, ${C})) {\n bool zeroSize = all(equal(${C}.scales, vec3(0.0, 0.0, 0.0)));\n ${C}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;\n }\n }\n `):n=[`${C}.flags = 0u;`],n.push(`${C}.index = ${s??"0"};`),n}})}dynoOut(){return new fA(this,"gsplat")}}class DE extends DA{constructor({gsplat:A}){super({inTypes:{gsplat:GA},outTypes:{flags:"uint",active:"bool",index:"int",center:"vec3",scales:"vec3",quaternion:"vec4",rgba:"vec4",rgb:"vec3",opacity:"float",x:"float",y:"float",z:"float",r:"float",g:"float",b:"float"},inputs:{gsplat:A},globals:()=>[Ig],statements:({inputs:g,outputs:I})=>{const{gsplat:B}=g,{flags:Q,active:t,index:C,center:i,scales:s,quaternion:a,rgba:e,rgb:n,opacity:o,x:r,y:h,z:c,r:w,g:y,b:l}=I;return[Q?`${Q} = ${B?`${B}.flags`:"0u"};`:null,t?`${t} = isGsplatActive(${B?`${B}.flags`:"0u"});`:null,C?`${C} = ${B?`${B}.index`:"0"};`:null,i?`${i} = ${B?`${B}.center`:"vec3(0.0, 0.0, 0.0)"};`:null,s?`${s} = ${B?`${B}.scales`:"vec3(0.0, 0.0, 0.0)"};`:null,a?`${a} = ${B?`${B}.quaternion`:"vec4(0.0, 0.0, 0.0, 1.0)"};`:null,e?`${e} = ${B?`${B}.rgba`:"vec4(0.0, 0.0, 0.0, 0.0)"};`:null,n?`${n} = ${B?`${B}.rgba.rgb`:"vec3(0.0, 0.0, 0.0)"};`:null,o?`${o} = ${B?`${B}.rgba.a`:"0.0"};`:null,r?`${r} = ${B?`${B}.center.x`:"0.0"};`:null,h?`${h} = ${B?`${B}.center.y`:"0.0"};`:null,c?`${c} = ${B?`${B}.center.z`:"0.0"};`:null,w?`${w} = ${B?`${B}.rgba.r`:"0.0"};`:null,y?`${y} = ${B?`${B}.rgba.g`:"0.0"};`:null,l?`${l} = ${B?`${B}.rgba.b`:"0.0"};`:null].filter(Boolean)}})}}class lE extends DA{constructor({gsplat:A,flags:g,index:I,center:B,scales:Q,quaternion:t,rgba:C,rgb:i,opacity:s,x:a,y:e,z:n,r:o,g:r,b:h}){super({inTypes:{gsplat:GA,flags:"uint",index:"int",center:"vec3",scales:"vec3",quaternion:"vec4",rgba:"vec4",rgb:"vec3",opacity:"float",x:"float",y:"float",z:"float",r:"float",g:"float",b:"float"},outTypes:{gsplat:GA},inputs:{gsplat:A,flags:g,index:I,center:B,scales:Q,quaternion:t,rgba:C,rgb:i,opacity:s,x:a,y:e,z:n,r:o,g:r,b:h},globals:()=>[Ig],statements:({inputs:c,outputs:w})=>{const{gsplat:y}=w;if(!y)return[];const{gsplat:l,flags:u,index:M,center:F,scales:p,quaternion:d,rgba:G,rgb:f,opacity:N,x:k,y:R,z:J,r:m,g:S,b:Y}=c;return[`${y}.flags = ${u??(l?`${l}.flags`:"0u")};`,`${y}.index = ${M??(l?`${l}.index`:"0")};`,`${y}.center = ${F??(l?`${l}.center`:"vec3(0.0, 0.0, 0.0)")};`,`${y}.scales = ${p??(l?`${l}.scales`:"vec3(0.0, 0.0, 0.0)")};`,`${y}.quaternion = ${d??(l?`${l}.quaternion`:"vec4(0.0, 0.0, 0.0, 1.0)")};`,`${y}.rgba = ${G??(l?`${l}.rgba`:"vec4(0.0, 0.0, 0.0, 0.0)")};`,f?`${y}.rgba.rgb = ${f};`:null,N?`${y}.rgba.a = ${N};`:null,k?`${y}.center.x = ${k};`:null,R?`${y}.center.y = ${R};`:null,J?`${y}.center.z = ${J};`:null,m?`${y}.rgba.r = ${m};`:null,S?`${y}.rgba.g = ${S};`:null,Y?`${y}.rgba.b = ${Y};`:null].filter(Boolean)}})}dynoOut(){return new fA(this,"gsplat")}}VA(`\n vec3 gsplatNormal(vec3 scales, vec4 quaternion) {\n float minScale = min(scales.x, min(scales.y, scales.z));\n vec3 normal;\n if (scales.z == minScale) {\n normal = vec3(0.0, 0.0, 1.0);\n } else if (scales.y == minScale) {\n normal = vec3(0.0, 1.0, 0.0);\n } else {\n normal = vec3(1.0, 0.0, 0.0);\n }\n return quatVec(quaternion, normal);\n }\n`);class yE extends DA{constructor({gsplat:A,scale:g,rotate:I,translate:B,recolor:Q}){super({inTypes:{gsplat:GA,scale:"float",rotate:"vec4",translate:"vec3",recolor:"vec4"},outTypes:{gsplat:GA},inputs:{gsplat:A,scale:g,rotate:I,translate:B,recolor:Q},globals:()=>[Ig],statements:({inputs:t,outputs:C,compile:i})=>{const{gsplat:s}=C;if(!s||!t.gsplat)return[];const{scale:a,rotate:e,translate:n,recolor:o}=t,r=i.indent;return[`${s} = ${t.gsplat};`,`if (isGsplatActive(${s}.flags)) {`,a?`${r}${s}.center *= ${a};`:null,e?`${r}${s}.center = quatVec(${e}, ${s}.center);`:null,n?`${r}${s}.center += ${n};`:null,a?`${r}${s}.scales *= ${a};`:null,e?`${r}${s}.quaternion = quatQuat(${e}, ${s}.quaternion);`:null,o?`${r}${s}.rgba *= ${o};`:null,"}"].filter(Boolean)}})}dynoOut(){return new fA(this,"gsplat")}}const uE=E=>new dE({gsplat:E});class dE extends DA{constructor({gsplat:A}){super({inTypes:{gsplat:GA},inputs:{gsplat:A},globals:()=>[Ig],statements:({inputs:g,outputs:I})=>{const{output:B}=I;if(!B)return[];const{gsplat:Q}=g;return Q?gg(`\n if (isGsplatActive(${Q}.flags)) {\n ${B} = packSplat(${Q}.center, ${Q}.scales, ${Q}.quaternion, ${Q}.rgba);\n } else {\n ${B} = uvec4(0u, 0u, 0u, 0u);\n }\n `):[`${B} = uvec4(0u, 0u, 0u, 0u);`]}})}dynoOut(){return new fA(this,"output")}}class ME extends DA{constructor({rgba8:A}){super({inTypes:{rgba8:"vec4"},inputs:{rgba8:A},statements:({inputs:g,outputs:I})=>[`target = ${g.rgba8??"vec4(0.0, 0.0, 0.0, 0.0)"};`]})}dynoOut(){return new fA(this,"rgba8")}}class Bg extends DA{constructor({key:A,type:g,count:I,value:B,update:Q,globals:t}){A=A??"value",super({outTypes:{[A]:g},update:()=>{if(Q){const C=Q(this.value);C!==void 0&&(this.value=C)}this.uniform.value=this.value},generate:({inputs:C,outputs:i})=>{const s=(t==null?void 0:t({inputs:C,outputs:i}))??[],a={},e=i[A];return e&&(s.push(`uniform ${Bt(e,g,I)};`),a[e]=this.uniform),{globals:s,uniforms:a}}}),this.type=g,this.count=I,this.value=B,this.uniform={value:B},this.outKey=A}dynoOut(){return new fA(this,this.outKey)}}class OB extends Bg{constructor({key:A,value:g,update:I}){super({key:A,type:"int",value:g,update:I})}}class QB extends Bg{constructor({key:A,value:g,update:I}){super({key:A,type:"float",value:g,update:I})}}class GE extends Bg{constructor({key:A,value:g,update:I}){super({key:A,type:"vec3",value:g,update:I})}}class nt extends Bg{constructor({key:A,value:g,update:I}){super({key:A,type:"vec4",value:g,update:I})}}class PB extends Bg{constructor({key:A,value:g,update:I}){super({key:A,type:"usampler2DArray",value:g,update:I})}}class ot{constructor({graph:A,inputs:g,outputs:I,template:B}){this.graph=A,this.template=B,this.inputs=g??{},this.outputs=I??{};const Q=new TC({indent:this.template.indent});for(const C in this.outputs)this.outputs[C]&&Q.declares.add(this.outputs[C]);const t=A.compile({inputs:this.inputs,outputs:this.outputs,compile:Q});this.shader=B.generate({globals:Q.globals,statements:t}),this.uniforms=Q.uniforms,this.updaters=Q.updaters}prepareMaterial(){return NE(this)}update(){for(const A of this.updaters)A()}}class rt{constructor(A){const g=A.match(/^([ \\t]*)\\{\\{\\s*GLOBALS\\s*\\}\\}/m),I=A.match(/^([ \\t]*)\\{\\{\\s*STATEMENTS\\s*\\}\\}/m);if(!g||!I)throw new Error("Template must contain {{ GLOBALS }} and {{ STATEMENTS }}");this.before=A.substring(0,g.index),this.between=A.substring(g.index+g[0].length,I.index),this.after=A.substring(I.index+I[0].length),this.indent=I[1]}generate({globals:A,statements:g}){return this.before+Array.from(A).join(`\n\n`)+this.between+g.map(I=>this.indent+I).join(`\n`)+this.after}}const ht=new Map;function NE(E){let A=ht.get(E);return A||(A=new LB({glslVersion:sC,vertexShader:QE,fragmentShader:E.shader,uniforms:E.uniforms}),ht.set(E,A),A)}function ct(E,A,g="add"){const I=()=>{throw new Error(`Invalid ${g} types: ${E}, ${A}`)};if(E===A)return E;if(E==="int"){if(Kg(A))return A;I()}if(A==="int"){if(Kg(E))return E;I()}if(E==="uint"){if(qg(A))return A;I()}if(A==="uint"){if(qg(E))return E;I()}if(E==="float"){if(XI(A))return A;I()}if(A==="float"){if(XI(E))return E;I()}throw new Error(`Invalid ${g} types: ${E}, ${A}`)}function FE(E,A){return ct(E,A,"sub")}function kE(E,A){const g=()=>{throw new Error(`Invalid mul types: ${E}, ${A}`)},I=B=>B;if(E==="int"){if(Kg(A))return I(A);g()}if(A==="int"){if(Kg(E))return I(E);g()}if(E==="uint"){if(qg(A))return I(A);g()}if(A==="uint"){if(qg(E))return I(E);g()}if(E==="float"){if(XI(A))return I(A);g()}if(A==="float"){if(XI(E))return I(E);g()}if(Kg(E)||qg(E)||Kg(A)||qg(A)){if(E===A)return I(E);g()}if(E==="vec2"){if(A==="vec2"||Wg(A))return I("vec2");if(A==="mat3x2")return I("vec3");if(A==="mat4x2")return I("vec4");g()}if(E==="vec3"){if(A==="mat2x3")return I("vec2");if(A==="vec3"||Vg(A))return I("vec3");if(A==="mat4x3")return I("vec4");g()}if(E==="vec4"){if(A==="mat2x4")return I("vec2");if(A==="mat3x4")return I("vec3");if(A==="vec4"||Tg(A))return I("vec4");g()}if(A==="vec2"){if(Wg(E))return I("vec2");if(E==="mat2x3")return I("vec3");if(E==="mat2x4")return I("vec4");g()}if(A==="vec3"){if(E==="mat3x2")return I("vec2");if(Vg(E))return I("vec3");if(E==="mat3x4")return I("vec4");g()}if(A==="vec4"){if(E==="mat4x2")return I("vec2");if(E==="mat4x3")return I("vec3");if(Tg(E))return I("vec4");g()}if(Wg(E)){if(Wg(A))return I("mat2");if(A==="mat3x2")return I("mat3x2");if(A==="mat4x2")return I("mat4x2");g()}if(E==="mat2x3"){if(Wg(A))return I("mat2x3");if(A==="mat3x2")return I("mat3");if(A==="mat4x2")return I("mat4x3");g()}if(E==="mat2x4"){if(Wg(A))return I("mat2x4");if(A==="mat3x2")return I("mat3x4");if(A==="mat4x2")return I("mat4");g()}if(E==="mat3x2"){if(A==="mat2x3")return I("mat2");if(Vg(A))return I("mat3x2");if(A==="mat4x3")return I("mat4x2");g()}if(Vg(E)){if(A==="mat2x3")return I("mat2x3");if(Vg(A))return I("mat3");if(A==="mat4x3")return I("mat4x3");g()}if(E==="mat3x4"){if(A==="mat2x3")return I("mat2x4");if(Vg(A))return I("mat3x4");if(A==="mat4x3")return I("mat4");g()}if(E==="mat4x2"){if(A==="mat2x4")return I("mat2");if(A==="mat3x4")return I("mat3x2");if(Tg(A))return I("mat4x2");g()}if(E==="mat4x3"){if(A==="mat2x4")return I("mat2x3");if(A==="mat3x4")return I("mat3");if(Tg(A))return I("mat4x3");g()}if(Tg(E)){if(A==="mat2x4")return I("mat2x4");if(A==="mat3x4")return I("mat3x4");if(Tg(A))return I("mat4");g()}throw new Error(`Invalid mul types: ${E}, ${A}`)}const tB=(E,A)=>new RE({a:E,b:A}),pE=(E,A)=>new JE({a:E,b:A}),fE=(E,A)=>new mE({a:E,b:A});class RE extends PI{constructor({a:A,b:g}){super({a:A,b:g,outKey:"sum",outTypeFunc:ct}),this.statements=({inputs:I,outputs:B})=>[`${B.sum} = ${I.a} + ${I.b};`]}}class JE extends PI{constructor({a:A,b:g}){super({a:A,b:g,outKey:"difference",outTypeFunc:FE}),this.statements=({inputs:I,outputs:B})=>[`${B.difference} = ${I.a} - ${I.b};`]}}class mE extends PI{constructor({a:A,b:g}){super({a:A,b:g,outKey:"product",outTypeFunc:kE}),this.statements=({inputs:I,outputs:B})=>[`${B.product} = ${I.a} * ${I.b};`]}}const SE=E=>new xE({a:E}),YE=(E,A)=>new LE({a:E,b:A});class xE extends zC{constructor({a:A}){super({a:A,outTypeFunc:g=>g,outKey:"normalize"}),this.statements=({inputs:g,outputs:I})=>[`${I.normalize} = normalize(${g.a});`]}}function UE(E){if(E==="float")return"vec2";if(E==="vec2")return"vec3";if(E==="vec3")return"vec4";throw new Error("Invalid type")}class LE extends PI{constructor({a:A,b:g}){const I=Mg(A),B=UE(I);super({a:A,b:g,outKey:"extend",outTypeFunc:()=>B}),this.statements=({inputs:Q,outputs:t})=>[`${t.extend} = ${B}(${Q.a}, ${Q.b});`]}}const bE=(E,{scale:A,scales:g,rotate:I,translate:B})=>new ZE({position:E,scale:A,scales:g,rotate:I,translate:B}).outputs.position,HE=(E,{scale:A,scales:g,rotate:I})=>new KE({dir:E,scale:A,scales:g,rotate:I}).outputs.dir;class ZE extends DA{constructor({position:A,scale:g,scales:I,rotate:B,translate:Q}){super({inTypes:{position:"vec3",scale:"float",scales:"vec3",rotate:"vec4",translate:"vec3"},outTypes:{position:"vec3"},inputs:{position:A,scale:g,scales:I,rotate:B,translate:Q},statements:({inputs:t,outputs:C})=>{const{position:i}=C;if(!i)return[];const{scale:s,scales:a,rotate:e,translate:n}=t;return[`${i} = ${t.position??"vec3(0.0, 0.0, 0.0)"};`,s?`${i} *= ${s};`:null,a?`${i} *= ${a};`:null,e?`${i} = quatVec(${e}, ${i});`:null,n?`${i} += ${n};`:null].filter(Boolean)}})}}class KE extends DA{constructor({dir:A,scale:g,scales:I,rotate:B}){super({inTypes:{dir:"vec3",scale:"float",scales:"vec3",rotate:"vec4"},outTypes:{dir:"vec3"},inputs:{dir:A,scale:g,scales:I,rotate:B},statements:({inputs:Q,outputs:t})=>{const{dir:C}=t;if(!C)return[];const{scale:i,scales:s,rotate:a}=Q;return[`${C} = ${Q.dir??"vec3(0.0, 0.0, 0.0)"};`,i?`${C} *= ${i};`:null,s?`${C} *= ${s};`:null,a?`${C} = quatVec(${a}, ${C});`:null].filter(Boolean)}})}}var qE=`precision highp float;\nprecision highp int;\nprecision highp sampler2D;\nprecision highp usampler2D;\nprecision highp isampler2D;\nprecision highp sampler2DArray;\nprecision highp usampler2DArray;\nprecision highp isampler2DArray;\nprecision highp sampler3D;\nprecision highp usampler3D;\nprecision highp isampler3D;\n\n#include \n\nuniform uint targetLayer;\nuniform int targetBase;\nuniform int targetCount;\n\nout uvec4 target;\n\n{{ GLOBALS }}\n\nvoid produceSplat(int index) {\n {{ STATEMENTS }}\n}\n\nvoid main() {\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\n int index = targetIndex - targetBase;\n\n if ((index >= 0) && (index < targetCount)) {\n produceSplat(index);\n } else {\n target = uvec4(0u, 0u, 0u, 0u);\n }\n}`;const j=class j{constructor(A={}){this.maxSplats=0,this.numSplats=0,this.packedArray=null,this.isInitialized=!1,this.target=null,this.source=null,this.needsUpdate=!0,this.extra={},this.dyno=new wt({packedSplats:this}),this.initialized=Promise.resolve(this),this.reinitialize(A)}reinitialize(A){this.isInitialized=!1,A.url||A.fileBytes||A.construct?this.initialized=this.asyncInitialize(A).then(()=>(this.isInitialized=!0,this)):(this.initialize(A),this.isInitialized=!0,this.initialized=Promise.resolve(this))}initialize(A){A.packedArray?(this.packedArray=A.packedArray,this.maxSplats=Math.floor(this.packedArray.length/4),this.maxSplats=Math.floor(this.maxSplats/v)*v,this.numSplats=Math.min(this.maxSplats,A.numSplats??Number.POSITIVE_INFINITY)):(this.maxSplats=A.maxSplats??0,this.numSplats=0),this.extra=A.extra??{}}async asyncInitialize(A){let{url:g,fileBytes:I,construct:B}=A;if(g&&(I=await fetch(g).then(async Q=>{if(!Q.ok)throw new Error(`${Q.status} "${Q.statusText}" fetching URL: ${g}`);return await Q.arrayBuffer()})),I){const Q=await ii({input:I,fileType:A.fileType,pathOrUrl:A.fileName??g});this.initialize(Q)}if(B){const Q=B(this);Q instanceof Promise&&await Q}}dispose(){this.target&&(this.target.dispose(),this.target=null),this.source&&(this.source.dispose(),this.source=null)}ensureSplats(A){const g=A<=this.maxSplats?this.maxSplats:Math.max(A,2*this.maxSplats),I=this.packedArray?this.packedArray.length/4:0;if(!this.packedArray||g>I){this.maxSplats=RA(g).maxSplats;const B=new Uint32Array(this.maxSplats*4);this.packedArray&&B.set(this.packedArray),this.packedArray=B}return this.packedArray}ensureSplatsSh(A,g){let I,B;if(A===0)return this.ensureSplats(g);if(A===1)I=2,B="sh1";else if(A===2)I=4,B="sh2";else if(A===3)I=4,B="sh3";else throw new Error(`Invalid level: ${A}`);let Q=this.extra[B]?this.extra[B].length/I:0;const t=g<=Q?Q:Math.max(g,2*Q);if(!this.extra[B]||t>Q){Q=RA(t).maxSplats;const C=new Uint32Array(Q*I);this.extra[B]&&C.set(this.extra[B]),this.extra[B]=C}return this.extra[B]}getSplat(A){if(!this.packedArray||A>=this.numSplats)throw new Error("Invalid index");return qB(this.packedArray,A)}setSplat(A,g,I,B,Q,t){const C=this.ensureSplats(A+1);eI(C,A,g.x,g.y,g.z,I.x,I.y,I.z,B.x,B.y,B.z,B.w,Q,t.r,t.g,t.b),this.numSplats=Math.max(this.numSplats,A+1)}pushSplat(A,g,I,B,Q){const t=this.ensureSplats(this.numSplats+1);eI(t,this.numSplats,A.x,A.y,A.z,g.x,g.y,g.z,I.x,I.y,I.z,I.w,B,Q.r,Q.g,Q.b),++this.numSplats}forEachSplat(A){if(!(!this.packedArray||!this.numSplats))for(let g=0;g{const Q=g,t=Math.ceil(B/v)*v;return g+=t,{base:Q,count:B}});return{maxSplats:g,mapping:I}}getTexture(){return this.target?this.target.texture:this.source||this.packedArray?this.maybeUpdateSource():j.getEmpty()}maybeUpdateSource(){if(!this.packedArray)throw new Error("No packed splats");if(this.needsUpdate||!this.source){if(this.needsUpdate=!1,this.source){const{width:A,height:g,depth:I}=this.source.image;this.maxSplats!==A*g*I&&(this.source.dispose(),this.source=null)}if(this.source)this.packedArray.buffer!==this.source.image.data.buffer&&(this.source.image.data=new Uint8Array(this.packedArray.buffer));else{const{width:A,height:g,depth:I}=RA(this.maxSplats);this.source=new Eg(this.packedArray,A,g,I),this.source.format=Fg,this.source.type=wg,this.source.internalFormat="RGBA32UI",this.source.needsUpdate=!0}this.source.needsUpdate=!0}return this.source}static getEmpty(){if(!j.emptySource){const{width:A,height:g,depth:I,maxSplats:B}=RA(1),Q=new Uint32Array(B*4);j.emptySource=new Eg(Q,A,g,I),j.emptySource.format=Fg,j.emptySource.type=wg,j.emptySource.internalFormat="RGBA32UI",j.emptySource.needsUpdate=!0}return j.emptySource}prepareProgramMaterial(A){let g=j.generatorProgram.get(A);if(!g){const B=OI({index:"int"},{output:"uvec4"},({index:Q})=>{A.inputs.index=Q;const t=A.outputs.gsplat;return{output:uE(t)}});j.programTemplate||(j.programTemplate=new rt(qE)),g=new ot({graph:B,inputs:{index:"index"},outputs:{output:"target"},template:j.programTemplate}),Object.assign(g.uniforms,{targetLayer:{value:0},targetBase:{value:0},targetCount:{value:0}}),j.generatorProgram.set(A,g)}const I=g.prepareMaterial();return j.mesh.material=I,{program:g,material:I}}saveRenderState(A){return{xrPresenting:A.xr.isPresenting,autoClear:A.autoClear,scissorTest:A.getScissorTest(),pixelRatio:A.getPixelRatio()}}resetRenderState(A,g){A.setRenderTarget(null),A.setPixelRatio(g.pixelRatio),A.xr.isPresenting=g.xrPresenting,A.autoClear=g.autoClear,A.setScissorTest(g.scissorTest)}generate({generator:A,base:g,count:I,renderer:B}){if(!this.target)throw new Error("Target must be initialized with ensureSplats");if(g+I>this.maxSplats)throw new Error("Base + count exceeds maxSplats");const{program:Q,material:t}=this.prepareProgramMaterial(A);Q.update();const C=this.saveRenderState(B),i=Math.ceil((g+I)/v)*v,s=v*zA;for(t.uniforms.targetBase.value=g,t.uniforms.targetCount.value=I;g[jB],value:{texture:nI.getEmpty(),numSplats:0},update:g=>{var I,B;return g.texture=((I=this.packedSplats)==null?void 0:I.getTexture())??nI.getEmpty(),g.numSplats=((B=this.packedSplats)==null?void 0:B.numSplats)??0,g}}),this.packedSplats=A}}var WE=`precision highp float;\nprecision highp int;\nprecision highp sampler2D;\nprecision highp usampler2D;\nprecision highp isampler2D;\nprecision highp sampler2DArray;\nprecision highp usampler2DArray;\nprecision highp isampler2DArray;\nprecision highp sampler3D;\nprecision highp usampler3D;\nprecision highp isampler3D;\n\n#include \n\nuniform uint targetLayer;\nuniform int targetBase;\nuniform int targetCount;\n\nout vec4 target;\n\n{{ GLOBALS }}\n\nvoid computeReadback(int index) {\n {{ STATEMENTS }}\n}\n\nvoid main() {\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\n int index = targetIndex - targetBase;\n\n if ((index >= 0) && (index < targetCount)) {\n computeReadback(index);\n } else {\n target = vec4(0.0, 0.0, 0.0, 0.0);\n }\n}`;const aA=class aA{constructor({renderer:A}={}){this.renderer=A,this.capacity=0,this.count=0}dispose(){this.target&&(this.target.dispose(),this.target=void 0)}ensureBuffer(A,g){const B=Math.ceil(Math.max(1,A)/v)*v*4;if(g.byteLength>=B)return g;const Q=new ArrayBuffer(B);if(g instanceof ArrayBuffer)return Q;const t=g.constructor;return new t(Q)}ensureCapacity(A){const{width:g,height:I,depth:B,maxSplats:Q}=RA(A);(!this.target||Q>this.capacity)&&(this.dispose(),this.capacity=Q,this.target=new xQ(g,I,B,{depthBuffer:!1,stencilBuffer:!1,generateMipmaps:!1,magFilter:Cg,minFilter:Cg}),this.target.texture.format=pI,this.target.texture.type=kI,this.target.texture.internalFormat="RGBA8")}prepareProgramMaterial(A){let g=aA.readbackProgram.get(A);if(!g){const B=OI({index:"int"},{rgba8:"vec4"},({index:Q})=>(A.inputs.index=Q,{rgba8:new ME({rgba8:A.outputs.rgba8})}));aA.programTemplate||(aA.programTemplate=new rt(WE)),g=new ot({graph:B,inputs:{index:"index"},outputs:{rgba8:"target"},template:aA.programTemplate}),Object.assign(g.uniforms,{targetLayer:{value:0},targetBase:{value:0},targetCount:{value:0}}),aA.readbackProgram.set(A,g)}const I=g.prepareMaterial();return aA.mesh.material=I,{program:g,material:I}}saveRenderState(A){return{xrPresenting:A.xr.isPresenting,autoClear:A.autoClear,scissorTest:A.getScissorTest(),pixelRatio:A.getPixelRatio()}}resetRenderState(A,g){A.setRenderTarget(null),A.setPixelRatio(g.pixelRatio),A.xr.isPresenting=g.xrPresenting,A.autoClear=g.autoClear,A.setScissorTest(g.scissorTest)}process({count:A,material:g}){const I=this.renderer;if(!I)throw new Error("No renderer");if(!this.target)throw new Error("No target");const B=v*zA;g.uniforms.targetBase.value=0,g.uniforms.targetCount.value=A;let Q=0;for(;QA)}render({reader:A,count:g,renderer:I}){if(this.renderer=I||this.renderer,!this.renderer)throw new Error("No renderer");this.ensureCapacity(g);const{program:B,material:Q}=this.prepareProgramMaterial(A);B.update();const t=this.saveRenderState(this.renderer);this.process({count:g,material:Q}),this.resetRenderState(this.renderer,t)}async readback({readback:A}){if(!this.renderer)throw new Error("No renderer");const g=this.saveRenderState(this.renderer),I=this.read({readback:A});return this.resetRenderState(this.renderer,g),I}async renderReadback({reader:A,count:g,renderer:I,readback:B}){if(this.renderer=I||this.renderer,!this.renderer)throw new Error("No renderer");this.ensureCapacity(g);const{program:Q,material:t}=this.prepareProgramMaterial(A);Q.update();const C=this.saveRenderState(this.renderer);this.process({count:g,material:t});const i=this.read({readback:B});return this.resetRenderState(this.renderer,C),i}getTexture(){var A;return(A=this.target)==null?void 0:A.texture}};aA.programTemplate=null,aA.readbackProgram=new Map,aA.geometry=new zI(2,2),aA.mesh=new PQ(aA.geometry,new LB({visible:!1})),aA.scene=new $Q().add(aA.mesh),aA.camera=new _Q;let _B=aA;const nA=class nA{constructor(A={}){this.capacity=0,this.count=0,this.array=null,this.readback=null,this.source=null,this.needsUpdate=!0,this.dyno=new Bg({key:"rgbaArray",type:lt,globals:()=>[yt],value:{texture:nA.getEmpty(),count:0},update:g=>{var I;return g.texture=((I=this.readback)==null?void 0:I.getTexture())??this.source??nA.getEmpty(),g.count=this.count,g}}),A.array?(this.array=A.array,this.capacity=Math.floor(this.array.length/4),this.capacity=Math.floor(this.capacity/v)*v,this.count=Math.min(this.capacity,A.count??Number.POSITIVE_INFINITY)):(this.capacity=A.capacity??0,this.count=0)}dispose(){this.readback&&(this.readback.dispose(),this.readback=null),this.source&&(this.source.dispose(),this.source=null)}ensureCapacity(A){var g;if(!this.array||A>(((g=this.array)==null?void 0:g.length)??0)/4){this.capacity=RA(A).maxSplats;const I=new Uint8Array(this.capacity*4);this.array&&I.set(this.array),this.array=I}return this.array}getTexture(){var g;let A=(g=this.readback)==null?void 0:g.getTexture();return(this.source||this.array)&&(A=this.maybeUpdateSource()),A??nA.getEmpty()}maybeUpdateSource(){if(!this.array)throw new Error("No array");if(this.needsUpdate||!this.source){if(this.needsUpdate=!1,this.source){const{width:A,height:g,depth:I}=this.source.image;this.capacity!==A*g*I&&(this.source.dispose(),this.source=null)}if(this.source)this.array.buffer!==this.source.image.data.buffer&&(this.source.image.data=new Uint8Array(this.array.buffer));else{const{width:A,height:g,depth:I}=RA(this.capacity);this.source=new Eg(this.array,A,g,I),this.source.format=pI,this.source.type=kI,this.source.internalFormat="RGBA8",this.source.needsUpdate=!0}this.source.needsUpdate=!0}return this.source}render({reader:A,count:g,renderer:I}){this.readback||(this.readback=new _B({renderer:I})),this.readback.render({reader:A,count:g,renderer:I}),this.capacity=this.readback.capacity,this.count=this.readback.count}fromPackedSplats({packedSplats:A,base:g,count:I,renderer:B}){const{dynoSplats:Q,dynoBase:t,dynoCount:C,reader:i}=nA.makeDynos();return Q.packedSplats=A,t.value=g,C.value=I,this.render({reader:i,count:I,renderer:B}),this}async read(){if(!this.readback)throw new Error("No readback");return(!this.array||this.array.length{if(!Q)throw new Error("index is undefined");Q=tB(Q,g);const t=rE(A,Q,g,I);return{rgba8:BB(t).outputs.rgba}});nA.dynos={dynoSplats:A,dynoBase:g,dynoCount:I,reader:B}}return nA.dynos}};nA.emptySource=null,nA.dynos=null;let Dt=nA;const lt={type:"RgbaArray"},yt=VA(`\n struct RgbaArray {\n sampler2DArray texture;\n int count;\n };\n`);function VE(E,A){return new DA({inTypes:{rgba:lt,index:"int"},outTypes:{rgba:"vec4"},inputs:{rgba:E,index:A},globals:()=>[yt],statements:({inputs:I,outputs:B})=>gg(`\n if ((index >= 0) && (index < ${I.rgba}.count)) {\n ${B.rgba} = texelFetch(${I.rgba}.texture, splatTexCoord(index), 0);\n } else {\n ${B.rgba} = vec4(0.0, 0.0, 0.0, 0.0);\n }\n `)}).outputs.rgba}function TE(E){switch(E){case"all":return 0;case"plane":return 1;case"sphere":return 2;case"box":return 3;case"ellipsoid":return 4;case"cylinder":return 5;case"capsule":return 6;case"infinite_cone":return 7;default:throw new Error(`Unknown SDF type: ${E}`)}}function vE(E){switch(E){case"multiply":return 0;case"set_rgb":return 1;case"add_rgba":return 2;default:throw new Error(`Unknown blend mode: ${E}`)}}class zE extends MA{constructor(A={}){super();const{type:g,invert:I,opacity:B,color:Q,displace:t,radius:C}=A;this.type=g??"sphere",this.invert=I??!1,this.opacity=B??1,this.color=Q??new ug(1,1,1),this.displace=t??new D(0,0,0),this.radius=C??0}}const iB=class iB extends MA{constructor(A={}){const{name:g,rgbaBlendMode:I="multiply",sdfSmooth:B=0,softEdge:Q=0,invert:t=!1,sdfs:C=null}=A;super(),this.rgbaBlendMode=I,this.sdfSmooth=B,this.softEdge=Q,this.invert=t,this.sdfs=C,this.ordering=iB.nextOrdering++,this.name=g??`Edit ${this.ordering}`}addSdf(A){this.sdfs==null&&(this.sdfs=[]),this.sdfs.push(A)}removeSdf(A){this.sdfs!=null&&(this.sdfs=this.sdfs.filter(g=>g!==A))}};iB.nextOrdering=1;let $B=iB;class XE{constructor({maxSdfs:A,maxEdits:g}){this.maxSdfs=Math.max(16,A??0),this.numSdfs=0,this.sdfData=new Uint32Array(this.maxSdfs*8*4),this.sdfFloatData=new Float32Array(this.sdfData.buffer),this.sdfTexture=this.newSdfTexture(this.sdfData,this.maxSdfs),this.dynoSdfArray=new Bg({key:"sdfArray",type:ut,globals:()=>[dt],value:{numSdfs:0,sdfTexture:this.sdfTexture},update:I=>(I.numSdfs=this.numSdfs,I.sdfTexture=this.sdfTexture,I)}),this.maxEdits=Math.max(16,g??0),this.numEdits=0,this.editData=new Uint32Array(this.maxEdits*4),this.editFloatData=new Float32Array(this.editData.buffer),this.dynoNumEdits=new OB({value:0}),this.dynoEdits=this.newEdits(this.editData,this.maxEdits)}newSdfTexture(A,g){const I=new bC(A,8,g,Fg,wg);return I.internalFormat="RGBA32UI",I.needsUpdate=!0,I}newEdits(A,g){return new Bg({key:"edits",type:"uvec4",count:g,globals:()=>[Mt],value:A})}ensureCapacity({maxSdfs:A,maxEdits:g}){let I=!1;return A>this.sdfTexture.image.height&&(this.sdfTexture.dispose(),this.maxSdfs=Math.max(this.maxSdfs*2,A),this.sdfData=new Uint32Array(this.maxSdfs*8*4),this.sdfFloatData=new Float32Array(this.sdfData.buffer),this.sdfTexture=this.newSdfTexture(this.sdfData,this.maxSdfs)),g>(this.dynoEdits.count??0)&&(this.maxEdits=Math.max(this.maxEdits*2,g),this.editData=new Uint32Array(this.maxEdits*4),this.editFloatData=new Float32Array(this.editData.buffer),this.dynoEdits=this.newEdits(this.editData,this.maxEdits),I=!0),I}updateEditData(A,g){const I=this.editData[A]!==g;return this.editData[A]=g,I}updateEditFloatData(A,g){Xg[0]=g;const I=this.editFloatData[A]!==Xg[0];return I&&(this.editFloatData[A]=Xg[0]),I}encodeEdit(A,{sdfFirst:g,sdfCount:I,invert:B,rgbaBlendMode:Q,softEdge:t,sdfSmooth:C}){const i=A*4;let s=!1;return s=this.updateEditData(i+0,Q|(B?256:0))||s,s=this.updateEditData(i+1,g|I<<16)||s,s=this.updateEditFloatData(i+2,t)||s,s=this.updateEditFloatData(i+3,C)||s,s}updateSdfData(A,g){const I=this.sdfData[A]!==g;return this.sdfData[A]=g,I}updateSdfFloatData(A,g){Xg[0]=g;const I=this.sdfFloatData[A]!==Xg[0];return I&&(this.sdfFloatData[A]=Xg[0]),I}encodeSdf(A,{sdfType:g,invert:I,center:B,quaternion:Q,scale:t,sizes:C},i){const s=A*32,a=g|(I?256:0);let e=!1;e=this.updateSdfFloatData(s+0,(B==null?void 0:B.x)??0)||e,e=this.updateSdfFloatData(s+1,(B==null?void 0:B.y)??0)||e,e=this.updateSdfFloatData(s+2,(B==null?void 0:B.z)??0)||e,e=this.updateSdfData(s+3,a)||e,e=this.updateSdfFloatData(s+4,(Q==null?void 0:Q.x)??0)||e,e=this.updateSdfFloatData(s+5,(Q==null?void 0:Q.y)??0)||e,e=this.updateSdfFloatData(s+6,(Q==null?void 0:Q.z)??0)||e,e=this.updateSdfFloatData(s+7,(Q==null?void 0:Q.w)??0)||e,e=this.updateSdfFloatData(s+8,(t==null?void 0:t.x)??0)||e,e=this.updateSdfFloatData(s+9,(t==null?void 0:t.y)??0)||e,e=this.updateSdfFloatData(s+10,(t==null?void 0:t.z)??0)||e,e=this.updateSdfData(s+11,0)||e,e=this.updateSdfFloatData(s+12,(C==null?void 0:C.x)??0)||e,e=this.updateSdfFloatData(s+13,(C==null?void 0:C.y)??0)||e,e=this.updateSdfFloatData(s+14,(C==null?void 0:C.z)??0)||e,e=this.updateSdfFloatData(s+15,(C==null?void 0:C.w)??0)||e;const n=Math.min(4,i.length);for(let o=0;oe+n.length,0),I=this.ensureCapacity({maxEdits:A.length,maxSdfs:g}),B=[new lA,new lA],Q=new D,t=new sA,C=new D,i=new lA;let s=0,a=I;A.length!==this.dynoNumEdits.value&&(this.dynoNumEdits.value=A.length,this.numEdits=A.length,a=!0);for(const[e,{edit:n,sdfs:o}]of A.entries()){a=this.encodeEdit(e,{sdfFirst:s,sdfCount:o.length,invert:n.invert,rgbaBlendMode:vE(n.rgbaBlendMode),softEdge:n.softEdge,sdfSmooth:n.sdfSmooth})||a;let r=!1;for(const h of o)i.set(h.scale.x,h.scale.y,h.scale.z,h.radius),h.scale.setScalar(1),h.updateMatrixWorld(),h.matrixWorld.clone().invert().decompose(Q,t,C),h.scale.set(i.x,i.y,i.z),h.updateMatrixWorld(),B[0].set(h.color.r,h.color.g,h.color.b,h.opacity),B[1].set(h.displace.x,h.displace.y,h.displace.z,1),r=this.encodeSdf(s,{sdfType:TE(h.type),invert:h.invert,center:Q,quaternion:t,scale:C,sizes:i},B)||r,s+=1;this.numSdfs=s,r&&(this.sdfTexture.needsUpdate=!0),a||(a=r)}return{updated:a,dynoUpdated:I}}modify(A){return jE(A,this.dynoSdfArray,this.dynoNumEdits,this.dynoEdits)}}const ut={type:"SdfArray"},dt=VA(`\n struct SdfArray {\n int numSdfs;\n usampler2D sdfTexture;\n };\n\n void unpackSdfArray(\n usampler2D sdfTexture, int sdfIndex, out uint flags,\n out vec3 center, out vec4 quaternion, out vec3 scale, out vec4 sizes,\n int numValues, out vec4 values[4]\n ) {\n uvec4 temp = texelFetch(sdfTexture, ivec2(0, sdfIndex), 0);\n flags = temp.w;\n center = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z));\n\n temp = texelFetch(sdfTexture, ivec2(1, sdfIndex), 0);\n quaternion = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n\n temp = texelFetch(sdfTexture, ivec2(2, sdfIndex), 0);\n scale = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z));\n\n temp = texelFetch(sdfTexture, ivec2(3, sdfIndex), 0);\n sizes = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n\n for (int i = 0; i < numValues; ++i) {\n temp = texelFetch(sdfTexture, ivec2(4 + i, sdfIndex), 0);\n values[i] = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n }\n }\n\n const uint SDF_FLAG_TYPE = 0xFFu;\n const uint SDF_FLAG_INVERT = 1u << 8u;\n\n const uint SDF_TYPE_ALL = 0u;\n const uint SDF_TYPE_PLANE = 1u;\n const uint SDF_TYPE_SPHERE = 2u;\n const uint SDF_TYPE_BOX = 3u;\n const uint SDF_TYPE_ELLIPSOID = 4u;\n const uint SDF_TYPE_CYLINDER = 5u;\n const uint SDF_TYPE_CAPSULE = 6u;\n const uint SDF_TYPE_INFINITE_CONE = 7u;\n\n float evaluateSdfArray(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos,\n float smoothK, int numValues, out vec4 outValues[4]\n ) {\n float distanceAccum = (smoothK == 0.0) ? 1.0 / 0.0 : 0.0;\n float maxExp = -1.0 / 0.0;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] = vec4(0.0);\n }\n\n uint flags;\n vec3 center, scale;\n vec4 quaternion, sizes;\n vec4 values[4];\n\n int sdfLast = min(sdfFirst + sdfCount, numSdfs);\n for (int index = sdfFirst; index < sdfLast; ++index) {\n unpackSdfArray(sdfTexture, index, flags, center, quaternion, scale, sizes, numValues, values);\n uint sdfType = flags & SDF_FLAG_TYPE;\n vec3 sdfPos = quatVec(quaternion, pos * scale) + center;\n\n float distance;\n switch (sdfType) {\n case SDF_TYPE_ALL:\n distance = -1.0 / 0.0;\n break;\n case SDF_TYPE_PLANE: {\n distance = sdfPos.z;\n break;\n }\n case SDF_TYPE_SPHERE: {\n distance = length(sdfPos) - sizes.w;\n break;\n }\n case SDF_TYPE_BOX: {\n vec3 q = abs(sdfPos) - sizes.xyz + sizes.w;\n distance = length(max(q, 0.0)) + min(max(q.x, max(q.y, q.z)), 0.0) - sizes.w;\n break;\n }\n case SDF_TYPE_ELLIPSOID: {\n vec3 sizes = sizes.xyz;\n float k0 = length(sdfPos / sizes);\n float k1 = length(sdfPos / dot(sizes, sizes));\n distance = k0 * (k0 - 1.0) / k1;\n break;\n }\n case SDF_TYPE_CYLINDER: {\n vec2 d = abs(vec2(length(sdfPos.xz), sdfPos.y)) - sizes.wy;\n distance = min(max(d.x, d.y), 0.0) + length(max(d, 0.0));\n break;\n }\n case SDF_TYPE_CAPSULE: {\n sdfPos.y -= clamp(sdfPos.y, -0.5 * sizes.y, 0.5 * sizes.y);\n distance = length(sdfPos) - sizes.w;\n break;\n }\n case SDF_TYPE_INFINITE_CONE: {\n float angle = 0.25 * PI * sizes.w;\n vec2 c = vec2(sin(angle), cos(angle));\n vec2 q = vec2(length(sdfPos.xy), -sdfPos.z);\n float d = length(q - c * max(dot(q, c), 0.0));\n distance = d * (((q.x * c.y - q.y * c.x) < 0.0) ? -1.0 : 1.0);\n break;\n }\n }\n\n if ((flags & SDF_FLAG_INVERT) != 0u) {\n distance = -distance;\n }\n\n if (smoothK == 0.0) {\n if (distance < distanceAccum) {\n distanceAccum = distance;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] = values[i];\n }\n }\n } else {\n float scaledDistance = -distance / smoothK;\n if (scaledDistance > maxExp) {\n float scale = exp(maxExp - scaledDistance);\n distanceAccum *= scale;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] *= scale;\n }\n maxExp = scaledDistance;\n }\n\n float weight = exp(scaledDistance - maxExp);\n distanceAccum += weight;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] += weight * values[i];\n }\n }\n }\n\n if (smoothK == 0.0) {\n return distanceAccum;\n } else {\n // Very distant SDFs may result in 0 accumulation\n if (distanceAccum == 0.0) {\n return 1.0 / 0.0;\n }\n for (int i = 0; i < numValues; ++i) {\n outValues[i] /= distanceAccum;\n }\n return (-log(distanceAccum) - maxExp) * smoothK;\n }\n }\n\n float modulateSdfArray(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos,\n float smoothK, int numValues, out vec4 values[4],\n float softEdge, bool invert\n ) {\n float distance = evaluateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, numValues, values);\n if (invert) {\n distance = -distance;\n }\n\n return (softEdge == 0.0) ? ((distance < 0.0) ? 1.0 : 0.0)\n : clamp(-distance / softEdge + 0.5, 0.0, 1.0);\n }\n`),Mt=VA(`\n const uint EDIT_FLAG_BLEND = 0xFFu;\n const uint EDIT_BLEND_MULTIPLY = 0u;\n const uint EDIT_BLEND_SET_RGB = 1u;\n const uint EDIT_BLEND_ADD_RGBA = 2u;\n const uint EDIT_FLAG_INVERT = 0x100u;\n\n void decodeEdit(\n uvec4 packedEdit, out int sdfFirst, out int sdfCount,\n out bool invert, out uint rgbaBlendMode, out float softEdge, out float sdfSmooth\n ) {\n rgbaBlendMode = packedEdit.x & EDIT_FLAG_BLEND;\n invert = (packedEdit.x & EDIT_FLAG_INVERT) != 0u;\n\n sdfFirst = int(packedEdit.y & 0xFFFFu);\n sdfCount = int(packedEdit.y >> 16u);\n\n softEdge = uintBitsToFloat(packedEdit.z);\n sdfSmooth = uintBitsToFloat(packedEdit.w);\n }\n\n void applyRgbaDisplaceEdit(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, inout vec3 pos,\n float smoothK, float softEdge, bool invert, uint rgbaBlendMode, inout vec4 rgba\n ) {\n vec4 values[4];\n float modulate = modulateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, 2, values, softEdge, invert);\n // On Android, moving values[0] is necessary to work around a compiler bug.\n vec4 sdfRgba = values[0];\n vec4 sdfDisplaceScale = values[1];\n\n vec4 target;\n switch (rgbaBlendMode) {\n case EDIT_BLEND_MULTIPLY:\n target = rgba * sdfRgba;\n break;\n case EDIT_BLEND_SET_RGB:\n target = vec4(sdfRgba.rgb, rgba.a * sdfRgba.a);\n break;\n case EDIT_BLEND_ADD_RGBA:\n target = rgba + sdfRgba;\n break;\n default:\n // Debug output if blend mode not set\n target = vec4(fract(pos), 1.0);\n }\n rgba = mix(rgba, target, modulate);\n pos += sdfDisplaceScale.xyz * modulate;\n }\n\n void applyPackedRgbaDisplaceEdit(uvec4 packedEdit, usampler2D sdfTexture, int numSdfs, inout vec3 pos, inout vec4 rgba) {\n int sdfFirst, sdfCount;\n bool invert;\n uint rgbaBlendMode;\n float softEdge, sdfSmooth;\n decodeEdit(packedEdit, sdfFirst, sdfCount, invert, rgbaBlendMode, softEdge, sdfSmooth);\n applyRgbaDisplaceEdit(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, sdfSmooth, softEdge, invert, rgbaBlendMode, rgba);\n }\n`);function jE(E,A,g,I){return new DA({inTypes:{gsplat:GA,sdfArray:ut,numEdits:"int",rgbaDisplaceEdits:"uvec4"},outTypes:{gsplat:GA},globals:()=>[dt,Mt],inputs:{gsplat:E,sdfArray:A,numEdits:g,rgbaDisplaceEdits:I},statements:({inputs:Q,outputs:t})=>{const{sdfArray:C,numEdits:i,rgbaDisplaceEdits:s}=Q,{gsplat:a}=t;return gg(`\n ${a} = ${Q.gsplat};\n if (isGsplatActive(${a}.flags)) {\n for (int editIndex = 0; editIndex < ${i}; ++editIndex) {\n applyPackedRgbaDisplaceEdit(\n ${s}[editIndex], ${C}.sdfTexture, ${C}.numSdfs,\n ${a}.center, ${a}.rgba\n );\n }\n }\n `)}}).outputs.gsplat}const Xg=new Float32Array(1);class CB{constructor(){this.scale=new QB({value:Number.NEGATIVE_INFINITY}),this.rotate=new nt({value:new sA(Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY)}),this.translate=new GE({value:new D(Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY)})}apply(A){return bE(A,{scale:this.scale,rotate:this.rotate,translate:this.translate})}applyDir(A){return HE(A,{rotate:this.rotate})}applyGsplat(A){return hE(A,{scale:this.scale,rotate:this.rotate,translate:this.translate})}updateFromMatrix(A){const g=new D,I=new sA,B=new D;A.decompose(B,I,g);const Q=(g.x+g.y+g.z)/3;let t=!1;return Q!==this.scale.value&&(this.scale.value=Q,t=!0),B.equals(this.translate.value)||(this.translate.value.copy(B),t=!0),I.equals(this.rotate.value)||(this.rotate.value.copy(I),t=!0),t}update(A){return A.updateMatrixWorld(),this.updateFromMatrix(A.matrixWorld)}}class OE extends MA{constructor({numSplats:A,generator:g,construct:I,update:B}){if(super(),this.numSplats=A??0,this.generator=g,this.frameUpdate=B,this.version=0,I){const Q=I(this);Object.assign(this,Q)}}updateVersion(){this.version+=1}set needsUpdate(A){A&&this.updateVersion()}}const hg=class hg extends OE{constructor(A={}){const g=new CB,I=new CB,B=new CB,Q=new CB,t=new nt({value:new lA(Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY)}),C=new QB({value:0}),i=new QB({value:0}),s={transform:g,viewToWorld:I,worldToView:B,viewToObject:Q,recolor:t,time:C,deltaTime:i};if(super({update:({time:a,deltaTime:e,viewToWorld:n,globalEdits:o})=>this.update({time:a,deltaTime:e,viewToWorld:n,globalEdits:o})}),this.isInitialized=!1,this.recolor=new ug(1,1,1),this.opacity=1,this.enableViewToObject=!1,this.enableViewToWorld=!1,this.enableWorldToView=!1,this.skinning=null,this.edits=null,this.rgbaDisplaceEdits=null,this.splatRgba=null,this.maxSh=3,this.packedSplats=A.packedSplats??new nI,this.numSplats=this.packedSplats.numSplats,this.editable=A.editable??!0,this.onFrame=A.onFrame,this.context=s,this.objectModifier=A.objectModifier,this.worldModifier=A.worldModifier,this.updateGenerator(),A.url||A.fileBytes||A.constructSplats||A.packedSplats&&!A.packedSplats.isInitialized)this.initialized=this.asyncInitialize(A).then(async()=>{if(this.updateGenerator(),this.isInitialized=!0,A.onLoad){const a=A.onLoad(this);a instanceof Promise&&await a}return this});else if(this.isInitialized=!0,this.initialized=Promise.resolve(this),A.onLoad){const a=A.onLoad(this);a instanceof Promise&&(this.initialized=a.then(()=>this))}}async asyncInitialize(A){const{url:g,fileBytes:I,fileType:B,fileName:Q,maxSplats:t,constructSplats:C}=A;if(g||I||C){const i={url:g,fileBytes:I,fileType:B,fileName:Q,maxSplats:t,construct:C};this.packedSplats.reinitialize(i)}this.packedSplats&&(await this.packedSplats.initialized,this.numSplats=this.packedSplats.numSplats,this.updateGenerator())}static async staticInitialize(){await NI(),hg.isStaticInitialized=!0}pushSplat(A,g,I,B,Q){this.packedSplats.pushSplat(A,g,I,B,Q)}forEachSplat(A){this.packedSplats.forEachSplat(A)}dispose(){this.packedSplats.dispose()}constructGenerator(A){const{transform:g,viewToObject:I,recolor:B}=A,Q=OI({index:"int"},{gsplat:GA},({index:t})=>{if(!t)throw new Error("index is undefined");let C=oE(this.packedSplats.dyno,t);if(this.maxSh>=1){const{sh1Texture:s,sh2Texture:a,sh3Texture:e}=this.ensureShTextures();if(s){const n=I.translate,{center:o}=BB(C).outputs,r=SE(pE(o,n));let h=Ai(C,s,r);this.maxSh>=2&&a&&(h=tB(h,gi(C,a,r))),this.maxSh>=3&&e&&(h=tB(h,Ii(C,e,r)));let{rgba:c}=BB(C).outputs;c=tB(c,YE(h,VC("float",0))),C=XB({gsplat:C,rgba:c})}}if(this.splatRgba){const s=VE(this.splatRgba.dyno,t);C=XB({gsplat:C,rgba:s})}this.skinning&&(C=this.skinning.modify(C)),this.objectModifier&&(C=this.objectModifier.apply({gsplat:C}).gsplat),C=g.applyGsplat(C);const i=fE(B,BB(C).outputs.rgba);return C=XB({gsplat:C,rgba:i}),this.rgbaDisplaceEdits&&(C=this.rgbaDisplaceEdits.modify(C)),this.worldModifier&&(C=this.worldModifier.apply({gsplat:C}).gsplat),{gsplat:C}});this.generator=Q}updateGenerator(){this.constructGenerator(this.context)}update({time:A,viewToWorld:g,deltaTime:I,globalEdits:B}){var c;this.numSplats=this.packedSplats.numSplats,this.context.time.value=A,this.context.deltaTime.value=I,hg.dynoTime.value=A;const{transform:Q,viewToObject:t,recolor:C}=this.context;let i=Q.update(this);this.context.viewToWorld.updateFromMatrix(g)&&this.enableViewToWorld&&(i=!0);const s=g.clone().invert();this.context.worldToView.updateFromMatrix(s)&&this.enableWorldToView&&(i=!0);const n=new cA().compose(Q.translate.value,Q.rotate.value,new D().setScalar(Q.scale.value)).invert().multiply(g);t.updateFromMatrix(n)&&(this.enableViewToObject||this.packedSplats.extra.sh1)&&(i=!0);const o=new lA(this.recolor.r,this.recolor.g,this.recolor.b,this.opacity);o.equals(C.value)||(C.value.copy(o),i=!0);const r=this.editable?(this.edits??[]).concat(B):[];this.editable&&!this.edits&&this.traverseVisible(w=>{w instanceof $B&&r.push(w)}),r.sort((w,y)=>w.ordering-y.ordering);const h=r.map(w=>{if(w.sdfs!=null)return{edit:w,sdfs:w.sdfs};const y=[];return w.traverseVisible(l=>{l instanceof zE&&y.push(l)}),{edit:w,sdfs:y}});if(h.length>0&&!this.rgbaDisplaceEdits){const w=h.length,y=h.reduce((l,u)=>l+u.sdfs.length,0);this.rgbaDisplaceEdits=new XE({maxEdits:w,maxSdfs:y}),this.updateGenerator()}if(this.rgbaDisplaceEdits){const w=this.rgbaDisplaceEdits.update(h);i||(i=w.updated),w.dynoUpdated&&this.updateGenerator()}i&&this.updateVersion(),(c=this.onFrame)==null||c.call(this,{mesh:this,time:A,deltaTime:I})}raycast(A,g){if(!this.packedSplats.packedArray||!this.packedSplats.numSplats)return;const{near:I,far:B,ray:Q}=A,t=this.matrixWorld.clone().invert(),C=new TA().setFromMatrix4(t),i=Q.origin.clone().applyMatrix4(t),s=Q.direction.clone().applyMatrix3(C),a=new D;t.decompose(new D,new sA,a),(a.x*a.y*a.z)**(1/3);const n=Kt(i.x,i.y,i.z,s.x,s.y,s.z,I,B,this.packedSplats.numSplats,this.packedSplats.packedArray,!0);for(const o of n){const r=Q.direction.clone().multiplyScalar(o).add(Q.origin);g.push({distance:o,point:r,object:this})}}ensureShTextures(){if(!this.packedSplats.extra.sh1)return{};let A=this.packedSplats.extra.sh1Texture;if(!A){let B=this.packedSplats.extra.sh1;const{width:Q,height:t,depth:C,maxSplats:i}=RA(B.length/2);if(B.length> 25,\n int(packed.x << 18u) >> 25,\n int(packed.x << 11u) >> 25\n )) / 63.0;\n vec3 sh1_1 = vec3(ivec3(\n int(packed.x << 4u) >> 25,\n int((packed.x >> 3u) | (packed.y << 29u)) >> 25,\n int(packed.y << 22u) >> 25\n )) / 63.0;\n vec3 sh1_2 = vec3(ivec3(\n int(packed.y << 15u) >> 25,\n int(packed.y << 8u) >> 25,\n int(packed.y << 1u) >> 25\n )) / 63.0;\n\n return sh1_0 * (-0.4886025 * viewDir.y)\n + sh1_1 * (0.4886025 * viewDir.z)\n + sh1_2 * (-0.4886025 * viewDir.x);\n }\n`),_E=VA(`\n vec3 evaluateSH2(Gsplat gsplat, usampler2DArray sh2, vec3 viewDir) {\n // Extract sint8 values packed into 4 x uint32\n uvec4 packed = texelFetch(sh2, splatTexCoord(gsplat.index), 0);\n vec3 sh2_0 = vec3(ivec3(\n int(packed.x << 24u) >> 24,\n int(packed.x << 16u) >> 24,\n int(packed.x << 8u) >> 24\n )) / 127.0;\n vec3 sh2_1 = vec3(ivec3(\n int(packed.x) >> 24,\n int(packed.y << 24u) >> 24,\n int(packed.y << 16u) >> 24\n )) / 127.0;\n vec3 sh2_2 = vec3(ivec3(\n int(packed.y << 8u) >> 24,\n int(packed.y) >> 24,\n int(packed.z << 24u) >> 24\n )) / 127.0;\n vec3 sh2_3 = vec3(ivec3(\n int(packed.z << 16u) >> 24,\n int(packed.z << 8u) >> 24,\n int(packed.z) >> 24\n )) / 127.0;\n vec3 sh2_4 = vec3(ivec3(\n int(packed.w << 24u) >> 24,\n int(packed.w << 16u) >> 24,\n int(packed.w << 8u) >> 24\n )) / 127.0;\n\n return sh2_0 * (1.0925484 * viewDir.x * viewDir.y)\n + sh2_1 * (1.0925484 * viewDir.y * viewDir.z)\n + sh2_2 * (0.3153915 * (2.0 * viewDir.z * viewDir.z - viewDir.x * viewDir.x - viewDir.y * viewDir.y))\n + sh2_3 * (1.0925484 * viewDir.x * viewDir.z)\n + sh2_4 * (0.5462742 * (viewDir.x * viewDir.x - viewDir.y * viewDir.y));\n }\n`),$E=VA(`\n vec3 evaluateSH3(Gsplat gsplat, usampler2DArray sh3, vec3 viewDir) {\n // Extract sint6 values packed into 4 x uint32\n uvec4 packed = texelFetch(sh3, splatTexCoord(gsplat.index), 0);\n vec3 sh3_0 = vec3(ivec3(\n int(packed.x << 26u) >> 26,\n int(packed.x << 20u) >> 26,\n int(packed.x << 14u) >> 26\n )) / 31.0;\n vec3 sh3_1 = vec3(ivec3(\n int(packed.x << 8u) >> 26,\n int(packed.x << 2u) >> 26,\n int((packed.x >> 4u) | (packed.y << 28u)) >> 26\n )) / 31.0;\n vec3 sh3_2 = vec3(ivec3(\n int(packed.y << 22u) >> 26,\n int(packed.y << 16u) >> 26,\n int(packed.y << 10u) >> 26\n )) / 31.0;\n vec3 sh3_3 = vec3(ivec3(\n int(packed.y << 4u) >> 26,\n int((packed.y >> 2u) | (packed.z << 30u)) >> 26,\n int(packed.z << 24u) >> 26\n )) / 31.0;\n vec3 sh3_4 = vec3(ivec3(\n int(packed.z << 18u) >> 26,\n int(packed.z << 12u) >> 26,\n int(packed.z << 6u) >> 26\n )) / 31.0;\n vec3 sh3_5 = vec3(ivec3(\n int(packed.z) >> 26,\n int(packed.w << 26u) >> 26,\n int(packed.w << 20u) >> 26\n )) / 31.0;\n vec3 sh3_6 = vec3(ivec3(\n int(packed.w << 14u) >> 26,\n int(packed.w << 8u) >> 26,\n int(packed.w << 2u) >> 26\n )) / 31.0;\n\n float xx = viewDir.x * viewDir.x;\n float yy = viewDir.y * viewDir.y;\n float zz = viewDir.z * viewDir.z;\n float xy = viewDir.x * viewDir.y;\n float yz = viewDir.y * viewDir.z;\n float zx = viewDir.z * viewDir.x;\n\n return sh3_0 * (-0.5900436 * viewDir.y * (3.0 * xx - yy))\n + sh3_1 * (2.8906114 * xy * viewDir.z) +\n + sh3_2 * (-0.4570458 * viewDir.y * (4.0 * zz - xx - yy))\n + sh3_3 * (0.3731763 * viewDir.z * (2.0 * zz - 3.0 * xx - 3.0 * yy))\n + sh3_4 * (-0.4570458 * viewDir.x * (4.0 * zz - xx - yy))\n + sh3_5 * (1.4453057 * viewDir.z * (xx - yy))\n + sh3_6 * (-0.5900436 * viewDir.x * (xx - 3.0 * yy));\n }\n`);function Ai(E,A,g){return ZB({inTypes:{gsplat:GA,sh1:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:E,sh1:A,viewDir:g},globals:()=>[Ig,PE],statements:({inputs:I,outputs:B})=>gg(`\n if (isGsplatActive(${I.gsplat}.flags)) {\n ${B.rgb} = evaluateSH1(${I.gsplat}, ${I.sh1}, ${I.viewDir});\n } else {\n ${B.rgb} = vec3(0.0);\n }\n `)}).outputs.rgb}function gi(E,A,g){return ZB({inTypes:{gsplat:GA,sh2:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:E,sh2:A,viewDir:g},globals:()=>[Ig,_E],statements:({inputs:I,outputs:B})=>gg(`\n if (isGsplatActive(${I.gsplat}.flags)) {\n ${B.rgb} = evaluateSH2(${I.gsplat}, ${I.sh2}, ${I.viewDir});\n } else {\n ${B.rgb} = vec3(0.0);\n }\n `)}).outputs.rgb}function Ii(E,A,g){return ZB({inTypes:{gsplat:GA,sh3:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:E,sh3:A,viewDir:g},globals:()=>[Ig,$E],statements:({inputs:I,outputs:B})=>gg(`\n if (isGsplatActive(${I.gsplat}.flags)) {\n ${B.rgb} = evaluateSH3(${I.gsplat}, ${I.sh3}, ${I.viewDir});\n } else {\n ${B.rgb} = vec3(0.0);\n }\n `)}).outputs.rgb}function Bi(E){return new Worker(self.location.href,{name:E==null?void 0:E.name})}class Qi{constructor(){this.messages={},this.messageIdNext=0,this.worker=new Bi,this.worker.onmessage=A=>this.onMessage(A)}makeMessageId(){return++this.messageIdNext}makeMessagePromiseId(){const A=this.makeMessageId(),g=new Promise((I,B)=>{this.messages[A]={resolve:I,reject:B}});return{id:A,promise:g}}onMessage(A){const{id:g,result:I,error:B}=A.data,Q=this.messages[g];Q&&(delete this.messages[g],B?Q.reject(B):Q.resolve(I))}async call(A,g){const{id:I,promise:B}=this.makeMessagePromiseId();return this.worker.postMessage({name:A,args:g,id:I},{transfer:tt(g)}),B}}let Nt=4,EB=0;const Ft=[],kt=[];async function ti(){const E=Ft.shift();if(E)return E;if(EB{kt.push(A)})}function Ci(E){if(EB>Nt){EB-=1;return}const A=kt.shift();if(A){A(E);return}Ft.push(E)}async function oI(E){const A=await ti();try{return await E(A)}finally{Ci(A)}}var jg=(E=>(E.PLY="ply",E.WLG0="wlg0",E.SPZ="spz",E.SPLAT="splat",E.KSPLAT="ksplat",E))(jg||{});function pt(E){const A=new DataView(E.buffer);if((A.getUint32(0,!0)&16777215)===7957616)return"ply";if(A.getUint32(0,!0)===809978967)return"wlg0";if((A.getUint32(0,!0)&16777215)===559903){const g=CE(E,4);return new DataView(g.buffer).getUint32(0,!0)===1347635022?"spz":void 0}}function Ei(E){const A=E.split(/[?#]/,1)[0],g=Math.max(A.lastIndexOf("/"),A.lastIndexOf("\\\\")),I=A.slice(g+1),B=I.lastIndexOf(".");return B<=0||B===I.length-1?"":I.slice(B+1).toLowerCase()}function ft(E){const A=Ei(E);if(A==="ply")return"ply";if(A==="wlg")return"wlg0";if(A==="spz")return"spz";if(A==="splat")return"splat";if(A==="ksplat")return"ksplat"}async function ii({input:E,fileType:A,pathOrUrl:g}){const I=E instanceof ArrayBuffer?new Uint8Array(E):E;let B=A;switch(A||(B=pt(I),!B&&g&&(B=ft(g))),B){case"wlg0":return await oI(async Q=>{const{packedArray:t,numSplats:C}=await Q.call("decodeWlg",{fileBytes:I});return{packedArray:t,numSplats:C}});case"ply":{const Q=new aI({fileBytes:I});await Q.parseHeader();const t=Q.numSplats,C=RA(t).maxSplats,i={fileBytes:I,packedArray:new Uint32Array(C*4)};return await oI(async s=>{const{packedArray:a,numSplats:e,extra:n}=await s.call("unpackPly",i);return{packedArray:a,numSplats:e,extra:n}})}case"spz":return await oI(async Q=>{const{packedArray:t,numSplats:C,extra:i}=await Q.call("decodeSpz",{fileBytes:I});return{packedArray:t,numSplats:C,extra:i}});case"splat":return await oI(async Q=>{const{packedArray:t,numSplats:C}=await Q.call("decodeAntiSplat",{fileBytes:I});return{packedArray:t,numSplats:C}});case"ksplat":return await oI(async Q=>{const{packedArray:t,numSplats:C,extra:i}=await Q.call("decodeKsplat",{fileBytes:I});return{packedArray:t,numSplats:C,extra:i}});default:throw new Error(`Unknown splat file type: ${B}`)}}class si{constructor({maxSplats:A=1}={}){this.numSplats=0,this.maxSplats=RA(A).maxSplats,this.centers=new Float32Array(this.maxSplats*3),this.scales=new Float32Array(this.maxSplats*3),this.quaternions=new Float32Array(this.maxSplats*4),this.opacities=new Float32Array(this.maxSplats),this.colors=new Float32Array(this.maxSplats*3)}pushSplat(){const A=this.numSplats;return this.ensureIndex(A),this.numSplats+=1,A}unpushSplat(A){if(A===this.numSplats-1)this.numSplats-=1;else throw new Error("Cannot unpush splat from non-last position")}ensureCapacity(A){if(A>this.maxSplats){const g=Math.max(A,this.maxSplats*2),I=new Float32Array(g*3),B=new Float32Array(g*3),Q=new Float32Array(g*4),t=new Float32Array(g),C=new Float32Array(g*3);if(I.set(this.centers),B.set(this.scales),Q.set(this.quaternions),t.set(this.opacities),C.set(this.colors),this.centers=I,this.scales=B,this.quaternions=Q,this.opacities=t,this.colors=C,this.sh1){const i=new Float32Array(g*9);i.set(this.sh1),this.sh1=i}if(this.sh2){const i=new Float32Array(g*15);i.set(this.sh2),this.sh2=i}if(this.sh3){const i=new Float32Array(g*21);i.set(this.sh3),this.sh3=i}this.maxSplats=g}}ensureIndex(A){this.ensureCapacity(A+1)}setCenter(A,g,I,B){this.centers[A*3]=g,this.centers[A*3+1]=I,this.centers[A*3+2]=B}setScale(A,g,I,B){this.scales[A*3]=g,this.scales[A*3+1]=I,this.scales[A*3+2]=B}setQuaternion(A,g,I,B,Q){this.quaternions[A*4]=g,this.quaternions[A*4+1]=I,this.quaternions[A*4+2]=B,this.quaternions[A*4+3]=Q}setOpacity(A,g){this.opacities[A]=g}setColor(A,g,I,B){this.colors[A*3]=g,this.colors[A*3+1]=I,this.colors[A*3+2]=B}setSh1(A,g){this.sh1||(this.sh1=new Float32Array(this.maxSplats*9));for(let I=0;I<9;++I)this.sh1[A*9+I]=g[I]}setSh2(A,g){this.sh2||(this.sh2=new Float32Array(this.maxSplats*15));for(let I=0;I<15;++I)this.sh2[A*15+I]=g[I]}setSh3(A,g){this.sh3||(this.sh3=new Float32Array(this.maxSplats*21));for(let I=0;I<21;++I)this.sh3[A*21+I]=g[I]}}class Rt{constructor({fileBytes:A}){this.fileBytes=A instanceof ArrayBuffer?new Uint8Array(A):A,this.reader=new EE({fileBytes:this.fileBytes});const g=new DataView(this.reader.read(16).buffer);if(g.getUint32(0,!0)!==1347635022)throw new Error("Invalid SPZ file");if(this.version=g.getUint32(4,!0),this.version<1||this.version>2)throw new Error(`Unsupported SPZ version: ${this.version}`);this.numSplats=g.getUint32(8,!0),this.shDegree=g.getUint8(12),this.fractionalBits=g.getUint8(13),this.flags=g.getUint8(14),this.flagAntiAlias=(this.flags&1)!==0,this.reserved=g.getUint8(15),this.parsed=!1}parseSplats(A,g,I,B,Q,t){if(this.parsed)throw new Error("SPZ file already parsed");if(this.parsed=!0,this.version===1){const C=this.reader.read(this.numSplats*3*2),i=new Uint16Array(C.buffer);for(let s=0;s>8)/C,n=((i[a+5]<<24|i[a+4]<<16|i[a+3]<<8)>>8)/C,o=((i[a+8]<<24|i[a+7]<<16|i[a+6]<<8)>>8)/C;A==null||A(s,e,n,o)}}else throw new Error("Unreachable");{const C=this.reader.read(this.numSplats);for(let i=0;i=1){const C=new Float32Array(9),i=this.shDegree>=2?new Float32Array(5*3):void 0,s=this.shDegree>=3?new Float32Array(7*3):void 0,a=this.reader.read(this.numSplats*Jt[this.shDegree]*3);let e=0;for(let n=0;n=1?9:0)+(g>=2?15:0)+(g>=3?21:0),t=16+A*Q;this.buffer=new ArrayBuffer(t),this.view=new DataView(this.buffer),this.view.setUint32(0,ei,!0),this.view.setUint32(4,ai,!0),this.view.setUint32(8,A,!0),this.view.setUint8(12,g),this.view.setUint8(13,I),this.view.setUint8(14,B?ni:0),this.view.setUint8(15,0),this.numSplats=A,this.shDegree=g,this.fractionalBits=I,this.fraction=1<>8&255),this.view.setUint8(o+2,t>>16&255),this.view.setUint8(o+3,i&255),this.view.setUint8(o+4,i>>8&255),this.view.setUint8(o+5,i>>16&255),this.view.setUint8(o+6,a&255),this.view.setUint8(o+7,a>>8&255),this.view.setUint8(o+8,a>>16&255)}setAlpha(A,g){const I=16+this.numSplats*9+A;this.view.setUint8(I,Math.max(0,Math.min(255,Math.round(g*255))))}static scaleRgb(A){const g=((A-.5)/(mt/.15)+.5)*255;return Math.max(0,Math.min(255,Math.round(g)))}setRgb(A,g,I,B){const Q=16+this.numSplats*10+A*3;this.view.setUint8(Q,rg.scaleRgb(g)),this.view.setUint8(Q+1,rg.scaleRgb(I)),this.view.setUint8(Q+2,rg.scaleRgb(B))}setScale(A,g,I,B){const Q=16+this.numSplats*13+A*3;this.view.setUint8(Q,Math.max(0,Math.min(255,Math.round((Math.log(g)+10)*16)))),this.view.setUint8(Q+1,Math.max(0,Math.min(255,Math.round((Math.log(I)+10)*16)))),this.view.setUint8(Q+2,Math.max(0,Math.min(255,Math.round((Math.log(B)+10)*16))))}setQuat(A,g,I,B,Q){const t=16+this.numSplats*16+A*3,C=Q<0;this.view.setUint8(t,Math.max(0,Math.min(255,Math.round(((C?-g:g)+1)*127.5)))),this.view.setUint8(t+1,Math.max(0,Math.min(255,Math.round(((C?-I:I)+1)*127.5)))),this.view.setUint8(t+2,Math.max(0,Math.min(255,Math.round(((C?-B:B)+1)*127.5))))}static quantizeSh(A,g){const I=Math.round(A*128)+128,B=1<<8-g,Q=Math.floor((I+B/2)/B)*B;return Math.max(0,Math.min(255,Q))}setSh(A,g,I,B){const Q=Jt[this.shDegree]||0,t=16+this.numSplats*19+A*Q*3;for(let C=0;C<9;++C)this.view.setUint8(t+C,rg.quantizeSh(g[C],5));if(I){const C=t+9;for(let i=0;i<15;++i)this.view.setUint8(C+i,rg.quantizeSh(I[i],4));if(B){const i=C+15;for(let s=0;s<21;++s)this.view.setUint8(i+s,rg.quantizeSh(B[s],4))}}}async finalize(){const A=new Uint8Array(this.buffer),I=new ReadableStream({async start(t){t.enqueue(A),t.close()}}).pipeThrough(new CompressionStream("gzip")),Q=await new Response(I).arrayBuffer();return console.log("Compressed",A.length,"bytes to",Q.byteLength,"bytes"),new Uint8Array(Q)}}async function oi(E){var a,e,n;const A=new si,{inputs:g,clipXyz:I,maxSh:B,fractionalBits:Q=12,opacityThreshold:t}=E;for(const o of g){let r=function(d){return d.multiplyScalar(l),d.applyQuaternion(u),d.add(M),d},h=function(d){return d.multiplyScalar(l),d},c=function(d){return d.premultiply(u),d},w=function(d){return!F||F.containsPoint(d)},y=function(d){return t!==void 0?d>=t:!0};const l=((a=o.transform)==null?void 0:a.scale)??1,u=new sA().fromArray(((e=o.transform)==null?void 0:e.quaternion)??[0,0,0,1]),M=new D().fromArray(((n=o.transform)==null?void 0:n.translate)??[0,0,0]),F=I?new Rg(new D().fromArray(I.min),new D().fromArray(I.max)):void 0;let p=o.fileType;switch(p||(p=pt(o.fileBytes),!p&&o.pathOrUrl&&(p=ft(o.pathOrUrl))),p){case jg.WLG0:{await NI();const d=CQ(o.fileBytes,v,zA);for(let G=0;G{const X=r(new D(N,k,R));if(w(X)&&y(O)){G=A.pushSplat(),A.setCenter(G,X.x,X.y,X.z);const T=h(new D(J,m,S));A.setScale(G,T.x,T.y,T.z);const x=c(new sA(Y,q,Z,$));A.setQuaternion(G,x.x,x.y,x.z,x.w),A.setOpacity(G,O),A.setColor(G,P,W,z)}else G=null},(f,N,k,R)=>{N&&G!==null&&A.setSh1(G,N),k&&G!==null&&A.setSh2(G,k),R&&G!==null&&A.setSh3(G,R)});break}case jg.SPZ:{const d=new Rt({fileBytes:o.fileBytes}),G=new Int32Array(d.numSplats);G.fill(-1);const f=new Float32Array(d.numSplats*3),N=new D;d.parseSplats((k,R,J,m)=>{const S=r(new D(R,J,m));f[k*3]=S.x,f[k*3+1]=S.y,f[k*3+2]=S.z},(k,R)=>{N.fromArray(f,k*3),w(N)&&y(R)&&(G[k]=A.pushSplat(),A.setCenter(G[k],N.x,N.y,N.z),A.setOpacity(G[k],R))},(k,R,J,m)=>{G[k]>=0&&A.setColor(G[k],R,J,m)},(k,R,J,m)=>{if(G[k]>=0){const S=h(new D(R,J,m));A.setScale(G[k],S.x,S.y,S.z)}},(k,R,J,m,S)=>{if(G[k]>=0){const Y=c(new sA(R,J,m,S));A.setQuaternion(G[k],Y.x,Y.y,Y.z,Y.w)}},(k,R,J,m)=>{G[k]>=0&&(A.setSh1(G[k],R),J&&A.setSh2(G[k],J),m&&A.setSh3(G[k],m))});break}case jg.SPLAT:Et(o.fileBytes,d=>{},(d,G,f,N,k,R,J,m,S,Y,q,Z,$,O,P)=>{const W=r(new D(G,f,N));if(w(W)&&y(Z)){const z=A.pushSplat();A.setCenter(z,W.x,W.y,W.z);const X=h(new D(k,R,J));A.setScale(z,X.x,X.y,X.z);const T=c(new sA(m,S,Y,q));A.setQuaternion(z,T.x,T.y,T.z,T.w),A.setOpacity(z,Z),A.setColor(z,$,O,P)}});break;case jg.KSPLAT:{let d=null;sE(o.fileBytes,G=>{},(G,f,N,k,R,J,m,S,Y,q,Z,$,O,P,W)=>{const z=r(new D(f,N,k));if(w(z)&&y($)){d=A.pushSplat(),A.setCenter(d,z.x,z.y,z.z);const X=h(new D(R,J,m));A.setScale(d,X.x,X.y,X.z);const T=c(new sA(S,Y,q,Z));A.setQuaternion(d,T.x,T.y,T.z,T.w),A.setOpacity(d,$),A.setColor(d,O,P,W)}else d=null},(G,f,N,k)=>{d!==null&&(A.setSh1(d,f),N&&A.setSh2(d,N),k&&A.setSh3(d,k))});break}default:throw new Error(`transcodeSpz not implemented for ${p}`)}}const C=Math.min(B??3,A.sh3?3:A.sh2?2:A.sh1?1:0),i=new rg({numSplats:A.numSplats,shDegree:C,fractionalBits:Q,flagAntiAlias:!0});for(let o=0;o=1&&i.setSh(o,A.sh1.slice(o*9,(o+1)*9),C>=2&&A.sh2?A.sh2.slice(o*15,(o+1)*15):void 0,C>=3&&A.sh3?A.sh3.slice(o*21,(o+1)*21):void 0)}return{fileBytes:await i.finalize(),clippedCount:i.clippedCount}}async function St(E){const{name:A,args:g,id:I}=E.data;let B,Q;try{switch(A){case"unpackPly":{const{packedArray:t,fileBytes:C}=g,i=await ri({packedArray:t,fileBytes:C});B={id:I,numSplats:i.numSplats,packedArray:i.packedArray,extra:i.extra};break}case"decodeWlg":{const{fileBytes:t}=g,C=CQ(t,v,zA);B={id:I,numSplats:C.numSplats,packedArray:C.packedSplats};break}case"decodeSpz":{const{fileBytes:t}=g,C=hi(t);B={id:I,numSplats:C.numSplats,packedArray:C.packedArray,extra:C.extra};break}case"decodeAntiSplat":{const{fileBytes:t}=g,C=iE(t);B={id:I,numSplats:C.numSplats,packedArray:C.packedArray};break}case"decodeKsplat":{const{fileBytes:t}=g,C=eE(t);B={id:I,numSplats:C.numSplats,packedArray:C.packedArray,extra:C.extra};break}case"sortSplats":{const{maxSplats:t,totalSplats:C,readback:i,ordering:s}=g;gt&&(B={id:I,readback:i,ordering:s,activeSplats:Ht(t,C,i,s)});break}case"sortDoubleSplats":{const{numSplats:t,readback:C,ordering:i}=g;B={id:I,readback:C,ordering:i},gt&&(B={id:I,readback:C,ordering:i,activeSplats:Zt(t,C,i)});break}case"transcodeSpz":{const t=g,C=await oi(t);B={id:I,fileBytes:C,input:t};break}default:throw new Error(`Unknown name: ${A}`)}}catch(t){Q=t}self.postMessage({id:I,result:B,error:Q},{transfer:tt(B)})}async function ri({packedArray:E,fileBytes:A}){const g=new aI({fileBytes:A});await g.parseHeader();const I=g.numSplats,B={},Q=Math.exp(-20);return g.parseSplats((t,C,i,s,a,e,n,o,r,h,c,w,y,l,u)=>{eI(E,t,C,i,s,a{C&&(B.sh1||(B.sh1=new Uint32Array(I*2)),VB(B.sh1,t,C)),i&&(B.sh2||(B.sh2=new Uint32Array(I*4)),TB(B.sh2,t,i)),s&&(B.sh3||(B.sh3=new Uint32Array(I*4)),vB(B.sh3,t,s))}),{packedArray:E,numSplats:I,extra:B}}function hi(E){const A=new Rt({fileBytes:E}),g=A.numSplats,I=WB(g),B=new Uint32Array(I*4),Q={};return A.parseSplats((t,C,i,s)=>{XC(B,t,C,i,s)},(t,C)=>{_C(B,t,C)},(t,C,i,s)=>{PC(B,t,C,i,s)},(t,C,i,s)=>{jC(B,t,C,i,s)},(t,C,i,s,a)=>{OC(B,t,C,i,s,a)},(t,C,i,s)=>{C&&(Q.sh1||(Q.sh1=new Uint32Array(g*2)),VB(Q.sh1,t,C)),i&&(Q.sh2||(Q.sh2=new Uint32Array(g*4)),TB(Q.sh2,t,i)),s&&(Q.sh3||(Q.sh3=new Uint32Array(g*4)),vB(Q.sh3,t,s))}),{packedArray:B,numSplats:g,extra:Q}}const Og=31744,rI=Og+1;let BA=null;function Gi({totalSplats:E,readback:A,ordering:g}){BA||(BA=new Uint32Array(rI)),BA.fill(0);const I=A.map(i=>new Uint32Array(i.buffer)),B=I[0].length,Q=Math.ceil(E/B);let t=0;for(let i=0;i=0;--B){const Q=I+BA[B];BA[B]=I,I=Q}for(let B=0;B{(self.URL||self.webkitURL).revokeObjectURL(A)}),I}catch{return new Worker("data:text/javascript;charset=utf-8,"+encodeURIComponent(Ut),{name:g==null?void 0:g.name})}finally{A&&(self.URL||self.webkitURL).revokeObjectURL(A)}}class Wn{constructor(){this.messages={},this.messageIdNext=0,this.worker=new vn,this.worker.onmessage=A=>this.onMessage(A)}makeMessageId(){return++this.messageIdNext}makeMessagePromiseId(){const A=this.makeMessageId(),I=new Promise((B,Q)=>{this.messages[A]={resolve:B,reject:Q}});return{id:A,promise:I}}onMessage(A){const{id:I,result:B,error:Q}=A.data,C=this.messages[I];C&&(delete this.messages[I],Q?C.reject(Q):C.resolve(B))}async call(A,I){const{id:B,promise:Q}=this.makeMessagePromiseId();return this.worker.postMessage({name:A,args:I,id:B},{transfer:NQ(I)}),Q}}let xt=4,eI=0;const Lt=[],bt=[];async function Vn(){const g=Lt.shift();if(g)return g;if(eI{bt.push(A)})}function Tn(g){if(eI>xt){eI-=1;return}const A=bt.shift();if(A){A(g);return}Lt.push(g)}async function cg(g){const A=await Vn();try{return await g(A)}finally{Tn(A)}}class Xn extends CA.Loader{constructor(A){super(A),this.fileLoader=new CA.FileLoader(A)}load(A,I,B,Q){this.fileLoader.setResponseType("arraybuffer"),this.fileLoader.setCrossOrigin(this.crossOrigin),this.fileLoader.setWithCredentials(this.withCredentials),this.fileLoader.setPath(this.path),this.fileLoader.setResourcePath(this.resourcePath),this.fileLoader.setRequestHeader(this.requestHeader),this.fileLoader.load(A,async C=>{if(I){const t=await OI({input:C,fileType:this.fileType,pathOrUrl:A});I(new YA(t))}},B,Q)}async loadAsync(A,I){return new Promise((B,Q)=>{this.load(A,C=>{B(C)},I,Q)})}parse(A){return new zA({packedSplats:A})}}var Eg=(g=>(g.PLY="ply",g.WLG0="wlg0",g.SPZ="spz",g.SPLAT="splat",g.KSPLAT="ksplat",g))(Eg||{});function jI(g){const A=new DataView(g.buffer);if((A.getUint32(0,!0)&16777215)===7957616)return"ply";if(A.getUint32(0,!0)===809978967)return"wlg0";if((A.getUint32(0,!0)&16777215)===559903){const I=HQ(g,4);return new DataView(I.buffer).getUint32(0,!0)===1347635022?"spz":void 0}}function zn(g){const A=g.split(/[?#]/,1)[0],I=Math.max(A.lastIndexOf("/"),A.lastIndexOf("\\")),B=A.slice(I+1),Q=B.lastIndexOf(".");return Q<=0||Q===B.length-1?"":B.slice(Q+1).toLowerCase()}function Ht(g){const A=zn(g);if(A==="ply")return"ply";if(A==="wlg")return"wlg0";if(A==="spz")return"spz";if(A==="splat")return"splat";if(A==="ksplat")return"ksplat"}async function OI({input:g,fileType:A,pathOrUrl:I}){const B=g instanceof ArrayBuffer?new Uint8Array(g):g;let Q=A;switch(A||(Q=jI(B),!Q&&I&&(Q=Ht(I))),Q){case"wlg0":return await cg(async C=>{const{packedArray:E,numSplats:t}=await C.call("decodeWlg",{fileBytes:B});return{packedArray:E,numSplats:t}});case"ply":{const C=new Hg({fileBytes:B});await C.parseHeader();const E=C.numSplats,t=MA(E).maxSplats,i={fileBytes:B,packedArray:new Uint32Array(t*4)};return await cg(async e=>{const{packedArray:n,numSplats:s,extra:o}=await e.call("unpackPly",i);return{packedArray:n,numSplats:s,extra:o}})}case"spz":return await cg(async C=>{const{packedArray:E,numSplats:t,extra:i}=await C.call("decodeSpz",{fileBytes:B});return{packedArray:E,numSplats:t,extra:i}});case"splat":return await cg(async C=>{const{packedArray:E,numSplats:t}=await C.call("decodeAntiSplat",{fileBytes:B});return{packedArray:E,numSplats:t}});case"ksplat":return await cg(async C=>{const{packedArray:E,numSplats:t,extra:i}=await C.call("decodeKsplat",{fileBytes:B});return{packedArray:E,numSplats:t,extra:i}});default:throw new Error(`Unknown splat file type: ${Q}`)}}class jn{constructor({maxSplats:A=1}={}){this.numSplats=0,this.maxSplats=MA(A).maxSplats,this.centers=new Float32Array(this.maxSplats*3),this.scales=new Float32Array(this.maxSplats*3),this.quaternions=new Float32Array(this.maxSplats*4),this.opacities=new Float32Array(this.maxSplats),this.colors=new Float32Array(this.maxSplats*3)}pushSplat(){const A=this.numSplats;return this.ensureIndex(A),this.numSplats+=1,A}unpushSplat(A){if(A===this.numSplats-1)this.numSplats-=1;else throw new Error("Cannot unpush splat from non-last position")}ensureCapacity(A){if(A>this.maxSplats){const I=Math.max(A,this.maxSplats*2),B=new Float32Array(I*3),Q=new Float32Array(I*3),C=new Float32Array(I*4),E=new Float32Array(I),t=new Float32Array(I*3);if(B.set(this.centers),Q.set(this.scales),C.set(this.quaternions),E.set(this.opacities),t.set(this.colors),this.centers=B,this.scales=Q,this.quaternions=C,this.opacities=E,this.colors=t,this.sh1){const i=new Float32Array(I*9);i.set(this.sh1),this.sh1=i}if(this.sh2){const i=new Float32Array(I*15);i.set(this.sh2),this.sh2=i}if(this.sh3){const i=new Float32Array(I*21);i.set(this.sh3),this.sh3=i}this.maxSplats=I}}ensureIndex(A){this.ensureCapacity(A+1)}setCenter(A,I,B,Q){this.centers[A*3]=I,this.centers[A*3+1]=B,this.centers[A*3+2]=Q}setScale(A,I,B,Q){this.scales[A*3]=I,this.scales[A*3+1]=B,this.scales[A*3+2]=Q}setQuaternion(A,I,B,Q,C){this.quaternions[A*4]=I,this.quaternions[A*4+1]=B,this.quaternions[A*4+2]=Q,this.quaternions[A*4+3]=C}setOpacity(A,I){this.opacities[A]=I}setColor(A,I,B,Q){this.colors[A*3]=I,this.colors[A*3+1]=B,this.colors[A*3+2]=Q}setSh1(A,I){this.sh1||(this.sh1=new Float32Array(this.maxSplats*9));for(let B=0;B<9;++B)this.sh1[A*9+B]=I[B]}setSh2(A,I){this.sh2||(this.sh2=new Float32Array(this.maxSplats*15));for(let B=0;B<15;++B)this.sh2[A*15+B]=I[B]}setSh3(A,I){this.sh3||(this.sh3=new Float32Array(this.maxSplats*21));for(let B=0;B<21;++B)this.sh3[A*21+B]=I[B]}}var On=`precision highp float; + `)}).outputs.rgb}const ct=class ct{constructor({fileBytes:A}){this.header="",this.littleEndian=!0,this.elements={},this.comments=[],this.data=null,this.numSplats=0,this.fileBytes=A instanceof ArrayBuffer?new Uint8Array(A):A}async parseHeader(){const e=new ReadableStream({start:a=>{a.enqueue(this.fileBytes.slice(0,65536)),a.close()}}).pipeThrough(new TextDecoderStream).getReader();this.header="";const s=`end_header +`;for(;;){const{value:a,done:r}=await e.read();if(r)throw new Error("Failed to read header");this.header+=a;const g=this.header.indexOf(s);if(g>=0){this.header=this.header.slice(0,g+s.length);break}}const i=new TextEncoder().encode(this.header).length;this.data=new DataView(this.fileBytes.buffer,i),this.elements={};let n=null;this.comments=[],this.header.trim().split(` +`).forEach((a,r)=>{const g=a.trim();if(r===0){if(g!=="ply")throw new Error("Invalid PLY header");return}if(g.length===0)return;const I=g.split(" ");switch(I[0]){case"format":if(I[1]==="binary_little_endian")this.littleEndian=!0;else if(I[1]==="binary_big_endian")this.littleEndian=!1;else throw new Error(`Unsupported PLY format: ${I[1]}`);if(I[2]!=="1.0")throw new Error(`Unsupported PLY version: ${I[2]}`);break;case"end_header":break;case"comment":this.comments.push(g.slice(8));break;case"element":{const Q=I[1];n={name:Q,count:Number.parseInt(I[2]),properties:{}},this.elements[Q]=n;break}case"property":if(n==null)throw new Error("Property must be inside an element");I[1]==="list"?n.properties[I[4]]={isList:!0,type:I[3],countType:I[2]}:n.properties[I[2]]={isList:!1,type:I[1]};break}}),this.elements.vertex&&(this.numSplats=this.elements.vertex.count)}parseData(A){let e=0;const s=this.data;if(s==null)throw new Error("No data to parse");for(const i in this.elements){const n=this.elements[i],{count:a,properties:r}=n,g={},I=[];for(const[o,E]of Object.entries(r))E.isList?(g[o]=[],I.push(()=>{const C=g[o];C.length=Wt[E.countType](s,e,this.littleEndian),e+=Qt[E.countType];for(let c=0;c{g[o]=Wt[E.type](s,e,this.littleEndian),e+=Qt[E.type]}));const Q=A(n)??(()=>{});for(let o=0;o[0,1,2].map((p,y)=>`f_rest_${d+y*u/3}`)),r=new Array(5).fill(null).flatMap((w,d)=>[0,1,2].map((p,y)=>`f_rest_${3+d+y*u/3}`)),g=new Array(7).fill(null).flatMap((w,d)=>[0,1,2].map((p,y)=>`f_rest_${8+d+y*u/3}`)),I=n>=1?new Float32Array(3*3):void 0,Q=n>=2?new Float32Array(5*3):void 0,o=n>=3?new Float32Array(7*3):void 0}function C(u,w){if(!I)throw new Error("Missing sh1");for(const[d,p]of a.entries())I[d]=w[p]*8/255-4;if(Q)for(const[d,p]of r.entries())Q[d]=w[p]*8/255-4;if(o)for(const[d,p]of g.entries())o[d]=w[p]*8/255-4;e==null||e(u,I,Q,o)}function c(u){const{min_x:w,min_y:d,min_z:p,max_x:y,max_y:m,max_z:F,min_scale_x:D,min_scale_y:f,min_scale_z:R,max_scale_x:S,max_scale_y:M,max_scale_z:b,min_r:N,min_g:U,min_b:G,max_r:L,max_g:T,max_b:H}=u.properties;if(!w||!d||!p||!y||!m||!F||!D||!f||!R||!S||!M||!b||!N||!U||!G||!L||!T||!H)throw new Error("Missing PLY chunk properties");return s=!0,(iA,P)=>{const{min_x:AA,min_y:$,min_z:X,max_x:Z,max_y:_,max_z:v,min_scale_x:yA,min_scale_y:oA,min_scale_z:J,max_scale_x:EA,max_scale_y:CA,max_scale_z:Y,min_r:xA,min_g:fA,min_b:bA,max_r:vA,max_g:LA,max_b:dA}=P;i.push({min_x:AA,min_y:$,min_z:X,max_x:Z,max_y:_,max_z:v,min_scale_x:yA,min_scale_y:oA,min_scale_z:J,max_scale_x:EA,max_scale_y:CA,max_scale_z:Y,min_r:xA,min_g:fA,min_b:bA,max_r:vA,max_g:LA,max_b:dA})}}function h(u){if(e&&u.name==="sh")return n=Xe(u.properties),E(),C;if(u.name!=="vertex")return null;const{packed_position:w,packed_rotation:d,packed_scale:p,packed_color:y}=u.properties;if(!w||!d||!p||!y)throw new Error("Missing PLY properties: packed_position, packed_rotation, packed_scale, packed_color");const m=Math.sqrt(2);return(F,D)=>{const f=i[F>>>8];if(f==null)throw new Error("Missing PLY 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reasons",A),t.toDataURL("image/jpeg",.6)):t.toDataURL("image/png")}static sRGBToLinear(A){if(typeof HTMLImageElement<"u"&&A instanceof HTMLImageElement||typeof HTMLCanvasElement<"u"&&A instanceof HTMLCanvasElement||typeof ImageBitmap<"u"&&A instanceof ImageBitmap){const t=ws("canvas");t.width=A.width,t.height=A.height;const e=t.getContext("2d");e.drawImage(A,0,0,A.width,A.height);const i=e.getImageData(0,0,A.width,A.height),s=i.data;for(let n=0;n0&&(e.userData=this.userData),t||(A.textures[this.uuid]=e),e}dispose(){this.dispatchEvent({type:"dispose"})}transformUv(A){if(this.mapping!==Qs)return A;if(A.applyMatrix3(this.matrix),A.x<0||A.x>1)switch(this.wrapS){case hs:A.x=A.x-Math.floor(A.x);break;case $t:A.x=A.x<0?0:1;break;case Es:Math.abs(Math.floor(A.x)%2)===1?A.x=Math.ceil(A.x)-A.x:A.x=A.x-Math.floor(A.x);break}if(A.y<0||A.y>1)switch(this.wrapT){case hs:A.y=A.y-Math.floor(A.y);break;case $t:A.y=A.y<0?0:1;break;case Es:Math.abs(Math.floor(A.y)%2)===1?A.y=Math.ceil(A.y)-A.y:A.y=A.y-Math.floor(A.y);break}return this.flipY&&(A.y=1-A.y),A}set needsUpdate(A){A===!0&&(this.version++,this.source.needsUpdate=!0)}set needsPMREMUpdate(A){A===!0&&this.pmremVersion++}}ZA.DEFAULT_IMAGE=null,ZA.DEFAULT_MAPPING=Qs,ZA.DEFAULT_ANISOTROPY=1;class uA{constructor(A=0,t=0,e=0,i=1){uA.prototype.isVector4=!0,this.x=A,this.y=t,this.z=e,this.w=i}get width(){return this.z}set width(A){this.z=A}get height(){return this.w}set height(A){this.w=A}set(A,t,e,i){return this.x=A,this.y=t,this.z=e,this.w=i,this}setScalar(A){return this.x=A,this.y=A,this.z=A,this.w=A,this}setX(A){return this.x=A,this}setY(A){return this.y=A,this}setZ(A){return this.z=A,this}setW(A){return this.w=A,this}setComponent(A,t){switch(A){case 0:this.x=t;break;case 1:this.y=t;break;case 2:this.z=t;break;case 3:this.w=t;break;default:throw new Error("index is out of range: "+A)}return this}getComponent(A){switch(A){case 0:return this.x;case 1:return this.y;case 2:return this.z;case 3:return this.w;default:throw new Error("index is out of range: "+A)}}clone(){return new this.constructor(this.x,this.y,this.z,this.w)}copy(A){return this.x=A.x,this.y=A.y,this.z=A.z,this.w=A.w!==void 0?A.w:1,this}add(A){return this.x+=A.x,this.y+=A.y,this.z+=A.z,this.w+=A.w,this}addScalar(A){return this.x+=A,this.y+=A,this.z+=A,this.w+=A,this}addVectors(A,t){return this.x=A.x+t.x,this.y=A.y+t.y,this.z=A.z+t.z,this.w=A.w+t.w,this}addScaledVector(A,t){return this.x+=A.x*t,this.y+=A.y*t,this.z+=A.z*t,this.w+=A.w*t,this}sub(A){return this.x-=A.x,this.y-=A.y,this.z-=A.z,this.w-=A.w,this}subScalar(A){return this.x-=A,this.y-=A,this.z-=A,this.w-=A,this}subVectors(A,t){return this.x=A.x-t.x,this.y=A.y-t.y,this.z=A.z-t.z,this.w=A.w-t.w,this}multiply(A){return this.x*=A.x,this.y*=A.y,this.z*=A.z,this.w*=A.w,this}multiplyScalar(A){return this.x*=A,this.y*=A,this.z*=A,this.w*=A,this}applyMatrix4(A){const t=this.x,e=this.y,i=this.z,s=this.w,n=A.elements;return this.x=n[0]*t+n[4]*e+n[8]*i+n[12]*s,this.y=n[1]*t+n[5]*e+n[9]*i+n[13]*s,this.z=n[2]*t+n[6]*e+n[10]*i+n[14]*s,this.w=n[3]*t+n[7]*e+n[11]*i+n[15]*s,this}divide(A){return this.x/=A.x,this.y/=A.y,this.z/=A.z,this.w/=A.w,this}divideScalar(A){return this.multiplyScalar(1/A)}setAxisAngleFromQuaternion(A){this.w=2*Math.acos(A.w);const t=Math.sqrt(1-A.w*A.w);return t<1e-4?(this.x=1,this.y=0,this.z=0):(this.x=A.x/t,this.y=A.y/t,this.z=A.z/t),this}setAxisAngleFromRotationMatrix(A){let t,e,i,s;const a=A.elements,o=a[0],B=a[4],I=a[8],Q=a[1],h=a[5],E=a[9],C=a[2],c=a[6],l=a[10];if(Math.abs(B-Q)<.01&&Math.abs(I-C)<.01&&Math.abs(E-c)<.01){if(Math.abs(B+Q)<.1&&Math.abs(I+C)<.1&&Math.abs(E+c)<.1&&Math.abs(o+h+l-3)<.1)return this.set(1,0,0,0),this;t=Math.PI;const d=(o+1)/2,f=(h+1)/2,p=(l+1)/2,m=(B+Q)/4,x=(I+C)/4,w=(E+c)/4;return d>f&&d>p?d<.01?(e=0,i=.707106781,s=.707106781):(e=Math.sqrt(d),i=m/e,s=x/e):f>p?f<.01?(e=.707106781,i=0,s=.707106781):(i=Math.sqrt(f),e=m/i,s=w/i):p<.01?(e=.707106781,i=.707106781,s=0):(s=Math.sqrt(p),e=x/s,i=w/s),this.set(e,i,s,t),this}let y=Math.sqrt((c-E)*(c-E)+(I-C)*(I-C)+(Q-B)*(Q-B));return Math.abs(y)<.001&&(y=1),this.x=(c-E)/y,this.y=(I-C)/y,this.z=(Q-B)/y,this.w=Math.acos((o+h+l-1)/2),this}setFromMatrixPosition(A){const t=A.elements;return this.x=t[12],this.y=t[13],this.z=t[14],this.w=t[15],this}min(A){return this.x=Math.min(this.x,A.x),this.y=Math.min(this.y,A.y),this.z=Math.min(this.z,A.z),this.w=Math.min(this.w,A.w),this}max(A){return this.x=Math.max(this.x,A.x),this.y=Math.max(this.y,A.y),this.z=Math.max(this.z,A.z),this.w=Math.max(this.w,A.w),this}clamp(A,t){return this.x=H(this.x,A.x,t.x),this.y=H(this.y,A.y,t.y),this.z=H(this.z,A.z,t.z),this.w=H(this.w,A.w,t.w),this}clampScalar(A,t){return this.x=H(this.x,A,t),this.y=H(this.y,A,t),this.z=H(this.z,A,t),this.w=H(this.w,A,t),this}clampLength(A,t){const e=this.length();return this.divideScalar(e||1).multiplyScalar(H(e,A,t))}floor(){return this.x=Math.floor(this.x),this.y=Math.floor(this.y),this.z=Math.floor(this.z),this.w=Math.floor(this.w),this}ceil(){return this.x=Math.ceil(this.x),this.y=Math.ceil(this.y),this.z=Math.ceil(this.z),this.w=Math.ceil(this.w),this}round(){return this.x=Math.round(this.x),this.y=Math.round(this.y),this.z=Math.round(this.z),this.w=Math.round(this.w),this}roundToZero(){return this.x=Math.trunc(this.x),this.y=Math.trunc(this.y),this.z=Math.trunc(this.z),this.w=Math.trunc(this.w),this}negate(){return this.x=-this.x,this.y=-this.y,this.z=-this.z,this.w=-this.w,this}dot(A){return this.x*A.x+this.y*A.y+this.z*A.z+this.w*A.w}lengthSq(){return this.x*this.x+this.y*this.y+this.z*this.z+this.w*this.w}length(){return Math.sqrt(this.x*this.x+this.y*this.y+this.z*this.z+this.w*this.w)}manhattanLength(){return Math.abs(this.x)+Math.abs(this.y)+Math.abs(this.z)+Math.abs(this.w)}normalize(){return this.divideScalar(this.length()||1)}setLength(A){return this.normalize().multiplyScalar(A)}lerp(A,t){return this.x+=(A.x-this.x)*t,this.y+=(A.y-this.y)*t,this.z+=(A.z-this.z)*t,this.w+=(A.w-this.w)*t,this}lerpVectors(A,t,e){return this.x=A.x+(t.x-A.x)*e,this.y=A.y+(t.y-A.y)*e,this.z=A.z+(t.z-A.z)*e,this.w=A.w+(t.w-A.w)*e,this}equals(A){return A.x===this.x&&A.y===this.y&&A.z===this.z&&A.w===this.w}fromArray(A,t=0){return this.x=A[t],this.y=A[t+1],this.z=A[t+2],this.w=A[t+3],this}toArray(A=[],t=0){return A[t]=this.x,A[t+1]=this.y,A[t+2]=this.z,A[t+3]=this.w,A}fromBufferAttribute(A,t){return this.x=A.getX(t),this.y=A.getY(t),this.z=A.getZ(t),this.w=A.getW(t),this}random(){return this.x=Math.random(),this.y=Math.random(),this.z=Math.random(),this.w=Math.random(),this}*[Symbol.iterator](){yield this.x,yield this.y,yield this.z,yield this.w}}class nr extends te{constructor(A=1,t=1,e={}){super(),this.isRenderTarget=!0,this.width=A,this.height=t,this.depth=1,this.scissor=new uA(0,0,A,t),this.scissorTest=!1,this.viewport=new uA(0,0,A,t);const i={width:A,height:t,depth:1};e=Object.assign({generateMipmaps:!1,internalFormat:null,minFilter:Cs,depthBuffer:!0,stencilBuffer:!1,resolveDepthBuffer:!0,resolveStencilBuffer:!0,depthTexture:null,samples:0,count:1},e);const s=new ZA(i,e.mapping,e.wrapS,e.wrapT,e.magFilter,e.minFilter,e.format,e.type,e.anisotropy,e.colorSpace);s.flipY=!1,s.generateMipmaps=e.generateMipmaps,s.internalFormat=e.internalFormat,this.textures=[];const n=e.count;for(let r=0;r=0?1:-1,d=1-l*l;if(d>Number.EPSILON){const p=Math.sqrt(d),m=Math.atan2(p,l*y);c=Math.sin(c*m)/p,r=Math.sin(r*m)/p}const f=r*y;if(a=a*c+Q*f,o=o*c+h*f,B=B*c+E*f,I=I*c+C*f,c===1-r){const p=1/Math.sqrt(a*a+o*o+B*B+I*I);a*=p,o*=p,B*=p,I*=p}}A[t]=a,A[t+1]=o,A[t+2]=B,A[t+3]=I}static multiplyQuaternionsFlat(A,t,e,i,s,n){const r=e[i],a=e[i+1],o=e[i+2],B=e[i+3],I=s[n],Q=s[n+1],h=s[n+2],E=s[n+3];return A[t]=r*E+B*I+a*h-o*Q,A[t+1]=a*E+B*Q+o*I-r*h,A[t+2]=o*E+B*h+r*Q-a*I,A[t+3]=B*E-r*I-a*Q-o*h,A}get x(){return this._x}set x(A){this._x=A,this._onChangeCallback()}get y(){return this._y}set y(A){this._y=A,this._onChangeCallback()}get z(){return this._z}set z(A){this._z=A,this._onChangeCallback()}get w(){return this._w}set w(A){this._w=A,this._onChangeCallback()}set(A,t,e,i){return this._x=A,this._y=t,this._z=e,this._w=i,this._onChangeCallback(),this}clone(){return new this.constructor(this._x,this._y,this._z,this._w)}copy(A){return this._x=A.x,this._y=A.y,this._z=A.z,this._w=A.w,this._onChangeCallback(),this}setFromEuler(A,t=!0){const e=A._x,i=A._y,s=A._z,n=A._order,r=Math.cos,a=Math.sin,o=r(e/2),B=r(i/2),I=r(s/2),Q=a(e/2),h=a(i/2),E=a(s/2);switch(n){case"XYZ":this._x=Q*B*I+o*h*E,this._y=o*h*I-Q*B*E,this._z=o*B*E+Q*h*I,this._w=o*B*I-Q*h*E;break;case"YXZ":this._x=Q*B*I+o*h*E,this._y=o*h*I-Q*B*E,this._z=o*B*E-Q*h*I,this._w=o*B*I+Q*h*E;break;case"ZXY":this._x=Q*B*I-o*h*E,this._y=o*h*I+Q*B*E,this._z=o*B*E+Q*h*I,this._w=o*B*I-Q*h*E;break;case"ZYX":this._x=Q*B*I-o*h*E,this._y=o*h*I+Q*B*E,this._z=o*B*E-Q*h*I,this._w=o*B*I+Q*h*E;break;case"YZX":this._x=Q*B*I+o*h*E,this._y=o*h*I+Q*B*E,this._z=o*B*E-Q*h*I,this._w=o*B*I-Q*h*E;break;case"XZY":this._x=Q*B*I-o*h*E,this._y=o*h*I-Q*B*E,this._z=o*B*E+Q*h*I,this._w=o*B*I+Q*h*E;break;default:console.warn("THREE.Quaternion: .setFromEuler() encountered an unknown order: "+n)}return t===!0&&this._onChangeCallback(),this}setFromAxisAngle(A,t){const e=t/2,i=Math.sin(e);return this._x=A.x*i,this._y=A.y*i,this._z=A.z*i,this._w=Math.cos(e),this._onChangeCallback(),this}setFromRotationMatrix(A){const t=A.elements,e=t[0],i=t[4],s=t[8],n=t[1],r=t[5],a=t[9],o=t[2],B=t[6],I=t[10],Q=e+r+I;if(Q>0){const h=.5/Math.sqrt(Q+1);this._w=.25/h,this._x=(B-a)*h,this._y=(s-o)*h,this._z=(n-i)*h}else if(e>r&&e>I){const h=2*Math.sqrt(1+e-r-I);this._w=(B-a)/h,this._x=.25*h,this._y=(i+n)/h,this._z=(s+o)/h}else if(r>I){const h=2*Math.sqrt(1+r-e-I);this._w=(s-o)/h,this._x=(i+n)/h,this._y=.25*h,this._z=(a+B)/h}else{const h=2*Math.sqrt(1+I-e-r);this._w=(n-i)/h,this._x=(s+o)/h,this._y=(a+B)/h,this._z=.25*h}return this._onChangeCallback(),this}setFromUnitVectors(A,t){let e=A.dot(t)+1;return eMath.abs(A.z)?(this._x=-A.y,this._y=A.x,this._z=0,this._w=e):(this._x=0,this._y=-A.z,this._z=A.y,this._w=e)):(this._x=A.y*t.z-A.z*t.y,this._y=A.z*t.x-A.x*t.z,this._z=A.x*t.y-A.y*t.x,this._w=e),this.normalize()}angleTo(A){return 2*Math.acos(Math.abs(H(this.dot(A),-1,1)))}rotateTowards(A,t){const e=this.angleTo(A);if(e===0)return this;const i=Math.min(1,t/e);return this.slerp(A,i),this}identity(){return this.set(0,0,0,1)}invert(){return this.conjugate()}conjugate(){return this._x*=-1,this._y*=-1,this._z*=-1,this._onChangeCallback(),this}dot(A){return this._x*A._x+this._y*A._y+this._z*A._z+this._w*A._w}lengthSq(){return this._x*this._x+this._y*this._y+this._z*this._z+this._w*this._w}length(){return Math.sqrt(this._x*this._x+this._y*this._y+this._z*this._z+this._w*this._w)}normalize(){let A=this.length();return A===0?(this._x=0,this._y=0,this._z=0,this._w=1):(A=1/A,this._x=this._x*A,this._y=this._y*A,this._z=this._z*A,this._w=this._w*A),this._onChangeCallback(),this}multiply(A){return this.multiplyQuaternions(this,A)}premultiply(A){return this.multiplyQuaternions(A,this)}multiplyQuaternions(A,t){const e=A._x,i=A._y,s=A._z,n=A._w,r=t._x,a=t._y,o=t._z,B=t._w;return this._x=e*B+n*r+i*o-s*a,this._y=i*B+n*a+s*r-e*o,this._z=s*B+n*o+e*a-i*r,this._w=n*B-e*r-i*a-s*o,this._onChangeCallback(),this}slerp(A,t){if(t===0)return this;if(t===1)return this.copy(A);const e=this._x,i=this._y,s=this._z,n=this._w;let r=n*A._w+e*A._x+i*A._y+s*A._z;if(r<0?(this._w=-A._w,this._x=-A._x,this._y=-A._y,this._z=-A._z,r=-r):this.copy(A),r>=1)return this._w=n,this._x=e,this._y=i,this._z=s,this;const a=1-r*r;if(a<=Number.EPSILON){const h=1-t;return this._w=h*n+t*this._w,this._x=h*e+t*this._x,this._y=h*i+t*this._y,this._z=h*s+t*this._z,this.normalize(),this}const o=Math.sqrt(a),B=Math.atan2(o,r),I=Math.sin((1-t)*B)/o,Q=Math.sin(t*B)/o;return this._w=n*I+this._w*Q,this._x=e*I+this._x*Q,this._y=i*I+this._y*Q,this._z=s*I+this._z*Q,this._onChangeCallback(),this}slerpQuaternions(A,t,e){return this.copy(A).slerp(t,e)}random(){const A=2*Math.PI*Math.random(),t=2*Math.PI*Math.random(),e=Math.random(),i=Math.sqrt(1-e),s=Math.sqrt(e);return this.set(i*Math.sin(A),i*Math.cos(A),s*Math.sin(t),s*Math.cos(t))}equals(A){return A._x===this._x&&A._y===this._y&&A._z===this._z&&A._w===this._w}fromArray(A,t=0){return this._x=A[t],this._y=A[t+1],this._z=A[t+2],this._w=A[t+3],this._onChangeCallback(),this}toArray(A=[],t=0){return A[t]=this._x,A[t+1]=this._y,A[t+2]=this._z,A[t+3]=this._w,A}fromBufferAttribute(A,t){return this._x=A.getX(t),this._y=A.getY(t),this._z=A.getZ(t),this._w=A.getW(t),this._onChangeCallback(),this}toJSON(){return this.toArray()}_onChange(A){return this._onChangeCallback=A,this}_onChangeCallback(){}*[Symbol.iterator](){yield this._x,yield this._y,yield this._z,yield this._w}}class u{constructor(A=0,t=0,e=0){u.prototype.isVector3=!0,this.x=A,this.y=t,this.z=e}set(A,t,e){return e===void 0&&(e=this.z),this.x=A,this.y=t,this.z=e,this}setScalar(A){return this.x=A,this.y=A,this.z=A,this}setX(A){return this.x=A,this}setY(A){return this.y=A,this}setZ(A){return this.z=A,this}setComponent(A,t){switch(A){case 0:this.x=t;break;case 1:this.y=t;break;case 2:this.z=t;break;default:throw new Error("index is out of range: "+A)}return this}getComponent(A){switch(A){case 0:return this.x;case 1:return this.y;case 2:return this.z;default:throw new Error("index is out of range: "+A)}}clone(){return new this.constructor(this.x,this.y,this.z)}copy(A){return this.x=A.x,this.y=A.y,this.z=A.z,this}add(A){return this.x+=A.x,this.y+=A.y,this.z+=A.z,this}addScalar(A){return this.x+=A,this.y+=A,this.z+=A,this}addVectors(A,t){return this.x=A.x+t.x,this.y=A.y+t.y,this.z=A.z+t.z,this}addScaledVector(A,t){return this.x+=A.x*t,this.y+=A.y*t,this.z+=A.z*t,this}sub(A){return this.x-=A.x,this.y-=A.y,this.z-=A.z,this}subScalar(A){return this.x-=A,this.y-=A,this.z-=A,this}subVectors(A,t){return this.x=A.x-t.x,this.y=A.y-t.y,this.z=A.z-t.z,this}multiply(A){return this.x*=A.x,this.y*=A.y,this.z*=A.z,this}multiplyScalar(A){return this.x*=A,this.y*=A,this.z*=A,this}multiplyVectors(A,t){return this.x=A.x*t.x,this.y=A.y*t.y,this.z=A.z*t.z,this}applyEuler(A){return this.applyQuaternion(Ms.setFromEuler(A))}applyAxisAngle(A,t){return this.applyQuaternion(Ms.setFromAxisAngle(A,t))}applyMatrix3(A){const t=this.x,e=this.y,i=this.z,s=A.elements;return this.x=s[0]*t+s[3]*e+s[6]*i,this.y=s[1]*t+s[4]*e+s[7]*i,this.z=s[2]*t+s[5]*e+s[8]*i,this}applyNormalMatrix(A){return this.applyMatrix3(A).normalize()}applyMatrix4(A){const t=this.x,e=this.y,i=this.z,s=A.elements,n=1/(s[3]*t+s[7]*e+s[11]*i+s[15]);return this.x=(s[0]*t+s[4]*e+s[8]*i+s[12])*n,this.y=(s[1]*t+s[5]*e+s[9]*i+s[13])*n,this.z=(s[2]*t+s[6]*e+s[10]*i+s[14])*n,this}applyQuaternion(A){const t=this.x,e=this.y,i=this.z,s=A.x,n=A.y,r=A.z,a=A.w,o=2*(n*i-r*e),B=2*(r*t-s*i),I=2*(s*e-n*t);return this.x=t+a*o+n*I-r*B,this.y=e+a*B+r*o-s*I,this.z=i+a*I+s*B-n*o,this}project(A){return this.applyMatrix4(A.matrixWorldInverse).applyMatrix4(A.projectionMatrix)}unproject(A){return this.applyMatrix4(A.projectionMatrixInverse).applyMatrix4(A.matrixWorld)}transformDirection(A){const t=this.x,e=this.y,i=this.z,s=A.elements;return this.x=s[0]*t+s[4]*e+s[8]*i,this.y=s[1]*t+s[5]*e+s[9]*i,this.z=s[2]*t+s[6]*e+s[10]*i,this.normalize()}divide(A){return this.x/=A.x,this.y/=A.y,this.z/=A.z,this}divideScalar(A){return this.multiplyScalar(1/A)}min(A){return this.x=Math.min(this.x,A.x),this.y=Math.min(this.y,A.y),this.z=Math.min(this.z,A.z),this}max(A){return this.x=Math.max(this.x,A.x),this.y=Math.max(this.y,A.y),this.z=Math.max(this.z,A.z),this}clamp(A,t){return this.x=H(this.x,A.x,t.x),this.y=H(this.y,A.y,t.y),this.z=H(this.z,A.z,t.z),this}clampScalar(A,t){return this.x=H(this.x,A,t),this.y=H(this.y,A,t),this.z=H(this.z,A,t),this}clampLength(A,t){const e=this.length();return this.divideScalar(e||1).multiplyScalar(H(e,A,t))}floor(){return this.x=Math.floor(this.x),this.y=Math.floor(this.y),this.z=Math.floor(this.z),this}ceil(){return this.x=Math.ceil(this.x),this.y=Math.ceil(this.y),this.z=Math.ceil(this.z),this}round(){return this.x=Math.round(this.x),this.y=Math.round(this.y),this.z=Math.round(this.z),this}roundToZero(){return this.x=Math.trunc(this.x),this.y=Math.trunc(this.y),this.z=Math.trunc(this.z),this}negate(){return this.x=-this.x,this.y=-this.y,this.z=-this.z,this}dot(A){return this.x*A.x+this.y*A.y+this.z*A.z}lengthSq(){return this.x*this.x+this.y*this.y+this.z*this.z}length(){return Math.sqrt(this.x*this.x+this.y*this.y+this.z*this.z)}manhattanLength(){return Math.abs(this.x)+Math.abs(this.y)+Math.abs(this.z)}normalize(){return this.divideScalar(this.length()||1)}setLength(A){return this.normalize().multiplyScalar(A)}lerp(A,t){return this.x+=(A.x-this.x)*t,this.y+=(A.y-this.y)*t,this.z+=(A.z-this.z)*t,this}lerpVectors(A,t,e){return this.x=A.x+(t.x-A.x)*e,this.y=A.y+(t.y-A.y)*e,this.z=A.z+(t.z-A.z)*e,this}cross(A){return this.crossVectors(this,A)}crossVectors(A,t){const e=A.x,i=A.y,s=A.z,n=t.x,r=t.y,a=t.z;return this.x=i*a-s*r,this.y=s*n-e*a,this.z=e*r-i*n,this}projectOnVector(A){const t=A.lengthSq();if(t===0)return this.set(0,0,0);const e=A.dot(this)/t;return this.copy(A).multiplyScalar(e)}projectOnPlane(A){return Ci.copy(this).projectOnVector(A),this.sub(Ci)}reflect(A){return this.sub(Ci.copy(A).multiplyScalar(2*this.dot(A)))}angleTo(A){const t=Math.sqrt(this.lengthSq()*A.lengthSq());if(t===0)return Math.PI/2;const e=this.dot(A)/t;return Math.acos(H(e,-1,1))}distanceTo(A){return Math.sqrt(this.distanceToSquared(A))}distanceToSquared(A){const t=this.x-A.x,e=this.y-A.y,i=this.z-A.z;return t*t+e*e+i*i}manhattanDistanceTo(A){return Math.abs(this.x-A.x)+Math.abs(this.y-A.y)+Math.abs(this.z-A.z)}setFromSpherical(A){return this.setFromSphericalCoords(A.radius,A.phi,A.theta)}setFromSphericalCoords(A,t,e){const i=Math.sin(t)*A;return this.x=i*Math.sin(e),this.y=Math.cos(t)*A,this.z=i*Math.cos(e),this}setFromCylindrical(A){return this.setFromCylindricalCoords(A.radius,A.theta,A.y)}setFromCylindricalCoords(A,t,e){return this.x=A*Math.sin(t),this.y=e,this.z=A*Math.cos(t),this}setFromMatrixPosition(A){const t=A.elements;return this.x=t[12],this.y=t[13],this.z=t[14],this}setFromMatrixScale(A){const t=this.setFromMatrixColumn(A,0).length(),e=this.setFromMatrixColumn(A,1).length(),i=this.setFromMatrixColumn(A,2).length();return this.x=t,this.y=e,this.z=i,this}setFromMatrixColumn(A,t){return this.fromArray(A.elements,t*4)}setFromMatrix3Column(A,t){return this.fromArray(A.elements,t*3)}setFromEuler(A){return this.x=A._x,this.y=A._y,this.z=A._z,this}setFromColor(A){return this.x=A.r,this.y=A.g,this.z=A.b,this}equals(A){return A.x===this.x&&A.y===this.y&&A.z===this.z}fromArray(A,t=0){return this.x=A[t],this.y=A[t+1],this.z=A[t+2],this}toArray(A=[],t=0){return A[t]=this.x,A[t+1]=this.y,A[t+2]=this.z,A}fromBufferAttribute(A,t){return this.x=A.getX(t),this.y=A.getY(t),this.z=A.getZ(t),this}random(){return this.x=Math.random(),this.y=Math.random(),this.z=Math.random(),this}randomDirection(){const A=Math.random()*Math.PI*2,t=Math.random()*2-1,e=Math.sqrt(1-t*t);return this.x=e*Math.cos(A),this.y=t,this.z=e*Math.sin(A),this}*[Symbol.iterator](){yield this.x,yield this.y,yield this.z}}const Ci=new u,Ms=new gA;class Ft{constructor(A=new u(1/0,1/0,1/0),t=new u(-1/0,-1/0,-1/0)){this.isBox3=!0,this.min=A,this.max=t}set(A,t){return this.min.copy(A),this.max.copy(t),this}setFromArray(A){this.makeEmpty();for(let t=0,e=A.length;t=this.min.x&&A.x<=this.max.x&&A.y>=this.min.y&&A.y<=this.max.y&&A.z>=this.min.z&&A.z<=this.max.z}containsBox(A){return this.min.x<=A.min.x&&A.max.x<=this.max.x&&this.min.y<=A.min.y&&A.max.y<=this.max.y&&this.min.z<=A.min.z&&A.max.z<=this.max.z}getParameter(A,t){return t.set((A.x-this.min.x)/(this.max.x-this.min.x),(A.y-this.min.y)/(this.max.y-this.min.y),(A.z-this.min.z)/(this.max.z-this.min.z))}intersectsBox(A){return A.max.x>=this.min.x&&A.min.x<=this.max.x&&A.max.y>=this.min.y&&A.min.y<=this.max.y&&A.max.z>=this.min.z&&A.min.z<=this.max.z}intersectsSphere(A){return this.clampPoint(A.center,JA),JA.distanceToSquared(A.center)<=A.radius*A.radius}intersectsPlane(A){let t,e;return A.normal.x>0?(t=A.normal.x*this.min.x,e=A.normal.x*this.max.x):(t=A.normal.x*this.max.x,e=A.normal.x*this.min.x),A.normal.y>0?(t+=A.normal.y*this.min.y,e+=A.normal.y*this.max.y):(t+=A.normal.y*this.max.y,e+=A.normal.y*this.min.y),A.normal.z>0?(t+=A.normal.z*this.min.z,e+=A.normal.z*this.max.z):(t+=A.normal.z*this.max.z,e+=A.normal.z*this.min.z),t<=-A.constant&&e>=-A.constant}intersectsTriangle(A){if(this.isEmpty())return!1;this.getCenter(se),me.subVectors(this.max,se),Nt.subVectors(A.a,se),kt.subVectors(A.b,se),Rt.subVectors(A.c,se),at.subVectors(kt,Nt),gt.subVectors(Rt,kt),lt.subVectors(Nt,Rt);let t=[0,-at.z,at.y,0,-gt.z,gt.y,0,-lt.z,lt.y,at.z,0,-at.x,gt.z,0,-gt.x,lt.z,0,-lt.x,-at.y,at.x,0,-gt.y,gt.x,0,-lt.y,lt.x,0];return!ci(t,Nt,kt,Rt,me)||(t=[1,0,0,0,1,0,0,0,1],!ci(t,Nt,kt,Rt,me))?!1:(xe.crossVectors(at,gt),t=[xe.x,xe.y,xe.z],ci(t,Nt,kt,Rt,me))}clampPoint(A,t){return t.copy(A).clamp(this.min,this.max)}distanceToPoint(A){return this.clampPoint(A,JA).distanceTo(A)}getBoundingSphere(A){return this.isEmpty()?A.makeEmpty():(this.getCenter(A.center),A.radius=this.getSize(JA).length()*.5),A}intersect(A){return this.min.max(A.min),this.max.min(A.max),this.isEmpty()&&this.makeEmpty(),this}union(A){return this.min.min(A.min),this.max.max(A.max),this}applyMatrix4(A){return this.isEmpty()?this:(PA[0].set(this.min.x,this.min.y,this.min.z).applyMatrix4(A),PA[1].set(this.min.x,this.min.y,this.max.z).applyMatrix4(A),PA[2].set(this.min.x,this.max.y,this.min.z).applyMatrix4(A),PA[3].set(this.min.x,this.max.y,this.max.z).applyMatrix4(A),PA[4].set(this.max.x,this.min.y,this.min.z).applyMatrix4(A),PA[5].set(this.max.x,this.min.y,this.max.z).applyMatrix4(A),PA[6].set(this.max.x,this.max.y,this.min.z).applyMatrix4(A),PA[7].set(this.max.x,this.max.y,this.max.z).applyMatrix4(A),this.setFromPoints(PA),this)}translate(A){return this.min.add(A),this.max.add(A),this}equals(A){return A.min.equals(this.min)&&A.max.equals(this.max)}}const PA=[new u,new u,new u,new u,new u,new u,new u,new u],JA=new u,De=new Ft,Nt=new u,kt=new u,Rt=new u,at=new u,gt=new u,lt=new u,se=new u,me=new u,xe=new u,ut=new u;function ci(g,A,t,e,i){for(let s=0,n=g.length-3;s<=n;s+=3){ut.fromArray(g,s);const r=i.x*Math.abs(ut.x)+i.y*Math.abs(ut.y)+i.z*Math.abs(ut.z),a=A.dot(ut),o=t.dot(ut),B=e.dot(ut);if(Math.max(-Math.max(a,o,B),Math.min(a,o,B))>r)return!1}return!0}const ar=new Ft,ne=new u,li=new u;class Ss{constructor(A=new u,t=-1){this.isSphere=!0,this.center=A,this.radius=t}set(A,t){return this.center.copy(A),this.radius=t,this}setFromPoints(A,t){const e=this.center;t!==void 0?e.copy(t):ar.setFromPoints(A).getCenter(e);let i=0;for(let s=0,n=A.length;sthis.radius*this.radius&&(t.sub(this.center).normalize(),t.multiplyScalar(this.radius).add(this.center)),t}getBoundingBox(A){return this.isEmpty()?(A.makeEmpty(),A):(A.set(this.center,this.center),A.expandByScalar(this.radius),A)}applyMatrix4(A){return this.center.applyMatrix4(A),this.radius=this.radius*A.getMaxScaleOnAxis(),this}translate(A){return this.center.add(A),this}expandByPoint(A){if(this.isEmpty())return this.center.copy(A),this.radius=0,this;ne.subVectors(A,this.center);const t=ne.lengthSq();if(t>this.radius*this.radius){const e=Math.sqrt(t),i=(e-this.radius)*.5;this.center.addScaledVector(ne,i/e),this.radius+=i}return this}union(A){return A.isEmpty()?this:this.isEmpty()?(this.copy(A),this):(this.center.equals(A.center)===!0?this.radius=Math.max(this.radius,A.radius):(li.subVectors(A.center,this.center).setLength(A.radius),this.expandByPoint(ne.copy(A.center).add(li)),this.expandByPoint(ne.copy(A.center).sub(li))),this)}equals(A){return A.center.equals(this.center)&&A.radius===this.radius}clone(){return new this.constructor().copy(this)}}const OA=new u,ui=new u,Me=new u,ot=new u,di=new u,Se=new u,yi=new u;class gr{constructor(A=new u,t=new u(0,0,-1)){this.origin=A,this.direction=t}set(A,t){return this.origin.copy(A),this.direction.copy(t),this}copy(A){return this.origin.copy(A.origin),this.direction.copy(A.direction),this}at(A,t){return t.copy(this.origin).addScaledVector(this.direction,A)}lookAt(A){return this.direction.copy(A).sub(this.origin).normalize(),this}recast(A){return this.origin.copy(this.at(A,OA)),this}closestPointToPoint(A,t){t.subVectors(A,this.origin);const e=t.dot(this.direction);return e<0?t.copy(this.origin):t.copy(this.origin).addScaledVector(this.direction,e)}distanceToPoint(A){return Math.sqrt(this.distanceSqToPoint(A))}distanceSqToPoint(A){const t=OA.subVectors(A,this.origin).dot(this.direction);return t<0?this.origin.distanceToSquared(A):(OA.copy(this.origin).addScaledVector(this.direction,t),OA.distanceToSquared(A))}distanceSqToSegment(A,t,e,i){ui.copy(A).add(t).multiplyScalar(.5),Me.copy(t).sub(A).normalize(),ot.copy(this.origin).sub(ui);const s=A.distanceTo(t)*.5,n=-this.direction.dot(Me),r=ot.dot(this.direction),a=-ot.dot(Me),o=ot.lengthSq(),B=Math.abs(1-n*n);let I,Q,h,E;if(B>0)if(I=n*a-r,Q=n*r-a,E=s*B,I>=0)if(Q>=-E)if(Q<=E){const C=1/B;I*=C,Q*=C,h=I*(I+n*Q+2*r)+Q*(n*I+Q+2*a)+o}else Q=s,I=Math.max(0,-(n*Q+r)),h=-I*I+Q*(Q+2*a)+o;else Q=-s,I=Math.max(0,-(n*Q+r)),h=-I*I+Q*(Q+2*a)+o;else Q<=-E?(I=Math.max(0,-(-n*s+r)),Q=I>0?-s:Math.min(Math.max(-s,-a),s),h=-I*I+Q*(Q+2*a)+o):Q<=E?(I=0,Q=Math.min(Math.max(-s,-a),s),h=Q*(Q+2*a)+o):(I=Math.max(0,-(n*s+r)),Q=I>0?s:Math.min(Math.max(-s,-a),s),h=-I*I+Q*(Q+2*a)+o);else Q=n>0?-s:s,I=Math.max(0,-(n*Q+r)),h=-I*I+Q*(Q+2*a)+o;return e&&e.copy(this.origin).addScaledVector(this.direction,I),i&&i.copy(ui).addScaledVector(Me,Q),h}intersectSphere(A,t){OA.subVectors(A.center,this.origin);const e=OA.dot(this.direction),i=OA.dot(OA)-e*e,s=A.radius*A.radius;if(i>s)return null;const n=Math.sqrt(s-i),r=e-n,a=e+n;return a<0?null:r<0?this.at(a,t):this.at(r,t)}intersectsSphere(A){return this.distanceSqToPoint(A.center)<=A.radius*A.radius}distanceToPlane(A){const t=A.normal.dot(this.direction);if(t===0)return A.distanceToPoint(this.origin)===0?0:null;const e=-(this.origin.dot(A.normal)+A.constant)/t;return e>=0?e:null}intersectPlane(A,t){const e=this.distanceToPlane(A);return e===null?null:this.at(e,t)}intersectsPlane(A){const t=A.distanceToPoint(this.origin);return t===0||A.normal.dot(this.direction)*t<0}intersectBox(A,t){let e,i,s,n,r,a;const o=1/this.direction.x,B=1/this.direction.y,I=1/this.direction.z,Q=this.origin;return o>=0?(e=(A.min.x-Q.x)*o,i=(A.max.x-Q.x)*o):(e=(A.max.x-Q.x)*o,i=(A.min.x-Q.x)*o),B>=0?(s=(A.min.y-Q.y)*B,n=(A.max.y-Q.y)*B):(s=(A.max.y-Q.y)*B,n=(A.min.y-Q.y)*B),e>n||s>i||((s>e||isNaN(e))&&(e=s),(n=0?(r=(A.min.z-Q.z)*I,a=(A.max.z-Q.z)*I):(r=(A.max.z-Q.z)*I,a=(A.min.z-Q.z)*I),e>a||r>i)||((r>e||e!==e)&&(e=r),(a=0?e:i,t)}intersectsBox(A){return this.intersectBox(A,OA)!==null}intersectTriangle(A,t,e,i,s){di.subVectors(t,A),Se.subVectors(e,A),yi.crossVectors(di,Se);let n=this.direction.dot(yi),r;if(n>0){if(i)return null;r=1}else if(n<0)r=-1,n=-n;else return null;ot.subVectors(this.origin,A);const a=r*this.direction.dot(Se.crossVectors(ot,Se));if(a<0)return null;const o=r*this.direction.dot(di.cross(ot));if(o<0||a+o>n)return null;const B=-r*ot.dot(yi);return B<0?null:this.at(B/n,s)}applyMatrix4(A){return this.origin.applyMatrix4(A),this.direction.transformDirection(A),this}equals(A){return A.origin.equals(this.origin)&&A.direction.equals(this.direction)}clone(){return new this.constructor().copy(this)}}class CA{constructor(A,t,e,i,s,n,r,a,o,B,I,Q,h,E,C,c){CA.prototype.isMatrix4=!0,this.elements=[1,0,0,0,0,1,0,0,0,0,1,0,0,0,0,1],A!==void 0&&this.set(A,t,e,i,s,n,r,a,o,B,I,Q,h,E,C,c)}set(A,t,e,i,s,n,r,a,o,B,I,Q,h,E,C,c){const l=this.elements;return l[0]=A,l[4]=t,l[8]=e,l[12]=i,l[1]=s,l[5]=n,l[9]=r,l[13]=a,l[2]=o,l[6]=B,l[10]=I,l[14]=Q,l[3]=h,l[7]=E,l[11]=C,l[15]=c,this}identity(){return this.set(1,0,0,0,0,1,0,0,0,0,1,0,0,0,0,1),this}clone(){return new CA().fromArray(this.elements)}copy(A){const t=this.elements,e=A.elements;return t[0]=e[0],t[1]=e[1],t[2]=e[2],t[3]=e[3],t[4]=e[4],t[5]=e[5],t[6]=e[6],t[7]=e[7],t[8]=e[8],t[9]=e[9],t[10]=e[10],t[11]=e[11],t[12]=e[12],t[13]=e[13],t[14]=e[14],t[15]=e[15],this}copyPosition(A){const t=this.elements,e=A.elements;return t[12]=e[12],t[13]=e[13],t[14]=e[14],this}setFromMatrix3(A){const t=A.elements;return this.set(t[0],t[3],t[6],0,t[1],t[4],t[7],0,t[2],t[5],t[8],0,0,0,0,1),this}extractBasis(A,t,e){return A.setFromMatrixColumn(this,0),t.setFromMatrixColumn(this,1),e.setFromMatrixColumn(this,2),this}makeBasis(A,t,e){return this.set(A.x,t.x,e.x,0,A.y,t.y,e.y,0,A.z,t.z,e.z,0,0,0,0,1),this}extractRotation(A){const t=this.elements,e=A.elements,i=1/Ut.setFromMatrixColumn(A,0).length(),s=1/Ut.setFromMatrixColumn(A,1).length(),n=1/Ut.setFromMatrixColumn(A,2).length();return t[0]=e[0]*i,t[1]=e[1]*i,t[2]=e[2]*i,t[3]=0,t[4]=e[4]*s,t[5]=e[5]*s,t[6]=e[6]*s,t[7]=0,t[8]=e[8]*n,t[9]=e[9]*n,t[10]=e[10]*n,t[11]=0,t[12]=0,t[13]=0,t[14]=0,t[15]=1,this}makeRotationFromEuler(A){const t=this.elements,e=A.x,i=A.y,s=A.z,n=Math.cos(e),r=Math.sin(e),a=Math.cos(i),o=Math.sin(i),B=Math.cos(s),I=Math.sin(s);if(A.order==="XYZ"){const Q=n*B,h=n*I,E=r*B,C=r*I;t[0]=a*B,t[4]=-a*I,t[8]=o,t[1]=h+E*o,t[5]=Q-C*o,t[9]=-r*a,t[2]=C-Q*o,t[6]=E+h*o,t[10]=n*a}else if(A.order==="YXZ"){const Q=a*B,h=a*I,E=o*B,C=o*I;t[0]=Q+C*r,t[4]=E*r-h,t[8]=n*o,t[1]=n*I,t[5]=n*B,t[9]=-r,t[2]=h*r-E,t[6]=C+Q*r,t[10]=n*a}else if(A.order==="ZXY"){const Q=a*B,h=a*I,E=o*B,C=o*I;t[0]=Q-C*r,t[4]=-n*I,t[8]=E+h*r,t[1]=h+E*r,t[5]=n*B,t[9]=C-Q*r,t[2]=-n*o,t[6]=r,t[10]=n*a}else if(A.order==="ZYX"){const Q=n*B,h=n*I,E=r*B,C=r*I;t[0]=a*B,t[4]=E*o-h,t[8]=Q*o+C,t[1]=a*I,t[5]=C*o+Q,t[9]=h*o-E,t[2]=-o,t[6]=r*a,t[10]=n*a}else if(A.order==="YZX"){const Q=n*a,h=n*o,E=r*a,C=r*o;t[0]=a*B,t[4]=C-Q*I,t[8]=E*I+h,t[1]=I,t[5]=n*B,t[9]=-r*B,t[2]=-o*B,t[6]=h*I+E,t[10]=Q-C*I}else if(A.order==="XZY"){const Q=n*a,h=n*o,E=r*a,C=r*o;t[0]=a*B,t[4]=-I,t[8]=o*B,t[1]=Q*I+C,t[5]=n*B,t[9]=h*I-E,t[2]=E*I-h,t[6]=r*B,t[10]=C*I+Q}return t[3]=0,t[7]=0,t[11]=0,t[12]=0,t[13]=0,t[14]=0,t[15]=1,this}makeRotationFromQuaternion(A){return this.compose(or,A,Ir)}lookAt(A,t,e){const i=this.elements;return xA.subVectors(A,t),xA.lengthSq()===0&&(xA.z=1),xA.normalize(),It.crossVectors(e,xA),It.lengthSq()===0&&(Math.abs(e.z)===1?xA.x+=1e-4:xA.z+=1e-4,xA.normalize(),It.crossVectors(e,xA)),It.normalize(),Fe.crossVectors(xA,It),i[0]=It.x,i[4]=Fe.x,i[8]=xA.x,i[1]=It.y,i[5]=Fe.y,i[9]=xA.y,i[2]=It.z,i[6]=Fe.z,i[10]=xA.z,this}multiply(A){return this.multiplyMatrices(this,A)}premultiply(A){return this.multiplyMatrices(A,this)}multiplyMatrices(A,t){const e=A.elements,i=t.elements,s=this.elements,n=e[0],r=e[4],a=e[8],o=e[12],B=e[1],I=e[5],Q=e[9],h=e[13],E=e[2],C=e[6],c=e[10],l=e[14],y=e[3],d=e[7],f=e[11],p=e[15],m=i[0],x=i[4],w=i[8],D=i[12],N=i[1],M=i[5],S=i[9],F=i[13],k=i[2],U=i[6],R=i[10],G=i[14],v=i[3],T=i[7],$=i[11],V=i[15];return s[0]=n*m+r*N+a*k+o*v,s[4]=n*x+r*M+a*U+o*T,s[8]=n*w+r*S+a*R+o*$,s[12]=n*D+r*F+a*G+o*V,s[1]=B*m+I*N+Q*k+h*v,s[5]=B*x+I*M+Q*U+h*T,s[9]=B*w+I*S+Q*R+h*$,s[13]=B*D+I*F+Q*G+h*V,s[2]=E*m+C*N+c*k+l*v,s[6]=E*x+C*M+c*U+l*T,s[10]=E*w+C*S+c*R+l*$,s[14]=E*D+C*F+c*G+l*V,s[3]=y*m+d*N+f*k+p*v,s[7]=y*x+d*M+f*U+p*T,s[11]=y*w+d*S+f*R+p*$,s[15]=y*D+d*F+f*G+p*V,this}multiplyScalar(A){const t=this.elements;return t[0]*=A,t[4]*=A,t[8]*=A,t[12]*=A,t[1]*=A,t[5]*=A,t[9]*=A,t[13]*=A,t[2]*=A,t[6]*=A,t[10]*=A,t[14]*=A,t[3]*=A,t[7]*=A,t[11]*=A,t[15]*=A,this}determinant(){const A=this.elements,t=A[0],e=A[4],i=A[8],s=A[12],n=A[1],r=A[5],a=A[9],o=A[13],B=A[2],I=A[6],Q=A[10],h=A[14],E=A[3],C=A[7],c=A[11],l=A[15];return E*(+s*a*I-i*o*I-s*r*Q+e*o*Q+i*r*h-e*a*h)+C*(+t*a*h-t*o*Q+s*n*Q-i*n*h+i*o*B-s*a*B)+c*(+t*o*I-t*r*h-s*n*I+e*n*h+s*r*B-e*o*B)+l*(-i*r*B-t*a*I+t*r*Q+i*n*I-e*n*Q+e*a*B)}transpose(){const A=this.elements;let t;return t=A[1],A[1]=A[4],A[4]=t,t=A[2],A[2]=A[8],A[8]=t,t=A[6],A[6]=A[9],A[9]=t,t=A[3],A[3]=A[12],A[12]=t,t=A[7],A[7]=A[13],A[13]=t,t=A[11],A[11]=A[14],A[14]=t,this}setPosition(A,t,e){const i=this.elements;return A.isVector3?(i[12]=A.x,i[13]=A.y,i[14]=A.z):(i[12]=A,i[13]=t,i[14]=e),this}invert(){const A=this.elements,t=A[0],e=A[1],i=A[2],s=A[3],n=A[4],r=A[5],a=A[6],o=A[7],B=A[8],I=A[9],Q=A[10],h=A[11],E=A[12],C=A[13],c=A[14],l=A[15],y=I*c*o-C*Q*o+C*a*h-r*c*h-I*a*l+r*Q*l,d=E*Q*o-B*c*o-E*a*h+n*c*h+B*a*l-n*Q*l,f=B*C*o-E*I*o+E*r*h-n*C*h-B*r*l+n*I*l,p=E*I*a-B*C*a-E*r*Q+n*C*Q+B*r*c-n*I*c,m=t*y+e*d+i*f+s*p;if(m===0)return this.set(0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0);const x=1/m;return A[0]=y*x,A[1]=(C*Q*s-I*c*s-C*i*h+e*c*h+I*i*l-e*Q*l)*x,A[2]=(r*c*s-C*a*s+C*i*o-e*c*o-r*i*l+e*a*l)*x,A[3]=(I*a*s-r*Q*s-I*i*o+e*Q*o+r*i*h-e*a*h)*x,A[4]=d*x,A[5]=(B*c*s-E*Q*s+E*i*h-t*c*h-B*i*l+t*Q*l)*x,A[6]=(E*a*s-n*c*s-E*i*o+t*c*o+n*i*l-t*a*l)*x,A[7]=(n*Q*s-B*a*s+B*i*o-t*Q*o-n*i*h+t*a*h)*x,A[8]=f*x,A[9]=(E*I*s-B*C*s-E*e*h+t*C*h+B*e*l-t*I*l)*x,A[10]=(n*C*s-E*r*s+E*e*o-t*C*o-n*e*l+t*r*l)*x,A[11]=(B*r*s-n*I*s-B*e*o+t*I*o+n*e*h-t*r*h)*x,A[12]=p*x,A[13]=(B*C*i-E*I*i+E*e*Q-t*C*Q-B*e*c+t*I*c)*x,A[14]=(E*r*i-n*C*i-E*e*a+t*C*a+n*e*c-t*r*c)*x,A[15]=(n*I*i-B*r*i+B*e*a-t*I*a-n*e*Q+t*r*Q)*x,this}scale(A){const t=this.elements,e=A.x,i=A.y,s=A.z;return t[0]*=e,t[4]*=i,t[8]*=s,t[1]*=e,t[5]*=i,t[9]*=s,t[2]*=e,t[6]*=i,t[10]*=s,t[3]*=e,t[7]*=i,t[11]*=s,this}getMaxScaleOnAxis(){const A=this.elements,t=A[0]*A[0]+A[1]*A[1]+A[2]*A[2],e=A[4]*A[4]+A[5]*A[5]+A[6]*A[6],i=A[8]*A[8]+A[9]*A[9]+A[10]*A[10];return Math.sqrt(Math.max(t,e,i))}makeTranslation(A,t,e){return A.isVector3?this.set(1,0,0,A.x,0,1,0,A.y,0,0,1,A.z,0,0,0,1):this.set(1,0,0,A,0,1,0,t,0,0,1,e,0,0,0,1),this}makeRotationX(A){const t=Math.cos(A),e=Math.sin(A);return this.set(1,0,0,0,0,t,-e,0,0,e,t,0,0,0,0,1),this}makeRotationY(A){const t=Math.cos(A),e=Math.sin(A);return this.set(t,0,e,0,0,1,0,0,-e,0,t,0,0,0,0,1),this}makeRotationZ(A){const t=Math.cos(A),e=Math.sin(A);return this.set(t,-e,0,0,e,t,0,0,0,0,1,0,0,0,0,1),this}makeRotationAxis(A,t){const e=Math.cos(t),i=Math.sin(t),s=1-e,n=A.x,r=A.y,a=A.z,o=s*n,B=s*r;return this.set(o*n+e,o*r-i*a,o*a+i*r,0,o*r+i*a,B*r+e,B*a-i*n,0,o*a-i*r,B*a+i*n,s*a*a+e,0,0,0,0,1),this}makeScale(A,t,e){return this.set(A,0,0,0,0,t,0,0,0,0,e,0,0,0,0,1),this}makeShear(A,t,e,i,s,n){return this.set(1,e,s,0,A,1,n,0,t,i,1,0,0,0,0,1),this}compose(A,t,e){const i=this.elements,s=t._x,n=t._y,r=t._z,a=t._w,o=s+s,B=n+n,I=r+r,Q=s*o,h=s*B,E=s*I,C=n*B,c=n*I,l=r*I,y=a*o,d=a*B,f=a*I,p=e.x,m=e.y,x=e.z;return i[0]=(1-(C+l))*p,i[1]=(h+f)*p,i[2]=(E-d)*p,i[3]=0,i[4]=(h-f)*m,i[5]=(1-(Q+l))*m,i[6]=(c+y)*m,i[7]=0,i[8]=(E+d)*x,i[9]=(c-y)*x,i[10]=(1-(Q+C))*x,i[11]=0,i[12]=A.x,i[13]=A.y,i[14]=A.z,i[15]=1,this}decompose(A,t,e){const i=this.elements;let s=Ut.set(i[0],i[1],i[2]).length();const n=Ut.set(i[4],i[5],i[6]).length(),r=Ut.set(i[8],i[9],i[10]).length();this.determinant()<0&&(s=-s),A.x=i[12],A.y=i[13],A.z=i[14],HA.copy(this);const o=1/s,B=1/n,I=1/r;return HA.elements[0]*=o,HA.elements[1]*=o,HA.elements[2]*=o,HA.elements[4]*=B,HA.elements[5]*=B,HA.elements[6]*=B,HA.elements[8]*=I,HA.elements[9]*=I,HA.elements[10]*=I,t.setFromRotationMatrix(HA),e.x=s,e.y=n,e.z=r,this}makePerspective(A,t,e,i,s,n,r=Ae){const a=this.elements,o=2*s/(t-A),B=2*s/(e-i),I=(t+A)/(t-A),Q=(e+i)/(e-i);let h,E;if(r===Ae)h=-(n+s)/(n-s),E=-2*n*s/(n-s);else if(r===fs)h=-n/(n-s),E=-n*s/(n-s);else throw new Error("THREE.Matrix4.makePerspective(): Invalid coordinate system: "+r);return a[0]=o,a[4]=0,a[8]=I,a[12]=0,a[1]=0,a[5]=B,a[9]=Q,a[13]=0,a[2]=0,a[6]=0,a[10]=h,a[14]=E,a[3]=0,a[7]=0,a[11]=-1,a[15]=0,this}makeOrthographic(A,t,e,i,s,n,r=Ae){const a=this.elements,o=1/(t-A),B=1/(e-i),I=1/(n-s),Q=(t+A)*o,h=(e+i)*B;let E,C;if(r===Ae)E=(n+s)*I,C=-2*I;else if(r===fs)E=s*I,C=-1*I;else throw new Error("THREE.Matrix4.makeOrthographic(): Invalid coordinate system: "+r);return a[0]=2*o,a[4]=0,a[8]=0,a[12]=-Q,a[1]=0,a[5]=2*B,a[9]=0,a[13]=-h,a[2]=0,a[6]=0,a[10]=C,a[14]=-E,a[3]=0,a[7]=0,a[11]=0,a[15]=1,this}equals(A){const t=this.elements,e=A.elements;for(let i=0;i<16;i++)if(t[i]!==e[i])return!1;return!0}fromArray(A,t=0){for(let e=0;e<16;e++)this.elements[e]=A[e+t];return this}toArray(A=[],t=0){const e=this.elements;return A[t]=e[0],A[t+1]=e[1],A[t+2]=e[2],A[t+3]=e[3],A[t+4]=e[4],A[t+5]=e[5],A[t+6]=e[6],A[t+7]=e[7],A[t+8]=e[8],A[t+9]=e[9],A[t+10]=e[10],A[t+11]=e[11],A[t+12]=e[12],A[t+13]=e[13],A[t+14]=e[14],A[t+15]=e[15],A}}const Ut=new u,HA=new CA,or=new u(0,0,0),Ir=new u(1,1,1),It=new u,Fe=new u,xA=new u,Fs=new CA,Ns=new gA;class dt{constructor(A=0,t=0,e=0,i=dt.DEFAULT_ORDER){this.isEuler=!0,this._x=A,this._y=t,this._z=e,this._order=i}get x(){return this._x}set x(A){this._x=A,this._onChangeCallback()}get y(){return this._y}set y(A){this._y=A,this._onChangeCallback()}get z(){return this._z}set z(A){this._z=A,this._onChangeCallback()}get order(){return this._order}set order(A){this._order=A,this._onChangeCallback()}set(A,t,e,i=this._order){return this._x=A,this._y=t,this._z=e,this._order=i,this._onChangeCallback(),this}clone(){return new this.constructor(this._x,this._y,this._z,this._order)}copy(A){return this._x=A._x,this._y=A._y,this._z=A._z,this._order=A._order,this._onChangeCallback(),this}setFromRotationMatrix(A,t=this._order,e=!0){const i=A.elements,s=i[0],n=i[4],r=i[8],a=i[1],o=i[5],B=i[9],I=i[2],Q=i[6],h=i[10];switch(t){case"XYZ":this._y=Math.asin(H(r,-1,1)),Math.abs(r)<.9999999?(this._x=Math.atan2(-B,h),this._z=Math.atan2(-n,s)):(this._x=Math.atan2(Q,o),this._z=0);break;case"YXZ":this._x=Math.asin(-H(B,-1,1)),Math.abs(B)<.9999999?(this._y=Math.atan2(r,h),this._z=Math.atan2(a,o)):(this._y=Math.atan2(-I,s),this._z=0);break;case"ZXY":this._x=Math.asin(H(Q,-1,1)),Math.abs(Q)<.9999999?(this._y=Math.atan2(-I,h),this._z=Math.atan2(-n,o)):(this._y=0,this._z=Math.atan2(a,s));break;case"ZYX":this._y=Math.asin(-H(I,-1,1)),Math.abs(I)<.9999999?(this._x=Math.atan2(Q,h),this._z=Math.atan2(a,s)):(this._x=0,this._z=Math.atan2(-n,o));break;case"YZX":this._z=Math.asin(H(a,-1,1)),Math.abs(a)<.9999999?(this._x=Math.atan2(-B,o),this._y=Math.atan2(-I,s)):(this._x=0,this._y=Math.atan2(r,h));break;case"XZY":this._z=Math.asin(-H(n,-1,1)),Math.abs(n)<.9999999?(this._x=Math.atan2(Q,o),this._y=Math.atan2(r,s)):(this._x=Math.atan2(-B,h),this._y=0);break;default:console.warn("THREE.Euler: .setFromRotationMatrix() encountered an unknown order: "+t)}return this._order=t,e===!0&&this._onChangeCallback(),this}setFromQuaternion(A,t,e){return Fs.makeRotationFromQuaternion(A),this.setFromRotationMatrix(Fs,t,e)}setFromVector3(A,t=this._order){return this.set(A.x,A.y,A.z,t)}reorder(A){return Ns.setFromEuler(this),this.setFromQuaternion(Ns,A)}equals(A){return A._x===this._x&&A._y===this._y&&A._z===this._z&&A._order===this._order}fromArray(A){return this._x=A[0],this._y=A[1],this._z=A[2],A[3]!==void 0&&(this._order=A[3]),this._onChangeCallback(),this}toArray(A=[],t=0){return A[t]=this._x,A[t+1]=this._y,A[t+2]=this._z,A[t+3]=this._order,A}_onChange(A){return this._onChangeCallback=A,this}_onChangeCallback(){}*[Symbol.iterator](){yield this._x,yield this._y,yield this._z,yield this._order}}dt.DEFAULT_ORDER="XYZ";class Br{constructor(){this.mask=1}set(A){this.mask=(1<>>0}enable(A){this.mask|=1<1){for(let t=0;t1){for(let e=0;e0&&(i.userData=this.userData),i.layers=this.layers.mask,i.matrix=this.matrix.toArray(),i.up=this.up.toArray(),this.matrixAutoUpdate===!1&&(i.matrixAutoUpdate=!1),this.isInstancedMesh&&(i.type="InstancedMesh",i.count=this.count,i.instanceMatrix=this.instanceMatrix.toJSON(),this.instanceColor!==null&&(i.instanceColor=this.instanceColor.toJSON())),this.isBatchedMesh&&(i.type="BatchedMesh",i.perObjectFrustumCulled=this.perObjectFrustumCulled,i.sortObjects=this.sortObjects,i.drawRanges=this._drawRanges,i.reservedRanges=this._reservedRanges,i.visibility=this._visibility,i.active=this._active,i.bounds=this._bounds.map(r=>({boxInitialized:r.boxInitialized,boxMin:r.box.min.toArray(),boxMax:r.box.max.toArray(),sphereInitialized:r.sphereInitialized,sphereRadius:r.sphere.radius,sphereCenter:r.sphere.center.toArray()})),i.maxInstanceCount=this._maxInstanceCount,i.maxVertexCount=this._maxVertexCount,i.maxIndexCount=this._maxIndexCount,i.geometryInitialized=this._geometryInitialized,i.geometryCount=this._geometryCount,i.matricesTexture=this._matricesTexture.toJSON(A),this._colorsTexture!==null&&(i.colorsTexture=this._colorsTexture.toJSON(A)),this.boundingSphere!==null&&(i.boundingSphere={center:i.boundingSphere.center.toArray(),radius:i.boundingSphere.radius}),this.boundingBox!==null&&(i.boundingBox={min:i.boundingBox.min.toArray(),max:i.boundingBox.max.toArray()}));function s(r,a){return r[a.uuid]===void 0&&(r[a.uuid]=a.toJSON(A)),a.uuid}if(this.isScene)this.background&&(this.background.isColor?i.background=this.background.toJSON():this.background.isTexture&&(i.background=this.background.toJSON(A).uuid)),this.environment&&this.environment.isTexture&&this.environment.isRenderTargetTexture!==!0&&(i.environment=this.environment.toJSON(A).uuid);else if(this.isMesh||this.isLine||this.isPoints){i.geometry=s(A.geometries,this.geometry);const r=this.geometry.parameters;if(r!==void 0&&r.shapes!==void 0){const a=r.shapes;if(Array.isArray(a))for(let o=0,B=a.length;o0){i.children=[];for(let r=0;r0){i.animations=[];for(let r=0;r0&&(e.geometries=r),a.length>0&&(e.materials=a),o.length>0&&(e.textures=o),B.length>0&&(e.images=B),I.length>0&&(e.shapes=I),Q.length>0&&(e.skeletons=Q),h.length>0&&(e.animations=h),E.length>0&&(e.nodes=E)}return e.object=i,e;function n(r){const a=[];for(const o in r){const B=r[o];delete B.metadata,a.push(B)}return a}}clone(A){return new this.constructor().copy(this,A)}copy(A,t=!0){if(this.name=A.name,this.up.copy(A.up),this.position.copy(A.position),this.rotation.order=A.rotation.order,this.quaternion.copy(A.quaternion),this.scale.copy(A.scale),this.matrix.copy(A.matrix),this.matrixWorld.copy(A.matrixWorld),this.matrixAutoUpdate=A.matrixAutoUpdate,this.matrixWorldAutoUpdate=A.matrixWorldAutoUpdate,this.matrixWorldNeedsUpdate=A.matrixWorldNeedsUpdate,this.layers.mask=A.layers.mask,this.visible=A.visible,this.castShadow=A.castShadow,this.receiveShadow=A.receiveShadow,this.frustumCulled=A.frustumCulled,this.renderOrder=A.renderOrder,this.animations=A.animations.slice(),this.userData=JSON.parse(JSON.stringify(A.userData)),t===!0)for(let e=0;e0?i.multiplyScalar(1/Math.sqrt(s)):i.set(0,0,0)}static getBarycoord(A,t,e,i,s){TA.subVectors(i,t),XA.subVectors(e,t),wi.subVectors(A,t);const n=TA.dot(TA),r=TA.dot(XA),a=TA.dot(wi),o=XA.dot(XA),B=XA.dot(wi),I=n*o-r*r;if(I===0)return s.set(0,0,0),null;const Q=1/I,h=(o*a-r*B)*Q,E=(n*B-r*a)*Q;return s.set(1-h-E,E,h)}static containsPoint(A,t,e,i){return this.getBarycoord(A,t,e,i,jA)===null?!1:jA.x>=0&&jA.y>=0&&jA.x+jA.y<=1}static getInterpolation(A,t,e,i,s,n,r,a){return this.getBarycoord(A,t,e,i,jA)===null?(a.x=0,a.y=0,"z"in a&&(a.z=0),"w"in a&&(a.w=0),null):(a.setScalar(0),a.addScaledVector(s,jA.x),a.addScaledVector(n,jA.y),a.addScaledVector(r,jA.z),a)}static getInterpolatedAttribute(A,t,e,i,s,n){return xi.setScalar(0),Mi.setScalar(0),Si.setScalar(0),xi.fromBufferAttribute(A,t),Mi.fromBufferAttribute(A,e),Si.fromBufferAttribute(A,i),n.setScalar(0),n.addScaledVector(xi,s.x),n.addScaledVector(Mi,s.y),n.addScaledVector(Si,s.z),n}static isFrontFacing(A,t,e,i){return TA.subVectors(e,t),XA.subVectors(A,t),TA.cross(XA).dot(i)<0}set(A,t,e){return this.a.copy(A),this.b.copy(t),this.c.copy(e),this}setFromPointsAndIndices(A,t,e,i){return this.a.copy(A[t]),this.b.copy(A[e]),this.c.copy(A[i]),this}setFromAttributeAndIndices(A,t,e,i){return this.a.fromBufferAttribute(A,t),this.b.fromBufferAttribute(A,e),this.c.fromBufferAttribute(A,i),this}clone(){return new this.constructor().copy(this)}copy(A){return this.a.copy(A.a),this.b.copy(A.b),this.c.copy(A.c),this}getArea(){return TA.subVectors(this.c,this.b),XA.subVectors(this.a,this.b),TA.cross(XA).length()*.5}getMidpoint(A){return A.addVectors(this.a,this.b).add(this.c).multiplyScalar(1/3)}getNormal(A){return zA.getNormal(this.a,this.b,this.c,A)}getPlane(A){return A.setFromCoplanarPoints(this.a,this.b,this.c)}getBarycoord(A,t){return zA.getBarycoord(A,this.a,this.b,this.c,t)}getInterpolation(A,t,e,i,s){return zA.getInterpolation(A,this.a,this.b,this.c,t,e,i,s)}containsPoint(A){return zA.containsPoint(A,this.a,this.b,this.c)}isFrontFacing(A){return zA.isFrontFacing(this.a,this.b,this.c,A)}intersectsBox(A){return A.intersectsTriangle(this)}closestPointToPoint(A,t){const e=this.a,i=this.b,s=this.c;let n,r;Lt.subVectors(i,e),Yt.subVectors(s,e),pi.subVectors(A,e);const a=Lt.dot(pi),o=Yt.dot(pi);if(a<=0&&o<=0)return t.copy(e);Di.subVectors(A,i);const B=Lt.dot(Di),I=Yt.dot(Di);if(B>=0&&I<=B)return t.copy(i);const Q=a*I-B*o;if(Q<=0&&a>=0&&B<=0)return n=a/(a-B),t.copy(e).addScaledVector(Lt,n);mi.subVectors(A,s);const h=Lt.dot(mi),E=Yt.dot(mi);if(E>=0&&h<=E)return t.copy(s);const C=h*o-a*E;if(C<=0&&o>=0&&E<=0)return r=o/(o-E),t.copy(e).addScaledVector(Yt,r);const c=B*E-h*I;if(c<=0&&I-B>=0&&h-E>=0)return Ls.subVectors(s,i),r=(I-B)/(I-B+(h-E)),t.copy(i).addScaledVector(Ls,r);const l=1/(c+C+Q);return n=C*l,r=Q*l,t.copy(e).addScaledVector(Lt,n).addScaledVector(Yt,r)}equals(A){return A.a.equals(this.a)&&A.b.equals(this.b)&&A.c.equals(this.c)}}const Ys={aliceblue:15792383,antiquewhite:16444375,aqua:65535,aquamarine:8388564,azure:15794175,beige:16119260,bisque:16770244,black:0,blanchedalmond:16772045,blue:255,blueviolet:9055202,brown:10824234,burlywood:14596231,cadetblue:6266528,chartreuse:8388352,chocolate:13789470,coral:16744272,cornflowerblue:6591981,cornsilk:16775388,crimson:14423100,cyan:65535,darkblue:139,darkcyan:35723,darkgoldenrod:12092939,darkgray:11119017,darkgreen:25600,darkgrey:11119017,darkkhaki:12433259,darkmagenta:9109643,darkolivegreen:5597999,darkorange:16747520,darkorchid:10040012,darkred:9109504,darksalmon:15308410,darkseagreen:9419919,darkslateblue:4734347,darkslategray:3100495,darkslategrey:3100495,darkturquoise:52945,darkviolet:9699539,deeppink:16716947,deepskyblue:49151,dimgray:6908265,dimgrey:6908265,dodgerblue:2003199,firebrick:11674146,floralwhite:16775920,forestgreen:2263842,fuchsia:16711935,gainsboro:14474460,ghostwhite:16316671,gold:16766720,goldenrod:14329120,gray:8421504,green:32768,greenyellow:11403055,grey:8421504,honeydew:15794160,hotpink:16738740,indianred:13458524,indigo:4915330,ivory:16777200,khaki:15787660,lavender:15132410,lavenderblush:16773365,lawngreen:8190976,lemonchiffon:16775885,lightblue:11393254,lightcoral:15761536,lightcyan:14745599,lightgoldenrodyellow:16448210,lightgray:13882323,lightgreen:9498256,lightgrey:13882323,lightpink:16758465,lightsalmon:16752762,lightseagreen:2142890,lightskyblue:8900346,lightslategray:7833753,lightslategrey:7833753,lightsteelblue:11584734,lightyellow:16777184,lime:65280,limegreen:3329330,linen:16445670,magenta:16711935,maroon:8388608,mediumaquamarine:6737322,mediumblue:205,mediumorchid:12211667,mediumpurple:9662683,mediumseagreen:3978097,mediumslateblue:8087790,mediumspringgreen:64154,mediumturquoise:4772300,mediumvioletred:13047173,midnightblue:1644912,mintcream:16121850,mistyrose:16770273,moccasin:16770229,navajowhite:16768685,navy:128,oldlace:16643558,olive:8421376,olivedrab:7048739,orange:16753920,orangered:16729344,orchid:14315734,palegoldenrod:15657130,palegreen:10025880,paleturquoise:11529966,palevioletred:14381203,papayawhip:16773077,peachpuff:16767673,peru:13468991,pink:16761035,plum:14524637,powderblue:11591910,purple:8388736,rebeccapurple:6697881,red:16711680,rosybrown:12357519,royalblue:4286945,saddlebrown:9127187,salmon:16416882,sandybrown:16032864,seagreen:3050327,seashell:16774638,sienna:10506797,silver:12632256,skyblue:8900331,slateblue:6970061,slategray:7372944,slategrey:7372944,snow:16775930,springgreen:65407,steelblue:4620980,tan:13808780,teal:32896,thistle:14204888,tomato:16737095,turquoise:4251856,violet:15631086,wheat:16113331,white:16777215,whitesmoke:16119285,yellow:16776960,yellowgreen:10145074},Bt={h:0,s:0,l:0},ke={h:0,s:0,l:0};function Fi(g,A,t){return t<0&&(t+=1),t>1&&(t-=1),t<1/6?g+(A-g)*6*t:t<1/2?A:t<2/3?g+(A-g)*6*(2/3-t):g}class yt{constructor(A,t,e){return this.isColor=!0,this.r=1,this.g=1,this.b=1,this.set(A,t,e)}set(A,t,e){if(t===void 0&&e===void 0){const i=A;i&&i.isColor?this.copy(i):typeof i=="number"?this.setHex(i):typeof i=="string"&&this.setStyle(i)}else this.setRGB(A,t,e);return this}setScalar(A){return this.r=A,this.g=A,this.b=A,this}setHex(A,t=LA){return A=Math.floor(A),this.r=(A>>16&255)/255,this.g=(A>>8&255)/255,this.b=(A&255)/255,YA.toWorkingColorSpace(this,t),this}setRGB(A,t,e,i=YA.workingColorSpace){return this.r=A,this.g=t,this.b=e,YA.toWorkingColorSpace(this,i),this}setHSL(A,t,e,i=YA.workingColorSpace){if(A=$n(A,1),t=H(t,0,1),e=H(e,0,1),t===0)this.r=this.g=this.b=e;else{const s=e<=.5?e*(1+t):e+t-e*t,n=2*e-s;this.r=Fi(n,s,A+1/3),this.g=Fi(n,s,A),this.b=Fi(n,s,A-1/3)}return YA.toWorkingColorSpace(this,i),this}setStyle(A,t=LA){function e(s){s!==void 0&&parseFloat(s)<1&&console.warn("THREE.Color: Alpha component of "+A+" will be ignored.")}let i;if(i=/^(\\w+)\\(([^\\)]*)\\)/.exec(A)){let s;const n=i[1],r=i[2];switch(n){case"rgb":case"rgba":if(s=/^\\s*(\\d+)\\s*,\\s*(\\d+)\\s*,\\s*(\\d+)\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(r))return e(s[4]),this.setRGB(Math.min(255,parseInt(s[1],10))/255,Math.min(255,parseInt(s[2],10))/255,Math.min(255,parseInt(s[3],10))/255,t);if(s=/^\\s*(\\d+)\\%\\s*,\\s*(\\d+)\\%\\s*,\\s*(\\d+)\\%\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(r))return e(s[4]),this.setRGB(Math.min(100,parseInt(s[1],10))/100,Math.min(100,parseInt(s[2],10))/100,Math.min(100,parseInt(s[3],10))/100,t);break;case"hsl":case"hsla":if(s=/^\\s*(\\d*\\.?\\d+)\\s*,\\s*(\\d*\\.?\\d+)\\%\\s*,\\s*(\\d*\\.?\\d+)\\%\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(r))return e(s[4]),this.setHSL(parseFloat(s[1])/360,parseFloat(s[2])/100,parseFloat(s[3])/100,t);break;default:console.warn("THREE.Color: Unknown color model "+A)}}else if(i=/^\\#([A-Fa-f\\d]+)$/.exec(A)){const s=i[1],n=s.length;if(n===3)return this.setRGB(parseInt(s.charAt(0),16)/15,parseInt(s.charAt(1),16)/15,parseInt(s.charAt(2),16)/15,t);if(n===6)return this.setHex(parseInt(s,16),t);console.warn("THREE.Color: Invalid hex color "+A)}else if(A&&A.length>0)return this.setColorName(A,t);return this}setColorName(A,t=LA){const e=Ys[A.toLowerCase()];return e!==void 0?this.setHex(e,t):console.warn("THREE.Color: Unknown color "+A),this}clone(){return new this.constructor(this.r,this.g,this.b)}copy(A){return this.r=A.r,this.g=A.g,this.b=A.b,this}copySRGBToLinear(A){return this.r=WA(A.r),this.g=WA(A.g),this.b=WA(A.b),this}copyLinearToSRGB(A){return this.r=Mt(A.r),this.g=Mt(A.g),this.b=Mt(A.b),this}convertSRGBToLinear(){return this.copySRGBToLinear(this),this}convertLinearToSRGB(){return this.copyLinearToSRGB(this),this}getHex(A=LA){return YA.fromWorkingColorSpace(cA.copy(this),A),Math.round(H(cA.r*255,0,255))*65536+Math.round(H(cA.g*255,0,255))*256+Math.round(H(cA.b*255,0,255))}getHexString(A=LA){return("000000"+this.getHex(A).toString(16)).slice(-6)}getHSL(A,t=YA.workingColorSpace){YA.fromWorkingColorSpace(cA.copy(this),t);const e=cA.r,i=cA.g,s=cA.b,n=Math.max(e,i,s),r=Math.min(e,i,s);let a,o;const B=(r+n)/2;if(r===n)a=0,o=0;else{const I=n-r;switch(o=B<=.5?I/(n+r):I/(2-n-r),n){case e:a=(i-s)/I+(i0!=A>0&&this.version++,this._alphaTest=A}onBeforeRender(){}onBeforeCompile(){}customProgramCacheKey(){return this.onBeforeCompile.toString()}setValues(A){if(A!==void 0)for(const t in A){const e=A[t];if(e===void 0){console.warn(`THREE.Material: parameter \'${t}\' has value of undefined.`);continue}const i=this[t];if(i===void 0){console.warn(`THREE.Material: \'${t}\' is not a property of THREE.${this.type}.`);continue}i&&i.isColor?i.set(e):i&&i.isVector3&&e&&e.isVector3?i.copy(e):this[t]=e}}toJSON(A){const t=A===void 0||typeof A=="string";t&&(A={textures:{},images:{}});const e={metadata:{version:4.6,type:"Material",generator:"Material.toJSON"}};e.uuid=this.uuid,e.type=this.type,this.name!==""&&(e.name=this.name),this.color&&this.color.isColor&&(e.color=this.color.getHex()),this.roughness!==void 0&&(e.roughness=this.roughness),this.metalness!==void 0&&(e.metalness=this.metalness),this.sheen!==void 0&&(e.sheen=this.sheen),this.sheenColor&&this.sheenColor.isColor&&(e.sheenColor=this.sheenColor.getHex()),this.sheenRoughness!==void 0&&(e.sheenRoughness=this.sheenRoughness),this.emissive&&this.emissive.isColor&&(e.emissive=this.emissive.getHex()),this.emissiveIntensity!==void 0&&this.emissiveIntensity!==1&&(e.emissiveIntensity=this.emissiveIntensity),this.specular&&this.specular.isColor&&(e.specular=this.specular.getHex()),this.specularIntensity!==void 0&&(e.specularIntensity=this.specularIntensity),this.specularColor&&this.specularColor.isColor&&(e.specularColor=this.specularColor.getHex()),this.shininess!==void 0&&(e.shininess=this.shininess),this.clearcoat!==void 0&&(e.clearcoat=this.clearcoat),this.clearcoatRoughness!==void 0&&(e.clearcoatRoughness=this.clearcoatRoughness),this.clearcoatMap&&this.clearcoatMap.isTexture&&(e.clearcoatMap=this.clearcoatMap.toJSON(A).uuid),this.clearcoatRoughnessMap&&this.clearcoatRoughnessMap.isTexture&&(e.clearcoatRoughnessMap=this.clearcoatRoughnessMap.toJSON(A).uuid),this.clearcoatNormalMap&&this.clearcoatNormalMap.isTexture&&(e.clearcoatNormalMap=this.clearcoatNormalMap.toJSON(A).uuid,e.clearcoatNormalScale=this.clearcoatNormalScale.toArray()),this.dispersion!==void 0&&(e.dispersion=this.dispersion),this.iridescence!==void 0&&(e.iridescence=this.iridescence),this.iridescenceIOR!==void 0&&(e.iridescenceIOR=this.iridescenceIOR),this.iridescenceThicknessRange!==void 0&&(e.iridescenceThicknessRange=this.iridescenceThicknessRange),this.iridescenceMap&&this.iridescenceMap.isTexture&&(e.iridescenceMap=this.iridescenceMap.toJSON(A).uuid),this.iridescenceThicknessMap&&this.iridescenceThicknessMap.isTexture&&(e.iridescenceThicknessMap=this.iridescenceThicknessMap.toJSON(A).uuid),this.anisotropy!==void 0&&(e.anisotropy=this.anisotropy),this.anisotropyRotation!==void 0&&(e.anisotropyRotation=this.anisotropyRotation),this.anisotropyMap&&this.anisotropyMap.isTexture&&(e.anisotropyMap=this.anisotropyMap.toJSON(A).uuid),this.map&&this.map.isTexture&&(e.map=this.map.toJSON(A).uuid),this.matcap&&this.matcap.isTexture&&(e.matcap=this.matcap.toJSON(A).uuid),this.alphaMap&&this.alphaMap.isTexture&&(e.alphaMap=this.alphaMap.toJSON(A).uuid),this.lightMap&&this.lightMap.isTexture&&(e.lightMap=this.lightMap.toJSON(A).uuid,e.lightMapIntensity=this.lightMapIntensity),this.aoMap&&this.aoMap.isTexture&&(e.aoMap=this.aoMap.toJSON(A).uuid,e.aoMapIntensity=this.aoMapIntensity),this.bumpMap&&this.bumpMap.isTexture&&(e.bumpMap=this.bumpMap.toJSON(A).uuid,e.bumpScale=this.bumpScale),this.normalMap&&this.normalMap.isTexture&&(e.normalMap=this.normalMap.toJSON(A).uuid,e.normalMapType=this.normalMapType,e.normalScale=this.normalScale.toArray()),this.displacementMap&&this.displacementMap.isTexture&&(e.displacementMap=this.displacementMap.toJSON(A).uuid,e.displacementScale=this.displacementScale,e.displacementBias=this.displacementBias),this.roughnessMap&&this.roughnessMap.isTexture&&(e.roughnessMap=this.roughnessMap.toJSON(A).uuid),this.metalnessMap&&this.metalnessMap.isTexture&&(e.metalnessMap=this.metalnessMap.toJSON(A).uuid),this.emissiveMap&&this.emissiveMap.isTexture&&(e.emissiveMap=this.emissiveMap.toJSON(A).uuid),this.specularMap&&this.specularMap.isTexture&&(e.specularMap=this.specularMap.toJSON(A).uuid),this.specularIntensityMap&&this.specularIntensityMap.isTexture&&(e.specularIntensityMap=this.specularIntensityMap.toJSON(A).uuid),this.specularColorMap&&this.specularColorMap.isTexture&&(e.specularColorMap=this.specularColorMap.toJSON(A).uuid),this.envMap&&this.envMap.isTexture&&(e.envMap=this.envMap.toJSON(A).uuid,this.combine!==void 0&&(e.combine=this.combine)),this.envMapRotation!==void 0&&(e.envMapRotation=this.envMapRotation.toArray()),this.envMapIntensity!==void 0&&(e.envMapIntensity=this.envMapIntensity),this.reflectivity!==void 0&&(e.reflectivity=this.reflectivity),this.refractionRatio!==void 0&&(e.refractionRatio=this.refractionRatio),this.gradientMap&&this.gradientMap.isTexture&&(e.gradientMap=this.gradientMap.toJSON(A).uuid),this.transmission!==void 0&&(e.transmission=this.transmission),this.transmissionMap&&this.transmissionMap.isTexture&&(e.transmissionMap=this.transmissionMap.toJSON(A).uuid),this.thickness!==void 0&&(e.thickness=this.thickness),this.thicknessMap&&this.thicknessMap.isTexture&&(e.thicknessMap=this.thicknessMap.toJSON(A).uuid),this.attenuationDistance!==void 0&&this.attenuationDistance!==1/0&&(e.attenuationDistance=this.attenuationDistance),this.attenuationColor!==void 0&&(e.attenuationColor=this.attenuationColor.getHex()),this.size!==void 0&&(e.size=this.size),this.shadowSide!==null&&(e.shadowSide=this.shadowSide),this.sizeAttenuation!==void 0&&(e.sizeAttenuation=this.sizeAttenuation),this.blending!==as&&(e.blending=this.blending),this.side!==Ii&&(e.side=this.side),this.vertexColors===!0&&(e.vertexColors=!0),this.opacity<1&&(e.opacity=this.opacity),this.transparent===!0&&(e.transparent=!0),this.blendSrc!==os&&(e.blendSrc=this.blendSrc),this.blendDst!==Is&&(e.blendDst=this.blendDst),this.blendEquation!==gs&&(e.blendEquation=this.blendEquation),this.blendSrcAlpha!==null&&(e.blendSrcAlpha=this.blendSrcAlpha),this.blendDstAlpha!==null&&(e.blendDstAlpha=this.blendDstAlpha),this.blendEquationAlpha!==null&&(e.blendEquationAlpha=this.blendEquationAlpha),this.blendColor&&this.blendColor.isColor&&(e.blendColor=this.blendColor.getHex()),this.blendAlpha!==0&&(e.blendAlpha=this.blendAlpha),this.depthFunc!==Bs&&(e.depthFunc=this.depthFunc),this.depthTest===!1&&(e.depthTest=this.depthTest),this.depthWrite===!1&&(e.depthWrite=this.depthWrite),this.colorWrite===!1&&(e.colorWrite=this.colorWrite),this.stencilWriteMask!==255&&(e.stencilWriteMask=this.stencilWriteMask),this.stencilFunc!==ds&&(e.stencilFunc=this.stencilFunc),this.stencilRef!==0&&(e.stencilRef=this.stencilRef),this.stencilFuncMask!==255&&(e.stencilFuncMask=this.stencilFuncMask),this.stencilFail!==xt&&(e.stencilFail=this.stencilFail),this.stencilZFail!==xt&&(e.stencilZFail=this.stencilZFail),this.stencilZPass!==xt&&(e.stencilZPass=this.stencilZPass),this.stencilWrite===!0&&(e.stencilWrite=this.stencilWrite),this.rotation!==void 0&&this.rotation!==0&&(e.rotation=this.rotation),this.polygonOffset===!0&&(e.polygonOffset=!0),this.polygonOffsetFactor!==0&&(e.polygonOffsetFactor=this.polygonOffsetFactor),this.polygonOffsetUnits!==0&&(e.polygonOffsetUnits=this.polygonOffsetUnits),this.linewidth!==void 0&&this.linewidth!==1&&(e.linewidth=this.linewidth),this.dashSize!==void 0&&(e.dashSize=this.dashSize),this.gapSize!==void 0&&(e.gapSize=this.gapSize),this.scale!==void 0&&(e.scale=this.scale),this.dithering===!0&&(e.dithering=!0),this.alphaTest>0&&(e.alphaTest=this.alphaTest),this.alphaHash===!0&&(e.alphaHash=!0),this.alphaToCoverage===!0&&(e.alphaToCoverage=!0),this.premultipliedAlpha===!0&&(e.premultipliedAlpha=!0),this.forceSinglePass===!0&&(e.forceSinglePass=!0),this.wireframe===!0&&(e.wireframe=!0),this.wireframeLinewidth>1&&(e.wireframeLinewidth=this.wireframeLinewidth),this.wireframeLinecap!=="round"&&(e.wireframeLinecap=this.wireframeLinecap),this.wireframeLinejoin!=="round"&&(e.wireframeLinejoin=this.wireframeLinejoin),this.flatShading===!0&&(e.flatShading=!0),this.visible===!1&&(e.visible=!1),this.toneMapped===!1&&(e.toneMapped=!1),this.fog===!1&&(e.fog=!1),Object.keys(this.userData).length>0&&(e.userData=this.userData);function i(s){const n=[];for(const r in s){const a=s[r];delete a.metadata,n.push(a)}return n}if(t){const s=i(A.textures),n=i(A.images);s.length>0&&(e.textures=s),n.length>0&&(e.images=n)}return e}clone(){return new this.constructor().copy(this)}copy(A){this.name=A.name,this.blending=A.blending,this.side=A.side,this.vertexColors=A.vertexColors,this.opacity=A.opacity,this.transparent=A.transparent,this.blendSrc=A.blendSrc,this.blendDst=A.blendDst,this.blendEquation=A.blendEquation,this.blendSrcAlpha=A.blendSrcAlpha,this.blendDstAlpha=A.blendDstAlpha,this.blendEquationAlpha=A.blendEquationAlpha,this.blendColor.copy(A.blendColor),this.blendAlpha=A.blendAlpha,this.depthFunc=A.depthFunc,this.depthTest=A.depthTest,this.depthWrite=A.depthWrite,this.stencilWriteMask=A.stencilWriteMask,this.stencilFunc=A.stencilFunc,this.stencilRef=A.stencilRef,this.stencilFuncMask=A.stencilFuncMask,this.stencilFail=A.stencilFail,this.stencilZFail=A.stencilZFail,this.stencilZPass=A.stencilZPass,this.stencilWrite=A.stencilWrite;const t=A.clippingPlanes;let e=null;if(t!==null){const i=t.length;e=new Array(i);for(let s=0;s!==i;++s)e[s]=t[s].clone()}return this.clippingPlanes=e,this.clipIntersection=A.clipIntersection,this.clipShadows=A.clipShadows,this.shadowSide=A.shadowSide,this.colorWrite=A.colorWrite,this.precision=A.precision,this.polygonOffset=A.polygonOffset,this.polygonOffsetFactor=A.polygonOffsetFactor,this.polygonOffsetUnits=A.polygonOffsetUnits,this.dithering=A.dithering,this.alphaTest=A.alphaTest,this.alphaHash=A.alphaHash,this.alphaToCoverage=A.alphaToCoverage,this.premultipliedAlpha=A.premultipliedAlpha,this.forceSinglePass=A.forceSinglePass,this.visible=A.visible,this.toneMapped=A.toneMapped,this.userData=JSON.parse(JSON.stringify(A.userData)),this}dispose(){this.dispatchEvent({type:"dispose"})}set needsUpdate(A){A===!0&&this.version++}onBuild(){console.warn("Material: onBuild() has been removed.")}}class lr extends Js{constructor(A){super(),this.isMeshBasicMaterial=!0,this.type="MeshBasicMaterial",this.color=new yt(16777215),this.map=null,this.lightMap=null,this.lightMapIntensity=1,this.aoMap=null,this.aoMapIntensity=1,this.specularMap=null,this.alphaMap=null,this.envMap=null,this.envMapRotation=new dt,this.combine=Pn,this.reflectivity=1,this.refractionRatio=.98,this.wireframe=!1,this.wireframeLinewidth=1,this.wireframeLinecap="round",this.wireframeLinejoin="round",this.fog=!0,this.setValues(A)}copy(A){return super.copy(A),this.color.copy(A.color),this.map=A.map,this.lightMap=A.lightMap,this.lightMapIntensity=A.lightMapIntensity,this.aoMap=A.aoMap,this.aoMapIntensity=A.aoMapIntensity,this.specularMap=A.specularMap,this.alphaMap=A.alphaMap,this.envMap=A.envMap,this.envMapRotation.copy(A.envMapRotation),this.combine=A.combine,this.reflectivity=A.reflectivity,this.refractionRatio=A.refractionRatio,this.wireframe=A.wireframe,this.wireframeLinewidth=A.wireframeLinewidth,this.wireframeLinecap=A.wireframeLinecap,this.wireframeLinejoin=A.wireframeLinejoin,this.fog=A.fog,this}}const eA=new u,Re=new fA;class Jt{constructor(A,t,e=!1){if(Array.isArray(A))throw new TypeError("THREE.BufferAttribute: array should be a Typed Array.");this.isBufferAttribute=!0,this.name="",this.array=A,this.itemSize=t,this.count=A!==void 0?A.length/t:0,this.normalized=e,this.usage=ys,this.updateRanges=[],this.gpuType=Vn,this.version=0}onUploadCallback(){}set needsUpdate(A){A===!0&&this.version++}setUsage(A){return this.usage=A,this}addUpdateRange(A,t){this.updateRanges.push({start:A,count:t})}clearUpdateRanges(){this.updateRanges.length=0}copy(A){return this.name=A.name,this.array=new A.array.constructor(A.array),this.itemSize=A.itemSize,this.count=A.count,this.normalized=A.normalized,this.usage=A.usage,this.gpuType=A.gpuType,this}copyAt(A,t,e){A*=this.itemSize,e*=t.itemSize;for(let i=0,s=this.itemSize;it.count&&console.warn("THREE.BufferGeometry: Buffer size too small for points data. Use .dispose() and create a new geometry."),t.needsUpdate=!0}return this}computeBoundingBox(){this.boundingBox===null&&(this.boundingBox=new Ft);const A=this.attributes.position,t=this.morphAttributes.position;if(A&&A.isGLBufferAttribute){console.error("THREE.BufferGeometry.computeBoundingBox(): GLBufferAttribute requires a manual bounding box.",this),this.boundingBox.set(new u(-1/0,-1/0,-1/0),new u(1/0,1/0,1/0));return}if(A!==void 0){if(this.boundingBox.setFromBufferAttribute(A),t)for(let e=0,i=t.length;e0&&(A.userData=this.userData),this.parameters!==void 0){const a=this.parameters;for(const o in a)a[o]!==void 0&&(A[o]=a[o]);return A}A.data={attributes:{}};const t=this.index;t!==null&&(A.data.index={type:t.array.constructor.name,array:Array.prototype.slice.call(t.array)});const e=this.attributes;for(const a in e){const o=e[a];A.data.attributes[a]=o.toJSON(A.data)}const i={};let s=!1;for(const a in this.morphAttributes){const o=this.morphAttributes[a],B=[];for(let I=0,Q=o.length;I0&&(i[a]=B,s=!0)}s&&(A.data.morphAttributes=i,A.data.morphTargetsRelative=this.morphTargetsRelative);const n=this.groups;n.length>0&&(A.data.groups=JSON.parse(JSON.stringify(n)));const r=this.boundingSphere;return r!==null&&(A.data.boundingSphere={center:r.center.toArray(),radius:r.radius}),A}clone(){return new this.constructor().copy(this)}copy(A){this.index=null,this.attributes={},this.morphAttributes={},this.groups=[],this.boundingBox=null,this.boundingSphere=null;const t={};this.name=A.name;const e=A.index;e!==null&&this.setIndex(e.clone(t));const i=A.attributes;for(const o in i){const B=i[o];this.setAttribute(o,B.clone(t))}const s=A.morphAttributes;for(const o in s){const B=[],I=s[o];for(let Q=0,h=I.length;Q0){const i=t[e[0]];if(i!==void 0){this.morphTargetInfluences=[],this.morphTargetDictionary={};for(let s=0,n=i.length;s(A.far-A.near)**2))&&(Hs.copy(s).invert(),ft.copy(A.ray).applyMatrix4(Hs),!(e.boundingBox!==null&&ft.intersectsBox(e.boundingBox)===!1)&&this._computeIntersections(A,t,ft)))}_computeIntersections(A,t,e){let i;const s=this.geometry,n=this.material,r=s.index,a=s.attributes.position,o=s.attributes.uv,B=s.attributes.uv1,I=s.attributes.normal,Q=s.groups,h=s.drawRange;if(r!==null)if(Array.isArray(n))for(let E=0,C=Q.length;Et.far?null:{distance:o,point:Te.clone(),object:g}}function ze(g,A,t,e,i,s,n,r,a,o){g.getVertexPosition(r,Le),g.getVertexPosition(a,Ye),g.getVertexPosition(o,Je);const B=fr(g,A,t,e,Le,Ye,Je,zs);if(B){const I=new u;zA.getBarycoord(zs,Le,Ye,Je,I),i&&(B.uv=zA.getInterpolatedAttribute(i,r,a,o,I,new fA)),s&&(B.uv1=zA.getInterpolatedAttribute(s,r,a,o,I,new fA)),n&&(B.normal=zA.getInterpolatedAttribute(n,r,a,o,I,new u),B.normal.dot(e.direction)>0&&B.normal.multiplyScalar(-1));const Q={a:r,b:a,c:o,normal:new u,materialIndex:0};zA.getNormal(Le,Ye,Je,Q.normal),B.face=Q,B.barycoord=I}return B}function wr(g){const A={};for(const t in g){A[t]={};for(const e in g[t]){const i=g[t][e];i&&(i.isColor||i.isMatrix3||i.isMatrix4||i.isVector2||i.isVector3||i.isVector4||i.isTexture||i.isQuaternion)?i.isRenderTargetTexture?(console.warn("UniformsUtils: Textures of render targets cannot be cloned via cloneUniforms() or mergeUniforms()."),A[t][e]=null):A[t][e]=i.clone():Array.isArray(i)?A[t][e]=i.slice():A[t][e]=i}}return A}function pr(g){const A=[];for(let t=0;t0&&(t.defines=this.defines),t.vertexShader=this.vertexShader,t.fragmentShader=this.fragmentShader,t.lights=this.lights,t.clipping=this.clipping;const e={};for(const i in this.extensions)this.extensions[i]===!0&&(e[i]=!0);return Object.keys(e).length>0&&(t.extensions=e),t}}class Ks extends wA{constructor(){super(),this.isCamera=!0,this.type="Camera",this.matrixWorldInverse=new CA,this.projectionMatrix=new CA,this.projectionMatrixInverse=new CA,this.coordinateSystem=Ae}copy(A,t){return super.copy(A,t),this.matrixWorldInverse.copy(A.matrixWorldInverse),this.projectionMatrix.copy(A.projectionMatrix),this.projectionMatrixInverse.copy(A.projectionMatrixInverse),this.coordinateSystem=A.coordinateSystem,this}getWorldDirection(A){return super.getWorldDirection(A).negate()}updateMatrixWorld(A){super.updateMatrixWorld(A),this.matrixWorldInverse.copy(this.matrixWorld).invert()}updateWorldMatrix(A,t){super.updateWorldMatrix(A,t),this.matrixWorldInverse.copy(this.matrixWorld).invert()}clone(){return new this.constructor().copy(this)}}class _s extends wA{constructor(){super(),this.isScene=!0,this.type="Scene",this.background=null,this.environment=null,this.fog=null,this.backgroundBlurriness=0,this.backgroundIntensity=1,this.backgroundRotation=new dt,this.environmentIntensity=1,this.environmentRotation=new dt,this.overrideMaterial=null,typeof __THREE_DEVTOOLS__<"u"&&__THREE_DEVTOOLS__.dispatchEvent(new CustomEvent("observe",{detail:this}))}copy(A,t){return super.copy(A,t),A.background!==null&&(this.background=A.background.clone()),A.environment!==null&&(this.environment=A.environment.clone()),A.fog!==null&&(this.fog=A.fog.clone()),this.backgroundBlurriness=A.backgroundBlurriness,this.backgroundIntensity=A.backgroundIntensity,this.backgroundRotation.copy(A.backgroundRotation),this.environmentIntensity=A.environmentIntensity,this.environmentRotation.copy(A.environmentRotation),A.overrideMaterial!==null&&(this.overrideMaterial=A.overrideMaterial.clone()),this.matrixAutoUpdate=A.matrixAutoUpdate,this}toJSON(A){const t=super.toJSON(A);return this.fog!==null&&(t.object.fog=this.fog.toJSON()),this.backgroundBlurriness>0&&(t.object.backgroundBlurriness=this.backgroundBlurriness),this.backgroundIntensity!==1&&(t.object.backgroundIntensity=this.backgroundIntensity),t.object.backgroundRotation=this.backgroundRotation.toArray(),this.environmentIntensity!==1&&(t.object.environmentIntensity=this.environmentIntensity),t.object.environmentRotation=this.environmentRotation.toArray(),t}}class Mr extends ZA{constructor(A=null,t=1,e=1,i,s,n,r,a,o=nt,B=nt,I,Q){super(null,n,r,a,o,B,i,s,I,Q),this.isDataTexture=!0,this.image={data:A,width:t,height:e},this.generateMipmaps=!1,this.flipY=!1,this.unpackAlignment=1}}class ve extends Ge{constructor(A=1,t=1,e=1,i=1){super(),this.type="PlaneGeometry",this.parameters={width:A,height:t,widthSegments:e,heightSegments:i};const s=A/2,n=t/2,r=Math.floor(e),a=Math.floor(i),o=r+1,B=a+1,I=A/r,Q=t/a,h=[],E=[],C=[],c=[];for(let l=0;l_(i[r]));return`${A}(${s.join(", ")})`}case"mat2x3":{const e=t,i=new Array(6).fill(0).map((s,n)=>_(e[n]));return`${A}(${i.join(", ")})`}case"mat2x4":{const e=t,i=new Array(8).fill(0).map((s,n)=>_(e[n]));return`${A}(${i.join(", ")})`}case"mat3":case"mat3x3":{const e=t,i=e instanceof qA?e.elements:t,s=new Array(9).fill(0).map((n,r)=>_(i[r]));return`${A}(${s.join(", ")})`}case"mat3x2":{const e=t,i=new Array(6).fill(0).map((s,n)=>_(e[n]));return`${A}(${i.join(", ")})`}case"mat3x4":{const e=t,i=new Array(12).fill(0).map((s,n)=>_(e[n]));return`${A}(${i.join(", ")})`}case"mat4":case"mat4x4":{const e=t,i=e instanceof CA?e.elements:t,s=new Array(16).fill(0).map((n,r)=>_(i[r]));return`${A}(${s.join(", ")})`}case"mat4x2":{const e=t,i=new Array(8).fill(0).map((s,n)=>_(e[n]));return`${A}(${i.join(", ")})`}case"mat4x3":{const e=t,i=new Array(12).fill(0).map((s,n)=>_(e[n]));return`${A}(${i.join(", ")})`}default:throw new Error(`Type not implemented: ${String(A)}`)}}}function Gr(g,A){return new Ur(g,A)}const Zs=" ";class br{constructor({indent:A}={}){this.globals=new Set,this.statements=[],this.uniforms={},this.declares=new Set,this.updaters=[],this.sequence=0,this.indent=Zs,this.indent=A??Zs}nextSequence(){return this.sequence++}}class lA{constructor({inTypes:A,outTypes:t,inputs:e,update:i,globals:s,statements:n,generate:r}){this.inTypes=A??{},this.outTypes=t??{},this.inputs=e??{},this.update=i,this.globals=s,this.statements=n,this.generate=r??(({inputs:a,outputs:o,compile:B})=>{var I,Q;return{globals:(I=this.globals)==null?void 0:I.call(this,{inputs:a,outputs:o,compile:B}),statements:(Q=this.statements)==null?void 0:Q.call(this,{inputs:a,outputs:o,compile:B})}})}get outputs(){const A={};for(const t in this.outTypes)A[t]=new SA(this,t);return A}apply(A){return Object.assign(this.inputs,A),this.outputs}compile({inputs:A,outputs:t,compile:e}){const i=[`// ${this.constructor.name}(${Object.values(A).join(", ")}) => (${Object.values(t).join(", ")})`],s=[];for(const o in t){const B=t[o];B&&!e.declares.has(B)&&(e.declares.add(B),s.push(o))}const{globals:n,statements:r,uniforms:a}=this.generate({inputs:A,outputs:t,compile:e});for(const o of n??[])e.globals.add(o);for(const o in a)e.uniforms[o]=a[o];this.update&&e.updaters.push(this.update);for(const o of s){const B=t[o];B&&(e.uniforms[B]||i.push(`${Ws(B,this.outTypes[o])};`))}return r!=null&&r.length&&(i.push("{"),i.push(...r.map(o=>e.indent+o)),i.push("}")),i}}class Lr extends lA{constructor({inTypes:A,outTypes:t,inputs:e,update:i,globals:s,construct:n}){super({inTypes:A,outTypes:t,inputs:e,update:i,globals:s,generate:r=>this.generateBlock(r)}),this.construct=n}generateBlock({inputs:A,outputs:t,compile:e}){var E,C;const i={},s={};for(const c in A)A[c]!=null&&(i[c]=new _e(this.inTypes[c],A[c]));for(const c in t)t[c]!=null&&(s[c]=new pt(this.outTypes[c]));const n={roots:[]},r=this.construct(i,s,n);for(const c of((E=this.globals)==null?void 0:E.call(this,{inputs:A,outputs:t,compile:e}))??[])e.globals.add(c);const a=[],o=new Map;function B(c,l,y){let d=o.get(c);if(!d){d={sequence:e.nextSequence(),outNames:new Map,newOuts:new Set},o.set(c,d);for(const f in c.inputs){let p=c.inputs[f];for(;p;){if(p instanceof pt){p instanceof SA&&B(p.dyno,p.key);break}p=p.dynoOut()}}a.push(c)}l&&(y||d.newOuts.add(l),d.outNames.set(l,y??`${l}_${d.sequence}`))}for(const c of n.roots)B(c);for(const c in s){let l=(r==null?void 0:r[c])??s[c];for(;l;){if(l instanceof pt){l instanceof SA&&B(l.dyno,l.key,t[c]);break}l=l.dynoOut()}s[c]=l}const I=[];for(const c of a){const l={},y={};for(const p in c.inputs){let m=c.inputs[p];for(;m;){if(m instanceof pt){if(m instanceof _e)l[p]=m.getLiteral();else if(m instanceof SA){const x=(C=o.get(m.dyno))==null?void 0:C.outNames.get(m.key);if(!x)throw new Error(`Source not found for ${m.dyno.constructor.name}.${m.key}`);l[p]=x}break}m=m.dynoOut()}}const d=o.get(c)??{outNames:new Map};for(const[p,m]of d.outNames.entries())y[p]=m;const 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null;const{x:y,y:d,z:f,scale_0:p,scale_1:m,scale_2:x,rot_0:w,rot_1:D,rot_2:N,rot_3:M,opacity:S,f_dc_0:F,f_dc_1:k,f_dc_2:U,red:R,green:G,blue:v,alpha:T}=l.properties;if(!y||!d||!f)throw new Error("Missing PLY properties: x, y, z");const $=p&&m&&x,V=w&&D&&N&&M,X=T!=null?Xe[T.type]:1,K=R!=null?Xe[R.type]:1,Z=G!=null?Xe[G.type]:1,W=v!=null?Xe[v.type]:1;return s=tn(l.properties),Q(),(q,b)=>{const DA=$?Math.exp(b.scale_0):Ot.defaultPointScale,dA=$?Math.exp(b.scale_1):Ot.defaultPointScale,J=$?Math.exp(b.scale_2):Ot.defaultPointScale,hA=V?b.rot_1:0,aA=V?b.rot_2:0,Y=V?b.rot_3:0,NA=V?b.rot_0:1,mA=S!=null?1/(1+Math.exp(-b.opacity)):T!=null?b.alpha/X:1,UA=F!=null?b.f_dc_0*Oe+.5:R!=null?b.red/K:1,GA=k!=null?b.f_dc_1*Oe+.5:G!=null?b.green/Z:1,L=U!=null?b.f_dc_2*Oe+.5:v!=null?b.blue/W:1;if(A(q,b.x,b.y,b.z,DA,dA,J,hA,aA,Y,NA,mA,UA,GA,L),t&&o){if(o)for(const[sA,AA]of n.entries())o[sA]=b[AA];if(B)for(const[sA,AA]of r.entries())B[sA]=b[AA];if(I)for(const[sA,AA]of a.entries())I[sA]=b[AA];t(q,o,B,I)}}};this.parseData(c)}injectRgba(A){let t=0;const e=this.data;if(e==null)throw new Error("No parsed data");if(A.length!==this.numSplats*4)throw new Error("Invalid RGBA array length");for(const i in this.elements){const s=this.elements[i],{count:n,properties:r}=s,a=[];let o=0;const B=i==="vertex";if(B){for(const I of["opacity","f_dc_0","f_dc_1","f_dc_2"])if(!r[I]||r[I].type!=="float")throw new Error(`Can\'t injectRgba due to property: ${I}`)}for(const[I,Q]of Object.entries(r))if(Q.isList)a.push(()=>{const h=Ve[Q.countType](e,t,this.littleEndian);t+=Zt[Q.countType],t+=h*Zt[Q.type]});else{if(B)if(I==="f_dc_0"||I==="f_dc_1"||I==="f_dc_2"){const h=Number.parseInt(I.slice(5));a.push(()=>{const E=(A[o+h]/255-.5)/Oe;An[Q.type](e,t,this.littleEndian,E)})}else I==="opacity"&&a.push(()=>{const h=Math.max(-100,Math.min(100,-Math.log(1/(A[o+3]/255)-1)));An[Q.type](e,t,this.littleEndian,h)});a.push(()=>{t+=Zt[Q.type]})}for(let I=0;Ig.getInt8(A),uchar:(g,A,t)=>g.getUint8(A),short:(g,A,t)=>g.getInt16(A,t),ushort:(g,A,t)=>g.getUint16(A,t),int:(g,A,t)=>g.getInt32(A,t),uint:(g,A,t)=>g.getUint32(A,t),float:(g,A,t)=>g.getFloat32(A,t),double:(g,A,t)=>g.getFloat64(A,t)},An={char:(g,A,t,e)=>{g.setInt8(A,e)},uchar:(g,A,t,e)=>{g.setUint8(A,e)},short:(g,A,t,e)=>{g.setInt16(A,e,t)},ushort:(g,A,t,e)=>{g.setUint16(A,e,t)},int:(g,A,t,e)=>{g.setInt32(A,e,t)},uint:(g,A,t,e)=>{g.setUint32(A,e,t)},float:(g,A,t,e)=>{g.setFloat32(A,e,t)},double:(g,A,t,e)=>{g.setFloat64(A,e,t)}},Zt={char:1,uchar:1,short:2,ushort:2,int:4,uint:4,float:4,double:8},Xe={char:127,uchar:255,short:32767,ushort:65535,int:2147483647,uint:4294967295,float:1,double:1},ta={0:0,9:1,24:2,45:3},ea={0:0,1:9,2:24,3:45};function tn(g){let A=0;for(;g[`f_rest_${A}`];)A+=1;const t=ta[A];if(t==null)throw new Error(`Unsupported number of SH coefficients: ${A}`);return t}const pA={type:"Gsplat"},zi={type:"PackedSplats"},ia=(g,A)=>new ra({packedSplats:g,index:A}),sa=(g,A,t,e)=>new aa({packedSplats:g,index:A,base:t,count:e}),je=g=>new ga({gsplat:g}),vi=({gsplat:g,flags:A,index:t,center:e,scales:i,quaternion:s,rgba:n,rgb:r,opacity:a,x:o,y:B,z:I,r:Q,g:h,b:E})=>new oa({gsplat:g,flags:A,index:t,center:e,scales:i,quaternion:s,rgba:n,rgb:r,opacity:a,x:o,y:B,z:I,r:Q,g:h,b:E}),na=(g,{scale:A,rotate:t,translate:e,recolor:i})=>new Ia({gsplat:g,scale:A,rotate:t,translate:e,recolor:i}),tt=KA(`\n struct Gsplat {\n vec3 center;\n uint flags;\n vec3 scales;\n int index;\n vec4 quaternion;\n vec4 rgba;\n };\n const uint GSPLAT_FLAG_ACTIVE = 1u << 0u;\n\n bool isGsplatActive(uint flags) {\n return (flags & GSPLAT_FLAG_ACTIVE) != 0u;\n }\n`),Ki=KA(`\n struct PackedSplats {\n usampler2DArray texture;\n int numSplats;\n };\n`),en=KA(`\n bool readPackedSplat(usampler2DArray texture, int numSplats, int index, out Gsplat gsplat) {\n if ((index >= 0) && (index < numSplats)) {\n uvec4 packed = texelFetch(texture, splatTexCoord(index), 0);\n unpackSplat(packed, gsplat.center, gsplat.scales, gsplat.quaternion, gsplat.rgba);\n return true;\n } else {\n return false;\n }\n }\n`);class ra extends lA{constructor({packedSplats:A,index:t}){super({inTypes:{packedSplats:zi,index:"int"},outTypes:{gsplat:pA},inputs:{packedSplats:A,index:t},globals:()=>[tt,Ki,en],statements:({inputs:e,outputs:i})=>{const{gsplat:s}=i;if(!s)return[];const{packedSplats:n,index:r}=e;let a;return n&&r?a=At(`\n if (readPackedSplat(${n}.texture, ${n}.numSplats, ${r}, ${s})) {\n bool zeroSize = all(equal(${s}.scales, vec3(0.0, 0.0, 0.0)));\n ${s}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;\n } else {\n ${s}.flags = 0u;\n }\n `):a=[`${s}.flags = 0u;`],a.push(`${s}.index = ${r??"0"};`),a}})}dynoOut(){return new SA(this,"gsplat")}}class aa extends lA{constructor({packedSplats:A,index:t,base:e,count:i}){super({inTypes:{packedSplats:zi,index:"int",base:"int",count:"int"},outTypes:{gsplat:pA},inputs:{packedSplats:A,index:t,base:e,count:i},globals:()=>[tt,Ki,en],statements:({inputs:s,outputs:n})=>{const{gsplat:r}=n;if(!r)return[];const{packedSplats:a,index:o,base:B,count:I}=s;let Q;return a&&o&&B&&I?Q=At(`\n ${r}.flags = 0u;\n if ((${o} >= ${B}) && (${o} < (${B} + ${I}))) {\n if (readPackedSplat(${a}.texture, ${a}.numSplats, ${o}, ${r})) {\n bool zeroSize = all(equal(${r}.scales, vec3(0.0, 0.0, 0.0)));\n ${r}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;\n }\n }\n `):Q=[`${r}.flags = 0u;`],Q.push(`${r}.index = ${o??"0"};`),Q}})}dynoOut(){return new SA(this,"gsplat")}}class ga extends lA{constructor({gsplat:A}){super({inTypes:{gsplat:pA},outTypes:{flags:"uint",active:"bool",index:"int",center:"vec3",scales:"vec3",quaternion:"vec4",rgba:"vec4",rgb:"vec3",opacity:"float",x:"float",y:"float",z:"float",r:"float",g:"float",b:"float"},inputs:{gsplat:A},globals:()=>[tt],statements:({inputs:t,outputs:e})=>{const{gsplat:i}=t,{flags:s,active:n,index:r,center:a,scales:o,quaternion:B,rgba:I,rgb:Q,opacity:h,x:E,y:C,z:c,r:l,g:y,b:d}=e;return[s?`${s} = ${i?`${i}.flags`:"0u"};`:null,n?`${n} = isGsplatActive(${i?`${i}.flags`:"0u"});`:null,r?`${r} = ${i?`${i}.index`:"0"};`:null,a?`${a} = ${i?`${i}.center`:"vec3(0.0, 0.0, 0.0)"};`:null,o?`${o} = ${i?`${i}.scales`:"vec3(0.0, 0.0, 0.0)"};`:null,B?`${B} = ${i?`${i}.quaternion`:"vec4(0.0, 0.0, 0.0, 1.0)"};`:null,I?`${I} = ${i?`${i}.rgba`:"vec4(0.0, 0.0, 0.0, 0.0)"};`:null,Q?`${Q} = ${i?`${i}.rgba.rgb`:"vec3(0.0, 0.0, 0.0)"};`:null,h?`${h} = ${i?`${i}.rgba.a`:"0.0"};`:null,E?`${E} = ${i?`${i}.center.x`:"0.0"};`:null,C?`${C} = ${i?`${i}.center.y`:"0.0"};`:null,c?`${c} = ${i?`${i}.center.z`:"0.0"};`:null,l?`${l} = ${i?`${i}.rgba.r`:"0.0"};`:null,y?`${y} = ${i?`${i}.rgba.g`:"0.0"};`:null,d?`${d} = ${i?`${i}.rgba.b`:"0.0"};`:null].filter(Boolean)}})}}class oa extends lA{constructor({gsplat:A,flags:t,index:e,center:i,scales:s,quaternion:n,rgba:r,rgb:a,opacity:o,x:B,y:I,z:Q,r:h,g:E,b:C}){super({inTypes:{gsplat:pA,flags:"uint",index:"int",center:"vec3",scales:"vec3",quaternion:"vec4",rgba:"vec4",rgb:"vec3",opacity:"float",x:"float",y:"float",z:"float",r:"float",g:"float",b:"float"},outTypes:{gsplat:pA},inputs:{gsplat:A,flags:t,index:e,center:i,scales:s,quaternion:n,rgba:r,rgb:a,opacity:o,x:B,y:I,z:Q,r:h,g:E,b:C},globals:()=>[tt],statements:({inputs:c,outputs:l})=>{const{gsplat:y}=l;if(!y)return[];const{gsplat:d,flags:f,index:p,center:m,scales:x,quaternion:w,rgba:D,rgb:N,opacity:M,x:S,y:F,z:k,r:U,g:R,b:G}=c;return[`${y}.flags = ${f??(d?`${d}.flags`:"0u")};`,`${y}.index = ${p??(d?`${d}.index`:"0")};`,`${y}.center = ${m??(d?`${d}.center`:"vec3(0.0, 0.0, 0.0)")};`,`${y}.scales = ${x??(d?`${d}.scales`:"vec3(0.0, 0.0, 0.0)")};`,`${y}.quaternion = ${w??(d?`${d}.quaternion`:"vec4(0.0, 0.0, 0.0, 1.0)")};`,`${y}.rgba = ${D??(d?`${d}.rgba`:"vec4(0.0, 0.0, 0.0, 0.0)")};`,N?`${y}.rgba.rgb = ${N};`:null,M?`${y}.rgba.a = ${M};`:null,S?`${y}.center.x = ${S};`:null,F?`${y}.center.y = ${F};`:null,k?`${y}.center.z = ${k};`:null,U?`${y}.rgba.r = ${U};`:null,R?`${y}.rgba.g = ${R};`:null,G?`${y}.rgba.b = ${G};`:null].filter(Boolean)}})}dynoOut(){return new SA(this,"gsplat")}}KA(`\n vec3 gsplatNormal(vec3 scales, vec4 quaternion) {\n float minScale = min(scales.x, min(scales.y, scales.z));\n vec3 normal;\n if (scales.z == minScale) {\n normal = vec3(0.0, 0.0, 1.0);\n } else if (scales.y == minScale) {\n normal = vec3(0.0, 1.0, 0.0);\n } else {\n normal = vec3(1.0, 0.0, 0.0);\n }\n return quatVec(quaternion, normal);\n }\n`);class Ia extends lA{constructor({gsplat:A,scale:t,rotate:e,translate:i,recolor:s}){super({inTypes:{gsplat:pA,scale:"float",rotate:"vec4",translate:"vec3",recolor:"vec4"},outTypes:{gsplat:pA},inputs:{gsplat:A,scale:t,rotate:e,translate:i,recolor:s},globals:()=>[tt],statements:({inputs:n,outputs:r,compile:a})=>{const{gsplat:o}=r;if(!o||!n.gsplat)return[];const{scale:B,rotate:I,translate:Q,recolor:h}=n,E=a.indent;return[`${o} = ${n.gsplat};`,`if (isGsplatActive(${o}.flags)) {`,B?`${E}${o}.center *= ${B};`:null,I?`${E}${o}.center = quatVec(${I}, ${o}.center);`:null,Q?`${E}${o}.center += ${Q};`:null,B?`${E}${o}.scales *= ${B};`:null,I?`${E}${o}.quaternion = quatQuat(${I}, ${o}.quaternion);`:null,h?`${E}${o}.rgba *= ${h};`:null,"}"].filter(Boolean)}})}dynoOut(){return new SA(this,"gsplat")}}const Ba=g=>new Qa({gsplat:g});class Qa extends lA{constructor({gsplat:A}){super({inTypes:{gsplat:pA},inputs:{gsplat:A},globals:()=>[tt],statements:({inputs:t,outputs:e})=>{const{output:i}=e;if(!i)return[];const{gsplat:s}=t;return s?At(`\n if (isGsplatActive(${s}.flags)) {\n ${i} = packSplat(${s}.center, ${s}.scales, ${s}.quaternion, ${s}.rgba);\n } else {\n ${i} = uvec4(0u, 0u, 0u, 0u);\n }\n `):[`${i} = uvec4(0u, 0u, 0u, 0u);`]}})}dynoOut(){return new SA(this,"output")}}class ha extends lA{constructor({rgba8:A}){super({inTypes:{rgba8:"vec4"},inputs:{rgba8:A},statements:({inputs:t,outputs:e})=>[`target = ${t.rgba8??"vec4(0.0, 0.0, 0.0, 0.0)"};`]})}dynoOut(){return new SA(this,"rgba8")}}class et extends lA{constructor({key:A,type:t,count:e,value:i,update:s,globals:n}){A=A??"value",super({outTypes:{[A]:t},update:()=>{if(s){const r=s(this.value);r!==void 0&&(this.value=r)}this.uniform.value=this.value},generate:({inputs:r,outputs:a})=>{const o=(n==null?void 0:n({inputs:r,outputs:a}))??[],B={},I=a[A];return I&&(o.push(`uniform 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n=A.compile({inputs:this.inputs,outputs:this.outputs,compile:s});this.shader=i.generate({globals:s.globals,statements:n}),this.uniforms=s.uniforms,this.updaters=s.updaters}prepareMaterial(){return Ca(this)}update(){for(const A of this.updaters)A()}}class rn{constructor(A){const t=A.match(/^([ \\t]*)\\{\\{\\s*GLOBALS\\s*\\}\\}/m),e=A.match(/^([ \\t]*)\\{\\{\\s*STATEMENTS\\s*\\}\\}/m);if(!t||!e)throw new Error("Template must contain {{ GLOBALS }} and {{ STATEMENTS }}");this.before=A.substring(0,t.index),this.between=A.substring(t.index+t[0].length,e.index),this.after=A.substring(e.index+e[0].length),this.indent=e[1]}generate({globals:A,statements:t}){return this.before+Array.from(A).join(`\n\n`)+this.between+t.map(e=>this.indent+e).join(`\n`)+this.after}}const an=new Map;function Ca(g){let A=an.get(g);return A||(A=new Ri({glslVersion:jn,vertexShader:Pr,fragmentShader:g.shader,uniforms:g.uniforms}),an.set(g,A),A)}function gn(g,A,t="add"){const e=()=>{throw new Error(`Invalid ${t} types: ${g}, ${A}`)};if(g===A)return g;if(g==="int"){if(Tt(A))return A;e()}if(A==="int"){if(Tt(g))return g;e()}if(g==="uint"){if(zt(A))return A;e()}if(A==="uint"){if(zt(g))return g;e()}if(g==="float"){if(Ke(A))return A;e()}if(A==="float"){if(Ke(g))return g;e()}throw new Error(`Invalid ${t} types: ${g}, ${A}`)}function ca(g,A){return gn(g,A,"sub")}function la(g,A){const t=()=>{throw new Error(`Invalid mul types: ${g}, ${A}`)},e=i=>i;if(g==="int"){if(Tt(A))return e(A);t()}if(A==="int"){if(Tt(g))return e(g);t()}if(g==="uint"){if(zt(A))return e(A);t()}if(A==="uint"){if(zt(g))return e(g);t()}if(g==="float"){if(Ke(A))return e(A);t()}if(A==="float"){if(Ke(g))return e(g);t()}if(Tt(g)||zt(g)||Tt(A)||zt(A)){if(g===A)return e(g);t()}if(g==="vec2"){if(A==="vec2"||vt(A))return e("vec2");if(A==="mat3x2")return e("vec3");if(A==="mat4x2")return e("vec4");t()}if(g==="vec3"){if(A==="mat2x3")return e("vec2");if(A==="vec3"||Kt(A))return e("vec3");if(A==="mat4x3")return e("vec4");t()}if(g==="vec4"){if(A==="mat2x4")return e("vec2");if(A==="mat3x4")return e("vec3");if(A==="vec4"||_t(A))return e("vec4");t()}if(A==="vec2"){if(vt(g))return e("vec2");if(g==="mat2x3")return e("vec3");if(g==="mat2x4")return e("vec4");t()}if(A==="vec3"){if(g==="mat3x2")return e("vec2");if(Kt(g))return e("vec3");if(g==="mat3x4")return e("vec4");t()}if(A==="vec4"){if(g==="mat4x2")return e("vec2");if(g==="mat4x3")return e("vec3");if(_t(g))return e("vec4");t()}if(vt(g)){if(vt(A))return e("mat2");if(A==="mat3x2")return e("mat3x2");if(A==="mat4x2")return e("mat4x2");t()}if(g==="mat2x3"){if(vt(A))return e("mat2x3");if(A==="mat3x2")return e("mat3");if(A==="mat4x2")return e("mat4x3");t()}if(g==="mat2x4"){if(vt(A))return e("mat2x4");if(A==="mat3x2")return e("mat3x4");if(A==="mat4x2")return e("mat4");t()}if(g==="mat3x2"){if(A==="mat2x3")return e("mat2");if(Kt(A))return e("mat3x2");if(A==="mat4x3")return e("mat4x2");t()}if(Kt(g)){if(A==="mat2x3")return e("mat2x3");if(Kt(A))return e("mat3");if(A==="mat4x3")return e("mat4x3");t()}if(g==="mat3x4"){if(A==="mat2x3")return e("mat2x4");if(Kt(A))return e("mat3x4");if(A==="mat4x3")return e("mat4");t()}if(g==="mat4x2"){if(A==="mat2x4")return e("mat2");if(A==="mat3x4")return e("mat3x2");if(_t(A))return e("mat4x2");t()}if(g==="mat4x3"){if(A==="mat2x4")return e("mat2x3");if(A==="mat3x4")return e("mat3");if(_t(A))return e("mat4x3");t()}if(_t(g)){if(A==="mat2x4")return e("mat2x4");if(A==="mat3x4")return e("mat3x4");if(_t(A))return e("mat4");t()}throw new Error(`Invalid mul types: ${g}, ${A}`)}const Ai=(g,A)=>new ya({a:g,b:A}),ua=(g,A)=>new fa({a:g,b:A}),da=(g,A)=>new wa({a:g,b:A});class ya extends Ze{constructor({a:A,b:t}){super({a:A,b:t,outKey:"sum",outTypeFunc:gn}),this.statements=({inputs:e,outputs:i})=>[`${i.sum} = ${e.a} + ${e.b};`]}}class fa extends Ze{constructor({a:A,b:t}){super({a:A,b:t,outKey:"difference",outTypeFunc:ca}),this.statements=({inputs:e,outputs:i})=>[`${i.difference} = ${e.a} - ${e.b};`]}}class wa extends Ze{constructor({a:A,b:t}){super({a:A,b:t,outKey:"product",outTypeFunc:la}),this.statements=({inputs:e,outputs:i})=>[`${i.product} = ${e.a} * ${e.b};`]}}const pa=g=>new ma({a:g}),Da=(g,A)=>new Ma({a:g,b:A});class ma extends Yr{constructor({a:A}){super({a:A,outTypeFunc:t=>t,outKey:"normalize"}),this.statements=({inputs:t,outputs:e})=>[`${e.normalize} = normalize(${t.a});`]}}function xa(g){if(g==="float")return"vec2";if(g==="vec2")return"vec3";if(g==="vec3")return"vec4";throw new Error("Invalid type")}class Ma extends Ze{constructor({a:A,b:t}){const e=wt(A),i=xa(e);super({a:A,b:t,outKey:"extend",outTypeFunc:()=>i}),this.statements=({inputs:s,outputs:n})=>[`${n.extend} = ${i}(${s.a}, ${s.b});`]}}const Sa=(g,{scale:A,scales:t,rotate:e,translate:i})=>new Na({position:g,scale:A,scales:t,rotate:e,translate:i}).outputs.position,Fa=(g,{scale:A,scales:t,rotate:e})=>new ka({dir:g,scale:A,scales:t,rotate:e}).outputs.dir;class Na extends lA{constructor({position:A,scale:t,scales:e,rotate:i,translate:s}){super({inTypes:{position:"vec3",scale:"float",scales:"vec3",rotate:"vec4",translate:"vec3"},outTypes:{position:"vec3"},inputs:{position:A,scale:t,scales:e,rotate:i,translate:s},statements:({inputs:n,outputs:r})=>{const{position:a}=r;if(!a)return[];const{scale:o,scales:B,rotate:I,translate:Q}=n;return[`${a} = ${n.position??"vec3(0.0, 0.0, 0.0)"};`,o?`${a} *= ${o};`:null,B?`${a} *= ${B};`:null,I?`${a} = quatVec(${I}, ${a});`:null,Q?`${a} += ${Q};`:null].filter(Boolean)}})}}class ka extends lA{constructor({dir:A,scale:t,scales:e,rotate:i}){super({inTypes:{dir:"vec3",scale:"float",scales:"vec3",rotate:"vec4"},outTypes:{dir:"vec3"},inputs:{dir:A,scale:t,scales:e,rotate:i},statements:({inputs:s,outputs:n})=>{const{dir:r}=n;if(!r)return[];const{scale:a,scales:o,rotate:B}=s;return[`${r} = ${s.dir??"vec3(0.0, 0.0, 0.0)"};`,a?`${r} *= ${a};`:null,o?`${r} *= ${o};`:null,B?`${r} = quatVec(${B}, ${r});`:null].filter(Boolean)}})}}var Ra=`precision highp float;\nprecision highp int;\nprecision highp sampler2D;\nprecision highp usampler2D;\nprecision highp isampler2D;\nprecision highp sampler2DArray;\nprecision highp usampler2DArray;\nprecision highp isampler2DArray;\nprecision highp sampler3D;\nprecision highp usampler3D;\nprecision highp isampler3D;\n\n#include \n\nuniform uint targetLayer;\nuniform int targetBase;\nuniform int targetCount;\n\nout uvec4 target;\n\n{{ GLOBALS }}\n\nvoid produceSplat(int index) {\n {{ STATEMENTS }}\n}\n\nvoid main() {\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\n int index = targetIndex - targetBase;\n\n if ((index >= 0) && (index < targetCount)) {\n produceSplat(index);\n } else {\n target = uvec4(0u, 0u, 0u, 0u);\n }\n}`;const O=class O{constructor(A={}){this.maxSplats=0,this.numSplats=0,this.packedArray=null,this.isInitialized=!1,this.target=null,this.source=null,this.needsUpdate=!0,this.extra={},this.dyno=new on({packedSplats:this}),this.initialized=Promise.resolve(this),this.reinitialize(A)}reinitialize(A){this.isInitialized=!1,A.url||A.fileBytes||A.construct?this.initialized=this.asyncInitialize(A).then(()=>(this.isInitialized=!0,this)):(this.initialize(A),this.isInitialized=!0,this.initialized=Promise.resolve(this))}initialize(A){A.packedArray?(this.packedArray=A.packedArray,this.maxSplats=Math.floor(this.packedArray.length/4),this.maxSplats=Math.floor(this.maxSplats/P)*P,this.numSplats=Math.min(this.maxSplats,A.numSplats??Number.POSITIVE_INFINITY)):(this.maxSplats=A.maxSplats??0,this.numSplats=0),this.extra=A.extra??{}}async asyncInitialize(A){let{url:t,fileBytes:e,construct:i}=A;if(t&&(e=await fetch(t).then(async s=>{if(!s.ok)throw new Error(`${s.status} "${s.statusText}" fetching URL: ${t}`);return await s.arrayBuffer()})),e){const s=await ja({input:e,fileType:A.fileType,pathOrUrl:A.fileName??t});this.initialize(s)}if(i){const s=i(this);s instanceof Promise&&await s}}dispose(){this.target&&(this.target.dispose(),this.target=null),this.source&&(this.source.dispose(),this.source=null)}ensureSplats(A){const t=A<=this.maxSplats?this.maxSplats:Math.max(A,2*this.maxSplats),e=this.packedArray?this.packedArray.length/4:0;if(!this.packedArray||t>e){this.maxSplats=FA(t).maxSplats;const i=new Uint32Array(this.maxSplats*4);this.packedArray&&i.set(this.packedArray),this.packedArray=i}return this.packedArray}ensureSplatsSh(A,t){let e,i;if(A===0)return this.ensureSplats(t);if(A===1)e=2,i="sh1";else if(A===2)e=4,i="sh2";else if(A===3)e=4,i="sh3";else throw new Error(`Invalid level: ${A}`);let s=this.extra[i]?this.extra[i].length/e:0;const n=t<=s?s:Math.max(t,2*s);if(!this.extra[i]||n>s){s=FA(n).maxSplats;const r=new Uint32Array(s*e);this.extra[i]&&r.set(this.extra[i]),this.extra[i]=r}return this.extra[i]}getSplat(A){if(!this.packedArray||A>=this.numSplats)throw new Error("Invalid index");return Vs(this.packedArray,A)}setSplat(A,t,e,i,s,n){const r=this.ensureSplats(A+1);ge(r,A,t.x,t.y,t.z,e.x,e.y,e.z,i.x,i.y,i.z,i.w,s,n.r,n.g,n.b),this.numSplats=Math.max(this.numSplats,A+1)}pushSplat(A,t,e,i,s){const n=this.ensureSplats(this.numSplats+1);ge(n,this.numSplats,A.x,A.y,A.z,t.x,t.y,t.z,e.x,e.y,e.z,e.w,i,s.r,s.g,s.b),++this.numSplats}forEachSplat(A){if(!(!this.packedArray||!this.numSplats))for(let t=0;t{const s=t,n=Math.ceil(i/P)*P;return t+=n,{base:s,count:i}});return{maxSplats:t,mapping:e}}getTexture(){return this.target?this.target.texture:this.source||this.packedArray?this.maybeUpdateSource():O.getEmpty()}maybeUpdateSource(){if(!this.packedArray)throw new Error("No packed splats");if(this.needsUpdate||!this.source){if(this.needsUpdate=!1,this.source){const{width:A,height:t,depth:e}=this.source.image;this.maxSplats!==A*t*e&&(this.source.dispose(),this.source=null)}if(this.source)this.packedArray.buffer!==this.source.image.data.buffer&&(this.source.image.data=new Uint8Array(this.packedArray.buffer));else{const{width:A,height:t,depth:e}=FA(this.maxSplats);this.source=new rt(this.packedArray,A,t,e),this.source.format=mt,this.source.type=ct,this.source.internalFormat="RGBA32UI",this.source.needsUpdate=!0}this.source.needsUpdate=!0}return this.source}static getEmpty(){if(!O.emptySource){const{width:A,height:t,depth:e,maxSplats:i}=FA(1),s=new Uint32Array(i*4);O.emptySource=new rt(s,A,t,e),O.emptySource.format=mt,O.emptySource.type=ct,O.emptySource.internalFormat="RGBA32UI",O.emptySource.needsUpdate=!0}return O.emptySource}prepareProgramMaterial(A){let t=O.generatorProgram.get(A);if(!t){const i=qe({index:"int"},{output:"uvec4"},({index:s})=>{A.inputs.index=s;const n=A.outputs.gsplat;return{output:Ba(n)}});O.programTemplate||(O.programTemplate=new rn(Ra)),t=new nn({graph:i,inputs:{index:"index"},outputs:{output:"target"},template:O.programTemplate}),Object.assign(t.uniforms,{targetLayer:{value:0},targetBase:{value:0},targetCount:{value:0}}),O.generatorProgram.set(A,t)}const e=t.prepareMaterial();return O.mesh.material=e,{program:t,material:e}}saveRenderState(A){return{xrPresenting:A.xr.isPresenting,autoClear:A.autoClear,scissorTest:A.getScissorTest(),pixelRatio:A.getPixelRatio()}}resetRenderState(A,t){A.setRenderTarget(null),A.setPixelRatio(t.pixelRatio),A.xr.isPresenting=t.xrPresenting,A.autoClear=t.autoClear,A.setScissorTest(t.scissorTest)}generate({generator:A,base:t,count:e,renderer:i}){if(!this.target)throw new Error("Target must be initialized with ensureSplats");if(t+e>this.maxSplats)throw new Error("Base + count exceeds maxSplats");const{program:s,material:n}=this.prepareProgramMaterial(A);s.update();const r=this.saveRenderState(i),a=Math.ceil((t+e)/P)*P,o=P*Qt;for(n.uniforms.targetBase.value=t,n.uniforms.targetCount.value=e;t[Ki],value:{texture:Ie.getEmpty(),numSplats:0},update:t=>{var e,i;return t.texture=((e=this.packedSplats)==null?void 0:e.getTexture())??Ie.getEmpty(),t.numSplats=((i=this.packedSplats)==null?void 0:i.numSplats)??0,t}}),this.packedSplats=A}}var Ua=`precision highp float;\nprecision highp int;\nprecision highp sampler2D;\nprecision highp usampler2D;\nprecision highp isampler2D;\nprecision highp sampler2DArray;\nprecision highp usampler2DArray;\nprecision highp isampler2DArray;\nprecision highp sampler3D;\nprecision highp usampler3D;\nprecision highp isampler3D;\n\n#include \n\nuniform uint targetLayer;\nuniform int targetBase;\nuniform int targetCount;\n\nout vec4 target;\n\n{{ GLOBALS }}\n\nvoid computeReadback(int index) {\n {{ STATEMENTS }}\n}\n\nvoid main() {\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\n int index = targetIndex - targetBase;\n\n if ((index >= 0) && (index < targetCount)) {\n computeReadback(index);\n } else {\n target = vec4(0.0, 0.0, 0.0, 0.0);\n }\n}`;const IA=class IA{constructor({renderer:A}={}){this.renderer=A,this.capacity=0,this.count=0}dispose(){this.target&&(this.target.dispose(),this.target=void 0)}ensureBuffer(A,t){const i=Math.ceil(Math.max(1,A)/P)*P*4;if(t.byteLength>=i)return t;const s=new ArrayBuffer(i);if(t instanceof ArrayBuffer)return s;const n=t.constructor;return new n(s)}ensureCapacity(A){const{width:t,height:e,depth:i,maxSplats:s}=FA(A);(!this.target||s>this.capacity)&&(this.dispose(),this.capacity=s,this.target=new xs(t,e,i,{depthBuffer:!1,stencilBuffer:!1,generateMipmaps:!1,magFilter:nt,minFilter:nt}),this.target.texture.format=pe,this.target.texture.type=we,this.target.texture.internalFormat="RGBA8")}prepareProgramMaterial(A){let t=IA.readbackProgram.get(A);if(!t){const i=qe({index:"int"},{rgba8:"vec4"},({index:s})=>(A.inputs.index=s,{rgba8:new ha({rgba8:A.outputs.rgba8})}));IA.programTemplate||(IA.programTemplate=new rn(Ua)),t=new nn({graph:i,inputs:{index:"index"},outputs:{rgba8:"target"},template:IA.programTemplate}),Object.assign(t.uniforms,{targetLayer:{value:0},targetBase:{value:0},targetCount:{value:0}}),IA.readbackProgram.set(A,t)}const e=t.prepareMaterial();return IA.mesh.material=e,{program:t,material:e}}saveRenderState(A){return{xrPresenting:A.xr.isPresenting,autoClear:A.autoClear,scissorTest:A.getScissorTest(),pixelRatio:A.getPixelRatio()}}resetRenderState(A,t){A.setRenderTarget(null),A.setPixelRatio(t.pixelRatio),A.xr.isPresenting=t.xrPresenting,A.autoClear=t.autoClear,A.setScissorTest(t.scissorTest)}process({count:A,material:t}){const e=this.renderer;if(!e)throw new Error("No renderer");if(!this.target)throw new Error("No target");const i=P*Qt;t.uniforms.targetBase.value=0,t.uniforms.targetCount.value=A;let s=0;for(;sA)}render({reader:A,count:t,renderer:e}){if(this.renderer=e||this.renderer,!this.renderer)throw new Error("No renderer");this.ensureCapacity(t);const{program:i,material:s}=this.prepareProgramMaterial(A);i.update();const n=this.saveRenderState(this.renderer);this.process({count:t,material:s}),this.resetRenderState(this.renderer,n)}async readback({readback:A}){if(!this.renderer)throw new Error("No renderer");const t=this.saveRenderState(this.renderer),e=this.read({readback:A});return this.resetRenderState(this.renderer,t),e}async renderReadback({reader:A,count:t,renderer:e,readback:i}){if(this.renderer=e||this.renderer,!this.renderer)throw new Error("No renderer");this.ensureCapacity(t);const{program:s,material:n}=this.prepareProgramMaterial(A);s.update();const r=this.saveRenderState(this.renderer);this.process({count:t,material:n});const a=this.read({readback:i});return this.resetRenderState(this.renderer,r),a}getTexture(){var A;return(A=this.target)==null?void 0:A.texture}};IA.programTemplate=null,IA.readbackProgram=new Map,IA.geometry=new ve(2,2),IA.mesh=new vs(IA.geometry,new Ri({visible:!1})),IA.scene=new _s().add(IA.mesh),IA.camera=new Ks;let Zi=IA;const BA=class BA{constructor(A={}){this.capacity=0,this.count=0,this.array=null,this.readback=null,this.source=null,this.needsUpdate=!0,this.dyno=new et({key:"rgbaArray",type:Bn,globals:()=>[Qn],value:{texture:BA.getEmpty(),count:0},update:t=>{var e;return t.texture=((e=this.readback)==null?void 0:e.getTexture())??this.source??BA.getEmpty(),t.count=this.count,t}}),A.array?(this.array=A.array,this.capacity=Math.floor(this.array.length/4),this.capacity=Math.floor(this.capacity/P)*P,this.count=Math.min(this.capacity,A.count??Number.POSITIVE_INFINITY)):(this.capacity=A.capacity??0,this.count=0)}dispose(){this.readback&&(this.readback.dispose(),this.readback=null),this.source&&(this.source.dispose(),this.source=null)}ensureCapacity(A){var t;if(!this.array||A>(((t=this.array)==null?void 0:t.length)??0)/4){this.capacity=FA(A).maxSplats;const e=new Uint8Array(this.capacity*4);this.array&&e.set(this.array),this.array=e}return this.array}getTexture(){var t;let A=(t=this.readback)==null?void 0:t.getTexture();return(this.source||this.array)&&(A=this.maybeUpdateSource()),A??BA.getEmpty()}maybeUpdateSource(){if(!this.array)throw new Error("No array");if(this.needsUpdate||!this.source){if(this.needsUpdate=!1,this.source){const{width:A,height:t,depth:e}=this.source.image;this.capacity!==A*t*e&&(this.source.dispose(),this.source=null)}if(this.source)this.array.buffer!==this.source.image.data.buffer&&(this.source.image.data=new Uint8Array(this.array.buffer));else{const{width:A,height:t,depth:e}=FA(this.capacity);this.source=new rt(this.array,A,t,e),this.source.format=pe,this.source.type=we,this.source.internalFormat="RGBA8",this.source.needsUpdate=!0}this.source.needsUpdate=!0}return this.source}render({reader:A,count:t,renderer:e}){this.readback||(this.readback=new Zi({renderer:e})),this.readback.render({reader:A,count:t,renderer:e}),this.capacity=this.readback.capacity,this.count=this.readback.count}fromPackedSplats({packedSplats:A,base:t,count:e,renderer:i}){const{dynoSplats:s,dynoBase:n,dynoCount:r,reader:a}=BA.makeDynos();return s.packedSplats=A,n.value=t,r.value=e,this.render({reader:a,count:e,renderer:i}),this}async read(){if(!this.readback)throw new Error("No readback");return(!this.array||this.array.length{if(!s)throw new Error("index is undefined");s=Ai(s,t);const n=sa(A,s,t,e);return{rgba8:je(n).outputs.rgba}});BA.dynos={dynoSplats:A,dynoBase:t,dynoCount:e,reader:i}}return BA.dynos}};BA.emptySource=null,BA.dynos=null;let In=BA;const Bn={type:"RgbaArray"},Qn=KA(`\n struct RgbaArray {\n sampler2DArray texture;\n int count;\n };\n`);function Ga(g,A){return new lA({inTypes:{rgba:Bn,index:"int"},outTypes:{rgba:"vec4"},inputs:{rgba:g,index:A},globals:()=>[Qn],statements:({inputs:e,outputs:i})=>At(`\n if ((index >= 0) && (index < ${e.rgba}.count)) {\n ${i.rgba} = texelFetch(${e.rgba}.texture, splatTexCoord(index), 0);\n } else {\n ${i.rgba} = vec4(0.0, 0.0, 0.0, 0.0);\n }\n `)}).outputs.rgba}function ba(g){switch(g){case"all":return 0;case"plane":return 1;case"sphere":return 2;case"box":return 3;case"ellipsoid":return 4;case"cylinder":return 5;case"capsule":return 6;case"infinite_cone":return 7;default:throw new Error(`Unknown SDF type: ${g}`)}}function La(g){switch(g){case"multiply":return 0;case"set_rgb":return 1;case"add_rgba":return 2;default:throw new Error(`Unknown blend mode: ${g}`)}}class Ya extends wA{constructor(A={}){super();const{type:t,invert:e,opacity:i,color:s,displace:n,radius:r}=A;this.type=t??"sphere",this.invert=e??!1,this.opacity=i??1,this.color=s??new yt(1,1,1),this.displace=n??new u(0,0,0),this.radius=r??0}}const si=class si extends wA{constructor(A={}){const{name:t,rgbaBlendMode:e="multiply",sdfSmooth:i=0,softEdge:s=0,invert:n=!1,sdfs:r=null}=A;super(),this.rgbaBlendMode=e,this.sdfSmooth=i,this.softEdge=s,this.invert=n,this.sdfs=r,this.ordering=si.nextOrdering++,this.name=t??`Edit ${this.ordering}`}addSdf(A){this.sdfs==null&&(this.sdfs=[]),this.sdfs.push(A)}removeSdf(A){this.sdfs!=null&&(this.sdfs=this.sdfs.filter(t=>t!==A))}};si.nextOrdering=1;let Wi=si;class Ja{constructor({maxSdfs:A,maxEdits:t}){this.maxSdfs=Math.max(16,A??0),this.numSdfs=0,this.sdfData=new Uint32Array(this.maxSdfs*8*4),this.sdfFloatData=new Float32Array(this.sdfData.buffer),this.sdfTexture=this.newSdfTexture(this.sdfData,this.maxSdfs),this.dynoSdfArray=new et({key:"sdfArray",type:hn,globals:()=>[En],value:{numSdfs:0,sdfTexture:this.sdfTexture},update:e=>(e.numSdfs=this.numSdfs,e.sdfTexture=this.sdfTexture,e)}),this.maxEdits=Math.max(16,t??0),this.numEdits=0,this.editData=new Uint32Array(this.maxEdits*4),this.editFloatData=new Float32Array(this.editData.buffer),this.dynoNumEdits=new _i({value:0}),this.dynoEdits=this.newEdits(this.editData,this.maxEdits)}newSdfTexture(A,t){const e=new Mr(A,8,t,mt,ct);return e.internalFormat="RGBA32UI",e.needsUpdate=!0,e}newEdits(A,t){return new et({key:"edits",type:"uvec4",count:t,globals:()=>[Cn],value:A})}ensureCapacity({maxSdfs:A,maxEdits:t}){let e=!1;return A>this.sdfTexture.image.height&&(this.sdfTexture.dispose(),this.maxSdfs=Math.max(this.maxSdfs*2,A),this.sdfData=new Uint32Array(this.maxSdfs*8*4),this.sdfFloatData=new Float32Array(this.sdfData.buffer),this.sdfTexture=this.newSdfTexture(this.sdfData,this.maxSdfs)),t>(this.dynoEdits.count??0)&&(this.maxEdits=Math.max(this.maxEdits*2,t),this.editData=new Uint32Array(this.maxEdits*4),this.editFloatData=new Float32Array(this.editData.buffer),this.dynoEdits=this.newEdits(this.editData,this.maxEdits),e=!0),e}updateEditData(A,t){const e=this.editData[A]!==t;return this.editData[A]=t,e}updateEditFloatData(A,t){Wt[0]=t;const e=this.editFloatData[A]!==Wt[0];return e&&(this.editFloatData[A]=Wt[0]),e}encodeEdit(A,{sdfFirst:t,sdfCount:e,invert:i,rgbaBlendMode:s,softEdge:n,sdfSmooth:r}){const a=A*4;let o=!1;return o=this.updateEditData(a+0,s|(i?256:0))||o,o=this.updateEditData(a+1,t|e<<16)||o,o=this.updateEditFloatData(a+2,n)||o,o=this.updateEditFloatData(a+3,r)||o,o}updateSdfData(A,t){const e=this.sdfData[A]!==t;return this.sdfData[A]=t,e}updateSdfFloatData(A,t){Wt[0]=t;const e=this.sdfFloatData[A]!==Wt[0];return e&&(this.sdfFloatData[A]=Wt[0]),e}encodeSdf(A,{sdfType:t,invert:e,center:i,quaternion:s,scale:n,sizes:r},a){const o=A*32,B=t|(e?256:0);let I=!1;I=this.updateSdfFloatData(o+0,(i==null?void 0:i.x)??0)||I,I=this.updateSdfFloatData(o+1,(i==null?void 0:i.y)??0)||I,I=this.updateSdfFloatData(o+2,(i==null?void 0:i.z)??0)||I,I=this.updateSdfData(o+3,B)||I,I=this.updateSdfFloatData(o+4,(s==null?void 0:s.x)??0)||I,I=this.updateSdfFloatData(o+5,(s==null?void 0:s.y)??0)||I,I=this.updateSdfFloatData(o+6,(s==null?void 0:s.z)??0)||I,I=this.updateSdfFloatData(o+7,(s==null?void 0:s.w)??0)||I,I=this.updateSdfFloatData(o+8,(n==null?void 0:n.x)??0)||I,I=this.updateSdfFloatData(o+9,(n==null?void 0:n.y)??0)||I,I=this.updateSdfFloatData(o+10,(n==null?void 0:n.z)??0)||I,I=this.updateSdfData(o+11,0)||I,I=this.updateSdfFloatData(o+12,(r==null?void 0:r.x)??0)||I,I=this.updateSdfFloatData(o+13,(r==null?void 0:r.y)??0)||I,I=this.updateSdfFloatData(o+14,(r==null?void 0:r.z)??0)||I,I=this.updateSdfFloatData(o+15,(r==null?void 0:r.w)??0)||I;const Q=Math.min(4,a.length);for(let h=0;hI+Q.length,0),e=this.ensureCapacity({maxEdits:A.length,maxSdfs:t}),i=[new uA,new uA],s=new u,n=new gA,r=new u,a=new uA;let o=0,B=e;A.length!==this.dynoNumEdits.value&&(this.dynoNumEdits.value=A.length,this.numEdits=A.length,B=!0);for(const[I,{edit:Q,sdfs:h}]of A.entries()){B=this.encodeEdit(I,{sdfFirst:o,sdfCount:h.length,invert:Q.invert,rgbaBlendMode:La(Q.rgbaBlendMode),softEdge:Q.softEdge,sdfSmooth:Q.sdfSmooth})||B;let E=!1;for(const C of h)a.set(C.scale.x,C.scale.y,C.scale.z,C.radius),C.scale.setScalar(1),C.updateMatrixWorld(),C.matrixWorld.clone().invert().decompose(s,n,r),C.scale.set(a.x,a.y,a.z),C.updateMatrixWorld(),i[0].set(C.color.r,C.color.g,C.color.b,C.opacity),i[1].set(C.displace.x,C.displace.y,C.displace.z,1),E=this.encodeSdf(o,{sdfType:ba(C.type),invert:C.invert,center:s,quaternion:n,scale:r,sizes:a},i)||E,o+=1;this.numSdfs=o,E&&(this.sdfTexture.needsUpdate=!0),B||(B=E)}return{updated:B,dynoUpdated:e}}modify(A){return Ha(A,this.dynoSdfArray,this.dynoNumEdits,this.dynoEdits)}}const hn={type:"SdfArray"},En=KA(`\n struct SdfArray {\n int numSdfs;\n usampler2D sdfTexture;\n };\n\n void unpackSdfArray(\n usampler2D sdfTexture, int sdfIndex, out uint flags,\n out vec3 center, out vec4 quaternion, out vec3 scale, out vec4 sizes,\n int numValues, out vec4 values[4]\n ) {\n uvec4 temp = texelFetch(sdfTexture, ivec2(0, sdfIndex), 0);\n flags = temp.w;\n center = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z));\n\n temp = texelFetch(sdfTexture, ivec2(1, sdfIndex), 0);\n quaternion = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n\n temp = texelFetch(sdfTexture, ivec2(2, sdfIndex), 0);\n scale = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z));\n\n temp = texelFetch(sdfTexture, ivec2(3, sdfIndex), 0);\n sizes = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n\n for (int i = 0; i < numValues; ++i) {\n temp = texelFetch(sdfTexture, ivec2(4 + i, sdfIndex), 0);\n values[i] = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n }\n }\n\n const uint SDF_FLAG_TYPE = 0xFFu;\n const uint SDF_FLAG_INVERT = 1u << 8u;\n\n const uint SDF_TYPE_ALL = 0u;\n const uint SDF_TYPE_PLANE = 1u;\n const uint SDF_TYPE_SPHERE = 2u;\n const uint SDF_TYPE_BOX = 3u;\n const uint SDF_TYPE_ELLIPSOID = 4u;\n const uint SDF_TYPE_CYLINDER = 5u;\n const uint SDF_TYPE_CAPSULE = 6u;\n const uint SDF_TYPE_INFINITE_CONE = 7u;\n\n float evaluateSdfArray(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos,\n float smoothK, int numValues, out vec4 outValues[4]\n ) {\n float distanceAccum = (smoothK == 0.0) ? 1.0 / 0.0 : 0.0;\n float maxExp = -1.0 / 0.0;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] = vec4(0.0);\n }\n\n uint flags;\n vec3 center, scale;\n vec4 quaternion, sizes;\n vec4 values[4];\n\n int sdfLast = min(sdfFirst + sdfCount, numSdfs);\n for (int index = sdfFirst; index < sdfLast; ++index) {\n unpackSdfArray(sdfTexture, index, flags, center, quaternion, scale, sizes, numValues, values);\n uint sdfType = flags & SDF_FLAG_TYPE;\n vec3 sdfPos = quatVec(quaternion, pos * scale) + center;\n\n float distance;\n switch (sdfType) {\n case SDF_TYPE_ALL:\n distance = -1.0 / 0.0;\n break;\n case SDF_TYPE_PLANE: {\n distance = sdfPos.z;\n break;\n }\n case SDF_TYPE_SPHERE: {\n distance = length(sdfPos) - sizes.w;\n break;\n }\n case SDF_TYPE_BOX: {\n vec3 q = abs(sdfPos) - sizes.xyz + sizes.w;\n distance = length(max(q, 0.0)) + min(max(q.x, max(q.y, q.z)), 0.0) - sizes.w;\n break;\n }\n case SDF_TYPE_ELLIPSOID: {\n vec3 sizes = sizes.xyz;\n float k0 = length(sdfPos / sizes);\n float k1 = length(sdfPos / dot(sizes, sizes));\n distance = k0 * (k0 - 1.0) / k1;\n break;\n }\n case SDF_TYPE_CYLINDER: {\n vec2 d = abs(vec2(length(sdfPos.xz), sdfPos.y)) - sizes.wy;\n distance = min(max(d.x, d.y), 0.0) + length(max(d, 0.0));\n break;\n }\n case SDF_TYPE_CAPSULE: {\n sdfPos.y -= clamp(sdfPos.y, -0.5 * sizes.y, 0.5 * sizes.y);\n distance = length(sdfPos) - sizes.w;\n break;\n }\n case SDF_TYPE_INFINITE_CONE: {\n float angle = 0.25 * PI * sizes.w;\n vec2 c = vec2(sin(angle), cos(angle));\n vec2 q = vec2(length(sdfPos.xy), -sdfPos.z);\n float d = length(q - c * max(dot(q, c), 0.0));\n distance = d * (((q.x * c.y - q.y * c.x) < 0.0) ? -1.0 : 1.0);\n break;\n }\n }\n\n if ((flags & SDF_FLAG_INVERT) != 0u) {\n distance = -distance;\n }\n\n if (smoothK == 0.0) {\n if (distance < distanceAccum) {\n distanceAccum = distance;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] = values[i];\n }\n }\n } else {\n float scaledDistance = -distance / smoothK;\n if (scaledDistance > maxExp) {\n float scale = exp(maxExp - scaledDistance);\n distanceAccum *= scale;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] *= scale;\n }\n maxExp = scaledDistance;\n }\n\n float weight = exp(scaledDistance - maxExp);\n distanceAccum += weight;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] += weight * values[i];\n }\n }\n }\n\n if (smoothK == 0.0) {\n return distanceAccum;\n } else {\n // Very distant SDFs may result in 0 accumulation\n if (distanceAccum == 0.0) {\n return 1.0 / 0.0;\n }\n for (int i = 0; i < numValues; ++i) {\n outValues[i] /= distanceAccum;\n }\n return (-log(distanceAccum) - maxExp) * smoothK;\n }\n }\n\n float modulateSdfArray(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos,\n float smoothK, int numValues, out vec4 values[4],\n float softEdge, bool invert\n ) {\n float distance = evaluateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, numValues, values);\n if (invert) {\n distance = -distance;\n }\n\n return (softEdge == 0.0) ? ((distance < 0.0) ? 1.0 : 0.0)\n : clamp(-distance / softEdge + 0.5, 0.0, 1.0);\n }\n`),Cn=KA(`\n const uint EDIT_FLAG_BLEND = 0xFFu;\n const uint EDIT_BLEND_MULTIPLY = 0u;\n const uint EDIT_BLEND_SET_RGB = 1u;\n const uint EDIT_BLEND_ADD_RGBA = 2u;\n const uint EDIT_FLAG_INVERT = 0x100u;\n\n void decodeEdit(\n uvec4 packedEdit, out int sdfFirst, out int sdfCount,\n out bool invert, out uint rgbaBlendMode, out float softEdge, out float sdfSmooth\n ) {\n rgbaBlendMode = packedEdit.x & EDIT_FLAG_BLEND;\n invert = (packedEdit.x & EDIT_FLAG_INVERT) != 0u;\n\n sdfFirst = int(packedEdit.y & 0xFFFFu);\n sdfCount = int(packedEdit.y >> 16u);\n\n softEdge = uintBitsToFloat(packedEdit.z);\n sdfSmooth = uintBitsToFloat(packedEdit.w);\n }\n\n void applyRgbaDisplaceEdit(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, inout vec3 pos,\n float smoothK, float softEdge, bool invert, uint rgbaBlendMode, inout vec4 rgba\n ) {\n vec4 values[4];\n float modulate = modulateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, 2, values, softEdge, invert);\n // On Android, moving values[0] is necessary to work around a compiler bug.\n vec4 sdfRgba = values[0];\n vec4 sdfDisplaceScale = values[1];\n\n vec4 target;\n switch (rgbaBlendMode) {\n case EDIT_BLEND_MULTIPLY:\n target = rgba * sdfRgba;\n break;\n case EDIT_BLEND_SET_RGB:\n target = vec4(sdfRgba.rgb, rgba.a * sdfRgba.a);\n break;\n case EDIT_BLEND_ADD_RGBA:\n target = rgba + sdfRgba;\n break;\n default:\n // Debug output if blend mode not set\n target = vec4(fract(pos), 1.0);\n }\n rgba = mix(rgba, target, modulate);\n pos += sdfDisplaceScale.xyz * modulate;\n }\n\n void applyPackedRgbaDisplaceEdit(uvec4 packedEdit, usampler2D sdfTexture, int numSdfs, inout vec3 pos, inout vec4 rgba) {\n int sdfFirst, sdfCount;\n bool invert;\n uint rgbaBlendMode;\n float softEdge, sdfSmooth;\n decodeEdit(packedEdit, sdfFirst, sdfCount, invert, rgbaBlendMode, softEdge, sdfSmooth);\n applyRgbaDisplaceEdit(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, sdfSmooth, softEdge, invert, rgbaBlendMode, rgba);\n }\n`);function Ha(g,A,t,e){return new lA({inTypes:{gsplat:pA,sdfArray:hn,numEdits:"int",rgbaDisplaceEdits:"uvec4"},outTypes:{gsplat:pA},globals:()=>[En,Cn],inputs:{gsplat:g,sdfArray:A,numEdits:t,rgbaDisplaceEdits:e},statements:({inputs:s,outputs:n})=>{const{sdfArray:r,numEdits:a,rgbaDisplaceEdits:o}=s,{gsplat:B}=n;return At(`\n ${B} = ${s.gsplat};\n if (isGsplatActive(${B}.flags)) {\n for (int editIndex = 0; editIndex < ${a}; ++editIndex) {\n applyPackedRgbaDisplaceEdit(\n ${o}[editIndex], ${r}.sdfTexture, ${r}.numSdfs,\n ${B}.center, ${B}.rgba\n );\n }\n }\n `)}}).outputs.gsplat}const Wt=new Float32Array(1);class ti{constructor(){this.scale=new $e({value:Number.NEGATIVE_INFINITY}),this.rotate=new sn({value:new gA(Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY)}),this.translate=new Ea({value:new u(Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY)})}apply(A){return Sa(A,{scale:this.scale,rotate:this.rotate,translate:this.translate})}applyDir(A){return Fa(A,{rotate:this.rotate})}applyGsplat(A){return na(A,{scale:this.scale,rotate:this.rotate,translate:this.translate})}updateFromMatrix(A){const t=new u,e=new gA,i=new u;A.decompose(i,e,t);const s=(t.x+t.y+t.z)/3;let n=!1;return s!==this.scale.value&&(this.scale.value=s,n=!0),i.equals(this.translate.value)||(this.translate.value.copy(i),n=!0),e.equals(this.rotate.value)||(this.rotate.value.copy(e),n=!0),n}update(A){return A.updateMatrixWorld(),this.updateFromMatrix(A.matrixWorld)}}class Ta extends wA{constructor({numSplats:A,generator:t,construct:e,update:i}){if(super(),this.numSplats=A??0,this.generator=t,this.frameUpdate=i,this.version=0,e){const s=e(this);Object.assign(this,s)}}updateVersion(){this.version+=1}set needsUpdate(A){A&&this.updateVersion()}}const Ct=class Ct extends Ta{constructor(A={}){const t=new ti,e=new ti,i=new ti,s=new ti,n=new sn({value:new uA(Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY)}),r=new $e({value:0}),a=new $e({value:0}),o={transform:t,viewToWorld:e,worldToView:i,viewToObject:s,recolor:n,time:r,deltaTime:a};if(super({update:({time:B,deltaTime:I,viewToWorld:Q,globalEdits:h})=>this.update({time:B,deltaTime:I,viewToWorld:Q,globalEdits:h})}),this.isInitialized=!1,this.recolor=new yt(1,1,1),this.opacity=1,this.enableViewToObject=!1,this.enableViewToWorld=!1,this.enableWorldToView=!1,this.skinning=null,this.edits=null,this.rgbaDisplaceEdits=null,this.splatRgba=null,this.maxSh=3,this.packedSplats=A.packedSplats??new Ie,this.numSplats=this.packedSplats.numSplats,this.editable=A.editable??!0,this.onFrame=A.onFrame,this.context=o,this.objectModifier=A.objectModifier,this.worldModifier=A.worldModifier,this.updateGenerator(),A.url||A.fileBytes||A.constructSplats||A.packedSplats&&!A.packedSplats.isInitialized)this.initialized=this.asyncInitialize(A).then(async()=>{if(this.updateGenerator(),this.isInitialized=!0,A.onLoad){const B=A.onLoad(this);B instanceof Promise&&await B}return this});else if(this.isInitialized=!0,this.initialized=Promise.resolve(this),A.onLoad){const B=A.onLoad(this);B instanceof Promise&&(this.initialized=B.then(()=>this))}}async asyncInitialize(A){const{url:t,fileBytes:e,fileType:i,fileName:s,maxSplats:n,constructSplats:r}=A;if(t||e||r){const a={url:t,fileBytes:e,fileType:i,fileName:s,maxSplats:n,construct:r};this.packedSplats.reinitialize(a)}this.packedSplats&&(await this.packedSplats.initialized,this.numSplats=this.packedSplats.numSplats,this.updateGenerator())}static async staticInitialize(){await ni(),Ct.isStaticInitialized=!0}pushSplat(A,t,e,i,s){this.packedSplats.pushSplat(A,t,e,i,s)}forEachSplat(A){this.packedSplats.forEachSplat(A)}dispose(){this.packedSplats.dispose()}constructGenerator(A){const{transform:t,viewToObject:e,recolor:i}=A,s=qe({index:"int"},{gsplat:pA},({index:n})=>{if(!n)throw new Error("index is undefined");let r=ia(this.packedSplats.dyno,n);if(this.maxSh>=1){const{sh1Texture:o,sh2Texture:B,sh3Texture:I}=this.ensureShTextures();if(o){const Q=e.translate,{center:h}=je(r).outputs,E=pa(ua(h,Q));let C=_a(r,o,E);this.maxSh>=2&&B&&(C=Ai(C,qa(r,B,E))),this.maxSh>=3&&I&&(C=Ai(C,Za(r,I,E)));let{rgba:c}=je(r).outputs;c=Ai(c,Da(C,Gr("float",0))),r=vi({gsplat:r,rgba:c})}}if(this.splatRgba){const o=Ga(this.splatRgba.dyno,n);r=vi({gsplat:r,rgba:o})}this.skinning&&(r=this.skinning.modify(r)),this.objectModifier&&(r=this.objectModifier.apply({gsplat:r}).gsplat),r=t.applyGsplat(r);const a=da(i,je(r).outputs.rgba);return r=vi({gsplat:r,rgba:a}),this.rgbaDisplaceEdits&&(r=this.rgbaDisplaceEdits.modify(r)),this.worldModifier&&(r=this.worldModifier.apply({gsplat:r}).gsplat),{gsplat:r}});this.generator=s}updateGenerator(){this.constructGenerator(this.context)}update({time:A,viewToWorld:t,deltaTime:e,globalEdits:i}){var c;this.numSplats=this.packedSplats.numSplats,this.context.time.value=A,this.context.deltaTime.value=e,Ct.dynoTime.value=A;const{transform:s,viewToObject:n,recolor:r}=this.context;let a=s.update(this);this.context.viewToWorld.updateFromMatrix(t)&&this.enableViewToWorld&&(a=!0);const o=t.clone().invert();this.context.worldToView.updateFromMatrix(o)&&this.enableWorldToView&&(a=!0);const Q=new CA().compose(s.translate.value,s.rotate.value,new u().setScalar(s.scale.value)).invert().multiply(t);n.updateFromMatrix(Q)&&(this.enableViewToObject||this.packedSplats.extra.sh1)&&(a=!0);const h=new uA(this.recolor.r,this.recolor.g,this.recolor.b,this.opacity);h.equals(r.value)||(r.value.copy(h),a=!0);const E=this.editable?(this.edits??[]).concat(i):[];this.editable&&!this.edits&&this.traverseVisible(l=>{l instanceof Wi&&E.push(l)}),E.sort((l,y)=>l.ordering-y.ordering);const C=E.map(l=>{if(l.sdfs!=null)return{edit:l,sdfs:l.sdfs};const y=[];return l.traverseVisible(d=>{d instanceof Ya&&y.push(d)}),{edit:l,sdfs:y}});if(C.length>0&&!this.rgbaDisplaceEdits){const l=C.length,y=C.reduce((d,f)=>d+f.sdfs.length,0);this.rgbaDisplaceEdits=new Ja({maxEdits:l,maxSdfs:y}),this.updateGenerator()}if(this.rgbaDisplaceEdits){const l=this.rgbaDisplaceEdits.update(C);a||(a=l.updated),l.dynoUpdated&&this.updateGenerator()}a&&this.updateVersion(),(c=this.onFrame)==null||c.call(this,{mesh:this,time:A,deltaTime:e})}raycast(A,t){if(!this.packedSplats.packedArray||!this.packedSplats.numSplats)return;const{near:e,far:i,ray:s}=A,n=this.matrixWorld.clone().invert(),r=new qA().setFromMatrix4(n),a=s.origin.clone().applyMatrix4(n),o=s.direction.clone().applyMatrix3(r),B=new u;n.decompose(new u,new gA,B),(B.x*B.y*B.z)**(1/3);const Q=Nn(a.x,a.y,a.z,o.x,o.y,o.z,e,i,this.packedSplats.numSplats,this.packedSplats.packedArray,!0);for(const h of Q){const E=s.direction.clone().multiplyScalar(h).add(s.origin);t.push({distance:h,point:E,object:this})}}ensureShTextures(){if(!this.packedSplats.extra.sh1)return{};let A=this.packedSplats.extra.sh1Texture;if(!A){let i=this.packedSplats.extra.sh1;const{width:s,height:n,depth:r,maxSplats:a}=FA(i.length/2);if(i.length> 25,\n int(packed.x << 18u) >> 25,\n int(packed.x << 11u) >> 25\n )) / 63.0;\n vec3 sh1_1 = vec3(ivec3(\n int(packed.x << 4u) >> 25,\n int((packed.x >> 3u) | (packed.y << 29u)) >> 25,\n int(packed.y << 22u) >> 25\n )) / 63.0;\n vec3 sh1_2 = vec3(ivec3(\n int(packed.y << 15u) >> 25,\n int(packed.y << 8u) >> 25,\n int(packed.y << 1u) >> 25\n )) / 63.0;\n\n return sh1_0 * (-0.4886025 * viewDir.y)\n + sh1_1 * (0.4886025 * viewDir.z)\n + sh1_2 * (-0.4886025 * viewDir.x);\n }\n`),va=KA(`\n vec3 evaluateSH2(Gsplat gsplat, usampler2DArray sh2, vec3 viewDir) {\n // Extract sint8 values packed into 4 x uint32\n uvec4 packed = texelFetch(sh2, splatTexCoord(gsplat.index), 0);\n vec3 sh2_0 = vec3(ivec3(\n int(packed.x << 24u) >> 24,\n int(packed.x << 16u) >> 24,\n int(packed.x << 8u) >> 24\n )) / 127.0;\n vec3 sh2_1 = vec3(ivec3(\n int(packed.x) >> 24,\n int(packed.y << 24u) >> 24,\n int(packed.y << 16u) >> 24\n )) / 127.0;\n vec3 sh2_2 = vec3(ivec3(\n int(packed.y << 8u) >> 24,\n int(packed.y) >> 24,\n int(packed.z << 24u) >> 24\n )) / 127.0;\n vec3 sh2_3 = vec3(ivec3(\n int(packed.z << 16u) >> 24,\n int(packed.z << 8u) >> 24,\n int(packed.z) >> 24\n )) / 127.0;\n vec3 sh2_4 = vec3(ivec3(\n int(packed.w << 24u) >> 24,\n int(packed.w << 16u) >> 24,\n int(packed.w << 8u) >> 24\n )) / 127.0;\n\n return sh2_0 * (1.0925484 * viewDir.x * viewDir.y)\n + sh2_1 * (1.0925484 * viewDir.y * viewDir.z)\n + sh2_2 * (0.3153915 * (2.0 * viewDir.z * viewDir.z - viewDir.x * viewDir.x - viewDir.y * viewDir.y))\n + sh2_3 * (1.0925484 * viewDir.x * viewDir.z)\n + sh2_4 * (0.5462742 * (viewDir.x * viewDir.x - viewDir.y * viewDir.y));\n }\n`),Ka=KA(`\n vec3 evaluateSH3(Gsplat gsplat, usampler2DArray sh3, vec3 viewDir) {\n // Extract sint6 values packed into 4 x uint32\n uvec4 packed = texelFetch(sh3, splatTexCoord(gsplat.index), 0);\n vec3 sh3_0 = vec3(ivec3(\n int(packed.x << 26u) >> 26,\n int(packed.x << 20u) >> 26,\n int(packed.x << 14u) >> 26\n )) / 31.0;\n vec3 sh3_1 = vec3(ivec3(\n int(packed.x << 8u) >> 26,\n int(packed.x << 2u) >> 26,\n int((packed.x >> 4u) | (packed.y << 28u)) >> 26\n )) / 31.0;\n vec3 sh3_2 = vec3(ivec3(\n int(packed.y << 22u) >> 26,\n int(packed.y << 16u) >> 26,\n int(packed.y << 10u) >> 26\n )) / 31.0;\n vec3 sh3_3 = vec3(ivec3(\n int(packed.y << 4u) >> 26,\n int((packed.y >> 2u) | (packed.z << 30u)) >> 26,\n int(packed.z << 24u) >> 26\n )) / 31.0;\n vec3 sh3_4 = vec3(ivec3(\n int(packed.z << 18u) >> 26,\n int(packed.z << 12u) >> 26,\n int(packed.z << 6u) >> 26\n )) / 31.0;\n vec3 sh3_5 = vec3(ivec3(\n int(packed.z) >> 26,\n int(packed.w << 26u) >> 26,\n int(packed.w << 20u) >> 26\n )) / 31.0;\n vec3 sh3_6 = vec3(ivec3(\n int(packed.w << 14u) >> 26,\n int(packed.w << 8u) >> 26,\n int(packed.w << 2u) >> 26\n )) / 31.0;\n\n float xx = viewDir.x * viewDir.x;\n float yy = viewDir.y * viewDir.y;\n float zz = viewDir.z * viewDir.z;\n float xy = viewDir.x * viewDir.y;\n float yz = viewDir.y * viewDir.z;\n float zx = viewDir.z * viewDir.x;\n\n return sh3_0 * (-0.5900436 * viewDir.y * (3.0 * xx - yy))\n + sh3_1 * (2.8906114 * xy * viewDir.z) +\n + sh3_2 * (-0.4570458 * viewDir.y * (4.0 * zz - xx - yy))\n + sh3_3 * (0.3731763 * viewDir.z * (2.0 * zz - 3.0 * xx - 3.0 * yy))\n + sh3_4 * (-0.4570458 * viewDir.x * (4.0 * zz - xx - yy))\n + sh3_5 * (1.4453057 * viewDir.z * (xx - yy))\n + sh3_6 * (-0.5900436 * viewDir.x * (xx - 3.0 * yy));\n }\n`);function _a(g,A,t){return bi({inTypes:{gsplat:pA,sh1:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:g,sh1:A,viewDir:t},globals:()=>[tt,za],statements:({inputs:e,outputs:i})=>At(`\n if (isGsplatActive(${e.gsplat}.flags)) {\n ${i.rgb} = evaluateSH1(${e.gsplat}, ${e.sh1}, ${e.viewDir});\n } else {\n ${i.rgb} = vec3(0.0);\n }\n `)}).outputs.rgb}function qa(g,A,t){return bi({inTypes:{gsplat:pA,sh2:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:g,sh2:A,viewDir:t},globals:()=>[tt,va],statements:({inputs:e,outputs:i})=>At(`\n if (isGsplatActive(${e.gsplat}.flags)) {\n ${i.rgb} = evaluateSH2(${e.gsplat}, ${e.sh2}, ${e.viewDir});\n } else {\n ${i.rgb} = vec3(0.0);\n }\n `)}).outputs.rgb}function Za(g,A,t){return bi({inTypes:{gsplat:pA,sh3:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:g,sh3:A,viewDir:t},globals:()=>[tt,Ka],statements:({inputs:e,outputs:i})=>At(`\n if (isGsplatActive(${e.gsplat}.flags)) {\n ${i.rgb} = evaluateSH3(${e.gsplat}, ${e.sh3}, ${e.viewDir});\n } else {\n ${i.rgb} = vec3(0.0);\n }\n `)}).outputs.rgb}function Wa(g){return new Worker(self.location.href,{name:g==null?void 0:g.name})}class Pa{constructor(){this.messages={},this.messageIdNext=0,this.worker=new Wa,this.worker.onmessage=A=>this.onMessage(A)}makeMessageId(){return++this.messageIdNext}makeMessagePromiseId(){const A=this.makeMessageId(),t=new Promise((e,i)=>{this.messages[A]={resolve:e,reject:i}});return{id:A,promise:t}}onMessage(A){const{id:t,result:e,error:i}=A.data,s=this.messages[t];s&&(delete this.messages[t],i?s.reject(i):s.resolve(e))}async call(A,t){const{id:e,promise:i}=this.makeMessagePromiseId();return this.worker.postMessage({name:A,args:t,id:e},{transfer:Os(t)}),i}}let ln=4,ei=0;const un=[],dn=[];async function Oa(){const g=un.shift();if(g)return g;if(ei{dn.push(A)})}function Va(g){if(ei>ln){ei-=1;return}const A=dn.shift();if(A){A(g);return}un.push(g)}async function ii(g){const A=await Oa();try{return await g(A)}finally{Va(A)}}var Be=(g=>(g.PLY="ply",g.SPZ="spz",g.SPLAT="splat",g.KSPLAT="ksplat",g))(Be||{});function yn(g){const A=new DataView(g.buffer);if((A.getUint32(0,!0)&16777215)===7957616)return"ply";if((A.getUint32(0,!0)&16777215)===559903){const t=Vr(g,4);return new DataView(t.buffer).getUint32(0,!0)===1347635022?"spz":void 0}}function Xa(g){const A=g.split(/[?#]/,1)[0],t=Math.max(A.lastIndexOf("/"),A.lastIndexOf("\\\\")),e=A.slice(t+1),i=e.lastIndexOf(".");return i<=0||i===e.length-1?"":e.slice(i+1).toLowerCase()}function fn(g){const A=Xa(g);if(A==="ply")return"ply";if(A==="spz")return"spz";if(A==="splat")return"splat";if(A==="ksplat")return"ksplat"}async function ja({input:g,fileType:A,pathOrUrl:t}){const e=g instanceof ArrayBuffer?new Uint8Array(g):g;let i=A;switch(A||(i=yn(e),!i&&t&&(i=fn(t))),i){case"ply":{const s=new oe({fileBytes:e});await s.parseHeader();const n=s.numSplats,r=FA(n).maxSplats,a={fileBytes:e,packedArray:new Uint32Array(r*4)};return await ii(async o=>{const{packedArray:B,numSplats:I,extra:Q}=await o.call("unpackPly",a);return{packedArray:B,numSplats:I,extra:Q}})}case"spz":return await ii(async s=>{const{packedArray:n,numSplats:r,extra:a}=await s.call("decodeSpz",{fileBytes:e});return{packedArray:n,numSplats:r,extra:a}});case"splat":return await ii(async s=>{const{packedArray:n,numSplats:r}=await s.call("decodeAntiSplat",{fileBytes:e});return{packedArray:n,numSplats:r}});case"ksplat":return await ii(async s=>{const{packedArray:n,numSplats:r,extra:a}=await s.call("decodeKsplat",{fileBytes:e});return{packedArray:n,numSplats:r,extra:a}});default:throw new Error(`Unknown splat file type: ${i}`)}}class $a{constructor({maxSplats:A=1}={}){this.numSplats=0,this.maxSplats=FA(A).maxSplats,this.centers=new Float32Array(this.maxSplats*3),this.scales=new Float32Array(this.maxSplats*3),this.quaternions=new Float32Array(this.maxSplats*4),this.opacities=new Float32Array(this.maxSplats),this.colors=new Float32Array(this.maxSplats*3)}pushSplat(){const A=this.numSplats;return this.ensureIndex(A),this.numSplats+=1,A}unpushSplat(A){if(A===this.numSplats-1)this.numSplats-=1;else throw new Error("Cannot unpush splat from non-last position")}ensureCapacity(A){if(A>this.maxSplats){const t=Math.max(A,this.maxSplats*2),e=new Float32Array(t*3),i=new Float32Array(t*3),s=new Float32Array(t*4),n=new Float32Array(t),r=new Float32Array(t*3);if(e.set(this.centers),i.set(this.scales),s.set(this.quaternions),n.set(this.opacities),r.set(this.colors),this.centers=e,this.scales=i,this.quaternions=s,this.opacities=n,this.colors=r,this.sh1){const a=new Float32Array(t*9);a.set(this.sh1),this.sh1=a}if(this.sh2){const a=new Float32Array(t*15);a.set(this.sh2),this.sh2=a}if(this.sh3){const a=new Float32Array(t*21);a.set(this.sh3),this.sh3=a}this.maxSplats=t}}ensureIndex(A){this.ensureCapacity(A+1)}setCenter(A,t,e,i){this.centers[A*3]=t,this.centers[A*3+1]=e,this.centers[A*3+2]=i}setScale(A,t,e,i){this.scales[A*3]=t,this.scales[A*3+1]=e,this.scales[A*3+2]=i}setQuaternion(A,t,e,i,s){this.quaternions[A*4]=t,this.quaternions[A*4+1]=e,this.quaternions[A*4+2]=i,this.quaternions[A*4+3]=s}setOpacity(A,t){this.opacities[A]=t}setColor(A,t,e,i){this.colors[A*3]=t,this.colors[A*3+1]=e,this.colors[A*3+2]=i}setSh1(A,t){this.sh1||(this.sh1=new Float32Array(this.maxSplats*9));for(let e=0;e<9;++e)this.sh1[A*9+e]=t[e]}setSh2(A,t){this.sh2||(this.sh2=new Float32Array(this.maxSplats*15));for(let e=0;e<15;++e)this.sh2[A*15+e]=t[e]}setSh3(A,t){this.sh3||(this.sh3=new Float32Array(this.maxSplats*21));for(let e=0;e<21;++e)this.sh3[A*21+e]=t[e]}}class wn{constructor({fileBytes:A}){this.fileBytes=A instanceof ArrayBuffer?new Uint8Array(A):A,this.reader=new Xr({fileBytes:this.fileBytes});const t=new DataView(this.reader.read(16).buffer);if(t.getUint32(0,!0)!==1347635022)throw new Error("Invalid SPZ file");if(this.version=t.getUint32(4,!0),this.version<1||this.version>2)throw new Error(`Unsupported SPZ version: ${this.version}`);this.numSplats=t.getUint32(8,!0),this.shDegree=t.getUint8(12),this.fractionalBits=t.getUint8(13),this.flags=t.getUint8(14),this.flagAntiAlias=(this.flags&1)!==0,this.reserved=t.getUint8(15),this.parsed=!1}parseSplats(A,t,e,i,s,n){if(this.parsed)throw new Error("SPZ file already parsed");if(this.parsed=!0,this.version===1){const r=this.reader.read(this.numSplats*3*2),a=new Uint16Array(r.buffer);for(let o=0;o>8)/r,Q=((a[B+5]<<24|a[B+4]<<16|a[B+3]<<8)>>8)/r,h=((a[B+8]<<24|a[B+7]<<16|a[B+6]<<8)>>8)/r;A==null||A(o,I,Q,h)}}else throw new Error("Unreachable");{const r=this.reader.read(this.numSplats);for(let a=0;a=1){const r=new Float32Array(9),a=this.shDegree>=2?new Float32Array(5*3):void 0,o=this.shDegree>=3?new Float32Array(7*3):void 0,B=this.reader.read(this.numSplats*pn[this.shDegree]*3);let I=0;for(let Q=0;Q=1?9:0)+(t>=2?15:0)+(t>=3?21:0),n=16+A*s;this.buffer=new ArrayBuffer(n),this.view=new DataView(this.buffer),this.view.setUint32(0,Ag,!0),this.view.setUint32(4,tg,!0),this.view.setUint32(8,A,!0),this.view.setUint8(12,t),this.view.setUint8(13,e),this.view.setUint8(14,i?eg:0),this.view.setUint8(15,0),this.numSplats=A,this.shDegree=t,this.fractionalBits=e,this.fraction=1<>8&255),this.view.setUint8(h+2,n>>16&255),this.view.setUint8(h+3,a&255),this.view.setUint8(h+4,a>>8&255),this.view.setUint8(h+5,a>>16&255),this.view.setUint8(h+6,B&255),this.view.setUint8(h+7,B>>8&255),this.view.setUint8(h+8,B>>16&255)}setAlpha(A,t){const e=16+this.numSplats*9+A;this.view.setUint8(e,Math.max(0,Math.min(255,Math.round(t*255))))}static scaleRgb(A){const t=((A-.5)/(Dn/.15)+.5)*255;return Math.max(0,Math.min(255,Math.round(t)))}setRgb(A,t,e,i){const s=16+this.numSplats*10+A*3;this.view.setUint8(s,Et.scaleRgb(t)),this.view.setUint8(s+1,Et.scaleRgb(e)),this.view.setUint8(s+2,Et.scaleRgb(i))}setScale(A,t,e,i){const s=16+this.numSplats*13+A*3;this.view.setUint8(s,Math.max(0,Math.min(255,Math.round((Math.log(t)+10)*16)))),this.view.setUint8(s+1,Math.max(0,Math.min(255,Math.round((Math.log(e)+10)*16)))),this.view.setUint8(s+2,Math.max(0,Math.min(255,Math.round((Math.log(i)+10)*16))))}setQuat(A,t,e,i,s){const n=16+this.numSplats*16+A*3,r=s<0;this.view.setUint8(n,Math.max(0,Math.min(255,Math.round(((r?-t:t)+1)*127.5)))),this.view.setUint8(n+1,Math.max(0,Math.min(255,Math.round(((r?-e:e)+1)*127.5)))),this.view.setUint8(n+2,Math.max(0,Math.min(255,Math.round(((r?-i:i)+1)*127.5))))}static quantizeSh(A,t){const e=Math.round(A*128)+128,i=1<<8-t,s=Math.floor((e+i/2)/i)*i;return Math.max(0,Math.min(255,s))}setSh(A,t,e,i){const s=pn[this.shDegree]||0,n=16+this.numSplats*19+A*s*3;for(let r=0;r<9;++r)this.view.setUint8(n+r,Et.quantizeSh(t[r],5));if(e){const r=n+9;for(let a=0;a<15;++a)this.view.setUint8(r+a,Et.quantizeSh(e[a],4));if(i){const a=r+15;for(let o=0;o<21;++o)this.view.setUint8(a+o,Et.quantizeSh(i[o],4))}}}async finalize(){const A=new Uint8Array(this.buffer),e=new ReadableStream({async start(n){n.enqueue(A),n.close()}}).pipeThrough(new CompressionStream("gzip")),s=await new Response(e).arrayBuffer();return console.log("Compressed",A.length,"bytes to",s.byteLength,"bytes"),new Uint8Array(s)}}async function ig(g){var B,I,Q;const A=new $a,{inputs:t,clipXyz:e,maxSh:i,fractionalBits:s=12,opacityThreshold:n}=g;for(const h of t){let E=function(w){return w.multiplyScalar(d),w.applyQuaternion(f),w.add(p),w},C=function(w){return w.multiplyScalar(d),w},c=function(w){return w.premultiply(f),w},l=function(w){return!m||m.containsPoint(w)},y=function(w){return n!==void 0?w>=n:!0};const d=((B=h.transform)==null?void 0:B.scale)??1,f=new gA().fromArray(((I=h.transform)==null?void 0:I.quaternion)??[0,0,0,1]),p=new u().fromArray(((Q=h.transform)==null?void 0:Q.translate)??[0,0,0]),m=e?new Ft(new u().fromArray(e.min),new u().fromArray(e.max)):void 0;let x=h.fileType;switch(x||(x=yn(h.fileBytes),!x&&h.pathOrUrl&&(x=fn(h.pathOrUrl))),x){case Be.PLY:{const w=new oe({fileBytes:h.fileBytes});await w.parseHeader();let D=null;w.parseSplats((N,M,S,F,k,U,R,G,v,T,$,V,X,K,Z)=>{const W=E(new u(M,S,F));if(l(W)&&y(V)){D=A.pushSplat(),A.setCenter(D,W.x,W.y,W.z);const q=C(new u(k,U,R));A.setScale(D,q.x,q.y,q.z);const b=c(new gA(G,v,T,$));A.setQuaternion(D,b.x,b.y,b.z,b.w),A.setOpacity(D,V),A.setColor(D,X,K,Z)}else D=null},(N,M,S,F)=>{M&&D!==null&&A.setSh1(D,M),S&&D!==null&&A.setSh2(D,S),F&&D!==null&&A.setSh3(D,F)});break}case Be.SPZ:{const w=new wn({fileBytes:h.fileBytes}),D=new Int32Array(w.numSplats);D.fill(-1);const N=new Float32Array(w.numSplats*3),M=new u;w.parseSplats((S,F,k,U)=>{const R=E(new u(F,k,U));N[S*3]=R.x,N[S*3+1]=R.y,N[S*3+2]=R.z},(S,F)=>{M.fromArray(N,S*3),l(M)&&y(F)&&(D[S]=A.pushSplat(),A.setCenter(D[S],M.x,M.y,M.z),A.setOpacity(D[S],F))},(S,F,k,U)=>{D[S]>=0&&A.setColor(D[S],F,k,U)},(S,F,k,U)=>{if(D[S]>=0){const R=C(new u(F,k,U));A.setScale(D[S],R.x,R.y,R.z)}},(S,F,k,U,R)=>{if(D[S]>=0){const G=c(new gA(F,k,U,R));A.setQuaternion(D[S],G.x,G.y,G.z,G.w)}},(S,F,k,U)=>{D[S]>=0&&(A.setSh1(D[S],F),k&&A.setSh2(D[S],k),U&&A.setSh3(D[S],U))});break}case Be.SPLAT:js(h.fileBytes,w=>{},(w,D,N,M,S,F,k,U,R,G,v,T,$,V,X)=>{const K=E(new u(D,N,M));if(l(K)&&y(T)){const Z=A.pushSplat();A.setCenter(Z,K.x,K.y,K.z);const W=C(new u(S,F,k));A.setScale(Z,W.x,W.y,W.z);const q=c(new gA(U,R,G,v));A.setQuaternion(Z,q.x,q.y,q.z,q.w),A.setOpacity(Z,T),A.setColor(Z,$,V,X)}});break;case Be.KSPLAT:{let w=null;$r(h.fileBytes,D=>{},(D,N,M,S,F,k,U,R,G,v,T,$,V,X,K)=>{const Z=E(new u(N,M,S));if(l(Z)&&y($)){w=A.pushSplat(),A.setCenter(w,Z.x,Z.y,Z.z);const W=C(new u(F,k,U));A.setScale(w,W.x,W.y,W.z);const q=c(new gA(R,G,v,T));A.setQuaternion(w,q.x,q.y,q.z,q.w),A.setOpacity(w,$),A.setColor(w,V,X,K)}else w=null},(D,N,M,S)=>{w!==null&&(A.setSh1(w,N),M&&A.setSh2(w,M),S&&A.setSh3(w,S))});break}default:throw new Error(`transcodeSpz not implemented for ${x}`)}}const r=Math.min(i??3,A.sh3?3:A.sh2?2:A.sh1?1:0),a=new Et({numSplats:A.numSplats,shDegree:r,fractionalBits:s,flagAntiAlias:!0});for(let h=0;h=1&&a.setSh(h,A.sh1.slice(h*9,(h+1)*9),r>=2&&A.sh2?A.sh2.slice(h*15,(h+1)*15):void 0,r>=3&&A.sh3?A.sh3.slice(h*21,(h+1)*21):void 0)}return{fileBytes:await a.finalize(),clippedCount:a.clippedCount}}async function mn(g){const{name:A,args:t,id:e}=g.data;let i,s;try{switch(A){case"unpackPly":{const{packedArray:n,fileBytes:r}=t,a=await sg({packedArray:n,fileBytes:r});i={id:e,numSplats:a.numSplats,packedArray:a.packedArray,extra:a.extra};break}case"decodeSpz":{const{fileBytes:n}=t,r=ng(n);i={id:e,numSplats:r.numSplats,packedArray:r.packedArray,extra:r.extra};break}case"decodeAntiSplat":{const{fileBytes:n}=t,r=jr(n);i={id:e,numSplats:r.numSplats,packedArray:r.packedArray};break}case"decodeKsplat":{const{fileBytes:n}=t,r=Aa(n);i={id:e,numSplats:r.numSplats,packedArray:r.packedArray,extra:r.extra};break}case"sortSplats":{const{maxSplats:n,totalSplats:r,readback:a,ordering:o}=t;i={id:e,readback:a,...rg({totalSplats:r,readback:a,ordering:o})};break}case"sortDoubleSplats":{const{numSplats:n,readback:r,ordering:a}=t;i={id:e,readback:r,ordering:a},Nr&&(i={id:e,readback:r,ordering:a,activeSplats:Fn(n,r,a)});break}case"transcodeSpz":{const n=t,r=await ig(n);i={id:e,fileBytes:r,input:n};break}default:throw new Error(`Unknown name: ${A}`)}}catch(n){s=n}self.postMessage({id:e,result:i,error:s},{transfer:Os(i)})}async function sg({packedArray:g,fileBytes:A}){const t=new oe({fileBytes:A});await t.parseHeader();const e=t.numSplats,i={},s=Math.exp(-20);return t.parseSplats((n,r,a,o,B,I,Q,h,E,C,c,l,y,d,f)=>{ge(g,n,r,a,o,B{r&&(i.sh1||(i.sh1=new Uint32Array(e*2)),Ji(i.sh1,n,r)),a&&(i.sh2||(i.sh2=new Uint32Array(e*4)),Hi(i.sh2,n,a)),o&&(i.sh3||(i.sh3=new Uint32Array(e*4)),Ti(i.sh3,n,o))}),{packedArray:g,numSplats:e,extra:i}}function ng(g){const A=new wn({fileBytes:g}),t=A.numSplats,e=Yi(t),i=new Uint32Array(e*4),s={};return A.parseSplats((n,r,a,o)=>{Jr(i,n,r,a,o)},(n,r)=>{vr(i,n,r)},(n,r,a,o)=>{zr(i,n,r,a,o)},(n,r,a,o)=>{Hr(i,n,r,a,o)},(n,r,a,o,B)=>{Tr(i,n,r,a,o,B)},(n,r,a,o)=>{r&&(s.sh1||(s.sh1=new Uint32Array(t*2)),Ji(s.sh1,n,r)),a&&(s.sh2||(s.sh2=new Uint32Array(t*4)),Hi(s.sh2,n,a)),o&&(s.sh3||(s.sh3=new Uint32Array(t*4)),Ti(s.sh3,n,o))}),{packedArray:i,numSplats:t,extra:s}}const Pt=31744,Qe=Pt+1;let iA=null;function rg({totalSplats:g,readback:A,ordering:t}){iA||(iA=new Uint32Array(Qe)),iA.fill(0);const e=A.map(a=>new Uint32Array(a.buffer)),i=e[0].length,s=Math.ceil(g/i);let n=0;for(let a=0;a=0;--i){const s=e+iA[i];iA[i]=e,e=s}for(let i=0;i{(self.URL||self.webkitURL).revokeObjectURL(A)}),e}catch{return new Worker("data:text/javascript;charset=utf-8,"+encodeURIComponent(Fr),{name:t==null?void 0:t.name})}finally{A&&(self.URL||self.webkitURL).revokeObjectURL(A)}}class bQ{constructor(){this.messages={},this.messageIdNext=0,this.worker=new GQ,this.worker.onmessage=A=>this.onMessage(A)}makeMessageId(){return++this.messageIdNext}makeMessagePromiseId(){const A=this.makeMessageId(),e=new Promise((s,i)=>{this.messages[A]={resolve:s,reject:i}});return{id:A,promise:e}}onMessage(A){const{id:e,result:s,error:i}=A.data,n=this.messages[e];n&&(delete this.messages[e],i?n.reject(i):n.resolve(s))}async call(A,e){const{id:s,promise:i}=this.makeMessagePromiseId();return this.worker.postMessage({name:A,args:e,id:s},{transfer:ui(e)}),i}}let Nr=4,re=0;const kr=[],Rr=[];async function vQ(){const t=kr.shift();if(t)return t;if(re{Rr.push(A)})}function LQ(t){if(re>Nr){re-=1;return}const A=Rr.shift();if(A){A(t);return}kr.push(t)}async function ft(t){const A=await vQ();try{return await t(A)}finally{LQ(A)}}class JQ extends nA.Loader{constructor(A){super(A),this.fileLoader=new nA.FileLoader(A)}load(A,e,s,i){this.fileLoader.setResponseType("arraybuffer"),this.fileLoader.setCrossOrigin(this.crossOrigin),this.fileLoader.setWithCredentials(this.withCredentials),this.fileLoader.setPath(this.path),this.fileLoader.setResourcePath(this.resourcePath),this.fileLoader.setRequestHeader(this.requestHeader),this.fileLoader.load(A,async n=>{if(e){const r=await ze({input:n,fileType:this.fileType,pathOrUrl:A});e(new UA(r))}},s,i)}async loadAsync(A,e){return new Promise((s,i)=>{this.load(A,n=>{s(n)},e,i)})}parse(A){return new PA({packedSplats:A})}}var Ct=(t=>(t.PLY="ply",t.SPZ="spz",t.SPLAT="splat",t.KSPLAT="ksplat",t))(Ct||{});function qe(t){const A=new DataView(t.buffer);if((A.getUint32(0,!0)&16777215)===7957616)return"ply";if((A.getUint32(0,!0)&16777215)===559903){const e=Ri(t,4);return new DataView(e.buffer).getUint32(0,!0)===1347635022?"spz":void 0}}function YQ(t){const A=t.split(/[?#]/,1)[0],e=Math.max(A.lastIndexOf("/"),A.lastIndexOf("\\")),s=A.slice(e+1),i=s.lastIndexOf(".");return i<=0||i===s.length-1?"":s.slice(i+1).toLowerCase()}function Ur(t){const A=YQ(t);if(A==="ply")return"ply";if(A==="spz")return"spz";if(A==="splat")return"splat";if(A==="ksplat")return"ksplat"}async function ze({input:t,fileType:A,pathOrUrl:e}){const s=t instanceof ArrayBuffer?new Uint8Array(t):t;let i=A;switch(A||(i=qe(s),!i&&e&&(i=Ur(e))),i){case"ply":{const n=new Lt({fileBytes:s});await n.parseHeader();const a=n.numSplats,r=DA(a).maxSplats,g={fileBytes:s,packedArray:new Uint32Array(r*4)};return await ft(async I=>{const{packedArray:Q,numSplats:o,extra:E}=await I.call("unpackPly",g);return{packedArray:Q,numSplats:o,extra:E}})}case"spz":return await ft(async n=>{const{packedArray:a,numSplats:r,extra:g}=await n.call("decodeSpz",{fileBytes:s});return{packedArray:a,numSplats:r,extra:g}});case"splat":return await ft(async n=>{const{packedArray:a,numSplats:r}=await n.call("decodeAntiSplat",{fileBytes:s});return{packedArray:a,numSplats:r}});case"ksplat":return await ft(async n=>{const{packedArray:a,numSplats:r,extra:g}=await n.call("decodeKsplat",{fileBytes:s});return{packedArray:a,numSplats:r,extra:g}});default:throw new Error(`Unknown splat file type: ${i}`)}}class TQ{constructor({maxSplats:A=1}={}){this.numSplats=0,this.maxSplats=DA(A).maxSplats,this.centers=new Float32Array(this.maxSplats*3),this.scales=new Float32Array(this.maxSplats*3),this.quaternions=new Float32Array(this.maxSplats*4),this.opacities=new Float32Array(this.maxSplats),this.colors=new Float32Array(this.maxSplats*3)}pushSplat(){const A=this.numSplats;return this.ensureIndex(A),this.numSplats+=1,A}unpushSplat(A){if(A===this.numSplats-1)this.numSplats-=1;else throw new Error("Cannot unpush splat from non-last position")}ensureCapacity(A){if(A>this.maxSplats){const e=Math.max(A,this.maxSplats*2),s=new Float32Array(e*3),i=new Float32Array(e*3),n=new Float32Array(e*4),a=new Float32Array(e),r=new Float32Array(e*3);if(s.set(this.centers),i.set(this.scales),n.set(this.quaternions),a.set(this.opacities),r.set(this.colors),this.centers=s,this.scales=i,this.quaternions=n,this.opacities=a,this.colors=r,this.sh1){const g=new Float32Array(e*9);g.set(this.sh1),this.sh1=g}if(this.sh2){const g=new Float32Array(e*15);g.set(this.sh2),this.sh2=g}if(this.sh3){const g=new Float32Array(e*21);g.set(this.sh3),this.sh3=g}this.maxSplats=e}}ensureIndex(A){this.ensureCapacity(A+1)}setCenter(A,e,s,i){this.centers[A*3]=e,this.centers[A*3+1]=s,this.centers[A*3+2]=i}setScale(A,e,s,i){this.scales[A*3]=e,this.scales[A*3+1]=s,this.scales[A*3+2]=i}setQuaternion(A,e,s,i,n){this.quaternions[A*4]=e,this.quaternions[A*4+1]=s,this.quaternions[A*4+2]=i,this.quaternions[A*4+3]=n}setOpacity(A,e){this.opacities[A]=e}setColor(A,e,s,i){this.colors[A*3]=e,this.colors[A*3+1]=s,this.colors[A*3+2]=i}setSh1(A,e){this.sh1||(this.sh1=new Float32Array(this.maxSplats*9));for(let s=0;s<9;++s)this.sh1[A*9+s]=e[s]}setSh2(A,e){this.sh2||(this.sh2=new Float32Array(this.maxSplats*15));for(let s=0;s<15;++s)this.sh2[A*15+s]=e[s]}setSh3(A,e){this.sh3||(this.sh3=new Float32Array(this.maxSplats*21));for(let s=0;s<21;++s)this.sh3[A*21+s]=e[s]}}var HQ=`precision highp float; precision highp int; precision highp sampler2D; precision highp usampler2D; @@ -546,7 +545,7 @@ void main() { } else { target = uvec4(0u, 0u, 0u, 0u); } -}`;const _=class _{constructor(A={}){this.maxSplats=0,this.numSplats=0,this.packedArray=null,this.isInitialized=!1,this.target=null,this.source=null,this.needsUpdate=!0,this.extra={},this.dyno=new PI({packedSplats:this}),this.initialized=Promise.resolve(this),this.reinitialize(A)}reinitialize(A){this.isInitialized=!1,A.url||A.fileBytes||A.construct?this.initialized=this.asyncInitialize(A).then(()=>(this.isInitialized=!0,this)):(this.initialize(A),this.isInitialized=!0,this.initialized=Promise.resolve(this))}initialize(A){A.packedArray?(this.packedArray=A.packedArray,this.maxSplats=Math.floor(this.packedArray.length/4),this.maxSplats=Math.floor(this.maxSplats/X)*X,this.numSplats=Math.min(this.maxSplats,A.numSplats??Number.POSITIVE_INFINITY)):(this.maxSplats=A.maxSplats??0,this.numSplats=0),this.extra=A.extra??{}}async asyncInitialize(A){let{url:I,fileBytes:B,construct:Q}=A;if(I&&(B=await fetch(I).then(async C=>{if(!C.ok)throw new Error(`${C.status} "${C.statusText}" fetching URL: ${I}`);return await C.arrayBuffer()})),B){const C=await OI({input:B,fileType:A.fileType,pathOrUrl:A.fileName??I});this.initialize(C)}if(Q){const C=Q(this);C instanceof Promise&&await C}}dispose(){this.target&&(this.target.dispose(),this.target=null),this.source&&(this.source.dispose(),this.source=null)}ensureSplats(A){const I=A<=this.maxSplats?this.maxSplats:Math.max(A,2*this.maxSplats),B=this.packedArray?this.packedArray.length/4:0;if(!this.packedArray||I>B){this.maxSplats=MA(I).maxSplats;const Q=new Uint32Array(this.maxSplats*4);this.packedArray&&Q.set(this.packedArray),this.packedArray=Q}return this.packedArray}ensureSplatsSh(A,I){let B,Q;if(A===0)return this.ensureSplats(I);if(A===1)B=2,Q="sh1";else if(A===2)B=4,Q="sh2";else if(A===3)B=4,Q="sh3";else throw new Error(`Invalid level: ${A}`);let C=this.extra[Q]?this.extra[Q].length/B:0;const E=I<=C?C:Math.max(I,2*C);if(!this.extra[Q]||E>C){C=MA(E).maxSplats;const t=new Uint32Array(C*B);this.extra[Q]&&t.set(this.extra[Q]),this.extra[Q]=t}return this.extra[Q]}getSplat(A){if(!this.packedArray||A>=this.numSplats)throw new Error("Invalid index");return Ug(this.packedArray,A)}setSplat(A,I,B,Q,C,E){const t=this.ensureSplats(A+1);iI(t,A,I.x,I.y,I.z,B.x,B.y,B.z,Q.x,Q.y,Q.z,Q.w,C,E.r,E.g,E.b),this.numSplats=Math.max(this.numSplats,A+1)}pushSplat(A,I,B,Q,C){const E=this.ensureSplats(this.numSplats+1);iI(E,this.numSplats,A.x,A.y,A.z,I.x,I.y,I.z,B.x,B.y,B.z,B.w,Q,C.r,C.g,C.b),++this.numSplats}forEachSplat(A){if(!(!this.packedArray||!this.numSplats))for(let I=0;I{const C=I,E=Math.ceil(Q/X)*X;return I+=E,{base:C,count:Q}});return{maxSplats:I,mapping:B}}getTexture(){return this.target?this.target.texture:this.source||this.packedArray?this.maybeUpdateSource():_.getEmpty()}maybeUpdateSource(){if(!this.packedArray)throw new Error("No packed splats");if(this.needsUpdate||!this.source){if(this.needsUpdate=!1,this.source){const{width:A,height:I,depth:B}=this.source.image;this.maxSplats!==A*I*B&&(this.source.dispose(),this.source=null)}if(this.source)this.packedArray.buffer!==this.source.image.data.buffer&&(this.source.image.data=new Uint8Array(this.packedArray.buffer));else{const{width:A,height:I,depth:B}=MA(this.maxSplats);this.source=new a.DataArrayTexture(this.packedArray,A,I,B),this.source.format=a.RGBAIntegerFormat,this.source.type=a.UnsignedIntType,this.source.internalFormat="RGBA32UI",this.source.needsUpdate=!0}this.source.needsUpdate=!0}return this.source}static getEmpty(){if(!_.emptySource){const{width:A,height:I,depth:B,maxSplats:Q}=MA(1),C=new Uint32Array(Q*4);_.emptySource=new a.DataArrayTexture(C,A,I,B),_.emptySource.format=a.RGBAIntegerFormat,_.emptySource.type=a.UnsignedIntType,_.emptySource.internalFormat="RGBA32UI",_.emptySource.needsUpdate=!0}return _.emptySource}prepareProgramMaterial(A){let I=_.generatorProgram.get(A);if(!I){const Q=UA({index:"int"},{output:"uvec4"},({index:C})=>{A.inputs.index=C;const E=A.outputs.gsplat;return{output:JB(E)}});_.programTemplate||(_.programTemplate=new XI(On)),I=new TI({graph:Q,inputs:{index:"index"},outputs:{output:"target"},template:_.programTemplate}),Object.assign(I.uniforms,{targetLayer:{value:0},targetBase:{value:0},targetCount:{value:0}}),_.generatorProgram.set(A,I)}const B=I.prepareMaterial();return _.mesh.material=B,{program:I,material:B}}saveRenderState(A){return{xrPresenting:A.xr.isPresenting,autoClear:A.autoClear,scissorTest:A.getScissorTest(),pixelRatio:A.getPixelRatio()}}resetRenderState(A,I){A.setRenderTarget(null),A.setPixelRatio(I.pixelRatio),A.xr.isPresenting=I.xrPresenting,A.autoClear=I.autoClear,A.setScissorTest(I.scissorTest)}generate({generator:A,base:I,count:B,renderer:Q}){if(!this.target)throw new Error("Target must be initialized with ensureSplats");if(I+B>this.maxSplats)throw new Error("Base + count exceeds maxSplats");const{program:C,material:E}=this.prepareProgramMaterial(A);C.update();const t=this.saveRenderState(Q),i=Math.ceil((I+B)/X)*X,e=X*TA;for(E.uniforms.targetBase.value=I,E.uniforms.targetCount.value=B;I[rI],value:{texture:YA.getEmpty(),numSplats:0},update:I=>{var B,Q;return I.texture=((B=this.packedSplats)==null?void 0:B.getTexture())??YA.getEmpty(),I.numSplats=((Q=this.packedSplats)==null?void 0:Q.numSplats)??0,I}}),this.packedSplats=A}}class bI extends a.InstancedBufferGeometry{constructor(A,I){super(),this.ordering=A,this.setAttribute("position",new a.BufferAttribute(Pn,3)),this.setIndex(new a.BufferAttribute(_n,1)),this._maxInstanceCount=A.length,this.instanceCount=I,this.attribute=new a.InstancedBufferAttribute(A,1,!1,1),this.attribute.setUsage(a.DynamicDrawUsage),this.setAttribute("splatIndex",this.attribute)}update(A,I){this.ordering=A,this.attribute.array=A,this.instanceCount=I,this.attribute.addUpdateRange(0,I),this.attribute.needsUpdate=!0}}const Pn=new Float32Array([-1,-1,0,1,-1,0,1,1,0,-1,1,0]),_n=new Uint16Array([0,1,2,0,2,3]),_A=class _A{constructor(A){if(this.lastTime=null,this.encodeLinear=!1,this.superXY=1,this.display=null,this.sorting=null,this.pending=null,this.sortingCheck=!1,this.readback=new Uint16Array(0),this.forge=A.forge,this.camera=A.camera,this.viewToWorld=A.viewToWorld??new a.Matrix4,A.target){const{width:I,height:B,doubleBuffer:Q}=A.target,C=Math.max(1,Math.min(4,A.target.superXY??1));if(this.superXY=C,I*C>8192||B*C>8192)throw new Error("Target size too large");this.target=new a.WebGLRenderTarget(I*C,B*C,{format:a.RGBAFormat,type:a.UnsignedByteType,colorSpace:a.SRGBColorSpace}),Q&&(this.back=new a.WebGLRenderTarget(I*C,B*C,{format:a.RGBAFormat,type:a.UnsignedByteType,colorSpace:a.SRGBColorSpace})),this.encodeLinear=!0}this.onTextureUpdated=A.onTextureUpdated,this.sortRadial=A.sortRadial??!0,this.sortDistance=A.sortDistance,this.sortCoorient=A.sortCoorient,this.depthBias=A.depthBias,this.sort360=A.sort360,this.orderingFreelist=new pQ({allocate:I=>new Uint32Array(I),valid:(I,B)=>I.length===B}),this.autoUpdate=!1,this.setAutoUpdate(A.autoUpdate??!1)}dispose(){var A;this.setAutoUpdate(!1),this.target&&(this.target.dispose(),this.target=void 0),this.back&&(this.back.dispose(),this.back=void 0),this.display&&(this.forge.releaseAccumulator(this.display.accumulator),this.display.geometry.dispose(),this.display=null),(A=this.pending)!=null&&A.accumulator&&(this.forge.releaseAccumulator(this.pending.accumulator),this.pending=null)}setAutoUpdate(A){!this.autoUpdate&&A?this.forge.autoViewpoints.push(this):this.autoUpdate&&!A&&(this.forge.autoViewpoints=this.forge.autoViewpoints.filter(I=>I!==this)),this.autoUpdate=A}async prepare({scene:A,camera:I,viewToWorld:B,update:Q,forceOrigin:C}){var t;for(B?this.viewToWorld=B:(this.camera=I??this.camera,this.camera&&(this.camera.updateMatrixWorld(),this.viewToWorld=this.camera.matrixWorld.clone()));Q??!0;){const i=C?this.viewToWorld:void 0;if(this.forge.updateInternal({scene:A,originToWorld:i}))break;await new Promise(n=>setTimeout(n,10))}const E=this.forge.active;E!==((t=this.display)==null?void 0:t.accumulator)&&(this.forge.active.refCount+=1),await this.sortUpdate({accumulator:E,viewToWorld:this.viewToWorld})}renderTarget({scene:A,camera:I}){var Q;const B=this.back??this.target;if(!B)throw new Error("Must initialize ForgeViewpoint with target");if(I=I??this.camera,!I)throw new Error("Must provide camera");if(I instanceof a.PerspectiveCamera){const C=new a.PerspectiveCamera().copy(I,!1);C.aspect=B.width/B.height,C.updateProjectionMatrix(),I=C}this.viewToWorld=I.matrixWorld.clone();try{this.forge.renderer.setRenderTarget(B),this.forge.prepareViewpoint(this),this.forge.renderer.render(A,I)}finally{this.forge.prepareViewpoint(this.forge.defaultView),this.forge.renderer.setRenderTarget(null)}B!==this.target&&([this.target,this.back]=[this.back,this.target]),(Q=this.onTextureUpdated)==null||Q.call(this,B.texture)}async readTarget(){if(!this.target)throw new Error("Must initialize ForgeViewpoint with target");const{width:A,height:I}=this.target,B=A*I*4;(!this.superPixels||this.superPixels.length0){const{reader:i,doubleSortReader:e,dynoSortRadial:n,dynoOrigin:s,dynoDirection:o,dynoDepthBias:r,dynoSort360:c,dynoSplats:h}=_A.makeSorter(),w=Math.ceil(C/2);this.readback=i.ensureBuffer(w,this.readback);const D=A.toWorld.clone().invert(),y=I.clone().premultiply(D);n.value=this.sort360?!0:this.sortRadial,s.value.set(0,0,0).applyMatrix4(y),o.value.set(0,0,-1).applyMatrix4(y).sub(s.value).normalize(),r.value=this.depthBias??1,c.value=this.sort360??!1,h.packedSplats=A.splats,await i.renderReadback({renderer:this.forge.renderer,reader:e,count:Math.ceil(Q/2),readback:this.readback});const l=await cg(async d=>d.call("sortDoubleSplats",{numSplats:Q,readback:this.readback,ordering:t}));this.readback=l.readback,t=l.ordering,E=l.activeSplats}this.updateDisplay({accumulator:A,viewToWorld:I,ordering:t,activeSplats:E,displayed:B}),this.sortingCheck=!1}updateDisplay({accumulator:A,viewToWorld:I,ordering:B,activeSplats:Q,displayed:C=!1}){if(!this.display)this.display={accumulator:A,viewToWorld:I,geometry:new bI(B,Q)};else{!C&&A!==this.display.accumulator&&(this.forge.releaseAccumulator(this.display.accumulator),this.display.accumulator=A),this.display.viewToWorld=I;const E=this.display.geometry.ordering;E.length===B.length?this.display.geometry.update(B,Q):(this.display.geometry.dispose(),this.display.geometry=new bI(B,Q)),this.orderingFreelist.free(E)}this.forge.viewpoint===this&&this.forge.prepareViewpoint(this)}static makeSorter(){if(!_A.dynos){const A=new tI({value:!0}),I=new yg({value:new a.Vector3}),B=new yg({value:new a.Vector3}),Q=new ig({value:1}),C=new tI({value:!1}),E=new PI,t=new Lg,i=UA({index:"int"},{rgba8:"vec4"},({index:e})=>{if(!e)throw new Error("No index");const n={sortRadial:A,sortOrigin:I,sortDirection:B,sortDepthBias:Q,sort360:C},s=cA(e,gA("int",2)),o=Sg(E,s),r=tB({gsplat:o,...n}),c=Sg(E,pA(s,gA("int",1))),h=tB({gsplat:c,...n}),w=qA({vectorType:"vec2",x:r,y:h});return{rgba8:vC(qC(w))}});_A.dynos={dynoSortRadial:A,dynoOrigin:I,dynoDirection:B,dynoDepthBias:Q,dynoSort360:C,dynoSplats:E,reader:t,doubleSortReader:i}}return _A.dynos}};_A.EMPTY_TEXTURE=new a.Texture,_A.dynos=null;let Kg=_A;const $n=nA(` +}`;const j=class j{constructor(A={}){this.maxSplats=0,this.numSplats=0,this.packedArray=null,this.isInitialized=!1,this.target=null,this.source=null,this.needsUpdate=!0,this.extra={},this.dyno=new _e({packedSplats:this}),this.initialized=Promise.resolve(this),this.reinitialize(A)}reinitialize(A){this.isInitialized=!1,A.url||A.fileBytes||A.construct?this.initialized=this.asyncInitialize(A).then(()=>(this.isInitialized=!0,this)):(this.initialize(A),this.isInitialized=!0,this.initialized=Promise.resolve(this))}initialize(A){A.packedArray?(this.packedArray=A.packedArray,this.maxSplats=Math.floor(this.packedArray.length/4),this.maxSplats=Math.floor(this.maxSplats/O)*O,this.numSplats=Math.min(this.maxSplats,A.numSplats??Number.POSITIVE_INFINITY)):(this.maxSplats=A.maxSplats??0,this.numSplats=0),this.extra=A.extra??{}}async asyncInitialize(A){let{url:e,fileBytes:s,construct:i}=A;if(e&&(s=await fetch(e).then(async n=>{if(!n.ok)throw new Error(`${n.status} "${n.statusText}" fetching URL: ${e}`);return await n.arrayBuffer()})),s){const n=await ze({input:s,fileType:A.fileType,pathOrUrl:A.fileName??e});this.initialize(n)}if(i){const n=i(this);n instanceof Promise&&await n}}dispose(){this.target&&(this.target.dispose(),this.target=null),this.source&&(this.source.dispose(),this.source=null)}ensureSplats(A){const e=A<=this.maxSplats?this.maxSplats:Math.max(A,2*this.maxSplats),s=this.packedArray?this.packedArray.length/4:0;if(!this.packedArray||e>s){this.maxSplats=DA(e).maxSplats;const i=new Uint32Array(this.maxSplats*4);this.packedArray&&i.set(this.packedArray),this.packedArray=i}return this.packedArray}ensureSplatsSh(A,e){let s,i;if(A===0)return this.ensureSplats(e);if(A===1)s=2,i="sh1";else if(A===2)s=4,i="sh2";else if(A===3)s=4,i="sh3";else throw new Error(`Invalid level: ${A}`);let n=this.extra[i]?this.extra[i].length/s:0;const a=e<=n?n:Math.max(e,2*n);if(!this.extra[i]||a>n){n=DA(a).maxSplats;const r=new Uint32Array(n*s);this.extra[i]&&r.set(this.extra[i]),this.extra[i]=r}return this.extra[i]}getSplat(A){if(!this.packedArray||A>=this.numSplats)throw new Error("Invalid index");return ne(this.packedArray,A)}setSplat(A,e,s,i,n,a){const r=this.ensureSplats(A+1);ie(r,A,e.x,e.y,e.z,s.x,s.y,s.z,i.x,i.y,i.z,i.w,n,a.r,a.g,a.b),this.numSplats=Math.max(this.numSplats,A+1)}pushSplat(A,e,s,i,n){const a=this.ensureSplats(this.numSplats+1);ie(a,this.numSplats,A.x,A.y,A.z,e.x,e.y,e.z,s.x,s.y,s.z,s.w,i,n.r,n.g,n.b),++this.numSplats}forEachSplat(A){if(!(!this.packedArray||!this.numSplats))for(let e=0;e{const n=e,a=Math.ceil(i/O)*O;return e+=a,{base:n,count:i}});return{maxSplats:e,mapping:s}}getTexture(){return this.target?this.target.texture:this.source||this.packedArray?this.maybeUpdateSource():j.getEmpty()}maybeUpdateSource(){if(!this.packedArray)throw new Error("No packed splats");if(this.needsUpdate||!this.source){if(this.needsUpdate=!1,this.source){const{width:A,height:e,depth:s}=this.source.image;this.maxSplats!==A*e*s&&(this.source.dispose(),this.source=null)}if(this.source)this.packedArray.buffer!==this.source.image.data.buffer&&(this.source.image.data=new Uint8Array(this.packedArray.buffer));else{const{width:A,height:e,depth:s}=DA(this.maxSplats);this.source=new B.DataArrayTexture(this.packedArray,A,e,s),this.source.format=B.RGBAIntegerFormat,this.source.type=B.UnsignedIntType,this.source.internalFormat="RGBA32UI",this.source.needsUpdate=!0}this.source.needsUpdate=!0}return this.source}static getEmpty(){if(!j.emptySource){const{width:A,height:e,depth:s,maxSplats:i}=DA(1),n=new Uint32Array(i*4);j.emptySource=new B.DataArrayTexture(n,A,e,s),j.emptySource.format=B.RGBAIntegerFormat,j.emptySource.type=B.UnsignedIntType,j.emptySource.internalFormat="RGBA32UI",j.emptySource.needsUpdate=!0}return j.emptySource}prepareProgramMaterial(A){let e=j.generatorProgram.get(A);if(!e){const i=GA({index:"int"},{output:"uvec4"},({index:n})=>{A.inputs.index=n;const a=A.outputs.gsplat;return{output:Ds(a)}});j.programTemplate||(j.programTemplate=new He(HQ)),e=new Te({graph:i,inputs:{index:"index"},outputs:{output:"target"},template:j.programTemplate}),Object.assign(e.uniforms,{targetLayer:{value:0},targetBase:{value:0},targetCount:{value:0}}),j.generatorProgram.set(A,e)}const s=e.prepareMaterial();return j.mesh.material=s,{program:e,material:s}}saveRenderState(A){return{xrPresenting:A.xr.isPresenting,autoClear:A.autoClear,scissorTest:A.getScissorTest(),pixelRatio:A.getPixelRatio()}}resetRenderState(A,e){A.setRenderTarget(null),A.setPixelRatio(e.pixelRatio),A.xr.isPresenting=e.xrPresenting,A.autoClear=e.autoClear,A.setScissorTest(e.scissorTest)}generate({generator:A,base:e,count:s,renderer:i}){if(!this.target)throw new Error("Target must be initialized with ensureSplats");if(e+s>this.maxSplats)throw new Error("Base + count exceeds maxSplats");const{program:n,material:a}=this.prepareProgramMaterial(A);n.update();const r=this.saveRenderState(i),g=Math.ceil((e+s)/O)*O,I=O*jA;for(a.uniforms.targetBase.value=e,a.uniforms.targetCount.value=s;e[Be],value:{texture:UA.getEmpty(),numSplats:0},update:e=>{var s,i;return e.texture=((s=this.packedSplats)==null?void 0:s.getTexture())??UA.getEmpty(),e.numSplats=((i=this.packedSplats)==null?void 0:i.numSplats)??0,e}}),this.packedSplats=A}}class Ue extends B.InstancedBufferGeometry{constructor(A,e){super(),this.ordering=A,this.setAttribute("position",new B.BufferAttribute(KQ,3)),this.setIndex(new B.BufferAttribute(qQ,1)),this._maxInstanceCount=A.length,this.instanceCount=e,this.attribute=new B.InstancedBufferAttribute(A,1,!1,1),this.attribute.setUsage(B.DynamicDrawUsage),this.setAttribute("splatIndex",this.attribute)}update(A,e){this.ordering=A,this.attribute.array=A,this.instanceCount=e,this.attribute.addUpdateRange(0,e),this.attribute.needsUpdate=!0}}const KQ=new Float32Array([-1,-1,0,1,-1,0,1,1,0,-1,1,0]),qQ=new Uint16Array([0,1,2,0,2,3]),XA=class XA{constructor(A){if(this.lastTime=null,this.encodeLinear=!1,this.superXY=1,this.display=null,this.sorting=null,this.pending=null,this.sortingCheck=!1,this.readback=new Uint16Array(0),this.forge=A.forge,this.camera=A.camera,this.viewToWorld=A.viewToWorld??new B.Matrix4,A.target){const{width:e,height:s,doubleBuffer:i}=A.target,n=Math.max(1,Math.min(4,A.target.superXY??1));if(this.superXY=n,e*n>8192||s*n>8192)throw new Error("Target size too large");this.target=new B.WebGLRenderTarget(e*n,s*n,{format:B.RGBAFormat,type:B.UnsignedByteType,colorSpace:B.SRGBColorSpace}),i&&(this.back=new B.WebGLRenderTarget(e*n,s*n,{format:B.RGBAFormat,type:B.UnsignedByteType,colorSpace:B.SRGBColorSpace})),this.encodeLinear=!0}this.onTextureUpdated=A.onTextureUpdated,this.sortRadial=A.sortRadial??!0,this.sortDistance=A.sortDistance,this.sortCoorient=A.sortCoorient,this.depthBias=A.depthBias,this.sort360=A.sort360,this.orderingFreelist=new di({allocate:e=>new Uint32Array(e),valid:(e,s)=>e.length===s}),this.autoUpdate=!1,this.setAutoUpdate(A.autoUpdate??!1)}dispose(){var A;this.setAutoUpdate(!1),this.target&&(this.target.dispose(),this.target=void 0),this.back&&(this.back.dispose(),this.back=void 0),this.display&&(this.forge.releaseAccumulator(this.display.accumulator),this.display.geometry.dispose(),this.display=null),(A=this.pending)!=null&&A.accumulator&&(this.forge.releaseAccumulator(this.pending.accumulator),this.pending=null)}setAutoUpdate(A){!this.autoUpdate&&A?this.forge.autoViewpoints.push(this):this.autoUpdate&&!A&&(this.forge.autoViewpoints=this.forge.autoViewpoints.filter(e=>e!==this)),this.autoUpdate=A}async prepare({scene:A,camera:e,viewToWorld:s,update:i,forceOrigin:n}){var r;for(s?this.viewToWorld=s:(this.camera=e??this.camera,this.camera&&(this.camera.updateMatrixWorld(),this.viewToWorld=this.camera.matrixWorld.clone()));i??!0;){const g=n?this.viewToWorld:void 0;if(this.forge.updateInternal({scene:A,originToWorld:g}))break;await new Promise(Q=>setTimeout(Q,10))}const a=this.forge.active;a!==((r=this.display)==null?void 0:r.accumulator)&&(this.forge.active.refCount+=1),await this.sortUpdate({accumulator:a,viewToWorld:this.viewToWorld})}renderTarget({scene:A,camera:e}){var i;const s=this.back??this.target;if(!s)throw new Error("Must initialize ForgeViewpoint with target");if(e=e??this.camera,!e)throw new Error("Must provide camera");if(e instanceof B.PerspectiveCamera){const n=new B.PerspectiveCamera().copy(e,!1);n.aspect=s.width/s.height,n.updateProjectionMatrix(),e=n}this.viewToWorld=e.matrixWorld.clone();try{this.forge.renderer.setRenderTarget(s),this.forge.prepareViewpoint(this),this.forge.renderer.render(A,e)}finally{this.forge.prepareViewpoint(this.forge.defaultView),this.forge.renderer.setRenderTarget(null)}s!==this.target&&([this.target,this.back]=[this.back,this.target]),(i=this.onTextureUpdated)==null||i.call(this,s.texture)}async readTarget(){if(!this.target)throw new Error("Must initialize ForgeViewpoint with target");const{width:A,height:e}=this.target,s=A*e*4;(!this.superPixels||this.superPixels.length0){const{reader:g,doubleSortReader:I,dynoSortRadial:Q,dynoOrigin:o,dynoDirection:E,dynoDepthBias:C,dynoSort360:c,dynoSplats:h}=XA.makeSorter(),l=Math.ceil(n/2);this.readback=g.ensureBuffer(l,this.readback);const u=A.toWorld.clone().invert(),w=e.clone().premultiply(u);Q.value=this.sort360?!0:this.sortRadial,o.value.set(0,0,0).applyMatrix4(w),E.value.set(0,0,-1).applyMatrix4(w).sub(o.value).normalize(),C.value=this.depthBias??1,c.value=this.sort360??!1,h.packedSplats=A.splats,await g.renderReadback({renderer:this.forge.renderer,reader:I,count:Math.ceil(i/2),readback:this.readback});const d=await ft(async p=>p.call("sortDoubleSplats",{numSplats:i,readback:this.readback,ordering:r}));this.readback=d.readback,r=d.ordering,a=d.activeSplats}this.updateDisplay({accumulator:A,viewToWorld:e,ordering:r,activeSplats:a,displayed:s}),this.sortingCheck=!1}updateDisplay({accumulator:A,viewToWorld:e,ordering:s,activeSplats:i,displayed:n=!1}){if(!this.display)this.display={accumulator:A,viewToWorld:e,geometry:new Ue(s,i)};else{!n&&A!==this.display.accumulator&&(this.forge.releaseAccumulator(this.display.accumulator),this.display.accumulator=A),this.display.viewToWorld=e;const a=this.display.geometry.ordering;a.length===s.length?this.display.geometry.update(s,i):(this.display.geometry.dispose(),this.display.geometry=new Ue(s,i)),this.orderingFreelist.free(a)}this.forge.viewpoint===this&&this.forge.prepareViewpoint(this)}static makeSorter(){if(!XA.dynos){const A=new se({value:!0}),e=new ut({value:new B.Vector3}),s=new ut({value:new B.Vector3}),i=new at({value:1}),n=new se({value:!1}),a=new _e,r=new bt,g=GA({index:"int"},{rgba8:"vec4"},({index:I})=>{if(!I)throw new Error("No index");const Q={sortRadial:A,sortOrigin:e,sortDirection:s,sortDepthBias:i,sort360:n},o=cA(I,tA("int",2)),E=Rt(a,o),C=$e({gsplat:E,...Q}),c=Rt(a,mA(o,tA("int",1))),h=$e({gsplat:c,...Q}),l=HA({vectorType:"vec2",x:C,y:h});return{rgba8:Ln(vn(l))}});XA.dynos={dynoSortRadial:A,dynoOrigin:e,dynoDirection:s,dynoDepthBias:i,dynoSort360:n,dynoSplats:a,reader:r,doubleSortReader:g}}return XA.dynos}};XA.EMPTY_TEXTURE=new B.Texture,XA.dynos=null;let Jt=XA;const zQ=QA(` float computeSort(Gsplat gsplat, bool sortRadial, vec3 sortOrigin, vec3 sortDirection, float sortDepthBias, bool sort360) { if (!isGsplatActive(gsplat.flags)) { return INFINITY; @@ -560,9 +559,9 @@ void main() { return sortRadial ? length(center) : biasedDepth; } -`);function tB({gsplat:g,sortRadial:A,sortOrigin:I,sortDirection:B,sortDepthBias:Q,sort360:C}){return Wg({inTypes:{gsplat:BA,sortRadial:"bool",sortOrigin:"vec3",sortDirection:"vec3",sortDepthBias:"float",sort360:"bool"},outTypes:{metric:"float"},globals:()=>[kA,$n],inputs:{gsplat:g,sortRadial:A,sortOrigin:I,sortDirection:B,sortDepthBias:Q,sort360:C},statements:({inputs:E,outputs:t})=>{const{gsplat:i,sortRadial:e,sortOrigin:n,sortDirection:s,sortDepthBias:o,sort360:r}=E;return fA(` - ${t.metric} = computeSort(${i}, ${e}, ${n}, ${s}, ${o}, ${r}); - `)}}).outputs.metric}class CI{constructor(){this.splats=new YA,this.toWorld=new a.Matrix4,this.mapping=[],this.refCount=0,this.splatsVersion=-1,this.mappingVersion=-1}ensureGenerate(A){this.splats.ensureGenerate(A)&&(this.mapping=[])}generateSplats({renderer:A,modifier:I,generators:B,forceUpdate:Q,originToWorld:C}){const E=this.mapping.reduce((e,n)=>(e.set(n.node,n),e),new Map);let t=0,i=0;for(const{node:e,generator:n,version:s,base:o,count:r}of B){const c=E.get(e);if((Q||n!==(c==null?void 0:c.generator)||s!==(c==null?void 0:c.version)||o!==(c==null?void 0:c.base)||r!==(c==null?void 0:c.count))&&n&&r>0){const h=I.apply(n);try{this.splats.generate({generator:h,base:o,count:r,renderer:A})}catch(w){e.generator=void 0,e.generatorError=w}t+=1}i=Math.max(i,o+r)}return this.splats.numSplats=i,this.toWorld=C,this.mapping=B,t!==0}hasCorrespondence(A){return this.mapping.length!==A.mapping.length?!1:this.mapping.every(({node:I,base:B,count:Q},C)=>{const{node:E,base:t,count:i}=A.mapping[C];return I===E&&B===t&&Q===i})}}var Ao=`const float LN_SCALE_MIN = -9.0; +`);function $e({gsplat:t,sortRadial:A,sortOrigin:e,sortDirection:s,sortDepthBias:i,sort360:n}){return Kt({inTypes:{gsplat:sA,sortRadial:"bool",sortOrigin:"vec3",sortDirection:"vec3",sortDepthBias:"float",sort360:"bool"},outTypes:{metric:"float"},globals:()=>[MA,zQ],inputs:{gsplat:t,sortRadial:A,sortOrigin:e,sortDirection:s,sortDepthBias:i,sort360:n},statements:({inputs:a,outputs:r})=>{const{gsplat:g,sortRadial:I,sortOrigin:Q,sortDirection:o,sortDepthBias:E,sort360:C}=a;return kA(` + ${r.metric} = computeSort(${g}, ${I}, ${Q}, ${o}, ${E}, ${C}); + `)}}).outputs.metric}class te{constructor(){this.splats=new UA,this.toWorld=new B.Matrix4,this.mapping=[],this.refCount=0,this.splatsVersion=-1,this.mappingVersion=-1}ensureGenerate(A){this.splats.ensureGenerate(A)&&(this.mapping=[])}generateSplats({renderer:A,modifier:e,generators:s,forceUpdate:i,originToWorld:n}){const a=this.mapping.reduce((I,Q)=>(I.set(Q.node,Q),I),new Map);let r=0,g=0;for(const{node:I,generator:Q,version:o,base:E,count:C}of s){const c=a.get(I);if((i||Q!==(c==null?void 0:c.generator)||o!==(c==null?void 0:c.version)||E!==(c==null?void 0:c.base)||C!==(c==null?void 0:c.count))&&Q&&C>0){const h=e.apply(Q);try{this.splats.generate({generator:h,base:E,count:C,renderer:A})}catch(l){I.generator=void 0,I.generatorError=l}r+=1}g=Math.max(g,E+C)}return this.splats.numSplats=g,this.toWorld=n,this.mapping=s,r!==0}hasCorrespondence(A){return this.mapping.length!==A.mapping.length?!1:this.mapping.every(({node:e,base:s,count:i},n)=>{const{node:a,base:r,count:g}=A.mapping[n];return e===a&&s===r&&i===g})}}var _Q=`const float LN_SCALE_MIN = -9.0; const float LN_SCALE_MAX = 9.0; const float LN_RESCALE = (LN_SCALE_MAX - LN_SCALE_MIN) / 254.0; @@ -804,7 +803,7 @@ ivec3 splatTexCoord(int index) { uint y = (uint(index) >> SPLAT_TEX_WIDTH_BITS) & SPLAT_TEX_HEIGHT_MASK; uint z = uint(index) >> SPLAT_TEX_LAYER_BITS; return ivec3(x, y, z); -}`,go=`precision highp float; +}`,VQ=`precision highp float; precision highp int; #include @@ -837,7 +836,7 @@ void main() { rgb = srgbToLinear(rgb); } fragColor = vec4(rgb, alpha); -}`,Io=`precision highp float; +}`,PQ=`precision highp float; precision highp int; precision highp usampler2DArray; @@ -1007,14 +1006,14 @@ void main() { vSplatUv = position.xy * maxStdDev; vNdc = ndc; gl_Position = vec4(ndc.xy * clipCenter.w, clipCenter.zw); -}`;let JI=null;function Bo(){return JI||(a.ShaderChunk.splatDefines=Ao,JI={splatVertex:Io,splatFragment:go}),JI}const iB=5;let HI=!1,KI=!1,Kt;const Zt=a.Scene.prototype.add;a.Scene.prototype.add=function(g){return HI=HI||g instanceof zA,KI=KI||g instanceof Zg,Zt.call(this,g),this};const Qo=a.Scene.prototype.onBeforeRender;a.Scene.prototype.onBeforeRender=function(g){if(HI){if(!KI){const A=Kt||new Zg({renderer:g});this.add(A)}a.Scene.prototype.onBeforeRender=Qo,a.Scene.prototype.add=Zt}};const uA=class uA extends a.Mesh{constructor(A){const I=uA.makeUniforms(),B=Bo(),Q=new a.ShaderMaterial({glslVersion:a.GLSL3,vertexShader:B.splatVertex,fragmentShader:B.splatFragment,uniforms:I,transparent:!0,blending:a.NormalBlending,depthTest:!0,depthWrite:!1,side:a.DoubleSide});super(sB,Q),this.autoViewpoints=[],this.rotateToAccumulator=new Tg({value:new a.Quaternion}),this.translateToAccumulator=new yg({value:new a.Vector3}),this.lastFrame=-1,this.lastUpdateTime=null,this.defaultCameras=[],this.pendingUpdate=null,this.envViewpoint=null,this.frustumCulled=!1,this.renderer=A.renderer,this.material=Q,this.uniforms=I;const C=UA({gsplat:BA},{gsplat:BA},({gsplat:E})=>{if(!E)throw new Error("gsplat not defined");return E=vI(E,{rotate:this.rotateToAccumulator,translate:this.translateToAccumulator}),{gsplat:E}});this.modifier=new Yt(C),this.autoUpdate=A.autoUpdate??!0,this.preUpdate=A.preUpdate??!1,this.originDistance=A.originDistance??1,this.maxStdDev=A.maxStdDev??Math.sqrt(8),this.enable2DGS=A.enable2DGS??!0,this.preBlurAmount=A.preBlurAmount??0,this.blurAmount=A.blurAmount??.3,this.falloff=A.falloff??1,this.clipXY=A.clipXY??1.4,this.active=new CI,this.accumulatorCount=1,this.freeAccumulators=[];for(let E=0;E<1;++E)this.freeAccumulators.push(new CI),this.accumulatorCount+=1;this.defaultView=new Kg({...A.view,autoUpdate:!0,forge:this}),this.viewpoint=this.defaultView,this.prepareViewpoint(this.viewpoint),this.clock=A.clock?fQ(A.clock):new a.Clock,Kt=this}static makeUniforms(){return{renderSize:{value:new a.Vector2},numSplats:{value:0},renderToViewQuat:{value:new a.Quaternion},renderToViewPos:{value:new a.Vector3},maxStdDev:{value:1},enable2DGS:{value:!1},preBlurAmount:{value:0},blurAmount:{value:.3},falloff:{value:1},clipXY:{value:1.4},packedSplats:{type:"t",value:YA.getEmpty()},time:{value:0},deltaTime:{value:0},encodeLinear:{value:!1},debugFlag:{value:!1}}}canAllocAccumulator(){return this.freeAccumulators.length>0||this.accumulatorCount=iB)return null;A=new CI,this.accumulatorCount+=1}return A.refCount=1,A}releaseAccumulator(A){A.refCount-=1,A.refCount===0&&this.freeAccumulators.push(A)}newViewpoint(A){return new Kg({...A,forge:this})}onBeforeRender(A,I,B){var o,r;const Q=this.time??this.clock.getElapsedTime(),C=Q-(this.viewpoint.lastTime??Q);this.viewpoint.lastTime=Q;const E=A.info.render.frame,t=E!==this.lastFrame;this.lastFrame=E;const i=this.viewpoint;if(i===this.defaultView){if(t)if(!A.xr.isPresenting)this.defaultView.viewToWorld=B.matrixWorld.clone(),this.defaultCameras=[this.defaultView.viewToWorld];else{const c=A.xr.getCamera().cameras;this.defaultCameras=[c[0].matrixWorld,c[1].matrixWorld],this.defaultView.viewToWorld=Co(this.defaultCameras)??new a.Matrix4}this.autoUpdate&&this.update({scene:I,viewToWorld:this.defaultView.viewToWorld})}if(t&&(this.uniforms.time.value=Q,this.uniforms.deltaTime.value=C,this.uniforms.debugFlag.value=performance.now()/1e3%2<1),i.target)this.uniforms.renderSize.value.set(i.target.width,i.target.height);else{const c=A.getSize(this.uniforms.renderSize.value);if(c.x===1&&c.y===1){const h=(o=A.xr.getSession())==null?void 0:o.renderState.baseLayer;h&&(c.x=h.framebufferWidth,c.y=h.framebufferHeight)}}this.uniforms.encodeLinear.value=i.encodeLinear,this.uniforms.maxStdDev.value=this.maxStdDev,this.uniforms.enable2DGS.value=this.enable2DGS,this.uniforms.preBlurAmount.value=this.preBlurAmount,this.uniforms.blurAmount.value=this.blurAmount,this.uniforms.falloff.value=this.falloff,this.uniforms.clipXY.value=this.clipXY;const e=((r=i.display)==null?void 0:r.accumulator.toWorld)??new a.Matrix4,n=B.matrixWorld.clone().invert();e.clone().premultiply(n).decompose(this.uniforms.renderToViewPos.value,this.uniforms.renderToViewQuat.value,new a.Vector3)}prepareViewpoint(A){if(this.viewpoint=A??this.viewpoint,this.viewpoint.display){const{accumulator:I,geometry:B}=this.viewpoint.display;this.uniforms.numSplats.value=I.splats.numSplats,this.uniforms.packedSplats.value=I.splats.getTexture(),this.geometry=B}else this.uniforms.numSplats.value=0,this.uniforms.packedSplats.value=YA.getEmpty(),this.geometry=sB}update({scene:A,viewToWorld:I}){const B=this.matrixWorld.clone();this.preUpdate?this.updateInternal({scene:A,originToWorld:B,viewToWorld:I}):(this.pendingUpdate={scene:A,originToWorld:B},setTimeout(()=>{if(this.pendingUpdate){const{scene:Q,originToWorld:C}=this.pendingUpdate;this.pendingUpdate=null,this.updateInternal({scene:Q,originToWorld:C,viewToWorld:I})}},1))}updateInternal({scene:A,originToWorld:I,viewToWorld:B}){var o;if(!this.canAllocAccumulator())return!1;I||(I=this.active.toWorld),B=B??I.clone();const Q=this.time??this.clock.getElapsedTime(),C=Q-(this.lastUpdateTime??Q);this.lastUpdateTime=Q;const E=this.active.mapping.reduce((r,c)=>(r.set(c.node,c),r),new Map),{generators:t,globalEdits:i}=this.compileScene(A);for(const r of t)(o=r.frameUpdate)==null||o.call(r,{object:r,time:Q,deltaTime:C,viewToWorld:B,globalEdits:i});for(const r of t){const c=E.get(r),h=r.generator?r.numSplats:0;(r.generator!==(c==null?void 0:c.generator)||h!==(c==null?void 0:c.count))&&r.updateVersion()}const n=!sI({matrix1:I,matrix2:this.active.toWorld,maxDistance:this.originDistance})||t.length!==E.size||t.some(r=>{var c;return r.version!==((c=E.get(r))==null?void 0:c.version)});let s=null;if(n){if(s=this.maybeAllocAccumulator(),!s)throw new Error("Unreachable");const r=!sI({matrix1:I,matrix2:this.active.toWorld,maxDistance:1e-5,minCoorient:.99999}),h=t.map((u,p)=>{const m=E.get(u);return m?[u.version-m.version,m.base,u]:[Number.POSITIVE_INFINITY,u.version,u]}).sort((u,p)=>u[0]!==p[0]?u[0]-p[0]:u[1]-p[1]).map(([u,p,m])=>m),w=h.map(u=>u.numSplats),{maxSplats:D,mapping:y}=s.splats.generateMapping(w),l=h.map((u,p)=>{const{base:m,count:M}=y[p];return{node:u,generator:u.generator,version:u.version,base:m,count:M}});I.clone().invert().decompose(this.translateToAccumulator.value,this.rotateToAccumulator.value,new a.Vector3),s.ensureGenerate(D),s.generateSplats({renderer:this.renderer,modifier:this.modifier,generators:l,forceUpdate:r,originToWorld:I}),s.splatsVersion=this.active.splatsVersion+1;const d=s.hasCorrespondence(this.active);s.mappingVersion=this.active.mappingVersion+(d?0:1),this.releaseAccumulator(this.active),this.active=s,this.prepareViewpoint()}return setTimeout(()=>{for(const r of this.autoViewpoints)r.autoPoll({accumulator:s??void 0})},1),!0}compileScene(A){const I=[];A.traverse(Q=>{Q instanceof jg&&I.push(Q)});const B=new Set;return A.traverseVisible(Q=>{if(Q instanceof bg){let C=Q.parent;for(;C!=null&&!(C instanceof zA);)C=C.parent;C==null&&B.add(Q)}}),{generators:I,globalEdits:Array.from(B)}}async renderEnvMap({renderer:A,scene:I,worldCenter:B,size:Q=256,near:C=.1,far:E=1e3,hideObjects:t=[],update:i=!1}){var r,c;if(this.envViewpoint||(this.envViewpoint=this.newViewpoint({sort360:!0})),!uA.cubeRender||uA.cubeRender.target.width!==Q||uA.cubeRender.near!==C||uA.cubeRender.far!==E){uA.cubeRender&&uA.cubeRender.target.dispose();const h=new a.WebGLCubeRenderTarget(Q,{format:a.RGBAFormat,generateMipmaps:!0,minFilter:a.LinearMipMapLinearFilter}),w=new a.CubeCamera(C,E,h);uA.cubeRender={target:h,camera:w,near:C,far:E}}uA.pmrem||(uA.pmrem=new a.PMREMGenerator(A??this.renderer));const e=new a.Matrix4().setPosition(B);await((r=this.envViewpoint)==null?void 0:r.prepare({scene:I,viewToWorld:e,update:i}));const{target:n,camera:s}=uA.cubeRender;s.position.copy(B);const o=new Map;for(const h of t)o.set(h,h.visible),h.visible=!1;this.prepareViewpoint(this.envViewpoint),s.update(A??this.renderer,I),this.prepareViewpoint(this.defaultView);for(const[h,w]of o.entries())h.visible=w;return(c=uA.pmrem)==null?void 0:c.fromCubemap(n.texture).texture}recurseSetEnvMap(A,I){A.traverse(B=>{if(B instanceof a.Mesh)if(Array.isArray(B.material))for(const Q of B.material)Q instanceof a.MeshStandardMaterial&&(Q.envMap=I);else B.material instanceof a.MeshStandardMaterial&&(B.material.envMap=I)})}getRgba({generator:A,rgba:I}){const B=this.active.mapping.find(({node:Q})=>Q===A);if(!B)throw new Error("Generator not found");return I=I??new LI,I.fromPackedSplats({packedSplats:this.active.splats,base:B.base,count:B.count,renderer:this.renderer}),I}async readRgba({generator:A,rgba:I}){return I=this.getRgba({generator:A,rgba:I}),I.read()}};uA.cubeRender=null,uA.pmrem=null;let Zg=uA;const sB=new bI(new Uint32Array(1),0);UA({packedSplats:Vg,index:"int"},{gsplat:BA},({packedSplats:g,index:A})=>{if(!g||!A)throw new Error("Invalid input");return{gsplat:Sg(g,A)}});function Co(g){if(g.length===0)return null;const A=new a.Vector3,I=new a.Quaternion,B=new a.Vector3,Q=[],C=[];for(const E of g)E.decompose(A,I,B),Q.push(A),C.push(I);return new a.Matrix4().compose(YQ(Q),UQ(C),new a.Vector3(1,1,1))}function Eo(g,A,I){const B=Math.floor(g.length/32);if(B*32!==g.length)throw new Error("Invalid .splat file size");const Q=new Float32Array(g.buffer);for(let C=0;C2)throw new Error(`Invalid .ksplat compression level: ${s}`);t.getFloat32(36,!0),t.getFloat32(40,!0);let o=4096+n*1024;for(let c=0;c=1?new Float32Array(3*3):void 0,j=J>=2?new Float32Array(5*3):void 0,V=J>=3?new Float32Array(7*3):void 0,x=d/2/p,dA=o+M,sA=o+G,b=new DataView(g.buffer,sA,AA),oA=new Float32Array(g.buffer,dA,l*3);for(let rA=0;rA=1&&P&&(B==null||B(rA,P,j,V))}o+=$}}class qt{constructor({fileBytes:A}){this.fileBytes=A instanceof ArrayBuffer?new Uint8Array(A):A,this.reader=new KQ({fileBytes:this.fileBytes});const I=new DataView(this.reader.read(16).buffer);if(I.getUint32(0,!0)!==1347635022)throw new Error("Invalid SPZ file");if(this.version=I.getUint32(4,!0),this.version<1||this.version>2)throw new Error(`Unsupported SPZ version: ${this.version}`);this.numSplats=I.getUint32(8,!0),this.shDegree=I.getUint8(12),this.fractionalBits=I.getUint8(13),this.flags=I.getUint8(14),this.flagAntiAlias=(this.flags&1)!==0,this.reserved=I.getUint8(15),this.parsed=!1}parseSplats(A,I,B,Q,C,E){if(this.parsed)throw new Error("SPZ file already parsed");if(this.parsed=!0,this.version===1){const t=this.reader.read(this.numSplats*3*2),i=new Uint16Array(t.buffer);for(let e=0;e>8)/t,o=((i[n+5]<<24|i[n+4]<<16|i[n+3]<<8)>>8)/t,r=((i[n+8]<<24|i[n+7]<<16|i[n+6]<<8)>>8)/t;A==null||A(e,s,o,r)}}else throw new Error("Unreachable");{const t=this.reader.read(this.numSplats);for(let i=0;i=1){const t=new Float32Array(9),i=this.shDegree>=2?new Float32Array(5*3):void 0,e=this.shDegree>=3?new Float32Array(7*3):void 0,n=this.reader.read(this.numSplats*vt[this.shDegree]*3);let s=0;for(let o=0;o=1?9:0)+(I>=2?15:0)+(I>=3?21:0),E=16+A*C;this.buffer=new ArrayBuffer(E),this.view=new DataView(this.buffer),this.view.setUint32(0,so,!0),this.view.setUint32(4,eo,!0),this.view.setUint32(8,A,!0),this.view.setUint8(12,I),this.view.setUint8(13,B),this.view.setUint8(14,Q?ao:0),this.view.setUint8(15,0),this.numSplats=A,this.shDegree=I,this.fractionalBits=B,this.fraction=1<>8&255),this.view.setUint8(r+2,E>>16&255),this.view.setUint8(r+3,i&255),this.view.setUint8(r+4,i>>8&255),this.view.setUint8(r+5,i>>16&255),this.view.setUint8(r+6,n&255),this.view.setUint8(r+7,n>>8&255),this.view.setUint8(r+8,n>>16&255)}setAlpha(A,I){const B=16+this.numSplats*9+A;this.view.setUint8(B,Math.max(0,Math.min(255,Math.round(I*255))))}static scaleRgb(A){const I=((A-.5)/(Wt/.15)+.5)*255;return Math.max(0,Math.min(255,Math.round(I)))}setRgb(A,I,B,Q){const C=16+this.numSplats*10+A*3;this.view.setUint8(C,VA.scaleRgb(I)),this.view.setUint8(C+1,VA.scaleRgb(B)),this.view.setUint8(C+2,VA.scaleRgb(Q))}setScale(A,I,B,Q){const C=16+this.numSplats*13+A*3;this.view.setUint8(C,Math.max(0,Math.min(255,Math.round((Math.log(I)+10)*16)))),this.view.setUint8(C+1,Math.max(0,Math.min(255,Math.round((Math.log(B)+10)*16)))),this.view.setUint8(C+2,Math.max(0,Math.min(255,Math.round((Math.log(Q)+10)*16))))}setQuat(A,I,B,Q,C){const E=16+this.numSplats*16+A*3,t=C<0;this.view.setUint8(E,Math.max(0,Math.min(255,Math.round(((t?-I:I)+1)*127.5)))),this.view.setUint8(E+1,Math.max(0,Math.min(255,Math.round(((t?-B:B)+1)*127.5)))),this.view.setUint8(E+2,Math.max(0,Math.min(255,Math.round(((t?-Q:Q)+1)*127.5))))}static quantizeSh(A,I){const B=Math.round(A*128)+128,Q=1<<8-I,C=Math.floor((B+Q/2)/Q)*Q;return Math.max(0,Math.min(255,C))}setSh(A,I,B,Q){const C=vt[this.shDegree]||0,E=16+this.numSplats*19+A*C*3;for(let t=0;t<9;++t)this.view.setUint8(E+t,VA.quantizeSh(I[t],5));if(B){const t=E+9;for(let i=0;i<15;++i)this.view.setUint8(t+i,VA.quantizeSh(B[i],4));if(Q){const i=t+15;for(let e=0;e<21;++e)this.view.setUint8(i+e,VA.quantizeSh(Q[e],4))}}}async finalize(){const A=new Uint8Array(this.buffer),B=new ReadableStream({async start(E){E.enqueue(A),E.close()}}).pipeThrough(new CompressionStream("gzip")),C=await new Response(B).arrayBuffer();return console.log("Compressed",A.length,"bytes to",C.byteLength,"bytes"),new Uint8Array(C)}}async function no(g){var n,s,o;const A=new jn,{inputs:I,clipXyz:B,maxSh:Q,fractionalBits:C=12,opacityThreshold:E}=g;for(const r of I){let c=function(M){return M.multiplyScalar(l),M.applyQuaternion(d),M.add(u),M},h=function(M){return M.multiplyScalar(l),M},w=function(M){return M.premultiply(d),M},D=function(M){return!p||p.containsPoint(M)},y=function(M){return E!==void 0?M>=E:!0};const l=((n=r.transform)==null?void 0:n.scale)??1,d=new a.Quaternion().fromArray(((s=r.transform)==null?void 0:s.quaternion)??[0,0,0,1]),u=new a.Vector3().fromArray(((o=r.transform)==null?void 0:o.translate)??[0,0,0]),p=B?new a.Box3(new a.Vector3().fromArray(B.min),new a.Vector3().fromArray(B.max)):void 0;let m=r.fileType;switch(m||(m=jI(r.fileBytes),!m&&r.pathOrUrl&&(m=Ht(r.pathOrUrl))),m){case Eg.WLG0:{await ZI();const M=Qi(r.fileBytes,X,TA);for(let G=0;G{const j=c(new a.Vector3(k,N,Y));if(D(j)&&y(z)){G=A.pushSplat(),A.setCenter(G,j.x,j.y,j.z);const V=h(new a.Vector3(F,f,U));A.setScale(G,V.x,V.y,V.z);const x=w(new a.Quaternion(L,K,Z,QA));A.setQuaternion(G,x.x,x.y,x.z,x.w),A.setOpacity(G,z),A.setColor(G,AA,$,P)}else G=null},(J,k,N,Y)=>{k&&G!==null&&A.setSh1(G,k),N&&G!==null&&A.setSh2(G,N),Y&&G!==null&&A.setSh3(G,Y)});break}case Eg.SPZ:{const M=new qt({fileBytes:r.fileBytes}),G=new Int32Array(M.numSplats);G.fill(-1);const J=new Float32Array(M.numSplats*3),k=new a.Vector3;M.parseSplats((N,Y,F,f)=>{const U=c(new a.Vector3(Y,F,f));J[N*3]=U.x,J[N*3+1]=U.y,J[N*3+2]=U.z},(N,Y)=>{k.fromArray(J,N*3),D(k)&&y(Y)&&(G[N]=A.pushSplat(),A.setCenter(G[N],k.x,k.y,k.z),A.setOpacity(G[N],Y))},(N,Y,F,f)=>{G[N]>=0&&A.setColor(G[N],Y,F,f)},(N,Y,F,f)=>{if(G[N]>=0){const U=h(new a.Vector3(Y,F,f));A.setScale(G[N],U.x,U.y,U.z)}},(N,Y,F,f,U)=>{if(G[N]>=0){const L=w(new a.Quaternion(Y,F,f,U));A.setQuaternion(G[N],L.x,L.y,L.z,L.w)}},(N,Y,F,f)=>{G[N]>=0&&(A.setSh1(G[N],Y),F&&A.setSh2(G[N],F),f&&A.setSh3(G[N],f))});break}case Eg.SPLAT:Eo(r.fileBytes,M=>{},(M,G,J,k,N,Y,F,f,U,L,K,Z,QA,z,AA)=>{const $=c(new a.Vector3(G,J,k));if(D($)&&y(Z)){const P=A.pushSplat();A.setCenter(P,$.x,$.y,$.z);const j=h(new a.Vector3(N,Y,F));A.setScale(P,j.x,j.y,j.z);const V=w(new a.Quaternion(f,U,L,K));A.setQuaternion(P,V.x,V.y,V.z,V.w),A.setOpacity(P,Z),A.setColor(P,QA,z,AA)}});break;case Eg.KSPLAT:{let M=null;io(r.fileBytes,G=>{},(G,J,k,N,Y,F,f,U,L,K,Z,QA,z,AA,$)=>{const P=c(new a.Vector3(J,k,N));if(D(P)&&y(QA)){M=A.pushSplat(),A.setCenter(M,P.x,P.y,P.z);const j=h(new a.Vector3(Y,F,f));A.setScale(M,j.x,j.y,j.z);const V=w(new a.Quaternion(U,L,K,Z));A.setQuaternion(M,V.x,V.y,V.z,V.w),A.setOpacity(M,QA),A.setColor(M,z,AA,$)}else M=null},(G,J,k,N)=>{M!==null&&(A.setSh1(M,J),k&&A.setSh2(M,k),N&&A.setSh3(M,N))});break}default:throw new Error(`transcodeSpz not implemented for ${m}`)}}const t=Math.min(Q??3,A.sh3?3:A.sh2?2:A.sh1?1:0),i=new VA({numSplats:A.numSplats,shDegree:t,fractionalBits:C,flagAntiAlias:!0});for(let r=0;r=1&&i.setSh(r,A.sh1.slice(r*9,(r+1)*9),t>=2&&A.sh2?A.sh2.slice(r*15,(r+1)*15):void 0,t>=3&&A.sh3?A.sh3.slice(r*21,(r+1)*21):void 0)}return{fileBytes:await i.finalize(),clippedCount:i.clippedCount}}class oo{constructor(A){this.mesh=A.mesh,this.numSplats=A.numSplats??this.mesh.numSplats;const{width:I,height:B,depth:Q,maxSplats:C}=MA(this.numSplats);this.skinData=new Uint16Array(C*4),this.skinTexture=new a.DataArrayTexture(this.skinData,I,B,Q),this.skinTexture.format=a.RGBAIntegerFormat,this.skinTexture.type=a.UnsignedShortType,this.skinTexture.internalFormat="RGBA16UI",this.skinTexture.needsUpdate=!0,this.numBones=A.numBones??256,this.boneData=new Float32Array(this.numBones*16),this.boneTexture=new a.DataTexture(this.boneData,4,this.numBones,a.RGBAFormat,a.FloatType),this.boneTexture.internalFormat="RGBA32F",this.boneTexture.needsUpdate=!0,this.uniform=new S({key:"skinning",type:Vt,globals:()=>[Tt],value:{numSplats:this.numSplats,numBones:this.numBones,skinTexture:this.skinTexture,boneTexture:this.boneTexture}})}modify(A){return co(A,this.uniform)}setRestQuatPos(A,I,B){const Q=A*16;this.boneData[Q+0]=I.x,this.boneData[Q+1]=I.y,this.boneData[Q+2]=I.z,this.boneData[Q+3]=I.w,this.boneData[Q+4]=B.x,this.boneData[Q+5]=B.y,this.boneData[Q+6]=B.z,this.boneData[Q+7]=0,this.boneData[Q+8]=0,this.boneData[Q+9]=0,this.boneData[Q+10]=0,this.boneData[Q+11]=1,this.boneData[Q+12]=0,this.boneData[Q+13]=0,this.boneData[Q+14]=0,this.boneData[Q+15]=0}setBoneQuatPos(A,I,B){const Q=A*16,C=new a.Quaternion(this.boneData[Q+0],this.boneData[Q+1],this.boneData[Q+2],this.boneData[Q+3]),E=new a.Vector3(this.boneData[Q+4],this.boneData[Q+5],this.boneData[Q+6]),t=C.clone().invert(),i=B.clone().sub(E);i.applyQuaternion(t),t.multiply(I);const e=new a.Quaternion(i.x,i.y,i.z,0).multiply(C);this.boneData[Q+8]=t.x,this.boneData[Q+9]=t.y,this.boneData[Q+10]=t.z,this.boneData[Q+11]=t.w,this.boneData[Q+12]=.5*e.x,this.boneData[Q+13]=.5*e.y,this.boneData[Q+14]=.5*e.z,this.boneData[Q+15]=.5*e.w}setSplatBones(A,I,B){const Q=A*4;this.skinData[Q+0]=Math.min(255,Math.max(0,Math.round(B.x*255)))+(I.x<<8),this.skinData[Q+1]=Math.min(255,Math.max(0,Math.round(B.y*255)))+(I.y<<8),this.skinData[Q+2]=Math.min(255,Math.max(0,Math.round(B.z*255)))+(I.z<<8),this.skinData[Q+3]=Math.min(255,Math.max(0,Math.round(B.w*255)))+(I.w<<8)}updateBones(){this.boneTexture.needsUpdate=!0,this.mesh.needsUpdate=!0}}const Vt={type:"GsplatSkinning"},Tt=nA(` +}`;let xe=null;function ZQ(){return xe||(B.ShaderChunk.splatDefines=_Q,xe={splatVertex:PQ,splatFragment:VQ}),xe}const As=5;let Ge=!1,be=!1,Gr;const br=B.Scene.prototype.add;B.Scene.prototype.add=function(t){return Ge=Ge||t instanceof PA,be=be||t instanceof Yt,br.call(this,t),this};const OQ=B.Scene.prototype.onBeforeRender;B.Scene.prototype.onBeforeRender=function(t){if(Ge){if(!be){const A=Gr||new Yt({renderer:t});this.add(A)}B.Scene.prototype.onBeforeRender=OQ,B.Scene.prototype.add=br}};const wA=class wA extends B.Mesh{constructor(A){const e=wA.makeUniforms(),s=ZQ(),i=new B.ShaderMaterial({glslVersion:B.GLSL3,vertexShader:s.splatVertex,fragmentShader:s.splatFragment,uniforms:e,transparent:!0,blending:B.NormalBlending,depthTest:!0,depthWrite:!1,side:B.DoubleSide});super(ts,i),this.autoViewpoints=[],this.rotateToAccumulator=new zt({value:new B.Quaternion}),this.translateToAccumulator=new ut({value:new B.Vector3}),this.lastFrame=-1,this.lastUpdateTime=null,this.defaultCameras=[],this.pendingUpdate=null,this.envViewpoint=null,this.frustumCulled=!1,this.renderer=A.renderer,this.material=i,this.uniforms=e;const n=GA({gsplat:sA},{gsplat:sA},({gsplat:a})=>{if(!a)throw new Error("gsplat not defined");return a=Le(a,{rotate:this.rotateToAccumulator,translate:this.translateToAccumulator}),{gsplat:a}});this.modifier=new Sr(n),this.autoUpdate=A.autoUpdate??!0,this.preUpdate=A.preUpdate??!1,this.originDistance=A.originDistance??1,this.maxStdDev=A.maxStdDev??Math.sqrt(8),this.enable2DGS=A.enable2DGS??!0,this.preBlurAmount=A.preBlurAmount??0,this.blurAmount=A.blurAmount??.3,this.falloff=A.falloff??1,this.clipXY=A.clipXY??1.4,this.active=new te,this.accumulatorCount=1,this.freeAccumulators=[];for(let a=0;a<1;++a)this.freeAccumulators.push(new te),this.accumulatorCount+=1;this.defaultView=new Jt({...A.view,autoUpdate:!0,forge:this}),this.viewpoint=this.defaultView,this.prepareViewpoint(this.viewpoint),this.clock=A.clock?mi(A.clock):new B.Clock,Gr=this}static makeUniforms(){return{renderSize:{value:new B.Vector2},numSplats:{value:0},renderToViewQuat:{value:new B.Quaternion},renderToViewPos:{value:new B.Vector3},maxStdDev:{value:1},enable2DGS:{value:!1},preBlurAmount:{value:0},blurAmount:{value:.3},falloff:{value:1},clipXY:{value:1.4},packedSplats:{type:"t",value:UA.getEmpty()},time:{value:0},deltaTime:{value:0},encodeLinear:{value:!1},debugFlag:{value:!1}}}canAllocAccumulator(){return this.freeAccumulators.length>0||this.accumulatorCount=As)return null;A=new te,this.accumulatorCount+=1}return A.refCount=1,A}releaseAccumulator(A){A.refCount-=1,A.refCount===0&&this.freeAccumulators.push(A)}newViewpoint(A){return new Jt({...A,forge:this})}onBeforeRender(A,e,s){var E,C;const i=this.time??this.clock.getElapsedTime(),n=i-(this.viewpoint.lastTime??i);this.viewpoint.lastTime=i;const a=A.info.render.frame,r=a!==this.lastFrame;this.lastFrame=a;const g=this.viewpoint;if(g===this.defaultView){if(r)if(!A.xr.isPresenting)this.defaultView.viewToWorld=s.matrixWorld.clone(),this.defaultCameras=[this.defaultView.viewToWorld];else{const c=A.xr.getCamera().cameras;this.defaultCameras=[c[0].matrixWorld,c[1].matrixWorld],this.defaultView.viewToWorld=WQ(this.defaultCameras)??new B.Matrix4}this.autoUpdate&&this.update({scene:e,viewToWorld:this.defaultView.viewToWorld})}if(r&&(this.uniforms.time.value=i,this.uniforms.deltaTime.value=n,this.uniforms.debugFlag.value=performance.now()/1e3%2<1),g.target)this.uniforms.renderSize.value.set(g.target.width,g.target.height);else{const c=A.getSize(this.uniforms.renderSize.value);if(c.x===1&&c.y===1){const h=(E=A.xr.getSession())==null?void 0:E.renderState.baseLayer;h&&(c.x=h.framebufferWidth,c.y=h.framebufferHeight)}}this.uniforms.encodeLinear.value=g.encodeLinear,this.uniforms.maxStdDev.value=this.maxStdDev,this.uniforms.enable2DGS.value=this.enable2DGS,this.uniforms.preBlurAmount.value=this.preBlurAmount,this.uniforms.blurAmount.value=this.blurAmount,this.uniforms.falloff.value=this.falloff,this.uniforms.clipXY.value=this.clipXY;const I=((C=g.display)==null?void 0:C.accumulator.toWorld)??new B.Matrix4,Q=s.matrixWorld.clone().invert();I.clone().premultiply(Q).decompose(this.uniforms.renderToViewPos.value,this.uniforms.renderToViewQuat.value,new B.Vector3)}prepareViewpoint(A){if(this.viewpoint=A??this.viewpoint,this.viewpoint.display){const{accumulator:e,geometry:s}=this.viewpoint.display;this.uniforms.numSplats.value=e.splats.numSplats,this.uniforms.packedSplats.value=e.splats.getTexture(),this.geometry=s}else this.uniforms.numSplats.value=0,this.uniforms.packedSplats.value=UA.getEmpty(),this.geometry=ts}update({scene:A,viewToWorld:e}){const s=this.matrixWorld.clone();this.preUpdate?this.updateInternal({scene:A,originToWorld:s,viewToWorld:e}):(this.pendingUpdate={scene:A,originToWorld:s},setTimeout(()=>{if(this.pendingUpdate){const{scene:i,originToWorld:n}=this.pendingUpdate;this.pendingUpdate=null,this.updateInternal({scene:i,originToWorld:n,viewToWorld:e})}},1))}updateInternal({scene:A,originToWorld:e,viewToWorld:s}){var E;if(!this.canAllocAccumulator())return!1;e||(e=this.active.toWorld),s=s??e.clone();const i=this.time??this.clock.getElapsedTime(),n=i-(this.lastUpdateTime??i);this.lastUpdateTime=i;const a=this.active.mapping.reduce((C,c)=>(C.set(c.node,c),C),new Map),{generators:r,globalEdits:g}=this.compileScene(A);for(const C of r)(E=C.frameUpdate)==null||E.call(C,{object:C,time:i,deltaTime:n,viewToWorld:s,globalEdits:g});for(const C of r){const c=a.get(C),h=C.generator?C.numSplats:0;(C.generator!==(c==null?void 0:c.generator)||h!==(c==null?void 0:c.count))&&C.updateVersion()}const Q=!ae({matrix1:e,matrix2:this.active.toWorld,maxDistance:this.originDistance})||r.length!==a.size||r.some(C=>{var c;return C.version!==((c=a.get(C))==null?void 0:c.version)});let o=null;if(Q){if(o=this.maybeAllocAccumulator(),!o)throw new Error("Unreachable");const C=!ae({matrix1:e,matrix2:this.active.toWorld,maxDistance:1e-5,minCoorient:.99999}),h=r.map((y,m)=>{const F=a.get(y);return F?[y.version-F.version,F.base,y]:[Number.POSITIVE_INFINITY,y.version,y]}).sort((y,m)=>y[0]!==m[0]?y[0]-m[0]:y[1]-m[1]).map(([y,m,F])=>F),l=h.map(y=>y.numSplats),{maxSplats:u,mapping:w}=o.splats.generateMapping(l),d=h.map((y,m)=>{const{base:F,count:D}=w[m];return{node:y,generator:y.generator,version:y.version,base:F,count:D}});e.clone().invert().decompose(this.translateToAccumulator.value,this.rotateToAccumulator.value,new B.Vector3),o.ensureGenerate(u),o.generateSplats({renderer:this.renderer,modifier:this.modifier,generators:d,forceUpdate:C,originToWorld:e}),o.splatsVersion=this.active.splatsVersion+1;const p=o.hasCorrespondence(this.active);o.mappingVersion=this.active.mappingVersion+(p?0:1),this.releaseAccumulator(this.active),this.active=o,this.prepareViewpoint()}return setTimeout(()=>{for(const C of this.autoViewpoints)C.autoPoll({accumulator:o??void 0})},1),!0}compileScene(A){const e=[];A.traverse(i=>{i instanceof Pt&&e.push(i)});const s=new Set;return A.traverseVisible(i=>{if(i instanceof vt){let n=i.parent;for(;n!=null&&!(n instanceof PA);)n=n.parent;n==null&&s.add(i)}}),{generators:e,globalEdits:Array.from(s)}}async renderEnvMap({renderer:A,scene:e,worldCenter:s,size:i=256,near:n=.1,far:a=1e3,hideObjects:r=[],update:g=!1}){var C,c;if(this.envViewpoint||(this.envViewpoint=this.newViewpoint({sort360:!0})),!wA.cubeRender||wA.cubeRender.target.width!==i||wA.cubeRender.near!==n||wA.cubeRender.far!==a){wA.cubeRender&&wA.cubeRender.target.dispose();const h=new B.WebGLCubeRenderTarget(i,{format:B.RGBAFormat,generateMipmaps:!0,minFilter:B.LinearMipMapLinearFilter}),l=new B.CubeCamera(n,a,h);wA.cubeRender={target:h,camera:l,near:n,far:a}}wA.pmrem||(wA.pmrem=new B.PMREMGenerator(A??this.renderer));const I=new B.Matrix4().setPosition(s);await((C=this.envViewpoint)==null?void 0:C.prepare({scene:e,viewToWorld:I,update:g}));const{target:Q,camera:o}=wA.cubeRender;o.position.copy(s);const E=new Map;for(const h of r)E.set(h,h.visible),h.visible=!1;this.prepareViewpoint(this.envViewpoint),o.update(A??this.renderer,e),this.prepareViewpoint(this.defaultView);for(const[h,l]of E.entries())h.visible=l;return(c=wA.pmrem)==null?void 0:c.fromCubemap(Q.texture).texture}recurseSetEnvMap(A,e){A.traverse(s=>{if(s instanceof B.Mesh)if(Array.isArray(s.material))for(const i of s.material)i instanceof B.MeshStandardMaterial&&(i.envMap=e);else s.material instanceof B.MeshStandardMaterial&&(s.material.envMap=e)})}getRgba({generator:A,rgba:e}){const s=this.active.mapping.find(({node:i})=>i===A);if(!s)throw new Error("Generator not found");return e=e??new Re,e.fromPackedSplats({packedSplats:this.active.splats,base:s.base,count:s.count,renderer:this.renderer}),e}async readRgba({generator:A,rgba:e}){return e=this.getRgba({generator:A,rgba:e}),e.read()}};wA.cubeRender=null,wA.pmrem=null;let Yt=wA;const ts=new Ue(new Uint32Array(1),0);GA({packedSplats:qt,index:"int"},{gsplat:sA},({packedSplats:t,index:A})=>{if(!t||!A)throw new Error("Invalid input");return{gsplat:Rt(t,A)}});function WQ(t){if(t.length===0)return null;const A=new B.Vector3,e=new B.Quaternion,s=new B.Vector3,i=[],n=[];for(const a of t)a.decompose(A,e,s),i.push(A),n.push(e);return new B.Matrix4().compose(xi(i),Si(n),new B.Vector3(1,1,1))}function XQ(t,A,e){const s=Math.floor(t.length/32);if(s*32!==t.length)throw new Error("Invalid .splat file size");const i=new Float32Array(t.buffer);for(let n=0;n2)throw new Error(`Invalid .ksplat compression level: ${o}`);r.getFloat32(36,!0),r.getFloat32(40,!0);let E=4096+Q*1024;for(let c=0;c=1?new Float32Array(3*3):void 0,Z=R>=2?new Float32Array(5*3):void 0,_=R>=3?new Float32Array(7*3):void 0,v=p/2/m,yA=E+D,oA=E+f,J=new DataView(t.buffer,oA,AA),EA=new Float32Array(t.buffer,yA,d*3);for(let CA=0;CA=1&&X&&(s==null||s(CA,X,Z,_))}E+=$}}class vr{constructor({fileBytes:A}){this.fileBytes=A instanceof ArrayBuffer?new Uint8Array(A):A,this.reader=new Ui({fileBytes:this.fileBytes});const e=new DataView(this.reader.read(16).buffer);if(e.getUint32(0,!0)!==1347635022)throw new Error("Invalid SPZ file");if(this.version=e.getUint32(4,!0),this.version<1||this.version>2)throw new Error(`Unsupported SPZ version: ${this.version}`);this.numSplats=e.getUint32(8,!0),this.shDegree=e.getUint8(12),this.fractionalBits=e.getUint8(13),this.flags=e.getUint8(14),this.flagAntiAlias=(this.flags&1)!==0,this.reserved=e.getUint8(15),this.parsed=!1}parseSplats(A,e,s,i,n,a){if(this.parsed)throw new Error("SPZ file already parsed");if(this.parsed=!0,this.version===1){const r=this.reader.read(this.numSplats*3*2),g=new Uint16Array(r.buffer);for(let I=0;I>8)/r,E=((g[Q+5]<<24|g[Q+4]<<16|g[Q+3]<<8)>>8)/r,C=((g[Q+8]<<24|g[Q+7]<<16|g[Q+6]<<8)>>8)/r;A==null||A(I,o,E,C)}}else throw new Error("Unreachable");{const r=this.reader.read(this.numSplats);for(let g=0;g=1){const r=new Float32Array(9),g=this.shDegree>=2?new Float32Array(5*3):void 0,I=this.shDegree>=3?new Float32Array(7*3):void 0,Q=this.reader.read(this.numSplats*Lr[this.shDegree]*3);let o=0;for(let E=0;E=1?9:0)+(e>=2?15:0)+(e>=3?21:0),a=16+A*n;this.buffer=new ArrayBuffer(a),this.view=new DataView(this.buffer),this.view.setUint32(0,AE,!0),this.view.setUint32(4,tE,!0),this.view.setUint32(8,A,!0),this.view.setUint8(12,e),this.view.setUint8(13,s),this.view.setUint8(14,i?eE:0),this.view.setUint8(15,0),this.numSplats=A,this.shDegree=e,this.fractionalBits=s,this.fraction=1<>8&255),this.view.setUint8(C+2,a>>16&255),this.view.setUint8(C+3,g&255),this.view.setUint8(C+4,g>>8&255),this.view.setUint8(C+5,g>>16&255),this.view.setUint8(C+6,Q&255),this.view.setUint8(C+7,Q>>8&255),this.view.setUint8(C+8,Q>>16&255)}setAlpha(A,e){const s=16+this.numSplats*9+A;this.view.setUint8(s,Math.max(0,Math.min(255,Math.round(e*255))))}static scaleRgb(A){const e=((A-.5)/(Jr/.15)+.5)*255;return Math.max(0,Math.min(255,Math.round(e)))}setRgb(A,e,s,i){const n=16+this.numSplats*10+A*3;this.view.setUint8(n,zA.scaleRgb(e)),this.view.setUint8(n+1,zA.scaleRgb(s)),this.view.setUint8(n+2,zA.scaleRgb(i))}setScale(A,e,s,i){const n=16+this.numSplats*13+A*3;this.view.setUint8(n,Math.max(0,Math.min(255,Math.round((Math.log(e)+10)*16)))),this.view.setUint8(n+1,Math.max(0,Math.min(255,Math.round((Math.log(s)+10)*16)))),this.view.setUint8(n+2,Math.max(0,Math.min(255,Math.round((Math.log(i)+10)*16))))}setQuat(A,e,s,i,n){const a=16+this.numSplats*16+A*3,r=n<0;this.view.setUint8(a,Math.max(0,Math.min(255,Math.round(((r?-e:e)+1)*127.5)))),this.view.setUint8(a+1,Math.max(0,Math.min(255,Math.round(((r?-s:s)+1)*127.5)))),this.view.setUint8(a+2,Math.max(0,Math.min(255,Math.round(((r?-i:i)+1)*127.5))))}static quantizeSh(A,e){const s=Math.round(A*128)+128,i=1<<8-e,n=Math.floor((s+i/2)/i)*i;return Math.max(0,Math.min(255,n))}setSh(A,e,s,i){const n=Lr[this.shDegree]||0,a=16+this.numSplats*19+A*n*3;for(let r=0;r<9;++r)this.view.setUint8(a+r,zA.quantizeSh(e[r],5));if(s){const r=a+9;for(let g=0;g<15;++g)this.view.setUint8(r+g,zA.quantizeSh(s[g],4));if(i){const g=r+15;for(let I=0;I<21;++I)this.view.setUint8(g+I,zA.quantizeSh(i[I],4))}}}async finalize(){const A=new Uint8Array(this.buffer),s=new ReadableStream({async start(a){a.enqueue(A),a.close()}}).pipeThrough(new CompressionStream("gzip")),n=await new Response(s).arrayBuffer();return console.log("Compressed",A.length,"bytes to",n.byteLength,"bytes"),new Uint8Array(n)}}async function sE(t){var Q,o,E;const A=new TQ,{inputs:e,clipXyz:s,maxSh:i,fractionalBits:n=12,opacityThreshold:a}=t;for(const C of e){let c=function(D){return D.multiplyScalar(d),D.applyQuaternion(p),D.add(y),D},h=function(D){return D.multiplyScalar(d),D},l=function(D){return D.premultiply(p),D},u=function(D){return!m||m.containsPoint(D)},w=function(D){return a!==void 0?D>=a:!0};const d=((Q=C.transform)==null?void 0:Q.scale)??1,p=new B.Quaternion().fromArray(((o=C.transform)==null?void 0:o.quaternion)??[0,0,0,1]),y=new B.Vector3().fromArray(((E=C.transform)==null?void 0:E.translate)??[0,0,0]),m=s?new B.Box3(new B.Vector3().fromArray(s.min),new B.Vector3().fromArray(s.max)):void 0;let F=C.fileType;switch(F||(F=qe(C.fileBytes),!F&&C.pathOrUrl&&(F=Ur(C.pathOrUrl))),F){case Ct.PLY:{const D=new Lt({fileBytes:C.fileBytes});await D.parseHeader();let f=null;D.parseSplats((R,S,M,b,N,U,G,L,T,H,iA,P,AA,$,X)=>{const Z=c(new B.Vector3(S,M,b));if(u(Z)&&w(P)){f=A.pushSplat(),A.setCenter(f,Z.x,Z.y,Z.z);const _=h(new B.Vector3(N,U,G));A.setScale(f,_.x,_.y,_.z);const v=l(new B.Quaternion(L,T,H,iA));A.setQuaternion(f,v.x,v.y,v.z,v.w),A.setOpacity(f,P),A.setColor(f,AA,$,X)}else f=null},(R,S,M,b)=>{S&&f!==null&&A.setSh1(f,S),M&&f!==null&&A.setSh2(f,M),b&&f!==null&&A.setSh3(f,b)});break}case Ct.SPZ:{const D=new vr({fileBytes:C.fileBytes}),f=new Int32Array(D.numSplats);f.fill(-1);const R=new Float32Array(D.numSplats*3),S=new B.Vector3;D.parseSplats((M,b,N,U)=>{const G=c(new B.Vector3(b,N,U));R[M*3]=G.x,R[M*3+1]=G.y,R[M*3+2]=G.z},(M,b)=>{S.fromArray(R,M*3),u(S)&&w(b)&&(f[M]=A.pushSplat(),A.setCenter(f[M],S.x,S.y,S.z),A.setOpacity(f[M],b))},(M,b,N,U)=>{f[M]>=0&&A.setColor(f[M],b,N,U)},(M,b,N,U)=>{if(f[M]>=0){const G=h(new B.Vector3(b,N,U));A.setScale(f[M],G.x,G.y,G.z)}},(M,b,N,U,G)=>{if(f[M]>=0){const L=l(new B.Quaternion(b,N,U,G));A.setQuaternion(f[M],L.x,L.y,L.z,L.w)}},(M,b,N,U)=>{f[M]>=0&&(A.setSh1(f[M],b),N&&A.setSh2(f[M],N),U&&A.setSh3(f[M],U))});break}case Ct.SPLAT:XQ(C.fileBytes,D=>{},(D,f,R,S,M,b,N,U,G,L,T,H,iA,P,AA)=>{const $=c(new B.Vector3(f,R,S));if(u($)&&w(H)){const X=A.pushSplat();A.setCenter(X,$.x,$.y,$.z);const Z=h(new B.Vector3(M,b,N));A.setScale(X,Z.x,Z.y,Z.z);const _=l(new B.Quaternion(U,G,L,T));A.setQuaternion(X,_.x,_.y,_.z,_.w),A.setOpacity(X,H),A.setColor(X,iA,P,AA)}});break;case Ct.KSPLAT:{let D=null;$Q(C.fileBytes,f=>{},(f,R,S,M,b,N,U,G,L,T,H,iA,P,AA,$)=>{const X=c(new B.Vector3(R,S,M));if(u(X)&&w(iA)){D=A.pushSplat(),A.setCenter(D,X.x,X.y,X.z);const Z=h(new B.Vector3(b,N,U));A.setScale(D,Z.x,Z.y,Z.z);const _=l(new B.Quaternion(G,L,T,H));A.setQuaternion(D,_.x,_.y,_.z,_.w),A.setOpacity(D,iA),A.setColor(D,P,AA,$)}else D=null},(f,R,S,M)=>{D!==null&&(A.setSh1(D,R),S&&A.setSh2(D,S),M&&A.setSh3(D,M))});break}default:throw new Error(`transcodeSpz not implemented for ${F}`)}}const r=Math.min(i??3,A.sh3?3:A.sh2?2:A.sh1?1:0),g=new zA({numSplats:A.numSplats,shDegree:r,fractionalBits:n,flagAntiAlias:!0});for(let C=0;C=1&&g.setSh(C,A.sh1.slice(C*9,(C+1)*9),r>=2&&A.sh2?A.sh2.slice(C*15,(C+1)*15):void 0,r>=3&&A.sh3?A.sh3.slice(C*21,(C+1)*21):void 0)}return{fileBytes:await g.finalize(),clippedCount:g.clippedCount}}class iE{constructor(A){this.mesh=A.mesh,this.numSplats=A.numSplats??this.mesh.numSplats;const{width:e,height:s,depth:i,maxSplats:n}=DA(this.numSplats);this.skinData=new Uint16Array(n*4),this.skinTexture=new B.DataArrayTexture(this.skinData,e,s,i),this.skinTexture.format=B.RGBAIntegerFormat,this.skinTexture.type=B.UnsignedShortType,this.skinTexture.internalFormat="RGBA16UI",this.skinTexture.needsUpdate=!0,this.numBones=A.numBones??256,this.boneData=new Float32Array(this.numBones*16),this.boneTexture=new B.DataTexture(this.boneData,4,this.numBones,B.RGBAFormat,B.FloatType),this.boneTexture.internalFormat="RGBA32F",this.boneTexture.needsUpdate=!0,this.uniform=new k({key:"skinning",type:Yr,globals:()=>[Tr],value:{numSplats:this.numSplats,numBones:this.numBones,skinTexture:this.skinTexture,boneTexture:this.boneTexture}})}modify(A){return aE(A,this.uniform)}setRestQuatPos(A,e,s){const i=A*16;this.boneData[i+0]=e.x,this.boneData[i+1]=e.y,this.boneData[i+2]=e.z,this.boneData[i+3]=e.w,this.boneData[i+4]=s.x,this.boneData[i+5]=s.y,this.boneData[i+6]=s.z,this.boneData[i+7]=0,this.boneData[i+8]=0,this.boneData[i+9]=0,this.boneData[i+10]=0,this.boneData[i+11]=1,this.boneData[i+12]=0,this.boneData[i+13]=0,this.boneData[i+14]=0,this.boneData[i+15]=0}setBoneQuatPos(A,e,s){const i=A*16,n=new B.Quaternion(this.boneData[i+0],this.boneData[i+1],this.boneData[i+2],this.boneData[i+3]),a=new B.Vector3(this.boneData[i+4],this.boneData[i+5],this.boneData[i+6]),r=n.clone().invert(),g=s.clone().sub(a);g.applyQuaternion(r),r.multiply(e);const I=new B.Quaternion(g.x,g.y,g.z,0).multiply(n);this.boneData[i+8]=r.x,this.boneData[i+9]=r.y,this.boneData[i+10]=r.z,this.boneData[i+11]=r.w,this.boneData[i+12]=.5*I.x,this.boneData[i+13]=.5*I.y,this.boneData[i+14]=.5*I.z,this.boneData[i+15]=.5*I.w}setSplatBones(A,e,s){const i=A*4;this.skinData[i+0]=Math.min(255,Math.max(0,Math.round(s.x*255)))+(e.x<<8),this.skinData[i+1]=Math.min(255,Math.max(0,Math.round(s.y*255)))+(e.y<<8),this.skinData[i+2]=Math.min(255,Math.max(0,Math.round(s.z*255)))+(e.z<<8),this.skinData[i+3]=Math.min(255,Math.max(0,Math.round(s.w*255)))+(e.w<<8)}updateBones(){this.boneTexture.needsUpdate=!0,this.mesh.needsUpdate=!0}}const Yr={type:"GsplatSkinning"},Tr=QA(` struct GsplatSkinning { int numSplats; int numBones; usampler2DArray skinTexture; sampler2D boneTexture; }; -`),ro=nA(` +`),nE=QA(` void applyGsplatSkinning( int numSplats, int numBones, usampler2DArray skinTexture, sampler2D boneTexture, @@ -1073,14 +1072,14 @@ void main() { center = quatVec(quat, center) + translate; quaternion = quatQuat(quat, quaternion); } -`);function co(g,A){return new T({inTypes:{gsplat:BA,skinning:Vt},outTypes:{gsplat:BA},globals:()=>[Tt,ro],inputs:{gsplat:g,skinning:A},statements:({inputs:B,outputs:Q})=>{const{skinning:C}=B,{gsplat:E}=Q;return fA(` - ${E} = ${B.gsplat}; - if (isGsplatActive(${E}.flags)) { +`);function aE(t,A){return new V({inTypes:{gsplat:sA,skinning:Yr},outTypes:{gsplat:sA},globals:()=>[Tr,nE],inputs:{gsplat:t,skinning:A},statements:({inputs:s,outputs:i})=>{const{skinning:n}=s,{gsplat:a}=i;return kA(` + ${a} = ${s.gsplat}; + if (isGsplatActive(${a}.flags)) { applyGsplatSkinning( - ${C}.numSplats, ${C}.numBones, - ${C}.skinTexture, ${C}.boneTexture, - ${E}.index, ${E}.center, ${E}.quaternion + ${n}.numSplats, ${n}.numBones, + ${n}.skinTexture, ${n}.boneTexture, + ${a}.index, ${a}.center, ${a}.quaternion ); } - `)}}).outputs.gsplat}function ho({splats:g,extents:A,stepSize:I=1,pointRadius:B=.01,pointShadowScale:Q=2,opacity:C=1,color:E}){const i=new a.Vector3,e=new a.Vector3,n=new a.Quaternion(0,0,0,1);E==null&&(E=(o,r)=>o.set(.55+.45*Math.cos(r.x*1),.55+.45*Math.cos(r.y*1),.55+.45*Math.cos(r.z*1)));const s=new a.Color;for(let o=A.min.z;o=B)return;const l=new a.Vector3().addVectors(w,D).normalize(),d=new a.Vector3().addVectors(D,y).normalize(),u=new a.Vector3().addVectors(y,w).normalize();n(h+1,w,l,u),n(h+1,l,D,d),n(h+1,u,d,y),n(h+1,l,d,u)}for(const h of[-1,1])for(const w of[-1,1])for(const D of[-1,1]){const y=new a.Vector3(h,0,0),l=new a.Vector3(0,w,0),d=new a.Vector3(0,0,D);n(0,y,l,d)}const s=Object.values(i),o=new a.Vector3(C,C,E),r=new a.Quaternion,c=typeof t=="function"?new a.Color:t;for(const h of s)r.setFromUnitVectors(new a.Vector3(0,0,-1),h),typeof t=="function"&&t(c,h),h.multiplyScalar(I),h.add(A),g.pushSplat(h,o,r,1,c)}function lo({text:g,font:A,fontSize:I,color:B,rgb:Q,dotRadius:C,textAlign:E,lineHeight:t,objectScale:i}){A=A??"Arial",I=I??32,B=B??new a.Color(1,1,1),C=C??.8,E=E??"start",t=t??1,i=i??1;const e=g.split(` -`),n=document.createElement("canvas"),s=n.getContext("2d");if(!s)throw new Error("Failed to create canvas context");s.font=`${I}px ${A}`,s.textAlign=E;const o=s.measureText(""),r=o.fontBoundingBoxAscent+o.fontBoundingBoxDescent;let c=Number.POSITIVE_INFINITY,h=Number.NEGATIVE_INFINITY,w=Number.POSITIVE_INFINITY,D=Number.NEGATIVE_INFINITY;for(let F=0;F0){const L=U/255;G.set(f-.5*(d-1),.5*(u-1)-F,0),G.multiplyScalar(i),M.pushSplat(G,J,k,L,Q)}N+=4}const Y=new zA({packedSplats:M});return Y.recolor=B,Y}function yo({url:g,dotRadius:A,subXY:I,forEachSplat:B}){return A=A??.8,I=Math.max(1,Math.floor(I??1)),new zA({constructSplats:async Q=>new Promise((C,E)=>{const t=new Image;t.crossOrigin="anonymous",t.onerror=E,t.onload=()=>{const{width:i,height:e}=t,n=document.createElement("canvas");n.width=i,n.height=e;const s=n.getContext("2d");if(!s){E(new Error("Failed to create canvas context"));return}s.imageSmoothingEnabled=!0,s.imageSmoothingQuality="high";const o=Math.round(i/I),r=Math.round(e/I);s.drawImage(t,0,0,o,r);try{const c=s.getImageData(0,0,o,r),h=new Uint8Array(c.data.buffer),w=new a.Vector3,D=new a.Vector3().setScalar(A),y=new a.Quaternion(0,0,0,1),l=new a.Color;let d=0;for(let u=0;u0){let G=M/255;l.set(h[m+0]/255,h[m+1]/255,h[m+2]/255),w.set(p-.5*(o-1),.5*(r-1)-u,0),D.setScalar(A),y.set(0,0,0,1);let J=!0;if(B){const k=B(o,r,d,w,D,y,G,l);G=k??G,J=k!==null}J&&Q.pushSplat(w,D,y,G,l)}d+=1}C()}catch(c){E(c)}},t.src=g})})}function uo({box:g,cells:A,dotScale:I,color:B,opacity:Q}){A.x=Math.max(1,Math.round(A.x)),A.y=Math.max(1,Math.round(A.y)),A.z=Math.max(1,Math.round(A.z)),Q=Q??1;const C=A.x*A.y*A.z,E=gA("int",A.x),t=gA("int",A.y);gA("int",A.z);const i=HA(0),e=new jg({numSplats:C,generator:UA({index:"int"},{gsplat:BA},({index:s})=>{if(!s)throw new Error("index is undefined");const o=YI(s,E),r=BI(s,E),c=YI(r,t),h=BI(r,t),w=qA({vectorType:"ivec3",x:o,y:c,z:h}),D=ZC(i),y=qA({vectorType:"ivec2",x:s,y:D}),l=WE(y),d=gA("vec3",g.min),u=gA("vec3",g.max),p=xg(u,d),m=BI(pA(sg(w),l),gA("vec3",A));let M,G,J;B?(M=gA("float",B.r),G=gA("float",B.g),J=gA("float",B.b)):{r:M,g:G,b:J}=mg(m).outputs;const k=qA({vectorType:"vec4",r:M,g:G,b:J,a:gA("float",Q)}),N=pA(d,cA(p,m)),Y=sg(gA("float",I)),F=gA("vec4",new a.Quaternion(0,0,0,1));let f=lg({flags:EI("uint","GSPLAT_FLAG_ACTIVE"),index:s,center:N,scales:Y,quaternion:F,rgba:k});return f=n.applyGsplat(f),{gsplat:f}},{globals:()=>[kA]}),update:({time:s})=>{i.value=s,n.update(e),e.updateVersion()}}),n=new tg;return e}const Go={box:new a.Box3(new a.Vector3(-1,-1,-1),new a.Vector3(1,1,1)),density:100,fallDirection:new a.Vector3(-1,-3,1).normalize(),fallVelocity:.02,wanderScale:.04,wanderVariance:2,color1:new a.Color(1,1,1),color2:new a.Color(.5,.5,1),minScale:.001,maxScale:.005,anisoScale:new a.Vector3(1,1,1)},Mo={box:new a.Box3(new a.Vector3(-2,-1,-2),new a.Vector3(2,5,2)),density:10,fallDirection:new a.Vector3(0,-1,0),fallVelocity:2,wanderScale:.1,wanderVariance:1,color1:new a.Color(1,1,1),color2:new a.Color(.25,.25,.5),minScale:.005,maxScale:.01,anisoScale:new a.Vector3(.1,1,.1)};function No({box:g,minY:A,numSplats:I,density:B,anisoScale:Q,minScale:C,maxScale:E,fallDirection:t,fallVelocity:i,wanderScale:e,wanderVariance:n,color1:s,color2:o,opacity:r,onFrame:c}){g=g??new a.Box3(new a.Vector3(-1,-1,-1),new a.Vector3(1,1,1));const h=(g.max.x-g.min.x)*(g.max.y-g.min.y)*(g.max.z-g.min.z);B=B??100,I=I??Math.max(1,Math.min(1e6,Math.round(h*B)));const w=HA(C??.001),D=HA(E??.005),y=OA(((Q==null?void 0:Q.clone())??new a.Vector3(1,1,1)).normalize()),l=OA((t??new a.Vector3(0,-1,0)).normalize()),d=HA(i??.02),u=HA(e??.01),p=HA(n??2),m=OA(s??new a.Color(1,1,1)),M=OA(o??new a.Color(.5,.5,1)),G=HA(r??1),J=HA(0),k=OA(new a.Vector3(0,0,0)),N=OA(g.min),Y=OA(g.max),F=HA(A??Number.NEGATIVE_INFINITY),f=xg(Y,N),U=new jg({numSplats:I,generator:UA({index:"int"},{gsplat:BA},({index:K})=>{if(!K)throw new Error("index not defined");const Z=UI(K),QA=mg(Z).outputs.w;let z=sg(Z),AA=QI(cA(QA,gA("float",100)));AA=xI(cA(EI("float","PI"),AA)),AA=pA(w,cA(AA,xg(D,w)));const $=cA(AA,y),P=QI(cA(QA,gA("float",10))),j=QI(QA),V=VQ(m,M,j),x=cA(V,P),dA=UI(qA({vectorType:"ivec2",x:K,y:gA("int",6837)}));let sA=sg(dA),b=cA(mg(dA).outputs.w,p);b=pA(J,b),z=pA(z,k);const oA=vQ(z,gA("vec3",new a.Vector3(1,1,1)));z=pA(N,cA(f,oA));const rA=gA("vec4",new a.Quaternion(0,0,0,1));sA=xI(pA(sg(b),sA)),sA=cA(sA,u);let H=pA(z,sA),FA=mg(H).outputs.y;FA=WQ(F,FA),H=qA({vector:H,y:FA});let NA=lg({flags:EI("uint","GSPLAT_FLAG_ACTIVE"),index:K,center:H,scales:$,quaternion:rA,rgb:x,opacity:G});return NA=L.applyGsplat(NA),{gsplat:NA}},{globals:()=>[kA]}),update:({object:K,time:Z,deltaTime:QA})=>{J.value=Z,L.update(U);const z=l.value.clone().multiplyScalar(d.value*QA);k.value.add(z),K.visible=G.value>0,c==null||c({object:K,time:Z,deltaTime:QA}),U.updateVersion()}}),L=new tg;return{snow:U,min:N,max:Y,minY:F,color1:m,color2:M,opacity:G,fallVelocity:d,wanderVariance:p,wanderScale:u,fallDirection:l,minScale:w,maxScale:D,anisoScale:y}}const po=Object.freeze(Object.defineProperty({__proto__:null,DEFAULT_RAIN:Mo,DEFAULT_SNOW:Go,snowBox:No,staticBox:uo},Symbol.toStringTag,{value:"Module"})),fg=class fg{static createButton(A,I={}){const B=navigator.xr;if(!B)return null;const Q=B,C=document.createElement("button");A.xr.enabled=!0,A.xr.setReferenceSpaceType("local");function E(){let s=null;async function o(h){console.log("onSessionStarted"),h.addEventListener("end",r),await A.xr.setSession(h),C.textContent="EXIT VR",s=h}function r(){console.log("onSessionEnded"),s==null||s.removeEventListener("end",r),C.textContent="ENTER VR",s=null}C.style.display="",C.style.cursor="pointer",C.style.left="calc(50% - 100px)",C.style.width="200px",C.style.height="100px",C.textContent="ENTER VR";const c={...I,optionalFeatures:[...I.optionalFeatures||[]]};C.onmouseenter=()=>{C.style.opacity="1.0"},C.onmouseleave=()=>{C.style.opacity="0.5"},C.onclick=()=>{s===null?(console.log("requesting session"),Q.requestSession("immersive-vr",c).then(o)):(console.log("ending session"),s.end())}}function t(){C.style.display="none",C.style.cursor="auto",C.style.left="calc(50% - 75px)",C.style.width="150px",C.onmouseenter=null,C.onmouseleave=null,C.onclick=null}function i(){t(),C.textContent="VR NOT SUPPORTED"}function e(s){t(),console.warn("Exception when trying to call xr.isSessionSupported",s),C.textContent="VR NOT ALLOWED"}function n(s){s.style.position="absolute",s.style.bottom="20px",s.style.padding="12px 6px",s.style.border="1px solid #fff",s.style.borderRadius="4px",s.style.background="rgba(0,0,0,0.1)",s.style.color="#fff",s.style.font="normal 13px sans-serif",s.style.textAlign="center",s.style.opacity="0.5",s.style.outline="none",s.style.zIndex="999"}return C.id="VRButton",C.style.display="none",n(C),Q.isSessionSupported("immersive-vr").then(s=>{s?E():i(),s&&fg.xrSessionIsGranted&&C.click()}).catch(e),C}static registerSessionGrantedListener(){const A=navigator.xr;if(!A)return null;const I=A;/WebXRViewer\//i.test(navigator.userAgent)||I.addEventListener("sessiongranted",()=>{fg.xrSessionIsGranted=!0})}};fg.xrSessionIsGranted=!1;let aI=fg;aI.registerSessionGrantedListener();const ko=.5,Fo=.5,Ro=0;var wI=(g=>(g.w="wrist",g.t0="thumb-metacarpal",g.t1="thumb-phalanx-proximal",g.t2="thumb-phalanx-distal",g.t3="thumb-tip",g.i0="index-finger-metacarpal",g.i1="index-finger-phalanx-proximal",g.i2="index-finger-phalanx-intermediate",g.i3="index-finger-phalanx-distal",g.i4="index-finger-tip",g.m0="middle-finger-metacarpal",g.m1="middle-finger-phalanx-proximal",g.m2="middle-finger-phalanx-intermediate",g.m3="middle-finger-phalanx-distal",g.m4="middle-finger-tip",g.r0="ring-finger-metacarpal",g.r1="ring-finger-phalanx-proximal",g.r2="ring-finger-phalanx-intermediate",g.r3="ring-finger-phalanx-distal",g.r4="ring-finger-tip",g.p0="pinky-finger-metacarpal",g.p1="pinky-finger-phalanx-proximal",g.p2="pinky-finger-phalanx-intermediate",g.p3="pinky-finger-phalanx-distal",g.p4="pinky-finger-tip",g))(wI||{});const _I=Object.keys(wI),Jo=_I.length,mo={w:0,t0:1,t1:2,t2:3,t3:4,i0:5,i1:6,i2:7,i3:8,i4:9,m0:10,m1:11,m2:12,m3:13,m4:14,r0:15,r1:16,r2:17,r3:18,r4:19,p0:20,p1:21,p2:22,p3:23,p4:24},pg={w:.02,t0:.02,t1:.014,t2:.0115,t3:.0085,i0:.022,i1:.012,i2:.0085,i3:.0075,i4:.0065,m0:.021,m1:.012,m2:.008,m3:.0075,m4:.0065,r0:.019,r1:.011,r2:.0075,r3:.007,r4:.006,p0:.012,p1:.01,p2:.007,p3:.0065,p4:.0055},Xt=[["w","t0","t1","t2","t3"],["w","i0","i1","i2","i3","i4"],["w","m0","m1","m2","m3","m4"],["w","r0","r1","r2","r3","r4"],["w","p0","p1","p2","p3","p4"]],zt=[[8,10,8,6],[8,19,14,8,6],[8,19,14,8,6],[8,19,14,8,6],[8,19,14,8,6]],fo=["t3","i4","m4","r4","p4"],So=["i4","m4","r4","p4"];var $I=(g=>(g.left="left",g.right="right",g))($I||{});const nI=Object.keys($I);class Yo{constructor(){this.hands={},this.last={},this.values={},this.tests={},this.lastTests={},this.updated=!1}update({xr:A,xrFrame:I}){const B=A.getSession();if(!B)return;const Q=A.getReferenceSpace();if(Q&&I.getJointPose){this.last=this.hands,this.lastTests=this.tests,this.hands={},this.values={},this.tests={};for(const C of B.inputSources){if(!C.hand)continue;const E=C.handedness;this.hands[E]={};for(const t of _I){const i=C.hand.get(wI[t]);if(i){const e=I.getJointPose(i,Q);if(e){const{position:n,orientation:s}=e.transform;this.hands[E][t]={position:new CA.Vector3(n.x,n.y,n.z),quaternion:new CA.Quaternion(s.x,s.y,s.z,s.w),radius:e.radius||.001}}}}}for(const C of nI)for(const{key:E,value:t}of[{key:`${C}AllTips`,value:this.allTipsTouching(C)},{key:`${C}IndexThumb`,value:this.touching(C,"i4",C,"t3")},{key:`${C}MiddleThumb`,value:this.touching(C,"m4",C,"t3")},{key:`${C}RingThumb`,value:this.touching(C,"r4",C,"t3")},{key:`${C}PinkyThumb`,value:this.touching(C,"p4",C,"t3")},{key:`${C}TriTips`,value:this.triTipsTouching(C)}])this.values[E]=t,this.tests[E]=t===1?!0:t===0?!1:this.lastTests[E]??!1}}makeGhostMesh(){const A=new CA.Vector3,I=new CA.Vector3(.01,.01,.01),B=new CA.Quaternion(0,0,0,1),Q=new CA.Color(1,1,1),C=Math.PI*3,E=new CA.Color(1,1,1);let t=1;const i=new zA({onFrame:()=>{let e=0;for(const n of nI){const s=this.values[`${n}MiddleThumb`],o=this.hands[n];for(const[r,c]of Xt.entries())for(let h=1;h.8&&(M*=Math.sqrt(1-((u-.8)/.2)**2)),I.set(.65*M,.5*M,.003),Q.set(.55+.45*Math.sin(A.x*C),.55+.45*Math.sin(A.y*C),.55+.45*Math.sin(A.z*C)),n==="right"&&Q.set(1-Q.r,1-Q.g,1-Q.b),Q.lerp(E,s),t=.75}i.packedSplats.setSplat(e,A,I,B,t,Q),e+=1}}}i.packedSplats.numSplats=e,i.packedSplats.needsUpdate=!0,i.numSplats=e}});return i}distance(A,I,B,Q,C=!1){const E=C?this.last[A]:this.hands[A],t=C?this.last[B]:this.hands[B],i=E==null?void 0:E[I],e=t==null?void 0:t[Q];return!i||!e?Number.POSITIVE_INFINITY:i.position.distanceTo(e.position)}separation(A,I,B,Q,C=!1){const E=this.distance(A,I,B,Q,C);return E===Number.POSITIVE_INFINITY?Number.POSITIVE_INFINITY:E-pg[I]-pg[Q]}touching(A,I,B,Q,C=!1){const E=this.separation(A,I,B,Q,C);return E===Number.POSITIVE_INFINITY?Number.POSITIVE_INFINITY:1-Math.max(0,Math.min(1,E/.01-Ro))}allTipsTouching(A,I=!1){return Math.min(this.touching(A,"t3",A,"i4",I),this.touching(A,"i4",A,"m4",I),this.touching(A,"m4",A,"r4",I),this.touching(A,"r4",A,"p4",I))}triTipsTouching(A,I=!1){return Math.min(this.touching(A,"t3",A,"i4",I),this.touching(A,"i4",A,"m4",I),this.touching(A,"m4",A,"t3",I))}}class Uo{constructor({xrHands:A,control:I,moveInertia:B,rotateInertia:Q}){this.lastGrip={},this.lastPivot=new CA.Vector3,this.rotateVelocity=0,this.velocity=new CA.Vector3,this.xrHands=A,this.control=I,this.moveInertia=B??ko,this.rotateInertia=Q??Fo}update(A){var C,E,t,i,e;const I={};for(const n of nI){const s=this.xrHands.hands[n];s&&this.xrHands.tests[`${n}MiddleThumb`]&&(I[n]=new CA.Vector3().add(((C=s.t3)==null?void 0:C.position)??new CA.Vector3).add(((E=s.i4)==null?void 0:E.position)??new CA.Vector3).add(((t=s.m4)==null?void 0:t.position)??new CA.Vector3).add(((i=s.r4)==null?void 0:i.position)??new CA.Vector3).add(((e=s.p4)==null?void 0:e.position)??new CA.Vector3).multiplyScalar(1/5))}if(I.left&&I.right&&this.lastGrip.left&&this.lastGrip.right){const n=I.left.clone().add(I.right).multiplyScalar(.5),s=this.lastGrip.left.clone().add(this.lastGrip.right).multiplyScalar(.5);this.lastPivot=n;const o=n.clone().applyMatrix4(this.control.matrix);o.sub(s.clone().applyMatrix4(this.control.matrix)),o.multiplyScalar(1/A),this.velocity.lerp(o,1-Math.exp(-20*A));const r=Math.atan2(I.left.z-n.z,I.left.x-n.x),c=Math.atan2(this.lastGrip.left.z-s.z,this.lastGrip.left.x-s.x);let h=r-c;h>Math.PI?h-=Math.PI*2:h<-Math.PI&&(h+=Math.PI*2);const w=h/A,D=Math.exp(-20*A);this.rotateVelocity=this.rotateVelocity*D+w*(1-D)}else if(this.rotateVelocity*=Math.exp(-A/this.rotateInertia),I.left&&this.lastGrip.left){const n=I.left.clone().applyMatrix4(this.control.matrix);n.sub(this.lastGrip.left.clone().applyMatrix4(this.control.matrix)),n.multiplyScalar(1/A),this.velocity.lerp(n,1-Math.exp(-20*A))}else if(I.right&&this.lastGrip.right){const n=I.right.clone().applyMatrix4(this.control.matrix);n.sub(this.lastGrip.right.clone().applyMatrix4(this.control.matrix)),n.multiplyScalar(1/A),this.velocity.lerp(n,1-Math.exp(-20*A))}else this.velocity.multiplyScalar(Math.exp(-A/this.moveInertia));const B=this.lastPivot.clone().negate(),Q=new CA.Matrix4().makeTranslation(B).premultiply(new CA.Matrix4().makeRotationY(this.rotateVelocity*A)).premultiply(new CA.Matrix4().makeTranslation(this.lastPivot));this.control.matrix.multiply(Q),this.control.matrix.decompose(this.control.position,this.control.quaternion,this.control.scale),this.control.updateMatrixWorld(!0),this.control.position.sub(this.velocity.clone().multiplyScalar(A)),this.lastGrip=I}}const xo=1,Lo=2,bo=.002,Ho=.006,Ko=.0015,Zo=.15,qo=.15,vo=.1,Wo=2,Vo=200,To=400,Xo=50,zo={KeyW:new a.Vector3(0,0,-1),KeyS:new a.Vector3(0,0,1),KeyA:new a.Vector3(-1,0,0),KeyD:new a.Vector3(1,0,0),KeyR:new a.Vector3(0,1,0),KeyF:new a.Vector3(0,-1,0)},jo={ArrowUp:new a.Vector3(0,0,-1),ArrowDown:new a.Vector3(0,0,1),ArrowLeft:new a.Vector3(-1,0,0),ArrowRight:new a.Vector3(1,0,0),PageUp:new a.Vector3(0,1,0),PageDown:new a.Vector3(0,-1,0)},Oo={KeyQ:new a.Vector3(0,0,1),KeyE:new a.Vector3(0,0,-1)},Po={Home:new a.Vector3(0,-1,0),End:new a.Vector3(0,1,0),Insert:new a.Vector3(-1,0,0),Delete:new a.Vector3(1,0,0)};class _o{constructor({canvas:A}){this.lastTime=0,this.fpsMovement=new jt({}),this.pointerControls=new Ot({canvas:A})}update(A){const I=performance.now(),B=(I-(this.lastTime||I))/1e3;this.lastTime=I,this.fpsMovement.update(B,A),this.pointerControls.update(B,A)}}class jt{constructor({moveSpeed:A,rollSpeed:I,stickThreshold:B,rotateSpeed:Q,keycodeMoveMapping:C,keycodeRotateMapping:E,gamepadMapping:t,capsMultiplier:i,shiftMultiplier:e,ctrlMultiplier:n,xr:s}={}){this.enable=!0,this.moveSpeed=A??xo,this.rollSpeed=I??Lo,this.stickThreshold=B??vo,this.rotateSpeed=Q??Wo,this.keycodeMoveMapping=C??{...zo,...jo},this.keycodeRotateMapping=E??{...Oo,...Po},this.gamepadMapping=t??{4:"rollLeft",5:"rollRight",6:"ctrl",7:"shift"},this.capsMultiplier=i??10,this.shiftMultiplier=e??5,this.ctrlMultiplier=n??1/5,this.xr=s,this.keydown={},this.keycode={},document.addEventListener("keydown",o=>{this.keydown[o.key]=!0,this.keycode[o.code]=!0}),document.addEventListener("keyup",o=>{this.keydown[o.key]=!1,this.keycode[o.code]=!1})}update(A,I){var n,s;if(!this.enable)return;const B=[new a.Vector2,new a.Vector2],Q=navigator.getGamepads()[0];Q&&(B[0].set(Q.axes[0],Q.axes[1]),B[1].set(Q.axes[2],Q.axes[3]));const C=(Q==null?void 0:Q.buttons.map(o=>o.pressed))||[],E=Array.from(((s=(n=this.xr)==null?void 0:n.getSession())==null?void 0:s.inputSources)??[]);for(const o of E){const r=o.gamepad;if(r)switch(o.handedness){case"none":{B[0].x+=r.axes[0],B[0].y+=r.axes[1],B[1].x+=r.axes[2],B[1].y+=r.axes[3];break}case"left":{B[0].x+=r.axes[2],B[0].y+=r.axes[3];break}case"right":{B[1].x+=r.axes[2],B[1].y+=r.axes[3];break}}}for(const o of B)o.x=Math.abs(o.x)>=this.stickThreshold?o.x:0,o.y=Math.abs(o.y)>=this.stickThreshold?o.y:0;const t=new a.Vector3(B[1].x,B[1].y,0).multiplyScalar(this.rotateSpeed);for(const[o,r]of Object.entries(this.keycodeRotateMapping))this.keycode[o]&&t.add(r);for(const o in this.gamepadMapping)if(C[Number.parseInt(o)])switch(this.gamepadMapping[o]){case"rollLeft":t.z+=1;break;case"rollRight":t.z-=1;break}if(t.multiply(new a.Vector3(this.rotateSpeed,this.rotateSpeed,this.rollSpeed)),t.manhattanLength()>0){t.multiplyScalar(A);const o=new a.Euler().setFromQuaternion(I.quaternion,"YXZ");o.y-=t.x,o.x=Math.max(-Math.PI/2,Math.min(Math.PI/2,o.x-t.y)),o.z=Math.max(-Math.PI,Math.min(Math.PI,o.z+t.z)),I.quaternion.setFromEuler(o)}const i=new a.Vector3(B[0].x,0,B[0].y);for(const[o,r]of Object.entries(this.keycodeMoveMapping))this.keycode[o]&&i.add(r);let e=1;this.keydown.CapsLock&&(e*=this.capsMultiplier),(this.keycode.ShiftLeft||this.keycode.ShiftRight)&&(e*=this.shiftMultiplier),(this.keycode.ControlLeft||this.keycode.ControlRight)&&(e*=this.ctrlMultiplier);for(const o in this.gamepadMapping)if(C[Number.parseInt(o)])switch(this.gamepadMapping[o]){case"shift":e*=this.shiftMultiplier;break;case"ctrl":e*=this.ctrlMultiplier;break}i.applyQuaternion(I.quaternion),I.position.add(i.multiplyScalar(this.moveSpeed*e*A))}}class Ot{constructor({canvas:A,rotateSpeed:I,slideSpeed:B,scrollSpeed:Q,swapRotateSlide:C,reverseRotate:E,reverseSlide:t,reverseSwipe:i,reverseScroll:e,moveInertia:n,rotateInertia:s,doublePress:o}){this.enable=!0,this.canvas=A,this.rotateSpeed=I??bo,this.slideSpeed=B??Ho,this.scrollSpeed=Q??Ko,this.swapRotateSlide=C??!1,this.reverseRotate=E??!1,this.reverseSlide=t??!1,this.reverseSwipe=i??!1,this.reverseScroll=e??!1,this.moveInertia=n??qo,this.rotateInertia=s??Zo,this.doublePress=o??(()=>{}),this.doublePressLimitMs=To,this.doublePressDistance=Xo,this.lastUp=null,this.rotating=null,this.sliding=null,this.dualPress=!1,this.scroll=new a.Vector3,this.rotateVelocity=new a.Vector3,this.moveVelocity=new a.Vector3,A.addEventListener("pointerdown",c=>{const h=this.getPointerPosition(c),w=h.clone(),D=h.clone(),y=!this.swapRotateSlide&&!this.rotating&&(c.pointerType!=="mouse"||c.button===0)||this.swapRotateSlide&&this.sliding&&!this.rotating&&(c.pointerType!=="mouse"||c.button===1),{pointerId:l,timeStamp:d}=c;if(y)this.rotating={initial:w,last:D,position:h,pointerId:l,timeStamp:d},A.setPointerCapture(c.pointerId),this.dualPress=!1;else if(!this.sliding){const u=c.pointerType==="mouse"?c.button:void 0;this.sliding={initial:w,last:D,position:h,pointerId:l,button:u,timeStamp:d},A.setPointerCapture(c.pointerId),this.dualPress=this.rotating!=null&&d-this.rotating.timeStamp{var D,y;((D=this.rotating)==null?void 0:D.pointerId)===c.pointerId?(this.rotating=null,A.releasePointerCapture(c.pointerId),this.dualPress&&this.sliding&&(A.releasePointerCapture(this.sliding.pointerId),this.sliding=null)):((y=this.sliding)==null?void 0:y.pointerId)===c.pointerId&&(this.sliding=null,A.releasePointerCapture(c.pointerId),this.dualPress&&this.rotating&&(A.releasePointerCapture(this.rotating.pointerId),this.rotating=null));const h=this.getPointerPosition(c),w=this.lastUp;if(this.lastUp={position:h,time:c.timeStamp},w&&w.position.distanceTo(h){var h,w;((h=this.rotating)==null?void 0:h.pointerId)===c.pointerId?this.rotating.position=this.getPointerPosition(c):((w=this.sliding)==null?void 0:w.pointerId)===c.pointerId&&(this.sliding.position=this.getPointerPosition(c))}),A.addEventListener("contextmenu",c=>{c.preventDefault()}),A.addEventListener("wheel",c=>{this.scroll.add(new a.Vector3(c.deltaX,c.deltaY,c.deltaZ)),c.preventDefault()})}getPointerPosition(A){const I=this.canvas.getBoundingClientRect();return new a.Vector2(A.clientX-I.left,A.clientY-I.top)}update(A,I){if(!this.enable)return;if(this.dualPress&&this.rotating&&this.sliding){const Q=[this.rotating.position.clone().sub(this.rotating.last),this.sliding.position.clone().sub(this.sliding.last)],C=Q[0].dot(Q[1]);if(C>=.2){const E=Q[0].clone().add(Q[1]),t=new a.Vector3(E.x,-E.y,0);t.multiplyScalar(this.slideSpeed*(this.reverseSwipe?1:-1)),t.applyQuaternion(I.quaternion),I.position.add(t),this.moveVelocity=t.clone().multiplyScalar(1/A)}else if(C<=-.2){const E=this.sliding.last.clone().sub(this.rotating.last),t=E.length();E.multiplyScalar(1/t).normalize();const i=new a.Vector2(-E.y,E.x),e=[Q[0].dot(E),Q[1].dot(E)],n=[Q[0].dot(i),Q[1].dot(i)],s=this.rotating.last.clone().add(this.sliding.last).multiplyScalar(.5);let o=new a.Vector3;if(I instanceof a.Camera){const y=new a.Vector2(s.x/this.canvas.clientWidth*2-1,-(s.y/this.canvas.clientHeight)*2+1),l=new a.Raycaster;l.setFromCamera(y,I),o=l.ray.direction}const r=e[1]-e[0],c=o.multiplyScalar(r*this.slideSpeed);I.position.add(c),this.moveVelocity=c.clone().multiplyScalar(1/A);const h=[Math.atan(n[0]/(-.5*t)),Math.atan(n[1]/(.5*t))],w=.5*(h[0]+h[1]),D=new a.Euler().setFromQuaternion(I.quaternion,"YXZ");D.z=Math.max(-Math.PI,Math.min(Math.PI,D.z+.5*w)),I.quaternion.setFromEuler(D)}this.rotating.last.copy(this.rotating.position),this.sliding.last.copy(this.sliding.position)}else{const Q=new a.Vector3;if(this.rotating&&!this.dualPress){const E=this.rotating.position.clone().sub(this.rotating.last);this.rotating.last.copy(this.rotating.position),Q.set(E.x,E.y,0),Q.multiplyScalar(this.rotateSpeed*(this.reverseRotate?-1:1)),this.rotateVelocity=Q.clone().multiplyScalar(1/A)}else this.rotateVelocity.multiplyScalar(Math.exp(-A/this.rotateInertia)),Q.addScaledVector(this.rotateVelocity,A);const C=new a.Euler().setFromQuaternion(I.quaternion,"YXZ");if(C.y-=Q.x,C.x=Math.max(-Math.PI/2,Math.min(Math.PI/2,C.x-Q.y)),C.z*=Math.exp(-0*A),I.quaternion.setFromEuler(C),this.sliding&&!this.dualPress){const E=this.sliding.position.clone().sub(this.sliding.last);this.sliding.last.copy(this.sliding.position);const t=this.sliding.button!==2?new a.Vector3(E.x,0,E.y):new a.Vector3(E.x,-E.y,0);t.multiplyScalar(this.slideSpeed*(this.reverseSlide?-1:1)),t.applyQuaternion(I.quaternion),I.position.add(t),this.moveVelocity=t.clone().multiplyScalar(1/A)}else this.moveVelocity.multiplyScalar(Math.exp(-A/this.moveInertia)),I.position.addScaledVector(this.moveVelocity,A)}const B=this.scroll.multiplyScalar(this.scrollSpeed);B.set(B.x,B.z,B.y),this.reverseScroll&&B.multiplyScalar(-1),B.applyQuaternion(I.quaternion),I.position.add(B),this.scroll.set(0,0,0)}}exports.FINGER_TIPS=So;exports.ForgeControls=_o;exports.ForgeRenderer=Zg;exports.ForgeViewpoint=Kg;exports.FpsMovement=jt;exports.HANDS=nI;exports.Hand=$I;exports.HandMovement=Uo;exports.JOINT_IDS=_I;exports.JOINT_INDEX=mo;exports.JOINT_RADIUS=pg;exports.JOINT_SEGMENTS=Xt;exports.JOINT_SEGMENT_STEPS=zt;exports.JOINT_TIPS=fo;exports.JointEnum=wI;exports.NUM_JOINTS=Jo;exports.PackedSplats=YA;exports.PlyReader=Hg;exports.PointerControls=Ot;exports.Readback=Lg;exports.Sint8ToFloat=MQ;exports.SplatAccumulator=CI;exports.SplatEdit=bg;exports.SplatEditRgbaBlendMode=Ft;exports.SplatEditSdf=Rt;exports.SplatEditSdfType=kt;exports.SplatEdits=Jt;exports.SplatFileType=Eg;exports.SplatGenerator=jg;exports.SplatLoader=Xn;exports.SplatMesh=zA;exports.SplatModifier=Yt;exports.SplatSkinning=oo;exports.SplatTransformer=tg;exports.SpzReader=qt;exports.SpzWriter=VA;exports.Uint8ToFloat=GQ;exports.VRButton=aI;exports.XrHands=Yo;exports.constructAxes=wo;exports.constructGrid=ho;exports.constructSpherePoints=Do;exports.dyno=Rn;exports.flipPixels=JQ;exports.floatToSint8=Jg;exports.floatToUint8=KA;exports.fromHalf=GA;exports.generators=po;exports.getSplatFileType=jI;exports.imageSplats=yo;exports.isAndroid=FQ;exports.isMobile=kQ;exports.isOculus=RQ;exports.pixelsToPngUrl=mQ;exports.setPackedSplat=iI;exports.textSplats=lo;exports.toHalf=Ag;exports.transcodeSpz=no;exports.unpackSplat=Ug;exports.unpackSplats=OI;exports.utils=js; + `)}}).outputs.gsplat}function rE({splats:t,extents:A,stepSize:e=1,pointRadius:s=.01,pointShadowScale:i=2,opacity:n=1,color:a}){const g=new B.Vector3,I=new B.Vector3,Q=new B.Quaternion(0,0,0,1);a==null&&(a=(E,C)=>E.set(.55+.45*Math.cos(C.x*1),.55+.45*Math.cos(C.y*1),.55+.45*Math.cos(C.z*1)));const o=new B.Color;for(let E=A.min.z;E=s)return;const d=new B.Vector3().addVectors(l,u).normalize(),p=new B.Vector3().addVectors(u,w).normalize(),y=new B.Vector3().addVectors(w,l).normalize();Q(h+1,l,d,y),Q(h+1,d,u,p),Q(h+1,y,p,w),Q(h+1,d,p,y)}for(const h of[-1,1])for(const l of[-1,1])for(const u of[-1,1]){const w=new B.Vector3(h,0,0),d=new B.Vector3(0,l,0),p=new B.Vector3(0,0,u);Q(0,w,d,p)}const o=Object.values(g),E=new B.Vector3(n,n,a),C=new B.Quaternion,c=typeof r=="function"?new B.Color:r;for(const h of o)C.setFromUnitVectors(new B.Vector3(0,0,-1),h),typeof r=="function"&&r(c,h),h.multiplyScalar(e),h.add(A),t.pushSplat(h,E,C,1,c)}function IE({text:t,font:A,fontSize:e,color:s,rgb:i,dotRadius:n,textAlign:a,lineHeight:r,objectScale:g}){A=A??"Arial",e=e??32,s=s??new B.Color(1,1,1),n=n??.8,a=a??"start",r=r??1,g=g??1;const I=t.split(` +`),Q=document.createElement("canvas"),o=Q.getContext("2d");if(!o)throw new Error("Failed to create canvas context");o.font=`${e}px ${A}`,o.textAlign=a;const E=o.measureText(""),C=E.fontBoundingBoxAscent+E.fontBoundingBoxDescent;let c=Number.POSITIVE_INFINITY,h=Number.NEGATIVE_INFINITY,l=Number.POSITIVE_INFINITY,u=Number.NEGATIVE_INFINITY;for(let N=0;N0){const L=G/255;f.set(U-.5*(p-1),.5*(y-1)-N,0),f.multiplyScalar(g),D.pushSplat(f,R,S,L,i)}M+=4}const b=new PA({packedSplats:D});return b.recolor=s,b}function BE({url:t,dotRadius:A,subXY:e,forEachSplat:s}){return A=A??.8,e=Math.max(1,Math.floor(e??1)),new PA({constructSplats:async i=>new Promise((n,a)=>{const r=new Image;r.crossOrigin="anonymous",r.onerror=a,r.onload=()=>{const{width:g,height:I}=r,Q=document.createElement("canvas");Q.width=g,Q.height=I;const o=Q.getContext("2d");if(!o){a(new Error("Failed to create canvas context"));return}o.imageSmoothingEnabled=!0,o.imageSmoothingQuality="high";const E=Math.round(g/e),C=Math.round(I/e);o.drawImage(r,0,0,E,C);try{const c=o.getImageData(0,0,E,C),h=new Uint8Array(c.data.buffer),l=new B.Vector3,u=new B.Vector3().setScalar(A),w=new B.Quaternion(0,0,0,1),d=new B.Color;let p=0;for(let y=0;y0){let f=D/255;d.set(h[F+0]/255,h[F+1]/255,h[F+2]/255),l.set(m-.5*(E-1),.5*(C-1)-y,0),u.setScalar(A),w.set(0,0,0,1);let R=!0;if(s){const S=s(E,C,p,l,u,w,f,d);f=S??f,R=S!==null}R&&i.pushSplat(l,u,w,f,d)}p+=1}n()}catch(c){a(c)}},r.src=t})})}function QE({box:t,cells:A,dotScale:e,color:s,opacity:i}){A.x=Math.max(1,Math.round(A.x)),A.y=Math.max(1,Math.round(A.y)),A.z=Math.max(1,Math.round(A.z)),i=i??1;const n=A.x*A.y*A.z,a=tA("int",A.x),r=tA("int",A.y);tA("int",A.z);const g=JA(0),I=new Pt({numSplats:n,generator:GA({index:"int"},{gsplat:sA},({index:o})=>{if(!o)throw new Error("index is undefined");const E=Fe(o,a),C=$t(o,a),c=Fe(C,r),h=$t(C,r),l=HA({vectorType:"ivec3",x:E,y:c,z:h}),u=bn(g),w=HA({vectorType:"ivec2",x:o,y:u}),d=Ja(w),p=tA("vec3",t.min),y=tA("vec3",t.max),m=Gt(y,p),F=$t(mA(rt(l),d),tA("vec3",A));let D,f,R;s?(D=tA("float",s.r),f=tA("float",s.g),R=tA("float",s.b)):{r:D,g:f,b:R}=Nt(F).outputs;const S=HA({vectorType:"vec4",r:D,g:f,b:R,a:tA("float",i)}),M=mA(p,cA(m,F)),b=rt(tA("float",e)),N=tA("vec4",new B.Quaternion(0,0,0,1));let U=lt({flags:ee("uint","GSPLAT_FLAG_ACTIVE"),index:o,center:M,scales:b,quaternion:N,rgba:S});return U=Q.applyGsplat(U),{gsplat:U}},{globals:()=>[MA]}),update:({time:o})=>{g.value=o,Q.update(I),I.updateVersion()}}),Q=new nt;return I}const EE={box:new B.Box3(new B.Vector3(-1,-1,-1),new B.Vector3(1,1,1)),density:100,fallDirection:new B.Vector3(-1,-3,1).normalize(),fallVelocity:.02,wanderScale:.04,wanderVariance:2,color1:new B.Color(1,1,1),color2:new B.Color(.5,.5,1),minScale:.001,maxScale:.005,anisoScale:new B.Vector3(1,1,1)},CE={box:new B.Box3(new B.Vector3(-2,-1,-2),new B.Vector3(2,5,2)),density:10,fallDirection:new B.Vector3(0,-1,0),fallVelocity:2,wanderScale:.1,wanderVariance:1,color1:new B.Color(1,1,1),color2:new B.Color(.25,.25,.5),minScale:.005,maxScale:.01,anisoScale:new B.Vector3(.1,1,.1)};function cE({box:t,minY:A,numSplats:e,density:s,anisoScale:i,minScale:n,maxScale:a,fallDirection:r,fallVelocity:g,wanderScale:I,wanderVariance:Q,color1:o,color2:E,opacity:C,onFrame:c}){t=t??new B.Box3(new B.Vector3(-1,-1,-1),new B.Vector3(1,1,1));const h=(t.max.x-t.min.x)*(t.max.y-t.min.y)*(t.max.z-t.min.z);s=s??100,e=e??Math.max(1,Math.min(1e6,Math.round(h*s)));const l=JA(n??.001),u=JA(a??.005),w=OA(((i==null?void 0:i.clone())??new B.Vector3(1,1,1)).normalize()),d=OA((r??new B.Vector3(0,-1,0)).normalize()),p=JA(g??.02),y=JA(I??.01),m=JA(Q??2),F=OA(o??new B.Color(1,1,1)),D=OA(E??new B.Color(.5,.5,1)),f=JA(C??1),R=JA(0),S=OA(new B.Vector3(0,0,0)),M=OA(t.min),b=OA(t.max),N=JA(A??Number.NEGATIVE_INFINITY),U=Gt(b,M),G=new Pt({numSplats:e,generator:GA({index:"int"},{gsplat:sA},({index:T})=>{if(!T)throw new Error("index not defined");const H=Ne(T),iA=Nt(H).outputs.w;let P=rt(H),AA=Ae(cA(iA,tA("float",100)));AA=ke(cA(ee("float","PI"),AA)),AA=mA(l,cA(AA,Gt(u,l)));const $=cA(AA,w),X=Ae(cA(iA,tA("float",10))),Z=Ae(iA),_=Ji(F,D,Z),v=cA(_,X),yA=Ne(HA({vectorType:"ivec2",x:T,y:tA("int",6837)}));let oA=rt(yA),J=cA(Nt(yA).outputs.w,m);J=mA(R,J),P=mA(P,S);const EA=vi(P,tA("vec3",new B.Vector3(1,1,1)));P=mA(M,cA(U,EA));const CA=tA("vec4",new B.Quaternion(0,0,0,1));oA=ke(mA(rt(J),oA)),oA=cA(oA,y);let Y=mA(P,oA),xA=Nt(Y).outputs.y;xA=Li(N,xA),Y=HA({vector:Y,y:xA});let fA=lt({flags:ee("uint","GSPLAT_FLAG_ACTIVE"),index:T,center:Y,scales:$,quaternion:CA,rgb:v,opacity:f});return fA=L.applyGsplat(fA),{gsplat:fA}},{globals:()=>[MA]}),update:({object:T,time:H,deltaTime:iA})=>{R.value=H,L.update(G);const P=d.value.clone().multiplyScalar(p.value*iA);S.value.add(P),T.visible=f.value>0,c==null||c({object:T,time:H,deltaTime:iA}),G.updateVersion()}}),L=new nt;return{snow:G,min:M,max:b,minY:N,color1:F,color2:D,opacity:f,fallVelocity:p,wanderVariance:m,wanderScale:y,fallDirection:d,minScale:l,maxScale:u,anisoScale:w}}const hE=Object.freeze(Object.defineProperty({__proto__:null,DEFAULT_RAIN:CE,DEFAULT_SNOW:EE,snowBox:cE,staticBox:QE},Symbol.toStringTag,{value:"Module"})),kt=class kt{static createButton(A,e={}){const s=navigator.xr;if(!s)return null;const i=s,n=document.createElement("button");A.xr.enabled=!0,A.xr.setReferenceSpaceType("local");function a(){let o=null;async function E(h){console.log("onSessionStarted"),h.addEventListener("end",C),await A.xr.setSession(h),n.textContent="EXIT VR",o=h}function C(){console.log("onSessionEnded"),o==null||o.removeEventListener("end",C),n.textContent="ENTER VR",o=null}n.style.display="",n.style.cursor="pointer",n.style.left="calc(50% - 100px)",n.style.width="200px",n.style.height="100px",n.textContent="ENTER VR";const c={...e,optionalFeatures:[...e.optionalFeatures||[]]};n.onmouseenter=()=>{n.style.opacity="1.0"},n.onmouseleave=()=>{n.style.opacity="0.5"},n.onclick=()=>{o===null?(console.log("requesting session"),i.requestSession("immersive-vr",c).then(E)):(console.log("ending session"),o.end())}}function r(){n.style.display="none",n.style.cursor="auto",n.style.left="calc(50% - 75px)",n.style.width="150px",n.onmouseenter=null,n.onmouseleave=null,n.onclick=null}function g(){r(),n.textContent="VR NOT SUPPORTED"}function I(o){r(),console.warn("Exception when trying to call xr.isSessionSupported",o),n.textContent="VR NOT ALLOWED"}function Q(o){o.style.position="absolute",o.style.bottom="20px",o.style.padding="12px 6px",o.style.border="1px solid #fff",o.style.borderRadius="4px",o.style.background="rgba(0,0,0,0.1)",o.style.color="#fff",o.style.font="normal 13px sans-serif",o.style.textAlign="center",o.style.opacity="0.5",o.style.outline="none",o.style.zIndex="999"}return n.id="VRButton",n.style.display="none",Q(n),i.isSessionSupported("immersive-vr").then(o=>{o?a():g(),o&&kt.xrSessionIsGranted&&n.click()}).catch(I),n}static registerSessionGrantedListener(){const A=navigator.xr;if(!A)return null;const e=A;/WebXRViewer\//i.test(navigator.userAgent)||e.addEventListener("sessiongranted",()=>{kt.xrSessionIsGranted=!0})}};kt.xrSessionIsGranted=!1;let ge=kt;ge.registerSessionGrantedListener();const lE=.5,uE=.5,dE=0;var Ce=(t=>(t.w="wrist",t.t0="thumb-metacarpal",t.t1="thumb-phalanx-proximal",t.t2="thumb-phalanx-distal",t.t3="thumb-tip",t.i0="index-finger-metacarpal",t.i1="index-finger-phalanx-proximal",t.i2="index-finger-phalanx-intermediate",t.i3="index-finger-phalanx-distal",t.i4="index-finger-tip",t.m0="middle-finger-metacarpal",t.m1="middle-finger-phalanx-proximal",t.m2="middle-finger-phalanx-intermediate",t.m3="middle-finger-phalanx-distal",t.m4="middle-finger-tip",t.r0="ring-finger-metacarpal",t.r1="ring-finger-phalanx-proximal",t.r2="ring-finger-phalanx-intermediate",t.r3="ring-finger-phalanx-distal",t.r4="ring-finger-tip",t.p0="pinky-finger-metacarpal",t.p1="pinky-finger-phalanx-proximal",t.p2="pinky-finger-phalanx-intermediate",t.p3="pinky-finger-phalanx-distal",t.p4="pinky-finger-tip",t))(Ce||{});const Ve=Object.keys(Ce),wE=Ve.length,yE={w:0,t0:1,t1:2,t2:3,t3:4,i0:5,i1:6,i2:7,i3:8,i4:9,m0:10,m1:11,m2:12,m3:13,m4:14,r0:15,r1:16,r2:17,r3:18,r4:19,p0:20,p1:21,p2:22,p3:23,p4:24},mt={w:.02,t0:.02,t1:.014,t2:.0115,t3:.0085,i0:.022,i1:.012,i2:.0085,i3:.0075,i4:.0065,m0:.021,m1:.012,m2:.008,m3:.0075,m4:.0065,r0:.019,r1:.011,r2:.0075,r3:.007,r4:.006,p0:.012,p1:.01,p2:.007,p3:.0065,p4:.0055},Hr=[["w","t0","t1","t2","t3"],["w","i0","i1","i2","i3","i4"],["w","m0","m1","m2","m3","m4"],["w","r0","r1","r2","r3","r4"],["w","p0","p1","p2","p3","p4"]],Kr=[[8,10,8,6],[8,19,14,8,6],[8,19,14,8,6],[8,19,14,8,6],[8,19,14,8,6]],pE=["t3","i4","m4","r4","p4"],DE=["i4","m4","r4","p4"];var Pe=(t=>(t.left="left",t.right="right",t))(Pe||{});const oe=Object.keys(Pe);class fE{constructor(){this.hands={},this.last={},this.values={},this.tests={},this.lastTests={},this.updated=!1}update({xr:A,xrFrame:e}){const s=A.getSession();if(!s)return;const i=A.getReferenceSpace();if(i&&e.getJointPose){this.last=this.hands,this.lastTests=this.tests,this.hands={},this.values={},this.tests={};for(const n of s.inputSources){if(!n.hand)continue;const a=n.handedness;this.hands[a]={};for(const r of Ve){const g=n.hand.get(Ce[r]);if(g){const I=e.getJointPose(g,i);if(I){const{position:Q,orientation:o}=I.transform;this.hands[a][r]={position:new nA.Vector3(Q.x,Q.y,Q.z),quaternion:new nA.Quaternion(o.x,o.y,o.z,o.w),radius:I.radius||.001}}}}}for(const n of oe)for(const{key:a,value:r}of[{key:`${n}AllTips`,value:this.allTipsTouching(n)},{key:`${n}IndexThumb`,value:this.touching(n,"i4",n,"t3")},{key:`${n}MiddleThumb`,value:this.touching(n,"m4",n,"t3")},{key:`${n}RingThumb`,value:this.touching(n,"r4",n,"t3")},{key:`${n}PinkyThumb`,value:this.touching(n,"p4",n,"t3")},{key:`${n}TriTips`,value:this.triTipsTouching(n)}])this.values[a]=r,this.tests[a]=r===1?!0:r===0?!1:this.lastTests[a]??!1}}makeGhostMesh(){const A=new nA.Vector3,e=new nA.Vector3(.01,.01,.01),s=new nA.Quaternion(0,0,0,1),i=new nA.Color(1,1,1),n=Math.PI*3,a=new nA.Color(1,1,1);let r=1;const g=new PA({onFrame:()=>{let I=0;for(const Q of oe){const o=this.values[`${Q}MiddleThumb`],E=this.hands[Q];for(const[C,c]of Hr.entries())for(let h=1;h.8&&(D*=Math.sqrt(1-((y-.8)/.2)**2)),e.set(.65*D,.5*D,.003),i.set(.55+.45*Math.sin(A.x*n),.55+.45*Math.sin(A.y*n),.55+.45*Math.sin(A.z*n)),Q==="right"&&i.set(1-i.r,1-i.g,1-i.b),i.lerp(a,o),r=.75}g.packedSplats.setSplat(I,A,e,s,r,i),I+=1}}}g.packedSplats.numSplats=I,g.packedSplats.needsUpdate=!0,g.numSplats=I}});return g}distance(A,e,s,i,n=!1){const a=n?this.last[A]:this.hands[A],r=n?this.last[s]:this.hands[s],g=a==null?void 0:a[e],I=r==null?void 0:r[i];return!g||!I?Number.POSITIVE_INFINITY:g.position.distanceTo(I.position)}separation(A,e,s,i,n=!1){const a=this.distance(A,e,s,i,n);return a===Number.POSITIVE_INFINITY?Number.POSITIVE_INFINITY:a-mt[e]-mt[i]}touching(A,e,s,i,n=!1){const a=this.separation(A,e,s,i,n);return a===Number.POSITIVE_INFINITY?Number.POSITIVE_INFINITY:1-Math.max(0,Math.min(1,a/.01-dE))}allTipsTouching(A,e=!1){return Math.min(this.touching(A,"t3",A,"i4",e),this.touching(A,"i4",A,"m4",e),this.touching(A,"m4",A,"r4",e),this.touching(A,"r4",A,"p4",e))}triTipsTouching(A,e=!1){return Math.min(this.touching(A,"t3",A,"i4",e),this.touching(A,"i4",A,"m4",e),this.touching(A,"m4",A,"t3",e))}}class mE{constructor({xrHands:A,control:e,moveInertia:s,rotateInertia:i}){this.lastGrip={},this.lastPivot=new nA.Vector3,this.rotateVelocity=0,this.velocity=new nA.Vector3,this.xrHands=A,this.control=e,this.moveInertia=s??lE,this.rotateInertia=i??uE}update(A){var n,a,r,g,I;const e={};for(const Q of oe){const o=this.xrHands.hands[Q];o&&this.xrHands.tests[`${Q}MiddleThumb`]&&(e[Q]=new nA.Vector3().add(((n=o.t3)==null?void 0:n.position)??new nA.Vector3).add(((a=o.i4)==null?void 0:a.position)??new nA.Vector3).add(((r=o.m4)==null?void 0:r.position)??new nA.Vector3).add(((g=o.r4)==null?void 0:g.position)??new nA.Vector3).add(((I=o.p4)==null?void 0:I.position)??new nA.Vector3).multiplyScalar(1/5))}if(e.left&&e.right&&this.lastGrip.left&&this.lastGrip.right){const Q=e.left.clone().add(e.right).multiplyScalar(.5),o=this.lastGrip.left.clone().add(this.lastGrip.right).multiplyScalar(.5);this.lastPivot=Q;const E=Q.clone().applyMatrix4(this.control.matrix);E.sub(o.clone().applyMatrix4(this.control.matrix)),E.multiplyScalar(1/A),this.velocity.lerp(E,1-Math.exp(-20*A));const C=Math.atan2(e.left.z-Q.z,e.left.x-Q.x),c=Math.atan2(this.lastGrip.left.z-o.z,this.lastGrip.left.x-o.x);let h=C-c;h>Math.PI?h-=Math.PI*2:h<-Math.PI&&(h+=Math.PI*2);const l=h/A,u=Math.exp(-20*A);this.rotateVelocity=this.rotateVelocity*u+l*(1-u)}else if(this.rotateVelocity*=Math.exp(-A/this.rotateInertia),e.left&&this.lastGrip.left){const Q=e.left.clone().applyMatrix4(this.control.matrix);Q.sub(this.lastGrip.left.clone().applyMatrix4(this.control.matrix)),Q.multiplyScalar(1/A),this.velocity.lerp(Q,1-Math.exp(-20*A))}else if(e.right&&this.lastGrip.right){const Q=e.right.clone().applyMatrix4(this.control.matrix);Q.sub(this.lastGrip.right.clone().applyMatrix4(this.control.matrix)),Q.multiplyScalar(1/A),this.velocity.lerp(Q,1-Math.exp(-20*A))}else this.velocity.multiplyScalar(Math.exp(-A/this.moveInertia));const s=this.lastPivot.clone().negate(),i=new nA.Matrix4().makeTranslation(s).premultiply(new nA.Matrix4().makeRotationY(this.rotateVelocity*A)).premultiply(new nA.Matrix4().makeTranslation(this.lastPivot));this.control.matrix.multiply(i),this.control.matrix.decompose(this.control.position,this.control.quaternion,this.control.scale),this.control.updateMatrixWorld(!0),this.control.position.sub(this.velocity.clone().multiplyScalar(A)),this.lastGrip=e}}const ME=1,xE=2,SE=.002,FE=.006,NE=.0015,kE=.15,RE=.15,UE=.1,GE=2,bE=200,vE=400,LE=50,JE={KeyW:new B.Vector3(0,0,-1),KeyS:new B.Vector3(0,0,1),KeyA:new B.Vector3(-1,0,0),KeyD:new B.Vector3(1,0,0),KeyR:new B.Vector3(0,1,0),KeyF:new B.Vector3(0,-1,0)},YE={ArrowUp:new B.Vector3(0,0,-1),ArrowDown:new B.Vector3(0,0,1),ArrowLeft:new B.Vector3(-1,0,0),ArrowRight:new B.Vector3(1,0,0),PageUp:new B.Vector3(0,1,0),PageDown:new B.Vector3(0,-1,0)},TE={KeyQ:new B.Vector3(0,0,1),KeyE:new B.Vector3(0,0,-1)},HE={Home:new B.Vector3(0,-1,0),End:new B.Vector3(0,1,0),Insert:new B.Vector3(-1,0,0),Delete:new B.Vector3(1,0,0)};class KE{constructor({canvas:A}){this.lastTime=0,this.fpsMovement=new qr({}),this.pointerControls=new zr({canvas:A})}update(A){const e=performance.now(),s=(e-(this.lastTime||e))/1e3;this.lastTime=e,this.fpsMovement.update(s,A),this.pointerControls.update(s,A)}}class qr{constructor({moveSpeed:A,rollSpeed:e,stickThreshold:s,rotateSpeed:i,keycodeMoveMapping:n,keycodeRotateMapping:a,gamepadMapping:r,capsMultiplier:g,shiftMultiplier:I,ctrlMultiplier:Q,xr:o}={}){this.enable=!0,this.moveSpeed=A??ME,this.rollSpeed=e??xE,this.stickThreshold=s??UE,this.rotateSpeed=i??GE,this.keycodeMoveMapping=n??{...JE,...YE},this.keycodeRotateMapping=a??{...TE,...HE},this.gamepadMapping=r??{4:"rollLeft",5:"rollRight",6:"ctrl",7:"shift"},this.capsMultiplier=g??10,this.shiftMultiplier=I??5,this.ctrlMultiplier=Q??1/5,this.xr=o,this.keydown={},this.keycode={},document.addEventListener("keydown",E=>{this.keydown[E.key]=!0,this.keycode[E.code]=!0}),document.addEventListener("keyup",E=>{this.keydown[E.key]=!1,this.keycode[E.code]=!1})}update(A,e){var Q,o;if(!this.enable)return;const s=[new B.Vector2,new B.Vector2],i=navigator.getGamepads()[0];i&&(s[0].set(i.axes[0],i.axes[1]),s[1].set(i.axes[2],i.axes[3]));const n=(i==null?void 0:i.buttons.map(E=>E.pressed))||[],a=Array.from(((o=(Q=this.xr)==null?void 0:Q.getSession())==null?void 0:o.inputSources)??[]);for(const E of a){const C=E.gamepad;if(C)switch(E.handedness){case"none":{s[0].x+=C.axes[0],s[0].y+=C.axes[1],s[1].x+=C.axes[2],s[1].y+=C.axes[3];break}case"left":{s[0].x+=C.axes[2],s[0].y+=C.axes[3];break}case"right":{s[1].x+=C.axes[2],s[1].y+=C.axes[3];break}}}for(const E of s)E.x=Math.abs(E.x)>=this.stickThreshold?E.x:0,E.y=Math.abs(E.y)>=this.stickThreshold?E.y:0;const r=new B.Vector3(s[1].x,s[1].y,0).multiplyScalar(this.rotateSpeed);for(const[E,C]of Object.entries(this.keycodeRotateMapping))this.keycode[E]&&r.add(C);for(const E in this.gamepadMapping)if(n[Number.parseInt(E)])switch(this.gamepadMapping[E]){case"rollLeft":r.z+=1;break;case"rollRight":r.z-=1;break}if(r.multiply(new B.Vector3(this.rotateSpeed,this.rotateSpeed,this.rollSpeed)),r.manhattanLength()>0){r.multiplyScalar(A);const E=new B.Euler().setFromQuaternion(e.quaternion,"YXZ");E.y-=r.x,E.x=Math.max(-Math.PI/2,Math.min(Math.PI/2,E.x-r.y)),E.z=Math.max(-Math.PI,Math.min(Math.PI,E.z+r.z)),e.quaternion.setFromEuler(E)}const g=new B.Vector3(s[0].x,0,s[0].y);for(const[E,C]of Object.entries(this.keycodeMoveMapping))this.keycode[E]&&g.add(C);let I=1;this.keydown.CapsLock&&(I*=this.capsMultiplier),(this.keycode.ShiftLeft||this.keycode.ShiftRight)&&(I*=this.shiftMultiplier),(this.keycode.ControlLeft||this.keycode.ControlRight)&&(I*=this.ctrlMultiplier);for(const E in this.gamepadMapping)if(n[Number.parseInt(E)])switch(this.gamepadMapping[E]){case"shift":I*=this.shiftMultiplier;break;case"ctrl":I*=this.ctrlMultiplier;break}g.applyQuaternion(e.quaternion),e.position.add(g.multiplyScalar(this.moveSpeed*I*A))}}class zr{constructor({canvas:A,rotateSpeed:e,slideSpeed:s,scrollSpeed:i,swapRotateSlide:n,reverseRotate:a,reverseSlide:r,reverseSwipe:g,reverseScroll:I,moveInertia:Q,rotateInertia:o,doublePress:E}){this.enable=!0,this.canvas=A,this.rotateSpeed=e??SE,this.slideSpeed=s??FE,this.scrollSpeed=i??NE,this.swapRotateSlide=n??!1,this.reverseRotate=a??!1,this.reverseSlide=r??!1,this.reverseSwipe=g??!1,this.reverseScroll=I??!1,this.moveInertia=Q??RE,this.rotateInertia=o??kE,this.doublePress=E??(()=>{}),this.doublePressLimitMs=vE,this.doublePressDistance=LE,this.lastUp=null,this.rotating=null,this.sliding=null,this.dualPress=!1,this.scroll=new B.Vector3,this.rotateVelocity=new B.Vector3,this.moveVelocity=new B.Vector3,A.addEventListener("pointerdown",c=>{const h=this.getPointerPosition(c),l=h.clone(),u=h.clone(),w=!this.swapRotateSlide&&!this.rotating&&(c.pointerType!=="mouse"||c.button===0)||this.swapRotateSlide&&this.sliding&&!this.rotating&&(c.pointerType!=="mouse"||c.button===1),{pointerId:d,timeStamp:p}=c;if(w)this.rotating={initial:l,last:u,position:h,pointerId:d,timeStamp:p},A.setPointerCapture(c.pointerId),this.dualPress=!1;else if(!this.sliding){const y=c.pointerType==="mouse"?c.button:void 0;this.sliding={initial:l,last:u,position:h,pointerId:d,button:y,timeStamp:p},A.setPointerCapture(c.pointerId),this.dualPress=this.rotating!=null&&p-this.rotating.timeStamp{var u,w;((u=this.rotating)==null?void 0:u.pointerId)===c.pointerId?(this.rotating=null,A.releasePointerCapture(c.pointerId),this.dualPress&&this.sliding&&(A.releasePointerCapture(this.sliding.pointerId),this.sliding=null)):((w=this.sliding)==null?void 0:w.pointerId)===c.pointerId&&(this.sliding=null,A.releasePointerCapture(c.pointerId),this.dualPress&&this.rotating&&(A.releasePointerCapture(this.rotating.pointerId),this.rotating=null));const h=this.getPointerPosition(c),l=this.lastUp;if(this.lastUp={position:h,time:c.timeStamp},l&&l.position.distanceTo(h){var h,l;((h=this.rotating)==null?void 0:h.pointerId)===c.pointerId?this.rotating.position=this.getPointerPosition(c):((l=this.sliding)==null?void 0:l.pointerId)===c.pointerId&&(this.sliding.position=this.getPointerPosition(c))}),A.addEventListener("contextmenu",c=>{c.preventDefault()}),A.addEventListener("wheel",c=>{this.scroll.add(new B.Vector3(c.deltaX,c.deltaY,c.deltaZ)),c.preventDefault()})}getPointerPosition(A){const e=this.canvas.getBoundingClientRect();return new B.Vector2(A.clientX-e.left,A.clientY-e.top)}update(A,e){if(!this.enable)return;if(this.dualPress&&this.rotating&&this.sliding){const i=[this.rotating.position.clone().sub(this.rotating.last),this.sliding.position.clone().sub(this.sliding.last)],n=i[0].dot(i[1]);if(n>=.2){const a=i[0].clone().add(i[1]),r=new B.Vector3(a.x,-a.y,0);r.multiplyScalar(this.slideSpeed*(this.reverseSwipe?1:-1)),r.applyQuaternion(e.quaternion),e.position.add(r),this.moveVelocity=r.clone().multiplyScalar(1/A)}else if(n<=-.2){const a=this.sliding.last.clone().sub(this.rotating.last),r=a.length();a.multiplyScalar(1/r).normalize();const g=new B.Vector2(-a.y,a.x),I=[i[0].dot(a),i[1].dot(a)],Q=[i[0].dot(g),i[1].dot(g)],o=this.rotating.last.clone().add(this.sliding.last).multiplyScalar(.5);let E=new B.Vector3;if(e instanceof B.Camera){const w=new B.Vector2(o.x/this.canvas.clientWidth*2-1,-(o.y/this.canvas.clientHeight)*2+1),d=new B.Raycaster;d.setFromCamera(w,e),E=d.ray.direction}const C=I[1]-I[0],c=E.multiplyScalar(C*this.slideSpeed);e.position.add(c),this.moveVelocity=c.clone().multiplyScalar(1/A);const h=[Math.atan(Q[0]/(-.5*r)),Math.atan(Q[1]/(.5*r))],l=.5*(h[0]+h[1]),u=new B.Euler().setFromQuaternion(e.quaternion,"YXZ");u.z=Math.max(-Math.PI,Math.min(Math.PI,u.z+.5*l)),e.quaternion.setFromEuler(u)}this.rotating.last.copy(this.rotating.position),this.sliding.last.copy(this.sliding.position)}else{const i=new B.Vector3;if(this.rotating&&!this.dualPress){const a=this.rotating.position.clone().sub(this.rotating.last);this.rotating.last.copy(this.rotating.position),i.set(a.x,a.y,0),i.multiplyScalar(this.rotateSpeed*(this.reverseRotate?-1:1)),this.rotateVelocity=i.clone().multiplyScalar(1/A)}else this.rotateVelocity.multiplyScalar(Math.exp(-A/this.rotateInertia)),i.addScaledVector(this.rotateVelocity,A);const n=new B.Euler().setFromQuaternion(e.quaternion,"YXZ");if(n.y-=i.x,n.x=Math.max(-Math.PI/2,Math.min(Math.PI/2,n.x-i.y)),n.z*=Math.exp(-0*A),e.quaternion.setFromEuler(n),this.sliding&&!this.dualPress){const a=this.sliding.position.clone().sub(this.sliding.last);this.sliding.last.copy(this.sliding.position);const r=this.sliding.button!==2?new B.Vector3(a.x,0,a.y):new B.Vector3(a.x,-a.y,0);r.multiplyScalar(this.slideSpeed*(this.reverseSlide?-1:1)),r.applyQuaternion(e.quaternion),e.position.add(r),this.moveVelocity=r.clone().multiplyScalar(1/A)}else this.moveVelocity.multiplyScalar(Math.exp(-A/this.moveInertia)),e.position.addScaledVector(this.moveVelocity,A)}const s=this.scroll.multiplyScalar(this.scrollSpeed);s.set(s.x,s.z,s.y),this.reverseScroll&&s.multiplyScalar(-1),s.applyQuaternion(e.quaternion),e.position.add(s),this.scroll.set(0,0,0)}}exports.FINGER_TIPS=DE;exports.ForgeControls=KE;exports.ForgeRenderer=Yt;exports.ForgeViewpoint=Jt;exports.FpsMovement=qr;exports.HANDS=oe;exports.Hand=Pe;exports.HandMovement=mE;exports.JOINT_IDS=Ve;exports.JOINT_INDEX=yE;exports.JOINT_RADIUS=mt;exports.JOINT_SEGMENTS=Hr;exports.JOINT_SEGMENT_STEPS=Kr;exports.JOINT_TIPS=pE;exports.JointEnum=Ce;exports.NUM_JOINTS=wE;exports.PackedSplats=UA;exports.PlyReader=Lt;exports.PointerControls=zr;exports.Readback=bt;exports.Sint8ToFloat=li;exports.SplatAccumulator=te;exports.SplatEdit=vt;exports.SplatEditRgbaBlendMode=pr;exports.SplatEditSdf=Dr;exports.SplatEditSdfType=yr;exports.SplatEdits=fr;exports.SplatFileType=Ct;exports.SplatGenerator=Pt;exports.SplatLoader=JQ;exports.SplatMesh=PA;exports.SplatModifier=Sr;exports.SplatSkinning=iE;exports.SplatTransformer=nt;exports.SpzReader=vr;exports.SpzWriter=zA;exports.Uint8ToFloat=hi;exports.VRButton=ge;exports.XrHands=fE;exports.constructAxes=gE;exports.constructGrid=rE;exports.constructSpherePoints=oE;exports.dyno=wQ;exports.flipPixels=Di;exports.floatToSint8=Ft;exports.floatToUint8=YA;exports.fromHalf=pA;exports.generators=hE;exports.getSplatFileType=qe;exports.imageSplats=BE;exports.isAndroid=yi;exports.isMobile=wi;exports.isOculus=pi;exports.pixelsToPngUrl=fi;exports.setPackedSplat=ie;exports.textSplats=IE;exports.toHalf=At;exports.transcodeSpz=sE;exports.unpackSplat=ne;exports.unpackSplats=ze;exports.utils=Ho; diff --git a/dist/forge.module.js b/dist/forge.module.js index 196e5e7..e563fb6 100644 --- a/dist/forge.module.js +++ b/dist/forge.module.js @@ -1,76 +1,12 @@ import * as THREE from "three"; import { Loader, FileLoader, Quaternion, Vector3, Color, Matrix4 } from "three"; let wasm; -function addToExternrefTable0(obj) { - const idx = wasm.__externref_table_alloc(); - wasm.__wbindgen_export_2.set(idx, obj); - return idx; +const cachedTextDecoder = typeof TextDecoder !== "undefined" ? new TextDecoder("utf-8", { ignoreBOM: true, fatal: true }) : { decode: () => { + throw Error("TextDecoder not available"); +} }; +if (typeof TextDecoder !== "undefined") { + cachedTextDecoder.decode(); } -function handleError(f, args) { - try { - return f.apply(this, args); - } catch (e) { - const idx = addToExternrefTable0(e); - wasm.__wbindgen_exn_store(idx); - } -} -function debugString(val) { - const type = typeof val; - if (type == "number" || type == "boolean" || val == null) { - return `${val}`; - } - if (type == "string") { - return `"${val}"`; - } - if (type == "symbol") { - const description = val.description; - if (description == null) { - return "Symbol"; - } else { - return `Symbol(${description})`; - } - } - if (type == "function") { - const name = val.name; - if (typeof name == "string" && name.length > 0) { - return `Function(${name})`; - } else { - return "Function"; - } - } - if (Array.isArray(val)) { - const length2 = val.length; - let debug = "["; - if (length2 > 0) { - debug += debugString(val[0]); - } - for (let i = 1; i < length2; i++) { - debug += ", " + debugString(val[i]); - } - debug += "]"; - return debug; - } - const builtInMatches = /\[object ([^\]]+)\]/.exec(toString.call(val)); - let className; - if (builtInMatches && builtInMatches.length > 1) { - className = builtInMatches[1]; - } else { - return toString.call(val); - } - if (className == "Object") { - try { - return "Object(" + JSON.stringify(val) + ")"; - } catch (_) { - return "Object"; - } - } - if (val instanceof Error) { - return `${val.name}: ${val.message} -${val.stack}`; - } - return className; -} -let WASM_VECTOR_LEN = 0; let cachedUint8ArrayMemory0 = null; function getUint8ArrayMemory0() { if (cachedUint8ArrayMemory0 === null || cachedUint8ArrayMemory0.byteLength === 0) { @@ -78,70 +14,10 @@ function getUint8ArrayMemory0() { } return cachedUint8ArrayMemory0; } -const cachedTextEncoder = typeof TextEncoder !== "undefined" ? new TextEncoder("utf-8") : { encode: () => { - throw Error("TextEncoder not available"); -} }; -const encodeString = typeof cachedTextEncoder.encodeInto === "function" ? function(arg, view) { - return cachedTextEncoder.encodeInto(arg, view); -} : function(arg, view) { - const buf = cachedTextEncoder.encode(arg); - view.set(buf); - return { - read: arg.length, - written: buf.length - }; -}; -function passStringToWasm0(arg, malloc, realloc) { - if (realloc === void 0) { - const buf = cachedTextEncoder.encode(arg); - const ptr2 = malloc(buf.length, 1) >>> 0; - getUint8ArrayMemory0().subarray(ptr2, ptr2 + buf.length).set(buf); - WASM_VECTOR_LEN = buf.length; - return ptr2; - } - let len = arg.length; - let ptr = malloc(len, 1) >>> 0; - const mem = getUint8ArrayMemory0(); - let offset = 0; - for (; offset < len; offset++) { - const code = arg.charCodeAt(offset); - if (code > 127) break; - mem[ptr + offset] = code; - } - if (offset !== len) { - if (offset !== 0) { - arg = arg.slice(offset); - } - ptr = realloc(ptr, len, len = offset + arg.length * 3, 1) >>> 0; - const view = getUint8ArrayMemory0().subarray(ptr + offset, ptr + len); - const ret = encodeString(arg, view); - offset += ret.written; - ptr = realloc(ptr, len, offset, 1) >>> 0; - } - WASM_VECTOR_LEN = offset; - return ptr; -} -let cachedDataViewMemory0 = null; -function getDataViewMemory0() { - if (cachedDataViewMemory0 === null || cachedDataViewMemory0.buffer.detached === true || cachedDataViewMemory0.buffer.detached === void 0 && cachedDataViewMemory0.buffer !== wasm.memory.buffer) { - cachedDataViewMemory0 = new DataView(wasm.memory.buffer); - } - return cachedDataViewMemory0; -} -const cachedTextDecoder = typeof TextDecoder !== "undefined" ? new TextDecoder("utf-8", { ignoreBOM: true, fatal: true }) : { decode: () => { - throw Error("TextDecoder not available"); -} }; -if (typeof TextDecoder !== "undefined") { - cachedTextDecoder.decode(); -} function getStringFromWasm0(ptr, len) { ptr = ptr >>> 0; return cachedTextDecoder.decode(getUint8ArrayMemory0().subarray(ptr, ptr + len)); } -function decode_wlg(bytes, tex_width, tex_height) { - const ret = wasm.decode_wlg(bytes, tex_width, tex_height); - return ret; -} function raycast_splats(origin_x, origin_y, origin_z, dir_x, dir_y, dir_z, near, far, num_splats, packed_splats, raycast_ellipsoid) { const ret = wasm.raycast_splats(origin_x, origin_y, origin_z, dir_x, dir_y, dir_z, near, far, num_splats, packed_splats, raycast_ellipsoid); return ret; @@ -173,28 +49,10 @@ async function __wbg_load(module, imports) { function __wbg_get_imports() { const imports = {}; imports.wbg = {}; - imports.wbg.__wbg_buffer_09165b52af8c5237 = function(arg0) { - const ret = arg0.buffer; - return ret; - }; imports.wbg.__wbg_buffer_609cc3eee51ed158 = function(arg0) { const ret = arg0.buffer; return ret; }; - imports.wbg.__wbg_get_b9b93047fe3cf45b = function(arg0, arg1) { - const ret = arg0[arg1 >>> 0]; - return ret; - }; - imports.wbg.__wbg_instanceof_Uint8Array_17156bcf118086a9 = function(arg0) { - let result; - try { - result = arg0 instanceof Uint8Array; - } catch (_) { - result = false; - } - const ret = result; - return ret; - }; imports.wbg.__wbg_length_3b4f022188ae8db6 = function(arg0) { const ret = arg0.length; return ret; @@ -207,26 +65,10 @@ function __wbg_get_imports() { const ret = arg0.length; return ret; }; - imports.wbg.__wbg_length_a446193dc22c12f8 = function(arg0) { - const ret = arg0.length; - return ret; - }; - imports.wbg.__wbg_length_e2d2a49132c1b256 = function(arg0) { - const ret = arg0.length; - return ret; - }; - imports.wbg.__wbg_new_405e22f390576ce2 = function() { - const ret = new Object(); - return ret; - }; imports.wbg.__wbg_new_9fee97a409b32b68 = function(arg0) { const ret = new Uint16Array(arg0); return ret; }; - imports.wbg.__wbg_new_a12002a7f91c75be = function(arg0) { - const ret = new Uint8Array(arg0); - return ret; - }; imports.wbg.__wbg_new_e3b321dcfef89fc7 = function(arg0) { const ret = new Uint32Array(arg0); return ret; @@ -243,22 +85,9 @@ function __wbg_get_imports() { const ret = new Float32Array(arg0 >>> 0); return ret; }; - imports.wbg.__wbg_newwithlength_bd3de93688d68fbc = function(arg0) { - const ret = new Uint32Array(arg0 >>> 0); - return ret; - }; imports.wbg.__wbg_set_10bad9bee0e9c58b = function(arg0, arg1, arg2) { arg0.set(arg1, arg2 >>> 0); }; - imports.wbg.__wbg_set_65595bdd868b3009 = function(arg0, arg1, arg2) { - arg0.set(arg1, arg2 >>> 0); - }; - imports.wbg.__wbg_set_bb8cecf6a62b9f46 = function() { - return handleError(function(arg0, arg1, arg2) { - const ret = Reflect.set(arg0, arg1, arg2); - return ret; - }, arguments); - }; imports.wbg.__wbg_set_d23661d19148b229 = function(arg0, arg1, arg2) { arg0.set(arg1, arg2 >>> 0); }; @@ -273,15 +102,8 @@ function __wbg_get_imports() { const ret = arg0.subarray(arg1 >>> 0, arg2 >>> 0); return ret; }; - imports.wbg.__wbindgen_debug_string = function(arg0, arg1) { - const ret = debugString(arg1); - const ptr1 = passStringToWasm0(ret, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc); - const len1 = WASM_VECTOR_LEN; - getDataViewMemory0().setInt32(arg0 + 4 * 1, len1, true); - getDataViewMemory0().setInt32(arg0 + 4 * 0, ptr1, true); - }; imports.wbg.__wbindgen_init_externref_table = function() { - const table = wasm.__wbindgen_export_2; + const table = wasm.__wbindgen_export_0; const offset = table.grow(4); table.set(0, void 0); table.set(offset + 0, void 0); @@ -293,14 +115,6 @@ function __wbg_get_imports() { const ret = wasm.memory; return ret; }; - imports.wbg.__wbindgen_number_new = function(arg0) { - const ret = arg0; - return ret; - }; - imports.wbg.__wbindgen_string_new = function(arg0, arg1) { - const ret = getStringFromWasm0(arg0, arg1); - return ret; - }; imports.wbg.__wbindgen_throw = function(arg0, arg1) { throw new Error(getStringFromWasm0(arg0, arg1)); }; @@ -309,7 +123,6 @@ function __wbg_get_imports() { function __wbg_finalize_init(instance, module) { wasm = instance.exports; __wbg_init.__wbindgen_wasm_module = module; - cachedDataViewMemory0 = null; cachedUint8ArrayMemory0 = null; wasm.__wbindgen_start(); return wasm; @@ -324,7 +137,7 @@ async function __wbg_init(module_or_path) { } } if (typeof module_or_path === "undefined") { - module_or_path = new 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FqIgAgACgCBEEBcjYCBCABQQhqDAcLIAVByOjCACgCAE0NAwJAAkAgAUUEQEHE6MIAKAIAIgBFDQYgAGhBAnRBqOXCAGooAgAiAigCBEF4cSAFayEEIAIhAQNAAkAgAigCECIADQAgAigCFCIADQAgASgCGCEHAkACQCABIAEoAgwiAEYEQCABQRRBECABKAIUIgAbaigCACICDQFBACEADAILIAEoAggiAiAANgIMIAAgAjYCCAwBCyABQRRqIAFBEGogABshAwNAIAMhBiACIgBBFGogAEEQaiAAKAIUIgIbIQMgAEEUQRAgAhtqKAIAIgINAAsgBkEANgIACyAHRQ0EIAEgASgCHEECdEGo5cIAaiICKAIARwRAIAdBEEEUIAcoAhAgAUYbaiAANgIAIABFDQUMBAsgAiAANgIAIAANA0HE6MIAQcTowgAoAgBBfiABKAIcd3E2AgAMBAsgACgCBEF4cSAFayICIAQgAiAESSICGyEEIAAgASACGyEBIAAhAgwACwALAkBBAiAAdCIDQQAgA2tyIAEgAHRxaCIGQQN0IgFBuObCAGoiAyABQcDmwgBqKAIAIgAoAggiBEcEQCAEIAM2AgwgAyAENgIIDAELQcDowgAgAkF+IAZ3cTYCAAsgACAFQQNyNgIEIAAgBWoiBiABIAVrIgNBAXI2AgQgACABaiADNgIAQcjowgAoAgAiBARAIARBeHFBuObCAGohAUHQ6MIAKAIAIQICf0HA6MIAKAIAIgVBASAEQQN2dCIEcUUEQEHA6MIAIAQgBXI2AgAgAQwBCyABKAIICyEEIAEgAjYCCCAEIAI2AgwgAiABNgIMIAIgBDYCCAtB0OjCACAGNgIAQcjowgAgAzYCACAAQQhqDAgLIAAgBzYCGCABKAIQIgIEQCAAIAI2AhAgAiAANgIYCyABKAIUIgJFDQAgACACNgIUIAIgADYCGAsCQAJAIARBEE8EQCABIAVBA3I2AgQgASAFaiIDIARBAXI2AgQgAyAEaiAENgIAQcjowgAoAgAiBkUNASAGQXhxQbjmwgBqIQBB0OjCACgCACECAn9BwOjCACgCACIFQQEgBkEDdnQiBnFFBEBBwOjCACAFIAZyNgIAIAAMAQsgACgCCAshBiAAIAI2AgggBiACNgIMIAIgADYCDCACIAY2AggMAQsgASAEIAVqIgBBA3I2AgQgACABaiIAIAAoAgRBAXI2AgQMAQtB0OjCACADNgIAQcjowgAgBDYCAAsgAUEIagwGCyAAIAJyRQRAQQAhAkECIAd0IgBBACAAa3IgCXEiAEUNAyAAaEECdEGo5cIAaigCACEACyAARQ0BCwNAIAAgAiAAKAIEQXhxIgMgBWsiBiAESSIHGyEJIAAoAhAiAUUEQCAAKAIUIQELIAIgCSADIAVJIgAbIQIgBCAGIAQgBxsgABshBCABIgANAAsLIAJFDQAgBUHI6MIAKAIAIgBNIAQgACAFa09xDQAgAigCGCEHAkACQCACIAIoAgwiAEYEQCACQRRBECACKAIUIgAbaigCACIBDQFBACEADAILIAIoAggiASAANgIMIAAgATYCCAwBCyACQRRqIAJBEGogABshAwNAIAMhBiABIgBBFGogAEEQaiAAKAIUIgEbIQMgAEEUQRAgARtqKAIAIgENAAsgBkEANgIACyAHRQ0CIAIgAigCHEECdEGo5cIAaiIBKAIARwRAIAdBEEEUIAcoAhAgAkYbaiAANgIAIABFDQMMAgsgASAANgIAIAANAUHE6MIAQcTowgAoAgBBfiACKAIcd3E2AgAMAgsCQAJAAkACQAJAIAVByOjCACgCACIBSwRAIAVBzOjCACgCACIATwRAIAVBr4AEakGAgHxxIgJBEHZAACEAIAhBBGoiAUEANgIIIAFBACACQYCAfHEgAEF/RiICGzYCBCABQQAgAEEQdCACGzYCAEEAIAgoAgQiAUUNCRogCCgCDCEGQdjowgAgCCgCCCIEQdjowgAoAgBqIgA2AgBB3OjCACAAQdzowgAoAgAiAiAAIAJLGzYCAAJAAkBB1OjCACgCACICBEBBqObCACEAA0AgASAAKAIAIgMgACgCBCIHakYNAiAAKAIIIgANAAsMAgtB5OjCACgCACIAQQAgACABTRtFBEBB5OjCACABNgIAC0Ho6MIAQf8fNgIAQbTmwgAgBjYCAEGs5sIAIAQ2AgBBqObCACABNgIAQcTmwgBBuObCADYCAEHM5sIAQcDmwgA2AgBBwObCAEG45sIANgIAQdTmwgBByObCADYCAEHI5sIAQcDmwgA2AgBB3ObCAEHQ5sIANgIAQdDmwgBByObCADYCAEHk5sIAQdjmwgA2AgBB2ObCAEHQ5sIANgIAQezmwgBB4ObCADYCAEHg5sIAQdjmwgA2AgBB9ObCAEHo5sIANgIAQejmwgBB4ObCADYCAEH85sIAQfDmwgA2AgBB8ObCAEHo5sIANgIAQYTnwgBB+ObCADYCAEH45sIAQfDmwgA2AgBBgOfCAEH45sIANgIAQYznwgBBgOfCADYCAEGI58IAQYDnwgA2AgBBlOfCAEGI58IANgIAQZDnwgBBiOfCADYCAEGc58IAQZDnwgA2AgBBmOfCAEGQ58IANgIAQaTnwgBBmOfCADYCAEGg58IAQZjnwgA2AgBBrOfCAEGg58IANgIAQajnwgBBoOfCADYCAEG058IAQajnwgA2AgBBsOfCAEGo58IANgIAQbznwgBBsOfCADYCAEG458IAQbDnwgA2AgBBxOfCAEG458IANgIAQcznwgBBwOfCADYCAEHA58IAQbjnwgA2AgBB1OfCAEHI58IANgIAQcjnwgBBwOfCADYCAEHc58IAQdDnwgA2AgBB0OfCAEHI58IANgIAQeTnwgBB2OfCADYCAEHY58IAQdDnwgA2AgBB7OfCAEHg58IANgIAQeDnwgBB2OfCADYCAEH058IAQejnwgA2AgBB6OfCAEHg58IANgIAQfznwgBB8OfCADYCAEHw58IAQejnwgA2AgBBhOjCAEH458IANgIAQfjnwgBB8OfCADYCAEGM6MIAQYDowgA2AgBBgOjCAEH458IANgIAQZTowgBBiOjCADYCAEGI6MIAQYDowgA2AgBBnOjCAEGQ6MIANgIAQZDowgBBiOjCADYCAEGk6MIAQZjowgA2AgBBmOjCAEGQ6MIANgIAQazowgBBoOjCADYCAEGg6MIAQZjowgA2AgBBtOjCAEGo6MIANgIAQajowgBBoOjCADYCAEG86MIAQbDowgA2AgBBsOjCAEGo6MIANgIAQdTowgAgAUEPakF4cSIAQQhrIgI2AgBBuOjCAEGw6MIANgIAQczowgAgBEEoayIDIAEgAGtqQQhqIgA2AgAgAiAAQQFyNgIEIAEgA2pBKDYCBEHg6MIAQYCAgAE2AgAMCAsgAiADSSABIAJNcg0AIAAoAgwiA0EBcQ0AIANBAXYgBkYNAwtB5OjCAEHk6MIAKAIAIgAgASAAIAFJGzYCACABIARqIQNBqObCACEAAkACQANAIAMgACgCACIHRwRAIAAoAggiAA0BDAILCyAAKAIMIgNBAXENACADQQF2IAZGDQELQajmwgAhAANAAkAgAiAAKAIAIgNPBEAgAiADIAAoAgRqIgdJDQELIAAoAgghAAwBCwtB1OjCACABQQ9qQXhxIgBBCGsiAzYCAEHM6MIAIARBKGsiCSABIABrakEIaiIANgIAIAMgAEEBcjYCBCABIAlqQSg2AgRB4OjCAEGAgIABNgIAIAIgB0Ega0F4cUEIayIAIAAgAkEQakkbIgNBGzYCBEGo5sIAKQIAIQogA0EQakGw5sIAKQIANwIAIAMgCjcCCEG05sIAIAY2AgBBrObCACAENgIAQajmwgAgATYCAEGw5sIAIANBCGo2AgAgA0EcaiEAA0AgAEEHNgIAIABBBGoiACAHSQ0ACyACIANGDQcgAyADKAIEQX5xNgIEIAIgAyACayIAQQFyNgIEIAMgADYCACAAQYACTwRAIAIgABB+DAgLIABB+AFxQbjmwgBqIQECf0HA6MIAKAIAIgNBASAAQQN2dCIAcUUEQEHA6MIAIAAgA3I2AgAgAQwBCyABKAIICyEAIAEgAjYCCCAAIAI2AgwgAiABNgIMIAIgADYCCAwHCyAAIAE2AgAgACAAKAIEIARqNgIEIAFBD2pBeHFBCGsiAiAFQQNyNgIEIAdBD2pBeHFBCGsiBCACIAVqIgBrIQUgBEHU6MIAKAIARg0DIARB0OjCACgCAEYNBCAEKAIEIgFBA3FBAUYEQCAEIAFBeHEiARB1IAEgBWohBSABIARqIgQoAgQhAQsgBCABQX5xNgIEIAAgBUEBcjYCBCAAIAVqIAU2AgAgBUGAAk8EQCAAIAUQfgwGCyAFQfgBcUG45sIAaiEBAn9BwOjCACgCACIDQQEgBUEDdnQiBHFFBEBBwOjCACADIARyNgIAIAEMAQsgASgCCAshAyABIAA2AgggAyAANgIMIAAgATYCDCAAIAM2AggMBQtBzOjCACAAIAVrIgE2AgBB1OjCAEHU6MIAKAIAIgAgBWoiAjYCACACIAFBAXI2AgQgACAFQQNyNgIEIABBCGoMCAtB0OjCACgCACEAAkAgASAFayICQQ9NBEBB0OjCAEEANgIAQcjowgBBADYCACAAIAFBA3I2AgQgACABaiIBIAEoAgRBAXI2AgQMAQtByOjCACACNgIAQdDowgAgACAFaiIDNgIAIAMgAkEBcjYCBCAAIAFqIAI2AgAgACAFQQNyNgIECyAAQQhqDAcLIAAgBCAHajYCBEHU6MIAQdTowgAoAgAiAEEPakF4cSIBQQhrIgI2AgBBzOjCAEHM6MIAKAIAIARqIgMgACABa2pBCGoiATYCACACIAFBAXI2AgQgACADakEoNgIEQeDowgBBgICAATYCAAwDC0HU6MIAIAA2AgBBzOjCAEHM6MIAKAIAIAVqIgE2AgAgACABQQFyNgIEDAELQdDowgAgADYCAEHI6MIAQcjowgAoAgAgBWoiATYCACAAIAFBAXI2AgQgACABaiABNgIACyACQQhqDAMLQQBBzOjCACgCACIAIAVNDQIaQczowgAgACAFayIBNgIAQdTowgBB1OjCACgCACIAIAVqIgI2AgAgAiABQQFyNgIEIAAgBUEDcjYCBCAAQQhqDAILIAAgBzYCGCACKAIQIgEEQCAAIAE2AhAgASAANgIYCyACKAIUIgFFDQAgACABNgIUIAEgADYCGAsCQCAEQRBPBEAgAiAFQQNyNgIEIAIgBWoiACAEQQFyNgIEIAAgBGogBDYCACAEQYACTwRAIAAgBBB+DAILIARB+AFxQbjmwgBqIQECf0HA6MIAKAIAIgNBASAEQQN2dCIEcUUEQEHA6MIAIAMgBHI2AgAgAQwBCyABKAIICyEDIAEgADYCCCADIAA2AgwgACABNgIMIAAgAzYCCAwBCyACIAQgBWoiAEEDcjYCBCAAIAJqIgAgACgCBEEBcjYCBAsgAkEIagsgCEEQaiQAC/8VAgp/An4jAEHQAGsiBSQAAkACQAJAAkACQAJAAkACQAJAAkACQCAAKAIAIgcEQCAAIAAoAgxBAWoiAjYCDCACQfUDSQ0BIAAoAhAiAUUNAkHUucIAQRkgARDVBEUNAkEBIQQMCwsgACgCECIARQ0KQe25wgBBASAAENUEIQQMCgsgACgCCCIGIAAoAgQiCEkEQEEBIQQgACAGQQFqIgM2AggCQAJAAkACQAJAAkACQAJAAkAgBiAHai0AACICQcIAaw4YAwIAAAAAAAEAAAAHBgAAAAAAAAAAAAcNAAsgACgCECIBRQ0RQcS5wgBBECABENUEDRIMEQsgACABEB8NESABDQYMDgsgBUEwaiIBIAAQZiAFLQAwDQIgBSAFKQM4Igw3AxgCQCAAKAIABEAgASAAEDcgBSgCMEUNAyAFQShqIAVBOGopAgA3AwAgBSAFKQIwNwMgIAAoAhAiAUUNECAFQSBqIAEQI0UNAQwSCyAAKAIQIgBFBEBBACEEDBILQe25wgBBASAAENUEIQQMEQsgACgCECIBRSAMUHINDiABKAIUQQRxDQ4gAUH3ucIAQQEQ5QMNECAFQRhqIAAoAhAQ/gENECAAKAIQQfi5wgBBARDlA0UNDgwQC0EAIQMjAEEgayIJJAACQAJAAkACQAJ+AkACQAJAIAAoAgAiCwRAIAAoAggiAiAAKAIEIgdJBEAgAiALai0AAEHfAEYNAwsgAiAHIAIgB0sbIQggAiEDA0AgAyAHSQRAIAMgC2otAABB3wBGDQMLIAMgCEYNBgJAIAMgC2otAAAiCkEwayIGQf8BcUEKSQ0AIApB4QBrQf8BcUEaTwRAIApBwQBrQf8BcUEaTw0IIApBHWshBgwBCyAKQdcAayEGCyAAIANBAWoiAzYCCCAJIA0QmwIgCSkDCEIAUg0GIAkpAwAiDCAGrUL/AYN8Ig0gDFoNAAsMBQsgACgCECIBRQ0HQe25wgBBASABENUEIQMMBwsgACADQQFqNgIIIA1Cf1INAQwDCyAAIAJBAWo2AghCAAwBCyANQgF8CyEMIAwgAkEBa61aDQBBASEDIAAoAhAhAiAAKAIMQQFqIghB9ANLDQEgAkUEQEEAIQMMBAsgCUEYaiICIABBCGoiBikCADcDACAAIAg2AgwgBiAMPgIAIAkgACkCADcDECAAIAFBAXEQHyEDIAYgAikDADcCACAAIAkpAxA3AgAMAwtBACEDIAAoAhAiAUUNAUHEucIAQRAgARDVBEUNAUEBIQMMAgsgAkUNAEHUucIAQRkgAhDVBA0BCyAAIAM6AARBACEDIABBADYCAAsgCUEgaiQAIAMNDwwNCyAAKAIQIQICQCAFLQA0IgFFBEAgAkUNAUHEucIAQRAgAhDVBEUNAQwQCyACRQ0AQdS5wgBBGSACENUERQ0ADA8LIAAgAToABAwKCyAAKAIQIQICQCAFLQAxIgFFBEAgAkUNAUHEucIAQRAgAhDVBEUNAQwPCyACRQ0AQdS5wgBBGSACENUERQ0ADA4LIAAgAToABAwJCwJAIAMgCE8NACAAIAZBAmo2AgggAyAHai0AACIDQcEAa0H/AXFBGk8EQCADQeEAa0GAgMQAIQNB/wFxQRpPDQELIAAgARAfBEAMDgsCQAJAAn8CQAJAAkACQAJAIAAoAgBFBEBBACEEIAAoAhAiAUUNFkH8ssIAQQIgARDVBARAQQEhBAwXCyAAKAIARQ0BCyAFQTBqIgEgABBmIAUtADANByAAKAIARQ0BIAUpAzghDCABIAAQNyAFKAIwRQ0GIAVByABqIAVBOGopAgA3AwAgBSAFKQIwNwNAIANBgIDEAEcNAiAFKAJEIAUoAkxyRQ0TIAAoAhAiAUUNE0H8ssIAQQIgARDVBEUNA0EBIQQMFQsgACgCECIARQ0UQe25wgBBASAAENUEIQQMFAsgACgCECIARQRAQQAhBAwUC0HtucIAQQEgABDVBCEEDBMLQQAgACgCECIBRQ0CGkH5ucIAQQMgARDVBEUNAUEBIQQMEgsgACgCECIBRQ0PQQEhBCAFQUBrIAEQI0UNDwwRCyAAKAIQCyECAkACQCADQcMAayIBBEAgAUEQRg0BIAUgAzYCMCACRQ0CQQEhBCAFQTBqIAIQjQFFDQIMEgsgAkUNAUEBIQRB/LnCAEEHIAIQ1QRFDQEMEQsgAkUNAEEBIQRBg7rCAEEEIAIQ1QQNEAsgACgCECEDIAUoAkQgBSgCTHJFDQogA0UNDUEBIQRBh7rCAEEBIAMQ1QQNDyAAKAIQIgFFDQ0gBUFAayABECMNDyAAKAIQIQMMCgsgACgCECECAkAgBS0ANCIBRQRAIAJFDQFBxLnCAEEQIAIQ1QRFDQFBASEEDBALIAJFDQBB1LnCAEEZIAIQ1QRFDQBBASEEDA8LIAAgAToABAwKCyAAKAIQIQICQCAFLQAxIgFFBEAgAkUNAUHEucIAQRAgAhDVBEUNAUEBIQQMDwsgAkUNAEHUucIAQRkgAhDVBEUNAEEBIQQMDgsgACABOgAEDAkLIAAoAhAiAUUNC0HEucIAQRAgARDVBEUNCwwMCyADIAhPDQQgAyAHai0AAEHzAEcNBCAAIAZBAmoiBDYCCCAEIAhPDQMgBCAHai0AAEHfAEcNAyAAIAZBA2o2AggMBAsgACgCECIBRQ0HQfyywgBBAiABENUERQ0HDAoLIAAoAhAiAUUNCEHEucIAQRAgARDVBEUNCEEBIQQMCQsgAEEBOgAEDAQLAkADQAJAIAQgCEkEQCAEIAdqLQAAQd8ARg0BCyAEIAhGDQICQCAEIAdqLQAAIgNBMGsiAUH/AXFBCkkNACADQeEAa0H/AXFBGk8EQCADQcEAa0H/AXFBGk8NBCADQR1rIQEMAQsgA0HXAGshAQsgACAEQQFqIgQ2AgggBUEIaiANEJsCIAUpAxBCAFINAiAFKQMIIgwgAa1C/wGDfCINIAxaDQEMAgsLIAAgBEEBajYCCCANQn1YDQELIAAoAhAiAUUNBkHEucIAQRAgARDVBEUNBkEBIQQMBwsjAEEQayIDJAAgACgCECEBIABBADYCEAJAIABBABAfRQRAIAAgATYCECADQRBqJAAMAQtBwLXCAEE9IANBD2pBsLXCAEG0ucIAEKACAAsLIAAoAhAiAQRAQQEhBEH4s8IAQQEgARDVBA0GC0EBIQQgABAnDQUgAkHNAEcEQCAAKAIQIgEEQEGJusIAQQQgARDVBA0HCyAAQQAQHw0GCyAAKAIQIgFFDQNB97PCAEEBIAEQ1QRFDQMMBQsgA0UNAkEBIQRBiLrCAEEBIAMQ1QQNBCAAKAIQIQEgBSAMNwMwIAFFDQIgBUEwaiABEK8EDQQgACgCECIBRQ0CQbq2wgBBASABENUERQ0CDAQLQQAhBCAAQQA2AgAMAwsgACgCECIBBEBB+LPCAEEBIAEQ1QQNAwsCf0EAIQMgACgCACICBEADQAJAIAAoAggiASAAKAIETw0AIAEgAmotAABBxQBHDQAgACABQQFqNgIIQQAMAwsCQCADRQ0AIAAoAhAiAUUNAEH1ucIAQQIgARDVBEUNAEEBDAMLQQEgABBZDQIaIANBAWshAyAAKAIAIgINAAsLQQALDQIgACgCECIBRQ0AQfezwgBBASABENUEDQILQQAhBCAAKAIARQ0BIAAgACgCDEEBazYCDAwBC0EAIQQgAEEAOgAEIABBADYCAAsgBUHQAGokACAEC9gbAgl/An4jAEEgayIGJAACQAJAAkACQAJAAkACQAJAAkAgACgCACIFBEAgACgCCCICIAAoAgQiB0kNASAAKAIQIgFFDQJBxLnCAEEQIAEQ1QRFDQJBASECDAkLIAAoAhAiAEUNCEHtucIAQQEgABDVBCECDAgLIAAgAkEBaiIDNgIIIAIgBWotAAAhBCAAIAAoAgxBAWoiCDYCDCAIQfQDSw0BAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkAgBEHBAGsOOQ0EAAAAAAAAAAAAAAAAAAAKCQAOAA8AAAAAAAAAAAAAAwYHAAgAAAIDAgADAgMCAQAAAwIAAAADAgALIAAoAhAiAUUND0HEucIAQRAgARDVBEUND0EBIQIMFgsgACgCECIBRQ0UQQEhAkHuuMIAQQEgARDVBEUNFAwVCyAAIAQQUUUNE0EBIQIMFAsgAyAHTw0RIAMgBWotAABB7gBGDQEMEQsgASEDQQAhASMAQSBrIgQkAAJAAkACQAJAAn4CQAJAAkAgACgCACIHBEAgACgCCCICIAAoAgQiCEkEQCACIAdqLQAAQd8ARg0DCyACIAggAiAISxshCiACIQEDQCABIAhJBEAgASAHai0AAEHfAEYNAwsgASAKRg0GAkAgASAHai0AACIFQTBrIglB/wFxQQpJDQAgBUHhAGtB/wFxQRpPBEAgBUHBAGtB/wFxQRpPDQggBUEdayEJDAELIAVB1wBrIQkLIAAgAUEBaiIBNgIIIAQgCxCbAiAEKQMIQgBSDQYgBCkDACIMIAmtQv8Bg3wiCyAMWg0ACwwFCyAAKAIQIgJFDQdB7bnCAEEBIAIQ1QQhAQwHCyAAIAFBAWo2AgggC0J/Ug0BDAMLIAAgAkEBajYCCEIADAELIAtCAXwLIQsgCyACQQFrrVoNAEEBIQEgACgCECECIAAoAgxBAWoiBUH0A0sNASACRQRAQQAhAQwECyAEQRhqIgcgAEEIaiICKQIANwMAIAAgBTYCDCACIAs+AgAgBCAAKQIANwMQIAAgA0EBcRAgIQEgAiAHKQMANwIAIAAgBCkDEDcCAAwDC0EAIQEgACgCECICRQ0BQcS5wgBBECACENUERQ0BQQEhAQwCCyACRQ0AQdS5wgBBGSACENUEDQELIAAgAToABEEAIQEgAEEANgIACyAEQSBqJAAgAUUNEUEBIQIMEgsgACACQQJqNgIIIAAoAhAiAUUND0EBIQJBubbCAEEBIAEQ1QRFDQ8MEQsgBkEYaiAAEJ8BIAYoAhgiAQRAIAZBCGogASAGKAIcEGcCQAJAAkAgBigCCEUNACAGKQMQIgtCAVYNACALp0EBaw0BDAILIAAoAhAiAUUNDEHEucIAQRAgARDVBEUNDEEBIQIMEwsgACgCECIBRQ0RQcy6wgBBBSABENUERQ0RQQEhAgwSCyAAKAIQIgFFDRBB0brCAEEEIAEQ1QRFDRBBASECDBELIAAoAhAhAQJAIAYtABwiAkUEQCABRQ0BQcS5wgBBECABENUERQ0BQQEhAgwSCyABRQ0AQdS5wgBBGSABENUERQ0AQQEhAgwRCyAAIAI6AAQMDQsgBkEYaiAAEJ8BIAYoAhgiAQRAIAZBCGogASAGKAIcEGcCQAJAIAYoAghBAUcNACAGKQMQIgtCgICAgBBaDQAgC6ciAUGAsANzQYCAxABrQYCQvH9JDQAgC0KAgMQAUg0BCyAAKAIQIgFFDQpBxLnCAEEQIAEQ1QRFDQpBASECDBELIAAoAhAhAyMAQRBrIgIkAAJ/QQAgA0UNABoCQCADQScQ6wMNACACQQhqIQUDQAJAAkAgAUEiRwRAIAFBgIDEAEYEQCADQScQ6wMMBgsgAiABEDwgAi0AAEGAAUcNAUGAASEEA0ACQCAEQYABRwRAIAItAAoiASACLQALTw0FIAIgAUEBajoACiABIAJqLQAAIQEMAQtBACEEIAVBADYCACACKAIEIQEgAkIANwMACyADIAEQ6wNFDQALDAQLQYCAxAAhASADQSIQ6wNFDQIMAwsgAi0ACiIBIAItAAsiBCABIARLGyEEA0AgASAERg0BIAEgAmohByABQQFqIQEgAyAHLQAAEOsDRQ0ACwwCC0GAgMQAIQEMAAsAC0EBCyACQRBqJABFDQ9BASECDBALIAAoAhAhAQJAIAYtABwiAkUEQCABRQ0BQcS5wgBBECABENUERQ0BQQEhAgwRCyABRQ0AQdS5wgBBGSABENUERQ0AQQEhAgwQCyAAIAI6AAQMDAsCQCABDQAgACgCECIDRQ0AQQEhAkHVusIAQQEgAxDVBA0PCyAAKAIQIgMEQEEBIQJB+rPCAEEBIAMQ1QQNDwsgABAzRQ0KQQEhAgwOCyADIAdPDQAgAyAFai0AAEHlAEYNAQsCQCABDQAgACgCECIDRQ0AQQEhAkHVusIAQQEgAxDVBA0NCyAAKAIQIgMEQEEBIQJB+bPCAEEBIAMQ1QQNDQsgBEHSAEcNAQwHCyAAIAJBAmo2AgggABAzRQ0KQQEhAgwLCyAAKAIQIgJFDQVBjrrCAEEEIAIQ1QRFDQVBASECDAoLAkAgAQ0AIAAoAhAiA0UNAEEBIQJB1brCAEEBIAMQ1QQNCgsgACgCECIDBEBBASECQfe5wgBBASADENUEDQoLIAAQ+QEEQEEBIQIMCgsgACgCECIDRQ0IQQEhAkH4ucIAQQEgAxDVBEUNBQwJCwJAIAENACAAKAIQIgNFDQBBASECQdW6wgBBASADENUEDQkLIAAoAhAiAwRAQQEhAkH2s8IAQQEgAxDVBA0JC0EAIQICfwJAIAAoAgAiA0UNAANAAkAgACgCCCIEIAAoAgRPDQAgAyAEai0AAEHFAEcNACAAIARBAWo2AggMAgsCQCACRQ0AIAAoAhAiA0UNAEH1ucIAQQIgAxDVBEUNAEEBDAMLQQEgAEEBECANAhogAkEBaiECIAAoAgAiAw0ACwtBAAshAyAGIAI2AgQgBiADNgIAIAYoAgAEQEEBIQIMCQsgBigCBEEBRgRAIAAoAhAiA0UNCEEBIQJB9LPCAEEBIAMQ1QQNCQsgACgCECIDRQ0HQQEhAkH1s8IAQQEgAxDVBEUNBAwICwJAIAENACAAKAIQIgNFDQBBASECQdW6wgBBASADENUEDQgLQQEhAiAAQQEQHw0HAkACQAJAAkACQAJAIAAoAgAiBARAIAAoAggiAyAAKAIETw0GIAAgA0EBajYCCCADIARqLQAAQdMAaw4DAwIKAQsgACgCECIARQRAQQAhAgwOC0HtucIAQQEgABDVBCECDA0LIAAoAhAiAUUNBUHEucIAQRAgARDVBEUNBQwMCyAAKAIQIgMEQEH2s8IAQQEgAxDVBA0MCyAAEPkBRQ0BDAsLIAAoAhAiAkUNAUHWusIAQQMgAhDVBEUNAUEBIQIMCgsgACgCECIDRQ0IQfWzwgBBASADENUERQ0FDAkLQQEhAkEAIQgjAEEwayIEJAACQAJAIAAoAgAiBUUNAANAAkAgACgCCCIDIAAoAgRPDQAgAyAFai0AAEHFAEcNACAAIANBAWo2AggMAgsCQAJAAkACQAJAAkACQCAIRQ0AIAAoAhAiA0UNAEH1ucIAQQIgAxDVBARAQQEhAwwKCyAAKAIAIgVFDQELIAAoAggiByAAKAIEIglPDQIgBSAHai0AAEHzAEcNAiAAIAdBAWoiAzYCCCADIAlPDQEgAyAFai0AAEHfAEcNASAAIAdBAmo2AggMAgsgACgCECIFRQ0GQQEhA0HtucIAQQEgBRDVBA0HDAQLQgAhCwJAA0ACQCADIAlJBEAgAyAFai0AAEHfAEYNAQsgAyAJRg0CAkAgAyAFai0AACIHQTBrIgpB/wFxQQpJDQAgB0HhAGtB/wFxQRpPBEAgB0HBAGtB/wFxQRpPDQQgB0EdayEKDAELIAdB1wBrIQoLIAAgA0EBaiIDNgIIIAQgCxCbAiAEKQMIQgBSDQIgBCkDACIMIAqtQv8Bg3wiCyAMWg0BDAILCyAAIANBAWo2AgggC0J9WA0BCyAAKAIQIgMEQEHEucIAQRAgAxDVBA0CCyAAQQA6AAQgAEEANgIADAULIARBEGogABA3IAQoAhAEQCAEQShqIARBGGopAgA3AwAgBCAEKQIQNwMgIAAoAhAiAwRAIARBIGogAxAjDQJB27rCAEECIAMQ1QQNAgtBASEDIABBARAgRQ0DDAYLIAAoAhAhAwJAIAQtABQiBUUEQCADRQ0DQcS5wgBBECADENUEDQEMAwsgA0UNAkHUucIAQRkgAxDVBEUNAgtBASEDDAULQQEhAwwECyAAIAU6AAQgAEEANgIACyAIQQFqIQggACgCACIFDQALC0EAIQMLIARBMGokACADDQggACgCECIDRQ0HQdm6wgBBAiADENUERQ0EDAgLIAAoAhAiAUUNAEHEucIAQRAgARDVBA0HC0EAIQIgAEEAOgAEIABBADYCAAwGCwJAIAAoAhAiAUUNAEHUucIAQRkgARDVBEUNAEEBIQIMBgsgAEEBOgAEDAILQQEhAiAAQQEQIA0ECyABDQIgACgCECIBRQ0CQQEhAkG6tsIAQQEgARDVBEUNAgwDC0EAIQIgAEEANgIADAILIAAgBBBRRQ0AQQEhAgwBC0EAIQIgACgCAEUNACAAIAAoAgxBAWs2AgwLIAZBIGokACACC6ELAgp/AX4gBEUEQCAAQQA2AjwgACADNgI4IAAgAjYCNCAAIAE2AjAgAEEAOgAOIABBgQI7AQwgACACNgIIIABCADcDAA8LQQEhCwJAAkACQAJAAkACQAJAAkACQAJAIARBAUYEQEEBIQkMAQtBASEGQQEhBwNAIAUgCmoiCCAETw0CIAchDAJAIAMgBmotAAAiBiADIAhqLQAAIghJBEAgBSAHakEBaiIHIAprIQtBACEFDAELIAYgCEcEQEEBIQsgDEEBaiEHQQAhBSAMIQoMAQtBACAFQQFqIgcgByALRiIGGyEFIAdBACAGGyAMaiEHCyAFIAdqIgYgBEkNAAtBASEGQQAhCEEBIQdBACEFQQEhCQNAIAUgCGoiDSAETw0DIAchDAJAIAMgBmotAAAiBiADIA1qLQAAIg1LBEAgBSAHakEBaiIHIAhrIQlBACEFDAELIAYgDUcEQEEBIQkgDEEBaiEHQQAhBSAMIQgMAQtBACAFQQFqIgcgByAJRiIGGyEFIAdBACAGGyAMaiEHCyAFIAdqIgYgBEkNAAsgCiEFCyAEIAUgCCAFIAhLIgUbIgxJDQIgCyAJIAUbIgcgDGoiBSAHSQ0DIAQgBUkNBAJ/IAMgAyAHaiAMENQCBEAgBCAMayIGIAxLIQsgBEEDcSEIAkAgBEEBa0EDSQRAQQAhBwwBCyAEQXxxIQpBACEHA0BCASADIAdqIgVBA2oxAACGQgEgBTEAAIYgD4RCASAFQQFqMQAAhoRCASAFQQJqMQAAhoSEIQ8gCiAHQQRqIgdHDQALCyAIBEAgAyAHaiEFA0BCASAFMQAAhiAPhCEPIAVBAWohBSAIQQFrIggNAAsLIAYgDCALG0EBaiEHQX8hCiAMIQtBfwwBC0EBIQhBACEFQQEhBkEAIQsDQCAEIAYiCiAFaiINSwRAIAQgBWsgBkF/c2oiBiAETw0IIAVBf3MgBGogC2siCSAETw0JAkAgAyAGai0AACIGIAMgCWotAAAiCUkEQCANQQFqIgYgC2shCEEAIQUMAQsgBiAJRwRAIApBAWohBkEAIQVBASEIIAohCwwBC0EAIAVBAWoiBiAGIAhGIgkbIQUgBkEAIAkbIApqIQYLIAcgCEcNAQsLQQEhCEEAIQVBASEGQQAhCQNAIAQgBiIKIAVqIg5LBEAgBCAFayAGQX9zaiIGIARPDQogBUF/cyAEaiAJayINIARPDQsCQCADIAZqLQAAIgYgAyANai0AACINSwRAIA5BAWoiBiAJayEIQQAhBQwBCyAGIA1HBEAgCkEBaiEGQQAhBUEBIQggCiEJDAELQQAgBUEBaiIGIAYgCEYiDRshBSAGQQAgDRsgCmohBgsgByAIRw0BCwsgBCAJIAsgCSALSxtrIQsCQCAHRQRAQQAhB0EAIQoMAQsgB0EDcSEGQQAhCgJAIAdBBEkEQEEAIQgMAQsgB0F8cSEJQQAhCANAQgEgAyAIaiIFQQNqMQAAhkIBIAUxAACGIA+EQgEgBUEBajEAAIaEQgEgBUECajEAAIaEhCEPIAkgCEEEaiIIRw0ACwsgBkUNACADIAhqIQUDQEIBIAUxAACGIA+EIQ8gBUEBaiEFIAZBAWsiBg0ACwsgBAshBSAAIAQ2AjwgACADNgI4IAAgAjYCNCAAIAE2AjAgACAFNgIoIAAgCjYCJCAAIAI2AiAgAEEANgIcIAAgBzYCGCAAIAs2AhQgACAMNgIQIAAgDzcDCCAAQQE2AgAPCyAIIARBoMrCABCtAgALIA0gBEGgysIAEK0CAAsgDCAEQYDKwgAQqwQACyAHIAVBkMrCABCsBAALIAUgBEGQysIAEKsEAAsgBiAEQbDKwgAQrQIACyAJIARBwMrCABCtAgALIAYgBEGwysIAEK0CAAsgDSAEQcDKwgAQrQIAC5IMAgd/AX4jAEHwAGsiByQAIAAoAgQhCyAAKAIAIQggB0EANgIEAn8CQCAILQAQQQFHDQAgCCgCACEJAkACQAJAIAtFBEAgByAIQQxqrUKAgICAEIQ3AwggB0EDOgBkIAdBADYCYCAHQiA3AlggB0KAgICAwAA3AlAgB0ECNgJIIAdBATYCPCAHQQI2AiwgB0HkosIANgIoIAdBATYCNCAJQRxqKAIAIAlBIGooAgAgByAHQcgAaiIMNgI4IAcgB0EIaiINNgIwIAdBKGoQRQ0CIAgtABBBAUcNASAIKAIAIQkgB0KAgICAoAE3AxAgByAHQQRqrUKAgICAgD6ENwMIIAdBAzoAZCAHQQA2AmAgB0IgNwJYIAdCgYCAgBA3AlAgB0ECNgJIIAdBATYCPCAHQQI2AiwgB0H4osIANgIoIAdBAjYCNCAJQRxqKAIAIAlBIGooAgAgByAMNgI4IAcgDTYCMCAHQShqEEUNAgwBCyAJQRxqKAIAQYijwgBBBiAJQSBqKAIAKAIMEQIADQEgCC0AEEEBRw0AIAgoAgAhCSAHQoCAgIDQATcDECAHQfyXwgA2AiggB0L8l8KAkD43AwggB0EDOgBkIAdBADYCYCAHQiA3AlggB0KBgICAEDcCUCAHQQI2AkggB0EBNgI8IAdBATYCLCAHQQI2AjQgCUEcaigCACAJQSBqKAIAIAcgB0HIAGo2AjggByAHQQhqNgIwIAdBKGoQRQ0BCwJAIAEoAgBBA0YEQCAIKAIAIgFBHGooAgBB3KDCAEEJIAFBIGooAgAoAgwRAgBFDQEMAgtCgICAgKA+IQ4gCC0AEEUEQCAHQegAaiABQSBqKQIANwMAIAdB4ABqIAFBGGopAgA3AwAgB0HYAGogAUEQaikCADcDACAHQdAAaiABQQhqKQIANwMAIAcgASkCADcDSCAIKAIAIQEgByAOIAdByABqrYQ3AyAgB0EDOgBEIAdBBDYCQCAHQiA3AjggB0ECNgIwIAdBAjYCKCAHQQE2AhwgB0EBNgIMIAdB/JfCADYCCCAHQQE2AhQgAUEcaigCACABQSBqKAIAIAcgB0EoajYCGCAHIAdBIGo2AhAgB0EIahBFDQIMAQsgB0HoAGogAUEgaikCADcDACAHQeAAaiABQRhqKQIANwMAIAdB2ABqIAFBEGopAgA3AwAgB0HQAGogAUEIaikCADcDACAHIAEpAgA3A0ggCCgCACEBIAcgDiAHQcgAaq2ENwMIIAdBATYCLCAHQfyXwgA2AiggB0IBNwI0IAFBHGooAgAgAUEgaigCACAHIAdBCGo2AjAgB0EoahBFDQELIAgoAgBBxKHCAEEBEOUDDQAgA0EBcUUgAigCAEECRnINAiAHIAQ2AiAgCC0AEEEBRgRAIAgoAgAhASAHQoCAgICgATcDECAHQfyXwgA2AiggB0L8l8KAkD43AwggB0EDOgBkIAdBADYCYCAHQiA3AlggB0KBgICAEDcCUCAHQQI2AkggB0EBNgI8IAdBATYCLCAHQQI2AjQgAUEcaigCACABQSBqKAIAIAcgB0HIAGo2AjggByAHQQhqNgIwIAdBKGoQRQ0BCyAIKAIAIgFBHGooAgBBjqPCAEEQIAFBIGooAgAoAgwRAgANACAIKAIEIAgoAgghAyAHQdQAaiACQQhqKAIANgIAIAcgCCgCACIENgJIIAcgAikCADcCTCAEIAdBzABqIAMoAhARAgANACAIKAIAIQEgB0KAgICAECIOIAdBIGqthDcDKCAHQQE2AkwgB0Ggo8IANgJIIAdCATcCVCABQRxqKAIAIAFBIGooAgAgByAHQShqIgM2AlAgB0HIAGoQRQ0AIAVBAXFFDQEgByAGNgIIIAgoAgAhASAHIA4gB0EIaq2ENwMoIAdBATYCTCAHQaCjwgA2AkggB0IBNwJUIAFBHGooAgAgAUEgaigCACAHIAM2AlAgB0HIAGoQRUUNAQtBAQwCC0EBIAgoAgAiAkEcaigCAEHEocIAQQEgAkEgaigCACgCDBECAA0BGgsgACALQQFqNgIEQQALIAdB8ABqJAALxAkCFX8CfiMAQZAEayIJJAAgCUEMakEAQYAEEFoaAkAgACgCDCISRQRAIAEgACgCACAAKAIEEOUDIQIMAQsgACgCACENIAAoAggiDi0AACEKAkACQCAAKAIEIg9FDQAgDSAPaiELIAlBDGohBCANIQADQAJ/IAAsAAAiA0EATgRAIANB/wFxIQUgAEEBagwBCyAALQABQT9xIQYgA0EfcSEIIANBX00EQCAIQQZ0IAZyIQUgAEECagwBCyAALQACQT9xIAZBBnRyIQYgA0FwSQRAIAYgCEEMdHIhBSAAQQNqDAELIAhBEnRBgIDwAHEgAC0AA0E/cSAGQQZ0cnIiBUGAgMQARg0CIABBBGoLIQAgAkGAAUYNAiAEIAU2AgAgBEEEaiEEIAJBAWohAiAAIAtHDQALCyAOIBJqIRMgAkEBayEVIAJBAnQiAEEEaiEMIAAgCWpBCGohCyAJQQRrIRZBvAUhFEHIACEHIA4hBUGAASEIAkADQCAKQeEAayIAQf8BcUEaTwRAIApBMGtB/wFxQQlLDQMgCkEWayEACyAFQQFqIQUCQEEaQQFBJCAHayIDQQAgA0EkTRsiAyADQQFNGyIDIANBGk8bIgMgAEH/AXEiBE0EQEEkIANrIQZByAAhAANAIAUgE0YNBSAFLQAAIgpB4QBrIgNB/wFxQRpPBEAgCkEwa0H/AXFBCUsNBiAKQRZrIQMLIAatIhcgA0H/AXEiBq1+IhhCIIinDQUgGKcgBGoiAyAESQ0FIAZBGkEBIAAgB2siBEEAIAAgBE8bIgQgBEEBTRsiBCAEQRpPGyIETwRAIAVBAWohBSAAQSRqIQAgF0EkIARrrX4iF6chBiADIQQgF0IgiFANAQwGCwsgBUEBaiEFDAELIAQhAwsgAyARaiIAIBFJDQIgCCAAIAJBAWoiBm4iBCAIaiIISyAIQYCwA3NBgBBrQf/vwwBLciAIQYCAxABGIAJB/wBLcnINAgJAIAAgBCAGbGsiByACSQRAIAIgB2tBA3EiCgRAQQAhBCALIQADQCAAQQRqIAAoAgA2AgAgAEEEayEAIAogBEEBaiIERw0ACyACIARrIQILIBAgFWogB2tBA0kNASAWIAJBAnRqIQADQCAAQQxqIABBCGopAgA3AgAgAEEEaiAAKQIANwIAIABBEGshACACQQRrIgIgB0sNAAsMAQsgB0GAAU8NAgsgCUEMaiAHQQJ0aiAINgIAIAUgE0cEQCAFLQAAIQpBACEAAkAgAyAUbiIDIAZuIANqIgJByANJBEAgAiEDDAELA0AgAEEkaiEAIAJB1/wASyACQSNuIgMhAg0ACwsgB0EBaiERIAAgA0EkbEH8/wNxIANBJmpB//8DcW5qIQcgC0EEaiELIAxBBGohDCAQQQFqIRBBAiEUIAYhAgwBCwsgCUEMaiEAA0AgCSAAKAIANgKMBCAJQYwEaiABEI0BIgINAyAAQQRqIQAgDEEEayIMDQALDAILIAdBgAFBoLbCABCtAgALQQEhAiABQbC2wgBBCRDlAw0AIA8EQCABIA0gDxDlAw0BIAFBubbCAEEBEOUDDQELIAEgDiASEOUDDQAgAUG6tsIAQQEQ5QMhAgsgCUGQBGokACACC5cKAQZ/IwBB4ABrIgEkAAJ/AkAgACgCACIDRQ0AAkAgACgCCCICIAAoAgQiBE8NACACIANqLQAAQdUARw0AQQEhBSAAIAJBAWoiAjYCCAsCQAJAAkAgAiAESQRAIAIgA2otAABBywBGDQELIAVFDQNBACEDDAELIAAgAkEBaiIGNgIIAkACQCAEIAZNDQAgAyAGai0AAEHDAEcNACAAIAJBAmo2AghBASEEQeCzwgAhAwwBCyABQShqIAAQNyABKAIoIgMEQCABKAIsIgQEQCABKAI0RQ0CCwJAIAAoAhAiAkUNAEHEucIAQRAgAhDVBEUNAEEBDAYLIABBADoABCAAQQA2AgBBAAwFCyAAKAIQIQICQCABLQAsIgNFBEAgAkUNAUHEucIAQRAgAhDVBEUNAUEBDAYLIAJFDQBB1LnCAEEZIAIQ1QRFDQBBAQwFCyAAIAM6AAQgAEEANgIAQQAMBAsgBUUNAQsCQCAAKAIQIgJFDQBBobrCAEEHIAIQ1QRFDQBBAQwDCyADRQ0BCwJAIAAoAhAiAkUNAEGousIAQQggAhDVBEUNAEEBDAILIAFBATsBJCABIAQ2AiAgAUEANgIcIAFBAToAGCABQd8ANgIUIAEgBDYCECABQQA2AgwgASAENgIIIAEgAzYCBCABQd8ANgIAIAFBKGogARBQAn8gASgCKEUEQAJAIAEtACUNACABQQE6ACUCQCABLQAkQQFGBEAgASgCICEFIAEoAhwhBAwBCyABKAIgIgUgASgCHCIERg0BCyABKAIEIARqIQMgBSAEawwCC0GwusIAEK4EAAsgASgCHCEEIAEgASgCMDYCHCADIARqIQMgASgCLCAEawshBAJAIAIEQCADIAQgAhDVBA0BCyABQcgAaiABQSBqKQIANwMAIAFBQGsgAUEYaikCADcDACABQThqIAFBEGopAgA3AwAgAUEwaiABQQhqKQIANwMAIAEgASkCADcDKAJAIAEtAE0NACACIQMDQCABKAIsIQUgAUHUAGogAUEoahBQAn8gASgCVEUEQCABLQBNDQMgAUEBOgBNAkAgAS0ATEEBRgRAIAEoAkghBSABKAJEIQQMAQsgASgCSCIFIAEoAkQiBEYNBAsgASgCLCAEaiEGIAUgBGsMAQsgASgCRCEEIAEgASgCXDYCRCAEIAVqIQYgASgCWCAEawshBAJAIANFBEBBACEDDAELQbm2wgBBASADENUEDQMgACgCECICRQRAQQAhAkEAIQMMAQsgAiEDIAYgBCACENUEDQMLIAEtAE1FDQALCyACRQ0BQcC6wgBBAiACENUERQ0BC0EBDAELAkAgACgCECICRQ0AQcK6wgBBAyACENUERQ0AQQEMAQsCQAJAAkAgACgCACIDRQRAQQAhAwwBC0EAIQIDQAJAIAAoAggiBCAAKAIETw0AIAMgBGotAABBxQBHDQAgACAEQQFqNgIIDAILAkAgAkUNACAAKAIQIgNFDQBB9bnCAEECIAMQ1QRFDQBBAQwFCyAAECcNAiACQQFrIQIgACgCACIDDQALQQAhAwsgACgCECIEBEBBAUH1s8IAQQEgBBDVBA0DGiAAKAIAIQMLIANFDQEgACgCCCICIAAoAgRPDQEgAiADai0AAEH1AEcNASAAIAJBAWo2AghBAAwCC0EBDAELAkAgACgCECICRQ0AQcW6wgBBBCACENUERQ0AQQEMAQsgABAnCyABQeAAaiQAC+sJAgJ/AX4jAEEwayICJAACfwJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkBBAiAAKAIAQfv///8HaiIDIANBDk8bQQFrDg0BAgMEBQYHCAkKCwwNAAsgAiAAQQRqNgIEIAJBATYCDCACQfCnwQA2AgggAkIBNwIUIAIgAkEEaq1CgICAgJA4hDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwNCyACIABBBGo2AgQgAkEBNgIMIAJB8KfBADYCCCACQgE3AhQgAiACQQRqrUKAgICA4DiENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAwLIAIgADYCBCACQQE2AgwgAkHwp8EANgIIIAJCATcCFCACIAJBBGqtQoCAgICQN4Q3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMCwsgASgCHEH4xcEAQSYgASgCICgCDBECAAwKCyACIABBBGo2AgAgAiAAQQhqNgIEIAJBAzYCDCACQfjGwQA2AgggAkICNwIUIAIgAq1CgICAgPA1hDcDKCACIAJBBGqtQoCAgIDgNIQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMCQsgAiAAQQRqNgIEIAJBAjYCDCACQfC8wQA2AgggAkIBNwIUIAIgAkEEaq1CgICAgLA4hDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwICyACIABBBGo2AgQgAkECNgIMIAJB3MfBADYCCCACQgE3AhQgAiACQQRqrUKAgICA8DWENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAcLIAEoAhxB7MfBAEEtIAEoAiAoAgwRAgAMBgsgAiAAQQRqNgIEIAJBATYCDCACQcDIwQA2AgggAkIBNwIUIAIgAkEEaq1CgICAgIA2hDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwFCyACIABBBGo2AgAgAiAAQQhqNgIEIAJBAjYCDCACQYDJwQA2AgggAkICNwIUIAJCgICAgPA1IgQgAkEEaq2ENwMoIAIgBCACrYQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMBAsgAiAAQQRqNgIAIAIgAEEIajYCBCACQQM2AgwgAkH0ycEANgIIIAJCAjcCFCACIAJBBGqtQoCAgIDgNIQ3AyggAiACrUKAgICA8DWENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAMLIAIgAEEEajYCACACIABBCGo2AgQgAkECNgIMIAJBuMrBADYCCCACQgI3AhQgAkKAgICA8DUiBCACrYQ3AyggAiAEIAJBBGqthDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwCCyACIABBBGo2AgQgAkECNgIMIAJB+MrBADYCCCACQgI3AhQgAkLIysGAgDk3AyggAiACQQRqrUKAgICA4DSENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAELIAIgAEEEajYCBCACQQI2AgwgAkHEy8EANgIIIAJCAjcCFCACQsjKwYCAOTcDKCACIAJBBGqtQoCAgIDgNIQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEULIAJBMGokAAvoCQEJfyMAQdAAayIBJABBgYDEACEDAkACQCAAKAIEIgQgACgCECICSQ0AIAAgBCACayIGNgIEIAAgACgCACIDIAJqIgQ2AgACQAJAAkAgAkECRgRAIAMtAAAiAkHBAGtBX3FBCmogAkEwayACQTlLGyICQRBPDQUgAy0AASIDQcEAa0FfcUEKaiADQTBrIANBOUsbIgNBEE8NBSACQQR0IANyIgLAQQBODQFBgIDEACEDIAJB/wFxIgVBwAFJDQQgAQJ/QQIgBUHgAUkNABogBUHwAUkEQEEBIQhBAwwBCyAFQfgBTw0FQQQLIgM2AgggAUEAOgAPIAFBADsADSABIAI6AAwgASABQQxqNgIEIAZBAkkNAyAAIAZBAmsiBzYCBCAAIARBAmo2AgAgBC0AACIFQcEAa0FfcUEKaiAFQTBrIAVBOUsbIglBD0sNBQJAIAQtAAEiBUHBAGtBX3FBCmogBUEwayAFQTlLGyIFQQ9LDQAgASAJQQR0IAVyOgANIAJB/wFxQeABSQ0DIAdBAkkNBCAAIAZBBGsiBTYCBCAAIARBBGo2AgAgBC0AAiICQcEAa0FfcUEKaiACQTBrIAJBOUsbIgdBD0sNBiAELQADIgJBwQBrQV9xQQpqIAJBMGsgAkE5SxsiAkEPSw0AIAEgB0EEdCACcjoADiAIDQMgBUECSQ0EIAAgBkEGazYCBCAAIARBBmo2AgAgBC0ABCIAQcEAa0FfcUEKaiAAQTBrIABBOUsbIgZBD0sNBiAELQAFIgBBwQBrQV9xQQpqIABBMGsgAEE5SxsiAEEPSw0AIAEgBkEEdCAAcjoADwwDCwwFC0HMtsIAQShB9LbCABDtAgALQQEhAyABQQE2AgggAUEAOgAPIAFBADsADSABIAI6AAwgASABQQxqNgIECyABQTBqIAFBDGogAxA9IAEoAjANACABKAI0IQAgASABKAI4IgQ2AhQgASAANgIQIAECfwJAIARFDQAgACAEaiEFAkAgBQJ/IAAsAAAiA0EATgRAIANB/wFxIQMgAEEBagwBCyAALQABQT9xIQIgA0EfcSEGIANBX00EQCAGQQZ0IAJyIQMgAEECagwBCyAALQACQT9xIAJBBnRyIQIgA0FwSQRAIAIgBkEMdHIhAyAAQQNqDAELIAZBEnRBgIDwAHEgAC0AA0E/cSACQQZ0cnIhAyAAQQRqCyIGRwRAIAYsAAAaDAELIANBgIDEAEcNBAsgBEEQSQ0AIAAgBBAvDAELAn9BACEDQQAgBEUNABogBEEDcSEGAkAgBEEESQRAQQAhBAwBCyAEQXxxIQVBACEEA0AgBCAAIANqIgIsAABBv39KaiACQQFqLAAAQb9/SmogAkECaiwAAEG/f0pqIAJBA2osAABBv39KaiEEIAUgA0EEaiIDRw0ACwsgBgRAIAAgA2ohAANAIAQgACwAAEG/f0pqIQQgAEEBaiEAIAZBAWsiBg0ACwsgBAsLNgJMIAFBBDYCHCABQYS4wgA2AhggAUIDNwIkIAEgAUHMAGqtQoCAgIAQhDcDQCABIAFBEGqtQoCAgIDgwQCENwM4IAEgAUEEaq1CgICAgPDBAIQ3AzAgASABQTBqNgIgIAFBGGpBpLjCABCkAwALQYCAxAAhAwsgAUHQAGokACADDwtBhLfCABCuBAAL2RoCCX8CfiMAQSBrIgYkAAJAAkACQAJAAkACQAJAAkACQCAAKAIAIgMEQCAAKAIIIgIgACgCBE8NAyAAIAJBAWo2AgggAiADai0AACIBQeEAayIEQf8BcSIFQRlLQb/38x0gBXZBAXFFcg0CIAAoAhAiAA0BQQAhAwwJCyAAKAIQIgBFBEBBACEDDAkLQe25wgBBASAAENUEIQMMCAsgBEH/AXFBAnQiAUHcvcIAaigCACABQfS8wgBqKAIAIAAQ1QQhAwwHCyAAIAAoAgxBAWoiBDYCDCAEQfQDTQRAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQCABQcEAaw4UAgYNBQ0EDQ0NDQ0NDQ0BAQAAAgMNCyAAKAIQIgIEQEEBIQNB+bPCAEEBIAIQ1QQNFSAAKAIAIgNFDRILIAAoAggiAiAAKAIETw0RIAIgA2otAABBzABHDREgACACQQFqNgIIIAZBEGogABBwIAYtABANByAGKQMYIgpQRQ0GDBELIAAoAhAiAgRAQQEhA0H6s8IAQQEgAhDVBA0UCyAAKAIQIQMgAUHQAEcNByADRQ0IQZK6wgBBBiADENUERQ0IDBILIAAoAhAiAgRAQQEhA0H3ucIAQQEgAhDVBA0TC0EBIQMgABAnDRIgAUHBAEYEQCAAKAIQIgEEQEGYusIAQQIgARDVBA0UCyAAQQEQIA0TCyAAKAIQIgFFDRBB+LnCAEEBIAEQ1QRFDRAMEgsgACgCECIBBEBBASEDQfazwgBBASABENUEDRILIAZBCGohA0EAIQECfwJAIAAoAgAiAkUNAANAAkAgACgCCCIEIAAoAgRPDQAgAiAEai0AAEHFAEcNACAAIARBAWo2AggMAgsCQCABRQ0AIAAoAhAiAkUNAEH1ucIAQQIgAhDVBEUNAEEBDAMLQQEgABAnDQIaIAFBAWohASAAKAIAIgINAAsLQQALIQIgAyABNgIEIAMgAjYCACAGKAIIDRAgBigCDEEBRgRAIAAoAhAiAUUNEEEBIQNB9LPCAEEBIAEQ1QQNEgsgACgCECIBRQ0PQQEhA0H1s8IAQQEgARDVBEUNDwwRC0EAIQEjAEEQayIDJAACQAJAAkACQCAAKAIAIgIEQCAAKAIIIgQgACgCBCIFTw0DIAIgBGotAABBxwBHDQMgACAEQQFqIgE2AgggASAFTw0BIAEgAmotAABB3wBHDQEgACAEQQJqNgIIDAILIAAoAhAiAkUNA0HtucIAQQEgAhDVBCEBDAMLA0ACQAJAAkACQCABIAVJBEAgASACai0AAEHfAEYNAQsgASAFRg0DIAEgAmotAAAiBEEwayIHQf8BcUEKSQ0CIARB4QBrQf8BcUEaSQ0BIARBwQBrQf8BcUEaTw0DIARBHWshBwwCCyAAIAFBAWo2AgggCkJ9Vg0CIApCAXwhCgwECyAEQdcAayEHCyAAIAFBAWoiATYCCCADIAoQmwIgAykDCEIAUg0AIAMpAwAiCyAHrUL/AYN8IgogC1oNAQsLAkAgACgCECIBRQ0AQcS5wgBBECABENUERQ0AQQEhAQwDC0EAIQEgAEEAOgAEIABBADYCAAwCCyAKQgF8IQsLAkAgACgCECIBBEAgC1ANAUHvucIAQQQgARDVBARAQQEhAQwDCyAAIAAoAhRBAWo2AhQgAEIBELwBBEBBASEBDAMLQgEhCgNAIAogC1EEQCAAKAIQIgJFDQNBASEBQfO5wgBBAiACENUERQ0DDAQLAkAgClANACAAKAIQIgFFDQBB9bnCAEECIAEQ1QRFDQBBASEBDAQLQQEhASAAIAAoAhRBAWo2AhQgCkIBfCEKIABCARC8AUUNAAsMAgsgABAkIQEMAQsgABAkIQEgACAAKAIUIAunazYCFAsgA0EQaiQAIAFFDQ4MDwsgACgCECIBBEBBmrrCAEEEIAEQ1QQNDwtBASEDQQAhASMAQRBrIgQkAAJAAkACQAJAIAAoAgAiAgRAIAAoAggiBSAAKAIEIgdPDQMgAiAFai0AAEHHAEcNAyAAIAVBAWoiATYCCCABIAdPDQEgASACai0AAEHfAEcNASAAIAVBAmo2AggMAgsgACgCECICRQ0DQe25wgBBASACENUEIQEMAwsDQAJAAkACQAJAIAEgB0kEQCABIAJqLQAAQd8ARg0BCyABIAdGDQMgASACai0AACIFQTBrIghB/wFxQQpJDQIgBUHhAGtB/wFxQRpJDQEgBUHBAGtB/wFxQRpPDQMgBUEdayEIDAILIAAgAUEBajYCCCAKQn1WDQIgCkIBfCEKDAQLIAVB1wBrIQgLIAAgAUEBaiIBNgIIIAQgChCbAiAEKQMIQgBSDQAgBCkDACILIAitQv8Bg3wiCiALWg0BCwsCQCAAKAIQIgFFDQBBxLnCAEEQIAEQ1QRFDQBBASEBDAMLQQAhASAAQQA6AAQgAEEANgIADAILIApCAXwhCwsgACgCECIBRQRAQQAhAQNAAkAgACgCCCIFIAAoAgRPDQAgAiAFai0AAEHFAEcNACAAIAVBAWo2AghBACEBDAMLAkAgAUUNACAAKAIQIgJFDQBBnrrCAEEDIAIQ1QRFDQBBASEBDAMLIAAQQgRAQQEhAQwDCyABQQFrIQEgACgCACICDQALQQAhAQwBCwJAIAtQDQBB77nCAEEEIAEQ1QQEQEEBIQEMAgsgACAAKAIUQQFqNgIUIABCARC8AQRAQQEhAQwCC0IBIQoDQCAKIAtRBEAgACgCECICRQ0CQQEhAUHzucIAQQIgAhDVBEUNAgwDCwJAIApQDQAgACgCECIBRQ0AQfW5wgBBAiABENUERQ0AQQEhAQwDC0EBIQEgACAAKAIUQQFqNgIUIApCAXwhCiAAQgEQvAFFDQALDAELAn9BACAAKAIAIgJFDQAaQQAhAQJAA0ACQCAAKAIIIgUgACgCBE8NACACIAVqLQAAQcUARw0AIAAgBUEBajYCCEEADAMLAkAgAUUNACAAKAIQIgJFDQBBnrrCAEEDIAIQ1QQNAgsgABBCDQEgAUEBayEBIAAoAgAiAg0AC0EADAELQQELIQEgACAAKAIUIAunazYCFAsgBEEQaiQAIAENDyAAKAIAIgJFDQUgACgCCCIBIAAoAgRPDQUgASACai0AAEHMAEcNBSAAIAFBAWo2AgggBkEQaiAAEHAgBi0AEA0GIAYpAxgiClANDSAAKAIQIgEEQEGeusIAQQMgARDVBA0PCyAAIAoQvAFFDQ0MDgtBACEBIwBBIGsiAiQAAkACQAJAAkACfgJAAkACQCAAKAIAIgUEQCAAKAIIIgMgACgCBCIHSQRAIAMgBWotAABB3wBGDQMLIAMgByADIAdLGyEJIAMhAQNAIAEgB0kEQCABIAVqLQAAQd8ARg0DCyABIAlGDQYCQCABIAVqLQAAIgRBMGsiCEH/AXFBCkkNACAEQeEAa0H/AXFBGk8EQCAEQcEAa0H/AXFBGk8NCCAEQR1rIQgMAQsgBEHXAGshCAsgACABQQFqIgE2AgggAiAKEJsCIAIpAwhCAFINBiACKQMAIgsgCK1C/wGDfCIKIAtaDQALDAULIAAoAhAiA0UNB0HtucIAQQEgAxDVBCEBDAcLIAAgAUEBajYCCCAKQn9SDQEMAwsgACADQQFqNgIIQgAMAQsgCkIBfAshCiAKIANBAWutWg0AQQEhASAAKAIQIQMgACgCDEEBaiIEQfQDSw0BIANFBEBBACEBDAQLIAJBGGoiBSAAQQhqIgMpAgA3AwAgACAENgIMIAMgCj4CACACIAApAgA3AxAgABAnIQEgAyAFKQMANwIAIAAgAikDEDcCAAwDC0EAIQEgACgCECIDRQ0BQcS5wgBBECADENUERQ0BQQEhAQwCCyADRQ0AQdS5wgBBGSADENUEDQELIAAgAToABEEAIQEgAEEANgIACyACQSBqJAAgAQ0NDAwLIAAgChC8AQ0MIAAoAhAiAkUNCkEBIQNBjbrCAEEBIAIQ1QRFDQoMDQsgACgCECEBAkAgBi0AESIDRQRAIAFFDQFBxLnCAEEQIAEQ1QRFDQEMDQsgAUUNAEHUucIAQRkgARDVBA0MCyAAIAM6AAQMCAsgA0UNAEGOusIAQQQgAxDVBA0KCyAAECdFDQgMCQsgACgCECIBRQ0EQcS5wgBBECABENUEDQkMBAsgACgCECEBAkAgBi0AESIDRQRAIAFFDQFBxLnCAEEQIAEQ1QRFDQEMCQsgAUUNAEHUucIAQRkgARDVBA0ICyAAIAM6AAQMBAsgACACNgIIIABBABAfRQ0FDAYLIAAoAhAiAQRAQdS5wgBBGSABENUEDQYLIABBAToABAwCCyAAKAIQIgFFDQBBxLnCAEEQIAEQ1QQNBAtBACEDIABBADoABCAAQQA2AgAMBAtBACEDIABBADYCAAwDCwJAIAFB0gBGDQAgACgCECIBRQ0AQY66wgBBBCABENUEDQILIAAQJw0BC0EAIQMgACgCAEUNASAAIAAoAgxBAWs2AgwMAQtBASEDCyAGQSBqJAAgAwvriAECJn8KfiMAQYABayITJAACQAJAAkAgASgCAEECRg0AIAEtAMwDIRsgAS0AEEEEcQRAIBtBAXFFDQIgASgCGA0BDAILIBtBAXFFDQELIAEQvwENACAAQQQ6AAAgAEEANgIEDAELAkAgARC/ASADTw0AIAEoAgBBAkYNACABQShqIQ0gAUHgA2ohJUG4hcEAKQMAIi9C/wGDITBB8P/AACkCACIxQv8BgyEyIBNB7ABqQQFyISMCfwJAAkADQCABLQDMAyEEAkAgAS0AEEEEcQRAIARBAXFFDQEgASgCGA0GDAELIARBAXENBQsgARC/ASEEIBMgJTYCRCABKAIAIBNBBzYCSEECRiIGDQJBACABIAYbISAgAyAEayEmIBNByABqECogASgCmAIhJCABKAKcAiEEIBNBADYCbCAEIAEoApQCQQAgBCAkSRtqIScCQANAIBMoAkQiBCgCACEGAn4CQAJAIAQoAgQiBUEDTwRAICMgBi8AADsAACAEIAVBA2s2AgQgBCAGQQNqNgIAICNBAmogBkECai0AADoAAAwBCyAEQQA2AgQgBCAFIAZqNgIAIDJCBFINAQsgEy0AbSIFQQF2QQNxIgdBA0YEQCAbQf+BfHFBgARyIRsgLkKAfoNCBIQMAgsCQAJAAkAgEy0AbkEFdCAFQfgBcUEDdnIgEy0Ab0ENdHIiBkGAgAhNBEAgBiEEIAdBAWsOAgECAwsgG0H/gXxxQYAEciEbIC5CgP7//w+DIAatQiCGhEIGhAwEC0EBIQYMAQtBACEECyATQQE2AmwgG0GAgHxxIAdyIAVBAXFBCHRyIRsgBK0gBq1CIIaEDAELIBtB/4F8cUGABHIhGyAxCyEuIBtBgP4DcUGABEYNASABIAEpA8ADQgN8NwPAAyATIBs2AnggEyAuNwNwIBNByABqIRggE0HwAGohBiATQcQAaiEEQQAhBUEAIQ5CACEqQgAhLEIAIS0jAEHAgAhrIg8kAAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAIBNB7ABqIiItAABBAWsOAgABDQsgBi0ACEEBaw4DAgMEAQsgGEEHNgIADBwLIA9BDGpBAEGAgAgQWhogBCgCACEEAkAgBigCACIKQYCACEkNACAKQRF2IQcgDUHoAWohC0Hw/8AAKQMAIi1C/wGDQgRSBEADQCAEKAIAIQYgBCgCBCIFQYCACEkNCCAPQQxqIgggBkGAgAgQOxogBCAFQYCACGs2AgQgBCAGQYCACGo2AgAgCyAIQYCACBCnASAHQQFrIgcNAAwCCwALA0AgBCgCACEGIAQCfyAEKAIEIghBgIAITwRAIA9BDGogBkGAgAgQOxogBkGAgAhqIQUgCEGAgAhrDAELIAYgCGohBUEACzYCBCAEIAU2AgAgCyAPQQxqQYCACBCnASAHQQFrIgcNAAsLIAQoAgAhBSAEKAIEIgcgCkH//wdxIgZJDQYgByAGayEHIAUgBmohCyAGQQFGDQMgD0EMaiAFIAYQOxoMBAsgD0EAOgAMIAYoAgAhByAEKAIAIgQoAgQiBkUNByAEIAZBAWs2AgQgBCAEKAIAIgRBAWo2AgAgDyAELQAAIgU6AAwMCAsgBigCBCIhIQcgDSgCiAMiBSAhSQRAICEgBWsiBiANKAKAAyAFa0sEQCANQYADaiAFIAZBAUEBEJABIA0oAogDIQULIA0oAoQDIgogBWohByAGQQJPBH8gB0EAIAZBAWsiBhBaGiAKIAUgBmoiBWoFIAcLQQA6AAAgBUEBaiEHCyANIAc2AogDIAQoAgAiBCgCACEGAkAgByAEKAIEIgVNBEAgDSgChAMhCiAFIAdrIQUgBiAHaiELAkAgB0EBRwRAIAogBiAHEDsaDAELIAogBi0AADoAAAsgBCAFNgIEIAQgCzYCAAwBC0EAIQcgBEEANgIEIAQgBSAGajYCAEHw/8AAKQMAIi2nIgRB/wFxQQRHDQwLIA0oAogDIRUgDSgChAMhBiAPQQA6AKaACCAPQQA6AKSACCAPQQA2ApiACCAPQQA2AqCACCAPQQxqIQogD0GYgAhqIQQjAEEgayIFJAAgBSAVNgIIIAUgBjYCBCAFQQA2AgwgBUEQaiIHIAVBBGoiC0ECEE8gBSkDGCErAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkAgBSgCEEUEQCAEICunQQNxIgg6AA4gByALQQIQTyAFKQMYISsgBSgCEA0BIBVFDQJBg4aQKEGBhIQYIAYtAAAiC0ECcRsgC0EBdEEYcXYiB0EHcSAVSw0DICunIQcgCEECSQRAIARBADYCAAJAAkACQAJAIAdB/wFxDgQBAgEDAAtBrN/BAEHGAEGg4cEAEO0CAAsgBCALQQN2NgIIQQEhBwwPCyAVQQFHBEAgBCAGLQABQQR0IAtBBHZyNgIIQQIhBwwPC0EBQQFB8ODBABCtAgALIBVBAUYNBSAVQQJLBEAgBCAGLQABQQR0IAtBBHZyIAYtAAJBDHRyNgIIQQMhBwwOC0ECQQJBkOHBABCtAgALAkACQAJAIAdB/wFxIgcEQCAHQQNLDQ8gBEGBCDsBDCAHQQJrDgICAwELIARBgQI7AQwLIBVBAUYNByAEIAYtAAEiB0E/cUEEdCALQQR2cjYCCCAVQQJLBEAgBEEBNgIAIAQgBi0AAkECdCAHQQZ2cjYCBEEDIQcMDwtBAkECQdDhwQAQrQIACyAVQQFGDQcgFUECTQ0IQQQhByAEIAYtAAFBBHQgC0EEdnIgBi0AAiILQQNxQQx0cjYCCCAVQQNHBEAgBEEBNgIAIAQgBi0AA0EGdCALQQJ2cjYCBAwOC0EDQQNBgOLBABCtAgALIBVBAUYNCCAVQQJNDQkgBCAGLQABQQR0IAtBBHZyIAYtAAIiB0E/cUEMdHI2AgggFUEDRg0KIBVBBEsEQCAEQQE2AgAgBCAGLQADQQJ0IAdBBnZyIAYtAARBCnRyNgIEQQUhBwwNC0EEQQRBwOLBABCtAgALIAUoAhQhBCAKICs3AgQgCiAENgIADAwLIAUoAhQhBCAKICs3AgQgCiAENgIADAsLQQBBAEHg4MEAEK0CAAsgCiAHOgAIIAogFTYCBCAKQQQ6AAAMCQtBAUEBQYDhwQAQrQIAC0EBQQFBwOHBABCtAgALQQFBAUHg4cEAEK0CAAtBAkECQfDhwQAQrQIAC0EBQQFBkOLBABCtAgALQQJBAkGg4sEAEK0CAAtBA0EDQbDiwQAQrQIAC0Gs38EAQcYAQbDhwQAQ7QIACyAKQQU6AAAgCiAHOgABCyAFQSBqJAAgDy0ADSEEIA8tAAwiBUEFRw0MIAQgFUsNDQJAAkACQCAPKAKYgAhFBEAgDy0ApoAIIgcOAgIDAQsgDygCnIAIIQcMAgtB5IDBAEETQfiAwQAQ7QIACyAPKAKggAghBwsgFSAEayIfIAdJDQ4gDUEANgLwAiAPQQxqIRQgBCAGaiEcIAchBiANQegCaiEQIwBBMGsiCSQAAkACQAJAAkACQAJAAkACQAJAIA9BmIAIaiIFLQAOIgRBAWsOAwIBAQALIAUoAggiBCAGSw0DIAQgECgCACAQKAIIIgZrSwRAIBAgBiAEQQFBARCSASAQKAIIIQYLIBAoAgQgBmogHCAEEDsaIBQgBDYCBCAQIAQgBmo2AgggFEGegICAeDYCAAwHCyAFKAIAQQFHBEBBk4CAgHghCAwGCyAFLQAMQQFHBEBBlICAgHghCAwGCyAFKAIEIREgBS0ADSEeIAUoAggiFiAQKAIAIBAoAggiBWtLBEAgECAFIBZBAUEBEJIBCyAGIBFJDQMCQCAEQQJGBEAgCUEYaiEZQQAhBUIAISsjAEFAaiIMJAAgDSIIQQA2AggCQAJAAn8gESIERQRAQYiAgIB4IRIMAgsgHEEBaiEXIARBAWshBQJAAkACQAJAAkACQAJAIBwsAAAiCkEASARAIAggCkH/AGsiHUH/AXEiCyAIKAIUIgRLBH8gCyAEayIOIAgoAgwgBGtLBEAgCEEMaiAEIA5BAUEBEJIBIAgoAhQhBAsgCCgCECIaIARqIRIgDkECTwR/IBJBACAOQQFrIg4QWhogGiAEIA5qIgRqBSASC0EAOgAAIARBAWoFIAsLNgIUIB1BAXEgC0EBdmoiBCAFTQRAIApB/wBxQQJ0QQxqIR1BACEEA0AgBEEBdiEKAkACQAJAAkAgBEEBcUUEQCAFIApNDQEgCCgCFCIOIARNDQIgCCgCECAEaiAKIBdqLQAAQQR2OgAADAQLIAUgCk0EQCAKIAVBjPrBABCtAgALIAgoAhQiDiAESw0CIAQgDkGc+sEAEK0CAAsgCiAFQez5wQAQrQIACyAEIA5B/PnBABCtAgALIAgoAhAgBGogCiAXai0AAEEPcToAAAsgCyAEQQFqIgRHDQALIAgoAhQhBAwCC0GQgICAeCESQQAhCEEAIQ4MCQsCQAJAIAUgCk8EQCAMQRhqIAhBPGoiBCAXIAVBBhAtIAwoAhwhCyAMKAIYIhJBhYCAgHhHDQEgCiALTw0CIAtBCHYhCEGPgICAeCESIAshBSAKIQQMCwtBiYCAgHghEkEAIQggCiEEDAoLIAtBCHYhCCAMKAIgIgRBgH5xIQ4gDCkCJCErIAshBQwJCyAIKAJEBH4gCCgCQCkCAAVCAAshKyAMIAQ2AgAgDCArNwIEIAwgKzcCECAMIAQ2AgwCQCAFIAtrIgUgCiALayIETwRAIAxBADoALCAMQgA3AyAgDCALIBdqNgIYIAwgBDYCHCAMIARBA3Q2AihBACEEDAELIARBgH5xIQ4gBUEIdiEIQY6AgIB4IRIMCQsDQCAEQQhPAn4gDkH/AXFFBEAgDEEYakEBEFsMAQsgDCAOQQFrIgU6ACwgDCkDICAFQT9xrYhCAYMLIitCAVFyRQRAIARBAWohBCAMLQAsIQ4MAQsLIARBB0sNAyAMQTBqIgQgDCAMQRhqIgsQ6AEgDC0AMCIFQQNHDQYgBCAMQQxqIAsQ6AEgDC0AMCIFQQNHDQUgCkEDdEEIaiEdIAhBADYCFCAMLQAJIQQgDCgCDCELIAwoAgAhDkEAIQUCQCAIQQxqIgoCfwJAA0AgCigCACAFRgRAIApBrPrBABDCAQsgCCgCECAFaiAEOgAAIAggBUEBajYCFAJ+QgAgDC0ACCIERQ0AGiAEIAwtACwiBU0EQCAMIAUgBGsiBToALEJ/IASthkJ/hSAMKQMgIAVBP3GtiIMMAQsgDEEYaiAEEFsLISsCfgJAIAwoAgQgK6dqIgQgDigCCCIFSQRAIAwgDigCBCAEQQN0aikCACIrNwIEIAgoAgwhEiAIKAIUIQUgDC0AFSEEAkAgDCgCKCAMLQAsakEATgRAIAUgEkYEQCAKQbz6wQAQwgELIAgoAhAgBWogBDoAACAIIAVBAWo2AhQgDC0AFCIEDQFCAAwECyAFIBJHDQdB3PrBAAwGCyAMLQAsIgUgBEkNASAMIAUgBGsiBToALEJ/IASthkJ/hSAMKQMgIAVBP3GtiIMMAgsgBCAFQbyAwgAQrQIACyAMQRhqIAQQWwshMyAMKAIQIDOnaiIFIAsoAggiBE8NBSArQiiIpyEEIAwgCygCBCAFQQN0aikCADcCECAIKAIUIQUgDCgCKCAMLQAsakEASA0BIAVB/wFNDQALIAVBCHYhCEGLgICAeCESQQAhDgwLCyAFIAooAgBHDQFBzPrBAAsQwgELIAgoAhAgBWogBDoAACAIIAVBAWoiBDYCFAsgCEEANgIgQQAhDiAEIAgoAhhPBEAgCEEYakEAIARBAWpBAUEBEJIBIAgoAiAhDgsgCCgCHCIKIA5qIQVBACELIAQEfyAFQQAgBBBaGiAKIAQgDmoiDmoFIAULQQA6AAAgCCAOQQFqNgIgQYyAgIB4IRICQCAIKAIUIhdFDQAgHUEDdiAdQQdxQQBHaiEdIAgoAhAhCkEAIQ5BACEFAkACQANAIAogDmotAAAiBEELSw0BQQEgBEEBa3RBACAEGyAFaiEFIBcgDkEBaiIORw0ACyAFDQEMAgtBkYCAgHghEgwBC0EBQSAgBWciC2siCnQiDiAFayIEaUEBRgRAIAUgDkYNAyAKQQFqIQ4gBGchEkEAIQQCQAJAAkADQCAEIAgoAhQiGk8NASAEIAgoAiAiGk8NAyAIKAIcIARqIA4gCCgCECAEai0AACIaa0EAIBobOgAAIARBAWoiBCAXRw0ACyAIKAIUIgQgCCgCICIOSQ0BIAQgDkHs+sEAEK0CAAsgBCAaQYj9wQAQrQIACyAIKAIcIARqIAogEmpBH2s6AAAgCCAKOgBkIAVB/w9NDQZBkoCAgHghEkEAIQsgCiEEDAILIAQgGkGY/cEAEK0CAAsgBEGAfnEhC0GNgICAeCESCyAZIBI2AgAgGSALIARB/wFxcjYCBAwICyAFIARBvIDCABCtAgALQfz3wQBBF0H8+MEAEO0CAAsgBEEBaiIFQQh2IQhBioCAgHghEkEAIQ4MBAsgCEEANgIsIAhBJGpBISALayIXEKMBAkACQAJAIAgoAiAiDgRAIAgoAhwhBANAIAgoAiwiCyAELQAAIgVNDQIgCCgCKCAFQQJ0aiIFIAUoAgBBAWo2AgAgBEEBaiEEIA5BAWsiDg0ACwsgCEEBIAgtAGR0Ig4gCCgCCCIESwR/IA4gBCIFayISIAgoAgAgBGtLBEAgCCAEIBJBAUECEJIBIAgoAgghBQsgCCgCBCAFQQF0aiELIBJBAk8EQCAEQX9zIA5qIg5BB3EhBCASQQJrQQdPBEAgDkF4cSEOA0AgC0EAOgAPIAtBADoADiALQQA6AA0gC0EAOgAMIAtBADoACyALQQA6AAogC0EAOgAJIAtBADoACCALQQA6AAcgC0EAOgAGIAtBADoABSALQQA6AAQgC0EAOgADIAtBADoAAiALQQA6AAEgC0EAOgAAIAtBEGohCyAOQQhrIg4NAAsLIAQEQANAIAtBADoAASALQQA6AAAgC0ECaiELIARBAWsiBA0ACwsgBSASakEBayEFCyALQQA6AAEgC0EAOgAAIAVBAWoFIA4LNgIIIAhBADYCOCAIQTBqIBcQowEgCCgCOCIEIApNBEAgCiAEQaz7wQAQrQIACyAIKAI0IApBAnRqQQA2AgAgCCgCOCIOQf4BcUUNAgwBCyAFIAtB+PzBABCtAgALAkACQAJAA0AgCCgCOCIFIA5BAWsiDkH/AXEiBE0NAiAIKAIsIgsgBE0NASAFIARBAWsiC0sEQCAIKAI0IgUgC0ECdGogBEECdCILIAgoAihqKAIAIAogDmt0IAUgC2ooAgBqNgIAIARBAU0NBAwBCwsgCyAFQej8wQAQrQIACyAEIAtB2PzBABCtAgALIAQgBUHI/MEAEK0CAAsgCCgCOCEOCyAOBEAgCCgCCCIEIAgoAjQiBSgCAEYEQCAIKAIgIhcEQEEAIQsDQAJAAkACQCAIKAIgIgQgC0sEQCAIKAIcIAtqLQAAIhJFDQMgCCgCOCIEIBJNDQEgCCgCNCASQQJ0aiIEIAQoAgAiBEEBIAogEmt0IgVqNgIAIARBAXQhDgNAIAQgCCgCCCIaTw0DIAgoAgQgDmogCzoAACAIKAIIIhogBEsEQCAIKAIEIA5qQQFqIBI6AAAgDkECaiEOIARBAWohBCAFQQFrIgVFDQUMAQsLIAQgGkG4/MEAEK0CAAsgCyAEQYj8wQAQrQIACyASIARBmPzBABCtAgALIAQgGkGo/MEAEK0CAAsgC0EBaiILIBdHDQALCyAZQZOAgIB4NgIAIBkgHTYCBAwGCyAMQQI2AhwgDEHo+8EANgIYIAxCAjcCJCAMIAQ2AgwgDCAMQQxqrUKAgICAEIQ3AzggDCAFrUKAgICAEIQ3AzAgDCAMQTBqNgIgIAxBGGpB+PvBABCkAwALQQBBAEG8+8EAEK0CAAsgDCgCNCIEQYB+cSEOIAwvADEgDC0AM0EQdHIMAQsgDCgCNCIEQYB+cSEOIAwvADEgDC0AM0EQdHILIQggDDUCOCErQYaAgIB4IRILIBkgKzcCDCAZIBI2AgAgGSAOIARB/wFxcjYCCCAZIAVB/wFxIAhBCHRyNgIECyAMQUBrJAAgCSgCHCEFIAkoAhgiCEGTgICAeEcNAyAFIBFLDQEMBgtBACEFIA0tAGQNBUGYgICAeCEIDAYLIAUgEUHo7MEAEKoEAAsgBgRAIBAgECgCCCIGIAYgBSgCCCIEaiIFSQR/IBwtAAAhBSAEIBAoAgAgBmtLBEAgECAGIARBAUEBEJIBIBAoAgghBgsgECgCBCILIAZqIQogBEECTwR/IAogBSAEQQFrIgQQWhogCyAEIAZqIgZqBSAKCyAFOgAAIAZBAWoFIAULNgIIIBRCnoCAgBg3AgAMBgtBAEEAQfTrwQAQrQIACyAJKQIkISogCSgCICEGDAMLIAQgBkHk68EAEKsEAAsgESAGQYTswQAQqwQACyAFIBxqIQQgESAFayEFAkACQAJAAkACQAJAAkACQAJAIB5BAWsOBAECAgACCyAFQQZJBEBBmYCAgHghCAwJCyAFQQZrIgUgBC8AACIMIAQtAAJqIAQtAANBCHRqIg4gBC0ABGogBC0ABUEIdGoiBkkEQEGagICAeCEIDAkLIAlCADcDCCAJIA02AhBBACEIIAlBADoALCAJQgA3AyAgCSAEQQZqIhI2AhggCSAMNgIcIAkgDEEDdDYCKCAGIA5rIRlBACEKA0AgCkEITwJ+IAhB/wFxRQRAIAlBGGpBARBbDAELIAkgCEEBayIEOgAsIAkpAyAgBEE/ca2IQgGDCyIqQgFRckUEQCAKQQFqIQogCS0ALCEIDAELCyAKQQdLBEAgCkEBaiEFQZuAgIB4IQgMCQsgCUEIaiAJQRhqELACIAkoAiggCS0ALGoiCkEAIA0tAGRrIgRMDQYgCSkDCCEqIAkoAhAhCwNAIAsoAggiBCAqpyIKTQ0EIApBAXQiCCALKAIEai0AACEXIBAoAggiBCAQKAIARgRAIBBBlOzBABDCAQsgECgCBCAEaiAXOgAAIBAgBEEBajYCCAJAAkAgCiALKAIIIgRJBEAgCS0ALCEKIAsoAgQgCGotAAEiCA0BQgAhKwwCCyAKIARBnPnBABCtAgALIAggCkH/AXFLBEAgCUEYaiAIEFshKyALKAIIIQQgCS0ALCEKDAELIAkgCiAIayIKOgAsQn8gCK2GQn+FIAkpAyAgCkE/ca2IgyErCyAErUIBfSAqIAithoMgK4QhKiAJKAIoIApB/wFxaiIKQQAgDS0AZGsiBEoNAAsMBgsgCUIANwMIIAkgDTYCEEEAIQYgCUEAOgAsIAlCADcDICAJIAQ2AhggCSAFNgIcIAkgBUEDdDYCKEEAIQUMAQtBtOzBAEEiQdjswQAQ7QIACwNAIAVBCE8CfiAGQf8BcUUEQCAJQRhqQQEQWwwBCyAJIAZBAWsiBjoALCAJKQMgIAZBP3GtiEIBgwsiKkIBUXJFBEAgBUEBaiEFIAktACwhBgwBCwsgBUEHSw0CIAlBCGogCUEYahCwAiAJKAIoIAktACxqQQAgDS0AZGtMDQQgCSkDCCEqIAkoAhAhBANAIAQoAggiBSAqpyIGTQ0CIAZBAXQiCiAEKAIEai0AACELIBAoAggiBSAQKAIARgRAIBBBpOzBABDCAQsgECgCBCAFaiALOgAAIBAgBUEBajYCCAJAAkAgBiAEKAIIIghJBEAgCS0ALCEFIAQoAgQgCmotAAEiBg0BQgAhKwwCCyAGIAhBnPnBABCtAgALIAYgBUH/AXFLBEAgCUEYaiAGEFshKyAEKAIIIQggCS0ALCEFDAELIAkgBSAGayIFOgAsQn8gBq2GQn+FIAkpAyAgBUE/ca2IgyErCyAIrUIBfSAqIAathoMgK4QhKiAJKAIoIAVB/wFxakEAIA0tAGRrSg0ACwwECyAKIARBjPnBABCtAgALIAYgBUGM+cEAEK0CAAsgBUEBaiEFQZuAgIB4IQgMAgtBnICAgHghCCAEIApHBEAgBCEGIAohBQwCCyAGIBJqIQogBSAGayEEIAlCADcDCCAJIA02AhBBACEGIAlBADoALCAJQgA3AyAgCSAMIBJqNgIYIAkgDiAMayIFNgIcIAkgBUEDdDYCKEEAIQUDQCAFQQdLAn4gBkH/AXEEQCAJIAZBAWsiBjoALCAJKQMgIAZBP3GtiEIBgwwBCyAJQRhqQQEQWwsiKkIBUXJFBEAgBUEBaiEFIAktACwhBgwBCwsgBUEHSwRAIAVBAWohBUGbgICAeCEIDAILIA4gEmohCyAJQQhqIAlBGGoQsAICQAJAAkAgCSgCKCAJLQAsaiIFQQAgDS0AZGsiBkoEQANAIAkoAhAiBSgCCCIMIAkoAggiBk0NAiAFKAIEIAZBAXRqLQAAIQUgECgCCCIGIBAoAgBGBEAgEEGU7MEAEMIBCyAQKAIEIAZqIAU6AAAgECAGQQFqNgIIIAlBCGogCUEYahDKASAJKAIoIAktACxqIgVBACANLQBkayIGSg0ACwsCQCAFIAZHDQAgCUIANwMIIAkgDTYCEEEAIQYgCUEAOgAsIAlCADcDICAJIAs2AhggCSAZNgIcIAkgGUEDdDYCKEEAIQUDQCAFQQdLAn4gBkH/AXEEQCAJIAZBAWsiBjoALCAJKQMgIAZBP3GtiEIBgwwBCyAJQRhqQQEQWwsiKkIBUXJFBEAgBUEBaiEFIAktACwhBgwBCwsgBUEHSwRAIAVBAWohBUGbgICAeCEIDAYLIAlBCGogCUEYahCwAiAJKAIoIAktACxqIgVBACANLQBkayIGSgRAA0AgCSgCECIFKAIIIgsgCSgCCCIGTQ0EIAUoAgQgBkEBdGotAAAhBSAQKAIIIgYgECgCAEYEQCAQQZTswQAQwgELIBAoAgQgBmogBToAACAQIAZBAWo2AgggCUEIaiAJQRhqEMoBIAkoAiggCS0ALGoiBUEAIA0tAGRrIgZKDQALCyAFIAZHDQAgCUIANwMIIAkgDTYCEEEAIQYgCUEAOgAsIAlCADcDICAJIAo2AhggCSAENgIcIAkgBEEDdDYCKEEAIQUDQCAFQQdLAn4gBkH/AXEEQCAJIAZBAWsiBjoALCAJKQMgIAZBP3GtiEIBgwwBCyAJQRhqQQEQWwsiKkIBUXJFBEAgBUEBaiEFIAktACwhBgwBCwsgBUEHSwRAIAVBAWohBUGbgICAeCEIDAYLIAlBCGogCUEYahCwAiAJKAIoIAktACxqIgVBACANLQBkayIGSgRAA0AgCSgCECIGKAIIIgUgCSgCCCIETQ0FIAYoAgQgBEEBdGotAAAhBiAQKAIIIgQgECgCAEYEQCAQQZTswQAQwgELIBAoAgQgBGogBjoAACAQIARBAWo2AgggCUEIaiAJQRhqEMoBIAkoAiggCS0ALGoiBUEAIA0tAGRrIgZKDQALCyAFIAZGDQQLDAQLIAYgDEGM+cEAEK0CAAsgBiALQYz5wQAQrQIACyAEIAVBjPnBABCtAgALIBYgECgCCCIFRwRAQZ2AgIB4IQggFiEGDAELIBRBnoCAgHg2AgAgFCARNgIEDAELIBQgKjcCDCAUIAY2AgggFCAFNgIEIBQgCDYCAAsgCUEwaiQAIA8oAhAhBCAPKAIMIgZBnoCAgHhHDQ8gDSgC8AIiBiAPKAKggAhHDRAgBCAHRw0RIA9BADoArIAIIA9BADYCqIAIIA9BqIAIaiEKIAcgHGohCwJAIB8gB2siBkUEQCAUQQE6AAggFEEANgIEIBRBAToAAAwBCwJAAkACQAJAIAstAAAiBUH/AUcEQCAFDQEgFEEBOgABIApBADYCACAUQQA6AAAMBQtBAyEEIAZBA00EQCAUQQQ6AAgMBAsgCy8AAUGA/gFqIQVBBCEHDAELAkAgBcBBAE4EQEEBIQQgBkEBRw0BIBRBAjoACCAUQQE2AgQgFEEBOgAADAULQQMhByAGQQNJDQIgCy0AASAFQQh0ckGAgAJrIQVBAiEEDAELQQIhBwsgCiAFNgIAIApBAToABCAUIAc6AAEgCiAEIAtqLQAAOgAFIBRBADoAAAwCCyAUQQM6AAgLIBQgBjYCBCAUQQE6AAALIA8tAAwNEiAGIA8tAA0iBEkNEyAVICFHDRQgBiAEayERIA8oAqiACEUEQCAEIAZGBEAgDUHoAWogDSgC7AIgDSgC8AIQpwEgDUEANgL8AgwMCyAPQYyAgIB4NgKMgAggDyARQQN0NgKQgAhBBSEHDBkLIA9BDGohCiAEIAtqIRYgDUHoAGohBSANQfQCaiELQQAhB0EAIQZCACEqIwBB8ABrIgQkAAJAAkACQAJAAkACQCAPQaiACGoiCS0ABEUEQEGNgICAeCEIDAELAkACQAJAAkACQAJAAkACQAJAAkACQCAJLQAFIhBBwAFxQQZ2QQFrDgMBAgkAC0GF5cIALQAAGkGQAUEEEPUDIgZFDQMgBkHo78EAQZABEDshBkGF5cIALQAAGkGQAUEEEPUDIgdFDQQgByAGQZABEDshByAFKAI0IggEQCAFKAI4IAhBAnRBBBCnBAsgBUEGOgBNIAVBJDYCPCAFIAc2AjggBUEkNgI0IARB0ABqIAVBKGoQKSAEKAJQIghBhYCAgHhHDQIgBkGQAUEEEKcEQQAhBiAFQQA6AHoMCAsgEUUEQEGOgICAeCEIDAoLIBYtAAAiB0EjTQ0FDAgLIARB0ABqIAVBKGogFiARQQkQLSAEKAJUIQcgBCgCUCIIQYWAgIB4Rg0DIARBCGogBEHgAGooAgA2AgAgBCAEKQJYNwMADAgLIARBCGogBEHgAGooAgA2AgAgBCAEKQJYNwMAIAQoAlQhByAGQZABQQQQpwQMBwtBBEGQAUHc6sEAENcDAAtBBEGQAUGQ/8EAENcDAAsgBUEAOgB6DAELIAUgBzoAe0EBIQcgBUEBOgB6CyAHIBFNBEAgByEGDAELIAcgEUHQ88EAEKoEAAsgBiAWaiEHAkACQAJAAkACQAJAAkACQAJAIBBBBHZBA3FBAWsOAwEECAALQYXlwgAtAAAaQfQAQQQQ9QMiB0UNBCAHQfjwwQBB9AAQOyEMQYXlwgAtAAAaQfQAQQQQ9QMiB0UNBSAHIAxB9AAQOyEHIAUoAgwiCARAIAUoAhAgCEECdEEEEKcECyAFQQU6ACUgBUEdNgIUIAUgBzYCECAFQR02AgwgBEHQAGogBRApIAQoAlAiCEGFgICAeEcNASAMQfQAQQQQpwQgBUEAOgB4DAcLIAYgEUcNAUGPgICAeCEIDAgLIARBCGogBEHgAGooAgA2AgAgBCAEKQJYNwMAIAQoAlQhByAMQfQAQQQQpwQMBwsgBy0AACIHQR9LDQUgBSAHOgB5IAVBAToAeCAGQQFqIQYMBAsgBEHQAGogBSAHIBEgBmtBCBAtIAQoAlQhByAEKAJQIghBhYCAgHhGDQIgBEEIaiAEQeAAaigCADYCACAEIAQpAlg3AwAMBQtBBEH0AEHc6sEAENcDAAtBBEH0AEGQ/8EAENcDAAsgBUEAOgB4IAYgB2ohBgsCQAJAAkACQAJAAkACQAJAAkAgBiARTQRAIAYgFmohDCAQQQJ2QQNxQQFrDgMCBQYBCyAGIBFBwPPBABCqBAALQYXlwgAtAAAaQdQBQQQQ9QMiB0UNBiAHQezxwQBB1AEQOyEMQYXlwgAtAAAaQdQBQQQQ9QMiB0UNBSAHIAxB1AEQOyEHIAUoAlwiCARAIAUoAmAgCEECdEEEEKcECyAFQQY6AHUgBUE1NgJkIAUgBzYCYCAFQTU2AlwgBEHQAGogBUHQAGoQKSAEKAJQIghBhYCAgHhHDQEgDEHUAUEEEKcEIAVBADoAfAwEC0GQgICAeCEIIAYgEUcNAQwICyAEQQhqIARB4ABqKAIANgIAIAQgBCkCWDcDACAEKAJUIQcgDEHUAUEEEKcEDAcLIAwtAAAiDEE0Sw0GIAUgDDoAfSAFQQE6AHwgBkEBaiEGDAELIARB0ABqIAVB0ABqIAwgESAGa0EJEC0gBCgCVCEHIAQoAlAiCEGFgICAeEcEQCAEQQhqIARB4ABqKAIANgIAIAQgBCkCWDcDAAwGCyAFQQA6AHwgBiAHaiEGCwJAIAYgEU0EQEEAIQggBEEAOgAkIARCADcDGCAEIAYgFmo2AhAgBCARIAZrIgY2AhQgBCAGQQN0NgIgQQAhBwwBCyAGIBFB8O3BABCqBAALA0AgB0EITwJ+IAhB/wFxRQRAIARBEGpBARBbDAELIAQgCEEBayIGOgAkIAQpAxggBkE/ca2IQgGDC0IBUXJFBEAgB0EBaiEHIAQtACQhCAwBCwsgB0EHTQRAIAUtAHoiEA0DIAUtAHxBAUYNAyAFLQB4DQMgBSgCMARAIAUoAiwpAgAhKgsgCSgCACEJIAQgBUEoajYCKCAEICo3AiwgBSgCWARAIAUoAlQpAgAhLAsgBCAFQdAAajYCNCAEICw3AjggBSgCCAR+IAUoAgQpAgAFQgALISogBCAFNgJAIAQgKjcCRCAEQdAAaiIGIARBKGogBEEQaiIFEOgBIAQtAFAiB0EDRgRAIAYgBEFAayAFEOgBIAQtAFAiB0EDRgRAIAYgBEE0aiAFEOgBIAQtAFAiBkEDRgRAIAtBADYCCCAJIAsoAgBLBEAgC0EAIAlBBEEMEJIBC0F/IQUDQAJ/AkACQCAFQQFqIgUgCUYEQCAEKAIgIAQtACRqIgZBAEoNASAKQZGAgIB4NgIADA4LIAQtAD0hByAELQBJIQYgBCAELQAxIgw6AE8gDEEQSSIQDQEgDEEQa0H/AXEiCEEUTw0OIAhBAnRB9PPBAGooAgAhDCAIQeDzwQBqLQAADAILIAogBjYCBCAKQYyAgIB4NgIADAwLQQALIQggBCAHOgBPAn8gB0EgSSIORQRAIAdBIGtB/wFxIgdBFU8NDiAHQQJ0Qdz0wQBqKAIAIRYgB0HE9MEAai0AAAwBCyAHQQNqQf8BcSEWQQALIRECfgJ+AkAgBkEfTQRAIAYgCGogEWoiFUH/AXEiFEUEQEIAISxCACEqQgAMBAsgBq0hKiAUQThNBEAgFCAELQAkIgdLBEAgBEHQAGogBEEQaiAGIBEgCCAVEDQgBCkDWCEsIAQpA1AhKiAEKQNgDAULQgAhLCAGBH4gBCAHIAZrIgc6ACRCfyAqhkJ/hSAEKQMYIAdBP3GtiIMFQgALISogDkUEQCAEIAcgEWsiBzoAJEJ/IBGthkJ/hSAEKQMYIAdBP3GtiIMhLAtCACAQDQQaIAQgByAIayIHOgAkQn8gCK2GQn+FIAQpAxggB0E/ca2IgwwEC0IAISxCACAGRQ0CGiAELQAkIgcgBkkNASAEIAcgBmsiBzoAJEJ/ICqGQn+FIAQpAxggB0E/ca2IgwwCCyAKIAY6AAQgCkGJgICAeDYCAAwNCyAEQRBqIAYQWwshKgJAIA4NACAELQAkIgcgEUH/AXFJBEAgBEEQaiAREFshLAwBCyAEIAcgEWsiBzoAJEJ/IBGthkJ/hSAEKQMYIAdBP3GtiIMhLAtCACAQDQAaIAQtACQiByAIQf8BcUkEQCAEQRBqIAgQWwwBCyAEIAcgCGsiBzoAJEJ/IAithkJ/hSAEKQMYIAdBP3GtiIMLISsgKqdBASAGdGoiCEUEQCAKQYqAgIB4NgIADAsLIAsoAggiBiALKAIARgRAIAtBkO7BABCyAQsgCygCBCAGQQxsaiIHIAg2AgggByAWICynajYCBCAHIAwgK6dqNgIAIAsgBkEBaiIGNgIIIAYgCUkEQCAEQShqIARBEGoiBhDsASAEQTRqIAYQ7AEgBEFAayAGEOwBCyAEKAIgIAQtACRqQQBODQALIApBi4CAgHg2AgAMCQsgCiAEKQBRNwAFIApBDGogBEHYAGooAAA2AAAgCiAGOgAEIApBhoCAgHg2AgAMCAsgCiAEKQBRNwAFIApBDGogBEHYAGooAAA2AAAgCiAHOgAEIApBhoCAgHg2AgAMBwsgCiAEKQBRNwAFIApBDGogBEHYAGooAAA2AAAgCiAHOgAEIApBhoCAgHg2AgAMBgsgCiAHQQFqNgIEIApBiICAgHg2AgAMBQtBBEHUAUGQ/8EAENcDAAtBBEHUAUHc6sEAENcDAAsgBSgCMARAIAUoAiwpAgAhKgsgCSgCACEJIAQgBUEoajYCKCAEICo3AiwgBSgCWARAIAUoAlQpAgAhLAsgBCAFQdAAajYCNCAEICw3AjggBSgCCAR+IAUoAgQpAgAFQgALISogBCAFNgJAIAQgKjcCRAJAIBANACAEQdAAaiAEQShqIARBEGoQ6AEgBC0AUCIGQQNGDQAgCiAEKQBRNwAFIApBDGogBEHYAGooAAA2AAAgCiAGOgAEIApBhoCAgHg2AgAMAwsCQCAFLQB4Ig4NACAEQdAAaiAEQUBrIARBEGoQ6AEgBC0AUCIGQQNGDQAgCiAEKQBRNwAFIApBDGogBEHYAGooAAA2AAAgCiAGOgAEIApBhoCAgHg2AgAMAwsCQCAFLQB8IhQNACAEQdAAaiAEQTRqIARBEGoQ6AEgBC0AUCIGQQNGDQAgCiAEKQBRNwAFIApBDGogBEHYAGooAAA2AAAgCiAGOgAEIApBhoCAgHg2AgAMAwsgC0EANgIIIAkgCygCAEsEQCALQQAgCUEEQQwQkgELIAUtAHkhHyAFLQB9IR4gBS0AeyEaQX8hFiAEKAJAIRUgBCgCNCESIAQoAighGQNAAn8CQAJAIBZBAWoiFiAJRgRAIAQoAiAgBC0AJGoiBkEASg0BIApBkYCAgHg2AgAMBwsgBC0APSEHIAQtAEkhESAEIBogBC0AMSAQGyIFOgBPIAVB/wFxIgZBEEkiHA0BIAVBEGtB/wFxIgVBFE8NByAFQQJ0QfTzwQBqKAIAIQYgBUHg88EAai0AAAwCCyAKIAY2AgQgCkGMgICAeDYCAAwFC0EACyEFIAQgHiAHIBQbIgc6AE8CfyAHQf8BcUEgSSIXRQRAIAdBIGtB/wFxIgdBFU8NByAHQcT0wQBqLQAAIQggB0ECdEHc9MEAaigCAAwBC0EAIQggB0EDakH/AXELISgCfgJ+AkAgHyARIA4bIhFB/wFxIgxBH00EQCAFIBFqIAhqIilB/wFxIh1FBEBCACEsQgAhKkIADAQLIB1BOE0EQCAdIAQtACQiB0sEQCAEQdAAaiAEQRBqIBEgCCAFICkQNCAEKQNYISwgBCkDUCEqIAQpA2AMBQtCACEsIAwEfiAEIAcgEWsiBzoAJEJ/IBGthkJ/hSAEKQMYIAdBP3GtiIMFQgALISogF0UEQCAEIAcgCGsiBzoAJEJ/IAithkJ/hSAEKQMYIAdBP3GtiIMhLAtCACAcDQQaIAQgByAFayIHOgAkQn8gBa2GQn+FIAQpAxggB0E/ca2IgwwEC0IAISxCACAMRQ0CGiAELQAkIgcgDEkNASAEIAcgEWsiBzoAJEJ/IBGthkJ/hSAEKQMYIAdBP3GtiIMMAgsgCiAROgAEIApBiYCAgHg2AgAMBgsgBEEQaiAREFsLISoCQCAXDQAgBC0AJCIHIAhB/wFxSQRAIARBEGogCBBbISwMAQsgBCAHIAhrIgc6ACRCfyAIrYZCf4UgBCkDGCAHQT9xrYiDISwLQgAgHA0AGiAELQAkIgcgBUH/AXFJBEAgBEEQaiAFEFsMAQsgBCAHIAVrIgc6ACRCfyAFrYZCf4UgBCkDGCAHQT9xrYiDCyErICqnQQEgDHRqIghFBEAgCkGKgICAeDYCAAwECyALKAIIIgUgCygCAEYEQCALQYDuwQAQsgELIAsoAgQgBUEMbGoiByAINgIIIAcgKCAsp2o2AgQgByAGICunajYCACALIAVBAWoiBjYCCAJAIAYgCU8NACAQRQRAAn5CACAELQAwIgZFDQAaIAYgBC0AJCIFTQRAIAQgBSAGayIFOgAkQn8gBq2GQn+FIAQpAxggBUE/ca2IgwwBCyAEQRBqIAYQWwshKiAEKAIsICqnaiIIIBkoAggiBU8NCCAEIBkoAgQgCEEDdGopAgA3AiwLIBRFBEACfkIAIAQtADwiBkUNABogBiAELQAkIgVNBEAgBCAFIAZrIgU6ACRCfyAGrYZCf4UgBCkDGCAFQT9xrYiDDAELIARBEGogBhBbCyEqIAQoAjggKqdqIgggEigCCCIFTw0IIAQgEigCBCAIQQN0aikCADcCOAsgDg0AAn5CACAELQBIIgZFDQAaIAYgBC0AJCIFTQRAIAQgBSAGayIFOgAkQn8gBq2GQn+FIAQpAxggBUE/ca2IgwwBCyAEQRBqIAYQWwshKiAEKAJEICqnaiIIIBUoAggiBU8NByAEIBUoAgQgCEEDdGopAgA3AkQLIAQoAiAgBC0AJGpBAE4NAAsgCkGLgICAeDYCAAwCC0GQgICAeCEICyAKIAc2AgQgCiAINgIAIAogBCkDADcCCCAKQRBqIARBCGooAgA2AgALIARB8ABqJAAMAwsgBEEBNgJUIARB7O7BADYCUCAEQgE3AlwgBCAEQc8Aaq1CgICAgIA5hDcDaCAEIARB6ABqNgJYIARB0ABqQfTuwQAQpAMACyAEQQE2AlQgBEHQ78EANgJQIARCATcCXCAEIARBzwBqrUKAgICAgDmENwNoIAQgBEHoAGo2AlggBEHQAGpB2O/BABCkAwALIAggBUG8gMIAEK0CAAsgDygCDCIEQZGAgIB4Rg0JIA8gDykCEDcCkIAIIA8gBDYCjIAIIA8pAhghLUEFIQcMGAtBpITBAEHbAEGAhcEAEO0CAAsgDyAFLQAAOgAMCyAEIAc2AgQgBCALNgIADBMLIARBADYCBCAEIAUgBmo2AgAMAQsgBEEANgIEIAQgBSAHajYCAEHw/8AAKQMAIi1C/wGDQgRRDRELIBhBADoADCAYIC03AgQgGEEJNgIADBMLQfD/wAApAwAiKkL/AYNCBFINDgsgIkEAOgAAIA9BDWogBUH/AxBaGiAHQYAETwRAIAdBCXYhBiANQegBaiEEA0AgBCAPQQxqQYAEEKcBIAZBAWsiBg0ACwsgDUHoAWogD0EMaiAHQf8DcRCnASAYQQo2AgAgGEIBNwMIDBELIBhBCDYCAAwQCyAPQQxqIQxBACEGQQAhB0EAIQhBACEWIwBBMGsiESQAIA0oAuwBIQsgDSgC8AEhHCANKAL0ASEKIBFBADYCACANQegBaiEUIAshBSAKIQQCQCANKAL8AiIdBEAgDUGIA2ohHyANQYwDaiEQQQghEgNAAkACQAJAAkACQAJAAkACfwJAIA0oAvwCIgQgCEsEQCANKAL4AiASaiIFKAIAIQQgBUEEaygCACEZIAVBCGsoAgAiCQ0HIARBAWsiB0ECTw0BIBAgBEECdGooAgAMAgsgCCAEQaDnwQAQrQIACyAEQQNGBEAgECgCACIEQQFrIQUMAgsgBEEDawshBQJAIAcOAgIDAAsgECgCACEECyANIA0oApADNgKUAwwCCyAQKAIAIQQMAQsgDSANKAKQAzYClAMgDSgCjAMhBAsgBiEHDAELAkAgBiAJaiIHIA0oAvACIgVNBEAgBiAHTQ0BIAYgB0Gw58EAEKwEAAsgDCAFNgIIIAwgBzYCBCAMQQI2AgAMBQsgDSgC7AIhFyANKALwASIOIA0oAuwBIhUgDSgC9AEiBSAOSSIeGyAFa0EAIA4gHhtqIh5BAWsiGkEAIBogHk0bIh4gCUkEQCAUIAkgHmsQgAEgDSgC7AEhFSANKALwASEOIA0oAvQBIQULIAYgF2ohFyAOIBUgBSAOSRsiHiAFayIGIAkgBiAJSSIaGyEGIBQoAgAhDiAFIB5HBEAgBSAOaiAXIAYQOxoLIBoEQCAOIAYgF2ogCSAGaxA7GgsCQCAVBEAgDSAFIAlqIBVwNgL0ASANIA0pA/gBIAmtfDcD+AEgBEEBayIGQQNPBEAgBEEDayEFDAILIB8gBEECdGooAgAhBQwBC0Gw6cEAEJQDAAsCQAJAIAYOAgMBAAsgDSANKAKQAzYClAMgDSgCjAMhBAwBCyAQKAIAIQQLIA0gBTYCjAMgDSAENgKQAwsgBUUEQCAMQQM2AgAMAwsCQCAZRQ0AIBFBCGogFCAFIBkQsQEgESgCCCIEQQJGDQAgDCARKQIMNwIEIAwgBDYCAAwDCyARIAkgFmogGWoiFjYCACASQQxqIRIgByEGIB0gCEEBaiIIRw0ACyANKALsASEFIA0oAvQBIQQLAkAgDSgC8AIiBiAHTQ0AIA0oAuwCIAdqIQggBiAHayIHIA0oAvABIgYgBSAEIAZJIgkbIARrQQAgBiAJG2oiCUEBayIQQQAgCSAQTxsiCUsEQCANQegBaiAHIAlrEIABIA0oAuwBIQUgDSgC8AEhBiANKAL0ASEECyAGIAUgBCAGSRsiECAEayIGIAcgBiAHSSIOGyEGIBQoAgAhCSAEIBBHBEAgBCAJaiAIIAYQOxoLIA4EQCAJIAYgCGogByAGaxA7GgsgBQRAIA0gBCAHaiAFcCIENgL0ASANIA0pA/gBIAetfDcD+AEgESAHIBZqIhY2AgAgDSgC7AEhBQwBC0Gw6cEAEJQDAAsgESAEIBxqIA0oAvABIgYgCiALQQAgCiAcSRtqamsgBUEAIAQgBkkbaiIENgIEIAQgFkcEQCARQQI2AgwgEUGM5sEANgIIIBFCAjcCFCARIBFBBGqtQoCAgIAQhDcDKCARIBGtQoCAgIAQhDcDICARIBFBIGo2AhAgEUEIakGQ58EAEKQDAAsgDEEENgIACyARQTBqJAAgDygCDCIEQQRHDQ0LIBggIa03AwggIkEAOgAAIBhBCjYCAAwOCyAPQZOACGogLUI4iDwAACAPQZGACGogLUIoiD0AACAPIAQ6AIyACCAPIC1CCIg+AI2ACAwMCyAPQZaACGogD0EWai8BADsBACAPIA8pAQ43AY6ACCAPIAQ6AI2ACCAPIAU6AIyACEEDIQcMCwsgBCAVQZSEwQAQqgQACyAPIB82ApCACCAPIAc2AoyACEEBIQcMCQsgDyAPKAIUNgKUgAggDyAENgKQgAggDyAGNgKMgAggDykCGCEtQQIhBwwICyAPQQI2AhAgD0G4gcEANgIMIA9CAjcCGCAPIAY2AryACCAPIA9BoIAIaq1CgICAgBCENwOwgAggDyAPQbyACGqtQoCAgIAQhDcDqIAIIA8gD0GogAhqNgIUIA9BDGpByIHBABCkAwALQdiBwQBB0wBBrILBABDtAgALIA8oAhAhBCAPIA8tABQ6AJCACCAPIAQ2AoyACEEEIQcMBQsgBCAGQYSEwQAQqgQAC0G8gsEAQbYBQfSDwQAQ7QIACyAYQQE6AAwgGCAqNwIEIBhBCTYCAAwDCyANQegBaiAPQQxqIAYQpwEgGCAKrTcDCCAiQQA6AAAgGEEKNgIADAILIA8gDykCEDcCkIAIIA8gBDYCjIAIQQYhBwsgGCAHNgIAIBggDykCjIAINwIEIBggLTcDECAYQQxqIA9BlIAIaigCADYCAAsgD0HAgAhqJAAgEygCSCIEQQpHDQMgASABKQPAAyATKQNQfDcDwAMgASABKALIA0EBajYCyAMCQCATLQB5BEAgIEEBOgDMAyAgLQAQQQRxRQ0BIBMoAkQiBigCACEFAkACQCAGKAIEIgdBBE8EQCAGIAdBBGs2AgQgBiAFQQRqNgIAIAUoAAAhBAwBC0EAIQQgBkEANgIEIAYgBSAHajYCACAwQgRSDQELIAEgASkDwANCBHw3A8ADICAgBDYCHCAgQQE2AhgMAgsgEyAvNwMQQQYMBwsgJCAnIAEoApgCIgZqayABKAKUAiABKAKcAiIEIAQgBkkiBhtqIARBACAGG2ogJkkNAQsLIAEQvwEgA08NBSABKAIAQQJHDQEMBQsLIBMgLjcDEEEEDAILIBNBCGogE0HcAGooAgA2AgAgEyATKQJUNwMAIBMgEykCTDcCFCATIAQ2AhBBBQwBC0EHCyEBIBNBLGogE0EYaigCADYCACATQThqIBNBCGooAgA2AgAgEyABNgIgIBMgEykDEDcCJCATIBMpAwA3AzBBheXCAC0AABpBIEEIEPUDIgFFBEBBCEEgENMEAAsgASATQSBqIgIpAwA3AwAgAUEYaiACQRhqKQMANwMAIAFBEGogAkEQaikDADcDACABQQhqIAJBCGopAwA3AwBBheXCAC0AABpBDEEEEPUDIgJFBEBBBEEMENMEAAsgAkEoOgAIIAJBwNvAADYCBCACIAE2AgAgACACrUIghkIDhDcCAAwBCwJAIAEoAgBBAkYEQCAAQQQ6AAAgAEEANgIEDAELIAFBkAJqIQQgAS0AzANFBEACQAJAAkAgBCgCDCIGQQAgBiAEKAIIIgFJIgcbIgUgBCgCBCAGIAcbIgdqIAEgBCgCcCIGamtBACAHIAFrIg0gBWogBksbIgYgAyADIAZLGyIGRSABIAdGcg0AIAIgBCgCACIHIAFqIgIgDSAGIAYgDUsbIgEQOyENIARBGGoiCiACIAEQVyAGIAFrIgIgBSACIAVJGyICBEAgAyABayIDIAJJDQIgASANaiAHIAIQOxogCiAHIAIQVyABIAJqIgFFDQELIAQoAgQiAkUNAiAEIAIgBCgCDCIDIAMgBCgCCCIESSIFGyAEayADQQAgBRtqIgMgASABIANLGyAEaiACcDYCCAsgAEEEOgAAIAAgBjYCBAwDCyACIANBkPfBABCrBAALQcDpwQAQlAMACwJAAkACQAJAIAQoAgQgBCgCDCIGIAYgBCgCCCIBSSIHGyINIAFrIgUgBkEAIAcbIgdqIgYgAyADIAZLGyIGRSABIA1Gcg0AIAIgBCgCACINIAFqIgIgBSAGIAUgBkkbIgEQOyEFIARBGGoiCiACIAEQVyAGIAFrIgIgByACIAdJGyICBEAgAyABayIDIAJJDQIgASAFaiANIAIQOxogCiANIAIQVyABIAJqIgFFDQELIAQoAgQiAkUNAiAEIAIgBCgCDCIDIAMgBCgCCCIESSIFGyAEayADQQAgBRtqIgMgASABIANLGyAEaiACcDYCCAsgAEEEOgAAIAAgBjYCBAwCCyACIANBsPfBABCrBAALQcDpwQAQlAMACwsLIBNBgAFqJAALtwgBEH8CQAJAIAEoAhQiBCABLQAkQQFqTQRAIAFBADYCCCABAn9BASABLQAldCIHIAEoAgBLBEAgAUEAIAdBBEEIEJIBIAcgASgCCCICIAdPDQEaCyACIQQgByACayIGIAEoAgAgAmtLBEAgASACIAZBBEEIEJIBIAEoAgghBAsgASgCBCIFIARBA3RqIQMgBkECTwRAIANBACAHIAJBf3NqQQN0EFoaIAQgB2pBA3QgAkEDdGsgBWpBCGshAyAEIAZqQQFrIQQLIANCADcCACAEQQFqCyIGNgIIIAEoAhQiCA0BIAEoAgQhCyABKAIQIQogByEEDAILIAAgBDYCBCAAQYSAgIB4NgIADwsgAS0AJSEJIAEoAgQhCyABKAIQIgohAiAHIQRBACEDA0ACQCACKAIAQX9GBEAgBEEBayIEIAZPDQEgCyAEQQN0aiIFIAk6AAQgBUEANgIAIAUgAzoABQsgAkEEaiECIANBAWoiAyAIRw0BDAILCyAEIAZB6IHCABCtAgALIAdBA3YgB0EBdmpBA2ohDSAHQQFrIQ5BACEFQQAhAgNAIAUgCCAFIAhLGyEMIAogBUECdGohAwNAIAUgDEYEQEEAIQogAUEANgIgIAgEQEEAIQIgCCABKAIYSwRAIAFBGGpBACAIQQRBBBCSASABKAIgIQILIAEoAhwiBiACQQJ0aiEDIAhBAUcEfyADQQAgCEECdEEEaxBaGiACIAhqIgNBAWshAiAGIANBAnRqQQRrBSADC0EANgIAIAJBAWohCgsgASAKNgIgIAQEQCABKAIQIQ0gASgCHCEOIAEoAhQhCyABKAIEIQIgASgCCCEIIAEtACUhDEEAIQUDQAJAAkACQAJAAkACQCAFIAhHBEAgCyACQQVqLQAAIgFNDQEgASAKTw0DIA4gAUECdCIBaiIPKAIAIQYgASANaigCACIBDQJBACEDQQAhCQwGCyAIIAhB7IDCABCtAgALIAEgC0H8gMIAEK0CAAsgAUEBQQAgAWciA2t0QQEgA0Efc3QgAUYbIgMgB0sNAkEgIAcgA24iEGciCWsgCUEfcyADIAFrIgMgBksiERsiCUH/AXEgDEsNASAQIAZBAXQgAWogBiARGyADa2whAwwDCyABIApBjIHCABCtAgALQZyBwgBBKUHIgcIAEO0CAAtBoP/BAEEXQZyAwgAQ7QIACyAPIAZBAWo2AgAgAkEEaiAJOgAAIAIgAzYCACACQQhqIQIgBCAFQQFqIgVHDQALCyAAQYWAgIB4NgIADwsgBUEBaiEFIAMoAgAhCSADQQRqIQMgCUEATA0ACyAFQQFrIQxBACEDA0ACQCACIAZJBEAgA0EBaiEDIAsgAkEDdGogDDoABQNAIAIgDWogDnEiAiAETw0ACwwBCyACIAZB2IHCABCtAgALIAMgCUcNAAsMAAsAC9IHAQN/AkACQAJAAkACQAJAAkACQAJAAkACQAJAIAAoAgAOCgAHBwECAwQHBwUHCwJAAkACQAJAAkACQCAALQAEDgcADAEMAgMEDAsgAC0ACEEDRw0LIAAoAgwiACgCACEBIABBBGooAgAiAigCACIDBEAgASADEQMACyACKAIEIgNFDQQgASADIAIoAggQpwQMBAsgAC0ACEEDRw0KIAAoAgwiACgCACEBIABBBGooAgAiAigCACIDBEAgASADEQMACyACKAIEIgNFDQMgASADIAIoAggQpwQMAwsgAC0ACEEDRw0JIAAoAgwiACgCACEBIABBBGooAgAiAigCACIDBEAgASADEQMACyACKAIEIgNFDQIgASADIAIoAggQpwQMAgsgAC0ACEEDRw0IIAAoAgwiACgCACEBIABBBGooAgAiAigCACIDBEAgASADEQMACyACKAIEIgNFDQEgASADIAIoAggQpwQMAQsgAC0ACEEDRw0HIAAoAgwiACgCACEBIABBBGooAgAiAigCACIDBEAgASADEQMACyACKAIEIgNFDQAgASADIAIoAggQpwQLIABBDEEEEKcEDwsCQAJAIAAtAAQOAgcBAAsgACgCCCIBQfv///8HaiICQQ1NIAJBAkdxDQYgAUGEgICAeEoNBSABQYOAgIB4Rw0GDAULIAAoAggiAUGEgICAeEogAUGDgICAeEZyDQQMBQsgAC0ABEEDRw0EDAULAkACQEEDIAAoAgQiAUEHayICIAJBA08bQQJrDgIBAAULAkACQAJAIAEOBgAHAQcHAgcLIAAtAAhBA0cNBgwICyAAKAIIIgFB7f///wdqIgJBCk0gAkEDR3ENBSABRSABQfv///8HaiICQQ1NIAJBAkdxIAFBg4CAgHhHIAFBhICAgHhMcXJyDQUMCQsgACgCCCIBQfv///8HaiICQQtNIAJBAkdxIAFBg4CAgHhHIAFBhICAgHhMcXIgAUVyDQQMCAsgAC0ACEEDRw0DDAULIAAtAARBA0cNAgwDCyAALQAEQQNHDQEgACgCCCIAKAIAIQEgAEEEaigCACICKAIAIgMEQCABIAMRAwALIAIoAgQiAwRAIAEgAyACKAIIEKcECyAAQQxBBBCnBAwBCyABRQ0AIAAoAgwgAUECdEEEEKcECw8LIAAoAggiACgCACEBDAELIAAoAgwiACgCACEBCyAAQQRqKAIAIgIoAgAiAwRAIAEgAxEDAAsgAigCBCIDBEAgASADIAIoAggQpwQLIABBDEEEEKcEDwsgACgCDCABQQJ0QQQQpwQLvQgBB38gACgCACICBEAgACgCBCEDAkAgACgCCCIHBEBBACEAA0ACQCAABEAgAiEBDAELQQAhAQJAIANFDQAgAyIAQQdxIgQEQANAIABBAWshACACKALgFiECIARBAWsiBA0ACwsgA0EISQ0AA0AgAigC4BYoAuAWKALgFigC4BYoAuAWKALgFigC4BYoAuAWIQIgAEEIayIADQALCyACIQBBACEDCwJAIAAvAd4WIANLBEAgAyEGIAAhAgwBCwNAIAAoAgAiAgRAIAAvAdwWIQYgAEGQF0HgFiABG0EEEKcEIAFBAWohASACIgAvAd4WIAZNDQEMAgsLIABBkBdB4BYgARtBBBCnBEHIpcEAEK4EAAsgBkEBaiEDAkAgAUUEQCACIQAMAQsgAiADQQJ0akHgFmohBAJAIAFBB3EiA0UEQCABIQUMAQsgASEFA0AgBUEBayEFIAQoAgAiAEHgFmohBCADQQFrIgMNAAsLQQAhAyABQQhJDQADQCAEKAIAKALgFigC4BYoAuAWKALgFigC4BYoAuAWKALgFiIAQeAWaiEEIAVBCGsiBQ0ACwsgAiAGQYQCbGpBMGoiAigCACIBBEAgAigCBCABQQN0QQQQpwQLIAIoAgwiAQRAIAIoAhAgAUECdEEEEKcECyACKAIYIgEEQCACKAIcIAFBAnRBBBCnBAsgAigCKCIBBEAgAigCLCABQQN0QQQQpwQLIAIoAjQiAQRAIAIoAjggAUECdEEEEKcECyACKAJAIgEEQCACKAJEIAFBAnRBBBCnBAsgAigCUCIBBEAgAigCVCABQQN0QQQQpwQLIAIoAlwiAQRAIAIoAmAgAUECdEEEEKcECyACKAJoIgEEQCACKAJsIAFBAnRBBBCnBAsgAigCgAEiAQRAIAIoAoQBIAFBAXRBARCnBAsgAigCjAEiAQRAIAIoApABIAFBARCnBAsgAigCmAEiAQRAIAIoApwBIAFBARCnBAsgAigCpAEiAQRAIAIoAqgBIAFBAnRBBBCnBAsgAigCsAEiAQRAIAIoArQBIAFBAnRBBBCnBAsgAigCvAEiAQRAIAIoAsABIAFBA3RBBBCnBAsgAigCyAEiAQRAIAIoAswBIAFBAnRBBBCnBAsgAigC1AEiAQRAIAIoAtgBIAFBAnRBBBCnBAsgAigC6AEiAQRAIAIoAuwBIAFBARCnBAtBACECIAdBAWsiBw0ACwwBCyADRQRAIAIhAAwBCwJAIANBB3EiBEUEQCACIQAgAyEBDAELIAIhACADIQEDQCABQQFrIQEgACgC4BYhACAEQQFrIgQNAAsLIANBCEkNAANAIAAoAuAWKALgFigC4BYoAuAWKALgFigC4BYoAuAWKALgFiEAIAFBCGsiAQ0ACwtBACEBA0AgACgCACAAQZAXQeAWIAEbQQQQpwQgAUEBayEBIgANAAsLC/kHAhR/AX4CQAJAAkACQAJAIAEoAgBFBEAgAS0ADg0BIAEgAS0ADCIGQQFzOgAMIAEoAjQhAyABKAIwIQQCQCABKAIEIgJFDQAgAiADTwRAIAIgA0YNAQwHCyACIARqLAAAQb9/TA0GCwJAIAIgA0cEQAJ/IAIgBGoiBCwAACIDQQBOBEAgA0H/AXEMAQsgBC0AAUE/cSEHIANBH3EhBSAFQQZ0IAdyIANBX00NABogBC0AAkE/cSAHQQZ0ciEHIAcgBUEMdHIgA0FwSQ0AGiAFQRJ0QYCA8ABxIAQtAANBP3EgB0EGdHJyCyEDQQEhBSAGQQFxDQECQCADQYABSQ0AQQIhBSADQYAQSQ0AQQNBBCADQYCABEkbIQULIAAgAjYCBCAAQQE2AgAgACACIAVqIgA2AgggASAANgIEDwsgBkEBcUUNBQsgACACNgIIIAAgAjYCBCAAQQA2AgAPCyABKAIcIgYgASgCNCIERg0BIAEoAjAhCgJAIAQiAyAGIAEoAjwiCEEBayIQaiICTQ0AIAEoAjghDSAGIApqIREgBiAIaiEHIAYgASgCECILayESIAEoAhgiAyAGaiEOIAggA2shEyABKQMIIRYgASgCJCIPQX9GIQkgDyEFIAYhAwNAIAMgBkcNAQJAAkAgFiACIApqMQAAiKdBAXFFBEAgASAHNgIcIAchAyAJDQJBACECDAELIAsgBSALIAUgC0sbIAkbIgMgCCADIAhLGyEMIAMhAgJAAkACQANAIAIgDEYEQEEAIAUgCRshDCALIQIDQCACIAxNBEAgASAHNgIcIA9Bf0cEQCABQQA2AiQLIAAgBzYCCCAAIAY2AgQgAEEANgIADwsgAkEBayICIAhPDQUgAiAGaiIDIARPDQMgAiANai0AACADIApqLQAARg0ACyABIA42AhwgEyECIA4hAyAJRQ0FDAYLIAIgBmogBE8NAiACIBFqIRQgAiANaiACQQFqIQItAAAgFC0AAEYNAAsgAiASaiEDIAkNBEEAIQIMAwsgAyAEQcCvwgAQrQIACyAEIAMgBmoiACAAIARJGyAEQdCvwgAQrQIACyACIAhBsK/CABCtAgALIAEgAjYCJCACIQULIAMgEGoiAiAESQ0ACyAEIQMLQQAhBSADRQ0CIAMhAgNAAkAgAiAETwRAIAIgBEcNASAEIQUMBQsgAiAKaiwAAEG/f0wNACACIQUMBAsgAkEBaiICDQALDAILIABBAjYCAA8LIABBAjYCAA8LIAAgBTYCCCAAIAY2AgQgAEEBNgIAIAEgAyAFIAMgBUsbNgIcDwsgAEECNgIAIAFBAToADg8LIAQgAyACIANBmLHCABDsAwAL1wgCBn8BfiMAQTBrIgUkACABQQA6ACUgAUEANgIUIAUgAzYCGCAFIAI2AhQgBUEANgIcIAVBIGogBUEUakEEEE8CQAJAAkACQAJAAkAgBSgCIEUEQCABIAUtAChBBWoiAjoAJQJAIAJB/wFxIgMgBEH/AXFNBEAgAw0BQYCAgIB4IQMMBgsgBSAEOgAFIAUgAjoABEGBgICAeCEDDAULIAFBDGohB0EBIAJ0IQlBACECA0ACQAJAAkACQCAJIAJrQQFqIgMEQCAFQSBqIAVBFGpBICADZyIGayIIEE8gBSkDKCELAkACQCAFKAIgRQRAIAunIgRBfyAGQR9zdEF/cyIKcSIGQX8gCHRBf3MgA2siA0kNASAEIANBACAEIApLG2shBgwCCyAFKAIkIQEgBSALNwIIIAUgATYCBAwJCyAFKAIcIgNFDQIgBSADQQFrNgIcCyAGQQFrIQMgASgCFCIEIAEoAgxGBEAgB0GIgsIAELQBCyABKAIQIARBAnRqIAM2AgAgASAEQQFqIgQ2AhQgA0UEQANAIAVBIGogBUEUakECEE8gBSkDKCELIAUoAiANBCABKAIUIgMgAyALpyIGaiIESQRAIAYgBygCACADa0sEQCAHIAMgBkEEQQQQkgEgASgCFCEDCyABKAIQIgggA0ECdGohBCAGQQJPBH8gBEEAIAZBAnRBBGsQWhogAyAGaiIEQQFrIQMgCCAEQQJ0akEEawUgBAtBADYCACADQQFqIQQLIAEgBDYCFCAGQQNGDQAMBgsACyADQQBKDQMgBkUEQCACQQFqIQIMBQtBmILCAEEcQbSCwgAQ7QIAC0Gg/8EAQRdBnIDCABDtAgALQdDiwQBBGkHU48EAEO0CAAsgBSgCJCEBIAUgCzcCCCAFIAE2AgQMBAsgAiADaiECCyACIAlJDQALIAIgCUYNAkEAIQYgBygCCCIEQQJ0IQMCQAJAIARB/////wNLIANB/P///wdLcg0AIAcoAgQhCAJ/IANFBEBBBCEHQQAMAQtBheXCAC0AABpBBCEGIANBBBD1AyIHRQ0BIAQLIQYgByAIIAMQOyEDIAUgBDYCCCAFIAM2AgQgBSAGNgIADAELIAYgA0GU/sEAENcDAAsgBSAJNgIQIAUgAjYCDCAFKAIAIgNBhYCAgHhHDQQgBSgCBCEDDAMLIAUgBSkDKDcCCCAFIAUoAiQ2AgQLQYKAgIB4IQMMAgsgAS0AJEEBaiAETwRAIAUoAhwiAkEDdiACQQdxQQBHaiEDDAELIAUgBDYCBEGEgICAeCEDDAELIAUgARApIAUoAgBBhYCAgHhHDQEgAEGFgICAeDYCACAAIAM2AgQMAgsgACAFKQIINwIIIABBEGogBUEQaigCADYCACAAIAUoAgQ2AgQgACADNgIADAELIAAgBSkCADcCACAAQRBqIAVBEGooAgA2AgAgAEEIaiAFQQhqKQIANwIACyAFQTBqJAAL0QYBCn8CQAJAAkACQAJAAkACQAJAAkACQCAAKAIIIgcgACgCDCIITwRAIAAoAgQiCyABIAdqIglJDQQgCyAJayIGIAIgAiAGSxshCiAAKAIAIgUgCGohBCAFIAdqIAFqIQMgCkEFSSAHIAhrIgcgBiAGIAdLGyIMQQRPcQ0BIAwgCkEDakF8cSIBTw0CIAQgAyAKEDsaDAMLIAAoAgQiCyAIayIGIAIgAiAGSxshCSAAKAIAIgUgCGohAyABIAdqIgEgBWohBCAJQQVJIAYgCCABayIKIAYgCkkbIgFBBE9xDQYgASAJQQNqQXxxIgFJBEAgAyAEIAkQOxoMCAsgAUEATA0HIAEgBGohCSAEIQEDQCADIAEoAAA2AAAgA0EEaiEDIAFBBGoiASAJSQ0ACwwHCyAEIAMoAAA2AAAMAQsgAUEATA0AIAEgA2ohCiAEIQEDQCABIAMoAAA2AAAgAUEEaiEBIANBBGoiAyAKSQ0ACwsgAiAGTQ0FIAQgBmohBCACIAZrIgNBBE0gByAGayIBIAggASAISRsiAUEDS3ENASABIANBA2pBfHEiAUkEQCAEIAUgAxA7GgwGCyABQQBMDQUgASAFaiEBIAggC2ogCWshBANAIAQgBWogBSgAADYAACAFQQRqIgUgAUkNAAsMBQsgCwRAIAcgCGsiASAIIAkgC3AiA2siBCABIARJGyEEIAAoAgAiBSAIaiEBIAMgBWohAyACQQRNIARBA0txDQIgBCACQQNqQXxxIgRJBEAgASADIAIQOxoMBwsgBEEATA0GIAMgBGohBANAIAEgAygAADYAACABQQRqIQEgA0EEaiIDIARJDQALDAULQdDpwQAQlAMACyAEIAUoAAA2AAAMAwsgASADKAAANgAADAMLIAMgBCgAADYAAAsgAiAGTQ0AIAQgBmohAwJAIAIgBmsiBEEETSAHIAogBmsiASABIAdLGyIBQQNLcUUEQCABIARBA2pBfHEiB08NASAFIAMgBBA7GgwCCyAFIAMoAAA2AAAMAQsgB0EATA0AIAMgB2ohAQNAIAUgAygAADYAACAFQQRqIQUgA0EEaiIDIAFJDQALCyALDQBB4OnBABCUAwALIAAgAiAIaiALcDYCDAvGBgEIfwJAAkAgASAAQQNqQXxxIgMgAGsiCEkNACABIAhrIgZBBEkNACAGQQNxIQdBACEBAkAgACADRiIJDQACQCAAIANrIgVBfEsEQEEAIQMMAQtBACEDA0AgASAAIANqIgIsAABBv39KaiACQQFqLAAAQb9/SmogAkECaiwAAEG/f0pqIAJBA2osAABBv39KaiEBIANBBGoiAw0ACwsgCQ0AIAAgA2ohAgNAIAEgAiwAAEG/f0pqIQEgAkEBaiECIAVBAWoiBQ0ACwsgACAIaiEAAkAgB0UNACAAIAZBfHFqIgMsAABBv39KIQQgB0EBRg0AIAQgAywAAUG/f0pqIQQgB0ECRg0AIAQgAywAAkG/f0pqIQQLIAZBAnYhBSABIARqIQQDQCAAIQMgBUUNAkHAASAFIAVBwAFPGyIGQQNxIQcgBkECdCEIQQAhAiAFQQRPBEAgACAIQfAHcWohCSAAIQEDQCABKAIAIgBBf3NBB3YgAEEGdnJBgYKECHEgAmogASgCBCIAQX9zQQd2IABBBnZyQYGChAhxaiABKAIIIgBBf3NBB3YgAEEGdnJBgYKECHFqIAEoAgwiAEF/c0EHdiAAQQZ2ckGBgoQIcWohAiABQRBqIgEgCUcNAAsLIAUgBmshBSADIAhqIQAgAkEIdkH/gfwHcSACQf+B/AdxakGBgARsQRB2IARqIQQgB0UNAAsCfyADIAZB/AFxQQJ0aiIAKAIAIgFBf3NBB3YgAUEGdnJBgYKECHEiASAHQQFGDQAaIAEgACgCBCIBQX9zQQd2IAFBBnZyQYGChAhxaiIBIAdBAkYNABogACgCCCIAQX9zQQd2IABBBnZyQYGChAhxIAFqCyIBQQh2Qf+BHHEgAUH/gfwHcWpBgYAEbEEQdiAEag8LIAFFBEBBAA8LIAFBA3EhAwJAIAFBBEkEQAwBCyABQXxxIQUDQCAEIAAgAmoiASwAAEG/f0pqIAFBAWosAABBv39KaiABQQJqLAAAQb9/SmogAUEDaiwAAEG/f0pqIQQgBSACQQRqIgJHDQALCyADRQ0AIAAgAmohAQNAIAQgASwAAEG/f0pqIQQgAUEBaiEBIANBAWsiAw0ACwsgBAvOBgEOfyMAQRBrIgYkAEEBIQwCQCACKAIcIglBIiACKAIgIg0oAhAiDhEAAA0AAkAgAUUEQEEAIQIMAQtBACABayEPIAAhByABIQMCQAJ/AkACQANAIAMgB2ohEEEAIQICQANAIAIgB2oiCi0AACIFQf8Aa0H/AXFBoQFJIAVBIkZyIAVB3ABGcg0BIAMgAkEBaiICRw0ACyADIAhqDAQLIApBAWohBwJAIAosAAAiC0EATgRAIAtB/wFxIQMMAQsgBy0AAEE/cSEDIAtBH3EhBSAKQQJqIQcgC0FfTQRAIAVBBnQgA3IhAwwBCyAHLQAAQT9xIANBBnRyIQMgCkEDaiEHIAtBcEkEQCADIAVBDHRyIQMMAQsgBUESdEGAgPAAcSAHLQAAQT9xIANBBnRyciEDIApBBGohBwsgBkEEaiADQYGABBA5AkACQCAGLQAEQYABRg0AIAYtAA8gBi0ADmtB/wFxQQFGDQAgBCACIAhqIgVLDQECQCAERQ0AIAEgBE0EQCABIARHDQMMAQsgACAEaiwAAEG/f0wNAgsCQCAFRQ0AIAEgBU0EQCAFIA9qRQ0BDAMLIAAgCGogAmosAABBv39MDQILIAkgACAEaiAIIARrIAJqIA0oAgwiBRECAA0DAkAgBi0ABEGAAUYEQCAJIAYoAgggDhEAAEUNAQwFCyAJIAYtAA4iBCAGQQRqaiAGLQAPIARrIAURAgANBAsCf0EBIANBgAFJDQAaQQIgA0GAEEkNABpBA0EEIANBgIAESRsLIAhqIAJqIQQLAn9BASADQYABSQ0AGkECIANBgBBJDQAaQQNBBCADQYCABEkbCyAIaiIFIAJqIQggECAHayIDRQ0DDAELCyAAIAEgBCAFQYDGwgAQ7AMACwwECyACIAVqCyICIARJDQBBACEDAkAgBEUNACABIARNBEAgBCIDIAFHDQIMAQsgBCIDIABqLAAAQb9/TA0BCyACRQRAQQAhAgwCCyABIAJNBEAgAyEEIAEgAkYNAgwBCyADIQQgACACaiwAAEG/f0oNAQsgACABIAQgAkGQxsIAEOwDAAsgCSAAIANqIAIgA2sgDSgCDBECAA0AIAlBIiAOEQAAIQwLIAZBEGokACAMC8EHAQF/IwBBMGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkACQCAAKAIAQQFrDgwBAgMEBQYHCAkKCwwACyACIABBBGo2AhQgAkEBNgIcIAJB8KfBADYCGCACQgE3AiQgAiACQRRqrUKAgICAsDeENwMAIAIgAjYCICABKAIcIAEoAiAgAkEYahBFDAwLIAIgAEEIajYCFCACQQE2AhwgAkHwp8EANgIYIAJCATcCJCACIAJBFGqtQoCAgIDAN4Q3AwAgAiACNgIgIAEoAhwgASgCICACQRhqEEUMCwsgAiAAQQhqNgIUIAJBAjYCHCACQeC0wQA2AhggAkICNwIkIAJCsKbBgMA1NwMIIAIgAkEUaq1CgICAgNA1hDcDACACIAI2AiAgASgCHCABKAIgIAJBGGoQRQwKCyACIABBBGo2AhQgAkEBNgIcIAJB8KfBADYCGCACQgE3AiQgAiACQRRqrUKAgICA0DeENwMAIAIgAjYCICABKAIcIAEoAiAgAkEYahBFDAkLIAIgAEEEajYCFCACQQE2AhwgAkGUtcEANgIYIAJCATcCJCACIAJBFGqtQoCAgIDgN4Q3AwAgAiACNgIgIAEoAhwgASgCICACQRhqEEUMCAsgAiAAQQRqNgIUIAJBATYCHCACQby1wQA2AhggAkIBNwIkIAIgAkEUaq1CgICAgPA3hDcDACACIAI2AiAgASgCHCABKAIgIAJBGGoQRQwHCyACIABBBGo2AhQgAkEBNgIcIAJB4LXBADYCGCACQgE3AiQgAiACQRRqrUKAgICAkDWENwMAIAIgAjYCICABKAIcIAEoAiAgAkEYahBFDAYLIAEoAhxB6LXBAEExIAEoAiAoAgwRAgAMBQsgAiAAQQhqNgIUIAJBATYCHCACQci2wQA2AhggAkIBNwIkIAIgAkEUaq1CgICAgIA4hDcDACACIAI2AiAgASgCHCABKAIgIAJBGGoQRQwECyACIABBBGo2AhQgAkEBNgIcIAJBjLfBADYCGCACQgE3AiQgAiACQRRqrUKAgICAkDWENwMAIAIgAjYCICABKAIcIAEoAiAgAkEYahBFDAMLIAEoAhxBlLfBAEE9IAEoAiAoAgwRAgAMAgsgASgCHEHRt8EAQc8AIAEoAiAoAgwRAgAMAQsgAiAAQQRqNgIUIAJBAjYCHCACQYC5wQA2AhggAkIBNwIkIAIgAkEUaq1CgICAgJA2hDcDACACIAI2AiAgASgCHCABKAIgIAJBGGoQRQsgAkEwaiQAC/0GAgJ/AX4jAEEwayICJAACfwJAAkACQAJAAkACQAJAAkACQAJAAkBBAyAAKAIAQe3///8HaiIDIANBC08bQQFrDgoBAgMEBQYHCAkKAAsgASgCHEGQucEAQdgAIAEoAiAoAgwRAgAMCgsgASgCHEHoucEAQd0AIAEoAiAoAgwRAgAMCQsgAiAAQQRqNgIEIAJBATYCDCACQfCnwQA2AgggAkIBNwIUIAIgAkEEaq1CgICAgJA4hDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwICyACIAA2AgQgAkEBNgIMIAJB8KfBADYCCCACQgE3AhQgAiACQQRqrUKAgICAoDeENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAcLIAIgAEEEajYCBCACQQE2AgwgAkHwp8EANgIIIAJCATcCFCACIAJBBGqtQoCAgICgOIQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMBgsgASgCHEHFusEAQTkgASgCICgCDBECAAwFCyACIABBBGo2AgQgAkECNgIMIAJBqLvBADYCCCACQgE3AhQgAiACQQRqrUKAgICA8DWENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAQLIAIgAEEEajYCACACIABBCGo2AgQgAkEDNgIMIAJB6LvBADYCCCACQgI3AhQgAkKAgICA8DUiBCACrYQ3AyggAiAEIAJBBGqthDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwDCyACIABBBGo2AgQgAkECNgIMIAJB8LzBADYCCCACQgE3AhQgAiACQQRqrUKAgICAsDiENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAILIAIgAEEEajYCACACIABBCGo2AgQgAkECNgIMIAJBsL3BADYCCCACQgI3AhQgAkKAgICAwDgiBCACQQRqrYQ3AyggAiAEIAKthDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwBCyACIABBBGo2AgAgAiAAQQhqNgIEIAJBAjYCDCACQfS9wQA2AgggAkICNwIUIAJCgICAgPA1IgQgAkEEaq2ENwMoIAIgBCACrYQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEULIAJBMGokAAuXBgEIfyMAQTBrIgEkAAJAAn8CQAJAAkAgACgCACIFBEAgACgCCCIEIAQgACgCBCIHIAQgB0sbayEIIAUhAwNAIAIgCGpFDQMgACACIARqQQFqNgIIIAJBAWohAiADIARqIANBAWohAy0AACIGQTBrQf8BcUEKSSAGQeEAa0H/AXFBBklyDQALIAZB3wBHDQIgAiAEakEBayEGAkAgBARAIAQgB08EQCAGIAdLDQgMAgsgBiAHSw0HIAQgBWosAABBv39KDQEMBwsgBiAHSw0GCyACQQFrIgJBAXFFBEAgAUKAgICAIDcCGCABIAMgBGpBAWsiAzYCFCABIAI2AhAgASAEIAVqIgU2AgwDQCABQQxqECYiBEGAgMQASQ0ACyAEQYGAxABGDQILIAAoAhAiA0UNA0HEucIAQRAgAxDVBEUNA0EBDAQLQQAgACgCECIARQ0DGkHtucIAQQEgABDVBAwDC0EAIAAoAhAiAEUNAhpBASAAQSIQ6wMNAhogAUKAgICAIDcCGCABIAM2AhQgASACNgIQIAEgBTYCDCABQQxqECYiAkGBgMQARwRAIAFBKGohBANAAkACQAJAAkAgAkGAgMQARwRAIAJBJ0YNASABQSBqIAIQPCABLQAgQYABRw0CQYABIQMDQAJAIANBgAFHBEAgAS0AKiIFIAEtACtPDQcgASAFQQFqOgAqIAFBIGogBWotAAAhAgwBC0EAIQMgBEEANgIAIAEoAiQhAiABQgA3AyALIAAgAhDrA0UNAAsMAwtBgLDCAEErIAFBIGpB8K/CAEHQrsIAEKACAAsgAEEnEOsDRQ0CDAELIAEtACoiAiABLQArIgMgAiADSxshAwNAIAIgA0YNAiABQSBqIAJqIQUgAkEBaiECIAAgBS0AABDrA0UNAAsLQQEMBQsgAUEMahAmIgJBgYDEAEcNAAsLIABBIhDrAwwCCyAAKAIQIgNFDQBBxLnCAEEQIAMQ1QRFDQBBAQwBCyAAQQA6AAQgAEEANgIAQQALIAFBMGokAA8LIAUgByAEIAZB9LjCABDsAwALrQUCBn8CfiAFQf8BcSIKIQcCQCABKAIQIgkgAS0AFCIGaiIIQQBKBEACQCAHIAhNBEAgCUEATCAGIApPcg0BA0AgCUEBayIIQQN2IQdBwAAgBkEHaiILQXhxayEFAkAgCEE/TQRAIAEgByAFEIgBIAEoAhAhCSABLQAUIQYMAQsCQCABKAIEIgggByALQfgBcUEDdmpBB2siB08EQCAIIAdrIghBB0sNAUEIIAhBxN7BABCrBAALIAcgCEHU3sEAEKoEAAsgASAFIAZqIgY6ABQgASAJIAVB/wFxayIJNgIQIAEgASgCACAHaikAADcDCAsgBkH/AXEgCk8NAiAJQQBKDQALDAELAn5CACACQf8BcSIFRQ0AGiAFIAZNBEAgASAGIAJrIgU6ABRCfyACrYZCf4UgASkDCCAFQT9xrYiDDAELIAEgAhBbCyENAkAgA0H/AXEiBUUNACAFIAEtABQiAksEQCABIAMQWyEMDAELIAEgAiADayICOgAUQn8gA62GQn+FIAEpAwggAkE/ca2IgyEMCyAAAn5CACAEQf8BcSICRQ0AGiACIAEtABQiA00EQCABIAMgBGsiAjoAFEJ/IASthkJ/hSABKQMIIAJBP3GtiIMMAQsgASAEEFsLNwMQDAILIAJB/wFxBH4gASAGIAJrIgY6ABRCfyACrYZCf4UgASkDCCAGQT9xrYiDBUIACyENIANB/wFxBEAgASAGIANrIgY6ABRCfyADrYZCf4UgASkDCCAGQT9xrYiDIQwLIAAgBEH/AXEEfiABIAYgBGsiAjoAFEJ/IASthkJ/hSABKQMIIAJBP3GtiIMFQgALNwMQDAELIABCADcDACABIAkgB2s2AhAgAEEIakIANwMAIABBEGpCADcDAA8LIAAgDDcDCCAAIA03AwAL7AUBB38CfyABRQRAIAAoAhQhCEEtIQogBUEBagwBC0ErQYCAxAAgACgCFCIIQQFxIgEbIQogASAFagshBwJAIAhBBHFFBEBBACECDAELIANBEE8EQCACIAMQLyAHaiEHDAELIANFDQAgA0EDcSEJAkAgA0EESQRAQQAhAQwBCyADQQxxIQxBACEBA0AgASACIAZqIgssAABBv39KaiALQQFqLAAAQb9/SmogC0ECaiwAAEG/f0pqIAtBA2osAABBv39KaiEBIAwgBkEEaiIGRw0ACwsgCQRAIAIgBmohBgNAIAEgBiwAAEG/f0pqIQEgBkEBaiEGIAlBAWsiCQ0ACwsgASAHaiEHCyAAKAIARQRAIAAoAhwiASAAKAIgIgAgCiACIAMQ/QIEQEEBDwsgASAEIAUgACgCDBECAA8LAkACQAJAIAcgACgCBCIGTwRAIAAoAhwiASAAKAIgIgAgCiACIAMQ/QJFDQFBAQ8LIAhBCHFFDQEgACgCECELIABBMDYCECAALQAYIQxBASEBIABBAToAGCAAKAIcIgggACgCICIJIAogAiADEP0CDQIgBiAHa0EBaiEBAkADQCABQQFrIgFFDQEgCEEwIAkoAhARAABFDQALQQEPCyAIIAQgBSAJKAIMEQIABEBBAQ8LIAAgDDoAGCAAIAs2AhBBAA8LIAEgBCAFIAAoAgwRAgAhAQwBCyAGIAdrIQcCQAJAAkBBASAALQAYIgEgAUEDRhsiAUEBaw4CAAECCyAHIQFBACEHDAELIAdBAXYhASAHQQFqQQF2IQcLIAFBAWohASAAKAIQIQggACgCICEGIAAoAhwhAAJAA0AgAUEBayIBRQ0BIAAgCCAGKAIQEQAARQ0AC0EBDwtBASEBIAAgBiAKIAIgAxD9Ag0AIAAgBCAFIAYoAgwRAgANAEEAIQEDQCABIAdGBEBBAA8LIAFBAWohASAAIAggBigCEBEAAEUNAAsgAUEBayAHSQ8LIAELrgUBB38CQCAAKAIAIgkgACgCCCIEcgRAAkAgBEEBcUUNACABIAJqIQcCQCAAKAIMIgZFBEAgASEEDAELIAEhBANAIAQiAyAHRg0CAn8gA0EBaiADLAAAIghBAE4NABogA0ECaiAIQWBJDQAaIANBA2ogCEFwSQ0AGiADQQRqCyIEIANrIAVqIQUgBkEBayIGDQALCyAEIAdGDQAgBCwAABogBSACAn8CQCAFRQ0AIAIgBU0EQCACIAVGDQFBAAwCCyABIAVqLAAAQUBODQBBAAwBCyABCyIDGyECIAMgASADGyEBCyAJRQ0BIAAoAgQhBwJAIAJBEE8EQCABIAIQLyEDDAELIAJFBEBBACEDDAELIAJBA3EhBgJAIAJBBEkEQEEAIQNBACEFDAELIAJBDHEhCEEAIQNBACEFA0AgAyABIAVqIgQsAABBv39KaiAEQQFqLAAAQb9/SmogBEECaiwAAEG/f0pqIARBA2osAABBv39KaiEDIAggBUEEaiIFRw0ACwsgBkUNACABIAVqIQQDQCADIAQsAABBv39KaiEDIARBAWohBCAGQQFrIgYNAAsLAkAgAyAHSQRAIAcgA2shBgJAAkACQCAALQAYIgRBACAEQQNHGyIDQQFrDgIAAQILIAYhA0EAIQYMAQsgBkEBdiEDIAZBAWpBAXYhBgsgA0EBaiEDIAAoAhAhBSAAKAIgIQQgACgCHCEAA0AgA0EBayIDRQ0CIAAgBSAEKAIQEQAARQ0AC0EBDwsMAgsgACABIAIgBCgCDBECAARAQQEPC0EAIQMDQCADIAZGBEBBAA8LIANBAWohAyAAIAUgBCgCEBEAAEUNAAsgA0EBayAGSQ8LIAAoAhwgASACIAAoAiAoAgwRAgAPCyAAKAIcIAEgAiAAKAIgKAIMEQIAC7gFAgh/AX4CQCABKAIIIgIgASgCBCIETw0AIAEoAgAgAmotAABB9QBHDQBBASEHIAEgAkEBaiICNgIICwJAAkAgAiAETw0BIAEoAgAiBSACai0AAEEwayIDQf8BcSIGQQlLDQEgASACQQFqIgI2AgggBkUEQEEAIQMMAQsgAiAEIAIgBEsbIQYgA0H/AXEhAwNAIAIgBkYNASACIAVqLQAAQTBrQf8BcSIIQQlLDQEgASACQQFqIgI2AgggA61CCn4iCkIgiFAEQCAIIAqnIghqIgMgCE8NAQsLDAELAkAgAiAETw0AIAIgBWotAABB3wBHDQAgASACQQFqIgI2AggLAkACQAJAAkAgAiACIANqIgZNBEAgASAGNgIIIAQgBkkNBSACRQ0CIAIgBEkNAQwCCwwECyACIAVqLAAAQb9/TA0BCyAGRSAEIAZNckUEQCAFIAZqLAAAQb9/TA0BCyACIAVqIQQgBw0BIABCATcCCCAAIAM2AgQgACAENgIADwsgBSAEIAIgBkGEucIAEOwDAAtBACEHQQAgA2shASAFIAZqIgZBAWshCEEAIQICQAJAAn8DQCABIAJGBEAgBCEBQQEMAgsgAiAIaiACQQFrIgUhAi0AAEHfAEcNAAsgAyAFaiEHAkACQEEAIANrIAVGDQAgAyAHTQRAIAUNBEEAIQIgA0F/cyAFRw0BDAILIAUgBmosAABBv39MDQMLIAMgB0EBaiIBTQRAIAMhAiAFQX9GDQEMBAsgBSAGakEBaiwAAEG/f0wNAyABIQILIAIgBGohASADIAJrIQMgBAshAiADRQRADAMLIAAgAzYCDCAAIAE2AgggACAHNgIEIAAgAjYCAA8LIAQgA0EAIAdBlLnCABDsAwALIAQgAyABIANBpLnCABDsAwALIABBADYCACAAQQA6AAQL4gUCB38CfiMAQSBrIgQkAAJ/AkACQCAAKAIAIgNFDQAgACgCCCICIAAoAgQiBU8NACACIANqIgEtAABBwgBGBEAgACACQQFqIgE2AggCQAJAAkACQAJAIAKtAn4CQCABIAVJBEAgASADai0AAEHfAEYNAQsgASAFIAEgBUsbIQcDQAJAIAEgBUkEQCABIANqLQAAQd8ARg0BCyABIAdGDQQCQCABIANqLQAAIgJBMGsiBkH/AXFBCkkNACACQeEAa0H/AXFBGk8EQCACQcEAa0H/AXFBGk8NBiACQR1rIQYMAQsgAkHXAGshBgsgACABQQFqIgE2AgggBCAIEJsCIAQpAwhCAFINBCAEKQMAIgkgBq1C/wGDfCIIIAlaDQEMBAsLIAAgAUEBajYCCCAIQn9RDQIgCEIBfAwBCyAAIAJBAmo2AghCAAsiCFgNAEEBIQEgACgCECECIAAoAgxBAWoiA0H0A0sNASACRQ0EIARBGGoiAiAAQQhqIgEpAgA3AwAgACADNgIMIAEgCD4CACAEIAApAgA3AxAgABA4IAEgAikDADcCACAAIAQpAxA3AgBB/wFxDAgLQQAhASAAKAIQIgJFDQJBxLnCAEEQIAIQ1QQNAQwCCyACRQ0BQdS5wgBBGSACENUERQ0BC0ECDAULIAAgAToABCAAQQA2AgALQQAMAwsgAS0AAEHJAEcNACAAIAJBAWo2AgggAEEAEB9FDQFBAgwCC0ECQQAgAEEAEB8bDAELAkAgACgCECIBRQ0AQfizwgBBASABENUERQ0AQQIMAQtBASAAKAIAIgFFDQAaQQAhAgJAA0ACQCAAKAIIIgMgACgCBE8NACABIANqLQAAQcUARw0AIAAgA0EBajYCCEEBDAMLAkAgAkUNACAAKAIQIgNFDQBBAkH1ucIAQQIgAxDVBA0DGgsgABBZDQEgAkEBayECIAAoAgAiAQ0AC0EBDAELQQILIARBIGokAAvPBgEDfyMAQSBrIgMkAAJAAkACQAJAAkACQAJAAkACQAJAAkACQCABDigGAQEBAQEBAQECBAEBAwEBAQEBAQEBAQEBAQEBAQEBAQEBCAEBAQEHAAsgAUHcAEYNBAsgAkEBcUUgAUGABklyDQcgARBcRQ0HIANBADoACiADQQA7AQggAyABQRR2QfzAwgBqLQAAOgALIAMgAUEEdkEPcUH8wMIAai0AADoADyADIAFBCHZBD3FB/MDCAGotAAA6AA4gAyABQQx2QQ9xQfzAwgBqLQAAOgANIAMgAUEQdkEPcUH8wMIAai0AADoADCABQQFyZ0ECdiICIANBCGoiBWoiBEH7ADoAACAEQQFrQfUAOgAAIAUgAkECayICakHcADoAACADQRBqIgQgAUEPcUH8wMIAai0AADoAACAAQQo6AAsgACACOgAKIAAgAykCCDcCACADQf0AOgARIABBCGogBC8BADsBAAwJCyAAQYAEOwEKIABCADcBAiAAQdzoATsBAAwICyAAQYAEOwEKIABCADcBAiAAQdzkATsBAAwHCyAAQYAEOwEKIABCADcBAiAAQdzcATsBAAwGCyAAQYAEOwEKIABCADcBAiAAQdy4ATsBAAwFCyAAQYAEOwEKIABCADcBAiAAQdzgADsBAAwECyACQYACcUUNASAAQYAEOwEKIABCADcBAiAAQdzOADsBAAwDCyACQYCABHENAQsgARC6AUUEQCADQQA6ABYgA0EAOwEUIAMgAUEUdkH8wMIAai0AADoAFyADIAFBBHZBD3FB/MDCAGotAAA6ABsgAyABQQh2QQ9xQfzAwgBqLQAAOgAaIAMgAUEMdkEPcUH8wMIAai0AADoAGSADIAFBEHZBD3FB/MDCAGotAAA6ABggAUEBcmdBAnYiAiADQRRqIgVqIgRB+wA6AAAgBEEBa0H1ADoAACAFIAJBAmsiAmpB3AA6AAAgA0EcaiIEIAFBD3FB/MDCAGotAAA6AAAgAEEKOgALIAAgAjoACiAAIAMpAhQ3AgAgA0H9ADoAHSAAQQhqIAQvAQA7AQAMAgsgACABNgIEIABBgAE6AAAMAQsgAEGABDsBCiAAQgA3AQIgAEHcxAA7AQALIANBIGokAAvpBQEBfyMAQTBrIgIkAAJ/AkACQAJAAkACQAJAAkACQCAALQAAQQFrDgcBAgMEBQYHAAsgAiAAQQRqNgIEIAJBATYCDCACQZSqwQA2AgggAkIBNwIUIAIgAkEEaq1CgICAgJA1hDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwHCyACIABBBGo2AgQgAkEBNgIMIAJBuKrBADYCCCACQgE3AhQgAiACQQRqrUKAgICAkDaENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAYLIAIgAEEEajYCBCACQQE2AgwgAkHoqsEANgIIIAJCATcCFCACIAJBBGqtQoCAgICQNYQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMBQsgAiAAQQFqNgIEIAJBATYCDCACQfCnwQA2AgggAkIBNwIUIAIgAkEEaq1CgICAgOA1hDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwECyACIABBBGo2AgQgAkEBNgIMIAJBmKvBADYCCCACQgE3AhQgAiACQQRqrUKAgICAkDWENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAMLIAIgAEEEajYCBCACQQE2AgwgAkHEq8EANgIIIAJCATcCFCACIAJBBGqtQoCAgICQNYQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMAgsgAiAAQQRqNgIEIAJBATYCDCACQfSrwQA2AgggAkIBNwIUIAIgAkEEaq1CgICAgJA1hDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwBCyACIABBBGo2AgAgAiAAQQhqNgIEIAJBAzYCDCACQbyswQA2AgggAkICNwIUIAIgAkEEaq1CgICAgIA2hDcDKCACIAKtQoCAgICQNoQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEULIAJBMGokAAuMBQEIfwJAIAJBEEkEQCAAIQMMAQsCQCAAQQAgAGtBA3EiBmoiBSAATQ0AIAAhAyABIQQgBgRAIAYhBwNAIAMgBC0AADoAACAEQQFqIQQgA0EBaiEDIAdBAWsiBw0ACwsgBkEBa0EHSQ0AA0AgAyAELQAAOgAAIANBAWogBEEBai0AADoAACADQQJqIARBAmotAAA6AAAgA0EDaiAEQQNqLQAAOgAAIANBBGogBEEEai0AADoAACADQQVqIARBBWotAAA6AAAgA0EGaiAEQQZqLQAAOgAAIANBB2ogBEEHai0AADoAACAEQQhqIQQgA0EIaiIDIAVHDQALCyAFIAIgBmsiB0F8cSIIaiEDAkAgASAGaiIEQQNxRQRAIAMgBU0NASAEIQEDQCAFIAEoAgA2AgAgAUEEaiEBIAVBBGoiBSADSQ0ACwwBCyADIAVNDQAgBEEDdCICQRhxIQYgBEF8cSIJQQRqIQFBACACa0EYcSEKIAkoAgAhAgNAIAUgAiAGdiABKAIAIgIgCnRyNgIAIAFBBGohASAFQQRqIgUgA0kNAAsLIAdBA3EhAiAEIAhqIQELAkAgAyACIANqIgZPDQAgAkEHcSIEBEADQCADIAEtAAA6AAAgAUEBaiEBIANBAWohAyAEQQFrIgQNAAsLIAJBAWtBB0kNAANAIAMgAS0AADoAACADQQFqIAFBAWotAAA6AAAgA0ECaiABQQJqLQAAOgAAIANBA2ogAUEDai0AADoAACADQQRqIAFBBGotAAA6AAAgA0EFaiABQQVqLQAAOgAAIANBBmogAUEGai0AADoAACADQQdqIAFBB2otAAA6AAAgAUEIaiEBIANBCGoiAyAGRw0ACwsgAAuzBgEEfyMAQSBrIgIkAAJAAkACQAJAAkACQAJAAkACQAJAIAEOKAAHBwcHBwcHBwEDBwcCBwcHBwcHBwcHBwcHBwcHBwcHBwcEBwcHBwUGCyAAQYAEOwEKIABCADcBAiAAQdzgADsBAAwICyAAQYAEOwEKIABCADcBAiAAQdzoATsBAAwHCyAAQYAEOwEKIABCADcBAiAAQdzkATsBAAwGCyAAQYAEOwEKIABCADcBAiAAQdzcATsBAAwFCyAAQYAEOwEKIABCADcBAiAAQdzEADsBAAwECyAAQYAEOwEKIABCADcBAiAAQdzOADsBAAwDCyABQdwARg0BCwJAIAFB/wVNDQAgARBcRQ0AIAJBADoACiACQQA7AQggAiABQRR2QeCvwgBqLQAAOgALIAIgAUEEdkEPcUHgr8IAai0AADoADyACIAFBCHZBD3FB4K/CAGotAAA6AA4gAiABQQx2QQ9xQeCvwgBqLQAAOgANIAIgAUEQdkEPcUHgr8IAai0AADoADCABQQFyZ0ECdiIDIAJBCGoiBWoiBEH7ADoAACAEQQFrQfUAOgAAIAUgA0ECayIDakHcADoAACACQRBqIgQgAUEPcUHgr8IAai0AADoAACAAQQo6AAsgACADOgAKIAAgAikCCDcCACACQf0AOgARIABBCGogBC8BADsBAAwCCyABELoBRQRAIAJBADoAFiACQQA7ARQgAiABQRR2QeCvwgBqLQAAOgAXIAIgAUEEdkEPcUHgr8IAai0AADoAGyACIAFBCHZBD3FB4K/CAGotAAA6ABogAiABQQx2QQ9xQeCvwgBqLQAAOgAZIAIgAUEQdkEPcUHgr8IAai0AADoAGCABQQFyZ0ECdiIDIAJBFGoiBWoiBEH7ADoAACAEQQFrQfUAOgAAIAUgA0ECayIDakHcADoAACACQRxqIgQgAUEPcUHgr8IAai0AADoAACAAQQo6AAsgACADOgAKIAAgAikCFDcCACACQf0AOgAdIABBCGogBC8BADsBAAwCCyAAIAE2AgQgAEGAAToAAAwBCyAAQYAEOwEKIABCADcBAiAAQdy4ATsBAAsgAkEgaiQAC84FAgZ/An4CQCACRQ0AIAJBB2siA0EAIAIgA08bIQcgAUEDakF8cSABayEIQQAhAwNAAkACQAJAIAEgA2otAAAiBcAiBkEATgRAIAggA2tBA3ENASADIAdPDQIDQCABIANqIgQoAgQgBCgCAHJBgIGChHhxDQMgA0EIaiIDIAdJDQALDAILQoCAgICAICEKQoCAgIAQIQkCQAJAAn4CQAJAAkACQAJAAkACQAJAAkAgBUHfx8IAai0AAEECaw4DAAECCgsgA0EBaiIEIAJJDQJCACEKQgAhCQwJC0IAIQogA0EBaiIEIAJJDQJCACEJDAgLQgAhCiADQQFqIgQgAkkNAkIAIQkMBwsgASAEaiwAAEG/f0oNBgwHCyABIARqLAAAIQQCQAJAIAVB4AFrIgUEQCAFQQ1GBEAMAgUMAwsACyAEQWBxQaB/Rg0EDAMLIARBn39KDQIMAwsgBkEfakH/AXFBDE8EQCAGQX5xQW5HDQIgBEFASA0DDAILIARBQEgNAgwBCyABIARqLAAAIQQCQAJAAkACQCAFQfABaw4FAQAAAAIACyAGQQ9qQf8BcUECSyAEQUBOcg0DDAILIARB8ABqQf8BcUEwTw0CDAELIARBj39KDQELIAIgA0ECaiIETQRAQgAhCQwFCyABIARqLAAAQb9/Sg0CQgAhCSADQQNqIgQgAk8NBCABIARqLAAAQb9/TA0FQoCAgICA4AAMAwtCgICAgIAgDAILQgAhCSADQQJqIgQgAk8NAiABIARqLAAAQb9/TA0DC0KAgICAgMAACyEKQoCAgIAQIQkLIAAgCiADrYQgCYQ3AgQgAEEBNgIADwsgBEEBaiEDDAILIANBAWohAwwBCyACIANNDQADQCABIANqLAAAQQBIDQEgAiADQQFqIgNHDQALDAILIAIgA0sNAAsLIAAgAjYCCCAAIAE2AgQgAEEANgIAC/4FAQV/IABBCGsiASAAQQRrKAIAIgNBeHEiAGohAgJAAkAgA0EBcQ0AIANBAnFFDQEgASgCACIDIABqIQAgASADayIBQdDowgAoAgBGBEAgAigCBEEDcUEDRw0BQcjowgAgADYCACACIAIoAgRBfnE2AgQgASAAQQFyNgIEIAIgADYCAA8LIAEgAxB1CwJAAkACQAJAAkAgAigCBCIDQQJxRQRAIAJB1OjCACgCAEYNAiACQdDowgAoAgBGDQMgAiADQXhxIgIQdSABIAAgAmoiAEEBcjYCBCAAIAFqIAA2AgAgAUHQ6MIAKAIARw0BQcjowgAgADYCAA8LIAIgA0F+cTYCBCABIABBAXI2AgQgACABaiAANgIACyAAQYACSQ0CIAEgABB+QQAhAUHo6MIAQejowgAoAgBBAWsiADYCACAADQRBsObCACgCACIABEADQCABQQFqIQEgACgCCCIADQALC0Ho6MIAQf8fIAEgAUH/H00bNgIADwtB1OjCACABNgIAQczowgBBzOjCACgCACAAaiIANgIAIAEgAEEBcjYCBEHQ6MIAKAIAIAFGBEBByOjCAEEANgIAQdDowgBBADYCAAsgAEHg6MIAKAIAIgNNDQNB1OjCACgCACICRQ0DQQAhAEHM6MIAKAIAIgRBKUkNAkGo5sIAIQEDQCACIAEoAgAiBU8EQCACIAUgASgCBGpJDQQLIAEoAgghAQwACwALQdDowgAgATYCAEHI6MIAQcjowgAoAgAgAGoiADYCACABIABBAXI2AgQgACABaiAANgIADwsgAEH4AXFBuObCAGohAgJ/QcDowgAoAgAiA0EBIABBA3Z0IgBxRQRAQcDowgAgACADcjYCACACDAELIAIoAggLIQAgAiABNgIIIAAgATYCDCABIAI2AgwgASAANgIIDwtBsObCACgCACIBBEADQCAAQQFqIQAgASgCCCIBDQALC0Ho6MIAQf8fIAAgAEH/H00bNgIAIAMgBE8NAEHg6MIAQX82AgALC98FAQJ/IwBBMGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkBBAiAAKAIAQfv///8HaiIDIANBDE8bQQFrDgsBAgMEBQYHCAkKCwALIAIgAEEEajYCDCACQQE2AhQgAkHwp8EANgIQIAJCATcCHCACIAJBDGqtQoCAgICQOIQ3AyggAiACQShqNgIYIAEoAhwgASgCICACQRBqEEUMCwsgAiAAQQRqNgIMIAJBATYCFCACQfCnwQA2AhAgAkIBNwIcIAIgAkEMaq1CgICAgOA4hDcDKCACIAJBKGo2AhggASgCHCABKAIgIAJBEGoQRQwKCyACIAA2AgwgAkEBNgIUIAJB8KfBADYCECACQgE3AhwgAiACQQxqrUKAgICAkDeENwMoIAIgAkEoajYCGCABKAIcIAEoAiAgAkEQahBFDAkLIAIgAEEEajYCDCACQQI2AhQgAkHwvMEANgIQIAJCATcCHCACIAJBDGqtQoCAgICwOIQ3AyggAiACQShqNgIYIAEoAhwgASgCICACQRBqEEUMCAsgAiAAQQRqNgIMIAJBATYCFCACQZy/wQA2AhAgAkIBNwIcIAIgAkEMaq1CgICAgOA0hDcDKCACIAJBKGo2AhggASgCHCABKAIgIAJBEGoQRQwHCyABKAIcQaS/wQBBOSABKAIgKAIMEQIADAYLIAEoAhxB3b/BAEE/IAEoAiAoAgwRAgAMBQsgAiAAQQRqNgIMIAJBATYCFCACQfCnwQA2AhAgAkIBNwIcIAIgAkEMaq1CgICAgMA4hDcDKCACIAJBKGo2AhggASgCHCABKAIgIAJBEGoQRQwECyABKAIcQZzAwQBBPCABKAIgKAIMEQIADAMLIAEoAhxB2MDBAEEkIAEoAiAoAgwRAgAMAgsgASgCHEH8wMEAQSQgASgCICgCDBECAAwBCyABKAIcQaDBwQBBJCABKAIgKAIMEQIACyACQTBqJAALkQUCAX8BfiMAQUBqIgIkAAJ/AkACQAJAAkACQAJAAkAgAC0AAEEBaw4GAQIDBAUGAAsgAiAAQQhqNgIkIAJBAjYCLCACQYCnwQA2AiggAkICNwI0IAJCsKbBgMA1NwMYIAIgAkEkaq1CgICAgNA1hDcDECACIAJBEGo2AjAgASgCHCABKAIgIAJBKGoQRQwGCyACIABBCGo2AiQgAkECNgIsIAJB4KfBADYCKCACQgI3AjQgAkKQp8GAwDU3AxggAiACQSRqrUKAgICA0DWENwMQIAIgAkEQajYCMCABKAIcIAEoAiAgAkEoahBFDAULIAIgAEEBajYCJCACQQE2AiwgAkHwp8EANgIoIAJCATcCNCACIAJBJGqtQoCAgIDgNYQ3AxAgAiACQRBqNgIwIAEoAhwgASgCICACQShqEEUMBAsgAiAAQQRqNgIMIAIgAEEIajYCJCACQQI2AiwgAkGoqMEANgIoIAJCAjcCNCACQoCAgIDwNSIDIAJBJGqthDcDGCACIAMgAkEMaq2ENwMQIAIgAkEQajYCMCABKAIcIAEoAiAgAkEoahBFDAMLIAIgAEEEajYCDCACIABBAWo2AiQgAkECNgIsIAJB8KjBADYCKCACQgI3AjQgAiACQSRqrUKAgICA4DSENwMYIAIgAkEMaq1CgICAgPA1hDcDECACIAJBEGo2AjAgASgCHCABKAIgIAJBKGoQRQwCCyABKAIcQYCpwQBBGyABKAIgKAIMEQIADAELIAIgAEEBajYCJCACQQI2AiwgAkHgqcEANgIoIAJCATcCNCACIAJBJGqtQoCAgIDgNIQ3AxAgAiACQRBqNgIwIAEoAhwgASgCICACQShqEEULIAJBQGskAAvrBAEFfwJ/AkAgAkECTwRAIAEoAgQiBEH//wFxRQRAIARBEHQMAwsgBEH/B3EhBSAEQYCAAnEhAyAEQYD4AXEiBkGA+AFGBEAgA0EQdCEDIANBgICA/AdyIAVFDQMaIAMgBUENdHJBgICA/gdyDAMLIANBEHQhAyAGRQ0BIAZBDXRBgICA/ABxIAVBDXRyQYCAgMADaiADcgwCC0EBQQFB/IzAABCtAgALIAUgBWdBEGsiBUH//wNxQQhqdEH///8DcSADQYCAgNgDciAFQRd0a3ILIQUCfyAEQYCAfHEgBEEQdiIDQf//AXFFDQAaIANB/wdxIQQgA0GAgAJxIQYgA0GA+AFxIgdBgPgBRgRAIAZBEHQhBiAGQYCAgPwHciAERQ0BGiAGIANBDXRyQYCAgP4HcgwBCyAGQRB0IQMgB0ENdEGAgID8AHEgBEENdHJBgICAwANqIANyIAcNABogBCAEZ0EQayIEQf//A3FBCGp0Qf///wNxIANBgICA2ANyIARBF3RrcgshBCAAAn8CQCACQQJHBEAgASgCCCICQf//AXFFBEAgAkEQdAwDCyACQf8HcSEBIAJBgIACcSEDIAJBgPgBcSICQYD4AUYEQCADQRB0IQIgAkGAgID8B3IgAUUNAxogAiABQQ10ckGAgID+B3IMAwsgA0EQdCEDIAJFDQEgAkENdEGAgID8AHEgAUENdHJBgICAwANqIANyDAILQQJBAkGMjcAAEK0CAAsgASABZ0EQayIBQf//A3FBCGp0Qf///wNxIANBgICA2ANyIAFBF3Rrcgs2AgggACAENgIEIAAgBTYCAAuLBQEEfyMAQSBrIgMkAAJAIAAQOEH/AXEiAUECRgRAQQEhAQwBCwJAAkACQAJAIAAoAgAiBEUNACAAKAIIIgIgACgCBE8NACACIARqLQAAQfAARw0AIAAgAkEBajYCCCAAKAIQIQIgAUEBcUUEQCACRQ0CQQEhAUH4s8IAQQEgAhDVBA0FDAILIAJFDQFB9bnCAEECIAIQ1QRFDQFBASEBDAQLIAFBAXFFDQIMAQsCQAJAIAAoAgBFDQAgAyAAEDcgAygCAEUNASADQRhqIANBCGopAgA3AwAgAyADKQIANwMQAkAgACgCECICRQ0AQQEhASADQRBqIAIQIw0FIAAoAhAiAkUNAEHJusIAQQMgAhDVBA0FCyAAECcEQEEBIQEMBQsDQCAAKAIAIgJFDQMgACgCCCIBIAAoAgRPDQMgASACai0AAEHwAEcNAyAAIAFBAWo2AgggACgCECIBBEBB9bnCAEECIAEQ1QQEQEEBIQEMBwsgACgCAEUNAgsgAyAAEDcgAygCAEUNAiADQRhqIANBCGopAgA3AwAgAyADKQIANwMQAkAgACgCECICRQ0AQQEhASADQRBqIAIQIw0GIAAoAhAiAkUNAEHJusIAQQMgAhDVBA0GC0EBIQEgABAnRQ0ACwwECyAAKAIQIgBFDQJB7bnCAEEBIAAQ1QQhAQwDCyAAKAIQIQECQCADLQAEIgJFBEAgAUUNAUHEucIAQRAgARDVBEUNAUEBIQEMBAsgAUUNAEHUucIAQRkgARDVBEUNAEEBIQEMAwsgACACOgAEQQAhASAAQQA2AgAMAgsgACgCECIARQ0AQQEhAUH3s8IAQQEgABDVBA0BC0EAIQELIANBIGokACABC9IEAg9/AX4jAEHQAGsiAyQAIANBDGqtQoCAgIAQhCESIAAtAAwhByAAKAIEIQ4gACgCACENIAAoAggiCEEcaiEPIAhBIGohEAJ/A0ACQCAJIhENACAGIQpBASEJAkAgAiAFTwRAA0AgASAFaiEGAkACQAJAIAIgBWsiC0EHTQRAIAIgBUYEQCAKIQYgAiEFIAIhBAwHC0EAIQQDQCAEIAZqLQAAQQpGDQIgCyAEQQFqIgRHDQALIAohBiACIQUgAiEEDAYLIANBCiAGIAsQiQEgAygCACILQQFHDQEgAygCBCEECyAEIAVqIgRBAWohBSACIARNDQEgASAEai0AAEEKRw0BQQAhCSAFIQYMBAsgCiEGIAIhBSACIQQgC0EBcUUNA0EAIQkMAwsgAiAFTw0ACwsgCiEGIAIhBAsCQCAHQQFxRQRAIABBAToADCANQQFxRQRAIAhB3IPCAEEEEOUDRQ0CDAMLIAMgDjYCDCADIBI3AyggA0EBOgBMIANBADYCSCADQiA3AkAgA0KAgICA0AA3AjggA0ECNgIwIANBATYCJCADQQI2AhQgA0Hkg8IANgIQIANBATYCHCAPKAIAIQsgECgCACEHIAMgA0EwajYCICADIANBKGo2AhhBASALIAcgA0EQahBFDQQaDAELIAxFDQAgCEEKEOsDDQEgDQRAIAhB9IPCAEEHEOUDDQIMAQsgCEHcg8IAQQQQ5QMNAQsgDEEBaiEMQQEhByAIIAEgCmogBCAKaxDlA0UNAQsLIBFBAXMLIANB0ABqJABBAXELhwUCAn8BfiMAQUBqIgIkACAAQQRqIQMCfwJAAkACQAJAAkACQAJAIAAoAgBBAWsOBgECAwQFBgALIAIgAzYCJCACQQE2AiwgAkHwr8EANgIoIAJCATcCNCACIAJBJGqtQoCAgICQNYQ3AxAgAiACQRBqNgIwIAEoAhwgASgCICACQShqEEUMBgsgAiADNgIMIAIgAEEIajYCJCACQQM2AiwgAkHUsMEANgIoIAJCAjcCNCACQoCAgIDwNSIEIAJBJGqthDcDGCACIAQgAkEMaq2ENwMQIAIgAkEQajYCMCABKAIcIAEoAiAgAkEoahBFDAULIAIgAzYCJCACQQE2AiwgAkHwp8EANgIoIAJCATcCNCACIAJBJGqtQoCAgICgNoQ3AxAgAiACQRBqNgIwIAEoAhwgASgCICACQShqEEUMBAsgAiADNgIkIAJBATYCLCACQfCnwQA2AiggAkIBNwI0IAIgAkEkaq1CgICAgLA2hDcDECACIAJBEGo2AjAgASgCHCABKAIgIAJBKGoQRQwDCyACIAM2AiQgAkEBNgIsIAJB8KfBADYCKCACQgE3AjQgAiACQSRqrUKAgICAwDaENwMQIAIgAkEQajYCMCABKAIcIAEoAiAgAkEoahBFDAILIAIgAzYCJCACQQE2AiwgAkHwp8EANgIoIAJCATcCNCACIAJBJGqtQoCAgIDQNoQ3AxAgAiACQRBqNgIwIAEoAhwgASgCICACQShqEEUMAQsgAiADNgIkIAJBATYCLCACQfCnwQA2AiggAkIBNwI0IAIgAkEkaq1CgICAgOA2hDcDECACIAJBEGo2AjAgASgCHCABKAIgIAJBKGoQRQsgAkFAayQAC+oEAQp/IwBBMGsiAyQAIAMgATYCLCADIAA2AiggA0EDOgAkIANCIDcCHCADQQA2AhQgA0EANgIMAn8CQAJAAkAgAigCECIKRQRAIAIoAgwiAEUNASACKAIIIgEgAEEDdGohBCAAQQFrQf////8BcUEBaiEHIAIoAgAhAANAIABBBGooAgAiBQRAIAMoAiggACgCACAFIAMoAiwoAgwRAgANBAsgASgCACADQQxqIAFBBGooAgARAAANAyAAQQhqIQAgAUEIaiIBIARHDQALDAELIAIoAhQiAEUNACAAQQV0IQsgAEEBa0H///8/cUEBaiEHIAIoAgghBSACKAIAIQADQCAAQQRqKAIAIgEEQCADKAIoIAAoAgAgASADKAIsKAIMEQIADQMLIAMgCCAKaiIBQRBqKAIANgIcIAMgAUEcai0AADoAJCADIAFBGGooAgA2AiAgAUEMaigCACEEQQAhCUEAIQYCQAJAAkAgAUEIaigCAEEBaw4CAAIBCyAEQQN0IAVqIgwoAgANASAMKAIEIQQLQQEhBgsgAyAENgIQIAMgBjYCDCABQQRqKAIAIQQCQAJAAkAgASgCAEEBaw4CAAIBCyAEQQN0IAVqIgYoAgANASAGKAIEIQQLQQEhCQsgAyAENgIYIAMgCTYCFCAFIAFBFGooAgBBA3RqIgEoAgAgA0EMaiABQQRqKAIAEQAADQIgAEEIaiEAIAsgCEEgaiIIRw0ACwsgByACKAIETw0BIAMoAiggAigCACAHQQN0aiIAKAIAIAAoAgQgAygCLCgCDBECAEUNAQtBAQwBC0EACyADQTBqJAALlgQBBH8jAEGAAWsiBCQAAkACQAJAIAEoAhQiAkEQcUUEQCACQSBxDQFBASECIAAoAgBBASABEGxFDQIMAwsgACgCACECA0AgAyAEakH/AGogAkEPcSIFQTByIAVB1wBqIAVBCkkbOgAAIANBAWshAyACQRBJIAJBBHYhAkUNAAtBASECIAFBAUGPxMIAQQIgAyAEakGAAWpBACADaxA1RQ0BDAILIAAoAgAhAgNAIAMgBGpB/wBqIAJBD3EiBUEwciAFQTdqIAVBCkkbOgAAIANBAWshAyACQQ9LIAJBBHYhAg0AC0EBIQIgAUEBQY/EwgBBAiADIARqQYABakEAIANrEDUNAQsgASgCHEH6wMIAQQIgASgCICgCDBECAA0AAkAgASgCFCICQRBxRQRAIAJBIHENASAAKAIEQQEgARBsIQIMAgsgACgCBCECQQAhAwNAIAMgBGpB/wBqIAJBD3EiAEEwciAAQdcAaiAAQQpJGzoAACADQQFrIQMgAkEPSyACQQR2IQINAAsgAUEBQY/EwgBBAiADIARqQYABakEAIANrEDUhAgwBCyAAKAIEIQJBACEDA0AgAyAEakH/AGogAkEPcSIAQTByIABBN2ogAEEKSRs6AAAgA0EBayEDIAJBD0sgAkEEdiECDQALIAFBAUGPxMIAQQIgAyAEakGAAWpBACADaxA1IQILIARBgAFqJAAgAgu7BAEBfwJAIAAoAgBBAkYNACAAKAIoIgEEQCAAKAIsIAFBAXRBARCnBAsgACgCNCIBBEAgACgCOCABQQEQpwQLIAAoAkAiAQRAIAAoAkQgAUEBEKcECyAAKAJMIgEEQCAAKAJQIAFBAnRBBBCnBAsgACgCWCIBBEAgACgCXCABQQJ0QQQQpwQLIAAoAmQiAQRAIAAoAmggAUEDdEEEEKcECyAAKAJwIgEEQCAAKAJ0IAFBAnRBBBCnBAsgACgCfCIBBEAgACgCgAEgAUECdEEEEKcECyAAKAKQASIBBEAgACgClAEgAUEDdEEEEKcECyAAKAKcASIBBEAgACgCoAEgAUECdEEEEKcECyAAKAKoASIBBEAgACgCrAEgAUECdEEEEKcECyAAKAK4ASIBBEAgACgCvAEgAUEDdEEEEKcECyAAKALEASIBBEAgACgCyAEgAUECdEEEEKcECyAAKALQASIBBEAgACgC1AEgAUECdEEEEKcECyAAKALgASIBBEAgACgC5AEgAUEDdEEEEKcECyAAKALsASIBBEAgACgC8AEgAUECdEEEEKcECyAAKAL4ASIBBEAgACgC/AEgAUECdEEEEKcECyAAQZACahDTAyAAKAKEAyIBBEAgACgCiAMgAUEBEKcECyAAKAKQAyIBBEAgACgClAMgAUEBEKcECyAAKAKcAyIBBEAgACgCoAMgAUEMbEEEEKcECyAAKAKoAyIBRQ0AIAAoAqwDIAFBARCnBAsgAEHQA2oQKwuPBAENfyABQQFrIQ8gACgCBCEKIAAoAgAhCyAAKAIIIQwCQANAIA4NAQJAAkAgAiAESQ0AA0AgASAEaiEFAkACQAJAIAIgBGsiBkEHTQRAIAIgBEcNASACIQQMBQsCQCAFQQNqQXxxIgggBWsiAwRAQQAhAANAIAAgBWotAABBCkYNBSADIABBAWoiAEcNAAsgAyAGQQhrIgBNDQEMAwsgBkEIayEACwNAQYCChAggCCgCACIJQYqUqNAAc2sgCXJBgIKECCAIQQRqKAIAIglBipSo0ABzayAJcnFBgIGChHhxQYCBgoR4Rw0CIAhBCGohCCADQQhqIgMgAE0NAAsMAQtBACEAA0AgACAFai0AAEEKRg0CIAYgAEEBaiIARw0ACyACIQQMAwsgAyAGRgRAIAIhBAwDCwNAIAMgBWotAABBCkYEQCADIQAMAgsgBiADQQFqIgNHDQALIAIhBAwCCyAAIARqIgNBAWohBAJAIAIgA00NACAAIAVqLQAAQQpHDQAgBCEFIAQhAAwDCyACIARPDQALC0EBIQ4gAiIAIAciBUYNAgsCQCAMLQAABEAgC0H4w8IAQQQgCigCDBECAA0BC0EAIQMgACAHRwRAIAAgD2otAABBCkYhAwsgACAHayEAIAEgB2ohBiAMIAM6AAAgBSEHIAsgBiAAIAooAgwRAgBFDQELC0EBIQ0LIA0LswQBAX8CQCAAKAIAQQJGDQAgACgCKCIBBEAgACgCLCABQQF0QQEQpwQLIAAoAjQiAQRAIAAoAjggAUEBEKcECyAAKAJAIgEEQCAAKAJEIAFBARCnBAsgACgCTCIBBEAgACgCUCABQQJ0QQQQpwQLIAAoAlgiAQRAIAAoAlwgAUECdEEEEKcECyAAKAJkIgEEQCAAKAJoIAFBA3RBBBCnBAsgACgCcCIBBEAgACgCdCABQQJ0QQQQpwQLIAAoAnwiAQRAIAAoAoABIAFBAnRBBBCnBAsgACgCkAEiAQRAIAAoApQBIAFBA3RBBBCnBAsgACgCnAEiAQRAIAAoAqABIAFBAnRBBBCnBAsgACgCqAEiAQRAIAAoAqwBIAFBAnRBBBCnBAsgACgCuAEiAQRAIAAoArwBIAFBA3RBBBCnBAsgACgCxAEiAQRAIAAoAsgBIAFBAnRBBBCnBAsgACgC0AEiAQRAIAAoAtQBIAFBAnRBBBCnBAsgACgC4AEiAQRAIAAoAuQBIAFBA3RBBBCnBAsgACgC7AEiAQRAIAAoAvABIAFBAnRBBBCnBAsgACgC+AEiAQRAIAAoAvwBIAFBAnRBBBCnBAsgAEGQAmoQ0wMgACgChAMiAQRAIAAoAogDIAFBARCnBAsgACgCkAMiAQRAIAAoApQDIAFBARCnBAsgACgCnAMiAQRAIAAoAqADIAFBDGxBBBCnBAsgACgCqAMiAUUNACAAKAKsAyABQQEQpwQLC54FAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAQQIgACgCACIAKAIAQfv///8HaiIDIANBDk8bQQFrDg0BAgMEBQYHCAkKCwwNAAsgAiAAQQRqNgIMIAFB6NTBAEEMIAJBDGpB2NTBABB/DA0LIAIgAEEEajYCDCABQdDXwQBBDyACQQxqQcDXwQAQfwwMCyACIAA2AgwgAUGA1MEAQQ0gAkEMakHw08EAEH8MCwsgAUHY2sEAQQ0Q5QMMCgsgAiAAQQhqNgIMIAFB5drBAEEYQf3awQBBCSAAQQRqQfTMwQBBhtvBAEEOIAJBDGpBhM3BABDDAQwJCyACIABBBGo2AgwgAUH41cEAQQxBhNbBAEEMIAJBDGpB6NXBABDJAQwICyACIABBBGo2AgwgAUGU28EAQQ5Bi87BAEEDIAJBDGpBuM3BABDJAQwHCyABQaLbwQBBDhDlAwwGCyACIABBBGo2AgwgAUGw28EAQRZBi87BAEEDIAJBDGpBzM/BABDJAQwFCyACIABBCGo2AgwgAUHG28EAQSFBsNfBAEEEIABBBGpB9MzBAEG308EAQQQgAkEMakG4zcEAEMMBDAQLIAIgAEEIajYCDCABQefbwQBBGEH/28EAQQQgAEEEakH0zMEAQYPcwQBBDyACQQxqQYTNwQAQwwEMAwsgAiAAQQhqNgIMIAFBktzBAEEWQYvOwQBBAyAAQQRqQfTMwQBBt9PBAEEEIAJBDGpBuM3BABDDAQwCCyACIABBBGo2AgwgAUGo3MEAQRpBi87BAEEDIAJBDGpBhM3BABDJAQwBCyACIABBBGo2AgwgAUHC3MEAQQ5Bi87BAEEDIAJBDGpBhM3BABDJAQsgAkEQaiQAC5kFAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAQQIgACgCAEH7////B2oiAyADQQ5PG0EBaw4NAQIDBAUGBwgJCgsMDQALIAIgAEEEajYCDCABQcSZwABBDCACQQxqQbSZwAAQfwwNCyACIABBBGo2AgwgAUGMoMAAQQ8gAkEMakH8n8AAEH8MDAsgAiAANgIMIAFBrKDAAEENIAJBDGpBnKDAABB/DAsLIAFBuaDAAEENEOUDDAoLIAIgAEEIajYCDCABQcagwABBGEHeoMAAQQkgAEEEakGImMAAQeegwABBDiACQQxqQZiYwAAQwwEMCQsgAiAAQQRqNgIMIAFBiKHAAEEMQZShwABBDCACQQxqQfigwAAQyQEMCAsgAiAAQQRqNgIMIAFBoKHAAEEOQayZwABBAyACQQxqQcyYwAAQyQEMBwsgAUGuocAAQQ4Q5QMMBgsgAiAAQQRqNgIMIAFBvKHAAEEWQayZwABBAyACQQxqQbiawAAQyQEMBQsgAiAAQQhqNgIMIAFB0qHAAEEhQfOhwABBBCAAQQRqQYiYwABB+pzAAEEEIAJBDGpBzJjAABDDAQwECyACIABBCGo2AgwgAUH3ocAAQRhBj6LAAEEEIABBBGpBiJjAAEGTosAAQQ8gAkEMakGYmMAAEMMBDAMLIAIgAEEIajYCDCABQaKiwABBFkGsmcAAQQMgAEEEakGImMAAQfqcwABBBCACQQxqQcyYwAAQwwEMAgsgAiAAQQRqNgIMIAFBuKLAAEEaQayZwABBAyACQQxqQZiYwAAQyQEMAQsgAiAAQQRqNgIMIAFB0qLAAEEOQayZwABBAyACQQxqQZiYwAAQyQELIAJBEGokAAuZBQECfyMAQRBrIgIkAAJ/AkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQEECIAAoAgBB+////wdqIgMgA0EOTxtBAWsODQECAwQFBgcICQoLDA0ACyACIABBBGo2AgwgAUHYvMAAQQwgAkEMakHIvMAAEH8MDQsgAiAAQQRqNgIMIAFBoMPAAEEPIAJBDGpBkMPAABB/DAwLIAIgADYCDCABQcDDwABBDSACQQxqQbDDwAAQfwwLCyABQc3DwABBDRDlAwwKCyACIABBCGo2AgwgAUHaw8AAQRhB8sPAAEEJIABBBGpBnLvAAEH7w8AAQQ4gAkEMakGsu8AAEMMBDAkLIAIgAEEEajYCDCABQZzEwABBDEGoxMAAQQwgAkEMakGMxMAAEMkBDAgLIAIgAEEEajYCDCABQbTEwABBDkHAvMAAQQMgAkEMakHgu8AAEMkBDAcLIAFBwsTAAEEOEOUDDAYLIAIgAEEEajYCDCABQdDEwABBFkHAvMAAQQMgAkEMakHMvcAAEMkBDAULIAIgAEEIajYCDCABQebEwABBIUGHxcAAQQQgAEEEakGcu8AAQY7AwABBBCACQQxqQeC7wAAQwwEMBAsgAiAAQQhqNgIMIAFBi8XAAEEYQaPFwABBBCAAQQRqQZy7wABBp8XAAEEPIAJBDGpBrLvAABDDAQwDCyACIABBCGo2AgwgAUG2xcAAQRZBwLzAAEEDIABBBGpBnLvAAEGOwMAAQQQgAkEMakHgu8AAEMMBDAILIAIgAEEEajYCDCABQczFwABBGkHAvMAAQQMgAkEMakGsu8AAEMkBDAELIAIgAEEEajYCDCABQebFwABBDkHAvMAAQQMgAkEMakGsu8AAEMkBCyACQRBqJAALmQUBAn8jAEEQayICJAACfwJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkBBAiAAKAIAQfv///8HaiIDIANBDk8bQQFrDg0BAgMEBQYHCAkKCwwNAAsgAiAAQQRqNgIMIAFBqN/AAEEMIAJBDGpBmN/AABB/DA0LIAIgAEEEajYCDCABQdzlwABBDyACQQxqQczlwAAQfwwMCyACIAA2AgwgAUH85cAAQQ0gAkEMakHs5cAAEH8MCwsgAUGJ5sAAQQ0Q5QMMCgsgAiAAQQhqNgIMIAFBlubAAEEYQa7mwABBCSAAQQRqQYzewABBt+bAAEEOIAJBDGpB+NrAABDDAQwJCyACIABBBGo2AgwgAUHF5sAAQQxB0ebAAEEMIAJBDGpB6NrAABDJAQwICyACIABBBGo2AgwgAUHd5sAAQQ5BkN/AAEEDIAJBDGpB+NzAABDJAQwHCyABQevmwABBDhDlAwwGCyACIABBBGo2AgwgAUH55sAAQRZBkN/AAEEDIAJBDGpBnODAABDJAQwFCyACIABBCGo2AgwgAUGP58AAQSFBsOfAAEEEIABBBGpBjN7AAEHe4sAAQQQgAkEMakH43MAAEMMBDAQLIAIgAEEIajYCDCABQbTnwABBGEHM58AAQQQgAEEEakGM3sAAQdDnwABBDyACQQxqQfjawAAQwwEMAwsgAiAAQQhqNgIMIAFB3+fAAEEWQZDfwABBAyAAQQRqQYzewABB3uLAAEEEIAJBDGpB+NzAABDDAQwCCyACIABBBGo2AgwgAUH158AAQRpBkN/AAEEDIAJBDGpB+NrAABDJAQwBCyACIABBBGo2AgwgAUGP6MAAQQ5BkN/AAEEDIAJBDGpB+NrAABDJAQsgAkEQaiQAC5kFAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAQQIgACgCAEH7////B2oiAyADQQ5PG0EBaw4NAQIDBAUGBwgJCgsMDQALIAIgAEEEajYCDCABQeyHwQBBDCACQQxqQdyHwQAQfwwNCyACIABBBGo2AgwgAUHQi8EAQQ8gAkEMakHAi8EAEH8MDAsgAiAANgIMIAFB8IvBAEENIAJBDGpB4IvBABB/DAsLIAFB/YvBAEENEOUDDAoLIAIgAEEIajYCDCABQYqMwQBBGEGijMEAQQkgAEEEakHohcEAQauMwQBBDiACQQxqQcCGwQAQwwEMCQsgAiAAQQRqNgIMIAFBzIzBAEEMQdiMwQBBDCACQQxqQbyMwQAQyQEMCAsgAiAAQQRqNgIMIAFB5IzBAEEOQdSHwQBBAyACQQxqQfSGwQAQyQEMBwsgAUHyjMEAQQ4Q5QMMBgsgAiAAQQRqNgIMIAFBgI3BAEEWQdSHwQBBAyACQQxqQeCIwQAQyQEMBQsgAiAAQQhqNgIMIAFBlo3BAEEhQbeNwQBBBCAAQQRqQeiFwQBBoovBAEEEIAJBDGpB9IbBABDDAQwECyACIABBCGo2AgwgAUG7jcEAQRhB043BAEEEIABBBGpB6IXBAEHXjcEAQQ8gAkEMakHAhsEAEMMBDAMLIAIgAEEIajYCDCABQeaNwQBBFkHUh8EAQQMgAEEEakHohcEAQaKLwQBBBCACQQxqQfSGwQAQwwEMAgsgAiAAQQRqNgIMIAFB/I3BAEEaQdSHwQBBAyACQQxqQcCGwQAQyQEMAQsgAiAAQQRqNgIMIAFBlo7BAEEOQdSHwQBBAyACQQxqQcCGwQAQyQELIAJBEGokAAuLBAIJfwF+AkACQAJ/AkACQAJAAkAgAkHAAE0EQCABKAIEIghBA3QgASgCCCIGayIDIAJJDQEgBkEDdiIDIAhPDQIgASgCACIKIANqLQAAIAZBB3EiCXatIQxBCCAJayIFIAJJBEAgASAFIAZqIgQ2AggCQCAEQQdxRQRAIAIgBWsiB0EITw0BIAUhCSAHDAgLQeDkwQBBI0GE5cEAEO0CAAtBASAHQQN2IgMgA0EBTRsiBEEDdCAJa0EIaiEJA0AgBSAGaiIDQQN2IgsgCE8NBSABIANBCGo2AgggCiALajEAACAFQT9xrYYgDIQhDCAFQQhqIQUgBEEBayIEDQALDAULIAEgAiAGajYCCCAMQn8gAq2GQn+FgyEMDAYLIAAgAjYCCCAAQYCAATsBBCAAQQE2AgAPCyAAIAM2AgwgACACNgIIIABBAToABCAAQQE2AgAPCyADIAhB5OPBABCtAgALIAsgCEHQ5MEAEK0CAAsgBSAGaiEEIAIgCWsLIAdBB3EiB0cEQEH048EAQTtBsOTBABDtAgALIAcEQCAEQQN2IgMgCE8NAiABIAQgB2oiBDYCCCADIApqMQAAQn8gB62GQn+FgyAJQT9xrYYgDIQhDAsgBCACIAZqRg0AQZTlwQBBKUHA5cEAEO0CAAsgACAMNwMIIABBADYCAA8LIAMgCEHA5MEAEK0CAAvvAwELfyMAQRBrIgYkAAJAIAEoAhAiBCABKAIMIgNJBEAMAQsgASgCCCIMIARJBEAMAQsgAUEUaiIJIAEtABgiB2pBAWstAAAhCiABKAIEIQsCQCAHQQRNBEADQCADIAtqIQUCQCAEIANrIghBB00EQCADIARGBEBBACECIAEgBDYCDAwGC0EAIQIDQCACIAVqLQAAIApGDQIgCCACQQFqIgJHDQALQQAhAiABIAQ2AgwMBQsgBkEIaiAKIAUgCBCJASAGKAIIIgJBAUcNAyAGKAIMIQILIAEgAiADakEBaiIDNgIMAkAgAyAHSSADIAxLcg0AIAsgAyAHayICaiAJIAcQ1AINACAAIAM2AgggACACNgIEQQEhAgwECyADIARNDQALQQAhAgwCCwJAA0AgAyALaiEIAkAgBCADayIJQQhPBEAgBiAKIAggCRCJASAGKAIAIgJBAUcNBCAGKAIEIQUMAQsgAyAERgRAQQAhAiABIAQ2AgwMBQtBACEFA0AgBSAIai0AACAKRg0BQQAhAiAJIAVBAWoiBUcNAAsMAwsgASADIAVqQQFqIgM2AgwgAyAMTSADIAdPcQ0BIAMgBE0NAAtBACECDAILIAdBBEGoscIAEKsEAAsgASAENgIMCyAAIAI2AgAgBkEQaiQAC/8DAQl/IwBBIGsiBCQAAkACQAJ/AkACQAJAAkACQCAAKAIAIgYEQCAAKAIIIgMgACgCBCIFIAMgBUsbIQlBfyEHIAMhAgNAIAIgCUYNBCAAIAJBAWoiCDYCCCAHQQFqIQcgAiAGaiAIIQItAAAiCEEwa0H/AXFBCkkgCEHhAGtB/wFxQQZJcg0ACyAIQd8ARw0DIAJBAWshAgJAIAMEQCADIAVPBEAgAiAFSw0LDAILIAIgBUsNCiADIAZqLAAAQb9/Sg0BDAoLIAIgBUsNCQsgBEEIaiADIAZqIgMgBxBnIAQoAggNASAAKAIQIgJFDQRB3brCAEECIAIQ1QQNAiADIAcgAhDVBA0CDAULQQAgACgCECIARQ0FGkHtucIAQQEgABDVBAwFCyAAKAIQIQIgBCAEKQMQNwMYIAJFDQIgBEEYaiACEK8ERQ0DC0EBDAMLAkAgACgCECIBRQ0AQcS5wgBBECABENUERQ0AQQEMAwsgAEEAOgAEIABBADYCAEEADAILQQAMAQtBACACLQAUQQRxDQAaIAFB4QBrIgBB/wFxIgFBGk9Bv/fzHSABdkEBcUVyDQEgAEECdEH8B3EiAEHcvcIAaigCACAAQfS8wgBqKAIAIAIQ1QQLIARBIGokAA8LQeC6wgAQrgQACyAGIAUgAyACQfS4wgAQ7AMAC7IEAgJ9BH8jAEEQayEEIAC8IgVBH3YhBgJAAn0gAAJ/AkACQAJAAkAgBUH/////B3EiA0HQ2LqVBE8EQCADQYCAgPwHSwRAIAAPCyAFQQBIIgVFIANBl+TFlQRLcQ0CIAVFDQEgBEMAAICAIACVOAIIIAQqAggaIANBtOO/lgRNDQEMBwsgA0GY5MX1A00EQCADQYCAgMgDTQ0DQQAhAyAADAYLIANBkquU/ANNDQMLIABDO6q4P5QgBkECdEH048IAaioCAJIiAUMAAADPYCEEQf////8HAn8gAYtDAAAAT10EQCABqAwBC0GAgICAeAtBgICAgHggBBsgAUP///9OXhtBACABIAFbGwwDCyAAQwAAAH+UDwsgBCAAQwAAAH+SOAIMIAQqAgwaIABDAACAP5IPCyAGRSAGawsiA7IiAUMAcjG/lJIiACABQ46+vzWUIgKTCyEBIAAgASABIAEgAZQiACAAQxVSNbuUQ4+qKj6SlJMiAJRDAAAAQCAAk5UgApOSQwAAgD+SIQEgA0UNAAJAAkACQCADQf8ATARAIANBgn9ODQMgAUMAAIAMlCEBIANBm35NDQEgA0HmAGohAwwDCyABQwAAAH+UIQEgA0H+AUsNASADQf8AayEDDAILIAFDAACADJQhAUG2fSADIANBtn1NG0HMAWohAwwBCyABQwAAAH+UIQFB/QIgAyADQf0CTxtB/gFrIQMLIAEgA0EXdEGAgID8A2q+lCEBCyABC4gEAQh/IAEoAgQiBQRAIAEoAgAhBANAAkAgA0EBaiECAn8gAiADIARqLQAAIgjAIglBAE4NABoCQAJAAkACQAJAAkACQAJAAkACQAJAIAhB38fCAGotAABBAmsOAwABAgwLQfjAwgAgAiAEaiACIAVPGy0AAEHAAXFBgAFHDQsgA0ECagwKC0H4wMIAIAIgBGogAiAFTxssAAAhByAIQeABayIGRQ0BIAZBDUYNAgwDC0H4wMIAIAIgBGogAiAFTxssAAAhBiAIQfABaw4FBAMDAwUDCyAHQWBxQaB/Rw0IDAYLIAdBn39KDQcMBQsgCUEfakH/AXFBDE8EQCAJQX5xQW5HIAdBQE5yDQcMBQsgB0FATg0GDAQLIAlBD2pB/wFxQQJLIAZBQE5yDQUMAgsgBkHwAGpB/wFxQTBPDQQMAQsgBkGPf0oNAwtB+MDCACAEIANBAmoiAmogAiAFTxstAABBwAFxQYABRw0CQfjAwgAgBCADQQNqIgJqIAIgBU8bLQAAQcABcUGAAUcNAiADQQRqDAELQfjAwgAgBCADQQJqIgJqIAIgBU8bLQAAQcABcUGAAUcNASADQQNqCyIDIgIgBUkNAQsLIAAgAzYCBCAAIAQ2AgAgASAFIAJrNgIEIAEgAiAEajYCACAAIAIgA2s2AgwgACADIARqNgIIDwsgAEEANgIAC6UDAQN/AkACQAJAAkACQAJAAkACQAJAAkAgACgCAA4KAAcHAQIDBAcHBQcLIABBBGoQbQ8LAkACQCAALQAEDgIHAQALIAAoAggiAUH7////B2oiA0ENTSADQQJHcQ0GIAFBhICAgHhKDQUgAUGDgICAeEcNBgwFCyAAKAIIIgFBhICAgHhKIAFBg4CAgHhGcg0EDAULIAAtAAQiAUEDSyABQQNHcg0EDAULAkACQEEDIAAoAgRBB2siASABQQNPG0ECaw4CAQAFCyAAQQRqEKQBDwsgAC0ACEEDRw0DIAAoAgwiACgCACEBDAULIAAtAARBA0cNAgwDCyAALQAEQQNHDQEgACgCCCIAKAIAIQEgAEEEaigCACIDKAIAIgIEQCABIAIRAwALIAMoAgQiAgRAIAEgAiADKAIIEKcECyAAQQxBBBCnBAwBCyABRQ0AIAAoAgwgAUECdEEEEKcECw8LIAAoAggiACgCACEBCyAAQQRqKAIAIgMoAgAiAgRAIAEgAhEDAAsgAygCBCICBEAgASACIAMoAggQpwQLIABBDEEEEKcEC/IDAgJ/AX4jAEFAaiICJAACfwJAAkACQAJAAkBBAyAAKAIAQYCAgIB4cyIDIANBBU8bQQFrDgQBAgMEAAsgASgCHEG0w8EAQRkgASgCICgCDBECAAwECyACIABBBGo2AgQgAiAAQQVqNgIkIAJBAjYCLCACQYzEwQA2AiggAkICNwI0IAJCgICAgOA0IgQgAkEkaq2ENwMQIAIgBCACQQRqrYQ3AwggAiACQQhqNgIwIAEoAhwgASgCICACQShqEEUMAwsgAiAAQQRqNgIkIAJBATYCLCACQfCnwQA2AiggAkIBNwI0IAIgAkEkaq1CgICAgJA4hDcDCCACIAJBCGo2AjAgASgCHCABKAIgIAJBKGoQRQwCCyACIABBDGo2AgAgAiAAQRBqNgIEIAIgADYCJCACQQM2AgwgAkHwxMEANgIIIAJCAzcCFCACIAJBJGqtQoCAgIDwOIQ3AzggAkKAgICAgDYiBCACQQRqrYQ3AzAgAiAEIAKthDcDKCACIAJBKGo2AhAgASgCHCABKAIgIAJBCGoQRQwBCyACIABBBGo2AiQgAkECNgIsIAJBxMXBADYCKCACQgE3AjQgAiACQSRqrUKAgICA8DWENwMIIAIgAkEIajYCMCABKAIcIAEoAiAgAkEoahBFCyACQUBrJAALyQMCDX8BfiADIAVBAWsiDSABKAIUIghqIgdLBEBBACABKAIIIgprIQ4gBSABKAIQIg9rIRAgASgCHCELIAEpAwAhFANAAkAgAQJ/AkAgFCACIAdqMQAAiEIBg1AEQCABIAUgCGoiCDYCFCAGDQMMAQsgCiALIAogCiALSRsgBhsiCSAFIAUgCUkbIQwgAiAIaiERIAkhBwJAAkACQANAIAcgDEYEQEEAIAsgBhshDCAKIQcDQCAHIAxNBEAgASAFIAhqIgI2AhQgBkUEQCABQQA2AhwLIAAgAjYCCCAAIAg2AgQgAEEBNgIADwsgB0EBayIHIAVPDQUgByAIaiIJIANPDQMgBCAHai0AACACIAlqLQAARg0ACyABIAggD2oiCDYCFCAQIAZFDQYaDAcLIAcgCGogA08NAiAHIBFqIRIgBCAHaiAHQQFqIQctAAAgEi0AAEYNAAsgCCAOaiAHaiEIIAZFDQMMBQsgCSADQcCvwgAQrQIACyADIAggCWoiACAAIANJGyADQdCvwgAQrQIACyAHIAVBsK/CABCtAgALQQALIgc2AhwgByELCyAIIA1qIgcgA0kNAAsLIAEgAzYCFCAAQQA2AgALsQQCBH8EfiAAQShqIQUCQAJAIAAoAkgiA0UEQCACIQMMAQsgA0EgSw0BIAMgBWogAUEgIANrIgMgAiACIANLGyIEEDsaIABBACAAKAJIIARqIgMgA0EgRiIGGzYCSCACIARrIQMgASAEaiEBIAZFDQAgACAAKQMAIAApAyhCz9bTvtLHq9lCfnxCH4lCh5Wvr5i23puef343AwAgACAAKQMIIAApAzBCz9bTvtLHq9lCfnxCH4lCh5Wvr5i23puef343AwggACAAKQMQIAApAzhCz9bTvtLHq9lCfnxCH4lCh5Wvr5i23puef343AxAgACAAKQMYIAApA0BCz9bTvtLHq9lCfnxCH4lCh5Wvr5i23puef343AxgLIANBIE8EQCAAKQMYIQcgACkDECEIIAApAwghCSAAKQMAIQoDQCABKQAYQs/W077Sx6vZQn4gB3xCH4lCh5Wvr5i23puef34hByABKQAQQs/W077Sx6vZQn4gCHxCH4lCh5Wvr5i23puef34hCCABKQAIQs/W077Sx6vZQn4gCXxCH4lCh5Wvr5i23puef34hCSABKQAAQs/W077Sx6vZQn4gCnxCH4lCh5Wvr5i23puef34hCiABQSBqIQEgA0EgayIDQR9LDQALIAAgBzcDGCAAIAg3AxAgACAJNwMIIAAgCjcDAAsgAwRAIAUgASADEDsaIAAgAzYCSAsgACAAKQNQIAKtfDcDUA8LIANBIEGU9sEAEKoEAAv5AwECfyAAIAFqIQICQAJAIAAoAgQiA0EBcQ0AIANBAnFFDQEgACgCACIDIAFqIQEgACADayIAQdDowgAoAgBGBEAgAigCBEEDcUEDRw0BQcjowgAgATYCACACIAIoAgRBfnE2AgQgACABQQFyNgIEIAIgATYCAAwCCyAAIAMQdQsCQAJAAkAgAigCBCIDQQJxRQRAIAJB1OjCACgCAEYNAiACQdDowgAoAgBGDQMgAiADQXhxIgIQdSAAIAEgAmoiAUEBcjYCBCAAIAFqIAE2AgAgAEHQ6MIAKAIARw0BQcjowgAgATYCAA8LIAIgA0F+cTYCBCAAIAFBAXI2AgQgACABaiABNgIACyABQYACTwRAIAAgARB+DwsgAUH4AXFBuObCAGohAgJ/QcDowgAoAgAiA0EBIAFBA3Z0IgFxRQRAQcDowgAgASADcjYCACACDAELIAIoAggLIQEgAiAANgIIIAEgADYCDCAAIAI2AgwgACABNgIIDwtB1OjCACAANgIAQczowgBBzOjCACgCACABaiIBNgIAIAAgAUEBcjYCBCAAQdDowgAoAgBHDQFByOjCAEEANgIAQdDowgBBADYCAA8LQdDowgAgADYCAEHI6MIAQcjowgAoAgAgAWoiATYCACAAIAFBAXI2AgQgACABaiABNgIACwueAwIHfwJ+IwBBEGsiBCQAAn8CQCAAKAIAIgNFDQAgACgCCCICIAAoAgQiBU8NACACIANqIgEtAABBzABGBEAgACACQQFqIgE2AgggAAJ+AkAgASAFSQRAIAEgA2otAABB3wBGDQELIAEgBSABIAVLGyEHAkACQANAAkAgASAFSQRAIAEgA2otAABB3wBGDQELIAEgB0YNAgJAIAEgA2otAAAiAkEwayIGQf8BcUEKSQ0AIAJB4QBrQf8BcUEaTwRAIAJBwQBrQf8BcUEaTw0EIAJBHWshBgwBCyACQdcAayEGCyAAIAFBAWoiATYCCCAEIAgQmwIgBCkDCEIAUg0CIAQpAwAiCSAGrUL/AYN8IgggCVoNAQwCCwsgACABQQFqNgIIIAhCf1INAQsgACgCECIDBEBBAUHEucIAQRAgAxDVBA0GGgsgAEEAOgAEIABBADYCAEEADAULIAhCAXwMAQsgACACQQJqNgIIQgALELwBDAILIAEtAABBywBHDQAgACACQQFqNgIIIABBABAgDAELIAAQJwsgBEEQaiQAC5QDAQR/AkAgAkEQSQRAIAAhAwwBCwJAIABBACAAa0EDcSIFaiIEIABNDQAgACEDIAUEQCAFIQYDQCADIAE6AAAgA0EBaiEDIAZBAWsiBg0ACwsgBUEBa0EHSQ0AA0AgAyABOgAAIANBB2ogAToAACADQQZqIAE6AAAgA0EFaiABOgAAIANBBGogAToAACADQQNqIAE6AAAgA0ECaiABOgAAIANBAWogAToAACADQQhqIgMgBEcNAAsLIAQgAiAFayICQXxxaiIDIARLBEAgAUH/AXFBgYKECGwhBQNAIAQgBTYCACAEQQRqIgQgA0kNAAsLIAJBA3EhAgsCQCADIAIgA2oiBU8NACACQQdxIgQEQANAIAMgAToAACADQQFqIQMgBEEBayIEDQALCyACQQFrQQdJDQADQCADIAE6AAAgA0EHaiABOgAAIANBBmogAToAACADQQVqIAE6AAAgA0EEaiABOgAAIANBA2ogAToAACADQQJqIAE6AAAgA0EBaiABOgAAIANBCGoiAyAFRw0ACwsgAAudAwIGfwF+QTggAUH/AXEiASABQThPGyECAkAgACgCECIEIAAtABQiAWoiA0EASgRAIAIgA0sNAQJAIARBAEwgASACT3INAANAIARBAWsiBUEDdiEGQcAAIAFBB2oiB0F4cWshAwJAIAVBP00EQCAAIAYgAxCIASAAKAIQIQQgAC0AFCEBDAELAkAgACgCBCIFIAYgB0H4AXFBA3ZqQQdrIgZPBEAgBSAGayIFQQdLDQFBCCAFQcTewQAQqwQACyAGIAVB1N7BABCqBAALIAAgASADaiIBOgAUIAAgBCADQf8BcWsiBDYCECAAIAAoAgAgBmopAAA3AwgLIAFB/wFxIAJPDQEgBEEASg0ACwsgACABIAJrIgE6ABRCfyACrYZCf4UgACkDCCABQT9xrYiDDwsgACAEIAJrNgIQQgAPCyACIANrIQICQCADQf8BcSABSwRAIAAgAxBbIQggACgCECEEDAELIAAgASADayIBOgAUQn8gA62GQn+FIAApAwggAUE/ca2IgyEICyAAIAQgAms2AhAgCCACQT9xrYYLnAMBBX8CQEERQQAgAEGvsARPGyIBIAFBCHIiASAAQQt0IgIgAUECdEH82sIAaigCAEELdEkbIgEgAUEEciIBIAFBAnRB/NrCAGooAgBBC3QgAksbIgEgAUECciIBIAFBAnRB/NrCAGooAgBBC3QgAksbIgEgAUEBaiIBIAFBAnRB/NrCAGooAgBBC3QgAksbIgEgAUEBaiIBIAFBAnRB/NrCAGooAgBBC3QgAksbIgNBAnRB/NrCAGooAgBBC3QiASACRiABIAJJaiADaiICQSFNBEAgAkECdEH82sIAaiIBKAIAQRV2IQNB7wUhBAJ/AkAgAkEhRg0AIAEoAgRBFXYhBCACDQBBAAwBCyABQQRrKAIAQf///wBxCyEBAkAgBCADQX9zakUNACAAIAFrIQJB7wUgAyADQe8FTRshBSAEQQFrIQFBACEAA0AgAyAFRg0DIAAgA0GE3MIAai0AAGoiACACSw0BIAEgA0EBaiIDRw0ACyABIQMLIANBAXEPCyACQSJB3NjCABCtAgALIAVB7wVB7NjCABCtAgAL1wMBAX8jAEEQayICJAACfwJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAIAAoAgBBAWsODAECAwQFBgcICQoLDAALIAIgAEEEajYCDCABQaidwABBFCACQQxqQZidwAAQfwwMCyACIABBCGo2AgwgAUHMncAAQRAgAkEMakG8ncAAEH8MCwsgAiAAQQhqNgIMIAFB3J3AAEEQQfKYwABBCSACQQxqQcibwAAQyQEMCgsgAiAAQQRqNgIMIAFB/J3AAEEVIAJBDGpB7J3AABB/DAkLIAIgAEEEajYCDCABQaSewABBFyACQQxqQZSewAAQfwwICyACIABBBGo2AgwgAUHMnsAAQRUgAkEMakG8nsAAEH8MBwsgAiAAQQRqNgIMIAFB9J7AAEEUIAJBDGpB5J7AABB/DAYLIAFBiJ/AAEEREOUDDAULIAIgAEEIajYCDCABQZmfwABBEiACQQxqQbydwAAQfwwECyACIABBBGo2AgwgAUGrn8AAQRkgAkEMakHknsAAEH8MAwsgAUHEn8AAQREQ5QMMAgsgAUHVn8AAQQ4Q5QMMAQsgAiAAQQRqNgIMIAFB45/AAEEPQfKfwABBByACQQxqQbiawAAQyQELIAJBEGokAAvXAwEBfyMAQRBrIgIkAAJ/AkACQAJAAkACQAJAAkACQAJAAkACQAJAAkAgACgCAEEBaw4MAQIDBAUGBwgJCgsMAAsgAiAAQQRqNgIMIAFBvMDAAEEUIAJBDGpBrMDAABB/DAwLIAIgAEEIajYCDCABQeDAwABBECACQQxqQdDAwAAQfwwLCyACIABBCGo2AgwgAUHwwMAAQRBBhrzAAEEJIAJBDGpB3L7AABDJAQwKCyACIABBBGo2AgwgAUGQwcAAQRUgAkEMakGAwcAAEH8MCQsgAiAAQQRqNgIMIAFBuMHAAEEXIAJBDGpBqMHAABB/DAgLIAIgAEEEajYCDCABQeDBwABBFSACQQxqQdDBwAAQfwwHCyACIABBBGo2AgwgAUGIwsAAQRQgAkEMakH4wcAAEH8MBgsgAUGcwsAAQREQ5QMMBQsgAiAAQQhqNgIMIAFBrcLAAEESIAJBDGpB0MDAABB/DAQLIAIgAEEEajYCDCABQb/CwABBGSACQQxqQfjBwAAQfwwDCyABQdjCwABBERDlAwwCCyABQenCwABBDhDlAwwBCyACIABBBGo2AgwgAUH3wsAAQQ9BhsPAAEEHIAJBDGpBzL3AABDJAQsgAkEQaiQAC9cDAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkACQCAAKAIAQQFrDgwBAgMEBQYHCAkKCwwACyACIABBBGo2AgwgAUGM48AAQRQgAkEMakH84sAAEH8MDAsgAiAAQQhqNgIMIAFBsOPAAEEQIAJBDGpBoOPAABB/DAsLIAIgAEEIajYCDCABQcDjwABBEEHU3sAAQQkgAkEMakGs4cAAEMkBDAoLIAIgAEEEajYCDCABQeDjwABBFSACQQxqQdDjwAAQfwwJCyACIABBBGo2AgwgAUGI5MAAQRcgAkEMakH448AAEH8MCAsgAiAAQQRqNgIMIAFBsOTAAEEVIAJBDGpBoOTAABB/DAcLIAIgAEEEajYCDCABQcXkwABBFCACQQxqQZjcwAAQfwwGCyABQdnkwABBERDlAwwFCyACIABBCGo2AgwgAUHq5MAAQRIgAkEMakGg48AAEH8MBAsgAiAAQQRqNgIMIAFB/OTAAEEZIAJBDGpBmNzAABB/DAMLIAFBleXAAEEREOUDDAILIAFBpuXAAEEOEOUDDAELIAIgAEEEajYCDCABQbTlwABBD0HD5cAAQQcgAkEMakGc4MAAEMkBCyACQRBqJAAL6wMBAn8jAEEQayICJAACfwJAAkACQAJAAkACQAJAAkACQAJAAkBBAyAAKAIAIgAoAgBB7f///wdqIgMgA0ELTxtBAWsOCgECAwQFBgcICQoACyABQbHUwQBBFRDlAwwKCyABQcbUwQBBERDlAwwJCyACIABBBGo2AgwgAUHo1MEAQQwgAkEMakHY1MEAEH8MCAsgAiAANgIMIAFBoNTBAEERIAJBDGpBkNTBABB/DAcLIAIgAEEEajYCDCABQYTVwQBBEyACQQxqQfTUwQAQfwwGCyABQZfVwQBBGRDlAwwFCyACIABBBGo2AgwgAUGw1cEAQRlBi87BAEEDIAJBDGpBuM3BABDJAQwECyACIABBCGo2AgwgAUHJ1cEAQRdBi87BAEEDIABBBGpB9MzBAEHg1cEAQQYgAkEMakG4zcEAEMMBDAMLIAIgAEEEajYCDCABQfjVwQBBDEGE1sEAQQwgAkEMakHo1cEAEMkBDAILIAIgAEEIajYCDCABQbDWwQBBFUHF1sEAQQggAEEEakGQ1sEAQe7OwQBBCCACQQxqQaDWwQAQwwEMAQsgAiAAQQhqNgIMIAFBzdbBAEEbQejWwQBBByAAQQRqQfTMwQBB7s7BAEEIIAJBDGpBuM3BABDDAQsgAkEQaiQAC+YDAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAQQMgACgCAEHt////B2oiAyADQQtPG0EBaw4KAQIDBAUGBwgJCgALIAFB3LHAAEEVEOUDDAoLIAFB8bHAAEEREOUDDAkLIAIgAEEEajYCDCABQcSZwABBDCACQQxqQbSZwAAQfwwICyACIAA2AgwgAUHwrMAAQREgAkEMakHgrMAAEH8MBwsgAiAAQQRqNgIMIAFBlLLAAEETIAJBDGpBhLLAABB/DAYLIAFBp7LAAEEZEOUDDAULIAIgAEEEajYCDCABQcCywABBGUGsmcAAQQMgAkEMakHMmMAAEMkBDAQLIAIgAEEIajYCDCABQdmywABBF0GsmcAAQQMgAEEEakGImMAAQfCywABBBiACQQxqQcyYwAAQwwEMAwsgAiAAQQRqNgIMIAFBiKHAAEEMQZShwABBDCACQQxqQfigwAAQyQEMAgsgAiAAQQhqNgIMIAFBiLPAAEEVQZ2zwABBCCAAQQRqQfiywABBppzAAEEIIAJBDGpB4KPAABDDAQwBCyACIABBCGo2AgwgAUGls8AAQRtBwLPAAEEHIABBBGpBiJjAAEGmnMAAQQggAkEMakHMmMAAEMMBCyACQRBqJAAL5gMBAn8jAEEQayICJAACfwJAAkACQAJAAkACQAJAAkACQAJAAkBBAyAAKAIAQe3///8HaiIDIANBC08bQQFrDgoBAgMEBQYHCAkKAAsgAUHw1MAAQRUQ5QMMCgsgAUGF1cAAQREQ5QMMCQsgAiAAQQRqNgIMIAFB2LzAAEEMIAJBDGpByLzAABB/DAgLIAIgADYCDCABQYTQwABBESACQQxqQfTPwAAQfwwHCyACIABBBGo2AgwgAUGo1cAAQRMgAkEMakGY1cAAEH8MBgsgAUG71cAAQRkQ5QMMBQsgAiAAQQRqNgIMIAFB1NXAAEEZQcC8wABBAyACQQxqQeC7wAAQyQEMBAsgAiAAQQhqNgIMIAFB7dXAAEEXQcC8wABBAyAAQQRqQZy7wABBhNbAAEEGIAJBDGpB4LvAABDDAQwDCyACIABBBGo2AgwgAUGcxMAAQQxBqMTAAEEMIAJBDGpBjMTAABDJAQwCCyACIABBCGo2AgwgAUGc1sAAQRVBsdbAAEEIIABBBGpBjNbAAEG6v8AAQQggAkEMakH0xsAAEMMBDAELIAIgAEEIajYCDCABQbnWwABBG0HU1sAAQQcgAEEEakGcu8AAQbq/wABBCCACQQxqQeC7wAAQwwELIAJBEGokAAvmAwECfyMAQRBrIgIkAAJ/AkACQAJAAkACQAJAAkACQAJAAkACQEEDIAAoAgBB7f///wdqIgMgA0ELTxtBAWsOCgECAwQFBgcICQoACyABQdj3wABBFRDlAwwKCyABQe33wABBERDlAwwJCyACIABBBGo2AgwgAUGo38AAQQwgAkEMakGY38AAEH8MCAsgAiAANgIMIAFB7PLAAEERIAJBDGpB3PLAABB/DAcLIAIgAEEEajYCDCABQZD4wABBEyACQQxqQYD4wAAQfwwGCyABQaP4wABBGRDlAwwFCyACIABBBGo2AgwgAUG8+MAAQRlBkN/AAEEDIAJBDGpB+NzAABDJAQwECyACIABBCGo2AgwgAUHV+MAAQRdBkN/AAEEDIABBBGpBjN7AAEHs+MAAQQYgAkEMakH43MAAEMMBDAMLIAIgAEEEajYCDCABQcXmwABBDEHR5sAAQQwgAkEMakHo2sAAEMkBDAILIAIgAEEIajYCDCABQYT5wABBFUGZ+cAAQQggAEEEakH0+MAAQYriwABBCCACQQxqQaDpwAAQwwEMAQsgAiAAQQhqNgIMIAFBofnAAEEbQbz5wABBByAAQQRqQYzewABBiuLAAEEIIAJBDGpB+NzAABDDAQsgAkEQaiQAC+YDAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAQQMgACgCAEHt////B2oiAyADQQtPG0EBaw4KAQIDBAUGBwgJCgALIAFB7J3BAEEVEOUDDAoLIAFBgZ7BAEEREOUDDAkLIAIgAEEEajYCDCABQeyHwQBBDCACQQxqQdyHwQAQfwwICyACIAA2AgwgAUGAmcEAQREgAkEMakHwmMEAEH8MBwsgAiAAQQRqNgIMIAFBpJ7BAEETIAJBDGpBlJ7BABB/DAYLIAFBt57BAEEZEOUDDAULIAIgAEEEajYCDCABQdCewQBBGUHUh8EAQQMgAkEMakH0hsEAEMkBDAQLIAIgAEEIajYCDCABQemewQBBF0HUh8EAQQMgAEEEakHohcEAQYCfwQBBBiACQQxqQfSGwQAQwwEMAwsgAiAAQQRqNgIMIAFBzIzBAEEMQdiMwQBBDCACQQxqQbyMwQAQyQEMAgsgAiAAQQhqNgIMIAFBmJ/BAEEVQa2fwQBBCCAAQQRqQYifwQBBzorBAEEIIAJBDGpBpI/BABDDAQwBCyACIABBCGo2AgwgAUG1n8EAQRtB0J/BAEEHIABBBGpB6IXBAEHOisEAQQggAkEMakH0hsEAEMMBCyACQRBqJAAL5wIBBX8CQEHN/3tBECAAIABBEE0bIgBrIAFNDQAgAEEQIAFBC2pBeHEgAUELSRsiBGpBDGoQHiICRQ0AIAJBCGshAQJAIABBAWsiAyACcUUEQCABIQAMAQsgAkEEayIFKAIAIgZBeHEgAiADakEAIABrcUEIayICIABBACACIAFrQRBNG2oiACABayICayEDIAZBA3EEQCAAIAMgACgCBEEBcXJBAnI2AgQgACADaiIDIAMoAgRBAXI2AgQgBSACIAUoAgBBAXFyQQJyNgIAIAEgAmoiAyADKAIEQQFyNgIEIAEgAhBYDAELIAEoAgAhASAAIAM2AgQgACABIAJqNgIACwJAIAAoAgQiAUEDcUUNACABQXhxIgIgBEEQak0NACAAIAQgAUEBcXJBAnI2AgQgACAEaiIBIAIgBGsiBEEDcjYCBCAAIAJqIgIgAigCBEEBcjYCBCABIAQQWAsgAEEIaiEDCyADC/ICAgZ/An4jAEEQayIEJAAgAAJ/AkACQCABKAIIIgMgASgCBCIFSQRAIAEoAgAiBiADai0AAEHzAEYNAQsgAEIANwMIDAELIAEgA0EBaiICNgIIAkACQAJAIAIgBU8NACACIAZqLQAAQd8ARw0AIAEgA0ECajYCCAwBCwJAAkADQAJAIAIgBUkEQCACIAZqLQAAQd8ARg0BCyACIAVGDQICQCACIAZqLQAAIgNBMGsiB0H/AXFBCkkNACADQeEAa0H/AXFBGk8EQCADQcEAa0H/AXFBGk8NBCADQR1rIQcMAQsgA0HXAGshBwsgASACQQFqIgI2AgggBCAIEJsCIAQpAwhCAFINAiAEKQMAIgkgB61C/wGDfCIIIAlaDQEMAgsLIAEgAkEBajYCCCAIQn9SDQELIABBADoAAUEBDAQLIAhCAXwiCEJ/UQ0BCyAAIAhCAXw3AwgMAQsgAEEAOgABQQEMAQtBAAs6AAAgBEEQaiQAC9kCAgR/AX4jAEHQAGsiBCQAIAQgASACQbu2wgBBARAhA0AgBEHEAGogBBAsIAQoAkQiA0UNAAsCQCAAIAICfyADQQJHBEAgBCgCSAwBCyACCyIDa0EQTQR+IAIgA0cEQCABIAJqIQYgASADaiEDA0ACfyADLAAAIgFBAE4EQCABQf8BcSECIANBAWoMAQsgAy0AAUE/cSEFIAFBH3EhAiABQV9NBEAgAkEGdCAFciECIANBAmoMAQsgAy0AAkE/cSAFQQZ0ciEFIAFBcEkEQCAFIAJBDHRyIQIgA0EDagwBCyACQRJ0QYCA8ABxIAMtAANBP3EgBUEGdHJyIQIgA0EEagshAyACQcEAa0FfcUEKaiACQTBrIAJBOUsbIgFBEE8NAyABrSAHQgSGhCEHIAMgBkcNAAsLIAAgBzcDCEIBBSAHCzcDACAEQdAAaiQADwtBvLbCABCuBAALgwMBB38jAEEQayIEJAACQAJAAkACQAJAIAEoAgQiAkUNACABKAIAIQcgAkEDcSEFAkAgAkEESQRAQQAhAgwBCyAHQRxqIQMgAkF8cSEIQQAhAgNAIAMoAgAgA0EIaygCACADQRBrKAIAIANBGGsoAgAgAmpqamohAiADQSBqIQMgCCAGQQRqIgZHDQALCyAFBEAgBkEDdCAHakEEaiEDA0AgAygCACACaiECIANBCGohAyAFQQFrIgUNAAsLIAEoAgwEQCACQQBIDQEgBygCBEUgAkEQSXENASACQQF0IQILQQAhBSACQQBIDQMgAg0BC0EBIQNBACECDAELQYXlwgAtAAAaQQEhBSACQQEQ9QMiA0UNAQsgBEEANgIIIAQgAzYCBCAEIAI2AgAgBEHMvsIAIAEQRUUNAUHov8IAQdYAIARBD2pB2L/CAEHYwMIAEKACAAsgBSACQci/wgAQ1wMACyAAIAQpAgA3AgAgAEEIaiAEQQhqKAIANgIAIARBEGokAAuhAwEIfyMAQSBrIgIkABCYAUGQ5MIAKAIAIQVBjOTCACgCACEHQYzkwgBCADcCAEGE5MIAKAIAIQZBiOTCACgCACEDQYTkwgBCBDcCAEGA5MIAKAIAIQBBgOTCAEEANgIAAkAgAyAHRgRAAkAgACADRgRA0G9BgAEgACAAQYABTRsiBPwPASIBQX9GDQMCQCAFRQRAIAEhBQwBCyAAIAVqIAFHDQQLIAAgBGoiBEH/////AUsNAyACIAAEfyACIAY2AhQgAiAAQQJ0NgIcQQQFQQALNgIYIAJBCGpBBCAEQQJ0IAJBFGoQ2wEgAigCCEEBRg0DIAIoAgwhBiAAIQEgBCEADAELIAAgAyIBTQ0CCyAGIAFBAnRqIANBAWo2AgAgAUEBaiEDCyADIAdNDQAgBiAHQQJ0aigCACEBQZDkwgAgBTYCAEGM5MIAIAE2AgBBiOTCACADNgIAQYTkwgAoAgAhAUGE5MIAIAY2AgBBgOTCACgCACEEQYDkwgAgADYCACAEBEAgASAEQQJ0QQQQpwQLIAJBIGokACAFIAdqDwsAC78DAQF/IwBBQGoiAiQAAkACQAJAAkACQAJAIAAtAABBAWsOAwECAwALIAIgACgCBDYCBEGF5cIALQAAGkEUQQEQ9QMiAEUNBCAAQRBqQdanwgAoAAA2AAAgAEEIakHOp8IAKQAANwAAIABBxqfCACkAADcAACACQRQ2AhAgAiAANgIMIAJBFDYCCCACQQM2AiwgAkH0nsIANgIoIAJCAjcCNCACIAJBBGqtQoCAgICwPoQ3AyAgAiACQQhqrUKAgICAwD6ENwMYIAIgAkEYajYCMCABKAIcIAEoAiAgAkEoahBFIQAgAigCCCIBRQ0DIAIoAgwgAUEBEKcEDAMLIAAtAAEhACACQQE2AiwgAkH8l8IANgIoIAJCATcCNCACIAJBGGqtQoCAgICQPoQ3AwggAiAAQQJ0IgBBzKjCAGooAgA2AhwgAiAAQfSpwgBqKAIANgIYIAIgAkEIajYCMCABKAIcIAEoAiAgAkEoahBFIQAMAgsgACgCBCIAKAIAIAAoAgQgARDVBCEADAELIAAoAgQiACgCACABIAAoAgQoAhARAAAhAAsgAkFAayQAIAAPC0EBQRRB8JLCABDXAwALsQIBAX8jAEHwAGsiBiQAIAYgATYCDCAGIAA2AgggBiADNgIUIAYgAjYCECAGQbzCwgA2AhggBkECNgIcAkAgBCgCAEUEQCAGQQM2AlwgBkH4wsIANgJYIAZCAzcCZCAGIAZBEGqtQoCAgICAxACENwNIIAYgBkEIaq1CgICAgIDEAIQ3A0AMAQsgBkEwaiAEQRBqKQIANwMAIAZBKGogBEEIaikCADcDACAGIAQpAgA3AyAgBkEENgJcIAZBrMPCADYCWCAGQgQ3AmQgBiAGQRBqrUKAgICAgMQAhDcDUCAGIAZBCGqtQoCAgICAxACENwNIIAYgBkEgaq1CgICAgKDEAIQ3A0ALIAYgBkEYaq1CgICAgJDEAIQ3AzggBiAGQThqNgJgIAZB2ABqIAUQpAMAC+YCAQh/IwBBEGsiBiQAQQohAyAAIgRB6AdPBEAgBCEFA0AgBkEGaiADaiIHQQNrIAUgBUGQzgBuIgRBkM4AbGsiCEH//wNxQeQAbiIJQQF0IgpBksTCAGotAAA6AAAgB0EEayAKQZHEwgBqLQAAOgAAIAdBAWsgCCAJQeQAbGtB//8DcUEBdCIIQZLEwgBqLQAAOgAAIAdBAmsgCEGRxMIAai0AADoAACADQQRrIQMgBUH/rOIESyAEIQUNAAsLAkAgBEEJTQRAIAQhBQwBCyADIAZqQQVqIAQgBEH//wNxQeQAbiIFQeQAbGtB//8DcUEBdCIEQZLEwgBqLQAAOgAAIANBAmsiAyAGQQZqaiAEQZHEwgBqLQAAOgAAC0EAIAAgBRtFBEAgA0EBayIDIAZBBmpqIAVBAXRBHnFBksTCAGotAAA6AAALIAIgAUEBQQAgBkEGaiADakEKIANrEDUgBkEQaiQAC5IDAQN/AkACQAJAAkACQAJAAkAgAC0AAA4HAAYBBgIDBAYLIAAtAARBA0cNBSAAKAIIIgAoAgAhAiAAQQRqKAIAIgMoAgAiAQRAIAIgAREDAAsgAygCBCIBRQ0EIAIgASADKAIIEKcEDAQLIAAtAARBA0cNBCAAKAIIIgAoAgAhAiAAQQRqKAIAIgMoAgAiAQRAIAIgAREDAAsgAygCBCIBRQ0DIAIgASADKAIIEKcEDAMLIAAtAARBA0cNAyAAKAIIIgAoAgAhAiAAQQRqKAIAIgMoAgAiAQRAIAIgAREDAAsgAygCBCIBRQ0CIAIgASADKAIIEKcEDAILIAAtAARBA0cNAiAAKAIIIgAoAgAhAiAAQQRqKAIAIgMoAgAiAQRAIAIgAREDAAsgAygCBCIBRQ0BIAIgASADKAIIEKcEDAELIAAtAARBA0cNASAAKAIIIgAoAgAhAiAAQQRqKAIAIgMoAgAiAQRAIAIgAREDAAsgAygCBCIBRQ0AIAIgASADKAIIEKcECyAAQQxBBBCnBAsLlAMBAX8jAEHwAGsiAiQAAn8CQAJAAkAgAC0AAEEBaw4CAQIACyACIABBAWo2AgQgAkKotMGA8DY3AyggAiACQQRqrUKAgICAgDeENwMgIAJBAjYCHCACQQI2AgwgAkGYtMEANgIIIAJBAjYCFCACQQM6AGwgAkEcNgJoIAJCoICAgBA3AmAgAkKAgICAwAA3AlggAkECNgJQIAJBAzoATCACQSw2AkggAkIgNwJAIAJCgICAgMAANwI4IAJBAjYCMCACIAJBMGo2AhggAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMAgsgAiAAQQRqNgIgIAJBATYCNCACQfCnwQA2AjAgAkIBNwI8IAIgAkEgaq1CgICAgJA3hDcDCCACIAJBCGo2AjggASgCHCABKAIgIAJBMGoQRQwBCyACIABBBGo2AiAgAkEBNgI0IAJB8KfBADYCMCACQgE3AjwgAiACQSBqrUKAgICAoDeENwMIIAIgAkEIajYCOCABKAIcIAEoAiAgAkEwahBFCyACQfAAaiQAC4gDAgR/AX4jAEFAaiIGJABBASEHAkAgAC0ABA0AIAAtAAUhCCAAKAIAIgUtABRBBHFFBEAgBSgCHEH/w8IAQfzDwgAgCEEBcSIIG0ECQQMgCBsgBSgCICgCDBECAA0BIAUoAhwgASACIAUoAiAoAgwRAgANASAFKAIcQczDwgBBAiAFKAIgKAIMEQIADQEgAyAFIAQoAgwRAAAhBwwBCyAIQQFxRQRAIAUoAhxBgcTCAEEDIAUoAiAoAgwRAgANAQsgBkEBOgAXIAZBIGogBUEIaikCADcDACAGQShqIAVBEGopAgA3AwAgBkEwaiAFQRhqKAIANgIAIAYgBSkCHDcCCCAFKQIAIQkgBkHgw8IANgI4IAYgCTcDGCAGIAZBF2o2AhAgBiAGQQhqIgU2AjQgBSABIAIQSA0AIAVBzMPCAEECEEgNACADIAZBGGogBCgCDBEAAA0AIAYoAjRBhMTCAEECIAYoAjgoAgwRAgAhBwsgAEEBOgAFIAAgBzoABCAGQUBrJAAgAAvJAgIHfwJ+IwBBEGsiBCQAIAEoAgAhBgJAAkACQCABKAIIIgIgASgCBCIHSQRAIAIgBmotAABB3wBGDQELIAIgByACIAdLGyEIAkADQCACIAdJBEAgAiAGai0AAEHfAEYNAgsgAiAIRg0DAkAgAiAGai0AACIFQTBrIgNB/wFxQQpJDQAgBUHhAGtB/wFxQRpPBEAgBUHBAGtB/wFxQRpPDQUgBUEdayEDDAELIAVB1wBrIQMLIAEgAkEBaiICNgIIIAQgCRCbAiAEKQMIQgBSDQMgBCkDACIKIAOtQv8Bg3wiCSAKWg0ACwwCC0EBIQMgASACQQFqNgIIIAlCf1IEQCAAIAlCAXw3AwhBACEDDAMLIABBADoAAQwCCyAAQgA3AwggASACQQFqNgIIDAELIABBADoAAUEBIQMLIAAgAzoAACAEQRBqJAAL0gIBB39BASEJAkACQCACRQ0AIAEgAkEBdGohCiAAQYD+A3FBCHYhCyAAQf8BcSENA0AgAUECaiEMIAcgAS0AASICaiEIIAsgAS0AACIBRwRAIAEgC0sNAiAIIQcgDCIBIApGDQIMAQsCQAJAIAcgCE0EQCAEIAhJDQEgAyAHaiEBA0AgAkUNAyACQQFrIQIgAS0AACABQQFqIQEgDUcNAAtBACEJDAULIAcgCEH4zMIAEKwEAAsgCCAEQfjMwgAQqwQACyAIIQcgDCIBIApHDQALCyAGRQ0AIAUgBmohAyAAQf//A3EhAQNAIAVBAWohAAJAIAUsAAAiAkEATgRAIAAhBQwBCyAAIANHBEAgBS0AASACQf8AcUEIdHIhAiAFQQJqIQUMAQtB6MzCABCuBAALIAEgAmsiAUEASA0BIAlBAXMhCSADIAVHDQALCyAJQQFxC/kCAQV/IwBBMGsiAyQAIANBIGpCADcDACADQRhqQgA3AwAgA0EQakIANwMAIANCADcDCCADQShqIAEgA0EIakEgECgCQAJAAkAgAy0AKCIEQQRGDQADQAJAAkACQAJAAkAgBEEBaw4DAgABBAsgAygCLC0ACEEjRg0CDAMLIAMoAiwiBC0ACEEjRw0CIAQoAgAhBiAEQQRqKAIAIgcoAgAiBQRAIAYgBREDAAsgBygCBCIFBEAgBiAFIAcoAggQpwQLIARBDEEEEKcEDAELIAMtAClBI0cNAQsgA0EoaiABIANBCGpBIBAoIAMtACgiBEEERw0BDAILCyAAIAMpAyg3AgAMAQsgAygCLCIEQSFPDQEgBCACKAIAIAIoAggiAWtLBEAgAiABIARBAUEBEJABIAIoAgghAQsgAigCBCABaiADQQhqIAQQOxogACAENgIEIAIgASAEajYCCCAAQQQ6AAALIANBMGokAA8LIARBIEGIo8EAEKsEAAvYAgEEfyMAQRBrIgIkAAJAIAFBgAFPBEAgAkEMaiIEQQJyIQMgAkEANgIMAkAgAUGAEE8EQCAEQQNyIQUgAUGAgARPBEAgAkEQaiEDIAIgAUESdkHwAXI6AAwgAiABQQZ2QT9xQYABcjoADiACIAFBDHZBP3FBgAFyOgANIAUhBAwCCyACIAFBDHZB4AFyOgAMIAIgAUEGdkE/cUGAAXI6AA0gAyEEIAUhAwwBCyACQQxqQQFyIQQgAiABQQZ2QcABcjoADAsgBCABQT9xQYABcjoAACADIAJBDGprIgMgACgCACAAKAIIIgFrSwRAIAAgASADEJMBIAAoAgghAQsgACgCBCABaiACQQxqIAMQOxogACABIANqNgIIDAELIAAoAggiAyAAKAIARgRAIABBwIfCABDCAQsgACgCBCADaiABOgAAIAAgA0EBajYCCAsgAkEQaiQAQQAL2AIBBH8jAEEQayICJAACQCABQYABTwRAIAJBDGoiBEECciEDIAJBADYCDAJAIAFBgBBPBEAgBEEDciEFIAFBgIAETwRAIAJBEGohAyACIAFBEnZB8AFyOgAMIAIgAUEGdkE/cUGAAXI6AA4gAiABQQx2QT9xQYABcjoADSAFIQQMAgsgAiABQQx2QeABcjoADCACIAFBBnZBP3FBgAFyOgANIAMhBCAFIQMMAQsgAkEMakEBciEEIAIgAUEGdkHAAXI6AAwLIAQgAUE/cUGAAXI6AAAgAyACQQxqayIDIAAoAgAgACgCCCIBa0sEQCAAIAEgAxCTASAAKAIIIQELIAAoAgQgAWogAkEMaiADEDsaIAAgASADajYCCAwBCyAAKAIIIgMgACgCAEYEQCAAQcyKwgAQwgELIAAoAgQgA2ogAToAACAAIANBAWo2AggLIAJBEGokAEEAC/ECAQR/IAAoAgwhAgJAAkAgAUGAAk8EQCAAKAIYIQMCQAJAIAAgAkYEQCAAQRRBECAAKAIUIgIbaigCACIBDQFBACECDAILIAAoAggiASACNgIMIAIgATYCCAwBCyAAQRRqIABBEGogAhshBANAIAQhBSABIgJBFGogAkEQaiACKAIUIgEbIQQgAkEUQRAgARtqKAIAIgENAAsgBUEANgIACyADRQ0CIAAgACgCHEECdEGo5cIAaiIBKAIARwRAIANBEEEUIAMoAhAgAEYbaiACNgIAIAJFDQMMAgsgASACNgIAIAINAUHE6MIAQcTowgAoAgBBfiAAKAIcd3E2AgAMAgsgACgCCCIAIAJHBEAgACACNgIMIAIgADYCCA8LQcDowgBBwOjCACgCAEF+IAFBA3Z3cTYCAA8LIAIgAzYCGCAAKAIQIgEEQCACIAE2AhAgASACNgIYCyAAKAIUIgBFDQAgAiAANgIUIAAgAjYCGAsLxgIBA38jAEEQayICJAACQCABQYABTwRAIAJBADYCDAJ/IAFBgBBPBEAgAUGAgARPBEAgAkEMakEDciEEIAIgAUESdkHwAXI6AAwgAiABQQZ2QT9xQYABcjoADiACIAFBDHZBP3FBgAFyOgANQQQMAgsgAkEMakECciEEIAIgAUEMdkHgAXI6AAwgAiABQQZ2QT9xQYABcjoADUEDDAELIAJBDGpBAXIhBCACIAFBBnZBwAFyOgAMQQILIQMgBCABQT9xQYABcjoAACADIAAoAgAgACgCCCIBa0sEQCAAIAEgAxC5ASAAKAIIIQELIAAoAgQgAWogAkEMaiADEDsaIAAgASADajYCCAwBCyAAKAIIIgMgACgCAEYEQCAAQejAwgAQwgELIAAgA0EBajYCCCAAKAIEIANqIAE6AAALIAJBEGokAEEAC5QDAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkBBAiAAKAIAIgAoAgBB+////wdqIgMgA0EMTxtBAWsOCwECAwQFBgcICQoLAAsgAiAAQQRqNgIMIAFB6NTBAEEMIAJBDGpB2NTBABB/DAsLIAIgAEEEajYCDCABQdDXwQBBDyACQQxqQcDXwQAQfwwKCyACIAA2AgwgAUGA1MEAQQ0gAkEMakHw08EAEH8MCQsgAiAAQQRqNgIMIAFB+NXBAEEMQYTWwQBBDCACQQxqQejVwQAQyQEMCAsgAiAAQQRqNgIMIAFB39fBAEERQfDXwQBBCyACQQxqQYTNwQAQyQEMBwsgAUG018EAQQoQ5QMMBgsgAUH718EAQR0Q5QMMBQsgAiAAQQRqNgIMIAFBmNjBAEEJQaHYwQBBDiACQQxqQaDWwQAQyQEMBAsgAUGv2MEAQRYQ5QMMAwsgAUHF2MEAQRgQ5QMMAgsgAUHd2MEAQRgQ5QMMAQsgAUH12MEAQRgQ5QMLIAJBEGokAAvEAgECfyMAQRBrIgIkAAJAIAFBgAFPBEAgAkEANgIMAn8gAUGAEE8EQCABQYCABE8EQCACIAFBP3FBgAFyOgAPIAIgAUESdkHwAXI6AAwgAiABQQZ2QT9xQYABcjoADiACIAFBDHZBP3FBgAFyOgANQQQMAgsgAiABQT9xQYABcjoADiACIAFBDHZB4AFyOgAMIAIgAUEGdkE/cUGAAXI6AA1BAwwBCyACIAFBP3FBgAFyOgANIAIgAUEGdkHAAXI6AAxBAgshASABIAAoAgAgACgCCCIDa0sEQCAAIAMgARCgASAAKAIIIQMLIAAoAgQgA2ogAkEMaiABEDsaIAAgASADajYCCAwBCyAAKAIIIgMgACgCAEYEQCAAQcyTwgAQwgELIAAoAgQgA2ogAToAACAAIANBAWo2AggLIAJBEGokAEEAC48DAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkBBAiAAKAIAQfv///8HaiIDIANBDE8bQQFrDgsBAgMEBQYHCAkKCwALIAIgAEEEajYCDCABQcSZwABBDCACQQxqQbSZwAAQfwwLCyACIABBBGo2AgwgAUGMoMAAQQ8gAkEMakH8n8AAEH8MCgsgAiAANgIMIAFBrKDAAEENIAJBDGpBnKDAABB/DAkLIAIgAEEEajYCDCABQYihwABBDEGUocAAQQwgAkEMakH4oMAAEMkBDAgLIAIgAEEEajYCDCABQZyjwABBEUGto8AAQQsgAkEMakGYmMAAEMkBDAcLIAFBuKPAAEEKEOUDDAYLIAFBwqPAAEEdEOUDDAULIAIgAEEEajYCDCABQfCjwABBCUH5o8AAQQ4gAkEMakHgo8AAEMkBDAQLIAFBh6TAAEEWEOUDDAMLIAFBnaTAAEEYEOUDDAILIAFBtaTAAEEYEOUDDAELIAFBzaTAAEEYEOUDCyACQRBqJAALjwMBAn8jAEEQayICJAACfwJAAkACQAJAAkACQAJAAkACQAJAAkACQEECIAAoAgBB+////wdqIgMgA0EMTxtBAWsOCwECAwQFBgcICQoLAAsgAiAAQQRqNgIMIAFB2LzAAEEMIAJBDGpByLzAABB/DAsLIAIgAEEEajYCDCABQaDDwABBDyACQQxqQZDDwAAQfwwKCyACIAA2AgwgAUHAw8AAQQ0gAkEMakGww8AAEH8MCQsgAiAAQQRqNgIMIAFBnMTAAEEMQajEwABBDCACQQxqQYzEwAAQyQEMCAsgAiAAQQRqNgIMIAFBsMbAAEERQcHGwABBCyACQQxqQay7wAAQyQEMBwsgAUHMxsAAQQoQ5QMMBgsgAUHWxsAAQR0Q5QMMBQsgAiAAQQRqNgIMIAFBhMfAAEEJQY3HwABBDiACQQxqQfTGwAAQyQEMBAsgAUGbx8AAQRYQ5QMMAwsgAUGxx8AAQRgQ5QMMAgsgAUHJx8AAQRgQ5QMMAQsgAUHhx8AAQRgQ5QMLIAJBEGokAAuPAwECfyMAQRBrIgIkAAJ/AkACQAJAAkACQAJAAkACQAJAAkACQAJAQQIgACgCAEH7////B2oiAyADQQxPG0EBaw4LAQIDBAUGBwgJCgsACyACIABBBGo2AgwgAUGo38AAQQwgAkEMakGY38AAEH8MCwsgAiAAQQRqNgIMIAFB3OXAAEEPIAJBDGpBzOXAABB/DAoLIAIgADYCDCABQfzlwABBDSACQQxqQezlwAAQfwwJCyACIABBBGo2AgwgAUHF5sAAQQxB0ebAAEEMIAJBDGpB6NrAABDJAQwICyACIABBBGo2AgwgAUHc6MAAQRFB7ejAAEELIAJBDGpB+NrAABDJAQwHCyABQfjowABBChDlAwwGCyABQYLpwABBHRDlAwwFCyACIABBBGo2AgwgAUGw6cAAQQlBuenAAEEOIAJBDGpBoOnAABDJAQwECyABQcfpwABBFhDlAwwDCyABQd3pwABBGBDlAwwCCyABQfXpwABBGBDlAwwBCyABQY3qwABBGBDlAwsgAkEQaiQAC48DAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAAkACQAJAAkBBAiAAKAIAQfv///8HaiIDIANBDE8bQQFrDgsBAgMEBQYHCAkKCwALIAIgAEEEajYCDCABQeyHwQBBDCACQQxqQdyHwQAQfwwLCyACIABBBGo2AgwgAUHQi8EAQQ8gAkEMakHAi8EAEH8MCgsgAiAANgIMIAFB8IvBAEENIAJBDGpB4IvBABB/DAkLIAIgAEEEajYCDCABQcyMwQBBDEHYjMEAQQwgAkEMakG8jMEAEMkBDAgLIAIgAEEEajYCDCABQeCOwQBBEUHxjsEAQQsgAkEMakHAhsEAEMkBDAcLIAFB/I7BAEEKEOUDDAYLIAFBho/BAEEdEOUDDAULIAIgAEEEajYCDCABQbSPwQBBCUG9j8EAQQ4gAkEMakGkj8EAEMkBDAQLIAFBy4/BAEEWEOUDDAMLIAFB4Y/BAEEYEOUDDAILIAFB+Y/BAEEYEOUDDAELIAFBkZDBAEEYEOUDCyACQRBqJAALzQIBAn8jAEEwayICJAACfwJAAkACQEEBIAAtAABBAmsiAyADQf8BcUEDTxtB/wFxQQFrDgIBAgALIAIgAEEBajYCBCACQQI2AgwgAkGAwsEANgIIIAJCATcCFCACIAJBBGqtQoCAgIDgNIQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMAgsgAiAANgIEIAJBATYCDCACQfCnwQA2AgggAkIBNwIUIAIgAkEEaq1CgICAgJA4hDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwBCyACIABBBGo2AgAgAiAAQQhqNgIEIAJBAjYCDCACQdTCwQA2AgggAkICNwIUIAIgAkEEaq1CgICAgOA0hDcDKCACIAKtQoCAgIDwNYQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEULIAJBMGokAAvEAgEEfyAAQgA3AhAgAAJ/QQAgAUGAAkkNABpBHyABQf///wdLDQAaIAFBBiABQQh2ZyIDa3ZBAXEgA0EBdGtBPmoLIgI2AhwgAkECdEGo5cIAaiEEQQEgAnQiA0HE6MIAKAIAcUUEQCAEIAA2AgAgACAENgIYIAAgADYCDCAAIAA2AghBxOjCAEHE6MIAKAIAIANyNgIADwsCQAJAIAEgBCgCACIDKAIEQXhxRgRAIAMhAgwBCyABQRkgAkEBdmtBACACQR9HG3QhBQNAIAMgBUEddkEEcWpBEGoiBCgCACICRQ0CIAVBAXQhBSACIQMgAigCBEF4cSABRw0ACwsgAigCCCIBIAA2AgwgAiAANgIIIABBADYCGCAAIAI2AgwgACABNgIIDwsgBCAANgIAIAAgAzYCGCAAIAA2AgwgACAANgIIC9MCAQR/IwBBQGoiBSQAQQEhBgJAIAAoAhwiByABIAIgACgCICIIKAIMIgERAgANAAJAIAAtABRBBHFFBEAgB0GJxMIAQQEgARECAA0CIAMgACAEKAIMEQAARQ0BDAILIAdBisTCAEECIAERAgANASAFQQE6ABcgBUEgaiAAQQhqKQIANwMAIAVBKGogAEEQaikCADcDACAFQTBqIABBGGooAgA2AgAgBSAINgIMIAUgBzYCCCAFQeDDwgA2AjggBSAAKQIANwMYIAUgBUEXajYCECAFIAVBCGo2AjQgAyAFQRhqIAQoAgwRAAANASAFKAI0QYTEwgBBAiAFKAI4KAIMEQIADQELAkAgAg0AIAAtABRBBHENACAAKAIcQYzEwgBBASAAKAIgKAIMEQIADQELIAAoAhxB+cDCAEEBIAAoAiAoAgwRAgAhBgsgBUFAayQAIAYLtAIBB38jAEEwayICJAAgAkEBQX8gASAAKAIEIgFqIgNBAWtndkEBaiADQQFNGyIDQQFBfyABQQFrZ3ZBAWogAUEBTRsiBSADIAVLG0EBaiIDNgIMAkAgA0EATgRAQYXlwgAtAAAaIANBARD1AyIFRQ0BIAEEQCAFIAAoAgAiByAAKAIIIgRqIAEgACgCDCIGIAQgBksiCBsgBGsiBBA7IARqIAcgBkEAIAgbIgYQOxogByABQQEQpwQgAEEANgIIIAAgBCAGajYCDAsgACADNgIEIAAgBTYCACACQTBqJAAPCyACQQE2AhQgAkGY6cEANgIQIAJCATcCHCACIAJBDGqtQoCAgIAQhDcDKCACIAJBKGo2AhggAkEQakGg6cEAEKQDAAtBwOfBAEEuQdjowQAQwwIAC+UCAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAIAAoAgAiAC0AAEEBaw4HAQIDBAUGBwALIAIgAEEEajYCDCABQbjPwQBBFCACQQxqQajPwQAQfwwHCyACIABBBGo2AgwgAUHcz8EAQQ4gAkEMakHMz8EAEH8MBgsgAiAAQQRqNgIMIAFB6s/BAEEYIAJBDGpBqM/BABB/DAULIAIgAEEBajYCDCABQYLQwQBBFiACQQxqQbzOwQAQfwwECyACIABBBGo2AgwgAUGY0MEAQRkgAkEMakGoz8EAEH8MAwsgAiAAQQRqNgIMIAFBsdDBAEEVIAJBDGpBqM/BABB/DAILIAIgAEEEajYCDCABQcbQwQBBGSACQQxqQajPwQAQfwwBCyACIABBCGo2AgwgAUHw0MEAQQlB+dDBAEEMIABBBGpB4NDBAEGF0cEAQQYgAkEMakHMz8EAEMMBCyACQRBqJAALugICBH8BfiMAQUBqIgMkAEEBIQUCQCAALQAEDQAgAC0ABSEGAkAgACgCACIELQAUQQRxRQRAIAZBAXFFDQEgBCgCHEH/w8IAQQIgBCgCICgCDBECAEUNAQwCCyAGQQFxRQRAIAQoAhxBjcTCAEEBIAQoAiAoAgwRAgANAgsgA0EBOgAXIANBIGogBEEIaikCADcDACADQShqIARBEGopAgA3AwAgA0EwaiAEQRhqKAIANgIAIAMgBCkCHDcCCCAEKQIAIQcgA0Hgw8IANgI4IAMgBzcDGCADIANBF2o2AhAgAyADQQhqNgI0IAEgA0EYaiACKAIMEQAADQEgAygCNEGExMIAQQIgAygCOCgCDBECACEFDAELIAEgBCACKAIMEQAAIQULIABBAToABSAAIAU6AAQgA0FAayQAC+ACAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAIAAtAABBAWsOBwECAwQFBgcACyACIABBBGo2AgwgAUGQq8AAQRQgAkEMakHknsAAEH8MBwsgAiAAQQRqNgIMIAFBpKvAAEEOIAJBDGpBuJrAABB/DAYLIAIgAEEEajYCDCABQbKrwABBGCACQQxqQeSewAAQfwwFCyACIABBAWo2AgwgAUHKq8AAQRYgAkEMakH0m8AAEH8MBAsgAiAAQQRqNgIMIAFB4KvAAEEZIAJBDGpB5J7AABB/DAMLIAIgAEEEajYCDCABQfmrwABBFSACQQxqQeSewAAQfwwCCyACIABBBGo2AgwgAUGOrMAAQRkgAkEMakHknsAAEH8MAQsgAiAAQQhqNgIMIAFBp6zAAEEJQbCswABBDCAAQQRqQdCZwABBvKzAAEEGIAJBDGpBuJrAABDDAQsgAkEQaiQAC+ACAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAIAAtAABBAWsOBwECAwQFBgcACyACIABBBGo2AgwgAUGkzsAAQRQgAkEMakH4wcAAEH8MBwsgAiAAQQRqNgIMIAFBuM7AAEEOIAJBDGpBzL3AABB/DAYLIAIgAEEEajYCDCABQcbOwABBGCACQQxqQfjBwAAQfwwFCyACIABBAWo2AgwgAUHezsAAQRYgAkEMakGIv8AAEH8MBAsgAiAAQQRqNgIMIAFB9M7AAEEZIAJBDGpB+MHAABB/DAMLIAIgAEEEajYCDCABQY3PwABBFSACQQxqQfjBwAAQfwwCCyACIABBBGo2AgwgAUGiz8AAQRkgAkEMakH4wcAAEH8MAQsgAiAAQQhqNgIMIAFBu8/AAEEJQcTPwABBDCAAQQRqQeS8wABB0M/AAEEGIAJBDGpBzL3AABDDAQsgAkEQaiQAC+ACAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAIAAtAABBAWsOBwECAwQFBgcACyACIABBBGo2AgwgAUGM8cAAQRQgAkEMakGY3MAAEH8MBwsgAiAAQQRqNgIMIAFBoPHAAEEOIAJBDGpBnODAABB/DAYLIAIgAEEEajYCDCABQa7xwABBGCACQQxqQZjcwAAQfwwFCyACIABBAWo2AgwgAUHG8cAAQRYgAkEMakHY4cAAEH8MBAsgAiAAQQRqNgIMIAFB3PHAAEEZIAJBDGpBmNzAABB/DAMLIAIgAEEEajYCDCABQfXxwABBFSACQQxqQZjcwAAQfwwCCyACIABBBGo2AgwgAUGK8sAAQRkgAkEMakGY3MAAEH8MAQsgAiAAQQhqNgIMIAFBo/LAAEEJQazywABBDCAAQQRqQbTfwABBuPLAAEEGIAJBDGpBnODAABDDAQsgAkEQaiQAC+ACAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQAJAIAAtAABBAWsOBwECAwQFBgcACyACIABBBGo2AgwgAUGgl8EAQRQgAkEMakGMlMEAEH8MBwsgAiAAQQRqNgIMIAFBtJfBAEEOIAJBDGpB4IjBABB/DAYLIAIgAEEEajYCDCABQcKXwQBBGCACQQxqQYyUwQAQfwwFCyACIABBAWo2AgwgAUHal8EAQRYgAkEMakGcisEAEH8MBAsgAiAAQQRqNgIMIAFB8JfBAEEZIAJBDGpBjJTBABB/DAMLIAIgAEEEajYCDCABQYmYwQBBFSACQQxqQYyUwQAQfwwCCyACIABBBGo2AgwgAUGemMEAQRkgAkEMakGMlMEAEH8MAQsgAiAAQQhqNgIMIAFBt5jBAEEJQcCYwQBBDCAAQQRqQfiHwQBBzJjBAEEGIAJBDGpB4IjBABDDAQsgAkEQaiQAC6gCAQV/IABBADYCFCAAQQA2AiAgAEEAOgAlIABBADYCCCABKAIgIgNBAnQhBSABKAIcIQYgAyAAKAIYSwRAIABBGGpBACADQQRBBBCSASAAKAIgIQQgACgCFCECCyAAKAIcIARBAnRqIAYgBRA7GiAAIAMgBGo2AiAgASgCFCIDQQJ0IQQgASgCECEFIAMgACgCDCACa0sEQCAAQQxqIAIgA0EEQQQQkgEgACgCFCECCyAAKAIQIAJBAnRqIAUgBBA7GiAAIAIgA2o2AhQgASgCBCEEIAEoAggiAyAAKAIAIAAoAggiAmtLBEAgACACIANBBEEIEJIBIAAoAgghAgsgACgCBCACQQN0aiAEIANBA3QQOxogACACIANqNgIIIAAgAS0AJToAJQukAgIFfwF+IwBBEGsiAyQAIAAoAhAhBSADQgA3AwggBSACQf8BcSICIAIgBUobIgZBCG0hAgJAIAZBCGtBcEsgAkEJT3JFBEAgACgCBCIHIAEgAmtBAWoiBEkNASACQQN0IQECQAJAAkAgAiAHIARrTQRAIAAoAgAgBGohBCAGQXhxQQhGDQEgA0EIaiAEIAIQOxogAykDCCEICyAAIAUgAWs2AhAgACAALQAUIAFqOgAUIAJBCEkNASAAIAg3AwgMAgsgACAFIAFrNgIQIAAgAC0AFCABajoAFCADIAQtAAA6AAggAykDCCEICyAAIAApAwggAa2GIAiENwMICyADQRBqJAAPC0Hk3sEAQShBjN/BABDtAgALIAQgB0Gc38EAEKoEAAudAgEFfwJAAkACQAJAIAJBA2pBfHEiBCACRg0AIAQgAmsiBCADIAMgBEsbIgVFDQBBACEEIAFB/wFxIQZBASEHA0AgAiAEai0AACAGRg0EIAUgBEEBaiIERw0ACyAFIANBCGsiCEsNAgwBCyADQQhrIQhBACEFCyABQf8BcUGBgoQIbCEEA0BBgIKECCACIAVqIgcoAgAgBHMiBmsgBnJBgIKECCAHQQRqKAIAIARzIgZrIAZycUGAgYKEeHFBgIGChHhHDQEgBUEIaiIFIAhNDQALCyADIAVHBEAgAUH/AXEhBEEBIQcDQCAEIAIgBWotAABGBEAgBSEEDAMLIAMgBUEBaiIFRw0ACwtBACEHCyAAIAQ2AgQgACAHNgIAC5YCAQN/IwBBEGsiAiQAIAJBADYCDAJ/IAFBgAFPBEAgAUGAEE8EQCABQYCABE8EQCACIAFBP3FBgAFyOgAPIAIgAUESdkHwAXI6AAwgAiABQQZ2QT9xQYABcjoADiACIAFBDHZBP3FBgAFyOgANQQQMAwsgAiABQT9xQYABcjoADiACIAFBDHZB4AFyOgAMIAIgAUEGdkE/cUGAAXI6AA1BAwwCCyACIAFBP3FBgAFyOgANIAIgAUEGdkHAAXI6AAxBAgwBCyACIAE6AAxBAQshASAAIAAoAgQiAyABazYCBCAAIAAoAgAgASADS3IiBDYCAEEBIQMgBEUEQCAAKAIIIAJBDGogARDlAyEDCyACQRBqJAAgAwuvAgEFfyMAQTBrIgIkACACQSBqIgQgAUE4aikDADcDACACQRhqIgUgAUEwaikDADcDACACQRBqIgYgAUEoaikDADcDAEGF5cIALQAAGiACIAEpAyA3AwhBIEEIEPUDIgMEQCADIAIpAwg3AwAgA0EYaiAEKQMANwMAIANBEGogBSkDADcDACADQQhqIAYpAwA3AwACQCABKAIEQQJHDQACQAJAIAEtABhBAWsOAgIAAQsgAkEBNgIMIAJBtP7AADYCCCACQgA3AhQgAiACQSxqNgIQIAJBCGpBuP/AABCkAwALIAFBCGoQqQEgASgCCCIERQ0AIAEoAgwgBEEMbEEEEKcECyABQcAAQQgQpwQgAEHklsAANgIEIAAgAzYCACACQTBqJAAPC0EIQSAQ0wQAC94CAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQCAAKAIAIgAtAABBAWsOBgECAwQFBgALIAIgAEEIajYCDCABQaDOwQBBDEGLzsEAQQMgAkEMakGQzsEAEMkBDAYLIAIgAEEIajYCDCABQazOwQBBDkGLzsEAQQMgAkEMakGQzsEAEMkBDAULIAIgAEEBajYCDCABQczOwQBBFCACQQxqQbzOwQAQfwwECyACIABBCGo2AgwgAUHgzsEAQQ5Bi87BAEEDIABBBGpB9MzBAEHuzsEAQQggAkEMakG4zcEAEMMBDAMLIAIgAEEBajYCDCABQfbOwQBBE0GLzsEAQQMgAEEEakH0zMEAQe7OwQBBCCACQQxqQYTNwQAQwwEMAgsgAUGJz8EAQQ8Q5QMMAQsgAiAAQQFqNgIMIAFBmM/BAEEQQYvOwQBBAyACQQxqQYTNwQAQyQELIAJBEGokAAuLAgEBfyMAQRBrIgIkACAAKAIAIQACfyABKAIAIAEoAghyBEAgAkEANgIMIAEgAkEMagJ/IABBgAFPBEAgAEGAEE8EQCAAQYCABE8EQCACIABBP3FBgAFyOgAPIAIgAEESdkHwAXI6AAwgAiAAQQZ2QT9xQYABcjoADiACIABBDHZBP3FBgAFyOgANQQQMAwsgAiAAQT9xQYABcjoADiACIABBDHZB4AFyOgAMIAIgAEEGdkE/cUGAAXI6AA1BAwwCCyACIABBP3FBgAFyOgANIAIgAEEGdkHAAXI6AAxBAgwBCyACIAA6AAxBAQsQNgwBCyABKAIcIAAgASgCICgCEBEAAAsgAkEQaiQAC4YCAQN/IwBBgAFrIgQkACAAKAIAIQACfwJAIAEoAhQiAkEQcUUEQCACQSBxDQEgACgCAEEBIAEQbAwCCyAAKAIAIQBBACECA0AgAiAEakH/AGogAEEPcSIDQTByIANB1wBqIANBCkkbOgAAIAJBAWshAiAAQQ9LIABBBHYhAA0ACyABQQFBj8TCAEECIAIgBGpBgAFqQQAgAmsQNQwBCyAAKAIAIQBBACECA0AgAiAEakH/AGogAEEPcSIDQTByIANBN2ogA0EKSRs6AAAgAkEBayECIABBD0sgAEEEdiEADQALIAFBAUGPxMIAQQIgAiAEakGAAWpBACACaxA1CyAEQYABaiQAC/0BAgR/AX4jAEEgayIFJAACQAJAIARFDQAgASABIAJqIgJLDQAgAyAEakEBa0EAIANrca0gAiAAKAIAIgFBAXQiBiACIAZLGyICQQhBBEEBIARBgQhJGyAEQQFGGyIGIAIgBksbIgatfiIJQiCIUEUNACAJpyIIQYCAgIB4IANrSw0AQQAhAiAFIAEEfyAFIAEgBGw2AhwgBSAAKAIENgIUIAMFIAILNgIYIAVBCGogAyAIIAVBFGoQ2wEgBSgCCEEBRw0BIAUoAhAhAiAFKAIMIQcLIAcgAkGIisAAENcDAAsgBSgCDCEBIAAgBjYCACAAIAE2AgQgBUEgaiQAC/0BAgR/AX4jAEEgayIFJAACQAJAIARFDQAgASABIAJqIgJLDQAgAyAEakEBa0EAIANrca0gAiAAKAIAIgFBAXQiBiACIAZLGyICQQhBBEEBIARBgQhJGyAEQQFGGyIGIAIgBksbIgatfiIJQiCIUEUNACAJpyIIQYCAgIB4IANrSw0AQQAhAiAFIAEEfyAFIAEgBGw2AhwgBSAAKAIENgIUIAMFIAILNgIYIAVBCGogAyAIIAVBFGoQ2wEgBSgCCEEBRw0BIAUoAhAhAiAFKAIMIQcLIAcgAkH4/MAAENcDAAsgBSgCDCEBIAAgBjYCACAAIAE2AgQgBUEgaiQAC64CAQJ/IwBBQGoiAiQAAn8CQAJAAkACQEEDIAAoAgBBB2siAyADQQNPG0EBaw4DAQIDAAsgASgCHEHssMEAQckAIAEoAiAoAgwRAgAMAwsgASgCHEG1scEAQfIAIAEoAiAoAgwRAgAMAgsgAiAAQQxqNgIMIAIgAEEEajYCJCACQQI2AiwgAkHIssEANgIoIAJCAjcCNCACIAJBJGqtQoCAgICQNYQ3AxggAiACQQxqrUKAgICAoDWENwMQIAIgAkEQajYCMCABKAIcIAEoAiAgAkEoahBFDAELIAIgADYCJCACQQE2AiwgAkHwp8EANgIoIAJCATcCNCACIAJBJGqtQoCAgICwNYQ3AxAgAiACQRBqNgIwIAEoAhwgASgCICACQShqEEULIAJBQGskAAv9AQIEfwF+IwBBIGsiBSQAAkACQCAERQ0AIAEgASACaiICSw0AIAMgBGpBAWtBACADa3GtIAIgACgCACIBQQF0IgYgAiAGSxsiAkEIQQRBASAEQYEISRsgBEEBRhsiBiACIAZLGyIGrX4iCUIgiFBFDQAgCaciCEGAgICAeCADa0sNAEEAIQIgBSABBH8gBSABIARsNgIcIAUgACgCBDYCFCADBSACCzYCGCAFQQhqIAMgCCAFQRRqENsBIAUoAghBAUcNASAFKAIQIQIgBSgCDCEHCyAHIAJBwN3BABDXAwALIAUoAgwhASAAIAY2AgAgACABNgIEIAVBIGokAAvLAQIEfwF+IwBBIGsiAyQAAkACQCABIAEgAmoiAksNAEEIIAIgACgCACIBQQF0IgQgAiAESxsiAiACQQhNGyIErSIHQiCIUEUNACAHpyIFQf////8HSw0AIAMgAQR/IAMgATYCHCADIAAoAgQ2AhRBAQVBAAs2AhggA0EIakEBIAUgA0EUahDbASADKAIIQQFHDQEgAygCECECIAMoAgwhBgsgBiACQcCIwgAQ1wMACyADKAIMIQEgACAENgIAIAAgATYCBCADQSBqJAAL2QIBAX8jAEEQayICJAACfwJAAkACQAJAAkACQAJAIAAtAABBAWsOBgECAwQFBgALIAIgAEEIajYCDCABQdibwABBDEGsmcAAQQMgAkEMakHIm8AAEMkBDAYLIAIgAEEIajYCDCABQeSbwABBDkGsmcAAQQMgAkEMakHIm8AAEMkBDAULIAIgAEEBajYCDCABQYScwABBFCACQQxqQfSbwAAQfwwECyACIABBCGo2AgwgAUGYnMAAQQ5BrJnAAEEDIABBBGpBiJjAAEGmnMAAQQggAkEMakHMmMAAEMMBDAMLIAIgAEEBajYCDCABQa6cwABBE0GsmcAAQQMgAEEEakGImMAAQaacwABBCCACQQxqQZiYwAAQwwEMAgsgAUHBnMAAQQ8Q5QMMAQsgAiAAQQFqNgIMIAFB0JzAAEEQQayZwABBAyACQQxqQZiYwAAQyQELIAJBEGokAAvZAgEBfyMAQRBrIgIkAAJ/AkACQAJAAkACQAJAAkAgAC0AAEEBaw4GAQIDBAUGAAsgAiAAQQhqNgIMIAFB7L7AAEEMQcC8wABBAyACQQxqQdy+wAAQyQEMBgsgAiAAQQhqNgIMIAFB+L7AAEEOQcC8wABBAyACQQxqQdy+wAAQyQEMBQsgAiAAQQFqNgIMIAFBmL/AAEEUIAJBDGpBiL/AABB/DAQLIAIgAEEIajYCDCABQay/wABBDkHAvMAAQQMgAEEEakGcu8AAQbq/wABBCCACQQxqQeC7wAAQwwEMAwsgAiAAQQFqNgIMIAFBwr/AAEETQcC8wABBAyAAQQRqQZy7wABBur/AAEEIIAJBDGpBrLvAABDDAQwCCyABQdW/wABBDxDlAwwBCyACIABBAWo2AgwgAUHkv8AAQRBBwLzAAEEDIAJBDGpBrLvAABDJAQsgAkEQaiQAC9kCAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQCAALQAAQQFrDgYBAgMEBQYACyACIABBCGo2AgwgAUG84cAAQQxBkN/AAEEDIAJBDGpBrOHAABDJAQwGCyACIABBCGo2AgwgAUHI4cAAQQ5BkN/AAEEDIAJBDGpBrOHAABDJAQwFCyACIABBAWo2AgwgAUHo4cAAQRQgAkEMakHY4cAAEH8MBAsgAiAAQQhqNgIMIAFB/OHAAEEOQZDfwABBAyAAQQRqQYzewABBiuLAAEEIIAJBDGpB+NzAABDDAQwDCyACIABBAWo2AgwgAUGS4sAAQRNBkN/AAEEDIABBBGpBjN7AAEGK4sAAQQggAkEMakH42sAAEMMBDAILIAFBpeLAAEEPEOUDDAELIAIgAEEBajYCDCABQbTiwABBEEGQ38AAQQMgAkEMakH42sAAEMkBCyACQRBqJAAL2QIBAX8jAEEQayICJAACfwJAAkACQAJAAkACQAJAIAAtAABBAWsOBgECAwQFBgALIAIgAEEIajYCDCABQYCKwQBBDEHUh8EAQQMgAkEMakHwicEAEMkBDAYLIAIgAEEIajYCDCABQYyKwQBBDkHUh8EAQQMgAkEMakHwicEAEMkBDAULIAIgAEEBajYCDCABQayKwQBBFCACQQxqQZyKwQAQfwwECyACIABBCGo2AgwgAUHAisEAQQ5B1IfBAEEDIABBBGpB6IXBAEHOisEAQQggAkEMakH0hsEAEMMBDAMLIAIgAEEBajYCDCABQdaKwQBBE0HUh8EAQQMgAEEEakHohcEAQc6KwQBBCCACQQxqQcCGwQAQwwEMAgsgAUHpisEAQQ8Q5QMMAQsgAiAAQQFqNgIMIAFB+IrBAEEQQdSHwQBBAyACQQxqQcCGwQAQyQELIAJBEGokAAv2AgEEfyMAQTBrIgAkAAJAAkBB/OPCACgCAEUEQEGU5MIAKAIAIQFBlOTCAEEANgIAIAFFDQEgAEEYaiABEQMAIABBEGoiAiAAQSRqKQIANwMAIAAgACkCHDcDCCAAKAIYIQFB/OPCACgCACIDDQICQCADRQ0AQYDkwgAoAgAiAkUNAEGE5MIAKAIAIAJBAnRBBBCnBAtBgOTCACABNgIAQfzjwgBBATYCAEGE5MIAIAApAwg3AgBBjOTCACAAQRBqKQMANwIACyAAQTBqJAAPCyAAQQA2AiggAEEBNgIcIABB8JDCADYCGCAAQgQ3AiAgAEEYakHYkcIAEKQDAAsgAEEoaiACKQMANwIAIAAgACkDCDcCICAAIAE2AhwgAEEBNgIYAkAgAEEYaiIBKAIARQ0AIAEoAgQiAkUNACABKAIIIAJBAnRBBBCnBAsgAEEANgIoIABBATYCHCAAQfiRwgA2AhggAEIENwIgIAFBgJLCABCkAwALqgICA38BfiMAQUBqIgIkACABKAIAQYCAgIB4RgRAIAEoAgwhAyACQSRqIgRBADYCACACQoCAgIAQNwIcIAJBMGogAygCACIDQQhqKQIANwMAIAJBOGogA0EQaikCADcDACACIAMpAgA3AyggAkEcakG8lMIAIAJBKGoQRRogAkEYaiAEKAIAIgM2AgAgAiACKQIcIgU3AxAgAUEIaiADNgIAIAEgBTcCAAsgASkCACEFIAFCgICAgBA3AgAgAkEIaiIDIAFBCGoiASgCADYCACABQQA2AgBBheXCAC0AABogAiAFNwMAQQxBBBD1AyIBRQRAQQRBDBDTBAALIAEgAikDADcCACABQQhqIAMoAgA2AgAgAEHIocIANgIEIAAgATYCACACQUBrJAALwAIBAX8jAEEQayICJAACfwJAAkACQAJAAkACQAJAIAAoAgAiACgCAEEBaw4GAQIDBAUGAAsgAiAAQQRqNgIMIAFBi9HBAEEVIAJBDGpBqM/BABB/DAYLIAIgAEEIajYCDCABQaDRwQBBFkG20cEAQQwgAEEEakH0zMEAQcLRwQBBDyACQQxqQbjNwQAQwwEMBQsgAiAAQQRqNgIMIAFB5NHBAEEXIAJBDGpB1NHBABB/DAQLIAIgAEEEajYCDCABQYzSwQBBGSACQQxqQfzRwQAQfwwDCyACIABBBGo2AgwgAUG40sEAQRkgAkEMakGo0sEAEH8MAgsgAiAAQQRqNgIMIAFB5NLBAEETIAJBDGpB1NLBABB/DAELIAIgAEEEajYCDCABQYjTwQBBFSACQQxqQfjSwQAQfwsgAkEQaiQAC7sCAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQCAAKAIAQQFrDgYBAgMEBQYACyACIABBBGo2AgwgAUHmqMAAQRUgAkEMakHknsAAEH8MBgsgAiAAQQhqNgIMIAFB+6jAAEEWQZGpwABBDCAAQQRqQYiYwABBnanAAEEPIAJBDGpBzJjAABDDAQwFCyACIABBBGo2AgwgAUG8qcAAQRcgAkEMakGsqcAAEH8MBAsgAiAAQQRqNgIMIAFB5KnAAEEZIAJBDGpB1KnAABB/DAMLIAIgAEEEajYCDCABQZCqwABBGSACQQxqQYCqwAAQfwwCCyACIABBBGo2AgwgAUG8qsAAQRMgAkEMakGsqsAAEH8MAQsgAiAAQQRqNgIMIAFB4KrAAEEVIAJBDGpB0KrAABB/CyACQRBqJAALuwIBAX8jAEEQayICJAACfwJAAkACQAJAAkACQAJAIAAoAgBBAWsOBgECAwQFBgALIAIgAEEEajYCDCABQfrLwABBFSACQQxqQfjBwAAQfwwGCyACIABBCGo2AgwgAUGPzMAAQRZBpczAAEEMIABBBGpBnLvAAEGxzMAAQQ8gAkEMakHgu8AAEMMBDAULIAIgAEEEajYCDCABQdDMwABBFyACQQxqQcDMwAAQfwwECyACIABBBGo2AgwgAUH4zMAAQRkgAkEMakHozMAAEH8MAwsgAiAAQQRqNgIMIAFBpM3AAEEZIAJBDGpBlM3AABB/DAILIAIgAEEEajYCDCABQdDNwABBEyACQQxqQcDNwAAQfwwBCyACIABBBGo2AgwgAUH0zcAAQRUgAkEMakHkzcAAEH8LIAJBEGokAAu7AgEBfyMAQRBrIgIkAAJ/AkACQAJAAkACQAJAAkAgACgCAEEBaw4GAQIDBAUGAAsgAiAAQQRqNgIMIAFB4u7AAEEVIAJBDGpBmNzAABB/DAYLIAIgAEEIajYCDCABQffuwABBFkGN78AAQQwgAEEEakGM3sAAQZnvwABBDyACQQxqQfjcwAAQwwEMBQsgAiAAQQRqNgIMIAFBuO/AAEEXIAJBDGpBqO/AABB/DAQLIAIgAEEEajYCDCABQeDvwABBGSACQQxqQdDvwAAQfwwDCyACIABBBGo2AgwgAUGM8MAAQRkgAkEMakH878AAEH8MAgsgAiAAQQRqNgIMIAFBuPDAAEETIAJBDGpBqPDAABB/DAELIAIgAEEEajYCDCABQdzwwABBFSACQQxqQczwwAAQfwsgAkEQaiQAC7sCAQF/IwBBEGsiAiQAAn8CQAJAAkACQAJAAkACQCAAKAIAQQFrDgYBAgMEBQYACyACIABBBGo2AgwgAUH2lMEAQRUgAkEMakGMlMEAEH8MBgsgAiAAQQhqNgIMIAFBi5XBAEEWQaGVwQBBDCAAQQRqQeiFwQBBrZXBAEEPIAJBDGpB9IbBABDDAQwFCyACIABBBGo2AgwgAUHMlcEAQRcgAkEMakG8lcEAEH8MBAsgAiAAQQRqNgIMIAFB9JXBAEEZIAJBDGpB5JXBABB/DAMLIAIgAEEEajYCDCABQaCWwQBBGSACQQxqQZCWwQAQfwwCCyACIABBBGo2AgwgAUHMlsEAQRMgAkEMakG8lsEAEH8MAQsgAiAAQQRqNgIMIAFB8JbBAEEVIAJBDGpB4JbBABB/CyACQRBqJAAL9gEBCH8gASgCCCICIAEoAgQiAyACIANLGyEIIAEoAgAhBUF/IQcgAiEEAkACQANAIAQgCEYNASABIARBAWoiBjYCCCAHQQFqIQcgBCAFaiAGIQQtAAAiBkEwa0H/AXFBCkkgBkHhAGtB/wFxQQZJcg0ACyAGQd8ARw0AIAIgBEEBayIBSw0BAkAgAgRAIAIgA08EQCACIANHIAEgA0tyDQQMAgsgAiAFaiwAAEFASA0DIAEgA00NAQwDCyABIANLDQILIAAgBzYCBCAAIAIgBWo2AgAPCyAAQQA2AgAgAEEAOgAEDwsgBSADIAIgAUH0uMIAEOwDAAvWAQIEfwF+IwBBIGsiAyQAAkACQCABIAEgAmoiAksEQEEAIQEMAQtBACEBQQggAiAAKAIAIgVBAXQiBCACIARLGyICIAJBCE0bIgStIgdCIIhQRQ0AIAenIgZB/////wdLDQAgAyAFBH8gAyAFNgIcIAMgACgCBDYCFEEBBUEACzYCGCADQQhqQQEgBiADQRRqENsBIAMoAghBAUcNASADKAIQIQIgAygCDCEBCyABIAJBqJTCABDXAwALIAMoAgwhASAAIAQ2AgAgACABNgIEIANBIGokAAuzAgECfyMAQRBrIgIkAAJ/AkACQAJAAkACQAJAAkACQAJAQQggACgCACIAKAIAQYCAgIB4cyIDIANBCE8bQQFrDggBAgMEBQYHCAALIAIgAEEEajYCDCABQajcwABBAiACQQxqQZjcwAAQfwwICyACIABBBGo2AgwgAUG83MAAQRMgAkEMakGs3MAAEH8MBwsgAiAAQQRqNgIMIAFBz9zAAEETIAJBDGpB+NrAABB/DAYLIAFB4tzAAEETEOUDDAULIAIgAEEEajYCDCABQYjdwABBEiACQQxqQfjcwAAQfwwECyABQZrdwABBGhDlAwwDCyABQbTdwABBCRDlAwwCCyABQb3dwABBFhDlAwwBCyACIAA2AgwgAUHk3cAAQQYgAkEMakHU3cAAEH8LIAJBEGokAAuaAgECfyMAQTBrIgIkAAJ/AkACQAJAAkAgAC0AACIDQQNrQQAgA0EEa0H/AXFBA0kbQQFrDgMBAgMACyABKAIcQdSswQBBJCABKAIgKAIMEQIADAMLIAEoAhxB+KzBAEHKACABKAIgKAIMEQIADAILIAIgAEEBajYCDCACQQE2AhQgAkHcrcEANgIQIAJCATcCHCACIAJBDGqtQoCAgIDwNIQ3AyggAiACQShqNgIYIAEoAhwgASgCICACQRBqEEUMAQsgAiAAQQRqNgIMIAJBATYCFCACQYiuwQA2AhAgAkIBNwIcIAIgAkEMaq1CgICAgIA1hDcDKCACIAJBKGo2AhggASgCHCABKAIgIAJBEGoQRQsgAkEwaiQAC/oBAQN/IAAgACgCCCICIAFJBH8gAiEDIAEgAmsiBCAAKAIAIAJrSwRAIAAgAiAEQQRBBBCSASAAKAIIIQMLIAAoAgQgA0ECdGohACAEQQJPBEAgAkF/cyABaiICQQdxIQEgBEECa0EHTwRAIAJBeHEhAgNAIABBADYCHCAAQQA2AhggAEEANgIUIABBADYCECAAQQA2AgwgAEEANgIIIABBADYCBCAAQQA2AgAgAEEgaiEAIAJBCGsiAg0ACwsgAQRAA0AgAEEANgIAIABBBGohACABQQFrIgENAAsLIAMgBGpBAWshAwsgAEEANgIAIANBAWoFIAELNgIIC4gCAQN/AkACQAJAAkAgACgCAA4GAAMBAwMCAwsgAC0ABEEDRw0CIAAoAggiACgCACEBIABBBGooAgAiAigCACIDBEAgASADEQMACyACKAIEIgMEQCABIAMgAigCCBCnBAsgAEEMQQQQpwQPCyAAKAIEIgFB7f///wdqIgJBCk0gAkEDR3ENASABRSABQfv///8HaiICQQ1NIAJBAkdxIAFBg4CAgHhHIAFBhICAgHhMcXJyDQEgACgCCCABQQJ0QQQQpwQPCyAAKAIEIgFB+////wdqIgJBC00gAkECR3EgAUGDgICAeEcgAUGEgICAeExxciABRXINACAAKAIIIAFBAnRBBBCnBAsLiwICAn8BfiMAQTBrIgIkAAJ/AkACQAJAIAAoAgAiA0EBa0EAIANBAk8bQQFrDgIBAgALIAIgADYCBCACQQE2AgwgAkHwp8EANgIIIAJCATcCFCACIAJBBGqtQoCAgIDQOIQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUMAgsgAiAAQQRqNgIAIAIgAEEIajYCBCACQQI2AgwgAkHEvsEANgIIIAJCAjcCFCACQoCAgIDwNSIEIAJBBGqthDcDKCACIAQgAq2ENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAELIAEoAhxB1L7BAEEXIAEoAiAoAgwRAgALIAJBMGokAAv2AQICfwF+IwBBMGsiAiQAIABBBGohAwJ/IAAtAABFBEAgAiADNgIAIAIgAEEBajYCBCACQQM2AgwgAkGczMEANgIIIAJCAjcCFCACIAKtQoCAgIDwNYQ3AyggAiACQQRqrUKAgICA4DSENwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFDAELIAIgAzYCACACIABBCGo2AgQgAkEDNgIMIAJB3MzBADYCCCACQgI3AhQgAkKAgICA8DUiBCACQQRqrYQ3AyggAiAEIAKthDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQsgAkEwaiQAC94BAQZ/AkAgAgRAIAAoAggiAyAAKAIEIgYgACgCDCIEIANJIgUbIARrQQAgAyAFG2oiBUEBayIHQQAgBSAHTxsiBSACSQRAIAAgAiAFaxCAASAAKAIEIQYgACgCCCEDIAAoAgwhBAsgAyAGIAMgBEsbIgcgBGsiAyACIAIgA0siCBshAyAAKAIAIQUgBCAHRwRAIAQgBWogASADEDsaCyAIBEAgBSABIANqIAIgA2sQOxoLIAZFDQEgACACIARqIAZwNgIMCyAAIAApAxAgAq18NwMQDwtBsOnBABCUAwAL3wEBAX8jAEEQayICJAAgAkEANgIMIAAgAkEMagJ/IAFBgAFPBEAgAUGAEE8EQCABQYCABE8EQCACIAFBP3FBgAFyOgAPIAIgAUESdkHwAXI6AAwgAiABQQZ2QT9xQYABcjoADiACIAFBDHZBP3FBgAFyOgANQQQMAwsgAiABQT9xQYABcjoADiACIAFBDHZB4AFyOgAMIAIgAUEGdkE/cUGAAXI6AA1BAwwCCyACIAFBP3FBgAFyOgANIAIgAUEGdkHAAXI6AAxBAgwBCyACIAE6AAxBAQsQQyACQRBqJAAL5wEBB38gACgCCCIFBEAgACgCBCEGA0AgBiACQQxsaiIDKAIIIgQEQCADKAIEQSRqIQADQCAAQQRrKAIAIgFBgICAgHhGIAFFckUEQCAAKAIAIAFBARCnBAsCQCAAQRRrKAIAIgdBAkYNACAAQRBrIQEgB0UEQCABKAIAIgFFDQEgAEEMaygCACABQQEQpwQMAQsgASgCACIBRQ0AIABBDGsoAgAgAUEBdEECEKcECyAAQSxqIQAgBEEBayIEDQALCyADKAIAIgAEQCADKAIEIABBLGxBBBCnBAsgAkEBaiICIAVHDQALCwuHAgICfwJ9AkACQCAAvCIBQYCAgAROBEAgAUH////7B0sNAUGBfyECQwAAAAAhACABQYCAgPwDRg0BDAILIABDAAAAAFsEQEMAAIC/IAAgAJSVDwsgAUEATgRAIABDAAAATJS8IQFB6H4hAgwCCyAAIACTQwAAAACVIQALIAAPCyABQY32qwJqIgFBF3YgAmqyIgNDgHExP5QgAUH///8DcUHzidT5A2q+QwAAgL+SIgAgA0PR9xc3lCAAIABDAAAAQJKVIgMgACAAQwAAAD+UlCIEIAMgA5QiACAAIACUIgBD7umRPpRDqqoqP5KUIAAgAEMmnng+lEMTzsw+kpSSkpSSIASTkpILmwIBAn8jAEEQayICJAACfwJAAkACQAJAAkBBAyAAKAIAIgAoAgBBgICAgHhzIgMgA0EFTxtBAWsOBAECAwQACyABQdHZwQBBDBDlAwwECyACIABBBWo2AgwgAUHd2cEAQQxBi87BAEEDIABBBGpBtNnBAEHp2cEAQQMgAkEMakGEzcEAEMMBDAMLIAIgAEEEajYCDCABQejUwQBBDCACQQxqQdjUwQAQfwwCCyACIAA2AgwgAUH82cEAQYvOwQAgAEEMakHg0MEAQZbawQAgAEEQakHg0MEAQaLawQAgAkEMakHs2cEAEL4BDAELIAIgAEEEajYCDCABQbbawQBBDkGLzsEAQQMgAkEMakG4zcEAEMkBCyACQRBqJAAL7wECA38BfiMAQTBrIgIkACAAQQhqIQMgAEEEaiEEQoCAgIDwNSEFAn8gACgCAEUEQCACIAQ2AgAgAiADNgIEIAJBAzYCDCACQZSzwQA2AgggAkICNwIUIAIgBSACrYQ3AyggAiAFIAJBBGqthDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQwBCyACIAQ2AgAgAiADNgIEIAJBAjYCDCACQcyzwQA2AgggAkICNwIUIAIgBSACQQRqrYQ3AyggAiAFIAKthDcDICACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRQsgAkEwaiQAC5YCAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAQQMgACgCAEGAgICAeHMiAyADQQVPG0EBaw4EAQIDBAALIAFBhJnAAEEMEOUDDAQLIAIgAEEFajYCDCABQaCZwABBDEGsmcAAQQMgAEEEakGQmcAAQa+ZwABBAyACQQxqQZiYwAAQwwEMAwsgAiAAQQRqNgIMIAFBxJnAAEEMIAJBDGpBtJnAABB/DAILIAIgADYCDCABQfCZwABBrJnAACAAQQxqQdCZwABBiprAACAAQRBqQdCZwABBlprAACACQQxqQeCZwAAQvgEMAQsgAiAAQQRqNgIMIAFBqprAAEEOQayZwABBAyACQQxqQcyYwAAQyQELIAJBEGokAAuWAgECfyMAQRBrIgIkAAJ/AkACQAJAAkACQEEDIAAoAgBBgICAgHhzIgMgA0EFTxtBAWsOBAECAwQACyABQZi8wABBDBDlAwwECyACIABBBWo2AgwgAUG0vMAAQQxBwLzAAEEDIABBBGpBpLzAAEHDvMAAQQMgAkEMakGsu8AAEMMBDAMLIAIgAEEEajYCDCABQdi8wABBDCACQQxqQci8wAAQfwwCCyACIAA2AgwgAUGEvcAAQcC8wAAgAEEMakHkvMAAQZ69wAAgAEEQakHkvMAAQaq9wAAgAkEMakH0vMAAEL4BDAELIAIgAEEEajYCDCABQb69wABBDkHAvMAAQQMgAkEMakHgu8AAEMkBCyACQRBqJAALlgIBAn8jAEEQayICJAACfwJAAkACQAJAAkBBAyAAKAIAQYCAgIB4cyIDIANBBU8bQQFrDgQBAgMEAAsgAUHm3sAAQQwQ5QMMBAsgAiAAQQVqNgIMIAFBhN/AAEEMQZDfwABBAyAAQQRqQfTewABBk9/AAEEDIAJBDGpB+NrAABDDAQwDCyACIABBBGo2AgwgAUGo38AAQQwgAkEMakGY38AAEH8MAgsgAiAANgIMIAFB1N/AAEGQ38AAIABBDGpBtN/AAEHu38AAIABBEGpBtN/AAEH638AAIAJBDGpBxN/AABC+AQwBCyACIABBBGo2AgwgAUGO4MAAQQ5BkN/AAEEDIAJBDGpB+NzAABDJAQsgAkEQaiQAC5YCAQJ/IwBBEGsiAiQAAn8CQAJAAkACQAJAQQMgACgCAEGAgICAeHMiAyADQQVPG0EBaw4EAQIDBAALIAFBrIfBAEEMEOUDDAQLIAIgAEEFajYCDCABQciHwQBBDEHUh8EAQQMgAEEEakG4h8EAQdeHwQBBAyACQQxqQcCGwQAQwwEMAwsgAiAAQQRqNgIMIAFB7IfBAEEMIAJBDGpB3IfBABB/DAILIAIgADYCDCABQZiIwQBB1IfBACAAQQxqQfiHwQBBsojBACAAQRBqQfiHwQBBvojBACACQQxqQYiIwQAQvgEMAQsgAiAAQQRqNgIMIAFB0ojBAEEOQdSHwQBBAyACQQxqQfSGwQAQyQELIAJBEGokAAv/BgIIfwF+IAIgASgCBCIJIAEoAgwiBCAEIAEoAggiBkkiBxsgBmsgBEEAIAcbaiIITQRAIAggAmsiBSADaiEKIAYgCSAHGyAEa0EAIAYgBxtqIgRBAWsiBkEAIAQgBk8bIgQgA0kEQCABIAMgBGsQgAELAkAgCCAKTwRAIAEgBSADEC4MAQsgA0UNACADIQQDQCABIAUgBCACIAIgBEsbIgYQLiAFIAZqIQUgBCAGayIEDQALCyAAQQI2AgAgASABKQMQIAOtfDcDEA8LIAEoAgQhBiABKAIIIQUgASgCDCEEAkAgASkDECIMIAE1AnBWBEAgACACNgIEIABBATYCACAAIAYgBCAEIAVJIgAbIAVrIARBACAAG2o2AggMAQsCQAJAAkACQAJAAkACQAJAAkACQCABKAJ8IgggAiAFaiIKIAZBACAEIAVJIgkbIARqIgtrIgJPBEAgCCACayEHIAIgA08EQCADIAdqIgIgB0kNAiACIAhLDQMgA0UNCiABKAJ4IAUgBiAJGyAEa0EAIAUgCRtqIghBAWsiCUEAIAggCU8bIgggA0kEQCABIAMgCGsQgAEgASgCBCEGIAEoAgghBSABKAIMIQQLIAdqIQcgBSAGIAQgBUkbIgggBGsiAiADIAIgA0kiCRshAiABKAIAIQUgBCAIRwRAIAQgBWogByACEDsaCyAJDQQMCQsgCiALRg0GIAEoAnghCCAFIAYgCRsgBGtBACAFIAkbaiIJQQFrIgpBACAJIApPGyIJIAJJBEAgASACIAlrEIABIAEoAgQhBiABKAIIIQUgASgCDCEECyAHIAhqIQggBSAGIAQgBUkbIgogBGsiByACIAIgB0siCxshByABKAIAIQkgBCAKRwRAIAQgCWogCCAHEDsaCyALDQQMBQsgACACNgIIIAAgCDYCBCAAQQA2AgAMCgsgByACQaD3wQAQrAQACyACIAhBoPfBABCrBAALIAUgAiAHaiADIAJrEDsaDAQLIAkgByAIaiACIAdrEDsaCyAGRQ0BIAEgAiAEaiAGcCIENgIMIAEpAxAhDAsgASAMIAKtfDcDECAAIAEgBiAEIAQgBUkiABsgBWsgBEEAIAAbaiADIAJrELEBDAQLQbDpwQAQlAMACyAGRQ0BIAEgAyAEaiAGcDYCDAsgAEECNgIADAELQbDpwQAQlAMACwvUAQIGfwF+IwBBIGsiAiQAQQQgACgCACIEQQFqIgMgBEEBdCIFIAMgBUsbIgMgA0EETRsiBa1CDH4iCEIgiFBFBEBBAEEAIAEQ1wMACwJAIAinIgdB/P///wdNBEBBACEDIAIgBAR/IAIgBEEMbDYCHCACIAAoAgQ2AhRBBAUgAws2AhggAkEIakEEIAcgAkEUahDbASACKAIIQQFHDQEgAigCDCEGIAIoAhAhAwsgBiADIAEQ1wMACyACKAIMIQEgACAFNgIAIAAgATYCBCACQSBqJAAL3AEBA38jAEEQayIDJAACfyACKAIAQQFxBEBB3KDCACEEQQkMAQsgA0EEaiACKAIEIAIoAggQPUHcoMIAIAMoAgggAygCBCICGyEEQQkgAygCDCACGwshAiAEIAIgARDaAQJAIAAoAgAiAUGAgICAeEcEQCABRQ0BIAAoAgQgAUEBEKcEDAELIAAtAARBA0cNACAAKAIIIgAoAgAhASAAQQRqKAIAIgIoAgAiBQRAIAEgBREDAAsgAigCBCIFBEAgASAFIAIoAggQpwQLIABBDEEEEKcECyADQRBqJAALywEBBX8jAEEgayICJAAgACgCACIFQQFqIgMgBUEBdCIGIAMgBksbIgNB/////wNLBEBBAEEAIAEQ1wMACwJAQQQgAyADQQRNGyIDQQJ0IgZB/P///wdNBH8gAiAFBH8gAiAFQQJ0NgIcIAIgACgCBDYCFEEEBSAECzYCGCACQQhqQQQgBiACQRRqENsBIAIoAghBAUcNASACKAIQIQQgAigCDAUgBAsgBCABENcDAAsgAigCDCEBIAAgAzYCACAAIAE2AgQgAkEgaiQAC+0BAQN/IwBBIGsiAiQAIAJBCGoiAyABQSRqKAIANgIAQYXlwgAtAAAaIAIgASkCHDcDAEEMQQQQ9QMiBARAIAQgAikDADcCACAEQQhqIAMoAgA2AgACQCABKAIEQQJHDQACQAJAIAEtABhBAWsOAgIAAQsgAkEBNgIEIAJB9ILAADYCACACQgA3AgwgAiACQRxqNgIIIAJB+IPAABCkAwALIAFBCGoQqQEgASgCCCIDRQ0AIAEoAgwgA0EMbEEEEKcECyABQShBBBCnBCAAQZCMwAA2AgQgACAENgIAIAJBIGokAA8LQQRBDBDTBAAL7QEBA38jAEEgayICJAAgAkEIaiIDIAFBJGooAgA2AgBBheXCAC0AABogAiABKQIcNwMAQQxBBBD1AyIEBEAgBCACKQMANwIAIARBCGogAygCADYCAAJAIAEoAgRBAkcNAAJAAkAgAS0AGEEBaw4CAgABCyACQQE2AgQgAkG0/sAANgIAIAJCADcCDCACIAJBHGo2AgggAkG4/8AAEKQDAAsgAUEIahCpASABKAIIIgNFDQAgASgCDCADQQxsQQQQpwQLIAFBKEEEEKcEIABBoJfAADYCBCAAIAQ2AgAgAkEgaiQADwtBBEEMENMEAAvdAQEFfyMAQSBrIgEkAAJAIAAoAgRBAkcNAAJAAkAgAC0AGEEBaw4CAgABCyABQQE2AgggAUG0/sAANgIEIAFCADcCECABIAFBHGo2AgwgAUEEakG4/8AAEKQDAAsgAEEIahCpASAAKAIIIgJFDQAgACgCDCACQQxsQQQQpwQLIAAtABxBA0YEQCAAKAIgIgIoAgAhBCACQQRqKAIAIgUoAgAiAwRAIAQgAxEDAAsgBSgCBCIDBEAgBCADIAUoAggQpwQLIAJBDEEEEKcECyAAQSRBBBCnBCABQSBqJAALxgQCBn8BfiMAQRBrIgQkAAJAAkAgACgCAEECRwRAIwBB4ABrIgIkAAJ/AkAgACgCAEUEQEEBIAEgACgCECAAKAIUEOUDDQIaDAELIAIgAEEEajYCCCABKAIUIQMgAiABNgIUIAJCgICAgIDI0Ac3AgwgAkEIaq1CgICAgIDCAIQhCAJAAn8gA0EEcQRAIAIgCDcDMCACQQE2AiwgAkEBNgIcIAJBxLvCADYCGCACQQE2AiQgAkEDOgBYIAJBBDYCVCACQiA3AkwgAkECNgJEIAJBAjYCPCACIAJBPGo2AiggAiACQTBqNgIgIAJBDGpBgLHCACACQRhqEEUMAQsgAkEBNgJAIAJBxLvCADYCPCACQgE3AkggAiAINwMYIAIgAkEYajYCRCACQQxqQYCxwgAgAkE8ahBFCyIDQQAgAigCDCIFG0UEQCADDQEgBUUNAkHwu8IAQTcgAkHfAGpB4LvCAEGovMIAEKACAAsgAUHMu8IAQRQQ5QNFDQELQQEMAQsgASAAKAIYIAAoAhwQ5QMLIAJB4ABqJAAhBQwBCyAAKAIkIgJFDQAgACgCICEAA0AgBEEEaiAAIAIQPQJAAkAgBCgCBEUEQCAEKAIIIAQoAgwgARDVBA0BDAQLIAQtAA0hAyAELQAMIQYgBCgCCCEHQeWgwgBBAyABENUERQ0BC0EBIQUMAgsgBkEBcUUNASACIAMgB2oiA0kNAiAAIANqIQAgAiADayICDQALCyAEQRBqJAAgBQ8LIAMgAkHUosIAEKoEAAu8AQECfyMAQSBrIgMkAAJAAn9BACABIAEgAmoiAksNABpBAEEIIAIgACgCACIBQQF0IgQgAiAESxsiAiACQQhNGyIEQQBIDQAaQQAhAiADIAEEfyADIAE2AhwgAyAAKAIENgIUQQEFIAILNgIYIANBCGpBASAEIANBFGoQ2wEgAygCCEEBRw0BIAMoAhAhACADKAIMCyAAQZy/wgAQ1wMACyADKAIMIQEgACAENgIAIAAgATYCBCADQSBqJAAL2QEAIABBIEkEQEEADwsgAEH/AEkEQEEBDwsgAEGAgARPBEAgAEGAgAhPBEAgAEHg//8AcUHgzQpHIABB/v//AHFBnvAKR3EgAEHA7gprQXpJcSAAQbCdC2tBcklxIABB8NcLa0FxSXEgAEGA8AtrQd5sSXEgAEGAgAxrQZ50SXEgAEHQpgxrQXtJcSAAQYCCOGtBsMVUSXEgAEHwgzhJcQ8LIABBiM3CAEEsQeDNwgBB0AFBsM/CAEHmAxBxDwsgAEGW08IAQShB5tPCAEGiAkGI1sIAQakCEHEL1AEBBH8jAEEgayIBJAACQCAAKAIEQQJHDQACQAJAIAAtABhBAWsOAgIAAQsgAUEBNgIIIAFBtP7AADYCBCABQgA3AhAgASABQRxqNgIMIAFBBGpBuP/AABCkAwALIABBCGoQqQEgACgCCCICRQ0AIAAoAgwgAkEMbEEEEKcECyAALQAcQQNGBEAgACgCICIAKAIAIQIgAEEEaigCACIEKAIAIgMEQCACIAMRAwALIAQoAgQiAwRAIAIgAyAEKAIIEKcECyAAQQxBBBCnBAsgAUEgaiQAC8kBAgN/AX4jAEEQayIEJAACQCAAKAIQIgNFBEAMAQtBASECQe65wgBBASADENUEDQAgAVAEQEHuuMIAQQEgAxDVBCECDAELAkAgASAANQIUIgVYBEAgBSABfSIBQhpUDQFB7rjCAEEBIAMQ1QQNAiAEIAE3AwggBEEIaiADEK8EIQIMAgtBxLnCAEEQIAMQ1QQNAUEAIQIgAEEAOgAEIABBADYCAAwBCyAEIAGnQeEAajYCBCAEQQRqIAMQjQEhAgsgBEEQaiQAIAIL2QEBBH8jAEEgayICJABBheXCAC0AABogASgCICEDIAEoAhwhBUEIQQQQ9QMiBARAIAQgAzYCBCAEIAU2AgACQCABKAIEQQJHDQACQAJAIAEtABhBAWsOAgIAAQsgAkEBNgIIIAJBtP7AADYCBCACQgA3AhAgAiACQRxqNgIMIAJBBGpBuP/AABCkAwALIAFBCGoQqQEgASgCCCIDRQ0AIAEoAgwgA0EMbEEEEKcECyABQSRBBBCnBCAAQdyXwAA2AgQgACAENgIAIAJBIGokAA8LQQRBCBDTBAALzwEBAX8jAEEQayILJAAgACgCHCABQRogACgCICgCDBECACEBIAtBADoADSALIAE6AAwgCyAANgIIIAtBCGogAkEDIAMgBBBvIAVBDCAGIAcQbyAIQRQgCSAKEG8hASALLQANIgIgCy0ADCIDciEAAkAgA0EBcSACQQFHcg0AIAEoAgAiAC0AFEEEcUUEQCAAKAIcQYfEwgBBAiAAKAIgKAIMEQIAIQAMAQsgACgCHEGGxMIAQQEgACgCICgCDBECACEACyALQRBqJAAgAEEBcQuuAQEEfwJAIAAoAgBBAkcEfyAALQDMAyEBAkAgAC0AEEEEcQRAIAFBAXFFDQMgACgCGA0BDAMLIAFBAXFFDQILIAAoApQCIAAoApwCIgEgASAAKAKYAiIASSICGyAAayABQQAgAhtqBSABCw8LIAAoApwCIgFBACABIAAoApgCIgJJIgMbIgQgACgClAIgASADGyIBaiACIAAoAoADIgBqa0EAIAEgAmsgBGogAEsbC8EBAgN/AX4jAEEwayICJAAgASgCAEGAgICAeEYEQCABKAIMIQMgAkEUaiIEQQA2AgAgAkKAgICAEDcCDCACQSBqIAMoAgAiA0EIaikCADcDACACQShqIANBEGopAgA3AwAgAiADKQIANwMYIAJBDGpBvJTCACACQRhqEEUaIAJBCGogBCgCACIDNgIAIAIgAikCDCIFNwMAIAFBCGogAzYCACABIAU3AgALIABByKHCADYCBCAAIAE2AgAgAkEwaiQAC5YCAQJ/IwBBIGsiBSQAQaTlwgBBpOXCACgCACIGQQFqNgIAAkACf0EAIAZBAEgNABpBAUHw6MIALQAADQAaQfDowgBBAToAAEHs6MIAQezowgAoAgBBAWo2AgBBAgtB/wFxIgZBAkcEQCAGQQFxRQ0BIAVBCGogACABKAIYEQEAAAtBmOXCACgCACIGQQBIDQBBmOXCACAGQQFqNgIAQZjlwgBBnOXCACgCAAR/IAUgACABKAIUEQEAIAUgBDoAHSAFIAM6ABwgBSACNgIYIAUgBSkDADcCEEGc5cIAKAIAIAVBEGpBoOXCACgCACgCFBEBAEGY5cIAKAIAQQFrBSAGCzYCAEHw6MIAQQA6AAAgA0UNAAALAAuuAQEEfyMAQSBrIgIkAEEIIAAoAgAiBEEBaiIDIARBAXQiBSADIAVLGyIDIANBCE0bIgNBAEgEQEEAQQAgARDXAwALQQAhBSACIAQEfyACIAQ2AhwgAiAAKAIENgIUQQEFIAULNgIYIAJBCGpBASADIAJBFGoQ2wEgAigCCEEBRgRAIAIoAgwgAigCECABENcDAAsgAigCDCEBIAAgAzYCACAAIAE2AgQgAkEgaiQAC8UBAQF/IwBBEGsiCyQAIAAoAhwgASACIAAoAiAoAgwRAgAhASALQQA6AA0gCyABOgAMIAsgADYCCCALQQhqIAMgBCAFIAYQbyAHIAggCSAKEG8hASALLQANIgIgCy0ADCIDciEAAkAgA0EBcSACQQFHcg0AIAEoAgAiAC0AFEEEcUUEQCAAKAIcQYfEwgBBAiAAKAIgKAIMEQIAIQAMAQsgACgCHEGGxMIAQQEgACgCICgCDBECACEACyALQRBqJAAgAEEBcQvNAQIDfwF+IwBBIGsiAiQAQYXlwgAtAAAaIAEpAhwhBUEIQQQQ9QMiAwRAIAMgBTcCAAJAIAEoAgRBAkcNAAJAAkAgAS0AGEEBaw4CAgABCyACQQE2AgggAkG0/sAANgIEIAJCADcCECACIAJBHGo2AgwgAkEEakG4/8AAEKQDAAsgAUEIahCpASABKAIIIgRFDQAgASgCDCAEQQxsQQQQpwQLIAFBJEEEEKcEIABBqJbAADYCBCAAIAM2AgAgAkEgaiQADwtBBEEIENMEAAunAQEDfyMAQRBrIgMkAEEDIQIgAC0AACIAIQQgAEEKTwRAIAMgACAAQeQAbiIEQeQAbGtB/wFxQQF0IgJBksTCAGotAAA6AA8gAyACQZHEwgBqLQAAOgAOQQEhAgtBACAAIAQbRQRAIAJBAWsiAiADQQ1qaiAEQQF0Qf4BcUGSxMIAai0AADoAAAsgAUEBQQFBACADQQ1qIAJqQQMgAmsQNSADQRBqJAAL4AEBBX8CQAJAIABBhAFJDQAgANBvJgEQmAFBjOTCACgCACEEQZDkwgAoAgAhAUGM5MIAQgA3AgBBiOTCACgCACECQYTkwgAoAgAhA0GE5MIAQgQ3AgBBgOTCACgCACEFQYDkwgBBADYCACAAIAFJDQEgACABayIAIAJPDQEgAyAAQQJ0aiAENgIAQZDkwgAgATYCAEGM5MIAIAA2AgBBiOTCACACNgIAQYTkwgAoAgBBhOTCACADNgIAQYDkwgAoAgAhAEGA5MIAIAU2AgAgAEUNACAAQQJ0QQQQpwQLDwsAC8YBAQJ/IwBBEGsiAiQAAn8CQAJAAkBBASAAKAIAIgAtAABBAmsiAyADQf8BcUEDTxtB/wFxQQFrDgIBAgALIAIgAEEBajYCBCABQcihwQBBGUHUh8EAQQMgAkEEakHAhsEAEMkBDAILIAIgADYCCCABQeyHwQBBDCACQQhqQdyHwQAQfwwBCyACIABBCGo2AgwgAUHhocEAQQ5Bt43BAEEEIABBBGpB6IXBAEGii8EAQQQgAkEMakHAhsEAEMMBCyACQRBqJAALxgEBAn8jAEEQayICJAACfwJAAkACQEEBIAAoAgAiAC0AAEECayIDIANB/wFxQQNPG0H/AXFBAWsOAgECAAsgAiAAQQFqNgIEIAFBjdnBAEEZQYvOwQBBAyACQQRqQYTNwQAQyQEMAgsgAiAANgIIIAFB6NTBAEEMIAJBCGpB2NTBABB/DAELIAIgAEEIajYCDCABQabZwQBBDkGw18EAQQQgAEEEakH0zMEAQbfTwQBBBCACQQxqQYTNwQAQwwELIAJBEGokAAu7AQEBfyMAQRBrIgckACAAKAIcIAEgAiAAKAIgKAIMEQIAIQEgB0EAOgANIAcgAToADCAHIAA2AgggB0EIaiADIAQgBSAGEG8hASAHLQANIgIgBy0ADCIDciEAAkAgA0EBcSACQQFHcg0AIAEoAgAiAC0AFEEEcUUEQCAAKAIcQYfEwgBBAiAAKAIgKAIMEQIAIQAMAQsgACgCHEGGxMIAQQEgACgCICgCDBECACEACyAHQRBqJAAgAEEBcQueAQIEfwJ+AkACQCAAKAIIIgMoAggiBCAAKQMAIgenIgJLBEAgAygCBCACQQF0ai0AASICDQEMAgsgAiAEQZz5wQAQrQIACyACIAEtABQiBU0EQCABIAUgAmsiAzoAFEJ/IAKthkJ/hSABKQMIIANBP3GtiIMhBgwBCyABIAIQWyEGIAMoAgghBAsgACAErUIBfSAHIAKthoMgBoQ3AwALrgEBAX8jAEEQayIGJAACQCABBEAgBkEEaiABIAMgBCAFIAIoAhARBgACQCAGKAIEIgIgBigCDCIBTQRAIAYoAgghBQwBCyACQQJ0IQIgBigCCCEDIAFFBEBBBCEFIAMgAkEEEKcEDAELIAMgAkEEIAFBAnQiAhDfAyIFRQ0CCyAAIAE2AgQgACAFNgIAIAZBEGokAA8LQfiPwgBBMhDIBAALQQQgAkHoj8IAENcDAAvBAQECfyMAQRBrIgIkAAJ/AkACQAJAQQEgAC0AAEECayIDIANB/wFxQQNPG0H/AXFBAWsOAgECAAsgAiAAQQFqNgIEIAFBuLXAAEEZQayZwABBAyACQQRqQZiYwAAQyQEMAgsgAiAANgIIIAFBxJnAAEEMIAJBCGpBtJnAABB/DAELIAIgAEEIajYCDCABQdG1wABBDkHzocAAQQQgAEEEakGImMAAQfqcwABBBCACQQxqQZiYwAAQwwELIAJBEGokAAvBAQECfyMAQRBrIgIkAAJ/AkACQAJAQQEgAC0AAEECayIDIANB/wFxQQNPG0H/AXFBAWsOAgECAAsgAiAAQQFqNgIEIAFBzNjAAEEZQcC8wABBAyACQQRqQay7wAAQyQEMAgsgAiAANgIIIAFB2LzAAEEMIAJBCGpByLzAABB/DAELIAIgAEEIajYCDCABQeXYwABBDkGHxcAAQQQgAEEEakGcu8AAQY7AwABBBCACQQxqQay7wAAQwwELIAJBEGokAAvBAQECfyMAQRBrIgIkAAJ/AkACQAJAQQEgAC0AAEECayIDIANB/wFxQQNPG0H/AXFBAWsOAgECAAsgAiAAQQFqNgIEIAFBtPvAAEEZQZDfwABBAyACQQRqQfjawAAQyQEMAgsgAiAANgIIIAFBqN/AAEEMIAJBCGpBmN/AABB/DAELIAIgAEEIajYCDCABQc37wABBDkGw58AAQQQgAEEEakGM3sAAQd7iwABBBCACQQxqQfjawAAQwwELIAJBEGokAAvBAQECfyMAQRBrIgIkAAJ/AkACQAJAQQEgAC0AAEECayIDIANB/wFxQQNPG0H/AXFBAWsOAgECAAsgAiAAQQFqNgIEIAFByKHBAEEZQdSHwQBBAyACQQRqQcCGwQAQyQEMAgsgAiAANgIIIAFB7IfBAEEMIAJBCGpB3IfBABB/DAELIAIgAEEIajYCDCABQeGhwQBBDkG3jcEAQQQgAEEEakHohcEAQaKLwQBBBCACQQxqQcCGwQAQwwELIAJBEGokAAuzAQEDfyABKAIMIQICQAJAAkACQAJAAkAgASgCBA4CAAECCyACDQFBASEDQQAhAUEBIQIMAwsgAkUNAQsgACABEGgPCyABKAIAIgIoAgQiAUEASA0BIAIoAgAhAyABRQRAQQEhAkEAIQEMAQtBheXCAC0AABpBASEEIAFBARD1AyICRQ0BCyACIAMgARA7IQIgACABNgIIIAAgAjYCBCAAIAE2AgAPCyAEIAFBlIHAABDXAwALswEBA38gASgCDCECAkACQAJAAkACQAJAIAEoAgQOAgABAgsgAg0BQQEhA0EAIQFBASECDAMLIAJFDQELIAAgARBoDwsgASgCACICKAIEIgFBAEgNASACKAIAIQMgAUUEQEEBIQJBACEBDAELQYXlwgAtAAAaQQEhBCABQQEQ9QMiAkUNAQsgAiADIAEQOyECIAAgATYCCCAAIAI2AgQgACABNgIADwsgBCABQYiJwAAQ1wMAC7YBAQJ/IwBBEGsiAiQAAn8CQAJAAkACQCAAKAIAIgAtAAAiA0EDa0EAIANBBGtB/wFxQQNJG0EBaw4DAQIDAAsgAiAANgIEIAFBnJTBAEEJIAJBBGpBjJTBABB/DAMLIAFBpZTBAEESEOUDDAILIAIgAEEBajYCCCABQciUwQBBDiACQQhqQbiUwQAQfwwBCyACIABBBGo2AgwgAUHolMEAQQ4gAkEMakHYlMEAEH8LIAJBEGokAAuxAQECfyMAQRBrIgIkAAJ/AkACQAJAAkAgAC0AACIDQQNrQQAgA0EEa0H/AXFBA0kbQQFrDgMBAgMACyACIAA2AgQgAUGMqMAAQQkgAkEEakHknsAAEH8MAwsgAUGVqMAAQRIQ5QMMAgsgAiAAQQFqNgIIIAFBuKjAAEEOIAJBCGpBqKjAABB/DAELIAIgAEEEajYCDCABQdiowABBDiACQQxqQciowAAQfwsgAkEQaiQAC7EBAQJ/IwBBEGsiAiQAAn8CQAJAAkACQCAALQAAIgNBA2tBACADQQRrQf8BcUEDSRtBAWsOAwECAwALIAIgADYCBCABQaDLwABBCSACQQRqQfjBwAAQfwwDCyABQanLwABBEhDlAwwCCyACIABBAWo2AgggAUHMy8AAQQ4gAkEIakG8y8AAEH8MAQsgAiAAQQRqNgIMIAFB7MvAAEEOIAJBDGpB3MvAABB/CyACQRBqJAALsQEBAn8jAEEQayICJAACfwJAAkACQAJAIAAtAAAiA0EDa0EAIANBBGtB/wFxQQNJG0EBaw4DAQIDAAsgAiAANgIEIAFBiO7AAEEJIAJBBGpBmNzAABB/DAMLIAFBke7AAEESEOUDDAILIAIgAEEBajYCCCABQbTuwABBDiACQQhqQaTuwAAQfwwBCyACIABBBGo2AgwgAUHU7sAAQQ4gAkEMakHE7sAAEH8LIAJBEGokAAuxAQECfyMAQRBrIgIkAAJ/AkACQAJAAkAgAC0AACIDQQNrQQAgA0EEa0H/AXFBA0kbQQFrDgMBAgMACyACIAA2AgQgAUGclMEAQQkgAkEEakGMlMEAEH8MAwsgAUGllMEAQRIQ5QMMAgsgAiAAQQFqNgIIIAFByJTBAEEOIAJBCGpBuJTBABB/DAELIAIgAEEEajYCDCABQeiUwQBBDiACQQxqQdiUwQAQfwsgAkEQaiQAC6YBAQF/IwBBQGoiAiQAIAAoAgAhACACQgA3AzggAkE4aiAAJQEQGiACIAIoAjwiADYCNCACIAIoAjg2AjAgAiAANgIsIAIgAkEsaq1CgICAgNA9hDcDICACQQI2AgwgAkG0kMIANgIIIAJCATcCFCACIAJBIGo2AhAgASgCHCABKAIgIAJBCGoQRSACKAIsIgEEQCACKAIwIAFBARCnBAsgAkFAayQAC5YBAQJ/IwBBEGsiAiQAIAAoAgAhACACQQRqIgMgARCnAyACIAA2AgwgAyACQQxqQfjawAAQggEgAiAAQQFqNgIMIAJBBGogAkEMakH42sAAEIIBIAIgAEECajYCDCACQQRqIAJBDGpB+NrAABCCASACIABBA2o2AgwgAkEEaiACQQxqQfjawAAQggEgAxCgAyACQRBqJAALlgEBAn8jAEEQayICJAAgACgCACEAIAJBBGoiAyABEKcDIAIgADYCDCADIAJBDGpB3PfBABCCASACIABBAWo2AgwgAkEEaiACQQxqQdz3wQAQggEgAiAAQQJqNgIMIAJBBGogAkEMakHc98EAEIIBIAIgAEEDajYCDCACQQRqIAJBDGpB3PfBABCCASADEKADIAJBEGokAAujAQECfyMAQSBrIgMkAAJAIAFFBEBBAUEAIAIQ1QQhAAwBCyADIAE2AgwgAyAANgIIIANBEGogA0EIahBTIAMoAhAiAQRAA0AgAygCFCEEIAMoAhxFBEAgASAEIAIQ1QQhAAwDC0EBIQAgAiABIAQQ5QMNAiACQf3/AxDrAw0CIANBEGogA0EIahBTIAMoAhAiAQ0ACwtBACEACyADQSBqJAAgAAuLAQEBfwJAIAJBAE4EQAJ/IAMoAgQEQAJAIAMoAggiBEUEQAwBCyADKAIAIAQgASACEN8DDAILCyABIAJFDQAaQYXlwgAtAAAaIAIgARD1AwsiAwRAIAAgAjYCCCAAIAM2AgQgAEEANgIADwsgACACNgIIIAAgATYCBAwBCyAAQQA2AgQLIABBATYCAAudAQEEfwJAQQggACgCACIAKAIAIgJBgICAgHhzIgEgAUEITxsiAUEBa0EHSQ0AIAEEQCACRQ0BIAAoAgQgAkEBEKcEDAELIAAtAARBA0cNACAAKAIIIgIoAgAhASACQQRqKAIAIgQoAgAiAwRAIAEgAxEDAAsgBCgCBCIDBEAgASADIAQoAggQpwQLIAJBDEEEEKcECyAAQQxBBBCnBAu1AQECfyMAQRBrIgIkAAJ/AkACQAJAAkBBAyAAKAIAIgAoAgBBB2siAyADQQNPG0EBaw4DAQIDAAsgAUH4nMEAQRQQ5QMMAwsgAUGMncEAQR0Q5QMMAgsgAiAAQQRqNgIIIAFBnJTBAEEJQbydwQBBBCAAQQxqQaydwQBBwJ3BAEEGIAJBCGpBjJTBABDDAQwBCyACIAA2AgwgAUHYncEAQRQgAkEMakHIncEAEH8LIAJBEGokAAu3AQECfwJAAn8CQAJAAkACQAJAAkACQAJAIAEoAgAOCgABCQIDBAUJBgcJCyABQQRqIQJB+KTAACEDDAgLIAFBCGohAkG0pcAAIQMMBwsgAUEEaiECQfClwAAhAwwGCyABQQRqIQJBrKbAACEDDAULIAFBBGohAkHopsAAIQMMBAsgAUEEagwCCyABQQhqIQJBtKXAACEDDAILIAFBBGoLIQJBqJbAACEDCyAAIAM2AgQgACACNgIAC7cBAQJ/AkACfwJAAkACQAJAAkACQAJAAkAgASgCAA4KAAEJAgMEBQkGBwkLIAFBBGohAkGMyMAAIQMMCAsgAUEIaiECQcjIwAAhAwwHCyABQQRqIQJBhMnAACEDDAYLIAFBBGohAkHAycAAIQMMBQsgAUEEaiECQfzJwAAhAwwECyABQQRqDAILIAFBCGohAkHIyMAAIQMMAgsgAUEEagshAkHUt8AAIQMLIAAgAzYCBCAAIAI2AgALtwEBAn8CQAJ/AkACQAJAAkACQAJAAkACQCABKAIADgoAAQkCAwQFCQYHCQsgAUEEaiECQbjqwAAhAwwICyABQQhqIQJB9OrAACEDDAcLIAFBBGohAkGw68AAIQMMBgsgAUEEaiECQezrwAAhAwwFCyABQQRqIQJBqOzAACEDDAQLIAFBBGoMAgsgAUEIaiECQfTqwAAhAwwCCyABQQRqCyECQeTswAAhAwsgACADNgIEIAAgAjYCAAu3AQECfwJAAn8CQAJAAkACQAJAAkACQAJAIAEoAgAOCgABCQIDBAUJBgcJCyABQQRqIQJBvJDBACEDDAgLIAFBCGohAkH4kMEAIQMMBwsgAUEEaiECQbSRwQAhAwwGCyABQQRqIQJB8JHBACEDDAULIAFBBGohAkGsksEAIQMMBAsgAUEEagwCCyABQQhqIQJB+JDBACEDDAILIAFBBGoLIQJB6JLBACEDCyAAIAM2AgQgACACNgIAC48BAQJ/IwBBEGsiAiQAIAJBBGoiAyABEKcDIAIgADYCDCADIAJBDGpB3PfBABCCASACIABBAWo2AgwgAkEEaiACQQxqQdz3wQAQggEgAiAAQQJqNgIMIAJBBGogAkEMakHc98EAEIIBIAIgAEEDajYCDCACQQRqIAJBDGpB3PfBABCCASADEKADIAJBEGokAAuwAQECfyMAQRBrIgIkAAJ/AkACQAJAAkBBAyAAKAIAQQdrIgMgA0EDTxtBAWsOAwECAwALIAFB6LDAAEEUEOUDDAMLIAFB/LDAAEEdEOUDDAILIAIgAEEEajYCCCABQYyowABBCUGsscAAQQQgAEEMakGcscAAQbCxwABBBiACQQhqQeSewAAQwwEMAQsgAiAANgIMIAFByLHAAEEUIAJBDGpBuLHAABB/CyACQRBqJAALsAEBAn8jAEEQayICJAACfwJAAkACQAJAQQMgACgCAEEHayIDIANBA08bQQFrDgMBAgMACyABQfzTwABBFBDlAwwDCyABQZDUwABBHRDlAwwCCyACIABBBGo2AgggAUGgy8AAQQlBwNTAAEEEIABBDGpBsNTAAEHE1MAAQQYgAkEIakH4wcAAEMMBDAELIAIgADYCDCABQdzUwABBFCACQQxqQczUwAAQfwsgAkEQaiQAC7ABAQJ/IwBBEGsiAiQAAn8CQAJAAkACQEEDIAAoAgBBB2siAyADQQNPG0EBaw4DAQIDAAsgAUHk9sAAQRQQ5QMMAwsgAUH49sAAQR0Q5QMMAgsgAiAAQQRqNgIIIAFBiO7AAEEJQaj3wABBBCAAQQxqQZj3wABBrPfAAEEGIAJBCGpBmNzAABDDAQwBCyACIAA2AgwgAUHE98AAQRQgAkEMakG098AAEH8LIAJBEGokAAuwAQECfyMAQRBrIgIkAAJ/AkACQAJAAkBBAyAAKAIAQQdrIgMgA0EDTxtBAWsOAwECAwALIAFB+JzBAEEUEOUDDAMLIAFBjJ3BAEEdEOUDDAILIAIgAEEEajYCCCABQZyUwQBBCUG8ncEAQQQgAEEMakGsncEAQcCdwQBBBiACQQhqQYyUwQAQwwEMAQsgAiAANgIMIAFB2J3BAEEUIAJBDGpByJ3BABB/CyACQRBqJAALowEBAn8jAEEgayIBJAACQCAAKAIEIgJBA0YgAkECSXINAAJAAkAgAC0AGEEBaw4CAgABCyABQQE2AgggAUH0gsAANgIEIAFCADcCECABIAFBHGo2AgwgAUEEakH4g8AAEKQDAAsgAEEIahCpASAAKAIIIgJFDQAgACgCDCACQQxsQQQQpwQLIAAoAhwiAgRAIAAoAiAgAkEBEKcECyABQSBqJAALkgECA38BfiABKAIAIgUtACUiA0UEQCAAQQI6AAAPCwJ+IAMgAi0AFCIETQRAIAIgBCADayIEOgAUQn8gA62GQn+FIAIpAwggBEE/ca2IgwwBCyACIAMQWwshBiAFKAIIIgMgBqciAksEQCABIAUoAgQgAkEDdGopAgA3AgQgAEEDOgAADwsgAiADQayAwgAQrQIAC5IBAQN/IwBBIGsiAyQAIAMgACgCACIFENwEIgA2AgAgAyACNgIEIAAgAkYEQBDtAyIEENwDIgAgASACENYDIQEgBEGEAU8EQCAEEMYBCyAAQYQBTwRAIAAQxgELIAUgAUEAEKYEIAFBhAFPBEAgARDGAQsgA0EgaiQADwsgA0EANgIIIAMgA0EEaiADQQhqEIwDAAukAQECfyMAQSBrIgEkAAJAIAAoAgRBAkcNAAJAAkAgAC0AGEEBaw4CAgABCyABQQE2AgggAUH0gsAANgIEIAFCADcCECABIAFBHGo2AgwgAUEEakH4g8AAEKQDAAsgAEEIahCpASAAKAIIIgJFDQAgACgCDCACQQxsQQQQpwQLIAAoAhwiAgRAIAAoAiAgAkEBEKcECyAAQShBBBCnBCABQSBqJAALpAEBAn8jAEEgayIBJAACQCAAKAIEQQJHDQACQAJAIAAtABhBAWsOAgIAAQsgAUEBNgIIIAFBtP7AADYCBCABQgA3AhAgASABQRxqNgIMIAFBBGpBuP/AABCkAwALIABBCGoQqQEgACgCCCICRQ0AIAAoAgwgAkEMbEEEEKcECyAAKAIcIgIEQCAAKAIgIAJBARCnBAsgAEEoQQQQpwQgAUEgaiQAC4sBAgJ/AX4CfkIAIAAtAAgiAkUNABogAiABLQAUIgNNBEAgASADIAJrIgM6ABRCfyACrYZCf4UgASkDCCADQT9xrYiDDAELIAEgAhBbCyEEIAAoAgQgBKdqIgEgACgCACICKAIIIgNJBEAgACACKAIEIAFBA3RqKQIANwIEDwsgASADQbyAwgAQrQIAC6MBAQJ/IwBBEGsiAiQAAn8CQAJAAkAgACgCACIAKAIAIgNBAWtBACADQQJPG0EBaw4CAQIACyACIAA2AgggAUGkmcEAQREgAkEIakGUmcEAEH8MAgsgAiAAQQhqNgIMIAFBtZnBAEEZQc6ZwQBBBiAAQQRqQeiFwQBBt43BAEEEIAJBDGpB9IbBABDDAQwBCyABQfyOwQBBChDlAwsgAkEQaiQAC6MBAQJ/IwBBEGsiAiQAAn8CQAJAAkAgACgCACIAKAIAIgNBAWtBACADQQJPG0EBaw4CAQIACyACIAA2AgggAUGA18EAQREgAkEIakHw1sEAEH8MAgsgAiAAQQhqNgIMIAFBkdfBAEEZQarXwQBBBiAAQQRqQfTMwQBBsNfBAEEEIAJBDGpBuM3BABDDAQwBCyABQbTXwQBBChDlAwsgAkEQaiQAC5sBAQJ/IwBBIGsiASQAAkAgACgCBEECRw0AAkACQCAALQAYQQFrDgICAAELIAFBATYCCCABQbT+wAA2AgQgAUIANwIQIAEgAUEcajYCDCABQQRqQbj/wAAQpAMACyAAQQhqEKkBIAAoAggiAkUNACAAKAIMIAJBDGxBBBCnBAsgACgCHCICBEAgACgCICACQQEQpwQLIAFBIGokAAupAQECfyMAQSBrIgEkAAJAAkACQAJAAkBBkOXCAC0AAA4CAAECC0GQ5cIAQQE6AAALIABBATYCAAwBC0GR5cIALQAAIQJBkeXCAEEBOgAAIAEgAjoAByACQQFGDQEgAEEAOgAUIABBADYCAEGR5cIAQQA6AAALIAFBIGokAA8LIAFCADcCFCABQoGAgIDAADcCDCABQbCfwgA2AgggAUEHaiABQQhqEIoDAAuoAQEDfyMAQRBrIgIkAEHencIAIQNBEyEEAkACQAJAAkAgAS0AAEEBaw4DAgABAwsgASgCBCIBKAIEIQQgASgCACEDDAILIAJBCGogASgCBCIBKAIAIAEoAgQoAiARAQAgAigCDCEEIAIoAgghAwwBCyABLQABQQJ0IgFB9KnCAGooAgAhAyABQcyowgBqKAIAIQQLIAAgBDYCBCAAIAM2AgAgAkEQaiQAC5IBAQR/IwBBEGsiAiQAQQEhBAJAIAEoAhwiA0EnIAEoAiAiBSgCECIBEQAADQAgAkEEaiAAKAIAQYECEDkCQCACLQAEQYABRgRAIAMgAigCCCABEQAARQ0BDAILIAMgAi0ADiIAIAJBBGpqIAItAA8gAGsgBSgCDBECAA0BCyADQScgAREAACEECyACQRBqJAAgBAueAQECfyMAQRBrIgIkAAJ/AkACQAJAIAAoAgAiA0EBa0EAIANBAk8bQQFrDgIBAgALIAIgADYCCCABQZStwABBESACQQhqQYStwAAQfwwCCyACIABBCGo2AgwgAUGlrcAAQRlBvq3AAEEGIABBBGpBiJjAAEHzocAAQQQgAkEMakHMmMAAEMMBDAELIAFBuKPAAEEKEOUDCyACQRBqJAALngEBAn8jAEEQayICJAACfwJAAkACQCAAKAIAIgNBAWtBACADQQJPG0EBaw4CAQIACyACIAA2AgggAUGo0MAAQREgAkEIakGY0MAAEH8MAgsgAiAAQQhqNgIMIAFBudDAAEEZQdLQwABBBiAAQQRqQZy7wABBh8XAAEEEIAJBDGpB4LvAABDDAQwBCyABQczGwABBChDlAwsgAkEQaiQAC54BAQJ/IwBBEGsiAiQAAn8CQAJAAkAgACgCACIDQQFrQQAgA0ECTxtBAWsOAgECAAsgAiAANgIIIAFBkPPAAEERIAJBCGpBgPPAABB/DAILIAIgAEEIajYCDCABQaHzwABBGUG688AAQQYgAEEEakGM3sAAQbDnwABBBCACQQxqQfjcwAAQwwEMAQsgAUH46MAAQQoQ5QMLIAJBEGokAAueAQECfyMAQRBrIgIkAAJ/AkACQAJAIAAoAgAiA0EBa0EAIANBAk8bQQFrDgIBAgALIAIgADYCCCABQaSZwQBBESACQQhqQZSZwQAQfwwCCyACIABBCGo2AgwgAUG1mcEAQRlBzpnBAEEGIABBBGpB6IXBAEG3jcEAQQQgAkEMakH0hsEAEMMBDAELIAFB/I7BAEEKEOUDCyACQRBqJAALmwEBAX8jAEEQayICJAACfwJAAkACQCAAKAIAIgAtAABBAWsOAgECAAsgAiAAQQFqNgIEIAFB5JjBAEELQdSHwQBBAyACQQRqQdSYwQAQyQEMAgsgAiAAQQRqNgIIIAFB8IvBAEENIAJBCGpB4IvBABB/DAELIAIgAEEEajYCDCABQYCZwQBBESACQQxqQfCYwQAQfwsgAkEQaiQAC5sBAQF/IwBBEGsiAiQAAn8CQAJAAkAgACgCACIALQAAQQFrDgIBAgALIAIgAEEBajYCBCABQeTTwQBBC0GLzsEAQQMgAkEEakHU08EAEMkBDAILIAIgAEEEajYCCCABQYDUwQBBDSACQQhqQfDTwQAQfwwBCyACIABBBGo2AgwgAUGg1MEAQREgAkEMakGQ1MEAEH8LIAJBEGokAAuEAQEDfwJ/AkAgACgCACIBRQ0AA0ACQCAAKAIIIgMgACgCBE8NACABIANqLQAAQcUARw0AIAAgA0EBajYCCAwCCwJAIAJFDQAgACgCECIBRQ0AQfW5wgBBAiABENUERQ0AQQEPC0EBIABBARAgDQIaIAJBAWshAiAAKAIAIgENAAsLQQALC5YBAQJ/IwBBIGsiASQAAkAgACgCBEECRw0AAkACQCAALQAYQQFrDgICAAELIAFBATYCCCABQbT+wAA2AgQgAUIANwIQIAEgAUEcajYCDCABQQRqQbj/wAAQpAMACyAAQQhqEKkBIAAoAggiAkUNACAAKAIMIAJBDGxBBBCnBAsgAEEgahBUIABBwABBCBCnBCABQSBqJAALiAEBAX8jAEEwayICJAACfyAALQAAQQJHBEAgAiAANgIMIAJBATYCFCACQfCnwQA2AhAgAkIBNwIcIAIgAkEMaq1CgICAgJA4hDcDKCACIAJBKGo2AhggASgCHCABKAIgIAJBEGoQRQwBCyABKAIcQdTFwQBBJCABKAIgKAIMEQIACyACQTBqJAALdwEDfyMAQYABayIDJAAgAC0AACEEQQAhAANAIAAgA2pB/wBqIARBD3EiAkEwciACQTdqIAJBCkkbOgAAIABBAWshACAEIgJBBHYhBCACQQ9LDQALIAFBAUGPxMIAQQIgACADakGAAWpBACAAaxA1IANBgAFqJAALeAEDfyMAQYABayIDJAAgAC0AACEEQQAhAANAIAAgA2pB/wBqIARBD3EiAkEwciACQdcAaiACQQpJGzoAACAAQQFrIQAgBCICQQR2IQQgAkEPSw0ACyABQQFBj8TCAEECIAAgA2pBgAFqQQAgAGsQNSADQYABaiQAC3kCAX4CfyMAQYABayIEJAAgACkDACECQQAhAANAIAAgBGpB/wBqIAKnQQ9xIgNBMHIgA0HXAGogA0EKSRs6AAAgAEEBayEAIAJCD1YgAkIEiCECDQALIAFBAUGPxMIAQQIgACAEakGAAWpBACAAaxA1IARBgAFqJAALlgEBAX8jAEEQayICJAACfwJAAkACQCAALQAAQQFrDgIBAgALIAIgAEEBajYCBCABQdSswABBC0GsmcAAQQMgAkEEakHErMAAEMkBDAILIAIgAEEEajYCCCABQaygwABBDSACQQhqQZygwAAQfwwBCyACIABBBGo2AgwgAUHwrMAAQREgAkEMakHgrMAAEH8LIAJBEGokAAuWAQEBfyMAQRBrIgIkAAJ/AkACQAJAIAAtAABBAWsOAgECAAsgAiAAQQFqNgIEIAFB6M/AAEELQcC8wABBAyACQQRqQdjPwAAQyQEMAgsgAiAAQQRqNgIIIAFBwMPAAEENIAJBCGpBsMPAABB/DAELIAIgAEEEajYCDCABQYTQwABBESACQQxqQfTPwAAQfwsgAkEQaiQAC5YBAQF/IwBBEGsiAiQAAn8CQAJAAkAgAC0AAEEBaw4CAQIACyACIABBAWo2AgQgAUHQ8sAAQQtBkN/AAEEDIAJBBGpBwPLAABDJAQwCCyACIABBBGo2AgggAUH85cAAQQ0gAkEIakHs5cAAEH8MAQsgAiAAQQRqNgIMIAFB7PLAAEERIAJBDGpB3PLAABB/CyACQRBqJAALlgEBAX8jAEEQayICJAACfwJAAkACQCAALQAAQQFrDgIBAgALIAIgAEEBajYCBCABQeSYwQBBC0HUh8EAQQMgAkEEakHUmMEAEMkBDAILIAIgAEEEajYCCCABQfCLwQBBDSACQQhqQeCLwQAQfwwBCyACIABBBGo2AgwgAUGAmcEAQREgAkEMakHwmMEAEH8LIAJBEGokAAtyAQN/IwBBgAFrIgQkACAAKAIAIQADQCACIARqQf8AaiAAQQ9xIgNBMHIgA0HXAGogA0EKSRs6AAAgAkEBayECIABBD0sgAEEEdiEADQALIAFBAUGPxMIAQQIgAiAEakGAAWpBACACaxA1IARBgAFqJAALcQEDfyMAQYABayIEJAAgACgCACEAA0AgAiAEakH/AGogAEEPcSIDQTByIANBN2ogA0EKSRs6AAAgAkEBayECIABBD0sgAEEEdiEADQALIAFBAUGPxMIAQQIgAiAEakGAAWpBACACaxA1IARBgAFqJAALdwECfyMAQRBrIgIkACAAKAIAIgBBCGooAgAhAyAAQQRqKAIAIQAgAkEEaiABEKcDIAMEQCADQQJ0IQEDQCACIAA2AgwgAkEEaiACQQxqQejawAAQggEgAEEEaiEAIAFBBGsiAQ0ACwsgAkEEahCgAyACQRBqJAALmAEBAn8jAEEQayICJAAgACgCACIAQQRqIQMCfyAALQAARQRAIAIgAEEBajYCCCABQdCGwQBBC0HbhsEAQRIgA0HohcEAQe2GwQBBBSACQQhqQcCGwQAQwwEMAQsgAiAAQQhqNgIMIAFBhIfBAEEWQZqHwQBBCSADQeiFwQBBo4fBAEEJIAJBDGpB9IbBABDDAQsgAkEQaiQAC5kBAQN/IwBBEGsiAiQAIAAoAgAiAEEIaiEDIABBBGohBAJ/IAAoAgBFBEAgAiADNgIIIAFBiIvBAEEaQdSHwQBBAyAEQeiFwQBBoovBAEEEIAJBCGpB9IbBABDDAQwBCyACIAM2AgwgAUGmi8EAQQxBsovBAEEGIARB6IXBAEG4i8EAQQcgAkEMakH0hsEAEMMBCyACQRBqJAALmAEBAn8jAEEQayICJAAgACgCACIAQQRqIQMCfyAALQAARQRAIAIgAEEBajYCCCABQZTNwQBBC0GfzcEAQRIgA0H0zMEAQbHNwQBBBSACQQhqQYTNwQAQwwEMAQsgAiAAQQhqNgIMIAFByM3BAEEWQd7NwQBBCSADQfTMwQBB583BAEEJIAJBDGpBuM3BABDDAQsgAkEQaiQAC5kBAQN/IwBBEGsiAiQAIAAoAgAiAEEIaiEDIABBBGohBAJ/IAAoAgBFBEAgAiADNgIIIAFBndPBAEEaQYvOwQBBAyAEQfTMwQBBt9PBAEEEIAJBCGpBuM3BABDDAQwBCyACIAM2AgwgAUG708EAQQxBx9PBAEEGIARB9MzBAEHN08EAQQcgAkEMakG4zcEAEMMBCyACQRBqJAALdwECfyMAQRBrIgIkACAAKAIAIgBBCGooAgAhAyAAQQRqKAIAIQAgAkEEaiABEKcDIAMEQCADQQJ0IQEDQCACIAA2AgwgAkEEaiACQQxqQez3wQAQggEgAEEEaiEAIAFBBGsiAQ0ACwsgAkEEahCgAyACQRBqJAALewEBfyMAQTBrIgIkACACIABBBGo2AgAgAiAANgIEIAJBAzYCDCACQZzDwQA2AgggAkICNwIUIAIgAkEEaq1CgICAgPA1hDcDKCACIAKtQoCAgIDgNIQ3AyAgAiACQSBqNgIQIAEoAhwgASgCICACQQhqEEUgAkEwaiQAC3oBAX8jAEEgayICJAACfyAAKAIAQYCAgIB4RwRAIAEgACgCBCAAKAIIEOUDDAELIAJBEGogACgCDCgCACIAQQhqKQIANwMAIAJBGGogAEEQaikCADcDACACIAApAgA3AwggASgCHCABKAIgIAJBCGoQRQsgAkEgaiQAC44BAQJ/IwBBIGsiAyQAAkAgACgCBEECRw0AAkACQCAALQAYQQFrDgICAAELIANBATYCCCADQfSCwAA2AgQgA0IANwIQIAMgA0EcajYCDCADQQRqQfiDwAAQpAMACyAAQQhqEKkBIAAoAggiBEUNACAAKAIMIARBDGxBBBCnBAsgAEEoQQQQpwQgA0EgaiQAC44BAQJ/IwBBIGsiASQAAkAgACgCBEECRw0AAkACQCAALQAYQQFrDgICAAELIAFBATYCCCABQbT+wAA2AgQgAUIANwIQIAEgAUEcajYCDCABQQRqQbj/wAAQpAMACyAAQQhqEKkBIAAoAggiAkUNACAAKAIMIAJBDGxBBBCnBAsgAEEkQQQQpwQgAUEgaiQAC44BAQJ/IwBBIGsiAyQAAkAgACgCBEECRw0AAkACQCAALQAYQQFrDgICAAELIANBATYCCCADQbT+wAA2AgQgA0IANwIQIAMgA0EcajYCDCADQQRqQbj/wAAQpAMACyAAQQhqEKkBIAAoAggiBEUNACAAKAIMIARBDGxBBBCnBAsgAEEkQQQQpwQgA0EgaiQAC48BAQJ/IwBBIGsiAyQAAkAgACgCBEECRw0AAkACQCAALQAYQQFrDgICAAELIANBATYCCCADQbT+wAA2AgQgA0IANwIQIAMgA0EcajYCDCADQQRqQbj/wAAQpAMACyAAQQhqEKkBIAAoAggiBEUNACAAKAIMIARBDGxBBBCnBAsgAEHAAEEIEKcEIANBIGokAAuOAQECfyMAQSBrIgMkAAJAIAAoAgRBAkcNAAJAAkAgAC0AGEEBaw4CAgABCyADQQE2AgggA0G0/sAANgIEIANCADcCECADIANBHGo2AgwgA0EEakG4/8AAEKQDAAsgAEEIahCpASAAKAIIIgRFDQAgACgCDCAEQQxsQQQQpwQLIABBKEEEEKcEIANBIGokAAuTAQECfyMAQRBrIgIkACAAQQRqIQMCfyAALQAARQRAIAIgAEEBajYCCCABQaiYwABBC0GzmMAAQRIgA0GImMAAQcWYwABBBSACQQhqQZiYwAAQwwEMAQsgAiAAQQhqNgIMIAFB3JjAAEEWQfKYwABBCSADQYiYwABB+5jAAEEJIAJBDGpBzJjAABDDAQsgAkEQaiQAC5QBAQN/IwBBEGsiAiQAIABBCGohAyAAQQRqIQQCfyAAKAIARQRAIAIgAzYCCCABQeCcwABBGkGsmcAAQQMgBEGImMAAQfqcwABBBCACQQhqQcyYwAAQwwEMAQsgAiADNgIMIAFB/pzAAEEMQYqdwABBBiAEQYiYwABBkJ3AAEEHIAJBDGpBzJjAABDDAQsgAkEQaiQAC4wBAQJ/IwBBIGsiASQAAkAgACgCBEECRw0AAkACQCAALQAYQQFrDgICAAELIAFBATYCCCABQbT+wAA2AgQgAUIANwIQIAEgAUEcajYCDCABQQRqQbj/wAAQpAMACyAAQQhqEKkBIAAoAggiAkUNACAAKAIMIAJBDGxBBBCnBAsgAEEgahBUIAFBIGokAAuTAQECfyMAQRBrIgIkACAAQQRqIQMCfyAALQAARQRAIAIgAEEBajYCCCABQby7wABBC0HHu8AAQRIgA0Gcu8AAQdm7wABBBSACQQhqQay7wAAQwwEMAQsgAiAAQQhqNgIMIAFB8LvAAEEWQYa8wABBCSADQZy7wABBj7zAAEEJIAJBDGpB4LvAABDDAQsgAkEQaiQAC5QBAQN/IwBBEGsiAiQAIABBCGohAyAAQQRqIQQCfyAAKAIARQRAIAIgAzYCCCABQfS/wABBGkHAvMAAQQMgBEGcu8AAQY7AwABBBCACQQhqQeC7wAAQwwEMAQsgAiADNgIMIAFBksDAAEEMQZ7AwABBBiAEQZy7wABBpMDAAEEHIAJBDGpB4LvAABDDAQsgAkEQaiQAC5MBAQJ/IwBBEGsiAiQAIABBBGohAwJ/IAAtAABFBEAgAiAAQQFqNgIIIAFBnN7AAEELQafewABBEiADQYzewABBud7AAEEFIAJBCGpB+NrAABDDAQwBCyACIABBCGo2AgwgAUG+3sAAQRZB1N7AAEEJIANBjN7AAEHd3sAAQQkgAkEMakH43MAAEMMBCyACQRBqJAALlAEBA38jAEEQayICJAAgAEEIaiEDIABBBGohBAJ/IAAoAgBFBEAgAiADNgIIIAFBxOLAAEEaQZDfwABBAyAEQYzewABB3uLAAEEEIAJBCGpB+NzAABDDAQwBCyACIAM2AgwgAUHi4sAAQQxB7uLAAEEGIARBjN7AAEH04sAAQQcgAkEMakH43MAAEMMBCyACQRBqJAALkwEBAn8jAEEQayICJAAgAEEEaiEDAn8gAC0AAEUEQCACIABBAWo2AgggAUHQhsEAQQtB24bBAEESIANB6IXBAEHthsEAQQUgAkEIakHAhsEAEMMBDAELIAIgAEEIajYCDCABQYSHwQBBFkGah8EAQQkgA0HohcEAQaOHwQBBCSACQQxqQfSGwQAQwwELIAJBEGokAAuUAQEDfyMAQRBrIgIkACAAQQhqIQMgAEEEaiEEAn8gACgCAEUEQCACIAM2AgggAUGIi8EAQRpB1IfBAEEDIARB6IXBAEGii8EAQQQgAkEIakH0hsEAEMMBDAELIAIgAzYCDCABQaaLwQBBDEGyi8EAQQYgBEHohcEAQbiLwQBBByACQQxqQfSGwQAQwwELIAJBEGokAAtJAQN+IAAgAUL/////D4MiAkI+fiIDQgAiAiABQiCIQj5+fCIBQiCGfCIENwMAIAAgAyAEVq0gASACVK1CIIYgAUIgiIR8NwMIC5YBAQJ/AkACQAJAAkACQAJAAkAgASgCAEEBaw4GBgECAwQFAAsgAUEEaiECQaiWwAAhAwwFCyABQQRqIQJBzK7AACEDDAQLIAFBBGohAkGIr8AAIQMMAwsgAUEEaiECQcSvwAAhAwwCCyABQQRqIQJBgLDAACEDDAELIAFBBGohAkG8sMAAIQMLIAAgAzYCBCAAIAI2AgALlgEBAn8CQAJAAkACQAJAAkACQCABKAIAQQFrDgYGAQIDBAUACyABQQRqIQJB1LfAACEDDAULIAFBBGohAkHg0cAAIQMMBAsgAUEEaiECQZzSwAAhAwwDCyABQQRqIQJB2NLAACEDDAILIAFBBGohAkGU08AAIQMMAQsgAUEEaiECQdDTwAAhAwsgACADNgIEIAAgAjYCAAuWAQECfwJAAkACQAJAAkACQAJAIAEoAgBBAWsOBgYBAgMEBQALIAFBBGohAkHk7MAAIQMMBQsgAUEEaiECQcj0wAAhAwwECyABQQRqIQJBhPXAACEDDAMLIAFBBGohAkHA9cAAIQMMAgsgAUEEaiECQfz1wAAhAwwBCyABQQRqIQJBuPbAACEDCyAAIAM2AgQgACACNgIAC5YBAQJ/AkACQAJAAkACQAJAAkAgASgCAEEBaw4GBgECAwQFAAsgAUEEaiECQeiSwQAhAwwFCyABQQRqIQJB3JrBACEDDAQLIAFBBGohAkGYm8EAIQMMAwsgAUEEaiECQdSbwQAhAwwCCyABQQRqIQJBkJzBACEDDAELIAFBBGohAkHMnMEAIQMLIAAgAzYCBCAAIAI2AgALfgEBfyMAQUBqIgUkACAFIAE2AgwgBSAANgIIIAUgAzYCFCAFIAI2AhAgBUECNgIcIAVB0MPCADYCGCAFQgI3AiQgBSAFQRBqrUKAgICAgMQAhDcDOCAFIAVBCGqtQoCAgICQxACENwMwIAUgBUEwajYCICAFQRhqIAQQpAMAC28BAX8jAEEwayICJAAgAiAAKAIANgIEIAJBAjYCDCACQbivwQA2AgggAkICNwIUIAIgAkEEaq1CgICAgIA2hDcDKCACQvSuwYAQNwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFIAJBMGokAAt8AQN/AkACQAJAQQMgACgCAEEHayIBIAFBA08bQQJrDgIBAAILIAAQpAEMAQsgAC0ABEEDRw0AIAAoAggiACgCACEBIABBBGooAgAiAygCACICBEAgASACEQMACyADKAIEIgIEQCABIAIgAygCCBCnBAsgAEEMQQQQpwQLC4UBAQJ/IwBBIGsiASQAAkAgACgCBEECRw0AAkACQCAALQAYQQFrDgICAAELIAFBATYCCCABQbT+wAA2AgQgAUIANwIQIAEgAUEcajYCDCABQQRqQbj/wAAQpAMACyAAQQhqEKkBIAAoAggiAkUNACAAKAIMIAJBDGxBBBCnBAsgAUEgaiQAC2wBAX8jAEEwayICJAAgAiAANgIEIAJBAjYCDCACQbivwQA2AgggAkICNwIUIAIgAkEEaq1CgICAgIA2hDcDKCACQvSuwYAQNwMgIAIgAkEgajYCECABKAIcIAEoAiAgAkEIahBFIAJBMGokAAt4AQN/AkAgACgCACIBQYCAgIB4RwRAIAFFDQEgACgCBCABQQEQpwQPCyAALQAEQQNHDQAgACgCCCIAKAIAIQEgAEEEaigCACIDKAIAIgIEQCABIAIRAwALIAMoAgQiAgRAIAEgAiADKAIIEKcECyAAQQxBBBCnBAsLcwECfwJAAn8CQAJAAkACQAJAAkAgAS0AAA4HAAcBAgMEBQcLIAFBBGoMBQsgAUEEagwECyABQQFqIQJB8KLAACEDDAQLIAFBBGoMAgsgAUEEagwBCyABQQRqCyECQaiWwAAhAwsgACADNgIEIAAgAjYCAAtzAQJ/AkACfwJAAkACQAJAAkACQCABLQAADgcABwECAwQFBwsgAUEEagwFCyABQQRqDAQLIAFBAWohAkGExsAAIQMMBAsgAUEEagwCCyABQQRqDAELIAFBBGoLIQJB1LfAACEDCyAAIAM2AgQgACACNgIAC3MBAn8CQAJ/AkACQAJAAkACQAJAIAEtAAAOBwAHAQIDBAUHCyABQQRqDAULIAFBBGoMBAsgAUEBaiECQbDowAAhAwwECyABQQRqDAILIAFBBGoMAQsgAUEEagshAkHk7MAAIQMLIAAgAzYCBCAAIAI2AgALcwECfwJAAn8CQAJAAkACQAJAAkAgAS0AAA4HAAcBAgMEBQcLIAFBBGoMBQsgAUEEagwECyABQQFqIQJBtI7BACEDDAQLIAFBBGoMAgsgAUEEagwBCyABQQRqCyECQeiSwQAhAwsgACADNgIEIAAgAjYCAAtlAQJ/IwBBEGsiAiQAIAAoAgQhAyAAKAIAIQAgAkEEaiABEKcDIAMEQANAIAIgADYCDCACQQRqIAJBDGpB8K3CABCCASAAQQFqIQAgA0EBayIDDQALCyACQQRqEKADIAJBEGokAAvxAQEEfyMAQRBrIgMkACAAKAIMIQICfwJAAkACQAJAIAAoAgQOAgABAgsgAg0BQQFBABCfAwwDCyACRQ0BCyADQQRqIgIgABBoIwBBIGsiBCQAIARBCGoiABDwAQJ/QYXlwgAtAAAaQShBBBD1AyIBBEAgAUGAu8AANgIAIAEgACkCADcCBCABIAIpAgA3AhwgAUEMaiAAQQhqKQIANwIAIAFBFGogAEEQaikCADcCACABQSRqIAJBCGooAgA2AgAgAQwBC0EEQSgQ0wQACyAEQSBqJAAMAQsgACgCACIAKAIAIAAoAgQQnwMLIANBEGokAAt8AQJ/AkACQAJAAkAgAC0AAA4CAwEACyAAKAIEIgFB+////wdqIgJBDU0gAkECR3ENAiABQYSAgIB4Sg0BIAFBg4CAgHhHDQIMAQsgACgCBCIBQYSAgIB4Sg0AIAFBg4CAgHhHDQELIAFFDQAgACgCCCABQQJ0QQQQpwQLC2kCAX8BfiMAQTBrIgMkACADIAE2AgQgAyAANgIAIANBAjYCDCADQZzCwgA2AgggA0ICNwIUIANCgICAgBAiBCADrYQ3AyggAyAEIANBBGqthDcDICADIANBIGo2AhAgA0EIaiACEKQDAAttAQF/IAAtAAQhASAALQAFBEAgAAJ/QQEgAUEBcQ0AGiAAKAIAIgEtABRBBHFFBEAgASgCHEGHxMIAQQIgASgCICgCDBECAAwBCyABKAIcQYbEwgBBASABKAIgKAIMEQIACyIBOgAECyABQQFxC2QBAX8jAEEwayICJAAgAiAAKAIANgIMIAJBAjYCFCACQeSuwQA2AhAgAkIBNwIcIAIgAkEMaq1CgICAgOA0hDcDKCACIAJBKGo2AhggASgCHCABKAIgIAJBEGoQRSACQTBqJAALWgECfyAAKAIILQBkIgJFBEAgAEIANwMADwsgAiABLQAUIgNNBEAgASADIAJrIgM6ABQgAEJ/IAKthkJ/hSABKQMIIANBP3GtiIM3AwAPCyAAIAEgAhBbNwMAC2QBAX8jAEEQayIAJAACfyACKAIABEBB3KDCACEDQQkMAQsgAEEEaiACKAIEIAIoAggQPUHcoMIAIAAoAgggACgCBCICGyEDQQkgACgCDCACGwshAiADIAIgARDaASAAQRBqJAALZgAjAEEwayIAJABBhOXCAC0AAARAIABBAjYCDCAAQYyhwgA2AgggAEIBNwIUIAAgATYCLCAAIABBLGqtQoCAgIAQhDcDICAAIABBIGo2AhAgAEEIakG0ocIAEKQDAAsgAEEwaiQAC2EBAX8jAEEwayICJAAgAiAANgIMIAJBAjYCFCACQZymwQA2AhAgAkIBNwIcIAIgAkEMaq1CgICAgOA0hDcDKCACIAJBKGo2AhggASgCHCABKAIgIAJBEGoQRSACQTBqJAALYQEBfyMAQTBrIgIkACACIAA2AgwgAkECNgIUIAJB5K7BADYCECACQgE3AhwgAiACQQxqrUKAgICA4DSENwMoIAIgAkEoajYCGCABKAIcIAEoAiAgAkEQahBFIAJBMGokAAthAQF/IwBBMGsiAiQAIAIgADYCDCACQQE2AhQgAkHwp8EANgIQIAJCATcCHCACIAJBDGqtQoCAgICQOIQ3AyggAiACQShqNgIYIAEoAhwgASgCICACQRBqEEUgAkEwaiQAC18BAn8CQCAAKAIAIgFB7f///wdqIgJBCk0gAkEDR3ENACABRSABQfv///8HaiICQQ1NIAJBAkdxIAFBg4CAgHhHIAFBhICAgHhMcXJyDQAgACgCBCABQQJ0QQQQpwQLC1wBA38gAC0AACIBQQNLIAFBA0dyRQRAIAAoAgQiACgCACEBIABBBGooAgAiAygCACICBEAgASACEQMACyADKAIEIgIEQCABIAIgAygCCBCnBAsgAEEMQQQQpwQLC2sBAn9BqJbAACECAkACQAJAAkAgAS0AACIDQQNrQQAgA0EEa0H/AXFBA0kbQQFrDgMAAQIDC0EAIQEMAgsgAUEBaiEBQdStwAAhAgwBCyABQQRqIQFBkK7AACECCyAAIAI2AgQgACABNgIAC2gBA38CQAJAAkACQEEDIAEoAgBB7f///wdqIgQgBEELTxtBAmsOAwABAgMLIAFBBGohAkGcm8AAIQMMAgtB2LPAACEDIAEhAgwBCyABQQRqIQJBjLXAACEDCyAAIAM2AgQgACACNgIAC2sBAn9B1LfAACECAkACQAJAAkAgAS0AACIDQQNrQQAgA0EEa0H/AXFBA0kbQQFrDgMAAQIDC0EAIQEMAgsgAUEBaiEBQejQwAAhAgwBCyABQQRqIQFBpNHAACECCyAAIAI2AgQgACABNgIAC2gBA38CQAJAAkACQEEDIAEoAgBB7f///wdqIgQgBEELTxtBAmsOAwABAgMLIAFBBGohAkGwvsAAIQMMAgtB7NbAACEDIAEhAgwBCyABQQRqIQJBoNjAACEDCyAAIAM2AgQgACACNgIAC2sBAn9B5OzAACECAkACQAJAAkAgAS0AACIDQQNrQQAgA0EEa0H/AXFBA0kbQQFrDgMAAQIDC0EAIQEMAgsgAUEBaiEBQdDzwAAhAgwBCyABQQRqIQFBjPTAACECCyAAIAI2AgQgACABNgIAC2gBA38CQAJAAkACQEEDIAEoAgBB7f///wdqIgQgBEELTxtBAmsOAwABAgMLIAFBBGohAkGA4cAAIQMMAgtB1PnAACEDIAEhAgwBCyABQQRqIQJBiPvAACEDCyAAIAM2AgQgACACNgIAC2sBAn9B6JLBACECAkACQAJAAkAgAS0AACIDQQNrQQAgA0EEa0H/AXFBA0kbQQFrDgMAAQIDC0EAIQEMAgsgAUEBaiEBQeSZwQAhAgwBCyABQQRqIQFBoJrBACECCyAAIAI2AgQgACABNgIAC2gBA38CQAJAAkACQEEDIAEoAgBB7f///wdqIgQgBEELTxtBAmsOAwABAgMLIAFBBGohAkHEicEAIQMMAgtB6J/BACEDIAEhAgwBCyABQQRqIQJBnKHBACEDCyAAIAM2AgQgACACNgIAC1gBAn8jAEEQayICJAAgAS0AAEEDRwR/QQAFIAJBCGogASgCBCIBKAIAIAEoAgQoAiQRAQAgAigCDCEDIAIoAggLIQEgACADNgIEIAAgATYCACACQRBqJAALWAECfyMAQRBrIgIkACABLQAAQQNHBH9BAAUgAkEIaiABKAIEIgEoAgAgASgCBCgCGBEBACACKAIMIQMgAigCCAshASAAIAM2AgQgACABNgIAIAJBEGokAAueGQITfwF+IwBBIGsiDiQAAn8gACgCACIAKAIABEACfyABIQsjAEEwayIIJAAgACgCCCERIAAoAgQhCSAAKAIAIQ0CQAJAAkACQANAAkAgESAQIgpGBEBBACEADAELIAlFDQUgCiARRyESIApBAWohECAJQQFrIQUgDSIBLQAAIQZBACECAkACQANAAkAgBsBBAEgEQCAGQR9xIQAgASACaiIDQQFqLQAAQT9xIQQgBkH/AXEiDUHfAU0EQCAAQQZ0IARyIQMMAgsgA0ECai0AAEE/cSAEQQZ0ciEEIA1B8AFJBEAgBCAAQQx0ciEDDAILIABBEnRBgIDwAHEgA0EDai0AAEE/cSAEQQZ0cnIiA0GAgMQARw0BDAoLIAZB/wFxIQMLAkACQCADQTBrQQlNBEAgAiAFRg0LIAEgAmoiAEEBaiwAACIGQb9/Sg0BIAAgCSACayIAQQEgAEG8ssIAEOwDAAsgAg0BQQAhBAwDCyACQQFqIQIMAQsLAkAgASACaiIHLAAAQb9/SgRAIAEtAAAhAAJAIAJBAUYEQEEBIQQgASEDIABBK2sOAwQBBAELIABBK0YEQCACQQFrIQQgAUEBaiEDIAJBCkkNAQwDCyABIQMgAiEEIAJBCU8NAgtBACEFA0AgAy0AAEEwayIAQQlLBEBBASEEDAQLIANBAWohAyAAIAVBCmxqIQUgBEEBayIEDQALDAMLIAEgCUEAIAJBzLLCABDsAwALQQAhBSAEIQADQCAARQ0CIAMtAABBMGsiDUEJSwRAQQEhBAwCC0ECIQQgBa1CCn4iFUIgiKcNASADQQFqIQMgAEEBayEAIA0gFaciDGoiBSAMTw0ACwsgCCAEOgAUQYCwwgBBKyAIQRRqQbC0wgBBwLTCABCgAgALIAkgBWshDAJAAkACQAJAIAVFDQAgCSACayIAIAVNBEAgAiAMRg0BDAkLIAEgBWogAmoiAywAAEG/f0wNCCADLAAAQb9/TA0BCyABIAVqIAJqIQ0gECARRw0CIAVFIAsoAhRBBHFFIAZB/wFxQegAR3JyDQIgBUEBRwRAIAdBAWosAABBv39MDQILIAdBAWohBgNAQQAhACAGIA1GDQQCfyAGLAAAIgNBAE4EQCADQf8BcSEDIAZBAWoMAQsgBi0AAUE/cSEJIANBH3EhBCADQV9NBEAgBEEGdCAJciEDIAZBAmoMAQsgBi0AAkE/cSAJQQZ0ciEJIANBcEkEQCAJIARBDHRyIQMgBkEDagwBCyAEQRJ0QYCA8ABxIAYtAANBP3EgCUEGdHJyIgNBgIDEAEYNBSAGQQRqCyEGIANBwQBrQV5xQQpqIANBMGsgA0E5SxtBEEkNAAsMAgsgByAAQQAgBUHsssIAEOwDAAsgByAFQQEgBUGcssIAEOwDAAsCQCAKRQ0AIAtB/LLCAEECEOUDRQ0AIBIhAAwBCyABIAJqIQoCQAJAAkAgBUECSQ0AIAovAABB38gARw0AIAdBAWoiCiwAAEG/f0wNASAFQQFrIQULIAwgAmshCQNAIAohAQJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQCAFIgRFDQACQCABLQAAQSRrDgsCAQEBAQEBAQEBAAELIARBAUYNBSABLAABQb9/Sg0EIAEgBEEBIARB/LPCABDsAwALIAEgBGohCkEAIQIgASEGA0AgAiEAIAYiAiAKRg0RAn8gAiwAACIDQQBOBEAgA0H/AXEhBSACQQFqDAELIAItAAFBP3EhBSADQR9xIQYgA0FfTQRAIAZBBnQgBXIhBSACQQJqDAELIAItAAJBP3EgBUEGdHIhBSADQXBJBEAgBSAGQQx0ciEFIAJBA2oMAQsgBkESdEGAgPAAcSACLQADQT9xIAVBBnRyciEFIAJBBGoLIgYgACACa2ohAiAFQSRrDgsCAAAAAAAAAAAAAgALAAsgBEEBRg0BIAEsAAFBv39KDQEgASAEQQEgBEGws8IAEOwDAAsCQAJAAkAgAARAAkAgACAESSICRQRAIAAgBEcNASALIAEgABDlA0UNBEEBIQAMFQsgACABaiwAAEG/f0oNAgsgASAEQQAgAEGQs8IAEOwDAAsgCyABIAAQ5QNFDQJBASEADBILIAsgASAAEOUDRQ0AQQEhAAwRCyACRQRAIAAgBEYNAQwUCyAAIAFqLAAAQUBIDRMLIAAgAWohCiAEIABrIQUMDAsgCCAEQQFrIgA2AiQgCEEANgIgIAggADYCHCAIQSQ2AhQgCEEkNgIoIAhBAToALCAIIAFBAWoiADYCGCAIQQhqIAhBFGoQUCAIKAIIQQFHDQ0CQCAIKAIMIgdBf0cEQCAHQQFqIQIgBEEBRw0BDAULIwBBIGsiACQAIABBADYCGCAAQQE2AgwgAEG8x8IANgIIIABCBDcCECAAQQhqQcCzwgAQpAMACyAALAAAQb9/Sg0DDAQLAkACfyABLAABIgBBAE4EQCAAQf8BcQwBCyABLQACQT9xIgMgAEEfcSICQQZ0ciAAQV9NDQAaIAEtAANBP3EgA0EGdHIiAyACQQx0ciAAQXBJDQAaIAJBEnRBgIDwAHEgAS0ABEE/cSADQQZ0cnILQS5HBEBBASEAIAtBnLTCAEEBEOUDDQ8gASwAAUFASA0BDAMLIAtB/LLCAEECEOUDBEBBASEADA8LAkAgBEEDTwRAIAEsAAJBQEgNAQsgAUECaiEKIARBAmshBQwMCyABIARBAiAEQYy0wgAQ7AMACyABIARBASAEQaC0wgAQ7AMAC0EBIQAgC0GctMIAQQEQ5QMNDAsgAUEBaiEKIARBAWshBQwICwJAIAIgBE8EQCACIARHDQIgB0ECaiICDQEMBgsgASACaiwAAEFASA0BIAdBAmohAgsgAiAESQ0BIAIgBEYNAgwDCyABIARBASACQcCzwgAQ7AMACyABIAJqLAAAQUBIDQELIAEgAmohCiAEIAJrIQUCQAJAAkACQCAHDgMKAQAFCyAALwAAQdOgAUYEQEH7s8IAIQIMAwsgAC8AAEHCoAFGBEBB+rPCACECDAMLIAAvAABB0owBRgRAQfmzwgAhAgwDCyAALwAAQcyoAUYEQEH4s8IAIQIMAwsgAC8AAEHHqAFGBEBB97PCACECDAMLIAAvAABBzKABRgRAQfazwgAhAgwDCyAALwAAQdKgAUcNAUH1s8IAIQIMAgsgAC0AAEHDAEYEQEH0s8IAIQIMAgsgAC0AAEH1AEYNBQwICyAALQAAQfUARw0HDAMLQQEhACALIAJBARDlA0UNBAwHCyABIAQgAiAEQdCzwgAQ7AMACyABLQABQfUARw0EIAdBAk8NAEEBIQcMBwsgASwAAkG/f0wNBgsgACAHaiEUIAdBAWshACABQQJqIgYhAgJAA0BBASETIAIgFEYNAQJ/IAIsAAAiA0EATgRAIANB/wFxIQMgAkEBagwBCyACLQABQT9xIQ8gA0EfcSEMIANBX00EQCAMQQZ0IA9yIQMgAkECagwBCyACLQACQT9xIA9BBnRyIQ8gA0FwSQRAIA8gDEEMdHIhAyACQQNqDAELIAxBEnRBgIDwAHEgAi0AA0E/cSAPQQZ0cnIiA0GAgMQARg0CIAJBBGoLIQIgA0Ewa0EKSSADQeEAa0EGSXINAAtBACETCwJAAkACQAJAIAdBAWsOAgYAAQtBASEAIAYtAABBK2sOAwUBBQELAkAgBi0AAEErRgRAIAdBAmshACABQQNqIQYgB0ELTw0BDAILIAdBCkkNAQtBACEDA0AgBi0AACICQcEAa0FfcUEKaiACQTBrIAJBOUsbIgJBD0sgA0H/////AEtyDQUgBkEBaiEGIAIgA0EEdHIhAyAAQQFrIgANAAsMAQtBACEDA0AgBi0AACICQcEAa0FfcUEKaiACQTBrIAJBOUsbIgJBD0sNBCAGQQFqIQYgAiADQQR0ciEDIABBAWsiAA0ACwsgE0VBgIDEACADIANBgLADc0GAgMQAa0GAkLx/SRsiAEGAgMQARnINAiAIIAA2AgQgAEEgSSAAQf8Aa0EhSXINAiAIQQRqIAsQjQFFDQALQQEhAAwCCyAHIAVBASAFQYCzwgAQ7AMACyASIQAgCyABIAQQ5QNFDQELCyAIQTBqJAAgAAwECyAAIAdBASAHQeSzwgAQ7AMACyABIAQgACAEQaCzwgAQ7AMACyAHIAAgBSAAQdyywgAQ7AMAC0GsssIAEK4EAAsMAQsgDkEANgIcIA4gATYCGCAOQgA3AhAgDiAAKQIENwIIIA5BCGpBARAfCyAOQSBqJAALXAEBfyMAQTBrIgMkACADIAE2AgwgAyAANgIIIANBATYCFCADQYzBwgA2AhAgA0IBNwIcIAMgA0EIaq1CgICAgJDEAIQ3AyggAyADQShqNgIYIANBEGogAhCkAwALZQEDfwJAAkACQAJAQQIgASgCAEH7////B2oiBCAEQQ5PGw4DAAECAwsgAUEEaiECQZybwAAhAwwCCyABQQRqIQJBpKfAACEDDAELQeCnwAAhAyABIQILIAAgAzYCBCAAIAI2AgALZQEDfwJAAkACQAJAQQIgASgCAEH7////B2oiBCAEQQxPGw4DAAECAwsgAUEEaiECQZybwAAhAwwCCyABQQRqIQJBpKfAACEDDAELQeCnwAAhAyABIQILIAAgAzYCBCAAIAI2AgALZQEDfwJAAkACQAJAQQIgASgCAEH7////B2oiBCAEQQ5PGw4DAAECAwsgAUEEaiECQbC+wAAhAwwCCyABQQRqIQJBuMrAACEDDAELQfTKwAAhAyABIQILIAAgAzYCBCAAIAI2AgALZQEDfwJAAkACQAJAQQIgASgCAEH7////B2oiBCAEQQxPGw4DAAECAwsgAUEEaiECQbC+wAAhAwwCCyABQQRqIQJBuMrAACEDDAELQfTKwAAhAyABIQILIAAgAzYCBCAAIAI2AgALZQEDfwJAAkACQAJAQQIgASgCAEH7////B2oiBCAEQQ5PGw4DAAECAwsgAUEEaiECQYDhwAAhAwwCCyABQQRqIQJBoO3AACEDDAELQdztwAAhAyABIQILIAAgAzYCBCAAIAI2AgALZQEDfwJAAkACQAJAQQIgASgCAEH7////B2oiBCAEQQxPGw4DAAECAwsgAUEEaiECQYDhwAAhAwwCCyABQQRqIQJBoO3AACEDDAELQdztwAAhAyABIQILIAAgAzYCBCAAIAI2AgALZQEDfwJAAkACQAJAQQIgASgCAEH7////B2oiBCAEQQ5PGw4DAAECAwsgAUEEaiECQcSJwQAhAwwCCyABQQRqIQJBpJPBACEDDAELQeCTwQAhAyABIQILIAAgAzYCBCAAIAI2AgALZQEDfwJAAkACQAJAQQIgASgCAEH7////B2oiBCAEQQxPGw4DAAECAwsgAUEEaiECQcSJwQAhAwwCCyABQQRqIQJBpJPBACEDDAELQeCTwQAhAyABIQILIAAgAzYCBCAAIAI2AgALnAECA38BbyMAQSBrIgMkACADIAAoAgAQ3AQiBDYCACADIAI2AgQgAiAERwRAIANBADYCCCADIANBBGogA0EIahCMAwALEO0DIgQQ3AMiBSUBEA0hBhBpIgIgBiYBIAVBhAFPBEAgBRDGAQsgAiAAKAIAIAFBAnYQpgQgAkGEAU8EQCACEMYBCyAEQYQBTwRAIAQQxgELIANBIGokAAtTAQN/IAAtAABBA0YEQCAAKAIEIgAoAgAhAiAAQQRqKAIAIgMoAgAiAQRAIAIgAREDAAsgAygCBCIBBEAgAiABIAMoAggQpwQLIABBDEEEEKcECwttAQF/IAEoAhwhAiABKAIgKAIMIQECQAJAAkACQCAAKAIALQAAQQFrDgMBAgMACyACQcD3wQBBAyABEQIADwsgAkHD98EAQQMgARECAA8LIAJBxvfBAEEKIAERAgAPCyACQdD3wQBBCSABEQIAC1IBAX8jAEEQayICJAACfyAAKAIAIgAtAABFBEAgAUHq3cAAQQQQ5QMMAQsgAiAAQQFqNgIMIAFB7t3AAEEEIAJBDGpB+NrAABB/CyACQRBqJAALUQEBfyMAQRBrIgIkAAJ/IAAoAgAiAC0AAEECRwRAIAIgADYCDCABQeyHwQBBDCACQQxqQdyHwQAQfwwBCyABQZ6JwQBBFBDlAwsgAkEQaiQAC1EBAX8jAEEQayICJAACfyAAKAIAIgAtAABBAkcEQCACIAA2AgwgAUHo1MEAQQwgAkEMakHY1MEAEH8MAQsgAUHE2sEAQRQQ5QMLIAJBEGokAAtQAQF/IwBBMGsiACQAIABBATYCDCAAQdCWwgA2AgggAEIBNwIUIAAgAEEvaq1CgICAgPA9hDcDICAAIABBIGo2AhAgAEEIakH8h8AAEKQDAAtRAQF/IwBBMGsiACQAIABBATYCDCAAQbTBwgA2AgggAEIBNwIUIAAgAEEvaq1CgICAgPDDAIQ3AyAgACAAQSBqNgIQIABBCGpBjIjAABCkAwALQwEDfwJAIAJFDQADQCAALQAAIgQgAS0AACIFRgRAIABBAWohACABQQFqIQEgAkEBayICDQEMAgsLIAQgBWshAwsgAwtMAQF/IwBBEGsiAiQAAn8gAC0AAEECRwRAIAIgADYCDCABQcSZwABBDCACQQxqQbSZwAAQfwwBCyABQfaawABBFBDlAwsgAkEQaiQAC1ABA38CQAJAAkBBAyABKAIAQQdrIgQgBEEDTxtBAmsOAgABAgsgAUEEaiECQaiWwAAhAwwBC0HQtMAAIQMgASECCyAAIAM2AgQgACACNgIAC0wBAX8jAEEQayICJAACfyAALQAAQQJHBEAgAiAANgIMIAFB2LzAAEEMIAJBDGpByLzAABB/DAELIAFBir7AAEEUEOUDCyACQRBqJAALUAEDfwJAAkACQEEDIAEoAgBBB2siBCAEQQNPG0ECaw4CAAECCyABQQRqIQJB1LfAACEDDAELQeTXwAAhAyABIQILIAAgAzYCBCAAIAI2AgALTAEBfyMAQRBrIgIkAAJ/IAAtAABBAkcEQCACIAA2AgwgAUGo38AAQQwgAkEMakGY38AAEH8MAQsgAUHa4MAAQRQQ5QMLIAJBEGokAAtQAQN/AkACQAJAQQMgASgCAEEHayIEIARBA08bQQJrDgIAAQILIAFBBGohAkHk7MAAIQMMAQtBzPrAACEDIAEhAgsgACADNgIEIAAgAjYCAAtQAQN/AkACQAJAQQMgASgCAEEHayIEIARBA08bQQJrDgIAAQILIAFBBGohAkHoksEAIQMMAQtB4KDBACEDIAEhAgsgACADNgIEIAAgAjYCAAtMAQF/IwBBEGsiAiQAAn8gAC0AAEECRwRAIAIgADYCDCABQeyHwQBBDCACQQxqQdyHwQAQfwwBCyABQZ6JwQBBFBDlAwsgAkEQaiQAC14AIAEoAgAlASACKAIAJQEgAygCACUBEBkhAUEBIQMCQEGI5cIAKAIAQQFGBEAgAEGM5cIAKAIANgIEDAELIAAgAUEARzoAAUEAIQMLIAAgAzoAAEGI5cIAQgA3AgALSAECfyAAKAIAIgFB+////wdqIgJBDU0gAkECR3EgAUGDgICAeEcgAUGEgICAeExxciABRXJFBEAgACgCBCABQQJ0QQQQpwQLC0gBAn8gACgCACIBQfv///8HaiICQQtNIAJBAkdxIAFBg4CAgHhHIAFBhICAgHhMcXIgAUVyRQRAIAAoAgQgAUECdEEEEKcECwtCAQF/IAIgACgCACAAKAIIIgNrSwRAIAAgAyACEJMBIAAoAgghAwsgACgCBCADaiABIAIQOxogACACIANqNgIIQQALQgEBfyACIAAoAgAgACgCCCIDa0sEQCAAIAMgAhCgASAAKAIIIQMLIAAoAgQgA2ogASACEDsaIAAgAiADajYCCEEAC08BAn8gACgCBCECIAAoAgAhAwJAIAAoAggiAC0AAEUNACADQfjDwgBBBCACKAIMEQIARQ0AQQEPCyAAIAFBCkY6AAAgAyABIAIoAhARAAALTgEBfyMAQRBrIgIkACACIAAoAgAiADYCDCABQeGhwQBBDkHvocEAQQ0gAEEEakG4h8EAQdSHwQBBAyACQQxqQfSGwQAQwwEgAkEQaiQAC04BAX8jAEEQayICJAAgAiAAKAIAIgBBBGo2AgwgAUGIhsEAQQlBkYbBAEELIABB6IXBAEGchsEAQQkgAkEMakH4hcEAEMMBIAJBEGokAAtOAQF/IwBBEGsiAiQAIAIgACgCACIANgIMIAFBptnBAEEOQcTZwQBBDSAAQQRqQbTZwQBBi87BAEEDIAJBDGpBuM3BABDDASACQRBqJAALSAEBfyMAQRBrIgIkACACQQhqIAEQ8wIgAiACKAIIIAIoAgwoAhgRAQAgAigCBCEBIAAgAigCADYCACAAIAE2AgQgAkEQaiQAC08BAn9BheXCAC0AABogASgCBCECIAEoAgAhA0EIQQQQ9QMiAUUEQEEEQQgQ0wQACyABIAI2AgQgASADNgIAIABB2KHCADYCBCAAIAE2AgALQgEBfyACIAAoAgAgACgCCCIDa0sEQCAAIAMgAhC5ASAAKAIIIQMLIAAoAgQgA2ogASACEDsaIAAgAiADajYCCEEAC0kBAX8jAEEQayICJAAgAiAANgIMIAFB0bXAAEEOQd+1wABBDSAAQQRqQZCZwABBrJnAAEEDIAJBDGpBzJjAABDDASACQRBqJAALSQEBfyMAQRBrIgIkACACIAA2AgwgAUHl2MAAQQ5B89jAAEENIABBBGpBpLzAAEHAvMAAQQMgAkEMakHgu8AAEMMBIAJBEGokAAtJAQF/IwBBEGsiAiQAIAIgADYCDCABQc37wABBDkHb+8AAQQ0gAEEEakH03sAAQZDfwABBAyACQQxqQfjcwAAQwwEgAkEQaiQAC0kBAX8jAEEQayICJAAgAiAANgIMIAFB4aHBAEEOQe+hwQBBDSAAQQRqQbiHwQBB1IfBAEEDIAJBDGpB9IbBABDDASACQRBqJAALQgEBfyMAQSBrIgMkACADQQA2AhAgA0EBNgIEIANCBDcCCCADIAE2AhwgAyAANgIYIAMgA0EYajYCACADIAIQpAMACz0BAn8gACAAKAIEIgMgAms2AgQgACAAKAIAIAIgA0tyIgQ2AgBBASEDIAQEfyADBSAAKAIIIAEgAhDlAwsLRgECfwJAAkACQCABLQAAQQFrDgIAAQILIAFBBGohAkHgp8AAIQMMAQsgAUEEaiECQdizwAAhAwsgACADNgIEIAAgAjYCAAtGAQJ/AkACQAJAIAEtAABBAWsOAgABAgsgAUEEaiECQfTKwAAhAwwBCyABQQRqIQJB7NbAACEDCyAAIAM2AgQgACACNgIAC0YBAn8CQAJAAkAgAS0AAEEBaw4CAAECCyABQQRqIQJB3O3AACEDDAELIAFBBGohAkHU+cAAIQMLIAAgAzYCBCAAIAI2AgALRgECfwJAAkACQCABLQAAQQFrDgIAAQILIAFBBGohAkHgk8EAIQMMAQsgAUEEaiECQeifwQAhAwsgACADNgIEIAAgAjYCAAs+AQF/IwBBEGsiAiQAIAJBCGogASABKAIAKAIEEQEAIAIoAgwhASAAIAIoAgg2AgAgACABNgIEIAJBEGokAAumAQICfwF+IAAoAgAhACABKAIUIgJBEHFFBEAgAkEgcUUEQCAAIAEQrwQPCyMAQYABayICJAAgACkDACEEQQAhAANAIAAgAmpB/wBqIASnQQ9xIgNBMHIgA0E3aiADQQpJGzoAACAAQQFrIQAgBEIPViAEQgSIIQQNAAsgAUEBQY/EwgBBAiAAIAJqQYABakEAIABrEDUgAkGAAWokAA8LIAAgARD+AQs5AQF/IAAoAgAhACABKAIUIgJBEHFFBEAgAkEgcUUEQCAAIAEQxQEPCyAAIAEQ/AEPCyAAIAEQ/QELOQEBfyAAKAIAIQAgASgCFCICQRBxRQRAIAJBIHFFBEAgACABEKkDDwsgACABEIQCDwsgACABEIMCCzkBAX8gACgCACEAIAEoAhQiAkEQcUUEQCACQSBxRQRAIAAgARCtBA8LIAAgARCEAg8LIAAgARCDAgs7AQF/IwBBEGsiAiQAIAIgACgCADYCDCABQYWJwQBBFkGbicEAQQMgAkEMakHAhsEAEMkBIAJBEGokAAs7AQF/IwBBEGsiAiQAIAIgACgCADYCDCABQfCIwQBBEUGBicEAQQQgAkEMakHgiMEAEMkBIAJBEGokAAs7AQF/IwBBEGsiAiQAIAIgACgCADYCDCABQYWXwQBBG0HUh8EAQQMgAkEMakHAhsEAEMkBIAJBEGokAAs9AQF+QYXlwgAtAAAaIAApAgAhAUEMQQQQ9QMiAARAIAAgATcCBCAAQYCAgIB4NgIAIAAPC0EEQQwQ0wQACzsBAX8jAEEQayICJAAgAiAAKAIANgIMIAFB8M3BAEEbQYvOwQBBAyACQQxqQYTNwQAQyQEgAkEQaiQACzgAAkAgAkGAgMQARg0AIAAgAiABKAIQEQAARQ0AQQEPCyADRQRAQQAPCyAAIAMgBCABKAIMEQIACzgBAX8jAEEQayICJAAgAiAANgIMIAFByJrAAEERQdmawABBBCACQQxqQbiawAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFB3ZrAAEEWQfOawABBAyACQQxqQZiYwAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFB9arAAEEbQayZwABBAyACQQxqQZiYwAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFB3L3AAEERQe29wABBBCACQQxqQcy9wAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFB8b3AAEEWQYe+wABBAyACQQxqQay7wAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFBic7AAEEbQcC8wABBAyACQQxqQay7wAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFBrODAAEERQb3gwABBBCACQQxqQZzgwAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFBweDAAEEWQdfgwABBAyACQQxqQfjawAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFB8fDAAEEbQZDfwABBAyACQQxqQfjawAAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFB8IjBAEERQYGJwQBBBCACQQxqQeCIwQAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFBhYnBAEEWQZuJwQBBAyACQQxqQcCGwQAQyQEgAkEQaiQACzgBAX8jAEEQayICJAAgAiAANgIMIAFBhZfBAEEbQdSHwQBBAyACQQxqQcCGwQAQyQEgAkEQaiQACzwBAX8jAEEQayICJAAgAkGQksIANgIMIAIgADYCCCACQQhqQZSSwgAgAkEMakGUksIAIAFB5J/CABBrAAs4AQF/IwBBEGsiAiQAIAIgADYCDCABQeywwgBBDUH5sMIAQQQgAkEMakHcsMIAEMkBIAJBEGokAAs5AQF/IwBBEGsiAyQAIAMgATYCDCADIAA2AgggA0EIakGswsIAIANBDGpBrMLCACACQeyOwgAQawALMAEBfyMAQRBrIgIkACACQQhqIAAQ8wIgAigCCCABIAIoAgwoAhARAAAgAkEQaiQACzIBAX8gASgCFCICQRBxRQRAIAJBIHFFBEAgACABEMUBDwsgACABEPwBDwsgACABEP0BCzIBAX8gASgCFCICQRBxRQRAIAJBIHFFBEAgACABEK0EDwsgACABEIQCDwsgACABEIMCCzIBAX8gASgCFCICQRBxRQRAIAJBIHFFBEAgACABEKkDDwsgACABEIQCDwsgACABEIMCCzMBAX8jAEEQayICJAAgAiAAKAIANgIMIAFB7IfBAEEMIAJBDGpB3IfBABB/IAJBEGokAAszAQF/IwBBEGsiAiQAIAIgACgCADYCDCABQejUwQBBDCACQQxqQdjUwQAQfyACQRBqJAALLQACQCAAIAEQrANFDQAgAARAQYXlwgAtAAAaIAAgARD1AyIBRQ0BCyABDwsACzcBAX8jAEEgayIBJAAgAUEANgIYIAFBATYCDCABQdzZwgA2AgggAUIENwIQIAFBCGogABCkAwALMwEBfyAAKAIAIgFBhICAgHhMIAFBg4CAgHhHcSABRXJFBEAgACgCBCABQQJ0QQQQpwQLCzABAX8jAEEQayICJAAgAiAANgIMIAFBxJnAAEEMIAJBDGpBtJnAABB/IAJBEGokAAsvACAAQZybwAA2AgQgACABIAFBACABLQAAQQJrQf8BcSIAQQFGGyAAQQJLGzYCAAswAQF/IwBBEGsiAiQAIAIgADYCDCABQdi8wABBDCACQQxqQci8wAAQfyACQRBqJAALLwAgAEGwvsAANgIEIAAgASABQQAgAS0AAEECa0H/AXEiAEEBRhsgAEECSxs2AgALMAEBfyMAQRBrIgIkACACIAA2AgwgAUGo38AAQQwgAkEMakGY38AAEH8gAkEQaiQACy8AIABBgOHAADYCBCAAIAEgAUEAIAEtAABBAmtB/wFxIgBBAUYbIABBAksbNgIACy8AIABBxInBADYCBCAAIAEgAUEAIAEtAABBAmtB/wFxIgBBAUYbIABBAksbNgIACzABAX8jAEEQayICJAAgAiAANgIMIAFB7IfBAEEMIAJBDGpB3IfBABB/IAJBEGokAAssAQF/IwBBEGsiACQAIABBCGoiAiABQfyVwgBBCxCmAyACEK4CIABBEGokAAuEAQEDfyMAQSBrIgQkACAEQQhqIgMQ8AECf0GF5cIALQAAGkEkQQQQ9QMiAgRAIAJB5LrAADYCACACIAE2AiAgAiAANgIcIAIgAykCADcCBCACQQxqIANBCGopAgA3AgAgAkEUaiADQRBqKQIANwIAIAIMAQtBBEEkENMEAAsgBEEgaiQACzgBAX9BASEBIAAtAARFBEAgACgCACIBKAIcQY7EwgBBASABKAIgKAIMEQIAIQELIAAgAToABCABC5ABAQN/IwBBIGsiAyQAIANBCGoiAhDwAQJ/QYXlwgAtAAAaQShBBBD1AyIBBEAgAUGcgsAANgIAIAEgAikCADcCBCABIAApAgA3AhwgAUEMaiACQQhqKQIANwIAIAFBFGogAkEQaikCADcCACABQSRqIABBCGooAgA2AgAgAQwBC0EEQSgQ0wQACyADQSBqJAALhgECAn8BfiMAQSBrIgIkACACQQhqIgEQ8AECf0GF5cIALQAAGiAAKQIAIQNBJEEEEPUDIgAEQCAAQci6wAA2AgAgACADNwIcIAAgASkCADcCBCAAQQxqIAFBCGopAgA3AgAgAEEUaiABQRBqKQIANwIAIAAMAQtBBEEkENMEAAsgAkEgaiQAC5kSAhd/EH0QaSIMIAkmASMAQfAAayILJAAgCyAMNgIsIAsgCDYCKCALIAc4AiQgCyAGOAIgIAsgBTgCHCALIAQ4AhggCyADOAIUIAsgAjgCECALIAE4AgwgCyAAOAIIIAsgCkEARzoAMyALQQA2AjwgC0KAgICAwAA3AjQgCyALQSRqNgJsIAsgC0EgajYCaCALIAtBHGo2AmQgCyALQRhqNgJgIAsgC0EUajYCXCALIAtBEGo2AlggCyALQQxqNgJUIAsgC0EIajYCUCALIAtBNGo2AkwgCyALQTNqNgJIIAsgC0EsajYCRCALIAtBKGo2AkAgC0FAayIeIQgjAEEgayIMJAACQAJAAkBBAEGIh8AAKAIAEQQAIhIEQCASKAIADQIgCCgCLCEUIAgoAighFSAIKAIkIRYgCCgCICEXIAgoAhwhGCAIKAIYIRkgCCgCFCEaIAgoAhAhGyAIKAIMIQ8gCCgCCCEfIAgoAgQhICAIKAIAIRwgEkF/NgIAIBIgHCgCACINBH8gEkEMaigCACEdIBJBCGooAgAhCgNAIAwgICATQQJ0IBNBgIAEIA0gE2siCCAIQYCABE8bIghqIhNBAnQQqQQ2AgQgCEECdCINIB1LDQMgDEEEaiAKIA0QzAICQCAfLQAARQRAIAwgGSoCADgCECAMIBoqAgA4AgwgDCAbKgIAOAIIIAwgFioCADgCHCAMIBcqAgA4AhggDCAYKgIAOAIUIAohCCAVKgIAISQgFCoCACEjIwBBEGsiECQAIA0EQCAMQRRqIg4qAgAiACAAlCAOKgIEIgEgAZSSIA4qAggiAiAClJIhAyAMQQhqIg4qAgghIiAOKgIEISUgDioCACEmA0BBBCANIA1BBE8bIQ4CQCAILQADs0MAAH9DlUPNzMw9XQ0AIBBBBGogCCAOEEEgDUEDSwRAIAAgJiAQKgIEkyIElCABICUgECoCCJMiBZSSIAIgIiAQKgIMkyIGlJIiByAHlCADIAQgBJQgBSAFlJIgBiAGlJIgCCgCDCIREKUDIBFBCHYQpQOSIBFBEHYQpQOSQwAAQECVIgQgBJSTlJMiBEMAAAAAXQ0BIAeMIASRkyADlSIEICRgRSAEICNfRXINASAPKAIIIhEgDygCAEYEQCAPQdyMwAAQtAELIA8oAgQgEUECdGogBDgCACAPIBFBAWo2AggMAQtBAyAOQZyNwAAQrQIACyAIIA5BAnRqIQggDSAOayINDQALCwwBCyAMIBkqAgA4AhAgDCAaKgIAOAIMIAwgGyoCADgCCCAMIBYqAgA4AhwgDCAXKgIAOAIYIAwgGCoCADgCFCAKIQggFSoCACEtIBQqAgAhLiMAQRBrIhAkACANBEAgDEEUaiIOKgIAISUgDioCBCEmIA4qAgghKyAMQQhqIg4qAgghLyAOKgIEITAgDioCACExA0BBBCANIA1BBE8bIQ4CQCAILQADs0MAAH9DlUPNzMw9XQ0AIBBBBGogCCAOEEECQCANQQNLBEAgECoCDCEoIBAqAgghKSAQKgIEISogCCgCDCIREKUDIQMgEUEIdhClAyEEIBFBEHYQpQMhBSArIAgoAggiIUEYdbJDAAD+QpUiACAmIBFBGHWyQwAA/kKVIgGUICsgAJSTIiOUICFBEHbAskMAAP5ClSICICsgApQgJSABlJMiIpSTICUgAJQgJiAClJMiJ0MAAIA/IAIgApSTIAAgAJSTIAEgAZSTQwAAAAAQ1QORIgaUkiIHIAeSkiEHICYgAiAnlCABICOUkyAiIAaUkiIkICSSkiEkICUgASAilCAAICeUkyAjIAaUkiIjICOSkiEjIC8gKJMiIiAAIDAgKZMiJyABlCAiIACUkyIolCACICIgApQgMSAqkyIpIAGUkyIqlJMgKSAAlCAnIAKUkyIsIAaUkiIiICKSkiEiICcgAiAslCABICiUkyAqIAaUkiICIAKSkiECICkgASAqlCAAICyUkyAoIAaUkiIAIACSkiEAIAUgAyAEENUDIAUQ1QNDCtcjPJQiAV1FBEAgASAEXkUEQCABIANeRQRAQwAAgD8gBZUiBSAilCIBIAUgB5QiBZRDAACAPyADlSIDIACUIgAgAyAjlCIDlEMAAIA/IASVIgQgApQiAiAEICSUIgSUkpIiBiAGlCAFIAWUIAMgA5QgBCAElJKSIgMgASABlCAAIACUIAIgApSSkkMAAIC/kpSTIgBDAAAAAF0NBSAGjCAAkZMgA5UhAAwECyAji0O9N4Y1XQ0EIAIgJCAAjCAjlSIAlJIgBJUiASABlCAiIAcgAJSSIAWVIgEgAZSSQwAAgD9eRQ0DDAQLICSLQ703hjVdDQMgACAjIAKMICSVIgCUkiADlSIBIAGUICIgByAAlJIgBZUiASABlJJDAACAP14NAwwCCyAHi0O9N4Y1XQ0CIAAgIyAijCAHlSIAlJIgA5UiASABlCACICQgAJSSIASVIgEgAZSSQwAAgD9eRQ0BDAILQQMgDkGcjcAAEK0CAAsgACAtYEUgACAuX0VyDQAgDygCCCIRIA8oAgBGBEAgD0HsjMAAELQBCyAPKAIEIBFBAnRqIAA4AgAgDyARQQFqNgIICyAIIA5BAnRqIQggDSAOayINDQALCwsgEEEQaiQAIAwoAgQiCEGEAU8EQCAIEMYBCyATIBwoAgAiDUkNAAsgEigCAEEBagVBAAs2AgAgDEEgaiQADAMLENICAAsgDSAdQciLwAAQqwQACxDTAgALIAsoAjwQGCEJEGkiCCAJJgEgCyAINgJAIAsoAjghECALKAI8IQwjAEEgayIKJAAgCiAeKAIAIhIlARASIg02AgAgCiAMNgIEAkAgDCANRgRAEO0DIg0Q3AMiDyUBIBAgDBAQIQkQaSIMIAkmASANQYQBTwRAIA0QxgELIA9BhAFPBEAgDxDGAQsgEiUBIAwlAUEAEBEgDEGEAU8EQCAMEMYBCyAKQSBqJAAMAQsgCkEANgIIIAogCkEEaiAKQQhqEIwDAAsgCygCNCIKBEAgCygCOCAKQQJ0QQQQpwQLIAsoAiwiCkGEAU8EQCAKEMYBCyALQfAAaiQAIAglASAIEMYBC/wBAgJ/AX4jAEEQayICJAAgAkEBOwEMIAIgATYCCCACIAA2AgQjAEEQayIBJAAgAkEEaiIAKQIAIQQgASAANgIMIAEgBDcCBCMAQRBrIgAkACABQQRqIgEoAgAiAigCDCEDAkACQAJAAkAgAigCBA4CAAECCyADDQFBASECQQAhAwwCCyADDQAgAigCACICKAIEIQMgAigCACECDAELIABBgICAgHg2AgAgACABNgIMIABBhKLCACABKAIEIAEoAggiAC0ACCAALQAJEMEBAAsgACADNgIEIAAgAjYCACAAQeihwgAgASgCBCABKAIIIgAtAAggAC0ACRDBAQALKgAgAEH/AXFFBEBDAAAAAA8LIABBAWtB/wFxs0NFIpE9lEMAABDBkhBSCy0AIAEoAhwgAiADIAEoAiAoAgwRAgAhAiAAQQA6AAUgACACOgAEIAAgATYCAAsyAQF/IAEoAhxBvMHCAEEBIAEoAiAoAgwRAgAhAiAAQQA6AAUgACACOgAEIAAgATYCAAshAAJAIAEgAxCsAwRAIAAgASADIAIQ3wMiAA0BCwALIAALIgEBfyAAKAIAIgAgAEEfdSICcyACayAAQX9zQR92IAEQbAslACAARQRAQfiPwgBBMhDIBAALIAAgAiADIAQgBSABKAIQEQsACygAIAEgACgCAC0AAEECdCIAQeC8wgBqKAIAIABBzLzCAGooAgAQ5QMLGQEBf0GAgICAeCABayAATyACIAFpQQFGGwslACABIAAtAABBAnQiAEH8tcAAaigCACAAQey1wABqKAIAEOUDCyUAIABBnJvAADYCBCAAIAFBBGpBACABKAIAQYKAgIB4Rhs2AgALIQAgAEHwosAANgIEIAAgAUEBakEAIAEtAABBAkYbNgIACyUAIAEgAC0AAEECdCIAQZDZwABqKAIAIABBgNnAAGooAgAQ5QMLJQAgAEGwvsAANgIEIAAgAUEEakEAIAEoAgBBgoCAgHhGGzYCAAshACAAQYTGwAA2AgQgACABQQFqQQAgAS0AAEECRhs2AgALJQAgASAALQAAQQJ0IgBB+PvAAGooAgAgAEHo+8AAaigCABDlAwslACAAQYDhwAA2AgQgACABQQRqQQAgASgCAEGCgICAeEYbNgIACyEAIABBsOjAADYCBCAAIAFBAWpBACABLQAAQQJGGzYCAAshACAAQbSOwQA2AgQgACABQQFqQQAgAS0AAEECRhs2AgALJQAgAEHEicEANgIEIAAgAUEEakEAIAEoAgBBgoCAgHhGGzYCAAslACABIAAtAABBAnQiAEGMosEAaigCACAAQfyhwQBqKAIAEOUDCyMAIABFBEBB+I/CAEEyEMgEAAsgACACIAMgBCABKAIQEQcACyMAIABFBEBB+I/CAEEyEMgEAAsgACACIAMgBCABKAIQESUACyMAIABFBEBB+I/CAEEyEMgEAAsgACACIAMgBCABKAIQERMACyMAIABFBEBB+I/CAEEyEMgEAAsgACACIAMgBCABKAIQEScACyMAIABFBEBB+I/CAEEyEMgEAAsgACACIAMgBCABKAIQESkACygBAX8gACgCACIBQYCAgIB4ckGAgICAeEcEQCAAKAIEIAFBARCnBAsLJQAgASAALQAAQQJ0IgBBxKzCAGooAgAgAEGcq8IAaigCABDlAwsnACAAQRxqQQAgAkLj4Nah9qKXnVZRG0EAIAFC0Jamw5Le7cA3URsLKQAgAEEgakEAIAJC3f7B4L2j6uiCf1EbQQAgAUKX2/aYrfP7zY5/URsLKQAgAEEcakEAIAJC7bqtts2F1PXjAFEbQQAgAUL4gpm9le7Gxbl/URsLKQAgAEEcakEAIAJCy4fr+uCou7bQAFEbQQAgAULEr9zF2tKv9bh/URsLIQAgAEUEQEH4j8IAQTIQyAQACyAAIAIgAyABKAIQEQUAC5sRAQ5/An8QaSIEIAImARBpIgUgAyYBIwBBMGsiByQAIAcgBTYCBCAHIAQ2AgAgByAANgIIIAcgATYCDCAHIAcoAgAlARADNgIQIAcgB0EAEMcEIgA2AhggB0EYaiIBEKgEBEAgByAANgIYIAcgASgCABDaBEECdjYCFCAAQYQBTwRAIAAQxgELIAcgB0EEajYCLCAHIAc2AiggByAHQQxqNgIkIAcgB0EUajYCICAHIAdBEGo2AhwgByAHQQhqNgIYAn8gB0EYaiEAIwBBQGoiBSQAAkACQAJAAkACQEEAQfCGwAAoAgARBAAiDwRAIA8oAgBFBEAgACgCFCERIAAoAhAhECAAKAIMIQwgACgCCCELIA9BfzYCACAAKAIEIQ0gACgCACgCACIEIA9BBGoiBigCCCIBSwRAIAQgASIAayIIIAYoAgAgAGtLBEAgBiAAIAhBBEEEEI8BIAYoAgghAAsgBigCBCIOIABBAnRqIQkgCEECTwRAIAlBACABQX9zIARqQQJ0EFoaIAAgBGpBAnQgAUECdGsgDmpBBGshCSAAIAhqQQFrIQALIAlBADYCACAGIABBAWo2AggLIAYoAhQiASAESQRAIAQgASIAayIIIAYoAgwgAGtLBEAgBkEMaiAAIAhBBEEEEI8BIAYoAhQhAAsgBigCECIOIABBAnRqIQkgCEECTwRAIAlBACABQX9zIARqQQJ0EFoaIAAgBGpBAnQgAUECdGsgDmpBBGshCSAAIAhqQQFrIQALIAlBADYCACAGIABBAWo2AhQLIAYoAiAiAEGA+AFNBEBBgfgBIAAiAWsiBCAGKAIYIABrSwRAIAZBGGogACAEQQRBBBCPASAGKAIgIQELIAYoAhwiCSABQQJ0IghqIQQgAEGA+AFHBH8gBEEAQYDgByAAQQJ0IgRrEFoaIAEgAGtBgPgBaiEBIAggBGsgCWpBgOAHagUgBAtBADYCACAGIAFBAWo2AiALAkAgDSgCACIJBEBBACEAA0AgDCgCACAAayIBIAsoAgAiBCABIARJGyIEBEAgBSAQIAoQxwQiATYCICAFQSBqIggQqARFDQMgBSABNgIgIAgoAgAlARAUIQIQaSIBIAImASAFIAE2AhQgBSgCICIBQYQBTwRAIAEQxgELIAUgBUEUaigCAEEAIAQQ1gM2AiAgACAEaiIBIARJDQYgASAPKAIMIghLDQcgBUEgaiAPKAIIIABBAnRqIAQQzAIgBSgCICIAQYQBTwRAIAAQxgELIAUoAhQiAEGEAU8EQCAAEMYBCyABIQALIAkgCkEBaiIKRw0ACwsgBUEIaiEQIAwoAgAhDCMAQUBqIgkkAAJAIAwgBigCCCIATQRAIAYoAgQhASAGQQA2AiBBACEAIAYoAhhBgPgBTQRAIAZBGGpBAEGB+AFBBEEEEI8BIAYoAiAhAAsgBigCHCIEIABBAnRqQQBBgOAHEFogBiAAQYH4AWoiCjYCIEGA4AdqQQA2AgACQCAMRQ0AIAxBAWtB/////wNxIAEhAAJAIAxBAXFFDQAgAEEEaiEAIAEoAgBB//8BcSILQf/3AUsNACAEIAtBAnRqIgsgCygCAEEBajYCAAtFDQAgASAMQQJ0aiEIA0AgACgCAEH//wFxIgtBgPgBSQRAIAQgC0ECdGoiCyALKAIAQQFqNgIACyAAQQRqKAIAQf//AXEiC0H/9wFNBEAgBCALQQJ0aiILIAsoAgBBAWo2AgALIABBCGoiACAIRw0ACwsgCkH8////A3EhCCAKQQNxIQtBACEKIAQhAANAIAAoAgAhDSAAIAo2AgAgCSAKIA1qIgo2AgggAEEEaiINKAIAIQ4gDSAKNgIAIAkgCiAOaiIKNgIIIABBCGoiDSgCACEOIA0gCjYCACAJIAogDmoiCjYCCCAAQQxqIg0oAgAhDiANIAo2AgAgCSAKIA5qIgo2AgggAEEQaiEAIAhBBGsiCA0ACyALBEAgC0ECdCELQQAhCANAIAAgCGoiDSgCACEOIA0gCjYCACAJIAogDmoiCjYCCCALIAhBBGoiCEcNAAsLIAwEQCAMQQJ0IQggBigCECENIAYoAhQhBkEAIQADQAJAIAEoAgBB//8BcSIMQYD4AU8NACAGIAQgDEECdGoiDCgCACILSwRAIA0gC0ECdGogADYCACAMIAwoAgBBAWo2AgAMAQsgCyAGQeiEwAAQrQIACyABQQRqIQEgAEEBaiEAIAhBBGsiCA0ACwsgCiAEKAKA4AdGBEBBACEADAILIAlBAjYCHCAJQdiEwAA2AhggCUICNwIkIAkgBEGA4AdqrUKAgICAEIQ3AzggCSAJQQhqrUKAgICAEIQ3AzAgCSAJQTBqNgIgIAlBDGoiACAJQRhqENABIAAQoQMhCkEBIQAMAQsgDCAAQaiEwAAQqwQACyAQIAo2AgQgECAANgIAIAlBQGskACAFKAIMIQAgBSgCCARAIAUgADYCECAFQQE2AiQgBUHEisAANgIgIAVCATcCLCAFIAVBEGqtQoCAgIAghDcDOCAFIAVBOGo2AiggBUEUaiAFQSBqENEBIAUoAhggBSgCHBDIBAALIAANBQwGCyAFIAE2AiBB7IrAAEErIAVBIGpB3IrAAEGYi8AAEKACAAsQ0wIACxDSAgALIAAgAUHMisAAEKwEAAsgASAIQcyKwAAQqwQACyAPKAIYIgEgAEkNASAPKAIUIQQgBSARQQAgABCpBCIBNgIgIAVBIGogBCAAEOkBIAFBhAFJDQAgARDGAQsgDyAPKAIAQQFqNgIAIAVBQGskACAADAELIAAgAUG0isAAEKsEAAsgBygCBCIBQYQBTwRAIAEQxgELIAcoAgAiAUGEAU8EQCABEMYBCyAHQTBqJAAMAQsgByAANgIYQZyGwABBKyAHQRhqQYyGwABB9IbAABCgAgALCx4AIABBnJvAADYCBCAAIAFBACABLQAAQQJHGzYCAAseACAAQZS0wAA2AgQgACABQQAgASgCAEECSRs2AgALHgAgAEGwvsAANgIEIAAgAUEAIAEtAABBAkcbNgIACx4AIABBqNfAADYCBCAAIAFBACABKAIAQQJJGzYCAAseACAAQYDhwAA2AgQgACABQQAgAS0AAEECRxs2AgALHgAgAEGQ+sAANgIEIAAgAUEAIAEoAgBBAkkbNgIACxsAIAAoAgAiAEEEaigCACAAQQhqKAIAIAEQMAseACAAQcSJwQA2AgQgACABQQAgAS0AAEECRxs2AgALHgAgAEGkoMEANgIEIAAgAUEAIAEoAgBBAkkbNgIACx8AIABFBEBB+I/CAEEyEMgEAAsgACACIAEoAhARAAALno4BAx1/Bn4IfRBpIgMgACYBAn8jAEHwAGsiDyQAIA8gAzYCCCAPIA9BCGooAgAQ3QMiCDYCGCAPQQxqIQUCQAJAIA9BGGooAgAiBxDaBCIDQQBIDQACQCADRQRAQQEhBgwBC0GF5cIALQAAGkEBIQsgA0EBEPUDIgZFDQELEO0DIgkQ3AMiBBDdAyELIARBhAFPBEAgBBDGAQsgCyUBIAclASAGEAcgC0GEAU8EQCALEMYBCyAJQYQBTwRAIAkQxgELIAUgBxDaBDYCCCAFIAY2AgQgBSADNgIADAELIAsgA0HsjsIAENcDAAsgCEGEAU8EQCAIEMYBCyAPQRhqIRogDygCECEcIA8oAhQhCCMAQeAAayIRJAAgEUIANwNQAkACQAJAAkACQAJAIAhBCE8EQCARIBwpAAA3A1AMAQtB4NnAACkCACIgQv8Bg0IEUg0BCyARQQg2AlwgESARQdAAajYCWCMAQRBrIgMkACARQQhqIgYCfwJAIBFB2ABqIgUoAgQiB0UEQCADQoHKADcDCCAGIANBCGoQ+wI2AgQMAQsgBSAHQQFrIgk2AgQgBSAFKAIAIgtBAWo2AgAgCUUEQCADQoHKADcDCCAGIANBCGoQ+wI2AgQMAQsgCy0AACEJIAUgB0ECayIENgIEIAUgC0ECajYCACAERQRAIANCgcoANwMIIAYgA0EIahD7AjYCBAwBCyALLQABIQQgBSAHQQNrIg02AgQgBSALQQNqNgIAIAYCfyANRQRAIANCgcoANwMIIANBCGoQ+wIMAQsgBiALLQACOgADIAYgBDoAAiAGIAk6AAEgBSAHQQRrNgIEIAUgC0EEajYCACAGIAstAAM6AARBAAwCCzYCBAtBAQs6AAAgA0EQaiQAIBECfyARLQAIQQFGBEAgESgCDAwBCyARKAJcQQNLDQIgEUKBygA3AwggEUEIahD7Ags2AghBzI/AAEErIBFBCGpBvI/AAEGMkMAAEKACAAsgESAgNwMIIBFBCGoQogMhAyAaQYCAgIB4NgIQIBogAzYCAAwBCyARMwAJIBExAAtCEIaEIBExAAxCGIaEQteYnYIDUgRAIBFBADYCGCARQQE2AgwgEUGUkcAANgIIIBFCBDcCECARQQhqEKsCIQMgGkGAgICAeDYCECAaIAM2AgAMAQsgESgCWCgAACIDQQFrQQJPBEAgEUEANgIYIBFBATYCDCARQfSQwAA2AgggEUIENwIQIBFBCGoQqwIhAyAaQYCAgIB4NgIQIBogAzYCAAwBCyARQQE6AC4gEUGBAjsBLCARQYECOwEoIBFBADYCJCARIANBBHQiA0G7kMAAai0AADoALyARIANBtpDAAGovAQA7ASogESADQayQwABqKAIANgIgIBFBADYCECARQoCAgIDAADcCCCAIQQhJDQECfyAcQQhqIQYgCEEIayELIBFBCGohFkEAIQhCACEgIwBB8ABrIgokAAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkACQCAKAn8CQAJAAkAgEUEgaiIZLQANRQ0AAkACQCALBEAgC0EBcSEHIAtBAUcNAUG1tdTVASEEIAYhAwwCCyAZLQAIDQRBASEDDAMLIAtBfnEhBUG1tdTVASEEIAYhAwNAIAMgCCADLQAAIgkgBEGNzOUAbEHf5rvjA2pBCHZzIg1BBXQgDUH4AXFBA3ZyczoAACADQQFqIgggCSAILQAAIgggBEGpueG5AWxBstLAugRqIgRBCHZzIg1BBXQgDUH4AXFBA3ZyczoAACADQQJqIQMgBUECayIFDQALCyAHRQ0AIAMgAy0AACAEQY3MAWxB3+YDakEIdnMiA0EFdCADQfgBcUEDdnIgCHM6AAALIBktAAgNAUEAIQQgC0EASA0DIAtFBEBBASEDDAELQYXlwgAtAAAaQQEhBCALQQEQ9QMiA0UNAwsgAyAGIAsQOxogCwwBCyAKQShqIRgjAEGACGsiCSQAIAlBmARqIRRBACEFIwBBgAtrIgckACAHIAs2AgQgByAGNgIAIAdBADYC4AMgB0EANgLYAyAHQQI2AgggB0HgCmohBEEAIQZBACELIwBBEGsiDiQAIAcoAgAhAwJAAkACQAJAAkACQAJAAkACQAJAAkACQCAHKAIEIgxBA00EQCAHQQA2AgQgByADIAxqNgIAQfD/wAApAwAiIEL/AYNCBFENASAEICA3AwggBEEAOgAEIARBAjYCAAwMCyAHIAxBBGsiCDYCBCAHIANBBGoiDTYCACAOIAMoAAAiBjYCBCAGQXBxQdDUtMIBRg0BIAZBqOq+aUYNAgsgBCAGNgIIIARBAToABCAEQQI2AgAMCgsgCEEESQ0BIAcgDEEIazYCBCAHIANBCGo2AgAgAygABCELDAILAkAgCEUEQCAHQQA2AgRB8P/AACkDACIgQv8Bg0IEUg0BIA5CADcDCEEBIQxBKCEIQQUhFwwGCyAHIAxBBWsiBjYCBEEFIRcgByADQQVqIg02AgAgDiADLQAEIgg6AAQgCEEgcSITDQQgBgRAIAcgDEEGayIGNgIEQQYhFyAHIANBBmoiDTYCACAOIAMtAAUiCzoABAwFC0EAIQYgB0EANgIEQfD/wAApAwAiIkL/AYNCBFEEQEEGIRcgCCELDAULIAQgIjcDCCAEQQQ6AAQgBEECNgIADAkLIAQgIDcDCCAEQQI6AAQgBEECNgIADAgLIAdBADYCBCAHIAMgDGo2AgAgBiELQfD/wAApAwAiIEL/AYNCBFINAQsgBCALNgIMIAQgBjYCCCAEQQc6AAQgBEECNgIADAYLIAQgIDcDCCAEQQI6AAQgBEECNgIADAULAkACQAJ/AkACQAJ/AkACQAJAIAhBA3EiEkEBaw4DAgEACAtBBCESCyAGIBJPDQIgEgwBCyAGDQJBAQshDCAHQQA2AgQgByAGIA1qIg02AgBB8P/AACkDACIiQv8Bg0IEUQ0DIAQgIjcDCCAEQQU6AAQgBEECNgIADAkLIA5BBGogDSASEDsaIAYgEmshBSANIBJqIQ0gEgwBCyAOIA0tAAA6AAQgBkEBayEFIA1BAWohDUEBCyEMIAcgBTYCBCAHIA02AgALIAUhBgJ/IA4tAAQiAyAMQQFGDQAaIA4tAAVBCHQgA3IiAyAMQQJGDQAaIA4tAAZBEHQgDi0AB0EYdHIgA3ILIgVBAEchEiAMIBdqIRcLQQEhA0ECIQwgBwJ/AkACQAJAAkACQCAIQQZ2QQFrDgMDAgABC0EAIQNBCCEMDAILIBMNAgwHC0EAIQNBBCEMCyAOQgA3AwggBiAMSQ0DIA5BCGogDSAMEDsaIAwgDWohDSAGIAxrDAELIA5CADcDCCAGRQRAQQEhDAwCCyAOIA0tAAA6AAhBASEMIA1BAWohDUEAIQMgBkEBaws2AgQgByANNgIADAILQQAhBkEAIQMLIAdBADYCBCAHIAYgDWo2AgBB8P/AACkDACIgQv8Bg0IEUQ0AIAQgIDcDCCAEQQY6AAQgBEECNgIADAILAn4gDjEACCIgIAxBAUYNABogDjEACUIIhiAghCIgIAxBAkYNABogDjEACkIQhiAOMQALQhiGhCAghCIgIAxBBEYNABogDjEADEIghiAOMQANQiiGhCAOMQAOQjCGhCAOMQAPQjiGhCAghAsiIEKAAnwgICADGyEgIAwgF2ohFwsgBCAXOgAYIAQgCzoAESAEIAg6ABAgBCAgNwMIIAQgBTYCBCAEIBI2AgALIA5BEGokACAHKQPoCiEiIAcoAuQKIQ0CQAJAIAcoAuAKIgVBAkYNACAHMQD4CiEjICIhIAJAIAcpA/AKIiFCIINCAFINAEIBICFCCIgiIKdB+AFxQQN2QQpqrYYiJEIDiCAgQgeDfiAkfCIgQoCAgICA+ABUDQAgB0EAOgCgB0EBIRAgBykDoAchIgwBCyAgpyEGIAdBuAdqIQNBheXCAC0AABoCQAJAAkACQAJAAkBBgAJBARD1AyILBEBBheXCAC0AABpBgAJBARD1AyIIRQ0BQYXlwgAtAAAaQSxBBBD1AyIERQ0CQYXlwgAtAAAaQSxBBBD1AyIORQ0DQYXlwgAtAAAaQYAIQQQQ9QMiDEUNBEGF5cIALQAAGkGACEEEEPUDIhJFDQUgA0IENwJAIANB/wE7AWAgA0EANgJcIAMgEjYCWCADQoCAgICAIDcCUCADIAw2AkwgA0GAAjYCSCADQQA6AGQgAyALNgIQIANCgICAgIAgNwIIIANCgICAgBA3AgAgA0IANwI4IAMgDjYCNCADQoCAgICwATcCLCADIAQ2AiggA0KAgICAsAE3AiAgAyAINgIcIANCgICAgIAgNwIUDAYLQQFBgAJBrPnBABDXAwALQQFBgAJBvPnBABDXAwALQQRBLEHM+cEAENcDAAtBBEEsQdz5wQAQ1wMAC0EEQYAIQcyAwgAQ1wMAC0EEQYAIQdyAwgAQ1wMAC0GF5cIALQAAGgJAAkBBgAhBBBD1AyILBEACQEGF5cIALQAAGkGACEEEEPUDIghFDQJBheXCAC0AABpBgAhBBBD1AyIERQ0AQYXlwgAtAAAaQYAIQQQQ9QMiDkUNAkGF5cIALQAAGkGACEEEEPUDIgxFDQBBheXCAC0AABpBgAhBBBD1AyISRQ0CIANCADcDqAIgA0EBNgLoASADQQA6AOQBIANBADoA4gEgA0EAOgDgASADQTQ7AdwBIANBADYC2AEgAyASNgLUASADQoCAgICAIDcCzAEgAyAMNgLIASADQoCAgICAIDcDwAEgA0KAgICAwAA3A7gBIANBIzsBtAEgA0EANgKwASADIA42AqwBIANCgICAgIAgNwKkASADIAQ2AqABIANCgICAgIAgNwOYASADQoCAgIDAADcDkAEgA0EfOwGMASADQQA2AogBIAMgCDYChAEgA0KAgICAgCA3AnwgAyALNgJ4IANCgICAgIAgNwNwIANCgICAgMAANwNoIANBwAJqQgA3AwAgA0G4AmpCADcDACADQbACakIANwMAIANB/AFqQQA2AgAgA0H0AWpCADcCACADQgA3AuwBIANC1uuC7ur9ifXgADcDgAIgA0LP1tO+0ser2UI3A4gCIANCADcDkAIgA0L56tDQ58mh5OEANwOYAiADQgA3A6ACIANBADYCyAIgA0IANwPQAiADIAY2AtgCIANBADYC5AIgA0EINgKUAyADQoCAgIAQNwLcAiADQoGAgIDAADcCjAMgA0EANgKIAyADQoCAgIAQNwPoAiADQgA3A/ACIANCBDcD+AIgA0KAgICAEDcDgAMMAwsLQQRBgAhBzIDCABDXAwALQQRBgAhB3IDCABDXAwALIAdBADYCqAcgB0EANgKwByAHQQA6ANwKIAdBADYC2AogByAjNwPQCiAHKQOoByEgIAcpA7AHISMgB0HoA2oiBiADQagDEDsaIAdBCGoQSSAHICM3AyggByAgNwMgIAcgITcDGCAHIA02AgwgByAiPgIQIAcgIkIgiD4CFCAHIAU2AgggB0EwaiAGQagDEDshCCAFQQFxBEBBDCEQIAcoAtgDIhJFDQEgBygC3AMhFwNAIBJB1AFrIQQgEkEEaiEGIBIvAd4WIgNBAnQhC0F/IQUCQAJAA0AgC0UEQCADIQUMAgsgBigCACEOIAVBAWohBSAEQYQCaiEEIAtBBGshCyAGQQRqIQZBfyANIA5HIA0gDkkbIg5BAUYNAAsgDkH/AXFFDQELIBdFDQMgF0EBayEXIBIgBUECdGpB4BZqKAIAIRIMAQsLIAdBDDYCkAcgByANNgKUByAHQZAHahAqQQAhBSAIQegAaiAEEIcBIAhBkAFqIARBKGoQhwEgCEG4AWogBEHQAGoQhwEgCEEAOgBkIAhBADYCFCAIQQA2AgggCEEANgJcIAhBADYCOCAIQQA2AiwgCEEANgIgIAhBADYCUCAIQQA6AGEgCEEANgJEIAggBC8BeDsB4AEgCCAEKAF6NgHiASAEKAKIASIDQQF0IQYgBCgChAEhCyADIAgoAgBLBEAgCEEAIANBAUECEJIBIAgoAgghBQsgCCgCBCAFQQF0aiALIAYQOxogCCADIAVqNgIIIAQoApABIQYgBCgClAEiAyAIKAIMIAgoAhQiBWtLBEAgCEEMaiAFIANBAUEBEJIBIAgoAhQhBQsgCCgCECAFaiAGIAMQOxogCCADIAVqNgIUIAggBC0A5AE6AGQgBCgCnAEhBiAEKAKgASIDIAgoAhggCCgCICIFa0sEQCAIQRhqIAUgA0EBQQEQkgEgCCgCICEFCyAIKAIcIAVqIAYgAxA7GiAIIAMgBWo2AiAgBCgCuAEiA0ECdCEGIAQoArQBIQsgAyAIKAIwIAgoAjgiBWtLBEAgCEEwaiAFIANBBEEEEJIBIAgoAjghBQsgCCgCNCAFQQJ0aiALIAYQOxogCCADIAVqNgI4IAhBPGogBEG8AWoQhwFBACEFIAhBADYC5AIgCEGUA2ogBEGAAmooAgA2AgAgCCAEKQL4ATcCjAMgBCgC7AEhBiAEKALwASIDIAgoAtwCSwRAIAhB3AJqQQAgA0EBQQEQkgEgCCgC5AIhBQsgCCgC4AIgBWogBiADEDsaIAggAyAFajYC5AIgByANNgIsIAdBATYCKAsgFCAHQQhqQeADEDsgBykCADcD4AMMAQsgFEKAgICAgPgANwMYIBQgIjcDECAUIA02AgwgFCAQNgIIIBRBAzYCACAHQQhqEEkgB0HYA2oQKwsgB0GAC2okAAJAIAkoApgEIgNBA0cEQCAJQZAEaiIFIAlBvARqKAIANgIAIAlBiARqIgYgCUG0BGopAgA3AwAgCUGABGoiCyAJQawEaikCADcDACAJQfgDaiIIIAlBpARqKQIANwMAIAkgCSkCnAQ3A/ADIAlBMGogCUHABGpBwAMQOxogCUEUaiAIKQMANwIAIAlBHGogCykDADcCACAJQSRqIAYpAwA3AgAgCUEsaiAFKAIANgIAIAkgAzYCCCAJIAkpA/ADNwIMIAlBADYCoAQgCUKAgICAEDcCmAQgCUHwA2ohBCAJQQhqIQ4jAEEgayIHJABBgMAAIQwCQAJAIBQoAgAiCCAUKAIIIgVrQSBPBEAgCCEGIAUhAwwBCyAHQRBqIA4gFBByAkACQCAHLQAQQQRGBEAgBygCFCENDAELIAcpAxAiIEIgiKchDSAgpyIDQf8BcUEERw0BCyANBEAgFCgCACEGIBQoAgghAwwCCyAEQQQ6AAAgBEEANgIEDAILIAQgDTYCBCAEIAM6AAAgBEEDaiADQRh2OgAAIAQgA0EIdjsAAQwBC0EAIQ0DQAJAIAMgBkcgBiAIR3INACAHQRBqIA4gFBByAkACQAJAIActABBBBEYEQCAHKAIUIQYMAQsgBykDECIgQiCIpyEGICCnIgNB/wFxQQRHDQELIBQoAgghAyAGRQ0BIBQoAgAhBgwCCyAEIAY2AgQgBCADOgAAIARBA2ogA0EYdjoAACAEIANBCHY7AAEMAwsgBEEEOgAAIAQgAyAFazYCBAwCCwJAAkACQCADIAZGBEAgBkEgaiILIAZBAXQiEiALIBJLGyILQQBIDQEgByAGBH8gByAGNgIYIAcgFCgCBDYCEEEBBUEACzYCFCAHQQRqQQEgCyAHQRBqENsBIAcoAgRBAUYNASAHKAIIIQYgFCALNgIAIBQgBjYCBCALIQYLIBQoAgQgA2oiEiANakEAIAwgBiADayIXIAwgF0kbIgsgDWsQWhogB0EQaiAOIBIgCxAoIActABBBBEYNAQJAA0ACQCAHKQMQIiBCIIgiIqchDQJAAkACQAJAICCnIhBB/wFxQQFrDgQAAgEGBAsgIEKA/gODQoDGAFENAgwDCyANLQAIQSNHDQIgDSgCACEQIA1BBGooAgAiEygCACIVBEAgECAVEQMACyATKAIEIhUEQCAQIBUgEygCCBCnBAsgDUEMQQQQpwQMAQsgDS0ACEEjRw0BCyAHQRBqIA4gEiALECggBy0AEEEERw0BDAQLCyAEIBA6AAAgFCADNgIIIARBB2ogIkIYiDwAACAEQQVqICJCCIg9AAAgBCAgQgiIQv///weDICJCGIaEPgABDAULIBQgAzYCCAwCCyAEQoHMADcCAAwDCyAHKAIUIhIgC0sEQEGYo8EAQSlBuKTBABDtAgALIBQgAyASaiIDNgIIIBJFDQAgCyASayENIAsgEkcgDCAXS3INAUF/IAxBAXQgDEEASBshDAwBCwsgBEEEOgAAIAQgAyAFazYCBAsgB0EgaiQAIAktAPADQQRGBEAgGCAJKQKYBDcCACAYQQhqIAlBoARqKAIANgIAIA4QRwwCCyAJIAkpA/ADIiCnIgNBGHY6APMDIAkgA0EIdjsA8QMgCSAgQiCIPgL0AyAJICA8APADIAlB8ANqEKIDIQMgGEGAgICAeDYCACAYIAM2AgQgCSgCmAQiAwRAIAkoApwEIANBARCnBAsgCUEIahBHDAELIAlBjARqIAlBuARqKQMAIiA3AgAgCUGEBGogCUGwBGoiAykDACIiNwIAIAlB/ANqIAlBqARqIgUpAwAiITcCACAJIAkpA6AEIiM3AvQDIAMgIDcDACAFICI3AwAgCUGgBGogITcDACAJICM3A5gEIwBBIGsiCyQAIAtBCGoiBhDwAQJ/IwBBMGsiAyQAIANBKGogCUGYBGoiBUEYaikCADcCACADQSBqIAVBEGopAgA3AgAgA0EYaiAFQQhqKQIANwIAQYXlwgAtAAAaIAMgBSkCADcCEEHAAEEIEPUDIgUEQCAFQay6wAA2AgAgBSADKQIMNwIcIAUgBikCADcCBCAFQQxqIAZBCGopAgA3AgAgBUEUaiAGQRBqKQIANwIAIAVBJGogA0EUaikCADcCACAFQSxqIANBHGopAgA3AgAgBUE0aiADQSRqKQIANwIAIAVBPGogA0EsaigCADYCACADQTBqJAAgBQwBC0EIQcAAENMEAAshAyALQSBqJAAgGEGAgICAeDYCACAYIAM2AgQLIAlBgAhqJAAgCigCLCEDIAooAigiC0GAgICAeEYNESAKKAIwCzYCFCAKIAM2AhAgCiALNgIMIApCADcDGCAKIApBDGo2AiAgCkEoaiEHQgAhIiMAQfAAayIFJAAgBUEoaiIIQgA3AwAgBUEgaiIJQgA3AwAgBUEYaiIEQgA3AwAgBUEQaiINQgA3AwAgBUEIaiIOQgA3AwAgBUIANwMAAkAgCkEYaiIGKAIIIhQoAggiAyADIAYpAwAiIKcgICADrSIhVhsiC08EQAJAAkAgAyALa0EwTwRAIAggFCgCBCALaiIDQShqKQAANwMAIAkgA0EgaikAADcDACAEIANBGGopAAA3AwAgDSADQRBqKQAANwMAIA4gA0EIaikAADcDACAFIAMpAAA3AwBBBCEDDAELQeDZwAApAgAiI0IIiCEiICOnIQMgI0L/AYNCBFINAQsgIEIwfCEhCyAGICE3AwACQCADQf8BcUEERgRAIAVBMDYCOCAFIAU2AjQjAEEgayIDJAAgBUE8aiILAn8CQCALAn8gBUE0aiIGKAIEIglBA00EQCADQQA6AAsgA0ElOwAJIANBADYCDCADQQE6AAggCyADQQhqEPsCNgIEDAILIAYgCUEEayIENgIEIAYgBigCACIIQQRqNgIAIARBA00EQCADQQA6AAsgA0ElOwAJIANBADYCDCADQQE6AAggCyADQQhqEPsCNgIEDAILIAgqAAAhJyAGIAlBCGsiBDYCBCAGIAhBCGo2AgAgBEEDTQRAIANBADoACyADQSU7AAkgA0EANgIMIANBAToACCALIANBCGoQ+wI2AgQMAgsgCCgABCEOIAYgCUEMayIENgIEIAYgCEEMajYCACAEQQNNBEAgA0EAOgALIANBJTsACSADQQA2AgwgA0EBOgAIIAsgA0EIahD7AjYCBAwCCyAIKAAIIRQgBiAJQRBrIgQ2AgQgBiAIQRBqNgIAIARBBEkEQCADQQA6AAsgA0ElOwAJIANBADYCDCADQQE6AAggCyADQQhqEPsCNgIEDAILIAgoAAwhDCAGIAlBFGsiBDYCBCAGIAhBFGo2AgAgBEEESQRAIANBADoACyADQSU7AAkgA0EANgIMIANBAToACCALIANBCGoQ+wI2AgQMAgsgCCoAECEmIAYgCUEYayIENgIEIAYgCEEYajYCACAEQQNNBEAgA0KBygA3AwggCyADQQhqEPsCNgIEDAILIAgqABQhKCAGIAlBHGsiBDYCBCAGIAhBHGo2AgAgBEEDTQRAIANCgcoANwMIIAsgA0EIahD7AjYCBAwCCyAIKAAYIRIgBiAJQSBrNgIEIAYgCEEgajYCACAIKAAcIRcjAEEQayIIJAAgA0EIaiIJAn8CQCAGKAIEIg1BA00EQCAIQoHKADcDCCAJIAhBCGoQ+wI2AgQMAQsgBiANQQRrIhg2AgQgBiAGKAIAIgRBBGo2AgAgGEEDTQRAIAhCgcoANwMIIAkgCEEIahD7AjYCBAwBCyAEKAAAIRggBiANQQhrIhA2AgQgBiAEQQhqNgIAIBBBA00EQCAIQoHKADcDCCAJIAhBCGoQ+wI2AgQMAQsgBCgABCEQIAYgDUEMayITNgIEIAYgBEEMajYCACAJAn8gE0EDTQRAIAhCgcoANwMIIAhBCGoQ+wIMAQsgCSAEKAAINgIMIAkgEDYCCCAJIBg2AgQgBiANQRBrNgIEIAYgBEEQajYCACAJIAQoAAw2AhBBAAwCCzYCBAtBAQs2AgAgCEEQaiQAIAMoAgwiBiADKAIIDQAaIAsgAykCEDcCCCALQRBqIANBGGooAgA2AgAgCyAXNgIwIAsgEjYCLCALICg4AiggCyAmOAIkIAsgDDYCICALIBQ2AhwgCyAONgIYIAsgJzgCFCALIAY2AgRBAAwCCzYCBAtBAQs2AgAgA0EgaiQAIAUoAkAhAyAFKAI8RQRAIAcgBSkCRDcCCCAHQTBqIAVB7ABqKAIANgIAIAdBKGogBUHkAGopAgA3AgAgB0EgaiAFQdwAaikCADcCACAHQRhqIAVB1ABqKQIANwIAIAdBEGogBUHMAGopAgA3AgAgB0EANgIAIAcgAzYCBAwCCyAFIAM2AjxBzI/AAEErIAVBPGpBvI/AAEGckMAAEKACAAsgB0EBNgIAIAcgA61C/wGDICJCCIaENwIECyAFQfAAaiQADAELIAVBADYCTCAFQQE2AkAgBUGs2cAANgI8IAVCBDcCRCAFQTxqQdjawAAQpAMACwJAAkAgCigCKEUEQCAKQegAaiAKQcgAaigCADYCACAKIAopAkA3A2AgCioCPCEmIAoqAkwhJyAKKgJQISggCigCVCIHQQJ0IhchBSAWIBYoAggiAyAXSQR/IBcgAyIEayIFIBYoAgAgA2tLBEAgFiADIAVBBEEEEJABIBYoAgghBAsgFigCBCILIARBAnQiCGohBiAFQQJPBH8gBkEAIBcgA0F/c2pBAnQQWhogBCAFakEBayEEIAdBBHQgA0ECdGsgC2ogCGpBBGsFIAYLQQA2AgAgBEEBagUgBQs2AgggGS0ADkUEQCAKQQA2AjggCkEBNgIsIApB7JPAADYCKCAKQgQ3AjAgCkEoahCrAiEDDBMLQQAhAyAHQQBIDQICQCAHRQRAQQEhCAwBC0GF5cIALQAAGkEBIQMgB0EBEPYDIghFDQMLIBktAAwNASAKQQA2AjggCkEBNgIsIApB0JTAADYCKCAKQgQ3AjAgCkEoahCrAiEDDBELIAogCikCLDcDKCAKQShqEKIDIQMMEQtBACEDAkAgB0H/////A0sgF0H8////B0tyDQBBBCEGIBcEQEGF5cIALQAAGkEEIQMgF0EEEPYDIgZFDQEgByEbCyAmQ///f0tDAP9/RyAZLQAPIh8blSEqIAdBAnQhFCAHQQNxIQ0gB0H8////A3EhHSAHQQJrIRggB0EBayISQQNxIQ4gEkF8cSEeIBktAAkgB0EBS3EhGUHg2cAAKQIAIiBC/wGDISQgIEIIiCEiIAetISMgIKchC0EAIQkDQCAHBEAgBkEAIBcQWhoLAkACQAJAAn8CQCAfRQ0AAkACQCAKKAIgIgQoAggiAyADIAopAxgiIKcgICADrSIhVhsiBU8EQAJAAkAgByADIAVrTQRAIAQoAgQgBWohAyAHQQFHBEAgCCADIAcQOxpBBCEDDAILIAggAy0AADoAAEEEIQMMAQsgCyEDICRCBFINAQsgICAjfCEhCyAKICE3AxggA0H/AXFBBEYEQCAZRQ0CIAgtAAAhBEEBIQMgGEEDTwRAQQAhBQNAIAUgCGoiA0EBaiIMIAQgDC0AAGoiBDoAACADQQJqIgwgBCAMLQAAaiIEOgAAIANBA2oiDCAEIAwtAABqIgQ6AAAgA0EEaiIDIAQgAy0AAGoiBDoAACAeIAVBBGoiBUcNAAsgBUEBaiEDCyAORQ0DIAMgCGohAyAOIQUDQCADIAQgAy0AAGoiBDoAACADQQFqIQMgBUEBayIFDQALDAMLIAogIj4AKSAKQS9qICJCMIg8AAAgCkEtaiAiQiCIPQAAIAogAzoAKCAKQShqEKIDDAQLDBsLIAdFDQELQQAhBSASQQNJBH8gCAUgBiEDA0AgAyAFIAhqIgQtAABBEHQ2AgAgA0EEaiAEQQFqLQAAQRB0NgIAIANBCGogBEECai0AAEEQdDYCACADQQxqIARBA2otAABBEHQ2AgAgA0EQaiEDIB0gBUEEaiIFRw0ACyAFIAhqCyEDIA1FDQAgBiAFQQJ0aiEEIA0hBQNAIAQgAy0AAEEQdDYCACAEQQRqIQQgA0EBaiEDIAVBAWsiBQ0ACwsCQAJAAkAgCigCICIEKAIIIgMgAyAKKQMYIiCnICAgA60iIVYbIgVPBEACQAJAIAcgAyAFa00EQCAEKAIEIAVqIQMgB0EBRwRAIAggAyAHEDsaQQQhAwwCCyAIIAMtAAA6AABBBCEDDAELIAshAyAkQgRSDQELICAgI3whIQsgCiAhNwMYIANB/wFxQQRHBEAgCiAiPgApIApBL2ogIkIwiDwAACAKQS1qICJCIIg9AAAgCiADOgAoIApBKGoQogMMBQsgGUUNASAILQAAIQRBASEDIBhBA08EQEEAIQUDQCAFIAhqIgNBAWoiDCAEIAwtAABqIgQ6AAAgA0ECaiIMIAQgDC0AAGoiBDoAACADQQNqIgwgBCAMLQAAaiIEOgAAIANBBGoiAyAEIAMtAABqIgQ6AAAgHiAFQQRqIgVHDQALIAVBAWohAwsgDkUNAiADIAhqIQMgDiEFA0AgAyAEIAMtAABqIgQ6AAAgA0EBaiEDIAVBAWsiBQ0ACwwCCwwbCyAHRQ0BC0EAIQUgEkEDSQR/IAgFIAYhAwNAIAMgAygCACAFIAhqIgQtAABBCHRyNgIAIANBBGoiDCAMKAIAIARBAWotAABBCHRyNgIAIANBCGoiDCAMKAIAIARBAmotAABBCHRyNgIAIANBDGoiDCAMKAIAIARBA2otAABBCHRyNgIAIANBEGohAyAdIAVBBGoiBUcNAAsgBSAIagshBCANRQ0AIAYgBUECdGohAyANIQUDQCADIAMoAgAgBC0AAEEIdHI2AgAgA0EEaiEDIARBAWohBCAFQQFrIgUNAAsLAkAgCigCICIEKAIIIgMgAyAKKQMYIiCnICAgA60iIVYbIgVPBEACQAJAIAcgAyAFa00EQCAEKAIEIAVqIQMgB0EBRwRAIAggAyAHEDsaQQQhAwwCCyAIIAMtAAA6AABBBCEDDAELIAshAyAkQgRSDQELICAgI3whIQsgCiAhNwMYIANB/wFxQQRHDQEgGUUNAyAILQAAIQRBASEDIBhBA08EQEEAIQUDQCAFIAhqIgNBAWoiDCAEIAwtAABqIgQ6AAAgA0ECaiIMIAQgDC0AAGoiBDoAACADQQNqIgwgBCAMLQAAaiIEOgAAIANBBGoiAyAEIAMtAABqIgQ6AAAgHiAFQQRqIgVHDQALIAVBAWohAwsgDkUNBCADIAhqIQMgDiEFA0AgAyAEIAMtAABqIgQ6AAAgA0EBaiEDIAVBAWsiBQ0ACwwECwwZCyAKICI+ACkgCkEvaiAiQjCIPAAAIApBLWogIkIgiD0AACAKIAM6ACggCkEoahCiAwshAyAbRQ0UIAYgG0ECdEEEEKcEDBQLIAdFDQELQQAhBSASQQNJBH8gCAUgBiEDA0AgAyADKAIAIAUgCGoiBC0AAHI2AgAgA0EEaiIMIAwoAgAgBEEBai0AAHI2AgAgA0EIaiIMIAwoAgAgBEECai0AAHI2AgAgA0EMaiIMIAwoAgAgBEEDai0AAHI2AgAgA0EQaiEDIB0gBUEEaiIFRw0ACyAFIAhqCyEEIA0EQCAGIAVBAnRqIQMgDSEFA0AgAyADKAIAIAQtAAByNgIAIANBBGohAyAEQQFqIQQgBUEBayIFDQALCyAKQeAAaiAJQQJ0aioCACErQQAhAyAUIQUgBiEEA0AgKyAqIAQoAgCzlJIhJgJAAkACfwJAAkACQAJAAkACQAJAAkACQAJAIAkOAwECAwALQfSNwABBKEGcjsAAEO0CAAsgJrwiE0H///8DcSEVIBNBgICAgHhxIQwgE0GAgID8B3EiEEGAgID8B0YEQCAVQQ12IAxBEHZyIBVBAEdBCXRyQYD4AXIhDAwICyAMQRB2IQwgEEGAgIC4BEsNAiAQQYCAgMQDTwRAIBNBDHYgE0H/3wBxQQBHcSAQQQ12IBVBDXZqQYCAAWogDHJqIQwMCAsgEEGAgICYA0kNByAVQYCAgARyIhNBHiAQQRd2IhVrdiEQIBNBHSAVayIVdkEBcQR/IBBBAyAVdEEBayATcUEAR2oFIBALIAxyIQwMBwsgJrwiE0H///8DcSEVIBNBgICAgHhxIQwgE0GAgID8B3EiEEGAgID8B0YEQCAVQQ12IAxBEHZyIBVBAEdBCXRyQYD4AXIhDAwGCyAMQRB2IQwgEEGAgIC4BEsNAiAQQYCAgMQDTwRAIBNBDHYgE0H/3wBxQQBHcSAQQQ12IBVBDXZqQYCAAWogDHJqIQwMBgsgEEGAgICYA0kNBSAVQYCAgARyIhNBHiAQQRd2IhVrdiEQIBNBHSAVayIVdkEBcQR/IBBBAyAVdEEBayATcUEAR2oFIBALIAxyIQwMBQsgJrwiE0H///8DcSEVIBNBgICAgHhxIQwgE0GAgID8B3EiEEGAgID8B0YEQCAVQQ12IAxBEHZyIBVBAEdBCXRyQYD4AXIhDAwECyAMQRB2IQwgEEGAgIC4BEsNAiAQQYCAgMQDTwRAIBNBDHYgE0H/3wBxQQBHcSAQQQ12IBVBDXZqQYCAAWogDHJqIQwMBAsgEEGAgICYA0kNAyAVQYCAgARyIhNBHiAQQRd2IhVrdiEQIBNBHSAVayIVdkEBcQR/IBBBAyAVdEEBayATcUEAR2oFIBALIAxyIQwMAwsgDEGA+AFyIQwMBAsgDEGA+AFyIQwMAgsgDEGA+AFyIQwLIANBAnRBAnIiECAWKAIIIhNJBEAgDEH//wNxIQwgFigCBCAQQQJ0agwDCyAQIBNB5I3AABCtAgALIANBAnRBAXIiECAWKAIIIhNJBEAgDEEQdCEMIBYoAgQgEEECdGoMAgsgECATQdSNwAAQrQIACyADQQJ0QQFyIhAgFigCCCITTw0BIAxB//8DcSEMIBYoAgQgEEECdGoLIhAgECgCACAMcjYCAAwBCyAQIBNBxI3AABCtAgALIANBAWohAyAEQQRqIQQgBUEEayIFDQALCyAJQQFqIglBA0cNAAsgGwRAIAYgG0ECdEEEEKcECwJAIAooAiAiBigCCCIDIAMgCikDGCIhpyAhIAOtIiBWGyIFTwRAAkACQCAHIAMgBWtNBEAgBigCBCAFaiEDIAdBAUcEQCAIIAMgBxA7GkEEIQMMAgsgCCADLQAAOgAAQQQhAwwBCyALIQMgJEIEUg0BCyAhICN8ISALIAogIDcDGCADQf8BcUEERw0HICggJ5MhKCAHRQ0GIBYoAgRBDGohAyAWKAIIIQ1BAyEEIAchCSAIIQUDQEEAIQYgJyAoIAUtAACzQwAAf0OVlJIQUiImQwAAAABcBEBDAAB/Q0MAAAAAICYQqgFDAAAQQZJDRSKRPZVDAACAP5IiJiAmQwAAAABdGyImICZDAAB/Q14bENgDIiZDAAAAAGAhBkH/AQJ/ICZDAACAT10gJkMAAAAAYHEEQCAmqQwBC0EAC0EAIAYbICZDAAB/Q14bIQYLIAQgDU8NAiAFQQFqIQUgAyADKAIAIAZyNgIAIANBEGohAyAEQQRqIQQgCUEBayIJDQALDAULDBQLIAQgDUGsjsAAEK0CAAsgAyAXQdiUwAAQ1wMACyADIAdBjJTAABDXAwALIAQgC0Gwk8AAENcDAAsgCikDGCEgCyAKKAIgIgYoAggiAyADICCnICAgA60iIVYbIgVJDQ4CQAJAIAcgAyAFa00EQCAGKAIEIAVqIQMgB0EBRwRAIAggAyAHEDsaQQQhAwwCCyAIIAMtAAA6AABBBCEDDAELIAshAyAkQgRSDQELICAgI3whIQsgCiAhNwMYIANB/wFxQQRHDQAgBwRAIBYoAgRBDGohAyAWKAIIIQ1BAyEEIAchCSAIIQUDQEEAIQYgJyAoIAUtAACzQwAAf0OVlJIQUiImQwAAAABcBEBDAAB/Q0MAAAAAICYQqgFDAAAQQZJDRSKRPZVDAACAP5IiJiAmQwAAAABdGyImICZDAAB/Q14bENgDIiZDAAAAAGAhBkH/AQJ/ICZDAACAT10gJkMAAAAAYHEEQCAmqQwBC0EAC0EAIAYbICZDAAB/Q14bIQYLIAQgDU8NAyAFQQFqIQUgAyADKAIAIAZBCHRyNgIAIANBEGohAyAEQQRqIQQgCUEBayIJDQALIAopAxghIQsgCigCICIGKAIIIgMgAyAhpyAhIAOtIiBWGyIFSQ0OAkACQCAHIAMgBWtNBEAgBigCBCAFaiEDIAdBAUcEQCAIIAMgBxA7GkEEIQMMAgsgCCADLQAAOgAAQQQhAwwBCyALIQMgJEIEUg0BCyAhICN8ISALIAogIDcDGCADQf8BcUEERw0AAn8gB0UEQEEBIQVBACEEQQAMAQsgFigCBEEMaiEDIBYoAgghDUEDIQQgByEJIAghBQNAQQAhBiAnICggBS0AALNDAAB/Q5WUkhBSIiZDAAAAAFwEQEMAAH9DQwAAAAAgJhCqAUMAABBBkkNFIpE9lUMAAIA/kiImICZDAAAAAF0bIiYgJkMAAH9DXhsQ2AMiJkMAAAAAYCEGQf8BAn8gJkMAAIBPXSAmQwAAAABgcQRAICapDAELQQALQQAgBhsgJkMAAH9DXhshBgsgBCANTw0EIAVBAWohBSADIAMoAgAgBkEQdHI2AgAgA0EQaiEDIARBBGohBCAJQQFrIgkNAAtBACEDIAdBA2wiBEEASA0EIAdFBEBBASEFQQAMAQtBheXCAC0AABpBASEDIARBARD2AyIFRQ0EIAQLIQ0gCigCICIJKAIIIgMgAyAKKQMYIiGnICEgA60iIFYbIgZJDQ4CQAJAIAcgAyAGa00EQCAJKAIEIAZqIQMgB0EBRwRAIAggAyAHEDsaQQQhAwwCCyAIIAMtAAA6AABBBCEDDAELIAshAyAkQgRSDQELICEgI3whIAsgCiAgNwMYAkACQCADQf8BcUEERw0AIAcEQEEAIQMgByEJIAghBgNAIAMgBE8NAyADIAVqIAYtAAA6AAAgA0EDaiEDIAZBAWohBiAJQQFrIgkNAAsgCikDGCEgCyAKKAIgIgkoAggiAyADICCnICAgA60iIVYbIgZJDRACQAJAIAcgAyAGa00EQCAJKAIEIAZqIQMgB0EBRwRAIAggAyAHEDsaQQQhAwwCCyAIIAMtAAA6AABBBCEDDAELIAshAyAkQgRSDQELICAgI3whIQsgCiAhNwMYIANB/wFxQQRHDQAgBwRAIAchCUEBIQMgCCEGA0AgAyAETw0DIAMgBWogBi0AADoAACADQQNqIQMgBkEBaiEGIAlBAWsiCQ0ACyAKKQMYISELIAooAiAiCSgCCCIDIAMgIacgISADrSIgVhsiBkkNEAJAAkAgByADIAZrTQRAIAkoAgQgBmohAyAHQQFHBEAgCCADIAcQOxpBBCEDDAILIAggAy0AADoAAEEEIQMMAQsgCyEDICRCBFINAQsgISAjfCEgCyAKICA3AxggA0H/AXFBBEcNAAJAAkAgBwRAQQAhBkECIQMDQCADIARPDQUgAyAFaiAGIAhqLQAAOgAAIANBA2ohAyAHIAZBAWoiBkcNAAtBACEDQQAhBgNAIAMgBE8NAiADQQFqIARPDQMgA0ECaiAETw0KIAMgBWoiCSwAACEOIAlBAmosAAAhGyAKIAlBAWosAACyQwAA/kKVIic4AiwgCiAOskMAAP5ClSImOAIoIAogG7JDAAD+QpUiKDgCMCAKQwAAgD8gJiAmlCAnICeUkiAoICiUkpNDAAAAABDVA5E4AjRDAAAAACErIApBKGoiCSoCCCEoIAkqAgQhKiAJKgIAIScgCSoCDCImQwAAAABdBEAgJowhJiAojCEoICqMISogJ4whJwtDAACAPyEsAn0CQCAmvCIOQf////8HcSIJQf////sDTQRAIAlBgICA+ANPBEAgDkEATgRAQwAAgD8gJpNDAAAAP5QiJpEiKSAmICYgJkNr0w28lEO6Ey+9kpRDdaoqPpKUICZDruU0v5RDAACAP5KVlCAmICm8QYBgcb4iJiAmlJMgKSAmkpWSICaSIiYgJpIMBAtD2g/JPyAmQwAAgD+SQwAAAD+UIiaRIikgKSAmICYgJkNr0w28lEO6Ey+9kpRDdaoqPpKUICZDruU0v5RDAACAP5KVlENoIaKzkpKTIiYgJpIhKQwCC0PaD8k/ISkgCUGBgICUA0kNAUNoIaIzICYgJpQiKSApIClDa9MNvJRDuhMvvZKUQ3WqKj6SlCApQ67lNL+UQwAAgD+SlSAmlJMgJpND2g/JP5IMAgtDAAAAACAmICaTlSAJQYCAgPwDRw0BGkMAAAAAQ9oPSUAgDkEAThsMAQsgKQshLUMAAAAAISYgKCAolCAqICqUICcgJ5SSkpEiKUO9N4Y1XUUEQCAoICmVISsgJyAplSEsICogKZUhJgsgJiAriyAmiyAsi5KSIieVISYgLCAnlSEoAkAgK0MAAAAAYARAICYhJwwBC0MAAIA/ICiLk0MAAMB/QwAAgD8gJpggJiAmXBuUISdDAACAPyAmi5NDAADAf0MAAIA/ICiYICggKFwblCEoCwJAIAZBAnQiG0ECciIOIBYoAggiCUkEQEH/AQJ/ICdDAAAAP5RDAAAAP5JDAAB/Q5QQ2AMiJ0MAAIBPXSAnQwAAAABgIhRxBEAgJ6kMAQtBAAtBACAUGyAnQwAAf0NeG0EYdCEUIChDAAAAP5RDAAAAP5JDAAB/Q5QQ2AMiJ0MAAAAAYCEMIBYoAgQiFyAOQQJ0aiIOIA4oAgBB/wECfyAnQwAAgE9dICdDAAAAAGBxBEAgJ6kMAQtBAAtBACAMGyAnQwAAf0NeG0EQdCAUcnI2AgAgCSAbQQNyIg5LBEACf0MAAH9DQwAAAAAgLSAtkkOKVqJClBDYAyInICdDAAAAAF0bIicgJ0MAAH9DXhsiJ0MAAIBPXSAnQwAAAABgIglxBEAgJ6kMAQtBAAshGyAXIA5BAnRqIg4gDigCAEH/ASAbQQAgCRsgJ0MAAH9DXhtBGHRyNgIADAILIA4gCUHsjsAAEK0CAAsgDiAJQdyOwAAQrQIACyADQQNqIQMgBkEBaiIGIAdHDQALCyANBEAgBSANQQEQpwQLIAooAiAiBigCCCIDIAMgCikDGCIlpyAlIAOtIiFWGyIFSQ0SAkACQCAHIAMgBWtNBEAgBigCBCAFaiEDAkAgB0EBRwRAIAggAyAHEDsaDAELIAggAy0AADoAAAtBBCEDQgAhIAwBCyAiISAgCyEDICRCBFINAQsgIyAlfCEhCyAKICE3AxggA0H/AXFBBEYEQCAZBEAgEkEDcSEGIAgtAAAhBEEBIQMgGEEDTwRAIBJBfHEhCUEAIQUDQCAFIAhqIgNBAWoiDSAEIA0tAABqIgQ6AAAgA0ECaiINIAQgDS0AAGoiBDoAACADQQNqIg0gBCANLQAAaiIEOgAAIANBBGoiAyAEIAMtAABqIgQ6AAAgCSAFQQRqIgVHDQALIAVBAWohAwsgBkUNCyADIAhqIQMDQCADIAQgAy0AAGoiBDoAACADQQFqIQMgBkEBayIGDQALDAsLIAcNCgwLCyAKICA+ACkgCkEvaiAgQjCIPAAAIApBLWogIEIgiD0AACAKIAM6ACggCkEoahCiAyEDDA8LIAMgBEGYlcAAEK0CAAsgA0EBaiAEQaiVwAAQrQIACyAKICI+ACkgCkEvaiAiQjCIPAAAIApBLWogIkIgiD0AACAKIAM6ACggCkEoahCiAyEDIA1FDQwgBSANQQEQpwQMDAsgAyAEQciVwAAQrQIACyAKICI+ACkgCkEvaiAiQjCIPAAAIApBLWogIkIgiD0AACAKIAM6ACggCkEoahCiAyEDDAoLIAQgDUG8jsAAEK0CAAsgBCANQcyOwAAQrQIACyADIARB6JTAABDXAwALIANBAmogBEG4lcAAEK0CAAsgFigCBCEDIBYoAgghCUEAIQQgByEGIAghBQNAIAQgCU8NAiADIAMoAgAgBS0AAEEYdHI2AgAgA0EQaiEDIARBBGohBCAFQQFqIQUgBkEBayIGDQALCyAKKAIgIgYoAggiAyADIAopAxgiIKcgICADrSIhVhsiBU8EQAJAAkAgByADIAVrTQRAIAYoAgQgBWohAyAHQQFHBEAgCCADIAcQOxpBBCEDDAILIAggAy0AADoAAEEEIQMMAQsgCyEDICRCBFINAQsgICAjfCEhCyAKICE3AxggA0H/AXFBBEcNBAJAIBlFBEAgBw0BDAULIBJBA3EhBiAILQAAIQRBASEDIBhBA08EQCASQXxxIQlBACEFA0AgBSAIaiIDQQFqIg0gBCANLQAAaiIEOgAAIANBAmoiDSAEIA0tAABqIgQ6AAAgA0EDaiINIAQgDS0AAGoiBDoAACADQQRqIgMgBCADLQAAaiIEOgAAIAkgBUEEaiIFRw0ACyAFQQFqIQMLIAZFDQAgAyAIaiEDA0AgAyAEIAMtAABqIgQ6AAAgA0EBaiEDIAZBAWsiBg0ACwsgFigCBCEDIBYoAgghCUEAIQQgByEGIAghBQNAIAQgCU8NAyADIAMoAgAgBS0AAHI2AgAgA0EQaiEDIARBBGohBCAFQQFqIQUgBkEBayIGDQALDAMLDAcLIAQgCUGsj8AAEK0CAAsgBCAJQfyOwAAQrQIACwJAAkACQAJAAkACQAJAAkACQCAKKAIgIgYoAggiAyADIAopAxgiIKcgICADrSIhVhsiBU8EQAJAAkAgByADIAVrTQRAIAYoAgQgBWohAyAHQQFHBEAgCCADIAcQOxpBBCELDAILIAggAy0AADoAAEEEIQsMAQsgJEIEUg0BCyAgICN8ISELIAogITcDGCALQf8BcUEERwRAIAshAwwLCyAZRQ0BIBJBA3EhBiAILQAAIQRBASEDIBhBA08EQCASQXxxIQtBACEFA0AgBSAIaiIDQQFqIgkgBCAJLQAAaiIJOgAAIANBAmoiBCAJIAQtAABqIgk6AAAgA0EDaiIEIAkgBC0AAGoiCToAACADQQRqIgMgCSADLQAAaiIEOgAAIAsgBUEEaiIFRw0ACyAFQQFqIQMLIAZFDQIgAyAIaiEDA0AgAyAEIAMtAABqIgQ6AAAgA0EBaiEDIAZBAWsiBg0ACwwCCwwNCyAHRQ0BCyAWKAIEIQMgFigCCCELQQAhBCAHIQYgCCEFA0AgBCALTw0CIAMgAygCACAFLQAAQQh0cjYCACADQRBqIQMgBEEEaiEEIAVBAWohBSAGQQFrIgYNAAsLIAooAiAiBigCCCIDIAMgCikDGCIgpyAgIAOtIiFWGyIFSQ0KAkACQCAHIAMgBWtNBEAgBigCBCAFaiEDIAdBAUcEQCAIIAMgBxA7GkEEIQMMAgsgCCADLQAAOgAAQQQhAwwBC0Hg2cAAKQIAIiRCCIghIiAkpyEDICRC/wGDQgRSDQELICAgI3whIQsgCiAhNwMYIANB/wFxQQRHDQYgGUUNASASQQNxIQYgCC0AACEEQQEhAyAYQQNPBEAgEkF8cSELQQAhBQNAIAUgCGoiA0EBaiIJIAQgCS0AAGoiCToAACADQQJqIgQgCSAELQAAaiIJOgAAIANBA2oiBCAJIAQtAABqIgk6AAAgA0EEaiIDIAkgAy0AAGoiBDoAACALIAVBBGoiBUcNAAsgBUEBaiEDCyAGRQ0CIAMgCGohAwNAIAMgBCADLQAAaiIEOgAAIANBAWohAyAGQQFrIgYNAAsMAgsgBCALQYyPwAAQrQIACyAHRQ0BCyAWKAIEIQMgFigCCCELQQAhBCAHIQYgCCEFA0AgBCALTw0CIAMgAygCACAFLQAAQRB0cjYCACADQRBqIQMgBEEEaiEEIAVBAWohBSAGQQFrIgYNAAsLIAooAhQgCigCGEcNASAHBEAgCCAHQQEQpwQLIAooAgwiAwRAIAooAhAgA0EBEKcEC0EAIQMMBQsgBCALQZyPwAAQrQIACyAKQQA2AjggCkEBNgIsIApBkJXAADYCKCAKQgQ3AjAgCkEoahCrAiEDDAELIAogIj4AKSAKQS9qICJCMIg8AAAgCkEtaiAiQiCIPQAAIAogAzoAKCAKQShqEKIDIQMLIAdFDQAgCCAHQQEQpwQLIAooAgwiBUUNACAKKAIQIAVBARCnBAsgCkHwAGokACADDAELIApBADYCOCAKQQE2AiwgCkGs2cAANgIoIApCBDcCMCAKQShqQdjawAAQpAMACyIDRQRAIBogESkCIDcCACAaQRBqIBEpAgg3AgAgGkEIaiARQShqKQIANwIAIBpBGGogEUEQaigCADYCAAwBCyAaQYCAgIB4NgIQIBogAzYCACARKAIIIgNFDQAgESgCDCADQQJ0QQQQpwQLIBFB4ABqJAAMAQtBCCAIQZyRwAAQqgQACwJAAkACQCAPKAIoIgVBgICAgHhHBEAgDygCLCEGAn8gDygCMCILQQJ2IgMgAUUNABogAyACRQ0AGiABIAMgAW4iCCADIAEgCGxHaiIIIAIgAiAISxtsIgFFDQIgAyABbiICIAMgASACbEdqIAFsC0ECdBAWIQAQaSIBIAAmASAPIAE2AmQgDyAPQeQAakEAIAsQqQQ2AmggD0HoAGogBiALEOkBEAQhABBpIgEgACYBIA8gATYCbCAPQfSFwABBCRDbAyIBNgJYIAO4EAEhABBpIgIgACYBIA8gAjYCNCAPQRhqIA9B7ABqIA9B2ABqIA9BNGoQ3QIgDy0AGA0CIAJBhAFPBEAgAhDGASAPKAJYIQELIAFBhAFPBEAgARDGAQsgD0H9hcAAQQwQ2wMiATYCWCAPIA8oAmQiAjYCNCAPQRhqIA9B7ABqIA9B2ABqIA9BNGoQ3QIgDy0AGA0DIAJBhAFPBEAgAhDGASAPKAJYIQELIAFBhAFPBEAgARDGAQsgDygCbCAPKAJoIgJBhAFPBEAgAhDGAQsgBQRAIAYgBUECdEEEEKcECyAPKAIMIgIEQCAcIAJBARCnBAsgDygCCCICQYQBTwRAIAIQxgELIA9B8ABqJAAMBAsgDyAPKAIYNgJsIA9BATYCRCAPQeiGwAA2AkAgD0IBNwJMIA8gD0HsAGqtQoCAgIAghDcDWCAPIA9B2ABqNgJIIA9BNGogD0FAaxDQASAPKAI4IA8oAjwQyAQACyMAQSBrIgEkACABQQA2AhggAUEBNgIMIAFBmNnCADYCCCABQgQ3AhAgAUEIakHkhcAAEKQDAAsgDyAPKAIcNgJAQZyGwABBKyAPQUBrQYyGwABB2IbAABCgAgALIA8gDygCHDYCQEGchsAAQSsgD0FAa0GMhsAAQciGwAAQoAIACyIBJQEgARDGAQvvDgEOfxBpIgQgASYBEGkiBSACJgEjAEEgayIKJAAgCiAFNgIIIAogBDYCBCAKIAA2AgAgCiAKQQRqIgAoAgAQ2wQ2AgwgCiAKQQhqNgIcIAogCjYCGCAKIAA2AhQgCiAKQQxqNgIQIApBEGohACMAQUBqIggkAAJAAkACQAJAQQBBhIfAACgCABEEACINBEAgDSgCAEUEQCAAKAIMIQ8gACgCCCEHIA1BfzYCACAAKAIEIAAoAgAoAgAiBiANQQRqIgUoAggiBEsEQCAGIAQiAGsiCSAFKAIAIABrSwRAIAUgACAJQQJBAhCPASAFKAIIIQALIAUoAgQiDiAAQQF0aiEDIAlBAk8EQCADQQAgBEF/cyAGakEBdBBaGiAAIAZqQQF0IARBAXRrIA5qQQJrIQMgACAJakEBayEACyADQQA7AQAgBSAAQQFqNgIICyAFKAIUIgQgBkkEQCAGIAQiAGsiCSAFKAIMIABrSwRAIAVBDGogACAJQQRBBBCPASAFKAIUIQALIAUoAhAiDiAAQQJ0aiEDIAlBAk8EQCADQQAgBEF/cyAGakECdBBaGiAAIAZqQQJ0IARBAnRrIA5qQQRrIQMgACAJakEBayEACyADQQA2AgAgBSAAQQFqNgIUCyAFKAIgIgBBgPgBTQRAIAAhBEGB+AEgAGsiAyAFKAIYIABrSwRAIAVBGGogACADQQRBBBCPASAFKAIgIQQLIAUoAhwiBiAEQQJ0IglqIQMgAEGA+AFHBH8gA0EAQYDgByAAQQJ0IgNrEFoaIAQgAGtBgPgBaiEEIAkgA2sgBmpBgOAHagUgAwtBADYCACAFIARBAWo2AiALKAIAJQFBACAHKAIAEBUhARBpIgAgASYBIAggADYCDCAHKAIAIgQgDSgCDCIASw0CIA0oAgghCSMAQSBrIgAkACAAIAhBDGoiDCgCABDbBCIDNgIAIAAgBDYCBCADIARHBEAgAEEANgIIIAAgAEEEaiAAQQhqEIwDAAsQ7QMiAxDcAyIGJQEQCSEBEGkiBCABJgEgBkGEAU8EQCAGEMYBCyAEJQEgDCgCACUBIAlBAXYQCiAEQYQBTwRAIAQQxgELIANBhAFPBEAgAxDGAQsgAEEgaiQAIAcoAgAhDEEAIQcjAEFAaiIGJAACQCAMIAUoAggiAE0EQCAFKAIEIQQgBUEANgIgIAUoAhhBgPgBTQRAIAVBGGpBAEGB+AFBBEEEEI8BIAUoAiAhBwsgBSgCHCIJIAdBAnRqQQBBgOAHEFogBSAHQYH4AWoiDjYCIEGA4AdqQQA2AgACQCAMBEAgDEEBdCEDIAQhAANAIAAvAQAiC0GA+AFJBEAgCyAOTw0DIAkgC0ECdGoiCyALKAIAQQFqNgIACyAAQQJqIQAgA0ECayIDDQALCyAJIA5BAnRqQQhrIgAoAgAhAyAAQQA2AgAgBiADNgIIIAAgCUcEQCAHQQFrQQNxIgcEQANAIABBBGsiACgCACELIAAgAzYCACAGIAMgC2oiAzYCCCAHQQFrIgcNAAsLIABBEGshAANAIABBDGoiBygCACELIAcgAzYCACAGIAMgC2oiAzYCCCAAQQhqIgcoAgAhCyAHIAM2AgAgBiADIAtqIgM2AgggAEEEaiIHKAIAIQsgByADNgIAIAYgAyALaiIDNgIIIAAoAgAhByAAIAM2AgAgBiADIAdqIgM2AgggACAJRiAAQRBrIQBFDQALCyAMRQ0CIAxBAXQhByAFKAIQIRAgBSgCFCEMQQAhAANAIAQvAQAiBUGA+AFJBEACQCAFIA5JBEAgCSAFQQJ0aiIFKAIAIgsgDEkNASALIAxBmIXAABCtAgALIAUgDkGIhcAAEK0CAAsgECALQQJ0aiAANgIAIAUgBSgCAEEBajYCAAsgBEECaiEEIABBAWohACAHQQJrIgcNAAsMAgsgCyAOQaiFwAAQrQIACyAMIABB+ITAABCrBAALIAMgCSgCAEYEf0EABSAGQQI2AhwgBkHYhMAANgIYIAZCAjcCJCAGIAmtQoCAgIAQhDcDOCAGIAZBCGqtQoCAgIAQhDcDMCAGIAZBMGo2AiAgBkEMaiIAIAZBGGoQ0AEgABChAyEDQQELIQAgCCADNgIEIAggADYCACAGQUBrJAAgCCgCBCEAIAgoAgANAyAARQ0FIA0oAhgiBCAASQ0EIA0oAhQhBSAIIA9BACAAEKkEIgQ2AiAgCEEgaiAFIAAQ6QEgBEGEAUkNBSAEEMYBDAULENMCAAsQ0gIACyAEIABBqIvAABCrBAALIAggADYCECAIQQE2AiQgCEHEisAANgIgIAhCATcCLCAIIAhBEGqtQoCAgIAghDcDOCAIIAhBOGo2AiggCEEUaiAIQSBqENEBIAgoAhggCCgCHBDIBAALIAAgBEG4i8AAEKsEAAsgCCgCDCIEQYQBTwRAIAQQxgELIA0gDSgCAEEBajYCACAIQUBrJAAgCigCCCIEQYQBTwRAIAQQxgELIAooAgQiBEGEAU8EQCAEEMYBCyAKQSBqJAAgAAsaAQF/IAAoAgAiAQRAIAAoAgQgAUEBEKcECwsaAQF/IAAoAgQiAQRAIAAoAgAgAUEBEKcECwscACAAKAIAIgAoAgAgASAAQQRqKAIAKAIMEQAACxQAIAEgASAAIAAgAV0bIAAgAFwbCxoBAW8gACUBIAEgAhAMIQMQaSIAIAMmASAAC0MAIABFBEAjAEEgayIAJAAgAEEANgIYIABBATYCDCAAQfi+wgA2AgggAEIENwIQIABBCGogAhCkAwALIAAgARDTBAALGAAgALxBgICAgHhxQf////cDcr4gAJKPCxUAIAAoAgAiAEGEAU8EQCAAEMYBCwscACAAQQA2AhAgAEIANwIIIABCgICAgMAANwIACxYBAW8gACABEAAhAhBpIgAgAiYBIAALFgEBbyAAJQEQBSEBEGkiACABJgEgAAsWAQFvIAAlARAGIQEQaSIAIAEmASAACxYAIABBtIHAADYCBCAAIAFBHGo2AgAL2gYBBn8CfwJAAkACQAJAAkAgAEEEayIFKAIAIgZBeHEiBEEEQQggBkEDcSIHGyABak8EQCAHQQAgAUEnaiIJIARJGw0BAkACQCACQQlPBEAgAiADEGUiCA0BQQAMCQsgA0HM/3tLDQFBECADQQtqQXhxIANBC0kbIQECQCAHRQRAIAFBgAJJIAQgAUEEcklyIAQgAWtBgYAIT3INAQwJCyAAQQhrIgIgBGohBwJAAkACQAJAIAEgBEsEQCAHQdTowgAoAgBGDQQgB0HQ6MIAKAIARg0CIAcoAgQiBkECcQ0FIAZBeHEiBiAEaiIEIAFJDQUgByAGEHUgBCABayIDQRBJDQEgBSABIAUoAgBBAXFyQQJyNgIAIAEgAmoiASADQQNyNgIEIAIgBGoiAiACKAIEQQFyNgIEIAEgAxBYDA0LIAQgAWsiA0EPSw0CDAwLIAUgBCAFKAIAQQFxckECcjYCACACIARqIgEgASgCBEEBcjYCBAwLC0HI6MIAKAIAIARqIgQgAUkNAgJAIAQgAWsiA0EPTQRAIAUgBkEBcSAEckECcjYCACACIARqIgEgASgCBEEBcjYCBEEAIQNBACEBDAELIAUgASAGQQFxckECcjYCACABIAJqIgEgA0EBcjYCBCACIARqIgIgAzYCACACIAIoAgRBfnE2AgQLQdDowgAgATYCAEHI6MIAIAM2AgAMCgsgBSABIAZBAXFyQQJyNgIAIAEgAmoiASADQQNyNgIEIAcgBygCBEEBcjYCBCABIAMQWAwJC0HM6MIAKAIAIARqIgQgAUsNBwsgAxAeIgFFDQEgASAAQXxBeCAFKAIAIgFBA3EbIAFBeHFqIgEgAyABIANJGxA7IAAQPgwICyAIIAAgAyABIAEgA0sbEDsaIAUoAgAiAkF4cSIDIAFBBEEIIAJBA3EiAhtqSQ0DIAJBACADIAlLGw0EIAAQPgsgCAwGC0H9lMIAQS5BrJXCABDtAgALQbyVwgBBLkHslcIAEO0CAAtB/ZTCAEEuQayVwgAQ7QIAC0G8lcIAQS5B7JXCABDtAgALIAUgASAGQQFxckECcjYCACABIAJqIgIgBCABayIBQQFyNgIEQczowgAgATYCAEHU6MIAIAI2AgAgAAwBCyAACwsWACAAQdy2wAA2AgQgACABQSBqNgIACxYAIABBmLfAADYCBCAAIAFBHGo2AgALFgAgAEHUt8AANgIEIAAgAUEcajYCAAsWACAAQZC4wAA2AgQgACABQRxqNgIACxkAIAEoAhxBlMHCAEEOIAEoAiAoAgwRAgALFgAgACgCHCABIAIgACgCICgCDBECAAvzAQEDf0Hw5MIAKAIARQRAAkACQAJAAkAgAEUNACAAKAIAIABBADYCAEEBcUUNACAAKAIQIQEgACgCDCECIAAoAgghAyAAKAIEIQAMAQtBACEAQYXlwgAtAAAaQYCAECEBQYCAECEDQYCAwABBBBD2AyICRQ0BC0GA5cIAIAE2AgBB9OTCACAANgIAQfzkwgAoAgAhAUH85MIAIAI2AgBB+OTCACgCACEAQfjkwgAgAzYCAEHw5MIAKAIAQfDkwgBBATYCAEUgAEVyRQRAIAEgAEECdEEEEKcECwwBC0EEQYCAwABB1IXAABDXAwALC0H05MIAC/sCAQl/QcTkwgAoAgBFBEACfwJAIABFDQAgACgCACAAQQA2AgBBAXFFDQAgACgCKCEBIAAoAiQhByAAKAIgIQIgACgCHCEDIAAoAhghCCAAKAIUIQQgACgCECEFIAAoAgwhCSAAKAIIIQYgACgCBAwBC0EEIQdBACEBQQQhCEEEIQlBAAshAEHs5MIAIAE2AgBB4OTCACADNgIAQdTkwgAgBTYCAEHI5MIAIAA2AgBB6OTCACgCACEFQejkwgAgBzYCAEHk5MIAKAIAIQBB5OTCACACNgIAQdzkwgAoAgAhAUHc5MIAIAg2AgBB2OTCACgCACECQdjkwgAgBDYCAEHQ5MIAKAIAIQRB0OTCACAJNgIAQczkwgAoAgAhA0HM5MIAIAY2AgBBxOTCACgCACEGQcTkwgBBATYCAAJAIAZFDQAgAwRAIAQgA0ECdEEEEKcECyACBEAgASACQQJ0QQQQpwQLIABFDQAgBSAAQQJ0QQQQpwQLC0HI5MIAC/sCAQl/QZjkwgAoAgBFBEACfwJAIABFDQAgACgCACAAQQA2AgBBAXFFDQAgACgCKCEBIAAoAiQhByAAKAIgIQIgACgCHCEDIAAoAhghCCAAKAIUIQQgACgCECEFIAAoAgwhCSAAKAIIIQYgACgCBAwBC0ECIQlBBCEHQQAhAUEEIQhBAAshAEHA5MIAIAE2AgBBtOTCACADNgIAQajkwgAgBTYCAEGc5MIAIAA2AgBBvOTCACgCACEFQbzkwgAgBzYCAEG45MIAKAIAIQBBuOTCACACNgIAQbDkwgAoAgAhAUGw5MIAIAg2AgBBrOTCACgCACECQazkwgAgBDYCAEGk5MIAKAIAIQRBpOTCACAJNgIAQaDkwgAoAgAhA0Gg5MIAIAY2AgBBmOTCACgCACEGQZjkwgBBATYCAAJAIAZFDQAgAwRAIAQgA0EBdEECEKcECyACBEAgASACQQJ0QQQQpwQLIABFDQAgBSAAQQJ0QQQQpwQLC0Gc5MIACxQAIAAoAgAgASAAKAIEKAIQEQAACxQAIAAoAgAgASAAKAIEKAIMEQAACxQAIAAoAhwgASAAKAIgKAIQEQAAC9MIAQV/IwBB8ABrIgUkACAFIAM2AgwgBSACNgIIAkACQAJAAkACQAJAIAUCfyAAAn8CQCABQYECTwRAQQMgACwAgAJBv39KDQIaIAAsAP8BQb9/TA0BQQIMAgsgBSABNgIUIAUgADYCEEEBIQZBAAwCCyAALAD+AUG/f0oLQf0BaiIGaiwAAEG/f0wNASAFIAY2AhQgBSAANgIQQdDKwgAhBkEFCzYCHCAFIAY2AhggASACSSIGIAEgA0lyRQRAIAIgA0sNAiACRSABIAJNckUEQCAFQQxqIAVBCGogACACaiwAAEG/f0obKAIAIQMLIAUgAzYCICADIAEiAkkEQCADQQFqIgcgA0EDayICQQAgAiADTRsiAkkNBAJAIAIgB0YNACAHIAJrIQggACADaiwAAEG/f0oEQCAIQQFrIQYMAQsgAiADRg0AIAAgB2oiA0ECayIJLAAAQb9/SgRAIAhBAmshBgwBCyAJIAAgAmoiB0YNACADQQNrIgksAABBv39KBEAgCEEDayEGDAELIAcgCUYNACADQQRrIgMsAABBv39KBEAgCEEEayEGDAELIAMgB0YNACAIQQVrIQYLIAIgBmohAgsCQCACRQ0AIAEgAk0EQCABIAJGDQEMBwsgACACaiwAAEG/f0wNBgsgASACRg0EAn8CQAJAIAAgAmoiASwAACIAQQBIBEAgAS0AAUE/cSEGIABBH3EhAyAAQV9LDQEgA0EGdCAGciEADAILIAUgAEH/AXE2AiRBAQwCCyABLQACQT9xIAZBBnRyIQYgAEFwSQRAIAYgA0EMdHIhAAwBCyADQRJ0QYCA8ABxIAEtAANBP3EgBkEGdHJyIgBBgIDEAEYNBgsgBSAANgIkQQEgAEGAAUkNABpBAiAAQYAQSQ0AGkEDQQQgAEGAgARJGwshACAFIAI2AiggBSAAIAJqNgIsIAVBBTYCNCAFQdjLwgA2AjAgBUIFNwI8IAUgBUEYaq1CgICAgJDEAIQ3A2ggBSAFQRBqrUKAgICAkMQAhDcDYCAFIAVBKGqtQoCAgICwxACENwNYIAUgBUEkaq1CgICAgMDEAIQ3A1AgBSAFQSBqrUKAgICAEIQ3A0gMBgsgBSACIAMgBhs2AiggBUEDNgI0IAVBmMzCADYCMCAFQgM3AjwgBSAFQRhqrUKAgICAkMQAhDcDWCAFIAVBEGqtQoCAgICQxACENwNQIAUgBUEoaq1CgICAgBCENwNIDAULIAAgAUEAIAYgBBDsAwALIAVBBDYCNCAFQfjKwgA2AjAgBUIENwI8IAUgBUEYaq1CgICAgJDEAIQ3A2AgBSAFQRBqrUKAgICAkMQAhDcDWCAFIAVBDGqtQoCAgIAQhDcDUCAFIAVBCGqtQoCAgIAQhDcDSAwDCyACIAdBsMzCABCsBAALIAQQrgQACyAAIAEgAiABIAQQ7AMACyAFIAVByABqNgI4IAVBMGogBBCkAwALFAIBbwF/EBwhABBpIgEgACYBIAELEwAgAEEoNgIEIABBgIDAADYCAAsgACAAQtXs7rbz2sHXSzcDCCAAQrn13fLSq/jYETcDAAsTACAAQfCBwAA2AgQgACABNgIACxAAIAAoAgQgACgCCCABEDALEQAgACgCBCAAKAIIIAEQ1QQLEwAgAEEoNgIEIABB2IvAADYCAAshACAAQvy0pPP2z/uuxAA3AwggAELk7Puo4OKsxmo3AwALGQACfyABQQlPBEAgASAAEGUMAQsgABAeCws6AAJAAn8gAUEJTwRAIAEgABBlDAELIAAQHgsiAUUNACABQQRrLQAAQQNxRQ0AIAFBACAAEFoaCyABCxMAIABBKDYCBCAAQdiVwAA2AgALIgAgAEK9i+HvyI377t8ANwMIIABCiITn+s3+j4OKfzcDAAshACAAQoaY8YHS0uCozQA3AwggAELwgJS4o8zQ9hc3AwALIgAgAELMjMSn19CF/vgANwMIIABCtPOHgpX6kcv1ADcDAAsTACAAQZybwAA2AgQgACABNgIACxMAIABBKDYCBCAAQYy2wAA2AgALEwAgAEHMuMAANgIEIAAgATYCAAsTACAAQYi5wAA2AgQgACABNgIACxMAIABBxLnAADYCBCAAIAE2AgALEwAgAEGAusAANgIEIAAgATYCAAsTACAAQbC+wAA2AgQgACABNgIACxMAIABBKDYCBCAAQYjbwAA2AgALEwAgAEGA4cAANgIEIAAgATYCAAshACAAQqTFo/yfjvDjADcDCCAAQqqooLmusOaw6QA3AwALEAAgACgCACAAKAIEIAEQMAsRACAAKAIAIAAoAgQgARDVBAsiACAAQsuH6/rgqLu20AA3AwggAELEr9zF2tKv9bh/NwMACxMAIABBKDYCBCAAQcCFwQA2AgALEwAgAEHEicEANgIEIAAgATYCAAsgACAAQrz8k7Ko16DsTDcDCCAAQuuYqJm2gbKefzcDAAshACAAQriynYTMrpfUQjcDCCAAQu/Dv6KOjcrEoH83AwALIAAgAEKcnaLxgrvwoHU3AwggAELRqsqvpcqt8kA3AwALIQAgAEL7wqCWlfy/yHo3AwggAELmsfLlkYe/ybF/NwMACyIAIABC9auQ77TsvKaWfzcDCCAAQrHh7P30uYbLwgA3AwALIAAgAELNnq77nqC2sEE3AwggAELxps+Y0aSn/gE3AwALIAAgAEK3v8ue+N2SoEM3AwggAEKvuaX0x5vV+zA3AwALIQAgAEKWl7rs79nZo3Q3AwggAEKH+OXLhuPSwtQANwMACyEAIABC/O6Qyq7osdU1NwMIIABC2OvVj+a1zN2OfzcDAAshACAAQrzprN2Y1v7ui383AwggAEKk3Nqt0/nNwEU3AwALIQAgAELl6obQ6cP/7Xk3AwggAEL30OLk1cPQ6ad/NwMACyEAIABC5sHsgPKk3YtlNwMIIABChu7u8+efmIeefzcDAAshACAAQs7Is8mT6a+2pX83AwggAELt66KMv7HLkg83AwALIgAgAEKcrtGn56WAwMIANwMIIABC16rLiaf+wYLHADcDAAsiACAAQt3+weC9o+rogn83AwggAEKX2/aYrfP7zY5/NwMACyEAIABCgsDc4LCv07mnfzcDCCAAQpbk17fDtcOKAzcDAAshACAAQrvV0cb1jfDEkH83AwggAELVi9bpuKS4kXk3AwALIQAgAEKynOer2rGju98ANwMIIABCvfif/8L+hsNVNwMACyIAIABC9tzrg9PWkOr2ADcDCCAAQuamkMP/nOzgtn83AwALIQAgAEKv1ajhhPu04u0ANwMIIABCjM/Fj7KFi+lnNwMACyEAIABCoKPa7PvI3KZuNwMIIABC7fH6/5z2yOa9fzcDAAsRACABIAAoAgAgACgCBBDlAwsWAEGM5cIAIAA2AgBBiOXCAEEBNgIACyAAIABC4+DWofail51WNwMIIABC0Jamw5Le7cA3NwMACyIAIABC7bqtts2F1PXjADcDCCAAQviCmb2V7sbFuX83AwALEwAgAEHYocIANgIEIAAgATYCAAsQACABIAAoAgAgACgCBBA2CxAAIAEoAhwgASgCICAAEEULDgAgACUBIAElASACEA4LYQEBfwJAAkAgAEEEaygCACICQXhxIgNBBEEIIAJBA3EiAhsgAWpPBEAgAkEAIAMgAUEnaksbDQEgABA+DAILQf2UwgBBLkGslcIAEO0CAAtBvJXCAEEuQeyVwgAQ7QIACwsOACAAKAIAJQEQE0EARwsdAQFvIAAoAgAlASABIAIQFyEDEGkiACADJgEgAAtpAQF/IwBBMGsiAyQAIAMgATYCBCADIAA2AgAgA0ECNgIMIANBmNrCADYCCCADQgI3AhQgAyADQQRqrUKAgICAEIQ3AyggAyADrUKAgICAEIQ3AyAgAyADQSBqNgIQIANBCGogAhCkAwALaQEBfyMAQTBrIgMkACADIAE2AgQgAyAANgIAIANBAjYCDCADQbjawgA2AgggA0ICNwIUIAMgA0EEaq1CgICAgBCENwMoIAMgA61CgICAgBCENwMgIAMgA0EgajYCECADQQhqIAIQpAMAC2kBAX8jAEEwayIDJAAgAyABNgIEIAMgADYCACADQQI2AgwgA0Hs2sIANgIIIANCAjcCFCADIANBBGqtQoCAgIAQhDcDKCADIAOtQoCAgIAQhDcDICADIANBIGo2AhAgA0EIaiACEKQDAAsNACAAKAIAQQEgARBsCw8AQb3BwgBBKyAAEO0CAAvxAgIFfwN+IAApAwAhCSMAQSBrIgMkAEEUIQAgCSIHQugHWgRAIAchCANAIANBDGogAGoiAkEDayAIIAhCkM4AgCIHQpDOAH59pyIEQf//A3FB5ABuIgVBAXQiBkGSxMIAai0AADoAACACQQRrIAZBkcTCAGotAAA6AAAgAkEBayAEIAVB5ABsa0H//wNxQQF0IgRBksTCAGotAAA6AAAgAkECayAEQZHEwgBqLQAAOgAAIABBBGshACAIQv+s4gRWIAchCA0ACwsgB0IJVgRAIAAgA2pBC2ogB6ciAiACQf//A3FB5ABuIgJB5ABsa0H//wNxQQF0IgRBksTCAGotAAA6AAAgAEECayIAIANBDGpqIARBkcTCAGotAAA6AAAgAq0hBwsgCVBFIAdQcUUEQCAAQQFrIgAgA0EMamogB6dBAXRBHnFBksTCAGotAAA6AAALIAFBAUEBQQAgA0EMaiAAakEUIABrEDUgA0EgaiQACw4AIAFBiP3AAEEUEOUDCwwAIAAoAgAgARDZBAsLACAAKAIAIAEQfAsMACAAKAIAIAEQngELDAAgACgCACABEIYBCwwAIAAoAgAgARCXAQsLACAAKAIAIAEQZAsLACAAKAIAIAEQTgsMACAAKAIAIAEQsAELDAAgACgCACABEKIBCwwAIAAoAgAgARCRAQsLACAAKAIAIAEQQAsMACAAKAIAIAEQrQQLDAAgACgCACABEKkDCwwAIAAoAgAgARDFAQsMACAAKAIAIAEQrwQLDAAgACgCACABEIQCCwsAIAAoAgAgARBqCw0AIABBxIPCACABEEULDQAgAEHQiMIAIAEQRQsKACAAIAEgAhBFCw4AIAFBxIrCAEEFEOUDC6gDAgd/AX4gACgCACEAIwBB0ABrIgIkACACQSBqIAAgACgCACgCBBEBACACIAJByABqrUKAgICAsDuENwMoQQEhAyACQQE2AjQgAkG4jMIANgIwIAJCATcCPCACIAIpAyA3AkggAiACQShqNgI4AkAgASgCHCIHIAEoAiAiCCACQTBqEEUNACABLQAUQQRxRQRAQQAhAwwBCyACQRhqIAAgACgCACgCBBEBACACQShqrUKAgICAsDuEIQkgAigCHCEEIAIoAhghBUEAIQBBASEGA0ACQCAAQQFxBEAgBCEBIAUhAAwBCyAFIQAgBCEBA0AgAEUEQEEAIQMMBAsgAkEQaiAAIAEoAhgRAQAgAigCFCEBIAIoAhAhACAGQQFrIgYNAAsLIABBAEchAyAARQ0BIAJBCGogACABKAIYEQEAIAIoAgwhBCACKAIIIQUgAiABNgIsIAIgADYCKEEBIQAgAkEBNgI0IAJBxIzCADYCMCACQgE3AjwgAiAJNwNIIAIgAkHIAGo2AjhBACEGIAcgCCACQTBqEMQERQ0ACwsgAkHQAGokACADCxsBAW8gACgCACUBIAEQAiECEGkiACACJgEgAAsJACAAIAEQGwALKQACfyAAKAIALQAARQRAIAFB9MXCAEEFEDYMAQsgAUH5xcIAQQQQNgsLDQAgAEG8lMIAIAEQRQvOAQEGfyAAKAIAIQIjAEGAAWsiBCQAIAEoAgQhByABKAIAIQYgASgCFCIFIQACQCAFQQRxRQ0AIAVBCHIhACAGDQAgAUKBgICAoAE3AgALIAEgAEEEcjYCFEEAIQADQCAAIARqQf8AaiACQQ9xIgNBMHIgA0HXAGogA0EKSRs6AAAgAEEBayEAIAJBD0sgAkEEdiECDQALIAFBAUGPxMIAQQIgACAEakGAAWpBACAAaxA1IAEgBTYCFCABIAc2AgQgASAGNgIAIARBgAFqJAALDAAgACABKQIANwMACw0AIAFB7K3CAEECEDYLDQAgAEGAscIAIAEQRQsOACABQauwwgBBBRDlAwsOACABQbi8wgBBEhDlAwsNACAAQcy+wgAgARBFCw4AIAFBxL7CAEEFEOUDCxoAIAAgAUGU5cIAKAIAIgBB9QMgABsRAQAACw0AIABB4MPCACABEEULCgAgAiAAIAEQNgu3CQEHfwJAAkAgAiIFIAAiAyABa0sEQCABIAJqIQAgAiADaiEDIAJBEEkNAUEAIANBA3EiBmshCAJAIANBfHEiBCADTw0AIAZBAWsCQCAGRQRAIAAhAgwBCyAGIQcgACECA0AgA0EBayIDIAJBAWsiAi0AADoAACAHQQFrIgcNAAsLQQNJDQAgAkEEayECA0AgA0EBayACQQNqLQAAOgAAIANBAmsgAkECai0AADoAACADQQNrIAJBAWotAAA6AAAgA0EEayIDIAItAAA6AAAgAkEEayECIAMgBEsNAAsLIAQgBSAGayICQXxxIgVrIQNBACAFayEGAkAgACAIaiIAQQNxRQRAIAMgBE8NASABIAJqQQRrIQEDQCAEQQRrIgQgASgCADYCACABQQRrIQEgAyAESQ0ACwwBCyADIARPDQAgAEEDdCIFQRhxIQcgAEF8cSIIQQRrIQFBACAFa0EYcSEJIAgoAgAhBQNAIARBBGsiBCAFIAl0IAEoAgAiBSAHdnI2AgAgAUEEayEBIAMgBEkNAAsLIAJBA3EhBSAAIAZqIQAMAQsgBUEQTwRAAkAgA0EAIANrQQNxIgZqIgIgA00NACABIQQgBgRAIAYhAANAIAMgBC0AADoAACAEQQFqIQQgA0EBaiEDIABBAWsiAA0ACwsgBkEBa0EHSQ0AA0AgAyAELQAAOgAAIANBAWogBEEBai0AADoAACADQQJqIARBAmotAAA6AAAgA0EDaiAEQQNqLQAAOgAAIANBBGogBEEEai0AADoAACADQQVqIARBBWotAAA6AAAgA0EGaiAEQQZqLQAAOgAAIANBB2ogBEEHai0AADoAACAEQQhqIQQgA0EIaiIDIAJHDQALCyACIAUgBmsiBEF8cSIHaiEDAkAgASAGaiIAQQNxRQRAIAIgA08NASAAIQEDQCACIAEoAgA2AgAgAUEEaiEBIAJBBGoiAiADSQ0ACwwBCyACIANPDQAgAEEDdCIFQRhxIQYgAEF8cSIIQQRqIQFBACAFa0EYcSEJIAgoAgAhBQNAIAIgBSAGdiABKAIAIgUgCXRyNgIAIAFBBGohASACQQRqIgIgA0kNAAsLIARBA3EhBSAAIAdqIQELIAMgAyAFaiIATw0BIAVBB3EiBARAA0AgAyABLQAAOgAAIAFBAWohASADQQFqIQMgBEEBayIEDQALCyAFQQFrQQdJDQEDQCADIAEtAAA6AAAgA0EBaiABQQFqLQAAOgAAIANBAmogAUECai0AADoAACADQQNqIAFBA2otAAA6AAAgA0EEaiABQQRqLQAAOgAAIANBBWogAUEFai0AADoAACADQQZqIAFBBmotAAA6AAAgA0EHaiABQQdqLQAAOgAAIAFBCGohASADQQhqIgMgAEcNAAsMAQsgAyAFayICIANPDQAgBUEDcSIBBEADQCADQQFrIgMgAEEBayIALQAAOgAAIAFBAWsiAQ0ACwsgBUEBa0EDSQ0AIABBBGshAQNAIANBAWsgAUEDai0AADoAACADQQJrIAFBAmotAAA6AAAgA0EDayABQQFqLQAAOgAAIANBBGsiAyABLQAAOgAAIAFBBGshASACIANJDQALCwsJACAAQQA2AgAL3zYCHX8BfiMAQYABayIGJAAgBkEoaiAAIAAoAgAoAgQRAQAgBiAGKAIsIgI2AjQgBiAGKAIoIgQ2AjACQAJAAkACQAJAIAEiDi0AFEEEcUUEQEEBIRUgBkEBNgJgIAZBuIzCADYCXCAGQgE3AmggBiAGQTBqrUKAgICAsDuENwNAIAYgBkFAazYCZCABKAIcIAEoAiAgBkHcAGoQRQ0FIAZBIGogBigCMCAGKAI0KAIYEQEAIAYoAiAiAgRAIAYoAiQhASAOKAIcQcyMwgBBDCAOKAIgKAIMEQIADQYgBkEYaiACIAEoAhgRAQAgBkE4aq1CgICAgLA7hCEfIAYoAhhBAEchBwNAIAZBEGogAiABKAIYEQEAIAYoAhQgBigCECEIIAYgATYCPCAGIAI2AjggDigCHEHYjMIAQQEgDigCICgCDBECAA0HIAZBADoATCAGIAM2AkQgBiAHNgJAIAYgDjYCSCAGQQE2AmAgBkG4jMIANgJcIAZCATcCaCAGIB83A1AgBiAGQdAAajYCZCAGQUBrQZyLwgAgBkHcAGoQRQ0HIANBAWohAyEBIAgiAg0ACwsCQCAAKAIEIgJBA0cEQCAAQQRqIQAMAQsgACAAKAIAKAIYEQQAIgBFDQIgACgCACECCyACQQJHDQQgBkEANgJIIAZCgICAgBA3AkAgBkHoiMIANgJ8IAZBAzoAdCAGQiA3AmwgBkEANgJkIAZBADYCXCAGIAZBQGs2AnggBkHcAGohAiMAQaABayIDJAACfwJAAkACQAJAAkACfwJAAkACQAJAIAAoAgBBAWsOAgABAgsgAkHFl8IAQRIQ5QMMCQsgAC0AFEEDRwRAIAMgAEEEajYCOCADQThqIQQjAEEgayIBJAACQAJAAkACQAJAAkACQAJAIABBFGoiCC0AAEEBaw4DAgUBAAsgCEECOgAAIAQoAgAgBEEANgIARQ0CQZHlwgAtAAAhBEGR5cIAQQE6AAAgASAEOgAHIARBAUYNA0GR5cIAQQA6AAAgCEEDOgAACyABQSBqJAAMBQsgAUEANgIYIAFBATYCDCABQYSowgA2AggMAwtBmKDCABCuBAALIAFCADcCFCABQoGAgIDAADcCDCABQbCfwgA2AgggAUEHaiABQQhqEIoDAAsgAUEANgIYIAFBATYCDCABQcSowgA2AggLIAFCBDcCECABQQhqQcygwgAQpAMACwsgACgCDCEBIAIoAhRBBHEiCEUNASAAKAIIDAILIAJBsJfCAEEVEOUDDAcLIAEgACgCECIESQ0BIAEgBGshASAAKAIIIARBDGxqCyERIANBgICAgHg2AgwgA0Gol8IAKQMANwIQIAMgCEECdiIAOgAYIAMgADoALCADQQA2AiggAyACNgIcIANB6JfCADYCJCADIANBDGo2AiAgAUUNAiARIAFBDGxqIRggA0E8aiETIANBhAFqIRQDQAJAIBEoAggiAEUEQCADQQA2AmQgAyADQRxqNgJgIANBAzYCOCADQQI2AoABIANB4ABqIANBOGogA0GAAWpBACADQQAgAxAiIAMoAmAiASABKAIMQQFqNgIMRQ0BDAcLIABBLGwhGSARKAIEIRpBACEWA0AgA0EANgI0IAMgA0EcajYCMAJAIBYgGmoiD0EgaigCAEGAgICAeEYEQCADQQM2AjgMAQsgA0GAAWoiEiAPQSRqKAIAIhsgD0EoaigCACIcED1BAiEAAkAgAygCgAENACADKAKEASEJIAMoAogBIQEjAEEgayILJAAjAEHgAGsiByQAIAdBEGogCSABQfC6wgBBBhAhAkACQAJAAkACfwJAAkACQAJAAkACQAJAAkACQAJAAkACQAJAAkAgBygCEEUEQANAIAdB1ABqIAdBEGoQLCAHKAJUIgBBAUYNAAsCQAJAIABBAWsOAgQBAAsgByAHKQJYNwIIIAdBATYCBAwCCyAHQQA2AgQMAQsgB0EYaiEAIAcoAkwhAiAHKAJIIQQgBygCRCEIIAcoAkAhBSAHKAI0QX9HBEAgB0EEaiAAIAUgCCAEIAJBABBWDAELIAdBBGogACAFIAggBCACQQEQVgsgBygCBEUNAgJAIAcoAggiBEEGaiIARQ0AIAAgAU8EQCAAIAFGDQEMEQsgACAJaiwAAEG/f0wNEAsgASAJaiEKIAAgCWohAANAAkAgACAKRg0AAn8gACwAACICQQBOBEAgAkH/AXEhAiAAQQFqDAELIAAtAAFBP3EhBSACQR9xIQggAkFfTQRAIAhBBnQgBXIhAiAAQQJqDAELIAAtAAJBP3EgBUEGdHIhBSACQXBJBEAgBSAIQQx0ciECIABBA2oMAQsgCEESdEGAgPAAcSAALQADQT9xIAVBBnRyciICQYCAxABGDQEgAEEEagshACACQUBqQQdJIAJBMGtBCklyDQEMBAsLIARFBEBBACEBDAQLIAEgBE0EQCABIARGDQMMAgsgBCAJaiwAAEG/f0wNASAEIQEMAgsACyAJIAFBACAEQbS7wgAQ7AMACwJAAkAgAUEDTwRAAkACQAJAQbixwgAgCUEDENQCBEAgCS8AAEHanAFGDQEgAUEDRg0GIAkoAABB377p8gRHDQZBfCECQQQhACABQQVPDQJBBCEBDAULQQMhAEF9IQIgAUEDRgRAQQMhAQwFCyAJLAADQb9/Sg0EIAkgAUEDIAFBjLLCABDsAwALIAksAAJBv39MDQFBAiEAQX4hAgwDCyAJLAAEQb9/Sg0CIAkgAUEEIAFB7LHCABDsAwALIAkgAUECIAFB/LHCABDsAwALQQIhACABQQJHDQIgCS8AAEHanAFHBEBBAiEBDAMLQX4hAkECIQELIAAgCWoiBCABIAJqIghqIRAgCCEAIAQhAgJAA0AgAARAIABBAWshACACLAAAIAJBAWohAkEATg0BDAILCyAIRQ0AAn8gBCwAACIAQQBOBEAgAEH/AXEhACAEQQFqDAELIAQtAAFBP3EhBSAAQR9xIQIgAEFfTQRAIAJBBnQgBXIhACAEQQJqDAELIAQtAAJBP3EgBUEGdHIhBSAAQXBJBEAgBSACQQx0ciEAIARBA2oMAQsgAkESdEGAgPAAcSAELQADQT9xIAVBBnRyciEAIARBBGoLIQICQCAAQcUARgRAQQAhCgwBCyAAQYCAxABGDQFBACEKA0AgAEEwa0EJSw0CQQAhBQNAIABBMGsiDUEKTwRAIAUEQANAIAIgEEYNBgJ/IAIsAAAiAEEATgRAIABB/wFxIQAgAkEBagwBCyACLQABQT9xIQwgAEEfcSENIABBX00EQCANQQZ0IAxyIQAgAkECagwBCyACLQACQT9xIAxBBnRyIQwgAEFwSQRAIAwgDUEMdHIhACACQQNqDAELIA1BEnRBgIDwAHEgAi0AA0E/cSAMQQZ0cnIiAEGAgMQARg0HIAJBBGoLIQIgBUEBayIFDQALCyAKQQFqIQogAEHFAEcNAgwDCyAFrUIKfiIfQiCIpw0DIAIgEEYgH6ciACANaiIFIABJcg0DAn8gAiwAACIAQQBOBEAgAEH/AXEhACACQQFqDAELIAItAAFBP3EhDCAAQR9xIQ0gAEFfTQRAIA1BBnQgDHIhACACQQJqDAELIAItAAJBP3EgDEEGdHIhDCAAQXBJBEAgDCANQQx0ciEAIAJBA2oMAQsgDUESdEGAgPAAcSACLQADQT9xIAxBBnRyciEAIAJBBGoLIQIgAEGAgMQARw0ACwsMAQsgECACayEQDAgLIAFBAk0NAQsgCS8AAEHfpAFHDQEgCSwAAiICQb9/TA0DIAlBAmohCEF+IQoMBQtBAiEAQQAhCiABQQJHDQcgCS0AAEHSAEYNAQwICyAJLQAAQdIARw0CIAEhAAsgCSwAASICQb9/SgRAIAlBAWohCEF/IQogACEBDAMLIAkgAEEBIABBkLXCABDsAwALIAkgAUECIAFBoLXCABDsAwALQQMhAEEAIQogAUEDRg0EQdC0wgAgCUEDENQCDQMgCSwAAyICQb9/SgRAIAlBA2ohCEF9IQoMAQsgCSABQQMgAUGAtcIAEOwDAAsgAkHBAGtB/wFxQRlLDQEgASAKaiEKQQAhAANAIAAgCkcEQCAAIAhqIABBAWohACwAAEEATg0BDAMLCyAHQSBqQgA3AgAgB0IANwIYIAcgCjYCFCAHIAg2AhACQCAHQRBqQQAQH0UEQCAHLQAUIQUCQCAHKAIQIgJFDQAgBygCGCIAIAcvABUgB0EXai0AAEEQdHJBCHQgBXIiBU8NAiAAIAJqLQAAQcEAa0H/AXFBGk8NAiAHKAIcIQQgB0IANwIgIAcgBDYCHCAHIAA2AhggByAFNgIUIAcgAjYCECAHQRBqQQAQHw0KIActABQhBSAHKAIQIgJFDQAgBygCGCEAIAcvABUgB0EXai0AAEEQdHJBCHQgBXIhBQwCCyAFQQFxIQoMBAsMCAsCQAJAIABFDQAgACAFTwRAIAAgBUYNAQwCCyAAIAJqLAAAQb9/TA0BCyAFIABrIRAgACACaiECQQAhBAwBCyACIAUgACAFQZC2wgAQ7AMACwJAAkAgEEUEQEEAIRAMAQtBLiEFQQAhDSACLQAAQS5HDQEgAiAQaiEdIAIhAANAAn8gBcBBAEgEQCAALQABQT9xIRcgBUEfcSEMIAVB/wFxIh5B3wFNBEAgDEEGdCAXciEFIABBAmoMAgsgAC0AAkE/cSAXQQZ0ciEFIB5B8AFJBEAgBSAMQQx0ciEFIABBA2oMAgsgDEESdEGAgPAAcSAALQADQT9xIAVBBnRyciIFQYCAxABGDQMgAEEEagwBCyAFQf8BcSEFIABBAWoLIQACQCAFQd///wBxQcEAa0EaSSAFQTBrQQpJciAFQSFrQQ9Jcg0AAkAgBUE6aw4nAQEBAQEBAQAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAQEBAQEBAAsgBUH7AGtBA0sNAwsgACAdRg0BIAAtAAAhBQwACwALQQEhDSABIQAMBQsgASEAQQEMAwtBACEKCyABIQALQQAhCEEAIQRBACENQQELIQJBACEQCyALIBA2AhwgCyACNgIYIAsgADYCFCALIAk2AhAgCyAKNgIMIAsgCDYCCCALIAQ2AgQgCyANNgIAIAdB4ABqJAAMAgsgCSABIAAgAUGku8IAEOwDAAtBwLXCAEE9IAdB1ABqQbC1wgBBgLbCABCgAgALAkAgCygCAARAIBIgCykCADcCACASQRhqIAtBGGopAgA3AgAgEkEQaiALQRBqKQIANwIAIBJBCGogC0EIaikCADcCAAwBCyASQQI2AgALIAtBIGokACADKAKAASIAQQJGDQAgA0H4AGogFEEYaigCADYCACADQfAAaiAUQRBqKQIANwMAIANB6ABqIBRBCGopAgA3AwAgAyAUKQIANwNgCyATIAMpA2A3AgAgE0EYaiADQfgAaigCADYCACATQRBqIANB8ABqKQMANwIAIBNBCGogA0HoAGopAwA3AgAgAyAcNgJcIAMgGzYCWCADIAA2AjgLIA9BEGooAgAiAEECRwRAIAMgD0EYaikCADcChAELIAMgADYCgAEgA0EwaiADQThqIANBgAFqIA8oAgAgD0EEaigCACAPQQhqKAIAIA9BDGooAgAQIiADKAIwIgEgASgCDEEBajYCDA0HIBkgFkEsaiIWRw0ACwsgGCARQQxqIhFHDQALDAELIAQgAUHYl8IAEKoEAAsgAygCDCIAQYCAgIB4Rg0AIABFDQEgAygCECAAQQEQpwRBAAwDCyADLQAQQQNHDQAgAygCFCIAKAIAIQEgAEEEaigCACICKAIAIgQEQCABIAQRAwALIAIoAgQiBARAIAEgBCACKAIIEKcECyAAQQxBBBCnBAtBAAwBCwJAIAMoAgwiAEGAgICAeEcEQCAARQ0BIAMoAhAgAEEBEKcEQQEMAgsgAy0AEEEDRw0AIAMoAhQiACgCACEBIABBBGooAgAiAigCACIEBEAgASAEEQMACyACKAIEIgQEQCABIAQgAigCCBCnBAsgAEEMQQQQpwQLQQELIANBoAFqJAANAiAGQdgAaiAGQcgAaigCADYCACAGIAYpAkA3A1ACQAJAIA4oAhxB2YzCAEECIA4oAiAoAgwRAgANAAJAAkAgBigCWEEQTwRAQduMwgAgBigCVEEQENQCRQ0BCyAGQQA2AmwgBkEBNgJgIAZB/IzCADYCXCAGQgQ3AmQgDigCHCAOKAIgIAZB3ABqEMQERQ0BDAILIwBBQGoiCCQAIAhBATYCECAIQQA2AgwgBkHQAGoiBCgCBCEDAkACQCAEKAIIIgBBAU0EQCAAQQFHDQEMAgsgA0EBaiwAAEG/f0oNAQtBiIbCAEEqQbCHwgAQ7QIACyAIIAhBEGo2AjwgCEEBNgI4IAhBADYCMCAIIAhBDGo2AjRBACECIAhBMGoiBygCBCEBAkACQAJAIAcoAgBBAWsOAgECAAsgASgCACECDAELIAEoAgAiAUF/RwRAIAFBAWohAgwBCyMAQSBrIgAkACAAQQA2AhggAEEBNgIMIABB1MbCADYCCCAAQgQ3AhAgAEEIakHohcIAEKQDAAsgBygCDCEFIAAhAQJAAkACQCAHKAIIQQFrDgIBAgALIAUoAgAiAUF/RwRAIAFBAWohAQwCCyMAQSBrIgAkACAAQQA2AhggAEEBNgIMIABBiMfCADYCCCAAQgQ3AhAgAEEIakH4hcIAEKQDAAsgBSgCACEBCwJAIAEgAk8EQCAAIAFPDQEgASAAQbSDwgAQqwQACyACIAFBtIPCABCsBAALIAggATYCBCAIIAI2AgAgCCgCBCEBIAQgCCgCACICNgIIIAggBDYCHCAIIAE2AiAgCCAAIAFrNgIkIAhBhI3CADYCKCAIQYWNwgA2AiwgCCABIANqNgIYIAggAiADajYCFCAIQRRqIgVCgYCAgBA3AgACQCAFKAIQIgtFBEAgBSgCGCIHIAUoAhQiAWsiACAFKAIIIgIoAgAgAigCCCIEa0sEQCACIAQgABCTASACKAIIIQQLIAEgB0cEQCACKAIEIQkCQCAAQQNxIgNFBEAgASEADAELIAEhAANAIAQgCWogAC0AADoAACAEQQFqIQQgAEEBaiEAIANBAWsiAw0ACwsgBSABIAdrQXxNBH8gBCAJaiEJQQAhAQNAIAEgCWoiBSAAIAFqIgMtAAA6AAAgBUEBaiADQQFqLQAAOgAAIAVBAmogA0ECai0AADoAACAFQQNqIANBA2otAAA6AAAgAUEEaiEBIANBBGogB0cNAAsgASAEaiEEIAAgAWoFIAALNgIUCyACIAQ2AggMAQsCQCAFKAIMIgEgBSgCCCIHKAIIIgBGBEAgBSgCGCEEIAUoAhQhAwwBCyABIABrIQkgBygCBCAAaiEAIAUoAhghBCAFKAIUIQMDQCADIARGDQIgACADLQAAOgAAIAUgA0EBaiIDNgIUIAcgBygCCEEBajYCCCAAQQFqIQAgCUEBayIJDQALCwJAIAMgBEYNACAEIANrIgAgBygCACABIAtqIgJrSwRAIAcgAiAAEJMBCyAHKAIEIgkgACABaiICaiABIAlqIAsQ1gQgBSACNgIMIAIgBygCCCIJRgRAIAIhAQwBCyAHKAIEIAlqIQAgASAEaiAJayADayEJA0AgAyAERg0CIAAgAy0AADoAACAFIANBAWoiAzYCFCAHIAcoAghBAWo2AgggAEEBaiEAIAlBAWsiCQ0ACyACIQELQQAhCQJAIAQgA2siCkEASA0AIAMgBEYiEA0BQQAhAEGF5cIALQAAGkEBIQkgCkEBEPUDIgJFDQAgCkEDcSEJIAMgBGtBfE0EQCAKQXxxIREDQCAAIAJqIgQgACADaiIPLQAAOgAAIARBAWogD0EBai0AADoAACAEQQJqIA9BAmotAAA6AAAgBEEDaiAPQQNqLQAAOgAAIBEgAEEEaiIARw0ACyAAIANqIQMLIAkEQANAIAAgAmogAy0AADoAACAAQQFqIQAgA0EBaiEDIAlBAWsiCQ0ACwsgBSADNgIUAkAgAEUNACAAIAcoAgAgASALaiIEa0sEQCAHIAQgABCTAQsgBygCBCIDIAAgAWoiBGogASADaiALENYEIAUgBDYCDCAEIAcoAggiA0YNACADIAFrIQEgBygCBCADaiEDIAIhBANAIABFDQEgAyAELQAAOgAAIAcgBygCCEEBajYCCCAEQQFqIQQgA0EBaiEDIAEgAEEBayIARw0ACwsgEA0BIAIgCkEBEKcEDAELIAkgCkGAjsIAENcDAAsgCCgCJCEAAkACQAJAIAgoAhggCCgCFEcEQCAARQ0DIAgoAhwiAUEIaiEEIAgoAiAiAyABKAIIIgJHDQEMAgsgAEUNAiAIKAIcIgFBCGohBCAIKAIgIgMgASgCCCICRg0BCyABKAIEIgEgAmogASADaiAAENYECyAEIAAgAmo2AgALIAhBQGskAAsgBkEIaiEIIAYoAlQhBEEAIQMCQCAGKAJYIgciAEUNACAAIARqIQADQAJAIAAiAkEBayIALAAAIgFBAEgEQCABQT9xAn8gAkECayIALQAAIgHAIgVBQE4EQCABQR9xDAELIAVBP3ECfyACQQNrIgAtAAAiAcAiBUFATgRAIAFBD3EMAQsgBUE/cSACQQRrIgAtAABBB3FBBnRyC0EGdHILQQZ0ciEBCwJAIAFBIEYgAUEJa0EFSXINACABQYABSQ0BAkACQAJAAkAgAUEIdiIFQRZrDhsDBQUFBQUFBQUFAQUFBQUFBQUFBQUFBQUFBQACCyABQYDgAEcNBAwDCyABQf8BcUHz4cIAai0AAEECcUUNAwwCCyAFDQIgAUH/AXFB8+HCAGotAABBAXENAQwCCyABQYAtRw0BCyAAIARHDQEMAgsLIAIgBGshAwsgCCADNgIEIAggBDYCACAGKAIMIgAgB00EQCAARSAAIAdPckUEQCAAIARqLAAAQb9/TA0HCyAGIAA2AlgLIAZBATYCYCAGQbiMwgA2AlwgBkIBNwJoIAYgBkHQAGqtQoCAgIDAO4Q3A0AgBiAGQUBrNgJkIA4oAhwgDigCICAGQdwAahBFRQ0BCyAGKAJQIgBFDQYgBigCVCAAQQEQpwQMBgsgBigCUCIARQ0EIAYoAlQgAEEBEKcEDAQLIAQgDiACKAIMEQAAIRUMBAtBtIvCAEEYQaiMwgAQwwIAC0GQicIAQTcgBkE4akGAicIAQbSKwgAQoAIAC0HcisIAQTBBjIvCABDtAgALQQAhFQsgBkGAAWokACAVC7sHAgR/AX4CfyMAQSBrIgIkAAJAAkACQAJAAkACQCAALQAAQQFrDgMBAgMACyACIAAoAgQ2AgQgAkEIaiIAIAFB8Z3CAEECEKYDIABBhJ7CAEEEIAJBBGpB9J3CABBvIAJBKToAE0GYnsIAQQQgAkETakGInsIAEG9BheXCAC0AABpBFEEBEPUDIgBFDQQgAEEQakHWp8IAKAAANgAAIABBCGpBzqfCACkAADcAACAAQcanwgApAAA3AAAgAkEUNgIcIAIgADYCGCACQRQ2AhRBrJ7CAEEHIAJBFGpBnJ7CABBvEK4CIQAgAigCFCIBRQ0DIAIoAhggAUEBEKcEDAMLIAIgAC0AAToACCACQRRqIgAgASgCHEGznsIAQQQgASgCICgCDBECADoACCAAIAE2AgQgAEEAOgAJIABBADYCACACQQhqIQUjAEFAaiIBJAAgACgCACEEIAACf0EBIAAtAAgNABogACgCBCIDLQAUQQRxRQRAQQEgAygCHEH/w8IAQYnEwgAgBBtBAkEBIAQbIAMoAiAoAgwRAgANARogBSADQZSewgAoAgARAAAMAQsgBEUEQEEBIAMoAhxBisTCAEECIAMoAiAoAgwRAgANARoLIAFBAToAFyABQSBqIANBCGopAgA3AwAgAUEoaiADQRBqKQIANwMAIAFBMGogA0EYaigCADYCACABIAMpAhw3AgggAykCACEGIAFB4MPCADYCOCABIAY3AxggASABQRdqNgIQIAEgAUEIajYCNEEBIAUgAUEYakGUnsIAKAIAEQAADQAaIAEoAjRBhMTCAEECIAEoAjgoAgwRAgALOgAIIAAgBEEBajYCACABQUBrJAAgACIBLQAIIQMCQCABKAIAIgRFBEAgAyEADAELQQEhAAJAIANBAXFFBEAgBEEBRw0BIAEtAAlFDQEgASgCBCIDLQAUQQRxDQEgAygCHEGMxMIAQQEgAygCICgCDBECAEUNAQsgAUEBOgAIDAELIAEgASgCBCIAKAIcQfnAwgBBASAAKAIgKAIMEQIAIgA6AAgLIABBAXEhAAwCCyAAKAIEIQAgAkEUaiIDIAFBt57CAEEFEKYDIANBmJ7CAEEEIABBCGpBiJ7CABBvQayewgBBByAAQbyewgAQbxCuAiEADAELIAIgACgCBCIANgIUIAFB3J7CAEEGQZiewgBBBCAAQQhqQYiewgBB4p7CAEEFIAJBFGpBzJ7CABDDASEACyACQSBqJAAgAAwBC0EBQRRB8JLCABDXAwALCwgAIAAlARAICwgAIAAlARALCwgAIAAlARAPCwQAQQALAgALC43iAhAAQYCAwAALqRBkZXNjcmlwdGlvbigpIGlzIGRlcHJlY2F0ZWQ7IHVzZSBEaXNwbGF5L1VzZXJzL2R5bGFuLy5ydXN0dXAvdG9vbGNoYWlucy9zdGFibGUtYWFyY2g2NC1hcHBsZS1kYXJ3aW4vbGliL3J1c3RsaWIvc3JjL3J1c3QvbGlicmFyeS9hbGxvYy9zcmMvc2xpY2UucnMAKAAQAGsAAACiAAAAGQAAAAMAAAAMAAAABAAAAAQAAAADAAAADAAAAAQAAAAFAAAABAAAAKQAEAAGAAAABwAAAAgAAAAGAAAACQAAAAoAAAAoAAAABAAAAAsAAAAKAAAAKAAAAAQAAAAMAAAACwAAAOAAEAANAAAADgAAAA8AAAANAAAAEAAAABEAAA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", import.meta.url); + module_or_path = new URL("data:application/wasm;base64,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EBAEHrzMAACwEBAEHPzcAACwU/AAAAvwBB7M3AAAsBNgBwCXByb2R1Y2VycwIIbGFuZ3VhZ2UBBFJ1c3QADHByb2Nlc3NlZC1ieQMFcnVzdGMdMS44Mi4wIChmNmU1MTFlZWMgMjAyNC0xMC0xNSkGd2FscnVzBjAuMjMuMwx3YXNtLWJpbmRnZW4HMC4yLjEwMABJD3RhcmdldF9mZWF0dXJlcwQrD211dGFibGUtZ2xvYmFscysIc2lnbi1leHQrD3JlZmVyZW5jZS10eXBlcysKbXVsdGl2YWx1ZQ==", import.meta.url); } const imports = __wbg_get_imports(); if (typeof module_or_path === "string" || typeof Request === "function" && module_or_path instanceof Request || typeof URL === "function" && module_or_path instanceof URL) { @@ -8281,7 +8094,7 @@ function getNumSh(properties) { } return numSh; } -const jsContent = '(function() {\n "use strict";\n let wasm;\n function addToExternrefTable0(obj) {\n const idx = wasm.__externref_table_alloc();\n wasm.__wbindgen_export_2.set(idx, obj);\n return idx;\n }\n function handleError(f, args) {\n try {\n return f.apply(this, args);\n } catch (e) {\n const idx = addToExternrefTable0(e);\n wasm.__wbindgen_exn_store(idx);\n }\n }\n function debugString(val) {\n const type = typeof val;\n if (type == "number" || type == "boolean" || val == null) {\n return `${val}`;\n }\n if (type == "string") {\n return `"${val}"`;\n }\n if (type == "symbol") {\n const description = val.description;\n if (description == null) {\n return "Symbol";\n } else {\n return `Symbol(${description})`;\n }\n }\n if (type == "function") {\n const name = val.name;\n if (typeof name == "string" && name.length > 0) {\n return `Function(${name})`;\n } else {\n return "Function";\n }\n }\n if (Array.isArray(val)) {\n const length = val.length;\n let debug = "[";\n if (length > 0) {\n debug += debugString(val[0]);\n }\n for (let i2 = 1; i2 < length; i2++) {\n debug += ", " + debugString(val[i2]);\n }\n debug += "]";\n return debug;\n }\n const builtInMatches = /\\[object ([^\\]]+)\\]/.exec(toString.call(val));\n let className;\n if (builtInMatches && builtInMatches.length > 1) {\n className = builtInMatches[1];\n } else {\n return toString.call(val);\n }\n if (className == "Object") {\n try {\n return "Object(" + JSON.stringify(val) + ")";\n } catch (_) {\n return "Object";\n }\n }\n if (val instanceof Error) {\n return `${val.name}: ${val.message}\n${val.stack}`;\n }\n return className;\n }\n let WASM_VECTOR_LEN = 0;\n let cachedUint8ArrayMemory0 = null;\n function getUint8ArrayMemory0() {\n if (cachedUint8ArrayMemory0 === null || cachedUint8ArrayMemory0.byteLength === 0) {\n cachedUint8ArrayMemory0 = new Uint8Array(wasm.memory.buffer);\n }\n return cachedUint8ArrayMemory0;\n }\n const cachedTextEncoder = typeof TextEncoder !== "undefined" ? new TextEncoder("utf-8") : { encode: () => {\n throw Error("TextEncoder not available");\n } };\n const encodeString = typeof cachedTextEncoder.encodeInto === "function" ? function(arg, view) {\n return cachedTextEncoder.encodeInto(arg, view);\n } : function(arg, view) {\n const buf = cachedTextEncoder.encode(arg);\n view.set(buf);\n return {\n read: arg.length,\n written: buf.length\n };\n };\n function passStringToWasm0(arg, malloc, realloc) {\n if (realloc === void 0) {\n const buf = cachedTextEncoder.encode(arg);\n const ptr2 = malloc(buf.length, 1) >>> 0;\n getUint8ArrayMemory0().subarray(ptr2, ptr2 + buf.length).set(buf);\n WASM_VECTOR_LEN = buf.length;\n return ptr2;\n }\n let len = arg.length;\n let ptr = malloc(len, 1) >>> 0;\n const mem = getUint8ArrayMemory0();\n let offset = 0;\n for (; offset < len; offset++) {\n const code = arg.charCodeAt(offset);\n if (code > 127) break;\n mem[ptr + offset] = code;\n }\n if (offset !== len) {\n if (offset !== 0) {\n arg = arg.slice(offset);\n }\n ptr = realloc(ptr, len, len = offset + arg.length * 3, 1) >>> 0;\n const view = getUint8ArrayMemory0().subarray(ptr + offset, ptr + len);\n const ret = encodeString(arg, view);\n offset += ret.written;\n ptr = realloc(ptr, len, offset, 1) >>> 0;\n }\n WASM_VECTOR_LEN = offset;\n return ptr;\n }\n let cachedDataViewMemory0 = null;\n function getDataViewMemory0() {\n if (cachedDataViewMemory0 === null || cachedDataViewMemory0.buffer.detached === true || cachedDataViewMemory0.buffer.detached === void 0 && cachedDataViewMemory0.buffer !== wasm.memory.buffer) {\n cachedDataViewMemory0 = new DataView(wasm.memory.buffer);\n }\n return cachedDataViewMemory0;\n }\n const cachedTextDecoder 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Original error:\\n", e);\n } else {\n throw e;\n }\n }\n }\n const bytes = await module.arrayBuffer();\n return await WebAssembly.instantiate(bytes, imports);\n } else {\n const instance = await WebAssembly.instantiate(module, imports);\n if (instance instanceof WebAssembly.Instance) {\n return { instance, module };\n } else {\n return instance;\n }\n }\n }\n function __wbg_get_imports() {\n const imports = {};\n imports.wbg = {};\n imports.wbg.__wbg_buffer_09165b52af8c5237 = function(arg0) {\n const ret = arg0.buffer;\n return ret;\n };\n imports.wbg.__wbg_buffer_609cc3eee51ed158 = function(arg0) {\n const ret = arg0.buffer;\n return ret;\n };\n imports.wbg.__wbg_get_b9b93047fe3cf45b = function(arg0, arg1) {\n const ret = arg0[arg1 >>> 0];\n return ret;\n };\n imports.wbg.__wbg_instanceof_Uint8Array_17156bcf118086a9 = function(arg0) {\n let result;\n try {\n result = arg0 instanceof Uint8Array;\n } catch (_) {\n result = false;\n }\n const ret = result;\n return ret;\n };\n imports.wbg.__wbg_length_3b4f022188ae8db6 = function(arg0) {\n const ret = arg0.length;\n return ret;\n };\n imports.wbg.__wbg_length_6ca527665d89694d = function(arg0) {\n const ret = arg0.length;\n return ret;\n };\n imports.wbg.__wbg_length_8cfd2c6409af88ad = function(arg0) {\n const ret = arg0.length;\n return ret;\n };\n imports.wbg.__wbg_length_a446193dc22c12f8 = function(arg0) {\n const ret = arg0.length;\n return ret;\n };\n imports.wbg.__wbg_length_e2d2a49132c1b256 = function(arg0) {\n const ret = arg0.length;\n return ret;\n };\n imports.wbg.__wbg_new_405e22f390576ce2 = function() {\n const ret = new Object();\n return ret;\n };\n imports.wbg.__wbg_new_9fee97a409b32b68 = function(arg0) {\n const ret = new Uint16Array(arg0);\n return ret;\n };\n imports.wbg.__wbg_new_a12002a7f91c75be = function(arg0) {\n const ret = new Uint8Array(arg0);\n return ret;\n };\n imports.wbg.__wbg_new_e3b321dcfef89fc7 = function(arg0) {\n const ret = new Uint32Array(arg0);\n return ret;\n };\n 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(Object.getPrototypeOf(module_or_path) === Object.prototype) {\n ({ module_or_path } = module_or_path);\n } else {\n console.warn("using deprecated parameters for the initialization function; pass a single object instead");\n }\n }\n if (typeof module_or_path === "undefined") {\n module_or_path = new 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", self.location.href);\n }\n const imports = __wbg_get_imports();\n if (typeof module_or_path === "string" || typeof Request === "function" && module_or_path instanceof Request || typeof URL === "function" && module_or_path instanceof URL) {\n module_or_path = fetch(module_or_path);\n }\n const { instance, module } = await __wbg_load(await module_or_path, imports);\n return __wbg_finalize_init(instance, module);\n }\n var u8 = Uint8Array, u16 = Uint16Array, i32 = Int32Array;\n var fleb = new u8([\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 1,\n 1,\n 1,\n 1,\n 2,\n 2,\n 2,\n 2,\n 3,\n 3,\n 3,\n 3,\n 4,\n 4,\n 4,\n 4,\n 5,\n 5,\n 5,\n 5,\n 0,\n /* unused */\n 0,\n 0,\n /* impossible */\n 0\n ]);\n var fdeb = new u8([\n 0,\n 0,\n 0,\n 0,\n 1,\n 1,\n 2,\n 2,\n 3,\n 3,\n 4,\n 4,\n 5,\n 5,\n 6,\n 6,\n 7,\n 7,\n 8,\n 8,\n 9,\n 9,\n 10,\n 10,\n 11,\n 11,\n 12,\n 12,\n 13,\n 13,\n /* unused */\n 0,\n 0\n ]);\n var clim = new u8([16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15]);\n var freb = function(eb, start) {\n var b = new u16(31);\n for (var i2 = 0; i2 < 31; ++i2) {\n b[i2] = start += 1 << eb[i2 - 1];\n }\n var r = new i32(b[30]);\n for (var i2 = 1; i2 < 30; ++i2) {\n for (var j = b[i2]; j < b[i2 + 1]; ++j) {\n r[j] = j - b[i2] << 5 | i2;\n }\n }\n return { b, r };\n };\n var _a = freb(fleb, 2), fl = _a.b, revfl = _a.r;\n fl[28] = 258, revfl[258] = 28;\n var _b = freb(fdeb, 0), fd = _b.b;\n var rev = new u16(32768);\n for (var i = 0; i < 32768; ++i) {\n var x = (i & 43690) >> 1 | (i & 21845) << 1;\n x = (x & 52428) >> 2 | (x & 13107) << 2;\n x = (x & 61680) >> 4 | (x & 3855) << 4;\n rev[i] = ((x & 65280) >> 8 | (x & 255) << 8) >> 1;\n }\n var hMap = function(cd, mb, r) {\n var s = cd.length;\n var i2 = 0;\n var l = new u16(mb);\n for (; i2 < s; ++i2) {\n if (cd[i2])\n ++l[cd[i2] - 1];\n }\n var le = new u16(mb);\n for (i2 = 1; i2 < mb; ++i2) {\n le[i2] = le[i2 - 1] + l[i2 - 1] << 1;\n }\n var co;\n if (r) {\n co = new u16(1 << mb);\n var rvb = 15 - mb;\n for (i2 = 0; i2 < s; ++i2) {\n if (cd[i2]) {\n var sv = i2 << 4 | cd[i2];\n var r_1 = mb - cd[i2];\n var v = le[cd[i2] - 1]++ << r_1;\n for (var m = v | (1 << r_1) - 1; v <= m; ++v) {\n co[rev[v] >> rvb] = sv;\n }\n }\n }\n } else {\n co = new u16(s);\n for (i2 = 0; i2 < s; ++i2) {\n if (cd[i2]) {\n co[i2] = rev[le[cd[i2] - 1]++] >> 15 - cd[i2];\n }\n }\n }\n return co;\n };\n var flt = new u8(288);\n for (var i = 0; i < 144; ++i)\n flt[i] = 8;\n for (var i = 144; i < 256; ++i)\n flt[i] = 9;\n for (var i = 256; i < 280; ++i)\n flt[i] = 7;\n for (var i = 280; i < 288; ++i)\n flt[i] = 8;\n var fdt = new u8(32);\n for (var i = 0; i < 32; ++i)\n fdt[i] = 5;\n var flrm = /* @__PURE__ */ hMap(flt, 9, 1);\n var fdrm = /* @__PURE__ */ hMap(fdt, 5, 1);\n var max = function(a) {\n var m = a[0];\n for (var i2 = 1; i2 < a.length; ++i2) {\n if (a[i2] > m)\n m = a[i2];\n }\n return m;\n };\n var bits = function(d, p, m) {\n var o = p / 8 | 0;\n return (d[o] | d[o + 1] << 8) >> (p & 7) & m;\n };\n var bits16 = function(d, p) {\n var o = p / 8 | 0;\n return (d[o] | d[o + 1] << 8 | d[o + 2] << 16) >> (p & 7);\n };\n var shft = function(p) {\n return (p + 7) / 8 | 0;\n };\n var slc = function(v, s, e) {\n if (s == null || s < 0)\n s = 0;\n if (e == null || e > v.length)\n e = v.length;\n return new u8(v.subarray(s, e));\n };\n var ec = [\n "unexpected EOF",\n "invalid block type",\n "invalid length/literal",\n "invalid distance",\n "stream finished",\n "no stream handler",\n ,\n "no callback",\n "invalid UTF-8 data",\n "extra field too long",\n "date not in range 1980-2099",\n "filename too long",\n "stream finishing",\n "invalid zip data"\n // determined by unknown compression method\n ];\n var err = function(ind, msg, nt) {\n var e = new Error(msg || ec[ind]);\n e.code = ind;\n if (Error.captureStackTrace)\n Error.captureStackTrace(e, err);\n if (!nt)\n throw e;\n return e;\n };\n var inflt = function(dat, st, buf, dict) {\n var sl = dat.length, dl = 0;\n if (!sl || st.f && !st.l)\n return buf || new u8(0);\n var noBuf = !buf;\n var resize = noBuf || st.i != 2;\n var noSt = st.i;\n if (noBuf)\n buf = new u8(sl * 3);\n var cbuf = function(l2) {\n var bl = buf.length;\n if (l2 > bl) {\n var nbuf = new u8(Math.max(bl * 2, l2));\n nbuf.set(buf);\n buf = nbuf;\n }\n };\n var final = st.f || 0, pos = st.p || 0, bt = st.b || 0, lm = st.l, dm = st.d, lbt = st.m, dbt = st.n;\n var tbts = sl * 8;\n do {\n if (!lm) {\n final = bits(dat, pos, 1);\n var type = bits(dat, pos + 1, 3);\n pos += 3;\n if (!type) {\n var s = shft(pos) + 4, l = dat[s - 4] | dat[s - 3] << 8, t = s + l;\n if (t > sl) {\n if (noSt)\n err(0);\n break;\n }\n if (resize)\n cbuf(bt + l);\n buf.set(dat.subarray(s, t), bt);\n st.b = bt += l, st.p = pos = t * 8, st.f = final;\n continue;\n } else if (type == 1)\n lm = flrm, dm = fdrm, lbt = 9, dbt = 5;\n else if (type == 2) {\n var hLit = bits(dat, pos, 31) + 257, hcLen = bits(dat, pos + 10, 15) + 4;\n var tl = hLit + bits(dat, pos + 5, 31) + 1;\n pos += 14;\n var ldt = new u8(tl);\n var clt = new u8(19);\n for (var i2 = 0; i2 < hcLen; ++i2) {\n clt[clim[i2]] = bits(dat, pos + i2 * 3, 7);\n }\n pos += hcLen * 3;\n var clb = max(clt), clbmsk = (1 << clb) - 1;\n var clm = hMap(clt, clb, 1);\n for (var i2 = 0; i2 < tl; ) {\n var r = clm[bits(dat, pos, clbmsk)];\n pos += r & 15;\n var s = r >> 4;\n if (s < 16) {\n ldt[i2++] = s;\n } else {\n var c = 0, n = 0;\n if (s == 16)\n n = 3 + bits(dat, pos, 3), pos += 2, c = ldt[i2 - 1];\n else if (s == 17)\n n = 3 + bits(dat, pos, 7), pos += 3;\n else if (s == 18)\n n = 11 + bits(dat, pos, 127), pos += 7;\n while (n--)\n ldt[i2++] = c;\n }\n }\n var lt = ldt.subarray(0, hLit), dt = ldt.subarray(hLit);\n lbt = max(lt);\n dbt = max(dt);\n lm = hMap(lt, lbt, 1);\n dm = hMap(dt, dbt, 1);\n } else\n err(1);\n if (pos > tbts) {\n if (noSt)\n err(0);\n break;\n }\n }\n if (resize)\n cbuf(bt + 131072);\n var lms = (1 << lbt) - 1, dms = (1 << dbt) - 1;\n var lpos = pos;\n for (; ; lpos = pos) {\n var c = lm[bits16(dat, pos) & lms], sym = c >> 4;\n pos += c & 15;\n if (pos > tbts) {\n if (noSt)\n err(0);\n break;\n }\n if (!c)\n err(2);\n if (sym < 256)\n buf[bt++] = sym;\n else if (sym == 256) {\n lpos = pos, lm = null;\n break;\n } else {\n var add2 = sym - 254;\n if (sym > 264) {\n var i2 = sym - 257, b = fleb[i2];\n add2 = bits(dat, pos, (1 << b) - 1) + fl[i2];\n pos += b;\n }\n var d = dm[bits16(dat, pos) & dms], dsym = d >> 4;\n if (!d)\n err(3);\n pos += d & 15;\n var dt = fd[dsym];\n if (dsym > 3) {\n var b = fdeb[dsym];\n dt += bits16(dat, pos) & (1 << b) - 1, pos += b;\n }\n if (pos > tbts) {\n if (noSt)\n err(0);\n break;\n }\n if (resize)\n cbuf(bt + 131072);\n var end = bt + add2;\n if (bt < dt) {\n var shift = dl - dt, dend = Math.min(dt, end);\n if (shift + bt < 0)\n err(3);\n for (; bt < dend; ++bt)\n buf[bt] = dict[shift + bt];\n }\n for (; bt < end; ++bt)\n buf[bt] = buf[bt - dt];\n }\n }\n st.l = lm, st.p = lpos, st.b = bt, st.f = final;\n if (lm)\n final = 1, st.m = lbt, st.d = dm, st.n = dbt;\n } while (!final);\n return bt != buf.length && noBuf ? slc(buf, 0, bt) : buf.subarray(0, bt);\n };\n var et = /* @__PURE__ */ new u8(0);\n var gzs = function(d) {\n if (d[0] != 31 || d[1] != 139 || d[2] != 8)\n err(6, "invalid gzip data");\n var flg = d[3];\n var st = 10;\n if (flg & 4)\n st += (d[10] | d[11] << 8) + 2;\n for (var zs = (flg >> 3 & 1) + (flg >> 4 & 1); zs > 0; zs -= !d[st++])\n ;\n return st + (flg & 2);\n };\n var Inflate = /* @__PURE__ */ function() {\n function Inflate2(opts, cb) {\n if (typeof opts == "function")\n cb = opts, opts = {};\n this.ondata = cb;\n var dict = opts && opts.dictionary && opts.dictionary.subarray(-32768);\n this.s = { i: 0, b: dict ? dict.length : 0 };\n this.o = new u8(32768);\n this.p = new u8(0);\n if (dict)\n this.o.set(dict);\n }\n Inflate2.prototype.e = function(c) {\n if (!this.ondata)\n err(5);\n if (this.d)\n err(4);\n if (!this.p.length)\n this.p = c;\n else if (c.length) {\n var n = new u8(this.p.length + c.length);\n n.set(this.p), n.set(c, this.p.length), this.p = n;\n }\n };\n Inflate2.prototype.c = function(final) {\n this.s.i = +(this.d = final || false);\n var bts = this.s.b;\n var dt = inflt(this.p, this.s, this.o);\n this.ondata(slc(dt, bts, this.s.b), this.d);\n this.o = slc(dt, this.s.b - 32768), this.s.b = this.o.length;\n this.p = slc(this.p, this.s.p / 8 | 0), this.s.p &= 7;\n };\n Inflate2.prototype.push = function(chunk, final) {\n this.e(chunk), this.c(final);\n };\n return Inflate2;\n }();\n var Gunzip = /* @__PURE__ */ function() {\n function Gunzip2(opts, cb) {\n this.v = 1;\n this.r = 0;\n Inflate.call(this, opts, cb);\n }\n Gunzip2.prototype.push = function(chunk, final) {\n Inflate.prototype.e.call(this, chunk);\n this.r += chunk.length;\n if (this.v) {\n var p = this.p.subarray(this.v - 1);\n var s = p.length > 3 ? gzs(p) : 4;\n if (s > p.length) {\n if (!final)\n return;\n } else if (this.v > 1 && this.onmember) {\n this.onmember(this.r - p.length);\n }\n this.p = p.subarray(s), this.v = 0;\n }\n Inflate.prototype.c.call(this, final);\n if (this.s.f && !this.s.l && !final) {\n this.v = shft(this.s.p) + 9;\n this.s = { i: 0 };\n this.o = new u8(0);\n this.push(new u8(0), final);\n }\n };\n return Gunzip2;\n }();\n var td = typeof TextDecoder != "undefined" && /* @__PURE__ */ new TextDecoder();\n var tds = 0;\n try {\n td.decode(et, { stream: true });\n tds = 1;\n } catch (e) {\n }\n /**\n * @license\n * Copyright 2010-2024 Three.js Authors\n * SPDX-License-Identifier: MIT\n */\n const REVISION = "172";\n const FrontSide = 0;\n const BackSide = 1;\n const NormalBlending = 1;\n const AddEquation = 100;\n const SrcAlphaFactor = 204;\n const OneMinusSrcAlphaFactor = 205;\n const LessEqualDepth = 3;\n const MultiplyOperation = 0;\n const UVMapping = 300;\n const RepeatWrapping = 1e3;\n const ClampToEdgeWrapping = 1001;\n const MirroredRepeatWrapping = 1002;\n const NearestFilter = 1003;\n const LinearFilter = 1006;\n const LinearMipmapLinearFilter = 1008;\n const UnsignedByteType = 1009;\n const UnsignedIntType = 1014;\n const FloatType = 1015;\n const RGBAFormat = 1023;\n const RGIntegerFormat = 1031;\n const RGBAIntegerFormat = 1033;\n const NoColorSpace = "";\n const SRGBColorSpace = "srgb";\n const LinearSRGBColorSpace = "srgb-linear";\n const LinearTransfer = "linear";\n const SRGBTransfer = "srgb";\n const KeepStencilOp = 7680;\n const AlwaysStencilFunc = 519;\n const StaticDrawUsage = 35044;\n const GLSL3 = "300 es";\n const WebGLCoordinateSystem = 2e3;\n const WebGPUCoordinateSystem = 2001;\n class EventDispatcher {\n addEventListener(type, listener) {\n if (this._listeners === void 0) this._listeners = {};\n const listeners = this._listeners;\n if (listeners[type] === void 0) {\n listeners[type] = [];\n }\n if (listeners[type].indexOf(listener) === -1) {\n listeners[type].push(listener);\n }\n }\n hasEventListener(type, listener) {\n if (this._listeners === void 0) return false;\n const listeners = this._listeners;\n return listeners[type] !== void 0 && listeners[type].indexOf(listener) !== -1;\n }\n removeEventListener(type, listener) {\n if (this._listeners === void 0) return;\n const listeners = this._listeners;\n const listenerArray = listeners[type];\n if (listenerArray !== void 0) {\n const index = listenerArray.indexOf(listener);\n if (index !== -1) {\n listenerArray.splice(index, 1);\n }\n }\n }\n dispatchEvent(event) {\n if (this._listeners === void 0) return;\n const listeners = this._listeners;\n const listenerArray = listeners[event.type];\n if (listenerArray !== void 0) {\n event.target = this;\n const array = listenerArray.slice(0);\n for (let i2 = 0, l = array.length; i2 < l; i2++) {\n array[i2].call(this, event);\n }\n event.target = null;\n }\n }\n }\n const _lut = ["00", "01", "02", "03", "04", "05", "06", "07", "08", "09", "0a", "0b", "0c", "0d", "0e", "0f", "10", "11", "12", "13", "14", "15", "16", "17", "18", "19", "1a", "1b", "1c", "1d", "1e", "1f", "20", "21", "22", "23", "24", "25", "26", "27", "28", "29", "2a", "2b", "2c", "2d", "2e", "2f", "30", "31", "32", "33", "34", "35", "36", "37", "38", "39", "3a", "3b", "3c", "3d", "3e", "3f", "40", "41", "42", "43", "44", "45", "46", "47", "48", "49", "4a", "4b", "4c", "4d", "4e", "4f", "50", "51", "52", "53", "54", "55", "56", "57", "58", "59", "5a", "5b", "5c", "5d", "5e", "5f", "60", "61", "62", "63", "64", "65", "66", "67", "68", "69", "6a", "6b", "6c", "6d", "6e", "6f", "70", "71", "72", "73", "74", "75", "76", "77", "78", "79", "7a", "7b", "7c", "7d", "7e", "7f", "80", "81", "82", "83", "84", "85", "86", "87", "88", "89", "8a", "8b", "8c", "8d", "8e", "8f", "90", "91", "92", "93", "94", "95", "96", "97", "98", "99", "9a", "9b", "9c", "9d", "9e", "9f", "a0", "a1", "a2", "a3", "a4", "a5", "a6", "a7", "a8", "a9", "aa", "ab", "ac", "ad", "ae", "af", "b0", "b1", "b2", "b3", "b4", "b5", "b6", "b7", "b8", "b9", "ba", "bb", "bc", "bd", "be", "bf", "c0", "c1", "c2", "c3", "c4", "c5", "c6", "c7", "c8", "c9", "ca", "cb", "cc", "cd", "ce", "cf", "d0", "d1", "d2", "d3", "d4", "d5", "d6", "d7", "d8", "d9", "da", "db", "dc", "dd", "de", "df", "e0", "e1", "e2", "e3", "e4", "e5", "e6", "e7", "e8", "e9", "ea", "eb", "ec", "ed", "ee", "ef", "f0", "f1", "f2", "f3", "f4", "f5", "f6", "f7", "f8", "f9", "fa", "fb", "fc", "fd", "fe", "ff"];\n function generateUUID() {\n const d0 = Math.random() * 4294967295 | 0;\n const d1 = Math.random() * 4294967295 | 0;\n const d2 = Math.random() * 4294967295 | 0;\n const d3 = Math.random() * 4294967295 | 0;\n const uuid = _lut[d0 & 255] + _lut[d0 >> 8 & 255] + _lut[d0 >> 16 & 255] + _lut[d0 >> 24 & 255] + "-" + _lut[d1 & 255] + _lut[d1 >> 8 & 255] + "-" + _lut[d1 >> 16 & 15 | 64] + _lut[d1 >> 24 & 255] + "-" + _lut[d2 & 63 | 128] + _lut[d2 >> 8 & 255] + "-" + _lut[d2 >> 16 & 255] + _lut[d2 >> 24 & 255] + _lut[d3 & 255] + _lut[d3 >> 8 & 255] + _lut[d3 >> 16 & 255] + _lut[d3 >> 24 & 255];\n return uuid.toLowerCase();\n }\n function clamp(value, min, max2) {\n return Math.max(min, Math.min(max2, value));\n }\n function euclideanModulo(n, m) {\n return (n % m + m) % m;\n }\n function lerp(x2, y, t) {\n return (1 - t) * x2 + t * y;\n }\n function denormalize(value, array) {\n switch (array.constructor) {\n case Float32Array:\n return value;\n case Uint32Array:\n return value / 4294967295;\n case Uint16Array:\n return value / 65535;\n case Uint8Array:\n return value / 255;\n case Int32Array:\n return Math.max(value / 2147483647, -1);\n case Int16Array:\n return Math.max(value / 32767, -1);\n case Int8Array:\n return Math.max(value / 127, -1);\n default:\n throw new Error("Invalid component type.");\n }\n }\n function normalize$1(value, array) {\n switch (array.constructor) {\n case Float32Array:\n return value;\n case Uint32Array:\n return Math.round(value * 4294967295);\n case Uint16Array:\n return Math.round(value * 65535);\n case Uint8Array:\n return Math.round(value * 255);\n case Int32Array:\n return Math.round(value * 2147483647);\n case Int16Array:\n return Math.round(value * 32767);\n case Int8Array:\n return Math.round(value * 127);\n default:\n throw new Error("Invalid component type.");\n }\n }\n class Vector2 {\n constructor(x2 = 0, y = 0) {\n Vector2.prototype.isVector2 = true;\n this.x = x2;\n this.y = y;\n }\n get width() {\n return this.x;\n }\n set width(value) {\n this.x = value;\n }\n get height() {\n return this.y;\n }\n set height(value) {\n this.y = value;\n }\n set(x2, y) {\n this.x = x2;\n this.y = y;\n return this;\n }\n setScalar(scalar) {\n this.x = scalar;\n this.y = scalar;\n return this;\n }\n setX(x2) {\n this.x = x2;\n return this;\n }\n setY(y) {\n this.y = y;\n return this;\n }\n setComponent(index, value) {\n switch (index) {\n case 0:\n this.x = value;\n break;\n case 1:\n this.y = value;\n break;\n default:\n throw new Error("index is out of range: " + index);\n }\n return this;\n }\n getComponent(index) {\n switch (index) {\n case 0:\n return this.x;\n case 1:\n return this.y;\n default:\n throw new Error("index is out of range: " + index);\n }\n }\n clone() {\n return new this.constructor(this.x, this.y);\n }\n copy(v) {\n this.x = v.x;\n this.y = v.y;\n return this;\n }\n add(v) {\n this.x += v.x;\n this.y += v.y;\n return this;\n }\n addScalar(s) {\n this.x += s;\n this.y += s;\n return this;\n }\n addVectors(a, b) {\n this.x = a.x + b.x;\n this.y = a.y + b.y;\n return this;\n }\n addScaledVector(v, s) {\n this.x += v.x * s;\n this.y += v.y * s;\n return this;\n }\n sub(v) {\n this.x -= v.x;\n this.y -= v.y;\n return this;\n }\n subScalar(s) {\n this.x -= s;\n this.y -= s;\n return this;\n }\n subVectors(a, b) {\n this.x = a.x - b.x;\n this.y = a.y - b.y;\n return this;\n }\n multiply(v) {\n this.x *= v.x;\n this.y *= v.y;\n return this;\n }\n multiplyScalar(scalar) {\n this.x *= scalar;\n this.y *= scalar;\n return this;\n }\n divide(v) {\n this.x /= v.x;\n this.y /= v.y;\n return this;\n }\n divideScalar(scalar) {\n return this.multiplyScalar(1 / scalar);\n }\n applyMatrix3(m) {\n const x2 = this.x, y = this.y;\n const e = m.elements;\n this.x = e[0] * x2 + e[3] * y + e[6];\n this.y = e[1] * x2 + e[4] * y + e[7];\n return this;\n }\n min(v) {\n this.x = Math.min(this.x, v.x);\n this.y = Math.min(this.y, v.y);\n return this;\n }\n max(v) {\n this.x = Math.max(this.x, v.x);\n this.y = Math.max(this.y, v.y);\n return this;\n }\n clamp(min, max2) {\n this.x = clamp(this.x, min.x, max2.x);\n this.y = clamp(this.y, min.y, max2.y);\n return this;\n }\n clampScalar(minVal, maxVal) {\n this.x = clamp(this.x, minVal, maxVal);\n this.y = clamp(this.y, minVal, maxVal);\n return this;\n }\n clampLength(min, max2) {\n const length = this.length();\n return this.divideScalar(length || 1).multiplyScalar(clamp(length, min, max2));\n }\n floor() {\n this.x = Math.floor(this.x);\n this.y = Math.floor(this.y);\n return this;\n }\n ceil() {\n this.x = Math.ceil(this.x);\n this.y = Math.ceil(this.y);\n return this;\n }\n round() {\n this.x = Math.round(this.x);\n this.y = Math.round(this.y);\n return this;\n }\n roundToZero() {\n this.x = Math.trunc(this.x);\n this.y = Math.trunc(this.y);\n return this;\n }\n negate() {\n this.x = -this.x;\n this.y = -this.y;\n return this;\n }\n dot(v) {\n return this.x * v.x + this.y * v.y;\n }\n cross(v) {\n return this.x * v.y - this.y * v.x;\n }\n lengthSq() {\n return this.x * this.x + this.y * this.y;\n }\n length() {\n return Math.sqrt(this.x * this.x + this.y * this.y);\n }\n manhattanLength() {\n return Math.abs(this.x) + Math.abs(this.y);\n }\n normalize() {\n return this.divideScalar(this.length() || 1);\n }\n angle() {\n const angle = Math.atan2(-this.y, -this.x) + Math.PI;\n return angle;\n }\n angleTo(v) {\n const denominator = Math.sqrt(this.lengthSq() * v.lengthSq());\n if (denominator === 0) return Math.PI / 2;\n const theta = this.dot(v) / denominator;\n return Math.acos(clamp(theta, -1, 1));\n }\n distanceTo(v) {\n return Math.sqrt(this.distanceToSquared(v));\n }\n distanceToSquared(v) {\n const dx = this.x - v.x, dy = this.y - v.y;\n return dx * dx + dy * dy;\n }\n manhattanDistanceTo(v) {\n return Math.abs(this.x - v.x) + Math.abs(this.y - v.y);\n }\n setLength(length) {\n return this.normalize().multiplyScalar(length);\n }\n lerp(v, alpha) {\n this.x += (v.x - this.x) * alpha;\n this.y += (v.y - this.y) * alpha;\n return this;\n }\n lerpVectors(v1, v2, alpha) {\n this.x = v1.x + (v2.x - v1.x) * alpha;\n this.y = v1.y + (v2.y - v1.y) * alpha;\n return this;\n }\n equals(v) {\n return v.x === this.x && v.y === this.y;\n }\n fromArray(array, offset = 0) {\n this.x = array[offset];\n this.y = array[offset + 1];\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this.x;\n array[offset + 1] = this.y;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this.x = attribute.getX(index);\n this.y = attribute.getY(index);\n return this;\n }\n rotateAround(center, angle) {\n const c = Math.cos(angle), s = Math.sin(angle);\n const x2 = this.x - center.x;\n const y = this.y - center.y;\n this.x = x2 * c - y * s + center.x;\n this.y = x2 * s + y * c + center.y;\n return this;\n }\n random() {\n this.x = Math.random();\n this.y = Math.random();\n return this;\n }\n *[Symbol.iterator]() {\n yield this.x;\n yield this.y;\n }\n }\n class Matrix3 {\n constructor(n11, n12, n13, n21, n22, n23, n31, n32, n33) {\n Matrix3.prototype.isMatrix3 = true;\n this.elements = [\n 1,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 1\n ];\n if (n11 !== void 0) {\n this.set(n11, n12, n13, n21, n22, n23, n31, n32, n33);\n }\n }\n set(n11, n12, n13, n21, n22, n23, n31, n32, n33) {\n const te = this.elements;\n te[0] = n11;\n te[1] = n21;\n te[2] = n31;\n te[3] = n12;\n te[4] = n22;\n te[5] = n32;\n te[6] = n13;\n te[7] = n23;\n te[8] = n33;\n return this;\n }\n identity() {\n this.set(\n 1,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n copy(m) {\n const te = this.elements;\n const me = m.elements;\n te[0] = me[0];\n te[1] = me[1];\n te[2] = me[2];\n te[3] = me[3];\n te[4] = me[4];\n te[5] = me[5];\n te[6] = me[6];\n te[7] = me[7];\n te[8] = me[8];\n return this;\n }\n extractBasis(xAxis, yAxis, zAxis) {\n xAxis.setFromMatrix3Column(this, 0);\n yAxis.setFromMatrix3Column(this, 1);\n zAxis.setFromMatrix3Column(this, 2);\n return this;\n }\n setFromMatrix4(m) {\n const me = m.elements;\n this.set(\n me[0],\n me[4],\n me[8],\n me[1],\n me[5],\n me[9],\n me[2],\n me[6],\n me[10]\n );\n return this;\n }\n multiply(m) {\n return this.multiplyMatrices(this, m);\n }\n premultiply(m) {\n return this.multiplyMatrices(m, this);\n }\n multiplyMatrices(a, b) {\n const ae = a.elements;\n const be = b.elements;\n const te = this.elements;\n const a11 = ae[0], a12 = ae[3], a13 = ae[6];\n const a21 = ae[1], a22 = ae[4], a23 = ae[7];\n const a31 = ae[2], a32 = ae[5], a33 = ae[8];\n const b11 = be[0], b12 = be[3], b13 = be[6];\n const b21 = be[1], b22 = be[4], b23 = be[7];\n const b31 = be[2], b32 = be[5], b33 = be[8];\n te[0] = a11 * b11 + a12 * b21 + a13 * b31;\n te[3] = a11 * b12 + a12 * b22 + a13 * b32;\n te[6] = a11 * b13 + a12 * b23 + a13 * b33;\n te[1] = a21 * b11 + a22 * b21 + a23 * b31;\n te[4] = a21 * b12 + a22 * b22 + a23 * b32;\n te[7] = a21 * b13 + a22 * b23 + a23 * b33;\n te[2] = a31 * b11 + a32 * b21 + a33 * b31;\n te[5] = a31 * b12 + a32 * b22 + a33 * b32;\n te[8] = a31 * b13 + a32 * b23 + a33 * b33;\n return this;\n }\n multiplyScalar(s) {\n const te = this.elements;\n te[0] *= s;\n te[3] *= s;\n te[6] *= s;\n te[1] *= s;\n te[4] *= s;\n te[7] *= s;\n te[2] *= s;\n te[5] *= s;\n te[8] *= s;\n return this;\n }\n determinant() {\n const te = this.elements;\n const a = te[0], b = te[1], c = te[2], d = te[3], e = te[4], f = te[5], g = te[6], h = te[7], i2 = te[8];\n return a * e * i2 - a * f * h - b * d * i2 + b * f * g + c * d * h - c * e * g;\n }\n invert() {\n const te = this.elements, n11 = te[0], n21 = te[1], n31 = te[2], n12 = te[3], n22 = te[4], n32 = te[5], n13 = te[6], n23 = te[7], n33 = te[8], t11 = n33 * n22 - n32 * n23, t12 = n32 * n13 - n33 * n12, t13 = n23 * n12 - n22 * n13, det = n11 * t11 + n21 * t12 + n31 * t13;\n if (det === 0) return this.set(0, 0, 0, 0, 0, 0, 0, 0, 0);\n const detInv = 1 / det;\n te[0] = t11 * detInv;\n te[1] = (n31 * n23 - n33 * n21) * detInv;\n te[2] = (n32 * n21 - n31 * n22) * detInv;\n te[3] = t12 * detInv;\n te[4] = (n33 * n11 - n31 * n13) * detInv;\n te[5] = (n31 * n12 - n32 * n11) * detInv;\n te[6] = t13 * detInv;\n te[7] = (n21 * n13 - n23 * n11) * detInv;\n te[8] = (n22 * n11 - n21 * n12) * detInv;\n return this;\n }\n transpose() {\n let tmp;\n const m = this.elements;\n tmp = m[1];\n m[1] = m[3];\n m[3] = tmp;\n tmp = m[2];\n m[2] = m[6];\n m[6] = tmp;\n tmp = m[5];\n m[5] = m[7];\n m[7] = tmp;\n return this;\n }\n getNormalMatrix(matrix4) {\n return this.setFromMatrix4(matrix4).invert().transpose();\n }\n transposeIntoArray(r) {\n const m = this.elements;\n r[0] = m[0];\n r[1] = m[3];\n r[2] = m[6];\n r[3] = m[1];\n r[4] = m[4];\n r[5] = m[7];\n r[6] = m[2];\n r[7] = m[5];\n r[8] = m[8];\n return this;\n }\n setUvTransform(tx, ty, sx, sy, rotation, cx, cy) {\n const c = Math.cos(rotation);\n const s = Math.sin(rotation);\n this.set(\n sx * c,\n sx * s,\n -sx * (c * cx + s * cy) + cx + tx,\n -sy * s,\n sy * c,\n -sy * (-s * cx + c * cy) + cy + ty,\n 0,\n 0,\n 1\n );\n return this;\n }\n //\n scale(sx, sy) {\n this.premultiply(_m3.makeScale(sx, sy));\n return this;\n }\n rotate(theta) {\n this.premultiply(_m3.makeRotation(-theta));\n return this;\n }\n translate(tx, ty) {\n this.premultiply(_m3.makeTranslation(tx, ty));\n return this;\n }\n // for 2D Transforms\n makeTranslation(x2, y) {\n if (x2.isVector2) {\n this.set(\n 1,\n 0,\n x2.x,\n 0,\n 1,\n x2.y,\n 0,\n 0,\n 1\n );\n } else {\n this.set(\n 1,\n 0,\n x2,\n 0,\n 1,\n y,\n 0,\n 0,\n 1\n );\n }\n return this;\n }\n makeRotation(theta) {\n const c = Math.cos(theta);\n const s = Math.sin(theta);\n this.set(\n c,\n -s,\n 0,\n s,\n c,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeScale(x2, y) {\n this.set(\n x2,\n 0,\n 0,\n 0,\n y,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n //\n equals(matrix) {\n const te = this.elements;\n const me = matrix.elements;\n for (let i2 = 0; i2 < 9; i2++) {\n if (te[i2] !== me[i2]) return false;\n }\n return true;\n }\n fromArray(array, offset = 0) {\n for (let i2 = 0; i2 < 9; i2++) {\n this.elements[i2] = array[i2 + offset];\n }\n return this;\n }\n toArray(array = [], offset = 0) {\n const te = this.elements;\n array[offset] = te[0];\n array[offset + 1] = te[1];\n array[offset + 2] = te[2];\n array[offset + 3] = te[3];\n array[offset + 4] = te[4];\n array[offset + 5] = te[5];\n array[offset + 6] = te[6];\n array[offset + 7] = te[7];\n array[offset + 8] = te[8];\n return array;\n }\n clone() {\n return new this.constructor().fromArray(this.elements);\n }\n }\n const _m3 = /* @__PURE__ */ new Matrix3();\n function arrayNeedsUint32(array) {\n for (let i2 = array.length - 1; i2 >= 0; --i2) {\n if (array[i2] >= 65535) return true;\n }\n return false;\n }\n function createElementNS(name) {\n return document.createElementNS("http://www.w3.org/1999/xhtml", name);\n }\n const LINEAR_REC709_TO_XYZ = /* @__PURE__ */ new Matrix3().set(\n 0.4123908,\n 0.3575843,\n 0.1804808,\n 0.212639,\n 0.7151687,\n 0.0721923,\n 0.0193308,\n 0.1191948,\n 0.9505322\n );\n const XYZ_TO_LINEAR_REC709 = /* @__PURE__ */ new Matrix3().set(\n 3.2409699,\n -1.5373832,\n -0.4986108,\n -0.9692436,\n 1.8759675,\n 0.0415551,\n 0.0556301,\n -0.203977,\n 1.0569715\n );\n function createColorManagement() {\n const ColorManagement2 = {\n enabled: true,\n workingColorSpace: LinearSRGBColorSpace,\n /**\n * Implementations of supported color spaces.\n *\n * Required:\n * - primaries: chromaticity coordinates [ rx ry gx gy bx by ]\n * - whitePoint: reference white [ x y ]\n * - transfer: transfer function (pre-defined)\n * - toXYZ: Matrix3 RGB to XYZ transform\n * - fromXYZ: Matrix3 XYZ to RGB transform\n * - luminanceCoefficients: RGB luminance coefficients\n *\n * Optional:\n * - outputColorSpaceConfig: { drawingBufferColorSpace: ColorSpace }\n * - workingColorSpaceConfig: { unpackColorSpace: ColorSpace }\n *\n * Reference:\n * - https://www.russellcottrell.com/photo/matrixCalculator.htm\n */\n spaces: {},\n convert: function(color, sourceColorSpace, targetColorSpace) {\n if (this.enabled === false || sourceColorSpace === targetColorSpace || !sourceColorSpace || !targetColorSpace) {\n return color;\n }\n if (this.spaces[sourceColorSpace].transfer === SRGBTransfer) {\n color.r = SRGBToLinear(color.r);\n color.g = SRGBToLinear(color.g);\n color.b = SRGBToLinear(color.b);\n }\n if (this.spaces[sourceColorSpace].primaries !== this.spaces[targetColorSpace].primaries) {\n color.applyMatrix3(this.spaces[sourceColorSpace].toXYZ);\n color.applyMatrix3(this.spaces[targetColorSpace].fromXYZ);\n }\n if (this.spaces[targetColorSpace].transfer === SRGBTransfer) {\n color.r = LinearToSRGB(color.r);\n color.g = LinearToSRGB(color.g);\n color.b = LinearToSRGB(color.b);\n }\n return color;\n },\n fromWorkingColorSpace: function(color, targetColorSpace) {\n return this.convert(color, this.workingColorSpace, targetColorSpace);\n },\n toWorkingColorSpace: function(color, sourceColorSpace) {\n return this.convert(color, sourceColorSpace, this.workingColorSpace);\n },\n getPrimaries: function(colorSpace) {\n return this.spaces[colorSpace].primaries;\n },\n getTransfer: function(colorSpace) {\n if (colorSpace === NoColorSpace) return LinearTransfer;\n return this.spaces[colorSpace].transfer;\n },\n getLuminanceCoefficients: function(target, colorSpace = this.workingColorSpace) {\n return target.fromArray(this.spaces[colorSpace].luminanceCoefficients);\n },\n define: function(colorSpaces) {\n Object.assign(this.spaces, colorSpaces);\n },\n // Internal APIs\n _getMatrix: function(targetMatrix, sourceColorSpace, targetColorSpace) {\n return targetMatrix.copy(this.spaces[sourceColorSpace].toXYZ).multiply(this.spaces[targetColorSpace].fromXYZ);\n },\n _getDrawingBufferColorSpace: function(colorSpace) {\n return this.spaces[colorSpace].outputColorSpaceConfig.drawingBufferColorSpace;\n },\n _getUnpackColorSpace: function(colorSpace = this.workingColorSpace) {\n return this.spaces[colorSpace].workingColorSpaceConfig.unpackColorSpace;\n }\n };\n const REC709_PRIMARIES = [0.64, 0.33, 0.3, 0.6, 0.15, 0.06];\n const REC709_LUMINANCE_COEFFICIENTS = [0.2126, 0.7152, 0.0722];\n const D65 = [0.3127, 0.329];\n ColorManagement2.define({\n [LinearSRGBColorSpace]: {\n primaries: REC709_PRIMARIES,\n whitePoint: D65,\n transfer: LinearTransfer,\n toXYZ: LINEAR_REC709_TO_XYZ,\n fromXYZ: XYZ_TO_LINEAR_REC709,\n luminanceCoefficients: REC709_LUMINANCE_COEFFICIENTS,\n workingColorSpaceConfig: { unpackColorSpace: SRGBColorSpace },\n outputColorSpaceConfig: { drawingBufferColorSpace: SRGBColorSpace }\n },\n [SRGBColorSpace]: {\n primaries: REC709_PRIMARIES,\n whitePoint: D65,\n transfer: SRGBTransfer,\n toXYZ: LINEAR_REC709_TO_XYZ,\n fromXYZ: XYZ_TO_LINEAR_REC709,\n luminanceCoefficients: REC709_LUMINANCE_COEFFICIENTS,\n outputColorSpaceConfig: { drawingBufferColorSpace: SRGBColorSpace }\n }\n });\n return ColorManagement2;\n }\n const ColorManagement = /* @__PURE__ */ createColorManagement();\n function SRGBToLinear(c) {\n return c < 0.04045 ? c * 0.0773993808 : Math.pow(c * 0.9478672986 + 0.0521327014, 2.4);\n }\n function LinearToSRGB(c) {\n return c < 31308e-7 ? c * 12.92 : 1.055 * Math.pow(c, 0.41666) - 0.055;\n }\n let _canvas;\n class ImageUtils {\n static getDataURL(image) {\n if (/^data:/i.test(image.src)) {\n return image.src;\n }\n if (typeof HTMLCanvasElement === "undefined") {\n return image.src;\n }\n let canvas;\n if (image instanceof HTMLCanvasElement) {\n canvas = image;\n } else {\n if (_canvas === void 0) _canvas = createElementNS("canvas");\n _canvas.width = image.width;\n _canvas.height = image.height;\n const context = _canvas.getContext("2d");\n if (image instanceof ImageData) {\n context.putImageData(image, 0, 0);\n } else {\n context.drawImage(image, 0, 0, image.width, image.height);\n }\n canvas = _canvas;\n }\n if (canvas.width > 2048 || canvas.height > 2048) {\n console.warn("THREE.ImageUtils.getDataURL: Image converted to jpg for performance reasons", image);\n return canvas.toDataURL("image/jpeg", 0.6);\n } else {\n return canvas.toDataURL("image/png");\n }\n }\n static sRGBToLinear(image) {\n if (typeof HTMLImageElement !== "undefined" && image instanceof HTMLImageElement || typeof HTMLCanvasElement !== "undefined" && image instanceof HTMLCanvasElement || typeof ImageBitmap !== "undefined" && image instanceof ImageBitmap) {\n const canvas = createElementNS("canvas");\n canvas.width = image.width;\n canvas.height = image.height;\n const context = canvas.getContext("2d");\n context.drawImage(image, 0, 0, image.width, image.height);\n const imageData = context.getImageData(0, 0, image.width, image.height);\n const data = imageData.data;\n for (let i2 = 0; i2 < data.length; i2++) {\n data[i2] = SRGBToLinear(data[i2] / 255) * 255;\n }\n context.putImageData(imageData, 0, 0);\n return canvas;\n } else if (image.data) {\n const data = image.data.slice(0);\n for (let i2 = 0; i2 < data.length; i2++) {\n if (data instanceof Uint8Array || data instanceof Uint8ClampedArray) {\n data[i2] = Math.floor(SRGBToLinear(data[i2] / 255) * 255);\n } else {\n data[i2] = SRGBToLinear(data[i2]);\n }\n }\n return {\n data,\n width: image.width,\n height: image.height\n };\n } else {\n console.warn("THREE.ImageUtils.sRGBToLinear(): Unsupported image type. No color space conversion applied.");\n return image;\n }\n }\n }\n let _sourceId = 0;\n class Source {\n constructor(data = null) {\n this.isSource = true;\n Object.defineProperty(this, "id", { value: _sourceId++ });\n this.uuid = generateUUID();\n this.data = data;\n this.dataReady = true;\n this.version = 0;\n }\n set needsUpdate(value) {\n if (value === true) this.version++;\n }\n toJSON(meta) {\n const isRootObject = meta === void 0 || typeof meta === "string";\n if (!isRootObject && meta.images[this.uuid] !== void 0) {\n return meta.images[this.uuid];\n }\n const output = {\n uuid: this.uuid,\n url: ""\n };\n const data = this.data;\n if (data !== null) {\n let url;\n if (Array.isArray(data)) {\n url = [];\n for (let i2 = 0, l = data.length; i2 < l; i2++) {\n if (data[i2].isDataTexture) {\n url.push(serializeImage(data[i2].image));\n } else {\n url.push(serializeImage(data[i2]));\n }\n }\n } else {\n url = serializeImage(data);\n }\n output.url = url;\n }\n if (!isRootObject) {\n meta.images[this.uuid] = output;\n }\n return output;\n }\n }\n function serializeImage(image) {\n if (typeof HTMLImageElement !== "undefined" && image instanceof HTMLImageElement || typeof HTMLCanvasElement !== "undefined" && image instanceof HTMLCanvasElement || typeof ImageBitmap !== "undefined" && image instanceof ImageBitmap) {\n return ImageUtils.getDataURL(image);\n } else {\n if (image.data) {\n return {\n data: Array.from(image.data),\n width: image.width,\n height: image.height,\n type: image.data.constructor.name\n };\n } else {\n console.warn("THREE.Texture: Unable to serialize Texture.");\n return {};\n }\n }\n }\n let _textureId = 0;\n class Texture extends EventDispatcher {\n constructor(image = Texture.DEFAULT_IMAGE, mapping = Texture.DEFAULT_MAPPING, wrapS = ClampToEdgeWrapping, wrapT = ClampToEdgeWrapping, magFilter = LinearFilter, minFilter = LinearMipmapLinearFilter, format = RGBAFormat, type = UnsignedByteType, anisotropy = Texture.DEFAULT_ANISOTROPY, colorSpace = NoColorSpace) {\n super();\n this.isTexture = true;\n Object.defineProperty(this, "id", { value: _textureId++ });\n this.uuid = generateUUID();\n this.name = "";\n this.source = new Source(image);\n this.mipmaps = [];\n this.mapping = mapping;\n this.channel = 0;\n this.wrapS = wrapS;\n this.wrapT = wrapT;\n this.magFilter = magFilter;\n this.minFilter = minFilter;\n this.anisotropy = anisotropy;\n this.format = format;\n this.internalFormat = null;\n this.type = type;\n this.offset = new Vector2(0, 0);\n this.repeat = new Vector2(1, 1);\n this.center = new Vector2(0, 0);\n this.rotation = 0;\n this.matrixAutoUpdate = true;\n this.matrix = new Matrix3();\n this.generateMipmaps = true;\n this.premultiplyAlpha = false;\n this.flipY = true;\n this.unpackAlignment = 4;\n this.colorSpace = colorSpace;\n this.userData = {};\n this.version = 0;\n this.onUpdate = null;\n this.renderTarget = null;\n this.isRenderTargetTexture = false;\n this.pmremVersion = 0;\n }\n get image() {\n return this.source.data;\n }\n set image(value = null) {\n this.source.data = value;\n }\n updateMatrix() {\n this.matrix.setUvTransform(this.offset.x, this.offset.y, this.repeat.x, this.repeat.y, this.rotation, this.center.x, this.center.y);\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(source) {\n this.name = source.name;\n this.source = source.source;\n this.mipmaps = source.mipmaps.slice(0);\n this.mapping = source.mapping;\n this.channel = source.channel;\n this.wrapS = source.wrapS;\n this.wrapT = source.wrapT;\n this.magFilter = source.magFilter;\n this.minFilter = source.minFilter;\n this.anisotropy = source.anisotropy;\n this.format = source.format;\n this.internalFormat = source.internalFormat;\n this.type = source.type;\n this.offset.copy(source.offset);\n this.repeat.copy(source.repeat);\n this.center.copy(source.center);\n this.rotation = source.rotation;\n this.matrixAutoUpdate = source.matrixAutoUpdate;\n this.matrix.copy(source.matrix);\n this.generateMipmaps = source.generateMipmaps;\n this.premultiplyAlpha = source.premultiplyAlpha;\n this.flipY = source.flipY;\n this.unpackAlignment = source.unpackAlignment;\n this.colorSpace = source.colorSpace;\n this.renderTarget = source.renderTarget;\n this.isRenderTargetTexture = source.isRenderTargetTexture;\n this.userData = JSON.parse(JSON.stringify(source.userData));\n this.needsUpdate = true;\n return this;\n }\n toJSON(meta) {\n const isRootObject = meta === void 0 || typeof meta === "string";\n if (!isRootObject && meta.textures[this.uuid] !== void 0) {\n return meta.textures[this.uuid];\n }\n const output = {\n metadata: {\n version: 4.6,\n type: "Texture",\n generator: "Texture.toJSON"\n },\n uuid: this.uuid,\n name: this.name,\n image: this.source.toJSON(meta).uuid,\n mapping: this.mapping,\n channel: this.channel,\n repeat: [this.repeat.x, this.repeat.y],\n offset: [this.offset.x, this.offset.y],\n center: [this.center.x, this.center.y],\n rotation: this.rotation,\n wrap: [this.wrapS, this.wrapT],\n format: this.format,\n internalFormat: this.internalFormat,\n type: this.type,\n colorSpace: this.colorSpace,\n minFilter: this.minFilter,\n magFilter: this.magFilter,\n anisotropy: this.anisotropy,\n flipY: this.flipY,\n generateMipmaps: this.generateMipmaps,\n premultiplyAlpha: this.premultiplyAlpha,\n unpackAlignment: this.unpackAlignment\n };\n if (Object.keys(this.userData).length > 0) output.userData = this.userData;\n if (!isRootObject) {\n meta.textures[this.uuid] = output;\n }\n return output;\n }\n dispose() {\n this.dispatchEvent({ type: "dispose" });\n }\n transformUv(uv) {\n if (this.mapping !== UVMapping) return uv;\n uv.applyMatrix3(this.matrix);\n if (uv.x < 0 || uv.x > 1) {\n switch (this.wrapS) {\n case RepeatWrapping:\n uv.x = uv.x - Math.floor(uv.x);\n break;\n case ClampToEdgeWrapping:\n uv.x = uv.x < 0 ? 0 : 1;\n break;\n case MirroredRepeatWrapping:\n if (Math.abs(Math.floor(uv.x) % 2) === 1) {\n uv.x = Math.ceil(uv.x) - uv.x;\n } else {\n uv.x = uv.x - Math.floor(uv.x);\n }\n break;\n }\n }\n if (uv.y < 0 || uv.y > 1) {\n switch (this.wrapT) {\n case RepeatWrapping:\n uv.y = uv.y - Math.floor(uv.y);\n break;\n case ClampToEdgeWrapping:\n uv.y = uv.y < 0 ? 0 : 1;\n break;\n case MirroredRepeatWrapping:\n if (Math.abs(Math.floor(uv.y) % 2) === 1) {\n uv.y = Math.ceil(uv.y) - uv.y;\n } else {\n uv.y = uv.y - Math.floor(uv.y);\n }\n break;\n }\n }\n if (this.flipY) {\n uv.y = 1 - uv.y;\n }\n return uv;\n }\n set needsUpdate(value) {\n if (value === true) {\n this.version++;\n this.source.needsUpdate = true;\n }\n }\n set needsPMREMUpdate(value) {\n if (value === true) {\n this.pmremVersion++;\n }\n }\n }\n Texture.DEFAULT_IMAGE = null;\n Texture.DEFAULT_MAPPING = UVMapping;\n Texture.DEFAULT_ANISOTROPY = 1;\n class Vector4 {\n constructor(x2 = 0, y = 0, z = 0, w = 1) {\n Vector4.prototype.isVector4 = true;\n this.x = x2;\n this.y = y;\n this.z = z;\n this.w = w;\n }\n get width() {\n return this.z;\n }\n set width(value) {\n this.z = value;\n }\n get height() {\n return this.w;\n }\n set height(value) {\n this.w = value;\n }\n set(x2, y, z, w) {\n this.x = x2;\n this.y = y;\n this.z = z;\n this.w = w;\n return this;\n }\n setScalar(scalar) {\n this.x = scalar;\n this.y = scalar;\n this.z = scalar;\n this.w = scalar;\n return this;\n }\n setX(x2) {\n this.x = x2;\n return this;\n }\n setY(y) {\n this.y = y;\n return this;\n }\n setZ(z) {\n this.z = z;\n return this;\n }\n setW(w) {\n this.w = w;\n return this;\n }\n setComponent(index, value) {\n switch (index) {\n case 0:\n this.x = value;\n break;\n case 1:\n this.y = value;\n break;\n case 2:\n this.z = value;\n break;\n case 3:\n this.w = value;\n break;\n default:\n throw new Error("index is out of range: " + index);\n }\n return this;\n }\n getComponent(index) {\n switch (index) {\n case 0:\n return this.x;\n case 1:\n return this.y;\n case 2:\n return this.z;\n case 3:\n return this.w;\n default:\n throw new Error("index is out of range: " + index);\n }\n }\n clone() {\n return new this.constructor(this.x, this.y, this.z, this.w);\n }\n copy(v) {\n this.x = v.x;\n this.y = v.y;\n this.z = v.z;\n this.w = v.w !== void 0 ? v.w : 1;\n return this;\n }\n add(v) {\n this.x += v.x;\n this.y += v.y;\n this.z += v.z;\n this.w += v.w;\n return this;\n }\n addScalar(s) {\n this.x += s;\n this.y += s;\n this.z += s;\n this.w += s;\n return this;\n }\n addVectors(a, b) {\n this.x = a.x + b.x;\n this.y = a.y + b.y;\n this.z = a.z + b.z;\n this.w = a.w + b.w;\n return this;\n }\n addScaledVector(v, s) {\n this.x += v.x * s;\n this.y += v.y * s;\n this.z += v.z * s;\n this.w += v.w * s;\n return this;\n }\n sub(v) {\n this.x -= v.x;\n this.y -= v.y;\n this.z -= v.z;\n this.w -= v.w;\n return this;\n }\n subScalar(s) {\n this.x -= s;\n this.y -= s;\n this.z -= s;\n this.w -= s;\n return this;\n }\n subVectors(a, b) {\n this.x = a.x - b.x;\n this.y = a.y - b.y;\n this.z = a.z - b.z;\n this.w = a.w - b.w;\n return this;\n }\n multiply(v) {\n this.x *= v.x;\n this.y *= v.y;\n this.z *= v.z;\n this.w *= v.w;\n return this;\n }\n multiplyScalar(scalar) {\n this.x *= scalar;\n this.y *= scalar;\n this.z *= scalar;\n this.w *= scalar;\n return this;\n }\n applyMatrix4(m) {\n const x2 = this.x, y = this.y, z = this.z, w = this.w;\n const e = m.elements;\n this.x = e[0] * x2 + e[4] * y + e[8] * z + e[12] * w;\n this.y = e[1] * x2 + e[5] * y + e[9] * z + e[13] * w;\n this.z = e[2] * x2 + e[6] * y + e[10] * z + e[14] * w;\n this.w = e[3] * x2 + e[7] * y + e[11] * z + e[15] * w;\n return this;\n }\n divide(v) {\n this.x /= v.x;\n this.y /= v.y;\n this.z /= v.z;\n this.w /= v.w;\n return this;\n }\n divideScalar(scalar) {\n return this.multiplyScalar(1 / scalar);\n }\n setAxisAngleFromQuaternion(q) {\n this.w = 2 * Math.acos(q.w);\n const s = Math.sqrt(1 - q.w * q.w);\n if (s < 1e-4) {\n this.x = 1;\n this.y = 0;\n this.z = 0;\n } else {\n this.x = q.x / s;\n this.y = q.y / s;\n this.z = q.z / s;\n }\n return this;\n }\n setAxisAngleFromRotationMatrix(m) {\n let angle, x2, y, z;\n const epsilon = 0.01, epsilon2 = 0.1, te = m.elements, m11 = te[0], m12 = te[4], m13 = te[8], m21 = te[1], m22 = te[5], m23 = te[9], m31 = te[2], m32 = te[6], m33 = te[10];\n if (Math.abs(m12 - m21) < epsilon && Math.abs(m13 - m31) < epsilon && Math.abs(m23 - m32) < epsilon) {\n if (Math.abs(m12 + m21) < epsilon2 && Math.abs(m13 + m31) < epsilon2 && Math.abs(m23 + m32) < epsilon2 && Math.abs(m11 + m22 + m33 - 3) < epsilon2) {\n this.set(1, 0, 0, 0);\n return this;\n }\n angle = Math.PI;\n const xx = (m11 + 1) / 2;\n const yy = (m22 + 1) / 2;\n const zz = (m33 + 1) / 2;\n const xy = (m12 + m21) / 4;\n const xz = (m13 + m31) / 4;\n const yz = (m23 + m32) / 4;\n if (xx > yy && xx > zz) {\n if (xx < epsilon) {\n x2 = 0;\n y = 0.707106781;\n z = 0.707106781;\n } else {\n x2 = Math.sqrt(xx);\n y = xy / x2;\n z = xz / x2;\n }\n } else if (yy > zz) {\n if (yy < epsilon) {\n x2 = 0.707106781;\n y = 0;\n z = 0.707106781;\n } else {\n y = Math.sqrt(yy);\n x2 = xy / y;\n z = yz / y;\n }\n } else {\n if (zz < epsilon) {\n x2 = 0.707106781;\n y = 0.707106781;\n z = 0;\n } else {\n z = Math.sqrt(zz);\n x2 = xz / z;\n y = yz / z;\n }\n }\n this.set(x2, y, z, angle);\n return this;\n }\n let s = Math.sqrt((m32 - m23) * (m32 - m23) + (m13 - m31) * (m13 - m31) + (m21 - m12) * (m21 - m12));\n if (Math.abs(s) < 1e-3) s = 1;\n this.x = (m32 - m23) / s;\n this.y = (m13 - m31) / s;\n this.z = (m21 - m12) / s;\n this.w = Math.acos((m11 + m22 + m33 - 1) / 2);\n return this;\n }\n setFromMatrixPosition(m) {\n const e = m.elements;\n this.x = e[12];\n this.y = e[13];\n this.z = e[14];\n this.w = e[15];\n return this;\n }\n min(v) {\n this.x = Math.min(this.x, v.x);\n this.y = Math.min(this.y, v.y);\n this.z = Math.min(this.z, v.z);\n this.w = Math.min(this.w, v.w);\n return this;\n }\n max(v) {\n this.x = Math.max(this.x, v.x);\n this.y = Math.max(this.y, v.y);\n this.z = Math.max(this.z, v.z);\n this.w = Math.max(this.w, v.w);\n return this;\n }\n clamp(min, max2) {\n this.x = clamp(this.x, min.x, max2.x);\n this.y = clamp(this.y, min.y, max2.y);\n this.z = clamp(this.z, min.z, max2.z);\n this.w = clamp(this.w, min.w, max2.w);\n return this;\n }\n clampScalar(minVal, maxVal) {\n this.x = clamp(this.x, minVal, maxVal);\n this.y = clamp(this.y, minVal, maxVal);\n this.z = clamp(this.z, minVal, maxVal);\n this.w = clamp(this.w, minVal, maxVal);\n return this;\n }\n clampLength(min, max2) {\n const length = this.length();\n return this.divideScalar(length || 1).multiplyScalar(clamp(length, min, max2));\n }\n floor() {\n this.x = Math.floor(this.x);\n this.y = Math.floor(this.y);\n this.z = Math.floor(this.z);\n this.w = Math.floor(this.w);\n return this;\n }\n ceil() {\n this.x = Math.ceil(this.x);\n this.y = Math.ceil(this.y);\n this.z = Math.ceil(this.z);\n this.w = Math.ceil(this.w);\n return this;\n }\n round() {\n this.x = Math.round(this.x);\n this.y = Math.round(this.y);\n this.z = Math.round(this.z);\n this.w = Math.round(this.w);\n return this;\n }\n roundToZero() {\n this.x = Math.trunc(this.x);\n this.y = Math.trunc(this.y);\n this.z = Math.trunc(this.z);\n this.w = Math.trunc(this.w);\n return this;\n }\n negate() {\n this.x = -this.x;\n this.y = -this.y;\n this.z = -this.z;\n this.w = -this.w;\n return this;\n }\n dot(v) {\n return this.x * v.x + this.y * v.y + this.z * v.z + this.w * v.w;\n }\n lengthSq() {\n return this.x * this.x + this.y * this.y + this.z * this.z + this.w * this.w;\n }\n length() {\n return Math.sqrt(this.x * this.x + this.y * this.y + this.z * this.z + this.w * this.w);\n }\n manhattanLength() {\n return Math.abs(this.x) + Math.abs(this.y) + Math.abs(this.z) + Math.abs(this.w);\n }\n normalize() {\n return this.divideScalar(this.length() || 1);\n }\n setLength(length) {\n return this.normalize().multiplyScalar(length);\n }\n lerp(v, alpha) {\n this.x += (v.x - this.x) * alpha;\n this.y += (v.y - this.y) * alpha;\n this.z += (v.z - this.z) * alpha;\n this.w += (v.w - this.w) * alpha;\n return this;\n }\n lerpVectors(v1, v2, alpha) {\n this.x = v1.x + (v2.x - v1.x) * alpha;\n this.y = v1.y + (v2.y - v1.y) * alpha;\n this.z = v1.z + (v2.z - v1.z) * alpha;\n this.w = v1.w + (v2.w - v1.w) * alpha;\n return this;\n }\n equals(v) {\n return v.x === this.x && v.y === this.y && v.z === this.z && v.w === this.w;\n }\n fromArray(array, offset = 0) {\n this.x = array[offset];\n this.y = array[offset + 1];\n this.z = array[offset + 2];\n this.w = array[offset + 3];\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this.x;\n array[offset + 1] = this.y;\n array[offset + 2] = this.z;\n array[offset + 3] = this.w;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this.x = attribute.getX(index);\n this.y = attribute.getY(index);\n this.z = attribute.getZ(index);\n this.w = attribute.getW(index);\n return this;\n }\n random() {\n this.x = Math.random();\n this.y = Math.random();\n this.z = Math.random();\n this.w = Math.random();\n return this;\n }\n *[Symbol.iterator]() {\n yield this.x;\n yield this.y;\n yield this.z;\n yield this.w;\n }\n }\n class RenderTarget extends EventDispatcher {\n constructor(width = 1, height = 1, options = {}) {\n super();\n this.isRenderTarget = true;\n this.width = width;\n this.height = height;\n this.depth = 1;\n this.scissor = new Vector4(0, 0, width, height);\n this.scissorTest = false;\n this.viewport = new Vector4(0, 0, width, height);\n const image = { width, height, depth: 1 };\n options = Object.assign({\n generateMipmaps: false,\n internalFormat: null,\n minFilter: LinearFilter,\n depthBuffer: true,\n stencilBuffer: false,\n resolveDepthBuffer: true,\n resolveStencilBuffer: true,\n depthTexture: null,\n samples: 0,\n count: 1\n }, options);\n const texture = new Texture(image, options.mapping, options.wrapS, options.wrapT, options.magFilter, options.minFilter, options.format, options.type, options.anisotropy, options.colorSpace);\n texture.flipY = false;\n texture.generateMipmaps = options.generateMipmaps;\n texture.internalFormat = options.internalFormat;\n this.textures = [];\n const count = options.count;\n for (let i2 = 0; i2 < count; i2++) {\n this.textures[i2] = texture.clone();\n this.textures[i2].isRenderTargetTexture = true;\n this.textures[i2].renderTarget = this;\n }\n this.depthBuffer = options.depthBuffer;\n this.stencilBuffer = options.stencilBuffer;\n this.resolveDepthBuffer = options.resolveDepthBuffer;\n this.resolveStencilBuffer = options.resolveStencilBuffer;\n this._depthTexture = null;\n this.depthTexture = options.depthTexture;\n this.samples = options.samples;\n }\n get texture() {\n return this.textures[0];\n }\n set texture(value) {\n this.textures[0] = value;\n }\n set depthTexture(current) {\n if (this._depthTexture !== null) this._depthTexture.renderTarget = null;\n if (current !== null) current.renderTarget = this;\n this._depthTexture = current;\n }\n get depthTexture() {\n return this._depthTexture;\n }\n setSize(width, height, depth = 1) {\n if (this.width !== width || this.height !== height || this.depth !== depth) {\n this.width = width;\n this.height = height;\n this.depth = depth;\n for (let i2 = 0, il = this.textures.length; i2 < il; i2++) {\n this.textures[i2].image.width = width;\n this.textures[i2].image.height = height;\n this.textures[i2].image.depth = depth;\n }\n this.dispose();\n }\n this.viewport.set(0, 0, width, height);\n this.scissor.set(0, 0, width, height);\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(source) {\n this.width = source.width;\n this.height = source.height;\n this.depth = source.depth;\n this.scissor.copy(source.scissor);\n this.scissorTest = source.scissorTest;\n this.viewport.copy(source.viewport);\n this.textures.length = 0;\n for (let i2 = 0, il = source.textures.length; i2 < il; i2++) {\n this.textures[i2] = source.textures[i2].clone();\n this.textures[i2].isRenderTargetTexture = true;\n this.textures[i2].renderTarget = this;\n }\n const image = Object.assign({}, source.texture.image);\n this.texture.source = new Source(image);\n this.depthBuffer = source.depthBuffer;\n this.stencilBuffer = source.stencilBuffer;\n this.resolveDepthBuffer = source.resolveDepthBuffer;\n this.resolveStencilBuffer = source.resolveStencilBuffer;\n if (source.depthTexture !== null) this.depthTexture = source.depthTexture.clone();\n this.samples = source.samples;\n return this;\n }\n dispose() {\n this.dispatchEvent({ type: "dispose" });\n }\n }\n class WebGLRenderTarget extends RenderTarget {\n constructor(width = 1, height = 1, options = {}) {\n super(width, height, options);\n this.isWebGLRenderTarget = true;\n }\n }\n class DataArrayTexture extends Texture {\n constructor(data = null, width = 1, height = 1, depth = 1) {\n super(null);\n this.isDataArrayTexture = true;\n this.image = { data, width, height, depth };\n this.magFilter = NearestFilter;\n this.minFilter = NearestFilter;\n this.wrapR = ClampToEdgeWrapping;\n this.generateMipmaps = false;\n this.flipY = false;\n this.unpackAlignment = 1;\n this.layerUpdates = /* @__PURE__ */ new Set();\n }\n addLayerUpdate(layerIndex) {\n this.layerUpdates.add(layerIndex);\n }\n clearLayerUpdates() {\n this.layerUpdates.clear();\n }\n }\n class WebGLArrayRenderTarget extends WebGLRenderTarget {\n constructor(width = 1, height = 1, depth = 1, options = {}) {\n super(width, height, options);\n this.isWebGLArrayRenderTarget = true;\n this.depth = depth;\n this.texture = new DataArrayTexture(null, width, height, depth);\n this.texture.isRenderTargetTexture = true;\n }\n }\n class Quaternion {\n constructor(x2 = 0, y = 0, z = 0, w = 1) {\n this.isQuaternion = true;\n this._x = x2;\n this._y = y;\n this._z = z;\n this._w = w;\n }\n static slerpFlat(dst, dstOffset, src0, srcOffset0, src1, srcOffset1, t) {\n let x0 = src0[srcOffset0 + 0], y0 = src0[srcOffset0 + 1], z0 = src0[srcOffset0 + 2], w0 = src0[srcOffset0 + 3];\n const x1 = src1[srcOffset1 + 0], y1 = src1[srcOffset1 + 1], z1 = src1[srcOffset1 + 2], w1 = src1[srcOffset1 + 3];\n if (t === 0) {\n dst[dstOffset + 0] = x0;\n dst[dstOffset + 1] = y0;\n dst[dstOffset + 2] = z0;\n dst[dstOffset + 3] = w0;\n return;\n }\n if (t === 1) {\n dst[dstOffset + 0] = x1;\n dst[dstOffset + 1] = y1;\n dst[dstOffset + 2] = z1;\n dst[dstOffset + 3] = w1;\n return;\n }\n if (w0 !== w1 || x0 !== x1 || y0 !== y1 || z0 !== z1) {\n let s = 1 - t;\n const cos = x0 * x1 + y0 * y1 + z0 * z1 + w0 * w1, dir = cos >= 0 ? 1 : -1, sqrSin = 1 - cos * cos;\n if (sqrSin > Number.EPSILON) {\n const sin = Math.sqrt(sqrSin), len = Math.atan2(sin, cos * dir);\n s = Math.sin(s * len) / sin;\n t = Math.sin(t * len) / sin;\n }\n const tDir = t * dir;\n x0 = x0 * s + x1 * tDir;\n y0 = y0 * s + y1 * tDir;\n z0 = z0 * s + z1 * tDir;\n w0 = w0 * s + w1 * tDir;\n if (s === 1 - t) {\n const f = 1 / Math.sqrt(x0 * x0 + y0 * y0 + z0 * z0 + w0 * w0);\n x0 *= f;\n y0 *= f;\n z0 *= f;\n w0 *= f;\n }\n }\n dst[dstOffset] = x0;\n dst[dstOffset + 1] = y0;\n dst[dstOffset + 2] = z0;\n dst[dstOffset + 3] = w0;\n }\n static multiplyQuaternionsFlat(dst, dstOffset, src0, srcOffset0, src1, srcOffset1) {\n const x0 = src0[srcOffset0];\n const y0 = src0[srcOffset0 + 1];\n const z0 = src0[srcOffset0 + 2];\n const w0 = src0[srcOffset0 + 3];\n const x1 = src1[srcOffset1];\n const y1 = src1[srcOffset1 + 1];\n const z1 = src1[srcOffset1 + 2];\n const w1 = src1[srcOffset1 + 3];\n dst[dstOffset] = x0 * w1 + w0 * x1 + y0 * z1 - z0 * y1;\n dst[dstOffset + 1] = y0 * w1 + w0 * y1 + z0 * x1 - x0 * z1;\n dst[dstOffset + 2] = z0 * w1 + w0 * z1 + x0 * y1 - y0 * x1;\n dst[dstOffset + 3] = w0 * w1 - x0 * x1 - y0 * y1 - z0 * z1;\n return dst;\n }\n get x() {\n return this._x;\n }\n set x(value) {\n this._x = value;\n this._onChangeCallback();\n }\n get y() {\n return this._y;\n }\n set y(value) {\n this._y = value;\n this._onChangeCallback();\n }\n get z() {\n return this._z;\n }\n set z(value) {\n this._z = value;\n this._onChangeCallback();\n }\n get w() {\n return this._w;\n }\n set w(value) {\n this._w = value;\n this._onChangeCallback();\n }\n set(x2, y, z, w) {\n this._x = x2;\n this._y = y;\n this._z = z;\n this._w = w;\n this._onChangeCallback();\n return this;\n }\n clone() {\n return new this.constructor(this._x, this._y, this._z, this._w);\n }\n copy(quaternion) {\n this._x = quaternion.x;\n this._y = quaternion.y;\n this._z = quaternion.z;\n this._w = quaternion.w;\n this._onChangeCallback();\n return this;\n }\n setFromEuler(euler, update = true) {\n const x2 = euler._x, y = euler._y, z = euler._z, order = euler._order;\n const cos = Math.cos;\n const sin = Math.sin;\n const c1 = cos(x2 / 2);\n const c2 = cos(y / 2);\n const c3 = cos(z / 2);\n const s1 = sin(x2 / 2);\n const s2 = sin(y / 2);\n const s3 = sin(z / 2);\n switch (order) {\n case "XYZ":\n this._x = s1 * c2 * c3 + c1 * s2 * s3;\n this._y = c1 * s2 * c3 - s1 * c2 * s3;\n this._z = c1 * c2 * s3 + s1 * s2 * c3;\n this._w = c1 * c2 * c3 - s1 * s2 * s3;\n break;\n case "YXZ":\n this._x = s1 * c2 * c3 + c1 * s2 * s3;\n this._y = c1 * s2 * c3 - s1 * c2 * s3;\n this._z = c1 * c2 * s3 - s1 * s2 * c3;\n this._w = c1 * c2 * c3 + s1 * s2 * s3;\n break;\n case "ZXY":\n this._x = s1 * c2 * c3 - c1 * s2 * s3;\n this._y = c1 * s2 * c3 + s1 * c2 * s3;\n this._z = c1 * c2 * s3 + s1 * s2 * c3;\n this._w = c1 * c2 * c3 - s1 * s2 * s3;\n break;\n case "ZYX":\n this._x = s1 * c2 * c3 - c1 * s2 * s3;\n this._y = c1 * s2 * c3 + s1 * c2 * s3;\n this._z = c1 * c2 * s3 - s1 * s2 * c3;\n this._w = c1 * c2 * c3 + s1 * s2 * s3;\n break;\n case "YZX":\n this._x = s1 * c2 * c3 + c1 * s2 * s3;\n this._y = c1 * s2 * c3 + s1 * c2 * s3;\n this._z = c1 * c2 * s3 - s1 * s2 * c3;\n this._w = c1 * c2 * c3 - s1 * s2 * s3;\n break;\n case "XZY":\n this._x = s1 * c2 * c3 - c1 * s2 * s3;\n this._y = c1 * s2 * c3 - s1 * c2 * s3;\n this._z = c1 * c2 * s3 + s1 * s2 * c3;\n this._w = c1 * c2 * c3 + s1 * s2 * s3;\n break;\n default:\n console.warn("THREE.Quaternion: .setFromEuler() encountered an unknown order: " + order);\n }\n if (update === true) this._onChangeCallback();\n return this;\n }\n setFromAxisAngle(axis, angle) {\n const halfAngle = angle / 2, s = Math.sin(halfAngle);\n this._x = axis.x * s;\n this._y = axis.y * s;\n this._z = axis.z * s;\n this._w = Math.cos(halfAngle);\n this._onChangeCallback();\n return this;\n }\n setFromRotationMatrix(m) {\n const te = m.elements, m11 = te[0], m12 = te[4], m13 = te[8], m21 = te[1], m22 = te[5], m23 = te[9], m31 = te[2], m32 = te[6], m33 = te[10], trace = m11 + m22 + m33;\n if (trace > 0) {\n const s = 0.5 / Math.sqrt(trace + 1);\n this._w = 0.25 / s;\n this._x = (m32 - m23) * s;\n this._y = (m13 - m31) * s;\n this._z = (m21 - m12) * s;\n } else if (m11 > m22 && m11 > m33) {\n const s = 2 * Math.sqrt(1 + m11 - m22 - m33);\n this._w = (m32 - m23) / s;\n this._x = 0.25 * s;\n this._y = (m12 + m21) / s;\n this._z = (m13 + m31) / s;\n } else if (m22 > m33) {\n const s = 2 * Math.sqrt(1 + m22 - m11 - m33);\n this._w = (m13 - m31) / s;\n this._x = (m12 + m21) / s;\n this._y = 0.25 * s;\n this._z = (m23 + m32) / s;\n } else {\n const s = 2 * Math.sqrt(1 + m33 - m11 - m22);\n this._w = (m21 - m12) / s;\n this._x = (m13 + m31) / s;\n this._y = (m23 + m32) / s;\n this._z = 0.25 * s;\n }\n this._onChangeCallback();\n return this;\n }\n setFromUnitVectors(vFrom, vTo) {\n let r = vFrom.dot(vTo) + 1;\n if (r < Number.EPSILON) {\n r = 0;\n if (Math.abs(vFrom.x) > Math.abs(vFrom.z)) {\n this._x = -vFrom.y;\n this._y = vFrom.x;\n this._z = 0;\n this._w = r;\n } else {\n this._x = 0;\n this._y = -vFrom.z;\n this._z = vFrom.y;\n this._w = r;\n }\n } else {\n this._x = vFrom.y * vTo.z - vFrom.z * vTo.y;\n this._y = vFrom.z * vTo.x - vFrom.x * vTo.z;\n this._z = vFrom.x * vTo.y - vFrom.y * vTo.x;\n this._w = r;\n }\n return this.normalize();\n }\n angleTo(q) {\n return 2 * Math.acos(Math.abs(clamp(this.dot(q), -1, 1)));\n }\n rotateTowards(q, step) {\n const angle = this.angleTo(q);\n if (angle === 0) return this;\n const t = Math.min(1, step / angle);\n this.slerp(q, t);\n return this;\n }\n identity() {\n return this.set(0, 0, 0, 1);\n }\n invert() {\n return this.conjugate();\n }\n conjugate() {\n this._x *= -1;\n this._y *= -1;\n this._z *= -1;\n this._onChangeCallback();\n return this;\n }\n dot(v) {\n return this._x * v._x + this._y * v._y + this._z * v._z + this._w * v._w;\n }\n lengthSq() {\n return this._x * this._x + this._y * this._y + this._z * this._z + this._w * this._w;\n }\n length() {\n return Math.sqrt(this._x * this._x + this._y * this._y + this._z * this._z + this._w * this._w);\n }\n normalize() {\n let l = this.length();\n if (l === 0) {\n this._x = 0;\n this._y = 0;\n this._z = 0;\n this._w = 1;\n } else {\n l = 1 / l;\n this._x = this._x * l;\n this._y = this._y * l;\n this._z = this._z * l;\n this._w = this._w * l;\n }\n this._onChangeCallback();\n return this;\n }\n multiply(q) {\n return this.multiplyQuaternions(this, q);\n }\n premultiply(q) {\n return this.multiplyQuaternions(q, this);\n }\n multiplyQuaternions(a, b) {\n const qax = a._x, qay = a._y, qaz = a._z, qaw = a._w;\n const qbx = b._x, qby = b._y, qbz = b._z, qbw = b._w;\n this._x = qax * qbw + qaw * qbx + qay * qbz - qaz * qby;\n this._y = qay * qbw + qaw * qby + qaz * qbx - qax * qbz;\n this._z = qaz * qbw + qaw * qbz + qax * qby - qay * qbx;\n this._w = qaw * qbw - qax * qbx - qay * qby - qaz * qbz;\n this._onChangeCallback();\n return this;\n }\n slerp(qb, t) {\n if (t === 0) return this;\n if (t === 1) return this.copy(qb);\n const x2 = this._x, y = this._y, z = this._z, w = this._w;\n let cosHalfTheta = w * qb._w + x2 * qb._x + y * qb._y + z * qb._z;\n if (cosHalfTheta < 0) {\n this._w = -qb._w;\n this._x = -qb._x;\n this._y = -qb._y;\n this._z = -qb._z;\n cosHalfTheta = -cosHalfTheta;\n } else {\n this.copy(qb);\n }\n if (cosHalfTheta >= 1) {\n this._w = w;\n this._x = x2;\n this._y = y;\n this._z = z;\n return this;\n }\n const sqrSinHalfTheta = 1 - cosHalfTheta * cosHalfTheta;\n if (sqrSinHalfTheta <= Number.EPSILON) {\n const s = 1 - t;\n this._w = s * w + t * this._w;\n this._x = s * x2 + t * this._x;\n this._y = s * y + t * this._y;\n this._z = s * z + t * this._z;\n this.normalize();\n return this;\n }\n const sinHalfTheta = Math.sqrt(sqrSinHalfTheta);\n const halfTheta = Math.atan2(sinHalfTheta, cosHalfTheta);\n const ratioA = Math.sin((1 - t) * halfTheta) / sinHalfTheta, ratioB = Math.sin(t * halfTheta) / sinHalfTheta;\n this._w = w * ratioA + this._w * ratioB;\n this._x = x2 * ratioA + this._x * ratioB;\n this._y = y * ratioA + this._y * ratioB;\n this._z = z * ratioA + this._z * ratioB;\n this._onChangeCallback();\n return this;\n }\n slerpQuaternions(qa, qb, t) {\n return this.copy(qa).slerp(qb, t);\n }\n random() {\n const theta1 = 2 * Math.PI * Math.random();\n const theta2 = 2 * Math.PI * Math.random();\n const x0 = Math.random();\n const r1 = Math.sqrt(1 - x0);\n const r2 = Math.sqrt(x0);\n return this.set(\n r1 * Math.sin(theta1),\n r1 * Math.cos(theta1),\n r2 * Math.sin(theta2),\n r2 * Math.cos(theta2)\n );\n }\n equals(quaternion) {\n return quaternion._x === this._x && quaternion._y === this._y && quaternion._z === this._z && quaternion._w === this._w;\n }\n fromArray(array, offset = 0) {\n this._x = array[offset];\n this._y = array[offset + 1];\n this._z = array[offset + 2];\n this._w = array[offset + 3];\n this._onChangeCallback();\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this._x;\n array[offset + 1] = this._y;\n array[offset + 2] = this._z;\n array[offset + 3] = this._w;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this._x = attribute.getX(index);\n this._y = attribute.getY(index);\n this._z = attribute.getZ(index);\n this._w = attribute.getW(index);\n this._onChangeCallback();\n return this;\n }\n toJSON() {\n return this.toArray();\n }\n _onChange(callback) {\n this._onChangeCallback = callback;\n return this;\n }\n _onChangeCallback() {\n }\n *[Symbol.iterator]() {\n yield this._x;\n yield this._y;\n yield this._z;\n yield this._w;\n }\n }\n class Vector3 {\n constructor(x2 = 0, y = 0, z = 0) {\n Vector3.prototype.isVector3 = true;\n this.x = x2;\n this.y = y;\n this.z = z;\n }\n set(x2, y, z) {\n if (z === void 0) z = this.z;\n this.x = x2;\n this.y = y;\n this.z = z;\n return this;\n }\n setScalar(scalar) {\n this.x = scalar;\n this.y = scalar;\n this.z = scalar;\n return this;\n }\n setX(x2) {\n this.x = x2;\n return this;\n }\n setY(y) {\n this.y = y;\n return this;\n }\n setZ(z) {\n this.z = z;\n return this;\n }\n setComponent(index, value) {\n switch (index) {\n case 0:\n this.x = value;\n break;\n case 1:\n this.y = value;\n break;\n case 2:\n this.z = value;\n break;\n default:\n throw new Error("index is out of range: " + index);\n }\n return this;\n }\n getComponent(index) {\n switch (index) {\n case 0:\n return this.x;\n case 1:\n return this.y;\n case 2:\n return this.z;\n default:\n throw new Error("index is out of range: " + index);\n }\n }\n clone() {\n return new this.constructor(this.x, this.y, this.z);\n }\n copy(v) {\n this.x = v.x;\n this.y = v.y;\n this.z = v.z;\n return this;\n }\n add(v) {\n this.x += v.x;\n this.y += v.y;\n this.z += v.z;\n return this;\n }\n addScalar(s) {\n this.x += s;\n this.y += s;\n this.z += s;\n return this;\n }\n addVectors(a, b) {\n this.x = a.x + b.x;\n this.y = a.y + b.y;\n this.z = a.z + b.z;\n return this;\n }\n addScaledVector(v, s) {\n this.x += v.x * s;\n this.y += v.y * s;\n this.z += v.z * s;\n return this;\n }\n sub(v) {\n this.x -= v.x;\n this.y -= v.y;\n this.z -= v.z;\n return this;\n }\n subScalar(s) {\n this.x -= s;\n this.y -= s;\n this.z -= s;\n return this;\n }\n subVectors(a, b) {\n this.x = a.x - b.x;\n this.y = a.y - b.y;\n this.z = a.z - b.z;\n return this;\n }\n multiply(v) {\n this.x *= v.x;\n this.y *= v.y;\n this.z *= v.z;\n return this;\n }\n multiplyScalar(scalar) {\n this.x *= scalar;\n this.y *= scalar;\n this.z *= scalar;\n return this;\n }\n multiplyVectors(a, b) {\n this.x = a.x * b.x;\n this.y = a.y * b.y;\n this.z = a.z * b.z;\n return this;\n }\n applyEuler(euler) {\n return this.applyQuaternion(_quaternion$4.setFromEuler(euler));\n }\n applyAxisAngle(axis, angle) {\n return this.applyQuaternion(_quaternion$4.setFromAxisAngle(axis, angle));\n }\n applyMatrix3(m) {\n const x2 = this.x, y = this.y, z = this.z;\n const e = m.elements;\n this.x = e[0] * x2 + e[3] * y + e[6] * z;\n this.y = e[1] * x2 + e[4] * y + e[7] * z;\n this.z = e[2] * x2 + e[5] * y + e[8] * z;\n return this;\n }\n applyNormalMatrix(m) {\n return this.applyMatrix3(m).normalize();\n }\n applyMatrix4(m) {\n const x2 = this.x, y = this.y, z = this.z;\n const e = m.elements;\n const w = 1 / (e[3] * x2 + e[7] * y + e[11] * z + e[15]);\n this.x = (e[0] * x2 + e[4] * y + e[8] * z + e[12]) * w;\n this.y = (e[1] * x2 + e[5] * y + e[9] * z + e[13]) * w;\n this.z = (e[2] * x2 + e[6] * y + e[10] * z + e[14]) * w;\n return this;\n }\n applyQuaternion(q) {\n const vx = this.x, vy = this.y, vz = this.z;\n const qx = q.x, qy = q.y, qz = q.z, qw = q.w;\n const tx = 2 * (qy * vz - qz * vy);\n const ty = 2 * (qz * vx - qx * vz);\n const tz = 2 * (qx * vy - qy * vx);\n this.x = vx + qw * tx + qy * tz - qz * ty;\n this.y = vy + qw * ty + qz * tx - qx * tz;\n this.z = vz + qw * tz + qx * ty - qy * tx;\n return this;\n }\n project(camera) {\n return this.applyMatrix4(camera.matrixWorldInverse).applyMatrix4(camera.projectionMatrix);\n }\n unproject(camera) {\n return this.applyMatrix4(camera.projectionMatrixInverse).applyMatrix4(camera.matrixWorld);\n }\n transformDirection(m) {\n const x2 = this.x, y = this.y, z = this.z;\n const e = m.elements;\n this.x = e[0] * x2 + e[4] * y + e[8] * z;\n this.y = e[1] * x2 + e[5] * y + e[9] * z;\n this.z = e[2] * x2 + e[6] * y + e[10] * z;\n return this.normalize();\n }\n divide(v) {\n this.x /= v.x;\n this.y /= v.y;\n this.z /= v.z;\n return this;\n }\n divideScalar(scalar) {\n return this.multiplyScalar(1 / scalar);\n }\n min(v) {\n this.x = Math.min(this.x, v.x);\n this.y = Math.min(this.y, v.y);\n this.z = Math.min(this.z, v.z);\n return this;\n }\n max(v) {\n this.x = Math.max(this.x, v.x);\n this.y = Math.max(this.y, v.y);\n this.z = Math.max(this.z, v.z);\n return this;\n }\n clamp(min, max2) {\n this.x = clamp(this.x, min.x, max2.x);\n this.y = clamp(this.y, min.y, max2.y);\n this.z = clamp(this.z, min.z, max2.z);\n return this;\n }\n clampScalar(minVal, maxVal) {\n this.x = clamp(this.x, minVal, maxVal);\n this.y = clamp(this.y, minVal, maxVal);\n this.z = clamp(this.z, minVal, maxVal);\n return this;\n }\n clampLength(min, max2) {\n const length = this.length();\n return this.divideScalar(length || 1).multiplyScalar(clamp(length, min, max2));\n }\n floor() {\n this.x = Math.floor(this.x);\n this.y = Math.floor(this.y);\n this.z = Math.floor(this.z);\n return this;\n }\n ceil() {\n this.x = Math.ceil(this.x);\n this.y = Math.ceil(this.y);\n this.z = Math.ceil(this.z);\n return this;\n }\n round() {\n this.x = Math.round(this.x);\n this.y = Math.round(this.y);\n this.z = Math.round(this.z);\n return this;\n }\n roundToZero() {\n this.x = Math.trunc(this.x);\n this.y = Math.trunc(this.y);\n this.z = Math.trunc(this.z);\n return this;\n }\n negate() {\n this.x = -this.x;\n this.y = -this.y;\n this.z = -this.z;\n return this;\n }\n dot(v) {\n return this.x * v.x + this.y * v.y + this.z * v.z;\n }\n // TODO lengthSquared?\n lengthSq() {\n return this.x * this.x + this.y * this.y + this.z * this.z;\n }\n length() {\n return Math.sqrt(this.x * this.x + this.y * this.y + this.z * this.z);\n }\n manhattanLength() {\n return Math.abs(this.x) + Math.abs(this.y) + Math.abs(this.z);\n }\n normalize() {\n return this.divideScalar(this.length() || 1);\n }\n setLength(length) {\n return this.normalize().multiplyScalar(length);\n }\n lerp(v, alpha) {\n this.x += (v.x - this.x) * alpha;\n this.y += (v.y - this.y) * alpha;\n this.z += (v.z - this.z) * alpha;\n return this;\n }\n lerpVectors(v1, v2, alpha) {\n this.x = v1.x + (v2.x - v1.x) * alpha;\n this.y = v1.y + (v2.y - v1.y) * alpha;\n this.z = v1.z + (v2.z - v1.z) * alpha;\n return this;\n }\n cross(v) {\n return this.crossVectors(this, v);\n }\n crossVectors(a, b) {\n const ax = a.x, ay = a.y, az = a.z;\n const bx = b.x, by = b.y, bz = b.z;\n this.x = ay * bz - az * by;\n this.y = az * bx - ax * bz;\n this.z = ax * by - ay * bx;\n return this;\n }\n projectOnVector(v) {\n const denominator = v.lengthSq();\n if (denominator === 0) return this.set(0, 0, 0);\n const scalar = v.dot(this) / denominator;\n return this.copy(v).multiplyScalar(scalar);\n }\n projectOnPlane(planeNormal) {\n _vector$c.copy(this).projectOnVector(planeNormal);\n return this.sub(_vector$c);\n }\n reflect(normal) {\n return this.sub(_vector$c.copy(normal).multiplyScalar(2 * this.dot(normal)));\n }\n angleTo(v) {\n const denominator = Math.sqrt(this.lengthSq() * v.lengthSq());\n if (denominator === 0) return Math.PI / 2;\n const theta = this.dot(v) / denominator;\n return Math.acos(clamp(theta, -1, 1));\n }\n distanceTo(v) {\n return Math.sqrt(this.distanceToSquared(v));\n }\n distanceToSquared(v) {\n const dx = this.x - v.x, dy = this.y - v.y, dz = this.z - v.z;\n return dx * dx + dy * dy + dz * dz;\n }\n manhattanDistanceTo(v) {\n return Math.abs(this.x - v.x) + Math.abs(this.y - v.y) + Math.abs(this.z - v.z);\n }\n setFromSpherical(s) {\n return this.setFromSphericalCoords(s.radius, s.phi, s.theta);\n }\n setFromSphericalCoords(radius, phi, theta) {\n const sinPhiRadius = Math.sin(phi) * radius;\n this.x = sinPhiRadius * Math.sin(theta);\n this.y = Math.cos(phi) * radius;\n this.z = sinPhiRadius * Math.cos(theta);\n return this;\n }\n setFromCylindrical(c) {\n return this.setFromCylindricalCoords(c.radius, c.theta, c.y);\n }\n setFromCylindricalCoords(radius, theta, y) {\n this.x = radius * Math.sin(theta);\n this.y = y;\n this.z = radius * Math.cos(theta);\n return this;\n }\n setFromMatrixPosition(m) {\n const e = m.elements;\n this.x = e[12];\n this.y = e[13];\n this.z = e[14];\n return this;\n }\n setFromMatrixScale(m) {\n const sx = this.setFromMatrixColumn(m, 0).length();\n const sy = this.setFromMatrixColumn(m, 1).length();\n const sz = this.setFromMatrixColumn(m, 2).length();\n this.x = sx;\n this.y = sy;\n this.z = sz;\n return this;\n }\n setFromMatrixColumn(m, index) {\n return this.fromArray(m.elements, index * 4);\n }\n setFromMatrix3Column(m, index) {\n return this.fromArray(m.elements, index * 3);\n }\n setFromEuler(e) {\n this.x = e._x;\n this.y = e._y;\n this.z = e._z;\n return this;\n }\n setFromColor(c) {\n this.x = c.r;\n this.y = c.g;\n this.z = c.b;\n return this;\n }\n equals(v) {\n return v.x === this.x && v.y === this.y && v.z === this.z;\n }\n fromArray(array, offset = 0) {\n this.x = array[offset];\n this.y = array[offset + 1];\n this.z = array[offset + 2];\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this.x;\n array[offset + 1] = this.y;\n array[offset + 2] = this.z;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this.x = attribute.getX(index);\n this.y = attribute.getY(index);\n this.z = attribute.getZ(index);\n return this;\n }\n random() {\n this.x = Math.random();\n this.y = Math.random();\n this.z = Math.random();\n return this;\n }\n randomDirection() {\n const theta = Math.random() * Math.PI * 2;\n const u = Math.random() * 2 - 1;\n const c = Math.sqrt(1 - u * u);\n this.x = c * Math.cos(theta);\n this.y = u;\n this.z = c * Math.sin(theta);\n return this;\n }\n *[Symbol.iterator]() {\n yield this.x;\n yield this.y;\n yield this.z;\n }\n }\n const _vector$c = /* @__PURE__ */ new Vector3();\n const _quaternion$4 = /* @__PURE__ */ new Quaternion();\n class Box3 {\n constructor(min = new Vector3(Infinity, Infinity, Infinity), max2 = new Vector3(-Infinity, -Infinity, -Infinity)) {\n this.isBox3 = true;\n this.min = min;\n this.max = max2;\n }\n set(min, max2) {\n this.min.copy(min);\n this.max.copy(max2);\n return this;\n }\n setFromArray(array) {\n this.makeEmpty();\n for (let i2 = 0, il = array.length; i2 < il; i2 += 3) {\n this.expandByPoint(_vector$b.fromArray(array, i2));\n }\n return this;\n }\n setFromBufferAttribute(attribute) {\n this.makeEmpty();\n for (let i2 = 0, il = attribute.count; i2 < il; i2++) {\n this.expandByPoint(_vector$b.fromBufferAttribute(attribute, i2));\n }\n return this;\n }\n setFromPoints(points) {\n this.makeEmpty();\n for (let i2 = 0, il = points.length; i2 < il; i2++) {\n this.expandByPoint(points[i2]);\n }\n return this;\n }\n setFromCenterAndSize(center, size) {\n const halfSize = _vector$b.copy(size).multiplyScalar(0.5);\n this.min.copy(center).sub(halfSize);\n this.max.copy(center).add(halfSize);\n return this;\n }\n setFromObject(object, precise = false) {\n this.makeEmpty();\n return this.expandByObject(object, precise);\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(box) {\n this.min.copy(box.min);\n this.max.copy(box.max);\n return this;\n }\n makeEmpty() {\n this.min.x = this.min.y = this.min.z = Infinity;\n this.max.x = this.max.y = this.max.z = -Infinity;\n return this;\n }\n isEmpty() {\n return this.max.x < this.min.x || this.max.y < this.min.y || this.max.z < this.min.z;\n }\n getCenter(target) {\n return this.isEmpty() ? target.set(0, 0, 0) : target.addVectors(this.min, this.max).multiplyScalar(0.5);\n }\n getSize(target) {\n return this.isEmpty() ? target.set(0, 0, 0) : target.subVectors(this.max, this.min);\n }\n expandByPoint(point) {\n this.min.min(point);\n this.max.max(point);\n return this;\n }\n expandByVector(vector) {\n this.min.sub(vector);\n this.max.add(vector);\n return this;\n }\n expandByScalar(scalar) {\n this.min.addScalar(-scalar);\n this.max.addScalar(scalar);\n return this;\n }\n expandByObject(object, precise = false) {\n object.updateWorldMatrix(false, false);\n const geometry = object.geometry;\n if (geometry !== void 0) {\n const positionAttribute = geometry.getAttribute("position");\n if (precise === true && positionAttribute !== void 0 && object.isInstancedMesh !== true) {\n for (let i2 = 0, l = positionAttribute.count; i2 < l; i2++) {\n if (object.isMesh === true) {\n object.getVertexPosition(i2, _vector$b);\n } else {\n _vector$b.fromBufferAttribute(positionAttribute, i2);\n }\n _vector$b.applyMatrix4(object.matrixWorld);\n this.expandByPoint(_vector$b);\n }\n } else {\n if (object.boundingBox !== void 0) {\n if (object.boundingBox === null) {\n object.computeBoundingBox();\n }\n _box$4.copy(object.boundingBox);\n } else {\n if (geometry.boundingBox === null) {\n geometry.computeBoundingBox();\n }\n _box$4.copy(geometry.boundingBox);\n }\n _box$4.applyMatrix4(object.matrixWorld);\n this.union(_box$4);\n }\n }\n const children = object.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n this.expandByObject(children[i2], precise);\n }\n return this;\n }\n containsPoint(point) {\n return point.x >= this.min.x && point.x <= this.max.x && point.y >= this.min.y && point.y <= this.max.y && point.z >= this.min.z && point.z <= this.max.z;\n }\n containsBox(box) {\n return this.min.x <= box.min.x && box.max.x <= this.max.x && this.min.y <= box.min.y && box.max.y <= this.max.y && this.min.z <= box.min.z && box.max.z <= this.max.z;\n }\n getParameter(point, target) {\n return target.set(\n (point.x - this.min.x) / (this.max.x - this.min.x),\n (point.y - this.min.y) / (this.max.y - this.min.y),\n (point.z - this.min.z) / (this.max.z - this.min.z)\n );\n }\n intersectsBox(box) {\n return box.max.x >= this.min.x && box.min.x <= this.max.x && box.max.y >= this.min.y && box.min.y <= this.max.y && box.max.z >= this.min.z && box.min.z <= this.max.z;\n }\n intersectsSphere(sphere) {\n this.clampPoint(sphere.center, _vector$b);\n return _vector$b.distanceToSquared(sphere.center) <= sphere.radius * sphere.radius;\n }\n intersectsPlane(plane) {\n let min, max2;\n if (plane.normal.x > 0) {\n min = plane.normal.x * this.min.x;\n max2 = plane.normal.x * this.max.x;\n } else {\n min = plane.normal.x * this.max.x;\n max2 = plane.normal.x * this.min.x;\n }\n if (plane.normal.y > 0) {\n min += plane.normal.y * this.min.y;\n max2 += plane.normal.y * this.max.y;\n } else {\n min += plane.normal.y * this.max.y;\n max2 += plane.normal.y * this.min.y;\n }\n if (plane.normal.z > 0) {\n min += plane.normal.z * this.min.z;\n max2 += plane.normal.z * this.max.z;\n } else {\n min += plane.normal.z * this.max.z;\n max2 += plane.normal.z * this.min.z;\n }\n return min <= -plane.constant && max2 >= -plane.constant;\n }\n intersectsTriangle(triangle) {\n if (this.isEmpty()) {\n return false;\n }\n this.getCenter(_center);\n _extents.subVectors(this.max, _center);\n _v0$2.subVectors(triangle.a, _center);\n _v1$7.subVectors(triangle.b, _center);\n _v2$4.subVectors(triangle.c, _center);\n _f0.subVectors(_v1$7, _v0$2);\n _f1.subVectors(_v2$4, _v1$7);\n _f2.subVectors(_v0$2, _v2$4);\n let axes = [\n 0,\n -_f0.z,\n _f0.y,\n 0,\n -_f1.z,\n _f1.y,\n 0,\n -_f2.z,\n _f2.y,\n _f0.z,\n 0,\n -_f0.x,\n _f1.z,\n 0,\n -_f1.x,\n _f2.z,\n 0,\n -_f2.x,\n -_f0.y,\n _f0.x,\n 0,\n -_f1.y,\n _f1.x,\n 0,\n -_f2.y,\n _f2.x,\n 0\n ];\n if (!satForAxes(axes, _v0$2, _v1$7, _v2$4, _extents)) {\n return false;\n }\n axes = [1, 0, 0, 0, 1, 0, 0, 0, 1];\n if (!satForAxes(axes, _v0$2, _v1$7, _v2$4, _extents)) {\n return false;\n }\n _triangleNormal.crossVectors(_f0, _f1);\n axes = [_triangleNormal.x, _triangleNormal.y, _triangleNormal.z];\n return satForAxes(axes, _v0$2, _v1$7, _v2$4, _extents);\n }\n clampPoint(point, target) {\n return target.copy(point).clamp(this.min, this.max);\n }\n distanceToPoint(point) {\n return this.clampPoint(point, _vector$b).distanceTo(point);\n }\n getBoundingSphere(target) {\n if (this.isEmpty()) {\n target.makeEmpty();\n } else {\n this.getCenter(target.center);\n target.radius = this.getSize(_vector$b).length() * 0.5;\n }\n return target;\n }\n intersect(box) {\n this.min.max(box.min);\n this.max.min(box.max);\n if (this.isEmpty()) this.makeEmpty();\n return this;\n }\n union(box) {\n this.min.min(box.min);\n this.max.max(box.max);\n return this;\n }\n applyMatrix4(matrix) {\n if (this.isEmpty()) return this;\n _points[0].set(this.min.x, this.min.y, this.min.z).applyMatrix4(matrix);\n _points[1].set(this.min.x, this.min.y, this.max.z).applyMatrix4(matrix);\n _points[2].set(this.min.x, this.max.y, this.min.z).applyMatrix4(matrix);\n _points[3].set(this.min.x, this.max.y, this.max.z).applyMatrix4(matrix);\n _points[4].set(this.max.x, this.min.y, this.min.z).applyMatrix4(matrix);\n _points[5].set(this.max.x, this.min.y, this.max.z).applyMatrix4(matrix);\n _points[6].set(this.max.x, this.max.y, this.min.z).applyMatrix4(matrix);\n _points[7].set(this.max.x, this.max.y, this.max.z).applyMatrix4(matrix);\n this.setFromPoints(_points);\n return this;\n }\n translate(offset) {\n this.min.add(offset);\n this.max.add(offset);\n return this;\n }\n equals(box) {\n return box.min.equals(this.min) && box.max.equals(this.max);\n }\n }\n const _points = [\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3()\n ];\n const _vector$b = /* @__PURE__ */ new Vector3();\n const _box$4 = /* @__PURE__ */ new Box3();\n const _v0$2 = /* @__PURE__ */ new Vector3();\n const _v1$7 = /* @__PURE__ */ new Vector3();\n const _v2$4 = /* @__PURE__ */ new Vector3();\n const _f0 = /* @__PURE__ */ new Vector3();\n const _f1 = /* @__PURE__ */ new Vector3();\n const _f2 = /* @__PURE__ */ new Vector3();\n const _center = /* @__PURE__ */ new Vector3();\n const _extents = /* @__PURE__ */ new Vector3();\n const _triangleNormal = /* @__PURE__ */ new Vector3();\n const _testAxis = /* @__PURE__ */ new Vector3();\n function satForAxes(axes, v0, v1, v2, extents) {\n for (let i2 = 0, j = axes.length - 3; i2 <= j; i2 += 3) {\n _testAxis.fromArray(axes, i2);\n const r = extents.x * Math.abs(_testAxis.x) + extents.y * Math.abs(_testAxis.y) + extents.z * Math.abs(_testAxis.z);\n const p0 = v0.dot(_testAxis);\n const p1 = v1.dot(_testAxis);\n const p2 = v2.dot(_testAxis);\n if (Math.max(-Math.max(p0, p1, p2), Math.min(p0, p1, p2)) > r) {\n return false;\n }\n }\n return true;\n }\n const _box$3 = /* @__PURE__ */ new Box3();\n const _v1$6 = /* @__PURE__ */ new Vector3();\n const _v2$3 = /* @__PURE__ */ new Vector3();\n class Sphere {\n constructor(center = new Vector3(), radius = -1) {\n this.isSphere = true;\n this.center = center;\n this.radius = radius;\n }\n set(center, radius) {\n this.center.copy(center);\n this.radius = radius;\n return this;\n }\n setFromPoints(points, optionalCenter) {\n const center = this.center;\n if (optionalCenter !== void 0) {\n center.copy(optionalCenter);\n } else {\n _box$3.setFromPoints(points).getCenter(center);\n }\n let maxRadiusSq = 0;\n for (let i2 = 0, il = points.length; i2 < il; i2++) {\n maxRadiusSq = Math.max(maxRadiusSq, center.distanceToSquared(points[i2]));\n }\n this.radius = Math.sqrt(maxRadiusSq);\n return this;\n }\n copy(sphere) {\n this.center.copy(sphere.center);\n this.radius = sphere.radius;\n return this;\n }\n isEmpty() {\n return this.radius < 0;\n }\n makeEmpty() {\n this.center.set(0, 0, 0);\n this.radius = -1;\n return this;\n }\n containsPoint(point) {\n return point.distanceToSquared(this.center) <= this.radius * this.radius;\n }\n distanceToPoint(point) {\n return point.distanceTo(this.center) - this.radius;\n }\n intersectsSphere(sphere) {\n const radiusSum = this.radius + sphere.radius;\n return sphere.center.distanceToSquared(this.center) <= radiusSum * radiusSum;\n }\n intersectsBox(box) {\n return box.intersectsSphere(this);\n }\n intersectsPlane(plane) {\n return Math.abs(plane.distanceToPoint(this.center)) <= this.radius;\n }\n clampPoint(point, target) {\n const deltaLengthSq = this.center.distanceToSquared(point);\n target.copy(point);\n if (deltaLengthSq > this.radius * this.radius) {\n target.sub(this.center).normalize();\n target.multiplyScalar(this.radius).add(this.center);\n }\n return target;\n }\n getBoundingBox(target) {\n if (this.isEmpty()) {\n target.makeEmpty();\n return target;\n }\n target.set(this.center, this.center);\n target.expandByScalar(this.radius);\n return target;\n }\n applyMatrix4(matrix) {\n this.center.applyMatrix4(matrix);\n this.radius = this.radius * matrix.getMaxScaleOnAxis();\n return this;\n }\n translate(offset) {\n this.center.add(offset);\n return this;\n }\n expandByPoint(point) {\n if (this.isEmpty()) {\n this.center.copy(point);\n this.radius = 0;\n return this;\n }\n _v1$6.subVectors(point, this.center);\n const lengthSq = _v1$6.lengthSq();\n if (lengthSq > this.radius * this.radius) {\n const length = Math.sqrt(lengthSq);\n const delta = (length - this.radius) * 0.5;\n this.center.addScaledVector(_v1$6, delta / length);\n this.radius += delta;\n }\n return this;\n }\n union(sphere) {\n if (sphere.isEmpty()) {\n return this;\n }\n if (this.isEmpty()) {\n this.copy(sphere);\n return this;\n }\n if (this.center.equals(sphere.center) === true) {\n this.radius = Math.max(this.radius, sphere.radius);\n } else {\n _v2$3.subVectors(sphere.center, this.center).setLength(sphere.radius);\n this.expandByPoint(_v1$6.copy(sphere.center).add(_v2$3));\n this.expandByPoint(_v1$6.copy(sphere.center).sub(_v2$3));\n }\n return this;\n }\n equals(sphere) {\n return sphere.center.equals(this.center) && sphere.radius === this.radius;\n }\n clone() {\n return new this.constructor().copy(this);\n }\n }\n const _vector$a = /* @__PURE__ */ new Vector3();\n const _segCenter = /* @__PURE__ */ new Vector3();\n const _segDir = /* @__PURE__ */ new Vector3();\n const _diff = /* @__PURE__ */ new Vector3();\n const _edge1 = /* @__PURE__ */ new Vector3();\n const _edge2 = /* @__PURE__ */ new Vector3();\n const _normal$1 = /* @__PURE__ */ new Vector3();\n class Ray {\n constructor(origin = new Vector3(), direction = new Vector3(0, 0, -1)) {\n this.origin = origin;\n this.direction = direction;\n }\n set(origin, direction) {\n this.origin.copy(origin);\n this.direction.copy(direction);\n return this;\n }\n copy(ray) {\n this.origin.copy(ray.origin);\n this.direction.copy(ray.direction);\n return this;\n }\n at(t, target) {\n return target.copy(this.origin).addScaledVector(this.direction, t);\n }\n lookAt(v) {\n this.direction.copy(v).sub(this.origin).normalize();\n return this;\n }\n recast(t) {\n this.origin.copy(this.at(t, _vector$a));\n return this;\n }\n closestPointToPoint(point, target) {\n target.subVectors(point, this.origin);\n const directionDistance = target.dot(this.direction);\n if (directionDistance < 0) {\n return target.copy(this.origin);\n }\n return target.copy(this.origin).addScaledVector(this.direction, directionDistance);\n }\n distanceToPoint(point) {\n return Math.sqrt(this.distanceSqToPoint(point));\n }\n distanceSqToPoint(point) {\n const directionDistance = _vector$a.subVectors(point, this.origin).dot(this.direction);\n if (directionDistance < 0) {\n return this.origin.distanceToSquared(point);\n }\n _vector$a.copy(this.origin).addScaledVector(this.direction, directionDistance);\n return _vector$a.distanceToSquared(point);\n }\n distanceSqToSegment(v0, v1, optionalPointOnRay, optionalPointOnSegment) {\n _segCenter.copy(v0).add(v1).multiplyScalar(0.5);\n _segDir.copy(v1).sub(v0).normalize();\n _diff.copy(this.origin).sub(_segCenter);\n const segExtent = v0.distanceTo(v1) * 0.5;\n const a01 = -this.direction.dot(_segDir);\n const b0 = _diff.dot(this.direction);\n const b1 = -_diff.dot(_segDir);\n const c = _diff.lengthSq();\n const det = Math.abs(1 - a01 * a01);\n let s0, s1, sqrDist, extDet;\n if (det > 0) {\n s0 = a01 * b1 - b0;\n s1 = a01 * b0 - b1;\n extDet = segExtent * det;\n if (s0 >= 0) {\n if (s1 >= -extDet) {\n if (s1 <= extDet) {\n const invDet = 1 / det;\n s0 *= invDet;\n s1 *= invDet;\n sqrDist = s0 * (s0 + a01 * s1 + 2 * b0) + s1 * (a01 * s0 + s1 + 2 * b1) + c;\n } else {\n s1 = segExtent;\n s0 = Math.max(0, -(a01 * s1 + b0));\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n }\n } else {\n s1 = -segExtent;\n s0 = Math.max(0, -(a01 * s1 + b0));\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n }\n } else {\n if (s1 <= -extDet) {\n s0 = Math.max(0, -(-a01 * segExtent + b0));\n s1 = s0 > 0 ? -segExtent : Math.min(Math.max(-segExtent, -b1), segExtent);\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n } else if (s1 <= extDet) {\n s0 = 0;\n s1 = Math.min(Math.max(-segExtent, -b1), segExtent);\n sqrDist = s1 * (s1 + 2 * b1) + c;\n } else {\n s0 = Math.max(0, -(a01 * segExtent + b0));\n s1 = s0 > 0 ? segExtent : Math.min(Math.max(-segExtent, -b1), segExtent);\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n }\n }\n } else {\n s1 = a01 > 0 ? -segExtent : segExtent;\n s0 = Math.max(0, -(a01 * s1 + b0));\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n }\n if (optionalPointOnRay) {\n optionalPointOnRay.copy(this.origin).addScaledVector(this.direction, s0);\n }\n if (optionalPointOnSegment) {\n optionalPointOnSegment.copy(_segCenter).addScaledVector(_segDir, s1);\n }\n return sqrDist;\n }\n intersectSphere(sphere, target) {\n _vector$a.subVectors(sphere.center, this.origin);\n const tca = _vector$a.dot(this.direction);\n const d2 = _vector$a.dot(_vector$a) - tca * tca;\n const radius2 = sphere.radius * sphere.radius;\n if (d2 > radius2) return null;\n const thc = Math.sqrt(radius2 - d2);\n const t0 = tca - thc;\n const t1 = tca + thc;\n if (t1 < 0) return null;\n if (t0 < 0) return this.at(t1, target);\n return this.at(t0, target);\n }\n intersectsSphere(sphere) {\n return this.distanceSqToPoint(sphere.center) <= sphere.radius * sphere.radius;\n }\n distanceToPlane(plane) {\n const denominator = plane.normal.dot(this.direction);\n if (denominator === 0) {\n if (plane.distanceToPoint(this.origin) === 0) {\n return 0;\n }\n return null;\n }\n const t = -(this.origin.dot(plane.normal) + plane.constant) / denominator;\n return t >= 0 ? t : null;\n }\n intersectPlane(plane, target) {\n const t = this.distanceToPlane(plane);\n if (t === null) {\n return null;\n }\n return this.at(t, target);\n }\n intersectsPlane(plane) {\n const distToPoint = plane.distanceToPoint(this.origin);\n if (distToPoint === 0) {\n return true;\n }\n const denominator = plane.normal.dot(this.direction);\n if (denominator * distToPoint < 0) {\n return true;\n }\n return false;\n }\n intersectBox(box, target) {\n let tmin, tmax, tymin, tymax, tzmin, tzmax;\n const invdirx = 1 / this.direction.x, invdiry = 1 / this.direction.y, invdirz = 1 / this.direction.z;\n const origin = this.origin;\n if (invdirx >= 0) {\n tmin = (box.min.x - origin.x) * invdirx;\n tmax = (box.max.x - origin.x) * invdirx;\n } else {\n tmin = (box.max.x - origin.x) * invdirx;\n tmax = (box.min.x - origin.x) * invdirx;\n }\n if (invdiry >= 0) {\n tymin = (box.min.y - origin.y) * invdiry;\n tymax = (box.max.y - origin.y) * invdiry;\n } else {\n tymin = (box.max.y - origin.y) * invdiry;\n tymax = (box.min.y - origin.y) * invdiry;\n }\n if (tmin > tymax || tymin > tmax) return null;\n if (tymin > tmin || isNaN(tmin)) tmin = tymin;\n if (tymax < tmax || isNaN(tmax)) tmax = tymax;\n if (invdirz >= 0) {\n tzmin = (box.min.z - origin.z) * invdirz;\n tzmax = (box.max.z - origin.z) * invdirz;\n } else {\n tzmin = (box.max.z - origin.z) * invdirz;\n tzmax = (box.min.z - origin.z) * invdirz;\n }\n if (tmin > tzmax || tzmin > tmax) return null;\n if (tzmin > tmin || tmin !== tmin) tmin = tzmin;\n if (tzmax < tmax || tmax !== tmax) tmax = tzmax;\n if (tmax < 0) return null;\n return this.at(tmin >= 0 ? tmin : tmax, target);\n }\n intersectsBox(box) {\n return this.intersectBox(box, _vector$a) !== null;\n }\n intersectTriangle(a, b, c, backfaceCulling, target) {\n _edge1.subVectors(b, a);\n _edge2.subVectors(c, a);\n _normal$1.crossVectors(_edge1, _edge2);\n let DdN = this.direction.dot(_normal$1);\n let sign;\n if (DdN > 0) {\n if (backfaceCulling) return null;\n sign = 1;\n } else if (DdN < 0) {\n sign = -1;\n DdN = -DdN;\n } else {\n return null;\n }\n _diff.subVectors(this.origin, a);\n const DdQxE2 = sign * this.direction.dot(_edge2.crossVectors(_diff, _edge2));\n if (DdQxE2 < 0) {\n return null;\n }\n const DdE1xQ = sign * this.direction.dot(_edge1.cross(_diff));\n if (DdE1xQ < 0) {\n return null;\n }\n if (DdQxE2 + DdE1xQ > DdN) {\n return null;\n }\n const QdN = -sign * _diff.dot(_normal$1);\n if (QdN < 0) {\n return null;\n }\n return this.at(QdN / DdN, target);\n }\n applyMatrix4(matrix4) {\n this.origin.applyMatrix4(matrix4);\n this.direction.transformDirection(matrix4);\n return this;\n }\n equals(ray) {\n return ray.origin.equals(this.origin) && ray.direction.equals(this.direction);\n }\n clone() {\n return new this.constructor().copy(this);\n }\n }\n class Matrix4 {\n constructor(n11, n12, n13, n14, n21, n22, n23, n24, n31, n32, n33, n34, n41, n42, n43, n44) {\n Matrix4.prototype.isMatrix4 = true;\n this.elements = [\n 1,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1\n ];\n if (n11 !== void 0) {\n this.set(n11, n12, n13, n14, n21, n22, n23, n24, n31, n32, n33, n34, n41, n42, n43, n44);\n }\n }\n set(n11, n12, n13, n14, n21, n22, n23, n24, n31, n32, n33, n34, n41, n42, n43, n44) {\n const te = this.elements;\n te[0] = n11;\n te[4] = n12;\n te[8] = n13;\n te[12] = n14;\n te[1] = n21;\n te[5] = n22;\n te[9] = n23;\n te[13] = n24;\n te[2] = n31;\n te[6] = n32;\n te[10] = n33;\n te[14] = n34;\n te[3] = n41;\n te[7] = n42;\n te[11] = n43;\n te[15] = n44;\n return this;\n }\n identity() {\n this.set(\n 1,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n clone() {\n return new Matrix4().fromArray(this.elements);\n }\n copy(m) {\n const te = this.elements;\n const me = m.elements;\n te[0] = me[0];\n te[1] = me[1];\n te[2] = me[2];\n te[3] = me[3];\n te[4] = me[4];\n te[5] = me[5];\n te[6] = me[6];\n te[7] = me[7];\n te[8] = me[8];\n te[9] = me[9];\n te[10] = me[10];\n te[11] = me[11];\n te[12] = me[12];\n te[13] = me[13];\n te[14] = me[14];\n te[15] = me[15];\n return this;\n }\n copyPosition(m) {\n const te = this.elements, me = m.elements;\n te[12] = me[12];\n te[13] = me[13];\n te[14] = me[14];\n return this;\n }\n setFromMatrix3(m) {\n const me = m.elements;\n this.set(\n me[0],\n me[3],\n me[6],\n 0,\n me[1],\n me[4],\n me[7],\n 0,\n me[2],\n me[5],\n me[8],\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n extractBasis(xAxis, yAxis, zAxis) {\n xAxis.setFromMatrixColumn(this, 0);\n yAxis.setFromMatrixColumn(this, 1);\n zAxis.setFromMatrixColumn(this, 2);\n return this;\n }\n makeBasis(xAxis, yAxis, zAxis) {\n this.set(\n xAxis.x,\n yAxis.x,\n zAxis.x,\n 0,\n xAxis.y,\n yAxis.y,\n zAxis.y,\n 0,\n xAxis.z,\n yAxis.z,\n zAxis.z,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n extractRotation(m) {\n const te = this.elements;\n const me = m.elements;\n const scaleX = 1 / _v1$5.setFromMatrixColumn(m, 0).length();\n const scaleY = 1 / _v1$5.setFromMatrixColumn(m, 1).length();\n const scaleZ = 1 / _v1$5.setFromMatrixColumn(m, 2).length();\n te[0] = me[0] * scaleX;\n te[1] = me[1] * scaleX;\n te[2] = me[2] * scaleX;\n te[3] = 0;\n te[4] = me[4] * scaleY;\n te[5] = me[5] * scaleY;\n te[6] = me[6] * scaleY;\n te[7] = 0;\n te[8] = me[8] * scaleZ;\n te[9] = me[9] * scaleZ;\n te[10] = me[10] * scaleZ;\n te[11] = 0;\n te[12] = 0;\n te[13] = 0;\n te[14] = 0;\n te[15] = 1;\n return this;\n }\n makeRotationFromEuler(euler) {\n const te = this.elements;\n const x2 = euler.x, y = euler.y, z = euler.z;\n const a = Math.cos(x2), b = Math.sin(x2);\n const c = Math.cos(y), d = Math.sin(y);\n const e = Math.cos(z), f = Math.sin(z);\n if (euler.order === "XYZ") {\n const ae = a * e, af = a * f, be = b * e, bf = b * f;\n te[0] = c * e;\n te[4] = -c * f;\n te[8] = d;\n te[1] = af + be * d;\n te[5] = ae - bf * d;\n te[9] = -b * c;\n te[2] = bf - ae * d;\n te[6] = be + af * d;\n te[10] = a * c;\n } else if (euler.order === "YXZ") {\n const ce = c * e, cf = c * f, de = d * e, df = d * f;\n te[0] = ce + df * b;\n te[4] = de * b - cf;\n te[8] = a * d;\n te[1] = a * f;\n te[5] = a * e;\n te[9] = -b;\n te[2] = cf * b - de;\n te[6] = df + ce * b;\n te[10] = a * c;\n } else if (euler.order === "ZXY") {\n const ce = c * e, cf = c * f, de = d * e, df = d * f;\n te[0] = ce - df * b;\n te[4] = -a * f;\n te[8] = de + cf * b;\n te[1] = cf + de * b;\n te[5] = a * e;\n te[9] = df - ce * b;\n te[2] = -a * d;\n te[6] = b;\n te[10] = a * c;\n } else if (euler.order === "ZYX") {\n const ae = a * e, af = a * f, be = b * e, bf = b * f;\n te[0] = c * e;\n te[4] = be * d - af;\n te[8] = ae * d + bf;\n te[1] = c * f;\n te[5] = bf * d + ae;\n te[9] = af * d - be;\n te[2] = -d;\n te[6] = b * c;\n te[10] = a * c;\n } else if (euler.order === "YZX") {\n const ac = a * c, ad = a * d, bc = b * c, bd = b * d;\n te[0] = c * e;\n te[4] = bd - ac * f;\n te[8] = bc * f + ad;\n te[1] = f;\n te[5] = a * e;\n te[9] = -b * e;\n te[2] = -d * e;\n te[6] = ad * f + bc;\n te[10] = ac - bd * f;\n } else if (euler.order === "XZY") {\n const ac = a * c, ad = a * d, bc = b * c, bd = b * d;\n te[0] = c * e;\n te[4] = -f;\n te[8] = d * e;\n te[1] = ac * f + bd;\n te[5] = a * e;\n te[9] = ad * f - bc;\n te[2] = bc * f - ad;\n te[6] = b * e;\n te[10] = bd * f + ac;\n }\n te[3] = 0;\n te[7] = 0;\n te[11] = 0;\n te[12] = 0;\n te[13] = 0;\n te[14] = 0;\n te[15] = 1;\n return this;\n }\n makeRotationFromQuaternion(q) {\n return this.compose(_zero, q, _one);\n }\n lookAt(eye, target, up) {\n const te = this.elements;\n _z.subVectors(eye, target);\n if (_z.lengthSq() === 0) {\n _z.z = 1;\n }\n _z.normalize();\n _x.crossVectors(up, _z);\n if (_x.lengthSq() === 0) {\n if (Math.abs(up.z) === 1) {\n _z.x += 1e-4;\n } else {\n _z.z += 1e-4;\n }\n _z.normalize();\n _x.crossVectors(up, _z);\n }\n _x.normalize();\n _y.crossVectors(_z, _x);\n te[0] = _x.x;\n te[4] = _y.x;\n te[8] = _z.x;\n te[1] = _x.y;\n te[5] = _y.y;\n te[9] = _z.y;\n te[2] = _x.z;\n te[6] = _y.z;\n te[10] = _z.z;\n return this;\n }\n multiply(m) {\n return this.multiplyMatrices(this, m);\n }\n premultiply(m) {\n return this.multiplyMatrices(m, this);\n }\n multiplyMatrices(a, b) {\n const ae = a.elements;\n const be = b.elements;\n const te = this.elements;\n const a11 = ae[0], a12 = ae[4], a13 = ae[8], a14 = ae[12];\n const a21 = ae[1], a22 = ae[5], a23 = ae[9], a24 = ae[13];\n const a31 = ae[2], a32 = ae[6], a33 = ae[10], a34 = ae[14];\n const a41 = ae[3], a42 = ae[7], a43 = ae[11], a44 = ae[15];\n const b11 = be[0], b12 = be[4], b13 = be[8], b14 = be[12];\n const b21 = be[1], b22 = be[5], b23 = be[9], b24 = be[13];\n const b31 = be[2], b32 = be[6], b33 = be[10], b34 = be[14];\n const b41 = be[3], b42 = be[7], b43 = be[11], b44 = be[15];\n te[0] = a11 * b11 + a12 * b21 + a13 * b31 + a14 * b41;\n te[4] = a11 * b12 + a12 * b22 + a13 * b32 + a14 * b42;\n te[8] = a11 * b13 + a12 * b23 + a13 * b33 + a14 * b43;\n te[12] = a11 * b14 + a12 * b24 + a13 * b34 + a14 * b44;\n te[1] = a21 * b11 + a22 * b21 + a23 * b31 + a24 * b41;\n te[5] = a21 * b12 + a22 * b22 + a23 * b32 + a24 * b42;\n te[9] = a21 * b13 + a22 * b23 + a23 * b33 + a24 * b43;\n te[13] = a21 * b14 + a22 * b24 + a23 * b34 + a24 * b44;\n te[2] = a31 * b11 + a32 * b21 + a33 * b31 + a34 * b41;\n te[6] = a31 * b12 + a32 * b22 + a33 * b32 + a34 * b42;\n te[10] = a31 * b13 + a32 * b23 + a33 * b33 + a34 * b43;\n te[14] = a31 * b14 + a32 * b24 + a33 * b34 + a34 * b44;\n te[3] = a41 * b11 + a42 * b21 + a43 * b31 + a44 * b41;\n te[7] = a41 * b12 + a42 * b22 + a43 * b32 + a44 * b42;\n te[11] = a41 * b13 + a42 * b23 + a43 * b33 + a44 * b43;\n te[15] = a41 * b14 + a42 * b24 + a43 * b34 + a44 * b44;\n return this;\n }\n multiplyScalar(s) {\n const te = this.elements;\n te[0] *= s;\n te[4] *= s;\n te[8] *= s;\n te[12] *= s;\n te[1] *= s;\n te[5] *= s;\n te[9] *= s;\n te[13] *= s;\n te[2] *= s;\n te[6] *= s;\n te[10] *= s;\n te[14] *= s;\n te[3] *= s;\n te[7] *= s;\n te[11] *= s;\n te[15] *= s;\n return this;\n }\n determinant() {\n const te = this.elements;\n const n11 = te[0], n12 = te[4], n13 = te[8], n14 = te[12];\n const n21 = te[1], n22 = te[5], n23 = te[9], n24 = te[13];\n const n31 = te[2], n32 = te[6], n33 = te[10], n34 = te[14];\n const n41 = te[3], n42 = te[7], n43 = te[11], n44 = te[15];\n return n41 * (+n14 * n23 * n32 - n13 * n24 * n32 - n14 * n22 * n33 + n12 * n24 * n33 + n13 * n22 * n34 - n12 * n23 * n34) + n42 * (+n11 * n23 * n34 - n11 * n24 * n33 + n14 * n21 * n33 - n13 * n21 * n34 + n13 * n24 * n31 - n14 * n23 * n31) + n43 * (+n11 * n24 * n32 - n11 * n22 * n34 - n14 * n21 * n32 + n12 * n21 * n34 + n14 * n22 * n31 - n12 * n24 * n31) + n44 * (-n13 * n22 * n31 - n11 * n23 * n32 + n11 * n22 * n33 + n13 * n21 * n32 - n12 * n21 * n33 + n12 * n23 * n31);\n }\n transpose() {\n const te = this.elements;\n let tmp;\n tmp = te[1];\n te[1] = te[4];\n te[4] = tmp;\n tmp = te[2];\n te[2] = te[8];\n te[8] = tmp;\n tmp = te[6];\n te[6] = te[9];\n te[9] = tmp;\n tmp = te[3];\n te[3] = te[12];\n te[12] = tmp;\n tmp = te[7];\n te[7] = te[13];\n te[13] = tmp;\n tmp = te[11];\n te[11] = te[14];\n te[14] = tmp;\n return this;\n }\n setPosition(x2, y, z) {\n const te = this.elements;\n if (x2.isVector3) {\n te[12] = x2.x;\n te[13] = x2.y;\n te[14] = x2.z;\n } else {\n te[12] = x2;\n te[13] = y;\n te[14] = z;\n }\n return this;\n }\n invert() {\n const te = this.elements, n11 = te[0], n21 = te[1], n31 = te[2], n41 = te[3], n12 = te[4], n22 = te[5], n32 = te[6], n42 = te[7], n13 = te[8], n23 = te[9], n33 = te[10], n43 = te[11], n14 = te[12], n24 = te[13], n34 = te[14], n44 = te[15], t11 = n23 * n34 * n42 - n24 * n33 * n42 + n24 * n32 * n43 - n22 * n34 * n43 - n23 * n32 * n44 + n22 * n33 * n44, t12 = n14 * n33 * n42 - n13 * n34 * n42 - n14 * n32 * n43 + n12 * n34 * n43 + n13 * n32 * n44 - n12 * n33 * n44, t13 = n13 * n24 * n42 - n14 * n23 * n42 + n14 * n22 * n43 - n12 * n24 * n43 - n13 * n22 * n44 + n12 * n23 * n44, t14 = n14 * n23 * n32 - n13 * n24 * n32 - n14 * n22 * n33 + n12 * n24 * n33 + n13 * n22 * n34 - n12 * n23 * n34;\n const det = n11 * t11 + n21 * t12 + n31 * t13 + n41 * t14;\n if (det === 0) return this.set(0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0);\n const detInv = 1 / det;\n te[0] = t11 * detInv;\n te[1] = (n24 * n33 * n41 - n23 * n34 * n41 - n24 * n31 * n43 + n21 * n34 * n43 + n23 * n31 * n44 - n21 * n33 * n44) * detInv;\n te[2] = (n22 * n34 * n41 - n24 * n32 * n41 + n24 * n31 * n42 - n21 * n34 * n42 - n22 * n31 * n44 + n21 * n32 * n44) * detInv;\n te[3] = (n23 * n32 * n41 - n22 * n33 * n41 - n23 * n31 * n42 + n21 * n33 * n42 + n22 * n31 * n43 - n21 * n32 * n43) * detInv;\n te[4] = t12 * detInv;\n te[5] = (n13 * n34 * n41 - n14 * n33 * n41 + n14 * n31 * n43 - n11 * n34 * n43 - n13 * n31 * n44 + n11 * n33 * n44) * detInv;\n te[6] = (n14 * n32 * n41 - n12 * n34 * n41 - n14 * n31 * n42 + n11 * n34 * n42 + n12 * n31 * n44 - n11 * n32 * n44) * detInv;\n te[7] = (n12 * n33 * n41 - n13 * n32 * n41 + n13 * n31 * n42 - n11 * n33 * n42 - n12 * n31 * n43 + n11 * n32 * n43) * detInv;\n te[8] = t13 * detInv;\n te[9] = (n14 * n23 * n41 - n13 * n24 * n41 - n14 * n21 * n43 + n11 * n24 * n43 + n13 * n21 * n44 - n11 * n23 * n44) * detInv;\n te[10] = (n12 * n24 * n41 - n14 * n22 * n41 + n14 * n21 * n42 - n11 * n24 * n42 - n12 * n21 * n44 + n11 * n22 * n44) * detInv;\n te[11] = (n13 * n22 * n41 - n12 * n23 * n41 - n13 * n21 * n42 + n11 * n23 * n42 + n12 * n21 * n43 - n11 * n22 * n43) * detInv;\n te[12] = t14 * detInv;\n te[13] = (n13 * n24 * n31 - n14 * n23 * n31 + n14 * n21 * n33 - n11 * n24 * n33 - n13 * n21 * n34 + n11 * n23 * n34) * detInv;\n te[14] = (n14 * n22 * n31 - n12 * n24 * n31 - n14 * n21 * n32 + n11 * n24 * n32 + n12 * n21 * n34 - n11 * n22 * n34) * detInv;\n te[15] = (n12 * n23 * n31 - n13 * n22 * n31 + n13 * n21 * n32 - n11 * n23 * n32 - n12 * n21 * n33 + n11 * n22 * n33) * detInv;\n return this;\n }\n scale(v) {\n const te = this.elements;\n const x2 = v.x, y = v.y, z = v.z;\n te[0] *= x2;\n te[4] *= y;\n te[8] *= z;\n te[1] *= x2;\n te[5] *= y;\n te[9] *= z;\n te[2] *= x2;\n te[6] *= y;\n te[10] *= z;\n te[3] *= x2;\n te[7] *= y;\n te[11] *= z;\n return this;\n }\n getMaxScaleOnAxis() {\n const te = this.elements;\n const scaleXSq = te[0] * te[0] + te[1] * te[1] + te[2] * te[2];\n const scaleYSq = te[4] * te[4] + te[5] * te[5] + te[6] * te[6];\n const scaleZSq = te[8] * te[8] + te[9] * te[9] + te[10] * te[10];\n return Math.sqrt(Math.max(scaleXSq, scaleYSq, scaleZSq));\n }\n makeTranslation(x2, y, z) {\n if (x2.isVector3) {\n this.set(\n 1,\n 0,\n 0,\n x2.x,\n 0,\n 1,\n 0,\n x2.y,\n 0,\n 0,\n 1,\n x2.z,\n 0,\n 0,\n 0,\n 1\n );\n } else {\n this.set(\n 1,\n 0,\n 0,\n x2,\n 0,\n 1,\n 0,\n y,\n 0,\n 0,\n 1,\n z,\n 0,\n 0,\n 0,\n 1\n );\n }\n return this;\n }\n makeRotationX(theta) {\n const c = Math.cos(theta), s = Math.sin(theta);\n this.set(\n 1,\n 0,\n 0,\n 0,\n 0,\n c,\n -s,\n 0,\n 0,\n s,\n c,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeRotationY(theta) {\n const c = Math.cos(theta), s = Math.sin(theta);\n this.set(\n c,\n 0,\n s,\n 0,\n 0,\n 1,\n 0,\n 0,\n -s,\n 0,\n c,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeRotationZ(theta) {\n const c = Math.cos(theta), s = Math.sin(theta);\n this.set(\n c,\n -s,\n 0,\n 0,\n s,\n c,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeRotationAxis(axis, angle) {\n const c = Math.cos(angle);\n const s = Math.sin(angle);\n const t = 1 - c;\n const x2 = axis.x, y = axis.y, z = axis.z;\n const tx = t * x2, ty = t * y;\n this.set(\n tx * x2 + c,\n tx * y - s * z,\n tx * z + s * y,\n 0,\n tx * y + s * z,\n ty * y + c,\n ty * z - s * x2,\n 0,\n tx * z - s * y,\n ty * z + s * x2,\n t * z * z + c,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeScale(x2, y, z) {\n this.set(\n x2,\n 0,\n 0,\n 0,\n 0,\n y,\n 0,\n 0,\n 0,\n 0,\n z,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeShear(xy, xz, yx, yz, zx, zy) {\n this.set(\n 1,\n yx,\n zx,\n 0,\n xy,\n 1,\n zy,\n 0,\n xz,\n yz,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n compose(position, quaternion, scale) {\n const te = this.elements;\n const x2 = quaternion._x, y = quaternion._y, z = quaternion._z, w = quaternion._w;\n const x22 = x2 + x2, y2 = y + y, z2 = z + z;\n const xx = x2 * x22, xy = x2 * y2, xz = x2 * z2;\n const yy = y * y2, yz = y * z2, zz = z * z2;\n const wx = w * x22, wy = w * y2, wz = w * z2;\n const sx = scale.x, sy = scale.y, sz = scale.z;\n te[0] = (1 - (yy + zz)) * sx;\n te[1] = (xy + wz) * sx;\n te[2] = (xz - wy) * sx;\n te[3] = 0;\n te[4] = (xy - wz) * sy;\n te[5] = (1 - (xx + zz)) * sy;\n te[6] = (yz + wx) * sy;\n te[7] = 0;\n te[8] = (xz + wy) * sz;\n te[9] = (yz - wx) * sz;\n te[10] = (1 - (xx + yy)) * sz;\n te[11] = 0;\n te[12] = position.x;\n te[13] = position.y;\n te[14] = position.z;\n te[15] = 1;\n return this;\n }\n decompose(position, quaternion, scale) {\n const te = this.elements;\n let sx = _v1$5.set(te[0], te[1], te[2]).length();\n const sy = _v1$5.set(te[4], te[5], te[6]).length();\n const sz = _v1$5.set(te[8], te[9], te[10]).length();\n const det = this.determinant();\n if (det < 0) sx = -sx;\n position.x = te[12];\n position.y = te[13];\n position.z = te[14];\n _m1$2.copy(this);\n const invSX = 1 / sx;\n const invSY = 1 / sy;\n const invSZ = 1 / sz;\n _m1$2.elements[0] *= invSX;\n _m1$2.elements[1] *= invSX;\n _m1$2.elements[2] *= invSX;\n _m1$2.elements[4] *= invSY;\n _m1$2.elements[5] *= invSY;\n _m1$2.elements[6] *= invSY;\n _m1$2.elements[8] *= invSZ;\n _m1$2.elements[9] *= invSZ;\n _m1$2.elements[10] *= invSZ;\n quaternion.setFromRotationMatrix(_m1$2);\n scale.x = sx;\n scale.y = sy;\n scale.z = sz;\n return this;\n }\n makePerspective(left, right, top, bottom, near, far, coordinateSystem = WebGLCoordinateSystem) {\n const te = this.elements;\n const x2 = 2 * near / (right - left);\n const y = 2 * near / (top - bottom);\n const a = (right + left) / (right - left);\n const b = (top + bottom) / (top - bottom);\n let c, d;\n if (coordinateSystem === WebGLCoordinateSystem) {\n c = -(far + near) / (far - near);\n d = -2 * far * near / (far - near);\n } else if (coordinateSystem === WebGPUCoordinateSystem) {\n c = -far / (far - near);\n d = -far * near / (far - near);\n } else {\n throw new Error("THREE.Matrix4.makePerspective(): Invalid coordinate system: " + coordinateSystem);\n }\n te[0] = x2;\n te[4] = 0;\n te[8] = a;\n te[12] = 0;\n te[1] = 0;\n te[5] = y;\n te[9] = b;\n te[13] = 0;\n te[2] = 0;\n te[6] = 0;\n te[10] = c;\n te[14] = d;\n te[3] = 0;\n te[7] = 0;\n te[11] = -1;\n te[15] = 0;\n return this;\n }\n makeOrthographic(left, right, top, bottom, near, far, coordinateSystem = WebGLCoordinateSystem) {\n const te = this.elements;\n const w = 1 / (right - left);\n const h = 1 / (top - bottom);\n const p = 1 / (far - near);\n const x2 = (right + left) * w;\n const y = (top + bottom) * h;\n let z, zInv;\n if (coordinateSystem === WebGLCoordinateSystem) {\n z = (far + near) * p;\n zInv = -2 * p;\n } else if (coordinateSystem === WebGPUCoordinateSystem) {\n z = near * p;\n zInv = -1 * p;\n } else {\n throw new Error("THREE.Matrix4.makeOrthographic(): Invalid coordinate system: " + coordinateSystem);\n }\n te[0] = 2 * w;\n te[4] = 0;\n te[8] = 0;\n te[12] = -x2;\n te[1] = 0;\n te[5] = 2 * h;\n te[9] = 0;\n te[13] = -y;\n te[2] = 0;\n te[6] = 0;\n te[10] = zInv;\n te[14] = -z;\n te[3] = 0;\n te[7] = 0;\n te[11] = 0;\n te[15] = 1;\n return this;\n }\n equals(matrix) {\n const te = this.elements;\n const me = matrix.elements;\n for (let i2 = 0; i2 < 16; i2++) {\n if (te[i2] !== me[i2]) return false;\n }\n return true;\n }\n fromArray(array, offset = 0) {\n for (let i2 = 0; i2 < 16; i2++) {\n this.elements[i2] = array[i2 + offset];\n }\n return this;\n }\n toArray(array = [], offset = 0) {\n const te = this.elements;\n array[offset] = te[0];\n array[offset + 1] = te[1];\n array[offset + 2] = te[2];\n array[offset + 3] = te[3];\n array[offset + 4] = te[4];\n array[offset + 5] = te[5];\n array[offset + 6] = te[6];\n array[offset + 7] = te[7];\n array[offset + 8] = te[8];\n array[offset + 9] = te[9];\n array[offset + 10] = te[10];\n array[offset + 11] = te[11];\n array[offset + 12] = te[12];\n array[offset + 13] = te[13];\n array[offset + 14] = te[14];\n array[offset + 15] = te[15];\n return array;\n }\n }\n const _v1$5 = /* @__PURE__ */ new Vector3();\n const _m1$2 = /* @__PURE__ */ new Matrix4();\n const _zero = /* @__PURE__ */ new Vector3(0, 0, 0);\n const _one = /* @__PURE__ */ new Vector3(1, 1, 1);\n const _x = /* @__PURE__ */ new Vector3();\n const _y = /* @__PURE__ */ new Vector3();\n const _z = /* @__PURE__ */ new Vector3();\n const _matrix$2 = /* @__PURE__ */ new Matrix4();\n const _quaternion$3 = /* @__PURE__ */ new Quaternion();\n class Euler {\n constructor(x2 = 0, y = 0, z = 0, order = Euler.DEFAULT_ORDER) {\n this.isEuler = true;\n this._x = x2;\n this._y = y;\n this._z = z;\n this._order = order;\n }\n get x() {\n return this._x;\n }\n set x(value) {\n this._x = value;\n this._onChangeCallback();\n }\n get y() {\n return this._y;\n }\n set y(value) {\n this._y = value;\n this._onChangeCallback();\n }\n get z() {\n return this._z;\n }\n set z(value) {\n this._z = value;\n this._onChangeCallback();\n }\n get order() {\n return this._order;\n }\n set order(value) {\n this._order = value;\n this._onChangeCallback();\n }\n set(x2, y, z, order = this._order) {\n this._x = x2;\n this._y = y;\n this._z = z;\n this._order = order;\n this._onChangeCallback();\n return this;\n }\n clone() {\n return new this.constructor(this._x, this._y, this._z, this._order);\n }\n copy(euler) {\n this._x = euler._x;\n this._y = euler._y;\n this._z = euler._z;\n this._order = euler._order;\n this._onChangeCallback();\n return this;\n }\n setFromRotationMatrix(m, order = this._order, update = true) {\n const te = m.elements;\n const m11 = te[0], m12 = te[4], m13 = te[8];\n const m21 = te[1], m22 = te[5], m23 = te[9];\n const m31 = te[2], m32 = te[6], m33 = te[10];\n switch (order) {\n case "XYZ":\n this._y = Math.asin(clamp(m13, -1, 1));\n if (Math.abs(m13) < 0.9999999) {\n this._x = Math.atan2(-m23, m33);\n this._z = Math.atan2(-m12, m11);\n } else {\n this._x = Math.atan2(m32, m22);\n this._z = 0;\n }\n break;\n case "YXZ":\n this._x = Math.asin(-clamp(m23, -1, 1));\n if (Math.abs(m23) < 0.9999999) {\n this._y = Math.atan2(m13, m33);\n this._z = Math.atan2(m21, m22);\n } else {\n this._y = Math.atan2(-m31, m11);\n this._z = 0;\n }\n break;\n case "ZXY":\n this._x = Math.asin(clamp(m32, -1, 1));\n if (Math.abs(m32) < 0.9999999) {\n this._y = Math.atan2(-m31, m33);\n this._z = Math.atan2(-m12, m22);\n } else {\n this._y = 0;\n this._z = Math.atan2(m21, m11);\n }\n break;\n case "ZYX":\n this._y = Math.asin(-clamp(m31, -1, 1));\n if (Math.abs(m31) < 0.9999999) {\n this._x = Math.atan2(m32, m33);\n this._z = Math.atan2(m21, m11);\n } else {\n this._x = 0;\n this._z = Math.atan2(-m12, m22);\n }\n break;\n case "YZX":\n this._z = Math.asin(clamp(m21, -1, 1));\n if (Math.abs(m21) < 0.9999999) {\n this._x = Math.atan2(-m23, m22);\n this._y = Math.atan2(-m31, m11);\n } else {\n this._x = 0;\n this._y = Math.atan2(m13, m33);\n }\n break;\n case "XZY":\n this._z = Math.asin(-clamp(m12, -1, 1));\n if (Math.abs(m12) < 0.9999999) {\n this._x = Math.atan2(m32, m22);\n this._y = Math.atan2(m13, m11);\n } else {\n this._x = Math.atan2(-m23, m33);\n this._y = 0;\n }\n break;\n default:\n console.warn("THREE.Euler: .setFromRotationMatrix() encountered an unknown order: " + order);\n }\n this._order = order;\n if (update === true) this._onChangeCallback();\n return this;\n }\n setFromQuaternion(q, order, update) {\n _matrix$2.makeRotationFromQuaternion(q);\n return this.setFromRotationMatrix(_matrix$2, order, update);\n }\n setFromVector3(v, order = this._order) {\n return this.set(v.x, v.y, v.z, order);\n }\n reorder(newOrder) {\n _quaternion$3.setFromEuler(this);\n return this.setFromQuaternion(_quaternion$3, newOrder);\n }\n equals(euler) {\n return euler._x === this._x && euler._y === this._y && euler._z === this._z && euler._order === this._order;\n }\n fromArray(array) {\n this._x = array[0];\n this._y = array[1];\n this._z = array[2];\n if (array[3] !== void 0) this._order = array[3];\n this._onChangeCallback();\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this._x;\n array[offset + 1] = this._y;\n array[offset + 2] = this._z;\n array[offset + 3] = this._order;\n return array;\n }\n _onChange(callback) {\n this._onChangeCallback = callback;\n return this;\n }\n _onChangeCallback() {\n }\n *[Symbol.iterator]() {\n yield this._x;\n yield this._y;\n yield this._z;\n yield this._order;\n }\n }\n Euler.DEFAULT_ORDER = "XYZ";\n class Layers {\n constructor() {\n this.mask = 1 | 0;\n }\n set(channel) {\n this.mask = (1 << channel | 0) >>> 0;\n }\n enable(channel) {\n this.mask |= 1 << channel | 0;\n }\n enableAll() {\n this.mask = 4294967295 | 0;\n }\n toggle(channel) {\n this.mask ^= 1 << channel | 0;\n }\n disable(channel) {\n this.mask &= ~(1 << channel | 0);\n }\n disableAll() {\n this.mask = 0;\n }\n test(layers) {\n return (this.mask & layers.mask) !== 0;\n }\n isEnabled(channel) {\n return (this.mask & (1 << channel | 0)) !== 0;\n }\n }\n let _object3DId = 0;\n const _v1$4 = /* @__PURE__ */ new Vector3();\n const _q1 = /* @__PURE__ */ new Quaternion();\n const _m1$1 = /* @__PURE__ */ new Matrix4();\n const _target = /* @__PURE__ */ new Vector3();\n const _position$3 = /* @__PURE__ */ new Vector3();\n const _scale$2 = /* @__PURE__ */ new Vector3();\n const _quaternion$2 = /* @__PURE__ */ new Quaternion();\n const _xAxis = /* @__PURE__ */ new Vector3(1, 0, 0);\n const _yAxis = /* @__PURE__ */ new Vector3(0, 1, 0);\n const _zAxis = /* @__PURE__ */ new Vector3(0, 0, 1);\n const _addedEvent = { type: "added" };\n const _removedEvent = { type: "removed" };\n const _childaddedEvent = { type: "childadded", child: null };\n const _childremovedEvent = { type: "childremoved", child: null };\n class Object3D extends EventDispatcher {\n constructor() {\n super();\n this.isObject3D = true;\n Object.defineProperty(this, "id", { value: _object3DId++ });\n this.uuid = generateUUID();\n this.name = "";\n this.type = "Object3D";\n this.parent = null;\n this.children = [];\n this.up = Object3D.DEFAULT_UP.clone();\n const position = new Vector3();\n const rotation = new Euler();\n const quaternion = new Quaternion();\n const scale = new Vector3(1, 1, 1);\n function onRotationChange() {\n quaternion.setFromEuler(rotation, false);\n }\n function onQuaternionChange() {\n rotation.setFromQuaternion(quaternion, void 0, false);\n }\n rotation._onChange(onRotationChange);\n quaternion._onChange(onQuaternionChange);\n Object.defineProperties(this, {\n position: {\n configurable: true,\n enumerable: true,\n value: position\n },\n rotation: {\n configurable: true,\n enumerable: true,\n value: rotation\n },\n quaternion: {\n configurable: true,\n enumerable: true,\n value: quaternion\n },\n scale: {\n configurable: true,\n enumerable: true,\n value: scale\n },\n modelViewMatrix: {\n value: new Matrix4()\n },\n normalMatrix: {\n value: new Matrix3()\n }\n });\n this.matrix = new Matrix4();\n this.matrixWorld = new Matrix4();\n this.matrixAutoUpdate = Object3D.DEFAULT_MATRIX_AUTO_UPDATE;\n this.matrixWorldAutoUpdate = Object3D.DEFAULT_MATRIX_WORLD_AUTO_UPDATE;\n this.matrixWorldNeedsUpdate = false;\n this.layers = new Layers();\n this.visible = true;\n this.castShadow = false;\n this.receiveShadow = false;\n this.frustumCulled = true;\n this.renderOrder = 0;\n this.animations = [];\n this.userData = {};\n }\n onBeforeShadow() {\n }\n onAfterShadow() {\n }\n onBeforeRender() {\n }\n onAfterRender() {\n }\n applyMatrix4(matrix) {\n if (this.matrixAutoUpdate) this.updateMatrix();\n this.matrix.premultiply(matrix);\n this.matrix.decompose(this.position, this.quaternion, this.scale);\n }\n applyQuaternion(q) {\n this.quaternion.premultiply(q);\n return this;\n }\n setRotationFromAxisAngle(axis, angle) {\n this.quaternion.setFromAxisAngle(axis, angle);\n }\n setRotationFromEuler(euler) {\n this.quaternion.setFromEuler(euler, true);\n }\n setRotationFromMatrix(m) {\n this.quaternion.setFromRotationMatrix(m);\n }\n setRotationFromQuaternion(q) {\n this.quaternion.copy(q);\n }\n rotateOnAxis(axis, angle) {\n _q1.setFromAxisAngle(axis, angle);\n this.quaternion.multiply(_q1);\n return this;\n }\n rotateOnWorldAxis(axis, angle) {\n _q1.setFromAxisAngle(axis, angle);\n this.quaternion.premultiply(_q1);\n return this;\n }\n rotateX(angle) {\n return this.rotateOnAxis(_xAxis, angle);\n }\n rotateY(angle) {\n return this.rotateOnAxis(_yAxis, angle);\n }\n rotateZ(angle) {\n return this.rotateOnAxis(_zAxis, angle);\n }\n translateOnAxis(axis, distance) {\n _v1$4.copy(axis).applyQuaternion(this.quaternion);\n this.position.add(_v1$4.multiplyScalar(distance));\n return this;\n }\n translateX(distance) {\n return this.translateOnAxis(_xAxis, distance);\n }\n translateY(distance) {\n return this.translateOnAxis(_yAxis, distance);\n }\n translateZ(distance) {\n return this.translateOnAxis(_zAxis, distance);\n }\n localToWorld(vector) {\n this.updateWorldMatrix(true, false);\n return vector.applyMatrix4(this.matrixWorld);\n }\n worldToLocal(vector) {\n this.updateWorldMatrix(true, false);\n return vector.applyMatrix4(_m1$1.copy(this.matrixWorld).invert());\n }\n lookAt(x2, y, z) {\n if (x2.isVector3) {\n _target.copy(x2);\n } else {\n _target.set(x2, y, z);\n }\n const parent = this.parent;\n this.updateWorldMatrix(true, false);\n _position$3.setFromMatrixPosition(this.matrixWorld);\n if (this.isCamera || this.isLight) {\n _m1$1.lookAt(_position$3, _target, this.up);\n } else {\n _m1$1.lookAt(_target, _position$3, this.up);\n }\n this.quaternion.setFromRotationMatrix(_m1$1);\n if (parent) {\n _m1$1.extractRotation(parent.matrixWorld);\n _q1.setFromRotationMatrix(_m1$1);\n this.quaternion.premultiply(_q1.invert());\n }\n }\n add(object) {\n if (arguments.length > 1) {\n for (let i2 = 0; i2 < arguments.length; i2++) {\n this.add(arguments[i2]);\n }\n return this;\n }\n if (object === this) {\n console.error("THREE.Object3D.add: object can\'t be added as a child of itself.", object);\n return this;\n }\n if (object && object.isObject3D) {\n object.removeFromParent();\n object.parent = this;\n this.children.push(object);\n object.dispatchEvent(_addedEvent);\n _childaddedEvent.child = object;\n this.dispatchEvent(_childaddedEvent);\n _childaddedEvent.child = null;\n } else {\n console.error("THREE.Object3D.add: object not an instance of THREE.Object3D.", object);\n }\n return this;\n }\n remove(object) {\n if (arguments.length > 1) {\n for (let i2 = 0; i2 < arguments.length; i2++) {\n this.remove(arguments[i2]);\n }\n return this;\n }\n const index = this.children.indexOf(object);\n if (index !== -1) {\n object.parent = null;\n this.children.splice(index, 1);\n object.dispatchEvent(_removedEvent);\n _childremovedEvent.child = object;\n this.dispatchEvent(_childremovedEvent);\n _childremovedEvent.child = null;\n }\n return this;\n }\n removeFromParent() {\n const parent = this.parent;\n if (parent !== null) {\n parent.remove(this);\n }\n return this;\n }\n clear() {\n return this.remove(...this.children);\n }\n attach(object) {\n this.updateWorldMatrix(true, false);\n _m1$1.copy(this.matrixWorld).invert();\n if (object.parent !== null) {\n object.parent.updateWorldMatrix(true, false);\n _m1$1.multiply(object.parent.matrixWorld);\n }\n object.applyMatrix4(_m1$1);\n object.removeFromParent();\n object.parent = this;\n this.children.push(object);\n object.updateWorldMatrix(false, true);\n object.dispatchEvent(_addedEvent);\n _childaddedEvent.child = object;\n this.dispatchEvent(_childaddedEvent);\n _childaddedEvent.child = null;\n return this;\n }\n getObjectById(id) {\n return this.getObjectByProperty("id", id);\n }\n getObjectByName(name) {\n return this.getObjectByProperty("name", name);\n }\n getObjectByProperty(name, value) {\n if (this[name] === value) return this;\n for (let i2 = 0, l = this.children.length; i2 < l; i2++) {\n const child = this.children[i2];\n const object = child.getObjectByProperty(name, value);\n if (object !== void 0) {\n return object;\n }\n }\n return void 0;\n }\n getObjectsByProperty(name, value, result = []) {\n if (this[name] === value) result.push(this);\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n children[i2].getObjectsByProperty(name, value, result);\n }\n return result;\n }\n getWorldPosition(target) {\n this.updateWorldMatrix(true, false);\n return target.setFromMatrixPosition(this.matrixWorld);\n }\n getWorldQuaternion(target) {\n this.updateWorldMatrix(true, false);\n this.matrixWorld.decompose(_position$3, target, _scale$2);\n return target;\n }\n getWorldScale(target) {\n this.updateWorldMatrix(true, false);\n this.matrixWorld.decompose(_position$3, _quaternion$2, target);\n return target;\n }\n getWorldDirection(target) {\n this.updateWorldMatrix(true, false);\n const e = this.matrixWorld.elements;\n return target.set(e[8], e[9], e[10]).normalize();\n }\n raycast() {\n }\n traverse(callback) {\n callback(this);\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n children[i2].traverse(callback);\n }\n }\n traverseVisible(callback) {\n if (this.visible === false) return;\n callback(this);\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n children[i2].traverseVisible(callback);\n }\n }\n traverseAncestors(callback) {\n const parent = this.parent;\n if (parent !== null) {\n callback(parent);\n parent.traverseAncestors(callback);\n }\n }\n updateMatrix() {\n this.matrix.compose(this.position, this.quaternion, this.scale);\n this.matrixWorldNeedsUpdate = true;\n }\n updateMatrixWorld(force) {\n if (this.matrixAutoUpdate) this.updateMatrix();\n if (this.matrixWorldNeedsUpdate || force) {\n if (this.matrixWorldAutoUpdate === true) {\n if (this.parent === null) {\n this.matrixWorld.copy(this.matrix);\n } else {\n this.matrixWorld.multiplyMatrices(this.parent.matrixWorld, this.matrix);\n }\n }\n this.matrixWorldNeedsUpdate = false;\n force = true;\n }\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n const child = children[i2];\n child.updateMatrixWorld(force);\n }\n }\n updateWorldMatrix(updateParents, updateChildren) {\n const parent = this.parent;\n if (updateParents === true && parent !== null) {\n parent.updateWorldMatrix(true, false);\n }\n if (this.matrixAutoUpdate) this.updateMatrix();\n if (this.matrixWorldAutoUpdate === true) {\n if (this.parent === null) {\n this.matrixWorld.copy(this.matrix);\n } else {\n this.matrixWorld.multiplyMatrices(this.parent.matrixWorld, this.matrix);\n }\n }\n if (updateChildren === true) {\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n const child = children[i2];\n child.updateWorldMatrix(false, true);\n }\n }\n }\n toJSON(meta) {\n const isRootObject = meta === void 0 || typeof meta === "string";\n const output = {};\n if (isRootObject) {\n meta = {\n geometries: {},\n materials: {},\n textures: {},\n images: {},\n shapes: {},\n skeletons: {},\n animations: {},\n nodes: {}\n };\n output.metadata = {\n version: 4.6,\n type: "Object",\n generator: "Object3D.toJSON"\n };\n }\n const object = {};\n object.uuid = this.uuid;\n object.type = this.type;\n if (this.name !== "") object.name = this.name;\n if (this.castShadow === true) object.castShadow = true;\n if (this.receiveShadow === true) object.receiveShadow = true;\n if (this.visible === false) object.visible = false;\n if (this.frustumCulled === false) object.frustumCulled = false;\n if (this.renderOrder !== 0) object.renderOrder = this.renderOrder;\n if (Object.keys(this.userData).length > 0) object.userData = this.userData;\n object.layers = this.layers.mask;\n object.matrix = this.matrix.toArray();\n object.up = this.up.toArray();\n if (this.matrixAutoUpdate === false) object.matrixAutoUpdate = false;\n if (this.isInstancedMesh) {\n object.type = "InstancedMesh";\n object.count = this.count;\n object.instanceMatrix = this.instanceMatrix.toJSON();\n if (this.instanceColor !== null) object.instanceColor = this.instanceColor.toJSON();\n }\n if (this.isBatchedMesh) {\n object.type = "BatchedMesh";\n object.perObjectFrustumCulled = this.perObjectFrustumCulled;\n object.sortObjects = this.sortObjects;\n object.drawRanges = this._drawRanges;\n object.reservedRanges = this._reservedRanges;\n object.visibility = this._visibility;\n object.active = this._active;\n object.bounds = this._bounds.map((bound) => ({\n boxInitialized: bound.boxInitialized,\n boxMin: bound.box.min.toArray(),\n boxMax: bound.box.max.toArray(),\n sphereInitialized: bound.sphereInitialized,\n sphereRadius: bound.sphere.radius,\n sphereCenter: bound.sphere.center.toArray()\n }));\n object.maxInstanceCount = this._maxInstanceCount;\n object.maxVertexCount = this._maxVertexCount;\n object.maxIndexCount = this._maxIndexCount;\n object.geometryInitialized = this._geometryInitialized;\n object.geometryCount = this._geometryCount;\n object.matricesTexture = this._matricesTexture.toJSON(meta);\n if (this._colorsTexture !== null) object.colorsTexture = this._colorsTexture.toJSON(meta);\n if (this.boundingSphere !== null) {\n object.boundingSphere = {\n center: object.boundingSphere.center.toArray(),\n radius: object.boundingSphere.radius\n };\n }\n if (this.boundingBox !== null) {\n object.boundingBox = {\n min: object.boundingBox.min.toArray(),\n max: object.boundingBox.max.toArray()\n };\n }\n }\n function serialize(library, element) {\n if (library[element.uuid] === void 0) {\n library[element.uuid] = element.toJSON(meta);\n }\n return element.uuid;\n }\n if (this.isScene) {\n if (this.background) {\n if (this.background.isColor) {\n object.background = this.background.toJSON();\n } else if (this.background.isTexture) {\n object.background = this.background.toJSON(meta).uuid;\n }\n }\n if (this.environment && this.environment.isTexture && this.environment.isRenderTargetTexture !== true) {\n object.environment = this.environment.toJSON(meta).uuid;\n }\n } else if (this.isMesh || this.isLine || this.isPoints) {\n object.geometry = serialize(meta.geometries, this.geometry);\n const parameters = this.geometry.parameters;\n if (parameters !== void 0 && parameters.shapes !== void 0) {\n const shapes = parameters.shapes;\n if (Array.isArray(shapes)) {\n for (let i2 = 0, l = shapes.length; i2 < l; i2++) {\n const shape = shapes[i2];\n serialize(meta.shapes, shape);\n }\n } else {\n serialize(meta.shapes, shapes);\n }\n }\n }\n if (this.isSkinnedMesh) {\n object.bindMode = this.bindMode;\n object.bindMatrix = this.bindMatrix.toArray();\n if (this.skeleton !== void 0) {\n serialize(meta.skeletons, this.skeleton);\n object.skeleton = this.skeleton.uuid;\n }\n }\n if (this.material !== void 0) {\n if (Array.isArray(this.material)) {\n const uuids = [];\n for (let i2 = 0, l = this.material.length; i2 < l; i2++) {\n uuids.push(serialize(meta.materials, this.material[i2]));\n }\n object.material = uuids;\n } else {\n object.material = serialize(meta.materials, this.material);\n }\n }\n if (this.children.length > 0) {\n object.children = [];\n for (let i2 = 0; i2 < this.children.length; i2++) {\n object.children.push(this.children[i2].toJSON(meta).object);\n }\n }\n if (this.animations.length > 0) {\n object.animations = [];\n for (let i2 = 0; i2 < this.animations.length; i2++) {\n const animation = this.animations[i2];\n object.animations.push(serialize(meta.animations, animation));\n }\n }\n if (isRootObject) {\n const geometries = extractFromCache(meta.geometries);\n const materials = extractFromCache(meta.materials);\n const textures = extractFromCache(meta.textures);\n const images = extractFromCache(meta.images);\n const shapes = extractFromCache(meta.shapes);\n const skeletons = extractFromCache(meta.skeletons);\n const animations = extractFromCache(meta.animations);\n const nodes = extractFromCache(meta.nodes);\n if (geometries.length > 0) output.geometries = geometries;\n if (materials.length > 0) output.materials = materials;\n if (textures.length > 0) output.textures = textures;\n if (images.length > 0) output.images = images;\n if (shapes.length > 0) output.shapes = shapes;\n if (skeletons.length > 0) output.skeletons = skeletons;\n if (animations.length > 0) output.animations = animations;\n if (nodes.length > 0) output.nodes = nodes;\n }\n output.object = object;\n return output;\n function extractFromCache(cache) {\n const values = [];\n for (const key in cache) {\n const data = cache[key];\n delete data.metadata;\n values.push(data);\n }\n return values;\n }\n }\n clone(recursive) {\n return new this.constructor().copy(this, recursive);\n }\n copy(source, recursive = true) {\n this.name = source.name;\n this.up.copy(source.up);\n this.position.copy(source.position);\n this.rotation.order = source.rotation.order;\n this.quaternion.copy(source.quaternion);\n this.scale.copy(source.scale);\n this.matrix.copy(source.matrix);\n this.matrixWorld.copy(source.matrixWorld);\n this.matrixAutoUpdate = source.matrixAutoUpdate;\n this.matrixWorldAutoUpdate = source.matrixWorldAutoUpdate;\n this.matrixWorldNeedsUpdate = source.matrixWorldNeedsUpdate;\n this.layers.mask = source.layers.mask;\n this.visible = source.visible;\n this.castShadow = source.castShadow;\n this.receiveShadow = source.receiveShadow;\n this.frustumCulled = source.frustumCulled;\n this.renderOrder = source.renderOrder;\n this.animations = source.animations.slice();\n this.userData = JSON.parse(JSON.stringify(source.userData));\n if (recursive === true) {\n for (let i2 = 0; i2 < source.children.length; i2++) {\n const child = source.children[i2];\n this.add(child.clone());\n }\n }\n return this;\n }\n }\n Object3D.DEFAULT_UP = /* @__PURE__ */ new Vector3(0, 1, 0);\n Object3D.DEFAULT_MATRIX_AUTO_UPDATE = true;\n Object3D.DEFAULT_MATRIX_WORLD_AUTO_UPDATE = true;\n const _v0$1 = /* @__PURE__ */ new Vector3();\n const _v1$3 = /* @__PURE__ */ new Vector3();\n const _v2$2 = /* @__PURE__ */ new Vector3();\n const _v3$2 = /* @__PURE__ */ new Vector3();\n const _vab = /* @__PURE__ */ new Vector3();\n const _vac = /* @__PURE__ */ new Vector3();\n const _vbc = /* @__PURE__ */ new Vector3();\n const _vap = /* @__PURE__ */ new Vector3();\n const _vbp = /* @__PURE__ */ new Vector3();\n const _vcp = /* @__PURE__ */ new Vector3();\n const _v40 = /* @__PURE__ */ new Vector4();\n const _v41 = /* @__PURE__ */ new Vector4();\n const _v42 = /* @__PURE__ */ new Vector4();\n class Triangle {\n constructor(a = new Vector3(), b = new Vector3(), c = new Vector3()) {\n this.a = a;\n this.b = b;\n this.c = c;\n }\n static getNormal(a, b, c, target) {\n target.subVectors(c, b);\n _v0$1.subVectors(a, b);\n target.cross(_v0$1);\n const targetLengthSq = target.lengthSq();\n if (targetLengthSq > 0) {\n return target.multiplyScalar(1 / Math.sqrt(targetLengthSq));\n }\n return target.set(0, 0, 0);\n }\n // static/instance method to calculate barycentric coordinates\n // based on: http://www.blackpawn.com/texts/pointinpoly/default.html\n static getBarycoord(point, a, b, c, target) {\n _v0$1.subVectors(c, a);\n _v1$3.subVectors(b, a);\n _v2$2.subVectors(point, a);\n const dot00 = _v0$1.dot(_v0$1);\n const dot01 = _v0$1.dot(_v1$3);\n const dot02 = _v0$1.dot(_v2$2);\n const dot11 = _v1$3.dot(_v1$3);\n const dot12 = _v1$3.dot(_v2$2);\n const denom = dot00 * dot11 - dot01 * dot01;\n if (denom === 0) {\n target.set(0, 0, 0);\n return null;\n }\n const invDenom = 1 / denom;\n const u = (dot11 * dot02 - dot01 * dot12) * invDenom;\n const v = (dot00 * dot12 - dot01 * dot02) * invDenom;\n return target.set(1 - u - v, v, u);\n }\n static containsPoint(point, a, b, c) {\n if (this.getBarycoord(point, a, b, c, _v3$2) === null) {\n return false;\n }\n return _v3$2.x >= 0 && _v3$2.y >= 0 && _v3$2.x + _v3$2.y <= 1;\n }\n static getInterpolation(point, p1, p2, p3, v1, v2, v3, target) {\n if (this.getBarycoord(point, p1, p2, p3, _v3$2) === null) {\n target.x = 0;\n target.y = 0;\n if ("z" in target) target.z = 0;\n if ("w" in target) target.w = 0;\n return null;\n }\n target.setScalar(0);\n target.addScaledVector(v1, _v3$2.x);\n target.addScaledVector(v2, _v3$2.y);\n target.addScaledVector(v3, _v3$2.z);\n return target;\n }\n static getInterpolatedAttribute(attr, i1, i2, i3, barycoord, target) {\n _v40.setScalar(0);\n _v41.setScalar(0);\n _v42.setScalar(0);\n _v40.fromBufferAttribute(attr, i1);\n _v41.fromBufferAttribute(attr, i2);\n _v42.fromBufferAttribute(attr, i3);\n target.setScalar(0);\n target.addScaledVector(_v40, barycoord.x);\n target.addScaledVector(_v41, barycoord.y);\n target.addScaledVector(_v42, barycoord.z);\n return target;\n }\n static isFrontFacing(a, b, c, direction) {\n _v0$1.subVectors(c, b);\n _v1$3.subVectors(a, b);\n return _v0$1.cross(_v1$3).dot(direction) < 0 ? true : false;\n }\n set(a, b, c) {\n this.a.copy(a);\n this.b.copy(b);\n this.c.copy(c);\n return this;\n }\n setFromPointsAndIndices(points, i0, i1, i2) {\n this.a.copy(points[i0]);\n this.b.copy(points[i1]);\n this.c.copy(points[i2]);\n return this;\n }\n setFromAttributeAndIndices(attribute, i0, i1, i2) {\n this.a.fromBufferAttribute(attribute, i0);\n this.b.fromBufferAttribute(attribute, i1);\n this.c.fromBufferAttribute(attribute, i2);\n return this;\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(triangle) {\n this.a.copy(triangle.a);\n this.b.copy(triangle.b);\n this.c.copy(triangle.c);\n return this;\n }\n getArea() {\n _v0$1.subVectors(this.c, this.b);\n _v1$3.subVectors(this.a, this.b);\n return _v0$1.cross(_v1$3).length() * 0.5;\n }\n getMidpoint(target) {\n return target.addVectors(this.a, this.b).add(this.c).multiplyScalar(1 / 3);\n }\n getNormal(target) {\n return Triangle.getNormal(this.a, this.b, this.c, target);\n }\n getPlane(target) {\n return target.setFromCoplanarPoints(this.a, this.b, this.c);\n }\n getBarycoord(point, target) {\n return Triangle.getBarycoord(point, this.a, this.b, this.c, target);\n }\n getInterpolation(point, v1, v2, v3, target) {\n return Triangle.getInterpolation(point, this.a, this.b, this.c, v1, v2, v3, target);\n }\n containsPoint(point) {\n return Triangle.containsPoint(point, this.a, this.b, this.c);\n }\n isFrontFacing(direction) {\n return Triangle.isFrontFacing(this.a, this.b, this.c, direction);\n }\n intersectsBox(box) {\n return box.intersectsTriangle(this);\n }\n closestPointToPoint(p, target) {\n const a = this.a, b = this.b, c = this.c;\n let v, w;\n _vab.subVectors(b, a);\n _vac.subVectors(c, a);\n _vap.subVectors(p, a);\n const d1 = _vab.dot(_vap);\n const d2 = _vac.dot(_vap);\n if (d1 <= 0 && d2 <= 0) {\n return target.copy(a);\n }\n _vbp.subVectors(p, b);\n const d3 = _vab.dot(_vbp);\n const d4 = _vac.dot(_vbp);\n if (d3 >= 0 && d4 <= d3) {\n return target.copy(b);\n }\n const vc = d1 * d4 - d3 * d2;\n if (vc <= 0 && d1 >= 0 && d3 <= 0) {\n v = d1 / (d1 - d3);\n return target.copy(a).addScaledVector(_vab, v);\n }\n _vcp.subVectors(p, c);\n const d5 = _vab.dot(_vcp);\n const d6 = _vac.dot(_vcp);\n if (d6 >= 0 && d5 <= d6) {\n return target.copy(c);\n }\n const vb = d5 * d2 - d1 * d6;\n if (vb <= 0 && d2 >= 0 && d6 <= 0) {\n w = d2 / (d2 - d6);\n return target.copy(a).addScaledVector(_vac, w);\n }\n const va = d3 * d6 - d5 * d4;\n if (va <= 0 && d4 - d3 >= 0 && d5 - d6 >= 0) {\n _vbc.subVectors(c, b);\n w = (d4 - d3) / (d4 - d3 + (d5 - d6));\n return target.copy(b).addScaledVector(_vbc, w);\n }\n const denom = 1 / (va + vb + vc);\n v = vb * denom;\n w = vc * denom;\n return target.copy(a).addScaledVector(_vab, v).addScaledVector(_vac, w);\n }\n equals(triangle) {\n return triangle.a.equals(this.a) && triangle.b.equals(this.b) && triangle.c.equals(this.c);\n }\n }\n const _colorKeywords = {\n "aliceblue": 15792383,\n "antiquewhite": 16444375,\n "aqua": 65535,\n "aquamarine": 8388564,\n "azure": 15794175,\n "beige": 16119260,\n "bisque": 16770244,\n "black": 0,\n "blanchedalmond": 16772045,\n "blue": 255,\n "blueviolet": 9055202,\n "brown": 10824234,\n "burlywood": 14596231,\n "cadetblue": 6266528,\n "chartreuse": 8388352,\n "chocolate": 13789470,\n "coral": 16744272,\n "cornflowerblue": 6591981,\n "cornsilk": 16775388,\n "crimson": 14423100,\n "cyan": 65535,\n "darkblue": 139,\n "darkcyan": 35723,\n "darkgoldenrod": 12092939,\n "darkgray": 11119017,\n "darkgreen": 25600,\n "darkgrey": 11119017,\n "darkkhaki": 12433259,\n "darkmagenta": 9109643,\n "darkolivegreen": 5597999,\n "darkorange": 16747520,\n "darkorchid": 10040012,\n "darkred": 9109504,\n "darksalmon": 15308410,\n "darkseagreen": 9419919,\n "darkslateblue": 4734347,\n "darkslategray": 3100495,\n "darkslategrey": 3100495,\n "darkturquoise": 52945,\n "darkviolet": 9699539,\n "deeppink": 16716947,\n "deepskyblue": 49151,\n "dimgray": 6908265,\n "dimgrey": 6908265,\n "dodgerblue": 2003199,\n "firebrick": 11674146,\n "floralwhite": 16775920,\n "forestgreen": 2263842,\n "fuchsia": 16711935,\n "gainsboro": 14474460,\n "ghostwhite": 16316671,\n "gold": 16766720,\n "goldenrod": 14329120,\n "gray": 8421504,\n "green": 32768,\n "greenyellow": 11403055,\n "grey": 8421504,\n "honeydew": 15794160,\n "hotpink": 16738740,\n "indianred": 13458524,\n "indigo": 4915330,\n "ivory": 16777200,\n "khaki": 15787660,\n "lavender": 15132410,\n "lavenderblush": 16773365,\n "lawngreen": 8190976,\n "lemonchiffon": 16775885,\n "lightblue": 11393254,\n "lightcoral": 15761536,\n "lightcyan": 14745599,\n "lightgoldenrodyellow": 16448210,\n "lightgray": 13882323,\n "lightgreen": 9498256,\n "lightgrey": 13882323,\n "lightpink": 16758465,\n "lightsalmon": 16752762,\n "lightseagreen": 2142890,\n "lightskyblue": 8900346,\n "lightslategray": 7833753,\n "lightslategrey": 7833753,\n "lightsteelblue": 11584734,\n "lightyellow": 16777184,\n "lime": 65280,\n "limegreen": 3329330,\n "linen": 16445670,\n "magenta": 16711935,\n "maroon": 8388608,\n "mediumaquamarine": 6737322,\n "mediumblue": 205,\n "mediumorchid": 12211667,\n "mediumpurple": 9662683,\n "mediumseagreen": 3978097,\n "mediumslateblue": 8087790,\n "mediumspringgreen": 64154,\n "mediumturquoise": 4772300,\n "mediumvioletred": 13047173,\n "midnightblue": 1644912,\n "mintcream": 16121850,\n "mistyrose": 16770273,\n "moccasin": 16770229,\n "navajowhite": 16768685,\n "navy": 128,\n "oldlace": 16643558,\n "olive": 8421376,\n "olivedrab": 7048739,\n "orange": 16753920,\n "orangered": 16729344,\n "orchid": 14315734,\n "palegoldenrod": 15657130,\n "palegreen": 10025880,\n "paleturquoise": 11529966,\n "palevioletred": 14381203,\n "papayawhip": 16773077,\n "peachpuff": 16767673,\n "peru": 13468991,\n "pink": 16761035,\n "plum": 14524637,\n "powderblue": 11591910,\n "purple": 8388736,\n "rebeccapurple": 6697881,\n "red": 16711680,\n "rosybrown": 12357519,\n "royalblue": 4286945,\n "saddlebrown": 9127187,\n "salmon": 16416882,\n "sandybrown": 16032864,\n "seagreen": 3050327,\n "seashell": 16774638,\n "sienna": 10506797,\n "silver": 12632256,\n "skyblue": 8900331,\n "slateblue": 6970061,\n "slategray": 7372944,\n "slategrey": 7372944,\n "snow": 16775930,\n "springgreen": 65407,\n "steelblue": 4620980,\n "tan": 13808780,\n "teal": 32896,\n "thistle": 14204888,\n "tomato": 16737095,\n "turquoise": 4251856,\n "violet": 15631086,\n "wheat": 16113331,\n "white": 16777215,\n "whitesmoke": 16119285,\n "yellow": 16776960,\n "yellowgreen": 10145074\n };\n const _hslA = { h: 0, s: 0, l: 0 };\n const _hslB = { h: 0, s: 0, l: 0 };\n function hue2rgb(p, q, t) {\n if (t < 0) t += 1;\n if (t > 1) t -= 1;\n if (t < 1 / 6) return p + (q - p) * 6 * t;\n if (t < 1 / 2) return q;\n if (t < 2 / 3) return p + (q - p) * 6 * (2 / 3 - t);\n return p;\n }\n class Color {\n constructor(r, g, b) {\n this.isColor = true;\n this.r = 1;\n this.g = 1;\n this.b = 1;\n return this.set(r, g, b);\n }\n set(r, g, b) {\n if (g === void 0 && b === void 0) {\n const value = r;\n if (value && value.isColor) {\n this.copy(value);\n } else if (typeof value === "number") {\n this.setHex(value);\n } else if (typeof value === "string") {\n this.setStyle(value);\n }\n } else {\n this.setRGB(r, g, b);\n }\n return this;\n }\n setScalar(scalar) {\n this.r = scalar;\n this.g = scalar;\n this.b = scalar;\n return this;\n }\n setHex(hex, colorSpace = SRGBColorSpace) {\n hex = Math.floor(hex);\n this.r = (hex >> 16 & 255) / 255;\n this.g = (hex >> 8 & 255) / 255;\n this.b = (hex & 255) / 255;\n ColorManagement.toWorkingColorSpace(this, colorSpace);\n return this;\n }\n setRGB(r, g, b, colorSpace = ColorManagement.workingColorSpace) {\n this.r = r;\n this.g = g;\n this.b = b;\n ColorManagement.toWorkingColorSpace(this, colorSpace);\n return this;\n }\n setHSL(h, s, l, colorSpace = ColorManagement.workingColorSpace) {\n h = euclideanModulo(h, 1);\n s = clamp(s, 0, 1);\n l = clamp(l, 0, 1);\n if (s === 0) {\n this.r = this.g = this.b = l;\n } else {\n const p = l <= 0.5 ? l * (1 + s) : l + s - l * s;\n const q = 2 * l - p;\n this.r = hue2rgb(q, p, h + 1 / 3);\n this.g = hue2rgb(q, p, h);\n this.b = hue2rgb(q, p, h - 1 / 3);\n }\n ColorManagement.toWorkingColorSpace(this, colorSpace);\n return this;\n }\n setStyle(style, colorSpace = SRGBColorSpace) {\n function handleAlpha(string) {\n if (string === void 0) return;\n if (parseFloat(string) < 1) {\n console.warn("THREE.Color: Alpha component of " + style + " will be ignored.");\n }\n }\n let m;\n if (m = /^(\\w+)\\(([^\\)]*)\\)/.exec(style)) {\n let color;\n const name = m[1];\n const components = m[2];\n switch (name) {\n case "rgb":\n case "rgba":\n if (color = /^\\s*(\\d+)\\s*,\\s*(\\d+)\\s*,\\s*(\\d+)\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(components)) {\n handleAlpha(color[4]);\n return this.setRGB(\n Math.min(255, parseInt(color[1], 10)) / 255,\n Math.min(255, parseInt(color[2], 10)) / 255,\n Math.min(255, parseInt(color[3], 10)) / 255,\n colorSpace\n );\n }\n if (color = /^\\s*(\\d+)\\%\\s*,\\s*(\\d+)\\%\\s*,\\s*(\\d+)\\%\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(components)) {\n handleAlpha(color[4]);\n return this.setRGB(\n Math.min(100, parseInt(color[1], 10)) / 100,\n Math.min(100, parseInt(color[2], 10)) / 100,\n Math.min(100, parseInt(color[3], 10)) / 100,\n colorSpace\n );\n }\n break;\n case "hsl":\n case "hsla":\n if (color = /^\\s*(\\d*\\.?\\d+)\\s*,\\s*(\\d*\\.?\\d+)\\%\\s*,\\s*(\\d*\\.?\\d+)\\%\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(components)) {\n handleAlpha(color[4]);\n return this.setHSL(\n parseFloat(color[1]) / 360,\n parseFloat(color[2]) / 100,\n parseFloat(color[3]) / 100,\n colorSpace\n );\n }\n break;\n default:\n console.warn("THREE.Color: Unknown color model " + style);\n }\n } else if (m = /^\\#([A-Fa-f\\d]+)$/.exec(style)) {\n const hex = m[1];\n const size = hex.length;\n if (size === 3) {\n return this.setRGB(\n parseInt(hex.charAt(0), 16) / 15,\n parseInt(hex.charAt(1), 16) / 15,\n parseInt(hex.charAt(2), 16) / 15,\n colorSpace\n );\n } else if (size === 6) {\n return this.setHex(parseInt(hex, 16), colorSpace);\n } else {\n console.warn("THREE.Color: Invalid hex color " + style);\n }\n } else if (style && style.length > 0) {\n return this.setColorName(style, colorSpace);\n }\n return this;\n }\n setColorName(style, colorSpace = SRGBColorSpace) {\n const hex = _colorKeywords[style.toLowerCase()];\n if (hex !== void 0) {\n this.setHex(hex, colorSpace);\n } else {\n console.warn("THREE.Color: Unknown color " + style);\n }\n return this;\n }\n clone() {\n return new this.constructor(this.r, this.g, this.b);\n }\n copy(color) {\n this.r = color.r;\n this.g = color.g;\n this.b = color.b;\n return this;\n }\n copySRGBToLinear(color) {\n this.r = SRGBToLinear(color.r);\n this.g = SRGBToLinear(color.g);\n this.b = SRGBToLinear(color.b);\n return this;\n }\n copyLinearToSRGB(color) {\n this.r = LinearToSRGB(color.r);\n this.g = LinearToSRGB(color.g);\n this.b = LinearToSRGB(color.b);\n return this;\n }\n convertSRGBToLinear() {\n this.copySRGBToLinear(this);\n return this;\n }\n convertLinearToSRGB() {\n this.copyLinearToSRGB(this);\n return this;\n }\n getHex(colorSpace = SRGBColorSpace) {\n ColorManagement.fromWorkingColorSpace(_color.copy(this), colorSpace);\n return Math.round(clamp(_color.r * 255, 0, 255)) * 65536 + Math.round(clamp(_color.g * 255, 0, 255)) * 256 + Math.round(clamp(_color.b * 255, 0, 255));\n }\n getHexString(colorSpace = SRGBColorSpace) {\n return ("000000" + this.getHex(colorSpace).toString(16)).slice(-6);\n }\n getHSL(target, colorSpace = ColorManagement.workingColorSpace) {\n ColorManagement.fromWorkingColorSpace(_color.copy(this), colorSpace);\n const r = _color.r, g = _color.g, b = _color.b;\n const max2 = Math.max(r, g, b);\n const min = Math.min(r, g, b);\n let hue, saturation;\n const lightness = (min + max2) / 2;\n if (min === max2) {\n hue = 0;\n saturation = 0;\n } else {\n const delta = max2 - min;\n saturation = lightness <= 0.5 ? delta / (max2 + min) : delta / (2 - max2 - min);\n switch (max2) {\n case r:\n hue = (g - b) / delta + (g < b ? 6 : 0);\n break;\n case g:\n hue = (b - r) / delta + 2;\n break;\n case b:\n hue = (r - g) / delta + 4;\n break;\n }\n hue /= 6;\n }\n target.h = hue;\n target.s = saturation;\n target.l = lightness;\n return target;\n }\n getRGB(target, colorSpace = ColorManagement.workingColorSpace) {\n ColorManagement.fromWorkingColorSpace(_color.copy(this), colorSpace);\n target.r = _color.r;\n target.g = _color.g;\n target.b = _color.b;\n return target;\n }\n getStyle(colorSpace = SRGBColorSpace) {\n ColorManagement.fromWorkingColorSpace(_color.copy(this), colorSpace);\n const r = _color.r, g = _color.g, b = _color.b;\n if (colorSpace !== SRGBColorSpace) {\n return `color(${colorSpace} ${r.toFixed(3)} ${g.toFixed(3)} ${b.toFixed(3)})`;\n }\n return `rgb(${Math.round(r * 255)},${Math.round(g * 255)},${Math.round(b * 255)})`;\n }\n offsetHSL(h, s, l) {\n this.getHSL(_hslA);\n return this.setHSL(_hslA.h + h, _hslA.s + s, _hslA.l + l);\n }\n add(color) {\n this.r += color.r;\n this.g += color.g;\n this.b += color.b;\n return this;\n }\n addColors(color1, color2) {\n this.r = color1.r + color2.r;\n this.g = color1.g + color2.g;\n this.b = color1.b + color2.b;\n return this;\n }\n addScalar(s) {\n this.r += s;\n this.g += s;\n this.b += s;\n return this;\n }\n sub(color) {\n this.r = Math.max(0, this.r - color.r);\n this.g = Math.max(0, this.g - color.g);\n this.b = Math.max(0, this.b - color.b);\n return this;\n }\n multiply(color) {\n this.r *= color.r;\n this.g *= color.g;\n this.b *= color.b;\n return this;\n }\n multiplyScalar(s) {\n this.r *= s;\n this.g *= s;\n this.b *= s;\n return this;\n }\n lerp(color, alpha) {\n this.r += (color.r - this.r) * alpha;\n this.g += (color.g - this.g) * alpha;\n this.b += (color.b - this.b) * alpha;\n return this;\n }\n lerpColors(color1, color2, alpha) {\n this.r = color1.r + (color2.r - color1.r) * alpha;\n this.g = color1.g + (color2.g - color1.g) * alpha;\n this.b = color1.b + (color2.b - color1.b) * alpha;\n return this;\n }\n lerpHSL(color, alpha) {\n this.getHSL(_hslA);\n color.getHSL(_hslB);\n const h = lerp(_hslA.h, _hslB.h, alpha);\n const s = lerp(_hslA.s, _hslB.s, alpha);\n const l = lerp(_hslA.l, _hslB.l, alpha);\n this.setHSL(h, s, l);\n return this;\n }\n setFromVector3(v) {\n this.r = v.x;\n this.g = v.y;\n this.b = v.z;\n return this;\n }\n applyMatrix3(m) {\n const r = this.r, g = this.g, b = this.b;\n const e = m.elements;\n this.r = e[0] * r + e[3] * g + e[6] * b;\n this.g = e[1] * r + e[4] * g + e[7] * b;\n this.b = e[2] * r + e[5] * g + e[8] * b;\n return this;\n }\n equals(c) {\n return c.r === this.r && c.g === this.g && c.b === this.b;\n }\n fromArray(array, offset = 0) {\n this.r = array[offset];\n this.g = array[offset + 1];\n this.b = array[offset + 2];\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this.r;\n array[offset + 1] = this.g;\n array[offset + 2] = this.b;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this.r = attribute.getX(index);\n this.g = attribute.getY(index);\n this.b = attribute.getZ(index);\n return this;\n }\n toJSON() {\n return this.getHex();\n }\n *[Symbol.iterator]() {\n yield this.r;\n yield this.g;\n yield this.b;\n }\n }\n const _color = /* @__PURE__ */ new Color();\n Color.NAMES = _colorKeywords;\n let _materialId = 0;\n class Material extends EventDispatcher {\n constructor() {\n super();\n this.isMaterial = true;\n Object.defineProperty(this, "id", { value: _materialId++ });\n this.uuid = generateUUID();\n this.name = "";\n this.type = "Material";\n this.blending = NormalBlending;\n this.side = FrontSide;\n this.vertexColors = false;\n this.opacity = 1;\n this.transparent = false;\n this.alphaHash = false;\n this.blendSrc = SrcAlphaFactor;\n this.blendDst = OneMinusSrcAlphaFactor;\n this.blendEquation = AddEquation;\n this.blendSrcAlpha = null;\n this.blendDstAlpha = null;\n this.blendEquationAlpha = null;\n this.blendColor = new Color(0, 0, 0);\n this.blendAlpha = 0;\n this.depthFunc = LessEqualDepth;\n this.depthTest = true;\n this.depthWrite = true;\n this.stencilWriteMask = 255;\n this.stencilFunc = AlwaysStencilFunc;\n this.stencilRef = 0;\n this.stencilFuncMask = 255;\n this.stencilFail = KeepStencilOp;\n this.stencilZFail = KeepStencilOp;\n this.stencilZPass = KeepStencilOp;\n this.stencilWrite = false;\n this.clippingPlanes = null;\n this.clipIntersection = false;\n this.clipShadows = false;\n this.shadowSide = null;\n this.colorWrite = true;\n this.precision = null;\n this.polygonOffset = false;\n this.polygonOffsetFactor = 0;\n this.polygonOffsetUnits = 0;\n this.dithering = false;\n this.alphaToCoverage = false;\n this.premultipliedAlpha = false;\n this.forceSinglePass = false;\n this.visible = true;\n this.toneMapped = true;\n this.userData = {};\n this.version = 0;\n this._alphaTest = 0;\n }\n get alphaTest() {\n return this._alphaTest;\n }\n set alphaTest(value) {\n if (this._alphaTest > 0 !== value > 0) {\n this.version++;\n }\n this._alphaTest = value;\n }\n // onBeforeRender and onBeforeCompile only supported in WebGLRenderer\n onBeforeRender() {\n }\n onBeforeCompile() {\n }\n customProgramCacheKey() {\n return this.onBeforeCompile.toString();\n }\n setValues(values) {\n if (values === void 0) return;\n for (const key in values) {\n const newValue = values[key];\n if (newValue === void 0) {\n console.warn(`THREE.Material: parameter \'${key}\' has value of undefined.`);\n continue;\n }\n const currentValue = this[key];\n if (currentValue === void 0) {\n console.warn(`THREE.Material: \'${key}\' is not a property of THREE.${this.type}.`);\n continue;\n }\n if (currentValue && currentValue.isColor) {\n currentValue.set(newValue);\n } else if (currentValue && currentValue.isVector3 && (newValue && newValue.isVector3)) {\n currentValue.copy(newValue);\n } else {\n this[key] = newValue;\n }\n }\n }\n toJSON(meta) {\n const isRootObject = meta === void 0 || typeof meta === "string";\n if (isRootObject) {\n meta = {\n textures: {},\n images: {}\n };\n }\n const data = {\n metadata: {\n version: 4.6,\n type: "Material",\n generator: "Material.toJSON"\n }\n };\n data.uuid = this.uuid;\n data.type = this.type;\n if (this.name !== "") data.name = this.name;\n if (this.color && this.color.isColor) data.color = this.color.getHex();\n if (this.roughness !== void 0) data.roughness = this.roughness;\n if (this.metalness !== void 0) data.metalness = this.metalness;\n if (this.sheen !== void 0) data.sheen = this.sheen;\n if (this.sheenColor && this.sheenColor.isColor) data.sheenColor = this.sheenColor.getHex();\n if (this.sheenRoughness !== void 0) data.sheenRoughness = this.sheenRoughness;\n if (this.emissive && this.emissive.isColor) data.emissive = this.emissive.getHex();\n if (this.emissiveIntensity !== void 0 && this.emissiveIntensity !== 1) data.emissiveIntensity = this.emissiveIntensity;\n if (this.specular && this.specular.isColor) data.specular = this.specular.getHex();\n if (this.specularIntensity !== void 0) data.specularIntensity = this.specularIntensity;\n if (this.specularColor && this.specularColor.isColor) data.specularColor = this.specularColor.getHex();\n if (this.shininess !== void 0) data.shininess = this.shininess;\n if (this.clearcoat !== void 0) data.clearcoat = this.clearcoat;\n if (this.clearcoatRoughness !== void 0) data.clearcoatRoughness = this.clearcoatRoughness;\n if (this.clearcoatMap && this.clearcoatMap.isTexture) {\n data.clearcoatMap = this.clearcoatMap.toJSON(meta).uuid;\n }\n if (this.clearcoatRoughnessMap && this.clearcoatRoughnessMap.isTexture) {\n data.clearcoatRoughnessMap = this.clearcoatRoughnessMap.toJSON(meta).uuid;\n }\n if (this.clearcoatNormalMap && this.clearcoatNormalMap.isTexture) {\n data.clearcoatNormalMap = this.clearcoatNormalMap.toJSON(meta).uuid;\n data.clearcoatNormalScale = this.clearcoatNormalScale.toArray();\n }\n if (this.dispersion !== void 0) data.dispersion = this.dispersion;\n if (this.iridescence !== void 0) data.iridescence = this.iridescence;\n if (this.iridescenceIOR !== void 0) data.iridescenceIOR = this.iridescenceIOR;\n if (this.iridescenceThicknessRange !== void 0) data.iridescenceThicknessRange = this.iridescenceThicknessRange;\n if (this.iridescenceMap && this.iridescenceMap.isTexture) {\n data.iridescenceMap = this.iridescenceMap.toJSON(meta).uuid;\n }\n if (this.iridescenceThicknessMap && this.iridescenceThicknessMap.isTexture) {\n data.iridescenceThicknessMap = this.iridescenceThicknessMap.toJSON(meta).uuid;\n }\n if (this.anisotropy !== void 0) data.anisotropy = this.anisotropy;\n if (this.anisotropyRotation !== void 0) data.anisotropyRotation = this.anisotropyRotation;\n if (this.anisotropyMap && this.anisotropyMap.isTexture) {\n data.anisotropyMap = this.anisotropyMap.toJSON(meta).uuid;\n }\n if (this.map && this.map.isTexture) data.map = this.map.toJSON(meta).uuid;\n if (this.matcap && this.matcap.isTexture) data.matcap = this.matcap.toJSON(meta).uuid;\n if (this.alphaMap && this.alphaMap.isTexture) data.alphaMap = this.alphaMap.toJSON(meta).uuid;\n if (this.lightMap && this.lightMap.isTexture) {\n data.lightMap = this.lightMap.toJSON(meta).uuid;\n data.lightMapIntensity = this.lightMapIntensity;\n }\n if (this.aoMap && this.aoMap.isTexture) {\n data.aoMap = this.aoMap.toJSON(meta).uuid;\n data.aoMapIntensity = this.aoMapIntensity;\n }\n if (this.bumpMap && this.bumpMap.isTexture) {\n data.bumpMap = this.bumpMap.toJSON(meta).uuid;\n data.bumpScale = this.bumpScale;\n }\n if (this.normalMap && this.normalMap.isTexture) {\n data.normalMap = this.normalMap.toJSON(meta).uuid;\n data.normalMapType = this.normalMapType;\n data.normalScale = this.normalScale.toArray();\n }\n if (this.displacementMap && this.displacementMap.isTexture) {\n data.displacementMap = this.displacementMap.toJSON(meta).uuid;\n data.displacementScale = this.displacementScale;\n data.displacementBias = this.displacementBias;\n }\n if (this.roughnessMap && this.roughnessMap.isTexture) data.roughnessMap = this.roughnessMap.toJSON(meta).uuid;\n if (this.metalnessMap && this.metalnessMap.isTexture) data.metalnessMap = this.metalnessMap.toJSON(meta).uuid;\n if (this.emissiveMap && this.emissiveMap.isTexture) data.emissiveMap = this.emissiveMap.toJSON(meta).uuid;\n if (this.specularMap && this.specularMap.isTexture) data.specularMap = this.specularMap.toJSON(meta).uuid;\n if (this.specularIntensityMap && this.specularIntensityMap.isTexture) data.specularIntensityMap = this.specularIntensityMap.toJSON(meta).uuid;\n if (this.specularColorMap && this.specularColorMap.isTexture) data.specularColorMap = this.specularColorMap.toJSON(meta).uuid;\n if (this.envMap && this.envMap.isTexture) {\n data.envMap = this.envMap.toJSON(meta).uuid;\n if (this.combine !== void 0) data.combine = this.combine;\n }\n if (this.envMapRotation !== void 0) data.envMapRotation = this.envMapRotation.toArray();\n if (this.envMapIntensity !== void 0) data.envMapIntensity = this.envMapIntensity;\n if (this.reflectivity !== void 0) data.reflectivity = this.reflectivity;\n if (this.refractionRatio !== void 0) data.refractionRatio = this.refractionRatio;\n if (this.gradientMap && this.gradientMap.isTexture) {\n data.gradientMap = this.gradientMap.toJSON(meta).uuid;\n }\n if (this.transmission !== void 0) data.transmission = this.transmission;\n if (this.transmissionMap && this.transmissionMap.isTexture) data.transmissionMap = this.transmissionMap.toJSON(meta).uuid;\n if (this.thickness !== void 0) data.thickness = this.thickness;\n if (this.thicknessMap && this.thicknessMap.isTexture) data.thicknessMap = this.thicknessMap.toJSON(meta).uuid;\n if (this.attenuationDistance !== void 0 && this.attenuationDistance !== Infinity) data.attenuationDistance = this.attenuationDistance;\n if (this.attenuationColor !== void 0) data.attenuationColor = this.attenuationColor.getHex();\n if (this.size !== void 0) data.size = this.size;\n if (this.shadowSide !== null) data.shadowSide = this.shadowSide;\n if (this.sizeAttenuation !== void 0) data.sizeAttenuation = this.sizeAttenuation;\n if (this.blending !== NormalBlending) data.blending = this.blending;\n if (this.side !== FrontSide) data.side = this.side;\n if (this.vertexColors === true) data.vertexColors = true;\n if (this.opacity < 1) data.opacity = this.opacity;\n if (this.transparent === true) data.transparent = true;\n if (this.blendSrc !== SrcAlphaFactor) data.blendSrc = this.blendSrc;\n if (this.blendDst !== OneMinusSrcAlphaFactor) data.blendDst = this.blendDst;\n if (this.blendEquation !== AddEquation) data.blendEquation = this.blendEquation;\n if (this.blendSrcAlpha !== null) data.blendSrcAlpha = this.blendSrcAlpha;\n if (this.blendDstAlpha !== null) data.blendDstAlpha = this.blendDstAlpha;\n if (this.blendEquationAlpha !== null) data.blendEquationAlpha = this.blendEquationAlpha;\n if (this.blendColor && this.blendColor.isColor) data.blendColor = this.blendColor.getHex();\n if (this.blendAlpha !== 0) data.blendAlpha = this.blendAlpha;\n if (this.depthFunc !== LessEqualDepth) data.depthFunc = this.depthFunc;\n if (this.depthTest === false) data.depthTest = this.depthTest;\n if (this.depthWrite === false) data.depthWrite = this.depthWrite;\n if (this.colorWrite === false) data.colorWrite = this.colorWrite;\n if (this.stencilWriteMask !== 255) data.stencilWriteMask = this.stencilWriteMask;\n if (this.stencilFunc !== AlwaysStencilFunc) data.stencilFunc = this.stencilFunc;\n if (this.stencilRef !== 0) data.stencilRef = this.stencilRef;\n if (this.stencilFuncMask !== 255) data.stencilFuncMask = this.stencilFuncMask;\n if (this.stencilFail !== KeepStencilOp) data.stencilFail = this.stencilFail;\n if (this.stencilZFail !== KeepStencilOp) data.stencilZFail = this.stencilZFail;\n if (this.stencilZPass !== KeepStencilOp) data.stencilZPass = this.stencilZPass;\n if (this.stencilWrite === true) data.stencilWrite = this.stencilWrite;\n if (this.rotation !== void 0 && this.rotation !== 0) data.rotation = this.rotation;\n if (this.polygonOffset === true) data.polygonOffset = true;\n if (this.polygonOffsetFactor !== 0) data.polygonOffsetFactor = this.polygonOffsetFactor;\n if (this.polygonOffsetUnits !== 0) data.polygonOffsetUnits = this.polygonOffsetUnits;\n if (this.linewidth !== void 0 && this.linewidth !== 1) data.linewidth = this.linewidth;\n if (this.dashSize !== void 0) data.dashSize = this.dashSize;\n if (this.gapSize !== void 0) data.gapSize = this.gapSize;\n if (this.scale !== void 0) data.scale = this.scale;\n if (this.dithering === true) data.dithering = true;\n if (this.alphaTest > 0) data.alphaTest = this.alphaTest;\n if (this.alphaHash === true) data.alphaHash = true;\n if (this.alphaToCoverage === true) data.alphaToCoverage = true;\n if (this.premultipliedAlpha === true) data.premultipliedAlpha = true;\n if (this.forceSinglePass === true) data.forceSinglePass = true;\n if (this.wireframe === true) data.wireframe = true;\n if (this.wireframeLinewidth > 1) data.wireframeLinewidth = this.wireframeLinewidth;\n if (this.wireframeLinecap !== "round") data.wireframeLinecap = this.wireframeLinecap;\n if (this.wireframeLinejoin !== "round") data.wireframeLinejoin = this.wireframeLinejoin;\n if (this.flatShading === true) data.flatShading = true;\n if (this.visible === false) data.visible = false;\n if (this.toneMapped === false) data.toneMapped = false;\n if (this.fog === false) data.fog = false;\n if (Object.keys(this.userData).length > 0) data.userData = this.userData;\n function extractFromCache(cache) {\n const values = [];\n for (const key in cache) {\n const data2 = cache[key];\n delete data2.metadata;\n values.push(data2);\n }\n return values;\n }\n if (isRootObject) {\n const textures = extractFromCache(meta.textures);\n const images = extractFromCache(meta.images);\n if (textures.length > 0) data.textures = textures;\n if (images.length > 0) data.images = images;\n }\n return data;\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(source) {\n this.name = source.name;\n this.blending = source.blending;\n this.side = source.side;\n this.vertexColors = source.vertexColors;\n this.opacity = source.opacity;\n this.transparent = source.transparent;\n this.blendSrc = source.blendSrc;\n this.blendDst = source.blendDst;\n this.blendEquation = source.blendEquation;\n this.blendSrcAlpha = source.blendSrcAlpha;\n this.blendDstAlpha = source.blendDstAlpha;\n this.blendEquationAlpha = source.blendEquationAlpha;\n this.blendColor.copy(source.blendColor);\n this.blendAlpha = source.blendAlpha;\n this.depthFunc = source.depthFunc;\n this.depthTest = source.depthTest;\n this.depthWrite = source.depthWrite;\n this.stencilWriteMask = source.stencilWriteMask;\n this.stencilFunc = source.stencilFunc;\n this.stencilRef = source.stencilRef;\n this.stencilFuncMask = source.stencilFuncMask;\n this.stencilFail = source.stencilFail;\n this.stencilZFail = source.stencilZFail;\n this.stencilZPass = source.stencilZPass;\n this.stencilWrite = source.stencilWrite;\n const srcPlanes = source.clippingPlanes;\n let dstPlanes = null;\n if (srcPlanes !== null) {\n const n = srcPlanes.length;\n dstPlanes = new Array(n);\n for (let i2 = 0; i2 !== n; ++i2) {\n dstPlanes[i2] = srcPlanes[i2].clone();\n }\n }\n this.clippingPlanes = dstPlanes;\n this.clipIntersection = source.clipIntersection;\n this.clipShadows = source.clipShadows;\n this.shadowSide = source.shadowSide;\n this.colorWrite = source.colorWrite;\n this.precision = source.precision;\n this.polygonOffset = source.polygonOffset;\n this.polygonOffsetFactor = source.polygonOffsetFactor;\n this.polygonOffsetUnits = source.polygonOffsetUnits;\n this.dithering = source.dithering;\n this.alphaTest = source.alphaTest;\n this.alphaHash = source.alphaHash;\n this.alphaToCoverage = source.alphaToCoverage;\n this.premultipliedAlpha = source.premultipliedAlpha;\n this.forceSinglePass = source.forceSinglePass;\n this.visible = source.visible;\n this.toneMapped = source.toneMapped;\n this.userData = JSON.parse(JSON.stringify(source.userData));\n return this;\n }\n dispose() {\n this.dispatchEvent({ type: "dispose" });\n }\n set needsUpdate(value) {\n if (value === true) this.version++;\n }\n onBuild() {\n console.warn("Material: onBuild() has been removed.");\n }\n }\n class MeshBasicMaterial extends Material {\n constructor(parameters) {\n super();\n this.isMeshBasicMaterial = true;\n this.type = "MeshBasicMaterial";\n this.color = new Color(16777215);\n this.map = null;\n this.lightMap = null;\n this.lightMapIntensity = 1;\n this.aoMap = null;\n this.aoMapIntensity = 1;\n this.specularMap = null;\n this.alphaMap = null;\n this.envMap = null;\n this.envMapRotation = new Euler();\n this.combine = MultiplyOperation;\n this.reflectivity = 1;\n this.refractionRatio = 0.98;\n this.wireframe = false;\n this.wireframeLinewidth = 1;\n this.wireframeLinecap = "round";\n this.wireframeLinejoin = "round";\n this.fog = true;\n this.setValues(parameters);\n }\n copy(source) {\n super.copy(source);\n this.color.copy(source.color);\n this.map = source.map;\n this.lightMap = source.lightMap;\n this.lightMapIntensity = source.lightMapIntensity;\n this.aoMap = source.aoMap;\n this.aoMapIntensity = source.aoMapIntensity;\n this.specularMap = source.specularMap;\n this.alphaMap = source.alphaMap;\n this.envMap = source.envMap;\n this.envMapRotation.copy(source.envMapRotation);\n this.combine = source.combine;\n this.reflectivity = source.reflectivity;\n this.refractionRatio = source.refractionRatio;\n this.wireframe = source.wireframe;\n this.wireframeLinewidth = source.wireframeLinewidth;\n this.wireframeLinecap = source.wireframeLinecap;\n this.wireframeLinejoin = source.wireframeLinejoin;\n this.fog = source.fog;\n return this;\n }\n }\n const _vector$9 = /* @__PURE__ */ new Vector3();\n const _vector2$1 = /* @__PURE__ */ new Vector2();\n class BufferAttribute {\n constructor(array, itemSize, normalized = false) {\n if (Array.isArray(array)) {\n throw new TypeError("THREE.BufferAttribute: array should be a Typed Array.");\n }\n this.isBufferAttribute = true;\n this.name = "";\n this.array = array;\n this.itemSize = itemSize;\n this.count = array !== void 0 ? array.length / itemSize : 0;\n this.normalized = normalized;\n this.usage = StaticDrawUsage;\n this.updateRanges = [];\n this.gpuType = FloatType;\n this.version = 0;\n }\n onUploadCallback() {\n }\n set needsUpdate(value) {\n if (value === true) this.version++;\n }\n setUsage(value) {\n this.usage = value;\n return this;\n }\n addUpdateRange(start, count) {\n this.updateRanges.push({ start, count });\n }\n clearUpdateRanges() {\n this.updateRanges.length = 0;\n }\n copy(source) {\n this.name = source.name;\n this.array = new source.array.constructor(source.array);\n this.itemSize = source.itemSize;\n this.count = source.count;\n this.normalized = source.normalized;\n this.usage = source.usage;\n this.gpuType = source.gpuType;\n return this;\n }\n copyAt(index1, attribute, index2) {\n index1 *= this.itemSize;\n index2 *= attribute.itemSize;\n for (let i2 = 0, l = this.itemSize; i2 < l; i2++) {\n this.array[index1 + i2] = attribute.array[index2 + i2];\n }\n return this;\n }\n copyArray(array) {\n this.array.set(array);\n return this;\n }\n applyMatrix3(m) {\n if (this.itemSize === 2) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector2$1.fromBufferAttribute(this, i2);\n _vector2$1.applyMatrix3(m);\n this.setXY(i2, _vector2$1.x, _vector2$1.y);\n }\n } else if (this.itemSize === 3) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector$9.fromBufferAttribute(this, i2);\n _vector$9.applyMatrix3(m);\n this.setXYZ(i2, _vector$9.x, _vector$9.y, _vector$9.z);\n }\n }\n return this;\n }\n applyMatrix4(m) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector$9.fromBufferAttribute(this, i2);\n _vector$9.applyMatrix4(m);\n this.setXYZ(i2, _vector$9.x, _vector$9.y, _vector$9.z);\n }\n return this;\n }\n applyNormalMatrix(m) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector$9.fromBufferAttribute(this, i2);\n _vector$9.applyNormalMatrix(m);\n this.setXYZ(i2, _vector$9.x, _vector$9.y, _vector$9.z);\n }\n return this;\n }\n transformDirection(m) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector$9.fromBufferAttribute(this, i2);\n _vector$9.transformDirection(m);\n this.setXYZ(i2, _vector$9.x, _vector$9.y, _vector$9.z);\n }\n return this;\n }\n set(value, offset = 0) {\n this.array.set(value, offset);\n return this;\n }\n getComponent(index, component) {\n let value = this.array[index * this.itemSize + component];\n if (this.normalized) value = denormalize(value, this.array);\n return value;\n }\n setComponent(index, component, value) {\n if (this.normalized) value = normalize$1(value, this.array);\n this.array[index * this.itemSize + component] = value;\n return this;\n }\n getX(index) {\n let x2 = this.array[index * this.itemSize];\n if (this.normalized) x2 = denormalize(x2, this.array);\n return x2;\n }\n setX(index, x2) {\n if (this.normalized) x2 = normalize$1(x2, this.array);\n this.array[index * this.itemSize] = x2;\n return this;\n }\n getY(index) {\n let y = this.array[index * this.itemSize + 1];\n if (this.normalized) y = denormalize(y, this.array);\n return y;\n }\n setY(index, y) {\n if (this.normalized) y = normalize$1(y, this.array);\n this.array[index * this.itemSize + 1] = y;\n return this;\n }\n getZ(index) {\n let z = this.array[index * this.itemSize + 2];\n if (this.normalized) z = denormalize(z, this.array);\n return z;\n }\n setZ(index, z) {\n if (this.normalized) z = normalize$1(z, this.array);\n this.array[index * this.itemSize + 2] = z;\n return this;\n }\n getW(index) {\n let w = this.array[index * this.itemSize + 3];\n if (this.normalized) w = denormalize(w, this.array);\n return w;\n }\n setW(index, w) {\n if (this.normalized) w = normalize$1(w, this.array);\n this.array[index * this.itemSize + 3] = w;\n return this;\n }\n setXY(index, x2, y) {\n index *= this.itemSize;\n if (this.normalized) {\n x2 = normalize$1(x2, this.array);\n y = normalize$1(y, this.array);\n }\n this.array[index + 0] = x2;\n this.array[index + 1] = y;\n return this;\n }\n setXYZ(index, x2, y, z) {\n index *= this.itemSize;\n if (this.normalized) {\n x2 = normalize$1(x2, this.array);\n y = normalize$1(y, this.array);\n z = normalize$1(z, this.array);\n }\n this.array[index + 0] = x2;\n this.array[index + 1] = y;\n this.array[index + 2] = z;\n return this;\n }\n setXYZW(index, x2, y, z, w) {\n index *= this.itemSize;\n if (this.normalized) {\n x2 = normalize$1(x2, this.array);\n y = normalize$1(y, this.array);\n z = normalize$1(z, this.array);\n w = normalize$1(w, this.array);\n }\n this.array[index + 0] = x2;\n this.array[index + 1] = y;\n this.array[index + 2] = z;\n this.array[index + 3] = w;\n return this;\n }\n onUpload(callback) {\n this.onUploadCallback = callback;\n return this;\n }\n clone() {\n return new this.constructor(this.array, this.itemSize).copy(this);\n }\n toJSON() {\n const data = {\n itemSize: this.itemSize,\n type: this.array.constructor.name,\n array: Array.from(this.array),\n normalized: this.normalized\n };\n if (this.name !== "") data.name = this.name;\n if (this.usage !== StaticDrawUsage) data.usage = this.usage;\n return data;\n }\n }\n class Uint16BufferAttribute extends BufferAttribute {\n constructor(array, itemSize, normalized) {\n super(new Uint16Array(array), itemSize, normalized);\n }\n }\n class Uint32BufferAttribute extends BufferAttribute {\n constructor(array, itemSize, normalized) {\n super(new Uint32Array(array), itemSize, normalized);\n }\n }\n class Float32BufferAttribute extends BufferAttribute {\n constructor(array, itemSize, normalized) {\n super(new Float32Array(array), itemSize, normalized);\n }\n }\n let _id$1 = 0;\n const _m1 = /* @__PURE__ */ new Matrix4();\n const _obj = /* @__PURE__ */ new Object3D();\n const _offset = /* @__PURE__ */ new Vector3();\n const _box$2 = /* @__PURE__ */ new Box3();\n const _boxMorphTargets = /* @__PURE__ */ new Box3();\n const _vector$8 = /* @__PURE__ */ new Vector3();\n class BufferGeometry extends EventDispatcher {\n constructor() {\n super();\n this.isBufferGeometry = true;\n Object.defineProperty(this, "id", { value: _id$1++ });\n this.uuid = generateUUID();\n this.name = "";\n this.type = "BufferGeometry";\n this.index = null;\n this.indirect = null;\n this.attributes = {};\n this.morphAttributes = {};\n this.morphTargetsRelative = false;\n this.groups = [];\n this.boundingBox = null;\n this.boundingSphere = null;\n this.drawRange = { start: 0, count: Infinity };\n this.userData = {};\n }\n getIndex() {\n return this.index;\n }\n setIndex(index) {\n if (Array.isArray(index)) {\n this.index = new (arrayNeedsUint32(index) ? Uint32BufferAttribute : Uint16BufferAttribute)(index, 1);\n } else {\n this.index = index;\n }\n return this;\n }\n setIndirect(indirect) {\n this.indirect = indirect;\n return this;\n }\n getIndirect() {\n return this.indirect;\n }\n getAttribute(name) {\n return this.attributes[name];\n }\n setAttribute(name, attribute) {\n this.attributes[name] = attribute;\n return this;\n }\n deleteAttribute(name) {\n delete this.attributes[name];\n return this;\n }\n hasAttribute(name) {\n return this.attributes[name] !== void 0;\n }\n addGroup(start, count, materialIndex = 0) {\n this.groups.push({\n start,\n count,\n materialIndex\n });\n }\n clearGroups() {\n this.groups = [];\n }\n setDrawRange(start, count) {\n this.drawRange.start = start;\n this.drawRange.count = count;\n }\n applyMatrix4(matrix) {\n const position = this.attributes.position;\n if (position !== void 0) {\n position.applyMatrix4(matrix);\n position.needsUpdate = true;\n }\n const normal = this.attributes.normal;\n if (normal !== void 0) {\n const normalMatrix = new Matrix3().getNormalMatrix(matrix);\n normal.applyNormalMatrix(normalMatrix);\n normal.needsUpdate = true;\n }\n const tangent = this.attributes.tangent;\n if (tangent !== void 0) {\n tangent.transformDirection(matrix);\n tangent.needsUpdate = true;\n }\n if (this.boundingBox !== null) {\n this.computeBoundingBox();\n }\n if (this.boundingSphere !== null) {\n this.computeBoundingSphere();\n }\n return this;\n }\n applyQuaternion(q) {\n _m1.makeRotationFromQuaternion(q);\n this.applyMatrix4(_m1);\n return this;\n }\n rotateX(angle) {\n _m1.makeRotationX(angle);\n this.applyMatrix4(_m1);\n return this;\n }\n rotateY(angle) {\n _m1.makeRotationY(angle);\n this.applyMatrix4(_m1);\n return this;\n }\n rotateZ(angle) {\n _m1.makeRotationZ(angle);\n this.applyMatrix4(_m1);\n return this;\n }\n translate(x2, y, z) {\n _m1.makeTranslation(x2, y, z);\n this.applyMatrix4(_m1);\n return this;\n }\n scale(x2, y, z) {\n _m1.makeScale(x2, y, z);\n this.applyMatrix4(_m1);\n return this;\n }\n lookAt(vector) {\n _obj.lookAt(vector);\n _obj.updateMatrix();\n this.applyMatrix4(_obj.matrix);\n return this;\n }\n center() {\n this.computeBoundingBox();\n this.boundingBox.getCenter(_offset).negate();\n this.translate(_offset.x, _offset.y, _offset.z);\n return this;\n }\n setFromPoints(points) {\n const positionAttribute = this.getAttribute("position");\n if (positionAttribute === void 0) {\n const position = [];\n for (let i2 = 0, l = points.length; i2 < l; i2++) {\n const point = points[i2];\n position.push(point.x, point.y, point.z || 0);\n }\n this.setAttribute("position", new Float32BufferAttribute(position, 3));\n } else {\n const l = Math.min(points.length, positionAttribute.count);\n for (let i2 = 0; i2 < l; i2++) {\n const point = points[i2];\n positionAttribute.setXYZ(i2, point.x, point.y, point.z || 0);\n }\n if (points.length > positionAttribute.count) {\n console.warn("THREE.BufferGeometry: Buffer size too small for points data. Use .dispose() and create a new geometry.");\n }\n positionAttribute.needsUpdate = true;\n }\n return this;\n }\n computeBoundingBox() {\n if (this.boundingBox === null) {\n this.boundingBox = new Box3();\n }\n const position = this.attributes.position;\n const morphAttributesPosition = this.morphAttributes.position;\n if (position && position.isGLBufferAttribute) {\n console.error("THREE.BufferGeometry.computeBoundingBox(): GLBufferAttribute requires a manual bounding box.", this);\n this.boundingBox.set(\n new Vector3(-Infinity, -Infinity, -Infinity),\n new Vector3(Infinity, Infinity, Infinity)\n );\n return;\n }\n if (position !== void 0) {\n this.boundingBox.setFromBufferAttribute(position);\n if (morphAttributesPosition) {\n for (let i2 = 0, il = morphAttributesPosition.length; i2 < il; i2++) {\n const morphAttribute = morphAttributesPosition[i2];\n _box$2.setFromBufferAttribute(morphAttribute);\n if (this.morphTargetsRelative) {\n _vector$8.addVectors(this.boundingBox.min, _box$2.min);\n this.boundingBox.expandByPoint(_vector$8);\n _vector$8.addVectors(this.boundingBox.max, _box$2.max);\n this.boundingBox.expandByPoint(_vector$8);\n } else {\n this.boundingBox.expandByPoint(_box$2.min);\n this.boundingBox.expandByPoint(_box$2.max);\n }\n }\n }\n } else {\n this.boundingBox.makeEmpty();\n }\n if (isNaN(this.boundingBox.min.x) || isNaN(this.boundingBox.min.y) || isNaN(this.boundingBox.min.z)) {\n console.error(\'THREE.BufferGeometry.computeBoundingBox(): Computed min/max have NaN values. The "position" attribute is likely to have NaN values.\', this);\n }\n }\n computeBoundingSphere() {\n if (this.boundingSphere === null) {\n this.boundingSphere = new Sphere();\n }\n const position = this.attributes.position;\n const morphAttributesPosition = this.morphAttributes.position;\n if (position && position.isGLBufferAttribute) {\n console.error("THREE.BufferGeometry.computeBoundingSphere(): GLBufferAttribute requires a manual bounding sphere.", this);\n this.boundingSphere.set(new Vector3(), Infinity);\n return;\n }\n if (position) {\n const center = this.boundingSphere.center;\n _box$2.setFromBufferAttribute(position);\n if (morphAttributesPosition) {\n for (let i2 = 0, il = morphAttributesPosition.length; i2 < il; i2++) {\n const morphAttribute = morphAttributesPosition[i2];\n _boxMorphTargets.setFromBufferAttribute(morphAttribute);\n if (this.morphTargetsRelative) {\n _vector$8.addVectors(_box$2.min, _boxMorphTargets.min);\n _box$2.expandByPoint(_vector$8);\n _vector$8.addVectors(_box$2.max, _boxMorphTargets.max);\n _box$2.expandByPoint(_vector$8);\n } else {\n _box$2.expandByPoint(_boxMorphTargets.min);\n _box$2.expandByPoint(_boxMorphTargets.max);\n }\n }\n }\n _box$2.getCenter(center);\n let maxRadiusSq = 0;\n for (let i2 = 0, il = position.count; i2 < il; i2++) {\n _vector$8.fromBufferAttribute(position, i2);\n maxRadiusSq = Math.max(maxRadiusSq, center.distanceToSquared(_vector$8));\n }\n if (morphAttributesPosition) {\n for (let i2 = 0, il = morphAttributesPosition.length; i2 < il; i2++) {\n const morphAttribute = morphAttributesPosition[i2];\n const morphTargetsRelative = this.morphTargetsRelative;\n for (let j = 0, jl = morphAttribute.count; j < jl; j++) {\n _vector$8.fromBufferAttribute(morphAttribute, j);\n if (morphTargetsRelative) {\n _offset.fromBufferAttribute(position, j);\n _vector$8.add(_offset);\n }\n maxRadiusSq = Math.max(maxRadiusSq, center.distanceToSquared(_vector$8));\n }\n }\n }\n this.boundingSphere.radius = Math.sqrt(maxRadiusSq);\n if (isNaN(this.boundingSphere.radius)) {\n console.error(\'THREE.BufferGeometry.computeBoundingSphere(): Computed radius is NaN. The "position" attribute is likely to have NaN values.\', this);\n }\n }\n }\n computeTangents() {\n const index = this.index;\n const attributes = this.attributes;\n if (index === null || attributes.position === void 0 || attributes.normal === void 0 || attributes.uv === void 0) {\n console.error("THREE.BufferGeometry: .computeTangents() failed. Missing required attributes (index, position, normal or uv)");\n return;\n }\n const positionAttribute = attributes.position;\n const normalAttribute = attributes.normal;\n const uvAttribute = attributes.uv;\n if (this.hasAttribute("tangent") === false) {\n this.setAttribute("tangent", new BufferAttribute(new Float32Array(4 * positionAttribute.count), 4));\n }\n const tangentAttribute = this.getAttribute("tangent");\n const tan1 = [], tan2 = [];\n for (let i2 = 0; i2 < positionAttribute.count; i2++) {\n tan1[i2] = new Vector3();\n tan2[i2] = new Vector3();\n }\n const vA = new Vector3(), vB = new Vector3(), vC = new Vector3(), uvA = new Vector2(), uvB = new Vector2(), uvC = new Vector2(), sdir = new Vector3(), tdir = new Vector3();\n function handleTriangle(a, b, c) {\n vA.fromBufferAttribute(positionAttribute, a);\n vB.fromBufferAttribute(positionAttribute, b);\n vC.fromBufferAttribute(positionAttribute, c);\n uvA.fromBufferAttribute(uvAttribute, a);\n uvB.fromBufferAttribute(uvAttribute, b);\n uvC.fromBufferAttribute(uvAttribute, c);\n vB.sub(vA);\n vC.sub(vA);\n uvB.sub(uvA);\n uvC.sub(uvA);\n const r = 1 / (uvB.x * uvC.y - uvC.x * uvB.y);\n if (!isFinite(r)) return;\n sdir.copy(vB).multiplyScalar(uvC.y).addScaledVector(vC, -uvB.y).multiplyScalar(r);\n tdir.copy(vC).multiplyScalar(uvB.x).addScaledVector(vB, -uvC.x).multiplyScalar(r);\n tan1[a].add(sdir);\n tan1[b].add(sdir);\n tan1[c].add(sdir);\n tan2[a].add(tdir);\n tan2[b].add(tdir);\n tan2[c].add(tdir);\n }\n let groups = this.groups;\n if (groups.length === 0) {\n groups = [{\n start: 0,\n count: index.count\n }];\n }\n for (let i2 = 0, il = groups.length; i2 < il; ++i2) {\n const group = groups[i2];\n const start = group.start;\n const count = group.count;\n for (let j = start, jl = start + count; j < jl; j += 3) {\n handleTriangle(\n index.getX(j + 0),\n index.getX(j + 1),\n index.getX(j + 2)\n );\n }\n }\n const tmp = new Vector3(), tmp2 = new Vector3();\n const n = new Vector3(), n2 = new Vector3();\n function handleVertex(v) {\n n.fromBufferAttribute(normalAttribute, v);\n n2.copy(n);\n const t = tan1[v];\n tmp.copy(t);\n tmp.sub(n.multiplyScalar(n.dot(t))).normalize();\n tmp2.crossVectors(n2, t);\n const test = tmp2.dot(tan2[v]);\n const w = test < 0 ? -1 : 1;\n tangentAttribute.setXYZW(v, tmp.x, tmp.y, tmp.z, w);\n }\n for (let i2 = 0, il = groups.length; i2 < il; ++i2) {\n const group = groups[i2];\n const start = group.start;\n const count = group.count;\n for (let j = start, jl = start + count; j < jl; j += 3) {\n handleVertex(index.getX(j + 0));\n handleVertex(index.getX(j + 1));\n handleVertex(index.getX(j + 2));\n }\n }\n }\n computeVertexNormals() {\n const index = this.index;\n const positionAttribute = this.getAttribute("position");\n if (positionAttribute !== void 0) {\n let normalAttribute = this.getAttribute("normal");\n if (normalAttribute === void 0) {\n normalAttribute = new BufferAttribute(new Float32Array(positionAttribute.count * 3), 3);\n this.setAttribute("normal", normalAttribute);\n } else {\n for (let i2 = 0, il = normalAttribute.count; i2 < il; i2++) {\n normalAttribute.setXYZ(i2, 0, 0, 0);\n }\n }\n const pA = new Vector3(), pB = new Vector3(), pC = new Vector3();\n const nA = new Vector3(), nB = new Vector3(), nC = new Vector3();\n const cb = new Vector3(), ab = new Vector3();\n if (index) {\n for (let i2 = 0, il = index.count; i2 < il; i2 += 3) {\n const vA = index.getX(i2 + 0);\n const vB = index.getX(i2 + 1);\n const vC = index.getX(i2 + 2);\n pA.fromBufferAttribute(positionAttribute, vA);\n pB.fromBufferAttribute(positionAttribute, vB);\n pC.fromBufferAttribute(positionAttribute, vC);\n cb.subVectors(pC, pB);\n ab.subVectors(pA, pB);\n cb.cross(ab);\n nA.fromBufferAttribute(normalAttribute, vA);\n nB.fromBufferAttribute(normalAttribute, vB);\n nC.fromBufferAttribute(normalAttribute, vC);\n nA.add(cb);\n nB.add(cb);\n nC.add(cb);\n normalAttribute.setXYZ(vA, nA.x, nA.y, nA.z);\n normalAttribute.setXYZ(vB, nB.x, nB.y, nB.z);\n normalAttribute.setXYZ(vC, nC.x, nC.y, nC.z);\n }\n } else {\n for (let i2 = 0, il = positionAttribute.count; i2 < il; i2 += 3) {\n pA.fromBufferAttribute(positionAttribute, i2 + 0);\n pB.fromBufferAttribute(positionAttribute, i2 + 1);\n pC.fromBufferAttribute(positionAttribute, i2 + 2);\n cb.subVectors(pC, pB);\n ab.subVectors(pA, pB);\n cb.cross(ab);\n normalAttribute.setXYZ(i2 + 0, cb.x, cb.y, cb.z);\n normalAttribute.setXYZ(i2 + 1, cb.x, cb.y, cb.z);\n normalAttribute.setXYZ(i2 + 2, cb.x, cb.y, cb.z);\n }\n }\n this.normalizeNormals();\n normalAttribute.needsUpdate = true;\n }\n }\n normalizeNormals() {\n const normals = this.attributes.normal;\n for (let i2 = 0, il = normals.count; i2 < il; i2++) {\n _vector$8.fromBufferAttribute(normals, i2);\n _vector$8.normalize();\n normals.setXYZ(i2, _vector$8.x, _vector$8.y, _vector$8.z);\n }\n }\n toNonIndexed() {\n function convertBufferAttribute(attribute, indices2) {\n const array = attribute.array;\n const itemSize = attribute.itemSize;\n const normalized = attribute.normalized;\n const array2 = new array.constructor(indices2.length * itemSize);\n let index = 0, index2 = 0;\n for (let i2 = 0, l = indices2.length; i2 < l; i2++) {\n if (attribute.isInterleavedBufferAttribute) {\n index = indices2[i2] * attribute.data.stride + attribute.offset;\n } else {\n index = indices2[i2] * itemSize;\n }\n for (let j = 0; j < itemSize; j++) {\n array2[index2++] = array[index++];\n }\n }\n return new BufferAttribute(array2, itemSize, normalized);\n }\n if (this.index === null) {\n console.warn("THREE.BufferGeometry.toNonIndexed(): BufferGeometry is already non-indexed.");\n return this;\n }\n const geometry2 = new BufferGeometry();\n const indices = this.index.array;\n const attributes = this.attributes;\n for (const name in attributes) {\n const attribute = attributes[name];\n const newAttribute = convertBufferAttribute(attribute, indices);\n geometry2.setAttribute(name, newAttribute);\n }\n const morphAttributes = this.morphAttributes;\n for (const name in morphAttributes) {\n const morphArray = [];\n const morphAttribute = morphAttributes[name];\n for (let i2 = 0, il = morphAttribute.length; i2 < il; i2++) {\n const attribute = morphAttribute[i2];\n const newAttribute = convertBufferAttribute(attribute, indices);\n morphArray.push(newAttribute);\n }\n geometry2.morphAttributes[name] = morphArray;\n }\n geometry2.morphTargetsRelative = this.morphTargetsRelative;\n const groups = this.groups;\n for (let i2 = 0, l = groups.length; i2 < l; i2++) {\n const group = groups[i2];\n geometry2.addGroup(group.start, group.count, group.materialIndex);\n }\n return geometry2;\n }\n toJSON() {\n const data = {\n metadata: {\n version: 4.6,\n type: "BufferGeometry",\n generator: "BufferGeometry.toJSON"\n }\n };\n data.uuid = this.uuid;\n data.type = this.type;\n if (this.name !== "") data.name = this.name;\n if (Object.keys(this.userData).length > 0) data.userData = this.userData;\n if (this.parameters !== void 0) {\n const parameters = this.parameters;\n for (const key in parameters) {\n if (parameters[key] !== void 0) data[key] = parameters[key];\n }\n return data;\n }\n data.data = { attributes: {} };\n const index = this.index;\n if (index !== null) {\n data.data.index = {\n type: index.array.constructor.name,\n array: Array.prototype.slice.call(index.array)\n };\n }\n const attributes = this.attributes;\n for (const key in attributes) {\n const attribute = attributes[key];\n data.data.attributes[key] = attribute.toJSON(data.data);\n }\n const morphAttributes = {};\n let hasMorphAttributes = false;\n for (const key in this.morphAttributes) {\n const attributeArray = this.morphAttributes[key];\n const array = [];\n for (let i2 = 0, il = attributeArray.length; i2 < il; i2++) {\n const attribute = attributeArray[i2];\n array.push(attribute.toJSON(data.data));\n }\n if (array.length > 0) {\n morphAttributes[key] = array;\n hasMorphAttributes = true;\n }\n }\n if (hasMorphAttributes) {\n data.data.morphAttributes = morphAttributes;\n data.data.morphTargetsRelative = this.morphTargetsRelative;\n }\n const groups = this.groups;\n if (groups.length > 0) {\n data.data.groups = JSON.parse(JSON.stringify(groups));\n }\n const boundingSphere = this.boundingSphere;\n if (boundingSphere !== null) {\n data.data.boundingSphere = {\n center: boundingSphere.center.toArray(),\n radius: boundingSphere.radius\n };\n }\n return data;\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(source) {\n this.index = null;\n this.attributes = {};\n this.morphAttributes = {};\n this.groups = [];\n this.boundingBox = null;\n this.boundingSphere = null;\n const data = {};\n this.name = source.name;\n const index = source.index;\n if (index !== null) {\n this.setIndex(index.clone(data));\n }\n const attributes = source.attributes;\n for (const name in attributes) {\n const attribute = attributes[name];\n this.setAttribute(name, attribute.clone(data));\n }\n const morphAttributes = source.morphAttributes;\n for (const name in morphAttributes) {\n const array = [];\n const morphAttribute = morphAttributes[name];\n for (let i2 = 0, l = morphAttribute.length; i2 < l; i2++) {\n array.push(morphAttribute[i2].clone(data));\n }\n this.morphAttributes[name] = array;\n }\n this.morphTargetsRelative = source.morphTargetsRelative;\n const groups = source.groups;\n for (let i2 = 0, l = groups.length; i2 < l; i2++) {\n const group = groups[i2];\n this.addGroup(group.start, group.count, group.materialIndex);\n }\n const boundingBox = source.boundingBox;\n if (boundingBox !== null) {\n this.boundingBox = boundingBox.clone();\n }\n const boundingSphere = source.boundingSphere;\n if (boundingSphere !== null) {\n this.boundingSphere = boundingSphere.clone();\n }\n this.drawRange.start = source.drawRange.start;\n this.drawRange.count = source.drawRange.count;\n this.userData = source.userData;\n return this;\n }\n dispose() {\n this.dispatchEvent({ type: "dispose" });\n }\n }\n const _inverseMatrix$3 = /* @__PURE__ */ new Matrix4();\n const _ray$3 = /* @__PURE__ */ new Ray();\n const _sphere$6 = /* @__PURE__ */ new Sphere();\n const _sphereHitAt = /* @__PURE__ */ new Vector3();\n const _vA$1 = /* @__PURE__ */ new Vector3();\n const _vB$1 = /* @__PURE__ */ new Vector3();\n const _vC$1 = /* @__PURE__ */ new Vector3();\n const _tempA = /* @__PURE__ */ new Vector3();\n const _morphA = /* @__PURE__ */ new Vector3();\n const _intersectionPoint = /* @__PURE__ */ new Vector3();\n const _intersectionPointWorld = /* @__PURE__ */ new Vector3();\n class Mesh extends Object3D {\n constructor(geometry = new BufferGeometry(), material = new MeshBasicMaterial()) {\n super();\n this.isMesh = true;\n this.type = "Mesh";\n this.geometry = geometry;\n this.material = material;\n this.updateMorphTargets();\n }\n copy(source, recursive) {\n super.copy(source, recursive);\n if (source.morphTargetInfluences !== void 0) {\n this.morphTargetInfluences = source.morphTargetInfluences.slice();\n }\n if (source.morphTargetDictionary !== void 0) {\n this.morphTargetDictionary = Object.assign({}, source.morphTargetDictionary);\n }\n this.material = Array.isArray(source.material) ? source.material.slice() : source.material;\n this.geometry = source.geometry;\n return this;\n }\n updateMorphTargets() {\n const geometry = this.geometry;\n const morphAttributes = geometry.morphAttributes;\n const keys = Object.keys(morphAttributes);\n if (keys.length > 0) {\n const morphAttribute = morphAttributes[keys[0]];\n if (morphAttribute !== void 0) {\n this.morphTargetInfluences = [];\n this.morphTargetDictionary = {};\n for (let m = 0, ml = morphAttribute.length; m < ml; m++) {\n const name = morphAttribute[m].name || String(m);\n this.morphTargetInfluences.push(0);\n this.morphTargetDictionary[name] = m;\n }\n }\n }\n }\n getVertexPosition(index, target) {\n const geometry = this.geometry;\n const position = geometry.attributes.position;\n const morphPosition = geometry.morphAttributes.position;\n const morphTargetsRelative = geometry.morphTargetsRelative;\n target.fromBufferAttribute(position, index);\n const morphInfluences = this.morphTargetInfluences;\n if (morphPosition && morphInfluences) {\n _morphA.set(0, 0, 0);\n for (let i2 = 0, il = morphPosition.length; i2 < il; i2++) {\n const influence = morphInfluences[i2];\n const morphAttribute = morphPosition[i2];\n if (influence === 0) continue;\n _tempA.fromBufferAttribute(morphAttribute, index);\n if (morphTargetsRelative) {\n _morphA.addScaledVector(_tempA, influence);\n } else {\n _morphA.addScaledVector(_tempA.sub(target), influence);\n }\n }\n target.add(_morphA);\n }\n return target;\n }\n raycast(raycaster, intersects) {\n const geometry = this.geometry;\n const material = this.material;\n const matrixWorld = this.matrixWorld;\n if (material === void 0) return;\n if (geometry.boundingSphere === null) geometry.computeBoundingSphere();\n _sphere$6.copy(geometry.boundingSphere);\n _sphere$6.applyMatrix4(matrixWorld);\n _ray$3.copy(raycaster.ray).recast(raycaster.near);\n if (_sphere$6.containsPoint(_ray$3.origin) === false) {\n if (_ray$3.intersectSphere(_sphere$6, _sphereHitAt) === null) return;\n if (_ray$3.origin.distanceToSquared(_sphereHitAt) > (raycaster.far - raycaster.near) ** 2) return;\n }\n _inverseMatrix$3.copy(matrixWorld).invert();\n _ray$3.copy(raycaster.ray).applyMatrix4(_inverseMatrix$3);\n if (geometry.boundingBox !== null) {\n if (_ray$3.intersectsBox(geometry.boundingBox) === false) return;\n }\n this._computeIntersections(raycaster, intersects, _ray$3);\n }\n _computeIntersections(raycaster, intersects, rayLocalSpace) {\n let intersection;\n const geometry = this.geometry;\n const material = this.material;\n const index = geometry.index;\n const position = geometry.attributes.position;\n const uv = geometry.attributes.uv;\n const uv1 = geometry.attributes.uv1;\n const normal = geometry.attributes.normal;\n const groups = geometry.groups;\n const drawRange = geometry.drawRange;\n if (index !== null) {\n if (Array.isArray(material)) {\n for (let i2 = 0, il = groups.length; i2 < il; i2++) {\n const group = groups[i2];\n const groupMaterial = material[group.materialIndex];\n const start = Math.max(group.start, drawRange.start);\n const end = Math.min(index.count, Math.min(group.start + group.count, drawRange.start + drawRange.count));\n for (let j = start, jl = end; j < jl; j += 3) {\n const a = index.getX(j);\n const b = index.getX(j + 1);\n const c = index.getX(j + 2);\n intersection = checkGeometryIntersection(this, groupMaterial, raycaster, rayLocalSpace, uv, uv1, normal, a, b, c);\n if (intersection) {\n intersection.faceIndex = Math.floor(j / 3);\n intersection.face.materialIndex = group.materialIndex;\n intersects.push(intersection);\n }\n }\n }\n } else {\n const start = Math.max(0, drawRange.start);\n const end = Math.min(index.count, drawRange.start + drawRange.count);\n for (let i2 = start, il = end; i2 < il; i2 += 3) {\n const a = index.getX(i2);\n const b = index.getX(i2 + 1);\n const c = index.getX(i2 + 2);\n intersection = checkGeometryIntersection(this, material, raycaster, rayLocalSpace, uv, uv1, normal, a, b, c);\n if (intersection) {\n intersection.faceIndex = Math.floor(i2 / 3);\n intersects.push(intersection);\n }\n }\n }\n } else if (position !== void 0) {\n if (Array.isArray(material)) {\n for (let i2 = 0, il = groups.length; i2 < il; i2++) {\n const group = groups[i2];\n const groupMaterial = material[group.materialIndex];\n const start = Math.max(group.start, drawRange.start);\n const end = Math.min(position.count, Math.min(group.start + group.count, drawRange.start + drawRange.count));\n for (let j = start, jl = end; j < jl; j += 3) {\n const a = j;\n const b = j + 1;\n const c = j + 2;\n intersection = checkGeometryIntersection(this, groupMaterial, raycaster, rayLocalSpace, uv, uv1, normal, a, b, c);\n if (intersection) {\n intersection.faceIndex = Math.floor(j / 3);\n intersection.face.materialIndex = group.materialIndex;\n intersects.push(intersection);\n }\n }\n }\n } else {\n const start = Math.max(0, drawRange.start);\n const end = Math.min(position.count, drawRange.start + drawRange.count);\n for (let i2 = start, il = end; i2 < il; i2 += 3) {\n const a = i2;\n const b = i2 + 1;\n const c = i2 + 2;\n intersection = checkGeometryIntersection(this, material, raycaster, rayLocalSpace, uv, uv1, normal, a, b, c);\n if (intersection) {\n intersection.faceIndex = Math.floor(i2 / 3);\n intersects.push(intersection);\n }\n }\n }\n }\n }\n }\n function checkIntersection$1(object, material, raycaster, ray, pA, pB, pC, point) {\n let intersect;\n if (material.side === BackSide) {\n intersect = ray.intersectTriangle(pC, pB, pA, true, point);\n } else {\n intersect = ray.intersectTriangle(pA, pB, pC, material.side === FrontSide, point);\n }\n if (intersect === null) return null;\n _intersectionPointWorld.copy(point);\n _intersectionPointWorld.applyMatrix4(object.matrixWorld);\n const distance = raycaster.ray.origin.distanceTo(_intersectionPointWorld);\n if (distance < raycaster.near || distance > raycaster.far) return null;\n return {\n distance,\n point: _intersectionPointWorld.clone(),\n object\n };\n }\n function checkGeometryIntersection(object, material, raycaster, ray, uv, uv1, normal, a, b, c) {\n object.getVertexPosition(a, _vA$1);\n object.getVertexPosition(b, _vB$1);\n object.getVertexPosition(c, _vC$1);\n const intersection = checkIntersection$1(object, material, raycaster, ray, _vA$1, _vB$1, _vC$1, _intersectionPoint);\n if (intersection) {\n const barycoord = new Vector3();\n Triangle.getBarycoord(_intersectionPoint, _vA$1, _vB$1, _vC$1, barycoord);\n if (uv) {\n intersection.uv = Triangle.getInterpolatedAttribute(uv, a, b, c, barycoord, new Vector2());\n }\n if (uv1) {\n intersection.uv1 = Triangle.getInterpolatedAttribute(uv1, a, b, c, barycoord, new Vector2());\n }\n if (normal) {\n intersection.normal = Triangle.getInterpolatedAttribute(normal, a, b, c, barycoord, new Vector3());\n if (intersection.normal.dot(ray.direction) > 0) {\n intersection.normal.multiplyScalar(-1);\n }\n }\n const face = {\n a,\n b,\n c,\n normal: new Vector3(),\n materialIndex: 0\n };\n Triangle.getNormal(_vA$1, _vB$1, _vC$1, face.normal);\n intersection.face = face;\n intersection.barycoord = barycoord;\n }\n return intersection;\n }\n function cloneUniforms(src) {\n const dst = {};\n for (const u in src) {\n dst[u] = {};\n for (const p in src[u]) {\n const property = src[u][p];\n if (property && (property.isColor || property.isMatrix3 || property.isMatrix4 || property.isVector2 || property.isVector3 || property.isVector4 || property.isTexture || property.isQuaternion)) {\n if (property.isRenderTargetTexture) {\n console.warn("UniformsUtils: Textures of render targets cannot be cloned via cloneUniforms() or mergeUniforms().");\n dst[u][p] = null;\n } else {\n dst[u][p] = property.clone();\n }\n } else if (Array.isArray(property)) {\n dst[u][p] = property.slice();\n } else {\n dst[u][p] = property;\n }\n }\n }\n return dst;\n }\n function cloneUniformsGroups(src) {\n const dst = [];\n for (let u = 0; u < src.length; u++) {\n dst.push(src[u].clone());\n }\n return dst;\n }\n var default_vertex = "void main() {\\n gl_Position = projectionMatrix * modelViewMatrix * vec4( position, 1.0 );\\n}";\n var default_fragment = "void main() {\\n gl_FragColor = vec4( 1.0, 0.0, 0.0, 1.0 );\\n}";\n class ShaderMaterial extends Material {\n constructor(parameters) {\n super();\n this.isShaderMaterial = true;\n this.type = "ShaderMaterial";\n this.defines = {};\n this.uniforms = {};\n this.uniformsGroups = [];\n this.vertexShader = default_vertex;\n this.fragmentShader = default_fragment;\n this.linewidth = 1;\n this.wireframe = false;\n this.wireframeLinewidth = 1;\n this.fog = false;\n this.lights = false;\n this.clipping = false;\n this.forceSinglePass = true;\n this.extensions = {\n clipCullDistance: false,\n // set to use vertex shader clipping\n multiDraw: false\n // set to use vertex shader multi_draw / enable gl_DrawID\n };\n this.defaultAttributeValues = {\n "color": [1, 1, 1],\n "uv": [0, 0],\n "uv1": [0, 0]\n };\n this.index0AttributeName = void 0;\n this.uniformsNeedUpdate = false;\n this.glslVersion = null;\n if (parameters !== void 0) {\n this.setValues(parameters);\n }\n }\n copy(source) {\n super.copy(source);\n this.fragmentShader = source.fragmentShader;\n this.vertexShader = source.vertexShader;\n this.uniforms = cloneUniforms(source.uniforms);\n this.uniformsGroups = cloneUniformsGroups(source.uniformsGroups);\n this.defines = Object.assign({}, source.defines);\n this.wireframe = source.wireframe;\n this.wireframeLinewidth = source.wireframeLinewidth;\n this.fog = source.fog;\n this.lights = source.lights;\n this.clipping = source.clipping;\n this.extensions = Object.assign({}, source.extensions);\n this.glslVersion = source.glslVersion;\n return this;\n }\n toJSON(meta) {\n const data = super.toJSON(meta);\n data.glslVersion = this.glslVersion;\n data.uniforms = {};\n for (const name in this.uniforms) {\n const uniform = this.uniforms[name];\n const value = uniform.value;\n if (value && value.isTexture) {\n data.uniforms[name] = {\n type: "t",\n value: value.toJSON(meta).uuid\n };\n } else if (value && value.isColor) {\n data.uniforms[name] = {\n type: "c",\n value: value.getHex()\n };\n } else if (value && value.isVector2) {\n data.uniforms[name] = {\n type: "v2",\n value: value.toArray()\n };\n } else if (value && value.isVector3) {\n data.uniforms[name] = {\n type: "v3",\n value: value.toArray()\n };\n } else if (value && value.isVector4) {\n data.uniforms[name] = {\n type: "v4",\n value: value.toArray()\n };\n } else if (value && value.isMatrix3) {\n data.uniforms[name] = {\n type: "m3",\n value: value.toArray()\n };\n } else if (value && value.isMatrix4) {\n data.uniforms[name] = {\n type: "m4",\n value: value.toArray()\n };\n } else {\n data.uniforms[name] = {\n value\n };\n }\n }\n if (Object.keys(this.defines).length > 0) data.defines = this.defines;\n data.vertexShader = this.vertexShader;\n data.fragmentShader = this.fragmentShader;\n data.lights = this.lights;\n data.clipping = this.clipping;\n const extensions = {};\n for (const key in this.extensions) {\n if (this.extensions[key] === true) extensions[key] = true;\n }\n if (Object.keys(extensions).length > 0) data.extensions = extensions;\n return data;\n }\n }\n class Camera extends Object3D {\n constructor() {\n super();\n this.isCamera = true;\n this.type = "Camera";\n this.matrixWorldInverse = new Matrix4();\n this.projectionMatrix = new Matrix4();\n this.projectionMatrixInverse = new Matrix4();\n this.coordinateSystem = WebGLCoordinateSystem;\n }\n copy(source, recursive) {\n super.copy(source, recursive);\n this.matrixWorldInverse.copy(source.matrixWorldInverse);\n this.projectionMatrix.copy(source.projectionMatrix);\n this.projectionMatrixInverse.copy(source.projectionMatrixInverse);\n this.coordinateSystem = source.coordinateSystem;\n return this;\n }\n getWorldDirection(target) {\n return super.getWorldDirection(target).negate();\n }\n updateMatrixWorld(force) {\n super.updateMatrixWorld(force);\n this.matrixWorldInverse.copy(this.matrixWorld).invert();\n }\n updateWorldMatrix(updateParents, updateChildren) {\n super.updateWorldMatrix(updateParents, updateChildren);\n this.matrixWorldInverse.copy(this.matrixWorld).invert();\n }\n clone() {\n return new this.constructor().copy(this);\n }\n }\n class Scene extends Object3D {\n constructor() {\n super();\n this.isScene = true;\n this.type = "Scene";\n this.background = null;\n this.environment = null;\n this.fog = null;\n this.backgroundBlurriness = 0;\n this.backgroundIntensity = 1;\n this.backgroundRotation = new Euler();\n this.environmentIntensity = 1;\n this.environmentRotation = new Euler();\n this.overrideMaterial = null;\n if (typeof __THREE_DEVTOOLS__ !== "undefined") {\n __THREE_DEVTOOLS__.dispatchEvent(new CustomEvent("observe", { detail: this }));\n }\n }\n copy(source, recursive) {\n super.copy(source, recursive);\n if (source.background !== null) this.background = source.background.clone();\n if (source.environment !== null) this.environment = source.environment.clone();\n if (source.fog !== null) this.fog = source.fog.clone();\n this.backgroundBlurriness = source.backgroundBlurriness;\n this.backgroundIntensity = source.backgroundIntensity;\n this.backgroundRotation.copy(source.backgroundRotation);\n this.environmentIntensity = source.environmentIntensity;\n this.environmentRotation.copy(source.environmentRotation);\n if (source.overrideMaterial !== null) this.overrideMaterial = source.overrideMaterial.clone();\n this.matrixAutoUpdate = source.matrixAutoUpdate;\n return this;\n }\n toJSON(meta) {\n const data = super.toJSON(meta);\n if (this.fog !== null) data.object.fog = this.fog.toJSON();\n if (this.backgroundBlurriness > 0) data.object.backgroundBlurriness = this.backgroundBlurriness;\n if (this.backgroundIntensity !== 1) data.object.backgroundIntensity = this.backgroundIntensity;\n data.object.backgroundRotation = this.backgroundRotation.toArray();\n if (this.environmentIntensity !== 1) data.object.environmentIntensity = this.environmentIntensity;\n data.object.environmentRotation = this.environmentRotation.toArray();\n return data;\n }\n }\n class DataTexture extends Texture {\n constructor(data = null, width = 1, height = 1, format, type, mapping, wrapS, wrapT, magFilter = NearestFilter, minFilter = NearestFilter, anisotropy, colorSpace) {\n super(null, mapping, wrapS, wrapT, magFilter, minFilter, format, type, anisotropy, colorSpace);\n this.isDataTexture = true;\n this.image = { data, width, height };\n this.generateMipmaps = false;\n this.flipY = false;\n this.unpackAlignment = 1;\n }\n }\n class PlaneGeometry extends BufferGeometry {\n constructor(width = 1, height = 1, widthSegments = 1, heightSegments = 1) {\n super();\n this.type = "PlaneGeometry";\n this.parameters = {\n width,\n height,\n widthSegments,\n heightSegments\n };\n const width_half = width / 2;\n const height_half = height / 2;\n const gridX = Math.floor(widthSegments);\n const gridY = Math.floor(heightSegments);\n const gridX1 = gridX + 1;\n const gridY1 = gridY + 1;\n const segment_width = width / gridX;\n const segment_height = height / gridY;\n const indices = [];\n const vertices = [];\n const normals = [];\n const uvs = [];\n for (let iy = 0; iy < gridY1; iy++) {\n const y = iy * segment_height - height_half;\n for (let ix = 0; ix < gridX1; ix++) {\n const x2 = ix * segment_width - width_half;\n vertices.push(x2, -y, 0);\n normals.push(0, 0, 1);\n uvs.push(ix / gridX);\n uvs.push(1 - iy / gridY);\n }\n }\n for (let iy = 0; iy < gridY; iy++) {\n for (let ix = 0; ix < gridX; ix++) {\n const a = ix + gridX1 * iy;\n const b = ix + gridX1 * (iy + 1);\n const c = ix + 1 + gridX1 * (iy + 1);\n const d = ix + 1 + gridX1 * iy;\n indices.push(a, b, d);\n indices.push(b, c, d);\n }\n }\n this.setIndex(indices);\n this.setAttribute("position", new Float32BufferAttribute(vertices, 3));\n this.setAttribute("normal", new Float32BufferAttribute(normals, 3));\n this.setAttribute("uv", new Float32BufferAttribute(uvs, 2));\n }\n copy(source) {\n super.copy(source);\n this.parameters = Object.assign({}, source.parameters);\n return this;\n }\n static fromJSON(data) {\n return new PlaneGeometry(data.width, data.height, data.widthSegments, data.heightSegments);\n }\n }\n class RawShaderMaterial extends ShaderMaterial {\n constructor(parameters) {\n super(parameters);\n this.isRawShaderMaterial = true;\n this.type = "RawShaderMaterial";\n }\n }\n class Matrix2 {\n constructor(n11, n12, n21, n22) {\n Matrix2.prototype.isMatrix2 = true;\n this.elements = [\n 1,\n 0,\n 0,\n 1\n ];\n if (n11 !== void 0) {\n this.set(n11, n12, n21, n22);\n }\n }\n identity() {\n this.set(\n 1,\n 0,\n 0,\n 1\n );\n return this;\n }\n fromArray(array, offset = 0) {\n for (let i2 = 0; i2 < 4; i2++) {\n this.elements[i2] = array[i2 + offset];\n }\n return this;\n }\n set(n11, n12, n21, n22) {\n const te = this.elements;\n te[0] = n11;\n te[2] = n12;\n te[1] = n21;\n te[3] = n22;\n return this;\n }\n }\n if (typeof __THREE_DEVTOOLS__ !== "undefined") {\n __THREE_DEVTOOLS__.dispatchEvent(new CustomEvent("register", { detail: {\n revision: REVISION\n } }));\n }\n if (typeof window !== "undefined") {\n if (window.__THREE__) {\n console.warn("WARNING: Multiple instances of Three.js being imported.");\n } else {\n window.__THREE__ = REVISION;\n }\n }\n const LN_SCALE_MIN = -9;\n const LN_SCALE_MAX = 9;\n const LN_RESCALE = (LN_SCALE_MAX - LN_SCALE_MIN) / 254;\n const SCALE_MIN = Math.exp(LN_SCALE_MIN);\n const SPLAT_TEX_WIDTH_BITS = 11;\n const SPLAT_TEX_HEIGHT_BITS = 11;\n const SPLAT_TEX_WIDTH = 1 << SPLAT_TEX_WIDTH_BITS;\n const SPLAT_TEX_HEIGHT = 1 << SPLAT_TEX_HEIGHT_BITS;\n const SPLAT_TEX_MIN_HEIGHT = 1;\n const WASM_SPLAT_SORT = true;\n function isIntType(type) {\n return type === "int" || type === "ivec2" || type === "ivec3" || type === "ivec4";\n }\n function isUintType(type) {\n return type === "uint" || type === "uvec2" || type === "uvec3" || type === "uvec4";\n }\n function isFloatType(type) {\n return type === "float" || type === "vec2" || type === "vec3" || type === "vec4";\n }\n function isMatFloatType(type) {\n return type === "mat2" || type === "mat2x2" || type === "mat2x3" || type === "mat2x4" || type === "mat3" || type === "mat3x2" || type === "mat3x3" || type === "mat3x4" || type === "mat4" || type === "mat4x2" || type === "mat4x3" || type === "mat4x4";\n }\n function isAllFloatType(type) {\n return isFloatType(type) || isMatFloatType(type);\n }\n function isMat2(type) {\n return type === "mat2" || type === "mat2x2";\n }\n function isMat3(type) {\n return type === "mat3" || type === "mat3x3";\n }\n function isMat4(type) {\n return type === "mat4" || type === "mat4x4";\n }\n function numberAsInt(value) {\n return Math.trunc(value).toString();\n }\n function numberAsUint(value) {\n const v = Math.max(0, Math.trunc(value));\n return `${v.toString()}u`;\n }\n function numberAsFloat(value) {\n return value === Number.POSITIVE_INFINITY ? "INFINITY" : value === Number.NEGATIVE_INFINITY ? "-INFINITY" : Number.isInteger(value) ? value.toFixed(1) : value.toString();\n }\n function valType(val) {\n if (val instanceof DynoValue) {\n return val.type;\n }\n const value = val.dynoOut();\n return value.type;\n }\n class DynoValue {\n constructor(type) {\n this.__isDynoValue = true;\n this.type = type;\n }\n }\n class DynoOutput extends DynoValue {\n constructor(dyno2, key) {\n super(dyno2.outTypes[key]);\n this.dyno = dyno2;\n this.key = key;\n }\n }\n class DynoLiteral extends DynoValue {\n constructor(type, literal) {\n super(type);\n this.literal = literal;\n }\n getLiteral() {\n return this.literal;\n }\n }\n class DynoConst extends DynoLiteral {\n constructor(type, value) {\n super(type, "");\n this.value = value;\n }\n getLiteral() {\n const { type, value } = this;\n switch (type) {\n case "bool":\n return value ? "true" : "false";\n case "uint":\n return numberAsUint(value);\n case "int":\n return numberAsInt(value);\n case "float":\n return numberAsFloat(value);\n case "bvec2": {\n const v = value;\n return `bvec2(${v[0]}, ${v[1]})`;\n }\n case "uvec2": {\n if (value instanceof Vector2) {\n return `uvec2(${numberAsUint(value.x)}, ${numberAsUint(value.y)})`;\n }\n const v = value;\n return `uvec2(${numberAsUint(v[0])}, ${numberAsUint(v[1])})`;\n }\n case "ivec2": {\n if (value instanceof Vector2) {\n return `ivec2(${numberAsInt(value.x)}, ${numberAsInt(value.y)})`;\n }\n const v = value;\n return `ivec2(${numberAsInt(v[0])}, ${numberAsInt(v[1])})`;\n }\n case "vec2": {\n if (value instanceof Vector2) {\n return `vec2(${numberAsFloat(value.x)}, ${numberAsFloat(value.y)})`;\n }\n const v = value;\n return `vec2(${numberAsFloat(v[0])}, ${numberAsFloat(v[1])})`;\n }\n case "bvec3": {\n const v = value;\n return `bvec3(${v[0]}, ${v[1]}, ${v[2]})`;\n }\n case "uvec3": {\n if (value instanceof Vector3) {\n return `uvec3(${numberAsUint(value.x)}, ${numberAsUint(value.y)}, ${numberAsUint(value.z)})`;\n }\n const v = value;\n return `uvec3(${numberAsUint(v[0])}, ${numberAsUint(v[1])}, ${numberAsUint(v[2])})`;\n }\n case "ivec3": {\n if (value instanceof Vector3) {\n return `ivec3(${numberAsInt(value.x)}, ${numberAsInt(value.y)}, ${numberAsInt(value.z)})`;\n }\n const v = value;\n return `ivec3(${numberAsInt(v[0])}, ${numberAsInt(v[1])}, ${numberAsInt(v[2])})`;\n }\n case "vec3": {\n if (value instanceof Vector3) {\n return `vec3(${numberAsFloat(value.x)}, ${numberAsFloat(value.y)}, ${numberAsFloat(value.z)})`;\n }\n const v = value;\n return `vec3(${numberAsFloat(v[0])}, ${numberAsFloat(v[1])}, ${numberAsFloat(v[2])})`;\n }\n case "bvec4": {\n const v = value;\n return `bvec4(${v[0]}, ${v[1]}, ${v[2]}, ${v[3]})`;\n }\n case "uvec4": {\n if (value instanceof Vector4) {\n return `uvec4(${numberAsUint(value.x)}, ${numberAsUint(value.y)}, ${numberAsUint(value.z)}, ${numberAsUint(value.w)})`;\n }\n const v = value;\n return `uvec4(${numberAsUint(v[0])}, ${numberAsUint(v[1])}, ${numberAsUint(v[2])}, ${numberAsUint(v[3])})`;\n }\n case "ivec4": {\n if (value instanceof Vector4) {\n return `ivec4(${numberAsInt(value.x)}, ${numberAsInt(value.y)}, ${numberAsInt(value.z)}, ${numberAsInt(value.w)})`;\n }\n const v = value;\n return `ivec4(${numberAsInt(v[0])}, ${numberAsInt(v[1])}, ${numberAsInt(v[2])}, ${numberAsInt(v[3])})`;\n }\n case "vec4": {\n if (value instanceof Vector4) {\n return `vec4(${numberAsFloat(value.x)}, ${numberAsFloat(value.y)}, ${numberAsFloat(value.z)}, ${numberAsFloat(value.w)})`;\n }\n if (value instanceof Quaternion) {\n return `vec4(${numberAsFloat(value.x)}, ${numberAsFloat(value.y)}, ${numberAsFloat(value.z)}, ${numberAsFloat(value.w)})`;\n }\n const v = value;\n return `vec4(${numberAsFloat(v[0])}, ${numberAsFloat(v[1])}, ${numberAsFloat(v[2])}, ${numberAsFloat(v[3])})`;\n }\n case "mat2":\n case "mat2x2": {\n const m = value;\n const e = m instanceof Matrix2 ? m.elements : value;\n const arg = new Array(4).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat2x3": {\n const e = value;\n const arg = new Array(6).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat2x4": {\n const e = value;\n const arg = new Array(8).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat3":\n case "mat3x3": {\n const m = value;\n const e = m instanceof Matrix3 ? m.elements : value;\n const arg = new Array(9).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat3x2": {\n const e = value;\n const arg = new Array(6).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat3x4": {\n const e = value;\n const arg = new Array(12).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat4":\n case "mat4x4": {\n const m = value;\n const e = m instanceof Matrix4 ? m.elements : value;\n const arg = new Array(16).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat4x2": {\n const e = value;\n const arg = new Array(8).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat4x3": {\n const e = value;\n const arg = new Array(12).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n default:\n throw new Error(`Type not implemented: ${String(type)}`);\n }\n }\n }\n function dynoConst(type, value) {\n return new DynoConst(type, value);\n }\n const DEFAULT_INDENT = " ";\n class Compilation {\n constructor({ indent } = {}) {\n this.globals = /* @__PURE__ */ new Set();\n this.statements = [];\n this.uniforms = {};\n this.declares = /* @__PURE__ */ new Set();\n this.updaters = [];\n this.sequence = 0;\n this.indent = DEFAULT_INDENT;\n this.indent = indent ?? DEFAULT_INDENT;\n }\n nextSequence() {\n return this.sequence++;\n }\n }\n class Dyno {\n constructor({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n statements,\n generate\n }) {\n this.inTypes = inTypes ?? {};\n this.outTypes = outTypes ?? {};\n this.inputs = inputs ?? {};\n this.update = update;\n this.globals = globals;\n this.statements = statements;\n this.generate = generate ?? (({ inputs: inputs2, outputs, compile }) => {\n var _a2, _b2;\n return {\n globals: (_a2 = this.globals) == null ? void 0 : _a2.call(this, { inputs: inputs2, outputs, compile }),\n statements: (_b2 = this.statements) == null ? void 0 : _b2.call(this, { inputs: inputs2, outputs, compile })\n };\n });\n }\n get outputs() {\n const outputs = {};\n for (const key in this.outTypes) {\n outputs[key] = new DynoOutput(this, key);\n }\n return outputs;\n }\n apply(inputs) {\n Object.assign(this.inputs, inputs);\n return this.outputs;\n }\n compile({\n inputs,\n outputs,\n compile\n }) {\n const result = [\n `// ${this.constructor.name}(${Object.values(inputs).join(", ")}) => (${Object.values(outputs).join(", ")})`\n ];\n const declares = [];\n for (const key in outputs) {\n const name = outputs[key];\n if (name && !compile.declares.has(name)) {\n compile.declares.add(name);\n declares.push(key);\n }\n }\n const { globals, statements, uniforms } = this.generate({\n inputs,\n outputs,\n compile\n });\n for (const global of globals ?? []) {\n compile.globals.add(global);\n }\n for (const key in uniforms) {\n compile.uniforms[key] = uniforms[key];\n }\n if (this.update) {\n compile.updaters.push(this.update);\n }\n for (const key of declares) {\n const name = outputs[key];\n if (name) {\n if (!compile.uniforms[name]) {\n result.push(`${dynoDeclare(name, this.outTypes[key])};`);\n }\n }\n }\n if (statements == null ? void 0 : statements.length) {\n result.push("{");\n result.push(...statements.map((line) => compile.indent + line));\n result.push("}");\n }\n return result;\n }\n }\n class DynoBlock extends Dyno {\n constructor({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n construct\n }) {\n super({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n generate: (args) => this.generateBlock(args)\n });\n this.construct = construct;\n }\n generateBlock({\n inputs,\n outputs,\n compile\n }) {\n var _a2, _b2;\n const blockInputs = {};\n const blockOutputs = {};\n for (const key in inputs) {\n if (inputs[key] != null) {\n blockInputs[key] = new DynoLiteral(this.inTypes[key], inputs[key]);\n }\n }\n for (const key in outputs) {\n if (outputs[key] != null) {\n blockOutputs[key] = new DynoValue(this.outTypes[key]);\n }\n }\n const options = { roots: [] };\n const returned = this.construct(blockInputs, blockOutputs, options);\n for (const global of ((_a2 = this.globals) == null ? void 0 : _a2.call(this, { inputs, outputs, compile })) ?? []) {\n compile.globals.add(global);\n }\n const ordering = [];\n const nodeOuts = /* @__PURE__ */ new Map();\n function visit(node, outKey, outName) {\n let outs = nodeOuts.get(node);\n if (!outs) {\n outs = {\n sequence: compile.nextSequence(),\n outNames: /* @__PURE__ */ new Map(),\n newOuts: /* @__PURE__ */ new Set()\n };\n nodeOuts.set(node, outs);\n for (const key in node.inputs) {\n let input = node.inputs[key];\n while (input) {\n if (input instanceof DynoValue) {\n if (input instanceof DynoOutput) {\n visit(input.dyno, input.key);\n }\n break;\n }\n input = input.dynoOut();\n }\n }\n ordering.push(node);\n }\n if (outKey) {\n if (!outName) {\n outs.newOuts.add(outKey);\n }\n outs.outNames.set(outKey, outName ?? `${outKey}_${outs.sequence}`);\n }\n }\n for (const root of options.roots) {\n visit(root);\n }\n for (const key in blockOutputs) {\n let value = (returned == null ? void 0 : returned[key]) ?? blockOutputs[key];\n while (value) {\n if (value instanceof DynoValue) {\n if (value instanceof DynoOutput) {\n visit(value.dyno, value.key, outputs[key]);\n }\n break;\n }\n value = value.dynoOut();\n }\n blockOutputs[key] = value;\n }\n const steps = [];\n for (const dyno2 of ordering) {\n const inputs2 = {};\n const outputs2 = {};\n for (const key in dyno2.inputs) {\n let value = dyno2.inputs[key];\n while (value) {\n if (value instanceof DynoValue) {\n if (value instanceof DynoLiteral) {\n inputs2[key] = value.getLiteral();\n } else if (value instanceof DynoOutput) {\n const source = (_b2 = nodeOuts.get(value.dyno)) == null ? void 0 : _b2.outNames.get(value.key);\n if (!source) {\n throw new Error(\n `Source not found for ${value.dyno.constructor.name}.${value.key}`\n );\n }\n inputs2[key] = source;\n }\n break;\n }\n value = value.dynoOut();\n }\n }\n const outs = nodeOuts.get(dyno2) ?? { outNames: /* @__PURE__ */ new Map() };\n for (const [key, name] of outs.outNames.entries()) {\n outputs2[key] = name;\n }\n const newSteps = dyno2.compile({ inputs: inputs2, outputs: outputs2, compile });\n steps.push(newSteps);\n }\n const literalOutputs = [];\n for (const key in outputs) {\n if (blockOutputs[key] instanceof DynoLiteral) {\n literalOutputs.push(\n `${outputs[key]} = ${blockOutputs[key].getLiteral()};`\n );\n }\n }\n if (literalOutputs.length > 0) {\n steps.push(literalOutputs);\n }\n const statements = steps.flatMap((step, index) => {\n return index === 0 ? step : ["", ...step];\n });\n return { statements };\n }\n }\n function dynoBlock(inTypes, outTypes, construct, { update, globals } = {}) {\n return new DynoBlock({ inTypes, outTypes, construct, update, globals });\n }\n function dyno({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n statements,\n generate\n }) {\n return new Dyno({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n statements,\n generate\n });\n }\n function dynoDeclare(name, type, count) {\n const typeStr = typeof type === "string" ? type : type.type;\n if (!typeStr) {\n throw new Error(`Invalid DynoType: ${String(type)}`);\n }\n return `${typeStr} ${name}${count != null ? `[${count}]` : ""}`;\n }\n function unindentLines(s) {\n var _a2;\n let seenNonEmpty = false;\n const lines = s.split("\\n").map((line) => {\n const trimmedLine = line.trimEnd();\n if (seenNonEmpty) {\n return trimmedLine;\n }\n if (trimmedLine.length > 0) {\n seenNonEmpty = true;\n return trimmedLine;\n }\n return null;\n }).filter((line) => line != null);\n while (lines.length > 0 && lines[lines.length - 1].length === 0) {\n lines.pop();\n }\n if (lines.length === 0) {\n return [];\n }\n const indent = (_a2 = lines[0].match(/^\\s*/)) == null ? void 0 : _a2[0];\n if (!indent) {\n return lines;\n }\n const regex = new RegExp(`^${indent}`);\n return lines.map((line) => line.replace(regex, ""));\n }\n function unindent(s) {\n return unindentLines(s).join("\\n");\n }\n class UnaryOp extends Dyno {\n constructor({\n a,\n outKey,\n outTypeFunc\n }) {\n const inTypes = { a: valType(a) };\n const outType = outTypeFunc(valType(a));\n const outTypes = { [outKey]: outType };\n super({ inTypes, outTypes, inputs: { a } });\n this.outKey = outKey;\n }\n dynoOut() {\n return new DynoOutput(this, this.outKey);\n }\n }\n class BinaryOp extends Dyno {\n constructor({\n a,\n b,\n outKey,\n outTypeFunc\n }) {\n const inTypes = { a: valType(a), b: valType(b) };\n const outType = outTypeFunc(valType(a), valType(b));\n const outTypes = { [outKey]: outType };\n super({ inTypes, outTypes, inputs: { a, b } });\n this.outKey = outKey;\n }\n dynoOut() {\n return new DynoOutput(this, this.outKey);\n }\n }\n const f32buffer = new Float32Array(1);\n const u32buffer = new Uint32Array(f32buffer.buffer);\n function toHalf(f) {\n f32buffer[0] = f;\n const bits2 = u32buffer[0];\n const sign = bits2 >> 31 & 1;\n const exp = bits2 >> 23 & 255;\n const frac = bits2 & 8388607;\n const halfSign = sign << 15;\n if (exp === 255) {\n if (frac !== 0) {\n return halfSign | 32767;\n }\n return halfSign | 31744;\n }\n const newExp = exp - 127 + 15;\n if (newExp >= 31) {\n return halfSign | 31744;\n }\n if (newExp <= 0) {\n if (newExp < -10) {\n return halfSign;\n }\n const subFrac = (frac | 8388608) >> 1 - newExp + 13;\n return halfSign | subFrac;\n }\n const halfFrac = frac >> 13;\n return halfSign | newExp << 10 | halfFrac;\n }\n function fromHalf(h) {\n const sign = h >> 15 & 1;\n const exp = h >> 10 & 31;\n const frac = h & 1023;\n let f32bits;\n if (exp === 0) {\n if (frac === 0) {\n f32bits = sign << 31;\n } else {\n let mant = frac;\n let e = -14;\n while ((mant & 1024) === 0) {\n mant <<= 1;\n e--;\n }\n mant &= 1023;\n const newExp = e + 127;\n const newFrac = mant << 13;\n f32bits = sign << 31 | newExp << 23 | newFrac;\n }\n } else if (exp === 31) {\n if (frac === 0) {\n f32bits = sign << 31 | 2139095040;\n } else {\n f32bits = sign << 31 | 2143289344;\n }\n } else {\n const newExp = exp - 15 + 127;\n const newFrac = frac << 13;\n f32bits = sign << 31 | newExp << 23 | newFrac;\n }\n u32buffer[0] = f32bits;\n return f32buffer[0];\n }\n function floatToUint8(v) {\n return Math.max(0, Math.min(255, Math.round(v * 255)));\n }\n function getArrayBuffers(ctx) {\n const buffers = [];\n const seen = /* @__PURE__ */ new Set();\n function traverse(obj) {\n if (obj && typeof obj === "object" && !seen.has(obj)) {\n seen.add(obj);\n if (obj instanceof ArrayBuffer) {\n buffers.push(obj);\n } else if (ArrayBuffer.isView(obj)) {\n buffers.push(obj.buffer);\n } else if (Array.isArray(obj)) {\n obj.forEach(traverse);\n } else {\n Object.values(obj).forEach(traverse);\n }\n }\n }\n traverse(ctx);\n return buffers;\n }\n function setPackedSplat(packedSplats, index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) {\n const uR = floatToUint8(r);\n const uG = floatToUint8(g);\n const uB = floatToUint8(b);\n const uA = floatToUint8(opacity);\n const uQuat = encodeQuatOctXy88R8(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n const uQuatX = uQuat & 255;\n const uQuatY = uQuat >>> 8 & 255;\n const uQuatZ = uQuat >>> 16 & 255;\n const uScaleX = scaleX === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleX) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uScaleY = scaleY === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleY) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uScaleZ = scaleZ === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleZ) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uCenterX = toHalf(x2);\n const uCenterY = toHalf(y);\n const uCenterZ = toHalf(z);\n const i4 = index * 4;\n packedSplats[i4] = uR | uG << 8 | uB << 16 | uA << 24;\n packedSplats[i4 + 1] = uCenterX | uCenterY << 16;\n packedSplats[i4 + 2] = uCenterZ | uQuatX << 16 | uQuatY << 24;\n packedSplats[i4 + 3] = uScaleX | uScaleY << 8 | uScaleZ << 16 | uQuatZ << 24;\n }\n function setPackedSplatCenter(packedSplats, index, x2, y, z) {\n const uCenterX = toHalf(x2);\n const uCenterY = toHalf(y);\n const uCenterZ = toHalf(z);\n const i4 = index * 4;\n packedSplats[i4 + 1] = uCenterX | uCenterY << 16;\n packedSplats[i4 + 2] = uCenterZ | packedSplats[i4 + 2] & 4294901760;\n }\n function setPackedSplatScales(packedSplats, index, scaleX, scaleY, scaleZ) {\n const uScaleX = scaleX === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleX) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uScaleY = scaleY === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleY) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uScaleZ = scaleZ === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleZ) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const i4 = index * 4;\n packedSplats[i4 + 3] = uScaleX | uScaleY << 8 | uScaleZ << 16 | packedSplats[i4 + 3] & 4278190080;\n }\n function setPackedSplatQuat(packedSplats, index, quatX, quatY, quatZ, quatW) {\n const uQuat = encodeQuatOctXy88R8(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n const uQuatX = uQuat & 255;\n const uQuatY = uQuat >>> 8 & 255;\n const uQuatZ = uQuat >>> 16 & 255;\n const i4 = index * 4;\n packedSplats[i4 + 2] = packedSplats[i4 + 2] & 65535 | uQuatX << 16 | uQuatY << 24;\n packedSplats[i4 + 3] = packedSplats[i4 + 3] & 16777215 | uQuatZ << 24;\n }\n function setPackedSplatRgb(packedSplats, index, r, g, b) {\n const uR = floatToUint8(r);\n const uG = floatToUint8(g);\n const uB = floatToUint8(b);\n const i4 = index * 4;\n packedSplats[i4] = uR | uG << 8 | uB << 16 | packedSplats[i4] & 4278190080;\n }\n function setPackedSplatOpacity(packedSplats, index, opacity) {\n const uA = floatToUint8(opacity);\n const i4 = index * 4;\n packedSplats[i4] = packedSplats[i4] & 16777215 | uA << 24;\n }\n const packedCenter = new Vector3();\n const packedScales = new Vector3();\n const packedQuaternion = new Quaternion();\n const packedColor = new Color();\n const packedFields = {\n center: packedCenter,\n scales: packedScales,\n quaternion: packedQuaternion,\n color: packedColor,\n opacity: 0\n };\n function unpackSplat(packedSplats, index) {\n const result = packedFields;\n const i4 = index * 4;\n const word0 = packedSplats[i4];\n const word1 = packedSplats[i4 + 1];\n const word2 = packedSplats[i4 + 2];\n const word3 = packedSplats[i4 + 3];\n result.color.set(\n (word0 & 255) / 255,\n (word0 >>> 8 & 255) / 255,\n (word0 >>> 16 & 255) / 255\n );\n result.opacity = (word0 >>> 24 & 255) / 255;\n result.center.set(\n fromHalf(word1 & 65535),\n fromHalf(word1 >>> 16 & 65535),\n fromHalf(word2 & 65535)\n );\n const uScalesX = word3 & 255;\n result.scales.x = uScalesX === 0 ? 0 : Math.exp(LN_SCALE_MIN + (uScalesX - 1) * LN_RESCALE);\n const uScalesY = word3 >>> 8 & 255;\n result.scales.y = uScalesY === 0 ? 0 : Math.exp(LN_SCALE_MIN + (uScalesY - 1) * LN_RESCALE);\n const uScalesZ = word3 >>> 16 & 255;\n result.scales.z = uScalesZ === 0 ? 0 : Math.exp(LN_SCALE_MIN + (uScalesZ - 1) * LN_RESCALE);\n const uQuat = word2 >>> 16 & 65535 | word3 >>> 8 & 16711680;\n decodeQuatOctXy88R8(uQuat, result.quaternion);\n return result;\n }\n function getTextureSize(numSplats) {\n const width = SPLAT_TEX_WIDTH;\n const height = Math.max(\n SPLAT_TEX_MIN_HEIGHT,\n Math.min(SPLAT_TEX_HEIGHT, Math.ceil(numSplats / width))\n );\n const depth = Math.ceil(numSplats / (width * height));\n const maxSplats = width * height * depth;\n return { width, height, depth, maxSplats };\n }\n function computeMaxSplats(numSplats) {\n const width = SPLAT_TEX_WIDTH;\n const height = Math.max(\n SPLAT_TEX_MIN_HEIGHT,\n Math.min(SPLAT_TEX_HEIGHT, Math.ceil(numSplats / width))\n );\n const depth = Math.ceil(numSplats / (width * height));\n return width * height * depth;\n }\n const IDENT_VERTEX_SHADER = unindent(`\n precision highp float;\n\n in vec3 position;\n\n void main() {\n gl_Position = vec4(position.xy, 0.0, 1.0);\n }\n`);\n function encodeQuatOctXy88R8(q) {\n const qnorm = q.clone().normalize();\n if (qnorm.w < 0) {\n qnorm.set(-qnorm.x, -qnorm.y, -qnorm.z, -qnorm.w);\n }\n const theta = 2 * Math.acos(qnorm.w);\n const xyz_norm = Math.sqrt(\n qnorm.x * qnorm.x + qnorm.y * qnorm.y + qnorm.z * qnorm.z\n );\n const axis = xyz_norm < 1e-6 ? new Vector3(1, 0, 0) : new Vector3(qnorm.x, qnorm.y, qnorm.z).divideScalar(xyz_norm);\n const sum = Math.abs(axis.x) + Math.abs(axis.y) + Math.abs(axis.z);\n let p_x = axis.x / sum;\n let p_y = axis.y / sum;\n if (axis.z < 0) {\n const tmp = p_x;\n p_x = (1 - Math.abs(p_y)) * (p_x >= 0 ? 1 : -1);\n p_y = (1 - Math.abs(tmp)) * (p_y >= 0 ? 1 : -1);\n }\n const u_f = p_x * 0.5 + 0.5;\n const v_f = p_y * 0.5 + 0.5;\n const quantU = Math.round(u_f * 255);\n const quantV = Math.round(v_f * 255);\n const angleInt = Math.round(theta * (255 / Math.PI));\n return angleInt << 16 | quantV << 8 | quantU;\n }\n function decodeQuatOctXy88R8(encoded, out) {\n const quantU = encoded & 255;\n const quantV = encoded >>> 8 & 255;\n const angleInt = encoded >>> 16 & 255;\n const u_f = quantU / 255;\n const v_f = quantV / 255;\n let f_x = (u_f - 0.5) * 2;\n let f_y = (v_f - 0.5) * 2;\n const f_z = 1 - (Math.abs(f_x) + Math.abs(f_y));\n const t = Math.max(-f_z, 0);\n f_x += f_x >= 0 ? -t : t;\n f_y += f_y >= 0 ? -t : t;\n const axis = new Vector3(f_x, f_y, f_z).normalize();\n const theta = angleInt / 255 * Math.PI;\n const halfTheta = theta * 0.5;\n const s = Math.sin(halfTheta);\n const w = Math.cos(halfTheta);\n out.set(axis.x * s, axis.y * s, axis.z * s, w);\n return out;\n }\n function packSint8Bytes(b0, b1, b2, b3) {\n const clampedB0 = Math.max(-127, Math.min(127, b0 * 127));\n const clampedB1 = Math.max(-127, Math.min(127, b1 * 127));\n const clampedB2 = Math.max(-127, Math.min(127, b2 * 127));\n const clampedB3 = Math.max(-127, Math.min(127, b3 * 127));\n return clampedB0 & 255 | (clampedB1 & 255) << 8 | (clampedB2 & 255) << 16 | (clampedB3 & 255) << 24;\n }\n function encodeSh1Rgb(sh1Array, index, sh1Rgb) {\n const base = index * 2;\n for (let i2 = 0; i2 < 9; ++i2) {\n const value = Math.max(-63, Math.min(63, sh1Rgb[i2] * 63)) & 127;\n const bitStart = i2 * 7;\n const bitEnd = bitStart + 7;\n const wordStart = Math.floor(bitStart / 32);\n const bitOffset = bitStart - wordStart * 32;\n const firstWord = value << bitOffset & 4294967295;\n sh1Array[base + wordStart] |= firstWord;\n if (bitEnd > wordStart * 32 + 32) {\n const secondWord = value >>> 32 - bitOffset & 4294967295;\n sh1Array[base + wordStart + 1] |= secondWord;\n }\n }\n }\n function encodeSh2Rgb(sh2Array, index, sh2Rgb) {\n sh2Array[index * 4 + 0] = packSint8Bytes(\n sh2Rgb[0],\n sh2Rgb[1],\n sh2Rgb[2],\n sh2Rgb[3]\n );\n sh2Array[index * 4 + 1] = packSint8Bytes(\n sh2Rgb[4],\n sh2Rgb[5],\n sh2Rgb[6],\n sh2Rgb[7]\n );\n sh2Array[index * 4 + 2] = packSint8Bytes(\n sh2Rgb[8],\n sh2Rgb[9],\n sh2Rgb[10],\n sh2Rgb[11]\n );\n sh2Array[index * 4 + 3] = packSint8Bytes(\n sh2Rgb[12],\n sh2Rgb[13],\n sh2Rgb[14],\n 0\n );\n }\n function encodeSh3Rgb(sh3Array, index, sh3Rgb) {\n const base = index * 4;\n for (let i2 = 0; i2 < 21; ++i2) {\n const value = Math.max(-31, Math.min(31, sh3Rgb[i2] * 31)) & 63;\n const bitStart = i2 * 6;\n const bitEnd = bitStart + 6;\n const wordStart = Math.floor(bitStart / 32);\n const bitOffset = bitStart - wordStart * 32;\n const firstWord = value << bitOffset & 4294967295;\n sh3Array[base + wordStart] |= firstWord;\n if (bitEnd > wordStart * 32 + 32) {\n const secondWord = value >>> 32 - bitOffset & 4294967295;\n sh3Array[base + wordStart + 1] |= secondWord;\n }\n }\n }\n function decompressPartialGzip(fileBytes, numBytes) {\n const chunks = [];\n let totalBytes = 0;\n let result = null;\n const gunzip = new Gunzip((data, final) => {\n chunks.push(data);\n totalBytes += data.length;\n if (final || totalBytes >= numBytes) {\n const allBytes = new Uint8Array(totalBytes);\n let offset2 = 0;\n for (const chunk of chunks) {\n allBytes.set(chunk, offset2);\n offset2 += chunk.length;\n }\n result = allBytes.slice(0, numBytes);\n }\n });\n const CHUNK_SIZE = 1024;\n let offset = 0;\n while (result == null && offset < fileBytes.length) {\n const chunk = fileBytes.slice(offset, offset + CHUNK_SIZE);\n gunzip.push(chunk, false);\n offset += CHUNK_SIZE;\n }\n if (result == null) {\n gunzip.push(new Uint8Array(), true);\n if (result == null) {\n throw new Error("Failed to decompress partial gzip");\n }\n }\n return result;\n }\n class GunzipReader {\n constructor({\n fileBytes,\n chunkBytes = 64 * 1024\n }) {\n this.fileBytes = fileBytes;\n this.chunkBytes = chunkBytes;\n this.offset = 0;\n this.chunks = [];\n this.totalBytes = 0;\n this.gunzip = new Gunzip((chunk, _final) => {\n this.chunks.push(chunk);\n this.totalBytes += chunk.length;\n });\n }\n read(numBytes) {\n while (this.totalBytes < numBytes && this.offset < this.fileBytes.length) {\n const end = Math.min(\n this.offset + this.chunkBytes,\n this.fileBytes.length\n );\n this.gunzip.push(this.fileBytes.subarray(this.offset, end), false);\n this.offset = end;\n }\n if (this.totalBytes < numBytes && this.offset >= this.fileBytes.length) {\n this.gunzip.push(new Uint8Array(0), true);\n }\n if (this.totalBytes < numBytes) {\n throw new Error(\n `Unexpected EOF: needed ${numBytes}, got ${this.totalBytes}`\n );\n }\n const allBytes = new Uint8Array(this.totalBytes);\n let outOffset = 0;\n for (const chunk of this.chunks) {\n allBytes.set(chunk, outOffset);\n outOffset += chunk.length;\n }\n const result = allBytes.subarray(0, numBytes);\n this.chunks = [allBytes.subarray(numBytes)];\n this.totalBytes -= numBytes;\n return result;\n }\n }\n function decodeAntiSplat(fileBytes, initNumSplats, splatCallback) {\n const numSplats = Math.floor(fileBytes.length / 32);\n if (numSplats * 32 !== fileBytes.length) {\n throw new Error("Invalid .splat file size");\n }\n initNumSplats(numSplats);\n const f32 = new Float32Array(fileBytes.buffer);\n for (let i2 = 0; i2 < numSplats; ++i2) {\n const i322 = i2 * 32;\n const i8 = i2 * 8;\n const x2 = f32[i8 + 0];\n const y = f32[i8 + 1];\n const z = f32[i8 + 2];\n const scaleX = f32[i8 + 3];\n const scaleY = f32[i8 + 4];\n const scaleZ = f32[i8 + 5];\n const r = fileBytes[i322 + 24] / 255;\n const g = fileBytes[i322 + 25] / 255;\n const b = fileBytes[i322 + 26] / 255;\n const opacity = fileBytes[i322 + 27] / 255;\n const quatW = (fileBytes[i322 + 28] - 128) / 128;\n const quatX = (fileBytes[i322 + 29] - 128) / 128;\n const quatY = (fileBytes[i322 + 30] - 128) / 128;\n const quatZ = (fileBytes[i322 + 31] - 128) / 128;\n splatCallback(\n i2,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n }\n }\n function unpackAntiSplat(fileBytes) {\n let numSplats = 0;\n let maxSplats = 0;\n let packedArray = new Uint32Array(0);\n decodeAntiSplat(\n fileBytes,\n (cbNumSplats) => {\n numSplats = cbNumSplats;\n maxSplats = computeMaxSplats(numSplats);\n packedArray = new Uint32Array(maxSplats * 4);\n },\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n setPackedSplat(\n packedArray,\n index,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n }\n );\n return { packedArray, numSplats };\n }\n const KSPLAT_COMPRESSION = {\n 0: {\n bytesPerCenter: 12,\n bytesPerScale: 12,\n bytesPerRotation: 16,\n bytesPerColor: 4,\n bytesPerSphericalHarmonicsComponent: 4,\n scaleOffsetBytes: 12,\n rotationOffsetBytes: 24,\n colorOffsetBytes: 40,\n sphericalHarmonicsOffsetBytes: 44,\n scaleRange: 1\n },\n 1: {\n bytesPerCenter: 6,\n bytesPerScale: 6,\n bytesPerRotation: 8,\n bytesPerColor: 4,\n bytesPerSphericalHarmonicsComponent: 2,\n scaleOffsetBytes: 6,\n rotationOffsetBytes: 12,\n colorOffsetBytes: 20,\n sphericalHarmonicsOffsetBytes: 24,\n scaleRange: 32767\n },\n 2: {\n bytesPerCenter: 6,\n bytesPerScale: 6,\n bytesPerRotation: 8,\n bytesPerColor: 4,\n bytesPerSphericalHarmonicsComponent: 1,\n scaleOffsetBytes: 6,\n rotationOffsetBytes: 12,\n colorOffsetBytes: 20,\n sphericalHarmonicsOffsetBytes: 24,\n scaleRange: 32767\n }\n };\n const KSPLAT_SH_DEGREE_TO_COMPONENTS = {\n 0: 0,\n 1: 9,\n 2: 24,\n 3: 45\n };\n function decodeKsplat(fileBytes, initNumSplats, splatCallback, shCallback) {\n var _a2;\n const HEADER_BYTES = 4096;\n const SECTION_BYTES = 1024;\n let headerOffset = 0;\n const header = new DataView(fileBytes.buffer, headerOffset, HEADER_BYTES);\n headerOffset += HEADER_BYTES;\n const versionMajor = header.getUint8(0);\n const versionMinor = header.getUint8(1);\n if (versionMajor !== 0 || versionMinor < 1) {\n throw new Error(\n `Unsupported .ksplat version: ${versionMajor}.${versionMinor}`\n );\n }\n const maxSectionCount = header.getUint32(4, true);\n header.getUint32(16, true);\n const compressionLevel = header.getUint16(20, true);\n if (compressionLevel < 0 || compressionLevel > 2) {\n throw new Error(`Invalid .ksplat compression level: ${compressionLevel}`);\n }\n header.getFloat32(36, true) || -1.5;\n header.getFloat32(40, true) || 1.5;\n let sectionBase = HEADER_BYTES + maxSectionCount * SECTION_BYTES;\n for (let section = 0; section < maxSectionCount; ++section) {\n const section2 = new DataView(fileBytes.buffer, headerOffset, SECTION_BYTES);\n headerOffset += SECTION_BYTES;\n const sectionSplatCount = section2.getUint32(0, true);\n const sectionMaxSplatCount = section2.getUint32(4, true);\n const bucketSize = section2.getUint32(8, true);\n const bucketCount = section2.getUint32(12, true);\n const bucketBlockSize = section2.getFloat32(16, true);\n const bucketStorageSizeBytes = section2.getUint16(20, true);\n const compressionScaleRange = (section2.getUint32(24, true) || ((_a2 = KSPLAT_COMPRESSION[compressionLevel]) == null ? void 0 : _a2.scaleRange)) ?? 1;\n const partiallyFilledBucketCount = section2.getUint32(36, true);\n const bucketsMetaDataSizeBytes = partiallyFilledBucketCount * 4;\n const bucketsStorageSizeBytes = bucketStorageSizeBytes * bucketCount + bucketsMetaDataSizeBytes;\n const sphericalHarmonicsDegree = section2.getUint16(40, true);\n const shComponents = KSPLAT_SH_DEGREE_TO_COMPONENTS[sphericalHarmonicsDegree];\n const {\n bytesPerCenter,\n bytesPerScale,\n bytesPerRotation,\n bytesPerColor,\n bytesPerSphericalHarmonicsComponent,\n scaleOffsetBytes,\n rotationOffsetBytes,\n colorOffsetBytes,\n sphericalHarmonicsOffsetBytes\n } = KSPLAT_COMPRESSION[compressionLevel];\n const bytesPerSplat = bytesPerCenter + bytesPerScale + bytesPerRotation + bytesPerColor + shComponents * bytesPerSphericalHarmonicsComponent;\n const splatDataStorageSizeBytes = bytesPerSplat * sectionMaxSplatCount;\n const storageSizeBytes = splatDataStorageSizeBytes + bucketsStorageSizeBytes;\n const sh1 = sphericalHarmonicsDegree >= 1 ? new Float32Array(3 * 3) : void 0;\n const sh2 = sphericalHarmonicsDegree >= 2 ? new Float32Array(5 * 3) : void 0;\n const sh3 = sphericalHarmonicsDegree >= 3 ? new Float32Array(7 * 3) : void 0;\n const compressionScaleFactor = bucketBlockSize / 2 / compressionScaleRange;\n const bucketsBase = sectionBase + bucketsMetaDataSizeBytes;\n const dataBase = sectionBase + bucketsStorageSizeBytes;\n const data = new DataView(\n fileBytes.buffer,\n dataBase,\n splatDataStorageSizeBytes\n );\n const bucketArray = new Float32Array(\n fileBytes.buffer,\n bucketsBase,\n bucketCount * 3\n );\n for (let i2 = 0; i2 < sectionSplatCount; ++i2) {\n const splatOffset = i2 * bytesPerSplat;\n const bucketIndex = Math.floor(i2 / bucketSize);\n const x2 = compressionLevel === 0 ? data.getFloat32(splatOffset + 0, true) : (data.getUint16(splatOffset + 0, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 0];\n const y = compressionLevel === 0 ? data.getFloat32(splatOffset + 4, true) : (data.getUint16(splatOffset + 2, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 1];\n const z = compressionLevel === 0 ? data.getFloat32(splatOffset + 8, true) : (data.getUint16(splatOffset + 4, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 2];\n const scaleX = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 0, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 0, true));\n const scaleY = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 4, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 2, true));\n const scaleZ = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 8, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 4, true));\n const quatW = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 0, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 0, true)\n );\n const quatX = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 4, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 2, true)\n );\n const quatY = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 8, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 4, true)\n );\n const quatZ = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 12, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 6, true)\n );\n const r = data.getUint8(splatOffset + colorOffsetBytes + 0) / 255;\n const g = data.getUint8(splatOffset + colorOffsetBytes + 1) / 255;\n const b = data.getUint8(splatOffset + colorOffsetBytes + 2) / 255;\n const opacity = data.getUint8(splatOffset + colorOffsetBytes + 3) / 255;\n splatCallback(\n i2,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n if (sphericalHarmonicsDegree >= 1 && sh1) {\n shCallback == null ? void 0 : shCallback(i2, sh1, sh2, sh3);\n }\n }\n sectionBase += storageSizeBytes;\n }\n }\n function unpackKsplat(fileBytes) {\n var _a2;\n const HEADER_BYTES = 4096;\n const SECTION_BYTES = 1024;\n let headerOffset = 0;\n const header = new DataView(fileBytes.buffer, headerOffset, HEADER_BYTES);\n headerOffset += HEADER_BYTES;\n const versionMajor = header.getUint8(0);\n const versionMinor = header.getUint8(1);\n if (versionMajor !== 0 || versionMinor < 1) {\n throw new Error(\n `Unsupported .ksplat version: ${versionMajor}.${versionMinor}`\n );\n }\n const maxSectionCount = header.getUint32(4, true);\n const splatCount = header.getUint32(16, true);\n const compressionLevel = header.getUint16(20, true);\n if (compressionLevel < 0 || compressionLevel > 2) {\n throw new Error(`Invalid .ksplat compression level: ${compressionLevel}`);\n }\n const minSphericalHarmonicsCoeff = header.getFloat32(36, true) || -1.5;\n const maxSphericalHarmonicsCoeff = header.getFloat32(40, true) || 1.5;\n const numSplats = splatCount;\n const maxSplats = computeMaxSplats(numSplats);\n const packedArray = new Uint32Array(maxSplats * 4);\n const extra = {};\n let sectionBase = HEADER_BYTES + maxSectionCount * SECTION_BYTES;\n for (let section = 0; section < maxSectionCount; ++section) {\n let getSh = function(splatOffset, component) {\n if (compressionLevel === 0) {\n return data.getFloat32(\n splatOffset + sphericalHarmonicsOffsetBytes + component * 4,\n true\n );\n }\n if (compressionLevel === 1) {\n return fromHalf(\n data.getUint16(\n splatOffset + sphericalHarmonicsOffsetBytes + component * 2,\n true\n )\n );\n }\n const t = data.getUint8(splatOffset + sphericalHarmonicsOffsetBytes + component) / 255;\n return minSphericalHarmonicsCoeff + t * (maxSphericalHarmonicsCoeff - minSphericalHarmonicsCoeff);\n };\n const section2 = new DataView(fileBytes.buffer, headerOffset, SECTION_BYTES);\n headerOffset += SECTION_BYTES;\n const sectionSplatCount = section2.getUint32(0, true);\n const sectionMaxSplatCount = section2.getUint32(4, true);\n const bucketSize = section2.getUint32(8, true);\n const bucketCount = section2.getUint32(12, true);\n const bucketBlockSize = section2.getFloat32(16, true);\n const bucketStorageSizeBytes = section2.getUint16(20, true);\n const compressionScaleRange = (section2.getUint32(24, true) || ((_a2 = KSPLAT_COMPRESSION[compressionLevel]) == null ? void 0 : _a2.scaleRange)) ?? 1;\n const partiallyFilledBucketCount = section2.getUint32(36, true);\n const bucketsMetaDataSizeBytes = partiallyFilledBucketCount * 4;\n const bucketsStorageSizeBytes = bucketStorageSizeBytes * bucketCount + bucketsMetaDataSizeBytes;\n const sphericalHarmonicsDegree = section2.getUint16(40, true);\n const shComponents = KSPLAT_SH_DEGREE_TO_COMPONENTS[sphericalHarmonicsDegree];\n const {\n bytesPerCenter,\n bytesPerScale,\n bytesPerRotation,\n bytesPerColor,\n bytesPerSphericalHarmonicsComponent,\n scaleOffsetBytes,\n rotationOffsetBytes,\n colorOffsetBytes,\n sphericalHarmonicsOffsetBytes\n } = KSPLAT_COMPRESSION[compressionLevel];\n const bytesPerSplat = bytesPerCenter + bytesPerScale + bytesPerRotation + bytesPerColor + shComponents * bytesPerSphericalHarmonicsComponent;\n const splatDataStorageSizeBytes = bytesPerSplat * sectionMaxSplatCount;\n const storageSizeBytes = splatDataStorageSizeBytes + bucketsStorageSizeBytes;\n const sh1Index = [0, 3, 6, 1, 4, 7, 2, 5, 8];\n const sh2Index = [\n 9,\n 14,\n 19,\n 10,\n 15,\n 20,\n 11,\n 16,\n 21,\n 12,\n 17,\n 22,\n 13,\n 18,\n 23\n ];\n const sh3Index = [\n 24,\n 31,\n 38,\n 25,\n 32,\n 39,\n 26,\n 33,\n 40,\n 27,\n 34,\n 41,\n 28,\n 35,\n 42,\n 29,\n 36,\n 43,\n 30,\n 37,\n 44\n ];\n const sh1 = sphericalHarmonicsDegree >= 1 ? new Float32Array(3 * 3) : void 0;\n const sh2 = sphericalHarmonicsDegree >= 2 ? new Float32Array(5 * 3) : void 0;\n const sh3 = sphericalHarmonicsDegree >= 3 ? new Float32Array(7 * 3) : void 0;\n const compressionScaleFactor = bucketBlockSize / 2 / compressionScaleRange;\n const bucketsBase = sectionBase + bucketsMetaDataSizeBytes;\n const dataBase = sectionBase + bucketsStorageSizeBytes;\n const data = new DataView(\n fileBytes.buffer,\n dataBase,\n splatDataStorageSizeBytes\n );\n const bucketArray = new Float32Array(\n fileBytes.buffer,\n bucketsBase,\n bucketCount * 3\n );\n for (let i2 = 0; i2 < sectionSplatCount; ++i2) {\n const splatOffset = i2 * bytesPerSplat;\n const bucketIndex = Math.floor(i2 / bucketSize);\n const x2 = compressionLevel === 0 ? data.getFloat32(splatOffset + 0, true) : (data.getUint16(splatOffset + 0, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 0];\n const y = compressionLevel === 0 ? data.getFloat32(splatOffset + 4, true) : (data.getUint16(splatOffset + 2, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 1];\n const z = compressionLevel === 0 ? data.getFloat32(splatOffset + 8, true) : (data.getUint16(splatOffset + 4, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 2];\n const scaleX = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 0, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 0, true));\n const scaleY = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 4, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 2, true));\n const scaleZ = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 8, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 4, true));\n const quatW = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 0, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 0, true)\n );\n const quatX = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 4, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 2, true)\n );\n const quatY = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 8, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 4, true)\n );\n const quatZ = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 12, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 6, true)\n );\n const r = data.getUint8(splatOffset + colorOffsetBytes + 0) / 255;\n const g = data.getUint8(splatOffset + colorOffsetBytes + 1) / 255;\n const b = data.getUint8(splatOffset + colorOffsetBytes + 2) / 255;\n const opacity = data.getUint8(splatOffset + colorOffsetBytes + 3) / 255;\n setPackedSplat(\n packedArray,\n i2,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n if (sphericalHarmonicsDegree >= 1) {\n if (sh1) {\n if (!extra.sh1) {\n extra.sh1 = new Uint32Array(numSplats * 2);\n }\n for (const [i22, key] of sh1Index.entries()) {\n sh1[i22] = getSh(splatOffset, key);\n }\n encodeSh1Rgb(extra.sh1, i2, sh1);\n }\n if (sh2) {\n if (!extra.sh2) {\n extra.sh2 = new Uint32Array(numSplats * 4);\n }\n for (const [i22, key] of sh2Index.entries()) {\n sh2[i22] = getSh(splatOffset, key);\n }\n encodeSh2Rgb(extra.sh2, i2, sh2);\n }\n if (sh3) {\n if (!extra.sh3) {\n extra.sh3 = new Uint32Array(numSplats * 4);\n }\n for (const [i22, key] of sh3Index.entries()) {\n sh3[i22] = getSh(splatOffset, key);\n }\n encodeSh3Rgb(extra.sh3, i2, sh3);\n }\n }\n }\n sectionBase += storageSizeBytes;\n }\n return { packedArray, numSplats, extra };\n }\n const _PlyReader = class _PlyReader {\n // Create a PlyReader from a Uint8Array/ArrayBuffer, no parsing done yet\n constructor({ fileBytes }) {\n this.header = "";\n this.littleEndian = true;\n this.elements = {};\n this.comments = [];\n this.data = null;\n this.numSplats = 0;\n this.fileBytes = fileBytes instanceof ArrayBuffer ? new Uint8Array(fileBytes) : fileBytes;\n }\n // Identify and parse the PLY text header (assumed to be <64KB in size).\n // this.elements will contain all the elements in the file, typically\n // "vertex" contains the Gsplat data.\n async parseHeader() {\n const bufferStream = new ReadableStream({\n start: (controller) => {\n controller.enqueue(this.fileBytes.slice(0, 65536));\n controller.close();\n }\n });\n const decoder = bufferStream.pipeThrough(new TextDecoderStream()).getReader();\n this.header = "";\n const headerTerminator = "end_header\\n";\n while (true) {\n const { value, done } = await decoder.read();\n if (done) {\n throw new Error("Failed to read header");\n }\n this.header += value;\n const endHeader = this.header.indexOf(headerTerminator);\n if (endHeader >= 0) {\n this.header = this.header.slice(0, endHeader + headerTerminator.length);\n break;\n }\n }\n const headerLen = new TextEncoder().encode(this.header).length;\n this.data = new DataView(this.fileBytes.buffer, headerLen);\n this.elements = {};\n let curElement = null;\n this.comments = [];\n this.header.trim().split("\\n").forEach((line, lineIndex) => {\n const trimmedLine = line.trim();\n if (lineIndex === 0) {\n if (trimmedLine !== "ply") {\n throw new Error("Invalid PLY header");\n }\n return;\n }\n if (trimmedLine.length === 0) {\n return;\n }\n const fields = trimmedLine.split(" ");\n switch (fields[0]) {\n case "format":\n if (fields[1] === "binary_little_endian") {\n this.littleEndian = true;\n } else if (fields[1] === "binary_big_endian") {\n this.littleEndian = false;\n } else {\n throw new Error(`Unsupported PLY format: ${fields[1]}`);\n }\n if (fields[2] !== "1.0") {\n throw new Error(`Unsupported PLY version: ${fields[2]}`);\n }\n break;\n case "end_header":\n break;\n case "comment":\n this.comments.push(trimmedLine.slice("comment ".length));\n break;\n case "element": {\n const name = fields[1];\n curElement = {\n name,\n count: Number.parseInt(fields[2]),\n properties: {}\n };\n this.elements[name] = curElement;\n break;\n }\n case "property":\n if (curElement == null) {\n throw new Error("Property must be inside an element");\n }\n if (fields[1] === "list") {\n curElement.properties[fields[4]] = {\n isList: true,\n type: fields[3],\n countType: fields[2]\n };\n } else {\n curElement.properties[fields[2]] = {\n isList: false,\n type: fields[1]\n };\n }\n break;\n }\n });\n if (this.elements.vertex) {\n this.numSplats = this.elements.vertex.count;\n }\n }\n parseData(elementCallback) {\n let offset = 0;\n const data = this.data;\n if (data == null) {\n throw new Error("No data to parse");\n }\n for (const elementName in this.elements) {\n const element = this.elements[elementName];\n const { count, properties } = element;\n const item = {};\n const parsers = [];\n for (const [propertyName, property] of Object.entries(properties)) {\n if (!property.isList) {\n item[propertyName] = 0;\n parsers.push(() => {\n item[propertyName] = PARSE_FIELD[property.type](\n data,\n offset,\n this.littleEndian\n );\n offset += FIELD_BYTES[property.type];\n });\n } else {\n item[propertyName] = [];\n parsers.push(() => {\n const list = item[propertyName];\n list.length = PARSE_FIELD[property.countType](\n data,\n offset,\n this.littleEndian\n );\n offset += FIELD_BYTES[property.countType];\n for (let i2 = 0; i2 < list.length; i2++) {\n list[i2] = PARSE_FIELD[property.type](\n data,\n offset,\n this.littleEndian\n );\n offset += FIELD_BYTES[property.type];\n }\n });\n }\n }\n const callback = elementCallback(element) ?? (() => {\n });\n for (let index = 0; index < count; index++) {\n for (const parser of parsers) {\n parser();\n }\n callback(index, item);\n }\n }\n }\n // Parse all the Gsplat data in the PLY file in go, invoking the given\n // callbacks for each Gsplat.\n parseSplats(splatCallback, shCallback) {\n if (this.elements.vertex == null) {\n throw new Error("No vertex element found");\n }\n let isSuperSplat = false;\n const ssChunks = [];\n let numSh = 0;\n let sh1Props = [];\n let sh2Props = [];\n let sh3Props = [];\n let sh1 = void 0;\n let sh2 = void 0;\n let sh3 = void 0;\n function prepareSh() {\n const num_f_rest = NUM_SH_TO_NUM_F_REST[numSh];\n sh1Props = new Array(3).fill(null).flatMap(\n (_, k) => [0, 1, 2].map((_2, d) => `f_rest_${k + d * num_f_rest / 3}`)\n );\n sh2Props = new Array(5).fill(null).flatMap(\n (_, k) => [0, 1, 2].map((_2, d) => `f_rest_${3 + k + d * num_f_rest / 3}`)\n );\n sh3Props = new Array(7).fill(null).flatMap(\n (_, k) => [0, 1, 2].map((_2, d) => `f_rest_${8 + k + d * num_f_rest / 3}`)\n );\n sh1 = numSh >= 1 ? new Float32Array(3 * 3) : void 0;\n sh2 = numSh >= 2 ? new Float32Array(5 * 3) : void 0;\n sh3 = numSh >= 3 ? new Float32Array(7 * 3) : void 0;\n }\n function ssShCallback(index, item) {\n if (!sh1) {\n throw new Error("Missing sh1");\n }\n for (const [i2, key] of sh1Props.entries()) {\n sh1[i2] = item[key] * 8 / 255 - 4;\n }\n if (sh2) {\n for (const [i2, key] of sh2Props.entries()) {\n sh2[i2] = item[key] * 8 / 255 - 4;\n }\n }\n if (sh3) {\n for (const [i2, key] of sh3Props.entries()) {\n sh3[i2] = item[key] * 8 / 255 - 4;\n }\n }\n shCallback == null ? void 0 : shCallback(index, sh1, sh2, sh3);\n }\n function initSuperSplat(element) {\n const {\n min_x,\n min_y,\n min_z,\n max_x,\n max_y,\n max_z,\n min_scale_x,\n min_scale_y,\n min_scale_z,\n max_scale_x,\n max_scale_y,\n max_scale_z,\n min_r,\n min_g,\n min_b,\n max_r,\n max_g,\n max_b\n } = element.properties;\n if (!min_x || !min_y || !min_z || !max_x || !max_y || !max_z || !min_scale_x || !min_scale_y || !min_scale_z || !max_scale_x || !max_scale_y || !max_scale_z || !min_r || !min_g || !min_b || !max_r || !max_g || !max_b) {\n throw new Error("Missing PLY chunk properties");\n }\n isSuperSplat = true;\n return (index, item) => {\n const {\n min_x: min_x2,\n min_y: min_y2,\n min_z: min_z2,\n max_x: max_x2,\n max_y: max_y2,\n max_z: max_z2,\n min_scale_x: min_scale_x2,\n min_scale_y: min_scale_y2,\n min_scale_z: min_scale_z2,\n max_scale_x: max_scale_x2,\n max_scale_y: max_scale_y2,\n max_scale_z: max_scale_z2,\n min_r: min_r2,\n min_g: min_g2,\n min_b: min_b2,\n max_r: max_r2,\n max_g: max_g2,\n max_b: max_b2\n } = item;\n ssChunks.push({\n min_x: min_x2,\n min_y: min_y2,\n min_z: min_z2,\n max_x: max_x2,\n max_y: max_y2,\n max_z: max_z2,\n min_scale_x: min_scale_x2,\n min_scale_y: min_scale_y2,\n min_scale_z: min_scale_z2,\n max_scale_x: max_scale_x2,\n max_scale_y: max_scale_y2,\n max_scale_z: max_scale_z2,\n min_r: min_r2,\n min_g: min_g2,\n min_b: min_b2,\n max_r: max_r2,\n max_g: max_g2,\n max_b: max_b2\n });\n };\n }\n function decodeSuperSplat(element) {\n if (shCallback && element.name === "sh") {\n numSh = getNumSh(element.properties);\n prepareSh();\n return ssShCallback;\n }\n if (element.name !== "vertex") {\n return null;\n }\n const { packed_position, packed_rotation, packed_scale, packed_color } = element.properties;\n if (!packed_position || !packed_rotation || !packed_scale || !packed_color) {\n throw new Error(\n "Missing PLY properties: packed_position, packed_rotation, packed_scale, packed_color"\n );\n }\n const SQRT2 = Math.sqrt(2);\n return (index, item) => {\n const chunk = ssChunks[index >>> 8];\n if (chunk == null) {\n throw new Error("Missing PLY chunk");\n }\n const {\n min_x,\n min_y,\n min_z,\n max_x,\n max_y,\n max_z,\n min_scale_x,\n min_scale_y,\n min_scale_z,\n max_scale_x,\n max_scale_y,\n max_scale_z,\n min_r,\n min_g,\n min_b,\n max_r,\n max_g,\n max_b\n } = chunk;\n const { packed_position: packed_position2, packed_rotation: packed_rotation2, packed_scale: packed_scale2, packed_color: packed_color2 } = item;\n const x2 = (packed_position2 >>> 21 & 2047) / 2047 * (max_x - min_x) + min_x;\n const y = (packed_position2 >>> 11 & 1023) / 1023 * (max_y - min_y) + min_y;\n const z = (packed_position2 & 2047) / 2047 * (max_z - min_z) + min_z;\n const r0 = ((packed_rotation2 >>> 20 & 1023) / 1023 - 0.5) * SQRT2;\n const r1 = ((packed_rotation2 >>> 10 & 1023) / 1023 - 0.5) * SQRT2;\n const r2 = ((packed_rotation2 & 1023) / 1023 - 0.5) * SQRT2;\n const rr = Math.sqrt(Math.max(0, 1 - r0 * r0 - r1 * r1 - r2 * r2));\n const rOrder = packed_rotation2 >>> 30;\n const quatX = rOrder === 0 ? r0 : rOrder === 1 ? rr : r1;\n const quatY = rOrder <= 1 ? r1 : rOrder === 2 ? rr : r2;\n const quatZ = rOrder <= 2 ? r2 : rr;\n const quatW = rOrder === 0 ? rr : r0;\n const scaleX = Math.exp(\n (packed_scale2 >>> 21 & 2047) / 2047 * (max_scale_x - min_scale_x) + min_scale_x\n );\n const scaleY = Math.exp(\n (packed_scale2 >>> 11 & 1023) / 1023 * (max_scale_y - min_scale_y) + min_scale_y\n );\n const scaleZ = Math.exp(\n (packed_scale2 & 2047) / 2047 * (max_scale_z - min_scale_z) + min_scale_z\n );\n const r = (packed_color2 >>> 24 & 255) / 255 * (max_r - min_r) + min_r;\n const g = (packed_color2 >>> 16 & 255) / 255 * (max_g - min_g) + min_g;\n const b = (packed_color2 >>> 8 & 255) / 255 * (max_b - min_b) + min_b;\n const opacity = (packed_color2 & 255) / 255;\n splatCallback(\n index,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n };\n }\n const elementCallback = (element) => {\n if (element.name === "chunk") {\n if (this.comments.some(\n (comment) => comment.toLowerCase().includes("supersplat")\n )) {\n return initSuperSplat(element);\n }\n }\n if (isSuperSplat) {\n return decodeSuperSplat(element);\n }\n if (element.name !== "vertex") {\n return null;\n }\n const {\n x: x2,\n y,\n z,\n scale_0,\n scale_1,\n scale_2,\n rot_0,\n rot_1,\n rot_2,\n rot_3,\n opacity,\n f_dc_0,\n f_dc_1,\n f_dc_2,\n red,\n green,\n blue,\n alpha\n } = element.properties;\n if (!x2 || !y || !z) {\n throw new Error("Missing PLY properties: x, y, z");\n }\n const hasScales = scale_0 && scale_1 && scale_2;\n const hasRots = rot_0 && rot_1 && rot_2 && rot_3;\n const alphaDiv = alpha != null ? FIELD_SCALE[alpha.type] : 1;\n const redDiv = red != null ? FIELD_SCALE[red.type] : 1;\n const greenDiv = green != null ? FIELD_SCALE[green.type] : 1;\n const blueDiv = blue != null ? FIELD_SCALE[blue.type] : 1;\n numSh = getNumSh(element.properties);\n prepareSh();\n return (index, item) => {\n const scaleX = hasScales ? Math.exp(item.scale_0) : _PlyReader.defaultPointScale;\n const scaleY = hasScales ? Math.exp(item.scale_1) : _PlyReader.defaultPointScale;\n const scaleZ = hasScales ? Math.exp(item.scale_2) : _PlyReader.defaultPointScale;\n const quatX = hasRots ? item.rot_1 : 0;\n const quatY = hasRots ? item.rot_2 : 0;\n const quatZ = hasRots ? item.rot_3 : 0;\n const quatW = hasRots ? item.rot_0 : 1;\n const op = opacity != null ? 1 / (1 + Math.exp(-item.opacity)) : alpha != null ? item.alpha / alphaDiv : 1;\n const r = f_dc_0 != null ? item.f_dc_0 * SH_C0$1 + 0.5 : red != null ? item.red / redDiv : 1;\n const g = f_dc_1 != null ? item.f_dc_1 * SH_C0$1 + 0.5 : green != null ? item.green / greenDiv : 1;\n const b = f_dc_2 != null ? item.f_dc_2 * SH_C0$1 + 0.5 : blue != null ? item.blue / blueDiv : 1;\n splatCallback(\n index,\n item.x,\n item.y,\n item.z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n op,\n r,\n g,\n b\n );\n if (shCallback && sh1) {\n if (sh1) {\n for (const [i2, key] of sh1Props.entries()) {\n sh1[i2] = item[key];\n }\n }\n if (sh2) {\n for (const [i2, key] of sh2Props.entries()) {\n sh2[i2] = item[key];\n }\n }\n if (sh3) {\n for (const [i2, key] of sh3Props.entries()) {\n sh3[i2] = item[key];\n }\n }\n shCallback(index, sh1, sh2, sh3);\n }\n };\n };\n this.parseData(elementCallback);\n }\n // Inject RGBA values into original PLY file, which can be used to modify\n // the color/opacity of the Gsplats and write out the modified PLY file.\n injectRgba(rgba) {\n let offset = 0;\n const data = this.data;\n if (data == null) {\n throw new Error("No parsed data");\n }\n if (rgba.length !== this.numSplats * 4) {\n throw new Error("Invalid RGBA array length");\n }\n for (const elementName in this.elements) {\n const element = this.elements[elementName];\n const { count, properties } = element;\n const parsers = [];\n let rgbaOffset = 0;\n const isVertex = elementName === "vertex";\n if (isVertex) {\n for (const name of ["opacity", "f_dc_0", "f_dc_1", "f_dc_2"]) {\n if (!properties[name] || properties[name].type !== "float") {\n throw new Error(`Can\'t injectRgba due to property: ${name}`);\n }\n }\n }\n for (const [propertyName, property] of Object.entries(properties)) {\n if (!property.isList) {\n if (isVertex) {\n if (propertyName === "f_dc_0" || propertyName === "f_dc_1" || propertyName === "f_dc_2") {\n const component = Number.parseInt(\n propertyName.slice("f_dc_".length)\n );\n parsers.push(() => {\n const value = (rgba[rgbaOffset + component] / 255 - 0.5) / SH_C0$1;\n SET_FIELD[property.type](\n data,\n offset,\n this.littleEndian,\n value\n );\n });\n } else if (propertyName === "opacity") {\n parsers.push(() => {\n const value = Math.max(\n -100,\n Math.min(\n 100,\n -Math.log(1 / (rgba[rgbaOffset + 3] / 255) - 1)\n )\n );\n SET_FIELD[property.type](\n data,\n offset,\n this.littleEndian,\n value\n );\n });\n }\n }\n parsers.push(() => {\n offset += FIELD_BYTES[property.type];\n });\n } else {\n parsers.push(() => {\n const length = PARSE_FIELD[property.countType](\n data,\n offset,\n this.littleEndian\n );\n offset += FIELD_BYTES[property.countType];\n offset += length * FIELD_BYTES[property.type];\n });\n }\n }\n for (let index = 0; index < count; index++) {\n for (const parser of parsers) {\n parser();\n }\n if (isVertex) {\n rgbaOffset += 4;\n }\n }\n }\n }\n };\n _PlyReader.defaultPointScale = 1e-3;\n let PlyReader = _PlyReader;\n const SH_C0$1 = 0.28209479177387814;\n const PARSE_FIELD = {\n char: (data, offset, littleEndian) => {\n return data.getInt8(offset);\n },\n uchar: (data, offset, littleEndian) => {\n return data.getUint8(offset);\n },\n short: (data, offset, littleEndian) => {\n return data.getInt16(offset, littleEndian);\n },\n ushort: (data, offset, littleEndian) => {\n return data.getUint16(offset, littleEndian);\n },\n int: (data, offset, littleEndian) => {\n return data.getInt32(offset, littleEndian);\n },\n uint: (data, offset, littleEndian) => {\n return data.getUint32(offset, littleEndian);\n },\n float: (data, offset, littleEndian) => {\n return data.getFloat32(offset, littleEndian);\n },\n double: (data, offset, littleEndian) => {\n return data.getFloat64(offset, littleEndian);\n }\n };\n const SET_FIELD = {\n char: (data, offset, littleEndian, value) => {\n data.setInt8(offset, value);\n },\n uchar: (data, offset, littleEndian, value) => {\n data.setUint8(offset, value);\n },\n short: (data, offset, littleEndian, value) => {\n data.setInt16(offset, value, littleEndian);\n },\n ushort: (data, offset, littleEndian, value) => {\n data.setUint16(offset, value, littleEndian);\n },\n int: (data, offset, littleEndian, value) => {\n data.setInt32(offset, value, littleEndian);\n },\n uint: (data, offset, littleEndian, value) => {\n data.setUint32(offset, value, littleEndian);\n },\n float: (data, offset, littleEndian, value) => {\n data.setFloat32(offset, value, littleEndian);\n },\n double: (data, offset, littleEndian, value) => {\n data.setFloat64(offset, value, littleEndian);\n }\n };\n const FIELD_BYTES = {\n char: 1,\n uchar: 1,\n short: 2,\n ushort: 2,\n int: 4,\n uint: 4,\n float: 4,\n double: 8\n };\n const FIELD_SCALE = {\n char: 127,\n uchar: 255,\n short: 32767,\n ushort: 65535,\n int: 2147483647,\n uint: 4294967295,\n float: 1,\n double: 1\n };\n const NUM_F_REST_TO_NUM_SH = {\n 0: 0,\n 9: 1,\n 24: 2,\n 45: 3\n };\n const NUM_SH_TO_NUM_F_REST = {\n 0: 0,\n 1: 9,\n 2: 24,\n 3: 45\n };\n function getNumSh(properties) {\n let num_f_rest = 0;\n while (properties[`f_rest_${num_f_rest}`]) {\n num_f_rest += 1;\n }\n const numSh = NUM_F_REST_TO_NUM_SH[num_f_rest];\n if (numSh == null) {\n throw new Error(`Unsupported number of SH coefficients: ${num_f_rest}`);\n }\n return numSh;\n }\n const Gsplat = { type: "Gsplat" };\n const TPackedSplats = { type: "PackedSplats" };\n const readPackedSplat = (packedSplats, index) => new ReadPackedSplat({ packedSplats, index });\n const readPackedSplatRange = (packedSplats, index, base, count) => new ReadPackedSplatRange({ packedSplats, index, base, count });\n const splitGsplat = (gsplat) => new SplitGsplat({ gsplat });\n const combineGsplat = ({\n gsplat,\n flags,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n }) => {\n return new CombineGsplat({\n gsplat,\n flags,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n });\n };\n const transformGsplat = (gsplat, {\n scale,\n rotate,\n translate,\n recolor\n }) => {\n return new TransformGsplat({ gsplat, scale, rotate, translate, recolor });\n };\n const defineGsplat = unindent(`\n struct Gsplat {\n vec3 center;\n uint flags;\n vec3 scales;\n int index;\n vec4 quaternion;\n vec4 rgba;\n };\n const uint GSPLAT_FLAG_ACTIVE = 1u << 0u;\n\n bool isGsplatActive(uint flags) {\n return (flags & GSPLAT_FLAG_ACTIVE) != 0u;\n }\n`);\n const definePackedSplats = unindent(`\n struct PackedSplats {\n usampler2DArray texture;\n int numSplats;\n };\n`);\n const defineReadPackedSplat = unindent(`\n bool readPackedSplat(usampler2DArray texture, int numSplats, int index, out Gsplat gsplat) {\n if ((index >= 0) && (index < numSplats)) {\n uvec4 packed = texelFetch(texture, splatTexCoord(index), 0);\n unpackSplat(packed, gsplat.center, gsplat.scales, gsplat.quaternion, gsplat.rgba);\n return true;\n } else {\n return false;\n }\n }\n`);\n class ReadPackedSplat extends Dyno {\n constructor({\n packedSplats,\n index\n }) {\n super({\n inTypes: { packedSplats: TPackedSplats, index: "int" },\n outTypes: { gsplat: Gsplat },\n inputs: { packedSplats, index },\n globals: () => [defineGsplat, definePackedSplats, defineReadPackedSplat],\n statements: ({ inputs, outputs }) => {\n const { gsplat } = outputs;\n if (!gsplat) {\n return [];\n }\n const { packedSplats: packedSplats2, index: index2 } = inputs;\n let statements;\n if (packedSplats2 && index2) {\n statements = unindentLines(`\n if (readPackedSplat(${packedSplats2}.texture, ${packedSplats2}.numSplats, ${index2}, ${gsplat})) {\n bool zeroSize = all(equal(${gsplat}.scales, vec3(0.0, 0.0, 0.0)));\n ${gsplat}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;\n } else {\n ${gsplat}.flags = 0u;\n }\n `);\n } else {\n statements = [`${gsplat}.flags = 0u;`];\n }\n statements.push(`${gsplat}.index = ${index2 ?? "0"};`);\n return statements;\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "gsplat");\n }\n }\n class ReadPackedSplatRange extends Dyno {\n constructor({\n packedSplats,\n index,\n base,\n count\n }) {\n super({\n inTypes: {\n packedSplats: TPackedSplats,\n index: "int",\n base: "int",\n count: "int"\n },\n outTypes: { gsplat: Gsplat },\n inputs: { packedSplats, index, base, count },\n globals: () => [defineGsplat, definePackedSplats, defineReadPackedSplat],\n statements: ({ inputs, outputs }) => {\n const { gsplat } = outputs;\n if (!gsplat) {\n return [];\n }\n const { packedSplats: packedSplats2, index: index2, base: base2, count: count2 } = inputs;\n let statements;\n if (packedSplats2 && index2 && base2 && count2) {\n statements = unindentLines(`\n ${gsplat}.flags = 0u;\n if ((${index2} >= ${base2}) && (${index2} < (${base2} + ${count2}))) {\n if (readPackedSplat(${packedSplats2}.texture, ${packedSplats2}.numSplats, ${index2}, ${gsplat})) {\n bool zeroSize = all(equal(${gsplat}.scales, vec3(0.0, 0.0, 0.0)));\n ${gsplat}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;\n }\n }\n `);\n } else {\n statements = [`${gsplat}.flags = 0u;`];\n }\n statements.push(`${gsplat}.index = ${index2 ?? "0"};`);\n return statements;\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "gsplat");\n }\n }\n class SplitGsplat extends Dyno {\n constructor({ gsplat }) {\n super({\n inTypes: { gsplat: Gsplat },\n outTypes: {\n flags: "uint",\n active: "bool",\n index: "int",\n center: "vec3",\n scales: "vec3",\n quaternion: "vec4",\n rgba: "vec4",\n rgb: "vec3",\n opacity: "float",\n x: "float",\n y: "float",\n z: "float",\n r: "float",\n g: "float",\n b: "float"\n },\n inputs: { gsplat },\n globals: () => [defineGsplat],\n statements: ({ inputs, outputs }) => {\n const { gsplat: gsplat2 } = inputs;\n const {\n flags,\n active,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n } = outputs;\n return [\n !flags ? null : `${flags} = ${gsplat2 ? `${gsplat2}.flags` : "0u"};`,\n !active ? null : `${active} = isGsplatActive(${gsplat2 ? `${gsplat2}.flags` : "0u"});`,\n !index ? null : `${index} = ${gsplat2 ? `${gsplat2}.index` : "0"};`,\n !center ? null : `${center} = ${gsplat2 ? `${gsplat2}.center` : "vec3(0.0, 0.0, 0.0)"};`,\n !scales ? null : `${scales} = ${gsplat2 ? `${gsplat2}.scales` : "vec3(0.0, 0.0, 0.0)"};`,\n !quaternion ? null : `${quaternion} = ${gsplat2 ? `${gsplat2}.quaternion` : "vec4(0.0, 0.0, 0.0, 1.0)"};`,\n !rgba ? null : `${rgba} = ${gsplat2 ? `${gsplat2}.rgba` : "vec4(0.0, 0.0, 0.0, 0.0)"};`,\n !rgb ? null : `${rgb} = ${gsplat2 ? `${gsplat2}.rgba.rgb` : "vec3(0.0, 0.0, 0.0)"};`,\n !opacity ? null : `${opacity} = ${gsplat2 ? `${gsplat2}.rgba.a` : "0.0"};`,\n !x2 ? null : `${x2} = ${gsplat2 ? `${gsplat2}.center.x` : "0.0"};`,\n !y ? null : `${y} = ${gsplat2 ? `${gsplat2}.center.y` : "0.0"};`,\n !z ? null : `${z} = ${gsplat2 ? `${gsplat2}.center.z` : "0.0"};`,\n !r ? null : `${r} = ${gsplat2 ? `${gsplat2}.rgba.r` : "0.0"};`,\n !g ? null : `${g} = ${gsplat2 ? `${gsplat2}.rgba.g` : "0.0"};`,\n !b ? null : `${b} = ${gsplat2 ? `${gsplat2}.rgba.b` : "0.0"};`\n ].filter(Boolean);\n }\n });\n }\n }\n class CombineGsplat extends Dyno {\n constructor({\n gsplat,\n flags,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n }) {\n super({\n inTypes: {\n gsplat: Gsplat,\n flags: "uint",\n index: "int",\n center: "vec3",\n scales: "vec3",\n quaternion: "vec4",\n rgba: "vec4",\n rgb: "vec3",\n opacity: "float",\n x: "float",\n y: "float",\n z: "float",\n r: "float",\n g: "float",\n b: "float"\n },\n outTypes: { gsplat: Gsplat },\n inputs: {\n gsplat,\n flags,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n },\n globals: () => [defineGsplat],\n statements: ({ inputs, outputs }) => {\n const { gsplat: outGsplat } = outputs;\n if (!outGsplat) {\n return [];\n }\n const {\n gsplat: gsplat2,\n flags: flags2,\n index: index2,\n center: center2,\n scales: scales2,\n quaternion: quaternion2,\n rgba: rgba2,\n rgb: rgb2,\n opacity: opacity2,\n x: x22,\n y: y2,\n z: z2,\n r: r2,\n g: g2,\n b: b2\n } = inputs;\n return [\n `${outGsplat}.flags = ${flags2 ?? (gsplat2 ? `${gsplat2}.flags` : "0u")};`,\n `${outGsplat}.index = ${index2 ?? (gsplat2 ? `${gsplat2}.index` : "0")};`,\n `${outGsplat}.center = ${center2 ?? (gsplat2 ? `${gsplat2}.center` : "vec3(0.0, 0.0, 0.0)")};`,\n `${outGsplat}.scales = ${scales2 ?? (gsplat2 ? `${gsplat2}.scales` : "vec3(0.0, 0.0, 0.0)")};`,\n `${outGsplat}.quaternion = ${quaternion2 ?? (gsplat2 ? `${gsplat2}.quaternion` : "vec4(0.0, 0.0, 0.0, 1.0)")};`,\n `${outGsplat}.rgba = ${rgba2 ?? (gsplat2 ? `${gsplat2}.rgba` : "vec4(0.0, 0.0, 0.0, 0.0)")};`,\n !rgb2 ? null : `${outGsplat}.rgba.rgb = ${rgb2};`,\n !opacity2 ? null : `${outGsplat}.rgba.a = ${opacity2};`,\n !x22 ? null : `${outGsplat}.center.x = ${x22};`,\n !y2 ? null : `${outGsplat}.center.y = ${y2};`,\n !z2 ? null : `${outGsplat}.center.z = ${z2};`,\n !r2 ? null : `${outGsplat}.rgba.r = ${r2};`,\n !g2 ? null : `${outGsplat}.rgba.g = ${g2};`,\n !b2 ? null : `${outGsplat}.rgba.b = ${b2};`\n ].filter(Boolean);\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "gsplat");\n }\n }\n unindent(`\n vec3 gsplatNormal(vec3 scales, vec4 quaternion) {\n float minScale = min(scales.x, min(scales.y, scales.z));\n vec3 normal;\n if (scales.z == minScale) {\n normal = vec3(0.0, 0.0, 1.0);\n } else if (scales.y == minScale) {\n normal = vec3(0.0, 1.0, 0.0);\n } else {\n normal = vec3(1.0, 0.0, 0.0);\n }\n return quatVec(quaternion, normal);\n }\n`);\n class TransformGsplat extends Dyno {\n constructor({\n gsplat,\n scale,\n rotate,\n translate,\n recolor\n }) {\n super({\n inTypes: {\n gsplat: Gsplat,\n scale: "float",\n rotate: "vec4",\n translate: "vec3",\n recolor: "vec4"\n },\n outTypes: { gsplat: Gsplat },\n inputs: { gsplat, scale, rotate, translate, recolor },\n globals: () => [defineGsplat],\n statements: ({ inputs, outputs, compile }) => {\n const { gsplat: gsplat2 } = outputs;\n if (!gsplat2 || !inputs.gsplat) {\n return [];\n }\n const { scale: scale2, rotate: rotate2, translate: translate2, recolor: recolor2 } = inputs;\n const indent = compile.indent;\n const statements = [\n `${gsplat2} = ${inputs.gsplat};`,\n `if (isGsplatActive(${gsplat2}.flags)) {`,\n scale2 ? `${indent}${gsplat2}.center *= ${scale2};` : null,\n rotate2 ? `${indent}${gsplat2}.center = quatVec(${rotate2}, ${gsplat2}.center);` : null,\n translate2 ? `${indent}${gsplat2}.center += ${translate2};` : null,\n scale2 ? `${indent}${gsplat2}.scales *= ${scale2};` : null,\n rotate2 ? `${indent}${gsplat2}.quaternion = quatQuat(${rotate2}, ${gsplat2}.quaternion);` : null,\n recolor2 ? `${indent}${gsplat2}.rgba *= ${recolor2};` : null,\n "}"\n ].filter(Boolean);\n return statements;\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "gsplat");\n }\n }\n const outputPackedSplat = (gsplat) => new OutputPackedSplat({ gsplat });\n class OutputPackedSplat extends Dyno {\n constructor({ gsplat }) {\n super({\n inTypes: { gsplat: Gsplat },\n inputs: { gsplat },\n globals: () => [defineGsplat],\n statements: ({ inputs, outputs }) => {\n const { output } = outputs;\n if (!output) {\n return [];\n }\n const { gsplat: gsplat2 } = inputs;\n if (gsplat2) {\n return unindentLines(`\n if (isGsplatActive(${gsplat2}.flags)) {\n ${output} = packSplat(${gsplat2}.center, ${gsplat2}.scales, ${gsplat2}.quaternion, ${gsplat2}.rgba);\n } else {\n ${output} = uvec4(0u, 0u, 0u, 0u);\n }\n `);\n }\n return [`${output} = uvec4(0u, 0u, 0u, 0u);`];\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "output");\n }\n }\n class OutputRgba8 extends Dyno {\n constructor({ rgba8 }) {\n super({\n inTypes: { rgba8: "vec4" },\n inputs: { rgba8 },\n statements: ({ inputs, outputs }) => [\n `target = ${inputs.rgba8 ?? "vec4(0.0, 0.0, 0.0, 0.0)"};`\n ]\n });\n }\n dynoOut() {\n return new DynoOutput(this, "rgba8");\n }\n }\n class DynoUniform extends Dyno {\n constructor({\n key,\n type,\n count,\n value,\n update,\n globals\n }) {\n key = key ?? "value";\n super({\n outTypes: { [key]: type },\n update: () => {\n if (update) {\n const value2 = update(this.value);\n if (value2 !== void 0) {\n this.value = value2;\n }\n }\n this.uniform.value = this.value;\n },\n generate: ({ inputs, outputs }) => {\n const allGlobals = (globals == null ? void 0 : globals({ inputs, outputs })) ?? [];\n const uniforms = {};\n const name = outputs[key];\n if (name) {\n allGlobals.push(`uniform ${dynoDeclare(name, type, count)};`);\n uniforms[name] = this.uniform;\n }\n return { globals: allGlobals, uniforms };\n }\n });\n this.type = type;\n this.count = count;\n this.value = value;\n this.uniform = { value };\n this.outKey = key;\n }\n dynoOut() {\n return new DynoOutput(this, this.outKey);\n }\n }\n class DynoInt extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "int", value, update });\n }\n }\n class DynoFloat extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "float", value, update });\n }\n }\n class DynoVec3 extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "vec3", value, update });\n }\n }\n class DynoVec4 extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "vec4", value, update });\n }\n }\n class DynoUsampler2DArray extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "usampler2DArray", value, update });\n }\n }\n class DynoProgram {\n constructor({\n graph,\n inputs,\n outputs,\n template\n }) {\n this.graph = graph;\n this.template = template;\n this.inputs = inputs ?? {};\n this.outputs = outputs ?? {};\n const compile = new Compilation({ indent: this.template.indent });\n for (const key in this.outputs) {\n if (this.outputs[key]) {\n compile.declares.add(this.outputs[key]);\n }\n }\n const statements = graph.compile({\n inputs: this.inputs,\n outputs: this.outputs,\n compile\n });\n this.shader = template.generate({ globals: compile.globals, statements });\n this.uniforms = compile.uniforms;\n this.updaters = compile.updaters;\n }\n prepareMaterial() {\n return getMaterial(this);\n }\n update() {\n for (const updater of this.updaters) {\n updater();\n }\n }\n }\n class DynoProgramTemplate {\n constructor(template) {\n const globals = template.match(/^([ \\t]*)\\{\\{\\s*GLOBALS\\s*\\}\\}/m);\n const statements = template.match(/^([ \\t]*)\\{\\{\\s*STATEMENTS\\s*\\}\\}/m);\n if (!globals || !statements) {\n throw new Error(\n "Template must contain {{ GLOBALS }} and {{ STATEMENTS }}"\n );\n }\n this.before = template.substring(0, globals.index);\n this.between = template.substring(\n globals.index + globals[0].length,\n statements.index\n );\n this.after = template.substring(\n statements.index + statements[0].length\n );\n this.indent = statements[1];\n }\n generate({\n globals,\n statements\n }) {\n return this.before + Array.from(globals).join("\\n\\n") + this.between + statements.map((s) => this.indent + s).join("\\n") + this.after;\n }\n }\n const programMaterial = /* @__PURE__ */ new Map();\n function getMaterial(program) {\n let material = programMaterial.get(program);\n if (material) {\n return material;\n }\n material = new RawShaderMaterial({\n glslVersion: GLSL3,\n vertexShader: IDENT_VERTEX_SHADER,\n fragmentShader: program.shader,\n uniforms: program.uniforms\n });\n programMaterial.set(program, material);\n return material;\n }\n function addOutputType(a, b, operation = "add") {\n const error = () => {\n throw new Error(`Invalid ${operation} types: ${a}, ${b}`);\n };\n if (a === b) return a;\n if (a === "int") {\n if (isIntType(b)) return b;\n error();\n }\n if (b === "int") {\n if (isIntType(a)) return a;\n error();\n }\n if (a === "uint") {\n if (isUintType(b)) return b;\n error();\n }\n if (b === "uint") {\n if (isUintType(a)) return a;\n error();\n }\n if (a === "float") {\n if (isAllFloatType(b)) return b;\n error();\n }\n if (b === "float") {\n if (isAllFloatType(a)) return a;\n error();\n }\n throw new Error(`Invalid ${operation} types: ${a}, ${b}`);\n }\n function subOutputType(a, b) {\n return addOutputType(a, b, "sub");\n }\n function mulOutputType(a, b) {\n const error = () => {\n throw new Error(`Invalid mul types: ${a}, ${b}`);\n };\n const result = (value) => value;\n if (a === "int") {\n if (isIntType(b)) return result(b);\n error();\n }\n if (b === "int") {\n if (isIntType(a)) return result(a);\n error();\n }\n if (a === "uint") {\n if (isUintType(b)) return result(b);\n error();\n }\n if (b === "uint") {\n if (isUintType(a)) return result(a);\n error();\n }\n if (a === "float") {\n if (isAllFloatType(b)) return result(b);\n error();\n }\n if (b === "float") {\n if (isAllFloatType(a)) return result(a);\n error();\n }\n if (isIntType(a) || isUintType(a) || isIntType(b) || isUintType(b)) {\n if (a === b) return result(a);\n error();\n }\n if (a === "vec2") {\n if (b === "vec2" || isMat2(b)) return result("vec2");\n if (b === "mat3x2") return result("vec3");\n if (b === "mat4x2") return result("vec4");\n error();\n }\n if (a === "vec3") {\n if (b === "mat2x3") return result("vec2");\n if (b === "vec3" || isMat3(b)) return result("vec3");\n if (b === "mat4x3") return result("vec4");\n error();\n }\n if (a === "vec4") {\n if (b === "mat2x4") return result("vec2");\n if (b === "mat3x4") return result("vec3");\n if (b === "vec4" || isMat4(b)) return result("vec4");\n error();\n }\n if (b === "vec2") {\n if (isMat2(a)) return result("vec2");\n if (a === "mat2x3") return result("vec3");\n if (a === "mat2x4") return result("vec4");\n error();\n }\n if (b === "vec3") {\n if (a === "mat3x2") return result("vec2");\n if (isMat3(a)) return result("vec3");\n if (a === "mat3x4") return result("vec4");\n error();\n }\n if (b === "vec4") {\n if (a === "mat4x2") return result("vec2");\n if (a === "mat4x3") return result("vec3");\n if (isMat4(a)) return result("vec4");\n error();\n }\n if (isMat2(a)) {\n if (isMat2(b)) return result("mat2");\n if (b === "mat3x2") return result("mat3x2");\n if (b === "mat4x2") return result("mat4x2");\n error();\n }\n if (a === "mat2x3") {\n if (isMat2(b)) return result("mat2x3");\n if (b === "mat3x2") return result("mat3");\n if (b === "mat4x2") return result("mat4x3");\n error();\n }\n if (a === "mat2x4") {\n if (isMat2(b)) return result("mat2x4");\n if (b === "mat3x2") return result("mat3x4");\n if (b === "mat4x2") return result("mat4");\n error();\n }\n if (a === "mat3x2") {\n if (b === "mat2x3") return result("mat2");\n if (isMat3(b)) return result("mat3x2");\n if (b === "mat4x3") return result("mat4x2");\n error();\n }\n if (isMat3(a)) {\n if (b === "mat2x3") return result("mat2x3");\n if (isMat3(b)) return result("mat3");\n if (b === "mat4x3") return result("mat4x3");\n error();\n }\n if (a === "mat3x4") {\n if (b === "mat2x3") return result("mat2x4");\n if (isMat3(b)) return result("mat3x4");\n if (b === "mat4x3") return result("mat4");\n error();\n }\n if (a === "mat4x2") {\n if (b === "mat2x4") return result("mat2");\n if (b === "mat3x4") return result("mat3x2");\n if (isMat4(b)) return result("mat4x2");\n error();\n }\n if (a === "mat4x3") {\n if (b === "mat2x4") return result("mat2x3");\n if (b === "mat3x4") return result("mat3");\n if (isMat4(b)) return result("mat4x3");\n error();\n }\n if (isMat4(a)) {\n if (b === "mat2x4") return result("mat2x4");\n if (b === "mat3x4") return result("mat3x4");\n if (isMat4(b)) return result("mat4");\n error();\n }\n throw new Error(`Invalid mul types: ${a}, ${b}`);\n }\n const add = (a, b) => new Add({ a, b });\n const sub = (a, b) => new Sub({ a, b });\n const mul = (a, b) => new Mul({ a, b });\n class Add extends BinaryOp {\n constructor({ a, b }) {\n super({ a, b, outKey: "sum", outTypeFunc: addOutputType });\n this.statements = ({ inputs, outputs }) => {\n return [`${outputs.sum} = ${inputs.a} + ${inputs.b};`];\n };\n }\n }\n class Sub extends BinaryOp {\n constructor({ a, b }) {\n super({ a, b, outKey: "difference", outTypeFunc: subOutputType });\n this.statements = ({ inputs, outputs }) => {\n return [`${outputs.difference} = ${inputs.a} - ${inputs.b};`];\n };\n }\n }\n class Mul extends BinaryOp {\n constructor({ a, b }) {\n super({ a, b, outKey: "product", outTypeFunc: mulOutputType });\n this.statements = ({ inputs, outputs }) => {\n return [`${outputs.product} = ${inputs.a} * ${inputs.b};`];\n };\n }\n }\n const normalize = (a) => new Normalize({ a });\n const extendVec = (a, b) => new ExtendVec({ a, b });\n class Normalize extends UnaryOp {\n constructor({ a }) {\n super({ a, outTypeFunc: (aType) => aType, outKey: "normalize" });\n this.statements = ({ inputs, outputs }) => [\n `${outputs.normalize} = normalize(${inputs.a});`\n ];\n }\n }\n function extendVecOutputType(type) {\n if (type === "float") return "vec2";\n if (type === "vec2") return "vec3";\n if (type === "vec3") return "vec4";\n throw new Error("Invalid type");\n }\n class ExtendVec extends BinaryOp {\n constructor({ a, b }) {\n const type = valType(a);\n const outType = extendVecOutputType(type);\n super({ a, b, outKey: "extend", outTypeFunc: () => outType });\n this.statements = ({ inputs, outputs }) => [\n `${outputs.extend} = ${outType}(${inputs.a}, ${inputs.b});`\n ];\n }\n }\n const transformPos = (position, {\n scale,\n scales,\n rotate,\n translate\n }) => {\n return new TransformPosition({ position, scale, scales, rotate, translate }).outputs.position;\n };\n const transformDir = (dir, {\n scale,\n scales,\n rotate\n }) => {\n return new TransformDir({ dir, scale, scales, rotate }).outputs.dir;\n };\n class TransformPosition extends Dyno {\n constructor({\n position,\n scale,\n scales,\n rotate,\n translate\n }) {\n super({\n inTypes: {\n position: "vec3",\n scale: "float",\n scales: "vec3",\n rotate: "vec4",\n translate: "vec3"\n },\n outTypes: { position: "vec3" },\n inputs: { position, scale, scales, rotate, translate },\n statements: ({ inputs, outputs }) => {\n const { position: position2 } = outputs;\n if (!position2) {\n return [];\n }\n const { scale: scale2, scales: scales2, rotate: rotate2, translate: translate2 } = inputs;\n return [\n `${position2} = ${inputs.position ?? "vec3(0.0, 0.0, 0.0)"};`,\n !scale2 ? null : `${position2} *= ${scale2};`,\n !scales2 ? null : `${position2} *= ${scales2};`,\n !rotate2 ? null : `${position2} = quatVec(${rotate2}, ${position2});`,\n !translate2 ? null : `${position2} += ${translate2};`\n ].filter(Boolean);\n }\n });\n }\n }\n class TransformDir extends Dyno {\n constructor({\n dir,\n scale,\n scales,\n rotate\n }) {\n super({\n inTypes: { dir: "vec3", scale: "float", scales: "vec3", rotate: "vec4" },\n outTypes: { dir: "vec3" },\n inputs: { dir, scale, scales, rotate },\n statements: ({ inputs, outputs }) => {\n const { dir: dir2 } = outputs;\n if (!dir2) {\n return [];\n }\n const { scale: scale2, scales: scales2, rotate: rotate2 } = inputs;\n return [\n `${dir2} = ${inputs.dir ?? "vec3(0.0, 0.0, 0.0)"};`,\n !scale2 ? null : `${dir2} *= ${scale2};`,\n !scales2 ? null : `${dir2} *= ${scales2};`,\n !rotate2 ? null : `${dir2} = quatVec(${rotate2}, ${dir2});`\n ].filter(Boolean);\n }\n });\n }\n }\n var computeUvec4_default = "precision highp float;\\nprecision highp int;\\nprecision highp sampler2D;\\nprecision highp usampler2D;\\nprecision highp isampler2D;\\nprecision highp sampler2DArray;\\nprecision highp usampler2DArray;\\nprecision highp isampler2DArray;\\nprecision highp sampler3D;\\nprecision highp usampler3D;\\nprecision highp isampler3D;\\n\\n#include \\n\\nuniform uint targetLayer;\\nuniform int targetBase;\\nuniform int targetCount;\\n\\nout uvec4 target;\\n\\n{{ GLOBALS }}\\n\\nvoid produceSplat(int index) {\\n {{ STATEMENTS }}\\n}\\n\\nvoid main() {\\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\\n int index = targetIndex - targetBase;\\n\\n if ((index >= 0) && (index < targetCount)) {\\n produceSplat(index);\\n } else {\\n target = uvec4(0u, 0u, 0u, 0u);\\n }\\n}";\n const _PackedSplats = class _PackedSplats {\n constructor(options = {}) {\n this.maxSplats = 0;\n this.numSplats = 0;\n this.packedArray = null;\n this.isInitialized = false;\n this.target = null;\n this.source = null;\n this.needsUpdate = true;\n this.extra = {};\n this.dyno = new DynoPackedSplats({ packedSplats: this });\n this.initialized = Promise.resolve(this);\n this.reinitialize(options);\n }\n reinitialize(options) {\n this.isInitialized = false;\n if (options.url || options.fileBytes || options.construct) {\n this.initialized = this.asyncInitialize(options).then(() => {\n this.isInitialized = true;\n return this;\n });\n } else {\n this.initialize(options);\n this.isInitialized = true;\n this.initialized = Promise.resolve(this);\n }\n }\n initialize(options) {\n if (options.packedArray) {\n this.packedArray = options.packedArray;\n this.maxSplats = Math.floor(this.packedArray.length / 4);\n this.maxSplats = Math.floor(this.maxSplats / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n this.numSplats = Math.min(\n this.maxSplats,\n options.numSplats ?? Number.POSITIVE_INFINITY\n );\n } else {\n this.maxSplats = options.maxSplats ?? 0;\n this.numSplats = 0;\n }\n this.extra = options.extra ?? {};\n }\n async asyncInitialize(options) {\n let { url, fileBytes, construct } = options;\n if (url) {\n fileBytes = await fetch(url).then(async (response) => {\n if (!response.ok) {\n throw new Error(\n `${response.status} "${response.statusText}" fetching URL: ${url}`\n );\n }\n const arrayBuffer = await response.arrayBuffer();\n return arrayBuffer;\n });\n }\n if (fileBytes) {\n const unpacked = await unpackSplats({\n input: fileBytes,\n fileType: options.fileType,\n pathOrUrl: options.fileName ?? url\n });\n this.initialize(unpacked);\n }\n if (construct) {\n const maybePromise = construct(this);\n if (maybePromise instanceof Promise) {\n await maybePromise;\n }\n }\n }\n // Call this when you are finished with the PackedSplats and want to free\n // any buffers it holds.\n dispose() {\n if (this.target) {\n this.target.dispose();\n this.target = null;\n }\n if (this.source) {\n this.source.dispose();\n this.source = null;\n }\n }\n // Ensures that this.packedArray can fit numSplats Gsplats. If it\'s too small,\n // resize exponentially and copy over the original data.\n //\n // Typically you don\'t need to call this, because calling this.setSplat(index, ...)\n // and this.pushSplat(...) will automatically call ensureSplats() so we have\n // enough splats.\n ensureSplats(numSplats) {\n const targetSize = numSplats <= this.maxSplats ? this.maxSplats : (\n // Grow exponentially to avoid frequent reallocations\n Math.max(numSplats, 2 * this.maxSplats)\n );\n const currentSize = !this.packedArray ? 0 : this.packedArray.length / 4;\n if (!this.packedArray || targetSize > currentSize) {\n this.maxSplats = getTextureSize(targetSize).maxSplats;\n const newArray = new Uint32Array(this.maxSplats * 4);\n if (this.packedArray) {\n newArray.set(this.packedArray);\n }\n this.packedArray = newArray;\n }\n return this.packedArray;\n }\n // Ensure the extra array for the given level is large enough to hold numSplats\n ensureSplatsSh(level, numSplats) {\n let wordsPerSplat;\n let key;\n if (level === 0) {\n return this.ensureSplats(numSplats);\n }\n if (level === 1) {\n wordsPerSplat = 2;\n key = "sh1";\n } else if (level === 2) {\n wordsPerSplat = 4;\n key = "sh2";\n } else if (level === 3) {\n wordsPerSplat = 4;\n key = "sh3";\n } else {\n throw new Error(`Invalid level: ${level}`);\n }\n let maxSplats = !this.extra[key] ? 0 : this.extra[key].length / wordsPerSplat;\n const targetSize = numSplats <= maxSplats ? maxSplats : Math.max(numSplats, 2 * maxSplats);\n if (!this.extra[key] || targetSize > maxSplats) {\n maxSplats = getTextureSize(targetSize).maxSplats;\n const newArray = new Uint32Array(maxSplats * wordsPerSplat);\n if (this.extra[key]) {\n newArray.set(this.extra[key]);\n }\n this.extra[key] = newArray;\n }\n return this.extra[key];\n }\n // Unpack the 16-byte Gsplat data at index into the Three.js components\n // center: THREE.Vector3, scales: THREE.Vector3, quaternion: THREE.Quaternion,\n // opacity: number 0..1, color: THREE.Color 0..1.\n getSplat(index) {\n if (!this.packedArray || index >= this.numSplats) {\n throw new Error("Invalid index");\n }\n return unpackSplat(this.packedArray, index);\n }\n // Set all PackedSplat components at index with the provided Gsplat attributes\n // (can be the same objects returned by getSplat). Ensures there is capacity\n // for at least index+1 Gsplats.\n setSplat(index, center, scales, quaternion, opacity, color) {\n const packedSplats = this.ensureSplats(index + 1);\n setPackedSplat(\n packedSplats,\n index,\n center.x,\n center.y,\n center.z,\n scales.x,\n scales.y,\n scales.z,\n quaternion.x,\n quaternion.y,\n quaternion.z,\n quaternion.w,\n opacity,\n color.r,\n color.g,\n color.b\n );\n this.numSplats = Math.max(this.numSplats, index + 1);\n }\n // Effectively calls this.setSplat(this.numSplats++, center, ...), useful on\n // construction where you just want to iterate and create a collection of Gsplats.\n pushSplat(center, scales, quaternion, opacity, color) {\n const packedSplats = this.ensureSplats(this.numSplats + 1);\n setPackedSplat(\n packedSplats,\n this.numSplats,\n center.x,\n center.y,\n center.z,\n scales.x,\n scales.y,\n scales.z,\n quaternion.x,\n quaternion.y,\n quaternion.z,\n quaternion.w,\n opacity,\n color.r,\n color.g,\n color.b\n );\n ++this.numSplats;\n }\n // Iterate over Gsplats index 0..=(this.numSplats-1), unpack each Gsplat\n // and invoke the callback function with the Gsplat attributes.\n forEachSplat(callback) {\n if (!this.packedArray || !this.numSplats) {\n return;\n }\n for (let i2 = 0; i2 < this.numSplats; ++i2) {\n const unpacked = unpackSplat(this.packedArray, i2);\n callback(\n i2,\n unpacked.center,\n unpacked.scales,\n unpacked.quaternion,\n unpacked.opacity,\n unpacked.color\n );\n }\n }\n // Ensures our PackedSplats.target render target has enough space to generate\n // maxSplats total Gsplats, and reallocate if not large enough.\n ensureGenerate(maxSplats) {\n if (this.target && (maxSplats ?? 1) <= this.maxSplats) {\n return false;\n }\n this.dispose();\n const textureSize = getTextureSize(maxSplats ?? 1);\n const { width, height, depth } = textureSize;\n this.maxSplats = textureSize.maxSplats;\n this.target = new WebGLArrayRenderTarget(width, height, depth, {\n depthBuffer: false,\n stencilBuffer: false,\n generateMipmaps: false,\n magFilter: NearestFilter,\n minFilter: NearestFilter\n });\n this.target.texture.format = RGBAIntegerFormat;\n this.target.texture.type = UnsignedIntType;\n this.target.texture.internalFormat = "RGBA32UI";\n return true;\n }\n // Given an array of splatCounts (.numSplats for each\n // SplatGenerator/SplatMesh in the scene), compute a\n // "mapping layout" in the composite array of generated outputs.\n generateMapping(splatCounts) {\n let maxSplats = 0;\n const mapping = splatCounts.map((numSplats) => {\n const base = maxSplats;\n const rounded = Math.ceil(numSplats / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n maxSplats += rounded;\n return { base, count: numSplats };\n });\n return { maxSplats, mapping };\n }\n // Returns a THREE.DataArrayTexture representing the PackedSplats content as\n // a Uint32x4 data array texture (2048 x 2048 x depth in size)\n getTexture() {\n if (this.target) {\n return this.target.texture;\n }\n if (this.source || this.packedArray) {\n const source = this.maybeUpdateSource();\n return source;\n }\n return _PackedSplats.getEmpty();\n }\n // Check if source texture needs to be created/updated\n maybeUpdateSource() {\n if (!this.packedArray) {\n throw new Error("No packed splats");\n }\n if (this.needsUpdate || !this.source) {\n this.needsUpdate = false;\n if (this.source) {\n const { width, height, depth } = this.source.image;\n if (this.maxSplats !== width * height * depth) {\n this.source.dispose();\n this.source = null;\n }\n }\n if (!this.source) {\n const { width, height, depth } = getTextureSize(this.maxSplats);\n this.source = new DataArrayTexture(\n this.packedArray,\n width,\n height,\n depth\n );\n this.source.format = RGBAIntegerFormat;\n this.source.type = UnsignedIntType;\n this.source.internalFormat = "RGBA32UI";\n this.source.needsUpdate = true;\n } else if (this.packedArray.buffer !== this.source.image.data.buffer) {\n this.source.image.data = new Uint8Array(this.packedArray.buffer);\n }\n this.source.needsUpdate = true;\n }\n return this.source;\n }\n // Can be used where you need an uninitialized THREE.DataArrayTexture like\n // a uniform you will update with the result of this.getTexture() later.\n static getEmpty() {\n if (!_PackedSplats.emptySource) {\n const { width, height, depth, maxSplats } = getTextureSize(1);\n const emptyArray = new Uint32Array(maxSplats * 4);\n _PackedSplats.emptySource = new DataArrayTexture(\n emptyArray,\n width,\n height,\n depth\n );\n _PackedSplats.emptySource.format = RGBAIntegerFormat;\n _PackedSplats.emptySource.type = UnsignedIntType;\n _PackedSplats.emptySource.internalFormat = "RGBA32UI";\n _PackedSplats.emptySource.needsUpdate = true;\n }\n return _PackedSplats.emptySource;\n }\n // Get a program and THREE.RawShaderMaterial for a given GsplatGenerator,\n // generating it if necessary and caching the result.\n prepareProgramMaterial(generator) {\n let program = _PackedSplats.generatorProgram.get(generator);\n if (!program) {\n const graph = dynoBlock(\n { index: "int" },\n { output: "uvec4" },\n ({ index }) => {\n generator.inputs.index = index;\n const gsplat = generator.outputs.gsplat;\n const output = outputPackedSplat(gsplat);\n return { output };\n }\n );\n if (!_PackedSplats.programTemplate) {\n _PackedSplats.programTemplate = new DynoProgramTemplate(\n computeUvec4_default\n );\n }\n program = new DynoProgram({\n graph,\n inputs: { index: "index" },\n outputs: { output: "target" },\n template: _PackedSplats.programTemplate\n });\n Object.assign(program.uniforms, {\n targetLayer: { value: 0 },\n targetBase: { value: 0 },\n targetCount: { value: 0 }\n });\n _PackedSplats.generatorProgram.set(generator, program);\n }\n const material = program.prepareMaterial();\n _PackedSplats.mesh.material = material;\n return { program, material };\n }\n saveRenderState(renderer) {\n return {\n xrPresenting: renderer.xr.isPresenting,\n autoClear: renderer.autoClear,\n scissorTest: renderer.getScissorTest(),\n pixelRatio: renderer.getPixelRatio()\n };\n }\n resetRenderState(renderer, state) {\n renderer.setRenderTarget(null);\n renderer.setPixelRatio(state.pixelRatio);\n renderer.xr.isPresenting = state.xrPresenting;\n renderer.autoClear = state.autoClear;\n renderer.setScissorTest(state.scissorTest);\n }\n // Executes a dyno program specified by generator which is any DynoBlock that\n // maps { index: "int" } to { gsplat: Gsplat }. This is called in\n // ForgeRenderer.updateInternal() to re-generate Gsplats in the scene for\n // SplatGenerator instances whose version is newer than what was generated\n // for it last time.\n generate({\n generator,\n base,\n count,\n renderer\n }) {\n if (!this.target) {\n throw new Error("Target must be initialized with ensureSplats");\n }\n if (base + count > this.maxSplats) {\n throw new Error("Base + count exceeds maxSplats");\n }\n const { program, material } = this.prepareProgramMaterial(generator);\n program.update();\n const renderState = this.saveRenderState(renderer);\n const nextBase = Math.ceil((base + count) / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n const layerSize = SPLAT_TEX_WIDTH * SPLAT_TEX_HEIGHT;\n material.uniforms.targetBase.value = base;\n material.uniforms.targetCount.value = count;\n while (base < nextBase) {\n const layer = Math.floor(base / layerSize);\n material.uniforms.targetLayer.value = layer;\n const layerBase = layer * layerSize;\n const layerYStart = Math.floor((base - layerBase) / SPLAT_TEX_WIDTH);\n const layerYEnd = Math.min(\n SPLAT_TEX_HEIGHT,\n Math.ceil((nextBase - layerBase) / SPLAT_TEX_WIDTH)\n );\n renderer.setPixelRatio(1);\n renderer.setRenderTarget(this.target, layer);\n renderer.xr.isPresenting = false;\n renderer.autoClear = false;\n renderer.setScissorTest(true);\n renderer.setScissor(\n 0,\n layerYStart,\n SPLAT_TEX_WIDTH,\n layerYEnd - layerYStart\n );\n renderer.render(_PackedSplats.scene, _PackedSplats.camera);\n base += SPLAT_TEX_WIDTH * (layerYEnd - layerYStart);\n }\n this.resetRenderState(renderer, renderState);\n return { nextBase };\n }\n };\n _PackedSplats.emptySource = null;\n _PackedSplats.programTemplate = null;\n _PackedSplats.generatorProgram = /* @__PURE__ */ new Map();\n _PackedSplats.geometry = new PlaneGeometry(2, 2);\n _PackedSplats.mesh = new Mesh(\n _PackedSplats.geometry,\n new RawShaderMaterial({ visible: false })\n );\n _PackedSplats.scene = new Scene().add(_PackedSplats.mesh);\n _PackedSplats.camera = new Camera();\n let PackedSplats = _PackedSplats;\n class DynoPackedSplats extends DynoUniform {\n constructor({ packedSplats } = {}) {\n super({\n key: "packedSplats",\n type: TPackedSplats,\n globals: () => [definePackedSplats],\n value: {\n texture: PackedSplats.getEmpty(),\n numSplats: 0\n },\n update: (value) => {\n var _a2, _b2;\n value.texture = ((_a2 = this.packedSplats) == null ? void 0 : _a2.getTexture()) ?? PackedSplats.getEmpty();\n value.numSplats = ((_b2 = this.packedSplats) == null ? void 0 : _b2.numSplats) ?? 0;\n return value;\n }\n });\n this.packedSplats = packedSplats;\n }\n }\n var computeVec4_default = "precision highp float;\\nprecision highp int;\\nprecision highp sampler2D;\\nprecision highp usampler2D;\\nprecision highp isampler2D;\\nprecision highp sampler2DArray;\\nprecision highp usampler2DArray;\\nprecision highp isampler2DArray;\\nprecision highp sampler3D;\\nprecision highp usampler3D;\\nprecision highp isampler3D;\\n\\n#include \\n\\nuniform uint targetLayer;\\nuniform int targetBase;\\nuniform int targetCount;\\n\\nout vec4 target;\\n\\n{{ GLOBALS }}\\n\\nvoid computeReadback(int index) {\\n {{ STATEMENTS }}\\n}\\n\\nvoid main() {\\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\\n int index = targetIndex - targetBase;\\n\\n if ((index >= 0) && (index < targetCount)) {\\n computeReadback(index);\\n } else {\\n target = vec4(0.0, 0.0, 0.0, 0.0);\\n }\\n}";\n const _Readback = class _Readback {\n constructor({ renderer } = {}) {\n this.renderer = renderer;\n this.capacity = 0;\n this.count = 0;\n }\n dispose() {\n if (this.target) {\n this.target.dispose();\n this.target = void 0;\n }\n }\n // Ensure we have a buffer large enough for the readback of count indices.\n // Pass in previous bufer of the desired type.\n ensureBuffer(count, buffer) {\n const roundedCount = Math.ceil(Math.max(1, count) / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n const bytes = roundedCount * 4;\n if (buffer.byteLength >= bytes) {\n return buffer;\n }\n const newBuffer = new ArrayBuffer(bytes);\n if (buffer instanceof ArrayBuffer) {\n return newBuffer;\n }\n const ctor = buffer.constructor;\n return new ctor(newBuffer);\n }\n // Ensure our render target is large enough for the readback of capacity indices.\n ensureCapacity(capacity) {\n const { width, height, depth, maxSplats } = getTextureSize(capacity);\n if (!this.target || maxSplats > this.capacity) {\n this.dispose();\n this.capacity = maxSplats;\n this.target = new WebGLArrayRenderTarget(width, height, depth, {\n depthBuffer: false,\n stencilBuffer: false,\n generateMipmaps: false,\n magFilter: NearestFilter,\n minFilter: NearestFilter\n });\n this.target.texture.format = RGBAFormat;\n this.target.texture.type = UnsignedByteType;\n this.target.texture.internalFormat = "RGBA8";\n }\n }\n // Get a program and THREE.RawShaderMaterial for a given Rgba8Readback,\n // generating it if necessary and caching the result.\n prepareProgramMaterial(reader) {\n let program = _Readback.readbackProgram.get(reader);\n if (!program) {\n const graph = dynoBlock(\n { index: "int" },\n { rgba8: "vec4" },\n ({ index }) => {\n reader.inputs.index = index;\n const rgba8 = new OutputRgba8({ rgba8: reader.outputs.rgba8 });\n return { rgba8 };\n }\n );\n if (!_Readback.programTemplate) {\n _Readback.programTemplate = new DynoProgramTemplate(computeVec4_default);\n }\n program = new DynoProgram({\n graph,\n inputs: { index: "index" },\n outputs: { rgba8: "target" },\n template: _Readback.programTemplate\n });\n Object.assign(program.uniforms, {\n targetLayer: { value: 0 },\n targetBase: { value: 0 },\n targetCount: { value: 0 }\n });\n _Readback.readbackProgram.set(reader, program);\n }\n const material = program.prepareMaterial();\n _Readback.mesh.material = material;\n return { program, material };\n }\n saveRenderState(renderer) {\n return {\n xrPresenting: renderer.xr.isPresenting,\n autoClear: renderer.autoClear,\n scissorTest: renderer.getScissorTest(),\n pixelRatio: renderer.getPixelRatio()\n };\n }\n resetRenderState(renderer, state) {\n renderer.setRenderTarget(null);\n renderer.setPixelRatio(state.pixelRatio);\n renderer.xr.isPresenting = state.xrPresenting;\n renderer.autoClear = state.autoClear;\n renderer.setScissorTest(state.scissorTest);\n }\n process({\n count,\n material\n }) {\n const renderer = this.renderer;\n if (!renderer) {\n throw new Error("No renderer");\n }\n if (!this.target) {\n throw new Error("No target");\n }\n const layerSize = SPLAT_TEX_WIDTH * SPLAT_TEX_HEIGHT;\n material.uniforms.targetBase.value = 0;\n material.uniforms.targetCount.value = count;\n let baseIndex = 0;\n while (baseIndex < count) {\n const layer = Math.floor(baseIndex / layerSize);\n const layerBase = layer * layerSize;\n const layerYEnd = Math.min(\n SPLAT_TEX_HEIGHT,\n Math.ceil((count - layerBase) / SPLAT_TEX_WIDTH)\n );\n material.uniforms.targetLayer.value = layer;\n renderer.setPixelRatio(1);\n renderer.setRenderTarget(this.target, layer);\n renderer.xr.isPresenting = false;\n renderer.autoClear = false;\n renderer.setScissorTest(true);\n renderer.setScissor(0, 0, SPLAT_TEX_WIDTH, layerYEnd);\n renderer.render(_Readback.scene, _Readback.camera);\n baseIndex += SPLAT_TEX_WIDTH * layerYEnd;\n }\n this.count = count;\n }\n async read({\n readback\n }) {\n const renderer = this.renderer;\n if (!renderer) {\n throw new Error("No renderer");\n }\n if (!this.target) {\n throw new Error("No target");\n }\n const roundedCount = Math.ceil(this.count / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n if (readback.byteLength < roundedCount * 4) {\n throw new Error(\n `Readback buffer too small: ${readback.byteLength} < ${roundedCount * 4}`\n );\n }\n const readbackUint8 = new Uint8Array(\n readback instanceof ArrayBuffer ? readback : readback.buffer\n );\n const layerSize = SPLAT_TEX_WIDTH * SPLAT_TEX_HEIGHT;\n let baseIndex = 0;\n const promises = [];\n while (baseIndex < this.count) {\n const layer = Math.floor(baseIndex / layerSize);\n const layerBase = layer * layerSize;\n const layerYEnd = Math.min(\n SPLAT_TEX_HEIGHT,\n Math.ceil((this.count - layerBase) / SPLAT_TEX_WIDTH)\n );\n renderer.setPixelRatio(1);\n renderer.setRenderTarget(this.target, layer);\n const readbackSize = SPLAT_TEX_WIDTH * layerYEnd * 4;\n const subReadback = readbackUint8.subarray(\n layerBase * 4,\n layerBase * 4 + readbackSize\n );\n const promise = renderer == null ? void 0 : renderer.readRenderTargetPixelsAsync(\n this.target,\n 0,\n 0,\n SPLAT_TEX_WIDTH,\n layerYEnd,\n subReadback\n );\n promises.push(promise);\n baseIndex += SPLAT_TEX_WIDTH * layerYEnd;\n }\n return Promise.all(promises).then(() => readback);\n }\n // Perform render operation to run the Rgba8Readback program\n // but don\'t perform the readback yet.\n render({\n reader,\n count,\n renderer\n }) {\n this.renderer = renderer || this.renderer;\n if (!this.renderer) {\n throw new Error("No renderer");\n }\n this.ensureCapacity(count);\n const { program, material } = this.prepareProgramMaterial(reader);\n program.update();\n const renderState = this.saveRenderState(this.renderer);\n this.process({ count, material });\n this.resetRenderState(this.renderer, renderState);\n }\n // Perform a readback of the render target, returning a buffer of the\n // given type.\n async readback({\n readback\n }) {\n if (!this.renderer) {\n throw new Error("No renderer");\n }\n const renderState = this.saveRenderState(this.renderer);\n const promise = this.read({ readback });\n this.resetRenderState(this.renderer, renderState);\n return promise;\n }\n // Perform a render and readback operation for the given Rgba8Readback,\n // and readback buffer (call ensureBuffer first).\n async renderReadback({\n reader,\n count,\n renderer,\n readback\n }) {\n this.renderer = renderer || this.renderer;\n if (!this.renderer) {\n throw new Error("No renderer");\n }\n this.ensureCapacity(count);\n const { program, material } = this.prepareProgramMaterial(reader);\n program.update();\n const renderState = this.saveRenderState(this.renderer);\n this.process({ count, material });\n const promise = this.read({ readback });\n this.resetRenderState(this.renderer, renderState);\n return promise;\n }\n getTexture() {\n var _a2;\n return (_a2 = this.target) == null ? void 0 : _a2.texture;\n }\n };\n _Readback.programTemplate = null;\n _Readback.readbackProgram = /* @__PURE__ */ new Map();\n _Readback.geometry = new PlaneGeometry(2, 2);\n _Readback.mesh = new Mesh(\n _Readback.geometry,\n new RawShaderMaterial({ visible: false })\n );\n _Readback.scene = new Scene().add(_Readback.mesh);\n _Readback.camera = new Camera();\n let Readback = _Readback;\n const _RgbaArray = class _RgbaArray {\n constructor(options = {}) {\n this.capacity = 0;\n this.count = 0;\n this.array = null;\n this.readback = null;\n this.source = null;\n this.needsUpdate = true;\n this.dyno = new DynoUniform({\n key: "rgbaArray",\n type: TRgbaArray,\n globals: () => [defineRgbaArray],\n value: {\n texture: _RgbaArray.getEmpty(),\n count: 0\n },\n update: (value) => {\n var _a2;\n value.texture = ((_a2 = this.readback) == null ? void 0 : _a2.getTexture()) ?? this.source ?? _RgbaArray.getEmpty();\n value.count = this.count;\n return value;\n }\n });\n if (options.array) {\n this.array = options.array;\n this.capacity = Math.floor(this.array.length / 4);\n this.capacity = Math.floor(this.capacity / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n this.count = Math.min(\n this.capacity,\n options.count ?? Number.POSITIVE_INFINITY\n );\n } else {\n this.capacity = options.capacity ?? 0;\n this.count = 0;\n }\n }\n // Free up resources\n dispose() {\n if (this.readback) {\n this.readback.dispose();\n this.readback = null;\n }\n if (this.source) {\n this.source.dispose();\n this.source = null;\n }\n }\n // Ensure that our array is large enough to hold capacity RGBA8 values.\n ensureCapacity(capacity) {\n var _a2;\n if (!this.array || capacity > (((_a2 = this.array) == null ? void 0 : _a2.length) ?? 0) / 4) {\n this.capacity = getTextureSize(capacity).maxSplats;\n const newArray = new Uint8Array(this.capacity * 4);\n if (this.array) {\n newArray.set(this.array);\n }\n this.array = newArray;\n }\n return this.array;\n }\n // Get the THREE.DataArrayTexture from either the readback or the source.\n getTexture() {\n var _a2;\n let texture = (_a2 = this.readback) == null ? void 0 : _a2.getTexture();\n if (this.source || this.array) {\n texture = this.maybeUpdateSource();\n }\n return texture ?? _RgbaArray.getEmpty();\n }\n // Create or get a THREE.DataArrayTexture from the data array.\n maybeUpdateSource() {\n if (!this.array) {\n throw new Error("No array");\n }\n if (this.needsUpdate || !this.source) {\n this.needsUpdate = false;\n if (this.source) {\n const { width, height, depth } = this.source.image;\n if (this.capacity !== width * height * depth) {\n this.source.dispose();\n this.source = null;\n }\n }\n if (!this.source) {\n const { width, height, depth } = getTextureSize(this.capacity);\n this.source = new DataArrayTexture(\n this.array,\n width,\n height,\n depth\n );\n this.source.format = RGBAFormat;\n this.source.type = UnsignedByteType;\n this.source.internalFormat = "RGBA8";\n this.source.needsUpdate = true;\n } else if (this.array.buffer !== this.source.image.data.buffer) {\n this.source.image.data = new Uint8Array(this.array.buffer);\n }\n this.source.needsUpdate = true;\n }\n return this.source;\n }\n // Generate the RGBA8 values from a Rgba8Readback dyno program.\n render({\n reader,\n count,\n renderer\n }) {\n if (!this.readback) {\n this.readback = new Readback({ renderer });\n }\n this.readback.render({ reader, count, renderer });\n this.capacity = this.readback.capacity;\n this.count = this.readback.count;\n }\n // Extract the RGBA8 values from a PackedSplats collection.\n fromPackedSplats({\n packedSplats,\n base,\n count,\n renderer\n }) {\n const { dynoSplats, dynoBase, dynoCount, reader } = _RgbaArray.makeDynos();\n dynoSplats.packedSplats = packedSplats;\n dynoBase.value = base;\n dynoCount.value = count;\n this.render({ reader, count, renderer });\n return this;\n }\n // Read back the RGBA8 values from the readback buffer.\n async read() {\n if (!this.readback) {\n throw new Error("No readback");\n }\n if (!this.array || this.array.length < this.count * 4) {\n this.array = new Uint8Array(this.capacity * 4);\n }\n const result = await this.readback.readback({ readback: this.array });\n return result.subarray(0, this.count * 4);\n }\n // Can be used where you need an uninitialized THREE.DataArrayTexture like\n // a uniform you will update with the result of this.getTexture() later.\n static getEmpty() {\n if (!_RgbaArray.emptySource) {\n const emptyArray = new Uint8Array(1 * 4);\n _RgbaArray.emptySource = new DataArrayTexture(emptyArray, 1, 1, 1);\n _RgbaArray.emptySource.format = RGBAFormat;\n _RgbaArray.emptySource.type = UnsignedByteType;\n _RgbaArray.emptySource.internalFormat = "RGBA8";\n _RgbaArray.emptySource.needsUpdate = true;\n }\n return _RgbaArray.emptySource;\n }\n // Create a dyno program that can extract RGBA8 values from a PackedSplats\n static makeDynos() {\n if (!_RgbaArray.dynos) {\n const dynoSplats = new DynoPackedSplats();\n const dynoBase = new DynoInt({ value: 0 });\n const dynoCount = new DynoInt({ value: 0 });\n const reader = dynoBlock(\n { index: "int" },\n { rgba8: "vec4" },\n ({ index }) => {\n if (!index) {\n throw new Error("index is undefined");\n }\n index = add(index, dynoBase);\n const gsplat = readPackedSplatRange(\n dynoSplats,\n index,\n dynoBase,\n dynoCount\n );\n return { rgba8: splitGsplat(gsplat).outputs.rgba };\n }\n );\n _RgbaArray.dynos = { dynoSplats, dynoBase, dynoCount, reader };\n }\n return _RgbaArray.dynos;\n }\n };\n _RgbaArray.emptySource = null;\n _RgbaArray.dynos = null;\n let RgbaArray = _RgbaArray;\n const TRgbaArray = { type: "RgbaArray" };\n const defineRgbaArray = unindent(`\n struct RgbaArray {\n sampler2DArray texture;\n int count;\n };\n`);\n function readRgbaArray(rgba, index) {\n const dyno2 = new Dyno({\n inTypes: { rgba: TRgbaArray, index: "int" },\n outTypes: { rgba: "vec4" },\n inputs: { rgba, index },\n globals: () => [defineRgbaArray],\n statements: ({ inputs, outputs }) => unindentLines(`\n if ((index >= 0) && (index < ${inputs.rgba}.count)) {\n ${outputs.rgba} = texelFetch(${inputs.rgba}.texture, splatTexCoord(index), 0);\n } else {\n ${outputs.rgba} = vec4(0.0, 0.0, 0.0, 0.0);\n }\n `)\n });\n return dyno2.outputs.rgba;\n }\n function sdfTypeToNumber(type) {\n switch (type) {\n case "all":\n return 0;\n case "plane":\n return 1;\n case "sphere":\n return 2;\n case "box":\n return 3;\n case "ellipsoid":\n return 4;\n case "cylinder":\n return 5;\n case "capsule":\n return 6;\n case "infinite_cone":\n return 7;\n default:\n throw new Error(`Unknown SDF type: ${type}`);\n }\n }\n function rgbaBlendModeToNumber(mode) {\n switch (mode) {\n case "multiply":\n return 0;\n case "set_rgb":\n return 1;\n case "add_rgba":\n return 2;\n default:\n throw new Error(`Unknown blend mode: ${mode}`);\n }\n }\n class SplatEditSdf extends Object3D {\n constructor(options = {}) {\n super();\n const { type, invert, opacity, color, displace, radius } = options;\n this.type = type ?? "sphere";\n this.invert = invert ?? false;\n this.opacity = opacity ?? 1;\n this.color = color ?? new Color(1, 1, 1);\n this.displace = displace ?? new Vector3(0, 0, 0);\n this.radius = radius ?? 0;\n }\n }\n const _SplatEdit = class _SplatEdit extends Object3D {\n constructor(options = {}) {\n const {\n name,\n rgbaBlendMode = "multiply",\n sdfSmooth = 0,\n softEdge = 0,\n invert = false,\n sdfs = null\n } = options;\n super();\n this.rgbaBlendMode = rgbaBlendMode;\n this.sdfSmooth = sdfSmooth;\n this.softEdge = softEdge;\n this.invert = invert;\n this.sdfs = sdfs;\n this.ordering = _SplatEdit.nextOrdering++;\n this.name = name ?? `Edit ${this.ordering}`;\n }\n addSdf(sdf) {\n if (this.sdfs == null) {\n this.sdfs = [];\n }\n this.sdfs.push(sdf);\n }\n removeSdf(sdf) {\n if (this.sdfs == null) {\n return;\n }\n this.sdfs = this.sdfs.filter((s) => s !== sdf);\n }\n };\n _SplatEdit.nextOrdering = 1;\n let SplatEdit = _SplatEdit;\n class SplatEdits {\n constructor({ maxSdfs, maxEdits }) {\n this.maxSdfs = Math.max(16, maxSdfs ?? 0);\n this.numSdfs = 0;\n this.sdfData = new Uint32Array(this.maxSdfs * 8 * 4);\n this.sdfFloatData = new Float32Array(this.sdfData.buffer);\n this.sdfTexture = this.newSdfTexture(this.sdfData, this.maxSdfs);\n this.dynoSdfArray = new DynoUniform({\n key: "sdfArray",\n type: SdfArray,\n globals: () => [defineSdfArray],\n value: {\n numSdfs: 0,\n sdfTexture: this.sdfTexture\n },\n update: (uniform) => {\n uniform.numSdfs = this.numSdfs;\n uniform.sdfTexture = this.sdfTexture;\n return uniform;\n }\n });\n this.maxEdits = Math.max(16, maxEdits ?? 0);\n this.numEdits = 0;\n this.editData = new Uint32Array(this.maxEdits * 4);\n this.editFloatData = new Float32Array(this.editData.buffer);\n this.dynoNumEdits = new DynoInt({ value: 0 });\n this.dynoEdits = this.newEdits(this.editData, this.maxEdits);\n }\n newSdfTexture(data, maxSdfs) {\n const texture = new DataTexture(\n data,\n 8,\n maxSdfs,\n RGBAIntegerFormat,\n UnsignedIntType\n );\n texture.internalFormat = "RGBA32UI";\n texture.needsUpdate = true;\n return texture;\n }\n newEdits(data, maxEdits) {\n return new DynoUniform({\n key: "edits",\n type: "uvec4",\n count: maxEdits,\n globals: () => [defineEdit],\n value: data\n });\n }\n // Ensure our SDF texture and edits uniform array have enough capacity.\n // Reallocate if not.\n ensureCapacity({\n maxSdfs,\n maxEdits\n }) {\n let dynoUpdated = false;\n if (maxSdfs > this.sdfTexture.image.height) {\n this.sdfTexture.dispose();\n this.maxSdfs = Math.max(this.maxSdfs * 2, maxSdfs);\n this.sdfData = new Uint32Array(this.maxSdfs * 8 * 4);\n this.sdfFloatData = new Float32Array(this.sdfData.buffer);\n this.sdfTexture = this.newSdfTexture(this.sdfData, this.maxSdfs);\n }\n if (maxEdits > (this.dynoEdits.count ?? 0)) {\n this.maxEdits = Math.max(this.maxEdits * 2, maxEdits);\n this.editData = new Uint32Array(this.maxEdits * 4);\n this.editFloatData = new Float32Array(this.editData.buffer);\n this.dynoEdits = this.newEdits(this.editData, this.maxEdits);\n dynoUpdated = true;\n }\n return dynoUpdated;\n }\n updateEditData(offset, value) {\n const updated = this.editData[offset] !== value;\n this.editData[offset] = value;\n return updated;\n }\n updateEditFloatData(offset, value) {\n tempFloat32[0] = value;\n const updated = this.editFloatData[offset] !== tempFloat32[0];\n if (updated) {\n this.editFloatData[offset] = tempFloat32[0];\n }\n return updated;\n }\n encodeEdit(editIndex, {\n sdfFirst,\n sdfCount,\n invert,\n rgbaBlendMode,\n softEdge,\n sdfSmooth\n }) {\n const base = editIndex * 4;\n let updated = false;\n updated = this.updateEditData(base + 0, rgbaBlendMode | (invert ? 1 << 8 : 0)) || updated;\n updated = this.updateEditData(base + 1, sdfFirst | sdfCount << 16) || updated;\n updated = this.updateEditFloatData(base + 2, softEdge) || updated;\n updated = this.updateEditFloatData(base + 3, sdfSmooth) || updated;\n return updated;\n }\n updateSdfData(offset, value) {\n const updated = this.sdfData[offset] !== value;\n this.sdfData[offset] = value;\n return updated;\n }\n updateSdfFloatData(offset, value) {\n tempFloat32[0] = value;\n const updated = this.sdfFloatData[offset] !== tempFloat32[0];\n if (updated) {\n this.sdfFloatData[offset] = tempFloat32[0];\n }\n return updated;\n }\n encodeSdf(sdfIndex, {\n sdfType,\n invert,\n center,\n quaternion,\n scale,\n sizes\n }, values) {\n const base = sdfIndex * (8 * 4);\n const flags = sdfType | (invert ? 1 << 8 : 0);\n let updated = false;\n updated = this.updateSdfFloatData(base + 0, (center == null ? void 0 : center.x) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 1, (center == null ? void 0 : center.y) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 2, (center == null ? void 0 : center.z) ?? 0) || updated;\n updated = this.updateSdfData(base + 3, flags) || updated;\n updated = this.updateSdfFloatData(base + 4, (quaternion == null ? void 0 : quaternion.x) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 5, (quaternion == null ? void 0 : quaternion.y) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 6, (quaternion == null ? void 0 : quaternion.z) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 7, (quaternion == null ? void 0 : quaternion.w) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 8, (scale == null ? void 0 : scale.x) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 9, (scale == null ? void 0 : scale.y) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 10, (scale == null ? void 0 : scale.z) ?? 0) || updated;\n updated = this.updateSdfData(base + 11, 0) || updated;\n updated = this.updateSdfFloatData(base + 12, (sizes == null ? void 0 : sizes.x) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 13, (sizes == null ? void 0 : sizes.y) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 14, (sizes == null ? void 0 : sizes.z) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 15, (sizes == null ? void 0 : sizes.w) ?? 0) || updated;\n const nValues = Math.min(4, values.length);\n for (let i2 = 0; i2 < nValues; ++i2) {\n const vBase = base + 16 + i2 * 4;\n updated = this.updateSdfFloatData(vBase + 0, values[i2].x) || updated;\n updated = this.updateSdfFloatData(vBase + 1, values[i2].y) || updated;\n updated = this.updateSdfFloatData(vBase + 2, values[i2].z) || updated;\n updated = this.updateSdfFloatData(vBase + 3, values[i2].w) || updated;\n }\n return updated;\n }\n // Update the SDFs and edits from an array of SplatEdits and their\n // associated SplatEditSdfs, updating it for the dyno shader program.\n update(edits) {\n const sdfCount = edits.reduce((total, { sdfs }) => total + sdfs.length, 0);\n const dynoUpdated = this.ensureCapacity({\n maxEdits: edits.length,\n maxSdfs: sdfCount\n });\n const values = [new Vector4(), new Vector4()];\n const center = new Vector3();\n const quaternion = new Quaternion();\n const scale = new Vector3();\n const sizes = new Vector4();\n let sdfIndex = 0;\n let updated = dynoUpdated;\n if (edits.length !== this.dynoNumEdits.value) {\n this.dynoNumEdits.value = edits.length;\n this.numEdits = edits.length;\n updated = true;\n }\n for (const [editIndex, { edit, sdfs }] of edits.entries()) {\n updated = this.encodeEdit(editIndex, {\n sdfFirst: sdfIndex,\n sdfCount: sdfs.length,\n invert: edit.invert,\n rgbaBlendMode: rgbaBlendModeToNumber(edit.rgbaBlendMode),\n softEdge: edit.softEdge,\n sdfSmooth: edit.sdfSmooth\n }) || updated;\n let sdfUpdated = false;\n for (const sdf of sdfs) {\n sizes.set(sdf.scale.x, sdf.scale.y, sdf.scale.z, sdf.radius);\n sdf.scale.setScalar(1);\n sdf.updateMatrixWorld();\n const worldToSdf = sdf.matrixWorld.clone().invert();\n worldToSdf.decompose(center, quaternion, scale);\n sdf.scale.set(sizes.x, sizes.y, sizes.z);\n sdf.updateMatrixWorld();\n values[0].set(sdf.color.r, sdf.color.g, sdf.color.b, sdf.opacity);\n values[1].set(sdf.displace.x, sdf.displace.y, sdf.displace.z, 1);\n sdfUpdated = this.encodeSdf(\n sdfIndex,\n {\n sdfType: sdfTypeToNumber(sdf.type),\n invert: sdf.invert,\n center,\n quaternion,\n scale,\n sizes\n },\n values\n ) || sdfUpdated;\n sdfIndex += 1;\n }\n this.numSdfs = sdfIndex;\n if (sdfUpdated) {\n this.sdfTexture.needsUpdate = true;\n }\n updated || (updated = sdfUpdated);\n }\n return { updated, dynoUpdated };\n }\n // Modify a Gsplat in a dyno shader program using the current edits and SDFs.\n modify(gsplat) {\n return applyGsplatRgbaDisplaceEdits(\n gsplat,\n this.dynoSdfArray,\n this.dynoNumEdits,\n this.dynoEdits\n );\n }\n }\n const SdfArray = { type: "SdfArray" };\n const defineSdfArray = unindent(`\n struct SdfArray {\n int numSdfs;\n usampler2D sdfTexture;\n };\n\n void unpackSdfArray(\n usampler2D sdfTexture, int sdfIndex, out uint flags,\n out vec3 center, out vec4 quaternion, out vec3 scale, out vec4 sizes,\n int numValues, out vec4 values[4]\n ) {\n uvec4 temp = texelFetch(sdfTexture, ivec2(0, sdfIndex), 0);\n flags = temp.w;\n center = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z));\n\n temp = texelFetch(sdfTexture, ivec2(1, sdfIndex), 0);\n quaternion = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n\n temp = texelFetch(sdfTexture, ivec2(2, sdfIndex), 0);\n scale = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z));\n\n temp = texelFetch(sdfTexture, ivec2(3, sdfIndex), 0);\n sizes = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n\n for (int i = 0; i < numValues; ++i) {\n temp = texelFetch(sdfTexture, ivec2(4 + i, sdfIndex), 0);\n values[i] = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n }\n }\n\n const uint SDF_FLAG_TYPE = 0xFFu;\n const uint SDF_FLAG_INVERT = 1u << 8u;\n\n const uint SDF_TYPE_ALL = 0u;\n const uint SDF_TYPE_PLANE = 1u;\n const uint SDF_TYPE_SPHERE = 2u;\n const uint SDF_TYPE_BOX = 3u;\n const uint SDF_TYPE_ELLIPSOID = 4u;\n const uint SDF_TYPE_CYLINDER = 5u;\n const uint SDF_TYPE_CAPSULE = 6u;\n const uint SDF_TYPE_INFINITE_CONE = 7u;\n\n float evaluateSdfArray(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos,\n float smoothK, int numValues, out vec4 outValues[4]\n ) {\n float distanceAccum = (smoothK == 0.0) ? 1.0 / 0.0 : 0.0;\n float maxExp = -1.0 / 0.0;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] = vec4(0.0);\n }\n\n uint flags;\n vec3 center, scale;\n vec4 quaternion, sizes;\n vec4 values[4];\n\n int sdfLast = min(sdfFirst + sdfCount, numSdfs);\n for (int index = sdfFirst; index < sdfLast; ++index) {\n unpackSdfArray(sdfTexture, index, flags, center, quaternion, scale, sizes, numValues, values);\n uint sdfType = flags & SDF_FLAG_TYPE;\n vec3 sdfPos = quatVec(quaternion, pos * scale) + center;\n\n float distance;\n switch (sdfType) {\n case SDF_TYPE_ALL:\n distance = -1.0 / 0.0;\n break;\n case SDF_TYPE_PLANE: {\n distance = sdfPos.z;\n break;\n }\n case SDF_TYPE_SPHERE: {\n distance = length(sdfPos) - sizes.w;\n break;\n }\n case SDF_TYPE_BOX: {\n vec3 q = abs(sdfPos) - sizes.xyz + sizes.w;\n distance = length(max(q, 0.0)) + min(max(q.x, max(q.y, q.z)), 0.0) - sizes.w;\n break;\n }\n case SDF_TYPE_ELLIPSOID: {\n vec3 sizes = sizes.xyz;\n float k0 = length(sdfPos / sizes);\n float k1 = length(sdfPos / dot(sizes, sizes));\n distance = k0 * (k0 - 1.0) / k1;\n break;\n }\n case SDF_TYPE_CYLINDER: {\n vec2 d = abs(vec2(length(sdfPos.xz), sdfPos.y)) - sizes.wy;\n distance = min(max(d.x, d.y), 0.0) + length(max(d, 0.0));\n break;\n }\n case SDF_TYPE_CAPSULE: {\n sdfPos.y -= clamp(sdfPos.y, -0.5 * sizes.y, 0.5 * sizes.y);\n distance = length(sdfPos) - sizes.w;\n break;\n }\n case SDF_TYPE_INFINITE_CONE: {\n float angle = 0.25 * PI * sizes.w;\n vec2 c = vec2(sin(angle), cos(angle));\n vec2 q = vec2(length(sdfPos.xy), -sdfPos.z);\n float d = length(q - c * max(dot(q, c), 0.0));\n distance = d * (((q.x * c.y - q.y * c.x) < 0.0) ? -1.0 : 1.0);\n break;\n }\n }\n\n if ((flags & SDF_FLAG_INVERT) != 0u) {\n distance = -distance;\n }\n\n if (smoothK == 0.0) {\n if (distance < distanceAccum) {\n distanceAccum = distance;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] = values[i];\n }\n }\n } else {\n float scaledDistance = -distance / smoothK;\n if (scaledDistance > maxExp) {\n float scale = exp(maxExp - scaledDistance);\n distanceAccum *= scale;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] *= scale;\n }\n maxExp = scaledDistance;\n }\n\n float weight = exp(scaledDistance - maxExp);\n distanceAccum += weight;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] += weight * values[i];\n }\n }\n }\n\n if (smoothK == 0.0) {\n return distanceAccum;\n } else {\n // Very distant SDFs may result in 0 accumulation\n if (distanceAccum == 0.0) {\n return 1.0 / 0.0;\n }\n for (int i = 0; i < numValues; ++i) {\n outValues[i] /= distanceAccum;\n }\n return (-log(distanceAccum) - maxExp) * smoothK;\n }\n }\n\n float modulateSdfArray(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos,\n float smoothK, int numValues, out vec4 values[4],\n float softEdge, bool invert\n ) {\n float distance = evaluateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, numValues, values);\n if (invert) {\n distance = -distance;\n }\n\n return (softEdge == 0.0) ? ((distance < 0.0) ? 1.0 : 0.0)\n : clamp(-distance / softEdge + 0.5, 0.0, 1.0);\n }\n`);\n const defineEdit = unindent(`\n const uint EDIT_FLAG_BLEND = 0xFFu;\n const uint EDIT_BLEND_MULTIPLY = 0u;\n const uint EDIT_BLEND_SET_RGB = 1u;\n const uint EDIT_BLEND_ADD_RGBA = 2u;\n const uint EDIT_FLAG_INVERT = 0x100u;\n\n void decodeEdit(\n uvec4 packedEdit, out int sdfFirst, out int sdfCount,\n out bool invert, out uint rgbaBlendMode, out float softEdge, out float sdfSmooth\n ) {\n rgbaBlendMode = packedEdit.x & EDIT_FLAG_BLEND;\n invert = (packedEdit.x & EDIT_FLAG_INVERT) != 0u;\n\n sdfFirst = int(packedEdit.y & 0xFFFFu);\n sdfCount = int(packedEdit.y >> 16u);\n\n softEdge = uintBitsToFloat(packedEdit.z);\n sdfSmooth = uintBitsToFloat(packedEdit.w);\n }\n\n void applyRgbaDisplaceEdit(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, inout vec3 pos,\n float smoothK, float softEdge, bool invert, uint rgbaBlendMode, inout vec4 rgba\n ) {\n vec4 values[4];\n float modulate = modulateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, 2, values, softEdge, invert);\n // On Android, moving values[0] is necessary to work around a compiler bug.\n vec4 sdfRgba = values[0];\n vec4 sdfDisplaceScale = values[1];\n\n vec4 target;\n switch (rgbaBlendMode) {\n case EDIT_BLEND_MULTIPLY:\n target = rgba * sdfRgba;\n break;\n case EDIT_BLEND_SET_RGB:\n target = vec4(sdfRgba.rgb, rgba.a * sdfRgba.a);\n break;\n case EDIT_BLEND_ADD_RGBA:\n target = rgba + sdfRgba;\n break;\n default:\n // Debug output if blend mode not set\n target = vec4(fract(pos), 1.0);\n }\n rgba = mix(rgba, target, modulate);\n pos += sdfDisplaceScale.xyz * modulate;\n }\n\n void applyPackedRgbaDisplaceEdit(uvec4 packedEdit, usampler2D sdfTexture, int numSdfs, inout vec3 pos, inout vec4 rgba) {\n int sdfFirst, sdfCount;\n bool invert;\n uint rgbaBlendMode;\n float softEdge, sdfSmooth;\n decodeEdit(packedEdit, sdfFirst, sdfCount, invert, rgbaBlendMode, softEdge, sdfSmooth);\n applyRgbaDisplaceEdit(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, sdfSmooth, softEdge, invert, rgbaBlendMode, rgba);\n }\n`);\n function applyGsplatRgbaDisplaceEdits(gsplat, sdfArray, numEdits, rgbaDisplaceEdits) {\n const dyno2 = new Dyno({\n inTypes: {\n gsplat: Gsplat,\n sdfArray: SdfArray,\n numEdits: "int",\n rgbaDisplaceEdits: "uvec4"\n },\n outTypes: { gsplat: Gsplat },\n globals: () => [defineSdfArray, defineEdit],\n inputs: { gsplat, sdfArray, numEdits, rgbaDisplaceEdits },\n statements: ({ inputs, outputs }) => {\n const { sdfArray: sdfArray2, numEdits: numEdits2, rgbaDisplaceEdits: rgbaDisplaceEdits2 } = inputs;\n const { gsplat: gsplat2 } = outputs;\n return unindentLines(`\n ${gsplat2} = ${inputs.gsplat};\n if (isGsplatActive(${gsplat2}.flags)) {\n for (int editIndex = 0; editIndex < ${numEdits2}; ++editIndex) {\n applyPackedRgbaDisplaceEdit(\n ${rgbaDisplaceEdits2}[editIndex], ${sdfArray2}.sdfTexture, ${sdfArray2}.numSdfs,\n ${gsplat2}.center, ${gsplat2}.rgba\n );\n }\n }\n `);\n }\n });\n return dyno2.outputs.gsplat;\n }\n const tempFloat32 = new Float32Array(1);\n class SplatTransformer {\n // Create the dyno uniforms that parameterize the transform, setting them\n // to initial values that are different from any valid transform.\n constructor() {\n this.scale = new DynoFloat({ value: Number.NEGATIVE_INFINITY });\n this.rotate = new DynoVec4({\n value: new Quaternion(\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY\n )\n });\n this.translate = new DynoVec3({\n value: new Vector3(\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY\n )\n });\n }\n // Apply the transform to a Vec3 position in a dyno program.\n apply(position) {\n return transformPos(position, {\n scale: this.scale,\n rotate: this.rotate,\n translate: this.translate\n });\n }\n applyDir(dir) {\n return transformDir(dir, {\n rotate: this.rotate\n });\n }\n // Apply the transform to a Gsplat in a dyno program.\n applyGsplat(gsplat) {\n return transformGsplat(gsplat, {\n scale: this.scale,\n rotate: this.rotate,\n translate: this.translate\n });\n }\n // Update the uniforms to match the given transform matrix.\n updateFromMatrix(transform) {\n const scale = new Vector3();\n const quaternion = new Quaternion();\n const position = new Vector3();\n transform.decompose(position, quaternion, scale);\n const newScale = (scale.x + scale.y + scale.z) / 3;\n let updated = false;\n if (newScale !== this.scale.value) {\n this.scale.value = newScale;\n updated = true;\n }\n if (!position.equals(this.translate.value)) {\n this.translate.value.copy(position);\n updated = true;\n }\n if (!quaternion.equals(this.rotate.value)) {\n this.rotate.value.copy(quaternion);\n updated = true;\n }\n return updated;\n }\n // Update this transform to match the object\'s to-world transform.\n update(object) {\n object.updateMatrixWorld();\n return this.updateFromMatrix(object.matrixWorld);\n }\n }\n class SplatGenerator extends Object3D {\n constructor({\n numSplats,\n generator,\n construct,\n update\n }) {\n super();\n this.numSplats = numSplats ?? 0;\n this.generator = generator;\n this.frameUpdate = update;\n this.version = 0;\n if (construct) {\n const constructed = construct(this);\n Object.assign(this, constructed);\n }\n }\n updateVersion() {\n this.version += 1;\n }\n set needsUpdate(value) {\n if (value) {\n this.updateVersion();\n }\n }\n }\n const _SplatMesh = class _SplatMesh extends SplatGenerator {\n constructor(options = {}) {\n const transform = new SplatTransformer();\n const viewToWorld = new SplatTransformer();\n const worldToView = new SplatTransformer();\n const viewToObject = new SplatTransformer();\n const recolor = new DynoVec4({\n value: new Vector4(\n Number.NEGATIVE_INFINITY,\n Number.NEGATIVE_INFINITY,\n Number.NEGATIVE_INFINITY,\n Number.NEGATIVE_INFINITY\n )\n });\n const time = new DynoFloat({ value: 0 });\n const deltaTime = new DynoFloat({ value: 0 });\n const context = {\n transform,\n viewToWorld,\n worldToView,\n viewToObject,\n recolor,\n time,\n deltaTime\n };\n super({\n update: ({ time: time2, deltaTime: deltaTime2, viewToWorld: viewToWorld2, globalEdits }) => this.update({ time: time2, deltaTime: deltaTime2, viewToWorld: viewToWorld2, globalEdits })\n });\n this.isInitialized = false;\n this.recolor = new Color(1, 1, 1);\n this.opacity = 1;\n this.enableViewToObject = false;\n this.enableViewToWorld = false;\n this.enableWorldToView = false;\n this.skinning = null;\n this.edits = null;\n this.rgbaDisplaceEdits = null;\n this.splatRgba = null;\n this.maxSh = 3;\n this.packedSplats = options.packedSplats ?? new PackedSplats();\n this.numSplats = this.packedSplats.numSplats;\n this.editable = options.editable ?? true;\n this.onFrame = options.onFrame;\n this.context = context;\n this.objectModifier = options.objectModifier;\n this.worldModifier = options.worldModifier;\n this.updateGenerator();\n if (options.url || options.fileBytes || options.constructSplats || options.packedSplats && !options.packedSplats.isInitialized) {\n this.initialized = this.asyncInitialize(options).then(async () => {\n this.updateGenerator();\n this.isInitialized = true;\n if (options.onLoad) {\n const maybePromise = options.onLoad(this);\n if (maybePromise instanceof Promise) {\n await maybePromise;\n }\n }\n return this;\n });\n } else {\n this.isInitialized = true;\n this.initialized = Promise.resolve(this);\n if (options.onLoad) {\n const maybePromise = options.onLoad(this);\n if (maybePromise instanceof Promise) {\n this.initialized = maybePromise.then(() => this);\n }\n }\n }\n }\n async asyncInitialize(options) {\n const { url, fileBytes, fileType, fileName, maxSplats, constructSplats } = options;\n if (url || fileBytes || constructSplats) {\n const packedSplatsOptions = {\n url,\n fileBytes,\n fileType,\n fileName,\n maxSplats,\n construct: constructSplats\n };\n this.packedSplats.reinitialize(packedSplatsOptions);\n }\n if (this.packedSplats) {\n await this.packedSplats.initialized;\n this.numSplats = this.packedSplats.numSplats;\n this.updateGenerator();\n }\n }\n static async staticInitialize() {\n await __wbg_init();\n _SplatMesh.isStaticInitialized = true;\n }\n // Creates a new Gsplat with the provided parameters (all values in "float" space,\n // i.e. 0-1 for opacity and color) and adds it to the end of the packedSplats,\n // increasing numSplats by 1. If necessary, reallocates the buffer with an exponential\n // doubling strategy to fit the new data, so it\'s fairly efficient to just\n // pushSplat(...) each Gsplat you want to create in a loop.\n pushSplat(center, scales, quaternion, opacity, color) {\n this.packedSplats.pushSplat(center, scales, quaternion, opacity, color);\n }\n // This method iterates over all Gsplats in this instance\'s packedSplats,\n // invoking the provided callback with index: number in 0..=(this.numSplats-1) and\n // center: THREE.Vector3, scales: THREE.Vector3, quaternion: THREE.Quaternion,\n // opacity: number (0..1), and color: THREE.Color (rgb values in 0..1).\n // Note that the objects passed in as center etc. are the same for every callback\n // invocation: these objects are reused for efficiency. Changing these values has\n // no effect as they are decoded/unpacked copies of the underlying data. To update\n // the packedSplats, call .packedSplats.setSplat(index, center, scales,\n // quaternion, opacity, color).\n forEachSplat(callback) {\n this.packedSplats.forEachSplat(callback);\n }\n // Call this when you are finished with the SplatMesh and want to free\n // any buffers it holds (via packedSplats).\n dispose() {\n this.packedSplats.dispose();\n }\n constructGenerator(context) {\n const { transform, viewToObject, recolor } = context;\n const generator = dynoBlock(\n { index: "int" },\n { gsplat: Gsplat },\n ({ index }) => {\n if (!index) {\n throw new Error("index is undefined");\n }\n let gsplat = readPackedSplat(this.packedSplats.dyno, index);\n if (this.maxSh >= 1) {\n const { sh1Texture, sh2Texture, sh3Texture } = this.ensureShTextures();\n if (sh1Texture) {\n const viewCenterInObject = viewToObject.translate;\n const { center } = splitGsplat(gsplat).outputs;\n const viewDir = normalize(sub(center, viewCenterInObject));\n let rgb = evaluateSH1(gsplat, sh1Texture, viewDir);\n if (this.maxSh >= 2 && sh2Texture) {\n rgb = add(rgb, evaluateSH2(gsplat, sh2Texture, viewDir));\n }\n if (this.maxSh >= 3 && sh3Texture) {\n rgb = add(rgb, evaluateSH3(gsplat, sh3Texture, viewDir));\n }\n let { rgba } = splitGsplat(gsplat).outputs;\n rgba = add(rgba, extendVec(rgb, dynoConst("float", 0)));\n gsplat = combineGsplat({ gsplat, rgba });\n }\n }\n if (this.splatRgba) {\n const rgba = readRgbaArray(this.splatRgba.dyno, index);\n gsplat = combineGsplat({ gsplat, rgba });\n }\n if (this.skinning) {\n gsplat = this.skinning.modify(gsplat);\n }\n if (this.objectModifier) {\n gsplat = this.objectModifier.apply({ gsplat }).gsplat;\n }\n gsplat = transform.applyGsplat(gsplat);\n const recolorRgba = mul(recolor, splitGsplat(gsplat).outputs.rgba);\n gsplat = combineGsplat({ gsplat, rgba: recolorRgba });\n if (this.rgbaDisplaceEdits) {\n gsplat = this.rgbaDisplaceEdits.modify(gsplat);\n }\n if (this.worldModifier) {\n gsplat = this.worldModifier.apply({ gsplat }).gsplat;\n }\n return { gsplat };\n }\n );\n this.generator = generator;\n }\n // Call this whenever something changes in the Gsplat processing pipeline,\n // for example changing maxSh or updating objectModifier or worldModifier.\n // Compiled generators are cached for efficiency and re-use when the same\n // pipeline structure emerges after successive changes.\n updateGenerator() {\n this.constructGenerator(this.context);\n }\n // This is called automatically by ForgeRenderer and you should not have to\n // call it. It updates parameters for the generated pipeline and calls\n // updateGenerator() if the pipeline needs to change.\n update({\n time,\n viewToWorld,\n deltaTime,\n globalEdits\n }) {\n var _a2;\n this.numSplats = this.packedSplats.numSplats;\n this.context.time.value = time;\n this.context.deltaTime.value = deltaTime;\n _SplatMesh.dynoTime.value = time;\n const { transform, viewToObject, recolor } = this.context;\n let updated = transform.update(this);\n if (this.context.viewToWorld.updateFromMatrix(viewToWorld) && this.enableViewToWorld) {\n updated = true;\n }\n const worldToView = viewToWorld.clone().invert();\n if (this.context.worldToView.updateFromMatrix(worldToView) && this.enableWorldToView) {\n updated = true;\n }\n const objectToWorld = new Matrix4().compose(\n transform.translate.value,\n transform.rotate.value,\n new Vector3().setScalar(transform.scale.value)\n );\n const worldToObject = objectToWorld.invert();\n const viewToObjectMatrix = worldToObject.multiply(viewToWorld);\n if (viewToObject.updateFromMatrix(viewToObjectMatrix) && (this.enableViewToObject || this.packedSplats.extra.sh1)) {\n updated = true;\n }\n const newRecolor = new Vector4(\n this.recolor.r,\n this.recolor.g,\n this.recolor.b,\n this.opacity\n );\n if (!newRecolor.equals(recolor.value)) {\n recolor.value.copy(newRecolor);\n updated = true;\n }\n const edits = this.editable ? (this.edits ?? []).concat(globalEdits) : [];\n if (this.editable && !this.edits) {\n this.traverseVisible((node) => {\n if (node instanceof SplatEdit) {\n edits.push(node);\n }\n });\n }\n edits.sort((a, b) => a.ordering - b.ordering);\n const editsSdfs = edits.map((edit) => {\n if (edit.sdfs != null) {\n return { edit, sdfs: edit.sdfs };\n }\n const sdfs = [];\n edit.traverseVisible((node) => {\n if (node instanceof SplatEditSdf) {\n sdfs.push(node);\n }\n });\n return { edit, sdfs };\n });\n if (editsSdfs.length > 0 && !this.rgbaDisplaceEdits) {\n const edits2 = editsSdfs.length;\n const sdfs = editsSdfs.reduce(\n (total, edit) => total + edit.sdfs.length,\n 0\n );\n this.rgbaDisplaceEdits = new SplatEdits({\n maxEdits: edits2,\n maxSdfs: sdfs\n });\n this.updateGenerator();\n }\n if (this.rgbaDisplaceEdits) {\n const editResult = this.rgbaDisplaceEdits.update(editsSdfs);\n updated || (updated = editResult.updated);\n if (editResult.dynoUpdated) {\n this.updateGenerator();\n }\n }\n if (updated) {\n this.updateVersion();\n }\n (_a2 = this.onFrame) == null ? void 0 : _a2.call(this, { mesh: this, time, deltaTime });\n }\n // This method conforms to the standard THREE.Raycaster API, performing object-ray\n // intersections using this method to populate the provided intersects[] array\n // with each intersection point.\n raycast(raycaster, intersects) {\n if (!this.packedSplats.packedArray || !this.packedSplats.numSplats) {\n return;\n }\n const { near, far, ray } = raycaster;\n const worldToMesh = this.matrixWorld.clone().invert();\n const worldToMeshRot = new Matrix3().setFromMatrix4(worldToMesh);\n const origin = ray.origin.clone().applyMatrix4(worldToMesh);\n const direction = ray.direction.clone().applyMatrix3(worldToMeshRot);\n const scales = new Vector3();\n worldToMesh.decompose(new Vector3(), new Quaternion(), scales);\n (scales.x * scales.y * scales.z) ** (1 / 3);\n const RAYCAST_ELLIPSOID = true;\n const distances = raycast_splats(\n origin.x,\n origin.y,\n origin.z,\n direction.x,\n direction.y,\n direction.z,\n near,\n far,\n this.packedSplats.numSplats,\n this.packedSplats.packedArray,\n RAYCAST_ELLIPSOID\n );\n for (const distance of distances) {\n const point = ray.direction.clone().multiplyScalar(distance).add(ray.origin);\n intersects.push({\n distance,\n point,\n object: this\n });\n }\n }\n ensureShTextures() {\n if (!this.packedSplats.extra.sh1) {\n return {};\n }\n let sh1Texture = this.packedSplats.extra.sh1Texture;\n if (!sh1Texture) {\n let sh1 = this.packedSplats.extra.sh1;\n const { width, height, depth, maxSplats } = getTextureSize(\n sh1.length / 2\n );\n if (sh1.length < maxSplats * 2) {\n const newSh1 = new Uint32Array(maxSplats * 2);\n newSh1.set(sh1);\n this.packedSplats.extra.sh1 = newSh1;\n sh1 = newSh1;\n }\n const texture = new DataArrayTexture(sh1, width, height, depth);\n texture.format = RGIntegerFormat;\n texture.type = UnsignedIntType;\n texture.internalFormat = "RG32UI";\n texture.needsUpdate = true;\n sh1Texture = new DynoUsampler2DArray({\n value: texture,\n key: "sh1"\n });\n this.packedSplats.extra.sh1Texture = sh1Texture;\n }\n if (!this.packedSplats.extra.sh2) {\n return { sh1Texture };\n }\n let sh2Texture = this.packedSplats.extra.sh2Texture;\n if (!sh2Texture) {\n let sh2 = this.packedSplats.extra.sh2;\n const { width, height, depth, maxSplats } = getTextureSize(\n sh2.length / 4\n );\n if (sh2.length < maxSplats * 4) {\n const newSh2 = new Uint32Array(maxSplats * 4);\n newSh2.set(sh2);\n this.packedSplats.extra.sh2 = newSh2;\n sh2 = newSh2;\n }\n const texture = new DataArrayTexture(sh2, width, height, depth);\n texture.format = RGBAIntegerFormat;\n texture.type = UnsignedIntType;\n texture.internalFormat = "RGBA32UI";\n texture.needsUpdate = true;\n sh2Texture = new DynoUsampler2DArray({\n value: texture,\n key: "sh2"\n });\n this.packedSplats.extra.sh2Texture = sh2Texture;\n }\n if (!this.packedSplats.extra.sh3) {\n return { sh1Texture, sh2Texture };\n }\n let sh3Texture = this.packedSplats.extra.sh3Texture;\n if (!sh3Texture) {\n let sh3 = this.packedSplats.extra.sh3;\n const { width, height, depth, maxSplats } = getTextureSize(\n sh3.length / 4\n );\n if (sh3.length < maxSplats * 4) {\n const newSh3 = new Uint32Array(maxSplats * 4);\n newSh3.set(sh3);\n this.packedSplats.extra.sh3 = newSh3;\n sh3 = newSh3;\n }\n const texture = new DataArrayTexture(sh3, width, height, depth);\n texture.format = RGBAIntegerFormat;\n texture.type = UnsignedIntType;\n texture.internalFormat = "RGBA32UI";\n texture.needsUpdate = true;\n sh3Texture = new DynoUsampler2DArray({\n value: texture,\n key: "sh3"\n });\n this.packedSplats.extra.sh3Texture = sh3Texture;\n }\n return { sh1Texture, sh2Texture, sh3Texture };\n }\n };\n _SplatMesh.staticInitialized = _SplatMesh.staticInitialize();\n _SplatMesh.isStaticInitialized = false;\n _SplatMesh.dynoTime = new DynoFloat({ value: 0 });\n let SplatMesh = _SplatMesh;\n const defineEvaluateSH1 = unindent(`\n vec3 evaluateSH1(Gsplat gsplat, usampler2DArray sh1, vec3 viewDir) {\n // Extract sint7 values packed into 2 x uint32\n uvec2 packed = texelFetch(sh1, splatTexCoord(gsplat.index), 0).rg;\n vec3 sh1_0 = vec3(ivec3(\n int(packed.x << 25u) >> 25,\n int(packed.x << 18u) >> 25,\n int(packed.x << 11u) >> 25\n )) / 63.0;\n vec3 sh1_1 = vec3(ivec3(\n int(packed.x << 4u) >> 25,\n int((packed.x >> 3u) | (packed.y << 29u)) >> 25,\n int(packed.y << 22u) >> 25\n )) / 63.0;\n vec3 sh1_2 = vec3(ivec3(\n int(packed.y << 15u) >> 25,\n int(packed.y << 8u) >> 25,\n int(packed.y << 1u) >> 25\n )) / 63.0;\n\n return sh1_0 * (-0.4886025 * viewDir.y)\n + sh1_1 * (0.4886025 * viewDir.z)\n + sh1_2 * (-0.4886025 * viewDir.x);\n }\n`);\n const defineEvaluateSH2 = unindent(`\n vec3 evaluateSH2(Gsplat gsplat, usampler2DArray sh2, vec3 viewDir) {\n // Extract sint8 values packed into 4 x uint32\n uvec4 packed = texelFetch(sh2, splatTexCoord(gsplat.index), 0);\n vec3 sh2_0 = vec3(ivec3(\n int(packed.x << 24u) >> 24,\n int(packed.x << 16u) >> 24,\n int(packed.x << 8u) >> 24\n )) / 127.0;\n vec3 sh2_1 = vec3(ivec3(\n int(packed.x) >> 24,\n int(packed.y << 24u) >> 24,\n int(packed.y << 16u) >> 24\n )) / 127.0;\n vec3 sh2_2 = vec3(ivec3(\n int(packed.y << 8u) >> 24,\n int(packed.y) >> 24,\n int(packed.z << 24u) >> 24\n )) / 127.0;\n vec3 sh2_3 = vec3(ivec3(\n int(packed.z << 16u) >> 24,\n int(packed.z << 8u) >> 24,\n int(packed.z) >> 24\n )) / 127.0;\n vec3 sh2_4 = vec3(ivec3(\n int(packed.w << 24u) >> 24,\n int(packed.w << 16u) >> 24,\n int(packed.w << 8u) >> 24\n )) / 127.0;\n\n return sh2_0 * (1.0925484 * viewDir.x * viewDir.y)\n + sh2_1 * (1.0925484 * viewDir.y * viewDir.z)\n + sh2_2 * (0.3153915 * (2.0 * viewDir.z * viewDir.z - viewDir.x * viewDir.x - viewDir.y * viewDir.y))\n + sh2_3 * (1.0925484 * viewDir.x * viewDir.z)\n + sh2_4 * (0.5462742 * (viewDir.x * viewDir.x - viewDir.y * viewDir.y));\n }\n`);\n const defineEvaluateSH3 = unindent(`\n vec3 evaluateSH3(Gsplat gsplat, usampler2DArray sh3, vec3 viewDir) {\n // Extract sint6 values packed into 4 x uint32\n uvec4 packed = texelFetch(sh3, splatTexCoord(gsplat.index), 0);\n vec3 sh3_0 = vec3(ivec3(\n int(packed.x << 26u) >> 26,\n int(packed.x << 20u) >> 26,\n int(packed.x << 14u) >> 26\n )) / 31.0;\n vec3 sh3_1 = vec3(ivec3(\n int(packed.x << 8u) >> 26,\n int(packed.x << 2u) >> 26,\n int((packed.x >> 4u) | (packed.y << 28u)) >> 26\n )) / 31.0;\n vec3 sh3_2 = vec3(ivec3(\n int(packed.y << 22u) >> 26,\n int(packed.y << 16u) >> 26,\n int(packed.y << 10u) >> 26\n )) / 31.0;\n vec3 sh3_3 = vec3(ivec3(\n int(packed.y << 4u) >> 26,\n int((packed.y >> 2u) | (packed.z << 30u)) >> 26,\n int(packed.z << 24u) >> 26\n )) / 31.0;\n vec3 sh3_4 = vec3(ivec3(\n int(packed.z << 18u) >> 26,\n int(packed.z << 12u) >> 26,\n int(packed.z << 6u) >> 26\n )) / 31.0;\n vec3 sh3_5 = vec3(ivec3(\n int(packed.z) >> 26,\n int(packed.w << 26u) >> 26,\n int(packed.w << 20u) >> 26\n )) / 31.0;\n vec3 sh3_6 = vec3(ivec3(\n int(packed.w << 14u) >> 26,\n int(packed.w << 8u) >> 26,\n int(packed.w << 2u) >> 26\n )) / 31.0;\n\n float xx = viewDir.x * viewDir.x;\n float yy = viewDir.y * viewDir.y;\n float zz = viewDir.z * viewDir.z;\n float xy = viewDir.x * viewDir.y;\n float yz = viewDir.y * viewDir.z;\n float zx = viewDir.z * viewDir.x;\n\n return sh3_0 * (-0.5900436 * viewDir.y * (3.0 * xx - yy))\n + sh3_1 * (2.8906114 * xy * viewDir.z) +\n + sh3_2 * (-0.4570458 * viewDir.y * (4.0 * zz - xx - yy))\n + sh3_3 * (0.3731763 * viewDir.z * (2.0 * zz - 3.0 * xx - 3.0 * yy))\n + sh3_4 * (-0.4570458 * viewDir.x * (4.0 * zz - xx - yy))\n + sh3_5 * (1.4453057 * viewDir.z * (xx - yy))\n + sh3_6 * (-0.5900436 * viewDir.x * (xx - 3.0 * yy));\n }\n`);\n function evaluateSH1(gsplat, sh1, viewDir) {\n return dyno({\n inTypes: { gsplat: Gsplat, sh1: "usampler2DArray", viewDir: "vec3" },\n outTypes: { rgb: "vec3" },\n inputs: { gsplat, sh1, viewDir },\n globals: () => [defineGsplat, defineEvaluateSH1],\n statements: ({ inputs, outputs }) => {\n const statements = unindentLines(`\n if (isGsplatActive(${inputs.gsplat}.flags)) {\n ${outputs.rgb} = evaluateSH1(${inputs.gsplat}, ${inputs.sh1}, ${inputs.viewDir});\n } else {\n ${outputs.rgb} = vec3(0.0);\n }\n `);\n return statements;\n }\n }).outputs.rgb;\n }\n function evaluateSH2(gsplat, sh2, viewDir) {\n return dyno({\n inTypes: { gsplat: Gsplat, sh2: "usampler2DArray", viewDir: "vec3" },\n outTypes: { rgb: "vec3" },\n inputs: { gsplat, sh2, viewDir },\n globals: () => [defineGsplat, defineEvaluateSH2],\n statements: ({ inputs, outputs }) => unindentLines(`\n if (isGsplatActive(${inputs.gsplat}.flags)) {\n ${outputs.rgb} = evaluateSH2(${inputs.gsplat}, ${inputs.sh2}, ${inputs.viewDir});\n } else {\n ${outputs.rgb} = vec3(0.0);\n }\n `)\n }).outputs.rgb;\n }\n function evaluateSH3(gsplat, sh3, viewDir) {\n return dyno({\n inTypes: { gsplat: Gsplat, sh3: "usampler2DArray", viewDir: "vec3" },\n outTypes: { rgb: "vec3" },\n inputs: { gsplat, sh3, viewDir },\n globals: () => [defineGsplat, defineEvaluateSH3],\n statements: ({ inputs, outputs }) => unindentLines(`\n if (isGsplatActive(${inputs.gsplat}.flags)) {\n ${outputs.rgb} = evaluateSH3(${inputs.gsplat}, ${inputs.sh3}, ${inputs.viewDir});\n } else {\n ${outputs.rgb} = vec3(0.0);\n }\n `)\n }).outputs.rgb;\n }\n function WorkerWrapper(options) {\n return new Worker(\n self.location.href,\n {\n name: options == null ? void 0 : options.name\n }\n );\n }\n class SplatWorker {\n constructor() {\n this.messages = {};\n this.messageIdNext = 0;\n this.worker = new WorkerWrapper();\n this.worker.onmessage = (event) => this.onMessage(event);\n }\n makeMessageId() {\n return ++this.messageIdNext;\n }\n makeMessagePromiseId() {\n const id = this.makeMessageId();\n const promise = new Promise((resolve, reject) => {\n this.messages[id] = { resolve, reject };\n });\n return { id, promise };\n }\n onMessage(event) {\n const { id, result, error } = event.data;\n const handler = this.messages[id];\n if (handler) {\n delete this.messages[id];\n if (error) {\n handler.reject(error);\n } else {\n handler.resolve(result);\n }\n }\n }\n // Invoke an RPC on the worker with the given name and arguments.\n // The normal usage of a worker is to run one activity at a time,\n // but this function allows for concurrent calls, tagging each request\n // with a unique message Id and awaiting a response to that same Id.\n // The method will automatically transfer any ArrayBuffers in the\n // arguments to the worker. If you\'d like to transfer a copy of a\n // buffer then you must clone it before passing to this function.\n async call(name, args) {\n const { id, promise } = this.makeMessagePromiseId();\n this.worker.postMessage(\n { name, args, id },\n { transfer: getArrayBuffers(args) }\n );\n return promise;\n }\n }\n let maxWorkers = 4;\n let numWorkers = 0;\n const freeWorkers = [];\n const workerQueue = [];\n async function allocWorker() {\n const worker = freeWorkers.shift();\n if (worker) {\n return worker;\n }\n if (numWorkers < maxWorkers) {\n const worker2 = new SplatWorker();\n numWorkers += 1;\n return worker2;\n }\n return new Promise((resolve) => {\n workerQueue.push(resolve);\n });\n }\n function freeWorker(worker) {\n if (numWorkers > maxWorkers) {\n numWorkers -= 1;\n return;\n }\n const waiter = workerQueue.shift();\n if (waiter) {\n waiter(worker);\n return;\n }\n freeWorkers.push(worker);\n }\n async function withWorker(callback) {\n const worker = await allocWorker();\n try {\n return await callback(worker);\n } finally {\n freeWorker(worker);\n }\n }\n var SplatFileType = /* @__PURE__ */ ((SplatFileType2) => {\n SplatFileType2["PLY"] = "ply";\n SplatFileType2["WLG0"] = "wlg0";\n SplatFileType2["SPZ"] = "spz";\n SplatFileType2["SPLAT"] = "splat";\n SplatFileType2["KSPLAT"] = "ksplat";\n return SplatFileType2;\n })(SplatFileType || {});\n function getSplatFileType(fileBytes) {\n const view = new DataView(fileBytes.buffer);\n if ((view.getUint32(0, true) & 16777215) === 7957616) {\n return "ply";\n }\n if (view.getUint32(0, true) === 809978967) {\n return "wlg0";\n }\n if ((view.getUint32(0, true) & 16777215) === 559903) {\n const header = decompressPartialGzip(fileBytes, 4);\n const gView = new DataView(header.buffer);\n if (gView.getUint32(0, true) === 1347635022) {\n return "spz";\n }\n return void 0;\n }\n return void 0;\n }\n function getFileExtension(pathOrUrl) {\n const noTrailing = pathOrUrl.split(/[?#]/, 1)[0];\n const lastSlash = Math.max(\n noTrailing.lastIndexOf("/"),\n noTrailing.lastIndexOf("\\\\")\n );\n const filename = noTrailing.slice(lastSlash + 1);\n const lastDot = filename.lastIndexOf(".");\n if (lastDot <= 0 || lastDot === filename.length - 1) {\n return "";\n }\n return filename.slice(lastDot + 1).toLowerCase();\n }\n function getSplatFileTypeFromPath(pathOrUrl) {\n const extension = getFileExtension(pathOrUrl);\n if (extension === "ply") {\n return "ply";\n }\n if (extension === "wlg") {\n return "wlg0";\n }\n if (extension === "spz") {\n return "spz";\n }\n if (extension === "splat") {\n return "splat";\n }\n if (extension === "ksplat") {\n return "ksplat";\n }\n return void 0;\n }\n async function unpackSplats({\n input,\n fileType,\n pathOrUrl\n }) {\n const fileBytes = input instanceof ArrayBuffer ? new Uint8Array(input) : input;\n let splatFileType = fileType;\n if (!fileType) {\n splatFileType = getSplatFileType(fileBytes);\n if (!splatFileType && pathOrUrl) {\n splatFileType = getSplatFileTypeFromPath(pathOrUrl);\n }\n }\n switch (splatFileType) {\n case "wlg0":\n return await withWorker(async (worker) => {\n const { packedArray, numSplats } = await worker.call("decodeWlg", {\n fileBytes\n });\n return { packedArray, numSplats };\n });\n case "ply": {\n const ply = new PlyReader({ fileBytes });\n await ply.parseHeader();\n const numSplats = ply.numSplats;\n const maxSplats = getTextureSize(numSplats).maxSplats;\n const args = { fileBytes, packedArray: new Uint32Array(maxSplats * 4) };\n return await withWorker(async (worker) => {\n const { packedArray, numSplats: numSplats2, extra } = await worker.call(\n "unpackPly",\n args\n );\n return { packedArray, numSplats: numSplats2, extra };\n });\n }\n case "spz": {\n return await withWorker(async (worker) => {\n const { packedArray, numSplats, extra } = await worker.call(\n "decodeSpz",\n {\n fileBytes\n }\n );\n return { packedArray, numSplats, extra };\n });\n }\n case "splat": {\n return await withWorker(async (worker) => {\n const { packedArray, numSplats } = await worker.call(\n "decodeAntiSplat",\n {\n fileBytes\n }\n );\n return { packedArray, numSplats };\n });\n }\n case "ksplat":\n return await withWorker(async (worker) => {\n const { packedArray, numSplats, extra } = await worker.call(\n "decodeKsplat",\n { fileBytes }\n );\n return { packedArray, numSplats, extra };\n });\n default: {\n throw new Error(`Unknown splat file type: ${splatFileType}`);\n }\n }\n }\n class SplatData {\n constructor({ maxSplats = 1 } = {}) {\n this.numSplats = 0;\n this.maxSplats = getTextureSize(maxSplats).maxSplats;\n this.centers = new Float32Array(this.maxSplats * 3);\n this.scales = new Float32Array(this.maxSplats * 3);\n this.quaternions = new Float32Array(this.maxSplats * 4);\n this.opacities = new Float32Array(this.maxSplats);\n this.colors = new Float32Array(this.maxSplats * 3);\n }\n pushSplat() {\n const index = this.numSplats;\n this.ensureIndex(index);\n this.numSplats += 1;\n return index;\n }\n unpushSplat(index) {\n if (index === this.numSplats - 1) {\n this.numSplats -= 1;\n } else {\n throw new Error("Cannot unpush splat from non-last position");\n }\n }\n ensureCapacity(numSplats) {\n if (numSplats > this.maxSplats) {\n const targetSplats = Math.max(numSplats, this.maxSplats * 2);\n const newCenters = new Float32Array(targetSplats * 3);\n const newScales = new Float32Array(targetSplats * 3);\n const newQuaternions = new Float32Array(targetSplats * 4);\n const newOpacities = new Float32Array(targetSplats);\n const newColors = new Float32Array(targetSplats * 3);\n newCenters.set(this.centers);\n newScales.set(this.scales);\n newQuaternions.set(this.quaternions);\n newOpacities.set(this.opacities);\n newColors.set(this.colors);\n this.centers = newCenters;\n this.scales = newScales;\n this.quaternions = newQuaternions;\n this.opacities = newOpacities;\n this.colors = newColors;\n if (this.sh1) {\n const newSh1 = new Float32Array(targetSplats * 9);\n newSh1.set(this.sh1);\n this.sh1 = newSh1;\n }\n if (this.sh2) {\n const newSh2 = new Float32Array(targetSplats * 15);\n newSh2.set(this.sh2);\n this.sh2 = newSh2;\n }\n if (this.sh3) {\n const newSh3 = new Float32Array(targetSplats * 21);\n newSh3.set(this.sh3);\n this.sh3 = newSh3;\n }\n this.maxSplats = targetSplats;\n }\n }\n ensureIndex(index) {\n this.ensureCapacity(index + 1);\n }\n setCenter(index, x2, y, z) {\n this.centers[index * 3] = x2;\n this.centers[index * 3 + 1] = y;\n this.centers[index * 3 + 2] = z;\n }\n setScale(index, scaleX, scaleY, scaleZ) {\n this.scales[index * 3] = scaleX;\n this.scales[index * 3 + 1] = scaleY;\n this.scales[index * 3 + 2] = scaleZ;\n }\n setQuaternion(index, x2, y, z, w) {\n this.quaternions[index * 4] = x2;\n this.quaternions[index * 4 + 1] = y;\n this.quaternions[index * 4 + 2] = z;\n this.quaternions[index * 4 + 3] = w;\n }\n setOpacity(index, opacity) {\n this.opacities[index] = opacity;\n }\n setColor(index, r, g, b) {\n this.colors[index * 3] = r;\n this.colors[index * 3 + 1] = g;\n this.colors[index * 3 + 2] = b;\n }\n setSh1(index, sh1) {\n if (!this.sh1) {\n this.sh1 = new Float32Array(this.maxSplats * 9);\n }\n for (let j = 0; j < 9; ++j) {\n this.sh1[index * 9 + j] = sh1[j];\n }\n }\n setSh2(index, sh2) {\n if (!this.sh2) {\n this.sh2 = new Float32Array(this.maxSplats * 15);\n }\n for (let j = 0; j < 15; ++j) {\n this.sh2[index * 15 + j] = sh2[j];\n }\n }\n setSh3(index, sh3) {\n if (!this.sh3) {\n this.sh3 = new Float32Array(this.maxSplats * 21);\n }\n for (let j = 0; j < 21; ++j) {\n this.sh3[index * 21 + j] = sh3[j];\n }\n }\n }\n class SpzReader {\n constructor({ fileBytes }) {\n this.fileBytes = fileBytes instanceof ArrayBuffer ? new Uint8Array(fileBytes) : fileBytes;\n this.reader = new GunzipReader({ fileBytes: this.fileBytes });\n const header = new DataView(this.reader.read(16).buffer);\n if (header.getUint32(0, true) !== 1347635022) {\n throw new Error("Invalid SPZ file");\n }\n this.version = header.getUint32(4, true);\n if (this.version < 1 || this.version > 2) {\n throw new Error(`Unsupported SPZ version: ${this.version}`);\n }\n this.numSplats = header.getUint32(8, true);\n this.shDegree = header.getUint8(12);\n this.fractionalBits = header.getUint8(13);\n this.flags = header.getUint8(14);\n this.flagAntiAlias = (this.flags & 1) !== 0;\n this.reserved = header.getUint8(15);\n this.parsed = false;\n }\n parseSplats(centerCallback, alphaCallback, rgbCallback, scalesCallback, quatCallback, shCallback) {\n if (this.parsed) {\n throw new Error("SPZ file already parsed");\n }\n this.parsed = true;\n if (this.version === 1) {\n const centerBytes = this.reader.read(this.numSplats * 3 * 2);\n const centerUint16 = new Uint16Array(centerBytes.buffer);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i3 = i2 * 3;\n const x2 = fromHalf(centerUint16[i3]);\n const y = fromHalf(centerUint16[i3 + 1]);\n const z = fromHalf(centerUint16[i3 + 2]);\n centerCallback == null ? void 0 : centerCallback(i2, x2, y, z);\n }\n } else if (this.version === 2) {\n const fixed = 1 << this.fractionalBits;\n const centerBytes = this.reader.read(this.numSplats * 3 * 3);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i9 = i2 * 9;\n const x2 = ((centerBytes[i9 + 2] << 24 | centerBytes[i9 + 1] << 16 | centerBytes[i9] << 8) >> 8) / fixed;\n const y = ((centerBytes[i9 + 5] << 24 | centerBytes[i9 + 4] << 16 | centerBytes[i9 + 3] << 8) >> 8) / fixed;\n const z = ((centerBytes[i9 + 8] << 24 | centerBytes[i9 + 7] << 16 | centerBytes[i9 + 6] << 8) >> 8) / fixed;\n centerCallback == null ? void 0 : centerCallback(i2, x2, y, z);\n }\n } else {\n throw new Error("Unreachable");\n }\n {\n const bytes = this.reader.read(this.numSplats);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n alphaCallback == null ? void 0 : alphaCallback(i2, bytes[i2] / 255);\n }\n }\n {\n const rgbBytes = this.reader.read(this.numSplats * 3);\n const scale = SH_C0 / 0.15;\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i3 = i2 * 3;\n const r = (rgbBytes[i3] / 255 - 0.5) * scale + 0.5;\n const g = (rgbBytes[i3 + 1] / 255 - 0.5) * scale + 0.5;\n const b = (rgbBytes[i3 + 2] / 255 - 0.5) * scale + 0.5;\n rgbCallback == null ? void 0 : rgbCallback(i2, r, g, b);\n }\n }\n {\n const scalesBytes = this.reader.read(this.numSplats * 3);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i3 = i2 * 3;\n const scaleX = Math.exp(scalesBytes[i3] / 16 - 10);\n const scaleY = Math.exp(scalesBytes[i3 + 1] / 16 - 10);\n const scaleZ = Math.exp(scalesBytes[i3 + 2] / 16 - 10);\n scalesCallback == null ? void 0 : scalesCallback(i2, scaleX, scaleY, scaleZ);\n }\n }\n {\n const quatBytes = this.reader.read(this.numSplats * 3);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i3 = i2 * 3;\n const quatX = quatBytes[i3] / 127.5 - 1;\n const quatY = quatBytes[i3 + 1] / 127.5 - 1;\n const quatZ = quatBytes[i3 + 2] / 127.5 - 1;\n const quatW = Math.sqrt(\n Math.max(0, 1 - quatX * quatX - quatY * quatY - quatZ * quatZ)\n );\n quatCallback == null ? void 0 : quatCallback(i2, quatX, quatY, quatZ, quatW);\n }\n }\n if (shCallback && this.shDegree >= 1) {\n const sh1 = new Float32Array(3 * 3);\n const sh2 = this.shDegree >= 2 ? new Float32Array(5 * 3) : void 0;\n const sh3 = this.shDegree >= 3 ? new Float32Array(7 * 3) : void 0;\n const shBytes = this.reader.read(\n this.numSplats * SH_DEGREE_TO_VECS[this.shDegree] * 3\n );\n let offset = 0;\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n for (let j = 0; j < 9; ++j) {\n sh1[j] = (shBytes[offset + j] - 128) / 128;\n }\n offset += 9;\n if (sh2) {\n for (let j = 0; j < 15; ++j) {\n sh2[j] = (shBytes[offset + j] - 128) / 128;\n }\n offset += 15;\n }\n if (sh3) {\n for (let j = 0; j < 21; ++j) {\n sh3[j] = (shBytes[offset + j] - 128) / 128;\n }\n offset += 21;\n }\n shCallback == null ? void 0 : shCallback(i2, sh1, sh2, sh3);\n }\n }\n }\n }\n const SH_DEGREE_TO_VECS = { 1: 3, 2: 8, 3: 15 };\n const SH_C0 = 0.28209479177387814;\n const SPZ_MAGIC = 1347635022;\n const SPZ_VERSION = 2;\n const FLAG_ANTIALIASED = 1;\n class SpzWriter {\n constructor({\n numSplats,\n shDegree,\n fractionalBits = 12,\n flagAntiAlias = true\n }) {\n this.clippedCount = 0;\n const splatSize = 9 + 1 + 3 + 3 + 3 + (shDegree >= 1 ? 9 : 0) + (shDegree >= 2 ? 15 : 0) + (shDegree >= 3 ? 21 : 0);\n const bufferSize = 16 + numSplats * splatSize;\n this.buffer = new ArrayBuffer(bufferSize);\n this.view = new DataView(this.buffer);\n this.view.setUint32(0, SPZ_MAGIC, true);\n this.view.setUint32(4, SPZ_VERSION, true);\n this.view.setUint32(8, numSplats, true);\n this.view.setUint8(12, shDegree);\n this.view.setUint8(13, fractionalBits);\n this.view.setUint8(14, flagAntiAlias ? FLAG_ANTIALIASED : 0);\n this.view.setUint8(15, 0);\n this.numSplats = numSplats;\n this.shDegree = shDegree;\n this.fractionalBits = fractionalBits;\n this.fraction = 1 << fractionalBits;\n this.flagAntiAlias = flagAntiAlias;\n }\n setCenter(index, x2, y, z) {\n const xRounded = Math.round(x2 * this.fraction);\n const xInt = Math.max(-8388607, Math.min(8388607, xRounded));\n const yRounded = Math.round(y * this.fraction);\n const yInt = Math.max(-8388607, Math.min(8388607, yRounded));\n const zRounded = Math.round(z * this.fraction);\n const zInt = Math.max(-8388607, Math.min(8388607, zRounded));\n const clipped = xRounded !== xInt || yRounded !== yInt || zRounded !== zInt;\n if (clipped) {\n this.clippedCount += 1;\n }\n const i9 = index * 9;\n const base = 16 + i9;\n this.view.setUint8(base, xInt & 255);\n this.view.setUint8(base + 1, xInt >> 8 & 255);\n this.view.setUint8(base + 2, xInt >> 16 & 255);\n this.view.setUint8(base + 3, yInt & 255);\n this.view.setUint8(base + 4, yInt >> 8 & 255);\n this.view.setUint8(base + 5, yInt >> 16 & 255);\n this.view.setUint8(base + 6, zInt & 255);\n this.view.setUint8(base + 7, zInt >> 8 & 255);\n this.view.setUint8(base + 8, zInt >> 16 & 255);\n }\n setAlpha(index, alpha) {\n const base = 16 + this.numSplats * 9 + index;\n this.view.setUint8(\n base,\n Math.max(0, Math.min(255, Math.round(alpha * 255)))\n );\n }\n static scaleRgb(r) {\n const v = ((r - 0.5) / (SH_C0 / 0.15) + 0.5) * 255;\n return Math.max(0, Math.min(255, Math.round(v)));\n }\n setRgb(index, r, g, b) {\n const base = 16 + this.numSplats * 10 + index * 3;\n this.view.setUint8(base, SpzWriter.scaleRgb(r));\n this.view.setUint8(base + 1, SpzWriter.scaleRgb(g));\n this.view.setUint8(base + 2, SpzWriter.scaleRgb(b));\n }\n setScale(index, scaleX, scaleY, scaleZ) {\n const base = 16 + this.numSplats * 13 + index * 3;\n this.view.setUint8(\n base,\n Math.max(0, Math.min(255, Math.round((Math.log(scaleX) + 10) * 16)))\n );\n this.view.setUint8(\n base + 1,\n Math.max(0, Math.min(255, Math.round((Math.log(scaleY) + 10) * 16)))\n );\n this.view.setUint8(\n base + 2,\n Math.max(0, Math.min(255, Math.round((Math.log(scaleZ) + 10) * 16)))\n );\n }\n setQuat(index, quatX, quatY, quatZ, quatW) {\n const base = 16 + this.numSplats * 16 + index * 3;\n const quatNeg = quatW < 0;\n this.view.setUint8(\n base,\n Math.max(\n 0,\n Math.min(255, Math.round(((quatNeg ? -quatX : quatX) + 1) * 127.5))\n )\n );\n this.view.setUint8(\n base + 1,\n Math.max(\n 0,\n Math.min(255, Math.round(((quatNeg ? -quatY : quatY) + 1) * 127.5))\n )\n );\n this.view.setUint8(\n base + 2,\n Math.max(\n 0,\n Math.min(255, Math.round(((quatNeg ? -quatZ : quatZ) + 1) * 127.5))\n )\n );\n }\n static quantizeSh(sh, bits2) {\n const value = Math.round(sh * 128) + 128;\n const bucketSize = 1 << 8 - bits2;\n const quantized = Math.floor((value + bucketSize / 2) / bucketSize) * bucketSize;\n return Math.max(0, Math.min(255, quantized));\n }\n setSh(index, sh1, sh2, sh3) {\n const shVecs = SH_DEGREE_TO_VECS[this.shDegree] || 0;\n const base1 = 16 + this.numSplats * 19 + index * shVecs * 3;\n for (let j = 0; j < 9; ++j) {\n this.view.setUint8(base1 + j, SpzWriter.quantizeSh(sh1[j], 5));\n }\n if (sh2) {\n const base2 = base1 + 9;\n for (let j = 0; j < 15; ++j) {\n this.view.setUint8(base2 + j, SpzWriter.quantizeSh(sh2[j], 4));\n }\n if (sh3) {\n const base3 = base2 + 15;\n for (let j = 0; j < 21; ++j) {\n this.view.setUint8(base3 + j, SpzWriter.quantizeSh(sh3[j], 4));\n }\n }\n }\n }\n async finalize() {\n const input = new Uint8Array(this.buffer);\n const stream = new ReadableStream({\n async start(controller) {\n controller.enqueue(input);\n controller.close();\n }\n });\n const compressed = stream.pipeThrough(new CompressionStream("gzip"));\n const response = new Response(compressed);\n const buffer = await response.arrayBuffer();\n console.log(\n "Compressed",\n input.length,\n "bytes to",\n buffer.byteLength,\n "bytes"\n );\n return new Uint8Array(buffer);\n }\n }\n async function transcodeSpz(input) {\n var _a2, _b2, _c;\n const splats = new SplatData();\n const {\n inputs,\n clipXyz,\n maxSh,\n fractionalBits = 12,\n opacityThreshold\n } = input;\n for (const input2 of inputs) {\n let transformPos2 = function(pos) {\n pos.multiplyScalar(scale);\n pos.applyQuaternion(quaternion);\n pos.add(translate);\n return pos;\n }, transformScales = function(scales) {\n scales.multiplyScalar(scale);\n return scales;\n }, transformQuaternion = function(quat) {\n quat.premultiply(quaternion);\n return quat;\n }, withinClip = function(p) {\n return !clip || clip.containsPoint(p);\n }, withinOpacity = function(opacity) {\n return opacityThreshold !== void 0 ? opacity >= opacityThreshold : true;\n };\n const scale = ((_a2 = input2.transform) == null ? void 0 : _a2.scale) ?? 1;\n const quaternion = new Quaternion().fromArray(\n ((_b2 = input2.transform) == null ? void 0 : _b2.quaternion) ?? [0, 0, 0, 1]\n );\n const translate = new Vector3().fromArray(\n ((_c = input2.transform) == null ? void 0 : _c.translate) ?? [0, 0, 0]\n );\n const clip = clipXyz ? new Box3(\n new Vector3().fromArray(clipXyz.min),\n new Vector3().fromArray(clipXyz.max)\n ) : void 0;\n let fileType = input2.fileType;\n if (!fileType) {\n fileType = getSplatFileType(input2.fileBytes);\n if (!fileType && input2.pathOrUrl) {\n fileType = getSplatFileTypeFromPath(input2.pathOrUrl);\n }\n }\n switch (fileType) {\n case SplatFileType.WLG0: {\n await __wbg_init();\n const decoded = decode_wlg(\n input2.fileBytes,\n SPLAT_TEX_WIDTH,\n SPLAT_TEX_HEIGHT\n );\n for (let i2 = 0; i2 < decoded.numSplats; ++i2) {\n let { center, scales, quaternion: quaternion2, opacity, color } = unpackSplat(\n decoded.packedSplats,\n i2\n );\n center = transformPos2(center);\n if (withinClip(center) && withinOpacity(opacity)) {\n const index = splats.pushSplat();\n splats.setCenter(index, center.x, center.y, center.z);\n scales = transformScales(scales);\n splats.setScale(index, scales.x, scales.y, scales.z);\n quaternion2 = transformQuaternion(quaternion2);\n splats.setQuaternion(\n index,\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n splats.setOpacity(index, opacity);\n splats.setColor(index, color.r, color.g, color.b);\n }\n }\n break;\n }\n case SplatFileType.PLY: {\n const ply = new PlyReader({ fileBytes: input2.fileBytes });\n await ply.parseHeader();\n let lastIndex = null;\n ply.parseSplats(\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n const center = transformPos2(new Vector3(x2, y, z));\n if (withinClip(center) && withinOpacity(opacity)) {\n lastIndex = splats.pushSplat();\n splats.setCenter(lastIndex, center.x, center.y, center.z);\n const scales = transformScales(\n new Vector3(scaleX, scaleY, scaleZ)\n );\n splats.setScale(lastIndex, scales.x, scales.y, scales.z);\n const quaternion2 = transformQuaternion(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n splats.setQuaternion(\n lastIndex,\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n splats.setOpacity(lastIndex, opacity);\n splats.setColor(lastIndex, r, g, b);\n } else {\n lastIndex = null;\n }\n },\n (index, sh1, sh2, sh3) => {\n if (sh1 && lastIndex !== null) {\n splats.setSh1(lastIndex, sh1);\n }\n if (sh2 && lastIndex !== null) {\n splats.setSh2(lastIndex, sh2);\n }\n if (sh3 && lastIndex !== null) {\n splats.setSh3(lastIndex, sh3);\n }\n }\n );\n break;\n }\n case SplatFileType.SPZ: {\n const spz2 = new SpzReader({ fileBytes: input2.fileBytes });\n const mapping = new Int32Array(spz2.numSplats);\n mapping.fill(-1);\n const centers = new Float32Array(spz2.numSplats * 3);\n const center = new Vector3();\n spz2.parseSplats(\n (index, x2, y, z) => {\n const center2 = transformPos2(new Vector3(x2, y, z));\n centers[index * 3] = center2.x;\n centers[index * 3 + 1] = center2.y;\n centers[index * 3 + 2] = center2.z;\n },\n (index, alpha) => {\n center.fromArray(centers, index * 3);\n if (withinClip(center) && withinOpacity(alpha)) {\n mapping[index] = splats.pushSplat();\n splats.setCenter(mapping[index], center.x, center.y, center.z);\n splats.setOpacity(mapping[index], alpha);\n }\n },\n (index, r, g, b) => {\n if (mapping[index] >= 0) {\n splats.setColor(mapping[index], r, g, b);\n }\n },\n (index, scaleX, scaleY, scaleZ) => {\n if (mapping[index] >= 0) {\n const scales = transformScales(\n new Vector3(scaleX, scaleY, scaleZ)\n );\n splats.setScale(mapping[index], scales.x, scales.y, scales.z);\n }\n },\n (index, quatX, quatY, quatZ, quatW) => {\n if (mapping[index] >= 0) {\n const quaternion2 = transformQuaternion(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n splats.setQuaternion(\n mapping[index],\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n }\n },\n (index, sh1, sh2, sh3) => {\n if (mapping[index] >= 0) {\n splats.setSh1(mapping[index], sh1);\n if (sh2) {\n splats.setSh2(mapping[index], sh2);\n }\n if (sh3) {\n splats.setSh3(mapping[index], sh3);\n }\n }\n }\n );\n break;\n }\n case SplatFileType.SPLAT:\n decodeAntiSplat(\n input2.fileBytes,\n (numSplats) => {\n },\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n const center = transformPos2(new Vector3(x2, y, z));\n if (withinClip(center) && withinOpacity(opacity)) {\n const index2 = splats.pushSplat();\n splats.setCenter(index2, center.x, center.y, center.z);\n const scales = transformScales(\n new Vector3(scaleX, scaleY, scaleZ)\n );\n splats.setScale(index2, scales.x, scales.y, scales.z);\n const quaternion2 = transformQuaternion(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n splats.setQuaternion(\n index2,\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n splats.setOpacity(index2, opacity);\n splats.setColor(index2, r, g, b);\n }\n }\n );\n break;\n case SplatFileType.KSPLAT: {\n let lastIndex = null;\n decodeKsplat(\n input2.fileBytes,\n (numSplats) => {\n },\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n const center = transformPos2(new Vector3(x2, y, z));\n if (withinClip(center) && withinOpacity(opacity)) {\n lastIndex = splats.pushSplat();\n splats.setCenter(lastIndex, center.x, center.y, center.z);\n const scales = transformScales(\n new Vector3(scaleX, scaleY, scaleZ)\n );\n splats.setScale(lastIndex, scales.x, scales.y, scales.z);\n const quaternion2 = transformQuaternion(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n splats.setQuaternion(\n lastIndex,\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n splats.setOpacity(lastIndex, opacity);\n splats.setColor(lastIndex, r, g, b);\n } else {\n lastIndex = null;\n }\n },\n (index, sh1, sh2, sh3) => {\n if (lastIndex !== null) {\n splats.setSh1(lastIndex, sh1);\n if (sh2) {\n splats.setSh2(lastIndex, sh2);\n }\n if (sh3) {\n splats.setSh3(lastIndex, sh3);\n }\n }\n }\n );\n break;\n }\n default:\n throw new Error(`transcodeSpz not implemented for ${fileType}`);\n }\n }\n const shDegree = Math.min(\n maxSh ?? 3,\n splats.sh3 ? 3 : splats.sh2 ? 2 : splats.sh1 ? 1 : 0\n );\n const spz = new SpzWriter({\n numSplats: splats.numSplats,\n shDegree,\n fractionalBits,\n flagAntiAlias: true\n });\n for (let i2 = 0; i2 < splats.numSplats; ++i2) {\n const i3 = i2 * 3;\n const i4 = i2 * 4;\n spz.setCenter(\n i2,\n splats.centers[i3],\n splats.centers[i3 + 1],\n splats.centers[i3 + 2]\n );\n spz.setScale(\n i2,\n splats.scales[i3],\n splats.scales[i3 + 1],\n splats.scales[i3 + 2]\n );\n spz.setQuat(\n i2,\n splats.quaternions[i4],\n splats.quaternions[i4 + 1],\n splats.quaternions[i4 + 2],\n splats.quaternions[i4 + 3]\n );\n spz.setAlpha(i2, splats.opacities[i2]);\n spz.setRgb(\n i2,\n splats.colors[i3],\n splats.colors[i3 + 1],\n splats.colors[i3 + 2]\n );\n if (splats.sh1 && shDegree >= 1) {\n spz.setSh(\n i2,\n splats.sh1.slice(i2 * 9, (i2 + 1) * 9),\n shDegree >= 2 && splats.sh2 ? splats.sh2.slice(i2 * 15, (i2 + 1) * 15) : void 0,\n shDegree >= 3 && splats.sh3 ? splats.sh3.slice(i2 * 21, (i2 + 1) * 21) : void 0\n );\n }\n }\n const spzBytes = await spz.finalize();\n return { fileBytes: spzBytes, clippedCount: spz.clippedCount };\n }\n async function onMessage(event) {\n const { name, args, id } = event.data;\n let result = void 0;\n let error = void 0;\n try {\n switch (name) {\n case "unpackPly": {\n const { packedArray, fileBytes } = args;\n const decoded = await unpackPly({ packedArray, fileBytes });\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedArray,\n extra: decoded.extra\n };\n break;\n }\n case "decodeWlg": {\n const { fileBytes } = args;\n const decoded = decode_wlg(\n fileBytes,\n SPLAT_TEX_WIDTH,\n SPLAT_TEX_HEIGHT\n );\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedSplats\n };\n break;\n }\n case "decodeSpz": {\n const { fileBytes } = args;\n const decoded = unpackSpz(fileBytes);\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedArray,\n extra: decoded.extra\n };\n break;\n }\n case "decodeAntiSplat": {\n const { fileBytes } = args;\n const decoded = unpackAntiSplat(fileBytes);\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedArray\n };\n break;\n }\n case "decodeKsplat": {\n const { fileBytes } = args;\n const decoded = unpackKsplat(fileBytes);\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedArray,\n extra: decoded.extra\n };\n break;\n }\n case "sortSplats": {\n const { maxSplats, totalSplats, readback, ordering } = args;\n if (WASM_SPLAT_SORT) {\n result = {\n id,\n readback,\n ordering,\n activeSplats: old_sort_splats(\n maxSplats,\n totalSplats,\n readback,\n ordering\n )\n };\n }\n break;\n }\n case "sortDoubleSplats": {\n const { numSplats, readback, ordering } = args;\n result = {\n id,\n readback,\n ordering\n };\n if (WASM_SPLAT_SORT) {\n result = {\n id,\n readback,\n ordering,\n activeSplats: sort_splats(numSplats, readback, ordering)\n };\n }\n break;\n }\n case "transcodeSpz": {\n const input = args;\n const spzBytes = await transcodeSpz(input);\n result = {\n id,\n fileBytes: spzBytes,\n input\n };\n break;\n }\n default: {\n throw new Error(`Unknown name: ${name}`);\n }\n }\n } catch (e) {\n error = e;\n }\n self.postMessage(\n { id, result, error },\n { transfer: getArrayBuffers(result) }\n );\n }\n async function unpackPly({\n packedArray,\n fileBytes\n }) {\n const ply = new PlyReader({ fileBytes });\n await ply.parseHeader();\n const numSplats = ply.numSplats;\n const extra = {};\n const ZERO_CUTOFF = Math.exp(-20);\n ply.parseSplats(\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n setPackedSplat(\n packedArray,\n index,\n x2,\n y,\n z,\n scaleX < ZERO_CUTOFF ? 0 : Math.max(SCALE_MIN, scaleX),\n scaleY < ZERO_CUTOFF ? 0 : Math.max(SCALE_MIN, scaleY),\n scaleZ < ZERO_CUTOFF ? 0 : Math.max(SCALE_MIN, scaleZ),\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n },\n (index, sh1, sh2, sh3) => {\n if (sh1) {\n if (!extra.sh1) {\n extra.sh1 = new Uint32Array(numSplats * 2);\n }\n encodeSh1Rgb(extra.sh1, index, sh1);\n }\n if (sh2) {\n if (!extra.sh2) {\n extra.sh2 = new Uint32Array(numSplats * 4);\n }\n encodeSh2Rgb(extra.sh2, index, sh2);\n }\n if (sh3) {\n if (!extra.sh3) {\n extra.sh3 = new Uint32Array(numSplats * 4);\n }\n encodeSh3Rgb(extra.sh3, index, sh3);\n }\n }\n );\n return { packedArray, numSplats, extra };\n }\n function unpackSpz(fileBytes) {\n const spz = new SpzReader({ fileBytes });\n const numSplats = spz.numSplats;\n const maxSplats = computeMaxSplats(numSplats);\n const packedArray = new Uint32Array(maxSplats * 4);\n const extra = {};\n spz.parseSplats(\n (index, x2, y, z) => {\n setPackedSplatCenter(packedArray, index, x2, y, z);\n },\n (index, alpha) => {\n setPackedSplatOpacity(packedArray, index, alpha);\n },\n (index, r, g, b) => {\n setPackedSplatRgb(packedArray, index, r, g, b);\n },\n (index, scaleX, scaleY, scaleZ) => {\n setPackedSplatScales(packedArray, index, scaleX, scaleY, scaleZ);\n },\n (index, quatX, quatY, quatZ, quatW) => {\n setPackedSplatQuat(packedArray, index, quatX, quatY, quatZ, quatW);\n },\n (index, sh1, sh2, sh3) => {\n if (sh1) {\n if (!extra.sh1) {\n extra.sh1 = new Uint32Array(numSplats * 2);\n }\n encodeSh1Rgb(extra.sh1, index, sh1);\n }\n if (sh2) {\n if (!extra.sh2) {\n extra.sh2 = new Uint32Array(numSplats * 4);\n }\n encodeSh2Rgb(extra.sh2, index, sh2);\n }\n if (sh3) {\n if (!extra.sh3) {\n extra.sh3 = new Uint32Array(numSplats * 4);\n }\n encodeSh3Rgb(extra.sh3, index, sh3);\n }\n }\n );\n return { packedArray, numSplats, extra };\n }\n const DEPTH_INFINITY = 31744;\n const DEPTH_SIZE = DEPTH_INFINITY + 1;\n let depthArray = null;\n function oldSortSplats({\n totalSplats,\n readback,\n ordering\n }) {\n if (!depthArray) {\n depthArray = new Uint32Array(DEPTH_SIZE);\n }\n depthArray.fill(0);\n const readbackUint32 = readback.map((layer) => new Uint32Array(layer.buffer));\n const layerSize = readbackUint32[0].length;\n const numLayers = Math.ceil(totalSplats / layerSize);\n let layerBase = 0;\n for (let layer = 0; layer < numLayers; ++layer) {\n const readbackLayer = readbackUint32[layer];\n const layerSplats = Math.min(readbackLayer.length, totalSplats - layerBase);\n for (let i2 = 0; i2 < layerSplats; ++i2) {\n const pri = readbackLayer[i2] & 32767;\n if (pri < DEPTH_INFINITY) {\n depthArray[pri] += 1;\n }\n }\n layerBase += layerSplats;\n }\n let activeSplats = 0;\n for (let j = 0; j < DEPTH_SIZE; ++j) {\n const nextIndex = activeSplats + depthArray[j];\n depthArray[j] = activeSplats;\n activeSplats = nextIndex;\n }\n layerBase = 0;\n for (let layer = 0; layer < numLayers; ++layer) {\n const readbackLayer = readbackUint32[layer];\n const layerSplats = Math.min(readbackLayer.length, totalSplats - layerBase);\n for (let i2 = 0; i2 < layerSplats; ++i2) {\n const pri = readbackLayer[i2] & 32767;\n if (pri < DEPTH_INFINITY) {\n ordering[depthArray[pri]] = layerBase + i2;\n depthArray[pri] += 1;\n }\n }\n layerBase += layerSplats;\n }\n if (depthArray[DEPTH_SIZE - 1] !== activeSplats) {\n throw new Error(\n `Expected ${activeSplats} active splats but got ${depthArray[DEPTH_SIZE - 1]}`\n );\n }\n return { activeSplats, ordering };\n }\n function sortSplats({\n numSplats,\n readback,\n ordering\n }) {\n if (!depthArray) {\n depthArray = new Uint32Array(DEPTH_SIZE);\n }\n depthArray.fill(0);\n for (let i2 = 0; i2 < numSplats; ++i2) {\n const pri = readback[i2];\n if (pri < DEPTH_INFINITY) {\n depthArray[pri] += 1;\n }\n }\n let activeSplats = 0;\n for (let j = DEPTH_INFINITY - 1; j >= 0; --j) {\n const nextIndex = activeSplats + depthArray[j];\n depthArray[j] = activeSplats;\n activeSplats = nextIndex;\n }\n for (let i2 = 0; i2 < numSplats; ++i2) {\n const pri = readback[i2];\n if (pri < DEPTH_INFINITY) {\n ordering[depthArray[pri]] = i2;\n depthArray[pri] += 1;\n }\n }\n if (depthArray[0] !== activeSplats) {\n throw new Error(\n `Expected ${activeSplats} active splats but got ${depthArray[0]}`\n );\n }\n return { activeSplats, ordering };\n }\n const messageBuffer = [];\n function bufferMessage(event) {\n messageBuffer.push(event);\n }\n async function initialize() {\n self.addEventListener("message", bufferMessage);\n await __wbg_init();\n self.removeEventListener("message", bufferMessage);\n self.addEventListener("message", onMessage);\n for (const event of messageBuffer) {\n onMessage(event);\n }\n messageBuffer.length = 0;\n }\n initialize().catch(console.error);\n})();\n'; +const jsContent = '(function() {\n "use strict";\n let wasm;\n const cachedTextDecoder = typeof TextDecoder !== "undefined" ? new TextDecoder("utf-8", { ignoreBOM: true, fatal: true }) : { decode: () => {\n throw Error("TextDecoder not available");\n } };\n if (typeof TextDecoder !== "undefined") {\n cachedTextDecoder.decode();\n }\n let cachedUint8ArrayMemory0 = null;\n function getUint8ArrayMemory0() {\n if (cachedUint8ArrayMemory0 === null || cachedUint8ArrayMemory0.byteLength === 0) {\n cachedUint8ArrayMemory0 = new Uint8Array(wasm.memory.buffer);\n }\n return cachedUint8ArrayMemory0;\n }\n function getStringFromWasm0(ptr, len) {\n ptr = ptr >>> 0;\n return cachedTextDecoder.decode(getUint8ArrayMemory0().subarray(ptr, ptr + len));\n }\n function sort_splats(num_splats, readback, ordering) {\n const ret = wasm.sort_splats(num_splats, readback, ordering);\n return ret >>> 0;\n }\n function raycast_splats(origin_x, origin_y, origin_z, dir_x, dir_y, dir_z, near, far, num_splats, packed_splats, raycast_ellipsoid) {\n const ret = wasm.raycast_splats(origin_x, origin_y, origin_z, dir_x, dir_y, dir_z, near, far, num_splats, packed_splats, raycast_ellipsoid);\n return ret;\n }\n async function __wbg_load(module, imports) {\n if (typeof Response === "function" && module instanceof Response) {\n if (typeof WebAssembly.instantiateStreaming === "function") {\n try {\n return await WebAssembly.instantiateStreaming(module, imports);\n } catch (e) {\n if (module.headers.get("Content-Type") != "application/wasm") {\n console.warn("`WebAssembly.instantiateStreaming` failed because your server does not serve Wasm with `application/wasm` MIME type. Falling back to `WebAssembly.instantiate` which is slower. Original error:\\n", e);\n } else {\n throw e;\n }\n }\n }\n const bytes = await module.arrayBuffer();\n return await WebAssembly.instantiate(bytes, imports);\n } else {\n const instance = await WebAssembly.instantiate(module, imports);\n if (instance instanceof WebAssembly.Instance) {\n return { instance, module };\n } else {\n return instance;\n }\n }\n }\n function __wbg_get_imports() {\n const imports = {};\n imports.wbg = {};\n imports.wbg.__wbg_buffer_609cc3eee51ed158 = function(arg0) {\n const ret = arg0.buffer;\n return ret;\n };\n imports.wbg.__wbg_length_3b4f022188ae8db6 = function(arg0) {\n const ret = arg0.length;\n return ret;\n };\n imports.wbg.__wbg_length_6ca527665d89694d = function(arg0) {\n const ret = arg0.length;\n return ret;\n };\n imports.wbg.__wbg_length_8cfd2c6409af88ad = function(arg0) {\n const ret = arg0.length;\n return ret;\n };\n imports.wbg.__wbg_new_9fee97a409b32b68 = function(arg0) {\n const ret = new Uint16Array(arg0);\n return ret;\n };\n imports.wbg.__wbg_new_e3b321dcfef89fc7 = function(arg0) {\n const ret = new Uint32Array(arg0);\n return ret;\n };\n imports.wbg.__wbg_newwithbyteoffsetandlength_e6b7e69acd4c7354 = function(arg0, arg1, arg2) {\n const ret = new Float32Array(arg0, arg1 >>> 0, arg2 >>> 0);\n return ret;\n };\n imports.wbg.__wbg_newwithbyteoffsetandlength_f1dead44d1fc7212 = function(arg0, arg1, arg2) {\n const ret = new Uint32Array(arg0, arg1 >>> 0, arg2 >>> 0);\n return ret;\n };\n imports.wbg.__wbg_newwithlength_5a5efe313cfd59f1 = function(arg0) {\n const ret = new Float32Array(arg0 >>> 0);\n return ret;\n };\n imports.wbg.__wbg_set_10bad9bee0e9c58b = function(arg0, arg1, arg2) {\n arg0.set(arg1, arg2 >>> 0);\n };\n imports.wbg.__wbg_set_d23661d19148b229 = function(arg0, arg1, arg2) {\n arg0.set(arg1, arg2 >>> 0);\n };\n imports.wbg.__wbg_set_f4f1f0daa30696fc = function(arg0, arg1, arg2) {\n arg0.set(arg1, arg2 >>> 0);\n };\n imports.wbg.__wbg_subarray_3aaeec89bb2544f0 = function(arg0, arg1, arg2) {\n const ret = arg0.subarray(arg1 >>> 0, arg2 >>> 0);\n return ret;\n };\n imports.wbg.__wbg_subarray_769e1e0f81bb259b = function(arg0, arg1, arg2) {\n const ret = arg0.subarray(arg1 >>> 0, arg2 >>> 0);\n return ret;\n };\n imports.wbg.__wbindgen_init_externref_table = function() {\n const table = wasm.__wbindgen_export_0;\n const offset = table.grow(4);\n table.set(0, void 0);\n table.set(offset + 0, void 0);\n table.set(offset + 1, null);\n table.set(offset + 2, true);\n table.set(offset + 3, false);\n };\n imports.wbg.__wbindgen_memory = function() {\n const ret = wasm.memory;\n return ret;\n };\n imports.wbg.__wbindgen_throw = function(arg0, arg1) {\n throw new Error(getStringFromWasm0(arg0, arg1));\n };\n return imports;\n }\n function __wbg_finalize_init(instance, module) {\n wasm = instance.exports;\n __wbg_init.__wbindgen_wasm_module = module;\n cachedUint8ArrayMemory0 = null;\n wasm.__wbindgen_start();\n return wasm;\n }\n async function __wbg_init(module_or_path) {\n if (wasm !== void 0) return wasm;\n if (typeof module_or_path !== "undefined") {\n if (Object.getPrototypeOf(module_or_path) === Object.prototype) {\n ({ module_or_path } = module_or_path);\n } else {\n console.warn("using deprecated parameters for the initialization function; pass a single object instead");\n }\n }\n if (typeof module_or_path === "undefined") {\n module_or_path = new 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EBAEHrzMAACwEBAEHPzcAACwU/AAAAvwBB7M3AAAsBNgBwCXByb2R1Y2VycwIIbGFuZ3VhZ2UBBFJ1c3QADHByb2Nlc3NlZC1ieQMFcnVzdGMdMS44Mi4wIChmNmU1MTFlZWMgMjAyNC0xMC0xNSkGd2FscnVzBjAuMjMuMwx3YXNtLWJpbmRnZW4HMC4yLjEwMABJD3RhcmdldF9mZWF0dXJlcwQrD211dGFibGUtZ2xvYmFscysIc2lnbi1leHQrD3JlZmVyZW5jZS10eXBlcysKbXVsdGl2YWx1ZQ==", self.location.href);\n }\n const imports = __wbg_get_imports();\n if (typeof module_or_path === "string" || typeof Request === "function" && module_or_path instanceof Request || typeof URL === "function" && module_or_path instanceof URL) {\n module_or_path = fetch(module_or_path);\n }\n const { instance, module } = await __wbg_load(await module_or_path, imports);\n return __wbg_finalize_init(instance, module);\n }\n var u8 = Uint8Array, u16 = Uint16Array, i32 = Int32Array;\n var fleb = new u8([\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 1,\n 1,\n 1,\n 1,\n 2,\n 2,\n 2,\n 2,\n 3,\n 3,\n 3,\n 3,\n 4,\n 4,\n 4,\n 4,\n 5,\n 5,\n 5,\n 5,\n 0,\n /* unused */\n 0,\n 0,\n /* impossible */\n 0\n ]);\n var fdeb = new u8([\n 0,\n 0,\n 0,\n 0,\n 1,\n 1,\n 2,\n 2,\n 3,\n 3,\n 4,\n 4,\n 5,\n 5,\n 6,\n 6,\n 7,\n 7,\n 8,\n 8,\n 9,\n 9,\n 10,\n 10,\n 11,\n 11,\n 12,\n 12,\n 13,\n 13,\n /* unused */\n 0,\n 0\n ]);\n var clim = new u8([16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15]);\n var freb = function(eb, start) {\n var b = new u16(31);\n for (var i2 = 0; i2 < 31; ++i2) {\n b[i2] = start += 1 << eb[i2 - 1];\n }\n var r = new i32(b[30]);\n for (var i2 = 1; i2 < 30; ++i2) {\n for (var j = b[i2]; j < b[i2 + 1]; ++j) {\n r[j] = j - b[i2] << 5 | i2;\n }\n }\n return { b, r };\n };\n var _a = freb(fleb, 2), fl = _a.b, revfl = _a.r;\n fl[28] = 258, revfl[258] = 28;\n var _b = freb(fdeb, 0), fd = _b.b;\n var rev = new u16(32768);\n for (var i = 0; i < 32768; ++i) {\n var x = (i & 43690) >> 1 | (i & 21845) << 1;\n x = (x & 52428) >> 2 | (x & 13107) << 2;\n x = (x & 61680) >> 4 | (x & 3855) << 4;\n rev[i] = ((x & 65280) >> 8 | (x & 255) << 8) >> 1;\n }\n var hMap = function(cd, mb, r) {\n var s = cd.length;\n var i2 = 0;\n var l = new u16(mb);\n for (; i2 < s; ++i2) {\n if (cd[i2])\n ++l[cd[i2] - 1];\n }\n var le = new u16(mb);\n for (i2 = 1; i2 < mb; ++i2) {\n le[i2] = le[i2 - 1] + l[i2 - 1] << 1;\n }\n var co;\n if (r) {\n co = new u16(1 << mb);\n var rvb = 15 - mb;\n for (i2 = 0; i2 < s; ++i2) {\n if (cd[i2]) {\n var sv = i2 << 4 | cd[i2];\n var r_1 = mb - cd[i2];\n var v = le[cd[i2] - 1]++ << r_1;\n for (var m = v | (1 << r_1) - 1; v <= m; ++v) {\n co[rev[v] >> rvb] = sv;\n }\n }\n }\n } else {\n co = new u16(s);\n for (i2 = 0; i2 < s; ++i2) {\n if (cd[i2]) {\n co[i2] = rev[le[cd[i2] - 1]++] >> 15 - cd[i2];\n }\n }\n }\n return co;\n };\n var flt = new u8(288);\n for (var i = 0; i < 144; ++i)\n flt[i] = 8;\n for (var i = 144; i < 256; ++i)\n flt[i] = 9;\n for (var i = 256; i < 280; ++i)\n flt[i] = 7;\n for (var i = 280; i < 288; ++i)\n flt[i] = 8;\n var fdt = new u8(32);\n for (var i = 0; i < 32; ++i)\n fdt[i] = 5;\n var flrm = /* @__PURE__ */ hMap(flt, 9, 1);\n var fdrm = /* @__PURE__ */ hMap(fdt, 5, 1);\n var max = function(a) {\n var m = a[0];\n for (var i2 = 1; i2 < a.length; ++i2) {\n if (a[i2] > m)\n m = a[i2];\n }\n return m;\n };\n var bits = function(d, p, m) {\n var o = p / 8 | 0;\n return (d[o] | d[o + 1] << 8) >> (p & 7) & m;\n };\n var bits16 = function(d, p) {\n var o = p / 8 | 0;\n return (d[o] | d[o + 1] << 8 | d[o + 2] << 16) >> (p & 7);\n };\n var shft = function(p) {\n return (p + 7) / 8 | 0;\n };\n var slc = function(v, s, e) {\n if (s == null || s < 0)\n s = 0;\n if (e == null || e > v.length)\n e = v.length;\n return new u8(v.subarray(s, e));\n };\n var ec = [\n "unexpected EOF",\n "invalid block type",\n "invalid length/literal",\n "invalid distance",\n "stream finished",\n "no stream handler",\n ,\n "no callback",\n "invalid UTF-8 data",\n "extra field too long",\n "date not in range 1980-2099",\n "filename too long",\n "stream finishing",\n "invalid zip data"\n // determined by unknown compression method\n ];\n var err = function(ind, msg, nt) {\n var e = new Error(msg || ec[ind]);\n e.code = ind;\n if (Error.captureStackTrace)\n Error.captureStackTrace(e, err);\n if (!nt)\n throw e;\n return e;\n };\n var inflt = function(dat, st, buf, dict) {\n var sl = dat.length, dl = 0;\n if (!sl || st.f && !st.l)\n return buf || new u8(0);\n var noBuf = !buf;\n var resize = noBuf || st.i != 2;\n var noSt = st.i;\n if (noBuf)\n buf = new u8(sl * 3);\n var cbuf = function(l2) {\n var bl = buf.length;\n if (l2 > bl) {\n var nbuf = new u8(Math.max(bl * 2, l2));\n nbuf.set(buf);\n buf = nbuf;\n }\n };\n var final = st.f || 0, pos = st.p || 0, bt = st.b || 0, lm = st.l, dm = st.d, lbt = st.m, dbt = st.n;\n var tbts = sl * 8;\n do {\n if (!lm) {\n final = bits(dat, pos, 1);\n var type = bits(dat, pos + 1, 3);\n pos += 3;\n if (!type) {\n var s = shft(pos) + 4, l = dat[s - 4] | dat[s - 3] << 8, t = s + l;\n if (t > sl) {\n if (noSt)\n err(0);\n break;\n }\n if (resize)\n cbuf(bt + l);\n buf.set(dat.subarray(s, t), bt);\n st.b = bt += l, st.p = pos = t * 8, st.f = final;\n continue;\n } else if (type == 1)\n lm = flrm, dm = fdrm, lbt = 9, dbt = 5;\n else if (type == 2) {\n var hLit = bits(dat, pos, 31) + 257, hcLen = bits(dat, pos + 10, 15) + 4;\n var tl = hLit + bits(dat, pos + 5, 31) + 1;\n pos += 14;\n var ldt = new u8(tl);\n var clt = new u8(19);\n for (var i2 = 0; i2 < hcLen; ++i2) {\n clt[clim[i2]] = bits(dat, pos + i2 * 3, 7);\n }\n pos += hcLen * 3;\n var clb = max(clt), clbmsk = (1 << clb) - 1;\n var clm = hMap(clt, clb, 1);\n for (var i2 = 0; i2 < tl; ) {\n var r = clm[bits(dat, pos, clbmsk)];\n pos += r & 15;\n var s = r >> 4;\n if (s < 16) {\n ldt[i2++] = s;\n } else {\n var c = 0, n = 0;\n if (s == 16)\n n = 3 + bits(dat, pos, 3), pos += 2, c = ldt[i2 - 1];\n else if (s == 17)\n n = 3 + bits(dat, pos, 7), pos += 3;\n else if (s == 18)\n n = 11 + bits(dat, pos, 127), pos += 7;\n while (n--)\n ldt[i2++] = c;\n }\n }\n var lt = ldt.subarray(0, hLit), dt = ldt.subarray(hLit);\n lbt = max(lt);\n dbt = max(dt);\n lm = hMap(lt, lbt, 1);\n dm = hMap(dt, dbt, 1);\n } else\n err(1);\n if (pos > tbts) {\n if (noSt)\n err(0);\n break;\n }\n }\n if (resize)\n cbuf(bt + 131072);\n var lms = (1 << lbt) - 1, dms = (1 << dbt) - 1;\n var lpos = pos;\n for (; ; lpos = pos) {\n var c = lm[bits16(dat, pos) & lms], sym = c >> 4;\n pos += c & 15;\n if (pos > tbts) {\n if (noSt)\n err(0);\n break;\n }\n if (!c)\n err(2);\n if (sym < 256)\n buf[bt++] = sym;\n else if (sym == 256) {\n lpos = pos, lm = null;\n break;\n } else {\n var add2 = sym - 254;\n if (sym > 264) {\n var i2 = sym - 257, b = fleb[i2];\n add2 = bits(dat, pos, (1 << b) - 1) + fl[i2];\n pos += b;\n }\n var d = dm[bits16(dat, pos) & dms], dsym = d >> 4;\n if (!d)\n err(3);\n pos += d & 15;\n var dt = fd[dsym];\n if (dsym > 3) {\n var b = fdeb[dsym];\n dt += bits16(dat, pos) & (1 << b) - 1, pos += b;\n }\n if (pos > tbts) {\n if (noSt)\n err(0);\n break;\n }\n if (resize)\n cbuf(bt + 131072);\n var end = bt + add2;\n if (bt < dt) {\n var shift = dl - dt, dend = Math.min(dt, end);\n if (shift + bt < 0)\n err(3);\n for (; bt < dend; ++bt)\n buf[bt] = dict[shift + bt];\n }\n for (; bt < end; ++bt)\n buf[bt] = buf[bt - dt];\n }\n }\n st.l = lm, st.p = lpos, st.b = bt, st.f = final;\n if (lm)\n final = 1, st.m = lbt, st.d = dm, st.n = dbt;\n } while (!final);\n return bt != buf.length && noBuf ? slc(buf, 0, bt) : buf.subarray(0, bt);\n };\n var et = /* @__PURE__ */ new u8(0);\n var gzs = function(d) {\n if (d[0] != 31 || d[1] != 139 || d[2] != 8)\n err(6, "invalid gzip data");\n var flg = d[3];\n var st = 10;\n if (flg & 4)\n st += (d[10] | d[11] << 8) + 2;\n for (var zs = (flg >> 3 & 1) + (flg >> 4 & 1); zs > 0; zs -= !d[st++])\n ;\n return st + (flg & 2);\n };\n var Inflate = /* @__PURE__ */ function() {\n function Inflate2(opts, cb) {\n if (typeof opts == "function")\n cb = opts, opts = {};\n this.ondata = cb;\n var dict = opts && opts.dictionary && opts.dictionary.subarray(-32768);\n this.s = { i: 0, b: dict ? dict.length : 0 };\n this.o = new u8(32768);\n this.p = new u8(0);\n if (dict)\n this.o.set(dict);\n }\n Inflate2.prototype.e = function(c) {\n if (!this.ondata)\n err(5);\n if (this.d)\n err(4);\n if (!this.p.length)\n this.p = c;\n else if (c.length) {\n var n = new u8(this.p.length + c.length);\n n.set(this.p), n.set(c, this.p.length), this.p = n;\n }\n };\n Inflate2.prototype.c = function(final) {\n this.s.i = +(this.d = final || false);\n var bts = this.s.b;\n var dt = inflt(this.p, this.s, this.o);\n this.ondata(slc(dt, bts, this.s.b), this.d);\n this.o = slc(dt, this.s.b - 32768), this.s.b = this.o.length;\n this.p = slc(this.p, this.s.p / 8 | 0), this.s.p &= 7;\n };\n Inflate2.prototype.push = function(chunk, final) {\n this.e(chunk), this.c(final);\n };\n return Inflate2;\n }();\n var Gunzip = /* @__PURE__ */ function() {\n function Gunzip2(opts, cb) {\n this.v = 1;\n this.r = 0;\n Inflate.call(this, opts, cb);\n }\n Gunzip2.prototype.push = function(chunk, final) {\n Inflate.prototype.e.call(this, chunk);\n this.r += chunk.length;\n if (this.v) {\n var p = this.p.subarray(this.v - 1);\n var s = p.length > 3 ? gzs(p) : 4;\n if (s > p.length) {\n if (!final)\n return;\n } else if (this.v > 1 && this.onmember) {\n this.onmember(this.r - p.length);\n }\n this.p = p.subarray(s), this.v = 0;\n }\n Inflate.prototype.c.call(this, final);\n if (this.s.f && !this.s.l && !final) {\n this.v = shft(this.s.p) + 9;\n this.s = { i: 0 };\n this.o = new u8(0);\n this.push(new u8(0), final);\n }\n };\n return Gunzip2;\n }();\n var td = typeof TextDecoder != "undefined" && /* @__PURE__ */ new TextDecoder();\n var tds = 0;\n try {\n td.decode(et, { stream: true });\n tds = 1;\n } catch (e) {\n }\n /**\n * @license\n * Copyright 2010-2024 Three.js Authors\n * SPDX-License-Identifier: MIT\n */\n const REVISION = "172";\n const FrontSide = 0;\n const BackSide = 1;\n const NormalBlending = 1;\n const AddEquation = 100;\n const SrcAlphaFactor = 204;\n const OneMinusSrcAlphaFactor = 205;\n const LessEqualDepth = 3;\n const MultiplyOperation = 0;\n const UVMapping = 300;\n const RepeatWrapping = 1e3;\n const ClampToEdgeWrapping = 1001;\n const MirroredRepeatWrapping = 1002;\n const NearestFilter = 1003;\n const LinearFilter = 1006;\n const LinearMipmapLinearFilter = 1008;\n const UnsignedByteType = 1009;\n const UnsignedIntType = 1014;\n const FloatType = 1015;\n const RGBAFormat = 1023;\n const RGIntegerFormat = 1031;\n const RGBAIntegerFormat = 1033;\n const NoColorSpace = "";\n const SRGBColorSpace = "srgb";\n const LinearSRGBColorSpace = "srgb-linear";\n const LinearTransfer = "linear";\n const SRGBTransfer = "srgb";\n const KeepStencilOp = 7680;\n const AlwaysStencilFunc = 519;\n const StaticDrawUsage = 35044;\n const GLSL3 = "300 es";\n const WebGLCoordinateSystem = 2e3;\n const WebGPUCoordinateSystem = 2001;\n class EventDispatcher {\n addEventListener(type, listener) {\n if (this._listeners === void 0) this._listeners = {};\n const listeners = this._listeners;\n if (listeners[type] === void 0) {\n listeners[type] = [];\n }\n if (listeners[type].indexOf(listener) === -1) {\n listeners[type].push(listener);\n }\n }\n hasEventListener(type, listener) {\n if (this._listeners === void 0) return false;\n const listeners = this._listeners;\n return listeners[type] !== void 0 && listeners[type].indexOf(listener) !== -1;\n }\n removeEventListener(type, listener) {\n if (this._listeners === void 0) return;\n const listeners = this._listeners;\n const listenerArray = listeners[type];\n if (listenerArray !== void 0) {\n const index = listenerArray.indexOf(listener);\n if (index !== -1) {\n listenerArray.splice(index, 1);\n }\n }\n }\n dispatchEvent(event) {\n if (this._listeners === void 0) return;\n const listeners = this._listeners;\n const listenerArray = listeners[event.type];\n if (listenerArray !== void 0) {\n event.target = this;\n const array = listenerArray.slice(0);\n for (let i2 = 0, l = array.length; i2 < l; i2++) {\n array[i2].call(this, event);\n }\n event.target = null;\n }\n }\n }\n const _lut = ["00", "01", "02", "03", "04", "05", "06", "07", "08", "09", "0a", "0b", "0c", "0d", "0e", "0f", "10", "11", "12", "13", "14", "15", "16", "17", "18", "19", "1a", "1b", "1c", "1d", "1e", "1f", "20", "21", "22", "23", "24", "25", "26", "27", "28", "29", "2a", "2b", "2c", "2d", "2e", "2f", "30", "31", "32", "33", "34", "35", "36", "37", "38", "39", "3a", "3b", "3c", "3d", "3e", "3f", "40", "41", "42", "43", "44", "45", "46", "47", "48", "49", "4a", "4b", "4c", "4d", "4e", "4f", "50", "51", "52", "53", "54", "55", "56", "57", "58", "59", "5a", "5b", "5c", "5d", "5e", "5f", "60", "61", "62", "63", "64", "65", "66", "67", "68", "69", "6a", "6b", "6c", "6d", "6e", "6f", "70", "71", "72", "73", "74", "75", "76", "77", "78", "79", "7a", "7b", "7c", "7d", "7e", "7f", "80", "81", "82", "83", "84", "85", "86", "87", "88", "89", "8a", "8b", "8c", "8d", "8e", "8f", "90", "91", "92", "93", "94", "95", "96", "97", "98", "99", "9a", "9b", "9c", "9d", "9e", "9f", "a0", "a1", "a2", "a3", "a4", "a5", "a6", "a7", "a8", "a9", "aa", "ab", "ac", "ad", "ae", "af", "b0", "b1", "b2", "b3", "b4", "b5", "b6", "b7", "b8", "b9", "ba", "bb", "bc", "bd", "be", "bf", "c0", "c1", "c2", "c3", "c4", "c5", "c6", "c7", "c8", "c9", "ca", "cb", "cc", "cd", "ce", "cf", "d0", "d1", "d2", "d3", "d4", "d5", "d6", "d7", "d8", "d9", "da", "db", "dc", "dd", "de", "df", "e0", "e1", "e2", "e3", "e4", "e5", "e6", "e7", "e8", "e9", "ea", "eb", "ec", "ed", "ee", "ef", "f0", "f1", "f2", "f3", "f4", "f5", "f6", "f7", "f8", "f9", "fa", "fb", "fc", "fd", "fe", "ff"];\n function generateUUID() {\n const d0 = Math.random() * 4294967295 | 0;\n const d1 = Math.random() * 4294967295 | 0;\n const d2 = Math.random() * 4294967295 | 0;\n const d3 = Math.random() * 4294967295 | 0;\n const uuid = _lut[d0 & 255] + _lut[d0 >> 8 & 255] + _lut[d0 >> 16 & 255] + _lut[d0 >> 24 & 255] + "-" + _lut[d1 & 255] + _lut[d1 >> 8 & 255] + "-" + _lut[d1 >> 16 & 15 | 64] + _lut[d1 >> 24 & 255] + "-" + _lut[d2 & 63 | 128] + _lut[d2 >> 8 & 255] + "-" + _lut[d2 >> 16 & 255] + _lut[d2 >> 24 & 255] + _lut[d3 & 255] + _lut[d3 >> 8 & 255] + _lut[d3 >> 16 & 255] + _lut[d3 >> 24 & 255];\n return uuid.toLowerCase();\n }\n function clamp(value, min, max2) {\n return Math.max(min, Math.min(max2, value));\n }\n function euclideanModulo(n, m) {\n return (n % m + m) % m;\n }\n function lerp(x2, y, t) {\n return (1 - t) * x2 + t * y;\n }\n function denormalize(value, array) {\n switch (array.constructor) {\n case Float32Array:\n return value;\n case Uint32Array:\n return value / 4294967295;\n case Uint16Array:\n return value / 65535;\n case Uint8Array:\n return value / 255;\n case Int32Array:\n return Math.max(value / 2147483647, -1);\n case Int16Array:\n return Math.max(value / 32767, -1);\n case Int8Array:\n return Math.max(value / 127, -1);\n default:\n throw new Error("Invalid component type.");\n }\n }\n function normalize$1(value, array) {\n switch (array.constructor) {\n case Float32Array:\n return value;\n case Uint32Array:\n return Math.round(value * 4294967295);\n case Uint16Array:\n return Math.round(value * 65535);\n case Uint8Array:\n return Math.round(value * 255);\n case Int32Array:\n return Math.round(value * 2147483647);\n case Int16Array:\n return Math.round(value * 32767);\n case Int8Array:\n return Math.round(value * 127);\n default:\n throw new Error("Invalid component type.");\n }\n }\n class Vector2 {\n constructor(x2 = 0, y = 0) {\n Vector2.prototype.isVector2 = true;\n this.x = x2;\n this.y = y;\n }\n get width() {\n return this.x;\n }\n set width(value) {\n this.x = value;\n }\n get height() {\n return this.y;\n }\n set height(value) {\n this.y = value;\n }\n set(x2, y) {\n this.x = x2;\n this.y = y;\n return this;\n }\n setScalar(scalar) {\n this.x = scalar;\n this.y = scalar;\n return this;\n }\n setX(x2) {\n this.x = x2;\n return this;\n }\n setY(y) {\n this.y = y;\n return this;\n }\n setComponent(index, value) {\n switch (index) {\n case 0:\n this.x = value;\n break;\n case 1:\n this.y = value;\n break;\n default:\n throw new Error("index is out of range: " + index);\n }\n return this;\n }\n getComponent(index) {\n switch (index) {\n case 0:\n return this.x;\n case 1:\n return this.y;\n default:\n throw new Error("index is out of range: " + index);\n }\n }\n clone() {\n return new this.constructor(this.x, this.y);\n }\n copy(v) {\n this.x = v.x;\n this.y = v.y;\n return this;\n }\n add(v) {\n this.x += v.x;\n this.y += v.y;\n return this;\n }\n addScalar(s) {\n this.x += s;\n this.y += s;\n return this;\n }\n addVectors(a, b) {\n this.x = a.x + b.x;\n this.y = a.y + b.y;\n return this;\n }\n addScaledVector(v, s) {\n this.x += v.x * s;\n this.y += v.y * s;\n return this;\n }\n sub(v) {\n this.x -= v.x;\n this.y -= v.y;\n return this;\n }\n subScalar(s) {\n this.x -= s;\n this.y -= s;\n return this;\n }\n subVectors(a, b) {\n this.x = a.x - b.x;\n this.y = a.y - b.y;\n return this;\n }\n multiply(v) {\n this.x *= v.x;\n this.y *= v.y;\n return this;\n }\n multiplyScalar(scalar) {\n this.x *= scalar;\n this.y *= scalar;\n return this;\n }\n divide(v) {\n this.x /= v.x;\n this.y /= v.y;\n return this;\n }\n divideScalar(scalar) {\n return this.multiplyScalar(1 / scalar);\n }\n applyMatrix3(m) {\n const x2 = this.x, y = this.y;\n const e = m.elements;\n this.x = e[0] * x2 + e[3] * y + e[6];\n this.y = e[1] * x2 + e[4] * y + e[7];\n return this;\n }\n min(v) {\n this.x = Math.min(this.x, v.x);\n this.y = Math.min(this.y, v.y);\n return this;\n }\n max(v) {\n this.x = Math.max(this.x, v.x);\n this.y = Math.max(this.y, v.y);\n return this;\n }\n clamp(min, max2) {\n this.x = clamp(this.x, min.x, max2.x);\n this.y = clamp(this.y, min.y, max2.y);\n return this;\n }\n clampScalar(minVal, maxVal) {\n this.x = clamp(this.x, minVal, maxVal);\n this.y = clamp(this.y, minVal, maxVal);\n return this;\n }\n clampLength(min, max2) {\n const length = this.length();\n return this.divideScalar(length || 1).multiplyScalar(clamp(length, min, max2));\n }\n floor() {\n this.x = Math.floor(this.x);\n this.y = Math.floor(this.y);\n return this;\n }\n ceil() {\n this.x = Math.ceil(this.x);\n this.y = Math.ceil(this.y);\n return this;\n }\n round() {\n this.x = Math.round(this.x);\n this.y = Math.round(this.y);\n return this;\n }\n roundToZero() {\n this.x = Math.trunc(this.x);\n this.y = Math.trunc(this.y);\n return this;\n }\n negate() {\n this.x = -this.x;\n this.y = -this.y;\n return this;\n }\n dot(v) {\n return this.x * v.x + this.y * v.y;\n }\n cross(v) {\n return this.x * v.y - this.y * v.x;\n }\n lengthSq() {\n return this.x * this.x + this.y * this.y;\n }\n length() {\n return Math.sqrt(this.x * this.x + this.y * this.y);\n }\n manhattanLength() {\n return Math.abs(this.x) + Math.abs(this.y);\n }\n normalize() {\n return this.divideScalar(this.length() || 1);\n }\n angle() {\n const angle = Math.atan2(-this.y, -this.x) + Math.PI;\n return angle;\n }\n angleTo(v) {\n const denominator = Math.sqrt(this.lengthSq() * v.lengthSq());\n if (denominator === 0) return Math.PI / 2;\n const theta = this.dot(v) / denominator;\n return Math.acos(clamp(theta, -1, 1));\n }\n distanceTo(v) {\n return Math.sqrt(this.distanceToSquared(v));\n }\n distanceToSquared(v) {\n const dx = this.x - v.x, dy = this.y - v.y;\n return dx * dx + dy * dy;\n }\n manhattanDistanceTo(v) {\n return Math.abs(this.x - v.x) + Math.abs(this.y - v.y);\n }\n setLength(length) {\n return this.normalize().multiplyScalar(length);\n }\n lerp(v, alpha) {\n this.x += (v.x - this.x) * alpha;\n this.y += (v.y - this.y) * alpha;\n return this;\n }\n lerpVectors(v1, v2, alpha) {\n this.x = v1.x + (v2.x - v1.x) * alpha;\n this.y = v1.y + (v2.y - v1.y) * alpha;\n return this;\n }\n equals(v) {\n return v.x === this.x && v.y === this.y;\n }\n fromArray(array, offset = 0) {\n this.x = array[offset];\n this.y = array[offset + 1];\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this.x;\n array[offset + 1] = this.y;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this.x = attribute.getX(index);\n this.y = attribute.getY(index);\n return this;\n }\n rotateAround(center, angle) {\n const c = Math.cos(angle), s = Math.sin(angle);\n const x2 = this.x - center.x;\n const y = this.y - center.y;\n this.x = x2 * c - y * s + center.x;\n this.y = x2 * s + y * c + center.y;\n return this;\n }\n random() {\n this.x = Math.random();\n this.y = Math.random();\n return this;\n }\n *[Symbol.iterator]() {\n yield this.x;\n yield this.y;\n }\n }\n class Matrix3 {\n constructor(n11, n12, n13, n21, n22, n23, n31, n32, n33) {\n Matrix3.prototype.isMatrix3 = true;\n this.elements = [\n 1,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 1\n ];\n if (n11 !== void 0) {\n this.set(n11, n12, n13, n21, n22, n23, n31, n32, n33);\n }\n }\n set(n11, n12, n13, n21, n22, n23, n31, n32, n33) {\n const te = this.elements;\n te[0] = n11;\n te[1] = n21;\n te[2] = n31;\n te[3] = n12;\n te[4] = n22;\n te[5] = n32;\n te[6] = n13;\n te[7] = n23;\n te[8] = n33;\n return this;\n }\n identity() {\n this.set(\n 1,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n copy(m) {\n const te = this.elements;\n const me = m.elements;\n te[0] = me[0];\n te[1] = me[1];\n te[2] = me[2];\n te[3] = me[3];\n te[4] = me[4];\n te[5] = me[5];\n te[6] = me[6];\n te[7] = me[7];\n te[8] = me[8];\n return this;\n }\n extractBasis(xAxis, yAxis, zAxis) {\n xAxis.setFromMatrix3Column(this, 0);\n yAxis.setFromMatrix3Column(this, 1);\n zAxis.setFromMatrix3Column(this, 2);\n return this;\n }\n setFromMatrix4(m) {\n const me = m.elements;\n this.set(\n me[0],\n me[4],\n me[8],\n me[1],\n me[5],\n me[9],\n me[2],\n me[6],\n me[10]\n );\n return this;\n }\n multiply(m) {\n return this.multiplyMatrices(this, m);\n }\n premultiply(m) {\n return this.multiplyMatrices(m, this);\n }\n multiplyMatrices(a, b) {\n const ae = a.elements;\n const be = b.elements;\n const te = this.elements;\n const a11 = ae[0], a12 = ae[3], a13 = ae[6];\n const a21 = ae[1], a22 = ae[4], a23 = ae[7];\n const a31 = ae[2], a32 = ae[5], a33 = ae[8];\n const b11 = be[0], b12 = be[3], b13 = be[6];\n const b21 = be[1], b22 = be[4], b23 = be[7];\n const b31 = be[2], b32 = be[5], b33 = be[8];\n te[0] = a11 * b11 + a12 * b21 + a13 * b31;\n te[3] = a11 * b12 + a12 * b22 + a13 * b32;\n te[6] = a11 * b13 + a12 * b23 + a13 * b33;\n te[1] = a21 * b11 + a22 * b21 + a23 * b31;\n te[4] = a21 * b12 + a22 * b22 + a23 * b32;\n te[7] = a21 * b13 + a22 * b23 + a23 * b33;\n te[2] = a31 * b11 + a32 * b21 + a33 * b31;\n te[5] = a31 * b12 + a32 * b22 + a33 * b32;\n te[8] = a31 * b13 + a32 * b23 + a33 * b33;\n return this;\n }\n multiplyScalar(s) {\n const te = this.elements;\n te[0] *= s;\n te[3] *= s;\n te[6] *= s;\n te[1] *= s;\n te[4] *= s;\n te[7] *= s;\n te[2] *= s;\n te[5] *= s;\n te[8] *= s;\n return this;\n }\n determinant() {\n const te = this.elements;\n const a = te[0], b = te[1], c = te[2], d = te[3], e = te[4], f = te[5], g = te[6], h = te[7], i2 = te[8];\n return a * e * i2 - a * f * h - b * d * i2 + b * f * g + c * d * h - c * e * g;\n }\n invert() {\n const te = this.elements, n11 = te[0], n21 = te[1], n31 = te[2], n12 = te[3], n22 = te[4], n32 = te[5], n13 = te[6], n23 = te[7], n33 = te[8], t11 = n33 * n22 - n32 * n23, t12 = n32 * n13 - n33 * n12, t13 = n23 * n12 - n22 * n13, det = n11 * t11 + n21 * t12 + n31 * t13;\n if (det === 0) return this.set(0, 0, 0, 0, 0, 0, 0, 0, 0);\n const detInv = 1 / det;\n te[0] = t11 * detInv;\n te[1] = (n31 * n23 - n33 * n21) * detInv;\n te[2] = (n32 * n21 - n31 * n22) * detInv;\n te[3] = t12 * detInv;\n te[4] = (n33 * n11 - n31 * n13) * detInv;\n te[5] = (n31 * n12 - n32 * n11) * detInv;\n te[6] = t13 * detInv;\n te[7] = (n21 * n13 - n23 * n11) * detInv;\n te[8] = (n22 * n11 - n21 * n12) * detInv;\n return this;\n }\n transpose() {\n let tmp;\n const m = this.elements;\n tmp = m[1];\n m[1] = m[3];\n m[3] = tmp;\n tmp = m[2];\n m[2] = m[6];\n m[6] = tmp;\n tmp = m[5];\n m[5] = m[7];\n m[7] = tmp;\n return this;\n }\n getNormalMatrix(matrix4) {\n return this.setFromMatrix4(matrix4).invert().transpose();\n }\n transposeIntoArray(r) {\n const m = this.elements;\n r[0] = m[0];\n r[1] = m[3];\n r[2] = m[6];\n r[3] = m[1];\n r[4] = m[4];\n r[5] = m[7];\n r[6] = m[2];\n r[7] = m[5];\n r[8] = m[8];\n return this;\n }\n setUvTransform(tx, ty, sx, sy, rotation, cx, cy) {\n const c = Math.cos(rotation);\n const s = Math.sin(rotation);\n this.set(\n sx * c,\n sx * s,\n -sx * (c * cx + s * cy) + cx + tx,\n -sy * s,\n sy * c,\n -sy * (-s * cx + c * cy) + cy + ty,\n 0,\n 0,\n 1\n );\n return this;\n }\n //\n scale(sx, sy) {\n this.premultiply(_m3.makeScale(sx, sy));\n return this;\n }\n rotate(theta) {\n this.premultiply(_m3.makeRotation(-theta));\n return this;\n }\n translate(tx, ty) {\n this.premultiply(_m3.makeTranslation(tx, ty));\n return this;\n }\n // for 2D Transforms\n makeTranslation(x2, y) {\n if (x2.isVector2) {\n this.set(\n 1,\n 0,\n x2.x,\n 0,\n 1,\n x2.y,\n 0,\n 0,\n 1\n );\n } else {\n this.set(\n 1,\n 0,\n x2,\n 0,\n 1,\n y,\n 0,\n 0,\n 1\n );\n }\n return this;\n }\n makeRotation(theta) {\n const c = Math.cos(theta);\n const s = Math.sin(theta);\n this.set(\n c,\n -s,\n 0,\n s,\n c,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeScale(x2, y) {\n this.set(\n x2,\n 0,\n 0,\n 0,\n y,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n //\n equals(matrix) {\n const te = this.elements;\n const me = matrix.elements;\n for (let i2 = 0; i2 < 9; i2++) {\n if (te[i2] !== me[i2]) return false;\n }\n return true;\n }\n fromArray(array, offset = 0) {\n for (let i2 = 0; i2 < 9; i2++) {\n this.elements[i2] = array[i2 + offset];\n }\n return this;\n }\n toArray(array = [], offset = 0) {\n const te = this.elements;\n array[offset] = te[0];\n array[offset + 1] = te[1];\n array[offset + 2] = te[2];\n array[offset + 3] = te[3];\n array[offset + 4] = te[4];\n array[offset + 5] = te[5];\n array[offset + 6] = te[6];\n array[offset + 7] = te[7];\n array[offset + 8] = te[8];\n return array;\n }\n clone() {\n return new this.constructor().fromArray(this.elements);\n }\n }\n const _m3 = /* @__PURE__ */ new Matrix3();\n function arrayNeedsUint32(array) {\n for (let i2 = array.length - 1; i2 >= 0; --i2) {\n if (array[i2] >= 65535) return true;\n }\n return false;\n }\n function createElementNS(name) {\n return document.createElementNS("http://www.w3.org/1999/xhtml", name);\n }\n const LINEAR_REC709_TO_XYZ = /* @__PURE__ */ new Matrix3().set(\n 0.4123908,\n 0.3575843,\n 0.1804808,\n 0.212639,\n 0.7151687,\n 0.0721923,\n 0.0193308,\n 0.1191948,\n 0.9505322\n );\n const XYZ_TO_LINEAR_REC709 = /* @__PURE__ */ new Matrix3().set(\n 3.2409699,\n -1.5373832,\n -0.4986108,\n -0.9692436,\n 1.8759675,\n 0.0415551,\n 0.0556301,\n -0.203977,\n 1.0569715\n );\n function createColorManagement() {\n const ColorManagement2 = {\n enabled: true,\n workingColorSpace: LinearSRGBColorSpace,\n /**\n * Implementations of supported color spaces.\n *\n * Required:\n * - primaries: chromaticity coordinates [ rx ry gx gy bx by ]\n * - whitePoint: reference white [ x y ]\n * - transfer: transfer function (pre-defined)\n * - toXYZ: Matrix3 RGB to XYZ transform\n * - fromXYZ: Matrix3 XYZ to RGB transform\n * - luminanceCoefficients: RGB luminance coefficients\n *\n * Optional:\n * - outputColorSpaceConfig: { drawingBufferColorSpace: ColorSpace }\n * - workingColorSpaceConfig: { unpackColorSpace: ColorSpace }\n *\n * Reference:\n * - https://www.russellcottrell.com/photo/matrixCalculator.htm\n */\n spaces: {},\n convert: function(color, sourceColorSpace, targetColorSpace) {\n if (this.enabled === false || sourceColorSpace === targetColorSpace || !sourceColorSpace || !targetColorSpace) {\n return color;\n }\n if (this.spaces[sourceColorSpace].transfer === SRGBTransfer) {\n color.r = SRGBToLinear(color.r);\n color.g = SRGBToLinear(color.g);\n color.b = SRGBToLinear(color.b);\n }\n if (this.spaces[sourceColorSpace].primaries !== this.spaces[targetColorSpace].primaries) {\n color.applyMatrix3(this.spaces[sourceColorSpace].toXYZ);\n color.applyMatrix3(this.spaces[targetColorSpace].fromXYZ);\n }\n if (this.spaces[targetColorSpace].transfer === SRGBTransfer) {\n color.r = LinearToSRGB(color.r);\n color.g = LinearToSRGB(color.g);\n color.b = LinearToSRGB(color.b);\n }\n return color;\n },\n fromWorkingColorSpace: function(color, targetColorSpace) {\n return this.convert(color, this.workingColorSpace, targetColorSpace);\n },\n toWorkingColorSpace: function(color, sourceColorSpace) {\n return this.convert(color, sourceColorSpace, this.workingColorSpace);\n },\n getPrimaries: function(colorSpace) {\n return this.spaces[colorSpace].primaries;\n },\n getTransfer: function(colorSpace) {\n if (colorSpace === NoColorSpace) return LinearTransfer;\n return this.spaces[colorSpace].transfer;\n },\n getLuminanceCoefficients: function(target, colorSpace = this.workingColorSpace) {\n return target.fromArray(this.spaces[colorSpace].luminanceCoefficients);\n },\n define: function(colorSpaces) {\n Object.assign(this.spaces, colorSpaces);\n },\n // Internal APIs\n _getMatrix: function(targetMatrix, sourceColorSpace, targetColorSpace) {\n return targetMatrix.copy(this.spaces[sourceColorSpace].toXYZ).multiply(this.spaces[targetColorSpace].fromXYZ);\n },\n _getDrawingBufferColorSpace: function(colorSpace) {\n return this.spaces[colorSpace].outputColorSpaceConfig.drawingBufferColorSpace;\n },\n _getUnpackColorSpace: function(colorSpace = this.workingColorSpace) {\n return this.spaces[colorSpace].workingColorSpaceConfig.unpackColorSpace;\n }\n };\n const REC709_PRIMARIES = [0.64, 0.33, 0.3, 0.6, 0.15, 0.06];\n const REC709_LUMINANCE_COEFFICIENTS = [0.2126, 0.7152, 0.0722];\n const D65 = [0.3127, 0.329];\n ColorManagement2.define({\n [LinearSRGBColorSpace]: {\n primaries: REC709_PRIMARIES,\n whitePoint: D65,\n transfer: LinearTransfer,\n toXYZ: LINEAR_REC709_TO_XYZ,\n fromXYZ: XYZ_TO_LINEAR_REC709,\n luminanceCoefficients: REC709_LUMINANCE_COEFFICIENTS,\n workingColorSpaceConfig: { unpackColorSpace: SRGBColorSpace },\n outputColorSpaceConfig: { drawingBufferColorSpace: SRGBColorSpace }\n },\n [SRGBColorSpace]: {\n primaries: REC709_PRIMARIES,\n whitePoint: D65,\n transfer: SRGBTransfer,\n toXYZ: LINEAR_REC709_TO_XYZ,\n fromXYZ: XYZ_TO_LINEAR_REC709,\n luminanceCoefficients: REC709_LUMINANCE_COEFFICIENTS,\n outputColorSpaceConfig: { drawingBufferColorSpace: SRGBColorSpace }\n }\n });\n return ColorManagement2;\n }\n const ColorManagement = /* @__PURE__ */ createColorManagement();\n function SRGBToLinear(c) {\n return c < 0.04045 ? c * 0.0773993808 : Math.pow(c * 0.9478672986 + 0.0521327014, 2.4);\n }\n function LinearToSRGB(c) {\n return c < 31308e-7 ? c * 12.92 : 1.055 * Math.pow(c, 0.41666) - 0.055;\n }\n let _canvas;\n class ImageUtils {\n static getDataURL(image) {\n if (/^data:/i.test(image.src)) {\n return image.src;\n }\n if (typeof HTMLCanvasElement === "undefined") {\n return image.src;\n }\n let canvas;\n if (image instanceof HTMLCanvasElement) {\n canvas = image;\n } else {\n if (_canvas === void 0) _canvas = createElementNS("canvas");\n _canvas.width = image.width;\n _canvas.height = image.height;\n const context = _canvas.getContext("2d");\n if (image instanceof ImageData) {\n context.putImageData(image, 0, 0);\n } else {\n context.drawImage(image, 0, 0, image.width, image.height);\n }\n canvas = _canvas;\n }\n if (canvas.width > 2048 || canvas.height > 2048) {\n console.warn("THREE.ImageUtils.getDataURL: Image converted to jpg for performance reasons", image);\n return canvas.toDataURL("image/jpeg", 0.6);\n } else {\n return canvas.toDataURL("image/png");\n }\n }\n static sRGBToLinear(image) {\n if (typeof HTMLImageElement !== "undefined" && image instanceof HTMLImageElement || typeof HTMLCanvasElement !== "undefined" && image instanceof HTMLCanvasElement || typeof ImageBitmap !== "undefined" && image instanceof ImageBitmap) {\n const canvas = createElementNS("canvas");\n canvas.width = image.width;\n canvas.height = image.height;\n const context = canvas.getContext("2d");\n context.drawImage(image, 0, 0, image.width, image.height);\n const imageData = context.getImageData(0, 0, image.width, image.height);\n const data = imageData.data;\n for (let i2 = 0; i2 < data.length; i2++) {\n data[i2] = SRGBToLinear(data[i2] / 255) * 255;\n }\n context.putImageData(imageData, 0, 0);\n return canvas;\n } else if (image.data) {\n const data = image.data.slice(0);\n for (let i2 = 0; i2 < data.length; i2++) {\n if (data instanceof Uint8Array || data instanceof Uint8ClampedArray) {\n data[i2] = Math.floor(SRGBToLinear(data[i2] / 255) * 255);\n } else {\n data[i2] = SRGBToLinear(data[i2]);\n }\n }\n return {\n data,\n width: image.width,\n height: image.height\n };\n } else {\n console.warn("THREE.ImageUtils.sRGBToLinear(): Unsupported image type. No color space conversion applied.");\n return image;\n }\n }\n }\n let _sourceId = 0;\n class Source {\n constructor(data = null) {\n this.isSource = true;\n Object.defineProperty(this, "id", { value: _sourceId++ });\n this.uuid = generateUUID();\n this.data = data;\n this.dataReady = true;\n this.version = 0;\n }\n set needsUpdate(value) {\n if (value === true) this.version++;\n }\n toJSON(meta) {\n const isRootObject = meta === void 0 || typeof meta === "string";\n if (!isRootObject && meta.images[this.uuid] !== void 0) {\n return meta.images[this.uuid];\n }\n const output = {\n uuid: this.uuid,\n url: ""\n };\n const data = this.data;\n if (data !== null) {\n let url;\n if (Array.isArray(data)) {\n url = [];\n for (let i2 = 0, l = data.length; i2 < l; i2++) {\n if (data[i2].isDataTexture) {\n url.push(serializeImage(data[i2].image));\n } else {\n url.push(serializeImage(data[i2]));\n }\n }\n } else {\n url = serializeImage(data);\n }\n output.url = url;\n }\n if (!isRootObject) {\n meta.images[this.uuid] = output;\n }\n return output;\n }\n }\n function serializeImage(image) {\n if (typeof HTMLImageElement !== "undefined" && image instanceof HTMLImageElement || typeof HTMLCanvasElement !== "undefined" && image instanceof HTMLCanvasElement || typeof ImageBitmap !== "undefined" && image instanceof ImageBitmap) {\n return ImageUtils.getDataURL(image);\n } else {\n if (image.data) {\n return {\n data: Array.from(image.data),\n width: image.width,\n height: image.height,\n type: image.data.constructor.name\n };\n } else {\n console.warn("THREE.Texture: Unable to serialize Texture.");\n return {};\n }\n }\n }\n let _textureId = 0;\n class Texture extends EventDispatcher {\n constructor(image = Texture.DEFAULT_IMAGE, mapping = Texture.DEFAULT_MAPPING, wrapS = ClampToEdgeWrapping, wrapT = ClampToEdgeWrapping, magFilter = LinearFilter, minFilter = LinearMipmapLinearFilter, format = RGBAFormat, type = UnsignedByteType, anisotropy = Texture.DEFAULT_ANISOTROPY, colorSpace = NoColorSpace) {\n super();\n this.isTexture = true;\n Object.defineProperty(this, "id", { value: _textureId++ });\n this.uuid = generateUUID();\n this.name = "";\n this.source = new Source(image);\n this.mipmaps = [];\n this.mapping = mapping;\n this.channel = 0;\n this.wrapS = wrapS;\n this.wrapT = wrapT;\n this.magFilter = magFilter;\n this.minFilter = minFilter;\n this.anisotropy = anisotropy;\n this.format = format;\n this.internalFormat = null;\n this.type = type;\n this.offset = new Vector2(0, 0);\n this.repeat = new Vector2(1, 1);\n this.center = new Vector2(0, 0);\n this.rotation = 0;\n this.matrixAutoUpdate = true;\n this.matrix = new Matrix3();\n this.generateMipmaps = true;\n this.premultiplyAlpha = false;\n this.flipY = true;\n this.unpackAlignment = 4;\n this.colorSpace = colorSpace;\n this.userData = {};\n this.version = 0;\n this.onUpdate = null;\n this.renderTarget = null;\n this.isRenderTargetTexture = false;\n this.pmremVersion = 0;\n }\n get image() {\n return this.source.data;\n }\n set image(value = null) {\n this.source.data = value;\n }\n updateMatrix() {\n this.matrix.setUvTransform(this.offset.x, this.offset.y, this.repeat.x, this.repeat.y, this.rotation, this.center.x, this.center.y);\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(source) {\n this.name = source.name;\n this.source = source.source;\n this.mipmaps = source.mipmaps.slice(0);\n this.mapping = source.mapping;\n this.channel = source.channel;\n this.wrapS = source.wrapS;\n this.wrapT = source.wrapT;\n this.magFilter = source.magFilter;\n this.minFilter = source.minFilter;\n this.anisotropy = source.anisotropy;\n this.format = source.format;\n this.internalFormat = source.internalFormat;\n this.type = source.type;\n this.offset.copy(source.offset);\n this.repeat.copy(source.repeat);\n this.center.copy(source.center);\n this.rotation = source.rotation;\n this.matrixAutoUpdate = source.matrixAutoUpdate;\n this.matrix.copy(source.matrix);\n this.generateMipmaps = source.generateMipmaps;\n this.premultiplyAlpha = source.premultiplyAlpha;\n this.flipY = source.flipY;\n this.unpackAlignment = source.unpackAlignment;\n this.colorSpace = source.colorSpace;\n this.renderTarget = source.renderTarget;\n this.isRenderTargetTexture = source.isRenderTargetTexture;\n this.userData = JSON.parse(JSON.stringify(source.userData));\n this.needsUpdate = true;\n return this;\n }\n toJSON(meta) {\n const isRootObject = meta === void 0 || typeof meta === "string";\n if (!isRootObject && meta.textures[this.uuid] !== void 0) {\n return meta.textures[this.uuid];\n }\n const output = {\n metadata: {\n version: 4.6,\n type: "Texture",\n generator: "Texture.toJSON"\n },\n uuid: this.uuid,\n name: this.name,\n image: this.source.toJSON(meta).uuid,\n mapping: this.mapping,\n channel: this.channel,\n repeat: [this.repeat.x, this.repeat.y],\n offset: [this.offset.x, this.offset.y],\n center: [this.center.x, this.center.y],\n rotation: this.rotation,\n wrap: [this.wrapS, this.wrapT],\n format: this.format,\n internalFormat: this.internalFormat,\n type: this.type,\n colorSpace: this.colorSpace,\n minFilter: this.minFilter,\n magFilter: this.magFilter,\n anisotropy: this.anisotropy,\n flipY: this.flipY,\n generateMipmaps: this.generateMipmaps,\n premultiplyAlpha: this.premultiplyAlpha,\n unpackAlignment: this.unpackAlignment\n };\n if (Object.keys(this.userData).length > 0) output.userData = this.userData;\n if (!isRootObject) {\n meta.textures[this.uuid] = output;\n }\n return output;\n }\n dispose() {\n this.dispatchEvent({ type: "dispose" });\n }\n transformUv(uv) {\n if (this.mapping !== UVMapping) return uv;\n uv.applyMatrix3(this.matrix);\n if (uv.x < 0 || uv.x > 1) {\n switch (this.wrapS) {\n case RepeatWrapping:\n uv.x = uv.x - Math.floor(uv.x);\n break;\n case ClampToEdgeWrapping:\n uv.x = uv.x < 0 ? 0 : 1;\n break;\n case MirroredRepeatWrapping:\n if (Math.abs(Math.floor(uv.x) % 2) === 1) {\n uv.x = Math.ceil(uv.x) - uv.x;\n } else {\n uv.x = uv.x - Math.floor(uv.x);\n }\n break;\n }\n }\n if (uv.y < 0 || uv.y > 1) {\n switch (this.wrapT) {\n case RepeatWrapping:\n uv.y = uv.y - Math.floor(uv.y);\n break;\n case ClampToEdgeWrapping:\n uv.y = uv.y < 0 ? 0 : 1;\n break;\n case MirroredRepeatWrapping:\n if (Math.abs(Math.floor(uv.y) % 2) === 1) {\n uv.y = Math.ceil(uv.y) - uv.y;\n } else {\n uv.y = uv.y - Math.floor(uv.y);\n }\n break;\n }\n }\n if (this.flipY) {\n uv.y = 1 - uv.y;\n }\n return uv;\n }\n set needsUpdate(value) {\n if (value === true) {\n this.version++;\n this.source.needsUpdate = true;\n }\n }\n set needsPMREMUpdate(value) {\n if (value === true) {\n this.pmremVersion++;\n }\n }\n }\n Texture.DEFAULT_IMAGE = null;\n Texture.DEFAULT_MAPPING = UVMapping;\n Texture.DEFAULT_ANISOTROPY = 1;\n class Vector4 {\n constructor(x2 = 0, y = 0, z = 0, w = 1) {\n Vector4.prototype.isVector4 = true;\n this.x = x2;\n this.y = y;\n this.z = z;\n this.w = w;\n }\n get width() {\n return this.z;\n }\n set width(value) {\n this.z = value;\n }\n get height() {\n return this.w;\n }\n set height(value) {\n this.w = value;\n }\n set(x2, y, z, w) {\n this.x = x2;\n this.y = y;\n this.z = z;\n this.w = w;\n return this;\n }\n setScalar(scalar) {\n this.x = scalar;\n this.y = scalar;\n this.z = scalar;\n this.w = scalar;\n return this;\n }\n setX(x2) {\n this.x = x2;\n return this;\n }\n setY(y) {\n this.y = y;\n return this;\n }\n setZ(z) {\n this.z = z;\n return this;\n }\n setW(w) {\n this.w = w;\n return this;\n }\n setComponent(index, value) {\n switch (index) {\n case 0:\n this.x = value;\n break;\n case 1:\n this.y = value;\n break;\n case 2:\n this.z = value;\n break;\n case 3:\n this.w = value;\n break;\n default:\n throw new Error("index is out of range: " + index);\n }\n return this;\n }\n getComponent(index) {\n switch (index) {\n case 0:\n return this.x;\n case 1:\n return this.y;\n case 2:\n return this.z;\n case 3:\n return this.w;\n default:\n throw new Error("index is out of range: " + index);\n }\n }\n clone() {\n return new this.constructor(this.x, this.y, this.z, this.w);\n }\n copy(v) {\n this.x = v.x;\n this.y = v.y;\n this.z = v.z;\n this.w = v.w !== void 0 ? v.w : 1;\n return this;\n }\n add(v) {\n this.x += v.x;\n this.y += v.y;\n this.z += v.z;\n this.w += v.w;\n return this;\n }\n addScalar(s) {\n this.x += s;\n this.y += s;\n this.z += s;\n this.w += s;\n return this;\n }\n addVectors(a, b) {\n this.x = a.x + b.x;\n this.y = a.y + b.y;\n this.z = a.z + b.z;\n this.w = a.w + b.w;\n return this;\n }\n addScaledVector(v, s) {\n this.x += v.x * s;\n this.y += v.y * s;\n this.z += v.z * s;\n this.w += v.w * s;\n return this;\n }\n sub(v) {\n this.x -= v.x;\n this.y -= v.y;\n this.z -= v.z;\n this.w -= v.w;\n return this;\n }\n subScalar(s) {\n this.x -= s;\n this.y -= s;\n this.z -= s;\n this.w -= s;\n return this;\n }\n subVectors(a, b) {\n this.x = a.x - b.x;\n this.y = a.y - b.y;\n this.z = a.z - b.z;\n this.w = a.w - b.w;\n return this;\n }\n multiply(v) {\n this.x *= v.x;\n this.y *= v.y;\n this.z *= v.z;\n this.w *= v.w;\n return this;\n }\n multiplyScalar(scalar) {\n this.x *= scalar;\n this.y *= scalar;\n this.z *= scalar;\n this.w *= scalar;\n return this;\n }\n applyMatrix4(m) {\n const x2 = this.x, y = this.y, z = this.z, w = this.w;\n const e = m.elements;\n this.x = e[0] * x2 + e[4] * y + e[8] * z + e[12] * w;\n this.y = e[1] * x2 + e[5] * y + e[9] * z + e[13] * w;\n this.z = e[2] * x2 + e[6] * y + e[10] * z + e[14] * w;\n this.w = e[3] * x2 + e[7] * y + e[11] * z + e[15] * w;\n return this;\n }\n divide(v) {\n this.x /= v.x;\n this.y /= v.y;\n this.z /= v.z;\n this.w /= v.w;\n return this;\n }\n divideScalar(scalar) {\n return this.multiplyScalar(1 / scalar);\n }\n setAxisAngleFromQuaternion(q) {\n this.w = 2 * Math.acos(q.w);\n const s = Math.sqrt(1 - q.w * q.w);\n if (s < 1e-4) {\n this.x = 1;\n this.y = 0;\n this.z = 0;\n } else {\n this.x = q.x / s;\n this.y = q.y / s;\n this.z = q.z / s;\n }\n return this;\n }\n setAxisAngleFromRotationMatrix(m) {\n let angle, x2, y, z;\n const epsilon = 0.01, epsilon2 = 0.1, te = m.elements, m11 = te[0], m12 = te[4], m13 = te[8], m21 = te[1], m22 = te[5], m23 = te[9], m31 = te[2], m32 = te[6], m33 = te[10];\n if (Math.abs(m12 - m21) < epsilon && Math.abs(m13 - m31) < epsilon && Math.abs(m23 - m32) < epsilon) {\n if (Math.abs(m12 + m21) < epsilon2 && Math.abs(m13 + m31) < epsilon2 && Math.abs(m23 + m32) < epsilon2 && Math.abs(m11 + m22 + m33 - 3) < epsilon2) {\n this.set(1, 0, 0, 0);\n return this;\n }\n angle = Math.PI;\n const xx = (m11 + 1) / 2;\n const yy = (m22 + 1) / 2;\n const zz = (m33 + 1) / 2;\n const xy = (m12 + m21) / 4;\n const xz = (m13 + m31) / 4;\n const yz = (m23 + m32) / 4;\n if (xx > yy && xx > zz) {\n if (xx < epsilon) {\n x2 = 0;\n y = 0.707106781;\n z = 0.707106781;\n } else {\n x2 = Math.sqrt(xx);\n y = xy / x2;\n z = xz / x2;\n }\n } else if (yy > zz) {\n if (yy < epsilon) {\n x2 = 0.707106781;\n y = 0;\n z = 0.707106781;\n } else {\n y = Math.sqrt(yy);\n x2 = xy / y;\n z = yz / y;\n }\n } else {\n if (zz < epsilon) {\n x2 = 0.707106781;\n y = 0.707106781;\n z = 0;\n } else {\n z = Math.sqrt(zz);\n x2 = xz / z;\n y = yz / z;\n }\n }\n this.set(x2, y, z, angle);\n return this;\n }\n let s = Math.sqrt((m32 - m23) * (m32 - m23) + (m13 - m31) * (m13 - m31) + (m21 - m12) * (m21 - m12));\n if (Math.abs(s) < 1e-3) s = 1;\n this.x = (m32 - m23) / s;\n this.y = (m13 - m31) / s;\n this.z = (m21 - m12) / s;\n this.w = Math.acos((m11 + m22 + m33 - 1) / 2);\n return this;\n }\n setFromMatrixPosition(m) {\n const e = m.elements;\n this.x = e[12];\n this.y = e[13];\n this.z = e[14];\n this.w = e[15];\n return this;\n }\n min(v) {\n this.x = Math.min(this.x, v.x);\n this.y = Math.min(this.y, v.y);\n this.z = Math.min(this.z, v.z);\n this.w = Math.min(this.w, v.w);\n return this;\n }\n max(v) {\n this.x = Math.max(this.x, v.x);\n this.y = Math.max(this.y, v.y);\n this.z = Math.max(this.z, v.z);\n this.w = Math.max(this.w, v.w);\n return this;\n }\n clamp(min, max2) {\n this.x = clamp(this.x, min.x, max2.x);\n this.y = clamp(this.y, min.y, max2.y);\n this.z = clamp(this.z, min.z, max2.z);\n this.w = clamp(this.w, min.w, max2.w);\n return this;\n }\n clampScalar(minVal, maxVal) {\n this.x = clamp(this.x, minVal, maxVal);\n this.y = clamp(this.y, minVal, maxVal);\n this.z = clamp(this.z, minVal, maxVal);\n this.w = clamp(this.w, minVal, maxVal);\n return this;\n }\n clampLength(min, max2) {\n const length = this.length();\n return this.divideScalar(length || 1).multiplyScalar(clamp(length, min, max2));\n }\n floor() {\n this.x = Math.floor(this.x);\n this.y = Math.floor(this.y);\n this.z = Math.floor(this.z);\n this.w = Math.floor(this.w);\n return this;\n }\n ceil() {\n this.x = Math.ceil(this.x);\n this.y = Math.ceil(this.y);\n this.z = Math.ceil(this.z);\n this.w = Math.ceil(this.w);\n return this;\n }\n round() {\n this.x = Math.round(this.x);\n this.y = Math.round(this.y);\n this.z = Math.round(this.z);\n this.w = Math.round(this.w);\n return this;\n }\n roundToZero() {\n this.x = Math.trunc(this.x);\n this.y = Math.trunc(this.y);\n this.z = Math.trunc(this.z);\n this.w = Math.trunc(this.w);\n return this;\n }\n negate() {\n this.x = -this.x;\n this.y = -this.y;\n this.z = -this.z;\n this.w = -this.w;\n return this;\n }\n dot(v) {\n return this.x * v.x + this.y * v.y + this.z * v.z + this.w * v.w;\n }\n lengthSq() {\n return this.x * this.x + this.y * this.y + this.z * this.z + this.w * this.w;\n }\n length() {\n return Math.sqrt(this.x * this.x + this.y * this.y + this.z * this.z + this.w * this.w);\n }\n manhattanLength() {\n return Math.abs(this.x) + Math.abs(this.y) + Math.abs(this.z) + Math.abs(this.w);\n }\n normalize() {\n return this.divideScalar(this.length() || 1);\n }\n setLength(length) {\n return this.normalize().multiplyScalar(length);\n }\n lerp(v, alpha) {\n this.x += (v.x - this.x) * alpha;\n this.y += (v.y - this.y) * alpha;\n this.z += (v.z - this.z) * alpha;\n this.w += (v.w - this.w) * alpha;\n return this;\n }\n lerpVectors(v1, v2, alpha) {\n this.x = v1.x + (v2.x - v1.x) * alpha;\n this.y = v1.y + (v2.y - v1.y) * alpha;\n this.z = v1.z + (v2.z - v1.z) * alpha;\n this.w = v1.w + (v2.w - v1.w) * alpha;\n return this;\n }\n equals(v) {\n return v.x === this.x && v.y === this.y && v.z === this.z && v.w === this.w;\n }\n fromArray(array, offset = 0) {\n this.x = array[offset];\n this.y = array[offset + 1];\n this.z = array[offset + 2];\n this.w = array[offset + 3];\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this.x;\n array[offset + 1] = this.y;\n array[offset + 2] = this.z;\n array[offset + 3] = this.w;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this.x = attribute.getX(index);\n this.y = attribute.getY(index);\n this.z = attribute.getZ(index);\n this.w = attribute.getW(index);\n return this;\n }\n random() {\n this.x = Math.random();\n this.y = Math.random();\n this.z = Math.random();\n this.w = Math.random();\n return this;\n }\n *[Symbol.iterator]() {\n yield this.x;\n yield this.y;\n yield this.z;\n yield this.w;\n }\n }\n class RenderTarget extends EventDispatcher {\n constructor(width = 1, height = 1, options = {}) {\n super();\n this.isRenderTarget = true;\n this.width = width;\n this.height = height;\n this.depth = 1;\n this.scissor = new Vector4(0, 0, width, height);\n this.scissorTest = false;\n this.viewport = new Vector4(0, 0, width, height);\n const image = { width, height, depth: 1 };\n options = Object.assign({\n generateMipmaps: false,\n internalFormat: null,\n minFilter: LinearFilter,\n depthBuffer: true,\n stencilBuffer: false,\n resolveDepthBuffer: true,\n resolveStencilBuffer: true,\n depthTexture: null,\n samples: 0,\n count: 1\n }, options);\n const texture = new Texture(image, options.mapping, options.wrapS, options.wrapT, options.magFilter, options.minFilter, options.format, options.type, options.anisotropy, options.colorSpace);\n texture.flipY = false;\n texture.generateMipmaps = options.generateMipmaps;\n texture.internalFormat = options.internalFormat;\n this.textures = [];\n const count = options.count;\n for (let i2 = 0; i2 < count; i2++) {\n this.textures[i2] = texture.clone();\n this.textures[i2].isRenderTargetTexture = true;\n this.textures[i2].renderTarget = this;\n }\n this.depthBuffer = options.depthBuffer;\n this.stencilBuffer = options.stencilBuffer;\n this.resolveDepthBuffer = options.resolveDepthBuffer;\n this.resolveStencilBuffer = options.resolveStencilBuffer;\n this._depthTexture = null;\n this.depthTexture = options.depthTexture;\n this.samples = options.samples;\n }\n get texture() {\n return this.textures[0];\n }\n set texture(value) {\n this.textures[0] = value;\n }\n set depthTexture(current) {\n if (this._depthTexture !== null) this._depthTexture.renderTarget = null;\n if (current !== null) current.renderTarget = this;\n this._depthTexture = current;\n }\n get depthTexture() {\n return this._depthTexture;\n }\n setSize(width, height, depth = 1) {\n if (this.width !== width || this.height !== height || this.depth !== depth) {\n this.width = width;\n this.height = height;\n this.depth = depth;\n for (let i2 = 0, il = this.textures.length; i2 < il; i2++) {\n this.textures[i2].image.width = width;\n this.textures[i2].image.height = height;\n this.textures[i2].image.depth = depth;\n }\n this.dispose();\n }\n this.viewport.set(0, 0, width, height);\n this.scissor.set(0, 0, width, height);\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(source) {\n this.width = source.width;\n this.height = source.height;\n this.depth = source.depth;\n this.scissor.copy(source.scissor);\n this.scissorTest = source.scissorTest;\n this.viewport.copy(source.viewport);\n this.textures.length = 0;\n for (let i2 = 0, il = source.textures.length; i2 < il; i2++) {\n this.textures[i2] = source.textures[i2].clone();\n this.textures[i2].isRenderTargetTexture = true;\n this.textures[i2].renderTarget = this;\n }\n const image = Object.assign({}, source.texture.image);\n this.texture.source = new Source(image);\n this.depthBuffer = source.depthBuffer;\n this.stencilBuffer = source.stencilBuffer;\n this.resolveDepthBuffer = source.resolveDepthBuffer;\n this.resolveStencilBuffer = source.resolveStencilBuffer;\n if (source.depthTexture !== null) this.depthTexture = source.depthTexture.clone();\n this.samples = source.samples;\n return this;\n }\n dispose() {\n this.dispatchEvent({ type: "dispose" });\n }\n }\n class WebGLRenderTarget extends RenderTarget {\n constructor(width = 1, height = 1, options = {}) {\n super(width, height, options);\n this.isWebGLRenderTarget = true;\n }\n }\n class DataArrayTexture extends Texture {\n constructor(data = null, width = 1, height = 1, depth = 1) {\n super(null);\n this.isDataArrayTexture = true;\n this.image = { data, width, height, depth };\n this.magFilter = NearestFilter;\n this.minFilter = NearestFilter;\n this.wrapR = ClampToEdgeWrapping;\n this.generateMipmaps = false;\n this.flipY = false;\n this.unpackAlignment = 1;\n this.layerUpdates = /* @__PURE__ */ new Set();\n }\n addLayerUpdate(layerIndex) {\n this.layerUpdates.add(layerIndex);\n }\n clearLayerUpdates() {\n this.layerUpdates.clear();\n }\n }\n class WebGLArrayRenderTarget extends WebGLRenderTarget {\n constructor(width = 1, height = 1, depth = 1, options = {}) {\n super(width, height, options);\n this.isWebGLArrayRenderTarget = true;\n this.depth = depth;\n this.texture = new DataArrayTexture(null, width, height, depth);\n this.texture.isRenderTargetTexture = true;\n }\n }\n class Quaternion {\n constructor(x2 = 0, y = 0, z = 0, w = 1) {\n this.isQuaternion = true;\n this._x = x2;\n this._y = y;\n this._z = z;\n this._w = w;\n }\n static slerpFlat(dst, dstOffset, src0, srcOffset0, src1, srcOffset1, t) {\n let x0 = src0[srcOffset0 + 0], y0 = src0[srcOffset0 + 1], z0 = src0[srcOffset0 + 2], w0 = src0[srcOffset0 + 3];\n const x1 = src1[srcOffset1 + 0], y1 = src1[srcOffset1 + 1], z1 = src1[srcOffset1 + 2], w1 = src1[srcOffset1 + 3];\n if (t === 0) {\n dst[dstOffset + 0] = x0;\n dst[dstOffset + 1] = y0;\n dst[dstOffset + 2] = z0;\n dst[dstOffset + 3] = w0;\n return;\n }\n if (t === 1) {\n dst[dstOffset + 0] = x1;\n dst[dstOffset + 1] = y1;\n dst[dstOffset + 2] = z1;\n dst[dstOffset + 3] = w1;\n return;\n }\n if (w0 !== w1 || x0 !== x1 || y0 !== y1 || z0 !== z1) {\n let s = 1 - t;\n const cos = x0 * x1 + y0 * y1 + z0 * z1 + w0 * w1, dir = cos >= 0 ? 1 : -1, sqrSin = 1 - cos * cos;\n if (sqrSin > Number.EPSILON) {\n const sin = Math.sqrt(sqrSin), len = Math.atan2(sin, cos * dir);\n s = Math.sin(s * len) / sin;\n t = Math.sin(t * len) / sin;\n }\n const tDir = t * dir;\n x0 = x0 * s + x1 * tDir;\n y0 = y0 * s + y1 * tDir;\n z0 = z0 * s + z1 * tDir;\n w0 = w0 * s + w1 * tDir;\n if (s === 1 - t) {\n const f = 1 / Math.sqrt(x0 * x0 + y0 * y0 + z0 * z0 + w0 * w0);\n x0 *= f;\n y0 *= f;\n z0 *= f;\n w0 *= f;\n }\n }\n dst[dstOffset] = x0;\n dst[dstOffset + 1] = y0;\n dst[dstOffset + 2] = z0;\n dst[dstOffset + 3] = w0;\n }\n static multiplyQuaternionsFlat(dst, dstOffset, src0, srcOffset0, src1, srcOffset1) {\n const x0 = src0[srcOffset0];\n const y0 = src0[srcOffset0 + 1];\n const z0 = src0[srcOffset0 + 2];\n const w0 = src0[srcOffset0 + 3];\n const x1 = src1[srcOffset1];\n const y1 = src1[srcOffset1 + 1];\n const z1 = src1[srcOffset1 + 2];\n const w1 = src1[srcOffset1 + 3];\n dst[dstOffset] = x0 * w1 + w0 * x1 + y0 * z1 - z0 * y1;\n dst[dstOffset + 1] = y0 * w1 + w0 * y1 + z0 * x1 - x0 * z1;\n dst[dstOffset + 2] = z0 * w1 + w0 * z1 + x0 * y1 - y0 * x1;\n dst[dstOffset + 3] = w0 * w1 - x0 * x1 - y0 * y1 - z0 * z1;\n return dst;\n }\n get x() {\n return this._x;\n }\n set x(value) {\n this._x = value;\n this._onChangeCallback();\n }\n get y() {\n return this._y;\n }\n set y(value) {\n this._y = value;\n this._onChangeCallback();\n }\n get z() {\n return this._z;\n }\n set z(value) {\n this._z = value;\n this._onChangeCallback();\n }\n get w() {\n return this._w;\n }\n set w(value) {\n this._w = value;\n this._onChangeCallback();\n }\n set(x2, y, z, w) {\n this._x = x2;\n this._y = y;\n this._z = z;\n this._w = w;\n this._onChangeCallback();\n return this;\n }\n clone() {\n return new this.constructor(this._x, this._y, this._z, this._w);\n }\n copy(quaternion) {\n this._x = quaternion.x;\n this._y = quaternion.y;\n this._z = quaternion.z;\n this._w = quaternion.w;\n this._onChangeCallback();\n return this;\n }\n setFromEuler(euler, update = true) {\n const x2 = euler._x, y = euler._y, z = euler._z, order = euler._order;\n const cos = Math.cos;\n const sin = Math.sin;\n const c1 = cos(x2 / 2);\n const c2 = cos(y / 2);\n const c3 = cos(z / 2);\n const s1 = sin(x2 / 2);\n const s2 = sin(y / 2);\n const s3 = sin(z / 2);\n switch (order) {\n case "XYZ":\n this._x = s1 * c2 * c3 + c1 * s2 * s3;\n this._y = c1 * s2 * c3 - s1 * c2 * s3;\n this._z = c1 * c2 * s3 + s1 * s2 * c3;\n this._w = c1 * c2 * c3 - s1 * s2 * s3;\n break;\n case "YXZ":\n this._x = s1 * c2 * c3 + c1 * s2 * s3;\n this._y = c1 * s2 * c3 - s1 * c2 * s3;\n this._z = c1 * c2 * s3 - s1 * s2 * c3;\n this._w = c1 * c2 * c3 + s1 * s2 * s3;\n break;\n case "ZXY":\n this._x = s1 * c2 * c3 - c1 * s2 * s3;\n this._y = c1 * s2 * c3 + s1 * c2 * s3;\n this._z = c1 * c2 * s3 + s1 * s2 * c3;\n this._w = c1 * c2 * c3 - s1 * s2 * s3;\n break;\n case "ZYX":\n this._x = s1 * c2 * c3 - c1 * s2 * s3;\n this._y = c1 * s2 * c3 + s1 * c2 * s3;\n this._z = c1 * c2 * s3 - s1 * s2 * c3;\n this._w = c1 * c2 * c3 + s1 * s2 * s3;\n break;\n case "YZX":\n this._x = s1 * c2 * c3 + c1 * s2 * s3;\n this._y = c1 * s2 * c3 + s1 * c2 * s3;\n this._z = c1 * c2 * s3 - s1 * s2 * c3;\n this._w = c1 * c2 * c3 - s1 * s2 * s3;\n break;\n case "XZY":\n this._x = s1 * c2 * c3 - c1 * s2 * s3;\n this._y = c1 * s2 * c3 - s1 * c2 * s3;\n this._z = c1 * c2 * s3 + s1 * s2 * c3;\n this._w = c1 * c2 * c3 + s1 * s2 * s3;\n break;\n default:\n console.warn("THREE.Quaternion: .setFromEuler() encountered an unknown order: " + order);\n }\n if (update === true) this._onChangeCallback();\n return this;\n }\n setFromAxisAngle(axis, angle) {\n const halfAngle = angle / 2, s = Math.sin(halfAngle);\n this._x = axis.x * s;\n this._y = axis.y * s;\n this._z = axis.z * s;\n this._w = Math.cos(halfAngle);\n this._onChangeCallback();\n return this;\n }\n setFromRotationMatrix(m) {\n const te = m.elements, m11 = te[0], m12 = te[4], m13 = te[8], m21 = te[1], m22 = te[5], m23 = te[9], m31 = te[2], m32 = te[6], m33 = te[10], trace = m11 + m22 + m33;\n if (trace > 0) {\n const s = 0.5 / Math.sqrt(trace + 1);\n this._w = 0.25 / s;\n this._x = (m32 - m23) * s;\n this._y = (m13 - m31) * s;\n this._z = (m21 - m12) * s;\n } else if (m11 > m22 && m11 > m33) {\n const s = 2 * Math.sqrt(1 + m11 - m22 - m33);\n this._w = (m32 - m23) / s;\n this._x = 0.25 * s;\n this._y = (m12 + m21) / s;\n this._z = (m13 + m31) / s;\n } else if (m22 > m33) {\n const s = 2 * Math.sqrt(1 + m22 - m11 - m33);\n this._w = (m13 - m31) / s;\n this._x = (m12 + m21) / s;\n this._y = 0.25 * s;\n this._z = (m23 + m32) / s;\n } else {\n const s = 2 * Math.sqrt(1 + m33 - m11 - m22);\n this._w = (m21 - m12) / s;\n this._x = (m13 + m31) / s;\n this._y = (m23 + m32) / s;\n this._z = 0.25 * s;\n }\n this._onChangeCallback();\n return this;\n }\n setFromUnitVectors(vFrom, vTo) {\n let r = vFrom.dot(vTo) + 1;\n if (r < Number.EPSILON) {\n r = 0;\n if (Math.abs(vFrom.x) > Math.abs(vFrom.z)) {\n this._x = -vFrom.y;\n this._y = vFrom.x;\n this._z = 0;\n this._w = r;\n } else {\n this._x = 0;\n this._y = -vFrom.z;\n this._z = vFrom.y;\n this._w = r;\n }\n } else {\n this._x = vFrom.y * vTo.z - vFrom.z * vTo.y;\n this._y = vFrom.z * vTo.x - vFrom.x * vTo.z;\n this._z = vFrom.x * vTo.y - vFrom.y * vTo.x;\n this._w = r;\n }\n return this.normalize();\n }\n angleTo(q) {\n return 2 * Math.acos(Math.abs(clamp(this.dot(q), -1, 1)));\n }\n rotateTowards(q, step) {\n const angle = this.angleTo(q);\n if (angle === 0) return this;\n const t = Math.min(1, step / angle);\n this.slerp(q, t);\n return this;\n }\n identity() {\n return this.set(0, 0, 0, 1);\n }\n invert() {\n return this.conjugate();\n }\n conjugate() {\n this._x *= -1;\n this._y *= -1;\n this._z *= -1;\n this._onChangeCallback();\n return this;\n }\n dot(v) {\n return this._x * v._x + this._y * v._y + this._z * v._z + this._w * v._w;\n }\n lengthSq() {\n return this._x * this._x + this._y * this._y + this._z * this._z + this._w * this._w;\n }\n length() {\n return Math.sqrt(this._x * this._x + this._y * this._y + this._z * this._z + this._w * this._w);\n }\n normalize() {\n let l = this.length();\n if (l === 0) {\n this._x = 0;\n this._y = 0;\n this._z = 0;\n this._w = 1;\n } else {\n l = 1 / l;\n this._x = this._x * l;\n this._y = this._y * l;\n this._z = this._z * l;\n this._w = this._w * l;\n }\n this._onChangeCallback();\n return this;\n }\n multiply(q) {\n return this.multiplyQuaternions(this, q);\n }\n premultiply(q) {\n return this.multiplyQuaternions(q, this);\n }\n multiplyQuaternions(a, b) {\n const qax = a._x, qay = a._y, qaz = a._z, qaw = a._w;\n const qbx = b._x, qby = b._y, qbz = b._z, qbw = b._w;\n this._x = qax * qbw + qaw * qbx + qay * qbz - qaz * qby;\n this._y = qay * qbw + qaw * qby + qaz * qbx - qax * qbz;\n this._z = qaz * qbw + qaw * qbz + qax * qby - qay * qbx;\n this._w = qaw * qbw - qax * qbx - qay * qby - qaz * qbz;\n this._onChangeCallback();\n return this;\n }\n slerp(qb, t) {\n if (t === 0) return this;\n if (t === 1) return this.copy(qb);\n const x2 = this._x, y = this._y, z = this._z, w = this._w;\n let cosHalfTheta = w * qb._w + x2 * qb._x + y * qb._y + z * qb._z;\n if (cosHalfTheta < 0) {\n this._w = -qb._w;\n this._x = -qb._x;\n this._y = -qb._y;\n this._z = -qb._z;\n cosHalfTheta = -cosHalfTheta;\n } else {\n this.copy(qb);\n }\n if (cosHalfTheta >= 1) {\n this._w = w;\n this._x = x2;\n this._y = y;\n this._z = z;\n return this;\n }\n const sqrSinHalfTheta = 1 - cosHalfTheta * cosHalfTheta;\n if (sqrSinHalfTheta <= Number.EPSILON) {\n const s = 1 - t;\n this._w = s * w + t * this._w;\n this._x = s * x2 + t * this._x;\n this._y = s * y + t * this._y;\n this._z = s * z + t * this._z;\n this.normalize();\n return this;\n }\n const sinHalfTheta = Math.sqrt(sqrSinHalfTheta);\n const halfTheta = Math.atan2(sinHalfTheta, cosHalfTheta);\n const ratioA = Math.sin((1 - t) * halfTheta) / sinHalfTheta, ratioB = Math.sin(t * halfTheta) / sinHalfTheta;\n this._w = w * ratioA + this._w * ratioB;\n this._x = x2 * ratioA + this._x * ratioB;\n this._y = y * ratioA + this._y * ratioB;\n this._z = z * ratioA + this._z * ratioB;\n this._onChangeCallback();\n return this;\n }\n slerpQuaternions(qa, qb, t) {\n return this.copy(qa).slerp(qb, t);\n }\n random() {\n const theta1 = 2 * Math.PI * Math.random();\n const theta2 = 2 * Math.PI * Math.random();\n const x0 = Math.random();\n const r1 = Math.sqrt(1 - x0);\n const r2 = Math.sqrt(x0);\n return this.set(\n r1 * Math.sin(theta1),\n r1 * Math.cos(theta1),\n r2 * Math.sin(theta2),\n r2 * Math.cos(theta2)\n );\n }\n equals(quaternion) {\n return quaternion._x === this._x && quaternion._y === this._y && quaternion._z === this._z && quaternion._w === this._w;\n }\n fromArray(array, offset = 0) {\n this._x = array[offset];\n this._y = array[offset + 1];\n this._z = array[offset + 2];\n this._w = array[offset + 3];\n this._onChangeCallback();\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this._x;\n array[offset + 1] = this._y;\n array[offset + 2] = this._z;\n array[offset + 3] = this._w;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this._x = attribute.getX(index);\n this._y = attribute.getY(index);\n this._z = attribute.getZ(index);\n this._w = attribute.getW(index);\n this._onChangeCallback();\n return this;\n }\n toJSON() {\n return this.toArray();\n }\n _onChange(callback) {\n this._onChangeCallback = callback;\n return this;\n }\n _onChangeCallback() {\n }\n *[Symbol.iterator]() {\n yield this._x;\n yield this._y;\n yield this._z;\n yield this._w;\n }\n }\n class Vector3 {\n constructor(x2 = 0, y = 0, z = 0) {\n Vector3.prototype.isVector3 = true;\n this.x = x2;\n this.y = y;\n this.z = z;\n }\n set(x2, y, z) {\n if (z === void 0) z = this.z;\n this.x = x2;\n this.y = y;\n this.z = z;\n return this;\n }\n setScalar(scalar) {\n this.x = scalar;\n this.y = scalar;\n this.z = scalar;\n return this;\n }\n setX(x2) {\n this.x = x2;\n return this;\n }\n setY(y) {\n this.y = y;\n return this;\n }\n setZ(z) {\n this.z = z;\n return this;\n }\n setComponent(index, value) {\n switch (index) {\n case 0:\n this.x = value;\n break;\n case 1:\n this.y = value;\n break;\n case 2:\n this.z = value;\n break;\n default:\n throw new Error("index is out of range: " + index);\n }\n return this;\n }\n getComponent(index) {\n switch (index) {\n case 0:\n return this.x;\n case 1:\n return this.y;\n case 2:\n return this.z;\n default:\n throw new Error("index is out of range: " + index);\n }\n }\n clone() {\n return new this.constructor(this.x, this.y, this.z);\n }\n copy(v) {\n this.x = v.x;\n this.y = v.y;\n this.z = v.z;\n return this;\n }\n add(v) {\n this.x += v.x;\n this.y += v.y;\n this.z += v.z;\n return this;\n }\n addScalar(s) {\n this.x += s;\n this.y += s;\n this.z += s;\n return this;\n }\n addVectors(a, b) {\n this.x = a.x + b.x;\n this.y = a.y + b.y;\n this.z = a.z + b.z;\n return this;\n }\n addScaledVector(v, s) {\n this.x += v.x * s;\n this.y += v.y * s;\n this.z += v.z * s;\n return this;\n }\n sub(v) {\n this.x -= v.x;\n this.y -= v.y;\n this.z -= v.z;\n return this;\n }\n subScalar(s) {\n this.x -= s;\n this.y -= s;\n this.z -= s;\n return this;\n }\n subVectors(a, b) {\n this.x = a.x - b.x;\n this.y = a.y - b.y;\n this.z = a.z - b.z;\n return this;\n }\n multiply(v) {\n this.x *= v.x;\n this.y *= v.y;\n this.z *= v.z;\n return this;\n }\n multiplyScalar(scalar) {\n this.x *= scalar;\n this.y *= scalar;\n this.z *= scalar;\n return this;\n }\n multiplyVectors(a, b) {\n this.x = a.x * b.x;\n this.y = a.y * b.y;\n this.z = a.z * b.z;\n return this;\n }\n applyEuler(euler) {\n return this.applyQuaternion(_quaternion$4.setFromEuler(euler));\n }\n applyAxisAngle(axis, angle) {\n return this.applyQuaternion(_quaternion$4.setFromAxisAngle(axis, angle));\n }\n applyMatrix3(m) {\n const x2 = this.x, y = this.y, z = this.z;\n const e = m.elements;\n this.x = e[0] * x2 + e[3] * y + e[6] * z;\n this.y = e[1] * x2 + e[4] * y + e[7] * z;\n this.z = e[2] * x2 + e[5] * y + e[8] * z;\n return this;\n }\n applyNormalMatrix(m) {\n return this.applyMatrix3(m).normalize();\n }\n applyMatrix4(m) {\n const x2 = this.x, y = this.y, z = this.z;\n const e = m.elements;\n const w = 1 / (e[3] * x2 + e[7] * y + e[11] * z + e[15]);\n this.x = (e[0] * x2 + e[4] * y + e[8] * z + e[12]) * w;\n this.y = (e[1] * x2 + e[5] * y + e[9] * z + e[13]) * w;\n this.z = (e[2] * x2 + e[6] * y + e[10] * z + e[14]) * w;\n return this;\n }\n applyQuaternion(q) {\n const vx = this.x, vy = this.y, vz = this.z;\n const qx = q.x, qy = q.y, qz = q.z, qw = q.w;\n const tx = 2 * (qy * vz - qz * vy);\n const ty = 2 * (qz * vx - qx * vz);\n const tz = 2 * (qx * vy - qy * vx);\n this.x = vx + qw * tx + qy * tz - qz * ty;\n this.y = vy + qw * ty + qz * tx - qx * tz;\n this.z = vz + qw * tz + qx * ty - qy * tx;\n return this;\n }\n project(camera) {\n return this.applyMatrix4(camera.matrixWorldInverse).applyMatrix4(camera.projectionMatrix);\n }\n unproject(camera) {\n return this.applyMatrix4(camera.projectionMatrixInverse).applyMatrix4(camera.matrixWorld);\n }\n transformDirection(m) {\n const x2 = this.x, y = this.y, z = this.z;\n const e = m.elements;\n this.x = e[0] * x2 + e[4] * y + e[8] * z;\n this.y = e[1] * x2 + e[5] * y + e[9] * z;\n this.z = e[2] * x2 + e[6] * y + e[10] * z;\n return this.normalize();\n }\n divide(v) {\n this.x /= v.x;\n this.y /= v.y;\n this.z /= v.z;\n return this;\n }\n divideScalar(scalar) {\n return this.multiplyScalar(1 / scalar);\n }\n min(v) {\n this.x = Math.min(this.x, v.x);\n this.y = Math.min(this.y, v.y);\n this.z = Math.min(this.z, v.z);\n return this;\n }\n max(v) {\n this.x = Math.max(this.x, v.x);\n this.y = Math.max(this.y, v.y);\n this.z = Math.max(this.z, v.z);\n return this;\n }\n clamp(min, max2) {\n this.x = clamp(this.x, min.x, max2.x);\n this.y = clamp(this.y, min.y, max2.y);\n this.z = clamp(this.z, min.z, max2.z);\n return this;\n }\n clampScalar(minVal, maxVal) {\n this.x = clamp(this.x, minVal, maxVal);\n this.y = clamp(this.y, minVal, maxVal);\n this.z = clamp(this.z, minVal, maxVal);\n return this;\n }\n clampLength(min, max2) {\n const length = this.length();\n return this.divideScalar(length || 1).multiplyScalar(clamp(length, min, max2));\n }\n floor() {\n this.x = Math.floor(this.x);\n this.y = Math.floor(this.y);\n this.z = Math.floor(this.z);\n return this;\n }\n ceil() {\n this.x = Math.ceil(this.x);\n this.y = Math.ceil(this.y);\n this.z = Math.ceil(this.z);\n return this;\n }\n round() {\n this.x = Math.round(this.x);\n this.y = Math.round(this.y);\n this.z = Math.round(this.z);\n return this;\n }\n roundToZero() {\n this.x = Math.trunc(this.x);\n this.y = Math.trunc(this.y);\n this.z = Math.trunc(this.z);\n return this;\n }\n negate() {\n this.x = -this.x;\n this.y = -this.y;\n this.z = -this.z;\n return this;\n }\n dot(v) {\n return this.x * v.x + this.y * v.y + this.z * v.z;\n }\n // TODO lengthSquared?\n lengthSq() {\n return this.x * this.x + this.y * this.y + this.z * this.z;\n }\n length() {\n return Math.sqrt(this.x * this.x + this.y * this.y + this.z * this.z);\n }\n manhattanLength() {\n return Math.abs(this.x) + Math.abs(this.y) + Math.abs(this.z);\n }\n normalize() {\n return this.divideScalar(this.length() || 1);\n }\n setLength(length) {\n return this.normalize().multiplyScalar(length);\n }\n lerp(v, alpha) {\n this.x += (v.x - this.x) * alpha;\n this.y += (v.y - this.y) * alpha;\n this.z += (v.z - this.z) * alpha;\n return this;\n }\n lerpVectors(v1, v2, alpha) {\n this.x = v1.x + (v2.x - v1.x) * alpha;\n this.y = v1.y + (v2.y - v1.y) * alpha;\n this.z = v1.z + (v2.z - v1.z) * alpha;\n return this;\n }\n cross(v) {\n return this.crossVectors(this, v);\n }\n crossVectors(a, b) {\n const ax = a.x, ay = a.y, az = a.z;\n const bx = b.x, by = b.y, bz = b.z;\n this.x = ay * bz - az * by;\n this.y = az * bx - ax * bz;\n this.z = ax * by - ay * bx;\n return this;\n }\n projectOnVector(v) {\n const denominator = v.lengthSq();\n if (denominator === 0) return this.set(0, 0, 0);\n const scalar = v.dot(this) / denominator;\n return this.copy(v).multiplyScalar(scalar);\n }\n projectOnPlane(planeNormal) {\n _vector$c.copy(this).projectOnVector(planeNormal);\n return this.sub(_vector$c);\n }\n reflect(normal) {\n return this.sub(_vector$c.copy(normal).multiplyScalar(2 * this.dot(normal)));\n }\n angleTo(v) {\n const denominator = Math.sqrt(this.lengthSq() * v.lengthSq());\n if (denominator === 0) return Math.PI / 2;\n const theta = this.dot(v) / denominator;\n return Math.acos(clamp(theta, -1, 1));\n }\n distanceTo(v) {\n return Math.sqrt(this.distanceToSquared(v));\n }\n distanceToSquared(v) {\n const dx = this.x - v.x, dy = this.y - v.y, dz = this.z - v.z;\n return dx * dx + dy * dy + dz * dz;\n }\n manhattanDistanceTo(v) {\n return Math.abs(this.x - v.x) + Math.abs(this.y - v.y) + Math.abs(this.z - v.z);\n }\n setFromSpherical(s) {\n return this.setFromSphericalCoords(s.radius, s.phi, s.theta);\n }\n setFromSphericalCoords(radius, phi, theta) {\n const sinPhiRadius = Math.sin(phi) * radius;\n this.x = sinPhiRadius * Math.sin(theta);\n this.y = Math.cos(phi) * radius;\n this.z = sinPhiRadius * Math.cos(theta);\n return this;\n }\n setFromCylindrical(c) {\n return this.setFromCylindricalCoords(c.radius, c.theta, c.y);\n }\n setFromCylindricalCoords(radius, theta, y) {\n this.x = radius * Math.sin(theta);\n this.y = y;\n this.z = radius * Math.cos(theta);\n return this;\n }\n setFromMatrixPosition(m) {\n const e = m.elements;\n this.x = e[12];\n this.y = e[13];\n this.z = e[14];\n return this;\n }\n setFromMatrixScale(m) {\n const sx = this.setFromMatrixColumn(m, 0).length();\n const sy = this.setFromMatrixColumn(m, 1).length();\n const sz = this.setFromMatrixColumn(m, 2).length();\n this.x = sx;\n this.y = sy;\n this.z = sz;\n return this;\n }\n setFromMatrixColumn(m, index) {\n return this.fromArray(m.elements, index * 4);\n }\n setFromMatrix3Column(m, index) {\n return this.fromArray(m.elements, index * 3);\n }\n setFromEuler(e) {\n this.x = e._x;\n this.y = e._y;\n this.z = e._z;\n return this;\n }\n setFromColor(c) {\n this.x = c.r;\n this.y = c.g;\n this.z = c.b;\n return this;\n }\n equals(v) {\n return v.x === this.x && v.y === this.y && v.z === this.z;\n }\n fromArray(array, offset = 0) {\n this.x = array[offset];\n this.y = array[offset + 1];\n this.z = array[offset + 2];\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this.x;\n array[offset + 1] = this.y;\n array[offset + 2] = this.z;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this.x = attribute.getX(index);\n this.y = attribute.getY(index);\n this.z = attribute.getZ(index);\n return this;\n }\n random() {\n this.x = Math.random();\n this.y = Math.random();\n this.z = Math.random();\n return this;\n }\n randomDirection() {\n const theta = Math.random() * Math.PI * 2;\n const u = Math.random() * 2 - 1;\n const c = Math.sqrt(1 - u * u);\n this.x = c * Math.cos(theta);\n this.y = u;\n this.z = c * Math.sin(theta);\n return this;\n }\n *[Symbol.iterator]() {\n yield this.x;\n yield this.y;\n yield this.z;\n }\n }\n const _vector$c = /* @__PURE__ */ new Vector3();\n const _quaternion$4 = /* @__PURE__ */ new Quaternion();\n class Box3 {\n constructor(min = new Vector3(Infinity, Infinity, Infinity), max2 = new Vector3(-Infinity, -Infinity, -Infinity)) {\n this.isBox3 = true;\n this.min = min;\n this.max = max2;\n }\n set(min, max2) {\n this.min.copy(min);\n this.max.copy(max2);\n return this;\n }\n setFromArray(array) {\n this.makeEmpty();\n for (let i2 = 0, il = array.length; i2 < il; i2 += 3) {\n this.expandByPoint(_vector$b.fromArray(array, i2));\n }\n return this;\n }\n setFromBufferAttribute(attribute) {\n this.makeEmpty();\n for (let i2 = 0, il = attribute.count; i2 < il; i2++) {\n this.expandByPoint(_vector$b.fromBufferAttribute(attribute, i2));\n }\n return this;\n }\n setFromPoints(points) {\n this.makeEmpty();\n for (let i2 = 0, il = points.length; i2 < il; i2++) {\n this.expandByPoint(points[i2]);\n }\n return this;\n }\n setFromCenterAndSize(center, size) {\n const halfSize = _vector$b.copy(size).multiplyScalar(0.5);\n this.min.copy(center).sub(halfSize);\n this.max.copy(center).add(halfSize);\n return this;\n }\n setFromObject(object, precise = false) {\n this.makeEmpty();\n return this.expandByObject(object, precise);\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(box) {\n this.min.copy(box.min);\n this.max.copy(box.max);\n return this;\n }\n makeEmpty() {\n this.min.x = this.min.y = this.min.z = Infinity;\n this.max.x = this.max.y = this.max.z = -Infinity;\n return this;\n }\n isEmpty() {\n return this.max.x < this.min.x || this.max.y < this.min.y || this.max.z < this.min.z;\n }\n getCenter(target) {\n return this.isEmpty() ? target.set(0, 0, 0) : target.addVectors(this.min, this.max).multiplyScalar(0.5);\n }\n getSize(target) {\n return this.isEmpty() ? target.set(0, 0, 0) : target.subVectors(this.max, this.min);\n }\n expandByPoint(point) {\n this.min.min(point);\n this.max.max(point);\n return this;\n }\n expandByVector(vector) {\n this.min.sub(vector);\n this.max.add(vector);\n return this;\n }\n expandByScalar(scalar) {\n this.min.addScalar(-scalar);\n this.max.addScalar(scalar);\n return this;\n }\n expandByObject(object, precise = false) {\n object.updateWorldMatrix(false, false);\n const geometry = object.geometry;\n if (geometry !== void 0) {\n const positionAttribute = geometry.getAttribute("position");\n if (precise === true && positionAttribute !== void 0 && object.isInstancedMesh !== true) {\n for (let i2 = 0, l = positionAttribute.count; i2 < l; i2++) {\n if (object.isMesh === true) {\n object.getVertexPosition(i2, _vector$b);\n } else {\n _vector$b.fromBufferAttribute(positionAttribute, i2);\n }\n _vector$b.applyMatrix4(object.matrixWorld);\n this.expandByPoint(_vector$b);\n }\n } else {\n if (object.boundingBox !== void 0) {\n if (object.boundingBox === null) {\n object.computeBoundingBox();\n }\n _box$4.copy(object.boundingBox);\n } else {\n if (geometry.boundingBox === null) {\n geometry.computeBoundingBox();\n }\n _box$4.copy(geometry.boundingBox);\n }\n _box$4.applyMatrix4(object.matrixWorld);\n this.union(_box$4);\n }\n }\n const children = object.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n this.expandByObject(children[i2], precise);\n }\n return this;\n }\n containsPoint(point) {\n return point.x >= this.min.x && point.x <= this.max.x && point.y >= this.min.y && point.y <= this.max.y && point.z >= this.min.z && point.z <= this.max.z;\n }\n containsBox(box) {\n return this.min.x <= box.min.x && box.max.x <= this.max.x && this.min.y <= box.min.y && box.max.y <= this.max.y && this.min.z <= box.min.z && box.max.z <= this.max.z;\n }\n getParameter(point, target) {\n return target.set(\n (point.x - this.min.x) / (this.max.x - this.min.x),\n (point.y - this.min.y) / (this.max.y - this.min.y),\n (point.z - this.min.z) / (this.max.z - this.min.z)\n );\n }\n intersectsBox(box) {\n return box.max.x >= this.min.x && box.min.x <= this.max.x && box.max.y >= this.min.y && box.min.y <= this.max.y && box.max.z >= this.min.z && box.min.z <= this.max.z;\n }\n intersectsSphere(sphere) {\n this.clampPoint(sphere.center, _vector$b);\n return _vector$b.distanceToSquared(sphere.center) <= sphere.radius * sphere.radius;\n }\n intersectsPlane(plane) {\n let min, max2;\n if (plane.normal.x > 0) {\n min = plane.normal.x * this.min.x;\n max2 = plane.normal.x * this.max.x;\n } else {\n min = plane.normal.x * this.max.x;\n max2 = plane.normal.x * this.min.x;\n }\n if (plane.normal.y > 0) {\n min += plane.normal.y * this.min.y;\n max2 += plane.normal.y * this.max.y;\n } else {\n min += plane.normal.y * this.max.y;\n max2 += plane.normal.y * this.min.y;\n }\n if (plane.normal.z > 0) {\n min += plane.normal.z * this.min.z;\n max2 += plane.normal.z * this.max.z;\n } else {\n min += plane.normal.z * this.max.z;\n max2 += plane.normal.z * this.min.z;\n }\n return min <= -plane.constant && max2 >= -plane.constant;\n }\n intersectsTriangle(triangle) {\n if (this.isEmpty()) {\n return false;\n }\n this.getCenter(_center);\n _extents.subVectors(this.max, _center);\n _v0$2.subVectors(triangle.a, _center);\n _v1$7.subVectors(triangle.b, _center);\n _v2$4.subVectors(triangle.c, _center);\n _f0.subVectors(_v1$7, _v0$2);\n _f1.subVectors(_v2$4, _v1$7);\n _f2.subVectors(_v0$2, _v2$4);\n let axes = [\n 0,\n -_f0.z,\n _f0.y,\n 0,\n -_f1.z,\n _f1.y,\n 0,\n -_f2.z,\n _f2.y,\n _f0.z,\n 0,\n -_f0.x,\n _f1.z,\n 0,\n -_f1.x,\n _f2.z,\n 0,\n -_f2.x,\n -_f0.y,\n _f0.x,\n 0,\n -_f1.y,\n _f1.x,\n 0,\n -_f2.y,\n _f2.x,\n 0\n ];\n if (!satForAxes(axes, _v0$2, _v1$7, _v2$4, _extents)) {\n return false;\n }\n axes = [1, 0, 0, 0, 1, 0, 0, 0, 1];\n if (!satForAxes(axes, _v0$2, _v1$7, _v2$4, _extents)) {\n return false;\n }\n _triangleNormal.crossVectors(_f0, _f1);\n axes = [_triangleNormal.x, _triangleNormal.y, _triangleNormal.z];\n return satForAxes(axes, _v0$2, _v1$7, _v2$4, _extents);\n }\n clampPoint(point, target) {\n return target.copy(point).clamp(this.min, this.max);\n }\n distanceToPoint(point) {\n return this.clampPoint(point, _vector$b).distanceTo(point);\n }\n getBoundingSphere(target) {\n if (this.isEmpty()) {\n target.makeEmpty();\n } else {\n this.getCenter(target.center);\n target.radius = this.getSize(_vector$b).length() * 0.5;\n }\n return target;\n }\n intersect(box) {\n this.min.max(box.min);\n this.max.min(box.max);\n if (this.isEmpty()) this.makeEmpty();\n return this;\n }\n union(box) {\n this.min.min(box.min);\n this.max.max(box.max);\n return this;\n }\n applyMatrix4(matrix) {\n if (this.isEmpty()) return this;\n _points[0].set(this.min.x, this.min.y, this.min.z).applyMatrix4(matrix);\n _points[1].set(this.min.x, this.min.y, this.max.z).applyMatrix4(matrix);\n _points[2].set(this.min.x, this.max.y, this.min.z).applyMatrix4(matrix);\n _points[3].set(this.min.x, this.max.y, this.max.z).applyMatrix4(matrix);\n _points[4].set(this.max.x, this.min.y, this.min.z).applyMatrix4(matrix);\n _points[5].set(this.max.x, this.min.y, this.max.z).applyMatrix4(matrix);\n _points[6].set(this.max.x, this.max.y, this.min.z).applyMatrix4(matrix);\n _points[7].set(this.max.x, this.max.y, this.max.z).applyMatrix4(matrix);\n this.setFromPoints(_points);\n return this;\n }\n translate(offset) {\n this.min.add(offset);\n this.max.add(offset);\n return this;\n }\n equals(box) {\n return box.min.equals(this.min) && box.max.equals(this.max);\n }\n }\n const _points = [\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3(),\n /* @__PURE__ */ new Vector3()\n ];\n const _vector$b = /* @__PURE__ */ new Vector3();\n const _box$4 = /* @__PURE__ */ new Box3();\n const _v0$2 = /* @__PURE__ */ new Vector3();\n const _v1$7 = /* @__PURE__ */ new Vector3();\n const _v2$4 = /* @__PURE__ */ new Vector3();\n const _f0 = /* @__PURE__ */ new Vector3();\n const _f1 = /* @__PURE__ */ new Vector3();\n const _f2 = /* @__PURE__ */ new Vector3();\n const _center = /* @__PURE__ */ new Vector3();\n const _extents = /* @__PURE__ */ new Vector3();\n const _triangleNormal = /* @__PURE__ */ new Vector3();\n const _testAxis = /* @__PURE__ */ new Vector3();\n function satForAxes(axes, v0, v1, v2, extents) {\n for (let i2 = 0, j = axes.length - 3; i2 <= j; i2 += 3) {\n _testAxis.fromArray(axes, i2);\n const r = extents.x * Math.abs(_testAxis.x) + extents.y * Math.abs(_testAxis.y) + extents.z * Math.abs(_testAxis.z);\n const p0 = v0.dot(_testAxis);\n const p1 = v1.dot(_testAxis);\n const p2 = v2.dot(_testAxis);\n if (Math.max(-Math.max(p0, p1, p2), Math.min(p0, p1, p2)) > r) {\n return false;\n }\n }\n return true;\n }\n const _box$3 = /* @__PURE__ */ new Box3();\n const _v1$6 = /* @__PURE__ */ new Vector3();\n const _v2$3 = /* @__PURE__ */ new Vector3();\n class Sphere {\n constructor(center = new Vector3(), radius = -1) {\n this.isSphere = true;\n this.center = center;\n this.radius = radius;\n }\n set(center, radius) {\n this.center.copy(center);\n this.radius = radius;\n return this;\n }\n setFromPoints(points, optionalCenter) {\n const center = this.center;\n if (optionalCenter !== void 0) {\n center.copy(optionalCenter);\n } else {\n _box$3.setFromPoints(points).getCenter(center);\n }\n let maxRadiusSq = 0;\n for (let i2 = 0, il = points.length; i2 < il; i2++) {\n maxRadiusSq = Math.max(maxRadiusSq, center.distanceToSquared(points[i2]));\n }\n this.radius = Math.sqrt(maxRadiusSq);\n return this;\n }\n copy(sphere) {\n this.center.copy(sphere.center);\n this.radius = sphere.radius;\n return this;\n }\n isEmpty() {\n return this.radius < 0;\n }\n makeEmpty() {\n this.center.set(0, 0, 0);\n this.radius = -1;\n return this;\n }\n containsPoint(point) {\n return point.distanceToSquared(this.center) <= this.radius * this.radius;\n }\n distanceToPoint(point) {\n return point.distanceTo(this.center) - this.radius;\n }\n intersectsSphere(sphere) {\n const radiusSum = this.radius + sphere.radius;\n return sphere.center.distanceToSquared(this.center) <= radiusSum * radiusSum;\n }\n intersectsBox(box) {\n return box.intersectsSphere(this);\n }\n intersectsPlane(plane) {\n return Math.abs(plane.distanceToPoint(this.center)) <= this.radius;\n }\n clampPoint(point, target) {\n const deltaLengthSq = this.center.distanceToSquared(point);\n target.copy(point);\n if (deltaLengthSq > this.radius * this.radius) {\n target.sub(this.center).normalize();\n target.multiplyScalar(this.radius).add(this.center);\n }\n return target;\n }\n getBoundingBox(target) {\n if (this.isEmpty()) {\n target.makeEmpty();\n return target;\n }\n target.set(this.center, this.center);\n target.expandByScalar(this.radius);\n return target;\n }\n applyMatrix4(matrix) {\n this.center.applyMatrix4(matrix);\n this.radius = this.radius * matrix.getMaxScaleOnAxis();\n return this;\n }\n translate(offset) {\n this.center.add(offset);\n return this;\n }\n expandByPoint(point) {\n if (this.isEmpty()) {\n this.center.copy(point);\n this.radius = 0;\n return this;\n }\n _v1$6.subVectors(point, this.center);\n const lengthSq = _v1$6.lengthSq();\n if (lengthSq > this.radius * this.radius) {\n const length = Math.sqrt(lengthSq);\n const delta = (length - this.radius) * 0.5;\n this.center.addScaledVector(_v1$6, delta / length);\n this.radius += delta;\n }\n return this;\n }\n union(sphere) {\n if (sphere.isEmpty()) {\n return this;\n }\n if (this.isEmpty()) {\n this.copy(sphere);\n return this;\n }\n if (this.center.equals(sphere.center) === true) {\n this.radius = Math.max(this.radius, sphere.radius);\n } else {\n _v2$3.subVectors(sphere.center, this.center).setLength(sphere.radius);\n this.expandByPoint(_v1$6.copy(sphere.center).add(_v2$3));\n this.expandByPoint(_v1$6.copy(sphere.center).sub(_v2$3));\n }\n return this;\n }\n equals(sphere) {\n return sphere.center.equals(this.center) && sphere.radius === this.radius;\n }\n clone() {\n return new this.constructor().copy(this);\n }\n }\n const _vector$a = /* @__PURE__ */ new Vector3();\n const _segCenter = /* @__PURE__ */ new Vector3();\n const _segDir = /* @__PURE__ */ new Vector3();\n const _diff = /* @__PURE__ */ new Vector3();\n const _edge1 = /* @__PURE__ */ new Vector3();\n const _edge2 = /* @__PURE__ */ new Vector3();\n const _normal$1 = /* @__PURE__ */ new Vector3();\n class Ray {\n constructor(origin = new Vector3(), direction = new Vector3(0, 0, -1)) {\n this.origin = origin;\n this.direction = direction;\n }\n set(origin, direction) {\n this.origin.copy(origin);\n this.direction.copy(direction);\n return this;\n }\n copy(ray) {\n this.origin.copy(ray.origin);\n this.direction.copy(ray.direction);\n return this;\n }\n at(t, target) {\n return target.copy(this.origin).addScaledVector(this.direction, t);\n }\n lookAt(v) {\n this.direction.copy(v).sub(this.origin).normalize();\n return this;\n }\n recast(t) {\n this.origin.copy(this.at(t, _vector$a));\n return this;\n }\n closestPointToPoint(point, target) {\n target.subVectors(point, this.origin);\n const directionDistance = target.dot(this.direction);\n if (directionDistance < 0) {\n return target.copy(this.origin);\n }\n return target.copy(this.origin).addScaledVector(this.direction, directionDistance);\n }\n distanceToPoint(point) {\n return Math.sqrt(this.distanceSqToPoint(point));\n }\n distanceSqToPoint(point) {\n const directionDistance = _vector$a.subVectors(point, this.origin).dot(this.direction);\n if (directionDistance < 0) {\n return this.origin.distanceToSquared(point);\n }\n _vector$a.copy(this.origin).addScaledVector(this.direction, directionDistance);\n return _vector$a.distanceToSquared(point);\n }\n distanceSqToSegment(v0, v1, optionalPointOnRay, optionalPointOnSegment) {\n _segCenter.copy(v0).add(v1).multiplyScalar(0.5);\n _segDir.copy(v1).sub(v0).normalize();\n _diff.copy(this.origin).sub(_segCenter);\n const segExtent = v0.distanceTo(v1) * 0.5;\n const a01 = -this.direction.dot(_segDir);\n const b0 = _diff.dot(this.direction);\n const b1 = -_diff.dot(_segDir);\n const c = _diff.lengthSq();\n const det = Math.abs(1 - a01 * a01);\n let s0, s1, sqrDist, extDet;\n if (det > 0) {\n s0 = a01 * b1 - b0;\n s1 = a01 * b0 - b1;\n extDet = segExtent * det;\n if (s0 >= 0) {\n if (s1 >= -extDet) {\n if (s1 <= extDet) {\n const invDet = 1 / det;\n s0 *= invDet;\n s1 *= invDet;\n sqrDist = s0 * (s0 + a01 * s1 + 2 * b0) + s1 * (a01 * s0 + s1 + 2 * b1) + c;\n } else {\n s1 = segExtent;\n s0 = Math.max(0, -(a01 * s1 + b0));\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n }\n } else {\n s1 = -segExtent;\n s0 = Math.max(0, -(a01 * s1 + b0));\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n }\n } else {\n if (s1 <= -extDet) {\n s0 = Math.max(0, -(-a01 * segExtent + b0));\n s1 = s0 > 0 ? -segExtent : Math.min(Math.max(-segExtent, -b1), segExtent);\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n } else if (s1 <= extDet) {\n s0 = 0;\n s1 = Math.min(Math.max(-segExtent, -b1), segExtent);\n sqrDist = s1 * (s1 + 2 * b1) + c;\n } else {\n s0 = Math.max(0, -(a01 * segExtent + b0));\n s1 = s0 > 0 ? segExtent : Math.min(Math.max(-segExtent, -b1), segExtent);\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n }\n }\n } else {\n s1 = a01 > 0 ? -segExtent : segExtent;\n s0 = Math.max(0, -(a01 * s1 + b0));\n sqrDist = -s0 * s0 + s1 * (s1 + 2 * b1) + c;\n }\n if (optionalPointOnRay) {\n optionalPointOnRay.copy(this.origin).addScaledVector(this.direction, s0);\n }\n if (optionalPointOnSegment) {\n optionalPointOnSegment.copy(_segCenter).addScaledVector(_segDir, s1);\n }\n return sqrDist;\n }\n intersectSphere(sphere, target) {\n _vector$a.subVectors(sphere.center, this.origin);\n const tca = _vector$a.dot(this.direction);\n const d2 = _vector$a.dot(_vector$a) - tca * tca;\n const radius2 = sphere.radius * sphere.radius;\n if (d2 > radius2) return null;\n const thc = Math.sqrt(radius2 - d2);\n const t0 = tca - thc;\n const t1 = tca + thc;\n if (t1 < 0) return null;\n if (t0 < 0) return this.at(t1, target);\n return this.at(t0, target);\n }\n intersectsSphere(sphere) {\n return this.distanceSqToPoint(sphere.center) <= sphere.radius * sphere.radius;\n }\n distanceToPlane(plane) {\n const denominator = plane.normal.dot(this.direction);\n if (denominator === 0) {\n if (plane.distanceToPoint(this.origin) === 0) {\n return 0;\n }\n return null;\n }\n const t = -(this.origin.dot(plane.normal) + plane.constant) / denominator;\n return t >= 0 ? t : null;\n }\n intersectPlane(plane, target) {\n const t = this.distanceToPlane(plane);\n if (t === null) {\n return null;\n }\n return this.at(t, target);\n }\n intersectsPlane(plane) {\n const distToPoint = plane.distanceToPoint(this.origin);\n if (distToPoint === 0) {\n return true;\n }\n const denominator = plane.normal.dot(this.direction);\n if (denominator * distToPoint < 0) {\n return true;\n }\n return false;\n }\n intersectBox(box, target) {\n let tmin, tmax, tymin, tymax, tzmin, tzmax;\n const invdirx = 1 / this.direction.x, invdiry = 1 / this.direction.y, invdirz = 1 / this.direction.z;\n const origin = this.origin;\n if (invdirx >= 0) {\n tmin = (box.min.x - origin.x) * invdirx;\n tmax = (box.max.x - origin.x) * invdirx;\n } else {\n tmin = (box.max.x - origin.x) * invdirx;\n tmax = (box.min.x - origin.x) * invdirx;\n }\n if (invdiry >= 0) {\n tymin = (box.min.y - origin.y) * invdiry;\n tymax = (box.max.y - origin.y) * invdiry;\n } else {\n tymin = (box.max.y - origin.y) * invdiry;\n tymax = (box.min.y - origin.y) * invdiry;\n }\n if (tmin > tymax || tymin > tmax) return null;\n if (tymin > tmin || isNaN(tmin)) tmin = tymin;\n if (tymax < tmax || isNaN(tmax)) tmax = tymax;\n if (invdirz >= 0) {\n tzmin = (box.min.z - origin.z) * invdirz;\n tzmax = (box.max.z - origin.z) * invdirz;\n } else {\n tzmin = (box.max.z - origin.z) * invdirz;\n tzmax = (box.min.z - origin.z) * invdirz;\n }\n if (tmin > tzmax || tzmin > tmax) return null;\n if (tzmin > tmin || tmin !== tmin) tmin = tzmin;\n if (tzmax < tmax || tmax !== tmax) tmax = tzmax;\n if (tmax < 0) return null;\n return this.at(tmin >= 0 ? tmin : tmax, target);\n }\n intersectsBox(box) {\n return this.intersectBox(box, _vector$a) !== null;\n }\n intersectTriangle(a, b, c, backfaceCulling, target) {\n _edge1.subVectors(b, a);\n _edge2.subVectors(c, a);\n _normal$1.crossVectors(_edge1, _edge2);\n let DdN = this.direction.dot(_normal$1);\n let sign;\n if (DdN > 0) {\n if (backfaceCulling) return null;\n sign = 1;\n } else if (DdN < 0) {\n sign = -1;\n DdN = -DdN;\n } else {\n return null;\n }\n _diff.subVectors(this.origin, a);\n const DdQxE2 = sign * this.direction.dot(_edge2.crossVectors(_diff, _edge2));\n if (DdQxE2 < 0) {\n return null;\n }\n const DdE1xQ = sign * this.direction.dot(_edge1.cross(_diff));\n if (DdE1xQ < 0) {\n return null;\n }\n if (DdQxE2 + DdE1xQ > DdN) {\n return null;\n }\n const QdN = -sign * _diff.dot(_normal$1);\n if (QdN < 0) {\n return null;\n }\n return this.at(QdN / DdN, target);\n }\n applyMatrix4(matrix4) {\n this.origin.applyMatrix4(matrix4);\n this.direction.transformDirection(matrix4);\n return this;\n }\n equals(ray) {\n return ray.origin.equals(this.origin) && ray.direction.equals(this.direction);\n }\n clone() {\n return new this.constructor().copy(this);\n }\n }\n class Matrix4 {\n constructor(n11, n12, n13, n14, n21, n22, n23, n24, n31, n32, n33, n34, n41, n42, n43, n44) {\n Matrix4.prototype.isMatrix4 = true;\n this.elements = [\n 1,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1\n ];\n if (n11 !== void 0) {\n this.set(n11, n12, n13, n14, n21, n22, n23, n24, n31, n32, n33, n34, n41, n42, n43, n44);\n }\n }\n set(n11, n12, n13, n14, n21, n22, n23, n24, n31, n32, n33, n34, n41, n42, n43, n44) {\n const te = this.elements;\n te[0] = n11;\n te[4] = n12;\n te[8] = n13;\n te[12] = n14;\n te[1] = n21;\n te[5] = n22;\n te[9] = n23;\n te[13] = n24;\n te[2] = n31;\n te[6] = n32;\n te[10] = n33;\n te[14] = n34;\n te[3] = n41;\n te[7] = n42;\n te[11] = n43;\n te[15] = n44;\n return this;\n }\n identity() {\n this.set(\n 1,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n clone() {\n return new Matrix4().fromArray(this.elements);\n }\n copy(m) {\n const te = this.elements;\n const me = m.elements;\n te[0] = me[0];\n te[1] = me[1];\n te[2] = me[2];\n te[3] = me[3];\n te[4] = me[4];\n te[5] = me[5];\n te[6] = me[6];\n te[7] = me[7];\n te[8] = me[8];\n te[9] = me[9];\n te[10] = me[10];\n te[11] = me[11];\n te[12] = me[12];\n te[13] = me[13];\n te[14] = me[14];\n te[15] = me[15];\n return this;\n }\n copyPosition(m) {\n const te = this.elements, me = m.elements;\n te[12] = me[12];\n te[13] = me[13];\n te[14] = me[14];\n return this;\n }\n setFromMatrix3(m) {\n const me = m.elements;\n this.set(\n me[0],\n me[3],\n me[6],\n 0,\n me[1],\n me[4],\n me[7],\n 0,\n me[2],\n me[5],\n me[8],\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n extractBasis(xAxis, yAxis, zAxis) {\n xAxis.setFromMatrixColumn(this, 0);\n yAxis.setFromMatrixColumn(this, 1);\n zAxis.setFromMatrixColumn(this, 2);\n return this;\n }\n makeBasis(xAxis, yAxis, zAxis) {\n this.set(\n xAxis.x,\n yAxis.x,\n zAxis.x,\n 0,\n xAxis.y,\n yAxis.y,\n zAxis.y,\n 0,\n xAxis.z,\n yAxis.z,\n zAxis.z,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n extractRotation(m) {\n const te = this.elements;\n const me = m.elements;\n const scaleX = 1 / _v1$5.setFromMatrixColumn(m, 0).length();\n const scaleY = 1 / _v1$5.setFromMatrixColumn(m, 1).length();\n const scaleZ = 1 / _v1$5.setFromMatrixColumn(m, 2).length();\n te[0] = me[0] * scaleX;\n te[1] = me[1] * scaleX;\n te[2] = me[2] * scaleX;\n te[3] = 0;\n te[4] = me[4] * scaleY;\n te[5] = me[5] * scaleY;\n te[6] = me[6] * scaleY;\n te[7] = 0;\n te[8] = me[8] * scaleZ;\n te[9] = me[9] * scaleZ;\n te[10] = me[10] * scaleZ;\n te[11] = 0;\n te[12] = 0;\n te[13] = 0;\n te[14] = 0;\n te[15] = 1;\n return this;\n }\n makeRotationFromEuler(euler) {\n const te = this.elements;\n const x2 = euler.x, y = euler.y, z = euler.z;\n const a = Math.cos(x2), b = Math.sin(x2);\n const c = Math.cos(y), d = Math.sin(y);\n const e = Math.cos(z), f = Math.sin(z);\n if (euler.order === "XYZ") {\n const ae = a * e, af = a * f, be = b * e, bf = b * f;\n te[0] = c * e;\n te[4] = -c * f;\n te[8] = d;\n te[1] = af + be * d;\n te[5] = ae - bf * d;\n te[9] = -b * c;\n te[2] = bf - ae * d;\n te[6] = be + af * d;\n te[10] = a * c;\n } else if (euler.order === "YXZ") {\n const ce = c * e, cf = c * f, de = d * e, df = d * f;\n te[0] = ce + df * b;\n te[4] = de * b - cf;\n te[8] = a * d;\n te[1] = a * f;\n te[5] = a * e;\n te[9] = -b;\n te[2] = cf * b - de;\n te[6] = df + ce * b;\n te[10] = a * c;\n } else if (euler.order === "ZXY") {\n const ce = c * e, cf = c * f, de = d * e, df = d * f;\n te[0] = ce - df * b;\n te[4] = -a * f;\n te[8] = de + cf * b;\n te[1] = cf + de * b;\n te[5] = a * e;\n te[9] = df - ce * b;\n te[2] = -a * d;\n te[6] = b;\n te[10] = a * c;\n } else if (euler.order === "ZYX") {\n const ae = a * e, af = a * f, be = b * e, bf = b * f;\n te[0] = c * e;\n te[4] = be * d - af;\n te[8] = ae * d + bf;\n te[1] = c * f;\n te[5] = bf * d + ae;\n te[9] = af * d - be;\n te[2] = -d;\n te[6] = b * c;\n te[10] = a * c;\n } else if (euler.order === "YZX") {\n const ac = a * c, ad = a * d, bc = b * c, bd = b * d;\n te[0] = c * e;\n te[4] = bd - ac * f;\n te[8] = bc * f + ad;\n te[1] = f;\n te[5] = a * e;\n te[9] = -b * e;\n te[2] = -d * e;\n te[6] = ad * f + bc;\n te[10] = ac - bd * f;\n } else if (euler.order === "XZY") {\n const ac = a * c, ad = a * d, bc = b * c, bd = b * d;\n te[0] = c * e;\n te[4] = -f;\n te[8] = d * e;\n te[1] = ac * f + bd;\n te[5] = a * e;\n te[9] = ad * f - bc;\n te[2] = bc * f - ad;\n te[6] = b * e;\n te[10] = bd * f + ac;\n }\n te[3] = 0;\n te[7] = 0;\n te[11] = 0;\n te[12] = 0;\n te[13] = 0;\n te[14] = 0;\n te[15] = 1;\n return this;\n }\n makeRotationFromQuaternion(q) {\n return this.compose(_zero, q, _one);\n }\n lookAt(eye, target, up) {\n const te = this.elements;\n _z.subVectors(eye, target);\n if (_z.lengthSq() === 0) {\n _z.z = 1;\n }\n _z.normalize();\n _x.crossVectors(up, _z);\n if (_x.lengthSq() === 0) {\n if (Math.abs(up.z) === 1) {\n _z.x += 1e-4;\n } else {\n _z.z += 1e-4;\n }\n _z.normalize();\n _x.crossVectors(up, _z);\n }\n _x.normalize();\n _y.crossVectors(_z, _x);\n te[0] = _x.x;\n te[4] = _y.x;\n te[8] = _z.x;\n te[1] = _x.y;\n te[5] = _y.y;\n te[9] = _z.y;\n te[2] = _x.z;\n te[6] = _y.z;\n te[10] = _z.z;\n return this;\n }\n multiply(m) {\n return this.multiplyMatrices(this, m);\n }\n premultiply(m) {\n return this.multiplyMatrices(m, this);\n }\n multiplyMatrices(a, b) {\n const ae = a.elements;\n const be = b.elements;\n const te = this.elements;\n const a11 = ae[0], a12 = ae[4], a13 = ae[8], a14 = ae[12];\n const a21 = ae[1], a22 = ae[5], a23 = ae[9], a24 = ae[13];\n const a31 = ae[2], a32 = ae[6], a33 = ae[10], a34 = ae[14];\n const a41 = ae[3], a42 = ae[7], a43 = ae[11], a44 = ae[15];\n const b11 = be[0], b12 = be[4], b13 = be[8], b14 = be[12];\n const b21 = be[1], b22 = be[5], b23 = be[9], b24 = be[13];\n const b31 = be[2], b32 = be[6], b33 = be[10], b34 = be[14];\n const b41 = be[3], b42 = be[7], b43 = be[11], b44 = be[15];\n te[0] = a11 * b11 + a12 * b21 + a13 * b31 + a14 * b41;\n te[4] = a11 * b12 + a12 * b22 + a13 * b32 + a14 * b42;\n te[8] = a11 * b13 + a12 * b23 + a13 * b33 + a14 * b43;\n te[12] = a11 * b14 + a12 * b24 + a13 * b34 + a14 * b44;\n te[1] = a21 * b11 + a22 * b21 + a23 * b31 + a24 * b41;\n te[5] = a21 * b12 + a22 * b22 + a23 * b32 + a24 * b42;\n te[9] = a21 * b13 + a22 * b23 + a23 * b33 + a24 * b43;\n te[13] = a21 * b14 + a22 * b24 + a23 * b34 + a24 * b44;\n te[2] = a31 * b11 + a32 * b21 + a33 * b31 + a34 * b41;\n te[6] = a31 * b12 + a32 * b22 + a33 * b32 + a34 * b42;\n te[10] = a31 * b13 + a32 * b23 + a33 * b33 + a34 * b43;\n te[14] = a31 * b14 + a32 * b24 + a33 * b34 + a34 * b44;\n te[3] = a41 * b11 + a42 * b21 + a43 * b31 + a44 * b41;\n te[7] = a41 * b12 + a42 * b22 + a43 * b32 + a44 * b42;\n te[11] = a41 * b13 + a42 * b23 + a43 * b33 + a44 * b43;\n te[15] = a41 * b14 + a42 * b24 + a43 * b34 + a44 * b44;\n return this;\n }\n multiplyScalar(s) {\n const te = this.elements;\n te[0] *= s;\n te[4] *= s;\n te[8] *= s;\n te[12] *= s;\n te[1] *= s;\n te[5] *= s;\n te[9] *= s;\n te[13] *= s;\n te[2] *= s;\n te[6] *= s;\n te[10] *= s;\n te[14] *= s;\n te[3] *= s;\n te[7] *= s;\n te[11] *= s;\n te[15] *= s;\n return this;\n }\n determinant() {\n const te = this.elements;\n const n11 = te[0], n12 = te[4], n13 = te[8], n14 = te[12];\n const n21 = te[1], n22 = te[5], n23 = te[9], n24 = te[13];\n const n31 = te[2], n32 = te[6], n33 = te[10], n34 = te[14];\n const n41 = te[3], n42 = te[7], n43 = te[11], n44 = te[15];\n return n41 * (+n14 * n23 * n32 - n13 * n24 * n32 - n14 * n22 * n33 + n12 * n24 * n33 + n13 * n22 * n34 - n12 * n23 * n34) + n42 * (+n11 * n23 * n34 - n11 * n24 * n33 + n14 * n21 * n33 - n13 * n21 * n34 + n13 * n24 * n31 - n14 * n23 * n31) + n43 * (+n11 * n24 * n32 - n11 * n22 * n34 - n14 * n21 * n32 + n12 * n21 * n34 + n14 * n22 * n31 - n12 * n24 * n31) + n44 * (-n13 * n22 * n31 - n11 * n23 * n32 + n11 * n22 * n33 + n13 * n21 * n32 - n12 * n21 * n33 + n12 * n23 * n31);\n }\n transpose() {\n const te = this.elements;\n let tmp;\n tmp = te[1];\n te[1] = te[4];\n te[4] = tmp;\n tmp = te[2];\n te[2] = te[8];\n te[8] = tmp;\n tmp = te[6];\n te[6] = te[9];\n te[9] = tmp;\n tmp = te[3];\n te[3] = te[12];\n te[12] = tmp;\n tmp = te[7];\n te[7] = te[13];\n te[13] = tmp;\n tmp = te[11];\n te[11] = te[14];\n te[14] = tmp;\n return this;\n }\n setPosition(x2, y, z) {\n const te = this.elements;\n if (x2.isVector3) {\n te[12] = x2.x;\n te[13] = x2.y;\n te[14] = x2.z;\n } else {\n te[12] = x2;\n te[13] = y;\n te[14] = z;\n }\n return this;\n }\n invert() {\n const te = this.elements, n11 = te[0], n21 = te[1], n31 = te[2], n41 = te[3], n12 = te[4], n22 = te[5], n32 = te[6], n42 = te[7], n13 = te[8], n23 = te[9], n33 = te[10], n43 = te[11], n14 = te[12], n24 = te[13], n34 = te[14], n44 = te[15], t11 = n23 * n34 * n42 - n24 * n33 * n42 + n24 * n32 * n43 - n22 * n34 * n43 - n23 * n32 * n44 + n22 * n33 * n44, t12 = n14 * n33 * n42 - n13 * n34 * n42 - n14 * n32 * n43 + n12 * n34 * n43 + n13 * n32 * n44 - n12 * n33 * n44, t13 = n13 * n24 * n42 - n14 * n23 * n42 + n14 * n22 * n43 - n12 * n24 * n43 - n13 * n22 * n44 + n12 * n23 * n44, t14 = n14 * n23 * n32 - n13 * n24 * n32 - n14 * n22 * n33 + n12 * n24 * n33 + n13 * n22 * n34 - n12 * n23 * n34;\n const det = n11 * t11 + n21 * t12 + n31 * t13 + n41 * t14;\n if (det === 0) return this.set(0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0);\n const detInv = 1 / det;\n te[0] = t11 * detInv;\n te[1] = (n24 * n33 * n41 - n23 * n34 * n41 - n24 * n31 * n43 + n21 * n34 * n43 + n23 * n31 * n44 - n21 * n33 * n44) * detInv;\n te[2] = (n22 * n34 * n41 - n24 * n32 * n41 + n24 * n31 * n42 - n21 * n34 * n42 - n22 * n31 * n44 + n21 * n32 * n44) * detInv;\n te[3] = (n23 * n32 * n41 - n22 * n33 * n41 - n23 * n31 * n42 + n21 * n33 * n42 + n22 * n31 * n43 - n21 * n32 * n43) * detInv;\n te[4] = t12 * detInv;\n te[5] = (n13 * n34 * n41 - n14 * n33 * n41 + n14 * n31 * n43 - n11 * n34 * n43 - n13 * n31 * n44 + n11 * n33 * n44) * detInv;\n te[6] = (n14 * n32 * n41 - n12 * n34 * n41 - n14 * n31 * n42 + n11 * n34 * n42 + n12 * n31 * n44 - n11 * n32 * n44) * detInv;\n te[7] = (n12 * n33 * n41 - n13 * n32 * n41 + n13 * n31 * n42 - n11 * n33 * n42 - n12 * n31 * n43 + n11 * n32 * n43) * detInv;\n te[8] = t13 * detInv;\n te[9] = (n14 * n23 * n41 - n13 * n24 * n41 - n14 * n21 * n43 + n11 * n24 * n43 + n13 * n21 * n44 - n11 * n23 * n44) * detInv;\n te[10] = (n12 * n24 * n41 - n14 * n22 * n41 + n14 * n21 * n42 - n11 * n24 * n42 - n12 * n21 * n44 + n11 * n22 * n44) * detInv;\n te[11] = (n13 * n22 * n41 - n12 * n23 * n41 - n13 * n21 * n42 + n11 * n23 * n42 + n12 * n21 * n43 - n11 * n22 * n43) * detInv;\n te[12] = t14 * detInv;\n te[13] = (n13 * n24 * n31 - n14 * n23 * n31 + n14 * n21 * n33 - n11 * n24 * n33 - n13 * n21 * n34 + n11 * n23 * n34) * detInv;\n te[14] = (n14 * n22 * n31 - n12 * n24 * n31 - n14 * n21 * n32 + n11 * n24 * n32 + n12 * n21 * n34 - n11 * n22 * n34) * detInv;\n te[15] = (n12 * n23 * n31 - n13 * n22 * n31 + n13 * n21 * n32 - n11 * n23 * n32 - n12 * n21 * n33 + n11 * n22 * n33) * detInv;\n return this;\n }\n scale(v) {\n const te = this.elements;\n const x2 = v.x, y = v.y, z = v.z;\n te[0] *= x2;\n te[4] *= y;\n te[8] *= z;\n te[1] *= x2;\n te[5] *= y;\n te[9] *= z;\n te[2] *= x2;\n te[6] *= y;\n te[10] *= z;\n te[3] *= x2;\n te[7] *= y;\n te[11] *= z;\n return this;\n }\n getMaxScaleOnAxis() {\n const te = this.elements;\n const scaleXSq = te[0] * te[0] + te[1] * te[1] + te[2] * te[2];\n const scaleYSq = te[4] * te[4] + te[5] * te[5] + te[6] * te[6];\n const scaleZSq = te[8] * te[8] + te[9] * te[9] + te[10] * te[10];\n return Math.sqrt(Math.max(scaleXSq, scaleYSq, scaleZSq));\n }\n makeTranslation(x2, y, z) {\n if (x2.isVector3) {\n this.set(\n 1,\n 0,\n 0,\n x2.x,\n 0,\n 1,\n 0,\n x2.y,\n 0,\n 0,\n 1,\n x2.z,\n 0,\n 0,\n 0,\n 1\n );\n } else {\n this.set(\n 1,\n 0,\n 0,\n x2,\n 0,\n 1,\n 0,\n y,\n 0,\n 0,\n 1,\n z,\n 0,\n 0,\n 0,\n 1\n );\n }\n return this;\n }\n makeRotationX(theta) {\n const c = Math.cos(theta), s = Math.sin(theta);\n this.set(\n 1,\n 0,\n 0,\n 0,\n 0,\n c,\n -s,\n 0,\n 0,\n s,\n c,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeRotationY(theta) {\n const c = Math.cos(theta), s = Math.sin(theta);\n this.set(\n c,\n 0,\n s,\n 0,\n 0,\n 1,\n 0,\n 0,\n -s,\n 0,\n c,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeRotationZ(theta) {\n const c = Math.cos(theta), s = Math.sin(theta);\n this.set(\n c,\n -s,\n 0,\n 0,\n s,\n c,\n 0,\n 0,\n 0,\n 0,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeRotationAxis(axis, angle) {\n const c = Math.cos(angle);\n const s = Math.sin(angle);\n const t = 1 - c;\n const x2 = axis.x, y = axis.y, z = axis.z;\n const tx = t * x2, ty = t * y;\n this.set(\n tx * x2 + c,\n tx * y - s * z,\n tx * z + s * y,\n 0,\n tx * y + s * z,\n ty * y + c,\n ty * z - s * x2,\n 0,\n tx * z - s * y,\n ty * z + s * x2,\n t * z * z + c,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeScale(x2, y, z) {\n this.set(\n x2,\n 0,\n 0,\n 0,\n 0,\n y,\n 0,\n 0,\n 0,\n 0,\n z,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n makeShear(xy, xz, yx, yz, zx, zy) {\n this.set(\n 1,\n yx,\n zx,\n 0,\n xy,\n 1,\n zy,\n 0,\n xz,\n yz,\n 1,\n 0,\n 0,\n 0,\n 0,\n 1\n );\n return this;\n }\n compose(position, quaternion, scale) {\n const te = this.elements;\n const x2 = quaternion._x, y = quaternion._y, z = quaternion._z, w = quaternion._w;\n const x22 = x2 + x2, y2 = y + y, z2 = z + z;\n const xx = x2 * x22, xy = x2 * y2, xz = x2 * z2;\n const yy = y * y2, yz = y * z2, zz = z * z2;\n const wx = w * x22, wy = w * y2, wz = w * z2;\n const sx = scale.x, sy = scale.y, sz = scale.z;\n te[0] = (1 - (yy + zz)) * sx;\n te[1] = (xy + wz) * sx;\n te[2] = (xz - wy) * sx;\n te[3] = 0;\n te[4] = (xy - wz) * sy;\n te[5] = (1 - (xx + zz)) * sy;\n te[6] = (yz + wx) * sy;\n te[7] = 0;\n te[8] = (xz + wy) * sz;\n te[9] = (yz - wx) * sz;\n te[10] = (1 - (xx + yy)) * sz;\n te[11] = 0;\n te[12] = position.x;\n te[13] = position.y;\n te[14] = position.z;\n te[15] = 1;\n return this;\n }\n decompose(position, quaternion, scale) {\n const te = this.elements;\n let sx = _v1$5.set(te[0], te[1], te[2]).length();\n const sy = _v1$5.set(te[4], te[5], te[6]).length();\n const sz = _v1$5.set(te[8], te[9], te[10]).length();\n const det = this.determinant();\n if (det < 0) sx = -sx;\n position.x = te[12];\n position.y = te[13];\n position.z = te[14];\n _m1$2.copy(this);\n const invSX = 1 / sx;\n const invSY = 1 / sy;\n const invSZ = 1 / sz;\n _m1$2.elements[0] *= invSX;\n _m1$2.elements[1] *= invSX;\n _m1$2.elements[2] *= invSX;\n _m1$2.elements[4] *= invSY;\n _m1$2.elements[5] *= invSY;\n _m1$2.elements[6] *= invSY;\n _m1$2.elements[8] *= invSZ;\n _m1$2.elements[9] *= invSZ;\n _m1$2.elements[10] *= invSZ;\n quaternion.setFromRotationMatrix(_m1$2);\n scale.x = sx;\n scale.y = sy;\n scale.z = sz;\n return this;\n }\n makePerspective(left, right, top, bottom, near, far, coordinateSystem = WebGLCoordinateSystem) {\n const te = this.elements;\n const x2 = 2 * near / (right - left);\n const y = 2 * near / (top - bottom);\n const a = (right + left) / (right - left);\n const b = (top + bottom) / (top - bottom);\n let c, d;\n if (coordinateSystem === WebGLCoordinateSystem) {\n c = -(far + near) / (far - near);\n d = -2 * far * near / (far - near);\n } else if (coordinateSystem === WebGPUCoordinateSystem) {\n c = -far / (far - near);\n d = -far * near / (far - near);\n } else {\n throw new Error("THREE.Matrix4.makePerspective(): Invalid coordinate system: " + coordinateSystem);\n }\n te[0] = x2;\n te[4] = 0;\n te[8] = a;\n te[12] = 0;\n te[1] = 0;\n te[5] = y;\n te[9] = b;\n te[13] = 0;\n te[2] = 0;\n te[6] = 0;\n te[10] = c;\n te[14] = d;\n te[3] = 0;\n te[7] = 0;\n te[11] = -1;\n te[15] = 0;\n return this;\n }\n makeOrthographic(left, right, top, bottom, near, far, coordinateSystem = WebGLCoordinateSystem) {\n const te = this.elements;\n const w = 1 / (right - left);\n const h = 1 / (top - bottom);\n const p = 1 / (far - near);\n const x2 = (right + left) * w;\n const y = (top + bottom) * h;\n let z, zInv;\n if (coordinateSystem === WebGLCoordinateSystem) {\n z = (far + near) * p;\n zInv = -2 * p;\n } else if (coordinateSystem === WebGPUCoordinateSystem) {\n z = near * p;\n zInv = -1 * p;\n } else {\n throw new Error("THREE.Matrix4.makeOrthographic(): Invalid coordinate system: " + coordinateSystem);\n }\n te[0] = 2 * w;\n te[4] = 0;\n te[8] = 0;\n te[12] = -x2;\n te[1] = 0;\n te[5] = 2 * h;\n te[9] = 0;\n te[13] = -y;\n te[2] = 0;\n te[6] = 0;\n te[10] = zInv;\n te[14] = -z;\n te[3] = 0;\n te[7] = 0;\n te[11] = 0;\n te[15] = 1;\n return this;\n }\n equals(matrix) {\n const te = this.elements;\n const me = matrix.elements;\n for (let i2 = 0; i2 < 16; i2++) {\n if (te[i2] !== me[i2]) return false;\n }\n return true;\n }\n fromArray(array, offset = 0) {\n for (let i2 = 0; i2 < 16; i2++) {\n this.elements[i2] = array[i2 + offset];\n }\n return this;\n }\n toArray(array = [], offset = 0) {\n const te = this.elements;\n array[offset] = te[0];\n array[offset + 1] = te[1];\n array[offset + 2] = te[2];\n array[offset + 3] = te[3];\n array[offset + 4] = te[4];\n array[offset + 5] = te[5];\n array[offset + 6] = te[6];\n array[offset + 7] = te[7];\n array[offset + 8] = te[8];\n array[offset + 9] = te[9];\n array[offset + 10] = te[10];\n array[offset + 11] = te[11];\n array[offset + 12] = te[12];\n array[offset + 13] = te[13];\n array[offset + 14] = te[14];\n array[offset + 15] = te[15];\n return array;\n }\n }\n const _v1$5 = /* @__PURE__ */ new Vector3();\n const _m1$2 = /* @__PURE__ */ new Matrix4();\n const _zero = /* @__PURE__ */ new Vector3(0, 0, 0);\n const _one = /* @__PURE__ */ new Vector3(1, 1, 1);\n const _x = /* @__PURE__ */ new Vector3();\n const _y = /* @__PURE__ */ new Vector3();\n const _z = /* @__PURE__ */ new Vector3();\n const _matrix$2 = /* @__PURE__ */ new Matrix4();\n const _quaternion$3 = /* @__PURE__ */ new Quaternion();\n class Euler {\n constructor(x2 = 0, y = 0, z = 0, order = Euler.DEFAULT_ORDER) {\n this.isEuler = true;\n this._x = x2;\n this._y = y;\n this._z = z;\n this._order = order;\n }\n get x() {\n return this._x;\n }\n set x(value) {\n this._x = value;\n this._onChangeCallback();\n }\n get y() {\n return this._y;\n }\n set y(value) {\n this._y = value;\n this._onChangeCallback();\n }\n get z() {\n return this._z;\n }\n set z(value) {\n this._z = value;\n this._onChangeCallback();\n }\n get order() {\n return this._order;\n }\n set order(value) {\n this._order = value;\n this._onChangeCallback();\n }\n set(x2, y, z, order = this._order) {\n this._x = x2;\n this._y = y;\n this._z = z;\n this._order = order;\n this._onChangeCallback();\n return this;\n }\n clone() {\n return new this.constructor(this._x, this._y, this._z, this._order);\n }\n copy(euler) {\n this._x = euler._x;\n this._y = euler._y;\n this._z = euler._z;\n this._order = euler._order;\n this._onChangeCallback();\n return this;\n }\n setFromRotationMatrix(m, order = this._order, update = true) {\n const te = m.elements;\n const m11 = te[0], m12 = te[4], m13 = te[8];\n const m21 = te[1], m22 = te[5], m23 = te[9];\n const m31 = te[2], m32 = te[6], m33 = te[10];\n switch (order) {\n case "XYZ":\n this._y = Math.asin(clamp(m13, -1, 1));\n if (Math.abs(m13) < 0.9999999) {\n this._x = Math.atan2(-m23, m33);\n this._z = Math.atan2(-m12, m11);\n } else {\n this._x = Math.atan2(m32, m22);\n this._z = 0;\n }\n break;\n case "YXZ":\n this._x = Math.asin(-clamp(m23, -1, 1));\n if (Math.abs(m23) < 0.9999999) {\n this._y = Math.atan2(m13, m33);\n this._z = Math.atan2(m21, m22);\n } else {\n this._y = Math.atan2(-m31, m11);\n this._z = 0;\n }\n break;\n case "ZXY":\n this._x = Math.asin(clamp(m32, -1, 1));\n if (Math.abs(m32) < 0.9999999) {\n this._y = Math.atan2(-m31, m33);\n this._z = Math.atan2(-m12, m22);\n } else {\n this._y = 0;\n this._z = Math.atan2(m21, m11);\n }\n break;\n case "ZYX":\n this._y = Math.asin(-clamp(m31, -1, 1));\n if (Math.abs(m31) < 0.9999999) {\n this._x = Math.atan2(m32, m33);\n this._z = Math.atan2(m21, m11);\n } else {\n this._x = 0;\n this._z = Math.atan2(-m12, m22);\n }\n break;\n case "YZX":\n this._z = Math.asin(clamp(m21, -1, 1));\n if (Math.abs(m21) < 0.9999999) {\n this._x = Math.atan2(-m23, m22);\n this._y = Math.atan2(-m31, m11);\n } else {\n this._x = 0;\n this._y = Math.atan2(m13, m33);\n }\n break;\n case "XZY":\n this._z = Math.asin(-clamp(m12, -1, 1));\n if (Math.abs(m12) < 0.9999999) {\n this._x = Math.atan2(m32, m22);\n this._y = Math.atan2(m13, m11);\n } else {\n this._x = Math.atan2(-m23, m33);\n this._y = 0;\n }\n break;\n default:\n console.warn("THREE.Euler: .setFromRotationMatrix() encountered an unknown order: " + order);\n }\n this._order = order;\n if (update === true) this._onChangeCallback();\n return this;\n }\n setFromQuaternion(q, order, update) {\n _matrix$2.makeRotationFromQuaternion(q);\n return this.setFromRotationMatrix(_matrix$2, order, update);\n }\n setFromVector3(v, order = this._order) {\n return this.set(v.x, v.y, v.z, order);\n }\n reorder(newOrder) {\n _quaternion$3.setFromEuler(this);\n return this.setFromQuaternion(_quaternion$3, newOrder);\n }\n equals(euler) {\n return euler._x === this._x && euler._y === this._y && euler._z === this._z && euler._order === this._order;\n }\n fromArray(array) {\n this._x = array[0];\n this._y = array[1];\n this._z = array[2];\n if (array[3] !== void 0) this._order = array[3];\n this._onChangeCallback();\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this._x;\n array[offset + 1] = this._y;\n array[offset + 2] = this._z;\n array[offset + 3] = this._order;\n return array;\n }\n _onChange(callback) {\n this._onChangeCallback = callback;\n return this;\n }\n _onChangeCallback() {\n }\n *[Symbol.iterator]() {\n yield this._x;\n yield this._y;\n yield this._z;\n yield this._order;\n }\n }\n Euler.DEFAULT_ORDER = "XYZ";\n class Layers {\n constructor() {\n this.mask = 1 | 0;\n }\n set(channel) {\n this.mask = (1 << channel | 0) >>> 0;\n }\n enable(channel) {\n this.mask |= 1 << channel | 0;\n }\n enableAll() {\n this.mask = 4294967295 | 0;\n }\n toggle(channel) {\n this.mask ^= 1 << channel | 0;\n }\n disable(channel) {\n this.mask &= ~(1 << channel | 0);\n }\n disableAll() {\n this.mask = 0;\n }\n test(layers) {\n return (this.mask & layers.mask) !== 0;\n }\n isEnabled(channel) {\n return (this.mask & (1 << channel | 0)) !== 0;\n }\n }\n let _object3DId = 0;\n const _v1$4 = /* @__PURE__ */ new Vector3();\n const _q1 = /* @__PURE__ */ new Quaternion();\n const _m1$1 = /* @__PURE__ */ new Matrix4();\n const _target = /* @__PURE__ */ new Vector3();\n const _position$3 = /* @__PURE__ */ new Vector3();\n const _scale$2 = /* @__PURE__ */ new Vector3();\n const _quaternion$2 = /* @__PURE__ */ new Quaternion();\n const _xAxis = /* @__PURE__ */ new Vector3(1, 0, 0);\n const _yAxis = /* @__PURE__ */ new Vector3(0, 1, 0);\n const _zAxis = /* @__PURE__ */ new Vector3(0, 0, 1);\n const _addedEvent = { type: "added" };\n const _removedEvent = { type: "removed" };\n const _childaddedEvent = { type: "childadded", child: null };\n const _childremovedEvent = { type: "childremoved", child: null };\n class Object3D extends EventDispatcher {\n constructor() {\n super();\n this.isObject3D = true;\n Object.defineProperty(this, "id", { value: _object3DId++ });\n this.uuid = generateUUID();\n this.name = "";\n this.type = "Object3D";\n this.parent = null;\n this.children = [];\n this.up = Object3D.DEFAULT_UP.clone();\n const position = new Vector3();\n const rotation = new Euler();\n const quaternion = new Quaternion();\n const scale = new Vector3(1, 1, 1);\n function onRotationChange() {\n quaternion.setFromEuler(rotation, false);\n }\n function onQuaternionChange() {\n rotation.setFromQuaternion(quaternion, void 0, false);\n }\n rotation._onChange(onRotationChange);\n quaternion._onChange(onQuaternionChange);\n Object.defineProperties(this, {\n position: {\n configurable: true,\n enumerable: true,\n value: position\n },\n rotation: {\n configurable: true,\n enumerable: true,\n value: rotation\n },\n quaternion: {\n configurable: true,\n enumerable: true,\n value: quaternion\n },\n scale: {\n configurable: true,\n enumerable: true,\n value: scale\n },\n modelViewMatrix: {\n value: new Matrix4()\n },\n normalMatrix: {\n value: new Matrix3()\n }\n });\n this.matrix = new Matrix4();\n this.matrixWorld = new Matrix4();\n this.matrixAutoUpdate = Object3D.DEFAULT_MATRIX_AUTO_UPDATE;\n this.matrixWorldAutoUpdate = Object3D.DEFAULT_MATRIX_WORLD_AUTO_UPDATE;\n this.matrixWorldNeedsUpdate = false;\n this.layers = new Layers();\n this.visible = true;\n this.castShadow = false;\n this.receiveShadow = false;\n this.frustumCulled = true;\n this.renderOrder = 0;\n this.animations = [];\n this.userData = {};\n }\n onBeforeShadow() {\n }\n onAfterShadow() {\n }\n onBeforeRender() {\n }\n onAfterRender() {\n }\n applyMatrix4(matrix) {\n if (this.matrixAutoUpdate) this.updateMatrix();\n this.matrix.premultiply(matrix);\n this.matrix.decompose(this.position, this.quaternion, this.scale);\n }\n applyQuaternion(q) {\n this.quaternion.premultiply(q);\n return this;\n }\n setRotationFromAxisAngle(axis, angle) {\n this.quaternion.setFromAxisAngle(axis, angle);\n }\n setRotationFromEuler(euler) {\n this.quaternion.setFromEuler(euler, true);\n }\n setRotationFromMatrix(m) {\n this.quaternion.setFromRotationMatrix(m);\n }\n setRotationFromQuaternion(q) {\n this.quaternion.copy(q);\n }\n rotateOnAxis(axis, angle) {\n _q1.setFromAxisAngle(axis, angle);\n this.quaternion.multiply(_q1);\n return this;\n }\n rotateOnWorldAxis(axis, angle) {\n _q1.setFromAxisAngle(axis, angle);\n this.quaternion.premultiply(_q1);\n return this;\n }\n rotateX(angle) {\n return this.rotateOnAxis(_xAxis, angle);\n }\n rotateY(angle) {\n return this.rotateOnAxis(_yAxis, angle);\n }\n rotateZ(angle) {\n return this.rotateOnAxis(_zAxis, angle);\n }\n translateOnAxis(axis, distance) {\n _v1$4.copy(axis).applyQuaternion(this.quaternion);\n this.position.add(_v1$4.multiplyScalar(distance));\n return this;\n }\n translateX(distance) {\n return this.translateOnAxis(_xAxis, distance);\n }\n translateY(distance) {\n return this.translateOnAxis(_yAxis, distance);\n }\n translateZ(distance) {\n return this.translateOnAxis(_zAxis, distance);\n }\n localToWorld(vector) {\n this.updateWorldMatrix(true, false);\n return vector.applyMatrix4(this.matrixWorld);\n }\n worldToLocal(vector) {\n this.updateWorldMatrix(true, false);\n return vector.applyMatrix4(_m1$1.copy(this.matrixWorld).invert());\n }\n lookAt(x2, y, z) {\n if (x2.isVector3) {\n _target.copy(x2);\n } else {\n _target.set(x2, y, z);\n }\n const parent = this.parent;\n this.updateWorldMatrix(true, false);\n _position$3.setFromMatrixPosition(this.matrixWorld);\n if (this.isCamera || this.isLight) {\n _m1$1.lookAt(_position$3, _target, this.up);\n } else {\n _m1$1.lookAt(_target, _position$3, this.up);\n }\n this.quaternion.setFromRotationMatrix(_m1$1);\n if (parent) {\n _m1$1.extractRotation(parent.matrixWorld);\n _q1.setFromRotationMatrix(_m1$1);\n this.quaternion.premultiply(_q1.invert());\n }\n }\n add(object) {\n if (arguments.length > 1) {\n for (let i2 = 0; i2 < arguments.length; i2++) {\n this.add(arguments[i2]);\n }\n return this;\n }\n if (object === this) {\n console.error("THREE.Object3D.add: object can\'t be added as a child of itself.", object);\n return this;\n }\n if (object && object.isObject3D) {\n object.removeFromParent();\n object.parent = this;\n this.children.push(object);\n object.dispatchEvent(_addedEvent);\n _childaddedEvent.child = object;\n this.dispatchEvent(_childaddedEvent);\n _childaddedEvent.child = null;\n } else {\n console.error("THREE.Object3D.add: object not an instance of THREE.Object3D.", object);\n }\n return this;\n }\n remove(object) {\n if (arguments.length > 1) {\n for (let i2 = 0; i2 < arguments.length; i2++) {\n this.remove(arguments[i2]);\n }\n return this;\n }\n const index = this.children.indexOf(object);\n if (index !== -1) {\n object.parent = null;\n this.children.splice(index, 1);\n object.dispatchEvent(_removedEvent);\n _childremovedEvent.child = object;\n this.dispatchEvent(_childremovedEvent);\n _childremovedEvent.child = null;\n }\n return this;\n }\n removeFromParent() {\n const parent = this.parent;\n if (parent !== null) {\n parent.remove(this);\n }\n return this;\n }\n clear() {\n return this.remove(...this.children);\n }\n attach(object) {\n this.updateWorldMatrix(true, false);\n _m1$1.copy(this.matrixWorld).invert();\n if (object.parent !== null) {\n object.parent.updateWorldMatrix(true, false);\n _m1$1.multiply(object.parent.matrixWorld);\n }\n object.applyMatrix4(_m1$1);\n object.removeFromParent();\n object.parent = this;\n this.children.push(object);\n object.updateWorldMatrix(false, true);\n object.dispatchEvent(_addedEvent);\n _childaddedEvent.child = object;\n this.dispatchEvent(_childaddedEvent);\n _childaddedEvent.child = null;\n return this;\n }\n getObjectById(id) {\n return this.getObjectByProperty("id", id);\n }\n getObjectByName(name) {\n return this.getObjectByProperty("name", name);\n }\n getObjectByProperty(name, value) {\n if (this[name] === value) return this;\n for (let i2 = 0, l = this.children.length; i2 < l; i2++) {\n const child = this.children[i2];\n const object = child.getObjectByProperty(name, value);\n if (object !== void 0) {\n return object;\n }\n }\n return void 0;\n }\n getObjectsByProperty(name, value, result = []) {\n if (this[name] === value) result.push(this);\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n children[i2].getObjectsByProperty(name, value, result);\n }\n return result;\n }\n getWorldPosition(target) {\n this.updateWorldMatrix(true, false);\n return target.setFromMatrixPosition(this.matrixWorld);\n }\n getWorldQuaternion(target) {\n this.updateWorldMatrix(true, false);\n this.matrixWorld.decompose(_position$3, target, _scale$2);\n return target;\n }\n getWorldScale(target) {\n this.updateWorldMatrix(true, false);\n this.matrixWorld.decompose(_position$3, _quaternion$2, target);\n return target;\n }\n getWorldDirection(target) {\n this.updateWorldMatrix(true, false);\n const e = this.matrixWorld.elements;\n return target.set(e[8], e[9], e[10]).normalize();\n }\n raycast() {\n }\n traverse(callback) {\n callback(this);\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n children[i2].traverse(callback);\n }\n }\n traverseVisible(callback) {\n if (this.visible === false) return;\n callback(this);\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n children[i2].traverseVisible(callback);\n }\n }\n traverseAncestors(callback) {\n const parent = this.parent;\n if (parent !== null) {\n callback(parent);\n parent.traverseAncestors(callback);\n }\n }\n updateMatrix() {\n this.matrix.compose(this.position, this.quaternion, this.scale);\n this.matrixWorldNeedsUpdate = true;\n }\n updateMatrixWorld(force) {\n if (this.matrixAutoUpdate) this.updateMatrix();\n if (this.matrixWorldNeedsUpdate || force) {\n if (this.matrixWorldAutoUpdate === true) {\n if (this.parent === null) {\n this.matrixWorld.copy(this.matrix);\n } else {\n this.matrixWorld.multiplyMatrices(this.parent.matrixWorld, this.matrix);\n }\n }\n this.matrixWorldNeedsUpdate = false;\n force = true;\n }\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n const child = children[i2];\n child.updateMatrixWorld(force);\n }\n }\n updateWorldMatrix(updateParents, updateChildren) {\n const parent = this.parent;\n if (updateParents === true && parent !== null) {\n parent.updateWorldMatrix(true, false);\n }\n if (this.matrixAutoUpdate) this.updateMatrix();\n if (this.matrixWorldAutoUpdate === true) {\n if (this.parent === null) {\n this.matrixWorld.copy(this.matrix);\n } else {\n this.matrixWorld.multiplyMatrices(this.parent.matrixWorld, this.matrix);\n }\n }\n if (updateChildren === true) {\n const children = this.children;\n for (let i2 = 0, l = children.length; i2 < l; i2++) {\n const child = children[i2];\n child.updateWorldMatrix(false, true);\n }\n }\n }\n toJSON(meta) {\n const isRootObject = meta === void 0 || typeof meta === "string";\n const output = {};\n if (isRootObject) {\n meta = {\n geometries: {},\n materials: {},\n textures: {},\n images: {},\n shapes: {},\n skeletons: {},\n animations: {},\n nodes: {}\n };\n output.metadata = {\n version: 4.6,\n type: "Object",\n generator: "Object3D.toJSON"\n };\n }\n const object = {};\n object.uuid = this.uuid;\n object.type = this.type;\n if (this.name !== "") object.name = this.name;\n if (this.castShadow === true) object.castShadow = true;\n if (this.receiveShadow === true) object.receiveShadow = true;\n if (this.visible === false) object.visible = false;\n if (this.frustumCulled === false) object.frustumCulled = false;\n if (this.renderOrder !== 0) object.renderOrder = this.renderOrder;\n if (Object.keys(this.userData).length > 0) object.userData = this.userData;\n object.layers = this.layers.mask;\n object.matrix = this.matrix.toArray();\n object.up = this.up.toArray();\n if (this.matrixAutoUpdate === false) object.matrixAutoUpdate = false;\n if (this.isInstancedMesh) {\n object.type = "InstancedMesh";\n object.count = this.count;\n object.instanceMatrix = this.instanceMatrix.toJSON();\n if (this.instanceColor !== null) object.instanceColor = this.instanceColor.toJSON();\n }\n if (this.isBatchedMesh) {\n object.type = "BatchedMesh";\n object.perObjectFrustumCulled = this.perObjectFrustumCulled;\n object.sortObjects = this.sortObjects;\n object.drawRanges = this._drawRanges;\n object.reservedRanges = this._reservedRanges;\n object.visibility = this._visibility;\n object.active = this._active;\n object.bounds = this._bounds.map((bound) => ({\n boxInitialized: bound.boxInitialized,\n boxMin: bound.box.min.toArray(),\n boxMax: bound.box.max.toArray(),\n sphereInitialized: bound.sphereInitialized,\n sphereRadius: bound.sphere.radius,\n sphereCenter: bound.sphere.center.toArray()\n }));\n object.maxInstanceCount = this._maxInstanceCount;\n object.maxVertexCount = this._maxVertexCount;\n object.maxIndexCount = this._maxIndexCount;\n object.geometryInitialized = this._geometryInitialized;\n object.geometryCount = this._geometryCount;\n object.matricesTexture = this._matricesTexture.toJSON(meta);\n if (this._colorsTexture !== null) object.colorsTexture = this._colorsTexture.toJSON(meta);\n if (this.boundingSphere !== null) {\n object.boundingSphere = {\n center: object.boundingSphere.center.toArray(),\n radius: object.boundingSphere.radius\n };\n }\n if (this.boundingBox !== null) {\n object.boundingBox = {\n min: object.boundingBox.min.toArray(),\n max: object.boundingBox.max.toArray()\n };\n }\n }\n function serialize(library, element) {\n if (library[element.uuid] === void 0) {\n library[element.uuid] = element.toJSON(meta);\n }\n return element.uuid;\n }\n if (this.isScene) {\n if (this.background) {\n if (this.background.isColor) {\n object.background = this.background.toJSON();\n } else if (this.background.isTexture) {\n object.background = this.background.toJSON(meta).uuid;\n }\n }\n if (this.environment && this.environment.isTexture && this.environment.isRenderTargetTexture !== true) {\n object.environment = this.environment.toJSON(meta).uuid;\n }\n } else if (this.isMesh || this.isLine || this.isPoints) {\n object.geometry = serialize(meta.geometries, this.geometry);\n const parameters = this.geometry.parameters;\n if (parameters !== void 0 && parameters.shapes !== void 0) {\n const shapes = parameters.shapes;\n if (Array.isArray(shapes)) {\n for (let i2 = 0, l = shapes.length; i2 < l; i2++) {\n const shape = shapes[i2];\n serialize(meta.shapes, shape);\n }\n } else {\n serialize(meta.shapes, shapes);\n }\n }\n }\n if (this.isSkinnedMesh) {\n object.bindMode = this.bindMode;\n object.bindMatrix = this.bindMatrix.toArray();\n if (this.skeleton !== void 0) {\n serialize(meta.skeletons, this.skeleton);\n object.skeleton = this.skeleton.uuid;\n }\n }\n if (this.material !== void 0) {\n if (Array.isArray(this.material)) {\n const uuids = [];\n for (let i2 = 0, l = this.material.length; i2 < l; i2++) {\n uuids.push(serialize(meta.materials, this.material[i2]));\n }\n object.material = uuids;\n } else {\n object.material = serialize(meta.materials, this.material);\n }\n }\n if (this.children.length > 0) {\n object.children = [];\n for (let i2 = 0; i2 < this.children.length; i2++) {\n object.children.push(this.children[i2].toJSON(meta).object);\n }\n }\n if (this.animations.length > 0) {\n object.animations = [];\n for (let i2 = 0; i2 < this.animations.length; i2++) {\n const animation = this.animations[i2];\n object.animations.push(serialize(meta.animations, animation));\n }\n }\n if (isRootObject) {\n const geometries = extractFromCache(meta.geometries);\n const materials = extractFromCache(meta.materials);\n const textures = extractFromCache(meta.textures);\n const images = extractFromCache(meta.images);\n const shapes = extractFromCache(meta.shapes);\n const skeletons = extractFromCache(meta.skeletons);\n const animations = extractFromCache(meta.animations);\n const nodes = extractFromCache(meta.nodes);\n if (geometries.length > 0) output.geometries = geometries;\n if (materials.length > 0) output.materials = materials;\n if (textures.length > 0) output.textures = textures;\n if (images.length > 0) output.images = images;\n if (shapes.length > 0) output.shapes = shapes;\n if (skeletons.length > 0) output.skeletons = skeletons;\n if (animations.length > 0) output.animations = animations;\n if (nodes.length > 0) output.nodes = nodes;\n }\n output.object = object;\n return output;\n function extractFromCache(cache) {\n const values = [];\n for (const key in cache) {\n const data = cache[key];\n delete data.metadata;\n values.push(data);\n }\n return values;\n }\n }\n clone(recursive) {\n return new this.constructor().copy(this, recursive);\n }\n copy(source, recursive = true) {\n this.name = source.name;\n this.up.copy(source.up);\n this.position.copy(source.position);\n this.rotation.order = source.rotation.order;\n this.quaternion.copy(source.quaternion);\n this.scale.copy(source.scale);\n this.matrix.copy(source.matrix);\n this.matrixWorld.copy(source.matrixWorld);\n this.matrixAutoUpdate = source.matrixAutoUpdate;\n this.matrixWorldAutoUpdate = source.matrixWorldAutoUpdate;\n this.matrixWorldNeedsUpdate = source.matrixWorldNeedsUpdate;\n this.layers.mask = source.layers.mask;\n this.visible = source.visible;\n this.castShadow = source.castShadow;\n this.receiveShadow = source.receiveShadow;\n this.frustumCulled = source.frustumCulled;\n this.renderOrder = source.renderOrder;\n this.animations = source.animations.slice();\n this.userData = JSON.parse(JSON.stringify(source.userData));\n if (recursive === true) {\n for (let i2 = 0; i2 < source.children.length; i2++) {\n const child = source.children[i2];\n this.add(child.clone());\n }\n }\n return this;\n }\n }\n Object3D.DEFAULT_UP = /* @__PURE__ */ new Vector3(0, 1, 0);\n Object3D.DEFAULT_MATRIX_AUTO_UPDATE = true;\n Object3D.DEFAULT_MATRIX_WORLD_AUTO_UPDATE = true;\n const _v0$1 = /* @__PURE__ */ new Vector3();\n const _v1$3 = /* @__PURE__ */ new Vector3();\n const _v2$2 = /* @__PURE__ */ new Vector3();\n const _v3$2 = /* @__PURE__ */ new Vector3();\n const _vab = /* @__PURE__ */ new Vector3();\n const _vac = /* @__PURE__ */ new Vector3();\n const _vbc = /* @__PURE__ */ new Vector3();\n const _vap = /* @__PURE__ */ new Vector3();\n const _vbp = /* @__PURE__ */ new Vector3();\n const _vcp = /* @__PURE__ */ new Vector3();\n const _v40 = /* @__PURE__ */ new Vector4();\n const _v41 = /* @__PURE__ */ new Vector4();\n const _v42 = /* @__PURE__ */ new Vector4();\n class Triangle {\n constructor(a = new Vector3(), b = new Vector3(), c = new Vector3()) {\n this.a = a;\n this.b = b;\n this.c = c;\n }\n static getNormal(a, b, c, target) {\n target.subVectors(c, b);\n _v0$1.subVectors(a, b);\n target.cross(_v0$1);\n const targetLengthSq = target.lengthSq();\n if (targetLengthSq > 0) {\n return target.multiplyScalar(1 / Math.sqrt(targetLengthSq));\n }\n return target.set(0, 0, 0);\n }\n // static/instance method to calculate barycentric coordinates\n // based on: http://www.blackpawn.com/texts/pointinpoly/default.html\n static getBarycoord(point, a, b, c, target) {\n _v0$1.subVectors(c, a);\n _v1$3.subVectors(b, a);\n _v2$2.subVectors(point, a);\n const dot00 = _v0$1.dot(_v0$1);\n const dot01 = _v0$1.dot(_v1$3);\n const dot02 = _v0$1.dot(_v2$2);\n const dot11 = _v1$3.dot(_v1$3);\n const dot12 = _v1$3.dot(_v2$2);\n const denom = dot00 * dot11 - dot01 * dot01;\n if (denom === 0) {\n target.set(0, 0, 0);\n return null;\n }\n const invDenom = 1 / denom;\n const u = (dot11 * dot02 - dot01 * dot12) * invDenom;\n const v = (dot00 * dot12 - dot01 * dot02) * invDenom;\n return target.set(1 - u - v, v, u);\n }\n static containsPoint(point, a, b, c) {\n if (this.getBarycoord(point, a, b, c, _v3$2) === null) {\n return false;\n }\n return _v3$2.x >= 0 && _v3$2.y >= 0 && _v3$2.x + _v3$2.y <= 1;\n }\n static getInterpolation(point, p1, p2, p3, v1, v2, v3, target) {\n if (this.getBarycoord(point, p1, p2, p3, _v3$2) === null) {\n target.x = 0;\n target.y = 0;\n if ("z" in target) target.z = 0;\n if ("w" in target) target.w = 0;\n return null;\n }\n target.setScalar(0);\n target.addScaledVector(v1, _v3$2.x);\n target.addScaledVector(v2, _v3$2.y);\n target.addScaledVector(v3, _v3$2.z);\n return target;\n }\n static getInterpolatedAttribute(attr, i1, i2, i3, barycoord, target) {\n _v40.setScalar(0);\n _v41.setScalar(0);\n _v42.setScalar(0);\n _v40.fromBufferAttribute(attr, i1);\n _v41.fromBufferAttribute(attr, i2);\n _v42.fromBufferAttribute(attr, i3);\n target.setScalar(0);\n target.addScaledVector(_v40, barycoord.x);\n target.addScaledVector(_v41, barycoord.y);\n target.addScaledVector(_v42, barycoord.z);\n return target;\n }\n static isFrontFacing(a, b, c, direction) {\n _v0$1.subVectors(c, b);\n _v1$3.subVectors(a, b);\n return _v0$1.cross(_v1$3).dot(direction) < 0 ? true : false;\n }\n set(a, b, c) {\n this.a.copy(a);\n this.b.copy(b);\n this.c.copy(c);\n return this;\n }\n setFromPointsAndIndices(points, i0, i1, i2) {\n this.a.copy(points[i0]);\n this.b.copy(points[i1]);\n this.c.copy(points[i2]);\n return this;\n }\n setFromAttributeAndIndices(attribute, i0, i1, i2) {\n this.a.fromBufferAttribute(attribute, i0);\n this.b.fromBufferAttribute(attribute, i1);\n this.c.fromBufferAttribute(attribute, i2);\n return this;\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(triangle) {\n this.a.copy(triangle.a);\n this.b.copy(triangle.b);\n this.c.copy(triangle.c);\n return this;\n }\n getArea() {\n _v0$1.subVectors(this.c, this.b);\n _v1$3.subVectors(this.a, this.b);\n return _v0$1.cross(_v1$3).length() * 0.5;\n }\n getMidpoint(target) {\n return target.addVectors(this.a, this.b).add(this.c).multiplyScalar(1 / 3);\n }\n getNormal(target) {\n return Triangle.getNormal(this.a, this.b, this.c, target);\n }\n getPlane(target) {\n return target.setFromCoplanarPoints(this.a, this.b, this.c);\n }\n getBarycoord(point, target) {\n return Triangle.getBarycoord(point, this.a, this.b, this.c, target);\n }\n getInterpolation(point, v1, v2, v3, target) {\n return Triangle.getInterpolation(point, this.a, this.b, this.c, v1, v2, v3, target);\n }\n containsPoint(point) {\n return Triangle.containsPoint(point, this.a, this.b, this.c);\n }\n isFrontFacing(direction) {\n return Triangle.isFrontFacing(this.a, this.b, this.c, direction);\n }\n intersectsBox(box) {\n return box.intersectsTriangle(this);\n }\n closestPointToPoint(p, target) {\n const a = this.a, b = this.b, c = this.c;\n let v, w;\n _vab.subVectors(b, a);\n _vac.subVectors(c, a);\n _vap.subVectors(p, a);\n const d1 = _vab.dot(_vap);\n const d2 = _vac.dot(_vap);\n if (d1 <= 0 && d2 <= 0) {\n return target.copy(a);\n }\n _vbp.subVectors(p, b);\n const d3 = _vab.dot(_vbp);\n const d4 = _vac.dot(_vbp);\n if (d3 >= 0 && d4 <= d3) {\n return target.copy(b);\n }\n const vc = d1 * d4 - d3 * d2;\n if (vc <= 0 && d1 >= 0 && d3 <= 0) {\n v = d1 / (d1 - d3);\n return target.copy(a).addScaledVector(_vab, v);\n }\n _vcp.subVectors(p, c);\n const d5 = _vab.dot(_vcp);\n const d6 = _vac.dot(_vcp);\n if (d6 >= 0 && d5 <= d6) {\n return target.copy(c);\n }\n const vb = d5 * d2 - d1 * d6;\n if (vb <= 0 && d2 >= 0 && d6 <= 0) {\n w = d2 / (d2 - d6);\n return target.copy(a).addScaledVector(_vac, w);\n }\n const va = d3 * d6 - d5 * d4;\n if (va <= 0 && d4 - d3 >= 0 && d5 - d6 >= 0) {\n _vbc.subVectors(c, b);\n w = (d4 - d3) / (d4 - d3 + (d5 - d6));\n return target.copy(b).addScaledVector(_vbc, w);\n }\n const denom = 1 / (va + vb + vc);\n v = vb * denom;\n w = vc * denom;\n return target.copy(a).addScaledVector(_vab, v).addScaledVector(_vac, w);\n }\n equals(triangle) {\n return triangle.a.equals(this.a) && triangle.b.equals(this.b) && triangle.c.equals(this.c);\n }\n }\n const _colorKeywords = {\n "aliceblue": 15792383,\n "antiquewhite": 16444375,\n "aqua": 65535,\n "aquamarine": 8388564,\n "azure": 15794175,\n "beige": 16119260,\n "bisque": 16770244,\n "black": 0,\n "blanchedalmond": 16772045,\n "blue": 255,\n "blueviolet": 9055202,\n "brown": 10824234,\n "burlywood": 14596231,\n "cadetblue": 6266528,\n "chartreuse": 8388352,\n "chocolate": 13789470,\n "coral": 16744272,\n "cornflowerblue": 6591981,\n "cornsilk": 16775388,\n "crimson": 14423100,\n "cyan": 65535,\n "darkblue": 139,\n "darkcyan": 35723,\n "darkgoldenrod": 12092939,\n "darkgray": 11119017,\n "darkgreen": 25600,\n "darkgrey": 11119017,\n "darkkhaki": 12433259,\n "darkmagenta": 9109643,\n "darkolivegreen": 5597999,\n "darkorange": 16747520,\n "darkorchid": 10040012,\n "darkred": 9109504,\n "darksalmon": 15308410,\n "darkseagreen": 9419919,\n "darkslateblue": 4734347,\n "darkslategray": 3100495,\n "darkslategrey": 3100495,\n "darkturquoise": 52945,\n "darkviolet": 9699539,\n "deeppink": 16716947,\n "deepskyblue": 49151,\n "dimgray": 6908265,\n "dimgrey": 6908265,\n "dodgerblue": 2003199,\n "firebrick": 11674146,\n "floralwhite": 16775920,\n "forestgreen": 2263842,\n "fuchsia": 16711935,\n "gainsboro": 14474460,\n "ghostwhite": 16316671,\n "gold": 16766720,\n "goldenrod": 14329120,\n "gray": 8421504,\n "green": 32768,\n "greenyellow": 11403055,\n "grey": 8421504,\n "honeydew": 15794160,\n "hotpink": 16738740,\n "indianred": 13458524,\n "indigo": 4915330,\n "ivory": 16777200,\n "khaki": 15787660,\n "lavender": 15132410,\n "lavenderblush": 16773365,\n "lawngreen": 8190976,\n "lemonchiffon": 16775885,\n "lightblue": 11393254,\n "lightcoral": 15761536,\n "lightcyan": 14745599,\n "lightgoldenrodyellow": 16448210,\n "lightgray": 13882323,\n "lightgreen": 9498256,\n "lightgrey": 13882323,\n "lightpink": 16758465,\n "lightsalmon": 16752762,\n "lightseagreen": 2142890,\n "lightskyblue": 8900346,\n "lightslategray": 7833753,\n "lightslategrey": 7833753,\n "lightsteelblue": 11584734,\n "lightyellow": 16777184,\n "lime": 65280,\n "limegreen": 3329330,\n "linen": 16445670,\n "magenta": 16711935,\n "maroon": 8388608,\n "mediumaquamarine": 6737322,\n "mediumblue": 205,\n "mediumorchid": 12211667,\n "mediumpurple": 9662683,\n "mediumseagreen": 3978097,\n "mediumslateblue": 8087790,\n "mediumspringgreen": 64154,\n "mediumturquoise": 4772300,\n "mediumvioletred": 13047173,\n "midnightblue": 1644912,\n "mintcream": 16121850,\n "mistyrose": 16770273,\n "moccasin": 16770229,\n "navajowhite": 16768685,\n "navy": 128,\n "oldlace": 16643558,\n "olive": 8421376,\n "olivedrab": 7048739,\n "orange": 16753920,\n "orangered": 16729344,\n "orchid": 14315734,\n "palegoldenrod": 15657130,\n "palegreen": 10025880,\n "paleturquoise": 11529966,\n "palevioletred": 14381203,\n "papayawhip": 16773077,\n "peachpuff": 16767673,\n "peru": 13468991,\n "pink": 16761035,\n "plum": 14524637,\n "powderblue": 11591910,\n "purple": 8388736,\n "rebeccapurple": 6697881,\n "red": 16711680,\n "rosybrown": 12357519,\n "royalblue": 4286945,\n "saddlebrown": 9127187,\n "salmon": 16416882,\n "sandybrown": 16032864,\n "seagreen": 3050327,\n "seashell": 16774638,\n "sienna": 10506797,\n "silver": 12632256,\n "skyblue": 8900331,\n "slateblue": 6970061,\n "slategray": 7372944,\n "slategrey": 7372944,\n "snow": 16775930,\n "springgreen": 65407,\n "steelblue": 4620980,\n "tan": 13808780,\n "teal": 32896,\n "thistle": 14204888,\n "tomato": 16737095,\n "turquoise": 4251856,\n "violet": 15631086,\n "wheat": 16113331,\n "white": 16777215,\n "whitesmoke": 16119285,\n "yellow": 16776960,\n "yellowgreen": 10145074\n };\n const _hslA = { h: 0, s: 0, l: 0 };\n const _hslB = { h: 0, s: 0, l: 0 };\n function hue2rgb(p, q, t) {\n if (t < 0) t += 1;\n if (t > 1) t -= 1;\n if (t < 1 / 6) return p + (q - p) * 6 * t;\n if (t < 1 / 2) return q;\n if (t < 2 / 3) return p + (q - p) * 6 * (2 / 3 - t);\n return p;\n }\n class Color {\n constructor(r, g, b) {\n this.isColor = true;\n this.r = 1;\n this.g = 1;\n this.b = 1;\n return this.set(r, g, b);\n }\n set(r, g, b) {\n if (g === void 0 && b === void 0) {\n const value = r;\n if (value && value.isColor) {\n this.copy(value);\n } else if (typeof value === "number") {\n this.setHex(value);\n } else if (typeof value === "string") {\n this.setStyle(value);\n }\n } else {\n this.setRGB(r, g, b);\n }\n return this;\n }\n setScalar(scalar) {\n this.r = scalar;\n this.g = scalar;\n this.b = scalar;\n return this;\n }\n setHex(hex, colorSpace = SRGBColorSpace) {\n hex = Math.floor(hex);\n this.r = (hex >> 16 & 255) / 255;\n this.g = (hex >> 8 & 255) / 255;\n this.b = (hex & 255) / 255;\n ColorManagement.toWorkingColorSpace(this, colorSpace);\n return this;\n }\n setRGB(r, g, b, colorSpace = ColorManagement.workingColorSpace) {\n this.r = r;\n this.g = g;\n this.b = b;\n ColorManagement.toWorkingColorSpace(this, colorSpace);\n return this;\n }\n setHSL(h, s, l, colorSpace = ColorManagement.workingColorSpace) {\n h = euclideanModulo(h, 1);\n s = clamp(s, 0, 1);\n l = clamp(l, 0, 1);\n if (s === 0) {\n this.r = this.g = this.b = l;\n } else {\n const p = l <= 0.5 ? l * (1 + s) : l + s - l * s;\n const q = 2 * l - p;\n this.r = hue2rgb(q, p, h + 1 / 3);\n this.g = hue2rgb(q, p, h);\n this.b = hue2rgb(q, p, h - 1 / 3);\n }\n ColorManagement.toWorkingColorSpace(this, colorSpace);\n return this;\n }\n setStyle(style, colorSpace = SRGBColorSpace) {\n function handleAlpha(string) {\n if (string === void 0) return;\n if (parseFloat(string) < 1) {\n console.warn("THREE.Color: Alpha component of " + style + " will be ignored.");\n }\n }\n let m;\n if (m = /^(\\w+)\\(([^\\)]*)\\)/.exec(style)) {\n let color;\n const name = m[1];\n const components = m[2];\n switch (name) {\n case "rgb":\n case "rgba":\n if (color = /^\\s*(\\d+)\\s*,\\s*(\\d+)\\s*,\\s*(\\d+)\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(components)) {\n handleAlpha(color[4]);\n return this.setRGB(\n Math.min(255, parseInt(color[1], 10)) / 255,\n Math.min(255, parseInt(color[2], 10)) / 255,\n Math.min(255, parseInt(color[3], 10)) / 255,\n colorSpace\n );\n }\n if (color = /^\\s*(\\d+)\\%\\s*,\\s*(\\d+)\\%\\s*,\\s*(\\d+)\\%\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(components)) {\n handleAlpha(color[4]);\n return this.setRGB(\n Math.min(100, parseInt(color[1], 10)) / 100,\n Math.min(100, parseInt(color[2], 10)) / 100,\n Math.min(100, parseInt(color[3], 10)) / 100,\n colorSpace\n );\n }\n break;\n case "hsl":\n case "hsla":\n if (color = /^\\s*(\\d*\\.?\\d+)\\s*,\\s*(\\d*\\.?\\d+)\\%\\s*,\\s*(\\d*\\.?\\d+)\\%\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(components)) {\n handleAlpha(color[4]);\n return this.setHSL(\n parseFloat(color[1]) / 360,\n parseFloat(color[2]) / 100,\n parseFloat(color[3]) / 100,\n colorSpace\n );\n }\n break;\n default:\n console.warn("THREE.Color: Unknown color model " + style);\n }\n } else if (m = /^\\#([A-Fa-f\\d]+)$/.exec(style)) {\n const hex = m[1];\n const size = hex.length;\n if (size === 3) {\n return this.setRGB(\n parseInt(hex.charAt(0), 16) / 15,\n parseInt(hex.charAt(1), 16) / 15,\n parseInt(hex.charAt(2), 16) / 15,\n colorSpace\n );\n } else if (size === 6) {\n return this.setHex(parseInt(hex, 16), colorSpace);\n } else {\n console.warn("THREE.Color: Invalid hex color " + style);\n }\n } else if (style && style.length > 0) {\n return this.setColorName(style, colorSpace);\n }\n return this;\n }\n setColorName(style, colorSpace = SRGBColorSpace) {\n const hex = _colorKeywords[style.toLowerCase()];\n if (hex !== void 0) {\n this.setHex(hex, colorSpace);\n } else {\n console.warn("THREE.Color: Unknown color " + style);\n }\n return this;\n }\n clone() {\n return new this.constructor(this.r, this.g, this.b);\n }\n copy(color) {\n this.r = color.r;\n this.g = color.g;\n this.b = color.b;\n return this;\n }\n copySRGBToLinear(color) {\n this.r = SRGBToLinear(color.r);\n this.g = SRGBToLinear(color.g);\n this.b = SRGBToLinear(color.b);\n return this;\n }\n copyLinearToSRGB(color) {\n this.r = LinearToSRGB(color.r);\n this.g = LinearToSRGB(color.g);\n this.b = LinearToSRGB(color.b);\n return this;\n }\n convertSRGBToLinear() {\n this.copySRGBToLinear(this);\n return this;\n }\n convertLinearToSRGB() {\n this.copyLinearToSRGB(this);\n return this;\n }\n getHex(colorSpace = SRGBColorSpace) {\n ColorManagement.fromWorkingColorSpace(_color.copy(this), colorSpace);\n return Math.round(clamp(_color.r * 255, 0, 255)) * 65536 + Math.round(clamp(_color.g * 255, 0, 255)) * 256 + Math.round(clamp(_color.b * 255, 0, 255));\n }\n getHexString(colorSpace = SRGBColorSpace) {\n return ("000000" + this.getHex(colorSpace).toString(16)).slice(-6);\n }\n getHSL(target, colorSpace = ColorManagement.workingColorSpace) {\n ColorManagement.fromWorkingColorSpace(_color.copy(this), colorSpace);\n const r = _color.r, g = _color.g, b = _color.b;\n const max2 = Math.max(r, g, b);\n const min = Math.min(r, g, b);\n let hue, saturation;\n const lightness = (min + max2) / 2;\n if (min === max2) {\n hue = 0;\n saturation = 0;\n } else {\n const delta = max2 - min;\n saturation = lightness <= 0.5 ? delta / (max2 + min) : delta / (2 - max2 - min);\n switch (max2) {\n case r:\n hue = (g - b) / delta + (g < b ? 6 : 0);\n break;\n case g:\n hue = (b - r) / delta + 2;\n break;\n case b:\n hue = (r - g) / delta + 4;\n break;\n }\n hue /= 6;\n }\n target.h = hue;\n target.s = saturation;\n target.l = lightness;\n return target;\n }\n getRGB(target, colorSpace = ColorManagement.workingColorSpace) {\n ColorManagement.fromWorkingColorSpace(_color.copy(this), colorSpace);\n target.r = _color.r;\n target.g = _color.g;\n target.b = _color.b;\n return target;\n }\n getStyle(colorSpace = SRGBColorSpace) {\n ColorManagement.fromWorkingColorSpace(_color.copy(this), colorSpace);\n const r = _color.r, g = _color.g, b = _color.b;\n if (colorSpace !== SRGBColorSpace) {\n return `color(${colorSpace} ${r.toFixed(3)} ${g.toFixed(3)} ${b.toFixed(3)})`;\n }\n return `rgb(${Math.round(r * 255)},${Math.round(g * 255)},${Math.round(b * 255)})`;\n }\n offsetHSL(h, s, l) {\n this.getHSL(_hslA);\n return this.setHSL(_hslA.h + h, _hslA.s + s, _hslA.l + l);\n }\n add(color) {\n this.r += color.r;\n this.g += color.g;\n this.b += color.b;\n return this;\n }\n addColors(color1, color2) {\n this.r = color1.r + color2.r;\n this.g = color1.g + color2.g;\n this.b = color1.b + color2.b;\n return this;\n }\n addScalar(s) {\n this.r += s;\n this.g += s;\n this.b += s;\n return this;\n }\n sub(color) {\n this.r = Math.max(0, this.r - color.r);\n this.g = Math.max(0, this.g - color.g);\n this.b = Math.max(0, this.b - color.b);\n return this;\n }\n multiply(color) {\n this.r *= color.r;\n this.g *= color.g;\n this.b *= color.b;\n return this;\n }\n multiplyScalar(s) {\n this.r *= s;\n this.g *= s;\n this.b *= s;\n return this;\n }\n lerp(color, alpha) {\n this.r += (color.r - this.r) * alpha;\n this.g += (color.g - this.g) * alpha;\n this.b += (color.b - this.b) * alpha;\n return this;\n }\n lerpColors(color1, color2, alpha) {\n this.r = color1.r + (color2.r - color1.r) * alpha;\n this.g = color1.g + (color2.g - color1.g) * alpha;\n this.b = color1.b + (color2.b - color1.b) * alpha;\n return this;\n }\n lerpHSL(color, alpha) {\n this.getHSL(_hslA);\n color.getHSL(_hslB);\n const h = lerp(_hslA.h, _hslB.h, alpha);\n const s = lerp(_hslA.s, _hslB.s, alpha);\n const l = lerp(_hslA.l, _hslB.l, alpha);\n this.setHSL(h, s, l);\n return this;\n }\n setFromVector3(v) {\n this.r = v.x;\n this.g = v.y;\n this.b = v.z;\n return this;\n }\n applyMatrix3(m) {\n const r = this.r, g = this.g, b = this.b;\n const e = m.elements;\n this.r = e[0] * r + e[3] * g + e[6] * b;\n this.g = e[1] * r + e[4] * g + e[7] * b;\n this.b = e[2] * r + e[5] * g + e[8] * b;\n return this;\n }\n equals(c) {\n return c.r === this.r && c.g === this.g && c.b === this.b;\n }\n fromArray(array, offset = 0) {\n this.r = array[offset];\n this.g = array[offset + 1];\n this.b = array[offset + 2];\n return this;\n }\n toArray(array = [], offset = 0) {\n array[offset] = this.r;\n array[offset + 1] = this.g;\n array[offset + 2] = this.b;\n return array;\n }\n fromBufferAttribute(attribute, index) {\n this.r = attribute.getX(index);\n this.g = attribute.getY(index);\n this.b = attribute.getZ(index);\n return this;\n }\n toJSON() {\n return this.getHex();\n }\n *[Symbol.iterator]() {\n yield this.r;\n yield this.g;\n yield this.b;\n }\n }\n const _color = /* @__PURE__ */ new Color();\n Color.NAMES = _colorKeywords;\n let _materialId = 0;\n class Material extends EventDispatcher {\n constructor() {\n super();\n this.isMaterial = true;\n Object.defineProperty(this, "id", { value: _materialId++ });\n this.uuid = generateUUID();\n this.name = "";\n this.type = "Material";\n this.blending = NormalBlending;\n this.side = FrontSide;\n this.vertexColors = false;\n this.opacity = 1;\n this.transparent = false;\n this.alphaHash = false;\n this.blendSrc = SrcAlphaFactor;\n this.blendDst = OneMinusSrcAlphaFactor;\n this.blendEquation = AddEquation;\n this.blendSrcAlpha = null;\n this.blendDstAlpha = null;\n this.blendEquationAlpha = null;\n this.blendColor = new Color(0, 0, 0);\n this.blendAlpha = 0;\n this.depthFunc = LessEqualDepth;\n this.depthTest = true;\n this.depthWrite = true;\n this.stencilWriteMask = 255;\n this.stencilFunc = AlwaysStencilFunc;\n this.stencilRef = 0;\n this.stencilFuncMask = 255;\n this.stencilFail = KeepStencilOp;\n this.stencilZFail = KeepStencilOp;\n this.stencilZPass = KeepStencilOp;\n this.stencilWrite = false;\n this.clippingPlanes = null;\n this.clipIntersection = false;\n this.clipShadows = false;\n this.shadowSide = null;\n this.colorWrite = true;\n this.precision = null;\n this.polygonOffset = false;\n this.polygonOffsetFactor = 0;\n this.polygonOffsetUnits = 0;\n this.dithering = false;\n this.alphaToCoverage = false;\n this.premultipliedAlpha = false;\n this.forceSinglePass = false;\n this.visible = true;\n this.toneMapped = true;\n this.userData = {};\n this.version = 0;\n this._alphaTest = 0;\n }\n get alphaTest() {\n return this._alphaTest;\n }\n set alphaTest(value) {\n if (this._alphaTest > 0 !== value > 0) {\n this.version++;\n }\n this._alphaTest = value;\n }\n // onBeforeRender and onBeforeCompile only supported in WebGLRenderer\n onBeforeRender() {\n }\n onBeforeCompile() {\n }\n customProgramCacheKey() {\n return this.onBeforeCompile.toString();\n }\n setValues(values) {\n if (values === void 0) return;\n for (const key in values) {\n const newValue = values[key];\n if (newValue === void 0) {\n console.warn(`THREE.Material: parameter \'${key}\' has value of undefined.`);\n continue;\n }\n const currentValue = this[key];\n if (currentValue === void 0) {\n console.warn(`THREE.Material: \'${key}\' is not a property of THREE.${this.type}.`);\n continue;\n }\n if (currentValue && currentValue.isColor) {\n currentValue.set(newValue);\n } else if (currentValue && currentValue.isVector3 && (newValue && newValue.isVector3)) {\n currentValue.copy(newValue);\n } else {\n this[key] = newValue;\n }\n }\n }\n toJSON(meta) {\n const isRootObject = meta === void 0 || typeof meta === "string";\n if (isRootObject) {\n meta = {\n textures: {},\n images: {}\n };\n }\n const data = {\n metadata: {\n version: 4.6,\n type: "Material",\n generator: "Material.toJSON"\n }\n };\n data.uuid = this.uuid;\n data.type = this.type;\n if (this.name !== "") data.name = this.name;\n if (this.color && this.color.isColor) data.color = this.color.getHex();\n if (this.roughness !== void 0) data.roughness = this.roughness;\n if (this.metalness !== void 0) data.metalness = this.metalness;\n if (this.sheen !== void 0) data.sheen = this.sheen;\n if (this.sheenColor && this.sheenColor.isColor) data.sheenColor = this.sheenColor.getHex();\n if (this.sheenRoughness !== void 0) data.sheenRoughness = this.sheenRoughness;\n if (this.emissive && this.emissive.isColor) data.emissive = this.emissive.getHex();\n if (this.emissiveIntensity !== void 0 && this.emissiveIntensity !== 1) data.emissiveIntensity = this.emissiveIntensity;\n if (this.specular && this.specular.isColor) data.specular = this.specular.getHex();\n if (this.specularIntensity !== void 0) data.specularIntensity = this.specularIntensity;\n if (this.specularColor && this.specularColor.isColor) data.specularColor = this.specularColor.getHex();\n if (this.shininess !== void 0) data.shininess = this.shininess;\n if (this.clearcoat !== void 0) data.clearcoat = this.clearcoat;\n if (this.clearcoatRoughness !== void 0) data.clearcoatRoughness = this.clearcoatRoughness;\n if (this.clearcoatMap && this.clearcoatMap.isTexture) {\n data.clearcoatMap = this.clearcoatMap.toJSON(meta).uuid;\n }\n if (this.clearcoatRoughnessMap && this.clearcoatRoughnessMap.isTexture) {\n data.clearcoatRoughnessMap = this.clearcoatRoughnessMap.toJSON(meta).uuid;\n }\n if (this.clearcoatNormalMap && this.clearcoatNormalMap.isTexture) {\n data.clearcoatNormalMap = this.clearcoatNormalMap.toJSON(meta).uuid;\n data.clearcoatNormalScale = this.clearcoatNormalScale.toArray();\n }\n if (this.dispersion !== void 0) data.dispersion = this.dispersion;\n if (this.iridescence !== void 0) data.iridescence = this.iridescence;\n if (this.iridescenceIOR !== void 0) data.iridescenceIOR = this.iridescenceIOR;\n if (this.iridescenceThicknessRange !== void 0) data.iridescenceThicknessRange = this.iridescenceThicknessRange;\n if (this.iridescenceMap && this.iridescenceMap.isTexture) {\n data.iridescenceMap = this.iridescenceMap.toJSON(meta).uuid;\n }\n if (this.iridescenceThicknessMap && this.iridescenceThicknessMap.isTexture) {\n data.iridescenceThicknessMap = this.iridescenceThicknessMap.toJSON(meta).uuid;\n }\n if (this.anisotropy !== void 0) data.anisotropy = this.anisotropy;\n if (this.anisotropyRotation !== void 0) data.anisotropyRotation = this.anisotropyRotation;\n if (this.anisotropyMap && this.anisotropyMap.isTexture) {\n data.anisotropyMap = this.anisotropyMap.toJSON(meta).uuid;\n }\n if (this.map && this.map.isTexture) data.map = this.map.toJSON(meta).uuid;\n if (this.matcap && this.matcap.isTexture) data.matcap = this.matcap.toJSON(meta).uuid;\n if (this.alphaMap && this.alphaMap.isTexture) data.alphaMap = this.alphaMap.toJSON(meta).uuid;\n if (this.lightMap && this.lightMap.isTexture) {\n data.lightMap = this.lightMap.toJSON(meta).uuid;\n data.lightMapIntensity = this.lightMapIntensity;\n }\n if (this.aoMap && this.aoMap.isTexture) {\n data.aoMap = this.aoMap.toJSON(meta).uuid;\n data.aoMapIntensity = this.aoMapIntensity;\n }\n if (this.bumpMap && this.bumpMap.isTexture) {\n data.bumpMap = this.bumpMap.toJSON(meta).uuid;\n data.bumpScale = this.bumpScale;\n }\n if (this.normalMap && this.normalMap.isTexture) {\n data.normalMap = this.normalMap.toJSON(meta).uuid;\n data.normalMapType = this.normalMapType;\n data.normalScale = this.normalScale.toArray();\n }\n if (this.displacementMap && this.displacementMap.isTexture) {\n data.displacementMap = this.displacementMap.toJSON(meta).uuid;\n data.displacementScale = this.displacementScale;\n data.displacementBias = this.displacementBias;\n }\n if (this.roughnessMap && this.roughnessMap.isTexture) data.roughnessMap = this.roughnessMap.toJSON(meta).uuid;\n if (this.metalnessMap && this.metalnessMap.isTexture) data.metalnessMap = this.metalnessMap.toJSON(meta).uuid;\n if (this.emissiveMap && this.emissiveMap.isTexture) data.emissiveMap = this.emissiveMap.toJSON(meta).uuid;\n if (this.specularMap && this.specularMap.isTexture) data.specularMap = this.specularMap.toJSON(meta).uuid;\n if (this.specularIntensityMap && this.specularIntensityMap.isTexture) data.specularIntensityMap = this.specularIntensityMap.toJSON(meta).uuid;\n if (this.specularColorMap && this.specularColorMap.isTexture) data.specularColorMap = this.specularColorMap.toJSON(meta).uuid;\n if (this.envMap && this.envMap.isTexture) {\n data.envMap = this.envMap.toJSON(meta).uuid;\n if (this.combine !== void 0) data.combine = this.combine;\n }\n if (this.envMapRotation !== void 0) data.envMapRotation = this.envMapRotation.toArray();\n if (this.envMapIntensity !== void 0) data.envMapIntensity = this.envMapIntensity;\n if (this.reflectivity !== void 0) data.reflectivity = this.reflectivity;\n if (this.refractionRatio !== void 0) data.refractionRatio = this.refractionRatio;\n if (this.gradientMap && this.gradientMap.isTexture) {\n data.gradientMap = this.gradientMap.toJSON(meta).uuid;\n }\n if (this.transmission !== void 0) data.transmission = this.transmission;\n if (this.transmissionMap && this.transmissionMap.isTexture) data.transmissionMap = this.transmissionMap.toJSON(meta).uuid;\n if (this.thickness !== void 0) data.thickness = this.thickness;\n if (this.thicknessMap && this.thicknessMap.isTexture) data.thicknessMap = this.thicknessMap.toJSON(meta).uuid;\n if (this.attenuationDistance !== void 0 && this.attenuationDistance !== Infinity) data.attenuationDistance = this.attenuationDistance;\n if (this.attenuationColor !== void 0) data.attenuationColor = this.attenuationColor.getHex();\n if (this.size !== void 0) data.size = this.size;\n if (this.shadowSide !== null) data.shadowSide = this.shadowSide;\n if (this.sizeAttenuation !== void 0) data.sizeAttenuation = this.sizeAttenuation;\n if (this.blending !== NormalBlending) data.blending = this.blending;\n if (this.side !== FrontSide) data.side = this.side;\n if (this.vertexColors === true) data.vertexColors = true;\n if (this.opacity < 1) data.opacity = this.opacity;\n if (this.transparent === true) data.transparent = true;\n if (this.blendSrc !== SrcAlphaFactor) data.blendSrc = this.blendSrc;\n if (this.blendDst !== OneMinusSrcAlphaFactor) data.blendDst = this.blendDst;\n if (this.blendEquation !== AddEquation) data.blendEquation = this.blendEquation;\n if (this.blendSrcAlpha !== null) data.blendSrcAlpha = this.blendSrcAlpha;\n if (this.blendDstAlpha !== null) data.blendDstAlpha = this.blendDstAlpha;\n if (this.blendEquationAlpha !== null) data.blendEquationAlpha = this.blendEquationAlpha;\n if (this.blendColor && this.blendColor.isColor) data.blendColor = this.blendColor.getHex();\n if (this.blendAlpha !== 0) data.blendAlpha = this.blendAlpha;\n if (this.depthFunc !== LessEqualDepth) data.depthFunc = this.depthFunc;\n if (this.depthTest === false) data.depthTest = this.depthTest;\n if (this.depthWrite === false) data.depthWrite = this.depthWrite;\n if (this.colorWrite === false) data.colorWrite = this.colorWrite;\n if (this.stencilWriteMask !== 255) data.stencilWriteMask = this.stencilWriteMask;\n if (this.stencilFunc !== AlwaysStencilFunc) data.stencilFunc = this.stencilFunc;\n if (this.stencilRef !== 0) data.stencilRef = this.stencilRef;\n if (this.stencilFuncMask !== 255) data.stencilFuncMask = this.stencilFuncMask;\n if (this.stencilFail !== KeepStencilOp) data.stencilFail = this.stencilFail;\n if (this.stencilZFail !== KeepStencilOp) data.stencilZFail = this.stencilZFail;\n if (this.stencilZPass !== KeepStencilOp) data.stencilZPass = this.stencilZPass;\n if (this.stencilWrite === true) data.stencilWrite = this.stencilWrite;\n if (this.rotation !== void 0 && this.rotation !== 0) data.rotation = this.rotation;\n if (this.polygonOffset === true) data.polygonOffset = true;\n if (this.polygonOffsetFactor !== 0) data.polygonOffsetFactor = this.polygonOffsetFactor;\n if (this.polygonOffsetUnits !== 0) data.polygonOffsetUnits = this.polygonOffsetUnits;\n if (this.linewidth !== void 0 && this.linewidth !== 1) data.linewidth = this.linewidth;\n if (this.dashSize !== void 0) data.dashSize = this.dashSize;\n if (this.gapSize !== void 0) data.gapSize = this.gapSize;\n if (this.scale !== void 0) data.scale = this.scale;\n if (this.dithering === true) data.dithering = true;\n if (this.alphaTest > 0) data.alphaTest = this.alphaTest;\n if (this.alphaHash === true) data.alphaHash = true;\n if (this.alphaToCoverage === true) data.alphaToCoverage = true;\n if (this.premultipliedAlpha === true) data.premultipliedAlpha = true;\n if (this.forceSinglePass === true) data.forceSinglePass = true;\n if (this.wireframe === true) data.wireframe = true;\n if (this.wireframeLinewidth > 1) data.wireframeLinewidth = this.wireframeLinewidth;\n if (this.wireframeLinecap !== "round") data.wireframeLinecap = this.wireframeLinecap;\n if (this.wireframeLinejoin !== "round") data.wireframeLinejoin = this.wireframeLinejoin;\n if (this.flatShading === true) data.flatShading = true;\n if (this.visible === false) data.visible = false;\n if (this.toneMapped === false) data.toneMapped = false;\n if (this.fog === false) data.fog = false;\n if (Object.keys(this.userData).length > 0) data.userData = this.userData;\n function extractFromCache(cache) {\n const values = [];\n for (const key in cache) {\n const data2 = cache[key];\n delete data2.metadata;\n values.push(data2);\n }\n return values;\n }\n if (isRootObject) {\n const textures = extractFromCache(meta.textures);\n const images = extractFromCache(meta.images);\n if (textures.length > 0) data.textures = textures;\n if (images.length > 0) data.images = images;\n }\n return data;\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(source) {\n this.name = source.name;\n this.blending = source.blending;\n this.side = source.side;\n this.vertexColors = source.vertexColors;\n this.opacity = source.opacity;\n this.transparent = source.transparent;\n this.blendSrc = source.blendSrc;\n this.blendDst = source.blendDst;\n this.blendEquation = source.blendEquation;\n this.blendSrcAlpha = source.blendSrcAlpha;\n this.blendDstAlpha = source.blendDstAlpha;\n this.blendEquationAlpha = source.blendEquationAlpha;\n this.blendColor.copy(source.blendColor);\n this.blendAlpha = source.blendAlpha;\n this.depthFunc = source.depthFunc;\n this.depthTest = source.depthTest;\n this.depthWrite = source.depthWrite;\n this.stencilWriteMask = source.stencilWriteMask;\n this.stencilFunc = source.stencilFunc;\n this.stencilRef = source.stencilRef;\n this.stencilFuncMask = source.stencilFuncMask;\n this.stencilFail = source.stencilFail;\n this.stencilZFail = source.stencilZFail;\n this.stencilZPass = source.stencilZPass;\n this.stencilWrite = source.stencilWrite;\n const srcPlanes = source.clippingPlanes;\n let dstPlanes = null;\n if (srcPlanes !== null) {\n const n = srcPlanes.length;\n dstPlanes = new Array(n);\n for (let i2 = 0; i2 !== n; ++i2) {\n dstPlanes[i2] = srcPlanes[i2].clone();\n }\n }\n this.clippingPlanes = dstPlanes;\n this.clipIntersection = source.clipIntersection;\n this.clipShadows = source.clipShadows;\n this.shadowSide = source.shadowSide;\n this.colorWrite = source.colorWrite;\n this.precision = source.precision;\n this.polygonOffset = source.polygonOffset;\n this.polygonOffsetFactor = source.polygonOffsetFactor;\n this.polygonOffsetUnits = source.polygonOffsetUnits;\n this.dithering = source.dithering;\n this.alphaTest = source.alphaTest;\n this.alphaHash = source.alphaHash;\n this.alphaToCoverage = source.alphaToCoverage;\n this.premultipliedAlpha = source.premultipliedAlpha;\n this.forceSinglePass = source.forceSinglePass;\n this.visible = source.visible;\n this.toneMapped = source.toneMapped;\n this.userData = JSON.parse(JSON.stringify(source.userData));\n return this;\n }\n dispose() {\n this.dispatchEvent({ type: "dispose" });\n }\n set needsUpdate(value) {\n if (value === true) this.version++;\n }\n onBuild() {\n console.warn("Material: onBuild() has been removed.");\n }\n }\n class MeshBasicMaterial extends Material {\n constructor(parameters) {\n super();\n this.isMeshBasicMaterial = true;\n this.type = "MeshBasicMaterial";\n this.color = new Color(16777215);\n this.map = null;\n this.lightMap = null;\n this.lightMapIntensity = 1;\n this.aoMap = null;\n this.aoMapIntensity = 1;\n this.specularMap = null;\n this.alphaMap = null;\n this.envMap = null;\n this.envMapRotation = new Euler();\n this.combine = MultiplyOperation;\n this.reflectivity = 1;\n this.refractionRatio = 0.98;\n this.wireframe = false;\n this.wireframeLinewidth = 1;\n this.wireframeLinecap = "round";\n this.wireframeLinejoin = "round";\n this.fog = true;\n this.setValues(parameters);\n }\n copy(source) {\n super.copy(source);\n this.color.copy(source.color);\n this.map = source.map;\n this.lightMap = source.lightMap;\n this.lightMapIntensity = source.lightMapIntensity;\n this.aoMap = source.aoMap;\n this.aoMapIntensity = source.aoMapIntensity;\n this.specularMap = source.specularMap;\n this.alphaMap = source.alphaMap;\n this.envMap = source.envMap;\n this.envMapRotation.copy(source.envMapRotation);\n this.combine = source.combine;\n this.reflectivity = source.reflectivity;\n this.refractionRatio = source.refractionRatio;\n this.wireframe = source.wireframe;\n this.wireframeLinewidth = source.wireframeLinewidth;\n this.wireframeLinecap = source.wireframeLinecap;\n this.wireframeLinejoin = source.wireframeLinejoin;\n this.fog = source.fog;\n return this;\n }\n }\n const _vector$9 = /* @__PURE__ */ new Vector3();\n const _vector2$1 = /* @__PURE__ */ new Vector2();\n class BufferAttribute {\n constructor(array, itemSize, normalized = false) {\n if (Array.isArray(array)) {\n throw new TypeError("THREE.BufferAttribute: array should be a Typed Array.");\n }\n this.isBufferAttribute = true;\n this.name = "";\n this.array = array;\n this.itemSize = itemSize;\n this.count = array !== void 0 ? array.length / itemSize : 0;\n this.normalized = normalized;\n this.usage = StaticDrawUsage;\n this.updateRanges = [];\n this.gpuType = FloatType;\n this.version = 0;\n }\n onUploadCallback() {\n }\n set needsUpdate(value) {\n if (value === true) this.version++;\n }\n setUsage(value) {\n this.usage = value;\n return this;\n }\n addUpdateRange(start, count) {\n this.updateRanges.push({ start, count });\n }\n clearUpdateRanges() {\n this.updateRanges.length = 0;\n }\n copy(source) {\n this.name = source.name;\n this.array = new source.array.constructor(source.array);\n this.itemSize = source.itemSize;\n this.count = source.count;\n this.normalized = source.normalized;\n this.usage = source.usage;\n this.gpuType = source.gpuType;\n return this;\n }\n copyAt(index1, attribute, index2) {\n index1 *= this.itemSize;\n index2 *= attribute.itemSize;\n for (let i2 = 0, l = this.itemSize; i2 < l; i2++) {\n this.array[index1 + i2] = attribute.array[index2 + i2];\n }\n return this;\n }\n copyArray(array) {\n this.array.set(array);\n return this;\n }\n applyMatrix3(m) {\n if (this.itemSize === 2) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector2$1.fromBufferAttribute(this, i2);\n _vector2$1.applyMatrix3(m);\n this.setXY(i2, _vector2$1.x, _vector2$1.y);\n }\n } else if (this.itemSize === 3) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector$9.fromBufferAttribute(this, i2);\n _vector$9.applyMatrix3(m);\n this.setXYZ(i2, _vector$9.x, _vector$9.y, _vector$9.z);\n }\n }\n return this;\n }\n applyMatrix4(m) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector$9.fromBufferAttribute(this, i2);\n _vector$9.applyMatrix4(m);\n this.setXYZ(i2, _vector$9.x, _vector$9.y, _vector$9.z);\n }\n return this;\n }\n applyNormalMatrix(m) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector$9.fromBufferAttribute(this, i2);\n _vector$9.applyNormalMatrix(m);\n this.setXYZ(i2, _vector$9.x, _vector$9.y, _vector$9.z);\n }\n return this;\n }\n transformDirection(m) {\n for (let i2 = 0, l = this.count; i2 < l; i2++) {\n _vector$9.fromBufferAttribute(this, i2);\n _vector$9.transformDirection(m);\n this.setXYZ(i2, _vector$9.x, _vector$9.y, _vector$9.z);\n }\n return this;\n }\n set(value, offset = 0) {\n this.array.set(value, offset);\n return this;\n }\n getComponent(index, component) {\n let value = this.array[index * this.itemSize + component];\n if (this.normalized) value = denormalize(value, this.array);\n return value;\n }\n setComponent(index, component, value) {\n if (this.normalized) value = normalize$1(value, this.array);\n this.array[index * this.itemSize + component] = value;\n return this;\n }\n getX(index) {\n let x2 = this.array[index * this.itemSize];\n if (this.normalized) x2 = denormalize(x2, this.array);\n return x2;\n }\n setX(index, x2) {\n if (this.normalized) x2 = normalize$1(x2, this.array);\n this.array[index * this.itemSize] = x2;\n return this;\n }\n getY(index) {\n let y = this.array[index * this.itemSize + 1];\n if (this.normalized) y = denormalize(y, this.array);\n return y;\n }\n setY(index, y) {\n if (this.normalized) y = normalize$1(y, this.array);\n this.array[index * this.itemSize + 1] = y;\n return this;\n }\n getZ(index) {\n let z = this.array[index * this.itemSize + 2];\n if (this.normalized) z = denormalize(z, this.array);\n return z;\n }\n setZ(index, z) {\n if (this.normalized) z = normalize$1(z, this.array);\n this.array[index * this.itemSize + 2] = z;\n return this;\n }\n getW(index) {\n let w = this.array[index * this.itemSize + 3];\n if (this.normalized) w = denormalize(w, this.array);\n return w;\n }\n setW(index, w) {\n if (this.normalized) w = normalize$1(w, this.array);\n this.array[index * this.itemSize + 3] = w;\n return this;\n }\n setXY(index, x2, y) {\n index *= this.itemSize;\n if (this.normalized) {\n x2 = normalize$1(x2, this.array);\n y = normalize$1(y, this.array);\n }\n this.array[index + 0] = x2;\n this.array[index + 1] = y;\n return this;\n }\n setXYZ(index, x2, y, z) {\n index *= this.itemSize;\n if (this.normalized) {\n x2 = normalize$1(x2, this.array);\n y = normalize$1(y, this.array);\n z = normalize$1(z, this.array);\n }\n this.array[index + 0] = x2;\n this.array[index + 1] = y;\n this.array[index + 2] = z;\n return this;\n }\n setXYZW(index, x2, y, z, w) {\n index *= this.itemSize;\n if (this.normalized) {\n x2 = normalize$1(x2, this.array);\n y = normalize$1(y, this.array);\n z = normalize$1(z, this.array);\n w = normalize$1(w, this.array);\n }\n this.array[index + 0] = x2;\n this.array[index + 1] = y;\n this.array[index + 2] = z;\n this.array[index + 3] = w;\n return this;\n }\n onUpload(callback) {\n this.onUploadCallback = callback;\n return this;\n }\n clone() {\n return new this.constructor(this.array, this.itemSize).copy(this);\n }\n toJSON() {\n const data = {\n itemSize: this.itemSize,\n type: this.array.constructor.name,\n array: Array.from(this.array),\n normalized: this.normalized\n };\n if (this.name !== "") data.name = this.name;\n if (this.usage !== StaticDrawUsage) data.usage = this.usage;\n return data;\n }\n }\n class Uint16BufferAttribute extends BufferAttribute {\n constructor(array, itemSize, normalized) {\n super(new Uint16Array(array), itemSize, normalized);\n }\n }\n class Uint32BufferAttribute extends BufferAttribute {\n constructor(array, itemSize, normalized) {\n super(new Uint32Array(array), itemSize, normalized);\n }\n }\n class Float32BufferAttribute extends BufferAttribute {\n constructor(array, itemSize, normalized) {\n super(new Float32Array(array), itemSize, normalized);\n }\n }\n let _id$1 = 0;\n const _m1 = /* @__PURE__ */ new Matrix4();\n const _obj = /* @__PURE__ */ new Object3D();\n const _offset = /* @__PURE__ */ new Vector3();\n const _box$2 = /* @__PURE__ */ new Box3();\n const _boxMorphTargets = /* @__PURE__ */ new Box3();\n const _vector$8 = /* @__PURE__ */ new Vector3();\n class BufferGeometry extends EventDispatcher {\n constructor() {\n super();\n this.isBufferGeometry = true;\n Object.defineProperty(this, "id", { value: _id$1++ });\n this.uuid = generateUUID();\n this.name = "";\n this.type = "BufferGeometry";\n this.index = null;\n this.indirect = null;\n this.attributes = {};\n this.morphAttributes = {};\n this.morphTargetsRelative = false;\n this.groups = [];\n this.boundingBox = null;\n this.boundingSphere = null;\n this.drawRange = { start: 0, count: Infinity };\n this.userData = {};\n }\n getIndex() {\n return this.index;\n }\n setIndex(index) {\n if (Array.isArray(index)) {\n this.index = new (arrayNeedsUint32(index) ? Uint32BufferAttribute : Uint16BufferAttribute)(index, 1);\n } else {\n this.index = index;\n }\n return this;\n }\n setIndirect(indirect) {\n this.indirect = indirect;\n return this;\n }\n getIndirect() {\n return this.indirect;\n }\n getAttribute(name) {\n return this.attributes[name];\n }\n setAttribute(name, attribute) {\n this.attributes[name] = attribute;\n return this;\n }\n deleteAttribute(name) {\n delete this.attributes[name];\n return this;\n }\n hasAttribute(name) {\n return this.attributes[name] !== void 0;\n }\n addGroup(start, count, materialIndex = 0) {\n this.groups.push({\n start,\n count,\n materialIndex\n });\n }\n clearGroups() {\n this.groups = [];\n }\n setDrawRange(start, count) {\n this.drawRange.start = start;\n this.drawRange.count = count;\n }\n applyMatrix4(matrix) {\n const position = this.attributes.position;\n if (position !== void 0) {\n position.applyMatrix4(matrix);\n position.needsUpdate = true;\n }\n const normal = this.attributes.normal;\n if (normal !== void 0) {\n const normalMatrix = new Matrix3().getNormalMatrix(matrix);\n normal.applyNormalMatrix(normalMatrix);\n normal.needsUpdate = true;\n }\n const tangent = this.attributes.tangent;\n if (tangent !== void 0) {\n tangent.transformDirection(matrix);\n tangent.needsUpdate = true;\n }\n if (this.boundingBox !== null) {\n this.computeBoundingBox();\n }\n if (this.boundingSphere !== null) {\n this.computeBoundingSphere();\n }\n return this;\n }\n applyQuaternion(q) {\n _m1.makeRotationFromQuaternion(q);\n this.applyMatrix4(_m1);\n return this;\n }\n rotateX(angle) {\n _m1.makeRotationX(angle);\n this.applyMatrix4(_m1);\n return this;\n }\n rotateY(angle) {\n _m1.makeRotationY(angle);\n this.applyMatrix4(_m1);\n return this;\n }\n rotateZ(angle) {\n _m1.makeRotationZ(angle);\n this.applyMatrix4(_m1);\n return this;\n }\n translate(x2, y, z) {\n _m1.makeTranslation(x2, y, z);\n this.applyMatrix4(_m1);\n return this;\n }\n scale(x2, y, z) {\n _m1.makeScale(x2, y, z);\n this.applyMatrix4(_m1);\n return this;\n }\n lookAt(vector) {\n _obj.lookAt(vector);\n _obj.updateMatrix();\n this.applyMatrix4(_obj.matrix);\n return this;\n }\n center() {\n this.computeBoundingBox();\n this.boundingBox.getCenter(_offset).negate();\n this.translate(_offset.x, _offset.y, _offset.z);\n return this;\n }\n setFromPoints(points) {\n const positionAttribute = this.getAttribute("position");\n if (positionAttribute === void 0) {\n const position = [];\n for (let i2 = 0, l = points.length; i2 < l; i2++) {\n const point = points[i2];\n position.push(point.x, point.y, point.z || 0);\n }\n this.setAttribute("position", new Float32BufferAttribute(position, 3));\n } else {\n const l = Math.min(points.length, positionAttribute.count);\n for (let i2 = 0; i2 < l; i2++) {\n const point = points[i2];\n positionAttribute.setXYZ(i2, point.x, point.y, point.z || 0);\n }\n if (points.length > positionAttribute.count) {\n console.warn("THREE.BufferGeometry: Buffer size too small for points data. Use .dispose() and create a new geometry.");\n }\n positionAttribute.needsUpdate = true;\n }\n return this;\n }\n computeBoundingBox() {\n if (this.boundingBox === null) {\n this.boundingBox = new Box3();\n }\n const position = this.attributes.position;\n const morphAttributesPosition = this.morphAttributes.position;\n if (position && position.isGLBufferAttribute) {\n console.error("THREE.BufferGeometry.computeBoundingBox(): GLBufferAttribute requires a manual bounding box.", this);\n this.boundingBox.set(\n new Vector3(-Infinity, -Infinity, -Infinity),\n new Vector3(Infinity, Infinity, Infinity)\n );\n return;\n }\n if (position !== void 0) {\n this.boundingBox.setFromBufferAttribute(position);\n if (morphAttributesPosition) {\n for (let i2 = 0, il = morphAttributesPosition.length; i2 < il; i2++) {\n const morphAttribute = morphAttributesPosition[i2];\n _box$2.setFromBufferAttribute(morphAttribute);\n if (this.morphTargetsRelative) {\n _vector$8.addVectors(this.boundingBox.min, _box$2.min);\n this.boundingBox.expandByPoint(_vector$8);\n _vector$8.addVectors(this.boundingBox.max, _box$2.max);\n this.boundingBox.expandByPoint(_vector$8);\n } else {\n this.boundingBox.expandByPoint(_box$2.min);\n this.boundingBox.expandByPoint(_box$2.max);\n }\n }\n }\n } else {\n this.boundingBox.makeEmpty();\n }\n if (isNaN(this.boundingBox.min.x) || isNaN(this.boundingBox.min.y) || isNaN(this.boundingBox.min.z)) {\n console.error(\'THREE.BufferGeometry.computeBoundingBox(): Computed min/max have NaN values. The "position" attribute is likely to have NaN values.\', this);\n }\n }\n computeBoundingSphere() {\n if (this.boundingSphere === null) {\n this.boundingSphere = new Sphere();\n }\n const position = this.attributes.position;\n const morphAttributesPosition = this.morphAttributes.position;\n if (position && position.isGLBufferAttribute) {\n console.error("THREE.BufferGeometry.computeBoundingSphere(): GLBufferAttribute requires a manual bounding sphere.", this);\n this.boundingSphere.set(new Vector3(), Infinity);\n return;\n }\n if (position) {\n const center = this.boundingSphere.center;\n _box$2.setFromBufferAttribute(position);\n if (morphAttributesPosition) {\n for (let i2 = 0, il = morphAttributesPosition.length; i2 < il; i2++) {\n const morphAttribute = morphAttributesPosition[i2];\n _boxMorphTargets.setFromBufferAttribute(morphAttribute);\n if (this.morphTargetsRelative) {\n _vector$8.addVectors(_box$2.min, _boxMorphTargets.min);\n _box$2.expandByPoint(_vector$8);\n _vector$8.addVectors(_box$2.max, _boxMorphTargets.max);\n _box$2.expandByPoint(_vector$8);\n } else {\n _box$2.expandByPoint(_boxMorphTargets.min);\n _box$2.expandByPoint(_boxMorphTargets.max);\n }\n }\n }\n _box$2.getCenter(center);\n let maxRadiusSq = 0;\n for (let i2 = 0, il = position.count; i2 < il; i2++) {\n _vector$8.fromBufferAttribute(position, i2);\n maxRadiusSq = Math.max(maxRadiusSq, center.distanceToSquared(_vector$8));\n }\n if (morphAttributesPosition) {\n for (let i2 = 0, il = morphAttributesPosition.length; i2 < il; i2++) {\n const morphAttribute = morphAttributesPosition[i2];\n const morphTargetsRelative = this.morphTargetsRelative;\n for (let j = 0, jl = morphAttribute.count; j < jl; j++) {\n _vector$8.fromBufferAttribute(morphAttribute, j);\n if (morphTargetsRelative) {\n _offset.fromBufferAttribute(position, j);\n _vector$8.add(_offset);\n }\n maxRadiusSq = Math.max(maxRadiusSq, center.distanceToSquared(_vector$8));\n }\n }\n }\n this.boundingSphere.radius = Math.sqrt(maxRadiusSq);\n if (isNaN(this.boundingSphere.radius)) {\n console.error(\'THREE.BufferGeometry.computeBoundingSphere(): Computed radius is NaN. The "position" attribute is likely to have NaN values.\', this);\n }\n }\n }\n computeTangents() {\n const index = this.index;\n const attributes = this.attributes;\n if (index === null || attributes.position === void 0 || attributes.normal === void 0 || attributes.uv === void 0) {\n console.error("THREE.BufferGeometry: .computeTangents() failed. Missing required attributes (index, position, normal or uv)");\n return;\n }\n const positionAttribute = attributes.position;\n const normalAttribute = attributes.normal;\n const uvAttribute = attributes.uv;\n if (this.hasAttribute("tangent") === false) {\n this.setAttribute("tangent", new BufferAttribute(new Float32Array(4 * positionAttribute.count), 4));\n }\n const tangentAttribute = this.getAttribute("tangent");\n const tan1 = [], tan2 = [];\n for (let i2 = 0; i2 < positionAttribute.count; i2++) {\n tan1[i2] = new Vector3();\n tan2[i2] = new Vector3();\n }\n const vA = new Vector3(), vB = new Vector3(), vC = new Vector3(), uvA = new Vector2(), uvB = new Vector2(), uvC = new Vector2(), sdir = new Vector3(), tdir = new Vector3();\n function handleTriangle(a, b, c) {\n vA.fromBufferAttribute(positionAttribute, a);\n vB.fromBufferAttribute(positionAttribute, b);\n vC.fromBufferAttribute(positionAttribute, c);\n uvA.fromBufferAttribute(uvAttribute, a);\n uvB.fromBufferAttribute(uvAttribute, b);\n uvC.fromBufferAttribute(uvAttribute, c);\n vB.sub(vA);\n vC.sub(vA);\n uvB.sub(uvA);\n uvC.sub(uvA);\n const r = 1 / (uvB.x * uvC.y - uvC.x * uvB.y);\n if (!isFinite(r)) return;\n sdir.copy(vB).multiplyScalar(uvC.y).addScaledVector(vC, -uvB.y).multiplyScalar(r);\n tdir.copy(vC).multiplyScalar(uvB.x).addScaledVector(vB, -uvC.x).multiplyScalar(r);\n tan1[a].add(sdir);\n tan1[b].add(sdir);\n tan1[c].add(sdir);\n tan2[a].add(tdir);\n tan2[b].add(tdir);\n tan2[c].add(tdir);\n }\n let groups = this.groups;\n if (groups.length === 0) {\n groups = [{\n start: 0,\n count: index.count\n }];\n }\n for (let i2 = 0, il = groups.length; i2 < il; ++i2) {\n const group = groups[i2];\n const start = group.start;\n const count = group.count;\n for (let j = start, jl = start + count; j < jl; j += 3) {\n handleTriangle(\n index.getX(j + 0),\n index.getX(j + 1),\n index.getX(j + 2)\n );\n }\n }\n const tmp = new Vector3(), tmp2 = new Vector3();\n const n = new Vector3(), n2 = new Vector3();\n function handleVertex(v) {\n n.fromBufferAttribute(normalAttribute, v);\n n2.copy(n);\n const t = tan1[v];\n tmp.copy(t);\n tmp.sub(n.multiplyScalar(n.dot(t))).normalize();\n tmp2.crossVectors(n2, t);\n const test = tmp2.dot(tan2[v]);\n const w = test < 0 ? -1 : 1;\n tangentAttribute.setXYZW(v, tmp.x, tmp.y, tmp.z, w);\n }\n for (let i2 = 0, il = groups.length; i2 < il; ++i2) {\n const group = groups[i2];\n const start = group.start;\n const count = group.count;\n for (let j = start, jl = start + count; j < jl; j += 3) {\n handleVertex(index.getX(j + 0));\n handleVertex(index.getX(j + 1));\n handleVertex(index.getX(j + 2));\n }\n }\n }\n computeVertexNormals() {\n const index = this.index;\n const positionAttribute = this.getAttribute("position");\n if (positionAttribute !== void 0) {\n let normalAttribute = this.getAttribute("normal");\n if (normalAttribute === void 0) {\n normalAttribute = new BufferAttribute(new Float32Array(positionAttribute.count * 3), 3);\n this.setAttribute("normal", normalAttribute);\n } else {\n for (let i2 = 0, il = normalAttribute.count; i2 < il; i2++) {\n normalAttribute.setXYZ(i2, 0, 0, 0);\n }\n }\n const pA = new Vector3(), pB = new Vector3(), pC = new Vector3();\n const nA = new Vector3(), nB = new Vector3(), nC = new Vector3();\n const cb = new Vector3(), ab = new Vector3();\n if (index) {\n for (let i2 = 0, il = index.count; i2 < il; i2 += 3) {\n const vA = index.getX(i2 + 0);\n const vB = index.getX(i2 + 1);\n const vC = index.getX(i2 + 2);\n pA.fromBufferAttribute(positionAttribute, vA);\n pB.fromBufferAttribute(positionAttribute, vB);\n pC.fromBufferAttribute(positionAttribute, vC);\n cb.subVectors(pC, pB);\n ab.subVectors(pA, pB);\n cb.cross(ab);\n nA.fromBufferAttribute(normalAttribute, vA);\n nB.fromBufferAttribute(normalAttribute, vB);\n nC.fromBufferAttribute(normalAttribute, vC);\n nA.add(cb);\n nB.add(cb);\n nC.add(cb);\n normalAttribute.setXYZ(vA, nA.x, nA.y, nA.z);\n normalAttribute.setXYZ(vB, nB.x, nB.y, nB.z);\n normalAttribute.setXYZ(vC, nC.x, nC.y, nC.z);\n }\n } else {\n for (let i2 = 0, il = positionAttribute.count; i2 < il; i2 += 3) {\n pA.fromBufferAttribute(positionAttribute, i2 + 0);\n pB.fromBufferAttribute(positionAttribute, i2 + 1);\n pC.fromBufferAttribute(positionAttribute, i2 + 2);\n cb.subVectors(pC, pB);\n ab.subVectors(pA, pB);\n cb.cross(ab);\n normalAttribute.setXYZ(i2 + 0, cb.x, cb.y, cb.z);\n normalAttribute.setXYZ(i2 + 1, cb.x, cb.y, cb.z);\n normalAttribute.setXYZ(i2 + 2, cb.x, cb.y, cb.z);\n }\n }\n this.normalizeNormals();\n normalAttribute.needsUpdate = true;\n }\n }\n normalizeNormals() {\n const normals = this.attributes.normal;\n for (let i2 = 0, il = normals.count; i2 < il; i2++) {\n _vector$8.fromBufferAttribute(normals, i2);\n _vector$8.normalize();\n normals.setXYZ(i2, _vector$8.x, _vector$8.y, _vector$8.z);\n }\n }\n toNonIndexed() {\n function convertBufferAttribute(attribute, indices2) {\n const array = attribute.array;\n const itemSize = attribute.itemSize;\n const normalized = attribute.normalized;\n const array2 = new array.constructor(indices2.length * itemSize);\n let index = 0, index2 = 0;\n for (let i2 = 0, l = indices2.length; i2 < l; i2++) {\n if (attribute.isInterleavedBufferAttribute) {\n index = indices2[i2] * attribute.data.stride + attribute.offset;\n } else {\n index = indices2[i2] * itemSize;\n }\n for (let j = 0; j < itemSize; j++) {\n array2[index2++] = array[index++];\n }\n }\n return new BufferAttribute(array2, itemSize, normalized);\n }\n if (this.index === null) {\n console.warn("THREE.BufferGeometry.toNonIndexed(): BufferGeometry is already non-indexed.");\n return this;\n }\n const geometry2 = new BufferGeometry();\n const indices = this.index.array;\n const attributes = this.attributes;\n for (const name in attributes) {\n const attribute = attributes[name];\n const newAttribute = convertBufferAttribute(attribute, indices);\n geometry2.setAttribute(name, newAttribute);\n }\n const morphAttributes = this.morphAttributes;\n for (const name in morphAttributes) {\n const morphArray = [];\n const morphAttribute = morphAttributes[name];\n for (let i2 = 0, il = morphAttribute.length; i2 < il; i2++) {\n const attribute = morphAttribute[i2];\n const newAttribute = convertBufferAttribute(attribute, indices);\n morphArray.push(newAttribute);\n }\n geometry2.morphAttributes[name] = morphArray;\n }\n geometry2.morphTargetsRelative = this.morphTargetsRelative;\n const groups = this.groups;\n for (let i2 = 0, l = groups.length; i2 < l; i2++) {\n const group = groups[i2];\n geometry2.addGroup(group.start, group.count, group.materialIndex);\n }\n return geometry2;\n }\n toJSON() {\n const data = {\n metadata: {\n version: 4.6,\n type: "BufferGeometry",\n generator: "BufferGeometry.toJSON"\n }\n };\n data.uuid = this.uuid;\n data.type = this.type;\n if (this.name !== "") data.name = this.name;\n if (Object.keys(this.userData).length > 0) data.userData = this.userData;\n if (this.parameters !== void 0) {\n const parameters = this.parameters;\n for (const key in parameters) {\n if (parameters[key] !== void 0) data[key] = parameters[key];\n }\n return data;\n }\n data.data = { attributes: {} };\n const index = this.index;\n if (index !== null) {\n data.data.index = {\n type: index.array.constructor.name,\n array: Array.prototype.slice.call(index.array)\n };\n }\n const attributes = this.attributes;\n for (const key in attributes) {\n const attribute = attributes[key];\n data.data.attributes[key] = attribute.toJSON(data.data);\n }\n const morphAttributes = {};\n let hasMorphAttributes = false;\n for (const key in this.morphAttributes) {\n const attributeArray = this.morphAttributes[key];\n const array = [];\n for (let i2 = 0, il = attributeArray.length; i2 < il; i2++) {\n const attribute = attributeArray[i2];\n array.push(attribute.toJSON(data.data));\n }\n if (array.length > 0) {\n morphAttributes[key] = array;\n hasMorphAttributes = true;\n }\n }\n if (hasMorphAttributes) {\n data.data.morphAttributes = morphAttributes;\n data.data.morphTargetsRelative = this.morphTargetsRelative;\n }\n const groups = this.groups;\n if (groups.length > 0) {\n data.data.groups = JSON.parse(JSON.stringify(groups));\n }\n const boundingSphere = this.boundingSphere;\n if (boundingSphere !== null) {\n data.data.boundingSphere = {\n center: boundingSphere.center.toArray(),\n radius: boundingSphere.radius\n };\n }\n return data;\n }\n clone() {\n return new this.constructor().copy(this);\n }\n copy(source) {\n this.index = null;\n this.attributes = {};\n this.morphAttributes = {};\n this.groups = [];\n this.boundingBox = null;\n this.boundingSphere = null;\n const data = {};\n this.name = source.name;\n const index = source.index;\n if (index !== null) {\n this.setIndex(index.clone(data));\n }\n const attributes = source.attributes;\n for (const name in attributes) {\n const attribute = attributes[name];\n this.setAttribute(name, attribute.clone(data));\n }\n const morphAttributes = source.morphAttributes;\n for (const name in morphAttributes) {\n const array = [];\n const morphAttribute = morphAttributes[name];\n for (let i2 = 0, l = morphAttribute.length; i2 < l; i2++) {\n array.push(morphAttribute[i2].clone(data));\n }\n this.morphAttributes[name] = array;\n }\n this.morphTargetsRelative = source.morphTargetsRelative;\n const groups = source.groups;\n for (let i2 = 0, l = groups.length; i2 < l; i2++) {\n const group = groups[i2];\n this.addGroup(group.start, group.count, group.materialIndex);\n }\n const boundingBox = source.boundingBox;\n if (boundingBox !== null) {\n this.boundingBox = boundingBox.clone();\n }\n const boundingSphere = source.boundingSphere;\n if (boundingSphere !== null) {\n this.boundingSphere = boundingSphere.clone();\n }\n this.drawRange.start = source.drawRange.start;\n this.drawRange.count = source.drawRange.count;\n this.userData = source.userData;\n return this;\n }\n dispose() {\n this.dispatchEvent({ type: "dispose" });\n }\n }\n const _inverseMatrix$3 = /* @__PURE__ */ new Matrix4();\n const _ray$3 = /* @__PURE__ */ new Ray();\n const _sphere$6 = /* @__PURE__ */ new Sphere();\n const _sphereHitAt = /* @__PURE__ */ new Vector3();\n const _vA$1 = /* @__PURE__ */ new Vector3();\n const _vB$1 = /* @__PURE__ */ new Vector3();\n const _vC$1 = /* @__PURE__ */ new Vector3();\n const _tempA = /* @__PURE__ */ new Vector3();\n const _morphA = /* @__PURE__ */ new Vector3();\n const _intersectionPoint = /* @__PURE__ */ new Vector3();\n const _intersectionPointWorld = /* @__PURE__ */ new Vector3();\n class Mesh extends Object3D {\n constructor(geometry = new BufferGeometry(), material = new MeshBasicMaterial()) {\n super();\n this.isMesh = true;\n this.type = "Mesh";\n this.geometry = geometry;\n this.material = material;\n this.updateMorphTargets();\n }\n copy(source, recursive) {\n super.copy(source, recursive);\n if (source.morphTargetInfluences !== void 0) {\n this.morphTargetInfluences = source.morphTargetInfluences.slice();\n }\n if (source.morphTargetDictionary !== void 0) {\n this.morphTargetDictionary = Object.assign({}, source.morphTargetDictionary);\n }\n this.material = Array.isArray(source.material) ? source.material.slice() : source.material;\n this.geometry = source.geometry;\n return this;\n }\n updateMorphTargets() {\n const geometry = this.geometry;\n const morphAttributes = geometry.morphAttributes;\n const keys = Object.keys(morphAttributes);\n if (keys.length > 0) {\n const morphAttribute = morphAttributes[keys[0]];\n if (morphAttribute !== void 0) {\n this.morphTargetInfluences = [];\n this.morphTargetDictionary = {};\n for (let m = 0, ml = morphAttribute.length; m < ml; m++) {\n const name = morphAttribute[m].name || String(m);\n this.morphTargetInfluences.push(0);\n this.morphTargetDictionary[name] = m;\n }\n }\n }\n }\n getVertexPosition(index, target) {\n const geometry = this.geometry;\n const position = geometry.attributes.position;\n const morphPosition = geometry.morphAttributes.position;\n const morphTargetsRelative = geometry.morphTargetsRelative;\n target.fromBufferAttribute(position, index);\n const morphInfluences = this.morphTargetInfluences;\n if (morphPosition && morphInfluences) {\n _morphA.set(0, 0, 0);\n for (let i2 = 0, il = morphPosition.length; i2 < il; i2++) {\n const influence = morphInfluences[i2];\n const morphAttribute = morphPosition[i2];\n if (influence === 0) continue;\n _tempA.fromBufferAttribute(morphAttribute, index);\n if (morphTargetsRelative) {\n _morphA.addScaledVector(_tempA, influence);\n } else {\n _morphA.addScaledVector(_tempA.sub(target), influence);\n }\n }\n target.add(_morphA);\n }\n return target;\n }\n raycast(raycaster, intersects) {\n const geometry = this.geometry;\n const material = this.material;\n const matrixWorld = this.matrixWorld;\n if (material === void 0) return;\n if (geometry.boundingSphere === null) geometry.computeBoundingSphere();\n _sphere$6.copy(geometry.boundingSphere);\n _sphere$6.applyMatrix4(matrixWorld);\n _ray$3.copy(raycaster.ray).recast(raycaster.near);\n if (_sphere$6.containsPoint(_ray$3.origin) === false) {\n if (_ray$3.intersectSphere(_sphere$6, _sphereHitAt) === null) return;\n if (_ray$3.origin.distanceToSquared(_sphereHitAt) > (raycaster.far - raycaster.near) ** 2) return;\n }\n _inverseMatrix$3.copy(matrixWorld).invert();\n _ray$3.copy(raycaster.ray).applyMatrix4(_inverseMatrix$3);\n if (geometry.boundingBox !== null) {\n if (_ray$3.intersectsBox(geometry.boundingBox) === false) return;\n }\n this._computeIntersections(raycaster, intersects, _ray$3);\n }\n _computeIntersections(raycaster, intersects, rayLocalSpace) {\n let intersection;\n const geometry = this.geometry;\n const material = this.material;\n const index = geometry.index;\n const position = geometry.attributes.position;\n const uv = geometry.attributes.uv;\n const uv1 = geometry.attributes.uv1;\n const normal = geometry.attributes.normal;\n const groups = geometry.groups;\n const drawRange = geometry.drawRange;\n if (index !== null) {\n if (Array.isArray(material)) {\n for (let i2 = 0, il = groups.length; i2 < il; i2++) {\n const group = groups[i2];\n const groupMaterial = material[group.materialIndex];\n const start = Math.max(group.start, drawRange.start);\n const end = Math.min(index.count, Math.min(group.start + group.count, drawRange.start + drawRange.count));\n for (let j = start, jl = end; j < jl; j += 3) {\n const a = index.getX(j);\n const b = index.getX(j + 1);\n const c = index.getX(j + 2);\n intersection = checkGeometryIntersection(this, groupMaterial, raycaster, rayLocalSpace, uv, uv1, normal, a, b, c);\n if (intersection) {\n intersection.faceIndex = Math.floor(j / 3);\n intersection.face.materialIndex = group.materialIndex;\n intersects.push(intersection);\n }\n }\n }\n } else {\n const start = Math.max(0, drawRange.start);\n const end = Math.min(index.count, drawRange.start + drawRange.count);\n for (let i2 = start, il = end; i2 < il; i2 += 3) {\n const a = index.getX(i2);\n const b = index.getX(i2 + 1);\n const c = index.getX(i2 + 2);\n intersection = checkGeometryIntersection(this, material, raycaster, rayLocalSpace, uv, uv1, normal, a, b, c);\n if (intersection) {\n intersection.faceIndex = Math.floor(i2 / 3);\n intersects.push(intersection);\n }\n }\n }\n } else if (position !== void 0) {\n if (Array.isArray(material)) {\n for (let i2 = 0, il = groups.length; i2 < il; i2++) {\n const group = groups[i2];\n const groupMaterial = material[group.materialIndex];\n const start = Math.max(group.start, drawRange.start);\n const end = Math.min(position.count, Math.min(group.start + group.count, drawRange.start + drawRange.count));\n for (let j = start, jl = end; j < jl; j += 3) {\n const a = j;\n const b = j + 1;\n const c = j + 2;\n intersection = checkGeometryIntersection(this, groupMaterial, raycaster, rayLocalSpace, uv, uv1, normal, a, b, c);\n if (intersection) {\n intersection.faceIndex = Math.floor(j / 3);\n intersection.face.materialIndex = group.materialIndex;\n intersects.push(intersection);\n }\n }\n }\n } else {\n const start = Math.max(0, drawRange.start);\n const end = Math.min(position.count, drawRange.start + drawRange.count);\n for (let i2 = start, il = end; i2 < il; i2 += 3) {\n const a = i2;\n const b = i2 + 1;\n const c = i2 + 2;\n intersection = checkGeometryIntersection(this, material, raycaster, rayLocalSpace, uv, uv1, normal, a, b, c);\n if (intersection) {\n intersection.faceIndex = Math.floor(i2 / 3);\n intersects.push(intersection);\n }\n }\n }\n }\n }\n }\n function checkIntersection$1(object, material, raycaster, ray, pA, pB, pC, point) {\n let intersect;\n if (material.side === BackSide) {\n intersect = ray.intersectTriangle(pC, pB, pA, true, point);\n } else {\n intersect = ray.intersectTriangle(pA, pB, pC, material.side === FrontSide, point);\n }\n if (intersect === null) return null;\n _intersectionPointWorld.copy(point);\n _intersectionPointWorld.applyMatrix4(object.matrixWorld);\n const distance = raycaster.ray.origin.distanceTo(_intersectionPointWorld);\n if (distance < raycaster.near || distance > raycaster.far) return null;\n return {\n distance,\n point: _intersectionPointWorld.clone(),\n object\n };\n }\n function checkGeometryIntersection(object, material, raycaster, ray, uv, uv1, normal, a, b, c) {\n object.getVertexPosition(a, _vA$1);\n object.getVertexPosition(b, _vB$1);\n object.getVertexPosition(c, _vC$1);\n const intersection = checkIntersection$1(object, material, raycaster, ray, _vA$1, _vB$1, _vC$1, _intersectionPoint);\n if (intersection) {\n const barycoord = new Vector3();\n Triangle.getBarycoord(_intersectionPoint, _vA$1, _vB$1, _vC$1, barycoord);\n if (uv) {\n intersection.uv = Triangle.getInterpolatedAttribute(uv, a, b, c, barycoord, new Vector2());\n }\n if (uv1) {\n intersection.uv1 = Triangle.getInterpolatedAttribute(uv1, a, b, c, barycoord, new Vector2());\n }\n if (normal) {\n intersection.normal = Triangle.getInterpolatedAttribute(normal, a, b, c, barycoord, new Vector3());\n if (intersection.normal.dot(ray.direction) > 0) {\n intersection.normal.multiplyScalar(-1);\n }\n }\n const face = {\n a,\n b,\n c,\n normal: new Vector3(),\n materialIndex: 0\n };\n Triangle.getNormal(_vA$1, _vB$1, _vC$1, face.normal);\n intersection.face = face;\n intersection.barycoord = barycoord;\n }\n return intersection;\n }\n function cloneUniforms(src) {\n const dst = {};\n for (const u in src) {\n dst[u] = {};\n for (const p in src[u]) {\n const property = src[u][p];\n if (property && (property.isColor || property.isMatrix3 || property.isMatrix4 || property.isVector2 || property.isVector3 || property.isVector4 || property.isTexture || property.isQuaternion)) {\n if (property.isRenderTargetTexture) {\n console.warn("UniformsUtils: Textures of render targets cannot be cloned via cloneUniforms() or mergeUniforms().");\n dst[u][p] = null;\n } else {\n dst[u][p] = property.clone();\n }\n } else if (Array.isArray(property)) {\n dst[u][p] = property.slice();\n } else {\n dst[u][p] = property;\n }\n }\n }\n return dst;\n }\n function cloneUniformsGroups(src) {\n const dst = [];\n for (let u = 0; u < src.length; u++) {\n dst.push(src[u].clone());\n }\n return dst;\n }\n var default_vertex = "void main() {\\n gl_Position = projectionMatrix * modelViewMatrix * vec4( position, 1.0 );\\n}";\n var default_fragment = "void main() {\\n gl_FragColor = vec4( 1.0, 0.0, 0.0, 1.0 );\\n}";\n class ShaderMaterial extends Material {\n constructor(parameters) {\n super();\n this.isShaderMaterial = true;\n this.type = "ShaderMaterial";\n this.defines = {};\n this.uniforms = {};\n this.uniformsGroups = [];\n this.vertexShader = default_vertex;\n this.fragmentShader = default_fragment;\n this.linewidth = 1;\n this.wireframe = false;\n this.wireframeLinewidth = 1;\n this.fog = false;\n this.lights = false;\n this.clipping = false;\n this.forceSinglePass = true;\n this.extensions = {\n clipCullDistance: false,\n // set to use vertex shader clipping\n multiDraw: false\n // set to use vertex shader multi_draw / enable gl_DrawID\n };\n this.defaultAttributeValues = {\n "color": [1, 1, 1],\n "uv": [0, 0],\n "uv1": [0, 0]\n };\n this.index0AttributeName = void 0;\n this.uniformsNeedUpdate = false;\n this.glslVersion = null;\n if (parameters !== void 0) {\n this.setValues(parameters);\n }\n }\n copy(source) {\n super.copy(source);\n this.fragmentShader = source.fragmentShader;\n this.vertexShader = source.vertexShader;\n this.uniforms = cloneUniforms(source.uniforms);\n this.uniformsGroups = cloneUniformsGroups(source.uniformsGroups);\n this.defines = Object.assign({}, source.defines);\n this.wireframe = source.wireframe;\n this.wireframeLinewidth = source.wireframeLinewidth;\n this.fog = source.fog;\n this.lights = source.lights;\n this.clipping = source.clipping;\n this.extensions = Object.assign({}, source.extensions);\n this.glslVersion = source.glslVersion;\n return this;\n }\n toJSON(meta) {\n const data = super.toJSON(meta);\n data.glslVersion = this.glslVersion;\n data.uniforms = {};\n for (const name in this.uniforms) {\n const uniform = this.uniforms[name];\n const value = uniform.value;\n if (value && value.isTexture) {\n data.uniforms[name] = {\n type: "t",\n value: value.toJSON(meta).uuid\n };\n } else if (value && value.isColor) {\n data.uniforms[name] = {\n type: "c",\n value: value.getHex()\n };\n } else if (value && value.isVector2) {\n data.uniforms[name] = {\n type: "v2",\n value: value.toArray()\n };\n } else if (value && value.isVector3) {\n data.uniforms[name] = {\n type: "v3",\n value: value.toArray()\n };\n } else if (value && value.isVector4) {\n data.uniforms[name] = {\n type: "v4",\n value: value.toArray()\n };\n } else if (value && value.isMatrix3) {\n data.uniforms[name] = {\n type: "m3",\n value: value.toArray()\n };\n } else if (value && value.isMatrix4) {\n data.uniforms[name] = {\n type: "m4",\n value: value.toArray()\n };\n } else {\n data.uniforms[name] = {\n value\n };\n }\n }\n if (Object.keys(this.defines).length > 0) data.defines = this.defines;\n data.vertexShader = this.vertexShader;\n data.fragmentShader = this.fragmentShader;\n data.lights = this.lights;\n data.clipping = this.clipping;\n const extensions = {};\n for (const key in this.extensions) {\n if (this.extensions[key] === true) extensions[key] = true;\n }\n if (Object.keys(extensions).length > 0) data.extensions = extensions;\n return data;\n }\n }\n class Camera extends Object3D {\n constructor() {\n super();\n this.isCamera = true;\n this.type = "Camera";\n this.matrixWorldInverse = new Matrix4();\n this.projectionMatrix = new Matrix4();\n this.projectionMatrixInverse = new Matrix4();\n this.coordinateSystem = WebGLCoordinateSystem;\n }\n copy(source, recursive) {\n super.copy(source, recursive);\n this.matrixWorldInverse.copy(source.matrixWorldInverse);\n this.projectionMatrix.copy(source.projectionMatrix);\n this.projectionMatrixInverse.copy(source.projectionMatrixInverse);\n this.coordinateSystem = source.coordinateSystem;\n return this;\n }\n getWorldDirection(target) {\n return super.getWorldDirection(target).negate();\n }\n updateMatrixWorld(force) {\n super.updateMatrixWorld(force);\n this.matrixWorldInverse.copy(this.matrixWorld).invert();\n }\n updateWorldMatrix(updateParents, updateChildren) {\n super.updateWorldMatrix(updateParents, updateChildren);\n this.matrixWorldInverse.copy(this.matrixWorld).invert();\n }\n clone() {\n return new this.constructor().copy(this);\n }\n }\n class Scene extends Object3D {\n constructor() {\n super();\n this.isScene = true;\n this.type = "Scene";\n this.background = null;\n this.environment = null;\n this.fog = null;\n this.backgroundBlurriness = 0;\n this.backgroundIntensity = 1;\n this.backgroundRotation = new Euler();\n this.environmentIntensity = 1;\n this.environmentRotation = new Euler();\n this.overrideMaterial = null;\n if (typeof __THREE_DEVTOOLS__ !== "undefined") {\n __THREE_DEVTOOLS__.dispatchEvent(new CustomEvent("observe", { detail: this }));\n }\n }\n copy(source, recursive) {\n super.copy(source, recursive);\n if (source.background !== null) this.background = source.background.clone();\n if (source.environment !== null) this.environment = source.environment.clone();\n if (source.fog !== null) this.fog = source.fog.clone();\n this.backgroundBlurriness = source.backgroundBlurriness;\n this.backgroundIntensity = source.backgroundIntensity;\n this.backgroundRotation.copy(source.backgroundRotation);\n this.environmentIntensity = source.environmentIntensity;\n this.environmentRotation.copy(source.environmentRotation);\n if (source.overrideMaterial !== null) this.overrideMaterial = source.overrideMaterial.clone();\n this.matrixAutoUpdate = source.matrixAutoUpdate;\n return this;\n }\n toJSON(meta) {\n const data = super.toJSON(meta);\n if (this.fog !== null) data.object.fog = this.fog.toJSON();\n if (this.backgroundBlurriness > 0) data.object.backgroundBlurriness = this.backgroundBlurriness;\n if (this.backgroundIntensity !== 1) data.object.backgroundIntensity = this.backgroundIntensity;\n data.object.backgroundRotation = this.backgroundRotation.toArray();\n if (this.environmentIntensity !== 1) data.object.environmentIntensity = this.environmentIntensity;\n data.object.environmentRotation = this.environmentRotation.toArray();\n return data;\n }\n }\n class DataTexture extends Texture {\n constructor(data = null, width = 1, height = 1, format, type, mapping, wrapS, wrapT, magFilter = NearestFilter, minFilter = NearestFilter, anisotropy, colorSpace) {\n super(null, mapping, wrapS, wrapT, magFilter, minFilter, format, type, anisotropy, colorSpace);\n this.isDataTexture = true;\n this.image = { data, width, height };\n this.generateMipmaps = false;\n this.flipY = false;\n this.unpackAlignment = 1;\n }\n }\n class PlaneGeometry extends BufferGeometry {\n constructor(width = 1, height = 1, widthSegments = 1, heightSegments = 1) {\n super();\n this.type = "PlaneGeometry";\n this.parameters = {\n width,\n height,\n widthSegments,\n heightSegments\n };\n const width_half = width / 2;\n const height_half = height / 2;\n const gridX = Math.floor(widthSegments);\n const gridY = Math.floor(heightSegments);\n const gridX1 = gridX + 1;\n const gridY1 = gridY + 1;\n const segment_width = width / gridX;\n const segment_height = height / gridY;\n const indices = [];\n const vertices = [];\n const normals = [];\n const uvs = [];\n for (let iy = 0; iy < gridY1; iy++) {\n const y = iy * segment_height - height_half;\n for (let ix = 0; ix < gridX1; ix++) {\n const x2 = ix * segment_width - width_half;\n vertices.push(x2, -y, 0);\n normals.push(0, 0, 1);\n uvs.push(ix / gridX);\n uvs.push(1 - iy / gridY);\n }\n }\n for (let iy = 0; iy < gridY; iy++) {\n for (let ix = 0; ix < gridX; ix++) {\n const a = ix + gridX1 * iy;\n const b = ix + gridX1 * (iy + 1);\n const c = ix + 1 + gridX1 * (iy + 1);\n const d = ix + 1 + gridX1 * iy;\n indices.push(a, b, d);\n indices.push(b, c, d);\n }\n }\n this.setIndex(indices);\n this.setAttribute("position", new Float32BufferAttribute(vertices, 3));\n this.setAttribute("normal", new Float32BufferAttribute(normals, 3));\n this.setAttribute("uv", new Float32BufferAttribute(uvs, 2));\n }\n copy(source) {\n super.copy(source);\n this.parameters = Object.assign({}, source.parameters);\n return this;\n }\n static fromJSON(data) {\n return new PlaneGeometry(data.width, data.height, data.widthSegments, data.heightSegments);\n }\n }\n class RawShaderMaterial extends ShaderMaterial {\n constructor(parameters) {\n super(parameters);\n this.isRawShaderMaterial = true;\n this.type = "RawShaderMaterial";\n }\n }\n class Matrix2 {\n constructor(n11, n12, n21, n22) {\n Matrix2.prototype.isMatrix2 = true;\n this.elements = [\n 1,\n 0,\n 0,\n 1\n ];\n if (n11 !== void 0) {\n this.set(n11, n12, n21, n22);\n }\n }\n identity() {\n this.set(\n 1,\n 0,\n 0,\n 1\n );\n return this;\n }\n fromArray(array, offset = 0) {\n for (let i2 = 0; i2 < 4; i2++) {\n this.elements[i2] = array[i2 + offset];\n }\n return this;\n }\n set(n11, n12, n21, n22) {\n const te = this.elements;\n te[0] = n11;\n te[2] = n12;\n te[1] = n21;\n te[3] = n22;\n return this;\n }\n }\n if (typeof __THREE_DEVTOOLS__ !== "undefined") {\n __THREE_DEVTOOLS__.dispatchEvent(new CustomEvent("register", { detail: {\n revision: REVISION\n } }));\n }\n if (typeof window !== "undefined") {\n if (window.__THREE__) {\n console.warn("WARNING: Multiple instances of Three.js being imported.");\n } else {\n window.__THREE__ = REVISION;\n }\n }\n const LN_SCALE_MIN = -9;\n const LN_SCALE_MAX = 9;\n const LN_RESCALE = (LN_SCALE_MAX - LN_SCALE_MIN) / 254;\n const SCALE_MIN = Math.exp(LN_SCALE_MIN);\n const SPLAT_TEX_WIDTH_BITS = 11;\n const SPLAT_TEX_HEIGHT_BITS = 11;\n const SPLAT_TEX_WIDTH = 1 << SPLAT_TEX_WIDTH_BITS;\n const SPLAT_TEX_HEIGHT = 1 << SPLAT_TEX_HEIGHT_BITS;\n const SPLAT_TEX_MIN_HEIGHT = 1;\n const WASM_SPLAT_SORT = true;\n function isIntType(type) {\n return type === "int" || type === "ivec2" || type === "ivec3" || type === "ivec4";\n }\n function isUintType(type) {\n return type === "uint" || type === "uvec2" || type === "uvec3" || type === "uvec4";\n }\n function isFloatType(type) {\n return type === "float" || type === "vec2" || type === "vec3" || type === "vec4";\n }\n function isMatFloatType(type) {\n return type === "mat2" || type === "mat2x2" || type === "mat2x3" || type === "mat2x4" || type === "mat3" || type === "mat3x2" || type === "mat3x3" || type === "mat3x4" || type === "mat4" || type === "mat4x2" || type === "mat4x3" || type === "mat4x4";\n }\n function isAllFloatType(type) {\n return isFloatType(type) || isMatFloatType(type);\n }\n function isMat2(type) {\n return type === "mat2" || type === "mat2x2";\n }\n function isMat3(type) {\n return type === "mat3" || type === "mat3x3";\n }\n function isMat4(type) {\n return type === "mat4" || type === "mat4x4";\n }\n function numberAsInt(value) {\n return Math.trunc(value).toString();\n }\n function numberAsUint(value) {\n const v = Math.max(0, Math.trunc(value));\n return `${v.toString()}u`;\n }\n function numberAsFloat(value) {\n return value === Number.POSITIVE_INFINITY ? "INFINITY" : value === Number.NEGATIVE_INFINITY ? "-INFINITY" : Number.isInteger(value) ? value.toFixed(1) : value.toString();\n }\n function valType(val) {\n if (val instanceof DynoValue) {\n return val.type;\n }\n const value = val.dynoOut();\n return value.type;\n }\n class DynoValue {\n constructor(type) {\n this.__isDynoValue = true;\n this.type = type;\n }\n }\n class DynoOutput extends DynoValue {\n constructor(dyno2, key) {\n super(dyno2.outTypes[key]);\n this.dyno = dyno2;\n this.key = key;\n }\n }\n class DynoLiteral extends DynoValue {\n constructor(type, literal) {\n super(type);\n this.literal = literal;\n }\n getLiteral() {\n return this.literal;\n }\n }\n class DynoConst extends DynoLiteral {\n constructor(type, value) {\n super(type, "");\n this.value = value;\n }\n getLiteral() {\n const { type, value } = this;\n switch (type) {\n case "bool":\n return value ? "true" : "false";\n case "uint":\n return numberAsUint(value);\n case "int":\n return numberAsInt(value);\n case "float":\n return numberAsFloat(value);\n case "bvec2": {\n const v = value;\n return `bvec2(${v[0]}, ${v[1]})`;\n }\n case "uvec2": {\n if (value instanceof Vector2) {\n return `uvec2(${numberAsUint(value.x)}, ${numberAsUint(value.y)})`;\n }\n const v = value;\n return `uvec2(${numberAsUint(v[0])}, ${numberAsUint(v[1])})`;\n }\n case "ivec2": {\n if (value instanceof Vector2) {\n return `ivec2(${numberAsInt(value.x)}, ${numberAsInt(value.y)})`;\n }\n const v = value;\n return `ivec2(${numberAsInt(v[0])}, ${numberAsInt(v[1])})`;\n }\n case "vec2": {\n if (value instanceof Vector2) {\n return `vec2(${numberAsFloat(value.x)}, ${numberAsFloat(value.y)})`;\n }\n const v = value;\n return `vec2(${numberAsFloat(v[0])}, ${numberAsFloat(v[1])})`;\n }\n case "bvec3": {\n const v = value;\n return `bvec3(${v[0]}, ${v[1]}, ${v[2]})`;\n }\n case "uvec3": {\n if (value instanceof Vector3) {\n return `uvec3(${numberAsUint(value.x)}, ${numberAsUint(value.y)}, ${numberAsUint(value.z)})`;\n }\n const v = value;\n return `uvec3(${numberAsUint(v[0])}, ${numberAsUint(v[1])}, ${numberAsUint(v[2])})`;\n }\n case "ivec3": {\n if (value instanceof Vector3) {\n return `ivec3(${numberAsInt(value.x)}, ${numberAsInt(value.y)}, ${numberAsInt(value.z)})`;\n }\n const v = value;\n return `ivec3(${numberAsInt(v[0])}, ${numberAsInt(v[1])}, ${numberAsInt(v[2])})`;\n }\n case "vec3": {\n if (value instanceof Vector3) {\n return `vec3(${numberAsFloat(value.x)}, ${numberAsFloat(value.y)}, ${numberAsFloat(value.z)})`;\n }\n const v = value;\n return `vec3(${numberAsFloat(v[0])}, ${numberAsFloat(v[1])}, ${numberAsFloat(v[2])})`;\n }\n case "bvec4": {\n const v = value;\n return `bvec4(${v[0]}, ${v[1]}, ${v[2]}, ${v[3]})`;\n }\n case "uvec4": {\n if (value instanceof Vector4) {\n return `uvec4(${numberAsUint(value.x)}, ${numberAsUint(value.y)}, ${numberAsUint(value.z)}, ${numberAsUint(value.w)})`;\n }\n const v = value;\n return `uvec4(${numberAsUint(v[0])}, ${numberAsUint(v[1])}, ${numberAsUint(v[2])}, ${numberAsUint(v[3])})`;\n }\n case "ivec4": {\n if (value instanceof Vector4) {\n return `ivec4(${numberAsInt(value.x)}, ${numberAsInt(value.y)}, ${numberAsInt(value.z)}, ${numberAsInt(value.w)})`;\n }\n const v = value;\n return `ivec4(${numberAsInt(v[0])}, ${numberAsInt(v[1])}, ${numberAsInt(v[2])}, ${numberAsInt(v[3])})`;\n }\n case "vec4": {\n if (value instanceof Vector4) {\n return `vec4(${numberAsFloat(value.x)}, ${numberAsFloat(value.y)}, ${numberAsFloat(value.z)}, ${numberAsFloat(value.w)})`;\n }\n if (value instanceof Quaternion) {\n return `vec4(${numberAsFloat(value.x)}, ${numberAsFloat(value.y)}, ${numberAsFloat(value.z)}, ${numberAsFloat(value.w)})`;\n }\n const v = value;\n return `vec4(${numberAsFloat(v[0])}, ${numberAsFloat(v[1])}, ${numberAsFloat(v[2])}, ${numberAsFloat(v[3])})`;\n }\n case "mat2":\n case "mat2x2": {\n const m = value;\n const e = m instanceof Matrix2 ? m.elements : value;\n const arg = new Array(4).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat2x3": {\n const e = value;\n const arg = new Array(6).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat2x4": {\n const e = value;\n const arg = new Array(8).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat3":\n case "mat3x3": {\n const m = value;\n const e = m instanceof Matrix3 ? m.elements : value;\n const arg = new Array(9).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat3x2": {\n const e = value;\n const arg = new Array(6).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat3x4": {\n const e = value;\n const arg = new Array(12).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat4":\n case "mat4x4": {\n const m = value;\n const e = m instanceof Matrix4 ? m.elements : value;\n const arg = new Array(16).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat4x2": {\n const e = value;\n const arg = new Array(8).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n case "mat4x3": {\n const e = value;\n const arg = new Array(12).fill(0).map((_, i2) => numberAsFloat(e[i2]));\n return `${type}(${arg.join(", ")})`;\n }\n default:\n throw new Error(`Type not implemented: ${String(type)}`);\n }\n }\n }\n function dynoConst(type, value) {\n return new DynoConst(type, value);\n }\n const DEFAULT_INDENT = " ";\n class Compilation {\n constructor({ indent } = {}) {\n this.globals = /* @__PURE__ */ new Set();\n this.statements = [];\n this.uniforms = {};\n this.declares = /* @__PURE__ */ new Set();\n this.updaters = [];\n this.sequence = 0;\n this.indent = DEFAULT_INDENT;\n this.indent = indent ?? DEFAULT_INDENT;\n }\n nextSequence() {\n return this.sequence++;\n }\n }\n class Dyno {\n constructor({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n statements,\n generate\n }) {\n this.inTypes = inTypes ?? {};\n this.outTypes = outTypes ?? {};\n this.inputs = inputs ?? {};\n this.update = update;\n this.globals = globals;\n this.statements = statements;\n this.generate = generate ?? (({ inputs: inputs2, outputs, compile }) => {\n var _a2, _b2;\n return {\n globals: (_a2 = this.globals) == null ? void 0 : _a2.call(this, { inputs: inputs2, outputs, compile }),\n statements: (_b2 = this.statements) == null ? void 0 : _b2.call(this, { inputs: inputs2, outputs, compile })\n };\n });\n }\n get outputs() {\n const outputs = {};\n for (const key in this.outTypes) {\n outputs[key] = new DynoOutput(this, key);\n }\n return outputs;\n }\n apply(inputs) {\n Object.assign(this.inputs, inputs);\n return this.outputs;\n }\n compile({\n inputs,\n outputs,\n compile\n }) {\n const result = [\n `// ${this.constructor.name}(${Object.values(inputs).join(", ")}) => (${Object.values(outputs).join(", ")})`\n ];\n const declares = [];\n for (const key in outputs) {\n const name = outputs[key];\n if (name && !compile.declares.has(name)) {\n compile.declares.add(name);\n declares.push(key);\n }\n }\n const { globals, statements, uniforms } = this.generate({\n inputs,\n outputs,\n compile\n });\n for (const global of globals ?? []) {\n compile.globals.add(global);\n }\n for (const key in uniforms) {\n compile.uniforms[key] = uniforms[key];\n }\n if (this.update) {\n compile.updaters.push(this.update);\n }\n for (const key of declares) {\n const name = outputs[key];\n if (name) {\n if (!compile.uniforms[name]) {\n result.push(`${dynoDeclare(name, this.outTypes[key])};`);\n }\n }\n }\n if (statements == null ? void 0 : statements.length) {\n result.push("{");\n result.push(...statements.map((line) => compile.indent + line));\n result.push("}");\n }\n return result;\n }\n }\n class DynoBlock extends Dyno {\n constructor({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n construct\n }) {\n super({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n generate: (args) => this.generateBlock(args)\n });\n this.construct = construct;\n }\n generateBlock({\n inputs,\n outputs,\n compile\n }) {\n var _a2, _b2;\n const blockInputs = {};\n const blockOutputs = {};\n for (const key in inputs) {\n if (inputs[key] != null) {\n blockInputs[key] = new DynoLiteral(this.inTypes[key], inputs[key]);\n }\n }\n for (const key in outputs) {\n if (outputs[key] != null) {\n blockOutputs[key] = new DynoValue(this.outTypes[key]);\n }\n }\n const options = { roots: [] };\n const returned = this.construct(blockInputs, blockOutputs, options);\n for (const global of ((_a2 = this.globals) == null ? void 0 : _a2.call(this, { inputs, outputs, compile })) ?? []) {\n compile.globals.add(global);\n }\n const ordering = [];\n const nodeOuts = /* @__PURE__ */ new Map();\n function visit(node, outKey, outName) {\n let outs = nodeOuts.get(node);\n if (!outs) {\n outs = {\n sequence: compile.nextSequence(),\n outNames: /* @__PURE__ */ new Map(),\n newOuts: /* @__PURE__ */ new Set()\n };\n nodeOuts.set(node, outs);\n for (const key in node.inputs) {\n let input = node.inputs[key];\n while (input) {\n if (input instanceof DynoValue) {\n if (input instanceof DynoOutput) {\n visit(input.dyno, input.key);\n }\n break;\n }\n input = input.dynoOut();\n }\n }\n ordering.push(node);\n }\n if (outKey) {\n if (!outName) {\n outs.newOuts.add(outKey);\n }\n outs.outNames.set(outKey, outName ?? `${outKey}_${outs.sequence}`);\n }\n }\n for (const root of options.roots) {\n visit(root);\n }\n for (const key in blockOutputs) {\n let value = (returned == null ? void 0 : returned[key]) ?? blockOutputs[key];\n while (value) {\n if (value instanceof DynoValue) {\n if (value instanceof DynoOutput) {\n visit(value.dyno, value.key, outputs[key]);\n }\n break;\n }\n value = value.dynoOut();\n }\n blockOutputs[key] = value;\n }\n const steps = [];\n for (const dyno2 of ordering) {\n const inputs2 = {};\n const outputs2 = {};\n for (const key in dyno2.inputs) {\n let value = dyno2.inputs[key];\n while (value) {\n if (value instanceof DynoValue) {\n if (value instanceof DynoLiteral) {\n inputs2[key] = value.getLiteral();\n } else if (value instanceof DynoOutput) {\n const source = (_b2 = nodeOuts.get(value.dyno)) == null ? void 0 : _b2.outNames.get(value.key);\n if (!source) {\n throw new Error(\n `Source not found for ${value.dyno.constructor.name}.${value.key}`\n );\n }\n inputs2[key] = source;\n }\n break;\n }\n value = value.dynoOut();\n }\n }\n const outs = nodeOuts.get(dyno2) ?? { outNames: /* @__PURE__ */ new Map() };\n for (const [key, name] of outs.outNames.entries()) {\n outputs2[key] = name;\n }\n const newSteps = dyno2.compile({ inputs: inputs2, outputs: outputs2, compile });\n steps.push(newSteps);\n }\n const literalOutputs = [];\n for (const key in outputs) {\n if (blockOutputs[key] instanceof DynoLiteral) {\n literalOutputs.push(\n `${outputs[key]} = ${blockOutputs[key].getLiteral()};`\n );\n }\n }\n if (literalOutputs.length > 0) {\n steps.push(literalOutputs);\n }\n const statements = steps.flatMap((step, index) => {\n return index === 0 ? step : ["", ...step];\n });\n return { statements };\n }\n }\n function dynoBlock(inTypes, outTypes, construct, { update, globals } = {}) {\n return new DynoBlock({ inTypes, outTypes, construct, update, globals });\n }\n function dyno({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n statements,\n generate\n }) {\n return new Dyno({\n inTypes,\n outTypes,\n inputs,\n update,\n globals,\n statements,\n generate\n });\n }\n function dynoDeclare(name, type, count) {\n const typeStr = typeof type === "string" ? type : type.type;\n if (!typeStr) {\n throw new Error(`Invalid DynoType: ${String(type)}`);\n }\n return `${typeStr} ${name}${count != null ? `[${count}]` : ""}`;\n }\n function unindentLines(s) {\n var _a2;\n let seenNonEmpty = false;\n const lines = s.split("\\n").map((line) => {\n const trimmedLine = line.trimEnd();\n if (seenNonEmpty) {\n return trimmedLine;\n }\n if (trimmedLine.length > 0) {\n seenNonEmpty = true;\n return trimmedLine;\n }\n return null;\n }).filter((line) => line != null);\n while (lines.length > 0 && lines[lines.length - 1].length === 0) {\n lines.pop();\n }\n if (lines.length === 0) {\n return [];\n }\n const indent = (_a2 = lines[0].match(/^\\s*/)) == null ? void 0 : _a2[0];\n if (!indent) {\n return lines;\n }\n const regex = new RegExp(`^${indent}`);\n return lines.map((line) => line.replace(regex, ""));\n }\n function unindent(s) {\n return unindentLines(s).join("\\n");\n }\n class UnaryOp extends Dyno {\n constructor({\n a,\n outKey,\n outTypeFunc\n }) {\n const inTypes = { a: valType(a) };\n const outType = outTypeFunc(valType(a));\n const outTypes = { [outKey]: outType };\n super({ inTypes, outTypes, inputs: { a } });\n this.outKey = outKey;\n }\n dynoOut() {\n return new DynoOutput(this, this.outKey);\n }\n }\n class BinaryOp extends Dyno {\n constructor({\n a,\n b,\n outKey,\n outTypeFunc\n }) {\n const inTypes = { a: valType(a), b: valType(b) };\n const outType = outTypeFunc(valType(a), valType(b));\n const outTypes = { [outKey]: outType };\n super({ inTypes, outTypes, inputs: { a, b } });\n this.outKey = outKey;\n }\n dynoOut() {\n return new DynoOutput(this, this.outKey);\n }\n }\n const f32buffer = new Float32Array(1);\n const u32buffer = new Uint32Array(f32buffer.buffer);\n function toHalf(f) {\n f32buffer[0] = f;\n const bits2 = u32buffer[0];\n const sign = bits2 >> 31 & 1;\n const exp = bits2 >> 23 & 255;\n const frac = bits2 & 8388607;\n const halfSign = sign << 15;\n if (exp === 255) {\n if (frac !== 0) {\n return halfSign | 32767;\n }\n return halfSign | 31744;\n }\n const newExp = exp - 127 + 15;\n if (newExp >= 31) {\n return halfSign | 31744;\n }\n if (newExp <= 0) {\n if (newExp < -10) {\n return halfSign;\n }\n const subFrac = (frac | 8388608) >> 1 - newExp + 13;\n return halfSign | subFrac;\n }\n const halfFrac = frac >> 13;\n return halfSign | newExp << 10 | halfFrac;\n }\n function fromHalf(h) {\n const sign = h >> 15 & 1;\n const exp = h >> 10 & 31;\n const frac = h & 1023;\n let f32bits;\n if (exp === 0) {\n if (frac === 0) {\n f32bits = sign << 31;\n } else {\n let mant = frac;\n let e = -14;\n while ((mant & 1024) === 0) {\n mant <<= 1;\n e--;\n }\n mant &= 1023;\n const newExp = e + 127;\n const newFrac = mant << 13;\n f32bits = sign << 31 | newExp << 23 | newFrac;\n }\n } else if (exp === 31) {\n if (frac === 0) {\n f32bits = sign << 31 | 2139095040;\n } else {\n f32bits = sign << 31 | 2143289344;\n }\n } else {\n const newExp = exp - 15 + 127;\n const newFrac = frac << 13;\n f32bits = sign << 31 | newExp << 23 | newFrac;\n }\n u32buffer[0] = f32bits;\n return f32buffer[0];\n }\n function floatToUint8(v) {\n return Math.max(0, Math.min(255, Math.round(v * 255)));\n }\n function getArrayBuffers(ctx) {\n const buffers = [];\n const seen = /* @__PURE__ */ new Set();\n function traverse(obj) {\n if (obj && typeof obj === "object" && !seen.has(obj)) {\n seen.add(obj);\n if (obj instanceof ArrayBuffer) {\n buffers.push(obj);\n } else if (ArrayBuffer.isView(obj)) {\n buffers.push(obj.buffer);\n } else if (Array.isArray(obj)) {\n obj.forEach(traverse);\n } else {\n Object.values(obj).forEach(traverse);\n }\n }\n }\n traverse(ctx);\n return buffers;\n }\n function setPackedSplat(packedSplats, index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) {\n const uR = floatToUint8(r);\n const uG = floatToUint8(g);\n const uB = floatToUint8(b);\n const uA = floatToUint8(opacity);\n const uQuat = encodeQuatOctXy88R8(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n const uQuatX = uQuat & 255;\n const uQuatY = uQuat >>> 8 & 255;\n const uQuatZ = uQuat >>> 16 & 255;\n const uScaleX = scaleX === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleX) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uScaleY = scaleY === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleY) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uScaleZ = scaleZ === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleZ) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uCenterX = toHalf(x2);\n const uCenterY = toHalf(y);\n const uCenterZ = toHalf(z);\n const i4 = index * 4;\n packedSplats[i4] = uR | uG << 8 | uB << 16 | uA << 24;\n packedSplats[i4 + 1] = uCenterX | uCenterY << 16;\n packedSplats[i4 + 2] = uCenterZ | uQuatX << 16 | uQuatY << 24;\n packedSplats[i4 + 3] = uScaleX | uScaleY << 8 | uScaleZ << 16 | uQuatZ << 24;\n }\n function setPackedSplatCenter(packedSplats, index, x2, y, z) {\n const uCenterX = toHalf(x2);\n const uCenterY = toHalf(y);\n const uCenterZ = toHalf(z);\n const i4 = index * 4;\n packedSplats[i4 + 1] = uCenterX | uCenterY << 16;\n packedSplats[i4 + 2] = uCenterZ | packedSplats[i4 + 2] & 4294901760;\n }\n function setPackedSplatScales(packedSplats, index, scaleX, scaleY, scaleZ) {\n const uScaleX = scaleX === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleX) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uScaleY = scaleY === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleY) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const uScaleZ = scaleZ === 0 ? 0 : Math.min(\n 255,\n Math.max(\n 0,\n Math.round((Math.log(scaleZ) - LN_SCALE_MIN) / LN_RESCALE) + 1\n )\n );\n const i4 = index * 4;\n packedSplats[i4 + 3] = uScaleX | uScaleY << 8 | uScaleZ << 16 | packedSplats[i4 + 3] & 4278190080;\n }\n function setPackedSplatQuat(packedSplats, index, quatX, quatY, quatZ, quatW) {\n const uQuat = encodeQuatOctXy88R8(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n const uQuatX = uQuat & 255;\n const uQuatY = uQuat >>> 8 & 255;\n const uQuatZ = uQuat >>> 16 & 255;\n const i4 = index * 4;\n packedSplats[i4 + 2] = packedSplats[i4 + 2] & 65535 | uQuatX << 16 | uQuatY << 24;\n packedSplats[i4 + 3] = packedSplats[i4 + 3] & 16777215 | uQuatZ << 24;\n }\n function setPackedSplatRgb(packedSplats, index, r, g, b) {\n const uR = floatToUint8(r);\n const uG = floatToUint8(g);\n const uB = floatToUint8(b);\n const i4 = index * 4;\n packedSplats[i4] = uR | uG << 8 | uB << 16 | packedSplats[i4] & 4278190080;\n }\n function setPackedSplatOpacity(packedSplats, index, opacity) {\n const uA = floatToUint8(opacity);\n const i4 = index * 4;\n packedSplats[i4] = packedSplats[i4] & 16777215 | uA << 24;\n }\n const packedCenter = new Vector3();\n const packedScales = new Vector3();\n const packedQuaternion = new Quaternion();\n const packedColor = new Color();\n const packedFields = {\n center: packedCenter,\n scales: packedScales,\n quaternion: packedQuaternion,\n color: packedColor,\n opacity: 0\n };\n function unpackSplat(packedSplats, index) {\n const result = packedFields;\n const i4 = index * 4;\n const word0 = packedSplats[i4];\n const word1 = packedSplats[i4 + 1];\n const word2 = packedSplats[i4 + 2];\n const word3 = packedSplats[i4 + 3];\n result.color.set(\n (word0 & 255) / 255,\n (word0 >>> 8 & 255) / 255,\n (word0 >>> 16 & 255) / 255\n );\n result.opacity = (word0 >>> 24 & 255) / 255;\n result.center.set(\n fromHalf(word1 & 65535),\n fromHalf(word1 >>> 16 & 65535),\n fromHalf(word2 & 65535)\n );\n const uScalesX = word3 & 255;\n result.scales.x = uScalesX === 0 ? 0 : Math.exp(LN_SCALE_MIN + (uScalesX - 1) * LN_RESCALE);\n const uScalesY = word3 >>> 8 & 255;\n result.scales.y = uScalesY === 0 ? 0 : Math.exp(LN_SCALE_MIN + (uScalesY - 1) * LN_RESCALE);\n const uScalesZ = word3 >>> 16 & 255;\n result.scales.z = uScalesZ === 0 ? 0 : Math.exp(LN_SCALE_MIN + (uScalesZ - 1) * LN_RESCALE);\n const uQuat = word2 >>> 16 & 65535 | word3 >>> 8 & 16711680;\n decodeQuatOctXy88R8(uQuat, result.quaternion);\n return result;\n }\n function getTextureSize(numSplats) {\n const width = SPLAT_TEX_WIDTH;\n const height = Math.max(\n SPLAT_TEX_MIN_HEIGHT,\n Math.min(SPLAT_TEX_HEIGHT, Math.ceil(numSplats / width))\n );\n const depth = Math.ceil(numSplats / (width * height));\n const maxSplats = width * height * depth;\n return { width, height, depth, maxSplats };\n }\n function computeMaxSplats(numSplats) {\n const width = SPLAT_TEX_WIDTH;\n const height = Math.max(\n SPLAT_TEX_MIN_HEIGHT,\n Math.min(SPLAT_TEX_HEIGHT, Math.ceil(numSplats / width))\n );\n const depth = Math.ceil(numSplats / (width * height));\n return width * height * depth;\n }\n const IDENT_VERTEX_SHADER = unindent(`\n precision highp float;\n\n in vec3 position;\n\n void main() {\n gl_Position = vec4(position.xy, 0.0, 1.0);\n }\n`);\n function encodeQuatOctXy88R8(q) {\n const qnorm = q.clone().normalize();\n if (qnorm.w < 0) {\n qnorm.set(-qnorm.x, -qnorm.y, -qnorm.z, -qnorm.w);\n }\n const theta = 2 * Math.acos(qnorm.w);\n const xyz_norm = Math.sqrt(\n qnorm.x * qnorm.x + qnorm.y * qnorm.y + qnorm.z * qnorm.z\n );\n const axis = xyz_norm < 1e-6 ? new Vector3(1, 0, 0) : new Vector3(qnorm.x, qnorm.y, qnorm.z).divideScalar(xyz_norm);\n const sum = Math.abs(axis.x) + Math.abs(axis.y) + Math.abs(axis.z);\n let p_x = axis.x / sum;\n let p_y = axis.y / sum;\n if (axis.z < 0) {\n const tmp = p_x;\n p_x = (1 - Math.abs(p_y)) * (p_x >= 0 ? 1 : -1);\n p_y = (1 - Math.abs(tmp)) * (p_y >= 0 ? 1 : -1);\n }\n const u_f = p_x * 0.5 + 0.5;\n const v_f = p_y * 0.5 + 0.5;\n const quantU = Math.round(u_f * 255);\n const quantV = Math.round(v_f * 255);\n const angleInt = Math.round(theta * (255 / Math.PI));\n return angleInt << 16 | quantV << 8 | quantU;\n }\n function decodeQuatOctXy88R8(encoded, out) {\n const quantU = encoded & 255;\n const quantV = encoded >>> 8 & 255;\n const angleInt = encoded >>> 16 & 255;\n const u_f = quantU / 255;\n const v_f = quantV / 255;\n let f_x = (u_f - 0.5) * 2;\n let f_y = (v_f - 0.5) * 2;\n const f_z = 1 - (Math.abs(f_x) + Math.abs(f_y));\n const t = Math.max(-f_z, 0);\n f_x += f_x >= 0 ? -t : t;\n f_y += f_y >= 0 ? -t : t;\n const axis = new Vector3(f_x, f_y, f_z).normalize();\n const theta = angleInt / 255 * Math.PI;\n const halfTheta = theta * 0.5;\n const s = Math.sin(halfTheta);\n const w = Math.cos(halfTheta);\n out.set(axis.x * s, axis.y * s, axis.z * s, w);\n return out;\n }\n function packSint8Bytes(b0, b1, b2, b3) {\n const clampedB0 = Math.max(-127, Math.min(127, b0 * 127));\n const clampedB1 = Math.max(-127, Math.min(127, b1 * 127));\n const clampedB2 = Math.max(-127, Math.min(127, b2 * 127));\n const clampedB3 = Math.max(-127, Math.min(127, b3 * 127));\n return clampedB0 & 255 | (clampedB1 & 255) << 8 | (clampedB2 & 255) << 16 | (clampedB3 & 255) << 24;\n }\n function encodeSh1Rgb(sh1Array, index, sh1Rgb) {\n const base = index * 2;\n for (let i2 = 0; i2 < 9; ++i2) {\n const value = Math.max(-63, Math.min(63, sh1Rgb[i2] * 63)) & 127;\n const bitStart = i2 * 7;\n const bitEnd = bitStart + 7;\n const wordStart = Math.floor(bitStart / 32);\n const bitOffset = bitStart - wordStart * 32;\n const firstWord = value << bitOffset & 4294967295;\n sh1Array[base + wordStart] |= firstWord;\n if (bitEnd > wordStart * 32 + 32) {\n const secondWord = value >>> 32 - bitOffset & 4294967295;\n sh1Array[base + wordStart + 1] |= secondWord;\n }\n }\n }\n function encodeSh2Rgb(sh2Array, index, sh2Rgb) {\n sh2Array[index * 4 + 0] = packSint8Bytes(\n sh2Rgb[0],\n sh2Rgb[1],\n sh2Rgb[2],\n sh2Rgb[3]\n );\n sh2Array[index * 4 + 1] = packSint8Bytes(\n sh2Rgb[4],\n sh2Rgb[5],\n sh2Rgb[6],\n sh2Rgb[7]\n );\n sh2Array[index * 4 + 2] = packSint8Bytes(\n sh2Rgb[8],\n sh2Rgb[9],\n sh2Rgb[10],\n sh2Rgb[11]\n );\n sh2Array[index * 4 + 3] = packSint8Bytes(\n sh2Rgb[12],\n sh2Rgb[13],\n sh2Rgb[14],\n 0\n );\n }\n function encodeSh3Rgb(sh3Array, index, sh3Rgb) {\n const base = index * 4;\n for (let i2 = 0; i2 < 21; ++i2) {\n const value = Math.max(-31, Math.min(31, sh3Rgb[i2] * 31)) & 63;\n const bitStart = i2 * 6;\n const bitEnd = bitStart + 6;\n const wordStart = Math.floor(bitStart / 32);\n const bitOffset = bitStart - wordStart * 32;\n const firstWord = value << bitOffset & 4294967295;\n sh3Array[base + wordStart] |= firstWord;\n if (bitEnd > wordStart * 32 + 32) {\n const secondWord = value >>> 32 - bitOffset & 4294967295;\n sh3Array[base + wordStart + 1] |= secondWord;\n }\n }\n }\n function decompressPartialGzip(fileBytes, numBytes) {\n const chunks = [];\n let totalBytes = 0;\n let result = null;\n const gunzip = new Gunzip((data, final) => {\n chunks.push(data);\n totalBytes += data.length;\n if (final || totalBytes >= numBytes) {\n const allBytes = new Uint8Array(totalBytes);\n let offset2 = 0;\n for (const chunk of chunks) {\n allBytes.set(chunk, offset2);\n offset2 += chunk.length;\n }\n result = allBytes.slice(0, numBytes);\n }\n });\n const CHUNK_SIZE = 1024;\n let offset = 0;\n while (result == null && offset < fileBytes.length) {\n const chunk = fileBytes.slice(offset, offset + CHUNK_SIZE);\n gunzip.push(chunk, false);\n offset += CHUNK_SIZE;\n }\n if (result == null) {\n gunzip.push(new Uint8Array(), true);\n if (result == null) {\n throw new Error("Failed to decompress partial gzip");\n }\n }\n return result;\n }\n class GunzipReader {\n constructor({\n fileBytes,\n chunkBytes = 64 * 1024\n }) {\n this.fileBytes = fileBytes;\n this.chunkBytes = chunkBytes;\n this.offset = 0;\n this.chunks = [];\n this.totalBytes = 0;\n this.gunzip = new Gunzip((chunk, _final) => {\n this.chunks.push(chunk);\n this.totalBytes += chunk.length;\n });\n }\n read(numBytes) {\n while (this.totalBytes < numBytes && this.offset < this.fileBytes.length) {\n const end = Math.min(\n this.offset + this.chunkBytes,\n this.fileBytes.length\n );\n this.gunzip.push(this.fileBytes.subarray(this.offset, end), false);\n this.offset = end;\n }\n if (this.totalBytes < numBytes && this.offset >= this.fileBytes.length) {\n this.gunzip.push(new Uint8Array(0), true);\n }\n if (this.totalBytes < numBytes) {\n throw new Error(\n `Unexpected EOF: needed ${numBytes}, got ${this.totalBytes}`\n );\n }\n const allBytes = new Uint8Array(this.totalBytes);\n let outOffset = 0;\n for (const chunk of this.chunks) {\n allBytes.set(chunk, outOffset);\n outOffset += chunk.length;\n }\n const result = allBytes.subarray(0, numBytes);\n this.chunks = [allBytes.subarray(numBytes)];\n this.totalBytes -= numBytes;\n return result;\n }\n }\n function decodeAntiSplat(fileBytes, initNumSplats, splatCallback) {\n const numSplats = Math.floor(fileBytes.length / 32);\n if (numSplats * 32 !== fileBytes.length) {\n throw new Error("Invalid .splat file size");\n }\n initNumSplats(numSplats);\n const f32 = new Float32Array(fileBytes.buffer);\n for (let i2 = 0; i2 < numSplats; ++i2) {\n const i322 = i2 * 32;\n const i8 = i2 * 8;\n const x2 = f32[i8 + 0];\n const y = f32[i8 + 1];\n const z = f32[i8 + 2];\n const scaleX = f32[i8 + 3];\n const scaleY = f32[i8 + 4];\n const scaleZ = f32[i8 + 5];\n const r = fileBytes[i322 + 24] / 255;\n const g = fileBytes[i322 + 25] / 255;\n const b = fileBytes[i322 + 26] / 255;\n const opacity = fileBytes[i322 + 27] / 255;\n const quatW = (fileBytes[i322 + 28] - 128) / 128;\n const quatX = (fileBytes[i322 + 29] - 128) / 128;\n const quatY = (fileBytes[i322 + 30] - 128) / 128;\n const quatZ = (fileBytes[i322 + 31] - 128) / 128;\n splatCallback(\n i2,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n }\n }\n function unpackAntiSplat(fileBytes) {\n let numSplats = 0;\n let maxSplats = 0;\n let packedArray = new Uint32Array(0);\n decodeAntiSplat(\n fileBytes,\n (cbNumSplats) => {\n numSplats = cbNumSplats;\n maxSplats = computeMaxSplats(numSplats);\n packedArray = new Uint32Array(maxSplats * 4);\n },\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n setPackedSplat(\n packedArray,\n index,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n }\n );\n return { packedArray, numSplats };\n }\n const KSPLAT_COMPRESSION = {\n 0: {\n bytesPerCenter: 12,\n bytesPerScale: 12,\n bytesPerRotation: 16,\n bytesPerColor: 4,\n bytesPerSphericalHarmonicsComponent: 4,\n scaleOffsetBytes: 12,\n rotationOffsetBytes: 24,\n colorOffsetBytes: 40,\n sphericalHarmonicsOffsetBytes: 44,\n scaleRange: 1\n },\n 1: {\n bytesPerCenter: 6,\n bytesPerScale: 6,\n bytesPerRotation: 8,\n bytesPerColor: 4,\n bytesPerSphericalHarmonicsComponent: 2,\n scaleOffsetBytes: 6,\n rotationOffsetBytes: 12,\n colorOffsetBytes: 20,\n sphericalHarmonicsOffsetBytes: 24,\n scaleRange: 32767\n },\n 2: {\n bytesPerCenter: 6,\n bytesPerScale: 6,\n bytesPerRotation: 8,\n bytesPerColor: 4,\n bytesPerSphericalHarmonicsComponent: 1,\n scaleOffsetBytes: 6,\n rotationOffsetBytes: 12,\n colorOffsetBytes: 20,\n sphericalHarmonicsOffsetBytes: 24,\n scaleRange: 32767\n }\n };\n const KSPLAT_SH_DEGREE_TO_COMPONENTS = {\n 0: 0,\n 1: 9,\n 2: 24,\n 3: 45\n };\n function decodeKsplat(fileBytes, initNumSplats, splatCallback, shCallback) {\n var _a2;\n const HEADER_BYTES = 4096;\n const SECTION_BYTES = 1024;\n let headerOffset = 0;\n const header = new DataView(fileBytes.buffer, headerOffset, HEADER_BYTES);\n headerOffset += HEADER_BYTES;\n const versionMajor = header.getUint8(0);\n const versionMinor = header.getUint8(1);\n if (versionMajor !== 0 || versionMinor < 1) {\n throw new Error(\n `Unsupported .ksplat version: ${versionMajor}.${versionMinor}`\n );\n }\n const maxSectionCount = header.getUint32(4, true);\n header.getUint32(16, true);\n const compressionLevel = header.getUint16(20, true);\n if (compressionLevel < 0 || compressionLevel > 2) {\n throw new Error(`Invalid .ksplat compression level: ${compressionLevel}`);\n }\n header.getFloat32(36, true) || -1.5;\n header.getFloat32(40, true) || 1.5;\n let sectionBase = HEADER_BYTES + maxSectionCount * SECTION_BYTES;\n for (let section = 0; section < maxSectionCount; ++section) {\n const section2 = new DataView(fileBytes.buffer, headerOffset, SECTION_BYTES);\n headerOffset += SECTION_BYTES;\n const sectionSplatCount = section2.getUint32(0, true);\n const sectionMaxSplatCount = section2.getUint32(4, true);\n const bucketSize = section2.getUint32(8, true);\n const bucketCount = section2.getUint32(12, true);\n const bucketBlockSize = section2.getFloat32(16, true);\n const bucketStorageSizeBytes = section2.getUint16(20, true);\n const compressionScaleRange = (section2.getUint32(24, true) || ((_a2 = KSPLAT_COMPRESSION[compressionLevel]) == null ? void 0 : _a2.scaleRange)) ?? 1;\n const partiallyFilledBucketCount = section2.getUint32(36, true);\n const bucketsMetaDataSizeBytes = partiallyFilledBucketCount * 4;\n const bucketsStorageSizeBytes = bucketStorageSizeBytes * bucketCount + bucketsMetaDataSizeBytes;\n const sphericalHarmonicsDegree = section2.getUint16(40, true);\n const shComponents = KSPLAT_SH_DEGREE_TO_COMPONENTS[sphericalHarmonicsDegree];\n const {\n bytesPerCenter,\n bytesPerScale,\n bytesPerRotation,\n bytesPerColor,\n bytesPerSphericalHarmonicsComponent,\n scaleOffsetBytes,\n rotationOffsetBytes,\n colorOffsetBytes,\n sphericalHarmonicsOffsetBytes\n } = KSPLAT_COMPRESSION[compressionLevel];\n const bytesPerSplat = bytesPerCenter + bytesPerScale + bytesPerRotation + bytesPerColor + shComponents * bytesPerSphericalHarmonicsComponent;\n const splatDataStorageSizeBytes = bytesPerSplat * sectionMaxSplatCount;\n const storageSizeBytes = splatDataStorageSizeBytes + bucketsStorageSizeBytes;\n const sh1 = sphericalHarmonicsDegree >= 1 ? new Float32Array(3 * 3) : void 0;\n const sh2 = sphericalHarmonicsDegree >= 2 ? new Float32Array(5 * 3) : void 0;\n const sh3 = sphericalHarmonicsDegree >= 3 ? new Float32Array(7 * 3) : void 0;\n const compressionScaleFactor = bucketBlockSize / 2 / compressionScaleRange;\n const bucketsBase = sectionBase + bucketsMetaDataSizeBytes;\n const dataBase = sectionBase + bucketsStorageSizeBytes;\n const data = new DataView(\n fileBytes.buffer,\n dataBase,\n splatDataStorageSizeBytes\n );\n const bucketArray = new Float32Array(\n fileBytes.buffer,\n bucketsBase,\n bucketCount * 3\n );\n for (let i2 = 0; i2 < sectionSplatCount; ++i2) {\n const splatOffset = i2 * bytesPerSplat;\n const bucketIndex = Math.floor(i2 / bucketSize);\n const x2 = compressionLevel === 0 ? data.getFloat32(splatOffset + 0, true) : (data.getUint16(splatOffset + 0, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 0];\n const y = compressionLevel === 0 ? data.getFloat32(splatOffset + 4, true) : (data.getUint16(splatOffset + 2, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 1];\n const z = compressionLevel === 0 ? data.getFloat32(splatOffset + 8, true) : (data.getUint16(splatOffset + 4, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 2];\n const scaleX = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 0, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 0, true));\n const scaleY = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 4, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 2, true));\n const scaleZ = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 8, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 4, true));\n const quatW = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 0, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 0, true)\n );\n const quatX = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 4, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 2, true)\n );\n const quatY = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 8, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 4, true)\n );\n const quatZ = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 12, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 6, true)\n );\n const r = data.getUint8(splatOffset + colorOffsetBytes + 0) / 255;\n const g = data.getUint8(splatOffset + colorOffsetBytes + 1) / 255;\n const b = data.getUint8(splatOffset + colorOffsetBytes + 2) / 255;\n const opacity = data.getUint8(splatOffset + colorOffsetBytes + 3) / 255;\n splatCallback(\n i2,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n if (sphericalHarmonicsDegree >= 1 && sh1) {\n shCallback == null ? void 0 : shCallback(i2, sh1, sh2, sh3);\n }\n }\n sectionBase += storageSizeBytes;\n }\n }\n function unpackKsplat(fileBytes) {\n var _a2;\n const HEADER_BYTES = 4096;\n const SECTION_BYTES = 1024;\n let headerOffset = 0;\n const header = new DataView(fileBytes.buffer, headerOffset, HEADER_BYTES);\n headerOffset += HEADER_BYTES;\n const versionMajor = header.getUint8(0);\n const versionMinor = header.getUint8(1);\n if (versionMajor !== 0 || versionMinor < 1) {\n throw new Error(\n `Unsupported .ksplat version: ${versionMajor}.${versionMinor}`\n );\n }\n const maxSectionCount = header.getUint32(4, true);\n const splatCount = header.getUint32(16, true);\n const compressionLevel = header.getUint16(20, true);\n if (compressionLevel < 0 || compressionLevel > 2) {\n throw new Error(`Invalid .ksplat compression level: ${compressionLevel}`);\n }\n const minSphericalHarmonicsCoeff = header.getFloat32(36, true) || -1.5;\n const maxSphericalHarmonicsCoeff = header.getFloat32(40, true) || 1.5;\n const numSplats = splatCount;\n const maxSplats = computeMaxSplats(numSplats);\n const packedArray = new Uint32Array(maxSplats * 4);\n const extra = {};\n let sectionBase = HEADER_BYTES + maxSectionCount * SECTION_BYTES;\n for (let section = 0; section < maxSectionCount; ++section) {\n let getSh = function(splatOffset, component) {\n if (compressionLevel === 0) {\n return data.getFloat32(\n splatOffset + sphericalHarmonicsOffsetBytes + component * 4,\n true\n );\n }\n if (compressionLevel === 1) {\n return fromHalf(\n data.getUint16(\n splatOffset + sphericalHarmonicsOffsetBytes + component * 2,\n true\n )\n );\n }\n const t = data.getUint8(splatOffset + sphericalHarmonicsOffsetBytes + component) / 255;\n return minSphericalHarmonicsCoeff + t * (maxSphericalHarmonicsCoeff - minSphericalHarmonicsCoeff);\n };\n const section2 = new DataView(fileBytes.buffer, headerOffset, SECTION_BYTES);\n headerOffset += SECTION_BYTES;\n const sectionSplatCount = section2.getUint32(0, true);\n const sectionMaxSplatCount = section2.getUint32(4, true);\n const bucketSize = section2.getUint32(8, true);\n const bucketCount = section2.getUint32(12, true);\n const bucketBlockSize = section2.getFloat32(16, true);\n const bucketStorageSizeBytes = section2.getUint16(20, true);\n const compressionScaleRange = (section2.getUint32(24, true) || ((_a2 = KSPLAT_COMPRESSION[compressionLevel]) == null ? void 0 : _a2.scaleRange)) ?? 1;\n const partiallyFilledBucketCount = section2.getUint32(36, true);\n const bucketsMetaDataSizeBytes = partiallyFilledBucketCount * 4;\n const bucketsStorageSizeBytes = bucketStorageSizeBytes * bucketCount + bucketsMetaDataSizeBytes;\n const sphericalHarmonicsDegree = section2.getUint16(40, true);\n const shComponents = KSPLAT_SH_DEGREE_TO_COMPONENTS[sphericalHarmonicsDegree];\n const {\n bytesPerCenter,\n bytesPerScale,\n bytesPerRotation,\n bytesPerColor,\n bytesPerSphericalHarmonicsComponent,\n scaleOffsetBytes,\n rotationOffsetBytes,\n colorOffsetBytes,\n sphericalHarmonicsOffsetBytes\n } = KSPLAT_COMPRESSION[compressionLevel];\n const bytesPerSplat = bytesPerCenter + bytesPerScale + bytesPerRotation + bytesPerColor + shComponents * bytesPerSphericalHarmonicsComponent;\n const splatDataStorageSizeBytes = bytesPerSplat * sectionMaxSplatCount;\n const storageSizeBytes = splatDataStorageSizeBytes + bucketsStorageSizeBytes;\n const sh1Index = [0, 3, 6, 1, 4, 7, 2, 5, 8];\n const sh2Index = [\n 9,\n 14,\n 19,\n 10,\n 15,\n 20,\n 11,\n 16,\n 21,\n 12,\n 17,\n 22,\n 13,\n 18,\n 23\n ];\n const sh3Index = [\n 24,\n 31,\n 38,\n 25,\n 32,\n 39,\n 26,\n 33,\n 40,\n 27,\n 34,\n 41,\n 28,\n 35,\n 42,\n 29,\n 36,\n 43,\n 30,\n 37,\n 44\n ];\n const sh1 = sphericalHarmonicsDegree >= 1 ? new Float32Array(3 * 3) : void 0;\n const sh2 = sphericalHarmonicsDegree >= 2 ? new Float32Array(5 * 3) : void 0;\n const sh3 = sphericalHarmonicsDegree >= 3 ? new Float32Array(7 * 3) : void 0;\n const compressionScaleFactor = bucketBlockSize / 2 / compressionScaleRange;\n const bucketsBase = sectionBase + bucketsMetaDataSizeBytes;\n const dataBase = sectionBase + bucketsStorageSizeBytes;\n const data = new DataView(\n fileBytes.buffer,\n dataBase,\n splatDataStorageSizeBytes\n );\n const bucketArray = new Float32Array(\n fileBytes.buffer,\n bucketsBase,\n bucketCount * 3\n );\n for (let i2 = 0; i2 < sectionSplatCount; ++i2) {\n const splatOffset = i2 * bytesPerSplat;\n const bucketIndex = Math.floor(i2 / bucketSize);\n const x2 = compressionLevel === 0 ? data.getFloat32(splatOffset + 0, true) : (data.getUint16(splatOffset + 0, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 0];\n const y = compressionLevel === 0 ? data.getFloat32(splatOffset + 4, true) : (data.getUint16(splatOffset + 2, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 1];\n const z = compressionLevel === 0 ? data.getFloat32(splatOffset + 8, true) : (data.getUint16(splatOffset + 4, true) - compressionScaleRange) * compressionScaleFactor + bucketArray[3 * bucketIndex + 2];\n const scaleX = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 0, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 0, true));\n const scaleY = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 4, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 2, true));\n const scaleZ = compressionLevel === 0 ? data.getFloat32(splatOffset + scaleOffsetBytes + 8, true) : fromHalf(data.getUint16(splatOffset + scaleOffsetBytes + 4, true));\n const quatW = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 0, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 0, true)\n );\n const quatX = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 4, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 2, true)\n );\n const quatY = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 8, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 4, true)\n );\n const quatZ = compressionLevel === 0 ? data.getFloat32(splatOffset + rotationOffsetBytes + 12, true) : fromHalf(\n data.getUint16(splatOffset + rotationOffsetBytes + 6, true)\n );\n const r = data.getUint8(splatOffset + colorOffsetBytes + 0) / 255;\n const g = data.getUint8(splatOffset + colorOffsetBytes + 1) / 255;\n const b = data.getUint8(splatOffset + colorOffsetBytes + 2) / 255;\n const opacity = data.getUint8(splatOffset + colorOffsetBytes + 3) / 255;\n setPackedSplat(\n packedArray,\n i2,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n if (sphericalHarmonicsDegree >= 1) {\n if (sh1) {\n if (!extra.sh1) {\n extra.sh1 = new Uint32Array(numSplats * 2);\n }\n for (const [i22, key] of sh1Index.entries()) {\n sh1[i22] = getSh(splatOffset, key);\n }\n encodeSh1Rgb(extra.sh1, i2, sh1);\n }\n if (sh2) {\n if (!extra.sh2) {\n extra.sh2 = new Uint32Array(numSplats * 4);\n }\n for (const [i22, key] of sh2Index.entries()) {\n sh2[i22] = getSh(splatOffset, key);\n }\n encodeSh2Rgb(extra.sh2, i2, sh2);\n }\n if (sh3) {\n if (!extra.sh3) {\n extra.sh3 = new Uint32Array(numSplats * 4);\n }\n for (const [i22, key] of sh3Index.entries()) {\n sh3[i22] = getSh(splatOffset, key);\n }\n encodeSh3Rgb(extra.sh3, i2, sh3);\n }\n }\n }\n sectionBase += storageSizeBytes;\n }\n return { packedArray, numSplats, extra };\n }\n const _PlyReader = class _PlyReader {\n // Create a PlyReader from a Uint8Array/ArrayBuffer, no parsing done yet\n constructor({ fileBytes }) {\n this.header = "";\n this.littleEndian = true;\n this.elements = {};\n this.comments = [];\n this.data = null;\n this.numSplats = 0;\n this.fileBytes = fileBytes instanceof ArrayBuffer ? new Uint8Array(fileBytes) : fileBytes;\n }\n // Identify and parse the PLY text header (assumed to be <64KB in size).\n // this.elements will contain all the elements in the file, typically\n // "vertex" contains the Gsplat data.\n async parseHeader() {\n const bufferStream = new ReadableStream({\n start: (controller) => {\n controller.enqueue(this.fileBytes.slice(0, 65536));\n controller.close();\n }\n });\n const decoder = bufferStream.pipeThrough(new TextDecoderStream()).getReader();\n this.header = "";\n const headerTerminator = "end_header\\n";\n while (true) {\n const { value, done } = await decoder.read();\n if (done) {\n throw new Error("Failed to read header");\n }\n this.header += value;\n const endHeader = this.header.indexOf(headerTerminator);\n if (endHeader >= 0) {\n this.header = this.header.slice(0, endHeader + headerTerminator.length);\n break;\n }\n }\n const headerLen = new TextEncoder().encode(this.header).length;\n this.data = new DataView(this.fileBytes.buffer, headerLen);\n this.elements = {};\n let curElement = null;\n this.comments = [];\n this.header.trim().split("\\n").forEach((line, lineIndex) => {\n const trimmedLine = line.trim();\n if (lineIndex === 0) {\n if (trimmedLine !== "ply") {\n throw new Error("Invalid PLY header");\n }\n return;\n }\n if (trimmedLine.length === 0) {\n return;\n }\n const fields = trimmedLine.split(" ");\n switch (fields[0]) {\n case "format":\n if (fields[1] === "binary_little_endian") {\n this.littleEndian = true;\n } else if (fields[1] === "binary_big_endian") {\n this.littleEndian = false;\n } else {\n throw new Error(`Unsupported PLY format: ${fields[1]}`);\n }\n if (fields[2] !== "1.0") {\n throw new Error(`Unsupported PLY version: ${fields[2]}`);\n }\n break;\n case "end_header":\n break;\n case "comment":\n this.comments.push(trimmedLine.slice("comment ".length));\n break;\n case "element": {\n const name = fields[1];\n curElement = {\n name,\n count: Number.parseInt(fields[2]),\n properties: {}\n };\n this.elements[name] = curElement;\n break;\n }\n case "property":\n if (curElement == null) {\n throw new Error("Property must be inside an element");\n }\n if (fields[1] === "list") {\n curElement.properties[fields[4]] = {\n isList: true,\n type: fields[3],\n countType: fields[2]\n };\n } else {\n curElement.properties[fields[2]] = {\n isList: false,\n type: fields[1]\n };\n }\n break;\n }\n });\n if (this.elements.vertex) {\n this.numSplats = this.elements.vertex.count;\n }\n }\n parseData(elementCallback) {\n let offset = 0;\n const data = this.data;\n if (data == null) {\n throw new Error("No data to parse");\n }\n for (const elementName in this.elements) {\n const element = this.elements[elementName];\n const { count, properties } = element;\n const item = {};\n const parsers = [];\n for (const [propertyName, property] of Object.entries(properties)) {\n if (!property.isList) {\n item[propertyName] = 0;\n parsers.push(() => {\n item[propertyName] = PARSE_FIELD[property.type](\n data,\n offset,\n this.littleEndian\n );\n offset += FIELD_BYTES[property.type];\n });\n } else {\n item[propertyName] = [];\n parsers.push(() => {\n const list = item[propertyName];\n list.length = PARSE_FIELD[property.countType](\n data,\n offset,\n this.littleEndian\n );\n offset += FIELD_BYTES[property.countType];\n for (let i2 = 0; i2 < list.length; i2++) {\n list[i2] = PARSE_FIELD[property.type](\n data,\n offset,\n this.littleEndian\n );\n offset += FIELD_BYTES[property.type];\n }\n });\n }\n }\n const callback = elementCallback(element) ?? (() => {\n });\n for (let index = 0; index < count; index++) {\n for (const parser of parsers) {\n parser();\n }\n callback(index, item);\n }\n }\n }\n // Parse all the Gsplat data in the PLY file in go, invoking the given\n // callbacks for each Gsplat.\n parseSplats(splatCallback, shCallback) {\n if (this.elements.vertex == null) {\n throw new Error("No vertex element found");\n }\n let isSuperSplat = false;\n const ssChunks = [];\n let numSh = 0;\n let sh1Props = [];\n let sh2Props = [];\n let sh3Props = [];\n let sh1 = void 0;\n let sh2 = void 0;\n let sh3 = void 0;\n function prepareSh() {\n const num_f_rest = NUM_SH_TO_NUM_F_REST[numSh];\n sh1Props = new Array(3).fill(null).flatMap(\n (_, k) => [0, 1, 2].map((_2, d) => `f_rest_${k + d * num_f_rest / 3}`)\n );\n sh2Props = new Array(5).fill(null).flatMap(\n (_, k) => [0, 1, 2].map((_2, d) => `f_rest_${3 + k + d * num_f_rest / 3}`)\n );\n sh3Props = new Array(7).fill(null).flatMap(\n (_, k) => [0, 1, 2].map((_2, d) => `f_rest_${8 + k + d * num_f_rest / 3}`)\n );\n sh1 = numSh >= 1 ? new Float32Array(3 * 3) : void 0;\n sh2 = numSh >= 2 ? new Float32Array(5 * 3) : void 0;\n sh3 = numSh >= 3 ? new Float32Array(7 * 3) : void 0;\n }\n function ssShCallback(index, item) {\n if (!sh1) {\n throw new Error("Missing sh1");\n }\n for (const [i2, key] of sh1Props.entries()) {\n sh1[i2] = item[key] * 8 / 255 - 4;\n }\n if (sh2) {\n for (const [i2, key] of sh2Props.entries()) {\n sh2[i2] = item[key] * 8 / 255 - 4;\n }\n }\n if (sh3) {\n for (const [i2, key] of sh3Props.entries()) {\n sh3[i2] = item[key] * 8 / 255 - 4;\n }\n }\n shCallback == null ? void 0 : shCallback(index, sh1, sh2, sh3);\n }\n function initSuperSplat(element) {\n const {\n min_x,\n min_y,\n min_z,\n max_x,\n max_y,\n max_z,\n min_scale_x,\n min_scale_y,\n min_scale_z,\n max_scale_x,\n max_scale_y,\n max_scale_z,\n min_r,\n min_g,\n min_b,\n max_r,\n max_g,\n max_b\n } = element.properties;\n if (!min_x || !min_y || !min_z || !max_x || !max_y || !max_z || !min_scale_x || !min_scale_y || !min_scale_z || !max_scale_x || !max_scale_y || !max_scale_z || !min_r || !min_g || !min_b || !max_r || !max_g || !max_b) {\n throw new Error("Missing PLY chunk properties");\n }\n isSuperSplat = true;\n return (index, item) => {\n const {\n min_x: min_x2,\n min_y: min_y2,\n min_z: min_z2,\n max_x: max_x2,\n max_y: max_y2,\n max_z: max_z2,\n min_scale_x: min_scale_x2,\n min_scale_y: min_scale_y2,\n min_scale_z: min_scale_z2,\n max_scale_x: max_scale_x2,\n max_scale_y: max_scale_y2,\n max_scale_z: max_scale_z2,\n min_r: min_r2,\n min_g: min_g2,\n min_b: min_b2,\n max_r: max_r2,\n max_g: max_g2,\n max_b: max_b2\n } = item;\n ssChunks.push({\n min_x: min_x2,\n min_y: min_y2,\n min_z: min_z2,\n max_x: max_x2,\n max_y: max_y2,\n max_z: max_z2,\n min_scale_x: min_scale_x2,\n min_scale_y: min_scale_y2,\n min_scale_z: min_scale_z2,\n max_scale_x: max_scale_x2,\n max_scale_y: max_scale_y2,\n max_scale_z: max_scale_z2,\n min_r: min_r2,\n min_g: min_g2,\n min_b: min_b2,\n max_r: max_r2,\n max_g: max_g2,\n max_b: max_b2\n });\n };\n }\n function decodeSuperSplat(element) {\n if (shCallback && element.name === "sh") {\n numSh = getNumSh(element.properties);\n prepareSh();\n return ssShCallback;\n }\n if (element.name !== "vertex") {\n return null;\n }\n const { packed_position, packed_rotation, packed_scale, packed_color } = element.properties;\n if (!packed_position || !packed_rotation || !packed_scale || !packed_color) {\n throw new Error(\n "Missing PLY properties: packed_position, packed_rotation, packed_scale, packed_color"\n );\n }\n const SQRT2 = Math.sqrt(2);\n return (index, item) => {\n const chunk = ssChunks[index >>> 8];\n if (chunk == null) {\n throw new Error("Missing PLY chunk");\n }\n const {\n min_x,\n min_y,\n min_z,\n max_x,\n max_y,\n max_z,\n min_scale_x,\n min_scale_y,\n min_scale_z,\n max_scale_x,\n max_scale_y,\n max_scale_z,\n min_r,\n min_g,\n min_b,\n max_r,\n max_g,\n max_b\n } = chunk;\n const { packed_position: packed_position2, packed_rotation: packed_rotation2, packed_scale: packed_scale2, packed_color: packed_color2 } = item;\n const x2 = (packed_position2 >>> 21 & 2047) / 2047 * (max_x - min_x) + min_x;\n const y = (packed_position2 >>> 11 & 1023) / 1023 * (max_y - min_y) + min_y;\n const z = (packed_position2 & 2047) / 2047 * (max_z - min_z) + min_z;\n const r0 = ((packed_rotation2 >>> 20 & 1023) / 1023 - 0.5) * SQRT2;\n const r1 = ((packed_rotation2 >>> 10 & 1023) / 1023 - 0.5) * SQRT2;\n const r2 = ((packed_rotation2 & 1023) / 1023 - 0.5) * SQRT2;\n const rr = Math.sqrt(Math.max(0, 1 - r0 * r0 - r1 * r1 - r2 * r2));\n const rOrder = packed_rotation2 >>> 30;\n const quatX = rOrder === 0 ? r0 : rOrder === 1 ? rr : r1;\n const quatY = rOrder <= 1 ? r1 : rOrder === 2 ? rr : r2;\n const quatZ = rOrder <= 2 ? r2 : rr;\n const quatW = rOrder === 0 ? rr : r0;\n const scaleX = Math.exp(\n (packed_scale2 >>> 21 & 2047) / 2047 * (max_scale_x - min_scale_x) + min_scale_x\n );\n const scaleY = Math.exp(\n (packed_scale2 >>> 11 & 1023) / 1023 * (max_scale_y - min_scale_y) + min_scale_y\n );\n const scaleZ = Math.exp(\n (packed_scale2 & 2047) / 2047 * (max_scale_z - min_scale_z) + min_scale_z\n );\n const r = (packed_color2 >>> 24 & 255) / 255 * (max_r - min_r) + min_r;\n const g = (packed_color2 >>> 16 & 255) / 255 * (max_g - min_g) + min_g;\n const b = (packed_color2 >>> 8 & 255) / 255 * (max_b - min_b) + min_b;\n const opacity = (packed_color2 & 255) / 255;\n splatCallback(\n index,\n x2,\n y,\n z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n };\n }\n const elementCallback = (element) => {\n if (element.name === "chunk") {\n if (this.comments.some(\n (comment) => comment.toLowerCase().includes("supersplat")\n )) {\n return initSuperSplat(element);\n }\n }\n if (isSuperSplat) {\n return decodeSuperSplat(element);\n }\n if (element.name !== "vertex") {\n return null;\n }\n const {\n x: x2,\n y,\n z,\n scale_0,\n scale_1,\n scale_2,\n rot_0,\n rot_1,\n rot_2,\n rot_3,\n opacity,\n f_dc_0,\n f_dc_1,\n f_dc_2,\n red,\n green,\n blue,\n alpha\n } = element.properties;\n if (!x2 || !y || !z) {\n throw new Error("Missing PLY properties: x, y, z");\n }\n const hasScales = scale_0 && scale_1 && scale_2;\n const hasRots = rot_0 && rot_1 && rot_2 && rot_3;\n const alphaDiv = alpha != null ? FIELD_SCALE[alpha.type] : 1;\n const redDiv = red != null ? FIELD_SCALE[red.type] : 1;\n const greenDiv = green != null ? FIELD_SCALE[green.type] : 1;\n const blueDiv = blue != null ? FIELD_SCALE[blue.type] : 1;\n numSh = getNumSh(element.properties);\n prepareSh();\n return (index, item) => {\n const scaleX = hasScales ? Math.exp(item.scale_0) : _PlyReader.defaultPointScale;\n const scaleY = hasScales ? Math.exp(item.scale_1) : _PlyReader.defaultPointScale;\n const scaleZ = hasScales ? Math.exp(item.scale_2) : _PlyReader.defaultPointScale;\n const quatX = hasRots ? item.rot_1 : 0;\n const quatY = hasRots ? item.rot_2 : 0;\n const quatZ = hasRots ? item.rot_3 : 0;\n const quatW = hasRots ? item.rot_0 : 1;\n const op = opacity != null ? 1 / (1 + Math.exp(-item.opacity)) : alpha != null ? item.alpha / alphaDiv : 1;\n const r = f_dc_0 != null ? item.f_dc_0 * SH_C0$1 + 0.5 : red != null ? item.red / redDiv : 1;\n const g = f_dc_1 != null ? item.f_dc_1 * SH_C0$1 + 0.5 : green != null ? item.green / greenDiv : 1;\n const b = f_dc_2 != null ? item.f_dc_2 * SH_C0$1 + 0.5 : blue != null ? item.blue / blueDiv : 1;\n splatCallback(\n index,\n item.x,\n item.y,\n item.z,\n scaleX,\n scaleY,\n scaleZ,\n quatX,\n quatY,\n quatZ,\n quatW,\n op,\n r,\n g,\n b\n );\n if (shCallback && sh1) {\n if (sh1) {\n for (const [i2, key] of sh1Props.entries()) {\n sh1[i2] = item[key];\n }\n }\n if (sh2) {\n for (const [i2, key] of sh2Props.entries()) {\n sh2[i2] = item[key];\n }\n }\n if (sh3) {\n for (const [i2, key] of sh3Props.entries()) {\n sh3[i2] = item[key];\n }\n }\n shCallback(index, sh1, sh2, sh3);\n }\n };\n };\n this.parseData(elementCallback);\n }\n // Inject RGBA values into original PLY file, which can be used to modify\n // the color/opacity of the Gsplats and write out the modified PLY file.\n injectRgba(rgba) {\n let offset = 0;\n const data = this.data;\n if (data == null) {\n throw new Error("No parsed data");\n }\n if (rgba.length !== this.numSplats * 4) {\n throw new Error("Invalid RGBA array length");\n }\n for (const elementName in this.elements) {\n const element = this.elements[elementName];\n const { count, properties } = element;\n const parsers = [];\n let rgbaOffset = 0;\n const isVertex = elementName === "vertex";\n if (isVertex) {\n for (const name of ["opacity", "f_dc_0", "f_dc_1", "f_dc_2"]) {\n if (!properties[name] || properties[name].type !== "float") {\n throw new Error(`Can\'t injectRgba due to property: ${name}`);\n }\n }\n }\n for (const [propertyName, property] of Object.entries(properties)) {\n if (!property.isList) {\n if (isVertex) {\n if (propertyName === "f_dc_0" || propertyName === "f_dc_1" || propertyName === "f_dc_2") {\n const component = Number.parseInt(\n propertyName.slice("f_dc_".length)\n );\n parsers.push(() => {\n const value = (rgba[rgbaOffset + component] / 255 - 0.5) / SH_C0$1;\n SET_FIELD[property.type](\n data,\n offset,\n this.littleEndian,\n value\n );\n });\n } else if (propertyName === "opacity") {\n parsers.push(() => {\n const value = Math.max(\n -100,\n Math.min(\n 100,\n -Math.log(1 / (rgba[rgbaOffset + 3] / 255) - 1)\n )\n );\n SET_FIELD[property.type](\n data,\n offset,\n this.littleEndian,\n value\n );\n });\n }\n }\n parsers.push(() => {\n offset += FIELD_BYTES[property.type];\n });\n } else {\n parsers.push(() => {\n const length = PARSE_FIELD[property.countType](\n data,\n offset,\n this.littleEndian\n );\n offset += FIELD_BYTES[property.countType];\n offset += length * FIELD_BYTES[property.type];\n });\n }\n }\n for (let index = 0; index < count; index++) {\n for (const parser of parsers) {\n parser();\n }\n if (isVertex) {\n rgbaOffset += 4;\n }\n }\n }\n }\n };\n _PlyReader.defaultPointScale = 1e-3;\n let PlyReader = _PlyReader;\n const SH_C0$1 = 0.28209479177387814;\n const PARSE_FIELD = {\n char: (data, offset, littleEndian) => {\n return data.getInt8(offset);\n },\n uchar: (data, offset, littleEndian) => {\n return data.getUint8(offset);\n },\n short: (data, offset, littleEndian) => {\n return data.getInt16(offset, littleEndian);\n },\n ushort: (data, offset, littleEndian) => {\n return data.getUint16(offset, littleEndian);\n },\n int: (data, offset, littleEndian) => {\n return data.getInt32(offset, littleEndian);\n },\n uint: (data, offset, littleEndian) => {\n return data.getUint32(offset, littleEndian);\n },\n float: (data, offset, littleEndian) => {\n return data.getFloat32(offset, littleEndian);\n },\n double: (data, offset, littleEndian) => {\n return data.getFloat64(offset, littleEndian);\n }\n };\n const SET_FIELD = {\n char: (data, offset, littleEndian, value) => {\n data.setInt8(offset, value);\n },\n uchar: (data, offset, littleEndian, value) => {\n data.setUint8(offset, value);\n },\n short: (data, offset, littleEndian, value) => {\n data.setInt16(offset, value, littleEndian);\n },\n ushort: (data, offset, littleEndian, value) => {\n data.setUint16(offset, value, littleEndian);\n },\n int: (data, offset, littleEndian, value) => {\n data.setInt32(offset, value, littleEndian);\n },\n uint: (data, offset, littleEndian, value) => {\n data.setUint32(offset, value, littleEndian);\n },\n float: (data, offset, littleEndian, value) => {\n data.setFloat32(offset, value, littleEndian);\n },\n double: (data, offset, littleEndian, value) => {\n data.setFloat64(offset, value, littleEndian);\n }\n };\n const FIELD_BYTES = {\n char: 1,\n uchar: 1,\n short: 2,\n ushort: 2,\n int: 4,\n uint: 4,\n float: 4,\n double: 8\n };\n const FIELD_SCALE = {\n char: 127,\n uchar: 255,\n short: 32767,\n ushort: 65535,\n int: 2147483647,\n uint: 4294967295,\n float: 1,\n double: 1\n };\n const NUM_F_REST_TO_NUM_SH = {\n 0: 0,\n 9: 1,\n 24: 2,\n 45: 3\n };\n const NUM_SH_TO_NUM_F_REST = {\n 0: 0,\n 1: 9,\n 2: 24,\n 3: 45\n };\n function getNumSh(properties) {\n let num_f_rest = 0;\n while (properties[`f_rest_${num_f_rest}`]) {\n num_f_rest += 1;\n }\n const numSh = NUM_F_REST_TO_NUM_SH[num_f_rest];\n if (numSh == null) {\n throw new Error(`Unsupported number of SH coefficients: ${num_f_rest}`);\n }\n return numSh;\n }\n const Gsplat = { type: "Gsplat" };\n const TPackedSplats = { type: "PackedSplats" };\n const readPackedSplat = (packedSplats, index) => new ReadPackedSplat({ packedSplats, index });\n const readPackedSplatRange = (packedSplats, index, base, count) => new ReadPackedSplatRange({ packedSplats, index, base, count });\n const splitGsplat = (gsplat) => new SplitGsplat({ gsplat });\n const combineGsplat = ({\n gsplat,\n flags,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n }) => {\n return new CombineGsplat({\n gsplat,\n flags,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n });\n };\n const transformGsplat = (gsplat, {\n scale,\n rotate,\n translate,\n recolor\n }) => {\n return new TransformGsplat({ gsplat, scale, rotate, translate, recolor });\n };\n const defineGsplat = unindent(`\n struct Gsplat {\n vec3 center;\n uint flags;\n vec3 scales;\n int index;\n vec4 quaternion;\n vec4 rgba;\n };\n const uint GSPLAT_FLAG_ACTIVE = 1u << 0u;\n\n bool isGsplatActive(uint flags) {\n return (flags & GSPLAT_FLAG_ACTIVE) != 0u;\n }\n`);\n const definePackedSplats = unindent(`\n struct PackedSplats {\n usampler2DArray texture;\n int numSplats;\n };\n`);\n const defineReadPackedSplat = unindent(`\n bool readPackedSplat(usampler2DArray texture, int numSplats, int index, out Gsplat gsplat) {\n if ((index >= 0) && (index < numSplats)) {\n uvec4 packed = texelFetch(texture, splatTexCoord(index), 0);\n unpackSplat(packed, gsplat.center, gsplat.scales, gsplat.quaternion, gsplat.rgba);\n return true;\n } else {\n return false;\n }\n }\n`);\n class ReadPackedSplat extends Dyno {\n constructor({\n packedSplats,\n index\n }) {\n super({\n inTypes: { packedSplats: TPackedSplats, index: "int" },\n outTypes: { gsplat: Gsplat },\n inputs: { packedSplats, index },\n globals: () => [defineGsplat, definePackedSplats, defineReadPackedSplat],\n statements: ({ inputs, outputs }) => {\n const { gsplat } = outputs;\n if (!gsplat) {\n return [];\n }\n const { packedSplats: packedSplats2, index: index2 } = inputs;\n let statements;\n if (packedSplats2 && index2) {\n statements = unindentLines(`\n if (readPackedSplat(${packedSplats2}.texture, ${packedSplats2}.numSplats, ${index2}, ${gsplat})) {\n bool zeroSize = all(equal(${gsplat}.scales, vec3(0.0, 0.0, 0.0)));\n ${gsplat}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;\n } else {\n ${gsplat}.flags = 0u;\n }\n `);\n } else {\n statements = [`${gsplat}.flags = 0u;`];\n }\n statements.push(`${gsplat}.index = ${index2 ?? "0"};`);\n return statements;\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "gsplat");\n }\n }\n class ReadPackedSplatRange extends Dyno {\n constructor({\n packedSplats,\n index,\n base,\n count\n }) {\n super({\n inTypes: {\n packedSplats: TPackedSplats,\n index: "int",\n base: "int",\n count: "int"\n },\n outTypes: { gsplat: Gsplat },\n inputs: { packedSplats, index, base, count },\n globals: () => [defineGsplat, definePackedSplats, defineReadPackedSplat],\n statements: ({ inputs, outputs }) => {\n const { gsplat } = outputs;\n if (!gsplat) {\n return [];\n }\n const { packedSplats: packedSplats2, index: index2, base: base2, count: count2 } = inputs;\n let statements;\n if (packedSplats2 && index2 && base2 && count2) {\n statements = unindentLines(`\n ${gsplat}.flags = 0u;\n if ((${index2} >= ${base2}) && (${index2} < (${base2} + ${count2}))) {\n if (readPackedSplat(${packedSplats2}.texture, ${packedSplats2}.numSplats, ${index2}, ${gsplat})) {\n bool zeroSize = all(equal(${gsplat}.scales, vec3(0.0, 0.0, 0.0)));\n ${gsplat}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;\n }\n }\n `);\n } else {\n statements = [`${gsplat}.flags = 0u;`];\n }\n statements.push(`${gsplat}.index = ${index2 ?? "0"};`);\n return statements;\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "gsplat");\n }\n }\n class SplitGsplat extends Dyno {\n constructor({ gsplat }) {\n super({\n inTypes: { gsplat: Gsplat },\n outTypes: {\n flags: "uint",\n active: "bool",\n index: "int",\n center: "vec3",\n scales: "vec3",\n quaternion: "vec4",\n rgba: "vec4",\n rgb: "vec3",\n opacity: "float",\n x: "float",\n y: "float",\n z: "float",\n r: "float",\n g: "float",\n b: "float"\n },\n inputs: { gsplat },\n globals: () => [defineGsplat],\n statements: ({ inputs, outputs }) => {\n const { gsplat: gsplat2 } = inputs;\n const {\n flags,\n active,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n } = outputs;\n return [\n !flags ? null : `${flags} = ${gsplat2 ? `${gsplat2}.flags` : "0u"};`,\n !active ? null : `${active} = isGsplatActive(${gsplat2 ? `${gsplat2}.flags` : "0u"});`,\n !index ? null : `${index} = ${gsplat2 ? `${gsplat2}.index` : "0"};`,\n !center ? null : `${center} = ${gsplat2 ? `${gsplat2}.center` : "vec3(0.0, 0.0, 0.0)"};`,\n !scales ? null : `${scales} = ${gsplat2 ? `${gsplat2}.scales` : "vec3(0.0, 0.0, 0.0)"};`,\n !quaternion ? null : `${quaternion} = ${gsplat2 ? `${gsplat2}.quaternion` : "vec4(0.0, 0.0, 0.0, 1.0)"};`,\n !rgba ? null : `${rgba} = ${gsplat2 ? `${gsplat2}.rgba` : "vec4(0.0, 0.0, 0.0, 0.0)"};`,\n !rgb ? null : `${rgb} = ${gsplat2 ? `${gsplat2}.rgba.rgb` : "vec3(0.0, 0.0, 0.0)"};`,\n !opacity ? null : `${opacity} = ${gsplat2 ? `${gsplat2}.rgba.a` : "0.0"};`,\n !x2 ? null : `${x2} = ${gsplat2 ? `${gsplat2}.center.x` : "0.0"};`,\n !y ? null : `${y} = ${gsplat2 ? `${gsplat2}.center.y` : "0.0"};`,\n !z ? null : `${z} = ${gsplat2 ? `${gsplat2}.center.z` : "0.0"};`,\n !r ? null : `${r} = ${gsplat2 ? `${gsplat2}.rgba.r` : "0.0"};`,\n !g ? null : `${g} = ${gsplat2 ? `${gsplat2}.rgba.g` : "0.0"};`,\n !b ? null : `${b} = ${gsplat2 ? `${gsplat2}.rgba.b` : "0.0"};`\n ].filter(Boolean);\n }\n });\n }\n }\n class CombineGsplat extends Dyno {\n constructor({\n gsplat,\n flags,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n }) {\n super({\n inTypes: {\n gsplat: Gsplat,\n flags: "uint",\n index: "int",\n center: "vec3",\n scales: "vec3",\n quaternion: "vec4",\n rgba: "vec4",\n rgb: "vec3",\n opacity: "float",\n x: "float",\n y: "float",\n z: "float",\n r: "float",\n g: "float",\n b: "float"\n },\n outTypes: { gsplat: Gsplat },\n inputs: {\n gsplat,\n flags,\n index,\n center,\n scales,\n quaternion,\n rgba,\n rgb,\n opacity,\n x: x2,\n y,\n z,\n r,\n g,\n b\n },\n globals: () => [defineGsplat],\n statements: ({ inputs, outputs }) => {\n const { gsplat: outGsplat } = outputs;\n if (!outGsplat) {\n return [];\n }\n const {\n gsplat: gsplat2,\n flags: flags2,\n index: index2,\n center: center2,\n scales: scales2,\n quaternion: quaternion2,\n rgba: rgba2,\n rgb: rgb2,\n opacity: opacity2,\n x: x22,\n y: y2,\n z: z2,\n r: r2,\n g: g2,\n b: b2\n } = inputs;\n return [\n `${outGsplat}.flags = ${flags2 ?? (gsplat2 ? `${gsplat2}.flags` : "0u")};`,\n `${outGsplat}.index = ${index2 ?? (gsplat2 ? `${gsplat2}.index` : "0")};`,\n `${outGsplat}.center = ${center2 ?? (gsplat2 ? `${gsplat2}.center` : "vec3(0.0, 0.0, 0.0)")};`,\n `${outGsplat}.scales = ${scales2 ?? (gsplat2 ? `${gsplat2}.scales` : "vec3(0.0, 0.0, 0.0)")};`,\n `${outGsplat}.quaternion = ${quaternion2 ?? (gsplat2 ? `${gsplat2}.quaternion` : "vec4(0.0, 0.0, 0.0, 1.0)")};`,\n `${outGsplat}.rgba = ${rgba2 ?? (gsplat2 ? `${gsplat2}.rgba` : "vec4(0.0, 0.0, 0.0, 0.0)")};`,\n !rgb2 ? null : `${outGsplat}.rgba.rgb = ${rgb2};`,\n !opacity2 ? null : `${outGsplat}.rgba.a = ${opacity2};`,\n !x22 ? null : `${outGsplat}.center.x = ${x22};`,\n !y2 ? null : `${outGsplat}.center.y = ${y2};`,\n !z2 ? null : `${outGsplat}.center.z = ${z2};`,\n !r2 ? null : `${outGsplat}.rgba.r = ${r2};`,\n !g2 ? null : `${outGsplat}.rgba.g = ${g2};`,\n !b2 ? null : `${outGsplat}.rgba.b = ${b2};`\n ].filter(Boolean);\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "gsplat");\n }\n }\n unindent(`\n vec3 gsplatNormal(vec3 scales, vec4 quaternion) {\n float minScale = min(scales.x, min(scales.y, scales.z));\n vec3 normal;\n if (scales.z == minScale) {\n normal = vec3(0.0, 0.0, 1.0);\n } else if (scales.y == minScale) {\n normal = vec3(0.0, 1.0, 0.0);\n } else {\n normal = vec3(1.0, 0.0, 0.0);\n }\n return quatVec(quaternion, normal);\n }\n`);\n class TransformGsplat extends Dyno {\n constructor({\n gsplat,\n scale,\n rotate,\n translate,\n recolor\n }) {\n super({\n inTypes: {\n gsplat: Gsplat,\n scale: "float",\n rotate: "vec4",\n translate: "vec3",\n recolor: "vec4"\n },\n outTypes: { gsplat: Gsplat },\n inputs: { gsplat, scale, rotate, translate, recolor },\n globals: () => [defineGsplat],\n statements: ({ inputs, outputs, compile }) => {\n const { gsplat: gsplat2 } = outputs;\n if (!gsplat2 || !inputs.gsplat) {\n return [];\n }\n const { scale: scale2, rotate: rotate2, translate: translate2, recolor: recolor2 } = inputs;\n const indent = compile.indent;\n const statements = [\n `${gsplat2} = ${inputs.gsplat};`,\n `if (isGsplatActive(${gsplat2}.flags)) {`,\n scale2 ? `${indent}${gsplat2}.center *= ${scale2};` : null,\n rotate2 ? `${indent}${gsplat2}.center = quatVec(${rotate2}, ${gsplat2}.center);` : null,\n translate2 ? `${indent}${gsplat2}.center += ${translate2};` : null,\n scale2 ? `${indent}${gsplat2}.scales *= ${scale2};` : null,\n rotate2 ? `${indent}${gsplat2}.quaternion = quatQuat(${rotate2}, ${gsplat2}.quaternion);` : null,\n recolor2 ? `${indent}${gsplat2}.rgba *= ${recolor2};` : null,\n "}"\n ].filter(Boolean);\n return statements;\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "gsplat");\n }\n }\n const outputPackedSplat = (gsplat) => new OutputPackedSplat({ gsplat });\n class OutputPackedSplat extends Dyno {\n constructor({ gsplat }) {\n super({\n inTypes: { gsplat: Gsplat },\n inputs: { gsplat },\n globals: () => [defineGsplat],\n statements: ({ inputs, outputs }) => {\n const { output } = outputs;\n if (!output) {\n return [];\n }\n const { gsplat: gsplat2 } = inputs;\n if (gsplat2) {\n return unindentLines(`\n if (isGsplatActive(${gsplat2}.flags)) {\n ${output} = packSplat(${gsplat2}.center, ${gsplat2}.scales, ${gsplat2}.quaternion, ${gsplat2}.rgba);\n } else {\n ${output} = uvec4(0u, 0u, 0u, 0u);\n }\n `);\n }\n return [`${output} = uvec4(0u, 0u, 0u, 0u);`];\n }\n });\n }\n dynoOut() {\n return new DynoOutput(this, "output");\n }\n }\n class OutputRgba8 extends Dyno {\n constructor({ rgba8 }) {\n super({\n inTypes: { rgba8: "vec4" },\n inputs: { rgba8 },\n statements: ({ inputs, outputs }) => [\n `target = ${inputs.rgba8 ?? "vec4(0.0, 0.0, 0.0, 0.0)"};`\n ]\n });\n }\n dynoOut() {\n return new DynoOutput(this, "rgba8");\n }\n }\n class DynoUniform extends Dyno {\n constructor({\n key,\n type,\n count,\n value,\n update,\n globals\n }) {\n key = key ?? "value";\n super({\n outTypes: { [key]: type },\n update: () => {\n if (update) {\n const value2 = update(this.value);\n if (value2 !== void 0) {\n this.value = value2;\n }\n }\n this.uniform.value = this.value;\n },\n generate: ({ inputs, outputs }) => {\n const allGlobals = (globals == null ? void 0 : globals({ inputs, outputs })) ?? [];\n const uniforms = {};\n const name = outputs[key];\n if (name) {\n allGlobals.push(`uniform ${dynoDeclare(name, type, count)};`);\n uniforms[name] = this.uniform;\n }\n return { globals: allGlobals, uniforms };\n }\n });\n this.type = type;\n this.count = count;\n this.value = value;\n this.uniform = { value };\n this.outKey = key;\n }\n dynoOut() {\n return new DynoOutput(this, this.outKey);\n }\n }\n class DynoInt extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "int", value, update });\n }\n }\n class DynoFloat extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "float", value, update });\n }\n }\n class DynoVec3 extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "vec3", value, update });\n }\n }\n class DynoVec4 extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "vec4", value, update });\n }\n }\n class DynoUsampler2DArray extends DynoUniform {\n constructor({\n key,\n value,\n update\n }) {\n super({ key, type: "usampler2DArray", value, update });\n }\n }\n class DynoProgram {\n constructor({\n graph,\n inputs,\n outputs,\n template\n }) {\n this.graph = graph;\n this.template = template;\n this.inputs = inputs ?? {};\n this.outputs = outputs ?? {};\n const compile = new Compilation({ indent: this.template.indent });\n for (const key in this.outputs) {\n if (this.outputs[key]) {\n compile.declares.add(this.outputs[key]);\n }\n }\n const statements = graph.compile({\n inputs: this.inputs,\n outputs: this.outputs,\n compile\n });\n this.shader = template.generate({ globals: compile.globals, statements });\n this.uniforms = compile.uniforms;\n this.updaters = compile.updaters;\n }\n prepareMaterial() {\n return getMaterial(this);\n }\n update() {\n for (const updater of this.updaters) {\n updater();\n }\n }\n }\n class DynoProgramTemplate {\n constructor(template) {\n const globals = template.match(/^([ \\t]*)\\{\\{\\s*GLOBALS\\s*\\}\\}/m);\n const statements = template.match(/^([ \\t]*)\\{\\{\\s*STATEMENTS\\s*\\}\\}/m);\n if (!globals || !statements) {\n throw new Error(\n "Template must contain {{ GLOBALS }} and {{ STATEMENTS }}"\n );\n }\n this.before = template.substring(0, globals.index);\n this.between = template.substring(\n globals.index + globals[0].length,\n statements.index\n );\n this.after = template.substring(\n statements.index + statements[0].length\n );\n this.indent = statements[1];\n }\n generate({\n globals,\n statements\n }) {\n return this.before + Array.from(globals).join("\\n\\n") + this.between + statements.map((s) => this.indent + s).join("\\n") + this.after;\n }\n }\n const programMaterial = /* @__PURE__ */ new Map();\n function getMaterial(program) {\n let material = programMaterial.get(program);\n if (material) {\n return material;\n }\n material = new RawShaderMaterial({\n glslVersion: GLSL3,\n vertexShader: IDENT_VERTEX_SHADER,\n fragmentShader: program.shader,\n uniforms: program.uniforms\n });\n programMaterial.set(program, material);\n return material;\n }\n function addOutputType(a, b, operation = "add") {\n const error = () => {\n throw new Error(`Invalid ${operation} types: ${a}, ${b}`);\n };\n if (a === b) return a;\n if (a === "int") {\n if (isIntType(b)) return b;\n error();\n }\n if (b === "int") {\n if (isIntType(a)) return a;\n error();\n }\n if (a === "uint") {\n if (isUintType(b)) return b;\n error();\n }\n if (b === "uint") {\n if (isUintType(a)) return a;\n error();\n }\n if (a === "float") {\n if (isAllFloatType(b)) return b;\n error();\n }\n if (b === "float") {\n if (isAllFloatType(a)) return a;\n error();\n }\n throw new Error(`Invalid ${operation} types: ${a}, ${b}`);\n }\n function subOutputType(a, b) {\n return addOutputType(a, b, "sub");\n }\n function mulOutputType(a, b) {\n const error = () => {\n throw new Error(`Invalid mul types: ${a}, ${b}`);\n };\n const result = (value) => value;\n if (a === "int") {\n if (isIntType(b)) return result(b);\n error();\n }\n if (b === "int") {\n if (isIntType(a)) return result(a);\n error();\n }\n if (a === "uint") {\n if (isUintType(b)) return result(b);\n error();\n }\n if (b === "uint") {\n if (isUintType(a)) return result(a);\n error();\n }\n if (a === "float") {\n if (isAllFloatType(b)) return result(b);\n error();\n }\n if (b === "float") {\n if (isAllFloatType(a)) return result(a);\n error();\n }\n if (isIntType(a) || isUintType(a) || isIntType(b) || isUintType(b)) {\n if (a === b) return result(a);\n error();\n }\n if (a === "vec2") {\n if (b === "vec2" || isMat2(b)) return result("vec2");\n if (b === "mat3x2") return result("vec3");\n if (b === "mat4x2") return result("vec4");\n error();\n }\n if (a === "vec3") {\n if (b === "mat2x3") return result("vec2");\n if (b === "vec3" || isMat3(b)) return result("vec3");\n if (b === "mat4x3") return result("vec4");\n error();\n }\n if (a === "vec4") {\n if (b === "mat2x4") return result("vec2");\n if (b === "mat3x4") return result("vec3");\n if (b === "vec4" || isMat4(b)) return result("vec4");\n error();\n }\n if (b === "vec2") {\n if (isMat2(a)) return result("vec2");\n if (a === "mat2x3") return result("vec3");\n if (a === "mat2x4") return result("vec4");\n error();\n }\n if (b === "vec3") {\n if (a === "mat3x2") return result("vec2");\n if (isMat3(a)) return result("vec3");\n if (a === "mat3x4") return result("vec4");\n error();\n }\n if (b === "vec4") {\n if (a === "mat4x2") return result("vec2");\n if (a === "mat4x3") return result("vec3");\n if (isMat4(a)) return result("vec4");\n error();\n }\n if (isMat2(a)) {\n if (isMat2(b)) return result("mat2");\n if (b === "mat3x2") return result("mat3x2");\n if (b === "mat4x2") return result("mat4x2");\n error();\n }\n if (a === "mat2x3") {\n if (isMat2(b)) return result("mat2x3");\n if (b === "mat3x2") return result("mat3");\n if (b === "mat4x2") return result("mat4x3");\n error();\n }\n if (a === "mat2x4") {\n if (isMat2(b)) return result("mat2x4");\n if (b === "mat3x2") return result("mat3x4");\n if (b === "mat4x2") return result("mat4");\n error();\n }\n if (a === "mat3x2") {\n if (b === "mat2x3") return result("mat2");\n if (isMat3(b)) return result("mat3x2");\n if (b === "mat4x3") return result("mat4x2");\n error();\n }\n if (isMat3(a)) {\n if (b === "mat2x3") return result("mat2x3");\n if (isMat3(b)) return result("mat3");\n if (b === "mat4x3") return result("mat4x3");\n error();\n }\n if (a === "mat3x4") {\n if (b === "mat2x3") return result("mat2x4");\n if (isMat3(b)) return result("mat3x4");\n if (b === "mat4x3") return result("mat4");\n error();\n }\n if (a === "mat4x2") {\n if (b === "mat2x4") return result("mat2");\n if (b === "mat3x4") return result("mat3x2");\n if (isMat4(b)) return result("mat4x2");\n error();\n }\n if (a === "mat4x3") {\n if (b === "mat2x4") return result("mat2x3");\n if (b === "mat3x4") return result("mat3");\n if (isMat4(b)) return result("mat4x3");\n error();\n }\n if (isMat4(a)) {\n if (b === "mat2x4") return result("mat2x4");\n if (b === "mat3x4") return result("mat3x4");\n if (isMat4(b)) return result("mat4");\n error();\n }\n throw new Error(`Invalid mul types: ${a}, ${b}`);\n }\n const add = (a, b) => new Add({ a, b });\n const sub = (a, b) => new Sub({ a, b });\n const mul = (a, b) => new Mul({ a, b });\n class Add extends BinaryOp {\n constructor({ a, b }) {\n super({ a, b, outKey: "sum", outTypeFunc: addOutputType });\n this.statements = ({ inputs, outputs }) => {\n return [`${outputs.sum} = ${inputs.a} + ${inputs.b};`];\n };\n }\n }\n class Sub extends BinaryOp {\n constructor({ a, b }) {\n super({ a, b, outKey: "difference", outTypeFunc: subOutputType });\n this.statements = ({ inputs, outputs }) => {\n return [`${outputs.difference} = ${inputs.a} - ${inputs.b};`];\n };\n }\n }\n class Mul extends BinaryOp {\n constructor({ a, b }) {\n super({ a, b, outKey: "product", outTypeFunc: mulOutputType });\n this.statements = ({ inputs, outputs }) => {\n return [`${outputs.product} = ${inputs.a} * ${inputs.b};`];\n };\n }\n }\n const normalize = (a) => new Normalize({ a });\n const extendVec = (a, b) => new ExtendVec({ a, b });\n class Normalize extends UnaryOp {\n constructor({ a }) {\n super({ a, outTypeFunc: (aType) => aType, outKey: "normalize" });\n this.statements = ({ inputs, outputs }) => [\n `${outputs.normalize} = normalize(${inputs.a});`\n ];\n }\n }\n function extendVecOutputType(type) {\n if (type === "float") return "vec2";\n if (type === "vec2") return "vec3";\n if (type === "vec3") return "vec4";\n throw new Error("Invalid type");\n }\n class ExtendVec extends BinaryOp {\n constructor({ a, b }) {\n const type = valType(a);\n const outType = extendVecOutputType(type);\n super({ a, b, outKey: "extend", outTypeFunc: () => outType });\n this.statements = ({ inputs, outputs }) => [\n `${outputs.extend} = ${outType}(${inputs.a}, ${inputs.b});`\n ];\n }\n }\n const transformPos = (position, {\n scale,\n scales,\n rotate,\n translate\n }) => {\n return new TransformPosition({ position, scale, scales, rotate, translate }).outputs.position;\n };\n const transformDir = (dir, {\n scale,\n scales,\n rotate\n }) => {\n return new TransformDir({ dir, scale, scales, rotate }).outputs.dir;\n };\n class TransformPosition extends Dyno {\n constructor({\n position,\n scale,\n scales,\n rotate,\n translate\n }) {\n super({\n inTypes: {\n position: "vec3",\n scale: "float",\n scales: "vec3",\n rotate: "vec4",\n translate: "vec3"\n },\n outTypes: { position: "vec3" },\n inputs: { position, scale, scales, rotate, translate },\n statements: ({ inputs, outputs }) => {\n const { position: position2 } = outputs;\n if (!position2) {\n return [];\n }\n const { scale: scale2, scales: scales2, rotate: rotate2, translate: translate2 } = inputs;\n return [\n `${position2} = ${inputs.position ?? "vec3(0.0, 0.0, 0.0)"};`,\n !scale2 ? null : `${position2} *= ${scale2};`,\n !scales2 ? null : `${position2} *= ${scales2};`,\n !rotate2 ? null : `${position2} = quatVec(${rotate2}, ${position2});`,\n !translate2 ? null : `${position2} += ${translate2};`\n ].filter(Boolean);\n }\n });\n }\n }\n class TransformDir extends Dyno {\n constructor({\n dir,\n scale,\n scales,\n rotate\n }) {\n super({\n inTypes: { dir: "vec3", scale: "float", scales: "vec3", rotate: "vec4" },\n outTypes: { dir: "vec3" },\n inputs: { dir, scale, scales, rotate },\n statements: ({ inputs, outputs }) => {\n const { dir: dir2 } = outputs;\n if (!dir2) {\n return [];\n }\n const { scale: scale2, scales: scales2, rotate: rotate2 } = inputs;\n return [\n `${dir2} = ${inputs.dir ?? "vec3(0.0, 0.0, 0.0)"};`,\n !scale2 ? null : `${dir2} *= ${scale2};`,\n !scales2 ? null : `${dir2} *= ${scales2};`,\n !rotate2 ? null : `${dir2} = quatVec(${rotate2}, ${dir2});`\n ].filter(Boolean);\n }\n });\n }\n }\n var computeUvec4_default = "precision highp float;\\nprecision highp int;\\nprecision highp sampler2D;\\nprecision highp usampler2D;\\nprecision highp isampler2D;\\nprecision highp sampler2DArray;\\nprecision highp usampler2DArray;\\nprecision highp isampler2DArray;\\nprecision highp sampler3D;\\nprecision highp usampler3D;\\nprecision highp isampler3D;\\n\\n#include \\n\\nuniform uint targetLayer;\\nuniform int targetBase;\\nuniform int targetCount;\\n\\nout uvec4 target;\\n\\n{{ GLOBALS }}\\n\\nvoid produceSplat(int index) {\\n {{ STATEMENTS }}\\n}\\n\\nvoid main() {\\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\\n int index = targetIndex - targetBase;\\n\\n if ((index >= 0) && (index < targetCount)) {\\n produceSplat(index);\\n } else {\\n target = uvec4(0u, 0u, 0u, 0u);\\n }\\n}";\n const _PackedSplats = class _PackedSplats {\n constructor(options = {}) {\n this.maxSplats = 0;\n this.numSplats = 0;\n this.packedArray = null;\n this.isInitialized = false;\n this.target = null;\n this.source = null;\n this.needsUpdate = true;\n this.extra = {};\n this.dyno = new DynoPackedSplats({ packedSplats: this });\n this.initialized = Promise.resolve(this);\n this.reinitialize(options);\n }\n reinitialize(options) {\n this.isInitialized = false;\n if (options.url || options.fileBytes || options.construct) {\n this.initialized = this.asyncInitialize(options).then(() => {\n this.isInitialized = true;\n return this;\n });\n } else {\n this.initialize(options);\n this.isInitialized = true;\n this.initialized = Promise.resolve(this);\n }\n }\n initialize(options) {\n if (options.packedArray) {\n this.packedArray = options.packedArray;\n this.maxSplats = Math.floor(this.packedArray.length / 4);\n this.maxSplats = Math.floor(this.maxSplats / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n this.numSplats = Math.min(\n this.maxSplats,\n options.numSplats ?? Number.POSITIVE_INFINITY\n );\n } else {\n this.maxSplats = options.maxSplats ?? 0;\n this.numSplats = 0;\n }\n this.extra = options.extra ?? {};\n }\n async asyncInitialize(options) {\n let { url, fileBytes, construct } = options;\n if (url) {\n fileBytes = await fetch(url).then(async (response) => {\n if (!response.ok) {\n throw new Error(\n `${response.status} "${response.statusText}" fetching URL: ${url}`\n );\n }\n const arrayBuffer = await response.arrayBuffer();\n return arrayBuffer;\n });\n }\n if (fileBytes) {\n const unpacked = await unpackSplats({\n input: fileBytes,\n fileType: options.fileType,\n pathOrUrl: options.fileName ?? url\n });\n this.initialize(unpacked);\n }\n if (construct) {\n const maybePromise = construct(this);\n if (maybePromise instanceof Promise) {\n await maybePromise;\n }\n }\n }\n // Call this when you are finished with the PackedSplats and want to free\n // any buffers it holds.\n dispose() {\n if (this.target) {\n this.target.dispose();\n this.target = null;\n }\n if (this.source) {\n this.source.dispose();\n this.source = null;\n }\n }\n // Ensures that this.packedArray can fit numSplats Gsplats. If it\'s too small,\n // resize exponentially and copy over the original data.\n //\n // Typically you don\'t need to call this, because calling this.setSplat(index, ...)\n // and this.pushSplat(...) will automatically call ensureSplats() so we have\n // enough splats.\n ensureSplats(numSplats) {\n const targetSize = numSplats <= this.maxSplats ? this.maxSplats : (\n // Grow exponentially to avoid frequent reallocations\n Math.max(numSplats, 2 * this.maxSplats)\n );\n const currentSize = !this.packedArray ? 0 : this.packedArray.length / 4;\n if (!this.packedArray || targetSize > currentSize) {\n this.maxSplats = getTextureSize(targetSize).maxSplats;\n const newArray = new Uint32Array(this.maxSplats * 4);\n if (this.packedArray) {\n newArray.set(this.packedArray);\n }\n this.packedArray = newArray;\n }\n return this.packedArray;\n }\n // Ensure the extra array for the given level is large enough to hold numSplats\n ensureSplatsSh(level, numSplats) {\n let wordsPerSplat;\n let key;\n if (level === 0) {\n return this.ensureSplats(numSplats);\n }\n if (level === 1) {\n wordsPerSplat = 2;\n key = "sh1";\n } else if (level === 2) {\n wordsPerSplat = 4;\n key = "sh2";\n } else if (level === 3) {\n wordsPerSplat = 4;\n key = "sh3";\n } else {\n throw new Error(`Invalid level: ${level}`);\n }\n let maxSplats = !this.extra[key] ? 0 : this.extra[key].length / wordsPerSplat;\n const targetSize = numSplats <= maxSplats ? maxSplats : Math.max(numSplats, 2 * maxSplats);\n if (!this.extra[key] || targetSize > maxSplats) {\n maxSplats = getTextureSize(targetSize).maxSplats;\n const newArray = new Uint32Array(maxSplats * wordsPerSplat);\n if (this.extra[key]) {\n newArray.set(this.extra[key]);\n }\n this.extra[key] = newArray;\n }\n return this.extra[key];\n }\n // Unpack the 16-byte Gsplat data at index into the Three.js components\n // center: THREE.Vector3, scales: THREE.Vector3, quaternion: THREE.Quaternion,\n // opacity: number 0..1, color: THREE.Color 0..1.\n getSplat(index) {\n if (!this.packedArray || index >= this.numSplats) {\n throw new Error("Invalid index");\n }\n return unpackSplat(this.packedArray, index);\n }\n // Set all PackedSplat components at index with the provided Gsplat attributes\n // (can be the same objects returned by getSplat). Ensures there is capacity\n // for at least index+1 Gsplats.\n setSplat(index, center, scales, quaternion, opacity, color) {\n const packedSplats = this.ensureSplats(index + 1);\n setPackedSplat(\n packedSplats,\n index,\n center.x,\n center.y,\n center.z,\n scales.x,\n scales.y,\n scales.z,\n quaternion.x,\n quaternion.y,\n quaternion.z,\n quaternion.w,\n opacity,\n color.r,\n color.g,\n color.b\n );\n this.numSplats = Math.max(this.numSplats, index + 1);\n }\n // Effectively calls this.setSplat(this.numSplats++, center, ...), useful on\n // construction where you just want to iterate and create a collection of Gsplats.\n pushSplat(center, scales, quaternion, opacity, color) {\n const packedSplats = this.ensureSplats(this.numSplats + 1);\n setPackedSplat(\n packedSplats,\n this.numSplats,\n center.x,\n center.y,\n center.z,\n scales.x,\n scales.y,\n scales.z,\n quaternion.x,\n quaternion.y,\n quaternion.z,\n quaternion.w,\n opacity,\n color.r,\n color.g,\n color.b\n );\n ++this.numSplats;\n }\n // Iterate over Gsplats index 0..=(this.numSplats-1), unpack each Gsplat\n // and invoke the callback function with the Gsplat attributes.\n forEachSplat(callback) {\n if (!this.packedArray || !this.numSplats) {\n return;\n }\n for (let i2 = 0; i2 < this.numSplats; ++i2) {\n const unpacked = unpackSplat(this.packedArray, i2);\n callback(\n i2,\n unpacked.center,\n unpacked.scales,\n unpacked.quaternion,\n unpacked.opacity,\n unpacked.color\n );\n }\n }\n // Ensures our PackedSplats.target render target has enough space to generate\n // maxSplats total Gsplats, and reallocate if not large enough.\n ensureGenerate(maxSplats) {\n if (this.target && (maxSplats ?? 1) <= this.maxSplats) {\n return false;\n }\n this.dispose();\n const textureSize = getTextureSize(maxSplats ?? 1);\n const { width, height, depth } = textureSize;\n this.maxSplats = textureSize.maxSplats;\n this.target = new WebGLArrayRenderTarget(width, height, depth, {\n depthBuffer: false,\n stencilBuffer: false,\n generateMipmaps: false,\n magFilter: NearestFilter,\n minFilter: NearestFilter\n });\n this.target.texture.format = RGBAIntegerFormat;\n this.target.texture.type = UnsignedIntType;\n this.target.texture.internalFormat = "RGBA32UI";\n return true;\n }\n // Given an array of splatCounts (.numSplats for each\n // SplatGenerator/SplatMesh in the scene), compute a\n // "mapping layout" in the composite array of generated outputs.\n generateMapping(splatCounts) {\n let maxSplats = 0;\n const mapping = splatCounts.map((numSplats) => {\n const base = maxSplats;\n const rounded = Math.ceil(numSplats / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n maxSplats += rounded;\n return { base, count: numSplats };\n });\n return { maxSplats, mapping };\n }\n // Returns a THREE.DataArrayTexture representing the PackedSplats content as\n // a Uint32x4 data array texture (2048 x 2048 x depth in size)\n getTexture() {\n if (this.target) {\n return this.target.texture;\n }\n if (this.source || this.packedArray) {\n const source = this.maybeUpdateSource();\n return source;\n }\n return _PackedSplats.getEmpty();\n }\n // Check if source texture needs to be created/updated\n maybeUpdateSource() {\n if (!this.packedArray) {\n throw new Error("No packed splats");\n }\n if (this.needsUpdate || !this.source) {\n this.needsUpdate = false;\n if (this.source) {\n const { width, height, depth } = this.source.image;\n if (this.maxSplats !== width * height * depth) {\n this.source.dispose();\n this.source = null;\n }\n }\n if (!this.source) {\n const { width, height, depth } = getTextureSize(this.maxSplats);\n this.source = new DataArrayTexture(\n this.packedArray,\n width,\n height,\n depth\n );\n this.source.format = RGBAIntegerFormat;\n this.source.type = UnsignedIntType;\n this.source.internalFormat = "RGBA32UI";\n this.source.needsUpdate = true;\n } else if (this.packedArray.buffer !== this.source.image.data.buffer) {\n this.source.image.data = new Uint8Array(this.packedArray.buffer);\n }\n this.source.needsUpdate = true;\n }\n return this.source;\n }\n // Can be used where you need an uninitialized THREE.DataArrayTexture like\n // a uniform you will update with the result of this.getTexture() later.\n static getEmpty() {\n if (!_PackedSplats.emptySource) {\n const { width, height, depth, maxSplats } = getTextureSize(1);\n const emptyArray = new Uint32Array(maxSplats * 4);\n _PackedSplats.emptySource = new DataArrayTexture(\n emptyArray,\n width,\n height,\n depth\n );\n _PackedSplats.emptySource.format = RGBAIntegerFormat;\n _PackedSplats.emptySource.type = UnsignedIntType;\n _PackedSplats.emptySource.internalFormat = "RGBA32UI";\n _PackedSplats.emptySource.needsUpdate = true;\n }\n return _PackedSplats.emptySource;\n }\n // Get a program and THREE.RawShaderMaterial for a given GsplatGenerator,\n // generating it if necessary and caching the result.\n prepareProgramMaterial(generator) {\n let program = _PackedSplats.generatorProgram.get(generator);\n if (!program) {\n const graph = dynoBlock(\n { index: "int" },\n { output: "uvec4" },\n ({ index }) => {\n generator.inputs.index = index;\n const gsplat = generator.outputs.gsplat;\n const output = outputPackedSplat(gsplat);\n return { output };\n }\n );\n if (!_PackedSplats.programTemplate) {\n _PackedSplats.programTemplate = new DynoProgramTemplate(\n computeUvec4_default\n );\n }\n program = new DynoProgram({\n graph,\n inputs: { index: "index" },\n outputs: { output: "target" },\n template: _PackedSplats.programTemplate\n });\n Object.assign(program.uniforms, {\n targetLayer: { value: 0 },\n targetBase: { value: 0 },\n targetCount: { value: 0 }\n });\n _PackedSplats.generatorProgram.set(generator, program);\n }\n const material = program.prepareMaterial();\n _PackedSplats.mesh.material = material;\n return { program, material };\n }\n saveRenderState(renderer) {\n return {\n xrPresenting: renderer.xr.isPresenting,\n autoClear: renderer.autoClear,\n scissorTest: renderer.getScissorTest(),\n pixelRatio: renderer.getPixelRatio()\n };\n }\n resetRenderState(renderer, state) {\n renderer.setRenderTarget(null);\n renderer.setPixelRatio(state.pixelRatio);\n renderer.xr.isPresenting = state.xrPresenting;\n renderer.autoClear = state.autoClear;\n renderer.setScissorTest(state.scissorTest);\n }\n // Executes a dyno program specified by generator which is any DynoBlock that\n // maps { index: "int" } to { gsplat: Gsplat }. This is called in\n // ForgeRenderer.updateInternal() to re-generate Gsplats in the scene for\n // SplatGenerator instances whose version is newer than what was generated\n // for it last time.\n generate({\n generator,\n base,\n count,\n renderer\n }) {\n if (!this.target) {\n throw new Error("Target must be initialized with ensureSplats");\n }\n if (base + count > this.maxSplats) {\n throw new Error("Base + count exceeds maxSplats");\n }\n const { program, material } = this.prepareProgramMaterial(generator);\n program.update();\n const renderState = this.saveRenderState(renderer);\n const nextBase = Math.ceil((base + count) / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n const layerSize = SPLAT_TEX_WIDTH * SPLAT_TEX_HEIGHT;\n material.uniforms.targetBase.value = base;\n material.uniforms.targetCount.value = count;\n while (base < nextBase) {\n const layer = Math.floor(base / layerSize);\n material.uniforms.targetLayer.value = layer;\n const layerBase = layer * layerSize;\n const layerYStart = Math.floor((base - layerBase) / SPLAT_TEX_WIDTH);\n const layerYEnd = Math.min(\n SPLAT_TEX_HEIGHT,\n Math.ceil((nextBase - layerBase) / SPLAT_TEX_WIDTH)\n );\n renderer.setPixelRatio(1);\n renderer.setRenderTarget(this.target, layer);\n renderer.xr.isPresenting = false;\n renderer.autoClear = false;\n renderer.setScissorTest(true);\n renderer.setScissor(\n 0,\n layerYStart,\n SPLAT_TEX_WIDTH,\n layerYEnd - layerYStart\n );\n renderer.render(_PackedSplats.scene, _PackedSplats.camera);\n base += SPLAT_TEX_WIDTH * (layerYEnd - layerYStart);\n }\n this.resetRenderState(renderer, renderState);\n return { nextBase };\n }\n };\n _PackedSplats.emptySource = null;\n _PackedSplats.programTemplate = null;\n _PackedSplats.generatorProgram = /* @__PURE__ */ new Map();\n _PackedSplats.geometry = new PlaneGeometry(2, 2);\n _PackedSplats.mesh = new Mesh(\n _PackedSplats.geometry,\n new RawShaderMaterial({ visible: false })\n );\n _PackedSplats.scene = new Scene().add(_PackedSplats.mesh);\n _PackedSplats.camera = new Camera();\n let PackedSplats = _PackedSplats;\n class DynoPackedSplats extends DynoUniform {\n constructor({ packedSplats } = {}) {\n super({\n key: "packedSplats",\n type: TPackedSplats,\n globals: () => [definePackedSplats],\n value: {\n texture: PackedSplats.getEmpty(),\n numSplats: 0\n },\n update: (value) => {\n var _a2, _b2;\n value.texture = ((_a2 = this.packedSplats) == null ? void 0 : _a2.getTexture()) ?? PackedSplats.getEmpty();\n value.numSplats = ((_b2 = this.packedSplats) == null ? void 0 : _b2.numSplats) ?? 0;\n return value;\n }\n });\n this.packedSplats = packedSplats;\n }\n }\n var computeVec4_default = "precision highp float;\\nprecision highp int;\\nprecision highp sampler2D;\\nprecision highp usampler2D;\\nprecision highp isampler2D;\\nprecision highp sampler2DArray;\\nprecision highp usampler2DArray;\\nprecision highp isampler2DArray;\\nprecision highp sampler3D;\\nprecision highp usampler3D;\\nprecision highp isampler3D;\\n\\n#include \\n\\nuniform uint targetLayer;\\nuniform int targetBase;\\nuniform int targetCount;\\n\\nout vec4 target;\\n\\n{{ GLOBALS }}\\n\\nvoid computeReadback(int index) {\\n {{ STATEMENTS }}\\n}\\n\\nvoid main() {\\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\\n int index = targetIndex - targetBase;\\n\\n if ((index >= 0) && (index < targetCount)) {\\n computeReadback(index);\\n } else {\\n target = vec4(0.0, 0.0, 0.0, 0.0);\\n }\\n}";\n const _Readback = class _Readback {\n constructor({ renderer } = {}) {\n this.renderer = renderer;\n this.capacity = 0;\n this.count = 0;\n }\n dispose() {\n if (this.target) {\n this.target.dispose();\n this.target = void 0;\n }\n }\n // Ensure we have a buffer large enough for the readback of count indices.\n // Pass in previous bufer of the desired type.\n ensureBuffer(count, buffer) {\n const roundedCount = Math.ceil(Math.max(1, count) / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n const bytes = roundedCount * 4;\n if (buffer.byteLength >= bytes) {\n return buffer;\n }\n const newBuffer = new ArrayBuffer(bytes);\n if (buffer instanceof ArrayBuffer) {\n return newBuffer;\n }\n const ctor = buffer.constructor;\n return new ctor(newBuffer);\n }\n // Ensure our render target is large enough for the readback of capacity indices.\n ensureCapacity(capacity) {\n const { width, height, depth, maxSplats } = getTextureSize(capacity);\n if (!this.target || maxSplats > this.capacity) {\n this.dispose();\n this.capacity = maxSplats;\n this.target = new WebGLArrayRenderTarget(width, height, depth, {\n depthBuffer: false,\n stencilBuffer: false,\n generateMipmaps: false,\n magFilter: NearestFilter,\n minFilter: NearestFilter\n });\n this.target.texture.format = RGBAFormat;\n this.target.texture.type = UnsignedByteType;\n this.target.texture.internalFormat = "RGBA8";\n }\n }\n // Get a program and THREE.RawShaderMaterial for a given Rgba8Readback,\n // generating it if necessary and caching the result.\n prepareProgramMaterial(reader) {\n let program = _Readback.readbackProgram.get(reader);\n if (!program) {\n const graph = dynoBlock(\n { index: "int" },\n { rgba8: "vec4" },\n ({ index }) => {\n reader.inputs.index = index;\n const rgba8 = new OutputRgba8({ rgba8: reader.outputs.rgba8 });\n return { rgba8 };\n }\n );\n if (!_Readback.programTemplate) {\n _Readback.programTemplate = new DynoProgramTemplate(computeVec4_default);\n }\n program = new DynoProgram({\n graph,\n inputs: { index: "index" },\n outputs: { rgba8: "target" },\n template: _Readback.programTemplate\n });\n Object.assign(program.uniforms, {\n targetLayer: { value: 0 },\n targetBase: { value: 0 },\n targetCount: { value: 0 }\n });\n _Readback.readbackProgram.set(reader, program);\n }\n const material = program.prepareMaterial();\n _Readback.mesh.material = material;\n return { program, material };\n }\n saveRenderState(renderer) {\n return {\n xrPresenting: renderer.xr.isPresenting,\n autoClear: renderer.autoClear,\n scissorTest: renderer.getScissorTest(),\n pixelRatio: renderer.getPixelRatio()\n };\n }\n resetRenderState(renderer, state) {\n renderer.setRenderTarget(null);\n renderer.setPixelRatio(state.pixelRatio);\n renderer.xr.isPresenting = state.xrPresenting;\n renderer.autoClear = state.autoClear;\n renderer.setScissorTest(state.scissorTest);\n }\n process({\n count,\n material\n }) {\n const renderer = this.renderer;\n if (!renderer) {\n throw new Error("No renderer");\n }\n if (!this.target) {\n throw new Error("No target");\n }\n const layerSize = SPLAT_TEX_WIDTH * SPLAT_TEX_HEIGHT;\n material.uniforms.targetBase.value = 0;\n material.uniforms.targetCount.value = count;\n let baseIndex = 0;\n while (baseIndex < count) {\n const layer = Math.floor(baseIndex / layerSize);\n const layerBase = layer * layerSize;\n const layerYEnd = Math.min(\n SPLAT_TEX_HEIGHT,\n Math.ceil((count - layerBase) / SPLAT_TEX_WIDTH)\n );\n material.uniforms.targetLayer.value = layer;\n renderer.setPixelRatio(1);\n renderer.setRenderTarget(this.target, layer);\n renderer.xr.isPresenting = false;\n renderer.autoClear = false;\n renderer.setScissorTest(true);\n renderer.setScissor(0, 0, SPLAT_TEX_WIDTH, layerYEnd);\n renderer.render(_Readback.scene, _Readback.camera);\n baseIndex += SPLAT_TEX_WIDTH * layerYEnd;\n }\n this.count = count;\n }\n async read({\n readback\n }) {\n const renderer = this.renderer;\n if (!renderer) {\n throw new Error("No renderer");\n }\n if (!this.target) {\n throw new Error("No target");\n }\n const roundedCount = Math.ceil(this.count / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n if (readback.byteLength < roundedCount * 4) {\n throw new Error(\n `Readback buffer too small: ${readback.byteLength} < ${roundedCount * 4}`\n );\n }\n const readbackUint8 = new Uint8Array(\n readback instanceof ArrayBuffer ? readback : readback.buffer\n );\n const layerSize = SPLAT_TEX_WIDTH * SPLAT_TEX_HEIGHT;\n let baseIndex = 0;\n const promises = [];\n while (baseIndex < this.count) {\n const layer = Math.floor(baseIndex / layerSize);\n const layerBase = layer * layerSize;\n const layerYEnd = Math.min(\n SPLAT_TEX_HEIGHT,\n Math.ceil((this.count - layerBase) / SPLAT_TEX_WIDTH)\n );\n renderer.setPixelRatio(1);\n renderer.setRenderTarget(this.target, layer);\n const readbackSize = SPLAT_TEX_WIDTH * layerYEnd * 4;\n const subReadback = readbackUint8.subarray(\n layerBase * 4,\n layerBase * 4 + readbackSize\n );\n const promise = renderer == null ? void 0 : renderer.readRenderTargetPixelsAsync(\n this.target,\n 0,\n 0,\n SPLAT_TEX_WIDTH,\n layerYEnd,\n subReadback\n );\n promises.push(promise);\n baseIndex += SPLAT_TEX_WIDTH * layerYEnd;\n }\n return Promise.all(promises).then(() => readback);\n }\n // Perform render operation to run the Rgba8Readback program\n // but don\'t perform the readback yet.\n render({\n reader,\n count,\n renderer\n }) {\n this.renderer = renderer || this.renderer;\n if (!this.renderer) {\n throw new Error("No renderer");\n }\n this.ensureCapacity(count);\n const { program, material } = this.prepareProgramMaterial(reader);\n program.update();\n const renderState = this.saveRenderState(this.renderer);\n this.process({ count, material });\n this.resetRenderState(this.renderer, renderState);\n }\n // Perform a readback of the render target, returning a buffer of the\n // given type.\n async readback({\n readback\n }) {\n if (!this.renderer) {\n throw new Error("No renderer");\n }\n const renderState = this.saveRenderState(this.renderer);\n const promise = this.read({ readback });\n this.resetRenderState(this.renderer, renderState);\n return promise;\n }\n // Perform a render and readback operation for the given Rgba8Readback,\n // and readback buffer (call ensureBuffer first).\n async renderReadback({\n reader,\n count,\n renderer,\n readback\n }) {\n this.renderer = renderer || this.renderer;\n if (!this.renderer) {\n throw new Error("No renderer");\n }\n this.ensureCapacity(count);\n const { program, material } = this.prepareProgramMaterial(reader);\n program.update();\n const renderState = this.saveRenderState(this.renderer);\n this.process({ count, material });\n const promise = this.read({ readback });\n this.resetRenderState(this.renderer, renderState);\n return promise;\n }\n getTexture() {\n var _a2;\n return (_a2 = this.target) == null ? void 0 : _a2.texture;\n }\n };\n _Readback.programTemplate = null;\n _Readback.readbackProgram = /* @__PURE__ */ new Map();\n _Readback.geometry = new PlaneGeometry(2, 2);\n _Readback.mesh = new Mesh(\n _Readback.geometry,\n new RawShaderMaterial({ visible: false })\n );\n _Readback.scene = new Scene().add(_Readback.mesh);\n _Readback.camera = new Camera();\n let Readback = _Readback;\n const _RgbaArray = class _RgbaArray {\n constructor(options = {}) {\n this.capacity = 0;\n this.count = 0;\n this.array = null;\n this.readback = null;\n this.source = null;\n this.needsUpdate = true;\n this.dyno = new DynoUniform({\n key: "rgbaArray",\n type: TRgbaArray,\n globals: () => [defineRgbaArray],\n value: {\n texture: _RgbaArray.getEmpty(),\n count: 0\n },\n update: (value) => {\n var _a2;\n value.texture = ((_a2 = this.readback) == null ? void 0 : _a2.getTexture()) ?? this.source ?? _RgbaArray.getEmpty();\n value.count = this.count;\n return value;\n }\n });\n if (options.array) {\n this.array = options.array;\n this.capacity = Math.floor(this.array.length / 4);\n this.capacity = Math.floor(this.capacity / SPLAT_TEX_WIDTH) * SPLAT_TEX_WIDTH;\n this.count = Math.min(\n this.capacity,\n options.count ?? Number.POSITIVE_INFINITY\n );\n } else {\n this.capacity = options.capacity ?? 0;\n this.count = 0;\n }\n }\n // Free up resources\n dispose() {\n if (this.readback) {\n this.readback.dispose();\n this.readback = null;\n }\n if (this.source) {\n this.source.dispose();\n this.source = null;\n }\n }\n // Ensure that our array is large enough to hold capacity RGBA8 values.\n ensureCapacity(capacity) {\n var _a2;\n if (!this.array || capacity > (((_a2 = this.array) == null ? void 0 : _a2.length) ?? 0) / 4) {\n this.capacity = getTextureSize(capacity).maxSplats;\n const newArray = new Uint8Array(this.capacity * 4);\n if (this.array) {\n newArray.set(this.array);\n }\n this.array = newArray;\n }\n return this.array;\n }\n // Get the THREE.DataArrayTexture from either the readback or the source.\n getTexture() {\n var _a2;\n let texture = (_a2 = this.readback) == null ? void 0 : _a2.getTexture();\n if (this.source || this.array) {\n texture = this.maybeUpdateSource();\n }\n return texture ?? _RgbaArray.getEmpty();\n }\n // Create or get a THREE.DataArrayTexture from the data array.\n maybeUpdateSource() {\n if (!this.array) {\n throw new Error("No array");\n }\n if (this.needsUpdate || !this.source) {\n this.needsUpdate = false;\n if (this.source) {\n const { width, height, depth } = this.source.image;\n if (this.capacity !== width * height * depth) {\n this.source.dispose();\n this.source = null;\n }\n }\n if (!this.source) {\n const { width, height, depth } = getTextureSize(this.capacity);\n this.source = new DataArrayTexture(\n this.array,\n width,\n height,\n depth\n );\n this.source.format = RGBAFormat;\n this.source.type = UnsignedByteType;\n this.source.internalFormat = "RGBA8";\n this.source.needsUpdate = true;\n } else if (this.array.buffer !== this.source.image.data.buffer) {\n this.source.image.data = new Uint8Array(this.array.buffer);\n }\n this.source.needsUpdate = true;\n }\n return this.source;\n }\n // Generate the RGBA8 values from a Rgba8Readback dyno program.\n render({\n reader,\n count,\n renderer\n }) {\n if (!this.readback) {\n this.readback = new Readback({ renderer });\n }\n this.readback.render({ reader, count, renderer });\n this.capacity = this.readback.capacity;\n this.count = this.readback.count;\n }\n // Extract the RGBA8 values from a PackedSplats collection.\n fromPackedSplats({\n packedSplats,\n base,\n count,\n renderer\n }) {\n const { dynoSplats, dynoBase, dynoCount, reader } = _RgbaArray.makeDynos();\n dynoSplats.packedSplats = packedSplats;\n dynoBase.value = base;\n dynoCount.value = count;\n this.render({ reader, count, renderer });\n return this;\n }\n // Read back the RGBA8 values from the readback buffer.\n async read() {\n if (!this.readback) {\n throw new Error("No readback");\n }\n if (!this.array || this.array.length < this.count * 4) {\n this.array = new Uint8Array(this.capacity * 4);\n }\n const result = await this.readback.readback({ readback: this.array });\n return result.subarray(0, this.count * 4);\n }\n // Can be used where you need an uninitialized THREE.DataArrayTexture like\n // a uniform you will update with the result of this.getTexture() later.\n static getEmpty() {\n if (!_RgbaArray.emptySource) {\n const emptyArray = new Uint8Array(1 * 4);\n _RgbaArray.emptySource = new DataArrayTexture(emptyArray, 1, 1, 1);\n _RgbaArray.emptySource.format = RGBAFormat;\n _RgbaArray.emptySource.type = UnsignedByteType;\n _RgbaArray.emptySource.internalFormat = "RGBA8";\n _RgbaArray.emptySource.needsUpdate = true;\n }\n return _RgbaArray.emptySource;\n }\n // Create a dyno program that can extract RGBA8 values from a PackedSplats\n static makeDynos() {\n if (!_RgbaArray.dynos) {\n const dynoSplats = new DynoPackedSplats();\n const dynoBase = new DynoInt({ value: 0 });\n const dynoCount = new DynoInt({ value: 0 });\n const reader = dynoBlock(\n { index: "int" },\n { rgba8: "vec4" },\n ({ index }) => {\n if (!index) {\n throw new Error("index is undefined");\n }\n index = add(index, dynoBase);\n const gsplat = readPackedSplatRange(\n dynoSplats,\n index,\n dynoBase,\n dynoCount\n );\n return { rgba8: splitGsplat(gsplat).outputs.rgba };\n }\n );\n _RgbaArray.dynos = { dynoSplats, dynoBase, dynoCount, reader };\n }\n return _RgbaArray.dynos;\n }\n };\n _RgbaArray.emptySource = null;\n _RgbaArray.dynos = null;\n let RgbaArray = _RgbaArray;\n const TRgbaArray = { type: "RgbaArray" };\n const defineRgbaArray = unindent(`\n struct RgbaArray {\n sampler2DArray texture;\n int count;\n };\n`);\n function readRgbaArray(rgba, index) {\n const dyno2 = new Dyno({\n inTypes: { rgba: TRgbaArray, index: "int" },\n outTypes: { rgba: "vec4" },\n inputs: { rgba, index },\n globals: () => [defineRgbaArray],\n statements: ({ inputs, outputs }) => unindentLines(`\n if ((index >= 0) && (index < ${inputs.rgba}.count)) {\n ${outputs.rgba} = texelFetch(${inputs.rgba}.texture, splatTexCoord(index), 0);\n } else {\n ${outputs.rgba} = vec4(0.0, 0.0, 0.0, 0.0);\n }\n `)\n });\n return dyno2.outputs.rgba;\n }\n function sdfTypeToNumber(type) {\n switch (type) {\n case "all":\n return 0;\n case "plane":\n return 1;\n case "sphere":\n return 2;\n case "box":\n return 3;\n case "ellipsoid":\n return 4;\n case "cylinder":\n return 5;\n case "capsule":\n return 6;\n case "infinite_cone":\n return 7;\n default:\n throw new Error(`Unknown SDF type: ${type}`);\n }\n }\n function rgbaBlendModeToNumber(mode) {\n switch (mode) {\n case "multiply":\n return 0;\n case "set_rgb":\n return 1;\n case "add_rgba":\n return 2;\n default:\n throw new Error(`Unknown blend mode: ${mode}`);\n }\n }\n class SplatEditSdf extends Object3D {\n constructor(options = {}) {\n super();\n const { type, invert, opacity, color, displace, radius } = options;\n this.type = type ?? "sphere";\n this.invert = invert ?? false;\n this.opacity = opacity ?? 1;\n this.color = color ?? new Color(1, 1, 1);\n this.displace = displace ?? new Vector3(0, 0, 0);\n this.radius = radius ?? 0;\n }\n }\n const _SplatEdit = class _SplatEdit extends Object3D {\n constructor(options = {}) {\n const {\n name,\n rgbaBlendMode = "multiply",\n sdfSmooth = 0,\n softEdge = 0,\n invert = false,\n sdfs = null\n } = options;\n super();\n this.rgbaBlendMode = rgbaBlendMode;\n this.sdfSmooth = sdfSmooth;\n this.softEdge = softEdge;\n this.invert = invert;\n this.sdfs = sdfs;\n this.ordering = _SplatEdit.nextOrdering++;\n this.name = name ?? `Edit ${this.ordering}`;\n }\n addSdf(sdf) {\n if (this.sdfs == null) {\n this.sdfs = [];\n }\n this.sdfs.push(sdf);\n }\n removeSdf(sdf) {\n if (this.sdfs == null) {\n return;\n }\n this.sdfs = this.sdfs.filter((s) => s !== sdf);\n }\n };\n _SplatEdit.nextOrdering = 1;\n let SplatEdit = _SplatEdit;\n class SplatEdits {\n constructor({ maxSdfs, maxEdits }) {\n this.maxSdfs = Math.max(16, maxSdfs ?? 0);\n this.numSdfs = 0;\n this.sdfData = new Uint32Array(this.maxSdfs * 8 * 4);\n this.sdfFloatData = new Float32Array(this.sdfData.buffer);\n this.sdfTexture = this.newSdfTexture(this.sdfData, this.maxSdfs);\n this.dynoSdfArray = new DynoUniform({\n key: "sdfArray",\n type: SdfArray,\n globals: () => [defineSdfArray],\n value: {\n numSdfs: 0,\n sdfTexture: this.sdfTexture\n },\n update: (uniform) => {\n uniform.numSdfs = this.numSdfs;\n uniform.sdfTexture = this.sdfTexture;\n return uniform;\n }\n });\n this.maxEdits = Math.max(16, maxEdits ?? 0);\n this.numEdits = 0;\n this.editData = new Uint32Array(this.maxEdits * 4);\n this.editFloatData = new Float32Array(this.editData.buffer);\n this.dynoNumEdits = new DynoInt({ value: 0 });\n this.dynoEdits = this.newEdits(this.editData, this.maxEdits);\n }\n newSdfTexture(data, maxSdfs) {\n const texture = new DataTexture(\n data,\n 8,\n maxSdfs,\n RGBAIntegerFormat,\n UnsignedIntType\n );\n texture.internalFormat = "RGBA32UI";\n texture.needsUpdate = true;\n return texture;\n }\n newEdits(data, maxEdits) {\n return new DynoUniform({\n key: "edits",\n type: "uvec4",\n count: maxEdits,\n globals: () => [defineEdit],\n value: data\n });\n }\n // Ensure our SDF texture and edits uniform array have enough capacity.\n // Reallocate if not.\n ensureCapacity({\n maxSdfs,\n maxEdits\n }) {\n let dynoUpdated = false;\n if (maxSdfs > this.sdfTexture.image.height) {\n this.sdfTexture.dispose();\n this.maxSdfs = Math.max(this.maxSdfs * 2, maxSdfs);\n this.sdfData = new Uint32Array(this.maxSdfs * 8 * 4);\n this.sdfFloatData = new Float32Array(this.sdfData.buffer);\n this.sdfTexture = this.newSdfTexture(this.sdfData, this.maxSdfs);\n }\n if (maxEdits > (this.dynoEdits.count ?? 0)) {\n this.maxEdits = Math.max(this.maxEdits * 2, maxEdits);\n this.editData = new Uint32Array(this.maxEdits * 4);\n this.editFloatData = new Float32Array(this.editData.buffer);\n this.dynoEdits = this.newEdits(this.editData, this.maxEdits);\n dynoUpdated = true;\n }\n return dynoUpdated;\n }\n updateEditData(offset, value) {\n const updated = this.editData[offset] !== value;\n this.editData[offset] = value;\n return updated;\n }\n updateEditFloatData(offset, value) {\n tempFloat32[0] = value;\n const updated = this.editFloatData[offset] !== tempFloat32[0];\n if (updated) {\n this.editFloatData[offset] = tempFloat32[0];\n }\n return updated;\n }\n encodeEdit(editIndex, {\n sdfFirst,\n sdfCount,\n invert,\n rgbaBlendMode,\n softEdge,\n sdfSmooth\n }) {\n const base = editIndex * 4;\n let updated = false;\n updated = this.updateEditData(base + 0, rgbaBlendMode | (invert ? 1 << 8 : 0)) || updated;\n updated = this.updateEditData(base + 1, sdfFirst | sdfCount << 16) || updated;\n updated = this.updateEditFloatData(base + 2, softEdge) || updated;\n updated = this.updateEditFloatData(base + 3, sdfSmooth) || updated;\n return updated;\n }\n updateSdfData(offset, value) {\n const updated = this.sdfData[offset] !== value;\n this.sdfData[offset] = value;\n return updated;\n }\n updateSdfFloatData(offset, value) {\n tempFloat32[0] = value;\n const updated = this.sdfFloatData[offset] !== tempFloat32[0];\n if (updated) {\n this.sdfFloatData[offset] = tempFloat32[0];\n }\n return updated;\n }\n encodeSdf(sdfIndex, {\n sdfType,\n invert,\n center,\n quaternion,\n scale,\n sizes\n }, values) {\n const base = sdfIndex * (8 * 4);\n const flags = sdfType | (invert ? 1 << 8 : 0);\n let updated = false;\n updated = this.updateSdfFloatData(base + 0, (center == null ? void 0 : center.x) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 1, (center == null ? void 0 : center.y) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 2, (center == null ? void 0 : center.z) ?? 0) || updated;\n updated = this.updateSdfData(base + 3, flags) || updated;\n updated = this.updateSdfFloatData(base + 4, (quaternion == null ? void 0 : quaternion.x) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 5, (quaternion == null ? void 0 : quaternion.y) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 6, (quaternion == null ? void 0 : quaternion.z) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 7, (quaternion == null ? void 0 : quaternion.w) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 8, (scale == null ? void 0 : scale.x) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 9, (scale == null ? void 0 : scale.y) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 10, (scale == null ? void 0 : scale.z) ?? 0) || updated;\n updated = this.updateSdfData(base + 11, 0) || updated;\n updated = this.updateSdfFloatData(base + 12, (sizes == null ? void 0 : sizes.x) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 13, (sizes == null ? void 0 : sizes.y) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 14, (sizes == null ? void 0 : sizes.z) ?? 0) || updated;\n updated = this.updateSdfFloatData(base + 15, (sizes == null ? void 0 : sizes.w) ?? 0) || updated;\n const nValues = Math.min(4, values.length);\n for (let i2 = 0; i2 < nValues; ++i2) {\n const vBase = base + 16 + i2 * 4;\n updated = this.updateSdfFloatData(vBase + 0, values[i2].x) || updated;\n updated = this.updateSdfFloatData(vBase + 1, values[i2].y) || updated;\n updated = this.updateSdfFloatData(vBase + 2, values[i2].z) || updated;\n updated = this.updateSdfFloatData(vBase + 3, values[i2].w) || updated;\n }\n return updated;\n }\n // Update the SDFs and edits from an array of SplatEdits and their\n // associated SplatEditSdfs, updating it for the dyno shader program.\n update(edits) {\n const sdfCount = edits.reduce((total, { sdfs }) => total + sdfs.length, 0);\n const dynoUpdated = this.ensureCapacity({\n maxEdits: edits.length,\n maxSdfs: sdfCount\n });\n const values = [new Vector4(), new Vector4()];\n const center = new Vector3();\n const quaternion = new Quaternion();\n const scale = new Vector3();\n const sizes = new Vector4();\n let sdfIndex = 0;\n let updated = dynoUpdated;\n if (edits.length !== this.dynoNumEdits.value) {\n this.dynoNumEdits.value = edits.length;\n this.numEdits = edits.length;\n updated = true;\n }\n for (const [editIndex, { edit, sdfs }] of edits.entries()) {\n updated = this.encodeEdit(editIndex, {\n sdfFirst: sdfIndex,\n sdfCount: sdfs.length,\n invert: edit.invert,\n rgbaBlendMode: rgbaBlendModeToNumber(edit.rgbaBlendMode),\n softEdge: edit.softEdge,\n sdfSmooth: edit.sdfSmooth\n }) || updated;\n let sdfUpdated = false;\n for (const sdf of sdfs) {\n sizes.set(sdf.scale.x, sdf.scale.y, sdf.scale.z, sdf.radius);\n sdf.scale.setScalar(1);\n sdf.updateMatrixWorld();\n const worldToSdf = sdf.matrixWorld.clone().invert();\n worldToSdf.decompose(center, quaternion, scale);\n sdf.scale.set(sizes.x, sizes.y, sizes.z);\n sdf.updateMatrixWorld();\n values[0].set(sdf.color.r, sdf.color.g, sdf.color.b, sdf.opacity);\n values[1].set(sdf.displace.x, sdf.displace.y, sdf.displace.z, 1);\n sdfUpdated = this.encodeSdf(\n sdfIndex,\n {\n sdfType: sdfTypeToNumber(sdf.type),\n invert: sdf.invert,\n center,\n quaternion,\n scale,\n sizes\n },\n values\n ) || sdfUpdated;\n sdfIndex += 1;\n }\n this.numSdfs = sdfIndex;\n if (sdfUpdated) {\n this.sdfTexture.needsUpdate = true;\n }\n updated || (updated = sdfUpdated);\n }\n return { updated, dynoUpdated };\n }\n // Modify a Gsplat in a dyno shader program using the current edits and SDFs.\n modify(gsplat) {\n return applyGsplatRgbaDisplaceEdits(\n gsplat,\n this.dynoSdfArray,\n this.dynoNumEdits,\n this.dynoEdits\n );\n }\n }\n const SdfArray = { type: "SdfArray" };\n const defineSdfArray = unindent(`\n struct SdfArray {\n int numSdfs;\n usampler2D sdfTexture;\n };\n\n void unpackSdfArray(\n usampler2D sdfTexture, int sdfIndex, out uint flags,\n out vec3 center, out vec4 quaternion, out vec3 scale, out vec4 sizes,\n int numValues, out vec4 values[4]\n ) {\n uvec4 temp = texelFetch(sdfTexture, ivec2(0, sdfIndex), 0);\n flags = temp.w;\n center = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z));\n\n temp = texelFetch(sdfTexture, ivec2(1, sdfIndex), 0);\n quaternion = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n\n temp = texelFetch(sdfTexture, ivec2(2, sdfIndex), 0);\n scale = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z));\n\n temp = texelFetch(sdfTexture, ivec2(3, sdfIndex), 0);\n sizes = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n\n for (int i = 0; i < numValues; ++i) {\n temp = texelFetch(sdfTexture, ivec2(4 + i, sdfIndex), 0);\n values[i] = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n }\n }\n\n const uint SDF_FLAG_TYPE = 0xFFu;\n const uint SDF_FLAG_INVERT = 1u << 8u;\n\n const uint SDF_TYPE_ALL = 0u;\n const uint SDF_TYPE_PLANE = 1u;\n const uint SDF_TYPE_SPHERE = 2u;\n const uint SDF_TYPE_BOX = 3u;\n const uint SDF_TYPE_ELLIPSOID = 4u;\n const uint SDF_TYPE_CYLINDER = 5u;\n const uint SDF_TYPE_CAPSULE = 6u;\n const uint SDF_TYPE_INFINITE_CONE = 7u;\n\n float evaluateSdfArray(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos,\n float smoothK, int numValues, out vec4 outValues[4]\n ) {\n float distanceAccum = (smoothK == 0.0) ? 1.0 / 0.0 : 0.0;\n float maxExp = -1.0 / 0.0;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] = vec4(0.0);\n }\n\n uint flags;\n vec3 center, scale;\n vec4 quaternion, sizes;\n vec4 values[4];\n\n int sdfLast = min(sdfFirst + sdfCount, numSdfs);\n for (int index = sdfFirst; index < sdfLast; ++index) {\n unpackSdfArray(sdfTexture, index, flags, center, quaternion, scale, sizes, numValues, values);\n uint sdfType = flags & SDF_FLAG_TYPE;\n vec3 sdfPos = quatVec(quaternion, pos * scale) + center;\n\n float distance;\n switch (sdfType) {\n case SDF_TYPE_ALL:\n distance = -1.0 / 0.0;\n break;\n case SDF_TYPE_PLANE: {\n distance = sdfPos.z;\n break;\n }\n case SDF_TYPE_SPHERE: {\n distance = length(sdfPos) - sizes.w;\n break;\n }\n case SDF_TYPE_BOX: {\n vec3 q = abs(sdfPos) - sizes.xyz + sizes.w;\n distance = length(max(q, 0.0)) + min(max(q.x, max(q.y, q.z)), 0.0) - sizes.w;\n break;\n }\n case SDF_TYPE_ELLIPSOID: {\n vec3 sizes = sizes.xyz;\n float k0 = length(sdfPos / sizes);\n float k1 = length(sdfPos / dot(sizes, sizes));\n distance = k0 * (k0 - 1.0) / k1;\n break;\n }\n case SDF_TYPE_CYLINDER: {\n vec2 d = abs(vec2(length(sdfPos.xz), sdfPos.y)) - sizes.wy;\n distance = min(max(d.x, d.y), 0.0) + length(max(d, 0.0));\n break;\n }\n case SDF_TYPE_CAPSULE: {\n sdfPos.y -= clamp(sdfPos.y, -0.5 * sizes.y, 0.5 * sizes.y);\n distance = length(sdfPos) - sizes.w;\n break;\n }\n case SDF_TYPE_INFINITE_CONE: {\n float angle = 0.25 * PI * sizes.w;\n vec2 c = vec2(sin(angle), cos(angle));\n vec2 q = vec2(length(sdfPos.xy), -sdfPos.z);\n float d = length(q - c * max(dot(q, c), 0.0));\n distance = d * (((q.x * c.y - q.y * c.x) < 0.0) ? -1.0 : 1.0);\n break;\n }\n }\n\n if ((flags & SDF_FLAG_INVERT) != 0u) {\n distance = -distance;\n }\n\n if (smoothK == 0.0) {\n if (distance < distanceAccum) {\n distanceAccum = distance;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] = values[i];\n }\n }\n } else {\n float scaledDistance = -distance / smoothK;\n if (scaledDistance > maxExp) {\n float scale = exp(maxExp - scaledDistance);\n distanceAccum *= scale;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] *= scale;\n }\n maxExp = scaledDistance;\n }\n\n float weight = exp(scaledDistance - maxExp);\n distanceAccum += weight;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] += weight * values[i];\n }\n }\n }\n\n if (smoothK == 0.0) {\n return distanceAccum;\n } else {\n // Very distant SDFs may result in 0 accumulation\n if (distanceAccum == 0.0) {\n return 1.0 / 0.0;\n }\n for (int i = 0; i < numValues; ++i) {\n outValues[i] /= distanceAccum;\n }\n return (-log(distanceAccum) - maxExp) * smoothK;\n }\n }\n\n float modulateSdfArray(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos,\n float smoothK, int numValues, out vec4 values[4],\n float softEdge, bool invert\n ) {\n float distance = evaluateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, numValues, values);\n if (invert) {\n distance = -distance;\n }\n\n return (softEdge == 0.0) ? ((distance < 0.0) ? 1.0 : 0.0)\n : clamp(-distance / softEdge + 0.5, 0.0, 1.0);\n }\n`);\n const defineEdit = unindent(`\n const uint EDIT_FLAG_BLEND = 0xFFu;\n const uint EDIT_BLEND_MULTIPLY = 0u;\n const uint EDIT_BLEND_SET_RGB = 1u;\n const uint EDIT_BLEND_ADD_RGBA = 2u;\n const uint EDIT_FLAG_INVERT = 0x100u;\n\n void decodeEdit(\n uvec4 packedEdit, out int sdfFirst, out int sdfCount,\n out bool invert, out uint rgbaBlendMode, out float softEdge, out float sdfSmooth\n ) {\n rgbaBlendMode = packedEdit.x & EDIT_FLAG_BLEND;\n invert = (packedEdit.x & EDIT_FLAG_INVERT) != 0u;\n\n sdfFirst = int(packedEdit.y & 0xFFFFu);\n sdfCount = int(packedEdit.y >> 16u);\n\n softEdge = uintBitsToFloat(packedEdit.z);\n sdfSmooth = uintBitsToFloat(packedEdit.w);\n }\n\n void applyRgbaDisplaceEdit(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, inout vec3 pos,\n float smoothK, float softEdge, bool invert, uint rgbaBlendMode, inout vec4 rgba\n ) {\n vec4 values[4];\n float modulate = modulateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, 2, values, softEdge, invert);\n // On Android, moving values[0] is necessary to work around a compiler bug.\n vec4 sdfRgba = values[0];\n vec4 sdfDisplaceScale = values[1];\n\n vec4 target;\n switch (rgbaBlendMode) {\n case EDIT_BLEND_MULTIPLY:\n target = rgba * sdfRgba;\n break;\n case EDIT_BLEND_SET_RGB:\n target = vec4(sdfRgba.rgb, rgba.a * sdfRgba.a);\n break;\n case EDIT_BLEND_ADD_RGBA:\n target = rgba + sdfRgba;\n break;\n default:\n // Debug output if blend mode not set\n target = vec4(fract(pos), 1.0);\n }\n rgba = mix(rgba, target, modulate);\n pos += sdfDisplaceScale.xyz * modulate;\n }\n\n void applyPackedRgbaDisplaceEdit(uvec4 packedEdit, usampler2D sdfTexture, int numSdfs, inout vec3 pos, inout vec4 rgba) {\n int sdfFirst, sdfCount;\n bool invert;\n uint rgbaBlendMode;\n float softEdge, sdfSmooth;\n decodeEdit(packedEdit, sdfFirst, sdfCount, invert, rgbaBlendMode, softEdge, sdfSmooth);\n applyRgbaDisplaceEdit(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, sdfSmooth, softEdge, invert, rgbaBlendMode, rgba);\n }\n`);\n function applyGsplatRgbaDisplaceEdits(gsplat, sdfArray, numEdits, rgbaDisplaceEdits) {\n const dyno2 = new Dyno({\n inTypes: {\n gsplat: Gsplat,\n sdfArray: SdfArray,\n numEdits: "int",\n rgbaDisplaceEdits: "uvec4"\n },\n outTypes: { gsplat: Gsplat },\n globals: () => [defineSdfArray, defineEdit],\n inputs: { gsplat, sdfArray, numEdits, rgbaDisplaceEdits },\n statements: ({ inputs, outputs }) => {\n const { sdfArray: sdfArray2, numEdits: numEdits2, rgbaDisplaceEdits: rgbaDisplaceEdits2 } = inputs;\n const { gsplat: gsplat2 } = outputs;\n return unindentLines(`\n ${gsplat2} = ${inputs.gsplat};\n if (isGsplatActive(${gsplat2}.flags)) {\n for (int editIndex = 0; editIndex < ${numEdits2}; ++editIndex) {\n applyPackedRgbaDisplaceEdit(\n ${rgbaDisplaceEdits2}[editIndex], ${sdfArray2}.sdfTexture, ${sdfArray2}.numSdfs,\n ${gsplat2}.center, ${gsplat2}.rgba\n );\n }\n }\n `);\n }\n });\n return dyno2.outputs.gsplat;\n }\n const tempFloat32 = new Float32Array(1);\n class SplatTransformer {\n // Create the dyno uniforms that parameterize the transform, setting them\n // to initial values that are different from any valid transform.\n constructor() {\n this.scale = new DynoFloat({ value: Number.NEGATIVE_INFINITY });\n this.rotate = new DynoVec4({\n value: new Quaternion(\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY\n )\n });\n this.translate = new DynoVec3({\n value: new Vector3(\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY,\n Number.POSITIVE_INFINITY\n )\n });\n }\n // Apply the transform to a Vec3 position in a dyno program.\n apply(position) {\n return transformPos(position, {\n scale: this.scale,\n rotate: this.rotate,\n translate: this.translate\n });\n }\n applyDir(dir) {\n return transformDir(dir, {\n rotate: this.rotate\n });\n }\n // Apply the transform to a Gsplat in a dyno program.\n applyGsplat(gsplat) {\n return transformGsplat(gsplat, {\n scale: this.scale,\n rotate: this.rotate,\n translate: this.translate\n });\n }\n // Update the uniforms to match the given transform matrix.\n updateFromMatrix(transform) {\n const scale = new Vector3();\n const quaternion = new Quaternion();\n const position = new Vector3();\n transform.decompose(position, quaternion, scale);\n const newScale = (scale.x + scale.y + scale.z) / 3;\n let updated = false;\n if (newScale !== this.scale.value) {\n this.scale.value = newScale;\n updated = true;\n }\n if (!position.equals(this.translate.value)) {\n this.translate.value.copy(position);\n updated = true;\n }\n if (!quaternion.equals(this.rotate.value)) {\n this.rotate.value.copy(quaternion);\n updated = true;\n }\n return updated;\n }\n // Update this transform to match the object\'s to-world transform.\n update(object) {\n object.updateMatrixWorld();\n return this.updateFromMatrix(object.matrixWorld);\n }\n }\n class SplatGenerator extends Object3D {\n constructor({\n numSplats,\n generator,\n construct,\n update\n }) {\n super();\n this.numSplats = numSplats ?? 0;\n this.generator = generator;\n this.frameUpdate = update;\n this.version = 0;\n if (construct) {\n const constructed = construct(this);\n Object.assign(this, constructed);\n }\n }\n updateVersion() {\n this.version += 1;\n }\n set needsUpdate(value) {\n if (value) {\n this.updateVersion();\n }\n }\n }\n const _SplatMesh = class _SplatMesh extends SplatGenerator {\n constructor(options = {}) {\n const transform = new SplatTransformer();\n const viewToWorld = new SplatTransformer();\n const worldToView = new SplatTransformer();\n const viewToObject = new SplatTransformer();\n const recolor = new DynoVec4({\n value: new Vector4(\n Number.NEGATIVE_INFINITY,\n Number.NEGATIVE_INFINITY,\n Number.NEGATIVE_INFINITY,\n Number.NEGATIVE_INFINITY\n )\n });\n const time = new DynoFloat({ value: 0 });\n const deltaTime = new DynoFloat({ value: 0 });\n const context = {\n transform,\n viewToWorld,\n worldToView,\n viewToObject,\n recolor,\n time,\n deltaTime\n };\n super({\n update: ({ time: time2, deltaTime: deltaTime2, viewToWorld: viewToWorld2, globalEdits }) => this.update({ time: time2, deltaTime: deltaTime2, viewToWorld: viewToWorld2, globalEdits })\n });\n this.isInitialized = false;\n this.recolor = new Color(1, 1, 1);\n this.opacity = 1;\n this.enableViewToObject = false;\n this.enableViewToWorld = false;\n this.enableWorldToView = false;\n this.skinning = null;\n this.edits = null;\n this.rgbaDisplaceEdits = null;\n this.splatRgba = null;\n this.maxSh = 3;\n this.packedSplats = options.packedSplats ?? new PackedSplats();\n this.numSplats = this.packedSplats.numSplats;\n this.editable = options.editable ?? true;\n this.onFrame = options.onFrame;\n this.context = context;\n this.objectModifier = options.objectModifier;\n this.worldModifier = options.worldModifier;\n this.updateGenerator();\n if (options.url || options.fileBytes || options.constructSplats || options.packedSplats && !options.packedSplats.isInitialized) {\n this.initialized = this.asyncInitialize(options).then(async () => {\n this.updateGenerator();\n this.isInitialized = true;\n if (options.onLoad) {\n const maybePromise = options.onLoad(this);\n if (maybePromise instanceof Promise) {\n await maybePromise;\n }\n }\n return this;\n });\n } else {\n this.isInitialized = true;\n this.initialized = Promise.resolve(this);\n if (options.onLoad) {\n const maybePromise = options.onLoad(this);\n if (maybePromise instanceof Promise) {\n this.initialized = maybePromise.then(() => this);\n }\n }\n }\n }\n async asyncInitialize(options) {\n const { url, fileBytes, fileType, fileName, maxSplats, constructSplats } = options;\n if (url || fileBytes || constructSplats) {\n const packedSplatsOptions = {\n url,\n fileBytes,\n fileType,\n fileName,\n maxSplats,\n construct: constructSplats\n };\n this.packedSplats.reinitialize(packedSplatsOptions);\n }\n if (this.packedSplats) {\n await this.packedSplats.initialized;\n this.numSplats = this.packedSplats.numSplats;\n this.updateGenerator();\n }\n }\n static async staticInitialize() {\n await __wbg_init();\n _SplatMesh.isStaticInitialized = true;\n }\n // Creates a new Gsplat with the provided parameters (all values in "float" space,\n // i.e. 0-1 for opacity and color) and adds it to the end of the packedSplats,\n // increasing numSplats by 1. If necessary, reallocates the buffer with an exponential\n // doubling strategy to fit the new data, so it\'s fairly efficient to just\n // pushSplat(...) each Gsplat you want to create in a loop.\n pushSplat(center, scales, quaternion, opacity, color) {\n this.packedSplats.pushSplat(center, scales, quaternion, opacity, color);\n }\n // This method iterates over all Gsplats in this instance\'s packedSplats,\n // invoking the provided callback with index: number in 0..=(this.numSplats-1) and\n // center: THREE.Vector3, scales: THREE.Vector3, quaternion: THREE.Quaternion,\n // opacity: number (0..1), and color: THREE.Color (rgb values in 0..1).\n // Note that the objects passed in as center etc. are the same for every callback\n // invocation: these objects are reused for efficiency. Changing these values has\n // no effect as they are decoded/unpacked copies of the underlying data. To update\n // the packedSplats, call .packedSplats.setSplat(index, center, scales,\n // quaternion, opacity, color).\n forEachSplat(callback) {\n this.packedSplats.forEachSplat(callback);\n }\n // Call this when you are finished with the SplatMesh and want to free\n // any buffers it holds (via packedSplats).\n dispose() {\n this.packedSplats.dispose();\n }\n constructGenerator(context) {\n const { transform, viewToObject, recolor } = context;\n const generator = dynoBlock(\n { index: "int" },\n { gsplat: Gsplat },\n ({ index }) => {\n if (!index) {\n throw new Error("index is undefined");\n }\n let gsplat = readPackedSplat(this.packedSplats.dyno, index);\n if (this.maxSh >= 1) {\n const { sh1Texture, sh2Texture, sh3Texture } = this.ensureShTextures();\n if (sh1Texture) {\n const viewCenterInObject = viewToObject.translate;\n const { center } = splitGsplat(gsplat).outputs;\n const viewDir = normalize(sub(center, viewCenterInObject));\n let rgb = evaluateSH1(gsplat, sh1Texture, viewDir);\n if (this.maxSh >= 2 && sh2Texture) {\n rgb = add(rgb, evaluateSH2(gsplat, sh2Texture, viewDir));\n }\n if (this.maxSh >= 3 && sh3Texture) {\n rgb = add(rgb, evaluateSH3(gsplat, sh3Texture, viewDir));\n }\n let { rgba } = splitGsplat(gsplat).outputs;\n rgba = add(rgba, extendVec(rgb, dynoConst("float", 0)));\n gsplat = combineGsplat({ gsplat, rgba });\n }\n }\n if (this.splatRgba) {\n const rgba = readRgbaArray(this.splatRgba.dyno, index);\n gsplat = combineGsplat({ gsplat, rgba });\n }\n if (this.skinning) {\n gsplat = this.skinning.modify(gsplat);\n }\n if (this.objectModifier) {\n gsplat = this.objectModifier.apply({ gsplat }).gsplat;\n }\n gsplat = transform.applyGsplat(gsplat);\n const recolorRgba = mul(recolor, splitGsplat(gsplat).outputs.rgba);\n gsplat = combineGsplat({ gsplat, rgba: recolorRgba });\n if (this.rgbaDisplaceEdits) {\n gsplat = this.rgbaDisplaceEdits.modify(gsplat);\n }\n if (this.worldModifier) {\n gsplat = this.worldModifier.apply({ gsplat }).gsplat;\n }\n return { gsplat };\n }\n );\n this.generator = generator;\n }\n // Call this whenever something changes in the Gsplat processing pipeline,\n // for example changing maxSh or updating objectModifier or worldModifier.\n // Compiled generators are cached for efficiency and re-use when the same\n // pipeline structure emerges after successive changes.\n updateGenerator() {\n this.constructGenerator(this.context);\n }\n // This is called automatically by ForgeRenderer and you should not have to\n // call it. It updates parameters for the generated pipeline and calls\n // updateGenerator() if the pipeline needs to change.\n update({\n time,\n viewToWorld,\n deltaTime,\n globalEdits\n }) {\n var _a2;\n this.numSplats = this.packedSplats.numSplats;\n this.context.time.value = time;\n this.context.deltaTime.value = deltaTime;\n _SplatMesh.dynoTime.value = time;\n const { transform, viewToObject, recolor } = this.context;\n let updated = transform.update(this);\n if (this.context.viewToWorld.updateFromMatrix(viewToWorld) && this.enableViewToWorld) {\n updated = true;\n }\n const worldToView = viewToWorld.clone().invert();\n if (this.context.worldToView.updateFromMatrix(worldToView) && this.enableWorldToView) {\n updated = true;\n }\n const objectToWorld = new Matrix4().compose(\n transform.translate.value,\n transform.rotate.value,\n new Vector3().setScalar(transform.scale.value)\n );\n const worldToObject = objectToWorld.invert();\n const viewToObjectMatrix = worldToObject.multiply(viewToWorld);\n if (viewToObject.updateFromMatrix(viewToObjectMatrix) && (this.enableViewToObject || this.packedSplats.extra.sh1)) {\n updated = true;\n }\n const newRecolor = new Vector4(\n this.recolor.r,\n this.recolor.g,\n this.recolor.b,\n this.opacity\n );\n if (!newRecolor.equals(recolor.value)) {\n recolor.value.copy(newRecolor);\n updated = true;\n }\n const edits = this.editable ? (this.edits ?? []).concat(globalEdits) : [];\n if (this.editable && !this.edits) {\n this.traverseVisible((node) => {\n if (node instanceof SplatEdit) {\n edits.push(node);\n }\n });\n }\n edits.sort((a, b) => a.ordering - b.ordering);\n const editsSdfs = edits.map((edit) => {\n if (edit.sdfs != null) {\n return { edit, sdfs: edit.sdfs };\n }\n const sdfs = [];\n edit.traverseVisible((node) => {\n if (node instanceof SplatEditSdf) {\n sdfs.push(node);\n }\n });\n return { edit, sdfs };\n });\n if (editsSdfs.length > 0 && !this.rgbaDisplaceEdits) {\n const edits2 = editsSdfs.length;\n const sdfs = editsSdfs.reduce(\n (total, edit) => total + edit.sdfs.length,\n 0\n );\n this.rgbaDisplaceEdits = new SplatEdits({\n maxEdits: edits2,\n maxSdfs: sdfs\n });\n this.updateGenerator();\n }\n if (this.rgbaDisplaceEdits) {\n const editResult = this.rgbaDisplaceEdits.update(editsSdfs);\n updated || (updated = editResult.updated);\n if (editResult.dynoUpdated) {\n this.updateGenerator();\n }\n }\n if (updated) {\n this.updateVersion();\n }\n (_a2 = this.onFrame) == null ? void 0 : _a2.call(this, { mesh: this, time, deltaTime });\n }\n // This method conforms to the standard THREE.Raycaster API, performing object-ray\n // intersections using this method to populate the provided intersects[] array\n // with each intersection point.\n raycast(raycaster, intersects) {\n if (!this.packedSplats.packedArray || !this.packedSplats.numSplats) {\n return;\n }\n const { near, far, ray } = raycaster;\n const worldToMesh = this.matrixWorld.clone().invert();\n const worldToMeshRot = new Matrix3().setFromMatrix4(worldToMesh);\n const origin = ray.origin.clone().applyMatrix4(worldToMesh);\n const direction = ray.direction.clone().applyMatrix3(worldToMeshRot);\n const scales = new Vector3();\n worldToMesh.decompose(new Vector3(), new Quaternion(), scales);\n (scales.x * scales.y * scales.z) ** (1 / 3);\n const RAYCAST_ELLIPSOID = true;\n const distances = raycast_splats(\n origin.x,\n origin.y,\n origin.z,\n direction.x,\n direction.y,\n direction.z,\n near,\n far,\n this.packedSplats.numSplats,\n this.packedSplats.packedArray,\n RAYCAST_ELLIPSOID\n );\n for (const distance of distances) {\n const point = ray.direction.clone().multiplyScalar(distance).add(ray.origin);\n intersects.push({\n distance,\n point,\n object: this\n });\n }\n }\n ensureShTextures() {\n if (!this.packedSplats.extra.sh1) {\n return {};\n }\n let sh1Texture = this.packedSplats.extra.sh1Texture;\n if (!sh1Texture) {\n let sh1 = this.packedSplats.extra.sh1;\n const { width, height, depth, maxSplats } = getTextureSize(\n sh1.length / 2\n );\n if (sh1.length < maxSplats * 2) {\n const newSh1 = new Uint32Array(maxSplats * 2);\n newSh1.set(sh1);\n this.packedSplats.extra.sh1 = newSh1;\n sh1 = newSh1;\n }\n const texture = new DataArrayTexture(sh1, width, height, depth);\n texture.format = RGIntegerFormat;\n texture.type = UnsignedIntType;\n texture.internalFormat = "RG32UI";\n texture.needsUpdate = true;\n sh1Texture = new DynoUsampler2DArray({\n value: texture,\n key: "sh1"\n });\n this.packedSplats.extra.sh1Texture = sh1Texture;\n }\n if (!this.packedSplats.extra.sh2) {\n return { sh1Texture };\n }\n let sh2Texture = this.packedSplats.extra.sh2Texture;\n if (!sh2Texture) {\n let sh2 = this.packedSplats.extra.sh2;\n const { width, height, depth, maxSplats } = getTextureSize(\n sh2.length / 4\n );\n if (sh2.length < maxSplats * 4) {\n const newSh2 = new Uint32Array(maxSplats * 4);\n newSh2.set(sh2);\n this.packedSplats.extra.sh2 = newSh2;\n sh2 = newSh2;\n }\n const texture = new DataArrayTexture(sh2, width, height, depth);\n texture.format = RGBAIntegerFormat;\n texture.type = UnsignedIntType;\n texture.internalFormat = "RGBA32UI";\n texture.needsUpdate = true;\n sh2Texture = new DynoUsampler2DArray({\n value: texture,\n key: "sh2"\n });\n this.packedSplats.extra.sh2Texture = sh2Texture;\n }\n if (!this.packedSplats.extra.sh3) {\n return { sh1Texture, sh2Texture };\n }\n let sh3Texture = this.packedSplats.extra.sh3Texture;\n if (!sh3Texture) {\n let sh3 = this.packedSplats.extra.sh3;\n const { width, height, depth, maxSplats } = getTextureSize(\n sh3.length / 4\n );\n if (sh3.length < maxSplats * 4) {\n const newSh3 = new Uint32Array(maxSplats * 4);\n newSh3.set(sh3);\n this.packedSplats.extra.sh3 = newSh3;\n sh3 = newSh3;\n }\n const texture = new DataArrayTexture(sh3, width, height, depth);\n texture.format = RGBAIntegerFormat;\n texture.type = UnsignedIntType;\n texture.internalFormat = "RGBA32UI";\n texture.needsUpdate = true;\n sh3Texture = new DynoUsampler2DArray({\n value: texture,\n key: "sh3"\n });\n this.packedSplats.extra.sh3Texture = sh3Texture;\n }\n return { sh1Texture, sh2Texture, sh3Texture };\n }\n };\n _SplatMesh.staticInitialized = _SplatMesh.staticInitialize();\n _SplatMesh.isStaticInitialized = false;\n _SplatMesh.dynoTime = new DynoFloat({ value: 0 });\n let SplatMesh = _SplatMesh;\n const defineEvaluateSH1 = unindent(`\n vec3 evaluateSH1(Gsplat gsplat, usampler2DArray sh1, vec3 viewDir) {\n // Extract sint7 values packed into 2 x uint32\n uvec2 packed = texelFetch(sh1, splatTexCoord(gsplat.index), 0).rg;\n vec3 sh1_0 = vec3(ivec3(\n int(packed.x << 25u) >> 25,\n int(packed.x << 18u) >> 25,\n int(packed.x << 11u) >> 25\n )) / 63.0;\n vec3 sh1_1 = vec3(ivec3(\n int(packed.x << 4u) >> 25,\n int((packed.x >> 3u) | (packed.y << 29u)) >> 25,\n int(packed.y << 22u) >> 25\n )) / 63.0;\n vec3 sh1_2 = vec3(ivec3(\n int(packed.y << 15u) >> 25,\n int(packed.y << 8u) >> 25,\n int(packed.y << 1u) >> 25\n )) / 63.0;\n\n return sh1_0 * (-0.4886025 * viewDir.y)\n + sh1_1 * (0.4886025 * viewDir.z)\n + sh1_2 * (-0.4886025 * viewDir.x);\n }\n`);\n const defineEvaluateSH2 = unindent(`\n vec3 evaluateSH2(Gsplat gsplat, usampler2DArray sh2, vec3 viewDir) {\n // Extract sint8 values packed into 4 x uint32\n uvec4 packed = texelFetch(sh2, splatTexCoord(gsplat.index), 0);\n vec3 sh2_0 = vec3(ivec3(\n int(packed.x << 24u) >> 24,\n int(packed.x << 16u) >> 24,\n int(packed.x << 8u) >> 24\n )) / 127.0;\n vec3 sh2_1 = vec3(ivec3(\n int(packed.x) >> 24,\n int(packed.y << 24u) >> 24,\n int(packed.y << 16u) >> 24\n )) / 127.0;\n vec3 sh2_2 = vec3(ivec3(\n int(packed.y << 8u) >> 24,\n int(packed.y) >> 24,\n int(packed.z << 24u) >> 24\n )) / 127.0;\n vec3 sh2_3 = vec3(ivec3(\n int(packed.z << 16u) >> 24,\n int(packed.z << 8u) >> 24,\n int(packed.z) >> 24\n )) / 127.0;\n vec3 sh2_4 = vec3(ivec3(\n int(packed.w << 24u) >> 24,\n int(packed.w << 16u) >> 24,\n int(packed.w << 8u) >> 24\n )) / 127.0;\n\n return sh2_0 * (1.0925484 * viewDir.x * viewDir.y)\n + sh2_1 * (1.0925484 * viewDir.y * viewDir.z)\n + sh2_2 * (0.3153915 * (2.0 * viewDir.z * viewDir.z - viewDir.x * viewDir.x - viewDir.y * viewDir.y))\n + sh2_3 * (1.0925484 * viewDir.x * viewDir.z)\n + sh2_4 * (0.5462742 * (viewDir.x * viewDir.x - viewDir.y * viewDir.y));\n }\n`);\n const defineEvaluateSH3 = unindent(`\n vec3 evaluateSH3(Gsplat gsplat, usampler2DArray sh3, vec3 viewDir) {\n // Extract sint6 values packed into 4 x uint32\n uvec4 packed = texelFetch(sh3, splatTexCoord(gsplat.index), 0);\n vec3 sh3_0 = vec3(ivec3(\n int(packed.x << 26u) >> 26,\n int(packed.x << 20u) >> 26,\n int(packed.x << 14u) >> 26\n )) / 31.0;\n vec3 sh3_1 = vec3(ivec3(\n int(packed.x << 8u) >> 26,\n int(packed.x << 2u) >> 26,\n int((packed.x >> 4u) | (packed.y << 28u)) >> 26\n )) / 31.0;\n vec3 sh3_2 = vec3(ivec3(\n int(packed.y << 22u) >> 26,\n int(packed.y << 16u) >> 26,\n int(packed.y << 10u) >> 26\n )) / 31.0;\n vec3 sh3_3 = vec3(ivec3(\n int(packed.y << 4u) >> 26,\n int((packed.y >> 2u) | (packed.z << 30u)) >> 26,\n int(packed.z << 24u) >> 26\n )) / 31.0;\n vec3 sh3_4 = vec3(ivec3(\n int(packed.z << 18u) >> 26,\n int(packed.z << 12u) >> 26,\n int(packed.z << 6u) >> 26\n )) / 31.0;\n vec3 sh3_5 = vec3(ivec3(\n int(packed.z) >> 26,\n int(packed.w << 26u) >> 26,\n int(packed.w << 20u) >> 26\n )) / 31.0;\n vec3 sh3_6 = vec3(ivec3(\n int(packed.w << 14u) >> 26,\n int(packed.w << 8u) >> 26,\n int(packed.w << 2u) >> 26\n )) / 31.0;\n\n float xx = viewDir.x * viewDir.x;\n float yy = viewDir.y * viewDir.y;\n float zz = viewDir.z * viewDir.z;\n float xy = viewDir.x * viewDir.y;\n float yz = viewDir.y * viewDir.z;\n float zx = viewDir.z * viewDir.x;\n\n return sh3_0 * (-0.5900436 * viewDir.y * (3.0 * xx - yy))\n + sh3_1 * (2.8906114 * xy * viewDir.z) +\n + sh3_2 * (-0.4570458 * viewDir.y * (4.0 * zz - xx - yy))\n + sh3_3 * (0.3731763 * viewDir.z * (2.0 * zz - 3.0 * xx - 3.0 * yy))\n + sh3_4 * (-0.4570458 * viewDir.x * (4.0 * zz - xx - yy))\n + sh3_5 * (1.4453057 * viewDir.z * (xx - yy))\n + sh3_6 * (-0.5900436 * viewDir.x * (xx - 3.0 * yy));\n }\n`);\n function evaluateSH1(gsplat, sh1, viewDir) {\n return dyno({\n inTypes: { gsplat: Gsplat, sh1: "usampler2DArray", viewDir: "vec3" },\n outTypes: { rgb: "vec3" },\n inputs: { gsplat, sh1, viewDir },\n globals: () => [defineGsplat, defineEvaluateSH1],\n statements: ({ inputs, outputs }) => {\n const statements = unindentLines(`\n if (isGsplatActive(${inputs.gsplat}.flags)) {\n ${outputs.rgb} = evaluateSH1(${inputs.gsplat}, ${inputs.sh1}, ${inputs.viewDir});\n } else {\n ${outputs.rgb} = vec3(0.0);\n }\n `);\n return statements;\n }\n }).outputs.rgb;\n }\n function evaluateSH2(gsplat, sh2, viewDir) {\n return dyno({\n inTypes: { gsplat: Gsplat, sh2: "usampler2DArray", viewDir: "vec3" },\n outTypes: { rgb: "vec3" },\n inputs: { gsplat, sh2, viewDir },\n globals: () => [defineGsplat, defineEvaluateSH2],\n statements: ({ inputs, outputs }) => unindentLines(`\n if (isGsplatActive(${inputs.gsplat}.flags)) {\n ${outputs.rgb} = evaluateSH2(${inputs.gsplat}, ${inputs.sh2}, ${inputs.viewDir});\n } else {\n ${outputs.rgb} = vec3(0.0);\n }\n `)\n }).outputs.rgb;\n }\n function evaluateSH3(gsplat, sh3, viewDir) {\n return dyno({\n inTypes: { gsplat: Gsplat, sh3: "usampler2DArray", viewDir: "vec3" },\n outTypes: { rgb: "vec3" },\n inputs: { gsplat, sh3, viewDir },\n globals: () => [defineGsplat, defineEvaluateSH3],\n statements: ({ inputs, outputs }) => unindentLines(`\n if (isGsplatActive(${inputs.gsplat}.flags)) {\n ${outputs.rgb} = evaluateSH3(${inputs.gsplat}, ${inputs.sh3}, ${inputs.viewDir});\n } else {\n ${outputs.rgb} = vec3(0.0);\n }\n `)\n }).outputs.rgb;\n }\n function WorkerWrapper(options) {\n return new Worker(\n self.location.href,\n {\n name: options == null ? void 0 : options.name\n }\n );\n }\n class SplatWorker {\n constructor() {\n this.messages = {};\n this.messageIdNext = 0;\n this.worker = new WorkerWrapper();\n this.worker.onmessage = (event) => this.onMessage(event);\n }\n makeMessageId() {\n return ++this.messageIdNext;\n }\n makeMessagePromiseId() {\n const id = this.makeMessageId();\n const promise = new Promise((resolve, reject) => {\n this.messages[id] = { resolve, reject };\n });\n return { id, promise };\n }\n onMessage(event) {\n const { id, result, error } = event.data;\n const handler = this.messages[id];\n if (handler) {\n delete this.messages[id];\n if (error) {\n handler.reject(error);\n } else {\n handler.resolve(result);\n }\n }\n }\n // Invoke an RPC on the worker with the given name and arguments.\n // The normal usage of a worker is to run one activity at a time,\n // but this function allows for concurrent calls, tagging each request\n // with a unique message Id and awaiting a response to that same Id.\n // The method will automatically transfer any ArrayBuffers in the\n // arguments to the worker. If you\'d like to transfer a copy of a\n // buffer then you must clone it before passing to this function.\n async call(name, args) {\n const { id, promise } = this.makeMessagePromiseId();\n this.worker.postMessage(\n { name, args, id },\n { transfer: getArrayBuffers(args) }\n );\n return promise;\n }\n }\n let maxWorkers = 4;\n let numWorkers = 0;\n const freeWorkers = [];\n const workerQueue = [];\n async function allocWorker() {\n const worker = freeWorkers.shift();\n if (worker) {\n return worker;\n }\n if (numWorkers < maxWorkers) {\n const worker2 = new SplatWorker();\n numWorkers += 1;\n return worker2;\n }\n return new Promise((resolve) => {\n workerQueue.push(resolve);\n });\n }\n function freeWorker(worker) {\n if (numWorkers > maxWorkers) {\n numWorkers -= 1;\n return;\n }\n const waiter = workerQueue.shift();\n if (waiter) {\n waiter(worker);\n return;\n }\n freeWorkers.push(worker);\n }\n async function withWorker(callback) {\n const worker = await allocWorker();\n try {\n return await callback(worker);\n } finally {\n freeWorker(worker);\n }\n }\n var SplatFileType = /* @__PURE__ */ ((SplatFileType2) => {\n SplatFileType2["PLY"] = "ply";\n SplatFileType2["SPZ"] = "spz";\n SplatFileType2["SPLAT"] = "splat";\n SplatFileType2["KSPLAT"] = "ksplat";\n return SplatFileType2;\n })(SplatFileType || {});\n function getSplatFileType(fileBytes) {\n const view = new DataView(fileBytes.buffer);\n if ((view.getUint32(0, true) & 16777215) === 7957616) {\n return "ply";\n }\n if ((view.getUint32(0, true) & 16777215) === 559903) {\n const header = decompressPartialGzip(fileBytes, 4);\n const gView = new DataView(header.buffer);\n if (gView.getUint32(0, true) === 1347635022) {\n return "spz";\n }\n return void 0;\n }\n return void 0;\n }\n function getFileExtension(pathOrUrl) {\n const noTrailing = pathOrUrl.split(/[?#]/, 1)[0];\n const lastSlash = Math.max(\n noTrailing.lastIndexOf("/"),\n noTrailing.lastIndexOf("\\\\")\n );\n const filename = noTrailing.slice(lastSlash + 1);\n const lastDot = filename.lastIndexOf(".");\n if (lastDot <= 0 || lastDot === filename.length - 1) {\n return "";\n }\n return filename.slice(lastDot + 1).toLowerCase();\n }\n function getSplatFileTypeFromPath(pathOrUrl) {\n const extension = getFileExtension(pathOrUrl);\n if (extension === "ply") {\n return "ply";\n }\n if (extension === "spz") {\n return "spz";\n }\n if (extension === "splat") {\n return "splat";\n }\n if (extension === "ksplat") {\n return "ksplat";\n }\n return void 0;\n }\n async function unpackSplats({\n input,\n fileType,\n pathOrUrl\n }) {\n const fileBytes = input instanceof ArrayBuffer ? new Uint8Array(input) : input;\n let splatFileType = fileType;\n if (!fileType) {\n splatFileType = getSplatFileType(fileBytes);\n if (!splatFileType && pathOrUrl) {\n splatFileType = getSplatFileTypeFromPath(pathOrUrl);\n }\n }\n switch (splatFileType) {\n case "ply": {\n const ply = new PlyReader({ fileBytes });\n await ply.parseHeader();\n const numSplats = ply.numSplats;\n const maxSplats = getTextureSize(numSplats).maxSplats;\n const args = { fileBytes, packedArray: new Uint32Array(maxSplats * 4) };\n return await withWorker(async (worker) => {\n const { packedArray, numSplats: numSplats2, extra } = await worker.call(\n "unpackPly",\n args\n );\n return { packedArray, numSplats: numSplats2, extra };\n });\n }\n case "spz": {\n return await withWorker(async (worker) => {\n const { packedArray, numSplats, extra } = await worker.call(\n "decodeSpz",\n {\n fileBytes\n }\n );\n return { packedArray, numSplats, extra };\n });\n }\n case "splat": {\n return await withWorker(async (worker) => {\n const { packedArray, numSplats } = await worker.call(\n "decodeAntiSplat",\n {\n fileBytes\n }\n );\n return { packedArray, numSplats };\n });\n }\n case "ksplat":\n return await withWorker(async (worker) => {\n const { packedArray, numSplats, extra } = await worker.call(\n "decodeKsplat",\n { fileBytes }\n );\n return { packedArray, numSplats, extra };\n });\n default: {\n throw new Error(`Unknown splat file type: ${splatFileType}`);\n }\n }\n }\n class SplatData {\n constructor({ maxSplats = 1 } = {}) {\n this.numSplats = 0;\n this.maxSplats = getTextureSize(maxSplats).maxSplats;\n this.centers = new Float32Array(this.maxSplats * 3);\n this.scales = new Float32Array(this.maxSplats * 3);\n this.quaternions = new Float32Array(this.maxSplats * 4);\n this.opacities = new Float32Array(this.maxSplats);\n this.colors = new Float32Array(this.maxSplats * 3);\n }\n pushSplat() {\n const index = this.numSplats;\n this.ensureIndex(index);\n this.numSplats += 1;\n return index;\n }\n unpushSplat(index) {\n if (index === this.numSplats - 1) {\n this.numSplats -= 1;\n } else {\n throw new Error("Cannot unpush splat from non-last position");\n }\n }\n ensureCapacity(numSplats) {\n if (numSplats > this.maxSplats) {\n const targetSplats = Math.max(numSplats, this.maxSplats * 2);\n const newCenters = new Float32Array(targetSplats * 3);\n const newScales = new Float32Array(targetSplats * 3);\n const newQuaternions = new Float32Array(targetSplats * 4);\n const newOpacities = new Float32Array(targetSplats);\n const newColors = new Float32Array(targetSplats * 3);\n newCenters.set(this.centers);\n newScales.set(this.scales);\n newQuaternions.set(this.quaternions);\n newOpacities.set(this.opacities);\n newColors.set(this.colors);\n this.centers = newCenters;\n this.scales = newScales;\n this.quaternions = newQuaternions;\n this.opacities = newOpacities;\n this.colors = newColors;\n if (this.sh1) {\n const newSh1 = new Float32Array(targetSplats * 9);\n newSh1.set(this.sh1);\n this.sh1 = newSh1;\n }\n if (this.sh2) {\n const newSh2 = new Float32Array(targetSplats * 15);\n newSh2.set(this.sh2);\n this.sh2 = newSh2;\n }\n if (this.sh3) {\n const newSh3 = new Float32Array(targetSplats * 21);\n newSh3.set(this.sh3);\n this.sh3 = newSh3;\n }\n this.maxSplats = targetSplats;\n }\n }\n ensureIndex(index) {\n this.ensureCapacity(index + 1);\n }\n setCenter(index, x2, y, z) {\n this.centers[index * 3] = x2;\n this.centers[index * 3 + 1] = y;\n this.centers[index * 3 + 2] = z;\n }\n setScale(index, scaleX, scaleY, scaleZ) {\n this.scales[index * 3] = scaleX;\n this.scales[index * 3 + 1] = scaleY;\n this.scales[index * 3 + 2] = scaleZ;\n }\n setQuaternion(index, x2, y, z, w) {\n this.quaternions[index * 4] = x2;\n this.quaternions[index * 4 + 1] = y;\n this.quaternions[index * 4 + 2] = z;\n this.quaternions[index * 4 + 3] = w;\n }\n setOpacity(index, opacity) {\n this.opacities[index] = opacity;\n }\n setColor(index, r, g, b) {\n this.colors[index * 3] = r;\n this.colors[index * 3 + 1] = g;\n this.colors[index * 3 + 2] = b;\n }\n setSh1(index, sh1) {\n if (!this.sh1) {\n this.sh1 = new Float32Array(this.maxSplats * 9);\n }\n for (let j = 0; j < 9; ++j) {\n this.sh1[index * 9 + j] = sh1[j];\n }\n }\n setSh2(index, sh2) {\n if (!this.sh2) {\n this.sh2 = new Float32Array(this.maxSplats * 15);\n }\n for (let j = 0; j < 15; ++j) {\n this.sh2[index * 15 + j] = sh2[j];\n }\n }\n setSh3(index, sh3) {\n if (!this.sh3) {\n this.sh3 = new Float32Array(this.maxSplats * 21);\n }\n for (let j = 0; j < 21; ++j) {\n this.sh3[index * 21 + j] = sh3[j];\n }\n }\n }\n class SpzReader {\n constructor({ fileBytes }) {\n this.fileBytes = fileBytes instanceof ArrayBuffer ? new Uint8Array(fileBytes) : fileBytes;\n this.reader = new GunzipReader({ fileBytes: this.fileBytes });\n const header = new DataView(this.reader.read(16).buffer);\n if (header.getUint32(0, true) !== 1347635022) {\n throw new Error("Invalid SPZ file");\n }\n this.version = header.getUint32(4, true);\n if (this.version < 1 || this.version > 2) {\n throw new Error(`Unsupported SPZ version: ${this.version}`);\n }\n this.numSplats = header.getUint32(8, true);\n this.shDegree = header.getUint8(12);\n this.fractionalBits = header.getUint8(13);\n this.flags = header.getUint8(14);\n this.flagAntiAlias = (this.flags & 1) !== 0;\n this.reserved = header.getUint8(15);\n this.parsed = false;\n }\n parseSplats(centerCallback, alphaCallback, rgbCallback, scalesCallback, quatCallback, shCallback) {\n if (this.parsed) {\n throw new Error("SPZ file already parsed");\n }\n this.parsed = true;\n if (this.version === 1) {\n const centerBytes = this.reader.read(this.numSplats * 3 * 2);\n const centerUint16 = new Uint16Array(centerBytes.buffer);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i3 = i2 * 3;\n const x2 = fromHalf(centerUint16[i3]);\n const y = fromHalf(centerUint16[i3 + 1]);\n const z = fromHalf(centerUint16[i3 + 2]);\n centerCallback == null ? void 0 : centerCallback(i2, x2, y, z);\n }\n } else if (this.version === 2) {\n const fixed = 1 << this.fractionalBits;\n const centerBytes = this.reader.read(this.numSplats * 3 * 3);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i9 = i2 * 9;\n const x2 = ((centerBytes[i9 + 2] << 24 | centerBytes[i9 + 1] << 16 | centerBytes[i9] << 8) >> 8) / fixed;\n const y = ((centerBytes[i9 + 5] << 24 | centerBytes[i9 + 4] << 16 | centerBytes[i9 + 3] << 8) >> 8) / fixed;\n const z = ((centerBytes[i9 + 8] << 24 | centerBytes[i9 + 7] << 16 | centerBytes[i9 + 6] << 8) >> 8) / fixed;\n centerCallback == null ? void 0 : centerCallback(i2, x2, y, z);\n }\n } else {\n throw new Error("Unreachable");\n }\n {\n const bytes = this.reader.read(this.numSplats);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n alphaCallback == null ? void 0 : alphaCallback(i2, bytes[i2] / 255);\n }\n }\n {\n const rgbBytes = this.reader.read(this.numSplats * 3);\n const scale = SH_C0 / 0.15;\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i3 = i2 * 3;\n const r = (rgbBytes[i3] / 255 - 0.5) * scale + 0.5;\n const g = (rgbBytes[i3 + 1] / 255 - 0.5) * scale + 0.5;\n const b = (rgbBytes[i3 + 2] / 255 - 0.5) * scale + 0.5;\n rgbCallback == null ? void 0 : rgbCallback(i2, r, g, b);\n }\n }\n {\n const scalesBytes = this.reader.read(this.numSplats * 3);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i3 = i2 * 3;\n const scaleX = Math.exp(scalesBytes[i3] / 16 - 10);\n const scaleY = Math.exp(scalesBytes[i3 + 1] / 16 - 10);\n const scaleZ = Math.exp(scalesBytes[i3 + 2] / 16 - 10);\n scalesCallback == null ? void 0 : scalesCallback(i2, scaleX, scaleY, scaleZ);\n }\n }\n {\n const quatBytes = this.reader.read(this.numSplats * 3);\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n const i3 = i2 * 3;\n const quatX = quatBytes[i3] / 127.5 - 1;\n const quatY = quatBytes[i3 + 1] / 127.5 - 1;\n const quatZ = quatBytes[i3 + 2] / 127.5 - 1;\n const quatW = Math.sqrt(\n Math.max(0, 1 - quatX * quatX - quatY * quatY - quatZ * quatZ)\n );\n quatCallback == null ? void 0 : quatCallback(i2, quatX, quatY, quatZ, quatW);\n }\n }\n if (shCallback && this.shDegree >= 1) {\n const sh1 = new Float32Array(3 * 3);\n const sh2 = this.shDegree >= 2 ? new Float32Array(5 * 3) : void 0;\n const sh3 = this.shDegree >= 3 ? new Float32Array(7 * 3) : void 0;\n const shBytes = this.reader.read(\n this.numSplats * SH_DEGREE_TO_VECS[this.shDegree] * 3\n );\n let offset = 0;\n for (let i2 = 0; i2 < this.numSplats; i2++) {\n for (let j = 0; j < 9; ++j) {\n sh1[j] = (shBytes[offset + j] - 128) / 128;\n }\n offset += 9;\n if (sh2) {\n for (let j = 0; j < 15; ++j) {\n sh2[j] = (shBytes[offset + j] - 128) / 128;\n }\n offset += 15;\n }\n if (sh3) {\n for (let j = 0; j < 21; ++j) {\n sh3[j] = (shBytes[offset + j] - 128) / 128;\n }\n offset += 21;\n }\n shCallback == null ? void 0 : shCallback(i2, sh1, sh2, sh3);\n }\n }\n }\n }\n const SH_DEGREE_TO_VECS = { 1: 3, 2: 8, 3: 15 };\n const SH_C0 = 0.28209479177387814;\n const SPZ_MAGIC = 1347635022;\n const SPZ_VERSION = 2;\n const FLAG_ANTIALIASED = 1;\n class SpzWriter {\n constructor({\n numSplats,\n shDegree,\n fractionalBits = 12,\n flagAntiAlias = true\n }) {\n this.clippedCount = 0;\n const splatSize = 9 + 1 + 3 + 3 + 3 + (shDegree >= 1 ? 9 : 0) + (shDegree >= 2 ? 15 : 0) + (shDegree >= 3 ? 21 : 0);\n const bufferSize = 16 + numSplats * splatSize;\n this.buffer = new ArrayBuffer(bufferSize);\n this.view = new DataView(this.buffer);\n this.view.setUint32(0, SPZ_MAGIC, true);\n this.view.setUint32(4, SPZ_VERSION, true);\n this.view.setUint32(8, numSplats, true);\n this.view.setUint8(12, shDegree);\n this.view.setUint8(13, fractionalBits);\n this.view.setUint8(14, flagAntiAlias ? FLAG_ANTIALIASED : 0);\n this.view.setUint8(15, 0);\n this.numSplats = numSplats;\n this.shDegree = shDegree;\n this.fractionalBits = fractionalBits;\n this.fraction = 1 << fractionalBits;\n this.flagAntiAlias = flagAntiAlias;\n }\n setCenter(index, x2, y, z) {\n const xRounded = Math.round(x2 * this.fraction);\n const xInt = Math.max(-8388607, Math.min(8388607, xRounded));\n const yRounded = Math.round(y * this.fraction);\n const yInt = Math.max(-8388607, Math.min(8388607, yRounded));\n const zRounded = Math.round(z * this.fraction);\n const zInt = Math.max(-8388607, Math.min(8388607, zRounded));\n const clipped = xRounded !== xInt || yRounded !== yInt || zRounded !== zInt;\n if (clipped) {\n this.clippedCount += 1;\n }\n const i9 = index * 9;\n const base = 16 + i9;\n this.view.setUint8(base, xInt & 255);\n this.view.setUint8(base + 1, xInt >> 8 & 255);\n this.view.setUint8(base + 2, xInt >> 16 & 255);\n this.view.setUint8(base + 3, yInt & 255);\n this.view.setUint8(base + 4, yInt >> 8 & 255);\n this.view.setUint8(base + 5, yInt >> 16 & 255);\n this.view.setUint8(base + 6, zInt & 255);\n this.view.setUint8(base + 7, zInt >> 8 & 255);\n this.view.setUint8(base + 8, zInt >> 16 & 255);\n }\n setAlpha(index, alpha) {\n const base = 16 + this.numSplats * 9 + index;\n this.view.setUint8(\n base,\n Math.max(0, Math.min(255, Math.round(alpha * 255)))\n );\n }\n static scaleRgb(r) {\n const v = ((r - 0.5) / (SH_C0 / 0.15) + 0.5) * 255;\n return Math.max(0, Math.min(255, Math.round(v)));\n }\n setRgb(index, r, g, b) {\n const base = 16 + this.numSplats * 10 + index * 3;\n this.view.setUint8(base, SpzWriter.scaleRgb(r));\n this.view.setUint8(base + 1, SpzWriter.scaleRgb(g));\n this.view.setUint8(base + 2, SpzWriter.scaleRgb(b));\n }\n setScale(index, scaleX, scaleY, scaleZ) {\n const base = 16 + this.numSplats * 13 + index * 3;\n this.view.setUint8(\n base,\n Math.max(0, Math.min(255, Math.round((Math.log(scaleX) + 10) * 16)))\n );\n this.view.setUint8(\n base + 1,\n Math.max(0, Math.min(255, Math.round((Math.log(scaleY) + 10) * 16)))\n );\n this.view.setUint8(\n base + 2,\n Math.max(0, Math.min(255, Math.round((Math.log(scaleZ) + 10) * 16)))\n );\n }\n setQuat(index, quatX, quatY, quatZ, quatW) {\n const base = 16 + this.numSplats * 16 + index * 3;\n const quatNeg = quatW < 0;\n this.view.setUint8(\n base,\n Math.max(\n 0,\n Math.min(255, Math.round(((quatNeg ? -quatX : quatX) + 1) * 127.5))\n )\n );\n this.view.setUint8(\n base + 1,\n Math.max(\n 0,\n Math.min(255, Math.round(((quatNeg ? -quatY : quatY) + 1) * 127.5))\n )\n );\n this.view.setUint8(\n base + 2,\n Math.max(\n 0,\n Math.min(255, Math.round(((quatNeg ? -quatZ : quatZ) + 1) * 127.5))\n )\n );\n }\n static quantizeSh(sh, bits2) {\n const value = Math.round(sh * 128) + 128;\n const bucketSize = 1 << 8 - bits2;\n const quantized = Math.floor((value + bucketSize / 2) / bucketSize) * bucketSize;\n return Math.max(0, Math.min(255, quantized));\n }\n setSh(index, sh1, sh2, sh3) {\n const shVecs = SH_DEGREE_TO_VECS[this.shDegree] || 0;\n const base1 = 16 + this.numSplats * 19 + index * shVecs * 3;\n for (let j = 0; j < 9; ++j) {\n this.view.setUint8(base1 + j, SpzWriter.quantizeSh(sh1[j], 5));\n }\n if (sh2) {\n const base2 = base1 + 9;\n for (let j = 0; j < 15; ++j) {\n this.view.setUint8(base2 + j, SpzWriter.quantizeSh(sh2[j], 4));\n }\n if (sh3) {\n const base3 = base2 + 15;\n for (let j = 0; j < 21; ++j) {\n this.view.setUint8(base3 + j, SpzWriter.quantizeSh(sh3[j], 4));\n }\n }\n }\n }\n async finalize() {\n const input = new Uint8Array(this.buffer);\n const stream = new ReadableStream({\n async start(controller) {\n controller.enqueue(input);\n controller.close();\n }\n });\n const compressed = stream.pipeThrough(new CompressionStream("gzip"));\n const response = new Response(compressed);\n const buffer = await response.arrayBuffer();\n console.log(\n "Compressed",\n input.length,\n "bytes to",\n buffer.byteLength,\n "bytes"\n );\n return new Uint8Array(buffer);\n }\n }\n async function transcodeSpz(input) {\n var _a2, _b2, _c;\n const splats = new SplatData();\n const {\n inputs,\n clipXyz,\n maxSh,\n fractionalBits = 12,\n opacityThreshold\n } = input;\n for (const input2 of inputs) {\n let transformPos2 = function(pos) {\n pos.multiplyScalar(scale);\n pos.applyQuaternion(quaternion);\n pos.add(translate);\n return pos;\n }, transformScales = function(scales) {\n scales.multiplyScalar(scale);\n return scales;\n }, transformQuaternion = function(quat) {\n quat.premultiply(quaternion);\n return quat;\n }, withinClip = function(p) {\n return !clip || clip.containsPoint(p);\n }, withinOpacity = function(opacity) {\n return opacityThreshold !== void 0 ? opacity >= opacityThreshold : true;\n };\n const scale = ((_a2 = input2.transform) == null ? void 0 : _a2.scale) ?? 1;\n const quaternion = new Quaternion().fromArray(\n ((_b2 = input2.transform) == null ? void 0 : _b2.quaternion) ?? [0, 0, 0, 1]\n );\n const translate = new Vector3().fromArray(\n ((_c = input2.transform) == null ? void 0 : _c.translate) ?? [0, 0, 0]\n );\n const clip = clipXyz ? new Box3(\n new Vector3().fromArray(clipXyz.min),\n new Vector3().fromArray(clipXyz.max)\n ) : void 0;\n let fileType = input2.fileType;\n if (!fileType) {\n fileType = getSplatFileType(input2.fileBytes);\n if (!fileType && input2.pathOrUrl) {\n fileType = getSplatFileTypeFromPath(input2.pathOrUrl);\n }\n }\n switch (fileType) {\n case SplatFileType.PLY: {\n const ply = new PlyReader({ fileBytes: input2.fileBytes });\n await ply.parseHeader();\n let lastIndex = null;\n ply.parseSplats(\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n const center = transformPos2(new Vector3(x2, y, z));\n if (withinClip(center) && withinOpacity(opacity)) {\n lastIndex = splats.pushSplat();\n splats.setCenter(lastIndex, center.x, center.y, center.z);\n const scales = transformScales(\n new Vector3(scaleX, scaleY, scaleZ)\n );\n splats.setScale(lastIndex, scales.x, scales.y, scales.z);\n const quaternion2 = transformQuaternion(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n splats.setQuaternion(\n lastIndex,\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n splats.setOpacity(lastIndex, opacity);\n splats.setColor(lastIndex, r, g, b);\n } else {\n lastIndex = null;\n }\n },\n (index, sh1, sh2, sh3) => {\n if (sh1 && lastIndex !== null) {\n splats.setSh1(lastIndex, sh1);\n }\n if (sh2 && lastIndex !== null) {\n splats.setSh2(lastIndex, sh2);\n }\n if (sh3 && lastIndex !== null) {\n splats.setSh3(lastIndex, sh3);\n }\n }\n );\n break;\n }\n case SplatFileType.SPZ: {\n const spz2 = new SpzReader({ fileBytes: input2.fileBytes });\n const mapping = new Int32Array(spz2.numSplats);\n mapping.fill(-1);\n const centers = new Float32Array(spz2.numSplats * 3);\n const center = new Vector3();\n spz2.parseSplats(\n (index, x2, y, z) => {\n const center2 = transformPos2(new Vector3(x2, y, z));\n centers[index * 3] = center2.x;\n centers[index * 3 + 1] = center2.y;\n centers[index * 3 + 2] = center2.z;\n },\n (index, alpha) => {\n center.fromArray(centers, index * 3);\n if (withinClip(center) && withinOpacity(alpha)) {\n mapping[index] = splats.pushSplat();\n splats.setCenter(mapping[index], center.x, center.y, center.z);\n splats.setOpacity(mapping[index], alpha);\n }\n },\n (index, r, g, b) => {\n if (mapping[index] >= 0) {\n splats.setColor(mapping[index], r, g, b);\n }\n },\n (index, scaleX, scaleY, scaleZ) => {\n if (mapping[index] >= 0) {\n const scales = transformScales(\n new Vector3(scaleX, scaleY, scaleZ)\n );\n splats.setScale(mapping[index], scales.x, scales.y, scales.z);\n }\n },\n (index, quatX, quatY, quatZ, quatW) => {\n if (mapping[index] >= 0) {\n const quaternion2 = transformQuaternion(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n splats.setQuaternion(\n mapping[index],\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n }\n },\n (index, sh1, sh2, sh3) => {\n if (mapping[index] >= 0) {\n splats.setSh1(mapping[index], sh1);\n if (sh2) {\n splats.setSh2(mapping[index], sh2);\n }\n if (sh3) {\n splats.setSh3(mapping[index], sh3);\n }\n }\n }\n );\n break;\n }\n case SplatFileType.SPLAT:\n decodeAntiSplat(\n input2.fileBytes,\n (numSplats) => {\n },\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n const center = transformPos2(new Vector3(x2, y, z));\n if (withinClip(center) && withinOpacity(opacity)) {\n const index2 = splats.pushSplat();\n splats.setCenter(index2, center.x, center.y, center.z);\n const scales = transformScales(\n new Vector3(scaleX, scaleY, scaleZ)\n );\n splats.setScale(index2, scales.x, scales.y, scales.z);\n const quaternion2 = transformQuaternion(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n splats.setQuaternion(\n index2,\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n splats.setOpacity(index2, opacity);\n splats.setColor(index2, r, g, b);\n }\n }\n );\n break;\n case SplatFileType.KSPLAT: {\n let lastIndex = null;\n decodeKsplat(\n input2.fileBytes,\n (numSplats) => {\n },\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n const center = transformPos2(new Vector3(x2, y, z));\n if (withinClip(center) && withinOpacity(opacity)) {\n lastIndex = splats.pushSplat();\n splats.setCenter(lastIndex, center.x, center.y, center.z);\n const scales = transformScales(\n new Vector3(scaleX, scaleY, scaleZ)\n );\n splats.setScale(lastIndex, scales.x, scales.y, scales.z);\n const quaternion2 = transformQuaternion(\n new Quaternion(quatX, quatY, quatZ, quatW)\n );\n splats.setQuaternion(\n lastIndex,\n quaternion2.x,\n quaternion2.y,\n quaternion2.z,\n quaternion2.w\n );\n splats.setOpacity(lastIndex, opacity);\n splats.setColor(lastIndex, r, g, b);\n } else {\n lastIndex = null;\n }\n },\n (index, sh1, sh2, sh3) => {\n if (lastIndex !== null) {\n splats.setSh1(lastIndex, sh1);\n if (sh2) {\n splats.setSh2(lastIndex, sh2);\n }\n if (sh3) {\n splats.setSh3(lastIndex, sh3);\n }\n }\n }\n );\n break;\n }\n default:\n throw new Error(`transcodeSpz not implemented for ${fileType}`);\n }\n }\n const shDegree = Math.min(\n maxSh ?? 3,\n splats.sh3 ? 3 : splats.sh2 ? 2 : splats.sh1 ? 1 : 0\n );\n const spz = new SpzWriter({\n numSplats: splats.numSplats,\n shDegree,\n fractionalBits,\n flagAntiAlias: true\n });\n for (let i2 = 0; i2 < splats.numSplats; ++i2) {\n const i3 = i2 * 3;\n const i4 = i2 * 4;\n spz.setCenter(\n i2,\n splats.centers[i3],\n splats.centers[i3 + 1],\n splats.centers[i3 + 2]\n );\n spz.setScale(\n i2,\n splats.scales[i3],\n splats.scales[i3 + 1],\n splats.scales[i3 + 2]\n );\n spz.setQuat(\n i2,\n splats.quaternions[i4],\n splats.quaternions[i4 + 1],\n splats.quaternions[i4 + 2],\n splats.quaternions[i4 + 3]\n );\n spz.setAlpha(i2, splats.opacities[i2]);\n spz.setRgb(\n i2,\n splats.colors[i3],\n splats.colors[i3 + 1],\n splats.colors[i3 + 2]\n );\n if (splats.sh1 && shDegree >= 1) {\n spz.setSh(\n i2,\n splats.sh1.slice(i2 * 9, (i2 + 1) * 9),\n shDegree >= 2 && splats.sh2 ? splats.sh2.slice(i2 * 15, (i2 + 1) * 15) : void 0,\n shDegree >= 3 && splats.sh3 ? splats.sh3.slice(i2 * 21, (i2 + 1) * 21) : void 0\n );\n }\n }\n const spzBytes = await spz.finalize();\n return { fileBytes: spzBytes, clippedCount: spz.clippedCount };\n }\n async function onMessage(event) {\n const { name, args, id } = event.data;\n let result = void 0;\n let error = void 0;\n try {\n switch (name) {\n case "unpackPly": {\n const { packedArray, fileBytes } = args;\n const decoded = await unpackPly({ packedArray, fileBytes });\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedArray,\n extra: decoded.extra\n };\n break;\n }\n case "decodeSpz": {\n const { fileBytes } = args;\n const decoded = unpackSpz(fileBytes);\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedArray,\n extra: decoded.extra\n };\n break;\n }\n case "decodeAntiSplat": {\n const { fileBytes } = args;\n const decoded = unpackAntiSplat(fileBytes);\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedArray\n };\n break;\n }\n case "decodeKsplat": {\n const { fileBytes } = args;\n const decoded = unpackKsplat(fileBytes);\n result = {\n id,\n numSplats: decoded.numSplats,\n packedArray: decoded.packedArray,\n extra: decoded.extra\n };\n break;\n }\n case "sortSplats": {\n const { maxSplats, totalSplats, readback, ordering } = args;\n result = {\n id,\n readback,\n ...sortSplats({ totalSplats, readback, ordering })\n };\n break;\n }\n case "sortDoubleSplats": {\n const { numSplats, readback, ordering } = args;\n result = {\n id,\n readback,\n ordering\n };\n if (WASM_SPLAT_SORT) {\n result = {\n id,\n readback,\n ordering,\n activeSplats: sort_splats(numSplats, readback, ordering)\n };\n }\n break;\n }\n case "transcodeSpz": {\n const input = args;\n const spzBytes = await transcodeSpz(input);\n result = {\n id,\n fileBytes: spzBytes,\n input\n };\n break;\n }\n default: {\n throw new Error(`Unknown name: ${name}`);\n }\n }\n } catch (e) {\n error = e;\n }\n self.postMessage(\n { id, result, error },\n { transfer: getArrayBuffers(result) }\n );\n }\n async function unpackPly({\n packedArray,\n fileBytes\n }) {\n const ply = new PlyReader({ fileBytes });\n await ply.parseHeader();\n const numSplats = ply.numSplats;\n const extra = {};\n const ZERO_CUTOFF = Math.exp(-20);\n ply.parseSplats(\n (index, x2, y, z, scaleX, scaleY, scaleZ, quatX, quatY, quatZ, quatW, opacity, r, g, b) => {\n setPackedSplat(\n packedArray,\n index,\n x2,\n y,\n z,\n scaleX < ZERO_CUTOFF ? 0 : Math.max(SCALE_MIN, scaleX),\n scaleY < ZERO_CUTOFF ? 0 : Math.max(SCALE_MIN, scaleY),\n scaleZ < ZERO_CUTOFF ? 0 : Math.max(SCALE_MIN, scaleZ),\n quatX,\n quatY,\n quatZ,\n quatW,\n opacity,\n r,\n g,\n b\n );\n },\n (index, sh1, sh2, sh3) => {\n if (sh1) {\n if (!extra.sh1) {\n extra.sh1 = new Uint32Array(numSplats * 2);\n }\n encodeSh1Rgb(extra.sh1, index, sh1);\n }\n if (sh2) {\n if (!extra.sh2) {\n extra.sh2 = new Uint32Array(numSplats * 4);\n }\n encodeSh2Rgb(extra.sh2, index, sh2);\n }\n if (sh3) {\n if (!extra.sh3) {\n extra.sh3 = new Uint32Array(numSplats * 4);\n }\n encodeSh3Rgb(extra.sh3, index, sh3);\n }\n }\n );\n return { packedArray, numSplats, extra };\n }\n function unpackSpz(fileBytes) {\n const spz = new SpzReader({ fileBytes });\n const numSplats = spz.numSplats;\n const maxSplats = computeMaxSplats(numSplats);\n const packedArray = new Uint32Array(maxSplats * 4);\n const extra = {};\n spz.parseSplats(\n (index, x2, y, z) => {\n setPackedSplatCenter(packedArray, index, x2, y, z);\n },\n (index, alpha) => {\n setPackedSplatOpacity(packedArray, index, alpha);\n },\n (index, r, g, b) => {\n setPackedSplatRgb(packedArray, index, r, g, b);\n },\n (index, scaleX, scaleY, scaleZ) => {\n setPackedSplatScales(packedArray, index, scaleX, scaleY, scaleZ);\n },\n (index, quatX, quatY, quatZ, quatW) => {\n setPackedSplatQuat(packedArray, index, quatX, quatY, quatZ, quatW);\n },\n (index, sh1, sh2, sh3) => {\n if (sh1) {\n if (!extra.sh1) {\n extra.sh1 = new Uint32Array(numSplats * 2);\n }\n encodeSh1Rgb(extra.sh1, index, sh1);\n }\n if (sh2) {\n if (!extra.sh2) {\n extra.sh2 = new Uint32Array(numSplats * 4);\n }\n encodeSh2Rgb(extra.sh2, index, sh2);\n }\n if (sh3) {\n if (!extra.sh3) {\n extra.sh3 = new Uint32Array(numSplats * 4);\n }\n encodeSh3Rgb(extra.sh3, index, sh3);\n }\n }\n );\n return { packedArray, numSplats, extra };\n }\n const DEPTH_INFINITY = 31744;\n const DEPTH_SIZE = DEPTH_INFINITY + 1;\n let depthArray = null;\n function sortSplats({\n totalSplats,\n readback,\n ordering\n }) {\n if (!depthArray) {\n depthArray = new Uint32Array(DEPTH_SIZE);\n }\n depthArray.fill(0);\n const readbackUint32 = readback.map((layer) => new Uint32Array(layer.buffer));\n const layerSize = readbackUint32[0].length;\n const numLayers = Math.ceil(totalSplats / layerSize);\n let layerBase = 0;\n for (let layer = 0; layer < numLayers; ++layer) {\n const readbackLayer = readbackUint32[layer];\n const layerSplats = Math.min(readbackLayer.length, totalSplats - layerBase);\n for (let i2 = 0; i2 < layerSplats; ++i2) {\n const pri = readbackLayer[i2] & 32767;\n if (pri < DEPTH_INFINITY) {\n depthArray[pri] += 1;\n }\n }\n layerBase += layerSplats;\n }\n let activeSplats = 0;\n for (let j = 0; j < DEPTH_SIZE; ++j) {\n const nextIndex = activeSplats + depthArray[j];\n depthArray[j] = activeSplats;\n activeSplats = nextIndex;\n }\n layerBase = 0;\n for (let layer = 0; layer < numLayers; ++layer) {\n const readbackLayer = readbackUint32[layer];\n const layerSplats = Math.min(readbackLayer.length, totalSplats - layerBase);\n for (let i2 = 0; i2 < layerSplats; ++i2) {\n const pri = readbackLayer[i2] & 32767;\n if (pri < DEPTH_INFINITY) {\n ordering[depthArray[pri]] = layerBase + i2;\n depthArray[pri] += 1;\n }\n }\n layerBase += layerSplats;\n }\n if (depthArray[DEPTH_SIZE - 1] !== activeSplats) {\n throw new Error(\n `Expected ${activeSplats} active splats but got ${depthArray[DEPTH_SIZE - 1]}`\n );\n }\n return { activeSplats, ordering };\n }\n function sortDoubleSplats({\n numSplats,\n readback,\n ordering\n }) {\n if (!depthArray) {\n depthArray = new Uint32Array(DEPTH_SIZE);\n }\n depthArray.fill(0);\n for (let i2 = 0; i2 < numSplats; ++i2) {\n const pri = readback[i2];\n if (pri < DEPTH_INFINITY) {\n depthArray[pri] += 1;\n }\n }\n let activeSplats = 0;\n for (let j = DEPTH_INFINITY - 1; j >= 0; --j) {\n const nextIndex = activeSplats + depthArray[j];\n depthArray[j] = activeSplats;\n activeSplats = nextIndex;\n }\n for (let i2 = 0; i2 < numSplats; ++i2) {\n const pri = readback[i2];\n if (pri < DEPTH_INFINITY) {\n ordering[depthArray[pri]] = i2;\n depthArray[pri] += 1;\n }\n }\n if (depthArray[0] !== activeSplats) {\n throw new Error(\n `Expected ${activeSplats} active splats but got ${depthArray[0]}`\n );\n }\n return { activeSplats, ordering };\n }\n const messageBuffer = [];\n function bufferMessage(event) {\n messageBuffer.push(event);\n }\n async function initialize() {\n self.addEventListener("message", bufferMessage);\n await __wbg_init();\n self.removeEventListener("message", bufferMessage);\n self.addEventListener("message", onMessage);\n for (const event of messageBuffer) {\n onMessage(event);\n }\n messageBuffer.length = 0;\n }\n initialize().catch(console.error);\n})();\n'; const blob = typeof self !== "undefined" && self.Blob && new Blob([jsContent], { type: "text/javascript;charset=utf-8" }); function WorkerWrapper(options) { let objURL; @@ -8436,7 +8249,6 @@ class SplatLoader extends Loader { } var SplatFileType = /* @__PURE__ */ ((SplatFileType2) => { SplatFileType2["PLY"] = "ply"; - SplatFileType2["WLG0"] = "wlg0"; SplatFileType2["SPZ"] = "spz"; SplatFileType2["SPLAT"] = "splat"; SplatFileType2["KSPLAT"] = "ksplat"; @@ -8447,9 +8259,6 @@ function getSplatFileType(fileBytes) { if ((view.getUint32(0, true) & 16777215) === 7957616) { return "ply"; } - if (view.getUint32(0, true) === 809978967) { - return "wlg0"; - } if ((view.getUint32(0, true) & 16777215) === 559903) { const header = decompressPartialGzip(fileBytes, 4); const gView = new DataView(header.buffer); @@ -8478,9 +8287,6 @@ function getSplatFileTypeFromPath(pathOrUrl) { if (extension === "ply") { return "ply"; } - if (extension === "wlg") { - return "wlg0"; - } if (extension === "spz") { return "spz"; } @@ -8506,13 +8312,6 @@ async function unpackSplats({ } } switch (splatFileType) { - case "wlg0": - return await withWorker(async (worker) => { - const { packedArray, numSplats } = await worker.call("decodeWlg", { - fileBytes - }); - return { packedArray, numSplats }; - }); case "ply": { const ply = new PlyReader({ fileBytes }); await ply.parseHeader(); @@ -10811,38 +10610,6 @@ async function transcodeSpz(input) { } } switch (fileType) { - case SplatFileType.WLG0: { - await __wbg_init(); - const decoded = decode_wlg( - input2.fileBytes, - SPLAT_TEX_WIDTH, - SPLAT_TEX_HEIGHT - ); - for (let i = 0; i < decoded.numSplats; ++i) { - let { center, scales, quaternion: quaternion2, opacity, color } = unpackSplat( - decoded.packedSplats, - i - ); - center = transformPos2(center); - if (withinClip(center) && withinOpacity(opacity)) { - const index = splats.pushSplat(); - splats.setCenter(index, center.x, center.y, center.z); - scales = transformScales(scales); - splats.setScale(index, scales.x, scales.y, scales.z); - quaternion2 = transformQuaternion(quaternion2); - splats.setQuaternion( - index, - quaternion2.x, - quaternion2.y, - quaternion2.z, - quaternion2.w - ); - splats.setOpacity(index, opacity); - splats.setColor(index, color.r, color.g, color.b); - } - } - break; - } case SplatFileType.PLY: { const ply = new PlyReader({ fileBytes: input2.fileBytes }); await ply.parseHeader(); diff --git a/dist/forge.module.min.js b/dist/forge.module.min.js index f53487c..fa01a82 100644 --- a/dist/forge.module.min.js +++ b/dist/forge.module.min.js @@ -1,255 +1,133 @@ -import * as a from "three"; -import { Loader as bt, FileLoader as Ht, Quaternion as OI, Vector3 as SA, Color as PI, Matrix4 as uI } from "three"; -let hA; -function Kt(g) { - const A = hA.__externref_table_alloc(); - return hA.__wbindgen_export_2.set(A, g), A; -} -function Zt(g, A) { - try { - return g.apply(this, A); - } catch (I) { - const B = Kt(I); - hA.__wbindgen_exn_store(B); - } -} -function kI(g) { - const A = typeof g; - if (A == "number" || A == "boolean" || g == null) - return `${g}`; - if (A == "string") - return `"${g}"`; - if (A == "symbol") { - const Q = g.description; - return Q == null ? "Symbol" : `Symbol(${Q})`; - } - if (A == "function") { - const Q = g.name; - return typeof Q == "string" && Q.length > 0 ? `Function(${Q})` : "Function"; - } - if (Array.isArray(g)) { - const Q = g.length; - let C = "["; - Q > 0 && (C += kI(g[0])); - for (let E = 1; E < Q; E++) - C += ", " + kI(g[E]); - return C += "]", C; - } - const I = /\[object ([^\]]+)\]/.exec(toString.call(g)); - let B; - if (I && I.length > 1) - B = I[1]; - else - return toString.call(g); - if (B == "Object") - try { - return "Object(" + JSON.stringify(g) + ")"; - } catch { - return "Object"; - } - return g instanceof Error ? `${g.name}: ${g.message} -${g.stack}` : B; -} -let FI = 0, Mg = null; -function Tg() { - return (Mg === null || Mg.byteLength === 0) && (Mg = new Uint8Array(hA.memory.buffer)), Mg; -} -const Xg = typeof TextEncoder < "u" ? new TextEncoder("utf-8") : { encode: () => { - throw Error("TextEncoder not available"); -} }, qt = typeof Xg.encodeInto == "function" ? function(g, A) { - return Xg.encodeInto(g, A); -} : function(g, A) { - const I = Xg.encode(g); - return A.set(I), { - read: g.length, - written: I.length - }; -}; -function vt(g, A, I) { - if (I === void 0) { - const t = Xg.encode(g), i = A(t.length, 1) >>> 0; - return Tg().subarray(i, i + t.length).set(t), FI = t.length, i; - } - let B = g.length, Q = A(B, 1) >>> 0; - const C = Tg(); - let E = 0; - for (; E < B; E++) { - const t = g.charCodeAt(E); - if (t > 127) break; - C[Q + E] = t; - } - if (E !== B) { - E !== 0 && (g = g.slice(E)), Q = I(Q, B, B = E + g.length * 3, 1) >>> 0; - const t = Tg().subarray(Q + E, Q + B), i = qt(g, t); - E += i.written, Q = I(Q, B, E, 1) >>> 0; - } - return FI = E, Q; -} -let gg = null; -function _I() { - return (gg === null || gg.buffer.detached === !0 || gg.buffer.detached === void 0 && gg.buffer !== hA.memory.buffer) && (gg = new DataView(hA.memory.buffer)), gg; -} -const sB = typeof TextDecoder < "u" ? new TextDecoder("utf-8", { ignoreBOM: !0, fatal: !0 }) : { decode: () => { +import * as B from "three"; +import { Loader as Ur, FileLoader as Rr, Quaternion as ze, Vector3 as UA, Color as _e, Matrix4 as le } from "three"; +let zA; +const ts = typeof TextDecoder < "u" ? new TextDecoder("utf-8", { ignoreBOM: !0, fatal: !0 }) : { decode: () => { throw Error("TextDecoder not available"); } }; -typeof TextDecoder < "u" && sB.decode(); -function $I(g, A) { - return g = g >>> 0, sB.decode(Tg().subarray(g, g + A)); +typeof TextDecoder < "u" && ts.decode(); +let yt = null; +function Gr() { + return (yt === null || yt.byteLength === 0) && (yt = new Uint8Array(zA.memory.buffer)), yt; } -function Wt(g, A, I) { - return hA.decode_wlg(g, A, I); +function br(t, A) { + return t = t >>> 0, ts.decode(Gr().subarray(t, t + A)); } -function Vt(g, A, I, B, Q, C, E, t, i, e, n) { - return hA.raycast_splats(g, A, I, B, Q, C, E, t, i, e, n); +function vr(t, A, e, s, i, n, a, r, g, I, Q) { + return zA.raycast_splats(t, A, e, s, i, n, a, r, g, I, Q); } -async function Tt(g, A) { - if (typeof Response == "function" && g instanceof Response) { +async function Lr(t, A) { + if (typeof Response == "function" && t instanceof Response) { if (typeof WebAssembly.instantiateStreaming == "function") try { - return await WebAssembly.instantiateStreaming(g, A); - } catch (B) { - if (g.headers.get("Content-Type") != "application/wasm") - console.warn("`WebAssembly.instantiateStreaming` failed because your server does not serve Wasm with `application/wasm` MIME type. Falling back to `WebAssembly.instantiate` which is slower. Original error:\n", B); + return await WebAssembly.instantiateStreaming(t, A); + } catch (s) { + if (t.headers.get("Content-Type") != "application/wasm") + console.warn("`WebAssembly.instantiateStreaming` failed because your server does not serve Wasm with `application/wasm` MIME type. Falling back to `WebAssembly.instantiate` which is slower. Original error:\n", s); else - throw B; + throw s; } - const I = await g.arrayBuffer(); - return await WebAssembly.instantiate(I, A); + const e = await t.arrayBuffer(); + return await WebAssembly.instantiate(e, A); } else { - const I = await WebAssembly.instantiate(g, A); - return I instanceof WebAssembly.Instance ? { instance: I, module: g } : I; + const e = await WebAssembly.instantiate(t, A); + return e instanceof WebAssembly.Instance ? { instance: e, module: t } : e; } } -function Xt() { - const g = {}; - return g.wbg = {}, g.wbg.__wbg_buffer_09165b52af8c5237 = function(A) { +function Jr() { + const t = {}; + return t.wbg = {}, t.wbg.__wbg_buffer_609cc3eee51ed158 = function(A) { return A.buffer; - }, g.wbg.__wbg_buffer_609cc3eee51ed158 = function(A) { - return A.buffer; - }, g.wbg.__wbg_get_b9b93047fe3cf45b = function(A, I) { - return A[I >>> 0]; - }, g.wbg.__wbg_instanceof_Uint8Array_17156bcf118086a9 = function(A) { - let I; - try { - I = A instanceof Uint8Array; - } catch { - I = !1; - } - return I; - }, g.wbg.__wbg_length_3b4f022188ae8db6 = function(A) { + }, t.wbg.__wbg_length_3b4f022188ae8db6 = function(A) { return A.length; - }, g.wbg.__wbg_length_6ca527665d89694d = function(A) { + }, t.wbg.__wbg_length_6ca527665d89694d = function(A) { return A.length; - }, g.wbg.__wbg_length_8cfd2c6409af88ad = function(A) { + }, t.wbg.__wbg_length_8cfd2c6409af88ad = function(A) { return A.length; - }, g.wbg.__wbg_length_a446193dc22c12f8 = function(A) { - return A.length; - }, g.wbg.__wbg_length_e2d2a49132c1b256 = function(A) { - return A.length; - }, g.wbg.__wbg_new_405e22f390576ce2 = function() { - return new Object(); - }, g.wbg.__wbg_new_9fee97a409b32b68 = function(A) { + }, t.wbg.__wbg_new_9fee97a409b32b68 = function(A) { return new Uint16Array(A); - }, g.wbg.__wbg_new_a12002a7f91c75be = function(A) { - return new Uint8Array(A); - }, g.wbg.__wbg_new_e3b321dcfef89fc7 = function(A) { + }, t.wbg.__wbg_new_e3b321dcfef89fc7 = function(A) { return new Uint32Array(A); - }, g.wbg.__wbg_newwithbyteoffsetandlength_e6b7e69acd4c7354 = function(A, I, B) { - return new Float32Array(A, I >>> 0, B >>> 0); - }, g.wbg.__wbg_newwithbyteoffsetandlength_f1dead44d1fc7212 = function(A, I, B) { - return new Uint32Array(A, I >>> 0, B >>> 0); - }, g.wbg.__wbg_newwithlength_5a5efe313cfd59f1 = function(A) { + }, t.wbg.__wbg_newwithbyteoffsetandlength_e6b7e69acd4c7354 = function(A, e, s) { + return new Float32Array(A, e >>> 0, s >>> 0); + }, t.wbg.__wbg_newwithbyteoffsetandlength_f1dead44d1fc7212 = function(A, e, s) { + return new Uint32Array(A, e >>> 0, s >>> 0); + }, t.wbg.__wbg_newwithlength_5a5efe313cfd59f1 = function(A) { return new Float32Array(A >>> 0); - }, g.wbg.__wbg_newwithlength_bd3de93688d68fbc = function(A) { - return new Uint32Array(A >>> 0); - }, g.wbg.__wbg_set_10bad9bee0e9c58b = function(A, I, B) { - A.set(I, B >>> 0); - }, g.wbg.__wbg_set_65595bdd868b3009 = function(A, I, B) { - A.set(I, B >>> 0); - }, g.wbg.__wbg_set_bb8cecf6a62b9f46 = function() { - return Zt(function(A, I, B) { - return Reflect.set(A, I, B); - }, arguments); - }, g.wbg.__wbg_set_d23661d19148b229 = function(A, I, B) { - A.set(I, B >>> 0); - }, g.wbg.__wbg_set_f4f1f0daa30696fc = function(A, I, B) { - A.set(I, B >>> 0); - }, g.wbg.__wbg_subarray_3aaeec89bb2544f0 = function(A, I, B) { - return A.subarray(I >>> 0, B >>> 0); - }, g.wbg.__wbg_subarray_769e1e0f81bb259b = function(A, I, B) { - return A.subarray(I >>> 0, B >>> 0); - }, g.wbg.__wbindgen_debug_string = function(A, I) { - const B = kI(I), Q = vt(B, hA.__wbindgen_malloc, hA.__wbindgen_realloc), C = FI; - _I().setInt32(A + 4 * 1, C, !0), _I().setInt32(A + 4 * 0, Q, !0); - }, g.wbg.__wbindgen_init_externref_table = function() { - const A = hA.__wbindgen_export_2, I = A.grow(4); - A.set(0, void 0), A.set(I + 0, void 0), A.set(I + 1, null), A.set(I + 2, !0), A.set(I + 3, !1); - }, g.wbg.__wbindgen_memory = function() { - return hA.memory; - }, g.wbg.__wbindgen_number_new = function(A) { - return A; - }, g.wbg.__wbindgen_string_new = function(A, I) { - return $I(A, I); - }, g.wbg.__wbindgen_throw = function(A, I) { - throw new Error($I(A, I)); - }, g; + }, t.wbg.__wbg_set_10bad9bee0e9c58b = function(A, e, s) { + A.set(e, s >>> 0); + }, t.wbg.__wbg_set_d23661d19148b229 = function(A, e, s) { + A.set(e, s >>> 0); + }, t.wbg.__wbg_set_f4f1f0daa30696fc = function(A, e, s) { + A.set(e, s >>> 0); + }, t.wbg.__wbg_subarray_3aaeec89bb2544f0 = function(A, e, s) { + return A.subarray(e >>> 0, s >>> 0); + }, t.wbg.__wbg_subarray_769e1e0f81bb259b = function(A, e, s) { + return A.subarray(e >>> 0, s >>> 0); + }, t.wbg.__wbindgen_init_externref_table = function() { + const A = zA.__wbindgen_export_0, e = A.grow(4); + A.set(0, void 0), A.set(e + 0, void 0), A.set(e + 1, null), A.set(e + 2, !0), A.set(e + 3, !1); + }, t.wbg.__wbindgen_memory = function() { + return zA.memory; + }, t.wbg.__wbindgen_throw = function(A, e) { + throw new Error(br(A, e)); + }, t; } -function zt(g, A) { - return hA = g.exports, KI.__wbindgen_wasm_module = A, gg = null, Mg = null, hA.__wbindgen_start(), hA; +function Yr(t, A) { + return zA = t.exports, es.__wbindgen_wasm_module = A, yt = null, zA.__wbindgen_start(), zA; } -async function KI(g) { - if (hA !== void 0) return hA; - typeof g < "u" && (Object.getPrototypeOf(g) === Object.prototype ? { module_or_path: g } = g : console.warn("using deprecated parameters for the initialization function; pass a single object instead")), typeof g > "u" && (g = new 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", import.meta.url)); - const A = Xt(); - (typeof g == "string" || typeof Request == "function" && g instanceof Request || typeof URL == "function" && g instanceof URL) && (g = fetch(g)); - const { instance: I, module: B } = await Tt(await g, A); - return zt(I, B); +async function es(t) { + if (zA !== void 0) return zA; + typeof t < "u" && (Object.getPrototypeOf(t) === Object.prototype ? { module_or_path: t } = t : console.warn("using deprecated parameters for the initialization function; pass a single object instead")), typeof t > "u" && (t = new 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EBAEHrzMAACwEBAEHPzcAACwU/AAAAvwBB7M3AAAsBNgBwCXByb2R1Y2VycwIIbGFuZ3VhZ2UBBFJ1c3QADHByb2Nlc3NlZC1ieQMFcnVzdGMdMS44Mi4wIChmNmU1MTFlZWMgMjAyNC0xMC0xNSkGd2FscnVzBjAuMjMuMwx3YXNtLWJpbmRnZW4HMC4yLjEwMABJD3RhcmdldF9mZWF0dXJlcwQrD211dGFibGUtZ2xvYmFscysIc2lnbi1leHQrD3JlZmVyZW5jZS10eXBlcysKbXVsdGl2YWx1ZQ==", import.meta.url)); + const A = Jr(); + (typeof t == "string" || typeof Request == "function" && t instanceof Request || typeof URL == "function" && t instanceof URL) && (t = fetch(t)); + const { instance: e, module: s } = await Lr(await t, A); + return Yr(e, s); } -const HA = -9, jt = 9, TA = (jt - HA) / 254, Ot = 11, Pt = 11, X = 1 << Ot, WA = 1 << Pt, eB = 1; -function ig(g) { - return g === "bool" || g === "bvec2" || g === "bvec3" || g === "bvec4"; +const JA = -9, Tr = 9, _A = (Tr - JA) / 254, Hr = 11, Kr = 11, O = 1 << Hr, XA = 1 << Kr, ss = 1; +function rt(t) { + return t === "bool" || t === "bvec2" || t === "bvec3" || t === "bvec4"; } -function sg(g) { - return g === "int" || g === "uint" || g === "float"; +function gt(t) { + return t === "int" || t === "uint" || t === "float"; } -function wA(g) { - return g === "int" || g === "ivec2" || g === "ivec3" || g === "ivec4"; +function hA(t) { + return t === "int" || t === "ivec2" || t === "ivec3" || t === "ivec4"; } -function DA(g) { - return g === "uint" || g === "uvec2" || g === "uvec3" || g === "uvec4"; +function lA(t) { + return t === "uint" || t === "uvec2" || t === "uvec3" || t === "uvec4"; } -function Yg(g) { - return g === "float" || g === "vec2" || g === "vec3" || g === "vec4"; +function Rt(t) { + return t === "float" || t === "vec2" || t === "vec3" || t === "vec4"; } -function aB(g) { - return g === "mat2" || g === "mat2x2" || g === "mat2x3" || g === "mat2x4" || g === "mat3" || g === "mat3x2" || g === "mat3x3" || g === "mat3x4" || g === "mat4" || g === "mat4x2" || g === "mat4x3" || g === "mat4x4"; +function is(t) { + return t === "mat2" || t === "mat2x2" || t === "mat2x3" || t === "mat2x4" || t === "mat3" || t === "mat3x2" || t === "mat3x3" || t === "mat3x4" || t === "mat4" || t === "mat4x2" || t === "mat4x3" || t === "mat4x4"; } -function $A(g) { - return Yg(g) || aB(g); +function jA(t) { + return Rt(t) || is(t); } -function ug(g) { - return g === "vec2" || g === "ivec2" || g === "uvec2"; +function ut(t) { + return t === "vec2" || t === "ivec2" || t === "uvec2"; } -function dg(g) { - return g === "vec3" || g === "ivec3" || g === "uvec3"; +function dt(t) { + return t === "vec3" || t === "ivec3" || t === "uvec3"; } -function Ug(g) { - return g === "vec4" || g === "ivec4" || g === "uvec4"; +function Gt(t) { + return t === "vec4" || t === "ivec4" || t === "uvec4"; } -function _t(g) { - return ug(g) || dg(g) || Ug(g); +function qr(t) { + return ut(t) || dt(t) || Gt(t); } -function Ig(g) { - return g === "mat2" || g === "mat2x2"; +function tt(t) { + return t === "mat2" || t === "mat2x2"; } -function Bg(g) { - return g === "mat3" || g === "mat3x3"; +function et(t) { + return t === "mat3" || t === "mat3x3"; } -function Qg(g) { - return g === "mat4" || g === "mat4x4"; +function st(t) { + return t === "mat4" || t === "mat4x4"; } -function nB(g) { - switch (g) { +function ns(t) { + switch (t) { case "vec2": return "float"; case "vec3": @@ -269,11 +147,11 @@ function nB(g) { case "uvec4": return "uint"; default: - throw new Error(`Invalid vector type: ${g}`); + throw new Error(`Invalid vector type: ${t}`); } } -function oB(g) { - switch (g) { +function as(t) { + switch (t) { case "vec2": case "ivec2": case "uvec2": @@ -287,279 +165,279 @@ function oB(g) { case "uvec4": return 4; default: - throw new Error(`Invalid vector type: ${g}`); + throw new Error(`Invalid vector type: ${t}`); } } -function $t(g) { - if (sg(g)) +function zr(t) { + if (gt(t)) return "float"; - if (ug(g)) + if (ut(t)) return "vec2"; - if (dg(g)) + if (dt(t)) return "vec3"; - if (Ug(g)) + if (Gt(t)) return "vec4"; - throw new Error(`Invalid vector type: ${g}`); + throw new Error(`Invalid vector type: ${t}`); } -function rB(g) { - if (sg(g)) +function rs(t) { + if (gt(t)) return "uint"; - if (ug(g)) + if (ut(t)) return "uvec2"; - if (dg(g)) + if (dt(t)) return "uvec3"; - if (Ug(g)) + if (Gt(t)) return "uvec4"; - throw new Error(`Invalid vector type: ${g}`); + throw new Error(`Invalid vector type: ${t}`); } -function Ai(g) { - if (sg(g)) +function _r(t) { + if (gt(t)) return "int"; - if (ug(g)) + if (ut(t)) return "ivec2"; - if (dg(g)) + if (dt(t)) return "ivec3"; - if (Ug(g)) + if (Gt(t)) return "ivec4"; - throw new Error(`Invalid vector type: ${g}`); + throw new Error(`Invalid vector type: ${t}`); } -function cB(g) { - if (typeof g == "string") - return g; - if (typeof g == "object" && g.type) - return g.type; - throw new Error(`Invalid DynoType: ${String(g)}`); +function gs(t) { + if (typeof t == "string") + return t; + if (typeof t == "object" && t.type) + return t.type; + throw new Error(`Invalid DynoType: ${String(t)}`); } -function CA(g) { - return Math.trunc(g).toString(); +function nA(t) { + return Math.trunc(t).toString(); } -function EA(g) { - return `${Math.max(0, Math.trunc(g)).toString()}u`; +function aA(t) { + return `${Math.max(0, Math.trunc(t)).toString()}u`; } -function q(g) { - return g === Number.POSITIVE_INFINITY ? "INFINITY" : g === Number.NEGATIVE_INFINITY ? "-INFINITY" : Number.isInteger(g) ? g.toFixed(1) : g.toString(); +function K(t) { + return t === Number.POSITIVE_INFINITY ? "INFINITY" : t === Number.NEGATIVE_INFINITY ? "-INFINITY" : Number.isInteger(t) ? t.toFixed(1) : t.toString(); } -function v(g) { - return g instanceof _A ? g.type : g.dynoOut().type; +function q(t) { + return t instanceof $A ? t.type : t.dynoOut().type; } -class _A { +class $A { constructor(A) { this.__isDynoValue = !0, this.type = A; } } -class W extends _A { - constructor(A, I) { - super(A.outTypes[I]), this.dyno = A, this.key = I; +class z extends $A { + constructor(A, e) { + super(A.outTypes[e]), this.dyno = A, this.key = e; } } -class Dg extends _A { - constructor(A, I) { - super(A), this.literal = I; +class ct extends $A { + constructor(A, e) { + super(A), this.literal = e; } getLiteral() { return this.literal; } } -function _g(g, A) { - return new Dg(g, A); +function Ot(t, A) { + return new ct(t, A); } -class hB extends Dg { - constructor(A, I) { - super(A, ""), this.value = I; +class os extends ct { + constructor(A, e) { + super(A, ""), this.value = e; } getLiteral() { - const { type: A, value: I } = this; + const { type: A, value: e } = this; switch (A) { case "bool": - return I ? "true" : "false"; + return e ? "true" : "false"; case "uint": - return EA(I); + return aA(e); case "int": - return CA(I); + return nA(e); case "float": - return q(I); + return K(e); case "bvec2": { - const B = I; - return `bvec2(${B[0]}, ${B[1]})`; + const s = e; + return `bvec2(${s[0]}, ${s[1]})`; } case "uvec2": { - if (I instanceof a.Vector2) - return `uvec2(${EA(I.x)}, ${EA(I.y)})`; - const B = I; - return `uvec2(${EA(B[0])}, ${EA(B[1])})`; + if (e instanceof B.Vector2) + return `uvec2(${aA(e.x)}, ${aA(e.y)})`; + const s = e; + return `uvec2(${aA(s[0])}, ${aA(s[1])})`; } case "ivec2": { - if (I instanceof a.Vector2) - return `ivec2(${CA(I.x)}, ${CA(I.y)})`; - const B = I; - return `ivec2(${CA(B[0])}, ${CA(B[1])})`; + if (e instanceof B.Vector2) + return `ivec2(${nA(e.x)}, ${nA(e.y)})`; + const s = e; + return `ivec2(${nA(s[0])}, ${nA(s[1])})`; } case "vec2": { - if (I instanceof a.Vector2) - return `vec2(${q(I.x)}, ${q(I.y)})`; - const B = I; - return `vec2(${q(B[0])}, ${q(B[1])})`; + if (e instanceof B.Vector2) + return `vec2(${K(e.x)}, ${K(e.y)})`; + const s = e; + return `vec2(${K(s[0])}, ${K(s[1])})`; } case "bvec3": { - const B = I; - return `bvec3(${B[0]}, ${B[1]}, ${B[2]})`; + const s = e; + return `bvec3(${s[0]}, ${s[1]}, ${s[2]})`; } case "uvec3": { - if (I instanceof a.Vector3) - return `uvec3(${EA(I.x)}, ${EA(I.y)}, ${EA(I.z)})`; - const B = I; - return `uvec3(${EA(B[0])}, ${EA(B[1])}, ${EA(B[2])})`; + if (e instanceof B.Vector3) + return `uvec3(${aA(e.x)}, ${aA(e.y)}, ${aA(e.z)})`; + const s = e; + return `uvec3(${aA(s[0])}, ${aA(s[1])}, ${aA(s[2])})`; } case "ivec3": { - if (I instanceof a.Vector3) - return `ivec3(${CA(I.x)}, ${CA(I.y)}, ${CA(I.z)})`; - const B = I; - return `ivec3(${CA(B[0])}, ${CA(B[1])}, ${CA(B[2])})`; + if (e instanceof B.Vector3) + return `ivec3(${nA(e.x)}, ${nA(e.y)}, ${nA(e.z)})`; + const s = e; + return `ivec3(${nA(s[0])}, ${nA(s[1])}, ${nA(s[2])})`; } case "vec3": { - if (I instanceof a.Vector3) - return `vec3(${q(I.x)}, ${q(I.y)}, ${q(I.z)})`; - const B = I; - return `vec3(${q(B[0])}, ${q(B[1])}, ${q(B[2])})`; + if (e instanceof B.Vector3) + return `vec3(${K(e.x)}, ${K(e.y)}, ${K(e.z)})`; + const s = e; + return `vec3(${K(s[0])}, ${K(s[1])}, ${K(s[2])})`; } case "bvec4": { - const B = I; - return `bvec4(${B[0]}, ${B[1]}, ${B[2]}, ${B[3]})`; + const s = e; + return `bvec4(${s[0]}, ${s[1]}, ${s[2]}, ${s[3]})`; } case "uvec4": { - if (I instanceof a.Vector4) - return `uvec4(${EA(I.x)}, ${EA(I.y)}, ${EA(I.z)}, ${EA(I.w)})`; - const B = I; - return `uvec4(${EA(B[0])}, ${EA(B[1])}, ${EA(B[2])}, ${EA(B[3])})`; + if (e instanceof B.Vector4) + return `uvec4(${aA(e.x)}, ${aA(e.y)}, ${aA(e.z)}, ${aA(e.w)})`; + const s = e; + return `uvec4(${aA(s[0])}, ${aA(s[1])}, ${aA(s[2])}, ${aA(s[3])})`; } case "ivec4": { - if (I instanceof a.Vector4) - return `ivec4(${CA(I.x)}, ${CA(I.y)}, ${CA(I.z)}, ${CA(I.w)})`; - const B = I; - return `ivec4(${CA(B[0])}, ${CA(B[1])}, ${CA(B[2])}, ${CA(B[3])})`; + if (e instanceof B.Vector4) + return `ivec4(${nA(e.x)}, ${nA(e.y)}, ${nA(e.z)}, ${nA(e.w)})`; + const s = e; + return `ivec4(${nA(s[0])}, ${nA(s[1])}, ${nA(s[2])}, ${nA(s[3])})`; } case "vec4": { - if (I instanceof a.Vector4) - return `vec4(${q(I.x)}, ${q(I.y)}, ${q(I.z)}, ${q(I.w)})`; - if (I instanceof a.Quaternion) - return `vec4(${q(I.x)}, ${q(I.y)}, ${q(I.z)}, ${q(I.w)})`; - const B = I; - return `vec4(${q(B[0])}, ${q(B[1])}, ${q(B[2])}, ${q(B[3])})`; + if (e instanceof B.Vector4) + return `vec4(${K(e.x)}, ${K(e.y)}, ${K(e.z)}, ${K(e.w)})`; + if (e instanceof B.Quaternion) + return `vec4(${K(e.x)}, ${K(e.y)}, ${K(e.z)}, ${K(e.w)})`; + const s = e; + return `vec4(${K(s[0])}, ${K(s[1])}, ${K(s[2])}, ${K(s[3])})`; } case "mat2": case "mat2x2": { - const B = I, Q = B instanceof a.Matrix2 ? B.elements : I, C = new Array(4).fill(0).map((E, t) => q(Q[t])); - return `${A}(${C.join(", ")})`; + const s = e, i = s instanceof B.Matrix2 ? s.elements : e, n = new Array(4).fill(0).map((a, r) => K(i[r])); + return `${A}(${n.join(", ")})`; } case "mat2x3": { - const B = I, Q = new Array(6).fill(0).map((C, E) => q(B[E])); - return `${A}(${Q.join(", ")})`; + const s = e, i = new Array(6).fill(0).map((n, a) => K(s[a])); + return `${A}(${i.join(", ")})`; } case "mat2x4": { - const B = I, Q = new Array(8).fill(0).map((C, E) => q(B[E])); - return `${A}(${Q.join(", ")})`; + const s = e, i = new Array(8).fill(0).map((n, a) => K(s[a])); + return `${A}(${i.join(", ")})`; } case "mat3": case "mat3x3": { - const B = I, Q = B instanceof a.Matrix3 ? B.elements : I, C = new Array(9).fill(0).map((E, t) => q(Q[t])); - return `${A}(${C.join(", ")})`; + const s = e, i = s instanceof B.Matrix3 ? s.elements : e, n = new Array(9).fill(0).map((a, r) => K(i[r])); + return `${A}(${n.join(", ")})`; } case "mat3x2": { - const B = I, Q = new Array(6).fill(0).map((C, E) => q(B[E])); - return `${A}(${Q.join(", ")})`; + const s = e, i = new Array(6).fill(0).map((n, a) => K(s[a])); + return `${A}(${i.join(", ")})`; } case "mat3x4": { - const B = I, Q = new Array(12).fill(0).map((C, E) => q(B[E])); - return `${A}(${Q.join(", ")})`; + const s = e, i = new Array(12).fill(0).map((n, a) => K(s[a])); + return `${A}(${i.join(", ")})`; } case "mat4": case "mat4x4": { - const B = I, Q = B instanceof a.Matrix4 ? B.elements : I, C = new Array(16).fill(0).map((E, t) => q(Q[t])); - return `${A}(${C.join(", ")})`; + const s = e, i = s instanceof B.Matrix4 ? s.elements : e, n = new Array(16).fill(0).map((a, r) => K(i[r])); + return `${A}(${n.join(", ")})`; } case "mat4x2": { - const B = I, Q = new Array(8).fill(0).map((C, E) => q(B[E])); - return `${A}(${Q.join(", ")})`; + const s = e, i = new Array(8).fill(0).map((n, a) => K(s[a])); + return `${A}(${i.join(", ")})`; } case "mat4x3": { - const B = I, Q = new Array(12).fill(0).map((C, E) => q(B[E])); - return `${A}(${Q.join(", ")})`; + const s = e, i = new Array(12).fill(0).map((n, a) => K(s[a])); + return `${A}(${i.join(", ")})`; } default: throw new Error(`Type not implemented: ${String(A)}`); } } } -function gA(g, A) { - return new hB(g, A); +function tA(t, A) { + return new os(t, A); } -function Ng(g) { - const A = String(g); - if (ig(g)) +function pt(t) { + const A = String(t); + if (rt(t)) return `${A}(false)`; - if ($A(g)) + if (jA(t)) return `${A}(0.0)`; - if (wA(g)) + if (hA(t)) return `${A}(0)`; - if (DA(g)) + if (lA(t)) return `${A}(0u)`; throw new Error(`Type not implemented: ${A}`); } -function gi(g) { - const A = String(g); - if (ig(g)) +function Vr(t) { + const A = String(t); + if (rt(t)) return `${A}(true)`; - if ($A(g)) + if (jA(t)) return `${A}(1.0)`; - if (wA(g)) + if (hA(t)) return `${A}(1)`; - if (DA(g)) + if (lA(t)) return `${A}(1u)`; throw new Error(`Type not implemented: ${A}`); } -function Ii(g) { - const A = String(g); - if (ig(g)) +function Pr(t) { + const A = String(t); + if (rt(t)) return `${A}(true)`; - if ($A(g)) + if (jA(t)) return `${A}(-1.0)`; - if (wA(g)) + if (hA(t)) return `${A}(-1)`; - if (DA(g)) + if (lA(t)) return `${A}(0xFFFFFFFFu)`; throw new Error(`Type not implemented: ${A}`); } -const AB = " "; -class wB { +const Ve = " "; +class Is { constructor({ indent: A } = {}) { - this.globals = /* @__PURE__ */ new Set(), this.statements = [], this.uniforms = {}, this.declares = /* @__PURE__ */ new Set(), this.updaters = [], this.sequence = 0, this.indent = AB, this.indent = A ?? AB; + this.globals = /* @__PURE__ */ new Set(), this.statements = [], this.uniforms = {}, this.declares = /* @__PURE__ */ new Set(), this.updaters = [], this.sequence = 0, this.indent = Ve, this.indent = A ?? Ve; } nextSequence() { return this.sequence++; } } -class T { +class V { constructor({ inTypes: A, - outTypes: I, - inputs: B, - update: Q, - globals: C, - statements: E, - generate: t + outTypes: e, + inputs: s, + update: i, + globals: n, + statements: a, + generate: r }) { - this.inTypes = A ?? {}, this.outTypes = I ?? {}, this.inputs = B ?? {}, this.update = Q, this.globals = C, this.statements = E, this.generate = t ?? (({ inputs: i, outputs: e, compile: n }) => { - var s, o; + this.inTypes = A ?? {}, this.outTypes = e ?? {}, this.inputs = s ?? {}, this.update = i, this.globals = n, this.statements = a, this.generate = r ?? (({ inputs: g, outputs: I, compile: Q }) => { + var o, E; return { - globals: (s = this.globals) == null ? void 0 : s.call(this, { inputs: i, outputs: e, compile: n }), - statements: (o = this.statements) == null ? void 0 : o.call(this, { inputs: i, outputs: e, compile: n }) + globals: (o = this.globals) == null ? void 0 : o.call(this, { inputs: g, outputs: I, compile: Q }), + statements: (E = this.statements) == null ? void 0 : E.call(this, { inputs: g, outputs: I, compile: Q }) }; }); } get outputs() { const A = {}; - for (const I in this.outTypes) - A[I] = new W(this, I); + for (const e in this.outTypes) + A[e] = new z(this, e); return A; } apply(A) { @@ -567,267 +445,267 @@ class T { } compile({ inputs: A, - outputs: I, - compile: B + outputs: e, + compile: s }) { - const Q = [ - `// ${this.constructor.name}(${Object.values(A).join(", ")}) => (${Object.values(I).join(", ")})` - ], C = []; - for (const e in I) { - const n = I[e]; - n && !B.declares.has(n) && (B.declares.add(n), C.push(e)); + const i = [ + `// ${this.constructor.name}(${Object.values(A).join(", ")}) => (${Object.values(e).join(", ")})` + ], n = []; + for (const I in e) { + const Q = e[I]; + Q && !s.declares.has(Q) && (s.declares.add(Q), n.push(I)); } - const { globals: E, statements: t, uniforms: i } = this.generate({ + const { globals: a, statements: r, uniforms: g } = this.generate({ inputs: A, - outputs: I, - compile: B + outputs: e, + compile: s }); - for (const e of E ?? []) - B.globals.add(e); - for (const e in i) - B.uniforms[e] = i[e]; - this.update && B.updaters.push(this.update); - for (const e of C) { - const n = I[e]; - n && (B.uniforms[n] || Q.push(`${ZI(n, this.outTypes[e])};`)); + for (const I of a ?? []) + s.globals.add(I); + for (const I in g) + s.uniforms[I] = g[I]; + this.update && s.updaters.push(this.update); + for (const I of n) { + const Q = e[I]; + Q && (s.uniforms[Q] || i.push(`${be(Q, this.outTypes[I])};`)); } - return t != null && t.length && (Q.push("{"), Q.push(...t.map((e) => B.indent + e)), Q.push("}")), Q; + return r != null && r.length && (i.push("{"), i.push(...r.map((I) => s.indent + I)), i.push("}")), i; } } -class qA extends T { +class HA extends V { constructor({ inTypes: A, - outTypes: I, - inputs: B, - update: Q, - globals: C, - construct: E + outTypes: e, + inputs: s, + update: i, + globals: n, + construct: a }) { super({ inTypes: A, - outTypes: I, - inputs: B, - update: Q, - globals: C, - generate: (t) => this.generateBlock(t) - }), this.construct = E; + outTypes: e, + inputs: s, + update: i, + globals: n, + generate: (r) => this.generateBlock(r) + }), this.construct = a; } generateBlock({ inputs: A, - outputs: I, - compile: B + outputs: e, + compile: s }) { var c, h; - const Q = {}, C = {}; - for (const w in A) - A[w] != null && (Q[w] = new Dg(this.inTypes[w], A[w])); - for (const w in I) - I[w] != null && (C[w] = new _A(this.outTypes[w])); - const E = { roots: [] }, t = this.construct(Q, C, E); - for (const w of ((c = this.globals) == null ? void 0 : c.call(this, { inputs: A, outputs: I, compile: B })) ?? []) - B.globals.add(w); - const i = [], e = /* @__PURE__ */ new Map(); - function n(w, D, y) { - let l = e.get(w); - if (!l) { - l = { - sequence: B.nextSequence(), + const i = {}, n = {}; + for (const l in A) + A[l] != null && (i[l] = new ct(this.inTypes[l], A[l])); + for (const l in e) + e[l] != null && (n[l] = new $A(this.outTypes[l])); + const a = { roots: [] }, r = this.construct(i, n, a); + for (const l of ((c = this.globals) == null ? void 0 : c.call(this, { inputs: A, outputs: e, compile: s })) ?? []) + s.globals.add(l); + const g = [], I = /* @__PURE__ */ new Map(); + function Q(l, u, w) { + let d = I.get(l); + if (!d) { + d = { + sequence: s.nextSequence(), outNames: /* @__PURE__ */ new Map(), newOuts: /* @__PURE__ */ new Set() - }, e.set(w, l); - for (const d in w.inputs) { - let u = w.inputs[d]; - for (; u; ) { - if (u instanceof _A) { - u instanceof W && n(u.dyno, u.key); + }, I.set(l, d); + for (const p in l.inputs) { + let y = l.inputs[p]; + for (; y; ) { + if (y instanceof $A) { + y instanceof z && Q(y.dyno, y.key); break; } - u = u.dynoOut(); + y = y.dynoOut(); } } - i.push(w); + g.push(l); } - D && (y || l.newOuts.add(D), l.outNames.set(D, y ?? `${D}_${l.sequence}`)); + u && (w || d.newOuts.add(u), d.outNames.set(u, w ?? `${u}_${d.sequence}`)); } - for (const w of E.roots) - n(w); - for (const w in C) { - let D = (t == null ? void 0 : t[w]) ?? C[w]; - for (; D; ) { - if (D instanceof _A) { - D instanceof W && n(D.dyno, D.key, I[w]); + for (const l of a.roots) + Q(l); + for (const l in n) { + let u = (r == null ? void 0 : r[l]) ?? n[l]; + for (; u; ) { + if (u instanceof $A) { + u instanceof z && Q(u.dyno, u.key, e[l]); break; } - D = D.dynoOut(); + u = u.dynoOut(); } - C[w] = D; + n[l] = u; } - const s = []; - for (const w of i) { - const D = {}, y = {}; - for (const u in w.inputs) { - let p = w.inputs[u]; - for (; p; ) { - if (p instanceof _A) { - if (p instanceof Dg) - D[u] = p.getLiteral(); - else if (p instanceof W) { - const m = (h = e.get(p.dyno)) == null ? void 0 : h.outNames.get(p.key); - if (!m) + const o = []; + for (const l of g) { + const u = {}, w = {}; + for (const y in l.inputs) { + let m = l.inputs[y]; + for (; m; ) { + if (m instanceof $A) { + if (m instanceof ct) + u[y] = m.getLiteral(); + else if (m instanceof z) { + const F = (h = I.get(m.dyno)) == null ? void 0 : h.outNames.get(m.key); + if (!F) throw new Error( - `Source not found for ${p.dyno.constructor.name}.${p.key}` + `Source not found for ${m.dyno.constructor.name}.${m.key}` ); - D[u] = m; + u[y] = F; } break; } - p = p.dynoOut(); + m = m.dynoOut(); } } - const l = e.get(w) ?? { outNames: /* @__PURE__ */ new Map() }; - for (const [u, p] of l.outNames.entries()) - y[u] = p; - const d = w.compile({ inputs: D, outputs: y, compile: B }); - s.push(d); + const d = I.get(l) ?? { outNames: /* @__PURE__ */ new Map() }; + for (const [y, m] of d.outNames.entries()) + w[y] = m; + const p = l.compile({ inputs: u, outputs: w, compile: s }); + o.push(p); } - const o = []; - for (const w in I) - C[w] instanceof Dg && o.push( - `${I[w]} = ${C[w].getLiteral()};` + const E = []; + for (const l in e) + n[l] instanceof ct && E.push( + `${e[l]} = ${n[l].getLiteral()};` ); - return o.length > 0 && s.push(o), { statements: s.flatMap((w, D) => D === 0 ? w : ["", ...w]) }; + return E.length > 0 && o.push(E), { statements: o.flatMap((l, u) => u === 0 ? l : ["", ...l]) }; } } -function YA(g, A, I, { update: B, globals: Q } = {}) { - return new qA({ inTypes: g, outTypes: A, construct: I, update: B, globals: Q }); +function RA(t, A, e, { update: s, globals: i } = {}) { + return new HA({ inTypes: t, outTypes: A, construct: e, update: s, globals: i }); } -function xg({ - inTypes: g, +function bt({ + inTypes: t, outTypes: A, - inputs: I, - update: B, - globals: Q, - statements: C, - generate: E + inputs: e, + update: s, + globals: i, + statements: n, + generate: a }) { - return new T({ - inTypes: g, + return new V({ + inTypes: t, outTypes: A, - inputs: I, - update: B, - globals: Q, - statements: C, - generate: E + inputs: e, + update: s, + globals: i, + statements: n, + generate: a }); } -function ZI(g, A, I) { - const B = typeof A == "string" ? A : A.type; - if (!B) +function be(t, A, e) { + const s = typeof A == "string" ? A : A.type; + if (!s) throw new Error(`Invalid DynoType: ${String(A)}`); - return `${B} ${g}${I != null ? `[${I}]` : ""}`; + return `${s} ${t}${e != null ? `[${e}]` : ""}`; } -function mA(g) { - var C; +function NA(t) { + var n; let A = !1; - const I = g.split(` -`).map((E) => { - const t = E.trimEnd(); - return A ? t : t.length > 0 ? (A = !0, t) : null; - }).filter((E) => E != null); - for (; I.length > 0 && I[I.length - 1].length === 0; ) - I.pop(); - if (I.length === 0) + const e = t.split(` +`).map((a) => { + const r = a.trimEnd(); + return A ? r : r.length > 0 ? (A = !0, r) : null; + }).filter((a) => a != null); + for (; e.length > 0 && e[e.length - 1].length === 0; ) + e.pop(); + if (e.length === 0) return []; - const B = (C = I[0].match(/^\s*/)) == null ? void 0 : C[0]; - if (!B) - return I; - const Q = new RegExp(`^${B}`); - return I.map((E) => E.replace(Q, "")); + const s = (n = e[0].match(/^\s*/)) == null ? void 0 : n[0]; + if (!s) + return e; + const i = new RegExp(`^${s}`); + return e.map((a) => a.replace(i, "")); } -function aA(g) { - return mA(g).join(` +function BA(t) { + return NA(t).join(` `); } -class R extends T { +class x extends V { constructor({ a: A, - outKey: I, - outTypeFunc: B + outKey: e, + outTypeFunc: s }) { - const Q = { a: v(A) }, C = B(v(A)), E = { [I]: C }; - super({ inTypes: Q, outTypes: E, inputs: { a: A } }), this.outKey = I; + const i = { a: q(A) }, n = s(q(A)), a = { [e]: n }; + super({ inTypes: i, outTypes: a, inputs: { a: A } }), this.outKey = e; } dynoOut() { - return new W(this, this.outKey); + return new z(this, this.outKey); } } -class O extends T { +class W extends V { constructor({ a: A, - b: I, - outKey: B, - outTypeFunc: Q + b: e, + outKey: s, + outTypeFunc: i }) { - const C = { a: v(A), b: v(I) }, E = Q(v(A), v(I)), t = { [B]: E }; - super({ inTypes: C, outTypes: t, inputs: { a: A, b: I } }), this.outKey = B; + const n = { a: q(A), b: q(e) }, a = i(q(A), q(e)), r = { [s]: a }; + super({ inTypes: n, outTypes: r, inputs: { a: A, b: e } }), this.outKey = s; } dynoOut() { - return new W(this, this.outKey); + return new z(this, this.outKey); } } -class eg extends T { +class ot extends V { constructor({ a: A, - b: I, - c: B, - outKey: Q, - outTypeFunc: C + b: e, + c: s, + outKey: i, + outTypeFunc: n }) { - const E = { a: v(A), b: v(I), c: v(B) }, t = C(v(A), v(I), v(B)), i = { [Q]: t }; - super({ inTypes: E, outTypes: i, inputs: { a: A, b: I, c: B } }), this.outKey = Q; + const a = { a: q(A), b: q(e), c: q(s) }, r = n(q(A), q(e), q(s)), g = { [i]: r }; + super({ inTypes: a, outTypes: g, inputs: { a: A, b: e, c: s } }), this.outKey = i; } dynoOut() { - return new W(this, this.outKey); + return new z(this, this.outKey); } } -const BA = { type: "Gsplat" }, Lg = { type: "PackedSplats" }, Bi = (g) => new lB({ packedSplats: g }), mg = (g, A) => new uB({ packedSplats: g, index: A }), DB = (g, A, I, B) => new dB({ packedSplats: g, index: A, base: I, count: B }), pg = (g) => new GB({ gsplat: g }), lg = ({ - gsplat: g, +const sA = { type: "Gsplat" }, vt = { type: "PackedSplats" }, Zr = (t) => new Qs({ packedSplats: t }), Nt = (t, A) => new Cs({ packedSplats: t, index: A }), Bs = (t, A, e, s) => new cs({ packedSplats: t, index: A, base: e, count: s }), mt = (t) => new hs({ gsplat: t }), ht = ({ + gsplat: t, flags: A, - index: I, - center: B, - scales: Q, - quaternion: C, - rgba: E, - rgb: t, - opacity: i, - x: e, - y: n, - z: s, - r: o, - g: r, + index: e, + center: s, + scales: i, + quaternion: n, + rgba: a, + rgb: r, + opacity: g, + x: I, + y: Q, + z: o, + r: E, + g: C, b: c -}) => new MB({ - gsplat: g, +}) => new ls({ + gsplat: t, flags: A, - index: I, - center: B, - scales: Q, - quaternion: C, - rgba: E, - rgb: t, - opacity: i, - x: e, - y: n, - z: s, - r: o, - g: r, + index: e, + center: s, + scales: i, + quaternion: n, + rgba: a, + rgb: r, + opacity: g, + x: I, + y: Q, + z: o, + r: E, + g: C, b: c -}), Qi = (g) => new pB({ gsplat: g }), qI = (g, { +}), Or = (t) => new ds({ gsplat: t }), ve = (t, { scale: A, - rotate: I, - translate: B, - recolor: Q -}) => new kB({ gsplat: g, scale: A, rotate: I, translate: B, recolor: Q }), pA = aA(` + rotate: e, + translate: s, + recolor: i +}) => new ws({ gsplat: t, scale: A, rotate: e, translate: s, recolor: i }), mA = BA(` struct Gsplat { vec3 center; uint flags; @@ -841,22 +719,22 @@ const BA = { type: "Gsplat" }, Lg = { type: "PackedSplats" }, Bi = (g) => new lB bool isGsplatActive(uint flags) { return (flags & GSPLAT_FLAG_ACTIVE) != 0u; } -`), sI = aA(` +`), ne = BA(` struct PackedSplats { usampler2DArray texture; int numSplats; }; `); -class lB extends R { +class Qs extends x { constructor({ packedSplats: A }) { - super({ a: A, outKey: "numSplats", outTypeFunc: () => "int" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.numSplats} = ${I.a}.numSplats;` + super({ a: A, outKey: "numSplats", outTypeFunc: () => "int" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.numSplats} = ${e.a}.numSplats;` ]; } } -const yB = aA(` +const Es = BA(` bool readPackedSplat(usampler2DArray texture, int numSplats, int index, out Gsplat gsplat) { if ((index >= 0) && (index < numSplats)) { uvec4 packed = texelFetch(texture, splatTexCoord(index), 0); @@ -867,80 +745,80 @@ const yB = aA(` } } `); -class uB extends T { +class Cs extends V { constructor({ packedSplats: A, - index: I + index: e }) { super({ - inTypes: { packedSplats: Lg, index: "int" }, - outTypes: { gsplat: BA }, - inputs: { packedSplats: A, index: I }, - globals: () => [pA, sI, yB], - statements: ({ inputs: B, outputs: Q }) => { - const { gsplat: C } = Q; - if (!C) + inTypes: { packedSplats: vt, index: "int" }, + outTypes: { gsplat: sA }, + inputs: { packedSplats: A, index: e }, + globals: () => [mA, ne, Es], + statements: ({ inputs: s, outputs: i }) => { + const { gsplat: n } = i; + if (!n) return []; - const { packedSplats: E, index: t } = B; - let i; - return E && t ? i = mA(` - if (readPackedSplat(${E}.texture, ${E}.numSplats, ${t}, ${C})) { - bool zeroSize = all(equal(${C}.scales, vec3(0.0, 0.0, 0.0))); - ${C}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE; + const { packedSplats: a, index: r } = s; + let g; + return a && r ? g = NA(` + if (readPackedSplat(${a}.texture, ${a}.numSplats, ${r}, ${n})) { + bool zeroSize = all(equal(${n}.scales, vec3(0.0, 0.0, 0.0))); + ${n}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE; } else { - ${C}.flags = 0u; + ${n}.flags = 0u; } - `) : i = [`${C}.flags = 0u;`], i.push(`${C}.index = ${t ?? "0"};`), i; + `) : g = [`${n}.flags = 0u;`], g.push(`${n}.index = ${r ?? "0"};`), g; } }); } dynoOut() { - return new W(this, "gsplat"); + return new z(this, "gsplat"); } } -class dB extends T { +class cs extends V { constructor({ packedSplats: A, - index: I, - base: B, - count: Q + index: e, + base: s, + count: i }) { super({ inTypes: { - packedSplats: Lg, + packedSplats: vt, index: "int", base: "int", count: "int" }, - outTypes: { gsplat: BA }, - inputs: { packedSplats: A, index: I, base: B, count: Q }, - globals: () => [pA, sI, yB], - statements: ({ inputs: C, outputs: E }) => { - const { gsplat: t } = E; - if (!t) + outTypes: { gsplat: sA }, + inputs: { packedSplats: A, index: e, base: s, count: i }, + globals: () => [mA, ne, Es], + statements: ({ inputs: n, outputs: a }) => { + const { gsplat: r } = a; + if (!r) return []; - const { packedSplats: i, index: e, base: n, count: s } = C; - let o; - return i && e && n && s ? o = mA(` - ${t}.flags = 0u; - if ((${e} >= ${n}) && (${e} < (${n} + ${s}))) { - if (readPackedSplat(${i}.texture, ${i}.numSplats, ${e}, ${t})) { - bool zeroSize = all(equal(${t}.scales, vec3(0.0, 0.0, 0.0))); - ${t}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE; + const { packedSplats: g, index: I, base: Q, count: o } = n; + let E; + return g && I && Q && o ? E = NA(` + ${r}.flags = 0u; + if ((${I} >= ${Q}) && (${I} < (${Q} + ${o}))) { + if (readPackedSplat(${g}.texture, ${g}.numSplats, ${I}, ${r})) { + bool zeroSize = all(equal(${r}.scales, vec3(0.0, 0.0, 0.0))); + ${r}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE; } } - `) : o = [`${t}.flags = 0u;`], o.push(`${t}.index = ${e ?? "0"};`), o; + `) : E = [`${r}.flags = 0u;`], E.push(`${r}.index = ${I ?? "0"};`), E; } }); } dynoOut() { - return new W(this, "gsplat"); + return new z(this, "gsplat"); } } -class GB extends T { +class hs extends V { constructor({ gsplat: A }) { super({ - inTypes: { gsplat: BA }, + inTypes: { gsplat: sA }, outTypes: { flags: "uint", active: "bool", @@ -959,67 +837,67 @@ class GB extends T { b: "float" }, inputs: { gsplat: A }, - globals: () => [pA], - statements: ({ inputs: I, outputs: B }) => { - const { gsplat: Q } = I, { - flags: C, - active: E, - index: t, - center: i, - scales: e, - quaternion: n, - rgba: s, - rgb: o, - opacity: r, + globals: () => [mA], + statements: ({ inputs: e, outputs: s }) => { + const { gsplat: i } = e, { + flags: n, + active: a, + index: r, + center: g, + scales: I, + quaternion: Q, + rgba: o, + rgb: E, + opacity: C, x: c, y: h, - z: w, - r: D, - g: y, - b: l - } = B; + z: l, + r: u, + g: w, + b: d + } = s; return [ - C ? `${C} = ${Q ? `${Q}.flags` : "0u"};` : null, - E ? `${E} = isGsplatActive(${Q ? `${Q}.flags` : "0u"});` : null, - t ? `${t} = ${Q ? `${Q}.index` : "0"};` : null, - i ? `${i} = ${Q ? `${Q}.center` : "vec3(0.0, 0.0, 0.0)"};` : null, - e ? `${e} = ${Q ? `${Q}.scales` : "vec3(0.0, 0.0, 0.0)"};` : null, - n ? `${n} = ${Q ? `${Q}.quaternion` : "vec4(0.0, 0.0, 0.0, 1.0)"};` : null, - s ? `${s} = ${Q ? `${Q}.rgba` : "vec4(0.0, 0.0, 0.0, 0.0)"};` : null, - o ? `${o} = ${Q ? `${Q}.rgba.rgb` : "vec3(0.0, 0.0, 0.0)"};` : null, - r ? `${r} = ${Q ? `${Q}.rgba.a` : "0.0"};` : null, - c ? `${c} = ${Q ? `${Q}.center.x` : "0.0"};` : null, - h ? `${h} = ${Q ? `${Q}.center.y` : "0.0"};` : null, - w ? `${w} = ${Q ? `${Q}.center.z` : "0.0"};` : null, - D ? `${D} = ${Q ? `${Q}.rgba.r` : "0.0"};` : null, - y ? `${y} = ${Q ? `${Q}.rgba.g` : "0.0"};` : null, - l ? `${l} = ${Q ? `${Q}.rgba.b` : "0.0"};` : null + n ? `${n} = ${i ? `${i}.flags` : "0u"};` : null, + a ? `${a} = isGsplatActive(${i ? `${i}.flags` : "0u"});` : null, + r ? `${r} = ${i ? `${i}.index` : "0"};` : null, + g ? `${g} = ${i ? `${i}.center` : "vec3(0.0, 0.0, 0.0)"};` : null, + I ? `${I} = ${i ? `${i}.scales` : "vec3(0.0, 0.0, 0.0)"};` : null, + Q ? `${Q} = ${i ? `${i}.quaternion` : "vec4(0.0, 0.0, 0.0, 1.0)"};` : null, + o ? `${o} = ${i ? `${i}.rgba` : "vec4(0.0, 0.0, 0.0, 0.0)"};` : null, + E ? `${E} = ${i ? `${i}.rgba.rgb` : "vec3(0.0, 0.0, 0.0)"};` : null, + C ? `${C} = ${i ? `${i}.rgba.a` : "0.0"};` : null, + c ? `${c} = ${i ? `${i}.center.x` : "0.0"};` : null, + h ? `${h} = ${i ? `${i}.center.y` : "0.0"};` : null, + l ? `${l} = ${i ? `${i}.center.z` : "0.0"};` : null, + u ? `${u} = ${i ? `${i}.rgba.r` : "0.0"};` : null, + w ? `${w} = ${i ? `${i}.rgba.g` : "0.0"};` : null, + d ? `${d} = ${i ? `${i}.rgba.b` : "0.0"};` : null ].filter(Boolean); } }); } } -class MB extends T { +class ls extends V { constructor({ gsplat: A, - flags: I, - index: B, - center: Q, - scales: C, - quaternion: E, - rgba: t, - rgb: i, - opacity: e, - x: n, - y: s, - z: o, - r, + flags: e, + index: s, + center: i, + scales: n, + quaternion: a, + rgba: r, + rgb: g, + opacity: I, + x: Q, + y: o, + z: E, + r: C, g: c, b: h }) { super({ inTypes: { - gsplat: BA, + gsplat: sA, flags: "uint", index: "int", center: "vec3", @@ -1035,70 +913,70 @@ class MB extends T { g: "float", b: "float" }, - outTypes: { gsplat: BA }, + outTypes: { gsplat: sA }, inputs: { gsplat: A, - flags: I, - index: B, - center: Q, - scales: C, - quaternion: E, - rgba: t, - rgb: i, - opacity: e, - x: n, - y: s, - z: o, - r, + flags: e, + index: s, + center: i, + scales: n, + quaternion: a, + rgba: r, + rgb: g, + opacity: I, + x: Q, + y: o, + z: E, + r: C, g: c, b: h }, - globals: () => [pA], - statements: ({ inputs: w, outputs: D }) => { - const { gsplat: y } = D; - if (!y) + globals: () => [mA], + statements: ({ inputs: l, outputs: u }) => { + const { gsplat: w } = u; + if (!w) return []; const { - gsplat: l, - flags: d, - index: u, - center: p, - scales: m, - quaternion: M, - rgba: G, - rgb: J, - opacity: k, - x: N, - y: Y, - z: F, - r: f, - g: U, + gsplat: d, + flags: p, + index: y, + center: m, + scales: F, + quaternion: D, + rgba: f, + rgb: U, + opacity: S, + x: M, + y: b, + z: N, + r: R, + g: G, b: L - } = w; + } = l; return [ - `${y}.flags = ${d ?? (l ? `${l}.flags` : "0u")};`, - `${y}.index = ${u ?? (l ? `${l}.index` : "0")};`, - `${y}.center = ${p ?? (l ? `${l}.center` : "vec3(0.0, 0.0, 0.0)")};`, - `${y}.scales = ${m ?? (l ? `${l}.scales` : "vec3(0.0, 0.0, 0.0)")};`, - `${y}.quaternion = ${M ?? (l ? `${l}.quaternion` : "vec4(0.0, 0.0, 0.0, 1.0)")};`, - `${y}.rgba = ${G ?? (l ? `${l}.rgba` : "vec4(0.0, 0.0, 0.0, 0.0)")};`, - J ? `${y}.rgba.rgb = ${J};` : null, - k ? `${y}.rgba.a = ${k};` : null, - N ? `${y}.center.x = ${N};` : null, - Y ? `${y}.center.y = ${Y};` : null, - F ? `${y}.center.z = ${F};` : null, - f ? `${y}.rgba.r = ${f};` : null, - U ? `${y}.rgba.g = ${U};` : null, - L ? `${y}.rgba.b = ${L};` : null + `${w}.flags = ${p ?? (d ? `${d}.flags` : "0u")};`, + `${w}.index = ${y ?? (d ? `${d}.index` : "0")};`, + `${w}.center = ${m ?? (d ? `${d}.center` : "vec3(0.0, 0.0, 0.0)")};`, + `${w}.scales = ${F ?? (d ? `${d}.scales` : "vec3(0.0, 0.0, 0.0)")};`, + `${w}.quaternion = ${D ?? (d ? `${d}.quaternion` : "vec4(0.0, 0.0, 0.0, 1.0)")};`, + `${w}.rgba = ${f ?? (d ? `${d}.rgba` : "vec4(0.0, 0.0, 0.0, 0.0)")};`, + U ? `${w}.rgba.rgb = ${U};` : null, + S ? `${w}.rgba.a = ${S};` : null, + M ? `${w}.center.x = ${M};` : null, + b ? `${w}.center.y = ${b};` : null, + N ? `${w}.center.z = ${N};` : null, + R ? `${w}.rgba.r = ${R};` : null, + G ? `${w}.rgba.g = ${G};` : null, + L ? `${w}.rgba.b = ${L};` : null ].filter(Boolean); } }); } dynoOut() { - return new W(this, "gsplat"); + return new z(this, "gsplat"); } } -const NB = aA(` +const us = BA(` vec3 gsplatNormal(vec3 scales, vec4 quaternion) { float minScale = min(scales.x, min(scales.y, scales.z)); vec3 normal; @@ -1112,512 +990,512 @@ const NB = aA(` return quatVec(quaternion, normal); } `); -class pB extends R { +class ds extends x { constructor({ gsplat: A }) { - super({ a: A, outKey: "normal", outTypeFunc: () => "vec3" }), this.globals = () => [pA, NB], this.statements = ({ inputs: I, outputs: B }) => [ - `${B.normal} = gsplatNormal(${I.a}.scales, ${I.a}.quaternion);` + super({ a: A, outKey: "normal", outTypeFunc: () => "vec3" }), this.globals = () => [mA, us], this.statements = ({ inputs: e, outputs: s }) => [ + `${s.normal} = gsplatNormal(${e.a}.scales, ${e.a}.quaternion);` ]; } } -class kB extends T { +class ws extends V { constructor({ gsplat: A, - scale: I, - rotate: B, - translate: Q, - recolor: C + scale: e, + rotate: s, + translate: i, + recolor: n }) { super({ inTypes: { - gsplat: BA, + gsplat: sA, scale: "float", rotate: "vec4", translate: "vec3", recolor: "vec4" }, - outTypes: { gsplat: BA }, - inputs: { gsplat: A, scale: I, rotate: B, translate: Q, recolor: C }, - globals: () => [pA], - statements: ({ inputs: E, outputs: t, compile: i }) => { - const { gsplat: e } = t; - if (!e || !E.gsplat) + outTypes: { gsplat: sA }, + inputs: { gsplat: A, scale: e, rotate: s, translate: i, recolor: n }, + globals: () => [mA], + statements: ({ inputs: a, outputs: r, compile: g }) => { + const { gsplat: I } = r; + if (!I || !a.gsplat) return []; - const { scale: n, rotate: s, translate: o, recolor: r } = E, c = i.indent; + const { scale: Q, rotate: o, translate: E, recolor: C } = a, c = g.indent; return [ - `${e} = ${E.gsplat};`, - `if (isGsplatActive(${e}.flags)) {`, - n ? `${c}${e}.center *= ${n};` : null, - s ? `${c}${e}.center = quatVec(${s}, ${e}.center);` : null, - o ? `${c}${e}.center += ${o};` : null, - n ? `${c}${e}.scales *= ${n};` : null, - s ? `${c}${e}.quaternion = quatQuat(${s}, ${e}.quaternion);` : null, - r ? `${c}${e}.rgba *= ${r};` : null, + `${I} = ${a.gsplat};`, + `if (isGsplatActive(${I}.flags)) {`, + Q ? `${c}${I}.center *= ${Q};` : null, + o ? `${c}${I}.center = quatVec(${o}, ${I}.center);` : null, + E ? `${c}${I}.center += ${E};` : null, + Q ? `${c}${I}.scales *= ${Q};` : null, + o ? `${c}${I}.quaternion = quatQuat(${o}, ${I}.quaternion);` : null, + C ? `${c}${I}.rgba *= ${C};` : null, "}" ].filter(Boolean); } }); } dynoOut() { - return new W(this, "gsplat"); + return new z(this, "gsplat"); } } -const FB = (g) => new RB({ gsplat: g }), Ci = (g) => new vI({ rgba8: g }); -class RB extends T { +const ys = (t) => new ps({ gsplat: t }), Wr = (t) => new Le({ rgba8: t }); +class ps extends V { constructor({ gsplat: A }) { super({ - inTypes: { gsplat: BA }, + inTypes: { gsplat: sA }, inputs: { gsplat: A }, - globals: () => [pA], - statements: ({ inputs: I, outputs: B }) => { - const { output: Q } = B; - if (!Q) + globals: () => [mA], + statements: ({ inputs: e, outputs: s }) => { + const { output: i } = s; + if (!i) return []; - const { gsplat: C } = I; - return C ? mA(` - if (isGsplatActive(${C}.flags)) { - ${Q} = packSplat(${C}.center, ${C}.scales, ${C}.quaternion, ${C}.rgba); + const { gsplat: n } = e; + return n ? NA(` + if (isGsplatActive(${n}.flags)) { + ${i} = packSplat(${n}.center, ${n}.scales, ${n}.quaternion, ${n}.rgba); } else { - ${Q} = uvec4(0u, 0u, 0u, 0u); + ${i} = uvec4(0u, 0u, 0u, 0u); } - `) : [`${Q} = uvec4(0u, 0u, 0u, 0u);`]; + `) : [`${i} = uvec4(0u, 0u, 0u, 0u);`]; } }); } dynoOut() { - return new W(this, "output"); + return new z(this, "output"); } } -class vI extends T { +class Le extends V { constructor({ rgba8: A }) { super({ inTypes: { rgba8: "vec4" }, inputs: { rgba8: A }, - statements: ({ inputs: I, outputs: B }) => [ - `target = ${I.rgba8 ?? "vec4(0.0, 0.0, 0.0, 0.0)"};` + statements: ({ inputs: e, outputs: s }) => [ + `target = ${e.rgba8 ?? "vec4(0.0, 0.0, 0.0, 0.0)"};` ] }); } dynoOut() { - return new W(this, "rgba8"); + return new z(this, "rgba8"); } } -const Ei = (g, A, I) => new S({ key: g, type: A, value: I }), ti = (g = !1, A) => new $g({ key: A, value: g }), ii = (g = 0, A) => new JB({ key: A, value: g }), si = (g = 0, A) => new fg({ key: A, value: g }), bA = (g = 0, A) => new Cg({ key: A, value: g }), ei = (g, A) => new mB({ key: A, value: g }), ai = (g, A) => new fB({ key: A, value: g }), ni = (g, A) => new SB({ key: A, value: g }), oi = (g, A) => new YB({ key: A, value: g }), ri = (g, A) => new UB({ key: A, value: g }), ci = (g, A) => new xB({ key: A, value: g }), hi = (g, A) => new LB({ key: A, value: g }), zA = (g, A) => new yg({ key: A, value: g }), wi = (g, A) => new bB({ key: A, value: g }), Di = (g, A) => new HB({ key: A, value: g }), li = (g, A) => new KB({ key: A, value: g }), yi = (g, A) => new bg({ key: A, value: g }), ui = (g, A) => new ZB({ key: A, value: g }), di = (g, A) => new qB({ key: A, value: g }), Gi = (g, A) => new vB({ key: A, value: g }), Mi = (g, A) => new WB({ key: A, value: g }), Ni = (g, A) => new VB({ key: A, value: g }), pi = (g, A) => new TB({ key: A, value: g }), ki = (g, A) => new XB({ key: A, value: g }), Fi = (g, A) => new zB({ key: A, value: g }), Ri = (g, A) => new jB({ key: A, value: g }), Ji = (g, A) => new OB({ key: A, value: g }), mi = (g, A) => new PB({ key: A, value: g }), fi = (g, A) => new _B({ key: A, value: g }), Si = (g, A) => new $B({ key: A, value: g }), Yi = (g, A) => new AQ({ key: A, value: g }), Ui = (g, A) => new gQ({ key: A, value: g }), xi = (g, A) => new kg({ key: A, value: g }), Li = (g, A) => new IQ({ key: g, value: A }), bi = (g, A) => new BQ({ key: A, value: g }), Hi = (g, A) => new QQ({ key: A, value: g }), Ki = (g, A) => new CQ({ key: A, value: g }), Zi = (g, A) => new EQ({ key: A, value: g }), qi = (g, A) => new tQ({ key: A, value: g }), vi = (g, A) => new iQ({ key: A, value: g }), Wi = (g, A) => new sQ({ key: A, value: g }), Vi = (g, A) => new eQ({ key: A, value: g }), Ti = (g, A) => new aQ({ key: A, value: g }), Xi = (g, A) => new nQ({ key: A, value: g }); -class S extends T { +const Xr = (t, A, e) => new k({ key: t, type: A, value: e }), $r = (t = !1, A) => new Wt({ key: A, value: t }), jr = (t = 0, A) => new Ds({ key: A, value: t }), Ag = (t = 0, A) => new kt({ key: A, value: t }), LA = (t = 0, A) => new it({ key: A, value: t }), tg = (t, A) => new fs({ key: A, value: t }), eg = (t, A) => new ms({ key: A, value: t }), sg = (t, A) => new Ms({ key: A, value: t }), ig = (t, A) => new xs({ key: A, value: t }), ng = (t, A) => new Ss({ key: A, value: t }), ag = (t, A) => new Fs({ key: A, value: t }), rg = (t, A) => new Ns({ key: A, value: t }), PA = (t, A) => new lt({ key: A, value: t }), gg = (t, A) => new ks({ key: A, value: t }), og = (t, A) => new Us({ key: A, value: t }), Ig = (t, A) => new Rs({ key: A, value: t }), Bg = (t, A) => new Lt({ key: A, value: t }), Qg = (t, A) => new Gs({ key: A, value: t }), Eg = (t, A) => new bs({ key: A, value: t }), Cg = (t, A) => new vs({ key: A, value: t }), cg = (t, A) => new Ls({ key: A, value: t }), hg = (t, A) => new Js({ key: A, value: t }), lg = (t, A) => new Ys({ key: A, value: t }), ug = (t, A) => new Ts({ key: A, value: t }), dg = (t, A) => new Hs({ key: A, value: t }), wg = (t, A) => new Ks({ key: A, value: t }), yg = (t, A) => new qs({ key: A, value: t }), pg = (t, A) => new zs({ key: A, value: t }), Dg = (t, A) => new _s({ key: A, value: t }), fg = (t, A) => new Vs({ key: A, value: t }), mg = (t, A) => new Ps({ key: A, value: t }), Mg = (t, A) => new Zs({ key: A, value: t }), xg = (t, A) => new Mt({ key: A, value: t }), Sg = (t, A) => new Os({ key: t, value: A }), Fg = (t, A) => new Ws({ key: A, value: t }), Ng = (t, A) => new Xs({ key: A, value: t }), kg = (t, A) => new $s({ key: A, value: t }), Ug = (t, A) => new js({ key: A, value: t }), Rg = (t, A) => new Ai({ key: A, value: t }), Gg = (t, A) => new ti({ key: A, value: t }), bg = (t, A) => new ei({ key: A, value: t }), vg = (t, A) => new si({ key: A, value: t }), Lg = (t, A) => new ii({ key: A, value: t }), Jg = (t, A) => new ni({ key: A, value: t }); +class k extends V { constructor({ key: A, - type: I, - count: B, - value: Q, - update: C, - globals: E + type: e, + count: s, + value: i, + update: n, + globals: a }) { A = A ?? "value", super({ - outTypes: { [A]: I }, + outTypes: { [A]: e }, update: () => { - if (C) { - const t = C(this.value); - t !== void 0 && (this.value = t); + if (n) { + const r = n(this.value); + r !== void 0 && (this.value = r); } this.uniform.value = this.value; }, - generate: ({ inputs: t, outputs: i }) => { - const e = (E == null ? void 0 : E({ inputs: t, outputs: i })) ?? [], n = {}, s = i[A]; - return s && (e.push(`uniform ${ZI(s, I, B)};`), n[s] = this.uniform), { globals: e, uniforms: n }; + generate: ({ inputs: r, outputs: g }) => { + const I = (a == null ? void 0 : a({ inputs: r, outputs: g })) ?? [], Q = {}, o = g[A]; + return o && (I.push(`uniform ${be(o, e, s)};`), Q[o] = this.uniform), { globals: I, uniforms: Q }; } - }), this.type = I, this.count = B, this.value = Q, this.uniform = { value: Q }, this.outKey = A; + }), this.type = e, this.count = s, this.value = i, this.uniform = { value: i }, this.outKey = A; } dynoOut() { - return new W(this, this.outKey); + return new z(this, this.outKey); } } -class $g extends S { +class Wt extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "bool", value: I, update: B }); + super({ key: A, type: "bool", value: e, update: s }); } } -class JB extends S { +class Ds extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "uint", value: I, update: B }); + super({ key: A, type: "uint", value: e, update: s }); } } -class fg extends S { +class kt extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "int", value: I, update: B }); + super({ key: A, type: "int", value: e, update: s }); } } -class Cg extends S { +class it extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "float", value: I, update: B }); + super({ key: A, type: "float", value: e, update: s }); } } -class mB extends S { +class fs extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "bvec2", value: I, update: B }); + super({ key: A, type: "bvec2", value: e, update: s }); } } -class fB extends S { +class ms extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "uvec2", value: I, update: B }); + super({ key: A, type: "uvec2", value: e, update: s }); } } -class SB extends S { +class Ms extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "ivec2", value: I, update: B }); + super({ key: A, type: "ivec2", value: e, update: s }); } } -class YB extends S { +class xs extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "vec2", value: I, update: B }); + super({ key: A, type: "vec2", value: e, update: s }); } } -class UB extends S { +class Ss extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "bvec3", value: I, update: B }); + super({ key: A, type: "bvec3", value: e, update: s }); } } -class xB extends S { +class Fs extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "uvec3", value: I, update: B }); + super({ key: A, type: "uvec3", value: e, update: s }); } } -class LB extends S { +class Ns extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "ivec3", value: I, update: B }); + super({ key: A, type: "ivec3", value: e, update: s }); } } -class yg extends S { +class lt extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "vec3", value: I, update: B }); + super({ key: A, type: "vec3", value: e, update: s }); } } -class bB extends S { +class ks extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "bvec4", value: I, update: B }); + super({ key: A, type: "bvec4", value: e, update: s }); } } -class HB extends S { +class Us extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "uvec4", value: I, update: B }); + super({ key: A, type: "uvec4", value: e, update: s }); } } -class KB extends S { +class Rs extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "ivec4", value: I, update: B }); + super({ key: A, type: "ivec4", value: e, update: s }); } } -class bg extends S { +class Lt extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "vec4", value: I, update: B }); + super({ key: A, type: "vec4", value: e, update: s }); } } -class ZB extends S { +class Gs extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "mat2", value: I, update: B }); + super({ key: A, type: "mat2", value: e, update: s }); } } -class qB extends S { +class bs extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "mat2x2", value: I, update: B }); + super({ key: A, type: "mat2x2", value: e, update: s }); } } -class vB extends S { +class vs extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "mat2x3", value: I, update: B }); + super({ key: A, type: "mat2x3", value: e, update: s }); } } -class WB extends S { +class Ls extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "mat2x4", value: I, update: B }); + super({ key: A, type: "mat2x4", value: e, update: s }); } } -class VB extends S { +class Js extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "mat3", value: I, update: B }); + super({ key: A, type: "mat3", value: e, update: s }); } } -class TB extends S { +class Ys extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "mat3x2", value: I, update: B }); + super({ key: A, type: "mat3x2", value: e, update: s }); } } -class XB extends S { +class Ts extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "mat3x3", value: I, update: B }); + super({ key: A, type: "mat3x3", value: e, update: s }); } } -class zB extends S { +class Hs extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "mat3x4", value: I, update: B }); + super({ key: A, type: "mat3x4", value: e, update: s }); } } -class jB extends S { +class Ks extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "mat4", value: I, update: B }); + super({ key: A, type: "mat4", value: e, update: s }); } } -class OB extends S { +class qs extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "mat4x2", value: I, update: B }); + super({ key: A, type: "mat4x2", value: e, update: s }); } } -class PB extends S { +class zs extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "mat4x3", value: I, update: B }); + super({ key: A, type: "mat4x3", value: e, update: s }); } } -class _B extends S { +class _s extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "mat4x4", value: I, update: B }); + super({ key: A, type: "mat4x4", value: e, update: s }); } } -class $B extends S { +class Vs extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "usampler2D", value: I, update: B }); + super({ key: A, type: "usampler2D", value: e, update: s }); } } -class AQ extends S { +class Ps extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "isampler2D", value: I, update: B }); + super({ key: A, type: "isampler2D", value: e, update: s }); } } -class gQ extends S { +class Zs extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "sampler2D", value: I, update: B }); + super({ key: A, type: "sampler2D", value: e, update: s }); } } -class kg extends S { +class Mt extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "usampler2DArray", value: I, update: B }); + super({ key: A, type: "usampler2DArray", value: e, update: s }); } } -class IQ extends S { +class Os extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "isampler2DArray", value: I, update: B }); + super({ key: A, type: "isampler2DArray", value: e, update: s }); } } -class BQ extends S { +class Ws extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "sampler2DArray", value: I, update: B }); + super({ key: A, type: "sampler2DArray", value: e, update: s }); } } -class QQ extends S { +class Xs extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "usampler3D", value: I, update: B }); + super({ key: A, type: "usampler3D", value: e, update: s }); } } -class CQ extends S { +class $s extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "isampler3D", value: I, update: B }); + super({ key: A, type: "isampler3D", value: e, update: s }); } } -class EQ extends S { +class js extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "sampler3D", value: I, update: B }); + super({ key: A, type: "sampler3D", value: e, update: s }); } } -class tQ extends S { +class Ai extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "usamplerCube", value: I, update: B }); + super({ key: A, type: "usamplerCube", value: e, update: s }); } } -class iQ extends S { +class ti extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "isamplerCube", value: I, update: B }); + super({ key: A, type: "isamplerCube", value: e, update: s }); } } -class sQ extends S { +class ei extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "samplerCube", value: I, update: B }); + super({ key: A, type: "samplerCube", value: e, update: s }); } } -class eQ extends S { +class si extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "sampler2DShadow", value: I, update: B }); + super({ key: A, type: "sampler2DShadow", value: e, update: s }); } } -class aQ extends S { +class ii extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "sampler2DArrayShadow", value: I, update: B }); + super({ key: A, type: "sampler2DArrayShadow", value: e, update: s }); } } -class nQ extends S { +class ni extends k { constructor({ key: A, - value: I, - update: B + value: e, + update: s }) { - super({ key: A, type: "samplerCubeShadow", value: I, update: B }); + super({ key: A, type: "samplerCubeShadow", value: e, update: s }); } } -var cA = Uint8Array, cg = Uint16Array, zi = Int32Array, oQ = new cA([ +var cA = Uint8Array, Qt = Uint16Array, Yg = Int32Array, ai = new cA([ 0, 0, 0, @@ -1652,7 +1530,7 @@ var cA = Uint8Array, cg = Uint16Array, zi = Int32Array, oQ = new cA([ 0, /* impossible */ 0 -]), rQ = new cA([ +]), ri = new cA([ 0, 0, 0, @@ -1686,65 +1564,65 @@ var cA = Uint8Array, cg = Uint16Array, zi = Int32Array, oQ = new cA([ /* unused */ 0, 0 -]), ji = new cA([16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15]), cQ = function(g, A) { - for (var I = new cg(31), B = 0; B < 31; ++B) - I[B] = A += 1 << g[B - 1]; - for (var Q = new zi(I[30]), B = 1; B < 30; ++B) - for (var C = I[B]; C < I[B + 1]; ++C) - Q[C] = C - I[B] << 5 | B; - return { b: I, r: Q }; -}, hQ = cQ(oQ, 2), wQ = hQ.b, Oi = hQ.r; -wQ[28] = 258, Oi[258] = 28; -var Pi = cQ(rQ, 0), _i = Pi.b, RI = new cg(32768); -for (var IA = 0; IA < 32768; ++IA) { - var XA = (IA & 43690) >> 1 | (IA & 21845) << 1; - XA = (XA & 52428) >> 2 | (XA & 13107) << 2, XA = (XA & 61680) >> 4 | (XA & 3855) << 4, RI[IA] = ((XA & 65280) >> 8 | (XA & 255) << 8) >> 1; +]), Tg = new cA([16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15]), gi = function(t, A) { + for (var e = new Qt(31), s = 0; s < 31; ++s) + e[s] = A += 1 << t[s - 1]; + for (var i = new Yg(e[30]), s = 1; s < 30; ++s) + for (var n = e[s]; n < e[s + 1]; ++n) + i[n] = n - e[s] << 5 | s; + return { b: e, r: i }; +}, oi = gi(ai, 2), Ii = oi.b, Hg = oi.r; +Ii[28] = 258, Hg[258] = 28; +var Kg = gi(ri, 0), qg = Kg.b, De = new Qt(32768); +for (var eA = 0; eA < 32768; ++eA) { + var VA = (eA & 43690) >> 1 | (eA & 21845) << 1; + VA = (VA & 52428) >> 2 | (VA & 13107) << 2, VA = (VA & 61680) >> 4 | (VA & 3855) << 4, De[eA] = ((VA & 65280) >> 8 | (VA & 255) << 8) >> 1; } -var Fg = function(g, A, I) { - for (var B = g.length, Q = 0, C = new cg(A); Q < B; ++Q) - g[Q] && ++C[g[Q] - 1]; - var E = new cg(A); - for (Q = 1; Q < A; ++Q) - E[Q] = E[Q - 1] + C[Q - 1] << 1; - var t; - if (I) { - t = new cg(1 << A); - var i = 15 - A; - for (Q = 0; Q < B; ++Q) - if (g[Q]) - for (var e = Q << 4 | g[Q], n = A - g[Q], s = E[g[Q] - 1]++ << n, o = s | (1 << n) - 1; s <= o; ++s) - t[RI[s] >> i] = e; +var xt = function(t, A, e) { + for (var s = t.length, i = 0, n = new Qt(A); i < s; ++i) + t[i] && ++n[t[i] - 1]; + var a = new Qt(A); + for (i = 1; i < A; ++i) + a[i] = a[i - 1] + n[i - 1] << 1; + var r; + if (e) { + r = new Qt(1 << A); + var g = 15 - A; + for (i = 0; i < s; ++i) + if (t[i]) + for (var I = i << 4 | t[i], Q = A - t[i], o = a[t[i] - 1]++ << Q, E = o | (1 << Q) - 1; o <= E; ++o) + r[De[o] >> g] = I; } else - for (t = new cg(B), Q = 0; Q < B; ++Q) - g[Q] && (t[Q] = RI[E[g[Q] - 1]++] >> 15 - g[Q]); - return t; -}, Hg = new cA(288); -for (var IA = 0; IA < 144; ++IA) - Hg[IA] = 8; -for (var IA = 144; IA < 256; ++IA) - Hg[IA] = 9; -for (var IA = 256; IA < 280; ++IA) - Hg[IA] = 7; -for (var IA = 280; IA < 288; ++IA) - Hg[IA] = 8; -var DQ = new cA(32); -for (var IA = 0; IA < 32; ++IA) - DQ[IA] = 5; -var $i = /* @__PURE__ */ Fg(Hg, 9, 1), As = /* @__PURE__ */ Fg(DQ, 5, 1), dI = function(g) { - for (var A = g[0], I = 1; I < g.length; ++I) - g[I] > A && (A = g[I]); + for (r = new Qt(s), i = 0; i < s; ++i) + t[i] && (r[i] = De[a[t[i] - 1]++] >> 15 - t[i]); + return r; +}, Jt = new cA(288); +for (var eA = 0; eA < 144; ++eA) + Jt[eA] = 8; +for (var eA = 144; eA < 256; ++eA) + Jt[eA] = 9; +for (var eA = 256; eA < 280; ++eA) + Jt[eA] = 7; +for (var eA = 280; eA < 288; ++eA) + Jt[eA] = 8; +var Bi = new cA(32); +for (var eA = 0; eA < 32; ++eA) + Bi[eA] = 5; +var zg = /* @__PURE__ */ xt(Jt, 9, 1), _g = /* @__PURE__ */ xt(Bi, 5, 1), ue = function(t) { + for (var A = t[0], e = 1; e < t.length; ++e) + t[e] > A && (A = t[e]); return A; -}, fA = function(g, A, I) { - var B = A / 8 | 0; - return (g[B] | g[B + 1] << 8) >> (A & 7) & I; -}, GI = function(g, A) { - var I = A / 8 | 0; - return (g[I] | g[I + 1] << 8 | g[I + 2] << 16) >> (A & 7); -}, lQ = function(g) { - return (g + 7) / 8 | 0; -}, zg = function(g, A, I) { - return (A == null || A < 0) && (A = 0), (I == null || I > g.length) && (I = g.length), new cA(g.subarray(A, I)); -}, gs = [ +}, kA = function(t, A, e) { + var s = A / 8 | 0; + return (t[s] | t[s + 1] << 8) >> (A & 7) & e; +}, de = function(t, A) { + var e = A / 8 | 0; + return (t[e] | t[e + 1] << 8 | t[e + 2] << 16) >> (A & 7); +}, Qi = function(t) { + return (t + 7) / 8 | 0; +}, _t = function(t, A, e) { + return (A == null || A < 0) && (A = 0), (e == null || e > t.length) && (e = t.length), new cA(t.subarray(A, e)); +}, Vg = [ "unexpected EOF", "invalid block type", "invalid length/literal", @@ -1760,279 +1638,279 @@ var $i = /* @__PURE__ */ Fg(Hg, 9, 1), As = /* @__PURE__ */ Fg(DQ, 5, 1), dI = f "stream finishing", "invalid zip data" // determined by unknown compression method -], FA = function(g, A, I) { - var B = new Error(A || gs[g]); - if (B.code = g, Error.captureStackTrace && Error.captureStackTrace(B, FA), !I) - throw B; - return B; -}, Is = function(g, A, I, B) { - var Q = g.length, C = 0; - if (!Q || A.f && !A.l) - return I || new cA(0); - var E = !I, t = E || A.i != 2, i = A.i; - E && (I = new cA(Q * 3)); - var e = function(nA) { - var oA = I.length; - if (nA > oA) { - var H = new cA(Math.max(oA * 2, nA)); - H.set(I), I = H; +], xA = function(t, A, e) { + var s = new Error(A || Vg[t]); + if (s.code = t, Error.captureStackTrace && Error.captureStackTrace(s, xA), !e) + throw s; + return s; +}, Pg = function(t, A, e, s) { + var i = t.length, n = 0; + if (!i || A.f && !A.l) + return e || new cA(0); + var a = !e, r = a || A.i != 2, g = A.i; + a && (e = new cA(i * 3)); + var I = function(QA) { + var EA = e.length; + if (QA > EA) { + var Y = new cA(Math.max(EA * 2, QA)); + Y.set(e), e = Y; } - }, n = A.f || 0, s = A.p || 0, o = A.b || 0, r = A.l, c = A.d, h = A.m, w = A.n, D = Q * 8; + }, Q = A.f || 0, o = A.p || 0, E = A.b || 0, C = A.l, c = A.d, h = A.m, l = A.n, u = i * 8; do { - if (!r) { - n = fA(g, s, 1); - var y = fA(g, s + 1, 3); - if (s += 3, y) - if (y == 1) - r = $i, c = As, h = 9, w = 5; - else if (y == 2) { - var p = fA(g, s, 31) + 257, m = fA(g, s + 10, 15) + 4, M = p + fA(g, s + 5, 31) + 1; - s += 14; - for (var G = new cA(M), J = new cA(19), k = 0; k < m; ++k) - J[ji[k]] = fA(g, s + k * 3, 7); - s += m * 3; - for (var N = dI(J), Y = (1 << N) - 1, F = Fg(J, N, 1), k = 0; k < M; ) { - var f = F[fA(g, s, Y)]; - s += f & 15; - var l = f >> 4; - if (l < 16) - G[k++] = l; + if (!C) { + Q = kA(t, o, 1); + var w = kA(t, o + 1, 3); + if (o += 3, w) + if (w == 1) + C = zg, c = _g, h = 9, l = 5; + else if (w == 2) { + var m = kA(t, o, 31) + 257, F = kA(t, o + 10, 15) + 4, D = m + kA(t, o + 5, 31) + 1; + o += 14; + for (var f = new cA(D), U = new cA(19), S = 0; S < F; ++S) + U[Tg[S]] = kA(t, o + S * 3, 7); + o += F * 3; + for (var M = ue(U), b = (1 << M) - 1, N = xt(U, M, 1), S = 0; S < D; ) { + var R = N[kA(t, o, b)]; + o += R & 15; + var d = R >> 4; + if (d < 16) + f[S++] = d; else { - var U = 0, L = 0; - for (l == 16 ? (L = 3 + fA(g, s, 3), s += 2, U = G[k - 1]) : l == 17 ? (L = 3 + fA(g, s, 7), s += 3) : l == 18 && (L = 11 + fA(g, s, 127), s += 7); L--; ) - G[k++] = U; + var G = 0, L = 0; + for (d == 16 ? (L = 3 + kA(t, o, 3), o += 2, G = f[S - 1]) : d == 17 ? (L = 3 + kA(t, o, 7), o += 3) : d == 18 && (L = 11 + kA(t, o, 127), o += 7); L--; ) + f[S++] = G; } } - var K = G.subarray(0, p), Z = G.subarray(p); - h = dI(K), w = dI(Z), r = Fg(K, h, 1), c = Fg(Z, w, 1); + var T = f.subarray(0, m), H = f.subarray(m); + h = ue(T), l = ue(H), C = xt(T, h, 1), c = xt(H, l, 1); } else - FA(1); + xA(1); else { - var l = lQ(s) + 4, d = g[l - 4] | g[l - 3] << 8, u = l + d; - if (u > Q) { - i && FA(0); + var d = Qi(o) + 4, p = t[d - 4] | t[d - 3] << 8, y = d + p; + if (y > i) { + g && xA(0); break; } - t && e(o + d), I.set(g.subarray(l, u), o), A.b = o += d, A.p = s = u * 8, A.f = n; + r && I(E + p), e.set(t.subarray(d, y), E), A.b = E += p, A.p = o = y * 8, A.f = Q; continue; } - if (s > D) { - i && FA(0); + if (o > u) { + g && xA(0); break; } } - t && e(o + 131072); - for (var QA = (1 << h) - 1, z = (1 << w) - 1, AA = s; ; AA = s) { - var U = r[GI(g, s) & QA], $ = U >> 4; - if (s += U & 15, s > D) { - i && FA(0); + r && I(E + 131072); + for (var iA = (1 << h) - 1, P = (1 << l) - 1, AA = o; ; AA = o) { + var G = C[de(t, o) & iA], j = G >> 4; + if (o += G & 15, o > u) { + g && xA(0); break; } - if (U || FA(2), $ < 256) - I[o++] = $; - else if ($ == 256) { - AA = s, r = null; + if (G || xA(2), j < 256) + e[E++] = j; + else if (j == 256) { + AA = o, C = null; break; } else { - var P = $ - 254; - if ($ > 264) { - var k = $ - 257, j = oQ[k]; - P = fA(g, s, (1 << j) - 1) + wQ[k], s += j; + var X = j - 254; + if (j > 264) { + var S = j - 257, Z = ai[S]; + X = kA(t, o, (1 << Z) - 1) + Ii[S], o += Z; } - var V = c[GI(g, s) & z], x = V >> 4; - V || FA(3), s += V & 15; - var Z = _i[x]; - if (x > 3) { - var j = rQ[x]; - Z += GI(g, s) & (1 << j) - 1, s += j; + var _ = c[de(t, o) & P], v = _ >> 4; + _ || xA(3), o += _ & 15; + var H = qg[v]; + if (v > 3) { + var Z = ri[v]; + H += de(t, o) & (1 << Z) - 1, o += Z; } - if (s > D) { - i && FA(0); + if (o > u) { + g && xA(0); break; } - t && e(o + 131072); - var uA = o + P; - if (o < Z) { - var iA = C - Z, b = Math.min(Z, uA); - for (iA + o < 0 && FA(3); o < b; ++o) - I[o] = B[iA + o]; + r && I(E + 131072); + var wA = E + X; + if (E < H) { + var gA = n - H, J = Math.min(H, wA); + for (gA + E < 0 && xA(3); E < J; ++E) + e[E] = s[gA + E]; } - for (; o < uA; ++o) - I[o] = I[o - Z]; + for (; E < wA; ++E) + e[E] = e[E - H]; } } - A.l = r, A.p = AA, A.b = o, A.f = n, r && (n = 1, A.m = h, A.d = c, A.n = w); - } while (!n); - return o != I.length && E ? zg(I, 0, o) : I.subarray(0, o); -}, Bs = /* @__PURE__ */ new cA(0), Qs = function(g) { - (g[0] != 31 || g[1] != 139 || g[2] != 8) && FA(6, "invalid gzip data"); - var A = g[3], I = 10; - A & 4 && (I += (g[10] | g[11] << 8) + 2); - for (var B = (A >> 3 & 1) + (A >> 4 & 1); B > 0; B -= !g[I++]) + A.l = C, A.p = AA, A.b = E, A.f = Q, C && (Q = 1, A.m = h, A.d = c, A.n = l); + } while (!Q); + return E != e.length && a ? _t(e, 0, E) : e.subarray(0, E); +}, Zg = /* @__PURE__ */ new cA(0), Og = function(t) { + (t[0] != 31 || t[1] != 139 || t[2] != 8) && xA(6, "invalid gzip data"); + var A = t[3], e = 10; + A & 4 && (e += (t[10] | t[11] << 8) + 2); + for (var s = (A >> 3 & 1) + (A >> 4 & 1); s > 0; s -= !t[e++]) ; - return I + (A & 2); -}, MI = /* @__PURE__ */ function() { - function g(A, I) { - typeof A == "function" && (I = A, A = {}), this.ondata = I; - var B = A && A.dictionary && A.dictionary.subarray(-32768); - this.s = { i: 0, b: B ? B.length : 0 }, this.o = new cA(32768), this.p = new cA(0), B && this.o.set(B); + return e + (A & 2); +}, we = /* @__PURE__ */ function() { + function t(A, e) { + typeof A == "function" && (e = A, A = {}), this.ondata = e; + var s = A && A.dictionary && A.dictionary.subarray(-32768); + this.s = { i: 0, b: s ? s.length : 0 }, this.o = new cA(32768), this.p = new cA(0), s && this.o.set(s); } - return g.prototype.e = function(A) { - if (this.ondata || FA(5), this.d && FA(4), !this.p.length) + return t.prototype.e = function(A) { + if (this.ondata || xA(5), this.d && xA(4), !this.p.length) this.p = A; else if (A.length) { - var I = new cA(this.p.length + A.length); - I.set(this.p), I.set(A, this.p.length), this.p = I; + var e = new cA(this.p.length + A.length); + e.set(this.p), e.set(A, this.p.length), this.p = e; } - }, g.prototype.c = function(A) { + }, t.prototype.c = function(A) { this.s.i = +(this.d = A || !1); - var I = this.s.b, B = Is(this.p, this.s, this.o); - this.ondata(zg(B, I, this.s.b), this.d), this.o = zg(B, this.s.b - 32768), this.s.b = this.o.length, this.p = zg(this.p, this.s.p / 8 | 0), this.s.p &= 7; - }, g.prototype.push = function(A, I) { - this.e(A), this.c(I); - }, g; -}(), yQ = /* @__PURE__ */ function() { - function g(A, I) { - this.v = 1, this.r = 0, MI.call(this, A, I); + var e = this.s.b, s = Pg(this.p, this.s, this.o); + this.ondata(_t(s, e, this.s.b), this.d), this.o = _t(s, this.s.b - 32768), this.s.b = this.o.length, this.p = _t(this.p, this.s.p / 8 | 0), this.s.p &= 7; + }, t.prototype.push = function(A, e) { + this.e(A), this.c(e); + }, t; +}(), Ei = /* @__PURE__ */ function() { + function t(A, e) { + this.v = 1, this.r = 0, we.call(this, A, e); } - return g.prototype.push = function(A, I) { - if (MI.prototype.e.call(this, A), this.r += A.length, this.v) { - var B = this.p.subarray(this.v - 1), Q = B.length > 3 ? Qs(B) : 4; - if (Q > B.length) { - if (!I) + return t.prototype.push = function(A, e) { + if (we.prototype.e.call(this, A), this.r += A.length, this.v) { + var s = this.p.subarray(this.v - 1), i = s.length > 3 ? Og(s) : 4; + if (i > s.length) { + if (!e) return; - } else this.v > 1 && this.onmember && this.onmember(this.r - B.length); - this.p = B.subarray(Q), this.v = 0; + } else this.v > 1 && this.onmember && this.onmember(this.r - s.length); + this.p = s.subarray(i), this.v = 0; } - MI.prototype.c.call(this, I), this.s.f && !this.s.l && !I && (this.v = lQ(this.s.p) + 9, this.s = { i: 0 }, this.o = new cA(0), this.push(new cA(0), I)); - }, g; -}(), Cs = typeof TextDecoder < "u" && /* @__PURE__ */ new TextDecoder(), Es = 0; + we.prototype.c.call(this, e), this.s.f && !this.s.l && !e && (this.v = Qi(this.s.p) + 9, this.s = { i: 0 }, this.o = new cA(0), this.push(new cA(0), e)); + }, t; +}(), Wg = typeof TextDecoder < "u" && /* @__PURE__ */ new TextDecoder(), Xg = 0; try { - Cs.decode(Bs, { stream: !0 }), Es = 1; + Wg.decode(Zg, { stream: !0 }), Xg = 1; } catch { } -const Kg = new Float32Array(1), eI = new Uint32Array(Kg.buffer); -function ts(g) { - return Kg[0] = g, eI[0]; +const Yt = new Float32Array(1), ae = new Uint32Array(Yt.buffer); +function $g(t) { + return Yt[0] = t, ae[0]; } -function is(g) { - return eI[0] = g, Kg[0]; +function jg(t) { + return ae[0] = t, Yt[0]; } -function Eg(g) { - Kg[0] = g; - const A = eI[0], I = A >> 31 & 1, B = A >> 23 & 255, Q = A & 8388607, C = I << 15; - if (B === 255) - return Q !== 0 ? C | 32767 : C | 31744; - const E = B - 127 + 15; - if (E >= 31) - return C | 31744; - if (E <= 0) { - if (E < -10) - return C; - const i = (Q | 8388608) >> 1 - E + 13; - return C | i; +function nt(t) { + Yt[0] = t; + const A = ae[0], e = A >> 31 & 1, s = A >> 23 & 255, i = A & 8388607, n = e << 15; + if (s === 255) + return i !== 0 ? n | 32767 : n | 31744; + const a = s - 127 + 15; + if (a >= 31) + return n | 31744; + if (a <= 0) { + if (a < -10) + return n; + const g = (i | 8388608) >> 1 - a + 13; + return n | g; } - const t = Q >> 13; - return C | E << 10 | t; + const r = i >> 13; + return n | a << 10 | r; } -function MA(g) { - const A = g >> 15 & 1, I = g >> 10 & 31, B = g & 1023; - let Q; - if (I === 0) - if (B === 0) - Q = A << 31; +function DA(t) { + const A = t >> 15 & 1, e = t >> 10 & 31, s = t & 1023; + let i; + if (e === 0) + if (s === 0) + i = A << 31; else { - let C = B, E = -14; - for (; (C & 1024) === 0; ) - C <<= 1, E--; - C &= 1023; - const t = E + 127, i = C << 13; - Q = A << 31 | t << 23 | i; + let n = s, a = -14; + for (; (n & 1024) === 0; ) + n <<= 1, a--; + n &= 1023; + const r = a + 127, g = n << 13; + i = A << 31 | r << 23 | g; } - else if (I === 31) - B === 0 ? Q = A << 31 | 2139095040 : Q = A << 31 | 2143289344; + else if (e === 31) + s === 0 ? i = A << 31 | 2139095040 : i = A << 31 | 2143289344; else { - const C = I - 15 + 127, E = B << 13; - Q = A << 31 | C << 23 | E; + const n = e - 15 + 127, a = s << 13; + i = A << 31 | n << 23 | a; } - return eI[0] = Q, Kg[0]; + return ae[0] = i, Yt[0]; } -function VA(g) { - return Math.max(0, Math.min(255, Math.round(g * 255))); +function qA(t) { + return Math.max(0, Math.min(255, Math.round(t * 255))); } -function jg(g) { - return Math.max(-127, Math.min(127, Math.round(g * 127))); +function Vt(t) { + return Math.max(-127, Math.min(127, Math.round(t * 127))); } -function ss(g) { - return g / 255; +function Ao(t) { + return t / 255; } -function es(g) { - return g / 127; +function to(t) { + return t / 127; } -class as { +class eo { // Create a DataCache with a given function that fetches data not in the cache. constructor({ asyncFetch: A, - maxItems: I = 5 + maxItems: e = 5 }) { - this.asyncFetch = A, this.maxItems = I, this.items = []; + this.asyncFetch = A, this.maxItems = e, this.items = []; } // Fetch data for the key, returning cached data if available. async getFetch(A) { - const I = this.items.findIndex((Q) => Q.key === A); - if (I >= 0) { - const Q = this.items.splice(I, 1)[0]; - return this.items.push(Q), Q.data; + const e = this.items.findIndex((i) => i.key === A); + if (e >= 0) { + const i = this.items.splice(e, 1)[0]; + return this.items.push(i), i.data; } - const B = await this.asyncFetch(A); - for (this.items.push({ key: A, data: B }); this.items.length > this.maxItems; ) + const s = await this.asyncFetch(A); + for (this.items.push({ key: A, data: s }); this.items.length > this.maxItems; ) this.items.shift(); - return B; + return s; } } -function ns(g, A) { - const I = Object.entries(g).map(([B, Q]) => [ - B, - A(Q, B) +function so(t, A) { + const e = Object.entries(t).map(([s, i]) => [ + s, + A(i, s) ]); - return Object.fromEntries(I); + return Object.fromEntries(e); } -function os(g, A) { - const I = Object.entries(g).map(([B, Q]) => [B, A(Q, B)]).filter(([B, Q]) => Q !== void 0); - return Object.fromEntries(I); +function io(t, A) { + const e = Object.entries(t).map(([s, i]) => [s, A(i, s)]).filter(([s, i]) => i !== void 0); + return Object.fromEntries(e); } -function uQ(g) { - const A = [], I = /* @__PURE__ */ new Set(); - function B(Q) { - Q && typeof Q == "object" && !I.has(Q) && (I.add(Q), Q instanceof ArrayBuffer ? A.push(Q) : ArrayBuffer.isView(Q) ? A.push(Q.buffer) : Array.isArray(Q) ? Q.forEach(B) : Object.values(Q).forEach(B)); +function Ci(t) { + const A = [], e = /* @__PURE__ */ new Set(); + function s(i) { + i && typeof i == "object" && !e.has(i) && (e.add(i), i instanceof ArrayBuffer ? A.push(i) : ArrayBuffer.isView(i) ? A.push(i.buffer) : Array.isArray(i) ? i.forEach(s) : Object.values(i).forEach(s)); } - return B(g), A; + return s(t), A; } -function rs(g, A) { - return new Array(g).fill(null).map((I, B) => A(B)); +function no(t, A) { + return new Array(t).fill(null).map((e, s) => A(s)); } -class dQ { +class ci { constructor({ // Allocate a new item with the given args allocate: A, // Dispose of an item (optional, if GC is enough) - dispose: I, + dispose: e, // Check if an existing item in the list is valid for the given args, // allowing you to store heterogeneous items in the list. - valid: B + valid: s }) { - this.items = [], this.allocate = A, this.dispose = I, this.valid = B; + this.items = [], this.allocate = A, this.dispose = e, this.valid = s; } // Allocate a new item from the free list, first checking if a existing item // on the freelist is valid for the given args. alloc(A) { for (; ; ) { - const I = this.items.pop(); - if (!I) + const e = this.items.pop(); + if (!e) break; - if (this.valid(I, A)) - return I; - this.dispose && this.dispose(I); + if (this.valid(e, A)) + return e; + this.dispose && this.dispose(e); } return this.allocate(A); } @@ -2045,152 +1923,152 @@ class dQ { this.dispose && this.dispose(A), A = this.items.pop(); } } -function JI(g, A, I, B, Q, C, E, t, i, e, n, s, o, r, c, h) { - const w = VA(r), D = VA(c), y = VA(h), l = VA(o), d = WI( - new a.Quaternion(i, e, n, s) - ), u = d & 255, p = d >>> 8 & 255, m = d >>> 16 & 255, M = C === 0 ? 0 : Math.min( +function fe(t, A, e, s, i, n, a, r, g, I, Q, o, E, C, c, h) { + const l = qA(C), u = qA(c), w = qA(h), d = qA(E), p = Je( + new B.Quaternion(g, I, Q, o) + ), y = p & 255, m = p >>> 8 & 255, F = p >>> 16 & 255, D = n === 0 ? 0 : Math.min( 255, Math.max( 0, - Math.round((Math.log(C) - HA) / TA) + 1 + Math.round((Math.log(n) - JA) / _A) + 1 ) - ), G = E === 0 ? 0 : Math.min( + ), f = a === 0 ? 0 : Math.min( 255, Math.max( 0, - Math.round((Math.log(E) - HA) / TA) + 1 + Math.round((Math.log(a) - JA) / _A) + 1 ) - ), J = t === 0 ? 0 : Math.min( + ), U = r === 0 ? 0 : Math.min( 255, Math.max( 0, - Math.round((Math.log(t) - HA) / TA) + 1 + Math.round((Math.log(r) - JA) / _A) + 1 ) - ), k = Eg(I), N = Eg(B), Y = Eg(Q), F = A * 4; - g[F] = w | D << 8 | y << 16 | l << 24, g[F + 1] = k | N << 16, g[F + 2] = Y | u << 16 | p << 24, g[F + 3] = M | G << 8 | J << 16 | m << 24; + ), S = nt(e), M = nt(s), b = nt(i), N = A * 4; + t[N] = l | u << 8 | w << 16 | d << 24, t[N + 1] = S | M << 16, t[N + 2] = b | y << 16 | m << 24, t[N + 3] = D | f << 8 | U << 16 | F << 24; } -function cs(g, A, I, B, Q) { - const C = Eg(I), E = Eg(B), t = Eg(Q), i = A * 4; - g[i + 1] = C | E << 16, g[i + 2] = t | g[i + 2] & 4294901760; +function ao(t, A, e, s, i) { + const n = nt(e), a = nt(s), r = nt(i), g = A * 4; + t[g + 1] = n | a << 16, t[g + 2] = r | t[g + 2] & 4294901760; } -function hs(g, A, I, B, Q) { - const C = I === 0 ? 0 : Math.min( +function ro(t, A, e, s, i) { + const n = e === 0 ? 0 : Math.min( 255, Math.max( 0, - Math.round((Math.log(I) - HA) / TA) + 1 + Math.round((Math.log(e) - JA) / _A) + 1 ) - ), E = B === 0 ? 0 : Math.min( + ), a = s === 0 ? 0 : Math.min( 255, Math.max( 0, - Math.round((Math.log(B) - HA) / TA) + 1 + Math.round((Math.log(s) - JA) / _A) + 1 ) - ), t = Q === 0 ? 0 : Math.min( + ), r = i === 0 ? 0 : Math.min( 255, Math.max( 0, - Math.round((Math.log(Q) - HA) / TA) + 1 + Math.round((Math.log(i) - JA) / _A) + 1 ) - ), i = A * 4; - g[i + 3] = C | E << 8 | t << 16 | g[i + 3] & 4278190080; + ), g = A * 4; + t[g + 3] = n | a << 8 | r << 16 | t[g + 3] & 4278190080; } -function ws(g, A, I, B, Q, C) { - const E = WI( - new a.Quaternion(I, B, Q, C) - ), t = E & 255, i = E >>> 8 & 255, e = E >>> 16 & 255, n = A * 4; - g[n + 2] = g[n + 2] & 65535 | t << 16 | i << 24, g[n + 3] = g[n + 3] & 16777215 | e << 24; +function go(t, A, e, s, i, n) { + const a = Je( + new B.Quaternion(e, s, i, n) + ), r = a & 255, g = a >>> 8 & 255, I = a >>> 16 & 255, Q = A * 4; + t[Q + 2] = t[Q + 2] & 65535 | r << 16 | g << 24, t[Q + 3] = t[Q + 3] & 16777215 | I << 24; } -function Ds(g, A, I, B, Q) { - const C = VA(I), E = VA(B), t = VA(Q), i = A * 4; - g[i] = C | E << 8 | t << 16 | g[i] & 4278190080; +function oo(t, A, e, s, i) { + const n = qA(e), a = qA(s), r = qA(i), g = A * 4; + t[g] = n | a << 8 | r << 16 | t[g] & 4278190080; } -function ls(g, A, I) { - const B = VA(I), Q = A * 4; - g[Q] = g[Q] & 16777215 | B << 24; +function Io(t, A, e) { + const s = qA(e), i = A * 4; + t[i] = t[i] & 16777215 | s << 24; } -const ys = new a.Vector3(), us = new a.Vector3(), ds = new a.Quaternion(), Gs = new a.Color(), Ms = { - center: ys, - scales: us, - quaternion: ds, - color: Gs, +const Bo = new B.Vector3(), Qo = new B.Vector3(), Eo = new B.Quaternion(), Co = new B.Color(), co = { + center: Bo, + scales: Qo, + quaternion: Eo, + color: Co, opacity: 0 }; -function AI(g, A) { - const I = Ms, B = A * 4, Q = g[B], C = g[B + 1], E = g[B + 2], t = g[B + 3]; - I.color.set( - (Q & 255) / 255, - (Q >>> 8 & 255) / 255, - (Q >>> 16 & 255) / 255 - ), I.opacity = (Q >>> 24 & 255) / 255, I.center.set( - MA(C & 65535), - MA(C >>> 16 & 65535), - MA(E & 65535) +function me(t, A) { + const e = co, s = A * 4, i = t[s], n = t[s + 1], a = t[s + 2], r = t[s + 3]; + e.color.set( + (i & 255) / 255, + (i >>> 8 & 255) / 255, + (i >>> 16 & 255) / 255 + ), e.opacity = (i >>> 24 & 255) / 255, e.center.set( + DA(n & 65535), + DA(n >>> 16 & 65535), + DA(a & 65535) ); - const i = t & 255; - I.scales.x = i === 0 ? 0 : Math.exp(HA + (i - 1) * TA); - const e = t >>> 8 & 255; - I.scales.y = e === 0 ? 0 : Math.exp(HA + (e - 1) * TA); - const n = t >>> 16 & 255; - I.scales.z = n === 0 ? 0 : Math.exp(HA + (n - 1) * TA); - const s = E >>> 16 & 65535 | t >>> 8 & 16711680; - return RQ(s, I.quaternion), I; + const g = r & 255; + e.scales.x = g === 0 ? 0 : Math.exp(JA + (g - 1) * _A); + const I = r >>> 8 & 255; + e.scales.y = I === 0 ? 0 : Math.exp(JA + (I - 1) * _A); + const Q = r >>> 16 & 255; + e.scales.z = Q === 0 ? 0 : Math.exp(JA + (Q - 1) * _A); + const o = a >>> 16 & 65535 | r >>> 8 & 16711680; + return pi(o, e.quaternion), e; } -function dA(g) { - const A = X, I = Math.max( - eB, - Math.min(WA, Math.ceil(g / A)) - ), B = Math.ceil(g / (A * I)), Q = A * I * B; - return { width: A, height: I, depth: B, maxSplats: Q }; +function yA(t) { + const A = O, e = Math.max( + ss, + Math.min(XA, Math.ceil(t / A)) + ), s = Math.ceil(t / (A * e)), i = A * e * s; + return { width: A, height: e, depth: s, maxSplats: i }; } -function Ns(g) { - const A = X, I = Math.max( - eB, - Math.min(WA, Math.ceil(g / A)) - ), B = Math.ceil(g / (A * I)); - return A * I * B; +function ho(t) { + const A = O, e = Math.max( + ss, + Math.min(XA, Math.ceil(t / A)) + ), s = Math.ceil(t / (A * e)); + return A * e * s; } -function ps() { +function lo() { return navigator.maxTouchPoints > 0 ? !0 : /Mobi|Android|iPhone|iPad|iPod|Opera Mini|IEMobile/.test( navigator.userAgent ); } -function ks() { +function uo() { return /Android/.test(navigator.userAgent); } -function Fs() { +function wo() { return /Oculus/.test(navigator.userAgent); } -function Rs(g, A, I) { - const B = new Uint8Array(A * 4); - for (let Q = 0; Q < I / 2; Q++) { - const C = Q * A * 4, E = (I - 1 - Q) * A * 4; - B.set(g.subarray(C, C + A * 4)), g.set( - g.subarray(E, E + A * 4), - C - ), g.set(B, E); +function yo(t, A, e) { + const s = new Uint8Array(A * 4); + for (let i = 0; i < e / 2; i++) { + const n = i * A * 4, a = (e - 1 - i) * A * 4; + s.set(t.subarray(n, n + A * 4)), t.set( + t.subarray(a, a + A * 4), + n + ), t.set(s, a); } - return g; + return t; } -function Js(g, A, I) { - const B = document.createElement("canvas"); - B.width = A, B.height = I; - const Q = B.getContext("2d"); - if (!Q) +function po(t, A, e) { + const s = document.createElement("canvas"); + s.width = A, s.height = e; + const i = s.getContext("2d"); + if (!i) throw new Error("Can't get 2d context"); - const C = Q.createImageData(A, I); - return C.data.set(g), Q.putImageData(C, 0, 0), B.toDataURL("image/png"); + const n = i.createImageData(A, e); + return n.data.set(t), i.putImageData(n, 0, 0), s.toDataURL("image/png"); } -function GQ(g) { - const A = new a.Clock(g.autoStart); - return A.startTime = g.startTime, A.oldTime = g.oldTime, A.elapsedTime = g.elapsedTime, A.running = g.running, A; +function hi(t) { + const A = new B.Clock(t.autoStart); + return A.startTime = t.startTime, A.oldTime = t.oldTime, A.elapsedTime = t.elapsedTime, A.running = t.running, A; } -function ms(g) { +function Do(t) { return Object.fromEntries( - Object.entries(g).filter(([A, I]) => I !== void 0) + Object.entries(t).filter(([A, e]) => e !== void 0) ); } -const MQ = aA(` +const li = BA(` precision highp float; in vec3 position; @@ -2199,1330 +2077,1330 @@ const MQ = aA(` gl_Position = vec4(position.xy, 0.0, 1.0); } `); -function NQ(g) { - const A = new a.Vector3(); - for (const I of g) - A.add(I); - return A.divideScalar(g.length); +function ui(t) { + const A = new B.Vector3(); + for (const e of t) + A.add(e); + return A.divideScalar(t.length); } -function pQ(g) { - if (g.length === 0) - return new a.Quaternion(); - const A = g[0].clone(); - for (let I = 1; I < g.length; I++) - g[I].dot(g[0]) < 0 ? (A.x -= g[I].x, A.y -= g[I].y, A.z -= g[I].z, A.w -= g[I].w) : (A.x += g[I].x, A.y += g[I].y, A.z += g[I].z, A.w += g[I].w); +function di(t) { + if (t.length === 0) + return new B.Quaternion(); + const A = t[0].clone(); + for (let e = 1; e < t.length; e++) + t[e].dot(t[0]) < 0 ? (A.x -= t[e].x, A.y -= t[e].y, A.z -= t[e].z, A.w -= t[e].w) : (A.x += t[e].x, A.y += t[e].y, A.z += t[e].z, A.w += t[e].w); return A.normalize(); } -function kQ(g, A) { - const I = new a.Vector3(0, 0, 0).applyMatrix4(g), B = new a.Vector3(0, 0, 0).applyMatrix4(A), Q = new a.Vector3(0, 0, -1).applyMatrix4(g).sub(I).normalize(), C = new a.Vector3(0, 0, -1).applyMatrix4(A).sub(B).normalize(), E = I.distanceTo(B), t = Q.dot(C); - return { distance: E, coincidence: t }; +function wi(t, A) { + const e = new B.Vector3(0, 0, 0).applyMatrix4(t), s = new B.Vector3(0, 0, 0).applyMatrix4(A), i = new B.Vector3(0, 0, -1).applyMatrix4(t).sub(e).normalize(), n = new B.Vector3(0, 0, -1).applyMatrix4(A).sub(s).normalize(), a = e.distanceTo(s), r = i.dot(n); + return { distance: a, coincidence: r }; } -function fs({ - matrix1: g, +function fo({ + matrix1: t, matrix2: A, - maxDistance: I + maxDistance: e }) { - const B = new a.Vector3(0, 0, 0).applyMatrix4(g), Q = new a.Vector3(0, 0, 0).applyMatrix4(A); - return B.distanceTo(Q) <= I; + const s = new B.Vector3(0, 0, 0).applyMatrix4(t), i = new B.Vector3(0, 0, 0).applyMatrix4(A); + return s.distanceTo(i) <= e; } -function Ss({ - matrix1: g, +function mo({ + matrix1: t, matrix2: A, - maxDistance: I, - minCoincidence: B + maxDistance: e, + minCoincidence: s }) { - const { distance: Q, coincidence: C } = kQ(g, A); - return Q <= I && (B == null || C >= B); + const { distance: i, coincidence: n } = wi(t, A); + return i <= e && (s == null || n >= s); } -function FQ(g, A) { - const [I, B] = [new a.Vector3(), new a.Quaternion()], [Q, C] = [new a.Vector3(), new a.Quaternion()]; - g.decompose(I, B, new a.Vector3()), A.decompose(Q, C, new a.Vector3()); - const E = I.distanceTo(Q), t = Math.abs(B.dot(C)); - return { distance: E, coorient: t }; +function yi(t, A) { + const [e, s] = [new B.Vector3(), new B.Quaternion()], [i, n] = [new B.Vector3(), new B.Quaternion()]; + t.decompose(e, s, new B.Vector3()), A.decompose(i, n, new B.Vector3()); + const a = e.distanceTo(i), r = Math.abs(s.dot(n)); + return { distance: a, coorient: r }; } -function gI({ - matrix1: g, +function Xt({ + matrix1: t, matrix2: A, - maxDistance: I, - minCoorient: B + maxDistance: e, + minCoorient: s }) { - const { distance: Q, coorient: C } = FQ(g, A); - return Q <= I && (B == null || C >= B); + const { distance: i, coorient: n } = yi(t, A); + return i <= e && (s == null || n >= s); } -function Ys(g, A = 1e-3) { - return Math.abs(g) < A ? 0 : Math.sign(g); +function Mo(t, A = 1e-3) { + return Math.abs(t) < A ? 0 : Math.sign(t); } -function Us(g) { - const A = g.w < 0, I = jg(A ? -g.x : g.x), B = jg(A ? -g.y : g.y), Q = jg(A ? -g.z : g.z), C = I & 255, E = B & 255, t = Q & 255; - return C | E << 8 | t << 16; +function xo(t) { + const A = t.w < 0, e = Vt(A ? -t.x : t.x), s = Vt(A ? -t.y : t.y), i = Vt(A ? -t.z : t.z), n = e & 255, a = s & 255, r = i & 255; + return n | a << 8 | r << 16; } -function xs(g, A) { - const I = g << 24 >> 24, B = g << 16 >> 24, Q = g << 8 >> 24; - A.set(I / 127, B / 127, Q / 127, 0); - const C = A.x * A.x + A.y * A.y + A.z * A.z; - return A.w = Math.sqrt(Math.max(0, 1 - C)), A; +function So(t, A) { + const e = t << 24 >> 24, s = t << 16 >> 24, i = t << 8 >> 24; + A.set(e / 127, s / 127, i / 127, 0); + const n = A.x * A.x + A.y * A.y + A.z * A.z; + return A.w = Math.sqrt(Math.max(0, 1 - n)), A; } -function WI(g) { - const A = g.clone().normalize(); +function Je(t) { + const A = t.clone().normalize(); A.w < 0 && A.set(-A.x, -A.y, -A.z, -A.w); - const I = 2 * Math.acos(A.w), B = Math.sqrt( + const e = 2 * Math.acos(A.w), s = Math.sqrt( A.x * A.x + A.y * A.y + A.z * A.z - ), Q = B < 1e-6 ? new a.Vector3(1, 0, 0) : new a.Vector3(A.x, A.y, A.z).divideScalar(B), C = Math.abs(Q.x) + Math.abs(Q.y) + Math.abs(Q.z); - let E = Q.x / C, t = Q.y / C; - if (Q.z < 0) { - const r = E; - E = (1 - Math.abs(t)) * (E >= 0 ? 1 : -1), t = (1 - Math.abs(r)) * (t >= 0 ? 1 : -1); + ), i = s < 1e-6 ? new B.Vector3(1, 0, 0) : new B.Vector3(A.x, A.y, A.z).divideScalar(s), n = Math.abs(i.x) + Math.abs(i.y) + Math.abs(i.z); + let a = i.x / n, r = i.y / n; + if (i.z < 0) { + const C = a; + a = (1 - Math.abs(r)) * (a >= 0 ? 1 : -1), r = (1 - Math.abs(C)) * (r >= 0 ? 1 : -1); } - const i = E * 0.5 + 0.5, e = t * 0.5 + 0.5, n = Math.round(i * 255), s = Math.round(e * 255); - return Math.round(I * (255 / Math.PI)) << 16 | s << 8 | n; + const g = a * 0.5 + 0.5, I = r * 0.5 + 0.5, Q = Math.round(g * 255), o = Math.round(I * 255); + return Math.round(e * (255 / Math.PI)) << 16 | o << 8 | Q; } -function RQ(g, A) { - const I = g & 255, B = g >>> 8 & 255, Q = g >>> 16 & 255, C = I / 255, E = B / 255; - let t = (C - 0.5) * 2, i = (E - 0.5) * 2; - const e = 1 - (Math.abs(t) + Math.abs(i)), n = Math.max(-e, 0); - t += t >= 0 ? -n : n, i += i >= 0 ? -n : n; - const s = new a.Vector3(t, i, e).normalize(), r = Q / 255 * Math.PI * 0.5, c = Math.sin(r), h = Math.cos(r); - return A.set(s.x * c, s.y * c, s.z * c, h), A; +function pi(t, A) { + const e = t & 255, s = t >>> 8 & 255, i = t >>> 16 & 255, n = e / 255, a = s / 255; + let r = (n - 0.5) * 2, g = (a - 0.5) * 2; + const I = 1 - (Math.abs(r) + Math.abs(g)), Q = Math.max(-I, 0); + r += r >= 0 ? -Q : Q, g += g >= 0 ? -Q : Q; + const o = new B.Vector3(r, g, I).normalize(), C = i / 255 * Math.PI * 0.5, c = Math.sin(C), h = Math.cos(C); + return A.set(o.x * c, o.y * c, o.z * c, h), A; } -function Ls(g) { - const A = g.clone().normalize(), I = 2 * (A.w * A.x + A.y * A.z), B = 1 - 2 * (A.x * A.x + A.y * A.y), Q = Math.atan2(I, B), C = 2 * (A.w * A.y - A.z * A.x), E = Math.abs(C) >= 1 ? Math.sign(C) * (Math.PI / 2) : Math.asin(C), t = 2 * (A.w * A.z + A.x * A.y), i = 1 - 2 * (A.y * A.y + A.z * A.z), e = Math.atan2(t, i), n = (Q + Math.PI) / (2 * Math.PI), s = (E + Math.PI) / (2 * Math.PI), o = (e + Math.PI) / (2 * Math.PI), r = Math.round(n * 255), c = Math.round(s * 255); - return Math.round(o * 255) << 16 | c << 8 | r; +function Fo(t) { + const A = t.clone().normalize(), e = 2 * (A.w * A.x + A.y * A.z), s = 1 - 2 * (A.x * A.x + A.y * A.y), i = Math.atan2(e, s), n = 2 * (A.w * A.y - A.z * A.x), a = Math.abs(n) >= 1 ? Math.sign(n) * (Math.PI / 2) : Math.asin(n), r = 2 * (A.w * A.z + A.x * A.y), g = 1 - 2 * (A.y * A.y + A.z * A.z), I = Math.atan2(r, g), Q = (i + Math.PI) / (2 * Math.PI), o = (a + Math.PI) / (2 * Math.PI), E = (I + Math.PI) / (2 * Math.PI), C = Math.round(Q * 255), c = Math.round(o * 255); + return Math.round(E * 255) << 16 | c << 8 | C; } -function bs(g, A) { - const I = g & 255, B = g >>> 8 & 255, Q = g >>> 16 & 255, C = I / 255, E = B / 255, t = Q / 255, i = C * (2 * Math.PI) - Math.PI, e = E * (2 * Math.PI) - Math.PI, n = t * (2 * Math.PI) - Math.PI, s = Math.cos(i * 0.5), o = Math.sin(i * 0.5), r = Math.cos(e * 0.5), c = Math.sin(e * 0.5), h = Math.cos(n * 0.5), w = Math.sin(n * 0.5); - return A.w = s * r * h + o * c * w, A.x = o * r * h - s * c * w, A.y = s * c * h + o * r * w, A.z = s * r * w - o * c * h, A.normalize(), A; +function No(t, A) { + const e = t & 255, s = t >>> 8 & 255, i = t >>> 16 & 255, n = e / 255, a = s / 255, r = i / 255, g = n * (2 * Math.PI) - Math.PI, I = a * (2 * Math.PI) - Math.PI, Q = r * (2 * Math.PI) - Math.PI, o = Math.cos(g * 0.5), E = Math.sin(g * 0.5), C = Math.cos(I * 0.5), c = Math.sin(I * 0.5), h = Math.cos(Q * 0.5), l = Math.sin(Q * 0.5); + return A.w = o * C * h + E * c * l, A.x = E * C * h - o * c * l, A.y = o * c * h + E * C * l, A.z = o * C * l - E * c * h, A.normalize(), A; } -function Zg(g, A, I, B) { - const Q = Math.max(-127, Math.min(127, g * 127)), C = Math.max(-127, Math.min(127, A * 127)), E = Math.max(-127, Math.min(127, I * 127)), t = Math.max(-127, Math.min(127, B * 127)); - return Q & 255 | (C & 255) << 8 | (E & 255) << 16 | (t & 255) << 24; +function Tt(t, A, e, s) { + const i = Math.max(-127, Math.min(127, t * 127)), n = Math.max(-127, Math.min(127, A * 127)), a = Math.max(-127, Math.min(127, e * 127)), r = Math.max(-127, Math.min(127, s * 127)); + return i & 255 | (n & 255) << 8 | (a & 255) << 16 | (r & 255) << 24; } -function Hs(g, A, I) { - const B = A * 2; - for (let Q = 0; Q < 9; ++Q) { - const C = Math.max(-63, Math.min(63, I[Q] * 63)) & 127, E = Q * 7, t = E + 7, i = Math.floor(E / 32), e = E - i * 32, n = C << e & 4294967295; - if (g[B + i] |= n, t > i * 32 + 32) { - const s = C >>> 32 - e & 4294967295; - g[B + i + 1] |= s; +function ko(t, A, e) { + const s = A * 2; + for (let i = 0; i < 9; ++i) { + const n = Math.max(-63, Math.min(63, e[i] * 63)) & 127, a = i * 7, r = a + 7, g = Math.floor(a / 32), I = a - g * 32, Q = n << I & 4294967295; + if (t[s + g] |= Q, r > g * 32 + 32) { + const o = n >>> 32 - I & 4294967295; + t[s + g + 1] |= o; } } } -function Ks(g, A, I) { - g[A * 4 + 0] = Zg( - I[0], - I[1], - I[2], - I[3] - ), g[A * 4 + 1] = Zg( - I[4], - I[5], - I[6], - I[7] - ), g[A * 4 + 2] = Zg( - I[8], - I[9], - I[10], - I[11] - ), g[A * 4 + 3] = Zg( - I[12], - I[13], - I[14], +function Uo(t, A, e) { + t[A * 4 + 0] = Tt( + e[0], + e[1], + e[2], + e[3] + ), t[A * 4 + 1] = Tt( + e[4], + e[5], + e[6], + e[7] + ), t[A * 4 + 2] = Tt( + e[8], + e[9], + e[10], + e[11] + ), t[A * 4 + 3] = Tt( + e[12], + e[13], + e[14], 0 ); } -function Zs(g, A, I) { - const B = A * 4; - for (let Q = 0; Q < 21; ++Q) { - const C = Math.max(-31, Math.min(31, I[Q] * 31)) & 63, E = Q * 6, t = E + 6, i = Math.floor(E / 32), e = E - i * 32, n = C << e & 4294967295; - if (g[B + i] |= n, t > i * 32 + 32) { - const s = C >>> 32 - e & 4294967295; - g[B + i + 1] |= s; +function Ro(t, A, e) { + const s = A * 4; + for (let i = 0; i < 21; ++i) { + const n = Math.max(-31, Math.min(31, e[i] * 31)) & 63, a = i * 6, r = a + 6, g = Math.floor(a / 32), I = a - g * 32, Q = n << I & 4294967295; + if (t[s + g] |= Q, r > g * 32 + 32) { + const o = n >>> 32 - I & 4294967295; + t[s + g + 1] |= o; } } } -function JQ(g, A) { - const I = []; - let B = 0, Q = null; - const C = new yQ((i, e) => { - if (I.push(i), B += i.length, e || B >= A) { - const n = new Uint8Array(B); - let s = 0; - for (const o of I) - n.set(o, s), s += o.length; - Q = n.slice(0, A); +function Di(t, A) { + const e = []; + let s = 0, i = null; + const n = new Ei((g, I) => { + if (e.push(g), s += g.length, I || s >= A) { + const Q = new Uint8Array(s); + let o = 0; + for (const E of e) + Q.set(E, o), o += E.length; + i = Q.slice(0, A); } - }), E = 1024; - let t = 0; - for (; Q == null && t < g.length; ) { - const i = g.slice(t, t + E); - C.push(i, !1), t += E; + }), a = 1024; + let r = 0; + for (; i == null && r < t.length; ) { + const g = t.slice(r, r + a); + n.push(g, !1), r += a; } - if (Q == null && (C.push(new Uint8Array(), !0), Q == null)) + if (i == null && (n.push(new Uint8Array(), !0), i == null)) throw new Error("Failed to decompress partial gzip"); - return Q; + return i; } -class mQ { +class fi { constructor({ fileBytes: A, - chunkBytes: I = 64 * 1024 + chunkBytes: e = 64 * 1024 }) { - this.fileBytes = A, this.chunkBytes = I, this.offset = 0, this.chunks = [], this.totalBytes = 0, this.gunzip = new yQ((B, Q) => { - this.chunks.push(B), this.totalBytes += B.length; + this.fileBytes = A, this.chunkBytes = e, this.offset = 0, this.chunks = [], this.totalBytes = 0, this.gunzip = new Ei((s, i) => { + this.chunks.push(s), this.totalBytes += s.length; }); } read(A) { for (; this.totalBytes < A && this.offset < this.fileBytes.length; ) { - const C = Math.min( + const n = Math.min( this.offset + this.chunkBytes, this.fileBytes.length ); - this.gunzip.push(this.fileBytes.subarray(this.offset, C), !1), this.offset = C; + this.gunzip.push(this.fileBytes.subarray(this.offset, n), !1), this.offset = n; } if (this.totalBytes < A && this.offset >= this.fileBytes.length && this.gunzip.push(new Uint8Array(0), !0), this.totalBytes < A) throw new Error( `Unexpected EOF: needed ${A}, got ${this.totalBytes}` ); - const I = new Uint8Array(this.totalBytes); - let B = 0; - for (const C of this.chunks) - I.set(C, B), B += C.length; - const Q = I.subarray(0, A); - return this.chunks = [I.subarray(A)], this.totalBytes -= A, Q; + const e = new Uint8Array(this.totalBytes); + let s = 0; + for (const n of this.chunks) + e.set(n, s), s += n.length; + const i = e.subarray(0, A); + return this.chunks = [e.subarray(A)], this.totalBytes -= A, i; } } -const Ho = /* @__PURE__ */ Object.freeze(/* @__PURE__ */ Object.defineProperty({ +const FE = /* @__PURE__ */ Object.freeze(/* @__PURE__ */ Object.defineProperty({ __proto__: null, - DataCache: as, - FreeList: dQ, - GunzipReader: mQ, - IDENT_VERTEX_SHADER: MQ, - Sint8ToFloat: es, - Uint8ToFloat: ss, - averagePositions: NQ, - averageQuaternions: pQ, - cloneClock: GQ, - coinciDist: kQ, - computeMaxSplats: Ns, - coorientDist: FQ, - decodeQuatEulerXyz888: bs, - decodeQuatOctXy88R8: RQ, - decodeQuatXyz888: xs, - decompressPartialGzip: JQ, - encodeQuatEulerXyz888: Ls, - encodeQuatOctXy88R8: WI, - encodeQuatXyz888: Us, - encodeSh1Rgb: Hs, - encodeSh2Rgb: Ks, - encodeSh3Rgb: Zs, - epsilonSign: Ys, - flipPixels: Rs, - floatBitsToUint: ts, - floatToSint8: jg, - floatToUint8: VA, - fromHalf: MA, - getArrayBuffers: uQ, - getTextureSize: dA, - isAndroid: ks, - isMobile: ps, - isOculus: Fs, - mapFilterObject: os, - mapObject: ns, - newArray: rs, - omitUndefined: ms, - pixelsToPngUrl: Js, - setPackedSplat: JI, - setPackedSplatCenter: cs, - setPackedSplatOpacity: ls, - setPackedSplatQuat: ws, - setPackedSplatRgb: Ds, - setPackedSplatScales: hs, - toHalf: Eg, - uintBitsToFloat: is, - unpackSplat: AI, - withinCoinciDist: Ss, - withinCoorientDist: gI, - withinDist: fs + DataCache: eo, + FreeList: ci, + GunzipReader: fi, + IDENT_VERTEX_SHADER: li, + Sint8ToFloat: to, + Uint8ToFloat: Ao, + averagePositions: ui, + averageQuaternions: di, + cloneClock: hi, + coinciDist: wi, + computeMaxSplats: ho, + coorientDist: yi, + decodeQuatEulerXyz888: No, + decodeQuatOctXy88R8: pi, + decodeQuatXyz888: So, + decompressPartialGzip: Di, + encodeQuatEulerXyz888: Fo, + encodeQuatOctXy88R8: Je, + encodeQuatXyz888: xo, + encodeSh1Rgb: ko, + encodeSh2Rgb: Uo, + encodeSh3Rgb: Ro, + epsilonSign: Mo, + flipPixels: yo, + floatBitsToUint: $g, + floatToSint8: Vt, + floatToUint8: qA, + fromHalf: DA, + getArrayBuffers: Ci, + getTextureSize: yA, + isAndroid: uo, + isMobile: lo, + isOculus: wo, + mapFilterObject: io, + mapObject: so, + newArray: no, + omitUndefined: Do, + pixelsToPngUrl: po, + setPackedSplat: fe, + setPackedSplatCenter: ao, + setPackedSplatOpacity: Io, + setPackedSplatQuat: go, + setPackedSplatRgb: oo, + setPackedSplatScales: ro, + toHalf: nt, + uintBitsToFloat: jg, + unpackSplat: me, + withinCoinciDist: mo, + withinCoorientDist: Xt, + withinDist: fo }, Symbol.toStringTag, { value: "Module" })); -class VI { +class Ye { constructor({ graph: A, - inputs: I, - outputs: B, - template: Q + inputs: e, + outputs: s, + template: i }) { - this.graph = A, this.template = Q, this.inputs = I ?? {}, this.outputs = B ?? {}; - const C = new wB({ indent: this.template.indent }); - for (const t in this.outputs) - this.outputs[t] && C.declares.add(this.outputs[t]); - const E = A.compile({ + this.graph = A, this.template = i, this.inputs = e ?? {}, this.outputs = s ?? {}; + const n = new Is({ indent: this.template.indent }); + for (const r in this.outputs) + this.outputs[r] && n.declares.add(this.outputs[r]); + const a = A.compile({ inputs: this.inputs, outputs: this.outputs, - compile: C + compile: n }); - this.shader = Q.generate({ globals: C.globals, statements: E }), this.uniforms = C.uniforms, this.updaters = C.updaters; + this.shader = i.generate({ globals: n.globals, statements: a }), this.uniforms = n.uniforms, this.updaters = n.updaters; } prepareMaterial() { - return qs(this); + return Go(this); } update() { for (const A of this.updaters) A(); } } -class TI { +class Te { constructor(A) { - const I = A.match(/^([ \t]*)\{\{\s*GLOBALS\s*\}\}/m), B = A.match(/^([ \t]*)\{\{\s*STATEMENTS\s*\}\}/m); - if (!I || !B) + const e = A.match(/^([ \t]*)\{\{\s*GLOBALS\s*\}\}/m), s = A.match(/^([ \t]*)\{\{\s*STATEMENTS\s*\}\}/m); + if (!e || !s) throw new Error( "Template must contain {{ GLOBALS }} and {{ STATEMENTS }}" ); - this.before = A.substring(0, I.index), this.between = A.substring( - I.index + I[0].length, - B.index + this.before = A.substring(0, e.index), this.between = A.substring( + e.index + e[0].length, + s.index ), this.after = A.substring( - B.index + B[0].length - ), this.indent = B[1]; + s.index + s[0].length + ), this.indent = s[1]; } generate({ globals: A, - statements: I + statements: e }) { return this.before + Array.from(A).join(` -`) + this.between + I.map((B) => this.indent + B).join(` +`) + this.between + e.map((s) => this.indent + s).join(` `) + this.after; } } -const gB = /* @__PURE__ */ new Map(); -function qs(g) { - let A = gB.get(g); - return A || (A = new a.RawShaderMaterial({ - glslVersion: a.GLSL3, - vertexShader: MQ, - fragmentShader: g.shader, - uniforms: g.uniforms - }), gB.set(g, A), A); +const Pe = /* @__PURE__ */ new Map(); +function Go(t) { + let A = Pe.get(t); + return A || (A = new B.RawShaderMaterial({ + glslVersion: B.GLSL3, + vertexShader: li, + fragmentShader: t.shader, + uniforms: t.uniforms + }), Pe.set(t, A), A); } -function XI(g, A, I = "add") { - const B = () => { - throw new Error(`Invalid ${I} types: ${g}, ${A}`); +function He(t, A, e = "add") { + const s = () => { + throw new Error(`Invalid ${e} types: ${t}, ${A}`); }; - if (g === A) return g; - if (g === "int") { - if (wA(A)) return A; - B(); + if (t === A) return t; + if (t === "int") { + if (hA(A)) return A; + s(); } if (A === "int") { - if (wA(g)) return g; - B(); + if (hA(t)) return t; + s(); } - if (g === "uint") { - if (DA(A)) return A; - B(); + if (t === "uint") { + if (lA(A)) return A; + s(); } if (A === "uint") { - if (DA(g)) return g; - B(); + if (lA(t)) return t; + s(); } - if (g === "float") { - if ($A(A)) return A; - B(); + if (t === "float") { + if (jA(A)) return A; + s(); } if (A === "float") { - if ($A(g)) return g; - B(); + if (jA(t)) return t; + s(); } - throw new Error(`Invalid ${I} types: ${g}, ${A}`); + throw new Error(`Invalid ${e} types: ${t}, ${A}`); } -function vs(g, A) { - return XI(g, A, "sub"); +function bo(t, A) { + return He(t, A, "sub"); } -function Ws(g, A) { - const I = () => { - throw new Error(`Invalid mul types: ${g}, ${A}`); - }, B = (Q) => Q; - if (g === "int") { - if (wA(A)) return B(A); - I(); +function vo(t, A) { + const e = () => { + throw new Error(`Invalid mul types: ${t}, ${A}`); + }, s = (i) => i; + if (t === "int") { + if (hA(A)) return s(A); + e(); } if (A === "int") { - if (wA(g)) return B(g); - I(); + if (hA(t)) return s(t); + e(); } - if (g === "uint") { - if (DA(A)) return B(A); - I(); + if (t === "uint") { + if (lA(A)) return s(A); + e(); } if (A === "uint") { - if (DA(g)) return B(g); - I(); + if (lA(t)) return s(t); + e(); } - if (g === "float") { - if ($A(A)) return B(A); - I(); + if (t === "float") { + if (jA(A)) return s(A); + e(); } if (A === "float") { - if ($A(g)) return B(g); - I(); + if (jA(t)) return s(t); + e(); } - if (wA(g) || DA(g) || wA(A) || DA(A)) { - if (g === A) return B(g); - I(); + if (hA(t) || lA(t) || hA(A) || lA(A)) { + if (t === A) return s(t); + e(); } - if (g === "vec2") { - if (A === "vec2" || Ig(A)) return B("vec2"); - if (A === "mat3x2") return B("vec3"); - if (A === "mat4x2") return B("vec4"); - I(); + if (t === "vec2") { + if (A === "vec2" || tt(A)) return s("vec2"); + if (A === "mat3x2") return s("vec3"); + if (A === "mat4x2") return s("vec4"); + e(); } - if (g === "vec3") { - if (A === "mat2x3") return B("vec2"); - if (A === "vec3" || Bg(A)) return B("vec3"); - if (A === "mat4x3") return B("vec4"); - I(); + if (t === "vec3") { + if (A === "mat2x3") return s("vec2"); + if (A === "vec3" || et(A)) return s("vec3"); + if (A === "mat4x3") return s("vec4"); + e(); } - if (g === "vec4") { - if (A === "mat2x4") return B("vec2"); - if (A === "mat3x4") return B("vec3"); - if (A === "vec4" || Qg(A)) return B("vec4"); - I(); + if (t === "vec4") { + if (A === "mat2x4") return s("vec2"); + if (A === "mat3x4") return s("vec3"); + if (A === "vec4" || st(A)) return s("vec4"); + e(); } if (A === "vec2") { - if (Ig(g)) return B("vec2"); - if (g === "mat2x3") return B("vec3"); - if (g === "mat2x4") return B("vec4"); - I(); + if (tt(t)) return s("vec2"); + if (t === "mat2x3") return s("vec3"); + if (t === "mat2x4") return s("vec4"); + e(); } if (A === "vec3") { - if (g === "mat3x2") return B("vec2"); - if (Bg(g)) return B("vec3"); - if (g === "mat3x4") return B("vec4"); - I(); + if (t === "mat3x2") return s("vec2"); + if (et(t)) return s("vec3"); + if (t === "mat3x4") return s("vec4"); + e(); } if (A === "vec4") { - if (g === "mat4x2") return B("vec2"); - if (g === "mat4x3") return B("vec3"); - if (Qg(g)) return B("vec4"); - I(); + if (t === "mat4x2") return s("vec2"); + if (t === "mat4x3") return s("vec3"); + if (st(t)) return s("vec4"); + e(); } - if (Ig(g)) { - if (Ig(A)) return B("mat2"); - if (A === "mat3x2") return B("mat3x2"); - if (A === "mat4x2") return B("mat4x2"); - I(); + if (tt(t)) { + if (tt(A)) return s("mat2"); + if (A === "mat3x2") return s("mat3x2"); + if (A === "mat4x2") return s("mat4x2"); + e(); } - if (g === "mat2x3") { - if (Ig(A)) return B("mat2x3"); - if (A === "mat3x2") return B("mat3"); - if (A === "mat4x2") return B("mat4x3"); - I(); + if (t === "mat2x3") { + if (tt(A)) return s("mat2x3"); + if (A === "mat3x2") return s("mat3"); + if (A === "mat4x2") return s("mat4x3"); + e(); } - if (g === "mat2x4") { - if (Ig(A)) return B("mat2x4"); - if (A === "mat3x2") return B("mat3x4"); - if (A === "mat4x2") return B("mat4"); - I(); + if (t === "mat2x4") { + if (tt(A)) return s("mat2x4"); + if (A === "mat3x2") return s("mat3x4"); + if (A === "mat4x2") return s("mat4"); + e(); } - if (g === "mat3x2") { - if (A === "mat2x3") return B("mat2"); - if (Bg(A)) return B("mat3x2"); - if (A === "mat4x3") return B("mat4x2"); - I(); + if (t === "mat3x2") { + if (A === "mat2x3") return s("mat2"); + if (et(A)) return s("mat3x2"); + if (A === "mat4x3") return s("mat4x2"); + e(); } - if (Bg(g)) { - if (A === "mat2x3") return B("mat2x3"); - if (Bg(A)) return B("mat3"); - if (A === "mat4x3") return B("mat4x3"); - I(); + if (et(t)) { + if (A === "mat2x3") return s("mat2x3"); + if (et(A)) return s("mat3"); + if (A === "mat4x3") return s("mat4x3"); + e(); } - if (g === "mat3x4") { - if (A === "mat2x3") return B("mat2x4"); - if (Bg(A)) return B("mat3x4"); - if (A === "mat4x3") return B("mat4"); - I(); + if (t === "mat3x4") { + if (A === "mat2x3") return s("mat2x4"); + if (et(A)) return s("mat3x4"); + if (A === "mat4x3") return s("mat4"); + e(); } - if (g === "mat4x2") { - if (A === "mat2x4") return B("mat2"); - if (A === "mat3x4") return B("mat3x2"); - if (Qg(A)) return B("mat4x2"); - I(); + if (t === "mat4x2") { + if (A === "mat2x4") return s("mat2"); + if (A === "mat3x4") return s("mat3x2"); + if (st(A)) return s("mat4x2"); + e(); } - if (g === "mat4x3") { - if (A === "mat2x4") return B("mat2x3"); - if (A === "mat3x4") return B("mat3"); - if (Qg(A)) return B("mat4x3"); - I(); + if (t === "mat4x3") { + if (A === "mat2x4") return s("mat2x3"); + if (A === "mat3x4") return s("mat3"); + if (st(A)) return s("mat4x3"); + e(); } - if (Qg(g)) { - if (A === "mat2x4") return B("mat2x4"); - if (A === "mat3x4") return B("mat3x4"); - if (Qg(A)) return B("mat4"); - I(); + if (st(t)) { + if (A === "mat2x4") return s("mat2x4"); + if (A === "mat3x4") return s("mat3x4"); + if (st(A)) return s("mat4"); + e(); } - throw new Error(`Invalid mul types: ${g}, ${A}`); + throw new Error(`Invalid mul types: ${t}, ${A}`); } -function Vs(g, A) { - return XI(g, A, "div"); +function Lo(t, A) { + return He(t, A, "div"); } -function Ts(g, A) { - if (g === A) return g; - if (g === "int") { - if (wA(A)) return A; +function Jo(t, A) { + if (t === A) return t; + if (t === "int") { + if (hA(A)) return A; } else if (A === "int") { - if (wA(g)) return g; - } else if (g === "uint") { - if (DA(A)) return A; - } else if (A === "uint" && DA(g)) - return g; - throw new Error(`Invalid imod types: ${g}, ${A}`); + if (hA(t)) return t; + } else if (t === "uint") { + if (lA(A)) return A; + } else if (A === "uint" && lA(t)) + return t; + throw new Error(`Invalid imod types: ${t}, ${A}`); } -function Xs(g, A) { - if (g === A || A === "float") return g; - throw new Error(`Invalid mod types: ${g}, ${A}`); +function Yo(t, A) { + if (t === A || A === "float") return t; + throw new Error(`Invalid mod types: ${t}, ${A}`); } -function zs(g) { - return g; +function To(t) { + return t; } -function js(g) { - return g; +function Ho(t) { + return t; } -function Os(g) { - return g; +function Ko(t) { + return t; } -function Ps(g) { - return g; +function qo(t) { + return t; } -function _s(g) { - return g; +function zo(t) { + return t; } -function $s(g) { - return g; +function _o(t) { + return t; } -function Ae(g) { - return g; +function Vo(t) { + return t; } -function ge(g) { - return g; +function Po(t) { + return t; } -function Ie(g) { - return g; +function Zo(t) { + return t; } -function Be(g) { - return g; +function Oo(t) { + return t; } -function Qe(g) { - return g; +function Wo(t) { + return t; } -function Ce(g) { - return g; +function Xo(t) { + return t; } -function Ee(g) { - return g; +function $o(t) { + return t; } -function te(g) { - return g; +function jo(t) { + return t; } -function ie(g) { - return g; +function AI(t) { + return t; } -function se(g) { - return g; +function tI(t) { + return t; } -function fQ(g, A, I = "min") { - if (g === A) return g; +function mi(t, A, e = "min") { + if (t === A) return t; if (A === "float") { - if (Yg(g)) return g; + if (Rt(t)) return t; } else if (A === "int") { - if (wA(g)) return g; - } else if (A === "uint" && DA(g)) - return g; - throw new Error(`Invalid ${I} types: ${g}, ${A}`); + if (hA(t)) return t; + } else if (A === "uint" && lA(t)) + return t; + throw new Error(`Invalid ${e} types: ${t}, ${A}`); } -function ee(g, A) { - return fQ(g, A, "max"); +function eI(t, A) { + return mi(t, A, "max"); } -function ae(g, A, I) { +function sI(t, A, e) { if (A === "float") { - if (Yg(g)) return g; + if (Rt(t)) return t; } else if (A === "int") { - if (wA(g)) return g; - } else if (A === "uint" && DA(g)) - return g; - throw new Error(`Invalid clamp types: ${g}, ${A}`); + if (hA(t)) return t; + } else if (A === "uint" && lA(t)) + return t; + throw new Error(`Invalid clamp types: ${t}, ${A}`); } -function ne(g, A, I) { - if (I === g || I === "float" || I === "bool" && g === "float" || I === "bvec2" && g === "vec2" || I === "bvec3" && g === "vec3" || I === "bvec4" && g === "vec4") return g; - throw new Error(`Invalid mix types: ${g}, ${A}, ${I}`); +function iI(t, A, e) { + if (e === t || e === "float" || e === "bool" && t === "float" || e === "bvec2" && t === "vec2" || e === "bvec3" && t === "vec3" || e === "bvec4" && t === "vec4") return t; + throw new Error(`Invalid mix types: ${t}, ${A}, ${e}`); } -function oe(g, A) { - if (g === A || A === "float") return A; - throw new Error(`Invalid step types: ${g}, ${A}`); +function nI(t, A) { + if (t === A || A === "float") return A; + throw new Error(`Invalid step types: ${t}, ${A}`); } -function re(g, A, I) { - if (g === A && (g === I || g === "float")) - return I; - throw new Error(`Invalid smoothstep types: ${g}, ${A}, ${I}`); +function aI(t, A, e) { + if (t === A && (t === e || t === "float")) + return e; + throw new Error(`Invalid smoothstep types: ${t}, ${A}, ${e}`); } -function SQ(g, A = "isNan") { - if (g === "float") return "bool"; - if (g === "vec2") return "bvec2"; - if (g === "vec3") return "bvec3"; - if (g === "vec4") return "bvec4"; - throw new Error(`Invalid ${A} types: ${g}`); +function Mi(t, A = "isNan") { + if (t === "float") return "bool"; + if (t === "vec2") return "bvec2"; + if (t === "vec3") return "bvec3"; + if (t === "vec4") return "bvec4"; + throw new Error(`Invalid ${A} types: ${t}`); } -function ce(g) { - return SQ(g, "isInf"); +function rI(t) { + return Mi(t, "isInf"); } -const NA = (g, A) => new LQ({ a: g, b: A }), Sg = (g, A) => new bQ({ a: g, b: A }), rA = (g, A) => new HQ({ a: g, b: A }), Og = (g, A) => new KQ({ a: g, b: A }), mI = (g, A) => new ZQ({ a: g, b: A }), YQ = (g, A) => new qQ({ a: g, b: A }), he = (g) => new vQ({ a: g }).outputs, we = (g) => new WQ({ a: g }), De = (g) => new VQ({ a: g }), le = (g) => new TQ({ a: g }), ye = (g) => new XQ({ a: g }), ue = (g) => new zQ({ a: g }), de = (g) => new jQ({ a: g }), Ge = (g) => new OQ({ a: g }), Pg = (g) => new PQ({ a: g }), Me = (g, A) => new _Q({ a: g, b: A }), Ne = (g) => new $Q({ a: g }), pe = (g) => new AC({ a: g }), ke = (g) => new gC({ a: g }), Fe = (g) => new IC({ a: g }), Re = (g) => new BC({ a: g }), Je = (g) => new QC({ a: g }), me = (g) => new CC({ a: g }), fe = (g, A) => new EC({ a: g, b: A }), UQ = (g, A) => new tC({ a: g, b: A }), Se = (g, A, I) => new iC({ a: g, min: A, max: I }), xQ = (g, A, I) => new sC({ a: g, b: A, t: I }), Ye = (g, A) => new eC({ edge: g, x: A }), Ue = (g, A, I) => new aC({ edge0: g, edge1: A, x: I }), xe = (g) => new nC({ a: g }), Le = (g) => new oC({ a: g }); -class LQ extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outKey: "sum", outTypeFunc: XI }), this.statements = ({ inputs: B, outputs: Q }) => [`${Q.sum} = ${B.a} + ${B.b};`]; +const fA = (t, A) => new Ni({ a: t, b: A }), Ut = (t, A) => new ki({ a: t, b: A }), CA = (t, A) => new Ui({ a: t, b: A }), Pt = (t, A) => new Ri({ a: t, b: A }), Me = (t, A) => new Gi({ a: t, b: A }), xi = (t, A) => new bi({ a: t, b: A }), gI = (t) => new vi({ a: t }).outputs, oI = (t) => new Li({ a: t }), II = (t) => new Ji({ a: t }), BI = (t) => new Yi({ a: t }), QI = (t) => new Ti({ a: t }), EI = (t) => new Hi({ a: t }), CI = (t) => new Ki({ a: t }), cI = (t) => new qi({ a: t }), Zt = (t) => new zi({ a: t }), hI = (t, A) => new _i({ a: t, b: A }), lI = (t) => new Vi({ a: t }), uI = (t) => new Pi({ a: t }), dI = (t) => new Zi({ a: t }), wI = (t) => new Oi({ a: t }), yI = (t) => new Wi({ a: t }), pI = (t) => new Xi({ a: t }), DI = (t) => new $i({ a: t }), fI = (t, A) => new ji({ a: t, b: A }), Si = (t, A) => new An({ a: t, b: A }), mI = (t, A, e) => new tn({ a: t, min: A, max: e }), Fi = (t, A, e) => new en({ a: t, b: A, t: e }), MI = (t, A) => new sn({ edge: t, x: A }), xI = (t, A, e) => new nn({ edge0: t, edge1: A, x: e }), SI = (t) => new an({ a: t }), FI = (t) => new rn({ a: t }); +class Ni extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outKey: "sum", outTypeFunc: He }), this.statements = ({ inputs: s, outputs: i }) => [`${i.sum} = ${s.a} + ${s.b};`]; } } -class bQ extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outKey: "difference", outTypeFunc: vs }), this.statements = ({ inputs: B, outputs: Q }) => [`${Q.difference} = ${B.a} - ${B.b};`]; +class ki extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outKey: "difference", outTypeFunc: bo }), this.statements = ({ inputs: s, outputs: i }) => [`${i.difference} = ${s.a} - ${s.b};`]; } } -class HQ extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outKey: "product", outTypeFunc: Ws }), this.statements = ({ inputs: B, outputs: Q }) => [`${Q.product} = ${B.a} * ${B.b};`]; +class Ui extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outKey: "product", outTypeFunc: vo }), this.statements = ({ inputs: s, outputs: i }) => [`${i.product} = ${s.a} * ${s.b};`]; } } -class KQ extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outKey: "quotient", outTypeFunc: Vs }), this.statements = ({ inputs: B, outputs: Q }) => [`${Q.quotient} = ${B.a} / ${B.b};`]; +class Ri extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outKey: "quotient", outTypeFunc: Lo }), this.statements = ({ inputs: s, outputs: i }) => [`${i.quotient} = ${s.a} / ${s.b};`]; } } -class ZQ extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outKey: "remainder", outTypeFunc: Ts }), this.statements = ({ inputs: B, outputs: Q }) => [`${Q.remainder} = ${B.a} % ${B.b};`]; +class Gi extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outKey: "remainder", outTypeFunc: Jo }), this.statements = ({ inputs: s, outputs: i }) => [`${i.remainder} = ${s.a} % ${s.b};`]; } } -class qQ extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outKey: "remainder", outTypeFunc: Xs }), this.statements = ({ inputs: B, outputs: Q }) => [`${Q.remainder} = mod(${B.a}, ${B.b});`]; +class bi extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outKey: "remainder", outTypeFunc: Yo }), this.statements = ({ inputs: s, outputs: i }) => [`${i.remainder} = mod(${s.a}, ${s.b});`]; } } -class vQ extends T { +class vi extends V { constructor({ a: A }) { - const I = { a: v(A) }, B = I.a, Q = { - fract: B, - integer: B + const e = { a: q(A) }, s = e.a, i = { + fract: s, + integer: s }; - super({ inTypes: I, outTypes: Q, inputs: { a: A } }), this.statements = ({ inputs: C, outputs: E }) => [`${E.fract} = modf(${C.a}, ${E.integer});`]; + super({ inTypes: e, outTypes: i, inputs: { a: A } }), this.statements = ({ inputs: n, outputs: a }) => [`${a.fract} = modf(${n.a}, ${a.integer});`]; } } -class WQ extends R { +class Li extends x { constructor({ a: A }) { - super({ a: A, outKey: "neg", outTypeFunc: zs }), this.statements = ({ inputs: I, outputs: B }) => [`${B.neg} = -${I.a};`]; + super({ a: A, outKey: "neg", outTypeFunc: To }), this.statements = ({ inputs: e, outputs: s }) => [`${s.neg} = -${e.a};`]; } } -class VQ extends R { +class Ji extends x { constructor({ a: A }) { - super({ a: A, outKey: "abs", outTypeFunc: js }), this.statements = ({ inputs: I, outputs: B }) => [`${B.abs} = abs(${I.a});`]; + super({ a: A, outKey: "abs", outTypeFunc: Ho }), this.statements = ({ inputs: e, outputs: s }) => [`${s.abs} = abs(${e.a});`]; } } -class TQ extends R { +class Yi extends x { constructor({ a: A }) { - super({ a: A, outKey: "sign", outTypeFunc: Os }), this.statements = ({ inputs: I, outputs: B }) => [`${B.sign} = sign(${I.a});`]; + super({ a: A, outKey: "sign", outTypeFunc: Ko }), this.statements = ({ inputs: e, outputs: s }) => [`${s.sign} = sign(${e.a});`]; } } -class XQ extends R { +class Ti extends x { constructor({ a: A }) { - super({ a: A, outKey: "floor", outTypeFunc: Ps }), this.statements = ({ inputs: I, outputs: B }) => [`${B.floor} = floor(${I.a});`]; + super({ a: A, outKey: "floor", outTypeFunc: qo }), this.statements = ({ inputs: e, outputs: s }) => [`${s.floor} = floor(${e.a});`]; } } -class zQ extends R { +class Hi extends x { constructor({ a: A }) { - super({ a: A, outKey: "ceil", outTypeFunc: _s }), this.statements = ({ inputs: I, outputs: B }) => [`${B.ceil} = ceil(${I.a});`]; + super({ a: A, outKey: "ceil", outTypeFunc: zo }), this.statements = ({ inputs: e, outputs: s }) => [`${s.ceil} = ceil(${e.a});`]; } } -class jQ extends R { +class Ki extends x { constructor({ a: A }) { - super({ a: A, outKey: "trunc", outTypeFunc: $s }), this.statements = ({ inputs: I, outputs: B }) => [`${B.trunc} = trunc(${I.a});`]; + super({ a: A, outKey: "trunc", outTypeFunc: _o }), this.statements = ({ inputs: e, outputs: s }) => [`${s.trunc} = trunc(${e.a});`]; } } -class OQ extends R { +class qi extends x { constructor({ a: A }) { - super({ a: A, outKey: "round", outTypeFunc: Ae }), this.statements = ({ inputs: I, outputs: B }) => [`${B.round} = round(${I.a});`]; + super({ a: A, outKey: "round", outTypeFunc: Vo }), this.statements = ({ inputs: e, outputs: s }) => [`${s.round} = round(${e.a});`]; } } -class PQ extends R { +class zi extends x { constructor({ a: A }) { - super({ a: A, outKey: "fract", outTypeFunc: ge }), this.statements = ({ inputs: I, outputs: B }) => [`${B.fract} = fract(${I.a});`]; + super({ a: A, outKey: "fract", outTypeFunc: Po }), this.statements = ({ inputs: e, outputs: s }) => [`${s.fract} = fract(${e.a});`]; } } -class _Q extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outKey: "power", outTypeFunc: Ie }), this.statements = ({ inputs: B, outputs: Q }) => [`${Q.power} = pow(${B.a}, ${B.b});`]; +class _i extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outKey: "power", outTypeFunc: Zo }), this.statements = ({ inputs: s, outputs: i }) => [`${i.power} = pow(${s.a}, ${s.b});`]; } } -class $Q extends R { +class Vi extends x { constructor({ a: A }) { - super({ a: A, outKey: "exp", outTypeFunc: Be }), this.statements = ({ inputs: I, outputs: B }) => [`${B.exp} = exp(${I.a});`]; + super({ a: A, outKey: "exp", outTypeFunc: Oo }), this.statements = ({ inputs: e, outputs: s }) => [`${s.exp} = exp(${e.a});`]; } } -class AC extends R { +class Pi extends x { constructor({ a: A }) { - super({ a: A, outKey: "exp2", outTypeFunc: Qe }), this.statements = ({ inputs: I, outputs: B }) => [`${B.exp2} = exp2(${I.a});`]; + super({ a: A, outKey: "exp2", outTypeFunc: Wo }), this.statements = ({ inputs: e, outputs: s }) => [`${s.exp2} = exp2(${e.a});`]; } } -class gC extends R { +class Zi extends x { constructor({ a: A }) { - super({ a: A, outKey: "log", outTypeFunc: Ce }), this.statements = ({ inputs: I, outputs: B }) => [`${B.log} = log(${I.a});`]; + super({ a: A, outKey: "log", outTypeFunc: Xo }), this.statements = ({ inputs: e, outputs: s }) => [`${s.log} = log(${e.a});`]; } } -class IC extends R { +class Oi extends x { constructor({ a: A }) { - super({ a: A, outKey: "log2", outTypeFunc: Ee }), this.statements = ({ inputs: I, outputs: B }) => [`${B.log2} = log2(${I.a});`]; + super({ a: A, outKey: "log2", outTypeFunc: $o }), this.statements = ({ inputs: e, outputs: s }) => [`${s.log2} = log2(${e.a});`]; } } -class BC extends R { +class Wi extends x { constructor({ a: A }) { - super({ a: A, outKey: "sqr", outTypeFunc: te }), this.statements = ({ inputs: I, outputs: B }) => [`${B.sqr} = ${I.a} * ${I.a};`]; + super({ a: A, outKey: "sqr", outTypeFunc: jo }), this.statements = ({ inputs: e, outputs: s }) => [`${s.sqr} = ${e.a} * ${e.a};`]; } } -class QC extends R { +class Xi extends x { constructor({ a: A }) { - super({ a: A, outKey: "sqrt", outTypeFunc: ie }), this.statements = ({ inputs: I, outputs: B }) => [`${B.sqrt} = sqrt(${I.a});`]; + super({ a: A, outKey: "sqrt", outTypeFunc: AI }), this.statements = ({ inputs: e, outputs: s }) => [`${s.sqrt} = sqrt(${e.a});`]; } } -class CC extends R { +class $i extends x { constructor({ a: A }) { - super({ a: A, outKey: "inversesqrt", outTypeFunc: se }), this.statements = ({ inputs: I, outputs: B }) => [`${B.inversesqrt} = inversesqrt(${I.a});`]; + super({ a: A, outKey: "inversesqrt", outTypeFunc: tI }), this.statements = ({ inputs: e, outputs: s }) => [`${s.inversesqrt} = inversesqrt(${e.a});`]; } } -class EC extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outKey: "min", outTypeFunc: fQ }), this.statements = ({ inputs: B, outputs: Q }) => [`${Q.min} = min(${B.a}, ${B.b});`]; +class ji extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outKey: "min", outTypeFunc: mi }), this.statements = ({ inputs: s, outputs: i }) => [`${i.min} = min(${s.a}, ${s.b});`]; } } -class tC extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outKey: "max", outTypeFunc: ee }), this.statements = ({ inputs: B, outputs: Q }) => [`${Q.max} = max(${B.a}, ${B.b});`]; +class An extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outKey: "max", outTypeFunc: eI }), this.statements = ({ inputs: s, outputs: i }) => [`${i.max} = max(${s.a}, ${s.b});`]; } } -class iC extends eg { +class tn extends ot { constructor({ a: A, - min: I, - max: B + min: e, + max: s }) { super({ a: A, - b: I, - c: B, + b: e, + c: s, outKey: "clamp", - outTypeFunc: ae - }), this.statements = ({ inputs: Q, outputs: C }) => { - const { a: E, b: t, c: i } = Q; - return [`${C.clamp} = clamp(${E}, ${t}, ${i});`]; + outTypeFunc: sI + }), this.statements = ({ inputs: i, outputs: n }) => { + const { a, b: r, c: g } = i; + return [`${n.clamp} = clamp(${a}, ${r}, ${g});`]; }; } } -class sC extends eg { - constructor({ a: A, b: I, t: B }) { - super({ a: A, b: I, c: B, outKey: "mix", outTypeFunc: ne }), this.statements = ({ inputs: Q, outputs: C }) => { - const { a: E, b: t, c: i } = Q; - return [`${C.mix} = mix(${E}, ${t}, ${i});`]; +class en extends ot { + constructor({ a: A, b: e, t: s }) { + super({ a: A, b: e, c: s, outKey: "mix", outTypeFunc: iI }), this.statements = ({ inputs: i, outputs: n }) => { + const { a, b: r, c: g } = i; + return [`${n.mix} = mix(${a}, ${r}, ${g});`]; }; } } -class eC extends O { - constructor({ edge: A, x: I }) { +class sn extends W { + constructor({ edge: A, x: e }) { super({ a: A, - b: I, + b: e, outKey: "step", - outTypeFunc: oe - }), this.statements = ({ inputs: B, outputs: Q }) => { - const { a: C, b: E } = B; - return [`${Q.step} = step(${C}, ${E});`]; + outTypeFunc: nI + }), this.statements = ({ inputs: s, outputs: i }) => { + const { a: n, b: a } = s; + return [`${i.step} = step(${n}, ${a});`]; }; } } -class aC extends eg { +class nn extends ot { constructor({ edge0: A, - edge1: I, - x: B + edge1: e, + x: s }) { super({ a: A, - b: I, - c: B, + b: e, + c: s, outKey: "smoothstep", - outTypeFunc: re - }), this.statements = ({ inputs: Q, outputs: C }) => { - const { a: E, b: t, c: i } = Q; - return [`${C.smoothstep} = smoothstep(${E}, ${t}, ${i});`]; + outTypeFunc: aI + }), this.statements = ({ inputs: i, outputs: n }) => { + const { a, b: r, c: g } = i; + return [`${n.smoothstep} = smoothstep(${a}, ${r}, ${g});`]; }; } } -class nC extends R { +class an extends x { constructor({ a: A }) { - super({ a: A, outKey: "isNan", outTypeFunc: SQ }), this.statements = ({ inputs: I, outputs: B }) => [`${B.isNan} = isNan(${I.a});`]; + super({ a: A, outKey: "isNan", outTypeFunc: Mi }), this.statements = ({ inputs: e, outputs: s }) => [`${s.isNan} = isNan(${e.a});`]; } } -class oC extends R { +class rn extends x { constructor({ a: A }) { - super({ a: A, outKey: "isInf", outTypeFunc: ce }), this.statements = ({ inputs: I, outputs: B }) => [`${B.isInf} = isInf(${I.a});`]; + super({ a: A, outKey: "isInf", outTypeFunc: rI }), this.statements = ({ inputs: e, outputs: s }) => [`${s.isInf} = isInf(${e.a});`]; } } -const be = (g, A) => new rC({ a: g, b: A }), He = (g, A) => new cC({ a: g, b: A }), Ke = (g, A) => new hC({ a: g, b: A }), Ze = (g) => new wC({ a: g }), qe = (g, A) => new DC({ a: g, b: A }), ve = (g, A) => new lC({ a: g, b: A }), We = (g, A) => new yC({ a: g, b: A }), Ve = (g, A) => new uC({ a: g, b: A }), Te = (g, A) => new dC({ a: g, b: A }), Xe = (g, A) => new GC({ a: g, b: A }), ze = (g) => new MC({ a: g }), je = (g) => new NC({ a: g }), Oe = (g, A, I) => new pC({ cond: g, t: A, f: I }), Pe = (g) => new FC({ a: g }); -class rC extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outTypeFunc: (B, Q) => B, outKey: "and" }), this.statements = ({ inputs: B, outputs: Q }) => this.outTypes.and === "bool" ? [`${Q.and} = ${B.a} && ${B.b};`] : [`${Q.and} = ${B.a} & ${B.b};`]; +const NI = (t, A) => new gn({ a: t, b: A }), kI = (t, A) => new on({ a: t, b: A }), UI = (t, A) => new In({ a: t, b: A }), RI = (t) => new Bn({ a: t }), GI = (t, A) => new Qn({ a: t, b: A }), bI = (t, A) => new En({ a: t, b: A }), vI = (t, A) => new Cn({ a: t, b: A }), LI = (t, A) => new cn({ a: t, b: A }), JI = (t, A) => new hn({ a: t, b: A }), YI = (t, A) => new ln({ a: t, b: A }), TI = (t) => new un({ a: t }), HI = (t) => new dn({ a: t }), KI = (t, A, e) => new wn({ cond: t, t: A, f: e }), qI = (t) => new pn({ a: t }); +class gn extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outTypeFunc: (s, i) => s, outKey: "and" }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.and === "bool" ? [`${i.and} = ${s.a} && ${s.b};`] : [`${i.and} = ${s.a} & ${s.b};`]; } } -class cC extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outTypeFunc: (B, Q) => B, outKey: "or" }), this.statements = ({ inputs: B, outputs: Q }) => this.outTypes.or === "bool" ? [`${Q.or} = ${B.a} || ${B.b};`] : [`${Q.or} = ${B.a} | ${B.b};`]; +class on extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outTypeFunc: (s, i) => s, outKey: "or" }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.or === "bool" ? [`${i.or} = ${s.a} || ${s.b};`] : [`${i.or} = ${s.a} | ${s.b};`]; } } -class hC extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outTypeFunc: (B, Q) => B, outKey: "xor" }), this.statements = ({ inputs: B, outputs: Q }) => this.outTypes.xor === "bool" ? [`${Q.xor} = ${B.a} ^^ ${B.b};`] : [`${Q.xor} = ${B.a} ^ ${B.b};`]; +class In extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outTypeFunc: (s, i) => s, outKey: "xor" }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.xor === "bool" ? [`${i.xor} = ${s.a} ^^ ${s.b};`] : [`${i.xor} = ${s.a} ^ ${s.b};`]; } } -class wC extends R { +class Bn extends x { constructor({ a: A }) { - super({ a: A, outTypeFunc: (I) => I, outKey: "not" }), this.statements = ({ inputs: I, outputs: B }) => this.outTypes.not === "bool" ? [`${B.not} = !${I.a};`] : [`${B.not} = not(${I.a});`]; + super({ a: A, outTypeFunc: (e) => e, outKey: "not" }), this.statements = ({ inputs: e, outputs: s }) => this.outTypes.not === "bool" ? [`${s.not} = !${e.a};`] : [`${s.not} = not(${e.a});`]; } } -class DC extends O { - constructor({ a: A, b: I }) { +class Qn extends W { + constructor({ a: A, b: e }) { super({ a: A, - b: I, - outTypeFunc: (B, Q) => aI(B, "lessThan"), + b: e, + outTypeFunc: (s, i) => re(s, "lessThan"), outKey: "lessThan" - }), this.statements = ({ inputs: B, outputs: Q }) => this.outTypes.lessThan === "bool" ? [`${Q.lessThan} = ${B.a} < ${B.b};`] : [`${Q.lessThan} = lessThan(${B.a}, ${B.b});`]; + }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.lessThan === "bool" ? [`${i.lessThan} = ${s.a} < ${s.b};`] : [`${i.lessThan} = lessThan(${s.a}, ${s.b});`]; } } -class lC extends O { - constructor({ a: A, b: I }) { +class En extends W { + constructor({ a: A, b: e }) { super({ a: A, - b: I, - outTypeFunc: (B, Q) => aI(B, "lessThanEqual"), + b: e, + outTypeFunc: (s, i) => re(s, "lessThanEqual"), outKey: "lessThanEqual" - }), this.statements = ({ inputs: B, outputs: Q }) => this.outTypes.lessThanEqual === "bool" ? [`${Q.lessThanEqual} = ${B.a} <= ${B.b};`] : [ - `${Q.lessThanEqual} = lessThanEqual(${B.a}, ${B.b});` + }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.lessThanEqual === "bool" ? [`${i.lessThanEqual} = ${s.a} <= ${s.b};`] : [ + `${i.lessThanEqual} = lessThanEqual(${s.a}, ${s.b});` ]; } } -class yC extends O { - constructor({ a: A, b: I }) { +class Cn extends W { + constructor({ a: A, b: e }) { super({ a: A, - b: I, - outTypeFunc: (B, Q) => aI(B, "greaterThan"), + b: e, + outTypeFunc: (s, i) => re(s, "greaterThan"), outKey: "greaterThan" - }), this.statements = ({ inputs: B, outputs: Q }) => this.outTypes.greaterThan === "bool" ? [`${Q.greaterThan} = ${B.a} > ${B.b};`] : [ - `${Q.greaterThan} = greaterThan(${B.a}, ${B.b});` + }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.greaterThan === "bool" ? [`${i.greaterThan} = ${s.a} > ${s.b};`] : [ + `${i.greaterThan} = greaterThan(${s.a}, ${s.b});` ]; } } -class uC extends O { - constructor({ a: A, b: I }) { +class cn extends W { + constructor({ a: A, b: e }) { super({ a: A, - b: I, - outTypeFunc: (B, Q) => aI(B, "greaterThanEqual"), + b: e, + outTypeFunc: (s, i) => re(s, "greaterThanEqual"), outKey: "greaterThanEqual" - }), this.statements = ({ inputs: B, outputs: Q }) => this.outTypes.greaterThanEqual === "bool" ? [`${Q.greaterThanEqual} = ${B.a} >= ${B.b};`] : [ - `${Q.greaterThanEqual} = greaterThanEqual(${B.a}, ${B.b});` + }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.greaterThanEqual === "bool" ? [`${i.greaterThanEqual} = ${s.a} >= ${s.b};`] : [ + `${i.greaterThanEqual} = greaterThanEqual(${s.a}, ${s.b});` ]; } } -class dC extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outTypeFunc: kC, outKey: "equal" }), this.statements = ({ inputs: B, outputs: Q }) => this.outTypes.equal === "bool" ? [`${Q.equal} = ${B.a} == ${B.b};`] : [`${Q.equal} = equal(${B.a}, ${B.b});`]; +class hn extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outTypeFunc: yn, outKey: "equal" }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.equal === "bool" ? [`${i.equal} = ${s.a} == ${s.b};`] : [`${i.equal} = equal(${s.a}, ${s.b});`]; } } -class GC extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outTypeFunc: _e, outKey: "notEqual" }), this.statements = ({ inputs: B, outputs: Q }) => this.outTypes.notEqual === "bool" ? [`${Q.notEqual} = ${B.a} != ${B.b};`] : [`${Q.notEqual} = notEqual(${B.a}, ${B.b});`]; +class ln extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outTypeFunc: zI, outKey: "notEqual" }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.notEqual === "bool" ? [`${i.notEqual} = ${s.a} != ${s.b};`] : [`${i.notEqual} = notEqual(${s.a}, ${s.b});`]; } } -class MC extends R { +class un extends x { constructor({ a: A }) { - super({ a: A, outTypeFunc: (I) => "bool", outKey: "any" }), this.statements = ({ inputs: I, outputs: B }) => [`${B.any} = any(${I.a});`]; + super({ a: A, outTypeFunc: (e) => "bool", outKey: "any" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.any} = any(${e.a});`]; } } -class NC extends R { +class dn extends x { constructor({ a: A }) { - super({ a: A, outTypeFunc: (I) => "bool", outKey: "all" }), this.statements = ({ inputs: I, outputs: B }) => [`${B.all} = all(${I.a});`]; + super({ a: A, outTypeFunc: (e) => "bool", outKey: "all" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.all} = all(${e.a});`]; } } -class pC extends eg { +class wn extends ot { constructor({ cond: A, - t: I, - f: B + t: e, + f: s }) { super({ a: A, - b: I, - c: B, + b: e, + c: s, outKey: "select", - outTypeFunc: (Q, C, E) => C - }), this.statements = ({ inputs: Q, outputs: C }) => { - const { a: E, b: t, c: i } = Q; - return [`${C.select} = (${E}) ? (${t}) : (${i});`]; + outTypeFunc: (i, n, a) => n + }), this.statements = ({ inputs: i, outputs: n }) => { + const { a, b: r, c: g } = i; + return [`${n.select} = (${a}) ? (${r}) : (${g});`]; }; } } -function aI(g, A) { - if (sg(g)) +function re(t, A) { + if (gt(t)) return "bool"; - if (g === "ivec2" || g === "uvec2" || g === "vec2") + if (t === "ivec2" || t === "uvec2" || t === "vec2") return "bvec2"; - if (g === "ivec3" || g === "uvec3" || g === "vec3") + if (t === "ivec3" || t === "uvec3" || t === "vec3") return "bvec3"; - if (g === "ivec4" || g === "uvec4" || g === "vec4") + if (t === "ivec4" || t === "uvec4" || t === "vec4") return "bvec4"; - throw new Error(`Invalid ${A} type: ${g}`); + throw new Error(`Invalid ${A} type: ${t}`); } -function kC(g, A = "equal") { - if (sg(g)) +function yn(t, A = "equal") { + if (gt(t)) return "bool"; - if (ig(g)) - return g; - if (g === "ivec2" || g === "uvec2" || g === "vec2") + if (rt(t)) + return t; + if (t === "ivec2" || t === "uvec2" || t === "vec2") return "bvec2"; - if (g === "ivec3" || g === "uvec3" || g === "vec3") + if (t === "ivec3" || t === "uvec3" || t === "vec3") return "bvec3"; - if (g === "ivec4" || g === "uvec4" || g === "vec4") + if (t === "ivec4" || t === "uvec4" || t === "vec4") return "bvec4"; - throw new Error(`Invalid ${A} type: ${g}`); + throw new Error(`Invalid ${A} type: ${t}`); } -function _e(g) { - return kC(g, "notEqual"); +function zI(t) { + return yn(t, "notEqual"); } -function $e(g) { - if (ig(g)) +function _I(t) { + if (rt(t)) return "bool"; - if (wA(g)) + if (hA(t)) return "int"; - if (DA(g)) + if (lA(t)) return "uint"; - throw new Error(`Invalid compXor type: ${g}`); + throw new Error(`Invalid compXor type: ${t}`); } -class FC extends R { +class pn extends x { constructor({ a: A }) { - const I = $e(v(A)); - super({ a: A, outTypeFunc: (B) => I, outKey: "compXor" }), this.statements = ({ inputs: B, outputs: Q }) => { - if (sg(this.outTypes.compXor)) - return [`${Q.compXor} = ${B.a};`]; - const E = (ug(I) ? ["x", "y"] : dg(I) ? ["x", "y", "z"] : ["x", "y", "z", "w"]).map((i) => `${B.a}.${i}`), t = ig(I) ? "^^" : "^"; - return [`${Q.compXor} = ${E.join(` ${t} `)};`]; + const e = _I(q(A)); + super({ a: A, outTypeFunc: (s) => e, outKey: "compXor" }), this.statements = ({ inputs: s, outputs: i }) => { + if (gt(this.outTypes.compXor)) + return [`${i.compXor} = ${s.a};`]; + const a = (ut(e) ? ["x", "y"] : dt(e) ? ["x", "y", "z"] : ["x", "y", "z", "w"]).map((g) => `${s.a}.${g}`), r = rt(e) ? "^^" : "^"; + return [`${i.compXor} = ${a.join(` ${r} `)};`]; }; } } -const Aa = (g) => new UC({ value: g }), ga = (g) => new xC({ value: g }), Ia = (g) => new LC({ value: g }), RC = (g) => new bC({ value: g }), Ba = (g) => new HC({ value: g }), Qa = (g) => new KC({ value: g }), Ca = (g) => new ZC({ value: g }), Ea = (g) => new qC({ value: g }), ta = (g) => new vC({ value: g }), ia = (g) => new WC({ value: g }), sa = (g) => new VC({ value: g }), ea = (g) => new TC({ value: g }), aa = (g) => new XC({ value: g }), JC = (g) => new zC({ value: g }), tg = (g) => new jC({ value: g }), mC = (g) => new OC({ value: g }), na = (g) => new PC({ value: g }), oa = (g) => new _C({ value: g }), ra = (g) => new $C({ value: g }), fC = (g) => new AE({ value: g }), ca = (g) => new gE({ value: g }), ha = (g) => new IE({ value: g }), wa = (g) => new BE({ value: g }), Da = (g) => new QE({ value: g }), la = (g) => new CE({ value: g }), ya = (g) => new EE({ value: g }), ua = (g) => new tE({ value: g }), SC = (g) => new iE({ value: g }), da = (g) => new sE({ value: g }), YC = (g) => new eE({ value: g }); -class tA extends R { +const VI = (t) => new Fn({ value: t }), PI = (t) => new Nn({ value: t }), ZI = (t) => new kn({ value: t }), Dn = (t) => new Un({ value: t }), OI = (t) => new Rn({ value: t }), WI = (t) => new Gn({ value: t }), XI = (t) => new bn({ value: t }), $I = (t) => new vn({ value: t }), jI = (t) => new Ln({ value: t }), AB = (t) => new Jn({ value: t }), tB = (t) => new Yn({ value: t }), eB = (t) => new Tn({ value: t }), sB = (t) => new Hn({ value: t }), fn = (t) => new Kn({ value: t }), at = (t) => new qn({ value: t }), mn = (t) => new zn({ value: t }), iB = (t) => new _n({ value: t }), nB = (t) => new Vn({ value: t }), aB = (t) => new Pn({ value: t }), Mn = (t) => new Zn({ value: t }), rB = (t) => new On({ value: t }), gB = (t) => new Wn({ value: t }), oB = (t) => new Xn({ value: t }), IB = (t) => new $n({ value: t }), BB = (t) => new jn({ value: t }), QB = (t) => new Aa({ value: t }), EB = (t) => new ta({ value: t }), xn = (t) => new ea({ value: t }), CB = (t) => new sa({ value: t }), Sn = (t) => new ia({ value: t }); +class rA extends x { constructor({ value: A, - outType: I, - outKey: B + outType: e, + outKey: s }) { - super({ a: A, outTypeFunc: () => I, outKey: B }), this.statements = ({ inputs: Q, outputs: C }) => [ - `${C[B]} = ${cB(I)}(${Q.a});` + super({ a: A, outTypeFunc: () => e, outKey: s }), this.statements = ({ inputs: i, outputs: n }) => [ + `${n[s]} = ${gs(e)}(${i.a});` ]; } } -class UC extends tA { +class Fn extends rA { constructor({ value: A }) { super({ value: A, outType: "bool", outKey: "bool" }); } } -class xC extends tA { +class Nn extends rA { constructor({ value: A }) { super({ value: A, outType: "int", outKey: "int" }); } } -class LC extends tA { +class kn extends rA { constructor({ value: A }) { super({ value: A, outType: "uint", outKey: "uint" }); } } -class bC extends tA { +class Un extends rA { constructor({ value: A }) { super({ value: A, outType: "float", outKey: "float" }); } } -class HC extends tA { +class Rn extends rA { constructor({ value: A }) { super({ value: A, outType: "bvec2", outKey: "bvec2" }); } } -class KC extends tA { +class Gn extends rA { constructor({ value: A }) { super({ value: A, outType: "bvec3", outKey: "bvec3" }); } } -class ZC extends tA { +class bn extends rA { constructor({ value: A }) { super({ value: A, outType: "bvec4", outKey: "bvec4" }); } } -class qC extends tA { +class vn extends rA { constructor({ value: A }) { super({ value: A, outType: "ivec2", outKey: "ivec2" }); } } -class vC extends tA { +class Ln extends rA { constructor({ value: A }) { super({ value: A, outType: "ivec3", outKey: "ivec3" }); } } -class WC extends tA { +class Jn extends rA { constructor({ value: A }) { super({ value: A, outType: "ivec4", outKey: "ivec4" }); } } -class VC extends tA { +class Yn extends rA { constructor({ value: A }) { super({ value: A, outType: "uvec2", outKey: "uvec2" }); } } -class TC extends tA { +class Tn extends rA { constructor({ value: A }) { super({ value: A, outType: "uvec3", outKey: "uvec3" }); } } -class XC extends tA { +class Hn extends rA { constructor({ value: A }) { super({ value: A, outType: "uvec4", outKey: "uvec4" }); } } -class zC extends tA { +class Kn extends rA { constructor({ value: A }) { super({ value: A, outType: "vec2", outKey: "vec2" }); } } -class jC extends tA { +class qn extends rA { constructor({ value: A }) { super({ value: A, outType: "vec3", outKey: "vec3" }); } } -class OC extends tA { +class zn extends rA { constructor({ value: A }) { super({ value: A, outType: "vec4", outKey: "vec4" }); } } -class PC extends tA { +class _n extends rA { constructor({ value: A }) { super({ value: A, outType: "mat2", outKey: "mat2" }); } } -class _C extends tA { +class Vn extends rA { constructor({ value: A }) { super({ value: A, outType: "mat3", outKey: "mat3" }); } } -class $C extends tA { +class Pn extends rA { constructor({ value: A }) { super({ value: A, outType: "mat4", outKey: "mat4" }); } } -class AE extends R { +class Zn extends x { constructor({ value: A }) { - super({ a: A, outKey: "int", outTypeFunc: () => "int" }), this.statements = ({ inputs: I, outputs: B }) => [`${B.int} = floatBitsToInt(${I.a});`]; + super({ a: A, outKey: "int", outTypeFunc: () => "int" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.int} = floatBitsToInt(${e.a});`]; } } -class gE extends R { +class On extends x { constructor({ value: A }) { - super({ a: A, outKey: "uint", outTypeFunc: () => "uint" }), this.statements = ({ inputs: I, outputs: B }) => [`${B.uint} = floatBitsToUint(${I.a});`]; + super({ a: A, outKey: "uint", outTypeFunc: () => "uint" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.uint} = floatBitsToUint(${e.a});`]; } } -class IE extends R { +class Wn extends x { constructor({ value: A }) { - super({ a: A, outKey: "float", outTypeFunc: () => "float" }), this.statements = ({ inputs: I, outputs: B }) => [`${B.float} = intBitsToFloat(${I.a});`]; + super({ a: A, outKey: "float", outTypeFunc: () => "float" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.float} = intBitsToFloat(${e.a});`]; } } -class BE extends R { +class Xn extends x { constructor({ value: A }) { - super({ a: A, outKey: "float", outTypeFunc: () => "float" }), this.statements = ({ inputs: I, outputs: B }) => [`${B.float} = uintBitsToFloat(${I.a});`]; + super({ a: A, outKey: "float", outTypeFunc: () => "float" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.float} = uintBitsToFloat(${e.a});`]; } } -class QE extends R { +class $n extends x { constructor({ value: A }) { - super({ a: A, outKey: "uint", outTypeFunc: () => "uint" }), this.statements = ({ inputs: I, outputs: B }) => [`${B.uint} = packSnorm2x16(${I.a});`]; + super({ a: A, outKey: "uint", outTypeFunc: () => "uint" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.uint} = packSnorm2x16(${e.a});`]; } } -class CE extends R { +class jn extends x { constructor({ value: A }) { - super({ a: A, outKey: "vec2", outTypeFunc: () => "vec2" }), this.statements = ({ inputs: I, outputs: B }) => [`${B.vec2} = unpackSnorm2x16(${I.a});`]; + super({ a: A, outKey: "vec2", outTypeFunc: () => "vec2" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.vec2} = unpackSnorm2x16(${e.a});`]; } } -class EE extends R { +class Aa extends x { constructor({ value: A }) { - super({ a: A, outKey: "uint", outTypeFunc: () => "uint" }), this.statements = ({ inputs: I, outputs: B }) => [`${B.uint} = packUnorm2x16(${I.a});`]; + super({ a: A, outKey: "uint", outTypeFunc: () => "uint" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.uint} = packUnorm2x16(${e.a});`]; } } -class tE extends R { +class ta extends x { constructor({ value: A }) { - super({ a: A, outKey: "vec2", outTypeFunc: () => "vec2" }), this.statements = ({ inputs: I, outputs: B }) => [`${B.vec2} = unpackUnorm2x16(${I.a});`]; + super({ a: A, outKey: "vec2", outTypeFunc: () => "vec2" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.vec2} = unpackUnorm2x16(${e.a});`]; } } -class iE extends R { +class ea extends x { constructor({ value: A }) { - super({ a: A, outKey: "uint", outTypeFunc: () => "uint" }), this.statements = ({ inputs: I, outputs: B }) => [`${B.uint} = packHalf2x16(${I.a});`]; + super({ a: A, outKey: "uint", outTypeFunc: () => "uint" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.uint} = packHalf2x16(${e.a});`]; } } -class sE extends R { +class sa extends x { constructor({ value: A }) { - super({ a: A, outKey: "vec2", outTypeFunc: () => "vec2" }), this.statements = ({ inputs: I, outputs: B }) => [`${B.vec2} = unpackHalf2x16(${I.a});`]; + super({ a: A, outKey: "vec2", outTypeFunc: () => "vec2" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.vec2} = unpackHalf2x16(${e.a});`]; } } -class eE extends R { +class ia extends x { constructor({ value: A }) { - super({ a: A, outKey: "rgba8", outTypeFunc: () => "vec4" }), this.statements = ({ inputs: I, outputs: B }) => [ - `uvec4 uRgba = uvec4(${I.a} & 0xffu, (${I.a} >> 8u) & 0xffu, (${I.a} >> 16u) & 0xffu, (${I.a} >> 24u) & 0xffu);`, - `${B.rgba8} = vec4(uRgba) / 255.0;` + super({ a: A, outKey: "rgba8", outTypeFunc: () => "vec4" }), this.statements = ({ inputs: e, outputs: s }) => [ + `uvec4 uRgba = uvec4(${e.a} & 0xffu, (${e.a} >> 8u) & 0xffu, (${e.a} >> 16u) & 0xffu, (${e.a} >> 24u) & 0xffu);`, + `${s.rgba8} = vec4(uRgba) / 255.0;` ]; } } -const Ga = (g) => new oE({ a: g }), Ma = (g, A) => new rE({ a: g, b: A }), Na = (g, A) => new cE({ a: g, b: A }), pa = (g, A) => new hE({ a: g, b: A }), aE = (g) => new wE({ a: g }), ka = (g, A, I) => new yE({ a: g, b: A, c: I }), Fa = (g, A) => new uE({ incident: g, normal: A }), Ra = (g, A, I) => new dE({ incident: g, normal: A, eta: I }), Rg = (g) => new FE({ vector: g }), KA = ({ - vector: g, +const cB = (t) => new ra({ a: t }), hB = (t, A) => new ga({ a: t, b: A }), lB = (t, A) => new oa({ a: t, b: A }), uB = (t, A) => new Ia({ a: t, b: A }), na = (t) => new Ba({ a: t }), dB = (t, A, e) => new Ca({ a: t, b: A, c: e }), wB = (t, A) => new ca({ incident: t, normal: A }), yB = (t, A, e) => new ha({ incident: t, normal: A, eta: e }), St = (t) => new pa({ vector: t }), YA = ({ + vector: t, vectorType: A, - x: I, - y: B, - z: Q, - w: C, - r: E, - g: t, - b: i, - a: e -}) => new RE({ vector: g, vectorType: A, x: I, y: B, z: Q, w: C, r: E, g: t, b: i, a: e }), Ja = (g) => new DE({ a: g }), nE = (g, A) => new lE({ a: g, b: A }), ma = (g, A) => new JE({ vector: g, select: A }), fa = (g, A) => new GE({ a: g, b: A }), Sa = (g, A) => new ME({ a: g, b: A }), Ya = (g) => new NE({ a: g }), Ua = (g) => new pE({ a: g }), xa = (g) => new kE({ a: g }); -class oE extends R { + x: e, + y: s, + z: i, + w: n, + r: a, + g: r, + b: g, + a: I +}) => new Da({ vector: t, vectorType: A, x: e, y: s, z: i, w: n, r: a, g: r, b: g, a: I }), pB = (t) => new Qa({ a: t }), aa = (t, A) => new Ea({ a: t, b: A }), DB = (t, A) => new fa({ vector: t, select: A }), fB = (t, A) => new la({ a: t, b: A }), mB = (t, A) => new ua({ a: t, b: A }), MB = (t) => new da({ a: t }), xB = (t) => new wa({ a: t }), SB = (t) => new ya({ a: t }); +class ra extends x { constructor({ a: A }) { - super({ a: A, outTypeFunc: (I) => "float", outKey: "length" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.length} = length(${I.a});` + super({ a: A, outTypeFunc: (e) => "float", outKey: "length" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.length} = length(${e.a});` ]; } } -class rE extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outKey: "distance", outTypeFunc: (B, Q) => "float" }), this.statements = ({ inputs: B, outputs: Q }) => [ - `${Q.distance} = distance(${B.a}, ${B.b});` +class ga extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outKey: "distance", outTypeFunc: (s, i) => "float" }), this.statements = ({ inputs: s, outputs: i }) => [ + `${i.distance} = distance(${s.a}, ${s.b});` ]; } } -class cE extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outKey: "dot", outTypeFunc: (B, Q) => "float" }), this.statements = ({ inputs: B, outputs: Q }) => [ - `${Q.dot} = dot(${B.a}, ${B.b});` +class oa extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outKey: "dot", outTypeFunc: (s, i) => "float" }), this.statements = ({ inputs: s, outputs: i }) => [ + `${i.dot} = dot(${s.a}, ${s.b});` ]; } } -class hE extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outKey: "cross", outTypeFunc: (B, Q) => "vec3" }), this.statements = ({ inputs: B, outputs: Q }) => [ - `${Q.cross} = cross(${B.a}, ${B.b});` +class Ia extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outKey: "cross", outTypeFunc: (s, i) => "vec3" }), this.statements = ({ inputs: s, outputs: i }) => [ + `${i.cross} = cross(${s.a}, ${s.b});` ]; } } -class wE extends R { +class Ba extends x { constructor({ a: A }) { - super({ a: A, outTypeFunc: (I) => I, outKey: "normalize" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.normalize} = normalize(${I.a});` + super({ a: A, outTypeFunc: (e) => e, outKey: "normalize" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.normalize} = normalize(${e.a});` ]; } } -function La(g) { - if (g === "vec3") +function FB(t) { + if (t === "vec3") return "vec2"; - if (g === "vec4") + if (t === "vec4") return "vec3"; throw new Error("Invalid type"); } -class DE extends R { +class Qa extends x { constructor({ a: A }) { super({ a: A, - outTypeFunc: (I) => La(I), + outTypeFunc: (e) => FB(e), outKey: "projected" - }), this.statements = ({ inputs: I, outputs: B }) => { + }), this.statements = ({ inputs: e, outputs: s }) => { if (this.inTypes.a === "vec3") - return [`${B.projected} = ${I.a}.xy / ${I.a}.z;`]; + return [`${s.projected} = ${e.a}.xy / ${e.a}.z;`]; if (this.inTypes.a === "vec4") - return [`${B.projected} = ${I.a}.xyz / ${I.a}.w;`]; + return [`${s.projected} = ${e.a}.xyz / ${e.a}.w;`]; throw new Error("Invalid type"); }; } } -function ba(g) { - if (g === "float") return "vec2"; - if (g === "vec2") return "vec3"; - if (g === "vec3") return "vec4"; +function NB(t) { + if (t === "float") return "vec2"; + if (t === "vec2") return "vec3"; + if (t === "vec3") return "vec4"; throw new Error("Invalid type"); } -class lE extends O { - constructor({ a: A, b: I }) { - const B = v(A), Q = ba(B); - super({ a: A, b: I, outKey: "extend", outTypeFunc: () => Q }), this.statements = ({ inputs: C, outputs: E }) => [ - `${E.extend} = ${Q}(${C.a}, ${C.b});` +class Ea extends W { + constructor({ a: A, b: e }) { + const s = q(A), i = NB(s); + super({ a: A, b: e, outKey: "extend", outTypeFunc: () => i }), this.statements = ({ inputs: n, outputs: a }) => [ + `${a.extend} = ${i}(${n.a}, ${n.b});` ]; } } -class yE extends eg { - constructor({ a: A, b: I, c: B }) { +class Ca extends ot { + constructor({ a: A, b: e, c: s }) { super({ a: A, - b: I, - c: B, + b: e, + c: s, outKey: "forward", - outTypeFunc: (Q, C, E) => Q - }), this.statements = ({ inputs: Q, outputs: C }) => [ - `${C.forward} = faceforward(${Q.a}, ${Q.b}, ${Q.c});` + outTypeFunc: (i, n, a) => i + }), this.statements = ({ inputs: i, outputs: n }) => [ + `${n.forward} = faceforward(${i.a}, ${i.b}, ${i.c});` ]; } } -class uE extends O { +class ca extends W { constructor({ incident: A, - normal: I + normal: e }) { super({ a: A, - b: I, + b: e, outKey: "reflection", - outTypeFunc: (B, Q) => B - }), this.statements = ({ inputs: B, outputs: Q }) => [ - `${Q.reflection} = reflect(${B.a}, ${B.b});` + outTypeFunc: (s, i) => s + }), this.statements = ({ inputs: s, outputs: i }) => [ + `${i.reflection} = reflect(${s.a}, ${s.b});` ]; } } -class dE extends eg { +class ha extends ot { constructor({ incident: A, - normal: I, - eta: B + normal: e, + eta: s }) { super({ a: A, - b: I, - c: B, + b: e, + c: s, outKey: "refraction", - outTypeFunc: (Q, C, E) => Q - }), this.statements = ({ inputs: Q, outputs: C }) => [ - `${C.refraction} = refract(${Q.a}, ${Q.b}, ${Q.c});` + outTypeFunc: (i, n, a) => i + }), this.statements = ({ inputs: i, outputs: n }) => [ + `${n.refraction} = refract(${i.a}, ${i.b}, ${i.c});` ]; } } -class GE extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outKey: "product", outTypeFunc: (B, Q) => B }), this.statements = ({ inputs: B, outputs: Q }) => [ - `${Q.product} = matrixCompMult(${A}, ${I});` +class la extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outKey: "product", outTypeFunc: (s, i) => s }), this.statements = ({ inputs: s, outputs: i }) => [ + `${i.product} = matrixCompMult(${A}, ${e});` ]; } } -function Ha(g, A) { - if (g === "vec2") { +function kB(t, A) { + if (t === "vec2") { if (A === "vec2") return "mat2"; if (A === "vec3") return "mat3x2"; if (A === "vec4") return "mat4x2"; } - if (g === "vec3") { + if (t === "vec3") { if (A === "vec2") return "mat2x3"; if (A === "vec3") return "mat3"; if (A === "vec4") return "mat4x3"; } - if (g === "vec4") { + if (t === "vec4") { if (A === "vec2") return "mat2x4"; if (A === "vec3") return "mat3x4"; if (A === "vec4") return "mat4"; } - throw new Error(`Invalid outer type: ${g}, ${A}`); + throw new Error(`Invalid outer type: ${t}, ${A}`); } -class ME extends O { - constructor({ a: A, b: I }) { - super({ a: A, b: I, outKey: "outer", outTypeFunc: Ha }), this.statements = ({ inputs: B, outputs: Q }) => [ - `${Q.outer} = outerProduct(${B.a}, ${B.b});` +class ua extends W { + constructor({ a: A, b: e }) { + super({ a: A, b: e, outKey: "outer", outTypeFunc: kB }), this.statements = ({ inputs: s, outputs: i }) => [ + `${i.outer} = outerProduct(${s.a}, ${s.b});` ]; } } -function Ka(g) { - if (g === "mat2") return "mat2"; - if (g === "mat3") return "mat3"; - if (g === "mat4") return "mat4"; - if (g === "mat2x2") return "mat2x2"; - if (g === "mat2x3") return "mat3x2"; - if (g === "mat2x4") return "mat4x2"; - if (g === "mat3x2") return "mat2x3"; - if (g === "mat3x3") return "mat3x3"; - if (g === "mat3x4") return "mat4x3"; - if (g === "mat4x2") return "mat2x4"; - if (g === "mat4x3") return "mat3x4"; - if (g === "mat4x4") return "mat4x4"; - throw new Error(`Invalid transpose type: ${g}`); +function UB(t) { + if (t === "mat2") return "mat2"; + if (t === "mat3") return "mat3"; + if (t === "mat4") return "mat4"; + if (t === "mat2x2") return "mat2x2"; + if (t === "mat2x3") return "mat3x2"; + if (t === "mat2x4") return "mat4x2"; + if (t === "mat3x2") return "mat2x3"; + if (t === "mat3x3") return "mat3x3"; + if (t === "mat3x4") return "mat4x3"; + if (t === "mat4x2") return "mat2x4"; + if (t === "mat4x3") return "mat3x4"; + if (t === "mat4x4") return "mat4x4"; + throw new Error(`Invalid transpose type: ${t}`); } -class NE extends R { +class da extends x { constructor({ a: A }) { - super({ a: A, outKey: "transpose", outTypeFunc: Ka }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.transpose} = transpose(${I.a});` + super({ a: A, outKey: "transpose", outTypeFunc: UB }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.transpose} = transpose(${e.a});` ]; } } -class pE extends R { +class wa extends x { constructor({ a: A }) { - super({ a: A, outKey: "det", outTypeFunc: (I) => "float" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.det} = determinant(${I.a});` + super({ a: A, outKey: "det", outTypeFunc: (e) => "float" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.det} = determinant(${e.a});` ]; } } -class kE extends R { +class ya extends x { constructor({ a: A }) { - super({ a: A, outKey: "inverse", outTypeFunc: (I) => I }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.inverse} = inverse(${A});` + super({ a: A, outKey: "inverse", outTypeFunc: (e) => e }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.inverse} = inverse(${A});` ]; } } -function Za(g) { - const A = (I) => I; - switch (g) { +function RB(t) { + const A = (e) => e; + switch (t) { case "vec2": return A({ x: "float", y: "float", r: "float", g: "float" }); case "vec3": @@ -3590,171 +3468,171 @@ function Za(g) { a: "uint" }); default: - throw new Error(`Invalid vector type: ${g}`); + throw new Error(`Invalid vector type: ${t}`); } } -class FE extends T { +class pa extends V { constructor({ vector: A }) { - const B = { vector: v(A) }, Q = Za(B.vector); - super({ inTypes: B, outTypes: Q, inputs: { vector: A } }), this.statements = ({ inputs: C, outputs: E }) => { - const { x: t, y: i, z: e, w: n, r: s, g: o, b: r, a: c } = E, { vector: h } = C; + const s = { vector: q(A) }, i = RB(s.vector); + super({ inTypes: s, outTypes: i, inputs: { vector: A } }), this.statements = ({ inputs: n, outputs: a }) => { + const { x: r, y: g, z: I, w: Q, r: o, g: E, b: C, a: c } = a, { vector: h } = n; return [ - t ? `${t} = ${h}.x;` : null, - i ? `${i} = ${h}.y;` : null, - e ? `${e} = ${h}.z;` : null, - n ? `${n} = ${h}.w;` : null, - s ? `${s} = ${h}.r;` : null, - o ? `${o} = ${h}.g;` : null, - r ? `${r} = ${h}.b;` : null, + r ? `${r} = ${h}.x;` : null, + g ? `${g} = ${h}.y;` : null, + I ? `${I} = ${h}.z;` : null, + Q ? `${Q} = ${h}.w;` : null, + o ? `${o} = ${h}.r;` : null, + E ? `${E} = ${h}.g;` : null, + C ? `${C} = ${h}.b;` : null, c ? `${c} = ${h}.a;` : null ].filter(Boolean); }; } } -class RE extends T { +class Da extends V { constructor({ vector: A, - vectorType: I, - x: B, - y: Q, - z: C, - w: E, - r: t, - g: i, - b: e, - a: n + vectorType: e, + x: s, + y: i, + z: n, + w: a, + r, + g, + b: I, + a: Q }) { - if (!A && !I) + if (!A && !e) throw new Error("Either vector or vectorType must be provided"); - const s = I ?? v(A), o = nB(s), r = oB(s), c = { - vector: s, - x: o, - y: o, - r: o, - g: o - }, h = { vector: A, x: B, y: Q, r: t, g: i }; - r >= 3 && (Object.assign(c, { z: o, b: o }), Object.assign(h, { z: C, b: e })), r >= 4 && (Object.assign(c, { w: o, a: o }), Object.assign(h, { w: E, a: n })), super({ inTypes: c, outTypes: { vector: s }, inputs: h }), this.statements = ({ inputs: w, outputs: D }) => { - const { vector: y } = D, { - vector: l, - x: d, - y: u, - z: p, - w: m, - r: M, - g: G, - b: J, - a: k - } = w, N = [ - `${y}.x = ${d ?? M ?? (l ? `${l}.x` : Ng(o))};`, - `${y}.y = ${u ?? G ?? (l ? `${l}.y` : Ng(o))};` + const o = e ?? q(A), E = ns(o), C = as(o), c = { + vector: o, + x: E, + y: E, + r: E, + g: E + }, h = { vector: A, x: s, y: i, r, g }; + C >= 3 && (Object.assign(c, { z: E, b: E }), Object.assign(h, { z: n, b: I })), C >= 4 && (Object.assign(c, { w: E, a: E }), Object.assign(h, { w: a, a: Q })), super({ inTypes: c, outTypes: { vector: o }, inputs: h }), this.statements = ({ inputs: l, outputs: u }) => { + const { vector: w } = u, { + vector: d, + x: p, + y, + z: m, + w: F, + r: D, + g: f, + b: U, + a: S + } = l, M = [ + `${w}.x = ${p ?? D ?? (d ? `${d}.x` : pt(E))};`, + `${w}.y = ${y ?? f ?? (d ? `${d}.y` : pt(E))};` ]; - return r >= 3 && N.push( - `${y}.z = ${p ?? J ?? (l ? `${l}.z` : Ng(o))};` - ), r >= 4 && N.push( - `${y}.w = ${m ?? k ?? (l ? `${l}.w` : Ng(o))};` - ), N; + return C >= 3 && M.push( + `${w}.z = ${m ?? U ?? (d ? `${d}.z` : pt(E))};` + ), C >= 4 && M.push( + `${w}.w = ${F ?? S ?? (d ? `${d}.w` : pt(E))};` + ), M; }; } dynoOut() { - return new W( + return new z( this, "vector" ); } } -function qa(g, A) { - let I = null; - if (Yg(g) ? I = A.length === 1 ? "float" : A.length === 2 ? "vec2" : A.length === 3 ? "vec3" : A.length === 4 ? "vec4" : null : wA(g) ? I = A.length === 1 ? "int" : A.length === 2 ? "ivec2" : A.length === 3 ? "ivec3" : A.length === 4 ? "ivec4" : null : DA(g) && (I = A.length === 1 ? "uint" : A.length === 2 ? "uvec2" : A.length === 3 ? "uvec3" : A.length === 4 ? "uvec4" : null), I == null) +function GB(t, A) { + let e = null; + if (Rt(t) ? e = A.length === 1 ? "float" : A.length === 2 ? "vec2" : A.length === 3 ? "vec3" : A.length === 4 ? "vec4" : null : hA(t) ? e = A.length === 1 ? "int" : A.length === 2 ? "ivec2" : A.length === 3 ? "ivec3" : A.length === 4 ? "ivec4" : null : lA(t) && (e = A.length === 1 ? "uint" : A.length === 2 ? "uvec2" : A.length === 3 ? "uvec3" : A.length === 4 ? "uvec4" : null), e == null) throw new Error(`Invalid swizzle: ${A}`); - return I; + return e; } -class JE extends R { - constructor({ vector: A, select: I }) { +class fa extends x { + constructor({ vector: A, select: e }) { super({ a: A, outKey: "swizzle", - outTypeFunc: (B) => qa(B, I) - }), this.statements = ({ inputs: B, outputs: Q }) => [ - `${Q.swizzle} = ${B.a}.${I};` + outTypeFunc: (s) => GB(s, e) + }), this.statements = ({ inputs: s, outputs: i }) => [ + `${i.swizzle} = ${s.a}.${e};` ]; } } -const va = (g, A, I) => new xE({ index: g, from: A, to: I }), Wa = (g) => new Gg({ value: g }), Va = (g) => new RA({ state: g }), Ta = (g) => new JA({ state: g }), mE = (g) => new LE({ value: g }), fE = (g) => new bE({ value: g }), SE = (g) => new HE({ value: g }), YE = (g) => new KE({ value: g }), Xa = (g) => new ZE({ value: g }), za = (g) => new qE({ value: g }), UE = (g) => new vE({ value: g }), fI = (g) => new WE({ value: g }); -class xE extends T { +const bB = (t, A, e) => new Na({ index: t, from: A, to: e }), vB = (t) => new wt({ value: t }), LB = (t) => new SA({ state: t }), JB = (t) => new FA({ state: t }), ma = (t) => new ka({ value: t }), Ma = (t) => new Ua({ value: t }), xa = (t) => new Ra({ value: t }), Sa = (t) => new Ga({ value: t }), YB = (t) => new ba({ value: t }), TB = (t) => new va({ value: t }), Fa = (t) => new La({ value: t }), xe = (t) => new Ja({ value: t }); +class Na extends V { constructor({ from: A, - to: I, - index: B + to: e, + index: s }) { super({ inTypes: { from: "int", to: "int", index: "int" }, outTypes: { index: "int" }, - inputs: { from: A, to: I, index: B }, - statements: ({ inputs: Q, outputs: C }) => [ - `${C.index} = ${Q.index} - ${Q.from} + ${Q.to};` + inputs: { from: A, to: e, index: s }, + statements: ({ inputs: i, outputs: n }) => [ + `${n.index} = ${i.index} - ${i.from} + ${i.to};` ] }); } dynoOut() { - return new W(this, "index"); + return new z(this, "index"); } } -class RA extends T { +class SA extends V { constructor({ state: A }) { - const I = v(A); + const e = q(A); super({ - inTypes: { state: I }, + inTypes: { state: e }, outTypes: { state: "uint" }, inputs: { state: A }, globals: () => [ - aA(` + BA(` uint pcg_next(uint state) { return state * 747796405u + 2891336453u; } `) ], - statements: ({ inputs: B, outputs: Q }) => { - const C = I === "uint" ? `${B.state}` : I === "int" ? `uint(${B.state})` : `floatBitsToUint(${B.state})`; - return [`${Q.state} = pcg_next(${C});`]; + statements: ({ inputs: s, outputs: i }) => { + const n = e === "uint" ? `${s.state}` : e === "int" ? `uint(${s.state})` : `floatBitsToUint(${s.state})`; + return [`${i.state} = pcg_next(${n});`]; } }); } dynoOut() { - return new W(this, "state"); + return new z(this, "state"); } } -class JA extends T { +class FA extends V { constructor({ state: A }) { super({ inTypes: { state: "uint" }, outTypes: { hash: "uint" }, inputs: { state: A }, globals: () => [ - aA(` + BA(` uint pcg_hash(uint state) { uint hash = ((state >> ((state >> 28u) + 4u)) ^ state) * 277803737u; return (hash >> 22u) ^ hash; } `) ], - statements: ({ inputs: I, outputs: B }) => [ - `${B.hash} = pcg_hash(${I.state});` + statements: ({ inputs: e, outputs: s }) => [ + `${s.hash} = pcg_hash(${e.state});` ] }); } dynoOut() { - return new W(this, "hash"); + return new z(this, "hash"); } } -class Gg extends T { +class wt extends V { constructor({ value: A }) { - const I = v(A), B = rB(I); + const e = q(A), s = rs(e); super({ - inTypes: { value: I }, + inTypes: { value: e }, outTypes: { state: "uint" }, inputs: { value: A }, globals: () => [ - aA(` + BA(` uint pcg_mix(uint value) { return value; } @@ -3769,198 +3647,198 @@ class Gg extends T { } `) ], - statements: ({ inputs: Q, outputs: C }) => { - const E = DA(I) ? `${Q.value}` : wA(I) ? `${B}(${Q.value})` : `floatBitsToUint(${Q.value})`; + statements: ({ inputs: i, outputs: n }) => { + const a = lA(e) ? `${i.value}` : hA(e) ? `${s}(${i.value})` : `floatBitsToUint(${i.value})`; return [ - `${B} bits = ${E};`, - `${C.state} = pcg_mix(bits);` + `${s} bits = ${a};`, + `${n.state} = pcg_mix(bits);` ]; } }); } dynoOut() { - return new W(this, "state"); + return new z(this, "state"); } } -class LE extends qA { +class ka extends HA { constructor({ value: A }) { super({ - inTypes: { value: v(A) }, + inTypes: { value: q(A) }, outTypes: { hash: "uint" }, inputs: { value: A }, - construct: ({ value: I }) => { - if (!I) + construct: ({ value: e }) => { + if (!e) throw new Error("value is required"); - let B = new Gg({ value: I }).outputs.state; - return B = new RA({ state: B }).outputs.state, new JA({ state: B }).outputs; + let s = new wt({ value: e }).outputs.state; + return s = new SA({ state: s }).outputs.state, new FA({ state: s }).outputs; } }); } dynoOut() { - return new W(this, "hash"); + return new z(this, "hash"); } } -class bE extends qA { +class Ua extends HA { constructor({ value: A }) { super({ - inTypes: { value: v(A) }, + inTypes: { value: q(A) }, outTypes: { hash: "uvec2" }, inputs: { value: A }, - construct: ({ value: I }) => { - if (!I) + construct: ({ value: e }) => { + if (!e) throw new Error("value is required"); - let B = new Gg({ value: I }).outputs.state; - B = new RA({ state: B }).outputs.state; - const Q = new JA({ state: B }).outputs.hash; - B = new RA({ state: B }).outputs.state; - const C = new JA({ state: B }).outputs.hash; - return { hash: KA({ vectorType: "uvec2", x: Q, y: C }) }; + let s = new wt({ value: e }).outputs.state; + s = new SA({ state: s }).outputs.state; + const i = new FA({ state: s }).outputs.hash; + s = new SA({ state: s }).outputs.state; + const n = new FA({ state: s }).outputs.hash; + return { hash: YA({ vectorType: "uvec2", x: i, y: n }) }; } }); } dynoOut() { - return new W(this, "hash"); + return new z(this, "hash"); } } -class HE extends qA { +class Ra extends HA { constructor({ value: A }) { super({ - inTypes: { value: v(A) }, + inTypes: { value: q(A) }, outTypes: { hash: "uvec3" }, inputs: { value: A }, - construct: ({ value: I }) => { - if (!I) + construct: ({ value: e }) => { + if (!e) throw new Error("value is required"); - let B = new Gg({ value: I }).outputs.state; - B = new RA({ state: B }).outputs.state; - const Q = new JA({ state: B }).outputs.hash; - B = new RA({ state: B }).outputs.state; - const C = new JA({ state: B }).outputs.hash; - B = new RA({ state: B }).outputs.state; - const E = new JA({ state: B }).outputs.hash; - return { hash: KA({ vectorType: "uvec3", x: Q, y: C, z: E }) }; + let s = new wt({ value: e }).outputs.state; + s = new SA({ state: s }).outputs.state; + const i = new FA({ state: s }).outputs.hash; + s = new SA({ state: s }).outputs.state; + const n = new FA({ state: s }).outputs.hash; + s = new SA({ state: s }).outputs.state; + const a = new FA({ state: s }).outputs.hash; + return { hash: YA({ vectorType: "uvec3", x: i, y: n, z: a }) }; } }); } dynoOut() { - return new W(this, "hash"); + return new z(this, "hash"); } } -class KE extends qA { +class Ga extends HA { constructor({ value: A }) { super({ - inTypes: { value: v(A) }, + inTypes: { value: q(A) }, outTypes: { hash: "uvec4" }, inputs: { value: A }, - construct: ({ value: I }) => { - if (!I) + construct: ({ value: e }) => { + if (!e) throw new Error("value is required"); - let B = new Gg({ value: I }).outputs.state; - B = new RA({ state: B }).outputs.state; - const Q = new JA({ state: B }).outputs.hash; - B = new RA({ state: B }).outputs.state; - const C = new JA({ state: B }).outputs.hash; - B = new RA({ state: B }).outputs.state; - const E = new JA({ state: B }).outputs.hash; - B = new RA({ state: B }).outputs.state; - const t = new JA({ state: B }).outputs.hash; - return { hash: KA({ vectorType: "uvec4", x: Q, y: C, z: E, w: t }) }; + let s = new wt({ value: e }).outputs.state; + s = new SA({ state: s }).outputs.state; + const i = new FA({ state: s }).outputs.hash; + s = new SA({ state: s }).outputs.state; + const n = new FA({ state: s }).outputs.hash; + s = new SA({ state: s }).outputs.state; + const a = new FA({ state: s }).outputs.hash; + s = new SA({ state: s }).outputs.state; + const r = new FA({ state: s }).outputs.hash; + return { hash: YA({ vectorType: "uvec4", x: i, y: n, z: a, w: r }) }; } }); } dynoOut() { - return new W(this, "hash"); + return new z(this, "hash"); } } -class ZE extends qA { +class ba extends HA { constructor({ value: A }) { super({ - inTypes: { value: v(A) }, + inTypes: { value: q(A) }, outTypes: { hash: "float" }, inputs: { value: A }, - construct: ({ value: I }) => { - if (!I) + construct: ({ value: e }) => { + if (!e) throw new Error("value is required"); - const B = mE(I); - return { hash: rA(RC(B), gA("float", 1 / 2 ** 32)) }; + const s = ma(e); + return { hash: CA(Dn(s), tA("float", 1 / 2 ** 32)) }; } }); } dynoOut() { - return new W(this, "hash"); + return new z(this, "hash"); } } -class qE extends qA { +class va extends HA { constructor({ value: A }) { super({ - inTypes: { value: v(A) }, + inTypes: { value: q(A) }, outTypes: { hash: "vec2" }, inputs: { value: A }, - construct: ({ value: I }) => { - if (!I) + construct: ({ value: e }) => { + if (!e) throw new Error("value is required"); - const B = fE(I); - return { hash: rA(JC(B), gA("float", 1 / 2 ** 32)) }; + const s = Ma(e); + return { hash: CA(fn(s), tA("float", 1 / 2 ** 32)) }; } }); } dynoOut() { - return new W(this, "hash"); + return new z(this, "hash"); } } -class vE extends qA { +class La extends HA { constructor({ value: A }) { super({ - inTypes: { value: v(A) }, + inTypes: { value: q(A) }, outTypes: { hash: "vec3" }, inputs: { value: A }, - construct: ({ value: I }) => { - if (!I) + construct: ({ value: e }) => { + if (!e) throw new Error("value is required"); - const B = SE(I); - return { hash: rA(tg(B), gA("float", 1 / 2 ** 32)) }; + const s = xa(e); + return { hash: CA(at(s), tA("float", 1 / 2 ** 32)) }; } }); } dynoOut() { - return new W(this, "hash"); + return new z(this, "hash"); } } -class WE extends qA { +class Ja extends HA { constructor({ value: A }) { super({ - inTypes: { value: v(A) }, + inTypes: { value: q(A) }, outTypes: { hash: "vec4" }, inputs: { value: A }, - construct: ({ value: I }) => { - if (!I) + construct: ({ value: e }) => { + if (!e) throw new Error("value is required"); - const B = YE(I); - return { hash: rA(mC(B), gA("float", 1 / 2 ** 32)) }; + const s = Sa(e); + return { hash: CA(mn(s), tA("float", 1 / 2 ** 32)) }; } }); } dynoOut() { - return new W(this, "hash"); + return new z(this, "hash"); } } -const VE = (g, { +const Ya = (t, { scale: A, - scales: I, - rotate: B, - translate: Q -}) => new XE({ position: g, scale: A, scales: I, rotate: B, translate: Q }).outputs.position, TE = (g, { + scales: e, + rotate: s, + translate: i +}) => new Ha({ position: t, scale: A, scales: e, rotate: s, translate: i }).outputs.position, Ta = (t, { scale: A, - scales: I, - rotate: B -}) => new zE({ dir: g, scale: A, scales: I, rotate: B }).outputs.dir, ja = (g, { rotate: A }) => new jE({ quaternion: g, rotate: A }).outputs.quaternion; -class XE extends T { + scales: e, + rotate: s +}) => new Ka({ dir: t, scale: A, scales: e, rotate: s }).outputs.dir, HB = (t, { rotate: A }) => new qa({ quaternion: t, rotate: A }).outputs.quaternion; +class Ha extends V { constructor({ position: A, - scale: I, - scales: B, - rotate: Q, - translate: C + scale: e, + scales: s, + rotate: i, + translate: n }) { super({ inTypes: { @@ -3971,147 +3849,147 @@ class XE extends T { translate: "vec3" }, outTypes: { position: "vec3" }, - inputs: { position: A, scale: I, scales: B, rotate: Q, translate: C }, - statements: ({ inputs: E, outputs: t }) => { - const { position: i } = t; - if (!i) + inputs: { position: A, scale: e, scales: s, rotate: i, translate: n }, + statements: ({ inputs: a, outputs: r }) => { + const { position: g } = r; + if (!g) return []; - const { scale: e, scales: n, rotate: s, translate: o } = E; + const { scale: I, scales: Q, rotate: o, translate: E } = a; return [ - `${i} = ${E.position ?? "vec3(0.0, 0.0, 0.0)"};`, - e ? `${i} *= ${e};` : null, - n ? `${i} *= ${n};` : null, - s ? `${i} = quatVec(${s}, ${i});` : null, - o ? `${i} += ${o};` : null + `${g} = ${a.position ?? "vec3(0.0, 0.0, 0.0)"};`, + I ? `${g} *= ${I};` : null, + Q ? `${g} *= ${Q};` : null, + o ? `${g} = quatVec(${o}, ${g});` : null, + E ? `${g} += ${E};` : null ].filter(Boolean); } }); } } -class zE extends T { +class Ka extends V { constructor({ dir: A, - scale: I, - scales: B, - rotate: Q + scale: e, + scales: s, + rotate: i }) { super({ inTypes: { dir: "vec3", scale: "float", scales: "vec3", rotate: "vec4" }, outTypes: { dir: "vec3" }, - inputs: { dir: A, scale: I, scales: B, rotate: Q }, - statements: ({ inputs: C, outputs: E }) => { - const { dir: t } = E; - if (!t) + inputs: { dir: A, scale: e, scales: s, rotate: i }, + statements: ({ inputs: n, outputs: a }) => { + const { dir: r } = a; + if (!r) return []; - const { scale: i, scales: e, rotate: n } = C; + const { scale: g, scales: I, rotate: Q } = n; return [ - `${t} = ${C.dir ?? "vec3(0.0, 0.0, 0.0)"};`, - i ? `${t} *= ${i};` : null, - e ? `${t} *= ${e};` : null, - n ? `${t} = quatVec(${n}, ${t});` : null + `${r} = ${n.dir ?? "vec3(0.0, 0.0, 0.0)"};`, + g ? `${r} *= ${g};` : null, + I ? `${r} *= ${I};` : null, + Q ? `${r} = quatVec(${Q}, ${r});` : null ].filter(Boolean); } }); } } -class jE extends T { +class qa extends V { constructor({ quaternion: A, - rotate: I + rotate: e }) { super({ inTypes: { quaternion: "vec4", rotate: "vec4" }, outTypes: { quaternion: "vec4" }, - inputs: { quaternion: A, rotate: I }, - statements: ({ inputs: B, outputs: Q }) => { - const { quaternion: C } = Q; - return C ? [ - `${C} = ${B.quaternion ?? "vec4(0.0, 0.0, 0.0, 1.0)"};`, - I ? `${C} = quatQuat(${B.rotate}, ${C});` : null + inputs: { quaternion: A, rotate: e }, + statements: ({ inputs: s, outputs: i }) => { + const { quaternion: n } = i; + return n ? [ + `${n} = ${s.quaternion ?? "vec4(0.0, 0.0, 0.0, 1.0)"};`, + e ? `${n} = quatQuat(${s.rotate}, ${n});` : null ].filter(Boolean) : []; } }); } } -const Oa = () => { +const KB = () => { throw new Error("Not implemented"); -}, Pa = () => { +}, qB = () => { throw new Error("Not implemented"); -}, _a = () => { +}, zB = () => { throw new Error("Not implemented"); -}, $a = () => { +}, _B = () => { throw new Error("Not implemented"); -}, An = () => { +}, VB = () => { throw new Error("Not implemented"); -}, gn = () => { +}, PB = () => { throw new Error("Not implemented"); -}, In = (g, A) => new OE({ texture: g, lod: A }), Bn = (g, A, I) => new PE({ texture: g, coord: A, bias: I }), Qn = (g, A, I) => new _E({ texture: g, coord: A, lod: I }); -class OE extends T { - constructor({ texture: A, lod: I }) { - const B = v(A); +}, ZB = (t, A) => new za({ texture: t, lod: A }), OB = (t, A, e) => new _a({ texture: t, coord: A, bias: e }), WB = (t, A, e) => new Va({ texture: t, coord: A, lod: e }); +class za extends V { + constructor({ texture: A, lod: e }) { + const s = q(A); super({ - inTypes: { texture: B, lod: "int" }, - outTypes: { size: $E(B) }, - inputs: { texture: A, lod: I }, - statements: ({ inputs: Q, outputs: C }) => [ - `${C.size} = textureSize(${Q.texture}, ${Q.lod ?? "0"});` + inTypes: { texture: s, lod: "int" }, + outTypes: { size: Pa(s) }, + inputs: { texture: A, lod: e }, + statements: ({ inputs: i, outputs: n }) => [ + `${n.size} = textureSize(${i.texture}, ${i.lod ?? "0"});` ] }); } dynoOut() { - return new W(this, "size"); + return new z(this, "size"); } } -class PE extends T { +class _a extends V { constructor({ texture: A, - coord: I, - bias: B + coord: e, + bias: s }) { - const Q = v(A); + const i = q(A); super({ inTypes: { - texture: Q, - coord: Cn(Q), + texture: i, + coord: XB(i), bias: "float" }, - outTypes: { sample: At(Q) }, - inputs: { texture: A, coord: I, bias: B }, - statements: ({ inputs: C, outputs: E }) => [ - `${E.sample} = texture(${C.texture}, ${C.coord}${C.bias ? `, ${C.bias}` : ""});` + outTypes: { sample: Za(i) }, + inputs: { texture: A, coord: e, bias: s }, + statements: ({ inputs: n, outputs: a }) => [ + `${a.sample} = texture(${n.texture}, ${n.coord}${n.bias ? `, ${n.bias}` : ""});` ] }); } dynoOut() { - return new W(this, "sample"); + return new z(this, "sample"); } } -class _E extends T { +class Va extends V { constructor({ texture: A, - coord: I, - lod: B + coord: e, + lod: s }) { - const Q = v(A); + const i = q(A); super({ inTypes: { - texture: Q, - coord: $E(Q), + texture: i, + coord: Pa(i), lod: "int" }, - outTypes: { texel: At(Q) }, - inputs: { texture: A, coord: I, lod: B }, - statements: ({ inputs: C, outputs: E }) => [ - `${E.texel} = texelFetch(${C.texture}, ${C.coord}, ${C.lod ?? "0"});` + outTypes: { texel: Za(i) }, + inputs: { texture: A, coord: e, lod: s }, + statements: ({ inputs: n, outputs: a }) => [ + `${a.texel} = texelFetch(${n.texture}, ${n.coord}, ${n.lod ?? "0"});` ] }); } dynoOut() { - return new W(this, "texel"); + return new z(this, "texel"); } } -function $E(g) { - switch (g) { +function Pa(t) { + switch (t) { case "sampler2D": case "usampler2D": case "isampler2D": @@ -4130,11 +4008,11 @@ function $E(g) { case "sampler2DArrayShadow": return "ivec3"; default: - throw new Error(`Invalid texture type: ${g}`); + throw new Error(`Invalid texture type: ${t}`); } } -function Cn(g) { - switch (g) { +function XB(t) { + switch (t) { case "sampler2D": case "usampler2D": case "isampler2D": @@ -4154,11 +4032,11 @@ function Cn(g) { case "sampler2DArrayShadow": return "vec4"; default: - throw new Error(`Invalid texture type: ${g}`); + throw new Error(`Invalid texture type: ${t}`); } } -function At(g) { - switch (g) { +function Za(t) { + switch (t) { case "sampler2D": case "sampler2DArray": case "sampler3D": @@ -4179,540 +4057,540 @@ function At(g) { case "sampler2DArrayShadow": return "float"; default: - throw new Error(`Invalid texture type: ${g}`); + throw new Error(`Invalid texture type: ${t}`); } } -const En = (g) => new gt({ degrees: g }), tn = (g) => new It({ radians: g }), SI = (g) => new Bt({ radians: g }), sn = (g) => new Qt({ radians: g }), en = (g) => new Ct({ radians: g }), an = (g) => new Et({ sin: g }), nn = (g) => new tt({ cos: g }), on = (g) => new it({ tan: g }), rn = (g, A) => new st({ y: g, x: A }), cn = (g) => new et({ x: g }), hn = (g) => new at({ x: g }), wn = (g) => new nt({ x: g }), Dn = (g) => new ot({ x: g }), ln = (g) => new rt({ x: g }), yn = (g) => new ct({ x: g }); -class gt extends R { +const $B = (t) => new Oa({ degrees: t }), jB = (t) => new Wa({ radians: t }), Se = (t) => new Xa({ radians: t }), AQ = (t) => new $a({ radians: t }), tQ = (t) => new ja({ radians: t }), eQ = (t) => new Ar({ sin: t }), sQ = (t) => new tr({ cos: t }), iQ = (t) => new er({ tan: t }), nQ = (t, A) => new sr({ y: t, x: A }), aQ = (t) => new ir({ x: t }), rQ = (t) => new nr({ x: t }), gQ = (t) => new ar({ x: t }), oQ = (t) => new rr({ x: t }), IQ = (t) => new gr({ x: t }), BQ = (t) => new or({ x: t }); +class Oa extends x { constructor({ degrees: A }) { - super({ a: A, outTypeFunc: (I) => I, outKey: "radians" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.radians} = radians(${I.a});` + super({ a: A, outTypeFunc: (e) => e, outKey: "radians" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.radians} = radians(${e.a});` ]; } } -class It extends R { +class Wa extends x { constructor({ radians: A }) { - super({ a: A, outTypeFunc: (I) => I, outKey: "degrees" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.degrees} = degrees(${I.a});` + super({ a: A, outTypeFunc: (e) => e, outKey: "degrees" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.degrees} = degrees(${e.a});` ]; } } -class Bt extends R { +class Xa extends x { constructor({ radians: A }) { - super({ a: A, outTypeFunc: (I) => I, outKey: "sin" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.sin} = sin(${I.a});` + super({ a: A, outTypeFunc: (e) => e, outKey: "sin" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.sin} = sin(${e.a});` ]; } } -class Qt extends R { +class $a extends x { constructor({ radians: A }) { - super({ a: A, outTypeFunc: (I) => I, outKey: "cos" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.cos} = cos(${I.a});` + super({ a: A, outTypeFunc: (e) => e, outKey: "cos" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.cos} = cos(${e.a});` ]; } } -class Ct extends R { +class ja extends x { constructor({ radians: A }) { - super({ a: A, outTypeFunc: (I) => I, outKey: "tan" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.tan} = tan(${I.a});` + super({ a: A, outTypeFunc: (e) => e, outKey: "tan" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.tan} = tan(${e.a});` ]; } } -class Et extends R { +class Ar extends x { constructor({ sin: A }) { - super({ a: A, outTypeFunc: (I) => I, outKey: "asin" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.asin} = asin(${I.a});` + super({ a: A, outTypeFunc: (e) => e, outKey: "asin" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.asin} = asin(${e.a});` ]; } } -class tt extends R { +class tr extends x { constructor({ cos: A }) { - super({ a: A, outTypeFunc: (I) => I, outKey: "acos" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.acos} = acos(${I.a});` + super({ a: A, outTypeFunc: (e) => e, outKey: "acos" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.acos} = acos(${e.a});` ]; } } -class it extends R { +class er extends x { constructor({ tan: A }) { - super({ a: A, outTypeFunc: (I) => I, outKey: "atan" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.atan} = atan(${I.a});` + super({ a: A, outTypeFunc: (e) => e, outKey: "atan" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.atan} = atan(${e.a});` ]; } } -class st extends O { - constructor({ y: A, x: I }) { +class sr extends W { + constructor({ y: A, x: e }) { super({ a: A, - b: I, - outTypeFunc: (B, Q) => B, + b: e, + outTypeFunc: (s, i) => s, outKey: "atan2" - }), this.statements = ({ inputs: B, outputs: Q }) => [ - `${Q.atan2} = atan2(${B.a}, ${B.b});` + }), this.statements = ({ inputs: s, outputs: i }) => [ + `${i.atan2} = atan2(${s.a}, ${s.b});` ]; } } -class et extends R { +class ir extends x { constructor({ x: A }) { - super({ a: A, outTypeFunc: (I) => I, outKey: "sinh" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.sinh} = sinh(${I.a});` + super({ a: A, outTypeFunc: (e) => e, outKey: "sinh" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.sinh} = sinh(${e.a});` ]; } } -class at extends R { +class nr extends x { constructor({ x: A }) { - super({ a: A, outTypeFunc: (I) => I, outKey: "cosh" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.cosh} = cosh(${I.a});` + super({ a: A, outTypeFunc: (e) => e, outKey: "cosh" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.cosh} = cosh(${e.a});` ]; } } -class nt extends R { +class ar extends x { constructor({ x: A }) { - super({ a: A, outTypeFunc: (I) => I, outKey: "tanh" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.tanh} = tanh(${I.a});` + super({ a: A, outTypeFunc: (e) => e, outKey: "tanh" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.tanh} = tanh(${e.a});` ]; } } -class ot extends R { +class rr extends x { constructor({ x: A }) { - super({ a: A, outTypeFunc: (I) => I, outKey: "asinh" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.asinh} = asinh(${I.a});` + super({ a: A, outTypeFunc: (e) => e, outKey: "asinh" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.asinh} = asinh(${e.a});` ]; } } -class rt extends R { +class gr extends x { constructor({ x: A }) { - super({ a: A, outTypeFunc: (I) => I, outKey: "acosh" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.acosh} = acosh(${I.a});` + super({ a: A, outTypeFunc: (e) => e, outKey: "acosh" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.acosh} = acosh(${e.a});` ]; } } -class ct extends R { +class or extends x { constructor({ x: A }) { - super({ a: A, outTypeFunc: (I) => I, outKey: "atanh" }), this.statements = ({ inputs: I, outputs: B }) => [ - `${B.atanh} = atanh(${I.a});` + super({ a: A, outTypeFunc: (e) => e, outKey: "atanh" }), this.statements = ({ inputs: e, outputs: s }) => [ + `${s.atanh} = atanh(${e.a});` ]; } } -const Ko = /* @__PURE__ */ Object.freeze(/* @__PURE__ */ Object.defineProperty({ +const NE = /* @__PURE__ */ Object.freeze(/* @__PURE__ */ Object.defineProperty({ __proto__: null, - Abs: VQ, - Acos: tt, - Acosh: rt, - Add: LQ, - All: NC, - And: rC, - Any: MC, - Asin: Et, - Asinh: ot, - Atan: it, - Atan2: st, - Atanh: ct, - BVec2: HC, - BVec3: KC, - BVec4: ZC, - BinaryOp: O, - Bool: UC, - Ceil: zQ, - Clamp: iC, - Combine: RE, - CombineGsplat: MB, - CompMult: GE, - CompXor: FC, - Compilation: wB, - 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atan2: rn, - atanh: yn, - bool: Aa, - bvec2: Ba, - bvec3: Qa, - bvec4: Ca, - ceil: ue, - clamp: Se, - combine: KA, - combineGsplat: lg, - comment: $a, - compMult: fa, - compXor: Pe, - cos: sn, - cosh: hn, - cross: pa, - defineGsplat: pA, - defineGsplatNormal: NB, - definePackedSplats: sI, - degrees: tn, - determinant: Ua, - distance: Ma, - div: Og, - dot: Na, - dyno: xg, - dynoBlock: YA, - dynoBool: ti, - dynoBvec2: ei, - dynoBvec3: ri, - dynoBvec4: wi, - dynoConst: gA, - dynoDeclare: ZI, - dynoFloat: bA, - dynoFor: _a, - dynoIf: Oa, - dynoInt: si, - dynoIsampler2D: Yi, - dynoIsampler2DArray: Li, - dynoIsampler3D: Ki, - dynoIsamplerCube: vi, - dynoIvec2: ni, - dynoIvec3: hi, - dynoIvec4: li, - dynoLiteral: _g, - dynoMat2: ui, - dynoMat2x2: di, - dynoMat2x3: Gi, - dynoMat2x4: Mi, - dynoMat3: Ni, - dynoMat3x2: pi, - dynoMat3x3: ki, - dynoMat3x4: Fi, - dynoMat4: Ri, - dynoMat4x2: Ji, - dynoMat4x3: mi, - dynoMat4x4: fi, - dynoSampler2D: Ui, - dynoSampler2DArray: bi, - dynoSampler2DArrayShadow: Ti, - dynoSampler2DShadow: Vi, - dynoSampler3D: Zi, - dynoSamplerCube: Wi, - dynoSamplerCubeShadow: Xi, - dynoSwitch: Pa, - dynoUint: ii, - dynoUsampler2D: Si, - dynoUsampler2DArray: xi, - dynoUsampler3D: Hi, - dynoUsamplerCube: qi, - dynoUvec2: ai, - dynoUvec3: ci, - dynoUvec4: Di, - dynoVec2: oi, - dynoVec3: zA, - dynoVec4: yi, - equal: Te, - exp: Ne, - exp2: pe, - extendVec: nE, - faceforward: ka, - float: RC, - floatBitsToInt: fC, - floatBitsToUint: ca, - floor: ye, - fract: Pg, - greaterThan: We, - greaterThanEqual: Ve, - gsplatNormal: Qi, - hash: mE, - hash2: fE, - hash3: SE, - hash4: YE, - hashFloat: Xa, - hashVec2: za, - hashVec3: UE, - hashVec4: fI, - imod: mI, - int: ga, - intBitsToFloat: ha, - inverse: xa, - inversesqrt: me, - isAllFloatType: $A, - isBoolType: ig, - isFloatType: Yg, - isInf: Le, - isIntType: wA, - isMat2: Ig, - isMat3: Bg, - isMat4: Qg, - isMatFloatType: aB, - isNan: xe, - isScalarType: sg, - isUintType: DA, - isVector2Type: ug, - isVector3Type: dg, - isVector4Type: Ug, - isVectorType: _t, - ivec2: Ea, - ivec3: ta, - ivec4: ia, - length: Ga, - lessThan: qe, - lessThanEqual: ve, - literalNegOne: Ii, - literalOne: gi, - literalZero: Ng, - log: ke, - log2: Fe, - mat2: na, - mat3: oa, - mat4: ra, - max: UQ, - min: fe, - mix: xQ, - mod: YQ, - modf: he, - mul: rA, - neg: we, - normalize: aE, - not: Ze, - notEqual: Xe, - numPackedSplats: Bi, - numberAsFloat: q, - numberAsInt: CA, - numberAsUint: EA, - or: He, - outer: Sa, - outputPackedSplat: FB, - outputRgba8: Ci, - packHalf2x16: SC, - packSnorm2x16: Da, - packUnorm2x16: ya, - pcgHash: Ta, - pcgMix: Wa, - pcgNext: Va, - pow: Me, - projectH: Ja, - radians: En, - readPackedSplat: mg, - readPackedSplatRange: DB, - reflectVec: Fa, - refractVec: Ra, - remapIndex: va, - round: Ge, - sameSizeIvec: Ai, - sameSizeUvec: rB, - sameSizeVec: $t, - select: Oe, - sign: le, - sin: SI, - sinh: cn, - smoothstep: Ue, - split: Rg, - splitGsplat: pg, - sqr: Re, - sqrt: Je, - step: Ye, - sub: Sg, - swizzle: ma, - tan: en, - tanh: wn, - texelFetch: Qn, - texture: Bn, - textureSize: In, - transformDir: TE, - transformGsplat: qI, - transformPos: VE, - transformQuat: ja, - transpose: Ya, - trunc: de, - typeLiteral: cB, - uint: Ia, - uintBitsToFloat: wa, - uintToRgba8: YC, - uniform: Ei, - unindent: aA, - unindentLines: mA, - unpackHalf2x16: da, - unpackSnorm2x16: la, - unpackUnorm2x16: ua, - uvec2: sa, - uvec3: ea, - uvec4: aa, - valType: v, - vec2: JC, - vec3: tg, - vec4: mC, - vectorDim: oB, - vectorElementType: nB, - xor: Ke + Abs: Ji, + Acos: tr, + Acosh: gr, + Add: Ni, + All: dn, + And: gn, + Any: un, + Asin: Ar, + Asinh: rr, + Atan: er, + Atan2: sr, + Atanh: or, + BVec2: Rn, + BVec3: Gn, + BVec4: bn, + BinaryOp: W, + Bool: Fn, + Ceil: Hi, + Clamp: tn, + Combine: Da, + CombineGsplat: ls, + CompMult: la, + CompXor: pn, + Compilation: Is, + Cos: $a, + Cosh: nr, + Cross: Ia, + Degrees: Wa, + Determinant: wa, + Distance: ga, + Div: Ri, + Dot: oa, + Dyno: V, + DynoBlock: HA, + DynoBool: Wt, + DynoBvec2: fs, + DynoBvec3: Ss, + DynoBvec4: ks, + DynoConst: os, + DynoFloat: it, + DynoInt: kt, + DynoIsampler2D: Ps, + DynoIsampler2DArray: Os, + DynoIsampler3D: $s, + DynoIsamplerCube: ti, + DynoIvec2: Ms, + DynoIvec3: Ns, + DynoIvec4: Rs, + DynoLiteral: ct, + DynoMat2: Gs, + DynoMat2x2: bs, + DynoMat2x3: vs, + DynoMat2x4: Ls, + DynoMat3: Js, + DynoMat3x2: Ys, + DynoMat3x3: Ts, + DynoMat3x4: Hs, + DynoMat4: Ks, + DynoMat4x2: qs, + DynoMat4x3: zs, + DynoMat4x4: _s, + DynoOutput: z, + DynoProgram: Ye, + DynoProgramTemplate: Te, + DynoRemapIndex: Na, + DynoSampler2D: Zs, + DynoSampler2DArray: Ws, + DynoSampler2DArrayShadow: ii, + DynoSampler2DShadow: si, + DynoSampler3D: js, + DynoSamplerCube: ei, + DynoSamplerCubeShadow: ni, + DynoUint: Ds, + DynoUniform: k, + DynoUsampler2D: Vs, + DynoUsampler2DArray: Mt, + DynoUsampler3D: Xs, + DynoUsamplerCube: Ai, + DynoUvec2: ms, + DynoUvec3: Fs, + DynoUvec4: Us, + DynoValue: $A, + DynoVec2: xs, + DynoVec3: lt, + DynoVec4: Lt, + Equal: hn, + Exp: Vi, + Exp2: Pi, + ExtendVec: Ea, + FaceForward: Ca, + Float: Un, + FloatBitsToInt: Zn, + FloatBitsToUint: On, + Floor: Ti, + Fract: zi, + GreaterThan: Cn, + GreaterThanEqual: cn, + Gsplat: sA, + GsplatNormal: ds, + Hash: ka, + Hash2: Ua, + Hash3: Ra, + Hash4: Ga, + HashFloat: ba, + HashVec2: va, + HashVec3: La, + HashVec4: Ja, + IMod: Gi, + IVec2: vn, + IVec3: Ln, + IVec4: Jn, + Int: Nn, + IntBitsToFloat: Wn, + Inverse: ya, + InverseSqrt: $i, + IsInf: rn, + IsNan: an, + Length: ra, + LessThan: Qn, + LessThanEqual: En, + Log: Zi, + Log2: Oi, + Mat2: _n, + Mat3: Vn, + Mat4: Pn, + Max: An, + Min: ji, + Mix: en, + Mod: bi, + Modf: vi, + Mul: Ui, + Neg: Li, + Normalize: Ba, + Not: Bn, + NotEqual: ln, + NumPackedSplats: Qs, + Or: on, + Outer: ua, + OutputPackedSplat: ps, + OutputRgba8: Le, + PackHalf2x16: ea, + PackSnorm2x16: $n, + PackUnorm2x16: Aa, + PcgHash: FA, + PcgMix: wt, + PcgNext: SA, + Pow: _i, + ProjectH: Qa, + Radians: Oa, + ReadPackedSplat: Cs, + ReadPackedSplatRange: cs, + ReflectVec: ca, + RefractVec: ha, + Round: qi, + Select: wn, + Sign: Yi, + SimpleCast: rA, + Sin: Xa, + Sinh: ir, + Smoothstep: nn, + Split: pa, + SplitGsplat: hs, + Sqr: Wi, + Sqrt: Xi, + Step: sn, + Sub: ki, + Swizzle: fa, + TPackedSplats: vt, + Tan: ja, + Tanh: ar, + TexelFetch: Va, + Texture: _a, + TextureSize: za, + TransformDir: Ka, + TransformGsplat: ws, + TransformPosition: Ha, + TransformQuaternion: qa, + Transpose: da, + TrinaryOp: ot, + Trunc: Ki, + UVec2: Yn, + UVec3: Tn, + UVec4: Hn, + Uint: kn, + UintBitsToFloat: Xn, + UintToRgba8: ia, + UnaryOp: x, + UnpackHalf2x16: sa, + UnpackSnorm2x16: jn, + UnpackUnorm2x16: ta, + Vec2: Kn, + Vec3: qn, + Vec4: zn, + Xor: In, + abs: II, + acos: sQ, + acosh: IQ, + add: fA, + all: HI, + and: NI, + any: TI, + arrayIndex: VB, + arrayLength: PB, + asin: eQ, + asinh: oQ, + atan: iQ, + atan2: nQ, + atanh: BQ, + bool: VI, + bvec2: OI, + bvec3: WI, + bvec4: XI, + ceil: EI, + clamp: mI, + combine: YA, + combineGsplat: ht, + comment: _B, + compMult: fB, + compXor: qI, + cos: AQ, + cosh: rQ, + cross: uB, + defineGsplat: mA, + defineGsplatNormal: us, + definePackedSplats: ne, + degrees: jB, + determinant: xB, + distance: hB, + div: Pt, + dot: lB, + dyno: bt, + dynoBlock: RA, + dynoBool: $r, + dynoBvec2: tg, + dynoBvec3: ng, + dynoBvec4: gg, + dynoConst: tA, + dynoDeclare: be, + dynoFloat: LA, + dynoFor: zB, + dynoIf: KB, + dynoInt: Ag, + dynoIsampler2D: mg, + dynoIsampler2DArray: Sg, + dynoIsampler3D: kg, + dynoIsamplerCube: Gg, + dynoIvec2: sg, + dynoIvec3: rg, + dynoIvec4: Ig, + dynoLiteral: Ot, + dynoMat2: Qg, + dynoMat2x2: Eg, + dynoMat2x3: Cg, + dynoMat2x4: cg, + dynoMat3: hg, + dynoMat3x2: lg, + dynoMat3x3: ug, + dynoMat3x4: dg, + dynoMat4: wg, + dynoMat4x2: yg, + dynoMat4x3: pg, + dynoMat4x4: Dg, + dynoSampler2D: Mg, + dynoSampler2DArray: Fg, + dynoSampler2DArrayShadow: Lg, + dynoSampler2DShadow: vg, + dynoSampler3D: Ug, + dynoSamplerCube: bg, + dynoSamplerCubeShadow: Jg, + dynoSwitch: qB, + dynoUint: jr, + dynoUsampler2D: fg, + dynoUsampler2DArray: xg, + dynoUsampler3D: Ng, + dynoUsamplerCube: Rg, + dynoUvec2: eg, + dynoUvec3: ag, + dynoUvec4: og, + dynoVec2: ig, + dynoVec3: PA, + dynoVec4: Bg, + equal: JI, + exp: lI, + exp2: uI, + extendVec: aa, + faceforward: dB, + float: Dn, + floatBitsToInt: Mn, + floatBitsToUint: rB, + floor: QI, + fract: Zt, + greaterThan: vI, + greaterThanEqual: LI, + gsplatNormal: Or, + hash: ma, + hash2: Ma, + hash3: xa, + hash4: Sa, + hashFloat: YB, + hashVec2: TB, + hashVec3: Fa, + hashVec4: xe, + imod: Me, + int: PI, + intBitsToFloat: gB, + inverse: SB, + inversesqrt: DI, + isAllFloatType: jA, + isBoolType: rt, + isFloatType: Rt, + isInf: FI, + isIntType: hA, + isMat2: tt, + isMat3: et, + isMat4: st, + isMatFloatType: is, + isNan: SI, + isScalarType: gt, + isUintType: lA, + isVector2Type: ut, + isVector3Type: dt, + isVector4Type: Gt, + isVectorType: qr, + ivec2: $I, + ivec3: jI, + ivec4: AB, + length: cB, + lessThan: GI, + lessThanEqual: bI, + literalNegOne: Pr, + literalOne: Vr, + literalZero: pt, + log: dI, + log2: wI, + mat2: iB, + mat3: nB, + mat4: aB, + max: Si, + min: fI, + mix: Fi, + mod: xi, + modf: gI, + mul: CA, + neg: oI, + normalize: na, + not: RI, + notEqual: YI, + numPackedSplats: Zr, + numberAsFloat: K, + numberAsInt: nA, + numberAsUint: aA, + or: kI, + outer: mB, + outputPackedSplat: ys, + outputRgba8: Wr, + packHalf2x16: xn, + packSnorm2x16: IB, + packUnorm2x16: QB, + pcgHash: JB, + pcgMix: vB, + pcgNext: LB, + pow: hI, + projectH: pB, + radians: $B, + readPackedSplat: Nt, + readPackedSplatRange: Bs, + reflectVec: wB, + refractVec: yB, + remapIndex: bB, + round: cI, + sameSizeIvec: _r, + sameSizeUvec: rs, + sameSizeVec: zr, + select: KI, + sign: BI, + sin: Se, + sinh: aQ, + smoothstep: xI, + split: St, + splitGsplat: mt, + sqr: yI, + sqrt: pI, + step: MI, + sub: Ut, + swizzle: DB, + tan: tQ, + tanh: gQ, + texelFetch: WB, + texture: OB, + textureSize: ZB, + transformDir: Ta, + transformGsplat: ve, + transformPos: Ya, + transformQuat: HB, + transpose: MB, + trunc: CI, + typeLiteral: gs, + uint: ZI, + uintBitsToFloat: oB, + uintToRgba8: Sn, + uniform: Xr, + unindent: BA, + unindentLines: NA, + unpackHalf2x16: CB, + unpackSnorm2x16: BB, + unpackUnorm2x16: EB, + uvec2: tB, + uvec3: eB, + uvec4: sB, + valType: q, + vec2: fn, + vec3: at, + vec4: mn, + vectorDim: as, + vectorElementType: ns, + xor: UI }, Symbol.toStringTag, { value: "Module" })); -var un = `precision highp float; +var QQ = `precision highp float; precision highp int; precision highp sampler2D; precision highp usampler2D; @@ -4748,7 +4626,7 @@ void main() { target = vec4(0.0, 0.0, 0.0, 0.0); } }`; -const sA = class sA { +const oA = class oA { constructor({ renderer: A } = {}) { this.renderer = A, this.capacity = 0, this.count = 0; } @@ -4757,50 +4635,50 @@ const sA = class sA { } // Ensure we have a buffer large enough for the readback of count indices. // Pass in previous bufer of the desired type. - ensureBuffer(A, I) { - const Q = Math.ceil(Math.max(1, A) / X) * X * 4; - if (I.byteLength >= Q) - return I; - const C = new ArrayBuffer(Q); - if (I instanceof ArrayBuffer) - return C; - const E = I.constructor; - return new E(C); + ensureBuffer(A, e) { + const i = Math.ceil(Math.max(1, A) / O) * O * 4; + if (e.byteLength >= i) + return e; + const n = new ArrayBuffer(i); + if (e instanceof ArrayBuffer) + return n; + const a = e.constructor; + return new a(n); } // Ensure our render target is large enough for the readback of capacity indices. ensureCapacity(A) { - const { width: I, height: B, depth: Q, maxSplats: C } = dA(A); - (!this.target || C > this.capacity) && (this.dispose(), this.capacity = C, this.target = new a.WebGLArrayRenderTarget(I, B, Q, { + const { width: e, height: s, depth: i, maxSplats: n } = yA(A); + (!this.target || n > this.capacity) && (this.dispose(), this.capacity = n, this.target = new B.WebGLArrayRenderTarget(e, s, i, { depthBuffer: !1, stencilBuffer: !1, generateMipmaps: !1, - magFilter: a.NearestFilter, - minFilter: a.NearestFilter - }), this.target.texture.format = a.RGBAFormat, this.target.texture.type = a.UnsignedByteType, this.target.texture.internalFormat = "RGBA8"); + magFilter: B.NearestFilter, + minFilter: B.NearestFilter + }), this.target.texture.format = B.RGBAFormat, this.target.texture.type = B.UnsignedByteType, this.target.texture.internalFormat = "RGBA8"); } // Get a program and THREE.RawShaderMaterial for a given Rgba8Readback, // generating it if necessary and caching the result. prepareProgramMaterial(A) { - let I = sA.readbackProgram.get(A); - if (!I) { - const Q = YA( + let e = oA.readbackProgram.get(A); + if (!e) { + const i = RA( { index: "int" }, { rgba8: "vec4" }, - ({ index: C }) => (A.inputs.index = C, { rgba8: new vI({ rgba8: A.outputs.rgba8 }) }) + ({ index: n }) => (A.inputs.index = n, { rgba8: new Le({ rgba8: A.outputs.rgba8 }) }) ); - sA.programTemplate || (sA.programTemplate = new TI(un)), I = new VI({ - graph: Q, + oA.programTemplate || (oA.programTemplate = new Te(QQ)), e = new Ye({ + graph: i, inputs: { index: "index" }, outputs: { rgba8: "target" }, - template: sA.programTemplate - }), Object.assign(I.uniforms, { + template: oA.programTemplate + }), Object.assign(e.uniforms, { targetLayer: { value: 0 }, targetBase: { value: 0 }, targetCount: { value: 0 } - }), sA.readbackProgram.set(A, I); + }), oA.readbackProgram.set(A, e); } - const B = I.prepareMaterial(); - return sA.mesh.material = B, { program: I, material: B }; + const s = e.prepareMaterial(); + return oA.mesh.material = s, { program: e, material: s }; } saveRenderState(A) { return { @@ -4810,83 +4688,83 @@ const sA = class sA { pixelRatio: A.getPixelRatio() }; } - resetRenderState(A, I) { - A.setRenderTarget(null), A.setPixelRatio(I.pixelRatio), A.xr.isPresenting = I.xrPresenting, A.autoClear = I.autoClear, A.setScissorTest(I.scissorTest); + resetRenderState(A, e) { + A.setRenderTarget(null), A.setPixelRatio(e.pixelRatio), A.xr.isPresenting = e.xrPresenting, A.autoClear = e.autoClear, A.setScissorTest(e.scissorTest); } process({ count: A, - material: I + material: e }) { - const B = this.renderer; - if (!B) + const s = this.renderer; + if (!s) throw new Error("No renderer"); if (!this.target) throw new Error("No target"); - const Q = X * WA; - I.uniforms.targetBase.value = 0, I.uniforms.targetCount.value = A; - let C = 0; - for (; C < A; ) { - const E = Math.floor(C / Q), t = E * Q, i = Math.min( - WA, - Math.ceil((A - t) / X) + const i = O * XA; + e.uniforms.targetBase.value = 0, e.uniforms.targetCount.value = A; + let n = 0; + for (; n < A; ) { + const a = Math.floor(n / i), r = a * i, g = Math.min( + XA, + Math.ceil((A - r) / O) ); - I.uniforms.targetLayer.value = E, B.setPixelRatio(1), B.setRenderTarget(this.target, E), B.xr.isPresenting = !1, B.autoClear = !1, B.setScissorTest(!0), B.setScissor(0, 0, X, i), B.render(sA.scene, sA.camera), C += X * i; + e.uniforms.targetLayer.value = a, s.setPixelRatio(1), s.setRenderTarget(this.target, a), s.xr.isPresenting = !1, s.autoClear = !1, s.setScissorTest(!0), s.setScissor(0, 0, O, g), s.render(oA.scene, oA.camera), n += O * g; } this.count = A; } async read({ readback: A }) { - const I = this.renderer; - if (!I) + const e = this.renderer; + if (!e) throw new Error("No renderer"); if (!this.target) throw new Error("No target"); - const B = Math.ceil(this.count / X) * X; - if (A.byteLength < B * 4) + const s = Math.ceil(this.count / O) * O; + if (A.byteLength < s * 4) throw new Error( - `Readback buffer too small: ${A.byteLength} < ${B * 4}` + `Readback buffer too small: ${A.byteLength} < ${s * 4}` ); - const Q = new Uint8Array( + const i = new Uint8Array( A instanceof ArrayBuffer ? A : A.buffer - ), C = X * WA; - let E = 0; - const t = []; - for (; E < this.count; ) { - const i = Math.floor(E / C), e = i * C, n = Math.min( - WA, - Math.ceil((this.count - e) / X) + ), n = O * XA; + let a = 0; + const r = []; + for (; a < this.count; ) { + const g = Math.floor(a / n), I = g * n, Q = Math.min( + XA, + Math.ceil((this.count - I) / O) ); - I.setPixelRatio(1), I.setRenderTarget(this.target, i); - const s = X * n * 4, o = Q.subarray( - e * 4, - e * 4 + s - ), r = I == null ? void 0 : I.readRenderTargetPixelsAsync( + e.setPixelRatio(1), e.setRenderTarget(this.target, g); + const o = O * Q * 4, E = i.subarray( + I * 4, + I * 4 + o + ), C = e == null ? void 0 : e.readRenderTargetPixelsAsync( this.target, 0, 0, - X, - n, - o + O, + Q, + E ); - t.push(r), E += X * n; + r.push(C), a += O * Q; } - return Promise.all(t).then(() => A); + return Promise.all(r).then(() => A); } // Perform render operation to run the Rgba8Readback program // but don't perform the readback yet. render({ reader: A, - count: I, - renderer: B + count: e, + renderer: s }) { - if (this.renderer = B || this.renderer, !this.renderer) + if (this.renderer = s || this.renderer, !this.renderer) throw new Error("No renderer"); - this.ensureCapacity(I); - const { program: Q, material: C } = this.prepareProgramMaterial(A); - Q.update(); - const E = this.saveRenderState(this.renderer); - this.process({ count: I, material: C }), this.resetRenderState(this.renderer, E); + this.ensureCapacity(e); + const { program: i, material: n } = this.prepareProgramMaterial(A); + i.update(); + const a = this.saveRenderState(this.renderer); + this.process({ count: e, material: n }), this.resetRenderState(this.renderer, a); } // Perform a readback of the render target, returning a buffer of the // given type. @@ -4895,52 +4773,52 @@ const sA = class sA { }) { if (!this.renderer) throw new Error("No renderer"); - const I = this.saveRenderState(this.renderer), B = this.read({ readback: A }); - return this.resetRenderState(this.renderer, I), B; + const e = this.saveRenderState(this.renderer), s = this.read({ readback: A }); + return this.resetRenderState(this.renderer, e), s; } // Perform a render and readback operation for the given Rgba8Readback, // and readback buffer (call ensureBuffer first). async renderReadback({ reader: A, - count: I, - renderer: B, - readback: Q + count: e, + renderer: s, + readback: i }) { - if (this.renderer = B || this.renderer, !this.renderer) + if (this.renderer = s || this.renderer, !this.renderer) throw new Error("No renderer"); - this.ensureCapacity(I); - const { program: C, material: E } = this.prepareProgramMaterial(A); - C.update(); - const t = this.saveRenderState(this.renderer); - this.process({ count: I, material: E }); - const i = this.read({ readback: Q }); - return this.resetRenderState(this.renderer, t), i; + this.ensureCapacity(e); + const { program: n, material: a } = this.prepareProgramMaterial(A); + n.update(); + const r = this.saveRenderState(this.renderer); + this.process({ count: e, material: a }); + const g = this.read({ readback: i }); + return this.resetRenderState(this.renderer, r), g; } getTexture() { var A; return (A = this.target) == null ? void 0 : A.texture; } }; -sA.programTemplate = null, sA.readbackProgram = /* @__PURE__ */ new Map(), sA.geometry = new a.PlaneGeometry(2, 2), sA.mesh = new a.Mesh( - sA.geometry, - new a.RawShaderMaterial({ visible: !1 }) -), sA.scene = new a.Scene().add(sA.mesh), sA.camera = new a.Camera(); -let II = sA; -const eA = class eA { +oA.programTemplate = null, oA.readbackProgram = /* @__PURE__ */ new Map(), oA.geometry = new B.PlaneGeometry(2, 2), oA.mesh = new B.Mesh( + oA.geometry, + new B.RawShaderMaterial({ visible: !1 }) +), oA.scene = new B.Scene().add(oA.mesh), oA.camera = new B.Camera(); +let $t = oA; +const IA = class IA { constructor(A = {}) { - this.capacity = 0, this.count = 0, this.array = null, this.readback = null, this.source = null, this.needsUpdate = !0, this.dyno = new S({ + this.capacity = 0, this.count = 0, this.array = null, this.readback = null, this.source = null, this.needsUpdate = !0, this.dyno = new k({ key: "rgbaArray", - type: ht, - globals: () => [wt], + type: Ir, + globals: () => [Br], value: { - texture: eA.getEmpty(), + texture: IA.getEmpty(), count: 0 }, - update: (I) => { - var B; - return I.texture = ((B = this.readback) == null ? void 0 : B.getTexture()) ?? this.source ?? eA.getEmpty(), I.count = this.count, I; + update: (e) => { + var s; + return e.texture = ((s = this.readback) == null ? void 0 : s.getTexture()) ?? this.source ?? IA.getEmpty(), e.count = this.count, e; } - }), A.array ? (this.array = A.array, this.capacity = Math.floor(this.array.length / 4), this.capacity = Math.floor(this.capacity / X) * X, this.count = Math.min( + }), A.array ? (this.array = A.array, this.capacity = Math.floor(this.array.length / 4), this.capacity = Math.floor(this.capacity / O) * O, this.count = Math.min( this.capacity, A.count ?? Number.POSITIVE_INFINITY )) : (this.capacity = A.capacity ?? 0, this.count = 0); @@ -4951,19 +4829,19 @@ const eA = class eA { } // Ensure that our array is large enough to hold capacity RGBA8 values. ensureCapacity(A) { - var I; - if (!this.array || A > (((I = this.array) == null ? void 0 : I.length) ?? 0) / 4) { - this.capacity = dA(A).maxSplats; - const B = new Uint8Array(this.capacity * 4); - this.array && B.set(this.array), this.array = B; + var e; + if (!this.array || A > (((e = this.array) == null ? void 0 : e.length) ?? 0) / 4) { + this.capacity = yA(A).maxSplats; + const s = new Uint8Array(this.capacity * 4); + this.array && s.set(this.array), this.array = s; } return this.array; } // Get the THREE.DataArrayTexture from either the readback or the source. getTexture() { - var I; - let A = (I = this.readback) == null ? void 0 : I.getTexture(); - return (this.source || this.array) && (A = this.maybeUpdateSource()), A ?? eA.getEmpty(); + var e; + let A = (e = this.readback) == null ? void 0 : e.getTexture(); + return (this.source || this.array) && (A = this.maybeUpdateSource()), A ?? IA.getEmpty(); } // Create or get a THREE.DataArrayTexture from the data array. maybeUpdateSource() { @@ -4971,19 +4849,19 @@ const eA = class eA { throw new Error("No array"); if (this.needsUpdate || !this.source) { if (this.needsUpdate = !1, this.source) { - const { width: A, height: I, depth: B } = this.source.image; - this.capacity !== A * I * B && (this.source.dispose(), this.source = null); + const { width: A, height: e, depth: s } = this.source.image; + this.capacity !== A * e * s && (this.source.dispose(), this.source = null); } if (this.source) this.array.buffer !== this.source.image.data.buffer && (this.source.image.data = new Uint8Array(this.array.buffer)); else { - const { width: A, height: I, depth: B } = dA(this.capacity); - this.source = new a.DataArrayTexture( + const { width: A, height: e, depth: s } = yA(this.capacity); + this.source = new B.DataArrayTexture( this.array, A, - I, - B - ), this.source.format = a.RGBAFormat, this.source.type = a.UnsignedByteType, this.source.internalFormat = "RGBA8", this.source.needsUpdate = !0; + e, + s + ), this.source.format = B.RGBAFormat, this.source.type = B.UnsignedByteType, this.source.internalFormat = "RGBA8", this.source.needsUpdate = !0; } this.source.needsUpdate = !0; } @@ -4992,20 +4870,20 @@ const eA = class eA { // Generate the RGBA8 values from a Rgba8Readback dyno program. render({ reader: A, - count: I, - renderer: B + count: e, + renderer: s }) { - this.readback || (this.readback = new II({ renderer: B })), this.readback.render({ reader: A, count: I, renderer: B }), this.capacity = this.readback.capacity, this.count = this.readback.count; + this.readback || (this.readback = new $t({ renderer: s })), this.readback.render({ reader: A, count: e, renderer: s }), this.capacity = this.readback.capacity, this.count = this.readback.count; } // Extract the RGBA8 values from a PackedSplats collection. fromPackedSplats({ packedSplats: A, - base: I, - count: B, - renderer: Q + base: e, + count: s, + renderer: i }) { - const { dynoSplats: C, dynoBase: E, dynoCount: t, reader: i } = eA.makeDynos(); - return C.packedSplats = A, E.value = I, t.value = B, this.render({ reader: i, count: B, renderer: Q }), this; + const { dynoSplats: n, dynoBase: a, dynoCount: r, reader: g } = IA.makeDynos(); + return n.packedSplats = A, a.value = e, r.value = s, this.render({ reader: g, count: s, renderer: i }), this; } // Read back the RGBA8 values from the readback buffer. async read() { @@ -5016,62 +4894,62 @@ const eA = class eA { // Can be used where you need an uninitialized THREE.DataArrayTexture like // a uniform you will update with the result of this.getTexture() later. static getEmpty() { - if (!eA.emptySource) { + if (!IA.emptySource) { const A = new Uint8Array(4); - eA.emptySource = new a.DataArrayTexture(A, 1, 1, 1), eA.emptySource.format = a.RGBAFormat, eA.emptySource.type = a.UnsignedByteType, eA.emptySource.internalFormat = "RGBA8", eA.emptySource.needsUpdate = !0; + IA.emptySource = new B.DataArrayTexture(A, 1, 1, 1), IA.emptySource.format = B.RGBAFormat, IA.emptySource.type = B.UnsignedByteType, IA.emptySource.internalFormat = "RGBA8", IA.emptySource.needsUpdate = !0; } - return eA.emptySource; + return IA.emptySource; } // Create a dyno program that can extract RGBA8 values from a PackedSplats static makeDynos() { - if (!eA.dynos) { - const A = new zI(), I = new fg({ value: 0 }), B = new fg({ value: 0 }), Q = YA( + if (!IA.dynos) { + const A = new Ke(), e = new kt({ value: 0 }), s = new kt({ value: 0 }), i = RA( { index: "int" }, { rgba8: "vec4" }, - ({ index: C }) => { - if (!C) + ({ index: n }) => { + if (!n) throw new Error("index is undefined"); - C = NA(C, I); - const E = DB( + n = fA(n, e); + const a = Bs( A, - C, - I, - B + n, + e, + s ); - return { rgba8: pg(E).outputs.rgba }; + return { rgba8: mt(a).outputs.rgba }; } ); - eA.dynos = { dynoSplats: A, dynoBase: I, dynoCount: B, reader: Q }; + IA.dynos = { dynoSplats: A, dynoBase: e, dynoCount: s, reader: i }; } - return eA.dynos; + return IA.dynos; } }; -eA.emptySource = null, eA.dynos = null; -let YI = eA; -const ht = { type: "RgbaArray" }, wt = aA(` +IA.emptySource = null, IA.dynos = null; +let Fe = IA; +const Ir = { type: "RgbaArray" }, Br = BA(` struct RgbaArray { sampler2DArray texture; int count; }; `); -function dn(g, A) { - return new T({ - inTypes: { rgba: ht, index: "int" }, +function EQ(t, A) { + return new V({ + inTypes: { rgba: Ir, index: "int" }, outTypes: { rgba: "vec4" }, - inputs: { rgba: g, index: A }, - globals: () => [wt], - statements: ({ inputs: B, outputs: Q }) => mA(` - if ((index >= 0) && (index < ${B.rgba}.count)) { - ${Q.rgba} = texelFetch(${B.rgba}.texture, splatTexCoord(index), 0); + inputs: { rgba: t, index: A }, + globals: () => [Br], + statements: ({ inputs: s, outputs: i }) => NA(` + if ((index >= 0) && (index < ${s.rgba}.count)) { + ${i.rgba} = texelFetch(${s.rgba}.texture, splatTexCoord(index), 0); } else { - ${Q.rgba} = vec4(0.0, 0.0, 0.0, 0.0); + ${i.rgba} = vec4(0.0, 0.0, 0.0, 0.0); } `) }).outputs.rgba; } -var Gn = /* @__PURE__ */ ((g) => (g.ALL = "all", g.PLANE = "plane", g.SPHERE = "sphere", g.BOX = "box", g.ELLIPSOID = "ellipsoid", g.CYLINDER = "cylinder", g.CAPSULE = "capsule", g.INFINITE_CONE = "infinite_cone", g))(Gn || {}); -function Mn(g) { - switch (g) { +var CQ = /* @__PURE__ */ ((t) => (t.ALL = "all", t.PLANE = "plane", t.SPHERE = "sphere", t.BOX = "box", t.ELLIPSOID = "ellipsoid", t.CYLINDER = "cylinder", t.CAPSULE = "capsule", t.INFINITE_CONE = "infinite_cone", t))(CQ || {}); +function cQ(t) { + switch (t) { case "all": return 0; case "plane": @@ -5089,12 +4967,12 @@ function Mn(g) { case "infinite_cone": return 7; default: - throw new Error(`Unknown SDF type: ${g}`); + throw new Error(`Unknown SDF type: ${t}`); } } -var Nn = /* @__PURE__ */ ((g) => (g.MULTIPLY = "multiply", g.SET_RGB = "set_rgb", g.ADD_RGBA = "add_rgba", g))(Nn || {}); -function pn(g) { - switch (g) { +var hQ = /* @__PURE__ */ ((t) => (t.MULTIPLY = "multiply", t.SET_RGB = "set_rgb", t.ADD_RGBA = "add_rgba", t))(hQ || {}); +function lQ(t) { + switch (t) { case "multiply": return 0; case "set_rgb": @@ -5102,66 +4980,66 @@ function pn(g) { case "add_rgba": return 2; default: - throw new Error(`Unknown blend mode: ${g}`); + throw new Error(`Unknown blend mode: ${t}`); } } -class kn extends a.Object3D { +class uQ extends B.Object3D { constructor(A = {}) { super(); - const { type: I, invert: B, opacity: Q, color: C, displace: E, radius: t } = A; - this.type = I ?? "sphere", this.invert = B ?? !1, this.opacity = Q ?? 1, this.color = C ?? new a.Color(1, 1, 1), this.displace = E ?? new a.Vector3(0, 0, 0), this.radius = t ?? 0; + const { type: e, invert: s, opacity: i, color: n, displace: a, radius: r } = A; + this.type = e ?? "sphere", this.invert = s ?? !1, this.opacity = i ?? 1, this.color = n ?? new B.Color(1, 1, 1), this.displace = a ?? new B.Vector3(0, 0, 0), this.radius = r ?? 0; } } -const iI = class iI extends a.Object3D { +const ie = class ie extends B.Object3D { constructor(A = {}) { const { - name: I, - rgbaBlendMode: B = "multiply", - sdfSmooth: Q = 0, - softEdge: C = 0, - invert: E = !1, - sdfs: t = null + name: e, + rgbaBlendMode: s = "multiply", + sdfSmooth: i = 0, + softEdge: n = 0, + invert: a = !1, + sdfs: r = null } = A; - super(), this.rgbaBlendMode = B, this.sdfSmooth = Q, this.softEdge = C, this.invert = E, this.sdfs = t, this.ordering = iI.nextOrdering++, this.name = I ?? `Edit ${this.ordering}`; + super(), this.rgbaBlendMode = s, this.sdfSmooth = i, this.softEdge = n, this.invert = a, this.sdfs = r, this.ordering = ie.nextOrdering++, this.name = e ?? `Edit ${this.ordering}`; } addSdf(A) { this.sdfs == null && (this.sdfs = []), this.sdfs.push(A); } removeSdf(A) { - this.sdfs != null && (this.sdfs = this.sdfs.filter((I) => I !== A)); + this.sdfs != null && (this.sdfs = this.sdfs.filter((e) => e !== A)); } }; -iI.nextOrdering = 1; -let BI = iI; -class Fn { - constructor({ maxSdfs: A, maxEdits: I }) { - this.maxSdfs = Math.max(16, A ?? 0), this.numSdfs = 0, this.sdfData = new Uint32Array(this.maxSdfs * 8 * 4), this.sdfFloatData = new Float32Array(this.sdfData.buffer), this.sdfTexture = this.newSdfTexture(this.sdfData, this.maxSdfs), this.dynoSdfArray = new S({ +ie.nextOrdering = 1; +let jt = ie; +class dQ { + constructor({ maxSdfs: A, maxEdits: e }) { + this.maxSdfs = Math.max(16, A ?? 0), this.numSdfs = 0, this.sdfData = new Uint32Array(this.maxSdfs * 8 * 4), this.sdfFloatData = new Float32Array(this.sdfData.buffer), this.sdfTexture = this.newSdfTexture(this.sdfData, this.maxSdfs), this.dynoSdfArray = new k({ key: "sdfArray", - type: Dt, - globals: () => [lt], + type: Qr, + globals: () => [Er], value: { numSdfs: 0, sdfTexture: this.sdfTexture }, - update: (B) => (B.numSdfs = this.numSdfs, B.sdfTexture = this.sdfTexture, B) - }), this.maxEdits = Math.max(16, I ?? 0), this.numEdits = 0, this.editData = new Uint32Array(this.maxEdits * 4), this.editFloatData = new Float32Array(this.editData.buffer), this.dynoNumEdits = new fg({ value: 0 }), this.dynoEdits = this.newEdits(this.editData, this.maxEdits); + update: (s) => (s.numSdfs = this.numSdfs, s.sdfTexture = this.sdfTexture, s) + }), this.maxEdits = Math.max(16, e ?? 0), this.numEdits = 0, this.editData = new Uint32Array(this.maxEdits * 4), this.editFloatData = new Float32Array(this.editData.buffer), this.dynoNumEdits = new kt({ value: 0 }), this.dynoEdits = this.newEdits(this.editData, this.maxEdits); } - newSdfTexture(A, I) { - const B = new a.DataTexture( + newSdfTexture(A, e) { + const s = new B.DataTexture( A, 8, - I, - a.RGBAIntegerFormat, - a.UnsignedIntType + e, + B.RGBAIntegerFormat, + B.UnsignedIntType ); - return B.internalFormat = "RGBA32UI", B.needsUpdate = !0, B; + return s.internalFormat = "RGBA32UI", s.needsUpdate = !0, s; } - newEdits(A, I) { - return new S({ + newEdits(A, e) { + return new k({ key: "edits", type: "uvec4", - count: I, - globals: () => [yt], + count: e, + globals: () => [Cr], value: A }); } @@ -5169,98 +5047,98 @@ class Fn { // Reallocate if not. ensureCapacity({ maxSdfs: A, - maxEdits: I + maxEdits: e }) { - let B = !1; - return A > this.sdfTexture.image.height && (this.sdfTexture.dispose(), this.maxSdfs = Math.max(this.maxSdfs * 2, A), this.sdfData = new Uint32Array(this.maxSdfs * 8 * 4), this.sdfFloatData = new Float32Array(this.sdfData.buffer), this.sdfTexture = this.newSdfTexture(this.sdfData, this.maxSdfs)), I > (this.dynoEdits.count ?? 0) && (this.maxEdits = Math.max(this.maxEdits * 2, I), this.editData = new Uint32Array(this.maxEdits * 4), this.editFloatData = new Float32Array(this.editData.buffer), this.dynoEdits = this.newEdits(this.editData, this.maxEdits), B = !0), B; + let s = !1; + return A > this.sdfTexture.image.height && (this.sdfTexture.dispose(), this.maxSdfs = Math.max(this.maxSdfs * 2, A), this.sdfData = new Uint32Array(this.maxSdfs * 8 * 4), this.sdfFloatData = new Float32Array(this.sdfData.buffer), this.sdfTexture = this.newSdfTexture(this.sdfData, this.maxSdfs)), e > (this.dynoEdits.count ?? 0) && (this.maxEdits = Math.max(this.maxEdits * 2, e), this.editData = new Uint32Array(this.maxEdits * 4), this.editFloatData = new Float32Array(this.editData.buffer), this.dynoEdits = this.newEdits(this.editData, this.maxEdits), s = !0), s; } - updateEditData(A, I) { - const B = this.editData[A] !== I; - return this.editData[A] = I, B; + updateEditData(A, e) { + const s = this.editData[A] !== e; + return this.editData[A] = e, s; } - updateEditFloatData(A, I) { - ag[0] = I; - const B = this.editFloatData[A] !== ag[0]; - return B && (this.editFloatData[A] = ag[0]), B; + updateEditFloatData(A, e) { + It[0] = e; + const s = this.editFloatData[A] !== It[0]; + return s && (this.editFloatData[A] = It[0]), s; } encodeEdit(A, { - sdfFirst: I, - sdfCount: B, - invert: Q, - rgbaBlendMode: C, - softEdge: E, - sdfSmooth: t + sdfFirst: e, + sdfCount: s, + invert: i, + rgbaBlendMode: n, + softEdge: a, + sdfSmooth: r }) { - const i = A * 4; - let e = !1; - return e = this.updateEditData(i + 0, C | (Q ? 256 : 0)) || e, e = this.updateEditData(i + 1, I | B << 16) || e, e = this.updateEditFloatData(i + 2, E) || e, e = this.updateEditFloatData(i + 3, t) || e, e; + const g = A * 4; + let I = !1; + return I = this.updateEditData(g + 0, n | (i ? 256 : 0)) || I, I = this.updateEditData(g + 1, e | s << 16) || I, I = this.updateEditFloatData(g + 2, a) || I, I = this.updateEditFloatData(g + 3, r) || I, I; } - updateSdfData(A, I) { - const B = this.sdfData[A] !== I; - return this.sdfData[A] = I, B; + updateSdfData(A, e) { + const s = this.sdfData[A] !== e; + return this.sdfData[A] = e, s; } - updateSdfFloatData(A, I) { - ag[0] = I; - const B = this.sdfFloatData[A] !== ag[0]; - return B && (this.sdfFloatData[A] = ag[0]), B; + updateSdfFloatData(A, e) { + It[0] = e; + const s = this.sdfFloatData[A] !== It[0]; + return s && (this.sdfFloatData[A] = It[0]), s; } encodeSdf(A, { - sdfType: I, - invert: B, - center: Q, - quaternion: C, - scale: E, - sizes: t - }, i) { - const e = A * 32, n = I | (B ? 256 : 0); - let s = !1; - s = this.updateSdfFloatData(e + 0, (Q == null ? void 0 : Q.x) ?? 0) || s, s = this.updateSdfFloatData(e + 1, (Q == null ? void 0 : Q.y) ?? 0) || s, s = this.updateSdfFloatData(e + 2, (Q == null ? void 0 : Q.z) ?? 0) || s, s = this.updateSdfData(e + 3, n) || s, s = this.updateSdfFloatData(e + 4, (C == null ? void 0 : C.x) ?? 0) || s, s = this.updateSdfFloatData(e + 5, (C == null ? void 0 : C.y) ?? 0) || s, s = this.updateSdfFloatData(e + 6, (C == null ? void 0 : C.z) ?? 0) || s, s = this.updateSdfFloatData(e + 7, (C == null ? void 0 : C.w) ?? 0) || s, s = this.updateSdfFloatData(e + 8, (E == null ? void 0 : E.x) ?? 0) || s, s = this.updateSdfFloatData(e + 9, (E == null ? void 0 : E.y) ?? 0) || s, s = this.updateSdfFloatData(e + 10, (E == null ? void 0 : E.z) ?? 0) || s, s = this.updateSdfData(e + 11, 0) || s, s = this.updateSdfFloatData(e + 12, (t == null ? void 0 : t.x) ?? 0) || s, s = this.updateSdfFloatData(e + 13, (t == null ? void 0 : t.y) ?? 0) || s, s = this.updateSdfFloatData(e + 14, (t == null ? void 0 : t.z) ?? 0) || s, s = this.updateSdfFloatData(e + 15, (t == null ? void 0 : t.w) ?? 0) || s; - const o = Math.min(4, i.length); - for (let r = 0; r < o; ++r) { - const c = e + 16 + r * 4; - s = this.updateSdfFloatData(c + 0, i[r].x) || s, s = this.updateSdfFloatData(c + 1, i[r].y) || s, s = this.updateSdfFloatData(c + 2, i[r].z) || s, s = this.updateSdfFloatData(c + 3, i[r].w) || s; + sdfType: e, + invert: s, + center: i, + quaternion: n, + scale: a, + sizes: r + }, g) { + const I = A * 32, Q = e | (s ? 256 : 0); + let o = !1; + o = this.updateSdfFloatData(I + 0, (i == null ? void 0 : i.x) ?? 0) || o, o = this.updateSdfFloatData(I + 1, (i == null ? void 0 : i.y) ?? 0) || o, o = this.updateSdfFloatData(I + 2, (i == null ? void 0 : i.z) ?? 0) || o, o = this.updateSdfData(I + 3, Q) || o, o = this.updateSdfFloatData(I + 4, (n == null ? void 0 : n.x) ?? 0) || o, o = this.updateSdfFloatData(I + 5, (n == null ? void 0 : n.y) ?? 0) || o, o = this.updateSdfFloatData(I + 6, (n == null ? void 0 : n.z) ?? 0) || o, o = this.updateSdfFloatData(I + 7, (n == null ? void 0 : n.w) ?? 0) || o, o = this.updateSdfFloatData(I + 8, (a == null ? void 0 : a.x) ?? 0) || o, o = this.updateSdfFloatData(I + 9, (a == null ? void 0 : a.y) ?? 0) || o, o = this.updateSdfFloatData(I + 10, (a == null ? void 0 : a.z) ?? 0) || o, o = this.updateSdfData(I + 11, 0) || o, o = this.updateSdfFloatData(I + 12, (r == null ? void 0 : r.x) ?? 0) || o, o = this.updateSdfFloatData(I + 13, (r == null ? void 0 : r.y) ?? 0) || o, o = this.updateSdfFloatData(I + 14, (r == null ? void 0 : r.z) ?? 0) || o, o = this.updateSdfFloatData(I + 15, (r == null ? void 0 : r.w) ?? 0) || o; + const E = Math.min(4, g.length); + for (let C = 0; C < E; ++C) { + const c = I + 16 + C * 4; + o = this.updateSdfFloatData(c + 0, g[C].x) || o, o = this.updateSdfFloatData(c + 1, g[C].y) || o, o = this.updateSdfFloatData(c + 2, g[C].z) || o, o = this.updateSdfFloatData(c + 3, g[C].w) || o; } - return s; + return o; } // Update the SDFs and edits from an array of SplatEdits and their // associated SplatEditSdfs, updating it for the dyno shader program. update(A) { - const I = A.reduce((s, { sdfs: o }) => s + o.length, 0), B = this.ensureCapacity({ + const e = A.reduce((o, { sdfs: E }) => o + E.length, 0), s = this.ensureCapacity({ maxEdits: A.length, - maxSdfs: I - }), Q = [new a.Vector4(), new a.Vector4()], C = new a.Vector3(), E = new a.Quaternion(), t = new a.Vector3(), i = new a.Vector4(); - let e = 0, n = B; - A.length !== this.dynoNumEdits.value && (this.dynoNumEdits.value = A.length, this.numEdits = A.length, n = !0); - for (const [s, { edit: o, sdfs: r }] of A.entries()) { - n = this.encodeEdit(s, { - sdfFirst: e, - sdfCount: r.length, - invert: o.invert, - rgbaBlendMode: pn(o.rgbaBlendMode), - softEdge: o.softEdge, - sdfSmooth: o.sdfSmooth - }) || n; + maxSdfs: e + }), i = [new B.Vector4(), new B.Vector4()], n = new B.Vector3(), a = new B.Quaternion(), r = new B.Vector3(), g = new B.Vector4(); + let I = 0, Q = s; + A.length !== this.dynoNumEdits.value && (this.dynoNumEdits.value = A.length, this.numEdits = A.length, Q = !0); + for (const [o, { edit: E, sdfs: C }] of A.entries()) { + Q = this.encodeEdit(o, { + sdfFirst: I, + sdfCount: C.length, + invert: E.invert, + rgbaBlendMode: lQ(E.rgbaBlendMode), + softEdge: E.softEdge, + sdfSmooth: E.sdfSmooth + }) || Q; let c = !1; - for (const h of r) - i.set(h.scale.x, h.scale.y, h.scale.z, h.radius), h.scale.setScalar(1), h.updateMatrixWorld(), h.matrixWorld.clone().invert().decompose(C, E, t), h.scale.set(i.x, i.y, i.z), h.updateMatrixWorld(), Q[0].set(h.color.r, h.color.g, h.color.b, h.opacity), Q[1].set(h.displace.x, h.displace.y, h.displace.z, 1), c = this.encodeSdf( - e, + for (const h of C) + g.set(h.scale.x, h.scale.y, h.scale.z, h.radius), h.scale.setScalar(1), h.updateMatrixWorld(), h.matrixWorld.clone().invert().decompose(n, a, r), h.scale.set(g.x, g.y, g.z), h.updateMatrixWorld(), i[0].set(h.color.r, h.color.g, h.color.b, h.opacity), i[1].set(h.displace.x, h.displace.y, h.displace.z, 1), c = this.encodeSdf( + I, { - sdfType: Mn(h.type), + sdfType: cQ(h.type), invert: h.invert, - center: C, - quaternion: E, - scale: t, - sizes: i + center: n, + quaternion: a, + scale: r, + sizes: g }, - Q - ) || c, e += 1; - this.numSdfs = e, c && (this.sdfTexture.needsUpdate = !0), n || (n = c); + i + ) || c, I += 1; + this.numSdfs = I, c && (this.sdfTexture.needsUpdate = !0), Q || (Q = c); } - return { updated: n, dynoUpdated: B }; + return { updated: Q, dynoUpdated: s }; } // Modify a Gsplat in a dyno shader program using the current edits and SDFs. modify(A) { - return Rn( + return wQ( A, this.dynoSdfArray, this.dynoNumEdits, @@ -5268,7 +5146,7 @@ class Fn { ); } } -const Dt = { type: "SdfArray" }, lt = aA(` +const Qr = { type: "SdfArray" }, Er = BA(` struct SdfArray { int numSdfs; usampler2D sdfTexture; @@ -5433,7 +5311,7 @@ const Dt = { type: "SdfArray" }, lt = aA(` return (softEdge == 0.0) ? ((distance < 0.0) ? 1.0 : 0.0) : clamp(-distance / softEdge + 0.5, 0.0, 1.0); } -`), yt = aA(` +`), Cr = BA(` const uint EDIT_FLAG_BLEND = 0xFFu; const uint EDIT_BLEND_MULTIPLY = 0u; const uint EDIT_BLEND_SET_RGB = 1u; @@ -5492,26 +5370,26 @@ const Dt = { type: "SdfArray" }, lt = aA(` applyRgbaDisplaceEdit(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, sdfSmooth, softEdge, invert, rgbaBlendMode, rgba); } `); -function Rn(g, A, I, B) { - return new T({ +function wQ(t, A, e, s) { + return new V({ inTypes: { - gsplat: BA, - sdfArray: Dt, + gsplat: sA, + sdfArray: Qr, numEdits: "int", rgbaDisplaceEdits: "uvec4" }, - outTypes: { gsplat: BA }, - globals: () => [lt, yt], - inputs: { gsplat: g, sdfArray: A, numEdits: I, rgbaDisplaceEdits: B }, - statements: ({ inputs: C, outputs: E }) => { - const { sdfArray: t, numEdits: i, rgbaDisplaceEdits: e } = C, { gsplat: n } = E; - return mA(` - ${n} = ${C.gsplat}; - if (isGsplatActive(${n}.flags)) { - for (int editIndex = 0; editIndex < ${i}; ++editIndex) { + outTypes: { gsplat: sA }, + globals: () => [Er, Cr], + inputs: { gsplat: t, sdfArray: A, numEdits: e, rgbaDisplaceEdits: s }, + statements: ({ inputs: n, outputs: a }) => { + const { sdfArray: r, numEdits: g, rgbaDisplaceEdits: I } = n, { gsplat: Q } = a; + return NA(` + ${Q} = ${n.gsplat}; + if (isGsplatActive(${Q}.flags)) { + for (int editIndex = 0; editIndex < ${g}; ++editIndex) { applyPackedRgbaDisplaceEdit( - ${e}[editIndex], ${t}.sdfTexture, ${t}.numSdfs, - ${n}.center, ${n}.rgba + ${I}[editIndex], ${r}.sdfTexture, ${r}.numSdfs, + ${Q}.center, ${Q}.rgba ); } } @@ -5519,36 +5397,36 @@ function Rn(g, A, I, B) { } }).outputs.gsplat; } -const ag = new Float32Array(1); -class Jn { +const It = new Float32Array(1); +class yQ { constructor(A) { this.modifier = A, this.cache = /* @__PURE__ */ new Map(); } apply(A) { - let I = this.cache.get(A); - return I || (I = YA( + let e = this.cache.get(A); + return e || (e = RA( { index: "int" }, - { gsplat: BA }, - ({ index: B }) => { - const { gsplat: Q } = A.apply({ index: B }); - return this.modifier.apply({ gsplat: Q }); + { gsplat: sA }, + ({ index: s }) => { + const { gsplat: i } = A.apply({ index: s }); + return this.modifier.apply({ gsplat: i }); } - ), this.cache.set(A, I)), I; + ), this.cache.set(A, e)), e; } } -class hg { +class Et { // Create the dyno uniforms that parameterize the transform, setting them // to initial values that are different from any valid transform. constructor() { - this.scale = new Cg({ value: Number.NEGATIVE_INFINITY }), this.rotate = new bg({ - value: new a.Quaternion( + this.scale = new it({ value: Number.NEGATIVE_INFINITY }), this.rotate = new Lt({ + value: new B.Quaternion( Number.POSITIVE_INFINITY, Number.POSITIVE_INFINITY, Number.POSITIVE_INFINITY, Number.POSITIVE_INFINITY ) - }), this.translate = new yg({ - value: new a.Vector3( + }), this.translate = new lt({ + value: new B.Vector3( Number.POSITIVE_INFINITY, Number.POSITIVE_INFINITY, Number.POSITIVE_INFINITY @@ -5557,20 +5435,20 @@ class hg { } // Apply the transform to a Vec3 position in a dyno program. apply(A) { - return VE(A, { + return Ya(A, { scale: this.scale, rotate: this.rotate, translate: this.translate }); } applyDir(A) { - return TE(A, { + return Ta(A, { rotate: this.rotate }); } // Apply the transform to a Gsplat in a dyno program. applyGsplat(A) { - return qI(A, { + return ve(A, { scale: this.scale, rotate: this.rotate, translate: this.translate @@ -5578,27 +5456,27 @@ class hg { } // Update the uniforms to match the given transform matrix. updateFromMatrix(A) { - const I = new a.Vector3(), B = new a.Quaternion(), Q = new a.Vector3(); - A.decompose(Q, B, I); - const C = (I.x + I.y + I.z) / 3; - let E = !1; - return C !== this.scale.value && (this.scale.value = C, E = !0), Q.equals(this.translate.value) || (this.translate.value.copy(Q), E = !0), B.equals(this.rotate.value) || (this.rotate.value.copy(B), E = !0), E; + const e = new B.Vector3(), s = new B.Quaternion(), i = new B.Vector3(); + A.decompose(i, s, e); + const n = (e.x + e.y + e.z) / 3; + let a = !1; + return n !== this.scale.value && (this.scale.value = n, a = !0), i.equals(this.translate.value) || (this.translate.value.copy(i), a = !0), s.equals(this.rotate.value) || (this.rotate.value.copy(s), a = !0), a; } // Update this transform to match the object's to-world transform. update(A) { return A.updateMatrixWorld(), this.updateFromMatrix(A.matrixWorld); } } -class nI extends a.Object3D { +class ge extends B.Object3D { constructor({ numSplats: A, - generator: I, - construct: B, - update: Q + generator: e, + construct: s, + update: i }) { - if (super(), this.numSplats = A ?? 0, this.generator = I, this.frameUpdate = Q, this.version = 0, B) { - const C = B(this); - Object.assign(this, C); + if (super(), this.numSplats = A ?? 0, this.generator = e, this.frameUpdate = i, this.version = 0, s) { + const n = s(this); + Object.assign(this, n); } } updateVersion() { @@ -5608,64 +5486,64 @@ class nI extends a.Object3D { A && this.updateVersion(); } } -const OA = class OA extends nI { +const OA = class OA extends ge { constructor(A = {}) { - const I = new hg(), B = new hg(), Q = new hg(), C = new hg(), E = new bg({ - value: new a.Vector4( + const e = new Et(), s = new Et(), i = new Et(), n = new Et(), a = new Lt({ + value: new B.Vector4( Number.NEGATIVE_INFINITY, Number.NEGATIVE_INFINITY, Number.NEGATIVE_INFINITY, Number.NEGATIVE_INFINITY ) - }), t = new Cg({ value: 0 }), i = new Cg({ value: 0 }), e = { - transform: I, - viewToWorld: B, - worldToView: Q, - viewToObject: C, - recolor: E, - time: t, - deltaTime: i + }), r = new it({ value: 0 }), g = new it({ value: 0 }), I = { + transform: e, + viewToWorld: s, + worldToView: i, + viewToObject: n, + recolor: a, + time: r, + deltaTime: g }; if (super({ - update: ({ time: n, deltaTime: s, viewToWorld: o, globalEdits: r }) => this.update({ time: n, deltaTime: s, viewToWorld: o, globalEdits: r }) - }), this.isInitialized = !1, this.recolor = new a.Color(1, 1, 1), this.opacity = 1, this.enableViewToObject = !1, this.enableViewToWorld = !1, this.enableWorldToView = !1, this.skinning = null, this.edits = null, this.rgbaDisplaceEdits = null, this.splatRgba = null, this.maxSh = 3, this.packedSplats = A.packedSplats ?? new ZA(), this.numSplats = this.packedSplats.numSplats, this.editable = A.editable ?? !0, this.onFrame = A.onFrame, this.context = e, this.objectModifier = A.objectModifier, this.worldModifier = A.worldModifier, this.updateGenerator(), A.url || A.fileBytes || A.constructSplats || A.packedSplats && !A.packedSplats.isInitialized) + update: ({ time: Q, deltaTime: o, viewToWorld: E, globalEdits: C }) => this.update({ time: Q, deltaTime: o, viewToWorld: E, globalEdits: C }) + }), this.isInitialized = !1, this.recolor = new B.Color(1, 1, 1), this.opacity = 1, this.enableViewToObject = !1, this.enableViewToWorld = !1, this.enableWorldToView = !1, this.skinning = null, this.edits = null, this.rgbaDisplaceEdits = null, this.splatRgba = null, this.maxSh = 3, this.packedSplats = A.packedSplats ?? new TA(), this.numSplats = this.packedSplats.numSplats, this.editable = A.editable ?? !0, this.onFrame = A.onFrame, this.context = I, this.objectModifier = A.objectModifier, this.worldModifier = A.worldModifier, this.updateGenerator(), A.url || A.fileBytes || A.constructSplats || A.packedSplats && !A.packedSplats.isInitialized) this.initialized = this.asyncInitialize(A).then(async () => { if (this.updateGenerator(), this.isInitialized = !0, A.onLoad) { - const n = A.onLoad(this); - n instanceof Promise && await n; + const Q = A.onLoad(this); + Q instanceof Promise && await Q; } return this; }); else if (this.isInitialized = !0, this.initialized = Promise.resolve(this), A.onLoad) { - const n = A.onLoad(this); - n instanceof Promise && (this.initialized = n.then(() => this)); + const Q = A.onLoad(this); + Q instanceof Promise && (this.initialized = Q.then(() => this)); } } async asyncInitialize(A) { - const { url: I, fileBytes: B, fileType: Q, fileName: C, maxSplats: E, constructSplats: t } = A; - if (I || B || t) { - const i = { - url: I, - fileBytes: B, - fileType: Q, - fileName: C, - maxSplats: E, - construct: t + const { url: e, fileBytes: s, fileType: i, fileName: n, maxSplats: a, constructSplats: r } = A; + if (e || s || r) { + const g = { + url: e, + fileBytes: s, + fileType: i, + fileName: n, + maxSplats: a, + construct: r }; - this.packedSplats.reinitialize(i); + this.packedSplats.reinitialize(g); } this.packedSplats && (await this.packedSplats.initialized, this.numSplats = this.packedSplats.numSplats, this.updateGenerator()); } static async staticInitialize() { - await KI(), OA.isStaticInitialized = !0; + await es(), OA.isStaticInitialized = !0; } // Creates a new Gsplat with the provided parameters (all values in "float" space, // i.e. 0-1 for opacity and color) and adds it to the end of the packedSplats, // increasing numSplats by 1. If necessary, reallocates the buffer with an exponential // doubling strategy to fit the new data, so it's fairly efficient to just // pushSplat(...) each Gsplat you want to create in a loop. - pushSplat(A, I, B, Q, C) { - this.packedSplats.pushSplat(A, I, B, Q, C); + pushSplat(A, e, s, i, n) { + this.packedSplats.pushSplat(A, e, s, i, n); } // This method iterates over all Gsplats in this instance's packedSplats, // invoking the provided callback with index: number in 0..=(this.numSplats-1) and @@ -5685,33 +5563,33 @@ const OA = class OA extends nI { this.packedSplats.dispose(); } constructGenerator(A) { - const { transform: I, viewToObject: B, recolor: Q } = A, C = YA( + const { transform: e, viewToObject: s, recolor: i } = A, n = RA( { index: "int" }, - { gsplat: BA }, - ({ index: E }) => { - if (!E) + { gsplat: sA }, + ({ index: a }) => { + if (!a) throw new Error("index is undefined"); - let t = mg(this.packedSplats.dyno, E); + let r = Nt(this.packedSplats.dyno, a); if (this.maxSh >= 1) { - const { sh1Texture: e, sh2Texture: n, sh3Texture: s } = this.ensureShTextures(); - if (e) { - const o = B.translate, { center: r } = pg(t).outputs, c = aE(Sg(r, o)); - let h = Yn(t, e, c); - this.maxSh >= 2 && n && (h = NA(h, Un(t, n, c))), this.maxSh >= 3 && s && (h = NA(h, xn(t, s, c))); - let { rgba: w } = pg(t).outputs; - w = NA(w, nE(h, gA("float", 0))), t = lg({ gsplat: t, rgba: w }); + const { sh1Texture: I, sh2Texture: Q, sh3Texture: o } = this.ensureShTextures(); + if (I) { + const E = s.translate, { center: C } = mt(r).outputs, c = na(Ut(C, E)); + let h = mQ(r, I, c); + this.maxSh >= 2 && Q && (h = fA(h, MQ(r, Q, c))), this.maxSh >= 3 && o && (h = fA(h, xQ(r, o, c))); + let { rgba: l } = mt(r).outputs; + l = fA(l, aa(h, tA("float", 0))), r = ht({ gsplat: r, rgba: l }); } } if (this.splatRgba) { - const e = dn(this.splatRgba.dyno, E); - t = lg({ gsplat: t, rgba: e }); + const I = EQ(this.splatRgba.dyno, a); + r = ht({ gsplat: r, rgba: I }); } - this.skinning && (t = this.skinning.modify(t)), this.objectModifier && (t = this.objectModifier.apply({ gsplat: t }).gsplat), t = I.applyGsplat(t); - const i = rA(Q, pg(t).outputs.rgba); - return t = lg({ gsplat: t, rgba: i }), this.rgbaDisplaceEdits && (t = this.rgbaDisplaceEdits.modify(t)), this.worldModifier && (t = this.worldModifier.apply({ gsplat: t }).gsplat), { gsplat: t }; + this.skinning && (r = this.skinning.modify(r)), this.objectModifier && (r = this.objectModifier.apply({ gsplat: r }).gsplat), r = e.applyGsplat(r); + const g = CA(i, mt(r).outputs.rgba); + return r = ht({ gsplat: r, rgba: g }), this.rgbaDisplaceEdits && (r = this.rgbaDisplaceEdits.modify(r)), this.worldModifier && (r = this.worldModifier.apply({ gsplat: r }).gsplat), { gsplat: r }; } ); - this.generator = C; + this.generator = n; } // Call this whenever something changes in the Gsplat processing pipeline, // for example changing maxSh or updating objectModifier or worldModifier. @@ -5725,83 +5603,83 @@ const OA = class OA extends nI { // updateGenerator() if the pipeline needs to change. update({ time: A, - viewToWorld: I, - deltaTime: B, - globalEdits: Q + viewToWorld: e, + deltaTime: s, + globalEdits: i }) { - var w; - this.numSplats = this.packedSplats.numSplats, this.context.time.value = A, this.context.deltaTime.value = B, OA.dynoTime.value = A; - const { transform: C, viewToObject: E, recolor: t } = this.context; - let i = C.update(this); - this.context.viewToWorld.updateFromMatrix(I) && this.enableViewToWorld && (i = !0); - const e = I.clone().invert(); - this.context.worldToView.updateFromMatrix(e) && this.enableWorldToView && (i = !0); - const o = new a.Matrix4().compose( - C.translate.value, - C.rotate.value, - new a.Vector3().setScalar(C.scale.value) - ).invert().multiply(I); - E.updateFromMatrix(o) && (this.enableViewToObject || this.packedSplats.extra.sh1) && (i = !0); - const r = new a.Vector4( + var l; + this.numSplats = this.packedSplats.numSplats, this.context.time.value = A, this.context.deltaTime.value = s, OA.dynoTime.value = A; + const { transform: n, viewToObject: a, recolor: r } = this.context; + let g = n.update(this); + this.context.viewToWorld.updateFromMatrix(e) && this.enableViewToWorld && (g = !0); + const I = e.clone().invert(); + this.context.worldToView.updateFromMatrix(I) && this.enableWorldToView && (g = !0); + const E = new B.Matrix4().compose( + n.translate.value, + n.rotate.value, + new B.Vector3().setScalar(n.scale.value) + ).invert().multiply(e); + a.updateFromMatrix(E) && (this.enableViewToObject || this.packedSplats.extra.sh1) && (g = !0); + const C = new B.Vector4( this.recolor.r, this.recolor.g, this.recolor.b, this.opacity ); - r.equals(t.value) || (t.value.copy(r), i = !0); - const c = this.editable ? (this.edits ?? []).concat(Q) : []; - this.editable && !this.edits && this.traverseVisible((D) => { - D instanceof BI && c.push(D); - }), c.sort((D, y) => D.ordering - y.ordering); - const h = c.map((D) => { - if (D.sdfs != null) - return { edit: D, sdfs: D.sdfs }; - const y = []; - return D.traverseVisible((l) => { - l instanceof kn && y.push(l); - }), { edit: D, sdfs: y }; + C.equals(r.value) || (r.value.copy(C), g = !0); + const c = this.editable ? (this.edits ?? []).concat(i) : []; + this.editable && !this.edits && this.traverseVisible((u) => { + u instanceof jt && c.push(u); + }), c.sort((u, w) => u.ordering - w.ordering); + const h = c.map((u) => { + if (u.sdfs != null) + return { edit: u, sdfs: u.sdfs }; + const w = []; + return u.traverseVisible((d) => { + d instanceof uQ && w.push(d); + }), { edit: u, sdfs: w }; }); if (h.length > 0 && !this.rgbaDisplaceEdits) { - const D = h.length, y = h.reduce( - (l, d) => l + d.sdfs.length, + const u = h.length, w = h.reduce( + (d, p) => d + p.sdfs.length, 0 ); - this.rgbaDisplaceEdits = new Fn({ - maxEdits: D, - maxSdfs: y + this.rgbaDisplaceEdits = new dQ({ + maxEdits: u, + maxSdfs: w }), this.updateGenerator(); } if (this.rgbaDisplaceEdits) { - const D = this.rgbaDisplaceEdits.update(h); - i || (i = D.updated), D.dynoUpdated && this.updateGenerator(); + const u = this.rgbaDisplaceEdits.update(h); + g || (g = u.updated), u.dynoUpdated && this.updateGenerator(); } - i && this.updateVersion(), (w = this.onFrame) == null || w.call(this, { mesh: this, time: A, deltaTime: B }); + g && this.updateVersion(), (l = this.onFrame) == null || l.call(this, { mesh: this, time: A, deltaTime: s }); } // This method conforms to the standard THREE.Raycaster API, performing object-ray // intersections using this method to populate the provided intersects[] array // with each intersection point. - raycast(A, I) { + raycast(A, e) { if (!this.packedSplats.packedArray || !this.packedSplats.numSplats) return; - const { near: B, far: Q, ray: C } = A, E = this.matrixWorld.clone().invert(), t = new a.Matrix3().setFromMatrix4(E), i = C.origin.clone().applyMatrix4(E), e = C.direction.clone().applyMatrix3(t), n = new a.Vector3(); - E.decompose(new a.Vector3(), new a.Quaternion(), n), (n.x * n.y * n.z) ** (1 / 3); - const o = Vt( - i.x, - i.y, - i.z, - e.x, - e.y, - e.z, - B, - Q, + const { near: s, far: i, ray: n } = A, a = this.matrixWorld.clone().invert(), r = new B.Matrix3().setFromMatrix4(a), g = n.origin.clone().applyMatrix4(a), I = n.direction.clone().applyMatrix3(r), Q = new B.Vector3(); + a.decompose(new B.Vector3(), new B.Quaternion(), Q), (Q.x * Q.y * Q.z) ** (1 / 3); + const E = vr( + g.x, + g.y, + g.z, + I.x, + I.y, + I.z, + s, + i, this.packedSplats.numSplats, this.packedSplats.packedArray, !0 ); - for (const r of o) { - const c = C.direction.clone().multiplyScalar(r).add(C.origin); - I.push({ - distance: r, + for (const C of E) { + const c = n.direction.clone().multiplyScalar(C).add(n.origin); + e.push({ + distance: C, point: c, object: this }); @@ -5812,62 +5690,62 @@ const OA = class OA extends nI { return {}; let A = this.packedSplats.extra.sh1Texture; if (!A) { - let Q = this.packedSplats.extra.sh1; - const { width: C, height: E, depth: t, maxSplats: i } = dA( - Q.length / 2 + let i = this.packedSplats.extra.sh1; + const { width: n, height: a, depth: r, maxSplats: g } = yA( + i.length / 2 ); - if (Q.length < i * 2) { - const n = new Uint32Array(i * 2); - n.set(Q), this.packedSplats.extra.sh1 = n, Q = n; + if (i.length < g * 2) { + const Q = new Uint32Array(g * 2); + Q.set(i), this.packedSplats.extra.sh1 = Q, i = Q; } - const e = new a.DataArrayTexture(Q, C, E, t); - e.format = a.RGIntegerFormat, e.type = a.UnsignedIntType, e.internalFormat = "RG32UI", e.needsUpdate = !0, A = new kg({ - value: e, + const I = new B.DataArrayTexture(i, n, a, r); + I.format = B.RGIntegerFormat, I.type = B.UnsignedIntType, I.internalFormat = "RG32UI", I.needsUpdate = !0, A = new Mt({ + value: I, key: "sh1" }), this.packedSplats.extra.sh1Texture = A; } if (!this.packedSplats.extra.sh2) return { sh1Texture: A }; - let I = this.packedSplats.extra.sh2Texture; - if (!I) { - let Q = this.packedSplats.extra.sh2; - const { width: C, height: E, depth: t, maxSplats: i } = dA( - Q.length / 4 + let e = this.packedSplats.extra.sh2Texture; + if (!e) { + let i = this.packedSplats.extra.sh2; + const { width: n, height: a, depth: r, maxSplats: g } = yA( + i.length / 4 ); - if (Q.length < i * 4) { - const n = new Uint32Array(i * 4); - n.set(Q), this.packedSplats.extra.sh2 = n, Q = n; + if (i.length < g * 4) { + const Q = new Uint32Array(g * 4); + Q.set(i), this.packedSplats.extra.sh2 = Q, i = Q; } - const e = new a.DataArrayTexture(Q, C, E, t); - e.format = a.RGBAIntegerFormat, e.type = a.UnsignedIntType, e.internalFormat = "RGBA32UI", e.needsUpdate = !0, I = new kg({ - value: e, + const I = new B.DataArrayTexture(i, n, a, r); + I.format = B.RGBAIntegerFormat, I.type = B.UnsignedIntType, I.internalFormat = "RGBA32UI", I.needsUpdate = !0, e = new Mt({ + value: I, key: "sh2" - }), this.packedSplats.extra.sh2Texture = I; + }), this.packedSplats.extra.sh2Texture = e; } if (!this.packedSplats.extra.sh3) - return { sh1Texture: A, sh2Texture: I }; - let B = this.packedSplats.extra.sh3Texture; - if (!B) { - let Q = this.packedSplats.extra.sh3; - const { width: C, height: E, depth: t, maxSplats: i } = dA( - Q.length / 4 + return { sh1Texture: A, sh2Texture: e }; + let s = this.packedSplats.extra.sh3Texture; + if (!s) { + let i = this.packedSplats.extra.sh3; + const { width: n, height: a, depth: r, maxSplats: g } = yA( + i.length / 4 ); - if (Q.length < i * 4) { - const n = new Uint32Array(i * 4); - n.set(Q), this.packedSplats.extra.sh3 = n, Q = n; + if (i.length < g * 4) { + const Q = new Uint32Array(g * 4); + Q.set(i), this.packedSplats.extra.sh3 = Q, i = Q; } - const e = new a.DataArrayTexture(Q, C, E, t); - e.format = a.RGBAIntegerFormat, e.type = a.UnsignedIntType, e.internalFormat = "RGBA32UI", e.needsUpdate = !0, B = new kg({ - value: e, + const I = new B.DataArrayTexture(i, n, a, r); + I.format = B.RGBAIntegerFormat, I.type = B.UnsignedIntType, I.internalFormat = "RGBA32UI", I.needsUpdate = !0, s = new Mt({ + value: I, key: "sh3" - }), this.packedSplats.extra.sh3Texture = B; + }), this.packedSplats.extra.sh3Texture = s; } - return { sh1Texture: A, sh2Texture: I, sh3Texture: B }; + return { sh1Texture: A, sh2Texture: e, sh3Texture: s }; } }; -OA.staticInitialized = OA.staticInitialize(), OA.isStaticInitialized = !1, OA.dynoTime = new Cg({ value: 0 }); -let Ag = OA; -const mn = aA(` +OA.staticInitialized = OA.staticInitialize(), OA.isStaticInitialized = !1, OA.dynoTime = new it({ value: 0 }); +let At = OA; +const pQ = BA(` vec3 evaluateSH1(Gsplat gsplat, usampler2DArray sh1, vec3 viewDir) { // Extract sint7 values packed into 2 x uint32 uvec2 packed = texelFetch(sh1, splatTexCoord(gsplat.index), 0).rg; @@ -5891,7 +5769,7 @@ const mn = aA(` + sh1_1 * (0.4886025 * viewDir.z) + sh1_2 * (-0.4886025 * viewDir.x); } -`), fn = aA(` +`), DQ = BA(` vec3 evaluateSH2(Gsplat gsplat, usampler2DArray sh2, vec3 viewDir) { // Extract sint8 values packed into 4 x uint32 uvec4 packed = texelFetch(sh2, splatTexCoord(gsplat.index), 0); @@ -5927,7 +5805,7 @@ const mn = aA(` + sh2_3 * (1.0925484 * viewDir.x * viewDir.z) + sh2_4 * (0.5462742 * (viewDir.x * viewDir.x - viewDir.y * viewDir.y)); } -`), Sn = aA(` +`), fQ = BA(` vec3 evaluateSH3(Gsplat gsplat, usampler2DArray sh3, vec3 viewDir) { // Extract sint6 values packed into 4 x uint32 uvec4 packed = texelFetch(sh3, splatTexCoord(gsplat.index), 0); @@ -5983,52 +5861,52 @@ const mn = aA(` + sh3_6 * (-0.5900436 * viewDir.x * (xx - 3.0 * yy)); } `); -function Yn(g, A, I) { - return xg({ - inTypes: { gsplat: BA, sh1: "usampler2DArray", viewDir: "vec3" }, +function mQ(t, A, e) { + return bt({ + inTypes: { gsplat: sA, sh1: "usampler2DArray", viewDir: "vec3" }, outTypes: { rgb: "vec3" }, - inputs: { gsplat: g, sh1: A, viewDir: I }, - globals: () => [pA, mn], - statements: ({ inputs: B, outputs: Q }) => mA(` - if (isGsplatActive(${B.gsplat}.flags)) { - ${Q.rgb} = evaluateSH1(${B.gsplat}, ${B.sh1}, ${B.viewDir}); + inputs: { gsplat: t, sh1: A, viewDir: e }, + globals: () => [mA, pQ], + statements: ({ inputs: s, outputs: i }) => NA(` + if (isGsplatActive(${s.gsplat}.flags)) { + ${i.rgb} = evaluateSH1(${s.gsplat}, ${s.sh1}, ${s.viewDir}); } else { - ${Q.rgb} = vec3(0.0); + ${i.rgb} = vec3(0.0); } `) }).outputs.rgb; } -function Un(g, A, I) { - return xg({ - inTypes: { gsplat: BA, sh2: "usampler2DArray", viewDir: "vec3" }, +function MQ(t, A, e) { + return bt({ + inTypes: { gsplat: sA, sh2: "usampler2DArray", viewDir: "vec3" }, outTypes: { rgb: "vec3" }, - inputs: { gsplat: g, sh2: A, viewDir: I }, - globals: () => [pA, fn], - statements: ({ inputs: B, outputs: Q }) => mA(` - if (isGsplatActive(${B.gsplat}.flags)) { - ${Q.rgb} = evaluateSH2(${B.gsplat}, ${B.sh2}, ${B.viewDir}); + inputs: { gsplat: t, sh2: A, viewDir: e }, + globals: () => [mA, DQ], + statements: ({ inputs: s, outputs: i }) => NA(` + if (isGsplatActive(${s.gsplat}.flags)) { + ${i.rgb} = evaluateSH2(${s.gsplat}, ${s.sh2}, ${s.viewDir}); } else { - ${Q.rgb} = vec3(0.0); + ${i.rgb} = vec3(0.0); } `) }).outputs.rgb; } -function xn(g, A, I) { - return xg({ - inTypes: { gsplat: BA, sh3: "usampler2DArray", viewDir: "vec3" }, +function xQ(t, A, e) { + return bt({ + inTypes: { gsplat: sA, sh3: "usampler2DArray", viewDir: "vec3" }, outTypes: { rgb: "vec3" }, - inputs: { gsplat: g, sh3: A, viewDir: I }, - globals: () => [pA, Sn], - statements: ({ inputs: B, outputs: Q }) => mA(` - if (isGsplatActive(${B.gsplat}.flags)) { - ${Q.rgb} = evaluateSH3(${B.gsplat}, ${B.sh3}, ${B.viewDir}); + inputs: { gsplat: t, sh3: A, viewDir: e }, + globals: () => [mA, fQ], + statements: ({ inputs: s, outputs: i }) => NA(` + if (isGsplatActive(${s.gsplat}.flags)) { + ${i.rgb} = evaluateSH3(${s.gsplat}, ${s.sh3}, ${s.viewDir}); } else { - ${Q.rgb} = vec3(0.0); + ${i.rgb} = vec3(0.0); } `) }).outputs.rgb; } -const wg = class wg { +const Ct = class Ct { // Create a PlyReader from a Uint8Array/ArrayBuffer, no parsing done yet constructor({ fileBytes: A }) { this.header = "", this.littleEndian = !0, this.elements = {}, this.comments = [], this.data = null, this.numSplats = 0, this.fileBytes = A instanceof ArrayBuffer ? new Uint8Array(A) : A; @@ -6037,446 +5915,446 @@ const wg = class wg { // this.elements will contain all the elements in the file, typically // "vertex" contains the Gsplat data. async parseHeader() { - const I = new ReadableStream({ - start: (E) => { - E.enqueue(this.fileBytes.slice(0, 65536)), E.close(); + const e = new ReadableStream({ + start: (a) => { + a.enqueue(this.fileBytes.slice(0, 65536)), a.close(); } }).pipeThrough(new TextDecoderStream()).getReader(); this.header = ""; - const B = `end_header + const s = `end_header `; for (; ; ) { - const { value: E, done: t } = await I.read(); - if (t) + const { value: a, done: r } = await e.read(); + if (r) throw new Error("Failed to read header"); - this.header += E; - const i = this.header.indexOf(B); - if (i >= 0) { - this.header = this.header.slice(0, i + B.length); + this.header += a; + const g = this.header.indexOf(s); + if (g >= 0) { + this.header = this.header.slice(0, g + s.length); break; } } - const Q = new TextEncoder().encode(this.header).length; - this.data = new DataView(this.fileBytes.buffer, Q), this.elements = {}; - let C = null; + const i = new TextEncoder().encode(this.header).length; + this.data = new DataView(this.fileBytes.buffer, i), this.elements = {}; + let n = null; this.comments = [], this.header.trim().split(` -`).forEach((E, t) => { - const i = E.trim(); - if (t === 0) { - if (i !== "ply") +`).forEach((a, r) => { + const g = a.trim(); + if (r === 0) { + if (g !== "ply") throw new Error("Invalid PLY header"); return; } - if (i.length === 0) + if (g.length === 0) return; - const e = i.split(" "); - switch (e[0]) { + const I = g.split(" "); + switch (I[0]) { case "format": - if (e[1] === "binary_little_endian") + if (I[1] === "binary_little_endian") this.littleEndian = !0; - else if (e[1] === "binary_big_endian") + else if (I[1] === "binary_big_endian") this.littleEndian = !1; else - throw new Error(`Unsupported PLY format: ${e[1]}`); - if (e[2] !== "1.0") - throw new Error(`Unsupported PLY version: ${e[2]}`); + throw new Error(`Unsupported PLY format: ${I[1]}`); + if (I[2] !== "1.0") + throw new Error(`Unsupported PLY version: ${I[2]}`); break; case "end_header": break; case "comment": - this.comments.push(i.slice(8)); + this.comments.push(g.slice(8)); break; case "element": { - const n = e[1]; - C = { - name: n, - count: Number.parseInt(e[2]), + const Q = I[1]; + n = { + name: Q, + count: Number.parseInt(I[2]), properties: {} - }, this.elements[n] = C; + }, this.elements[Q] = n; break; } case "property": - if (C == null) + if (n == null) throw new Error("Property must be inside an element"); - e[1] === "list" ? C.properties[e[4]] = { + I[1] === "list" ? n.properties[I[4]] = { isList: !0, - type: e[3], - countType: e[2] - } : C.properties[e[2]] = { + type: I[3], + countType: I[2] + } : n.properties[I[2]] = { isList: !1, - type: e[1] + type: I[1] }; break; } }), this.elements.vertex && (this.numSplats = this.elements.vertex.count); } parseData(A) { - let I = 0; - const B = this.data; - if (B == null) + let e = 0; + const s = this.data; + if (s == null) throw new Error("No data to parse"); - for (const Q in this.elements) { - const C = this.elements[Q], { count: E, properties: t } = C, i = {}, e = []; - for (const [s, o] of Object.entries(t)) - o.isList ? (i[s] = [], e.push(() => { - const r = i[s]; - r.length = vg[o.countType]( - B, - I, + for (const i in this.elements) { + const n = this.elements[i], { count: a, properties: r } = n, g = {}, I = []; + for (const [o, E] of Object.entries(r)) + E.isList ? (g[o] = [], I.push(() => { + const C = g[o]; + C.length = Kt[E.countType]( + s, + e, this.littleEndian - ), I += ng[o.countType]; - for (let c = 0; c < r.length; c++) - r[c] = vg[o.type]( - B, - I, + ), e += Bt[E.countType]; + for (let c = 0; c < C.length; c++) + C[c] = Kt[E.type]( + s, + e, this.littleEndian - ), I += ng[o.type]; - })) : (i[s] = 0, e.push(() => { - i[s] = vg[o.type]( - B, - I, + ), e += Bt[E.type]; + })) : (g[o] = 0, I.push(() => { + g[o] = Kt[E.type]( + s, + e, this.littleEndian - ), I += ng[o.type]; + ), e += Bt[E.type]; })); - const n = A(C) ?? (() => { + const Q = A(n) ?? (() => { }); - for (let s = 0; s < E; s++) { - for (const o of e) - o(); - n(s, i); + for (let o = 0; o < a; o++) { + for (const E of I) + E(); + Q(o, g); } } } // Parse all the Gsplat data in the PLY file in go, invoking the given // callbacks for each Gsplat. - parseSplats(A, I) { + parseSplats(A, e) { if (this.elements.vertex == null) throw new Error("No vertex element found"); - let B = !1; - const Q = []; - let C = 0, E = [], t = [], i = [], e, n, s; - function o() { - const D = bn[C]; - E = new Array(3).fill(null).flatMap( - (y, l) => [0, 1, 2].map((d, u) => `f_rest_${l + u * D / 3}`) - ), t = new Array(5).fill(null).flatMap( - (y, l) => [0, 1, 2].map((d, u) => `f_rest_${3 + l + u * D / 3}`) - ), i = new Array(7).fill(null).flatMap( - (y, l) => [0, 1, 2].map((d, u) => `f_rest_${8 + l + u * D / 3}`) - ), e = C >= 1 ? new Float32Array(3 * 3) : void 0, n = C >= 2 ? new Float32Array(5 * 3) : void 0, s = C >= 3 ? new Float32Array(7 * 3) : void 0; + let s = !1; + const i = []; + let n = 0, a = [], r = [], g = [], I, Q, o; + function E() { + const u = FQ[n]; + a = new Array(3).fill(null).flatMap( + (w, d) => [0, 1, 2].map((p, y) => `f_rest_${d + y * u / 3}`) + ), r = new Array(5).fill(null).flatMap( + (w, d) => [0, 1, 2].map((p, y) => `f_rest_${3 + d + y * u / 3}`) + ), g = new Array(7).fill(null).flatMap( + (w, d) => [0, 1, 2].map((p, y) => `f_rest_${8 + d + y * u / 3}`) + ), I = n >= 1 ? new Float32Array(3 * 3) : void 0, Q = n >= 2 ? new Float32Array(5 * 3) : void 0, o = n >= 3 ? new Float32Array(7 * 3) : void 0; } - function r(D, y) { - if (!e) + function C(u, w) { + if (!I) throw new Error("Missing sh1"); - for (const [l, d] of E.entries()) - e[l] = y[d] * 8 / 255 - 4; - if (n) - for (const [l, d] of t.entries()) - n[l] = y[d] * 8 / 255 - 4; - if (s) - for (const [l, d] of i.entries()) - s[l] = y[d] * 8 / 255 - 4; - I == null || I(D, e, n, s); + for (const [d, p] of a.entries()) + I[d] = w[p] * 8 / 255 - 4; + if (Q) + for (const [d, p] of r.entries()) + Q[d] = w[p] * 8 / 255 - 4; + if (o) + for (const [d, p] of g.entries()) + o[d] = w[p] * 8 / 255 - 4; + e == null || e(u, I, Q, o); } - function c(D) { + function c(u) { const { - min_x: y, - min_y: l, - min_z: d, - max_x: u, - max_y: p, - max_z: m, - min_scale_x: M, - min_scale_y: G, - min_scale_z: J, - max_scale_x: k, - max_scale_y: N, - max_scale_z: Y, - min_r: F, - min_g: f, - min_b: U, + min_x: w, + min_y: d, + min_z: p, + max_x: y, + max_y: m, + max_z: F, + min_scale_x: D, + min_scale_y: f, + min_scale_z: U, + max_scale_x: S, + max_scale_y: M, + max_scale_z: b, + min_r: N, + min_g: R, + min_b: G, max_r: L, - max_g: K, - max_b: Z - } = D.properties; - if (!y || !l || !d || !u || !p || !m || !M || !G || !J || !k || !N || !Y || !F || !f || !U || !L || !K || !Z) + max_g: T, + max_b: H + } = u.properties; + if (!w || !d || !p || !y || !m || !F || !D || !f || !U || !S || !M || !b || !N || !R || !G || !L || !T || !H) throw new Error("Missing PLY chunk properties"); - return B = !0, (QA, z) => { + return s = !0, (iA, P) => { const { min_x: AA, - min_y: $, - min_z: P, - max_x: j, - max_y: V, - max_z: x, - min_scale_x: uA, - min_scale_y: iA, - min_scale_z: b, - max_scale_x: nA, - max_scale_y: oA, - max_scale_z: H, - min_r: kA, - min_g: GA, - min_b: UA, - max_r: xA, - max_g: LA, - max_b: lA - } = z; - Q.push({ + min_y: j, + min_z: X, + max_x: Z, + max_y: _, + max_z: v, + min_scale_x: wA, + min_scale_y: gA, + min_scale_z: J, + max_scale_x: QA, + max_scale_y: EA, + max_scale_z: Y, + min_r: MA, + min_g: pA, + min_b: GA, + max_r: bA, + max_g: vA, + max_b: uA + } = P; + i.push({ min_x: AA, - min_y: $, - min_z: P, - max_x: j, - max_y: V, - max_z: x, - min_scale_x: uA, - min_scale_y: iA, - min_scale_z: b, - max_scale_x: nA, - max_scale_y: oA, - max_scale_z: H, - min_r: kA, - min_g: GA, - min_b: UA, - max_r: xA, - max_g: LA, - max_b: lA + min_y: j, + min_z: X, + max_x: Z, + max_y: _, + max_z: v, + min_scale_x: wA, + min_scale_y: gA, + min_scale_z: J, + max_scale_x: QA, + max_scale_y: EA, + max_scale_z: Y, + min_r: MA, + min_g: pA, + min_b: GA, + max_r: bA, + max_g: vA, + max_b: uA }); }; } - function h(D) { - if (I && D.name === "sh") - return C = BB(D.properties), o(), r; - if (D.name !== "vertex") + function h(u) { + if (e && u.name === "sh") + return n = Oe(u.properties), E(), C; + if (u.name !== "vertex") return null; - const { packed_position: y, packed_rotation: l, packed_scale: d, packed_color: u } = D.properties; - if (!y || !l || !d || !u) + const { packed_position: w, packed_rotation: d, packed_scale: p, packed_color: y } = u.properties; + if (!w || !d || !p || !y) throw new Error( "Missing PLY properties: packed_position, packed_rotation, packed_scale, packed_color" ); - const p = Math.sqrt(2); - return (m, M) => { - const G = Q[m >>> 8]; - if (G == null) + const m = Math.sqrt(2); + return (F, D) => { + const f = i[F >>> 8]; + if (f == null) throw new Error("Missing PLY chunk"); const { - min_x: J, - min_y: k, - min_z: N, - max_x: Y, - max_y: F, - max_z: f, - min_scale_x: U, + min_x: U, + min_y: S, + min_z: M, + max_x: b, + max_y: N, + max_z: R, + min_scale_x: G, min_scale_y: L, - min_scale_z: K, - max_scale_x: Z, - max_scale_y: QA, - max_scale_z: z, + min_scale_z: T, + max_scale_x: H, + max_scale_y: iA, + max_scale_z: P, min_r: AA, - min_g: $, - min_b: P, - max_r: j, - max_g: V, - max_b: x - } = G, { packed_position: uA, packed_rotation: iA, packed_scale: b, packed_color: nA } = M, oA = (uA >>> 21 & 2047) / 2047 * (Y - J) + J, H = (uA >>> 11 & 1023) / 1023 * (F - k) + k, kA = (uA & 2047) / 2047 * (f - N) + N, GA = ((iA >>> 20 & 1023) / 1023 - 0.5) * p, UA = ((iA >>> 10 & 1023) / 1023 - 0.5) * p, xA = ((iA & 1023) / 1023 - 0.5) * p, LA = Math.sqrt(Math.max(0, 1 - GA * GA - UA * UA - xA * xA)), lA = iA >>> 30, vA = lA === 0 ? GA : lA === 1 ? LA : UA, oI = lA <= 1 ? UA : lA === 2 ? LA : xA, rI = lA <= 2 ? xA : LA, cI = lA === 0 ? LA : GA, hI = Math.exp( - (b >>> 21 & 2047) / 2047 * (Z - U) + U - ), wI = Math.exp( - (b >>> 11 & 1023) / 1023 * (QA - L) + L - ), DI = Math.exp( - (b & 2047) / 2047 * (z - K) + K - ), lI = (nA >>> 24 & 255) / 255 * (j - AA) + AA, yI = (nA >>> 16 & 255) / 255 * (V - $) + $, xt = (nA >>> 8 & 255) / 255 * (x - P) + P, Lt = (nA & 255) / 255; + min_g: j, + min_b: X, + max_r: Z, + max_g: _, + max_b: v + } = f, { packed_position: wA, packed_rotation: gA, packed_scale: J, packed_color: QA } = D, EA = (wA >>> 21 & 2047) / 2047 * (b - U) + U, Y = (wA >>> 11 & 1023) / 1023 * (N - S) + S, MA = (wA & 2047) / 2047 * (R - M) + M, pA = ((gA >>> 20 & 1023) / 1023 - 0.5) * m, GA = ((gA >>> 10 & 1023) / 1023 - 0.5) * m, bA = ((gA & 1023) / 1023 - 0.5) * m, vA = Math.sqrt(Math.max(0, 1 - pA * pA - GA * GA - bA * bA)), uA = gA >>> 30, KA = uA === 0 ? pA : uA === 1 ? vA : GA, oe = uA <= 1 ? GA : uA === 2 ? vA : bA, Ie = uA <= 2 ? bA : vA, Be = uA === 0 ? vA : pA, Qe = Math.exp( + (J >>> 21 & 2047) / 2047 * (H - G) + G + ), Ee = Math.exp( + (J >>> 11 & 1023) / 1023 * (iA - L) + L + ), Ce = Math.exp( + (J & 2047) / 2047 * (P - T) + T + ), ce = (QA >>> 24 & 255) / 255 * (Z - AA) + AA, he = (QA >>> 16 & 255) / 255 * (_ - j) + j, Nr = (QA >>> 8 & 255) / 255 * (v - X) + X, kr = (QA & 255) / 255; A( - m, - oA, - H, - kA, - hI, - wI, - DI, - vA, - oI, - rI, - cI, - Lt, - lI, - yI, - xt + F, + EA, + Y, + MA, + Qe, + Ee, + Ce, + KA, + oe, + Ie, + Be, + kr, + ce, + he, + Nr ); }; } - const w = (D) => { - if (D.name === "chunk" && this.comments.some( - (V) => V.toLowerCase().includes("supersplat") + const l = (u) => { + if (u.name === "chunk" && this.comments.some( + (_) => _.toLowerCase().includes("supersplat") )) - return c(D); - if (B) - return h(D); - if (D.name !== "vertex") + return c(u); + if (s) + return h(u); + if (u.name !== "vertex") return null; const { - x: y, - y: l, - z: d, - scale_0: u, - scale_1: p, - scale_2: m, - rot_0: M, - rot_1: G, - rot_2: J, - rot_3: k, - opacity: N, - f_dc_0: Y, - f_dc_1: F, - f_dc_2: f, - red: U, + x: w, + y: d, + z: p, + scale_0: y, + scale_1: m, + scale_2: F, + rot_0: D, + rot_1: f, + rot_2: U, + rot_3: S, + opacity: M, + f_dc_0: b, + f_dc_1: N, + f_dc_2: R, + red: G, green: L, - blue: K, - alpha: Z - } = D.properties; - if (!y || !l || !d) + blue: T, + alpha: H + } = u.properties; + if (!w || !d || !p) throw new Error("Missing PLY properties: x, y, z"); - const QA = u && p && m, z = M && G && J && k, AA = Z != null ? Wg[Z.type] : 1, $ = U != null ? Wg[U.type] : 1, P = L != null ? Wg[L.type] : 1, j = K != null ? Wg[K.type] : 1; - return C = BB(D.properties), o(), (V, x) => { - const uA = QA ? Math.exp(x.scale_0) : wg.defaultPointScale, iA = QA ? Math.exp(x.scale_1) : wg.defaultPointScale, b = QA ? Math.exp(x.scale_2) : wg.defaultPointScale, nA = z ? x.rot_1 : 0, oA = z ? x.rot_2 : 0, H = z ? x.rot_3 : 0, kA = z ? x.rot_0 : 1, GA = N != null ? 1 / (1 + Math.exp(-x.opacity)) : Z != null ? x.alpha / AA : 1, UA = Y != null ? x.f_dc_0 * qg + 0.5 : U != null ? x.red / $ : 1, xA = F != null ? x.f_dc_1 * qg + 0.5 : L != null ? x.green / P : 1, LA = f != null ? x.f_dc_2 * qg + 0.5 : K != null ? x.blue / j : 1; + const iA = y && m && F, P = D && f && U && S, AA = H != null ? qt[H.type] : 1, j = G != null ? qt[G.type] : 1, X = L != null ? qt[L.type] : 1, Z = T != null ? qt[T.type] : 1; + return n = Oe(u.properties), E(), (_, v) => { + const wA = iA ? Math.exp(v.scale_0) : Ct.defaultPointScale, gA = iA ? Math.exp(v.scale_1) : Ct.defaultPointScale, J = iA ? Math.exp(v.scale_2) : Ct.defaultPointScale, QA = P ? v.rot_1 : 0, EA = P ? v.rot_2 : 0, Y = P ? v.rot_3 : 0, MA = P ? v.rot_0 : 1, pA = M != null ? 1 / (1 + Math.exp(-v.opacity)) : H != null ? v.alpha / AA : 1, GA = b != null ? v.f_dc_0 * Ht + 0.5 : G != null ? v.red / j : 1, bA = N != null ? v.f_dc_1 * Ht + 0.5 : L != null ? v.green / X : 1, vA = R != null ? v.f_dc_2 * Ht + 0.5 : T != null ? v.blue / Z : 1; if (A( - V, - x.x, - x.y, - x.z, - uA, - iA, - b, - nA, - oA, - H, - kA, + _, + v.x, + v.y, + v.z, + wA, + gA, + J, + QA, + EA, + Y, + MA, + pA, GA, - UA, - xA, - LA - ), I && e) { - if (e) - for (const [lA, vA] of E.entries()) - e[lA] = x[vA]; - if (n) - for (const [lA, vA] of t.entries()) - n[lA] = x[vA]; - if (s) - for (const [lA, vA] of i.entries()) - s[lA] = x[vA]; - I(V, e, n, s); + bA, + vA + ), e && I) { + if (I) + for (const [uA, KA] of a.entries()) + I[uA] = v[KA]; + if (Q) + for (const [uA, KA] of r.entries()) + Q[uA] = v[KA]; + if (o) + for (const [uA, KA] of g.entries()) + o[uA] = v[KA]; + e(_, I, Q, o); } }; }; - this.parseData(w); + this.parseData(l); } // Inject RGBA values into original PLY file, which can be used to modify // the color/opacity of the Gsplats and write out the modified PLY file. injectRgba(A) { - let I = 0; - const B = this.data; - if (B == null) + let e = 0; + const s = this.data; + if (s == null) throw new Error("No parsed data"); if (A.length !== this.numSplats * 4) throw new Error("Invalid RGBA array length"); - for (const Q in this.elements) { - const C = this.elements[Q], { count: E, properties: t } = C, i = []; - let e = 0; - const n = Q === "vertex"; - if (n) { - for (const s of ["opacity", "f_dc_0", "f_dc_1", "f_dc_2"]) - if (!t[s] || t[s].type !== "float") - throw new Error(`Can't injectRgba due to property: ${s}`); + for (const i in this.elements) { + const n = this.elements[i], { count: a, properties: r } = n, g = []; + let I = 0; + const Q = i === "vertex"; + if (Q) { + for (const o of ["opacity", "f_dc_0", "f_dc_1", "f_dc_2"]) + if (!r[o] || r[o].type !== "float") + throw new Error(`Can't injectRgba due to property: ${o}`); } - for (const [s, o] of Object.entries(t)) - if (o.isList) - i.push(() => { - const r = vg[o.countType]( - B, - I, + for (const [o, E] of Object.entries(r)) + if (E.isList) + g.push(() => { + const C = Kt[E.countType]( + s, + e, this.littleEndian ); - I += ng[o.countType], I += r * ng[o.type]; + e += Bt[E.countType], e += C * Bt[E.type]; }); else { - if (n) - if (s === "f_dc_0" || s === "f_dc_1" || s === "f_dc_2") { - const r = Number.parseInt( - s.slice(5) + if (Q) + if (o === "f_dc_0" || o === "f_dc_1" || o === "f_dc_2") { + const C = Number.parseInt( + o.slice(5) ); - i.push(() => { - const c = (A[e + r] / 255 - 0.5) / qg; - IB[o.type]( - B, - I, + g.push(() => { + const c = (A[I + C] / 255 - 0.5) / Ht; + Ze[E.type]( + s, + e, this.littleEndian, c ); }); - } else s === "opacity" && i.push(() => { - const r = Math.max( + } else o === "opacity" && g.push(() => { + const C = Math.max( -100, Math.min( 100, - -Math.log(1 / (A[e + 3] / 255) - 1) + -Math.log(1 / (A[I + 3] / 255) - 1) ) ); - IB[o.type]( - B, - I, + Ze[E.type]( + s, + e, this.littleEndian, - r + C ); }); - i.push(() => { - I += ng[o.type]; + g.push(() => { + e += Bt[E.type]; }); } - for (let s = 0; s < E; s++) { - for (const o of i) - o(); - n && (e += 4); + for (let o = 0; o < a; o++) { + for (const E of g) + E(); + Q && (I += 4); } } } }; -wg.defaultPointScale = 1e-3; -let QI = wg; -const qg = 0.28209479177387814, vg = { - char: (g, A, I) => g.getInt8(A), - uchar: (g, A, I) => g.getUint8(A), - short: (g, A, I) => g.getInt16(A, I), - ushort: (g, A, I) => g.getUint16(A, I), - int: (g, A, I) => g.getInt32(A, I), - uint: (g, A, I) => g.getUint32(A, I), - float: (g, A, I) => g.getFloat32(A, I), - double: (g, A, I) => g.getFloat64(A, I) -}, IB = { - char: (g, A, I, B) => { - g.setInt8(A, B); +Ct.defaultPointScale = 1e-3; +let Ae = Ct; +const Ht = 0.28209479177387814, Kt = { + char: (t, A, e) => t.getInt8(A), + uchar: (t, A, e) => t.getUint8(A), + short: (t, A, e) => t.getInt16(A, e), + ushort: (t, A, e) => t.getUint16(A, e), + int: (t, A, e) => t.getInt32(A, e), + uint: (t, A, e) => t.getUint32(A, e), + float: (t, A, e) => t.getFloat32(A, e), + double: (t, A, e) => t.getFloat64(A, e) +}, Ze = { + char: (t, A, e, s) => { + t.setInt8(A, s); 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this.convert(B,this.workingColorSpace,Q)},toWorkingColorSpace:function(B,Q){return this.convert(B,Q,this.workingColorSpace)},getPrimaries:function(B){return this.spaces[B].primaries},getTransfer:function(B){return B===NQ?kQ:this.spaces[B].transfer},getLuminanceCoefficients:function(B,Q=this.workingColorSpace){return B.fromArray(this.spaces[Q].luminanceCoefficients)},define:function(B){Object.assign(this.spaces,B)},_getMatrix:function(B,Q,t){return B.copy(this.spaces[Q].toXYZ).multiply(this.spaces[t].fromXYZ)},_getDrawingBufferColorSpace:function(B){return this.spaces[B].outputColorSpaceConfig.drawingBufferColorSpace},_getUnpackColorSpace:function(B=this.workingColorSpace){return this.spaces[B].workingColorSpaceConfig.unpackColorSpace}},A=[.64,.33,.3,.6,.15,.06],g=[.2126,.7152,.0722],I=[.3127,.329];return E.define({[FQ]:{primaries:A,whitePoint:I,transfer:kQ,toXYZ:mQ,fromXYZ:SQ,luminanceCoefficients:g,workingColorSpaceConfig:{unpackColorSpace:LA},outputColorSpaceConfig:{drawingBufferColorSpace:LA}},[LA]:{primaries:A,whitePoint:I,transfer:cB,toXYZ:mQ,fromXYZ:SQ,luminanceCoefficients:g,outputColorSpaceConfig:{drawingBufferColorSpace:LA}}}),E}const bA=nC();function XA(E){return E<.04045?E*.0773993808:Math.pow(E*.9478672986+.0521327014,2.4)}function pg(E){return E<.0031308?E*12.92:1.055*Math.pow(E,.41666)-.055}let fg;class oC{static getDataURL(A){if(/^data:/i.test(A.src)||typeof HTMLCanvasElement>"u")return A.src;let g;if(A instanceof HTMLCanvasElement)g=A;else{fg===void 0&&(fg=JQ("canvas")),fg.width=A.width,fg.height=A.height;const I=fg.getContext("2d");A instanceof ImageData?I.putImageData(A,0,0):I.drawImage(A,0,0,A.width,A.height),g=fg}return g.width>2048||g.height>2048?(console.warn("THREE.ImageUtils.getDataURL: Image converted to jpg for performance reasons",A),g.toDataURL("image/jpeg",.6)):g.toDataURL("image/png")}static sRGBToLinear(A){if(typeof HTMLImageElement<"u"&&A instanceof HTMLImageElement||typeof HTMLCanvasElement<"u"&&A instanceof HTMLCanvasElement||typeof ImageBitmap<"u"&&A instanceof ImageBitmap){const g=JQ("canvas");g.width=A.width,g.height=A.height;const I=g.getContext("2d");I.drawImage(A,0,0,A.width,A.height);const B=I.getImageData(0,0,A.width,A.height),Q=B.data;for(let t=0;t0&&(I.userData=this.userData),g||(A.textures[this.uuid]=I),I}dispose(){this.dispatchEvent({type:"dispose"})}transformUv(A){if(this.mapping!==uQ)return A;if(A.applyMatrix3(this.matrix),A.x<0||A.x>1)switch(this.wrapS){case dQ:A.x=A.x-Math.floor(A.x);break;case gI:A.x=A.x<0?0:1;break;case MQ:Math.abs(Math.floor(A.x)%2)===1?A.x=Math.ceil(A.x)-A.x:A.x=A.x-Math.floor(A.x);break}if(A.y<0||A.y>1)switch(this.wrapT){case dQ:A.y=A.y-Math.floor(A.y);break;case gI:A.y=A.y<0?0:1;break;case MQ:Math.abs(Math.floor(A.y)%2)===1?A.y=Math.ceil(A.y)-A.y:A.y=A.y-Math.floor(A.y);break}return this.flipY&&(A.y=1-A.y),A}set needsUpdate(A){A===!0&&(this.version++,this.source.needsUpdate=!0)}set needsPMREMUpdate(A){A===!0&&this.pmremVersion++}}vA.DEFAULT_IMAGE=null,vA.DEFAULT_MAPPING=uQ,vA.DEFAULT_ANISOTROPY=1;class lA{constructor(A=0,g=0,I=0,B=1){lA.prototype.isVector4=!0,this.x=A,this.y=g,this.z=I,this.w=B}get width(){return this.z}set width(A){this.z=A}get height(){return this.w}set height(A){this.w=A}set(A,g,I,B){return this.x=A,this.y=g,this.z=I,this.w=B,this}setScalar(A){return this.x=A,this.y=A,this.z=A,this.w=A,this}setX(A){return this.x=A,this}setY(A){return this.y=A,this}setZ(A){return this.z=A,this}setW(A){return this.w=A,this}setComponent(A,g){switch(A){case 0:this.x=g;break;case 1:this.y=g;break;case 2:this.z=g;break;case 3:this.w=g;break;default:throw new Error("index is out of range: "+A)}return this}getComponent(A){switch(A){case 0:return this.x;case 1:return this.y;case 2:return this.z;case 3:return this.w;default:throw new Error("index is out of range: "+A)}}clone(){return new this.constructor(this.x,this.y,this.z,this.w)}copy(A){return this.x=A.x,this.y=A.y,this.z=A.z,this.w=A.w!==void 0?A.w:1,this}add(A){return this.x+=A.x,this.y+=A.y,this.z+=A.z,this.w+=A.w,this}addScalar(A){return this.x+=A,this.y+=A,this.z+=A,this.w+=A,this}addVectors(A,g){return this.x=A.x+g.x,this.y=A.y+g.y,this.z=A.z+g.z,this.w=A.w+g.w,this}addScaledVector(A,g){return this.x+=A.x*g,this.y+=A.y*g,this.z+=A.z*g,this.w+=A.w*g,this}sub(A){return this.x-=A.x,this.y-=A.y,this.z-=A.z,this.w-=A.w,this}subScalar(A){return this.x-=A,this.y-=A,this.z-=A,this.w-=A,this}subVectors(A,g){return this.x=A.x-g.x,this.y=A.y-g.y,this.z=A.z-g.z,this.w=A.w-g.w,this}multiply(A){return this.x*=A.x,this.y*=A.y,this.z*=A.z,this.w*=A.w,this}multiplyScalar(A){return this.x*=A,this.y*=A,this.z*=A,this.w*=A,this}applyMatrix4(A){const g=this.x,I=this.y,B=this.z,Q=this.w,t=A.elements;return this.x=t[0]*g+t[4]*I+t[8]*B+t[12]*Q,this.y=t[1]*g+t[5]*I+t[9]*B+t[13]*Q,this.z=t[2]*g+t[6]*I+t[10]*B+t[14]*Q,this.w=t[3]*g+t[7]*I+t[11]*B+t[15]*Q,this}divide(A){return this.x/=A.x,this.y/=A.y,this.z/=A.z,this.w/=A.w,this}divideScalar(A){return this.multiplyScalar(1/A)}setAxisAngleFromQuaternion(A){this.w=2*Math.acos(A.w);const g=Math.sqrt(1-A.w*A.w);return g<1e-4?(this.x=1,this.y=0,this.z=0):(this.x=A.x/g,this.y=A.y/g,this.z=A.z/g),this}setAxisAngleFromRotationMatrix(A){let g,I,B,Q;const i=A.elements,s=i[0],a=i[4],e=i[8],n=i[1],o=i[5],r=i[9],h=i[2],c=i[6],w=i[10];if(Math.abs(a-n)<.01&&Math.abs(e-h)<.01&&Math.abs(r-c)<.01){if(Math.abs(a+n)<.1&&Math.abs(e+h)<.1&&Math.abs(r+c)<.1&&Math.abs(s+o+w-3)<.1)return this.set(1,0,0,0),this;g=Math.PI;const l=(s+1)/2,u=(o+1)/2,M=(w+1)/2,F=(a+n)/4,p=(e+h)/4,d=(r+c)/4;return l>u&&l>M?l<.01?(I=0,B=.707106781,Q=.707106781):(I=Math.sqrt(l),B=F/I,Q=p/I):u>M?u<.01?(I=.707106781,B=0,Q=.707106781):(B=Math.sqrt(u),I=F/B,Q=d/B):M<.01?(I=.707106781,B=.707106781,Q=0):(Q=Math.sqrt(M),I=p/Q,B=d/Q),this.set(I,B,Q,g),this}let y=Math.sqrt((c-r)*(c-r)+(e-h)*(e-h)+(n-a)*(n-a));return Math.abs(y)<.001&&(y=1),this.x=(c-r)/y,this.y=(e-h)/y,this.z=(n-a)/y,this.w=Math.acos((s+o+w-1)/2),this}setFromMatrixPosition(A){const g=A.elements;return this.x=g[12],this.y=g[13],this.z=g[14],this.w=g[15],this}min(A){return this.x=Math.min(this.x,A.x),this.y=Math.min(this.y,A.y),this.z=Math.min(this.z,A.z),this.w=Math.min(this.w,A.w),this}max(A){return this.x=Math.max(this.x,A.x),this.y=Math.max(this.y,A.y),this.z=Math.max(this.z,A.z),this.w=Math.max(this.w,A.w),this}clamp(A,g){return this.x=H(this.x,A.x,g.x),this.y=H(this.y,A.y,g.y),this.z=H(this.z,A.z,g.z),this.w=H(this.w,A.w,g.w),this}clampScalar(A,g){return this.x=H(this.x,A,g),this.y=H(this.y,A,g),this.z=H(this.z,A,g),this.w=H(this.w,A,g),this}clampLength(A,g){const I=this.length();return this.divideScalar(I||1).multiplyScalar(H(I,A,g))}floor(){return this.x=Math.floor(this.x),this.y=Math.floor(this.y),this.z=Math.floor(this.z),this.w=Math.floor(this.w),this}ceil(){return this.x=Math.ceil(this.x),this.y=Math.ceil(this.y),this.z=Math.ceil(this.z),this.w=Math.ceil(this.w),this}round(){return this.x=Math.round(this.x),this.y=Math.round(this.y),this.z=Math.round(this.z),this.w=Math.round(this.w),this}roundToZero(){return this.x=Math.trunc(this.x),this.y=Math.trunc(this.y),this.z=Math.trunc(this.z),this.w=Math.trunc(this.w),this}negate(){return this.x=-this.x,this.y=-this.y,this.z=-this.z,this.w=-this.w,this}dot(A){return this.x*A.x+this.y*A.y+this.z*A.z+this.w*A.w}lengthSq(){return this.x*this.x+this.y*this.y+this.z*this.z+this.w*this.w}length(){return Math.sqrt(this.x*this.x+this.y*this.y+this.z*this.z+this.w*this.w)}manhattanLength(){return Math.abs(this.x)+Math.abs(this.y)+Math.abs(this.z)+Math.abs(this.w)}normalize(){return this.divideScalar(this.length()||1)}setLength(A){return this.normalize().multiplyScalar(A)}lerp(A,g){return this.x+=(A.x-this.x)*g,this.y+=(A.y-this.y)*g,this.z+=(A.z-this.z)*g,this.w+=(A.w-this.w)*g,this}lerpVectors(A,g,I){return this.x=A.x+(g.x-A.x)*I,this.y=A.y+(g.y-A.y)*I,this.z=A.z+(g.z-A.z)*I,this.w=A.w+(g.w-A.w)*I,this}equals(A){return A.x===this.x&&A.y===this.y&&A.z===this.z&&A.w===this.w}fromArray(A,g=0){return this.x=A[g],this.y=A[g+1],this.z=A[g+2],this.w=A[g+3],this}toArray(A=[],g=0){return A[g]=this.x,A[g+1]=this.y,A[g+2]=this.z,A[g+3]=this.w,A}fromBufferAttribute(A,g){return this.x=A.getX(g),this.y=A.getY(g),this.z=A.getZ(g),this.w=A.getW(g),this}random(){return this.x=Math.random(),this.y=Math.random(),this.z=Math.random(),this.w=Math.random(),this}*[Symbol.iterator](){yield this.x,yield this.y,yield this.z,yield this.w}}class cC extends BI{constructor(A=1,g=1,I={}){super(),this.isRenderTarget=!0,this.width=A,this.height=g,this.depth=1,this.scissor=new lA(0,0,A,g),this.scissorTest=!1,this.viewport=new lA(0,0,A,g);const B={width:A,height:g,depth:1};I=Object.assign({generateMipmaps:!1,internalFormat:null,minFilter:GQ,depthBuffer:!0,stencilBuffer:!1,resolveDepthBuffer:!0,resolveStencilBuffer:!0,depthTexture:null,samples:0,count:1},I);const Q=new vA(B,I.mapping,I.wrapS,I.wrapT,I.magFilter,I.minFilter,I.format,I.type,I.anisotropy,I.colorSpace);Q.flipY=!1,Q.generateMipmaps=I.generateMipmaps,Q.internalFormat=I.internalFormat,this.textures=[];const t=I.count;for(let C=0;C=0?1:-1,l=1-w*w;if(l>Number.EPSILON){const M=Math.sqrt(l),F=Math.atan2(M,w*y);c=Math.sin(c*F)/M,C=Math.sin(C*F)/M}const u=C*y;if(i=i*c+n*u,s=s*c+o*u,a=a*c+r*u,e=e*c+h*u,c===1-C){const M=1/Math.sqrt(i*i+s*s+a*a+e*e);i*=M,s*=M,a*=M,e*=M}}A[g]=i,A[g+1]=s,A[g+2]=a,A[g+3]=e}static multiplyQuaternionsFlat(A,g,I,B,Q,t){const C=I[B],i=I[B+1],s=I[B+2],a=I[B+3],e=Q[t],n=Q[t+1],o=Q[t+2],r=Q[t+3];return A[g]=C*r+a*e+i*o-s*n,A[g+1]=i*r+a*n+s*e-C*o,A[g+2]=s*r+a*o+C*n-i*e,A[g+3]=a*r-C*e-i*n-s*o,A}get x(){return this._x}set x(A){this._x=A,this._onChangeCallback()}get y(){return this._y}set y(A){this._y=A,this._onChangeCallback()}get z(){return this._z}set z(A){this._z=A,this._onChangeCallback()}get w(){return this._w}set w(A){this._w=A,this._onChangeCallback()}set(A,g,I,B){return this._x=A,this._y=g,this._z=I,this._w=B,this._onChangeCallback(),this}clone(){return new this.constructor(this._x,this._y,this._z,this._w)}copy(A){return this._x=A.x,this._y=A.y,this._z=A.z,this._w=A.w,this._onChangeCallback(),this}setFromEuler(A,g=!0){const I=A._x,B=A._y,Q=A._z,t=A._order,C=Math.cos,i=Math.sin,s=C(I/2),a=C(B/2),e=C(Q/2),n=i(I/2),o=i(B/2),r=i(Q/2);switch(t){case"XYZ":this._x=n*a*e+s*o*r,this._y=s*o*e-n*a*r,this._z=s*a*r+n*o*e,this._w=s*a*e-n*o*r;break;case"YXZ":this._x=n*a*e+s*o*r,this._y=s*o*e-n*a*r,this._z=s*a*r-n*o*e,this._w=s*a*e+n*o*r;break;case"ZXY":this._x=n*a*e-s*o*r,this._y=s*o*e+n*a*r,this._z=s*a*r+n*o*e,this._w=s*a*e-n*o*r;break;case"ZYX":this._x=n*a*e-s*o*r,this._y=s*o*e+n*a*r,this._z=s*a*r-n*o*e,this._w=s*a*e+n*o*r;break;case"YZX":this._x=n*a*e+s*o*r,this._y=s*o*e+n*a*r,this._z=s*a*r-n*o*e,this._w=s*a*e-n*o*r;break;case"XZY":this._x=n*a*e-s*o*r,this._y=s*o*e-n*a*r,this._z=s*a*r+n*o*e,this._w=s*a*e+n*o*r;break;default:console.warn("THREE.Quaternion: .setFromEuler() encountered an unknown order: "+t)}return g===!0&&this._onChangeCallback(),this}setFromAxisAngle(A,g){const I=g/2,B=Math.sin(I);return this._x=A.x*B,this._y=A.y*B,this._z=A.z*B,this._w=Math.cos(I),this._onChangeCallback(),this}setFromRotationMatrix(A){const g=A.elements,I=g[0],B=g[4],Q=g[8],t=g[1],C=g[5],i=g[9],s=g[2],a=g[6],e=g[10],n=I+C+e;if(n>0){const o=.5/Math.sqrt(n+1);this._w=.25/o,this._x=(a-i)*o,this._y=(Q-s)*o,this._z=(t-B)*o}else if(I>C&&I>e){const o=2*Math.sqrt(1+I-C-e);this._w=(a-i)/o,this._x=.25*o,this._y=(B+t)/o,this._z=(Q+s)/o}else if(C>e){const o=2*Math.sqrt(1+C-I-e);this._w=(Q-s)/o,this._x=(B+t)/o,this._y=.25*o,this._z=(i+a)/o}else{const o=2*Math.sqrt(1+e-I-C);this._w=(t-B)/o,this._x=(Q+s)/o,this._y=(i+a)/o,this._z=.25*o}return this._onChangeCallback(),this}setFromUnitVectors(A,g){let I=A.dot(g)+1;return IMath.abs(A.z)?(this._x=-A.y,this._y=A.x,this._z=0,this._w=I):(this._x=0,this._y=-A.z,this._z=A.y,this._w=I)):(this._x=A.y*g.z-A.z*g.y,this._y=A.z*g.x-A.x*g.z,this._z=A.x*g.y-A.y*g.x,this._w=I),this.normalize()}angleTo(A){return 2*Math.acos(Math.abs(H(this.dot(A),-1,1)))}rotateTowards(A,g){const I=this.angleTo(A);if(I===0)return this;const B=Math.min(1,g/I);return this.slerp(A,B),this}identity(){return this.set(0,0,0,1)}invert(){return this.conjugate()}conjugate(){return this._x*=-1,this._y*=-1,this._z*=-1,this._onChangeCallback(),this}dot(A){return this._x*A._x+this._y*A._y+this._z*A._z+this._w*A._w}lengthSq(){return this._x*this._x+this._y*this._y+this._z*this._z+this._w*this._w}length(){return Math.sqrt(this._x*this._x+this._y*this._y+this._z*this._z+this._w*this._w)}normalize(){let A=this.length();return A===0?(this._x=0,this._y=0,this._z=0,this._w=1):(A=1/A,this._x=this._x*A,this._y=this._y*A,this._z=this._z*A,this._w=this._w*A),this._onChangeCallback(),this}multiply(A){return this.multiplyQuaternions(this,A)}premultiply(A){return this.multiplyQuaternions(A,this)}multiplyQuaternions(A,g){const I=A._x,B=A._y,Q=A._z,t=A._w,C=g._x,i=g._y,s=g._z,a=g._w;return this._x=I*a+t*C+B*s-Q*i,this._y=B*a+t*i+Q*C-I*s,this._z=Q*a+t*s+I*i-B*C,this._w=t*a-I*C-B*i-Q*s,this._onChangeCallback(),this}slerp(A,g){if(g===0)return this;if(g===1)return this.copy(A);const I=this._x,B=this._y,Q=this._z,t=this._w;let C=t*A._w+I*A._x+B*A._y+Q*A._z;if(C<0?(this._w=-A._w,this._x=-A._x,this._y=-A._y,this._z=-A._z,C=-C):this.copy(A),C>=1)return this._w=t,this._x=I,this._y=B,this._z=Q,this;const i=1-C*C;if(i<=Number.EPSILON){const o=1-g;return this._w=o*t+g*this._w,this._x=o*I+g*this._x,this._y=o*B+g*this._y,this._z=o*Q+g*this._z,this.normalize(),this}const s=Math.sqrt(i),a=Math.atan2(s,C),e=Math.sin((1-g)*a)/s,n=Math.sin(g*a)/s;return this._w=t*e+this._w*n,this._x=I*e+this._x*n,this._y=B*e+this._y*n,this._z=Q*e+this._z*n,this._onChangeCallback(),this}slerpQuaternions(A,g,I){return this.copy(A).slerp(g,I)}random(){const A=2*Math.PI*Math.random(),g=2*Math.PI*Math.random(),I=Math.random(),B=Math.sqrt(1-I),Q=Math.sqrt(I);return this.set(B*Math.sin(A),B*Math.cos(A),Q*Math.sin(g),Q*Math.cos(g))}equals(A){return A._x===this._x&&A._y===this._y&&A._z===this._z&&A._w===this._w}fromArray(A,g=0){return this._x=A[g],this._y=A[g+1],this._z=A[g+2],this._w=A[g+3],this._onChangeCallback(),this}toArray(A=[],g=0){return A[g]=this._x,A[g+1]=this._y,A[g+2]=this._z,A[g+3]=this._w,A}fromBufferAttribute(A,g){return this._x=A.getX(g),this._y=A.getY(g),this._z=A.getZ(g),this._w=A.getW(g),this._onChangeCallback(),this}toJSON(){return this.toArray()}_onChange(A){return this._onChangeCallback=A,this}_onChangeCallback(){}*[Symbol.iterator](){yield this._x,yield this._y,yield this._z,yield this._w}}class D{constructor(A=0,g=0,I=0){D.prototype.isVector3=!0,this.x=A,this.y=g,this.z=I}set(A,g,I){return I===void 0&&(I=this.z),this.x=A,this.y=g,this.z=I,this}setScalar(A){return this.x=A,this.y=A,this.z=A,this}setX(A){return this.x=A,this}setY(A){return this.y=A,this}setZ(A){return this.z=A,this}setComponent(A,g){switch(A){case 0:this.x=g;break;case 1:this.y=g;break;case 2:this.z=g;break;default:throw new Error("index is out of range: "+A)}return this}getComponent(A){switch(A){case 0:return this.x;case 1:return this.y;case 2:return this.z;default:throw new Error("index is out of range: "+A)}}clone(){return new this.constructor(this.x,this.y,this.z)}copy(A){return this.x=A.x,this.y=A.y,this.z=A.z,this}add(A){return this.x+=A.x,this.y+=A.y,this.z+=A.z,this}addScalar(A){return this.x+=A,this.y+=A,this.z+=A,this}addVectors(A,g){return this.x=A.x+g.x,this.y=A.y+g.y,this.z=A.z+g.z,this}addScaledVector(A,g){return this.x+=A.x*g,this.y+=A.y*g,this.z+=A.z*g,this}sub(A){return this.x-=A.x,this.y-=A.y,this.z-=A.z,this}subScalar(A){return this.x-=A,this.y-=A,this.z-=A,this}subVectors(A,g){return this.x=A.x-g.x,this.y=A.y-g.y,this.z=A.z-g.z,this}multiply(A){return this.x*=A.x,this.y*=A.y,this.z*=A.z,this}multiplyScalar(A){return this.x*=A,this.y*=A,this.z*=A,this}multiplyVectors(A,g){return this.x=A.x*g.x,this.y=A.y*g.y,this.z=A.z*g.z,this}applyEuler(A){return this.applyQuaternion(UQ.setFromEuler(A))}applyAxisAngle(A,g){return this.applyQuaternion(UQ.setFromAxisAngle(A,g))}applyMatrix3(A){const g=this.x,I=this.y,B=this.z,Q=A.elements;return this.x=Q[0]*g+Q[3]*I+Q[6]*B,this.y=Q[1]*g+Q[4]*I+Q[7]*B,this.z=Q[2]*g+Q[5]*I+Q[8]*B,this}applyNormalMatrix(A){return this.applyMatrix3(A).normalize()}applyMatrix4(A){const g=this.x,I=this.y,B=this.z,Q=A.elements,t=1/(Q[3]*g+Q[7]*I+Q[11]*B+Q[15]);return this.x=(Q[0]*g+Q[4]*I+Q[8]*B+Q[12])*t,this.y=(Q[1]*g+Q[5]*I+Q[9]*B+Q[13])*t,this.z=(Q[2]*g+Q[6]*I+Q[10]*B+Q[14])*t,this}applyQuaternion(A){const g=this.x,I=this.y,B=this.z,Q=A.x,t=A.y,C=A.z,i=A.w,s=2*(t*B-C*I),a=2*(C*g-Q*B),e=2*(Q*I-t*g);return this.x=g+i*s+t*e-C*a,this.y=I+i*a+C*s-Q*e,this.z=B+i*e+Q*a-t*s,this}project(A){return this.applyMatrix4(A.matrixWorldInverse).applyMatrix4(A.projectionMatrix)}unproject(A){return this.applyMatrix4(A.projectionMatrixInverse).applyMatrix4(A.matrixWorld)}transformDirection(A){const g=this.x,I=this.y,B=this.z,Q=A.elements;return this.x=Q[0]*g+Q[4]*I+Q[8]*B,this.y=Q[1]*g+Q[5]*I+Q[9]*B,this.z=Q[2]*g+Q[6]*I+Q[10]*B,this.normalize()}divide(A){return this.x/=A.x,this.y/=A.y,this.z/=A.z,this}divideScalar(A){return this.multiplyScalar(1/A)}min(A){return this.x=Math.min(this.x,A.x),this.y=Math.min(this.y,A.y),this.z=Math.min(this.z,A.z),this}max(A){return this.x=Math.max(this.x,A.x),this.y=Math.max(this.y,A.y),this.z=Math.max(this.z,A.z),this}clamp(A,g){return this.x=H(this.x,A.x,g.x),this.y=H(this.y,A.y,g.y),this.z=H(this.z,A.z,g.z),this}clampScalar(A,g){return this.x=H(this.x,A,g),this.y=H(this.y,A,g),this.z=H(this.z,A,g),this}clampLength(A,g){const I=this.length();return this.divideScalar(I||1).multiplyScalar(H(I,A,g))}floor(){return this.x=Math.floor(this.x),this.y=Math.floor(this.y),this.z=Math.floor(this.z),this}ceil(){return this.x=Math.ceil(this.x),this.y=Math.ceil(this.y),this.z=Math.ceil(this.z),this}round(){return this.x=Math.round(this.x),this.y=Math.round(this.y),this.z=Math.round(this.z),this}roundToZero(){return this.x=Math.trunc(this.x),this.y=Math.trunc(this.y),this.z=Math.trunc(this.z),this}negate(){return this.x=-this.x,this.y=-this.y,this.z=-this.z,this}dot(A){return this.x*A.x+this.y*A.y+this.z*A.z}lengthSq(){return this.x*this.x+this.y*this.y+this.z*this.z}length(){return Math.sqrt(this.x*this.x+this.y*this.y+this.z*this.z)}manhattanLength(){return Math.abs(this.x)+Math.abs(this.y)+Math.abs(this.z)}normalize(){return this.divideScalar(this.length()||1)}setLength(A){return this.normalize().multiplyScalar(A)}lerp(A,g){return this.x+=(A.x-this.x)*g,this.y+=(A.y-this.y)*g,this.z+=(A.z-this.z)*g,this}lerpVectors(A,g,I){return this.x=A.x+(g.x-A.x)*I,this.y=A.y+(g.y-A.y)*I,this.z=A.z+(g.z-A.z)*I,this}cross(A){return this.crossVectors(this,A)}crossVectors(A,g){const I=A.x,B=A.y,Q=A.z,t=g.x,C=g.y,i=g.z;return this.x=B*i-Q*C,this.y=Q*t-I*i,this.z=I*C-B*t,this}projectOnVector(A){const g=A.lengthSq();if(g===0)return this.set(0,0,0);const I=A.dot(this)/g;return this.copy(A).multiplyScalar(I)}projectOnPlane(A){return yB.copy(this).projectOnVector(A),this.sub(yB)}reflect(A){return this.sub(yB.copy(A).multiplyScalar(2*this.dot(A)))}angleTo(A){const g=Math.sqrt(this.lengthSq()*A.lengthSq());if(g===0)return Math.PI/2;const I=this.dot(A)/g;return Math.acos(H(I,-1,1))}distanceTo(A){return Math.sqrt(this.distanceToSquared(A))}distanceToSquared(A){const g=this.x-A.x,I=this.y-A.y,B=this.z-A.z;return g*g+I*I+B*B}manhattanDistanceTo(A){return Math.abs(this.x-A.x)+Math.abs(this.y-A.y)+Math.abs(this.z-A.z)}setFromSpherical(A){return this.setFromSphericalCoords(A.radius,A.phi,A.theta)}setFromSphericalCoords(A,g,I){const B=Math.sin(g)*A;return this.x=B*Math.sin(I),this.y=Math.cos(g)*A,this.z=B*Math.cos(I),this}setFromCylindrical(A){return this.setFromCylindricalCoords(A.radius,A.theta,A.y)}setFromCylindricalCoords(A,g,I){return this.x=A*Math.sin(g),this.y=I,this.z=A*Math.cos(g),this}setFromMatrixPosition(A){const g=A.elements;return this.x=g[12],this.y=g[13],this.z=g[14],this}setFromMatrixScale(A){const g=this.setFromMatrixColumn(A,0).length(),I=this.setFromMatrixColumn(A,1).length(),B=this.setFromMatrixColumn(A,2).length();return this.x=g,this.y=I,this.z=B,this}setFromMatrixColumn(A,g){return this.fromArray(A.elements,g*4)}setFromMatrix3Column(A,g){return this.fromArray(A.elements,g*3)}setFromEuler(A){return this.x=A._x,this.y=A._y,this.z=A._z,this}setFromColor(A){return this.x=A.r,this.y=A.g,this.z=A.b,this}equals(A){return A.x===this.x&&A.y===this.y&&A.z===this.z}fromArray(A,g=0){return this.x=A[g],this.y=A[g+1],this.z=A[g+2],this}toArray(A=[],g=0){return A[g]=this.x,A[g+1]=this.y,A[g+2]=this.z,A}fromBufferAttribute(A,g){return this.x=A.getX(g),this.y=A.getY(g),this.z=A.getZ(g),this}random(){return this.x=Math.random(),this.y=Math.random(),this.z=Math.random(),this}randomDirection(){const A=Math.random()*Math.PI*2,g=Math.random()*2-1,I=Math.sqrt(1-g*g);return this.x=I*Math.cos(A),this.y=g,this.z=I*Math.sin(A),this}*[Symbol.iterator](){yield this.x,yield this.y,yield this.z}}const yB=new D,UQ=new sA;class Rg{constructor(A=new D(1/0,1/0,1/0),g=new D(-1/0,-1/0,-1/0)){this.isBox3=!0,this.min=A,this.max=g}set(A,g){return this.min.copy(A),this.max.copy(g),this}setFromArray(A){this.makeEmpty();for(let g=0,I=A.length;g=this.min.x&&A.x<=this.max.x&&A.y>=this.min.y&&A.y<=this.max.y&&A.z>=this.min.z&&A.z<=this.max.z}containsBox(A){return this.min.x<=A.min.x&&A.max.x<=this.max.x&&this.min.y<=A.min.y&&A.max.y<=this.max.y&&this.min.z<=A.min.z&&A.max.z<=this.max.z}getParameter(A,g){return g.set((A.x-this.min.x)/(this.max.x-this.min.x),(A.y-this.min.y)/(this.max.y-this.min.y),(A.z-this.min.z)/(this.max.z-this.min.z))}intersectsBox(A){return A.max.x>=this.min.x&&A.min.x<=this.max.x&&A.max.y>=this.min.y&&A.min.y<=this.max.y&&A.max.z>=this.min.z&&A.min.z<=this.max.z}intersectsSphere(A){return this.clampPoint(A.center,HA),HA.distanceToSquared(A.center)<=A.radius*A.radius}intersectsPlane(A){let g,I;return A.normal.x>0?(g=A.normal.x*this.min.x,I=A.normal.x*this.max.x):(g=A.normal.x*this.max.x,I=A.normal.x*this.min.x),A.normal.y>0?(g+=A.normal.y*this.min.y,I+=A.normal.y*this.max.y):(g+=A.normal.y*this.max.y,I+=A.normal.y*this.min.y),A.normal.z>0?(g+=A.normal.z*this.min.z,I+=A.normal.z*this.max.z):(g+=A.normal.z*this.max.z,I+=A.normal.z*this.min.z),g<=-A.constant&&I>=-A.constant}intersectsTriangle(A){if(this.isEmpty())return!1;this.getCenter(CI),RI.subVectors(this.max,CI),Jg.subVectors(A.a,CI),mg.subVectors(A.b,CI),Sg.subVectors(A.c,CI),ig.subVectors(mg,Jg),sg.subVectors(Sg,mg),Dg.subVectors(Jg,Sg);let g=[0,-ig.z,ig.y,0,-sg.z,sg.y,0,-Dg.z,Dg.y,ig.z,0,-ig.x,sg.z,0,-sg.x,Dg.z,0,-Dg.x,-ig.y,ig.x,0,-sg.y,sg.x,0,-Dg.y,Dg.x,0];return!uB(g,Jg,mg,Sg,RI)||(g=[1,0,0,0,1,0,0,0,1],!uB(g,Jg,mg,Sg,RI))?!1:(JI.crossVectors(ig,sg),g=[JI.x,JI.y,JI.z],uB(g,Jg,mg,Sg,RI))}clampPoint(A,g){return g.copy(A).clamp(this.min,this.max)}distanceToPoint(A){return this.clampPoint(A,HA).distanceTo(A)}getBoundingSphere(A){return this.isEmpty()?A.makeEmpty():(this.getCenter(A.center),A.radius=this.getSize(HA).length()*.5),A}intersect(A){return this.min.max(A.min),this.max.min(A.max),this.isEmpty()&&this.makeEmpty(),this}union(A){return this.min.min(A.min),this.max.max(A.max),this}applyMatrix4(A){return this.isEmpty()?this:(jA[0].set(this.min.x,this.min.y,this.min.z).applyMatrix4(A),jA[1].set(this.min.x,this.min.y,this.max.z).applyMatrix4(A),jA[2].set(this.min.x,this.max.y,this.min.z).applyMatrix4(A),jA[3].set(this.min.x,this.max.y,this.max.z).applyMatrix4(A),jA[4].set(this.max.x,this.min.y,this.min.z).applyMatrix4(A),jA[5].set(this.max.x,this.min.y,this.max.z).applyMatrix4(A),jA[6].set(this.max.x,this.max.y,this.min.z).applyMatrix4(A),jA[7].set(this.max.x,this.max.y,this.max.z).applyMatrix4(A),this.setFromPoints(jA),this)}translate(A){return this.min.add(A),this.max.add(A),this}equals(A){return A.min.equals(this.min)&&A.max.equals(this.max)}}const jA=[new D,new D,new D,new D,new D,new D,new D,new D],HA=new D,fI=new Rg,Jg=new D,mg=new D,Sg=new D,ig=new D,sg=new D,Dg=new D,CI=new D,RI=new D,JI=new D,lg=new D;function uB(E,A,g,I,B){for(let Q=0,t=E.length-3;Q<=t;Q+=3){lg.fromArray(E,Q);const C=B.x*Math.abs(lg.x)+B.y*Math.abs(lg.y)+B.z*Math.abs(lg.z),i=A.dot(lg),s=g.dot(lg),a=I.dot(lg);if(Math.max(-Math.max(i,s,a),Math.min(i,s,a))>C)return!1}return!0}const DC=new Rg,EI=new D,dB=new D;class LQ{constructor(A=new D,g=-1){this.isSphere=!0,this.center=A,this.radius=g}set(A,g){return this.center.copy(A),this.radius=g,this}setFromPoints(A,g){const I=this.center;g!==void 0?I.copy(g):DC.setFromPoints(A).getCenter(I);let B=0;for(let Q=0,t=A.length;Qthis.radius*this.radius&&(g.sub(this.center).normalize(),g.multiplyScalar(this.radius).add(this.center)),g}getBoundingBox(A){return this.isEmpty()?(A.makeEmpty(),A):(A.set(this.center,this.center),A.expandByScalar(this.radius),A)}applyMatrix4(A){return this.center.applyMatrix4(A),this.radius=this.radius*A.getMaxScaleOnAxis(),this}translate(A){return this.center.add(A),this}expandByPoint(A){if(this.isEmpty())return this.center.copy(A),this.radius=0,this;EI.subVectors(A,this.center);const g=EI.lengthSq();if(g>this.radius*this.radius){const I=Math.sqrt(g),B=(I-this.radius)*.5;this.center.addScaledVector(EI,B/I),this.radius+=B}return this}union(A){return A.isEmpty()?this:this.isEmpty()?(this.copy(A),this):(this.center.equals(A.center)===!0?this.radius=Math.max(this.radius,A.radius):(dB.subVectors(A.center,this.center).setLength(A.radius),this.expandByPoint(EI.copy(A.center).add(dB)),this.expandByPoint(EI.copy(A.center).sub(dB))),this)}equals(A){return A.center.equals(this.center)&&A.radius===this.radius}clone(){return new this.constructor().copy(this)}}const OA=new D,MB=new D,mI=new D,eg=new D,GB=new D,SI=new D,NB=new D;class lC{constructor(A=new D,g=new D(0,0,-1)){this.origin=A,this.direction=g}set(A,g){return this.origin.copy(A),this.direction.copy(g),this}copy(A){return this.origin.copy(A.origin),this.direction.copy(A.direction),this}at(A,g){return g.copy(this.origin).addScaledVector(this.direction,A)}lookAt(A){return this.direction.copy(A).sub(this.origin).normalize(),this}recast(A){return this.origin.copy(this.at(A,OA)),this}closestPointToPoint(A,g){g.subVectors(A,this.origin);const I=g.dot(this.direction);return I<0?g.copy(this.origin):g.copy(this.origin).addScaledVector(this.direction,I)}distanceToPoint(A){return Math.sqrt(this.distanceSqToPoint(A))}distanceSqToPoint(A){const g=OA.subVectors(A,this.origin).dot(this.direction);return g<0?this.origin.distanceToSquared(A):(OA.copy(this.origin).addScaledVector(this.direction,g),OA.distanceToSquared(A))}distanceSqToSegment(A,g,I,B){MB.copy(A).add(g).multiplyScalar(.5),mI.copy(g).sub(A).normalize(),eg.copy(this.origin).sub(MB);const Q=A.distanceTo(g)*.5,t=-this.direction.dot(mI),C=eg.dot(this.direction),i=-eg.dot(mI),s=eg.lengthSq(),a=Math.abs(1-t*t);let e,n,o,r;if(a>0)if(e=t*i-C,n=t*C-i,r=Q*a,e>=0)if(n>=-r)if(n<=r){const h=1/a;e*=h,n*=h,o=e*(e+t*n+2*C)+n*(t*e+n+2*i)+s}else n=Q,e=Math.max(0,-(t*n+C)),o=-e*e+n*(n+2*i)+s;else n=-Q,e=Math.max(0,-(t*n+C)),o=-e*e+n*(n+2*i)+s;else n<=-r?(e=Math.max(0,-(-t*Q+C)),n=e>0?-Q:Math.min(Math.max(-Q,-i),Q),o=-e*e+n*(n+2*i)+s):n<=r?(e=0,n=Math.min(Math.max(-Q,-i),Q),o=n*(n+2*i)+s):(e=Math.max(0,-(t*Q+C)),n=e>0?Q:Math.min(Math.max(-Q,-i),Q),o=-e*e+n*(n+2*i)+s);else n=t>0?-Q:Q,e=Math.max(0,-(t*n+C)),o=-e*e+n*(n+2*i)+s;return I&&I.copy(this.origin).addScaledVector(this.direction,e),B&&B.copy(MB).addScaledVector(mI,n),o}intersectSphere(A,g){OA.subVectors(A.center,this.origin);const I=OA.dot(this.direction),B=OA.dot(OA)-I*I,Q=A.radius*A.radius;if(B>Q)return null;const t=Math.sqrt(Q-B),C=I-t,i=I+t;return i<0?null:C<0?this.at(i,g):this.at(C,g)}intersectsSphere(A){return this.distanceSqToPoint(A.center)<=A.radius*A.radius}distanceToPlane(A){const g=A.normal.dot(this.direction);if(g===0)return A.distanceToPoint(this.origin)===0?0:null;const I=-(this.origin.dot(A.normal)+A.constant)/g;return I>=0?I:null}intersectPlane(A,g){const I=this.distanceToPlane(A);return I===null?null:this.at(I,g)}intersectsPlane(A){const g=A.distanceToPoint(this.origin);return g===0||A.normal.dot(this.direction)*g<0}intersectBox(A,g){let I,B,Q,t,C,i;const s=1/this.direction.x,a=1/this.direction.y,e=1/this.direction.z,n=this.origin;return s>=0?(I=(A.min.x-n.x)*s,B=(A.max.x-n.x)*s):(I=(A.max.x-n.x)*s,B=(A.min.x-n.x)*s),a>=0?(Q=(A.min.y-n.y)*a,t=(A.max.y-n.y)*a):(Q=(A.max.y-n.y)*a,t=(A.min.y-n.y)*a),I>t||Q>B||((Q>I||isNaN(I))&&(I=Q),(t=0?(C=(A.min.z-n.z)*e,i=(A.max.z-n.z)*e):(C=(A.max.z-n.z)*e,i=(A.min.z-n.z)*e),I>i||C>B)||((C>I||I!==I)&&(I=C),(i=0?I:B,g)}intersectsBox(A){return this.intersectBox(A,OA)!==null}intersectTriangle(A,g,I,B,Q){GB.subVectors(g,A),SI.subVectors(I,A),NB.crossVectors(GB,SI);let t=this.direction.dot(NB),C;if(t>0){if(B)return null;C=1}else if(t<0)C=-1,t=-t;else return null;eg.subVectors(this.origin,A);const i=C*this.direction.dot(SI.crossVectors(eg,SI));if(i<0)return null;const s=C*this.direction.dot(GB.cross(eg));if(s<0||i+s>t)return null;const a=-C*eg.dot(NB);return a<0?null:this.at(a/t,Q)}applyMatrix4(A){return this.origin.applyMatrix4(A),this.direction.transformDirection(A),this}equals(A){return A.origin.equals(this.origin)&&A.direction.equals(this.direction)}clone(){return new this.constructor().copy(this)}}class cA{constructor(A,g,I,B,Q,t,C,i,s,a,e,n,o,r,h,c){cA.prototype.isMatrix4=!0,this.elements=[1,0,0,0,0,1,0,0,0,0,1,0,0,0,0,1],A!==void 0&&this.set(A,g,I,B,Q,t,C,i,s,a,e,n,o,r,h,c)}set(A,g,I,B,Q,t,C,i,s,a,e,n,o,r,h,c){const w=this.elements;return w[0]=A,w[4]=g,w[8]=I,w[12]=B,w[1]=Q,w[5]=t,w[9]=C,w[13]=i,w[2]=s,w[6]=a,w[10]=e,w[14]=n,w[3]=o,w[7]=r,w[11]=h,w[15]=c,this}identity(){return this.set(1,0,0,0,0,1,0,0,0,0,1,0,0,0,0,1),this}clone(){return new cA().fromArray(this.elements)}copy(A){const g=this.elements,I=A.elements;return g[0]=I[0],g[1]=I[1],g[2]=I[2],g[3]=I[3],g[4]=I[4],g[5]=I[5],g[6]=I[6],g[7]=I[7],g[8]=I[8],g[9]=I[9],g[10]=I[10],g[11]=I[11],g[12]=I[12],g[13]=I[13],g[14]=I[14],g[15]=I[15],this}copyPosition(A){const g=this.elements,I=A.elements;return g[12]=I[12],g[13]=I[13],g[14]=I[14],this}setFromMatrix3(A){const g=A.elements;return this.set(g[0],g[3],g[6],0,g[1],g[4],g[7],0,g[2],g[5],g[8],0,0,0,0,1),this}extractBasis(A,g,I){return A.setFromMatrixColumn(this,0),g.setFromMatrixColumn(this,1),I.setFromMatrixColumn(this,2),this}makeBasis(A,g,I){return this.set(A.x,g.x,I.x,0,A.y,g.y,I.y,0,A.z,g.z,I.z,0,0,0,0,1),this}extractRotation(A){const g=this.elements,I=A.elements,B=1/Yg.setFromMatrixColumn(A,0).length(),Q=1/Yg.setFromMatrixColumn(A,1).length(),t=1/Yg.setFromMatrixColumn(A,2).length();return g[0]=I[0]*B,g[1]=I[1]*B,g[2]=I[2]*B,g[3]=0,g[4]=I[4]*Q,g[5]=I[5]*Q,g[6]=I[6]*Q,g[7]=0,g[8]=I[8]*t,g[9]=I[9]*t,g[10]=I[10]*t,g[11]=0,g[12]=0,g[13]=0,g[14]=0,g[15]=1,this}makeRotationFromEuler(A){const g=this.elements,I=A.x,B=A.y,Q=A.z,t=Math.cos(I),C=Math.sin(I),i=Math.cos(B),s=Math.sin(B),a=Math.cos(Q),e=Math.sin(Q);if(A.order==="XYZ"){const n=t*a,o=t*e,r=C*a,h=C*e;g[0]=i*a,g[4]=-i*e,g[8]=s,g[1]=o+r*s,g[5]=n-h*s,g[9]=-C*i,g[2]=h-n*s,g[6]=r+o*s,g[10]=t*i}else if(A.order==="YXZ"){const n=i*a,o=i*e,r=s*a,h=s*e;g[0]=n+h*C,g[4]=r*C-o,g[8]=t*s,g[1]=t*e,g[5]=t*a,g[9]=-C,g[2]=o*C-r,g[6]=h+n*C,g[10]=t*i}else if(A.order==="ZXY"){const n=i*a,o=i*e,r=s*a,h=s*e;g[0]=n-h*C,g[4]=-t*e,g[8]=r+o*C,g[1]=o+r*C,g[5]=t*a,g[9]=h-n*C,g[2]=-t*s,g[6]=C,g[10]=t*i}else if(A.order==="ZYX"){const n=t*a,o=t*e,r=C*a,h=C*e;g[0]=i*a,g[4]=r*s-o,g[8]=n*s+h,g[1]=i*e,g[5]=h*s+n,g[9]=o*s-r,g[2]=-s,g[6]=C*i,g[10]=t*i}else if(A.order==="YZX"){const n=t*i,o=t*s,r=C*i,h=C*s;g[0]=i*a,g[4]=h-n*e,g[8]=r*e+o,g[1]=e,g[5]=t*a,g[9]=-C*a,g[2]=-s*a,g[6]=o*e+r,g[10]=n-h*e}else if(A.order==="XZY"){const n=t*i,o=t*s,r=C*i,h=C*s;g[0]=i*a,g[4]=-e,g[8]=s*a,g[1]=n*e+h,g[5]=t*a,g[9]=o*e-r,g[2]=r*e-o,g[6]=C*a,g[10]=h*e+n}return g[3]=0,g[7]=0,g[11]=0,g[12]=0,g[13]=0,g[14]=0,g[15]=1,this}makeRotationFromQuaternion(A){return this.compose(yC,A,uC)}lookAt(A,g,I){const B=this.elements;return kA.subVectors(A,g),kA.lengthSq()===0&&(kA.z=1),kA.normalize(),ag.crossVectors(I,kA),ag.lengthSq()===0&&(Math.abs(I.z)===1?kA.x+=1e-4:kA.z+=1e-4,kA.normalize(),ag.crossVectors(I,kA)),ag.normalize(),YI.crossVectors(kA,ag),B[0]=ag.x,B[4]=YI.x,B[8]=kA.x,B[1]=ag.y,B[5]=YI.y,B[9]=kA.y,B[2]=ag.z,B[6]=YI.z,B[10]=kA.z,this}multiply(A){return this.multiplyMatrices(this,A)}premultiply(A){return this.multiplyMatrices(A,this)}multiplyMatrices(A,g){const I=A.elements,B=g.elements,Q=this.elements,t=I[0],C=I[4],i=I[8],s=I[12],a=I[1],e=I[5],n=I[9],o=I[13],r=I[2],h=I[6],c=I[10],w=I[14],y=I[3],l=I[7],u=I[11],M=I[15],F=B[0],p=B[4],d=B[8],G=B[12],f=B[1],N=B[5],k=B[9],R=B[13],J=B[2],m=B[6],S=B[10],Y=B[14],q=B[3],Z=B[7],$=B[11],O=B[15];return Q[0]=t*F+C*f+i*J+s*q,Q[4]=t*p+C*N+i*m+s*Z,Q[8]=t*d+C*k+i*S+s*$,Q[12]=t*G+C*R+i*Y+s*O,Q[1]=a*F+e*f+n*J+o*q,Q[5]=a*p+e*N+n*m+o*Z,Q[9]=a*d+e*k+n*S+o*$,Q[13]=a*G+e*R+n*Y+o*O,Q[2]=r*F+h*f+c*J+w*q,Q[6]=r*p+h*N+c*m+w*Z,Q[10]=r*d+h*k+c*S+w*$,Q[14]=r*G+h*R+c*Y+w*O,Q[3]=y*F+l*f+u*J+M*q,Q[7]=y*p+l*N+u*m+M*Z,Q[11]=y*d+l*k+u*S+M*$,Q[15]=y*G+l*R+u*Y+M*O,this}multiplyScalar(A){const g=this.elements;return g[0]*=A,g[4]*=A,g[8]*=A,g[12]*=A,g[1]*=A,g[5]*=A,g[9]*=A,g[13]*=A,g[2]*=A,g[6]*=A,g[10]*=A,g[14]*=A,g[3]*=A,g[7]*=A,g[11]*=A,g[15]*=A,this}determinant(){const A=this.elements,g=A[0],I=A[4],B=A[8],Q=A[12],t=A[1],C=A[5],i=A[9],s=A[13],a=A[2],e=A[6],n=A[10],o=A[14],r=A[3],h=A[7],c=A[11],w=A[15];return r*(+Q*i*e-B*s*e-Q*C*n+I*s*n+B*C*o-I*i*o)+h*(+g*i*o-g*s*n+Q*t*n-B*t*o+B*s*a-Q*i*a)+c*(+g*s*e-g*C*o-Q*t*e+I*t*o+Q*C*a-I*s*a)+w*(-B*C*a-g*i*e+g*C*n+B*t*e-I*t*n+I*i*a)}transpose(){const A=this.elements;let g;return g=A[1],A[1]=A[4],A[4]=g,g=A[2],A[2]=A[8],A[8]=g,g=A[6],A[6]=A[9],A[9]=g,g=A[3],A[3]=A[12],A[12]=g,g=A[7],A[7]=A[13],A[13]=g,g=A[11],A[11]=A[14],A[14]=g,this}setPosition(A,g,I){const B=this.elements;return A.isVector3?(B[12]=A.x,B[13]=A.y,B[14]=A.z):(B[12]=A,B[13]=g,B[14]=I),this}invert(){const A=this.elements,g=A[0],I=A[1],B=A[2],Q=A[3],t=A[4],C=A[5],i=A[6],s=A[7],a=A[8],e=A[9],n=A[10],o=A[11],r=A[12],h=A[13],c=A[14],w=A[15],y=e*c*s-h*n*s+h*i*o-C*c*o-e*i*w+C*n*w,l=r*n*s-a*c*s-r*i*o+t*c*o+a*i*w-t*n*w,u=a*h*s-r*e*s+r*C*o-t*h*o-a*C*w+t*e*w,M=r*e*i-a*h*i-r*C*n+t*h*n+a*C*c-t*e*c,F=g*y+I*l+B*u+Q*M;if(F===0)return this.set(0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0);const p=1/F;return A[0]=y*p,A[1]=(h*n*Q-e*c*Q-h*B*o+I*c*o+e*B*w-I*n*w)*p,A[2]=(C*c*Q-h*i*Q+h*B*s-I*c*s-C*B*w+I*i*w)*p,A[3]=(e*i*Q-C*n*Q-e*B*s+I*n*s+C*B*o-I*i*o)*p,A[4]=l*p,A[5]=(a*c*Q-r*n*Q+r*B*o-g*c*o-a*B*w+g*n*w)*p,A[6]=(r*i*Q-t*c*Q-r*B*s+g*c*s+t*B*w-g*i*w)*p,A[7]=(t*n*Q-a*i*Q+a*B*s-g*n*s-t*B*o+g*i*o)*p,A[8]=u*p,A[9]=(r*e*Q-a*h*Q-r*I*o+g*h*o+a*I*w-g*e*w)*p,A[10]=(t*h*Q-r*C*Q+r*I*s-g*h*s-t*I*w+g*C*w)*p,A[11]=(a*C*Q-t*e*Q-a*I*s+g*e*s+t*I*o-g*C*o)*p,A[12]=M*p,A[13]=(a*h*B-r*e*B+r*I*n-g*h*n-a*I*c+g*e*c)*p,A[14]=(r*C*B-t*h*B-r*I*i+g*h*i+t*I*c-g*C*c)*p,A[15]=(t*e*B-a*C*B+a*I*i-g*e*i-t*I*n+g*C*n)*p,this}scale(A){const g=this.elements,I=A.x,B=A.y,Q=A.z;return g[0]*=I,g[4]*=B,g[8]*=Q,g[1]*=I,g[5]*=B,g[9]*=Q,g[2]*=I,g[6]*=B,g[10]*=Q,g[3]*=I,g[7]*=B,g[11]*=Q,this}getMaxScaleOnAxis(){const A=this.elements,g=A[0]*A[0]+A[1]*A[1]+A[2]*A[2],I=A[4]*A[4]+A[5]*A[5]+A[6]*A[6],B=A[8]*A[8]+A[9]*A[9]+A[10]*A[10];return Math.sqrt(Math.max(g,I,B))}makeTranslation(A,g,I){return A.isVector3?this.set(1,0,0,A.x,0,1,0,A.y,0,0,1,A.z,0,0,0,1):this.set(1,0,0,A,0,1,0,g,0,0,1,I,0,0,0,1),this}makeRotationX(A){const g=Math.cos(A),I=Math.sin(A);return this.set(1,0,0,0,0,g,-I,0,0,I,g,0,0,0,0,1),this}makeRotationY(A){const g=Math.cos(A),I=Math.sin(A);return this.set(g,0,I,0,0,1,0,0,-I,0,g,0,0,0,0,1),this}makeRotationZ(A){const g=Math.cos(A),I=Math.sin(A);return this.set(g,-I,0,0,I,g,0,0,0,0,1,0,0,0,0,1),this}makeRotationAxis(A,g){const I=Math.cos(g),B=Math.sin(g),Q=1-I,t=A.x,C=A.y,i=A.z,s=Q*t,a=Q*C;return this.set(s*t+I,s*C-B*i,s*i+B*C,0,s*C+B*i,a*C+I,a*i-B*t,0,s*i-B*C,a*i+B*t,Q*i*i+I,0,0,0,0,1),this}makeScale(A,g,I){return this.set(A,0,0,0,0,g,0,0,0,0,I,0,0,0,0,1),this}makeShear(A,g,I,B,Q,t){return this.set(1,I,Q,0,A,1,t,0,g,B,1,0,0,0,0,1),this}compose(A,g,I){const B=this.elements,Q=g._x,t=g._y,C=g._z,i=g._w,s=Q+Q,a=t+t,e=C+C,n=Q*s,o=Q*a,r=Q*e,h=t*a,c=t*e,w=C*e,y=i*s,l=i*a,u=i*e,M=I.x,F=I.y,p=I.z;return B[0]=(1-(h+w))*M,B[1]=(o+u)*M,B[2]=(r-l)*M,B[3]=0,B[4]=(o-u)*F,B[5]=(1-(n+w))*F,B[6]=(c+y)*F,B[7]=0,B[8]=(r+l)*p,B[9]=(c-y)*p,B[10]=(1-(n+h))*p,B[11]=0,B[12]=A.x,B[13]=A.y,B[14]=A.z,B[15]=1,this}decompose(A,g,I){const B=this.elements;let Q=Yg.set(B[0],B[1],B[2]).length();const t=Yg.set(B[4],B[5],B[6]).length(),C=Yg.set(B[8],B[9],B[10]).length();this.determinant()<0&&(Q=-Q),A.x=B[12],A.y=B[13],A.z=B[14],ZA.copy(this);const s=1/Q,a=1/t,e=1/C;return ZA.elements[0]*=s,ZA.elements[1]*=s,ZA.elements[2]*=s,ZA.elements[4]*=a,ZA.elements[5]*=a,ZA.elements[6]*=a,ZA.elements[8]*=e,ZA.elements[9]*=e,ZA.elements[10]*=e,g.setFromRotationMatrix(ZA),I.x=Q,I.y=t,I.z=C,this}makePerspective(A,g,I,B,Q,t,C=II){const i=this.elements,s=2*Q/(g-A),a=2*Q/(I-B),e=(g+A)/(g-A),n=(I+B)/(I-B);let o,r;if(C===II)o=-(t+Q)/(t-Q),r=-2*t*Q/(t-Q);else if(C===RQ)o=-t/(t-Q),r=-t*Q/(t-Q);else throw new Error("THREE.Matrix4.makePerspective(): Invalid coordinate system: "+C);return i[0]=s,i[4]=0,i[8]=e,i[12]=0,i[1]=0,i[5]=a,i[9]=n,i[13]=0,i[2]=0,i[6]=0,i[10]=o,i[14]=r,i[3]=0,i[7]=0,i[11]=-1,i[15]=0,this}makeOrthographic(A,g,I,B,Q,t,C=II){const i=this.elements,s=1/(g-A),a=1/(I-B),e=1/(t-Q),n=(g+A)*s,o=(I+B)*a;let r,h;if(C===II)r=(t+Q)*e,h=-2*e;else if(C===RQ)r=Q*e,h=-1*e;else throw new Error("THREE.Matrix4.makeOrthographic(): Invalid coordinate system: "+C);return i[0]=2*s,i[4]=0,i[8]=0,i[12]=-n,i[1]=0,i[5]=2*a,i[9]=0,i[13]=-o,i[2]=0,i[6]=0,i[10]=h,i[14]=-r,i[3]=0,i[7]=0,i[11]=0,i[15]=1,this}equals(A){const g=this.elements,I=A.elements;for(let B=0;B<16;B++)if(g[B]!==I[B])return!1;return!0}fromArray(A,g=0){for(let I=0;I<16;I++)this.elements[I]=A[I+g];return this}toArray(A=[],g=0){const I=this.elements;return A[g]=I[0],A[g+1]=I[1],A[g+2]=I[2],A[g+3]=I[3],A[g+4]=I[4],A[g+5]=I[5],A[g+6]=I[6],A[g+7]=I[7],A[g+8]=I[8],A[g+9]=I[9],A[g+10]=I[10],A[g+11]=I[11],A[g+12]=I[12],A[g+13]=I[13],A[g+14]=I[14],A[g+15]=I[15],A}}const Yg=new D,ZA=new cA,yC=new D(0,0,0),uC=new D(1,1,1),ag=new D,YI=new D,kA=new D,bQ=new cA,HQ=new sA;class yg{constructor(A=0,g=0,I=0,B=yg.DEFAULT_ORDER){this.isEuler=!0,this._x=A,this._y=g,this._z=I,this._order=B}get x(){return this._x}set x(A){this._x=A,this._onChangeCallback()}get y(){return this._y}set y(A){this._y=A,this._onChangeCallback()}get z(){return this._z}set z(A){this._z=A,this._onChangeCallback()}get order(){return this._order}set order(A){this._order=A,this._onChangeCallback()}set(A,g,I,B=this._order){return this._x=A,this._y=g,this._z=I,this._order=B,this._onChangeCallback(),this}clone(){return new this.constructor(this._x,this._y,this._z,this._order)}copy(A){return this._x=A._x,this._y=A._y,this._z=A._z,this._order=A._order,this._onChangeCallback(),this}setFromRotationMatrix(A,g=this._order,I=!0){const B=A.elements,Q=B[0],t=B[4],C=B[8],i=B[1],s=B[5],a=B[9],e=B[2],n=B[6],o=B[10];switch(g){case"XYZ":this._y=Math.asin(H(C,-1,1)),Math.abs(C)<.9999999?(this._x=Math.atan2(-a,o),this._z=Math.atan2(-t,Q)):(this._x=Math.atan2(n,s),this._z=0);break;case"YXZ":this._x=Math.asin(-H(a,-1,1)),Math.abs(a)<.9999999?(this._y=Math.atan2(C,o),this._z=Math.atan2(i,s)):(this._y=Math.atan2(-e,Q),this._z=0);break;case"ZXY":this._x=Math.asin(H(n,-1,1)),Math.abs(n)<.9999999?(this._y=Math.atan2(-e,o),this._z=Math.atan2(-t,s)):(this._y=0,this._z=Math.atan2(i,Q));break;case"ZYX":this._y=Math.asin(-H(e,-1,1)),Math.abs(e)<.9999999?(this._x=Math.atan2(n,o),this._z=Math.atan2(i,Q)):(this._x=0,this._z=Math.atan2(-t,s));break;case"YZX":this._z=Math.asin(H(i,-1,1)),Math.abs(i)<.9999999?(this._x=Math.atan2(-a,s),this._y=Math.atan2(-e,Q)):(this._x=0,this._y=Math.atan2(C,o));break;case"XZY":this._z=Math.asin(-H(t,-1,1)),Math.abs(t)<.9999999?(this._x=Math.atan2(n,s),this._y=Math.atan2(C,Q)):(this._x=Math.atan2(-a,o),this._y=0);break;default:console.warn("THREE.Euler: .setFromRotationMatrix() encountered an unknown order: "+g)}return this._order=g,I===!0&&this._onChangeCallback(),this}setFromQuaternion(A,g,I){return bQ.makeRotationFromQuaternion(A),this.setFromRotationMatrix(bQ,g,I)}setFromVector3(A,g=this._order){return this.set(A.x,A.y,A.z,g)}reorder(A){return HQ.setFromEuler(this),this.setFromQuaternion(HQ,A)}equals(A){return A._x===this._x&&A._y===this._y&&A._z===this._z&&A._order===this._order}fromArray(A){return this._x=A[0],this._y=A[1],this._z=A[2],A[3]!==void 0&&(this._order=A[3]),this._onChangeCallback(),this}toArray(A=[],g=0){return A[g]=this._x,A[g+1]=this._y,A[g+2]=this._z,A[g+3]=this._order,A}_onChange(A){return this._onChangeCallback=A,this}_onChangeCallback(){}*[Symbol.iterator](){yield this._x,yield this._y,yield this._z,yield this._order}}yg.DEFAULT_ORDER="XYZ";class dC{constructor(){this.mask=1}set(A){this.mask=(1<>>0}enable(A){this.mask|=1<1){for(let g=0;g1){for(let I=0;I0&&(B.userData=this.userData),B.layers=this.layers.mask,B.matrix=this.matrix.toArray(),B.up=this.up.toArray(),this.matrixAutoUpdate===!1&&(B.matrixAutoUpdate=!1),this.isInstancedMesh&&(B.type="InstancedMesh",B.count=this.count,B.instanceMatrix=this.instanceMatrix.toJSON(),this.instanceColor!==null&&(B.instanceColor=this.instanceColor.toJSON())),this.isBatchedMesh&&(B.type="BatchedMesh",B.perObjectFrustumCulled=this.perObjectFrustumCulled,B.sortObjects=this.sortObjects,B.drawRanges=this._drawRanges,B.reservedRanges=this._reservedRanges,B.visibility=this._visibility,B.active=this._active,B.bounds=this._bounds.map(C=>({boxInitialized:C.boxInitialized,boxMin:C.box.min.toArray(),boxMax:C.box.max.toArray(),sphereInitialized:C.sphereInitialized,sphereRadius:C.sphere.radius,sphereCenter:C.sphere.center.toArray()})),B.maxInstanceCount=this._maxInstanceCount,B.maxVertexCount=this._maxVertexCount,B.maxIndexCount=this._maxIndexCount,B.geometryInitialized=this._geometryInitialized,B.geometryCount=this._geometryCount,B.matricesTexture=this._matricesTexture.toJSON(A),this._colorsTexture!==null&&(B.colorsTexture=this._colorsTexture.toJSON(A)),this.boundingSphere!==null&&(B.boundingSphere={center:B.boundingSphere.center.toArray(),radius:B.boundingSphere.radius}),this.boundingBox!==null&&(B.boundingBox={min:B.boundingBox.min.toArray(),max:B.boundingBox.max.toArray()}));function Q(C,i){return C[i.uuid]===void 0&&(C[i.uuid]=i.toJSON(A)),i.uuid}if(this.isScene)this.background&&(this.background.isColor?B.background=this.background.toJSON():this.background.isTexture&&(B.background=this.background.toJSON(A).uuid)),this.environment&&this.environment.isTexture&&this.environment.isRenderTargetTexture!==!0&&(B.environment=this.environment.toJSON(A).uuid);else if(this.isMesh||this.isLine||this.isPoints){B.geometry=Q(A.geometries,this.geometry);const C=this.geometry.parameters;if(C!==void 0&&C.shapes!==void 0){const i=C.shapes;if(Array.isArray(i))for(let s=0,a=i.length;s0){B.children=[];for(let C=0;C0){B.animations=[];for(let C=0;C0&&(I.geometries=C),i.length>0&&(I.materials=i),s.length>0&&(I.textures=s),a.length>0&&(I.images=a),e.length>0&&(I.shapes=e),n.length>0&&(I.skeletons=n),o.length>0&&(I.animations=o),r.length>0&&(I.nodes=r)}return I.object=B,I;function t(C){const i=[];for(const s in C){const a=C[s];delete a.metadata,i.push(a)}return i}}clone(A){return new this.constructor().copy(this,A)}copy(A,g=!0){if(this.name=A.name,this.up.copy(A.up),this.position.copy(A.position),this.rotation.order=A.rotation.order,this.quaternion.copy(A.quaternion),this.scale.copy(A.scale),this.matrix.copy(A.matrix),this.matrixWorld.copy(A.matrixWorld),this.matrixAutoUpdate=A.matrixAutoUpdate,this.matrixWorldAutoUpdate=A.matrixWorldAutoUpdate,this.matrixWorldNeedsUpdate=A.matrixWorldNeedsUpdate,this.layers.mask=A.layers.mask,this.visible=A.visible,this.castShadow=A.castShadow,this.receiveShadow=A.receiveShadow,this.frustumCulled=A.frustumCulled,this.renderOrder=A.renderOrder,this.animations=A.animations.slice(),this.userData=JSON.parse(JSON.stringify(A.userData)),g===!0)for(let I=0;I0?B.multiplyScalar(1/Math.sqrt(Q)):B.set(0,0,0)}static getBarycoord(A,g,I,B,Q){KA.subVectors(B,g),_A.subVectors(I,g),kB.subVectors(A,g);const t=KA.dot(KA),C=KA.dot(_A),i=KA.dot(kB),s=_A.dot(_A),a=_A.dot(kB),e=t*s-C*C;if(e===0)return Q.set(0,0,0),null;const n=1/e,o=(s*i-C*a)*n,r=(t*a-C*i)*n;return Q.set(1-o-r,r,o)}static containsPoint(A,g,I,B){return this.getBarycoord(A,g,I,B,$A)===null?!1:$A.x>=0&&$A.y>=0&&$A.x+$A.y<=1}static getInterpolation(A,g,I,B,Q,t,C,i){return this.getBarycoord(A,g,I,B,$A)===null?(i.x=0,i.y=0,"z"in i&&(i.z=0),"w"in i&&(i.w=0),null):(i.setScalar(0),i.addScaledVector(Q,$A.x),i.addScaledVector(t,$A.y),i.addScaledVector(C,$A.z),i)}static getInterpolatedAttribute(A,g,I,B,Q,t){return JB.setScalar(0),mB.setScalar(0),SB.setScalar(0),JB.fromBufferAttribute(A,g),mB.fromBufferAttribute(A,I),SB.fromBufferAttribute(A,B),t.setScalar(0),t.addScaledVector(JB,Q.x),t.addScaledVector(mB,Q.y),t.addScaledVector(SB,Q.z),t}static isFrontFacing(A,g,I,B){return KA.subVectors(I,g),_A.subVectors(A,g),KA.cross(_A).dot(B)<0}set(A,g,I){return this.a.copy(A),this.b.copy(g),this.c.copy(I),this}setFromPointsAndIndices(A,g,I,B){return this.a.copy(A[g]),this.b.copy(A[I]),this.c.copy(A[B]),this}setFromAttributeAndIndices(A,g,I,B){return this.a.fromBufferAttribute(A,g),this.b.fromBufferAttribute(A,I),this.c.fromBufferAttribute(A,B),this}clone(){return new this.constructor().copy(this)}copy(A){return this.a.copy(A.a),this.b.copy(A.b),this.c.copy(A.c),this}getArea(){return KA.subVectors(this.c,this.b),_A.subVectors(this.a,this.b),KA.cross(_A).length()*.5}getMidpoint(A){return A.addVectors(this.a,this.b).add(this.c).multiplyScalar(1/3)}getNormal(A){return qA.getNormal(this.a,this.b,this.c,A)}getPlane(A){return A.setFromCoplanarPoints(this.a,this.b,this.c)}getBarycoord(A,g){return qA.getBarycoord(A,this.a,this.b,this.c,g)}getInterpolation(A,g,I,B,Q){return qA.getInterpolation(A,this.a,this.b,this.c,g,I,B,Q)}containsPoint(A){return qA.containsPoint(A,this.a,this.b,this.c)}isFrontFacing(A){return qA.isFrontFacing(this.a,this.b,this.c,A)}intersectsBox(A){return A.intersectsTriangle(this)}closestPointToPoint(A,g){const I=this.a,B=this.b,Q=this.c;let t,C;Lg.subVectors(B,I),bg.subVectors(Q,I),pB.subVectors(A,I);const i=Lg.dot(pB),s=bg.dot(pB);if(i<=0&&s<=0)return g.copy(I);fB.subVectors(A,B);const a=Lg.dot(fB),e=bg.dot(fB);if(a>=0&&e<=a)return g.copy(B);const n=i*e-a*s;if(n<=0&&i>=0&&a<=0)return t=i/(i-a),g.copy(I).addScaledVector(Lg,t);RB.subVectors(A,Q);const o=Lg.dot(RB),r=bg.dot(RB);if(r>=0&&o<=r)return g.copy(Q);const h=o*s-i*r;if(h<=0&&s>=0&&r<=0)return C=s/(s-r),g.copy(I).addScaledVector(bg,C);const c=a*r-o*e;if(c<=0&&e-a>=0&&o-r>=0)return TQ.subVectors(Q,B),C=(e-a)/(e-a+(o-r)),g.copy(B).addScaledVector(TQ,C);const w=1/(c+h+n);return t=h*w,C=n*w,g.copy(I).addScaledVector(Lg,t).addScaledVector(bg,C)}equals(A){return A.a.equals(this.a)&&A.b.equals(this.b)&&A.c.equals(this.c)}}const vQ={aliceblue:15792383,antiquewhite:16444375,aqua:65535,aquamarine:8388564,azure:15794175,beige:16119260,bisque:16770244,black:0,blanchedalmond:16772045,blue:255,blueviolet:9055202,brown:10824234,burlywood:14596231,cadetblue:6266528,chartreuse:8388352,chocolate:13789470,coral:16744272,cornflowerblue:6591981,cornsilk:16775388,crimson:14423100,cyan:65535,darkblue:139,darkcyan:35723,darkgoldenrod:12092939,darkgray:11119017,darkgreen:25600,darkgrey:11119017,darkkhaki:12433259,darkmagenta:9109643,darkolivegreen:5597999,darkorange:16747520,darkorchid:10040012,darkred:9109504,darksalmon:15308410,darkseagreen:9419919,darkslateblue:4734347,darkslategray:3100495,darkslategrey:3100495,darkturquoise:52945,darkviolet:9699539,deeppink:16716947,deepskyblue:49151,dimgray:6908265,dimgrey:6908265,dodgerblue:2003199,firebrick:11674146,floralwhite:16775920,forestgreen:2263842,fuchsia:16711935,gainsboro:14474460,ghostwhite:16316671,gold:16766720,goldenrod:14329120,gray:8421504,green:32768,greenyellow:11403055,grey:8421504,honeydew:15794160,hotpink:16738740,indianred:13458524,indigo:4915330,ivory:16777200,khaki:15787660,lavender:15132410,lavenderblush:16773365,lawngreen:8190976,lemonchiffon:16775885,lightblue:11393254,lightcoral:15761536,lightcyan:14745599,lightgoldenrodyellow:16448210,lightgray:13882323,lightgreen:9498256,lightgrey:13882323,lightpink:16758465,lightsalmon:16752762,lightseagreen:2142890,lightskyblue:8900346,lightslategray:7833753,lightslategrey:7833753,lightsteelblue:11584734,lightyellow:16777184,lime:65280,limegreen:3329330,linen:16445670,magenta:16711935,maroon:8388608,mediumaquamarine:6737322,mediumblue:205,mediumorchid:12211667,mediumpurple:9662683,mediumseagreen:3978097,mediumslateblue:8087790,mediumspringgreen:64154,mediumturquoise:4772300,mediumvioletred:13047173,midnightblue:1644912,mintcream:16121850,mistyrose:16770273,moccasin:16770229,navajowhite:16768685,navy:128,oldlace:16643558,olive:8421376,olivedrab:7048739,orange:16753920,orangered:16729344,orchid:14315734,palegoldenrod:15657130,palegreen:10025880,paleturquoise:11529966,palevioletred:14381203,papayawhip:16773077,peachpuff:16767673,peru:13468991,pink:16761035,plum:14524637,powderblue:11591910,purple:8388736,rebeccapurple:6697881,red:16711680,rosybrown:12357519,royalblue:4286945,saddlebrown:9127187,salmon:16416882,sandybrown:16032864,seagreen:3050327,seashell:16774638,sienna:10506797,silver:12632256,skyblue:8900331,slateblue:6970061,slategray:7372944,slategrey:7372944,snow:16775930,springgreen:65407,steelblue:4620980,tan:13808780,teal:32896,thistle:14204888,tomato:16737095,turquoise:4251856,violet:15631086,wheat:16113331,white:16777215,whitesmoke:16119285,yellow:16776960,yellowgreen:10145074},ng={h:0,s:0,l:0},UI={h:0,s:0,l:0};function YB(E,A,g){return g<0&&(g+=1),g>1&&(g-=1),g<1/6?E+(A-E)*6*g:g<1/2?A:g<2/3?E+(A-E)*6*(2/3-g):E}class ug{constructor(A,g,I){return this.isColor=!0,this.r=1,this.g=1,this.b=1,this.set(A,g,I)}set(A,g,I){if(g===void 0&&I===void 0){const B=A;B&&B.isColor?this.copy(B):typeof B=="number"?this.setHex(B):typeof B=="string"&&this.setStyle(B)}else this.setRGB(A,g,I);return this}setScalar(A){return this.r=A,this.g=A,this.b=A,this}setHex(A,g=LA){return A=Math.floor(A),this.r=(A>>16&255)/255,this.g=(A>>8&255)/255,this.b=(A&255)/255,bA.toWorkingColorSpace(this,g),this}setRGB(A,g,I,B=bA.workingColorSpace){return this.r=A,this.g=g,this.b=I,bA.toWorkingColorSpace(this,B),this}setHSL(A,g,I,B=bA.workingColorSpace){if(A=eC(A,1),g=H(g,0,1),I=H(I,0,1),g===0)this.r=this.g=this.b=I;else{const Q=I<=.5?I*(1+g):I+g-I*g,t=2*I-Q;this.r=YB(t,Q,A+1/3),this.g=YB(t,Q,A),this.b=YB(t,Q,A-1/3)}return bA.toWorkingColorSpace(this,B),this}setStyle(A,g=LA){function I(Q){Q!==void 0&&parseFloat(Q)<1&&console.warn("THREE.Color: Alpha component of "+A+" will be ignored.")}let B;if(B=/^(\\w+)\\(([^\\)]*)\\)/.exec(A)){let Q;const t=B[1],C=B[2];switch(t){case"rgb":case"rgba":if(Q=/^\\s*(\\d+)\\s*,\\s*(\\d+)\\s*,\\s*(\\d+)\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(C))return I(Q[4]),this.setRGB(Math.min(255,parseInt(Q[1],10))/255,Math.min(255,parseInt(Q[2],10))/255,Math.min(255,parseInt(Q[3],10))/255,g);if(Q=/^\\s*(\\d+)\\%\\s*,\\s*(\\d+)\\%\\s*,\\s*(\\d+)\\%\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(C))return I(Q[4]),this.setRGB(Math.min(100,parseInt(Q[1],10))/100,Math.min(100,parseInt(Q[2],10))/100,Math.min(100,parseInt(Q[3],10))/100,g);break;case"hsl":case"hsla":if(Q=/^\\s*(\\d*\\.?\\d+)\\s*,\\s*(\\d*\\.?\\d+)\\%\\s*,\\s*(\\d*\\.?\\d+)\\%\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(C))return I(Q[4]),this.setHSL(parseFloat(Q[1])/360,parseFloat(Q[2])/100,parseFloat(Q[3])/100,g);break;default:console.warn("THREE.Color: Unknown color model "+A)}}else if(B=/^\\#([A-Fa-f\\d]+)$/.exec(A)){const Q=B[1],t=Q.length;if(t===3)return this.setRGB(parseInt(Q.charAt(0),16)/15,parseInt(Q.charAt(1),16)/15,parseInt(Q.charAt(2),16)/15,g);if(t===6)return this.setHex(parseInt(Q,16),g);console.warn("THREE.Color: Invalid hex color "+A)}else if(A&&A.length>0)return this.setColorName(A,g);return this}setColorName(A,g=LA){const I=vQ[A.toLowerCase()];return I!==void 0?this.setHex(I,g):console.warn("THREE.Color: Unknown color "+A),this}clone(){return new this.constructor(this.r,this.g,this.b)}copy(A){return this.r=A.r,this.g=A.g,this.b=A.b,this}copySRGBToLinear(A){return this.r=XA(A.r),this.g=XA(A.g),this.b=XA(A.b),this}copyLinearToSRGB(A){return this.r=pg(A.r),this.g=pg(A.g),this.b=pg(A.b),this}convertSRGBToLinear(){return this.copySRGBToLinear(this),this}convertLinearToSRGB(){return this.copyLinearToSRGB(this),this}getHex(A=LA){return bA.fromWorkingColorSpace(wA.copy(this),A),Math.round(H(wA.r*255,0,255))*65536+Math.round(H(wA.g*255,0,255))*256+Math.round(H(wA.b*255,0,255))}getHexString(A=LA){return("000000"+this.getHex(A).toString(16)).slice(-6)}getHSL(A,g=bA.workingColorSpace){bA.fromWorkingColorSpace(wA.copy(this),g);const I=wA.r,B=wA.g,Q=wA.b,t=Math.max(I,B,Q),C=Math.min(I,B,Q);let i,s;const a=(C+t)/2;if(C===t)i=0,s=0;else{const e=t-C;switch(s=a<=.5?e/(t+C):e/(2-t-C),t){case I:i=(B-Q)/e+(B0!=A>0&&this.version++,this._alphaTest=A}onBeforeRender(){}onBeforeCompile(){}customProgramCacheKey(){return this.onBeforeCompile.toString()}setValues(A){if(A!==void 0)for(const g in A){const I=A[g];if(I===void 0){console.warn(`THREE.Material: parameter \'${g}\' has value of undefined.`);continue}const B=this[g];if(B===void 0){console.warn(`THREE.Material: \'${g}\' is not a property of THREE.${this.type}.`);continue}B&&B.isColor?B.set(I):B&&B.isVector3&&I&&I.isVector3?B.copy(I):this[g]=I}}toJSON(A){const g=A===void 0||typeof A=="string";g&&(A={textures:{},images:{}});const I={metadata:{version:4.6,type:"Material",generator:"Material.toJSON"}};I.uuid=this.uuid,I.type=this.type,this.name!==""&&(I.name=this.name),this.color&&this.color.isColor&&(I.color=this.color.getHex()),this.roughness!==void 0&&(I.roughness=this.roughness),this.metalness!==void 0&&(I.metalness=this.metalness),this.sheen!==void 0&&(I.sheen=this.sheen),this.sheenColor&&this.sheenColor.isColor&&(I.sheenColor=this.sheenColor.getHex()),this.sheenRoughness!==void 0&&(I.sheenRoughness=this.sheenRoughness),this.emissive&&this.emissive.isColor&&(I.emissive=this.emissive.getHex()),this.emissiveIntensity!==void 0&&this.emissiveIntensity!==1&&(I.emissiveIntensity=this.emissiveIntensity),this.specular&&this.specular.isColor&&(I.specular=this.specular.getHex()),this.specularIntensity!==void 0&&(I.specularIntensity=this.specularIntensity),this.specularColor&&this.specularColor.isColor&&(I.specularColor=this.specularColor.getHex()),this.shininess!==void 0&&(I.shininess=this.shininess),this.clearcoat!==void 0&&(I.clearcoat=this.clearcoat),this.clearcoatRoughness!==void 0&&(I.clearcoatRoughness=this.clearcoatRoughness),this.clearcoatMap&&this.clearcoatMap.isTexture&&(I.clearcoatMap=this.clearcoatMap.toJSON(A).uuid),this.clearcoatRoughnessMap&&this.clearcoatRoughnessMap.isTexture&&(I.clearcoatRoughnessMap=this.clearcoatRoughnessMap.toJSON(A).uuid),this.clearcoatNormalMap&&this.clearcoatNormalMap.isTexture&&(I.clearcoatNormalMap=this.clearcoatNormalMap.toJSON(A).uuid,I.clearcoatNormalScale=this.clearcoatNormalScale.toArray()),this.dispersion!==void 0&&(I.dispersion=this.dispersion),this.iridescence!==void 0&&(I.iridescence=this.iridescence),this.iridescenceIOR!==void 0&&(I.iridescenceIOR=this.iridescenceIOR),this.iridescenceThicknessRange!==void 0&&(I.iridescenceThicknessRange=this.iridescenceThicknessRange),this.iridescenceMap&&this.iridescenceMap.isTexture&&(I.iridescenceMap=this.iridescenceMap.toJSON(A).uuid),this.iridescenceThicknessMap&&this.iridescenceThicknessMap.isTexture&&(I.iridescenceThicknessMap=this.iridescenceThicknessMap.toJSON(A).uuid),this.anisotropy!==void 0&&(I.anisotropy=this.anisotropy),this.anisotropyRotation!==void 0&&(I.anisotropyRotation=this.anisotropyRotation),this.anisotropyMap&&this.anisotropyMap.isTexture&&(I.anisotropyMap=this.anisotropyMap.toJSON(A).uuid),this.map&&this.map.isTexture&&(I.map=this.map.toJSON(A).uuid),this.matcap&&this.matcap.isTexture&&(I.matcap=this.matcap.toJSON(A).uuid),this.alphaMap&&this.alphaMap.isTexture&&(I.alphaMap=this.alphaMap.toJSON(A).uuid),this.lightMap&&this.lightMap.isTexture&&(I.lightMap=this.lightMap.toJSON(A).uuid,I.lightMapIntensity=this.lightMapIntensity),this.aoMap&&this.aoMap.isTexture&&(I.aoMap=this.aoMap.toJSON(A).uuid,I.aoMapIntensity=this.aoMapIntensity),this.bumpMap&&this.bumpMap.isTexture&&(I.bumpMap=this.bumpMap.toJSON(A).uuid,I.bumpScale=this.bumpScale),this.normalMap&&this.normalMap.isTexture&&(I.normalMap=this.normalMap.toJSON(A).uuid,I.normalMapType=this.normalMapType,I.normalScale=this.normalScale.toArray()),this.displacementMap&&this.displacementMap.isTexture&&(I.displacementMap=this.displacementMap.toJSON(A).uuid,I.displacementScale=this.displacementScale,I.displacementBias=this.displacementBias),this.roughnessMap&&this.roughnessMap.isTexture&&(I.roughnessMap=this.roughnessMap.toJSON(A).uuid),this.metalnessMap&&this.metalnessMap.isTexture&&(I.metalnessMap=this.metalnessMap.toJSON(A).uuid),this.emissiveMap&&this.emissiveMap.isTexture&&(I.emissiveMap=this.emissiveMap.toJSON(A).uuid),this.specularMap&&this.specularMap.isTexture&&(I.specularMap=this.specularMap.toJSON(A).uuid),this.specularIntensityMap&&this.specularIntensityMap.isTexture&&(I.specularIntensityMap=this.specularIntensityMap.toJSON(A).uuid),this.specularColorMap&&this.specularColorMap.isTexture&&(I.specularColorMap=this.specularColorMap.toJSON(A).uuid),this.envMap&&this.envMap.isTexture&&(I.envMap=this.envMap.toJSON(A).uuid,this.combine!==void 0&&(I.combine=this.combine)),this.envMapRotation!==void 0&&(I.envMapRotation=this.envMapRotation.toArray()),this.envMapIntensity!==void 0&&(I.envMapIntensity=this.envMapIntensity),this.reflectivity!==void 0&&(I.reflectivity=this.reflectivity),this.refractionRatio!==void 0&&(I.refractionRatio=this.refractionRatio),this.gradientMap&&this.gradientMap.isTexture&&(I.gradientMap=this.gradientMap.toJSON(A).uuid),this.transmission!==void 0&&(I.transmission=this.transmission),this.transmissionMap&&this.transmissionMap.isTexture&&(I.transmissionMap=this.transmissionMap.toJSON(A).uuid),this.thickness!==void 0&&(I.thickness=this.thickness),this.thicknessMap&&this.thicknessMap.isTexture&&(I.thicknessMap=this.thicknessMap.toJSON(A).uuid),this.attenuationDistance!==void 0&&this.attenuationDistance!==1/0&&(I.attenuationDistance=this.attenuationDistance),this.attenuationColor!==void 0&&(I.attenuationColor=this.attenuationColor.getHex()),this.size!==void 0&&(I.size=this.size),this.shadowSide!==null&&(I.shadowSide=this.shadowSide),this.sizeAttenuation!==void 0&&(I.sizeAttenuation=this.sizeAttenuation),this.blending!==cQ&&(I.blending=this.blending),this.side!==hB&&(I.side=this.side),this.vertexColors===!0&&(I.vertexColors=!0),this.opacity<1&&(I.opacity=this.opacity),this.transparent===!0&&(I.transparent=!0),this.blendSrc!==DQ&&(I.blendSrc=this.blendSrc),this.blendDst!==lQ&&(I.blendDst=this.blendDst),this.blendEquation!==wQ&&(I.blendEquation=this.blendEquation),this.blendSrcAlpha!==null&&(I.blendSrcAlpha=this.blendSrcAlpha),this.blendDstAlpha!==null&&(I.blendDstAlpha=this.blendDstAlpha),this.blendEquationAlpha!==null&&(I.blendEquationAlpha=this.blendEquationAlpha),this.blendColor&&this.blendColor.isColor&&(I.blendColor=this.blendColor.getHex()),this.blendAlpha!==0&&(I.blendAlpha=this.blendAlpha),this.depthFunc!==yQ&&(I.depthFunc=this.depthFunc),this.depthTest===!1&&(I.depthTest=this.depthTest),this.depthWrite===!1&&(I.depthWrite=this.depthWrite),this.colorWrite===!1&&(I.colorWrite=this.colorWrite),this.stencilWriteMask!==255&&(I.stencilWriteMask=this.stencilWriteMask),this.stencilFunc!==pQ&&(I.stencilFunc=this.stencilFunc),this.stencilRef!==0&&(I.stencilRef=this.stencilRef),this.stencilFuncMask!==255&&(I.stencilFuncMask=this.stencilFuncMask),this.stencilFail!==kg&&(I.stencilFail=this.stencilFail),this.stencilZFail!==kg&&(I.stencilZFail=this.stencilZFail),this.stencilZPass!==kg&&(I.stencilZPass=this.stencilZPass),this.stencilWrite===!0&&(I.stencilWrite=this.stencilWrite),this.rotation!==void 0&&this.rotation!==0&&(I.rotation=this.rotation),this.polygonOffset===!0&&(I.polygonOffset=!0),this.polygonOffsetFactor!==0&&(I.polygonOffsetFactor=this.polygonOffsetFactor),this.polygonOffsetUnits!==0&&(I.polygonOffsetUnits=this.polygonOffsetUnits),this.linewidth!==void 0&&this.linewidth!==1&&(I.linewidth=this.linewidth),this.dashSize!==void 0&&(I.dashSize=this.dashSize),this.gapSize!==void 0&&(I.gapSize=this.gapSize),this.scale!==void 0&&(I.scale=this.scale),this.dithering===!0&&(I.dithering=!0),this.alphaTest>0&&(I.alphaTest=this.alphaTest),this.alphaHash===!0&&(I.alphaHash=!0),this.alphaToCoverage===!0&&(I.alphaToCoverage=!0),this.premultipliedAlpha===!0&&(I.premultipliedAlpha=!0),this.forceSinglePass===!0&&(I.forceSinglePass=!0),this.wireframe===!0&&(I.wireframe=!0),this.wireframeLinewidth>1&&(I.wireframeLinewidth=this.wireframeLinewidth),this.wireframeLinecap!=="round"&&(I.wireframeLinecap=this.wireframeLinecap),this.wireframeLinejoin!=="round"&&(I.wireframeLinejoin=this.wireframeLinejoin),this.flatShading===!0&&(I.flatShading=!0),this.visible===!1&&(I.visible=!1),this.toneMapped===!1&&(I.toneMapped=!1),this.fog===!1&&(I.fog=!1),Object.keys(this.userData).length>0&&(I.userData=this.userData);function B(Q){const t=[];for(const C in Q){const i=Q[C];delete i.metadata,t.push(i)}return t}if(g){const Q=B(A.textures),t=B(A.images);Q.length>0&&(I.textures=Q),t.length>0&&(I.images=t)}return I}clone(){return new this.constructor().copy(this)}copy(A){this.name=A.name,this.blending=A.blending,this.side=A.side,this.vertexColors=A.vertexColors,this.opacity=A.opacity,this.transparent=A.transparent,this.blendSrc=A.blendSrc,this.blendDst=A.blendDst,this.blendEquation=A.blendEquation,this.blendSrcAlpha=A.blendSrcAlpha,this.blendDstAlpha=A.blendDstAlpha,this.blendEquationAlpha=A.blendEquationAlpha,this.blendColor.copy(A.blendColor),this.blendAlpha=A.blendAlpha,this.depthFunc=A.depthFunc,this.depthTest=A.depthTest,this.depthWrite=A.depthWrite,this.stencilWriteMask=A.stencilWriteMask,this.stencilFunc=A.stencilFunc,this.stencilRef=A.stencilRef,this.stencilFuncMask=A.stencilFuncMask,this.stencilFail=A.stencilFail,this.stencilZFail=A.stencilZFail,this.stencilZPass=A.stencilZPass,this.stencilWrite=A.stencilWrite;const g=A.clippingPlanes;let I=null;if(g!==null){const B=g.length;I=new Array(B);for(let Q=0;Q!==B;++Q)I[Q]=g[Q].clone()}return this.clippingPlanes=I,this.clipIntersection=A.clipIntersection,this.clipShadows=A.clipShadows,this.shadowSide=A.shadowSide,this.colorWrite=A.colorWrite,this.precision=A.precision,this.polygonOffset=A.polygonOffset,this.polygonOffsetFactor=A.polygonOffsetFactor,this.polygonOffsetUnits=A.polygonOffsetUnits,this.dithering=A.dithering,this.alphaTest=A.alphaTest,this.alphaHash=A.alphaHash,this.alphaToCoverage=A.alphaToCoverage,this.premultipliedAlpha=A.premultipliedAlpha,this.forceSinglePass=A.forceSinglePass,this.visible=A.visible,this.toneMapped=A.toneMapped,this.userData=JSON.parse(JSON.stringify(A.userData)),this}dispose(){this.dispatchEvent({type:"dispose"})}set needsUpdate(A){A===!0&&this.version++}onBuild(){console.warn("Material: onBuild() has been removed.")}}class pC extends zQ{constructor(A){super(),this.isMeshBasicMaterial=!0,this.type="MeshBasicMaterial",this.color=new ug(16777215),this.map=null,this.lightMap=null,this.lightMapIntensity=1,this.aoMap=null,this.aoMapIntensity=1,this.specularMap=null,this.alphaMap=null,this.envMap=null,this.envMapRotation=new yg,this.combine=tC,this.reflectivity=1,this.refractionRatio=.98,this.wireframe=!1,this.wireframeLinewidth=1,this.wireframeLinecap="round",this.wireframeLinejoin="round",this.fog=!0,this.setValues(A)}copy(A){return super.copy(A),this.color.copy(A.color),this.map=A.map,this.lightMap=A.lightMap,this.lightMapIntensity=A.lightMapIntensity,this.aoMap=A.aoMap,this.aoMapIntensity=A.aoMapIntensity,this.specularMap=A.specularMap,this.alphaMap=A.alphaMap,this.envMap=A.envMap,this.envMapRotation.copy(A.envMapRotation),this.combine=A.combine,this.reflectivity=A.reflectivity,this.refractionRatio=A.refractionRatio,this.wireframe=A.wireframe,this.wireframeLinewidth=A.wireframeLinewidth,this.wireframeLinecap=A.wireframeLinecap,this.wireframeLinejoin=A.wireframeLinejoin,this.fog=A.fog,this}}const IA=new D,LI=new dA;class Hg{constructor(A,g,I=!1){if(Array.isArray(A))throw new TypeError("THREE.BufferAttribute: array should be a Typed Array.");this.isBufferAttribute=!0,this.name="",this.array=A,this.itemSize=g,this.count=A!==void 0?A.length/g:0,this.normalized=I,this.usage=fQ,this.updateRanges=[],this.gpuType=EC,this.version=0}onUploadCallback(){}set needsUpdate(A){A===!0&&this.version++}setUsage(A){return this.usage=A,this}addUpdateRange(A,g){this.updateRanges.push({start:A,count:g})}clearUpdateRanges(){this.updateRanges.length=0}copy(A){return this.name=A.name,this.array=new A.array.constructor(A.array),this.itemSize=A.itemSize,this.count=A.count,this.normalized=A.normalized,this.usage=A.usage,this.gpuType=A.gpuType,this}copyAt(A,g,I){A*=this.itemSize,I*=g.itemSize;for(let B=0,Q=this.itemSize;Bg.count&&console.warn("THREE.BufferGeometry: Buffer size too small for points data. Use .dispose() and create a new geometry."),g.needsUpdate=!0}return this}computeBoundingBox(){this.boundingBox===null&&(this.boundingBox=new Rg);const A=this.attributes.position,g=this.morphAttributes.position;if(A&&A.isGLBufferAttribute){console.error("THREE.BufferGeometry.computeBoundingBox(): GLBufferAttribute requires a manual bounding box.",this),this.boundingBox.set(new D(-1/0,-1/0,-1/0),new D(1/0,1/0,1/0));return}if(A!==void 0){if(this.boundingBox.setFromBufferAttribute(A),g)for(let I=0,B=g.length;I0&&(A.userData=this.userData),this.parameters!==void 0){const i=this.parameters;for(const s in i)i[s]!==void 0&&(A[s]=i[s]);return A}A.data={attributes:{}};const g=this.index;g!==null&&(A.data.index={type:g.array.constructor.name,array:Array.prototype.slice.call(g.array)});const I=this.attributes;for(const i in I){const s=I[i];A.data.attributes[i]=s.toJSON(A.data)}const B={};let Q=!1;for(const i in this.morphAttributes){const s=this.morphAttributes[i],a=[];for(let e=0,n=s.length;e0&&(B[i]=a,Q=!0)}Q&&(A.data.morphAttributes=B,A.data.morphTargetsRelative=this.morphTargetsRelative);const t=this.groups;t.length>0&&(A.data.groups=JSON.parse(JSON.stringify(t)));const C=this.boundingSphere;return C!==null&&(A.data.boundingSphere={center:C.center.toArray(),radius:C.radius}),A}clone(){return new this.constructor().copy(this)}copy(A){this.index=null,this.attributes={},this.morphAttributes={},this.groups=[],this.boundingBox=null,this.boundingSphere=null;const g={};this.name=A.name;const I=A.index;I!==null&&this.setIndex(I.clone(g));const B=A.attributes;for(const s in B){const a=B[s];this.setAttribute(s,a.clone(g))}const Q=A.morphAttributes;for(const s in Q){const a=[],e=Q[s];for(let n=0,o=e.length;n0){const B=g[I[0]];if(B!==void 0){this.morphTargetInfluences=[],this.morphTargetDictionary={};for(let Q=0,t=B.length;Q(A.far-A.near)**2))&&(XQ.copy(Q).invert(),dg.copy(A.ray).applyMatrix4(XQ),!(I.boundingBox!==null&&dg.intersectsBox(I.boundingBox)===!1)&&this._computeIntersections(A,g,dg)))}_computeIntersections(A,g,I){let B;const Q=this.geometry,t=this.material,C=Q.index,i=Q.attributes.position,s=Q.attributes.uv,a=Q.attributes.uv1,e=Q.attributes.normal,n=Q.groups,o=Q.drawRange;if(C!==null)if(Array.isArray(t))for(let r=0,h=n.length;rg.far?null:{distance:s,point:TI.clone(),object:E}}function vI(E,A,g,I,B,Q,t,C,i,s){E.getVertexPosition(C,KI),E.getVertexPosition(i,qI),E.getVertexPosition(s,WI);const a=mC(E,A,g,I,KI,qI,WI,OQ);if(a){const e=new D;qA.getBarycoord(OQ,KI,qI,WI,e),B&&(a.uv=qA.getInterpolatedAttribute(B,C,i,s,e,new dA)),Q&&(a.uv1=qA.getInterpolatedAttribute(Q,C,i,s,e,new dA)),t&&(a.normal=qA.getInterpolatedAttribute(t,C,i,s,e,new D),a.normal.dot(I.direction)>0&&a.normal.multiplyScalar(-1));const n={a:C,b:i,c:s,normal:new D,materialIndex:0};qA.getNormal(KI,qI,WI,n.normal),a.face=n,a.barycoord=e}return a}function SC(E){const A={};for(const g in E){A[g]={};for(const I in E[g]){const B=E[g][I];B&&(B.isColor||B.isMatrix3||B.isMatrix4||B.isVector2||B.isVector3||B.isVector4||B.isTexture||B.isQuaternion)?B.isRenderTargetTexture?(console.warn("UniformsUtils: Textures of render targets cannot be cloned via cloneUniforms() or mergeUniforms()."),A[g][I]=null):A[g][I]=B.clone():Array.isArray(B)?A[g][I]=B.slice():A[g][I]=B}}return A}function YC(E){const A=[];for(let g=0;g0&&(g.defines=this.defines),g.vertexShader=this.vertexShader,g.fragmentShader=this.fragmentShader,g.lights=this.lights,g.clipping=this.clipping;const I={};for(const B in this.extensions)this.extensions[B]===!0&&(I[B]=!0);return Object.keys(I).length>0&&(g.extensions=I),g}}class _Q extends MA{constructor(){super(),this.isCamera=!0,this.type="Camera",this.matrixWorldInverse=new cA,this.projectionMatrix=new cA,this.projectionMatrixInverse=new cA,this.coordinateSystem=II}copy(A,g){return super.copy(A,g),this.matrixWorldInverse.copy(A.matrixWorldInverse),this.projectionMatrix.copy(A.projectionMatrix),this.projectionMatrixInverse.copy(A.projectionMatrixInverse),this.coordinateSystem=A.coordinateSystem,this}getWorldDirection(A){return super.getWorldDirection(A).negate()}updateMatrixWorld(A){super.updateMatrixWorld(A),this.matrixWorldInverse.copy(this.matrixWorld).invert()}updateWorldMatrix(A,g){super.updateWorldMatrix(A,g),this.matrixWorldInverse.copy(this.matrixWorld).invert()}clone(){return new this.constructor().copy(this)}}class $Q extends MA{constructor(){super(),this.isScene=!0,this.type="Scene",this.background=null,this.environment=null,this.fog=null,this.backgroundBlurriness=0,this.backgroundIntensity=1,this.backgroundRotation=new yg,this.environmentIntensity=1,this.environmentRotation=new yg,this.overrideMaterial=null,typeof __THREE_DEVTOOLS__<"u"&&__THREE_DEVTOOLS__.dispatchEvent(new CustomEvent("observe",{detail:this}))}copy(A,g){return super.copy(A,g),A.background!==null&&(this.background=A.background.clone()),A.environment!==null&&(this.environment=A.environment.clone()),A.fog!==null&&(this.fog=A.fog.clone()),this.backgroundBlurriness=A.backgroundBlurriness,this.backgroundIntensity=A.backgroundIntensity,this.backgroundRotation.copy(A.backgroundRotation),this.environmentIntensity=A.environmentIntensity,this.environmentRotation.copy(A.environmentRotation),A.overrideMaterial!==null&&(this.overrideMaterial=A.overrideMaterial.clone()),this.matrixAutoUpdate=A.matrixAutoUpdate,this}toJSON(A){const g=super.toJSON(A);return this.fog!==null&&(g.object.fog=this.fog.toJSON()),this.backgroundBlurriness>0&&(g.object.backgroundBlurriness=this.backgroundBlurriness),this.backgroundIntensity!==1&&(g.object.backgroundIntensity=this.backgroundIntensity),g.object.backgroundRotation=this.backgroundRotation.toArray(),this.environmentIntensity!==1&&(g.object.environmentIntensity=this.environmentIntensity),g.object.environmentRotation=this.environmentRotation.toArray(),g}}class bC extends vA{constructor(A=null,g=1,I=1,B,Q,t,C,i,s=Cg,a=Cg,e,n){super(null,t,C,i,s,a,B,Q,e,n),this.isDataTexture=!0,this.image={data:A,width:g,height:I},this.generateMipmaps=!1,this.flipY=!1,this.unpackAlignment=1}}class zI extends HI{constructor(A=1,g=1,I=1,B=1){super(),this.type="PlaneGeometry",this.parameters={width:A,height:g,widthSegments:I,heightSegments:B};const Q=A/2,t=g/2,C=Math.floor(I),i=Math.floor(B),s=C+1,a=i+1,e=A/C,n=g/i,o=[],r=[],h=[],c=[];for(let w=0;wV(B[C]));return`${A}(${Q.join(", ")})`}case"mat2x3":{const I=g,B=new Array(6).fill(0).map((Q,t)=>V(I[t]));return`${A}(${B.join(", ")})`}case"mat2x4":{const I=g,B=new Array(8).fill(0).map((Q,t)=>V(I[t]));return`${A}(${B.join(", ")})`}case"mat3":case"mat3x3":{const I=g,B=I instanceof TA?I.elements:g,Q=new Array(9).fill(0).map((t,C)=>V(B[C]));return`${A}(${Q.join(", ")})`}case"mat3x2":{const I=g,B=new Array(6).fill(0).map((Q,t)=>V(I[t]));return`${A}(${B.join(", ")})`}case"mat3x4":{const I=g,B=new Array(12).fill(0).map((Q,t)=>V(I[t]));return`${A}(${B.join(", ")})`}case"mat4":case"mat4x4":{const I=g,B=I instanceof cA?I.elements:g,Q=new Array(16).fill(0).map((t,C)=>V(B[C]));return`${A}(${Q.join(", ")})`}case"mat4x2":{const I=g,B=new Array(8).fill(0).map((Q,t)=>V(I[t]));return`${A}(${B.join(", ")})`}case"mat4x3":{const I=g,B=new Array(12).fill(0).map((Q,t)=>V(I[t]));return`${A}(${B.join(", ")})`}default:throw new Error(`Type not implemented: ${String(A)}`)}}}function VC(E,A){return new WC(E,A)}const It=" ";class TC{constructor({indent:A}={}){this.globals=new Set,this.statements=[],this.uniforms={},this.declares=new Set,this.updaters=[],this.sequence=0,this.indent=It,this.indent=A??It}nextSequence(){return this.sequence++}}class DA{constructor({inTypes:A,outTypes:g,inputs:I,update:B,globals:Q,statements:t,generate:C}){this.inTypes=A??{},this.outTypes=g??{},this.inputs=I??{},this.update=B,this.globals=Q,this.statements=t,this.generate=C??(({inputs:i,outputs:s,compile:a})=>{var e,n;return{globals:(e=this.globals)==null?void 0:e.call(this,{inputs:i,outputs:s,compile:a}),statements:(n=this.statements)==null?void 0:n.call(this,{inputs:i,outputs:s,compile:a})}})}get outputs(){const A={};for(const g in this.outTypes)A[g]=new fA(this,g);return A}apply(A){return Object.assign(this.inputs,A),this.outputs}compile({inputs:A,outputs:g,compile:I}){const B=[`// ${this.constructor.name}(${Object.values(A).join(", ")}) => (${Object.values(g).join(", ")})`],Q=[];for(const s in g){const a=g[s];a&&!I.declares.has(a)&&(I.declares.add(a),Q.push(s))}const{globals:t,statements:C,uniforms:i}=this.generate({inputs:A,outputs:g,compile:I});for(const s of t??[])I.globals.add(s);for(const s in i)I.uniforms[s]=i[s];this.update&&I.updaters.push(this.update);for(const s of Q){const a=g[s];a&&(I.uniforms[a]||B.push(`${Bt(a,this.outTypes[s])};`))}return C!=null&&C.length&&(B.push("{"),B.push(...C.map(s=>I.indent+s)),B.push("}")),B}}class vC extends DA{constructor({inTypes:A,outTypes:g,inputs:I,update:B,globals:Q,construct:t}){super({inTypes:A,outTypes:g,inputs:I,update:B,globals:Q,generate:C=>this.generateBlock(C)}),this.construct=t}generateBlock({inputs:A,outputs:g,compile:I}){var r,h;const B={},Q={};for(const c in A)A[c]!=null&&(B[c]=new jI(this.inTypes[c],A[c]));for(const c in g)g[c]!=null&&(Q[c]=new Gg(this.outTypes[c]));const t={roots:[]},C=this.construct(B,Q,t);for(const c of((r=this.globals)==null?void 0:r.call(this,{inputs:A,outputs:g,compile:I}))??[])I.globals.add(c);const i=[],s=new Map;function a(c,w,y){let l=s.get(c);if(!l){l={sequence:I.nextSequence(),outNames:new Map,newOuts:new Set},s.set(c,l);for(const u in c.inputs){let M=c.inputs[u];for(;M;){if(M instanceof Gg){M instanceof fA&&a(M.dyno,M.key);break}M=M.dynoOut()}}i.push(c)}w&&(y||l.newOuts.add(w),l.outNames.set(w,y??`${w}_${l.sequence}`))}for(const c of t.roots)a(c);for(const c in Q){let w=(C==null?void 0:C[c])??Q[c];for(;w;){if(w instanceof Gg){w instanceof fA&&a(w.dyno,w.key,g[c]);break}w=w.dynoOut()}Q[c]=w}const e=[];for(const c of i){const w={},y={};for(const M in c.inputs){let F=c.inputs[M];for(;F;){if(F instanceof Gg){if(F instanceof jI)w[M]=F.getLiteral();else if(F instanceof fA){const p=(h=s.get(F.dyno))==null?void 0:h.outNames.get(F.key);if(!p)throw new Error(`Source not found for ${F.dyno.constructor.name}.${F.key}`);w[M]=p}break}F=F.dynoOut()}}const l=s.get(c)??{outNames:new Map};for(const[M,F]of l.outNames.entries())y[M]=F;const 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i.entries())e[QA]=x[AA];g(T,s,a,e)}}};this.parseData(c)}injectRgba(A){let g=0;const I=this.data;if(I==null)throw new Error("No parsed data");if(A.length!==this.numSplats*4)throw new Error("Invalid RGBA array length");for(const B in this.elements){const Q=this.elements[B],{count:t,properties:C}=Q,i=[];let s=0;const a=B==="vertex";if(a){for(const e of["opacity","f_dc_0","f_dc_1","f_dc_2"])if(!C[e]||C[e].type!=="float")throw new Error(`Can\'t injectRgba due to property: ${e}`)}for(const[e,n]of Object.entries(C))if(n.isList)i.push(()=>{const o=gB[n.countType](I,g,this.littleEndian);g+=zg[n.countType],g+=o*zg[n.type]});else{if(a)if(e==="f_dc_0"||e==="f_dc_1"||e==="f_dc_2"){const o=Number.parseInt(e.slice(5));i.push(()=>{const r=(A[s+o]/255-.5)/AB;st[n.type](I,g,this.littleEndian,r)})}else e==="opacity"&&i.push(()=>{const o=Math.max(-100,Math.min(100,-Math.log(1/(A[s+3]/255)-1)));st[n.type](I,g,this.littleEndian,o)});i.push(()=>{g+=zg[n.type]})}for(let e=0;eE.getInt8(A),uchar:(E,A,g)=>E.getUint8(A),short:(E,A,g)=>E.getInt16(A,g),ushort:(E,A,g)=>E.getUint16(A,g),int:(E,A,g)=>E.getInt32(A,g),uint:(E,A,g)=>E.getUint32(A,g),float:(E,A,g)=>E.getFloat32(A,g),double:(E,A,g)=>E.getFloat64(A,g)},st={char:(E,A,g,I)=>{E.setInt8(A,I)},uchar:(E,A,g,I)=>{E.setUint8(A,I)},short:(E,A,g,I)=>{E.setInt16(A,I,g)},ushort:(E,A,g,I)=>{E.setUint16(A,I,g)},int:(E,A,g,I)=>{E.setInt32(A,I,g)},uint:(E,A,g,I)=>{E.setUint32(A,I,g)},float:(E,A,g,I)=>{E.setFloat32(A,I,g)},double:(E,A,g,I)=>{E.setFloat64(A,I,g)}},zg={char:1,uchar:1,short:2,ushort:2,int:4,uint:4,float:4,double:8},IB={char:127,uchar:255,short:32767,ushort:65535,int:2147483647,uint:4294967295,float:1,double:1},aE={0:0,9:1,24:2,45:3},nE={0:0,1:9,2:24,3:45};function et(E){let A=0;for(;E[`f_rest_${A}`];)A+=1;const g=aE[A];if(g==null)throw new Error(`Unsupported number of SH coefficients: ${A}`);return g}const GA={type:"Gsplat"},zB={type:"PackedSplats"},oE=(E,A)=>new cE({packedSplats:E,index:A}),rE=(E,A,g,I)=>new wE({packedSplats:E,index:A,base:g,count:I}),BB=E=>new DE({gsplat:E}),XB=({gsplat:E,flags:A,index:g,center:I,scales:B,quaternion:Q,rgba:t,rgb:C,opacity:i,x:s,y:a,z:e,r:n,g:o,b:r})=>new lE({gsplat:E,flags:A,index:g,center:I,scales:B,quaternion:Q,rgba:t,rgb:C,opacity:i,x:s,y:a,z:e,r:n,g:o,b:r}),hE=(E,{scale:A,rotate:g,translate:I,recolor:B})=>new yE({gsplat:E,scale:A,rotate:g,translate:I,recolor:B}),Ig=VA(`\n struct Gsplat {\n vec3 center;\n uint flags;\n vec3 scales;\n int index;\n vec4 quaternion;\n vec4 rgba;\n };\n const uint GSPLAT_FLAG_ACTIVE = 1u << 0u;\n\n bool isGsplatActive(uint flags) {\n return (flags & GSPLAT_FLAG_ACTIVE) != 0u;\n }\n`),jB=VA(`\n struct PackedSplats {\n usampler2DArray texture;\n int numSplats;\n };\n`),at=VA(`\n bool readPackedSplat(usampler2DArray texture, int numSplats, int index, out Gsplat gsplat) {\n if ((index >= 0) && (index < numSplats)) {\n uvec4 packed = texelFetch(texture, splatTexCoord(index), 0);\n unpackSplat(packed, gsplat.center, gsplat.scales, gsplat.quaternion, gsplat.rgba);\n return true;\n } else {\n return false;\n }\n }\n`);class cE extends DA{constructor({packedSplats:A,index:g}){super({inTypes:{packedSplats:zB,index:"int"},outTypes:{gsplat:GA},inputs:{packedSplats:A,index:g},globals:()=>[Ig,jB,at],statements:({inputs:I,outputs:B})=>{const{gsplat:Q}=B;if(!Q)return[];const{packedSplats:t,index:C}=I;let i;return t&&C?i=gg(`\n if (readPackedSplat(${t}.texture, ${t}.numSplats, ${C}, ${Q})) {\n bool zeroSize = all(equal(${Q}.scales, vec3(0.0, 0.0, 0.0)));\n ${Q}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;\n } else {\n ${Q}.flags = 0u;\n }\n `):i=[`${Q}.flags = 0u;`],i.push(`${Q}.index = ${C??"0"};`),i}})}dynoOut(){return new fA(this,"gsplat")}}class wE extends DA{constructor({packedSplats:A,index:g,base:I,count:B}){super({inTypes:{packedSplats:zB,index:"int",base:"int",count:"int"},outTypes:{gsplat:GA},inputs:{packedSplats:A,index:g,base:I,count:B},globals:()=>[Ig,jB,at],statements:({inputs:Q,outputs:t})=>{const{gsplat:C}=t;if(!C)return[];const{packedSplats:i,index:s,base:a,count:e}=Q;let n;return i&&s&&a&&e?n=gg(`\n ${C}.flags = 0u;\n if ((${s} >= ${a}) && (${s} < (${a} + ${e}))) {\n if (readPackedSplat(${i}.texture, ${i}.numSplats, ${s}, ${C})) {\n bool zeroSize = all(equal(${C}.scales, vec3(0.0, 0.0, 0.0)));\n ${C}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;\n }\n }\n `):n=[`${C}.flags = 0u;`],n.push(`${C}.index = ${s??"0"};`),n}})}dynoOut(){return new fA(this,"gsplat")}}class DE extends DA{constructor({gsplat:A}){super({inTypes:{gsplat:GA},outTypes:{flags:"uint",active:"bool",index:"int",center:"vec3",scales:"vec3",quaternion:"vec4",rgba:"vec4",rgb:"vec3",opacity:"float",x:"float",y:"float",z:"float",r:"float",g:"float",b:"float"},inputs:{gsplat:A},globals:()=>[Ig],statements:({inputs:g,outputs:I})=>{const{gsplat:B}=g,{flags:Q,active:t,index:C,center:i,scales:s,quaternion:a,rgba:e,rgb:n,opacity:o,x:r,y:h,z:c,r:w,g:y,b:l}=I;return[Q?`${Q} = ${B?`${B}.flags`:"0u"};`:null,t?`${t} = isGsplatActive(${B?`${B}.flags`:"0u"});`:null,C?`${C} = ${B?`${B}.index`:"0"};`:null,i?`${i} = ${B?`${B}.center`:"vec3(0.0, 0.0, 0.0)"};`:null,s?`${s} = ${B?`${B}.scales`:"vec3(0.0, 0.0, 0.0)"};`:null,a?`${a} = ${B?`${B}.quaternion`:"vec4(0.0, 0.0, 0.0, 1.0)"};`:null,e?`${e} = ${B?`${B}.rgba`:"vec4(0.0, 0.0, 0.0, 0.0)"};`:null,n?`${n} = ${B?`${B}.rgba.rgb`:"vec3(0.0, 0.0, 0.0)"};`:null,o?`${o} = ${B?`${B}.rgba.a`:"0.0"};`:null,r?`${r} = ${B?`${B}.center.x`:"0.0"};`:null,h?`${h} = ${B?`${B}.center.y`:"0.0"};`:null,c?`${c} = ${B?`${B}.center.z`:"0.0"};`:null,w?`${w} = ${B?`${B}.rgba.r`:"0.0"};`:null,y?`${y} = ${B?`${B}.rgba.g`:"0.0"};`:null,l?`${l} = ${B?`${B}.rgba.b`:"0.0"};`:null].filter(Boolean)}})}}class lE extends DA{constructor({gsplat:A,flags:g,index:I,center:B,scales:Q,quaternion:t,rgba:C,rgb:i,opacity:s,x:a,y:e,z:n,r:o,g:r,b:h}){super({inTypes:{gsplat:GA,flags:"uint",index:"int",center:"vec3",scales:"vec3",quaternion:"vec4",rgba:"vec4",rgb:"vec3",opacity:"float",x:"float",y:"float",z:"float",r:"float",g:"float",b:"float"},outTypes:{gsplat:GA},inputs:{gsplat:A,flags:g,index:I,center:B,scales:Q,quaternion:t,rgba:C,rgb:i,opacity:s,x:a,y:e,z:n,r:o,g:r,b:h},globals:()=>[Ig],statements:({inputs:c,outputs:w})=>{const{gsplat:y}=w;if(!y)return[];const{gsplat:l,flags:u,index:M,center:F,scales:p,quaternion:d,rgba:G,rgb:f,opacity:N,x:k,y:R,z:J,r:m,g:S,b:Y}=c;return[`${y}.flags = ${u??(l?`${l}.flags`:"0u")};`,`${y}.index = ${M??(l?`${l}.index`:"0")};`,`${y}.center = ${F??(l?`${l}.center`:"vec3(0.0, 0.0, 0.0)")};`,`${y}.scales = ${p??(l?`${l}.scales`:"vec3(0.0, 0.0, 0.0)")};`,`${y}.quaternion = ${d??(l?`${l}.quaternion`:"vec4(0.0, 0.0, 0.0, 1.0)")};`,`${y}.rgba = ${G??(l?`${l}.rgba`:"vec4(0.0, 0.0, 0.0, 0.0)")};`,f?`${y}.rgba.rgb = ${f};`:null,N?`${y}.rgba.a = ${N};`:null,k?`${y}.center.x = ${k};`:null,R?`${y}.center.y = ${R};`:null,J?`${y}.center.z = ${J};`:null,m?`${y}.rgba.r = ${m};`:null,S?`${y}.rgba.g = ${S};`:null,Y?`${y}.rgba.b = ${Y};`:null].filter(Boolean)}})}dynoOut(){return new fA(this,"gsplat")}}VA(`\n vec3 gsplatNormal(vec3 scales, vec4 quaternion) {\n float minScale = min(scales.x, min(scales.y, scales.z));\n vec3 normal;\n if (scales.z == minScale) {\n normal = vec3(0.0, 0.0, 1.0);\n } else if (scales.y == minScale) {\n normal = vec3(0.0, 1.0, 0.0);\n } else {\n normal = vec3(1.0, 0.0, 0.0);\n }\n return quatVec(quaternion, normal);\n }\n`);class yE extends DA{constructor({gsplat:A,scale:g,rotate:I,translate:B,recolor:Q}){super({inTypes:{gsplat:GA,scale:"float",rotate:"vec4",translate:"vec3",recolor:"vec4"},outTypes:{gsplat:GA},inputs:{gsplat:A,scale:g,rotate:I,translate:B,recolor:Q},globals:()=>[Ig],statements:({inputs:t,outputs:C,compile:i})=>{const{gsplat:s}=C;if(!s||!t.gsplat)return[];const{scale:a,rotate:e,translate:n,recolor:o}=t,r=i.indent;return[`${s} = ${t.gsplat};`,`if (isGsplatActive(${s}.flags)) {`,a?`${r}${s}.center *= ${a};`:null,e?`${r}${s}.center = quatVec(${e}, ${s}.center);`:null,n?`${r}${s}.center += ${n};`:null,a?`${r}${s}.scales *= ${a};`:null,e?`${r}${s}.quaternion = quatQuat(${e}, ${s}.quaternion);`:null,o?`${r}${s}.rgba *= ${o};`:null,"}"].filter(Boolean)}})}dynoOut(){return new fA(this,"gsplat")}}const uE=E=>new dE({gsplat:E});class dE extends DA{constructor({gsplat:A}){super({inTypes:{gsplat:GA},inputs:{gsplat:A},globals:()=>[Ig],statements:({inputs:g,outputs:I})=>{const{output:B}=I;if(!B)return[];const{gsplat:Q}=g;return Q?gg(`\n if (isGsplatActive(${Q}.flags)) {\n ${B} = packSplat(${Q}.center, ${Q}.scales, ${Q}.quaternion, ${Q}.rgba);\n } else {\n ${B} = uvec4(0u, 0u, 0u, 0u);\n }\n `):[`${B} = uvec4(0u, 0u, 0u, 0u);`]}})}dynoOut(){return new fA(this,"output")}}class ME extends DA{constructor({rgba8:A}){super({inTypes:{rgba8:"vec4"},inputs:{rgba8:A},statements:({inputs:g,outputs:I})=>[`target = ${g.rgba8??"vec4(0.0, 0.0, 0.0, 0.0)"};`]})}dynoOut(){return new fA(this,"rgba8")}}class Bg extends DA{constructor({key:A,type:g,count:I,value:B,update:Q,globals:t}){A=A??"value",super({outTypes:{[A]:g},update:()=>{if(Q){const C=Q(this.value);C!==void 0&&(this.value=C)}this.uniform.value=this.value},generate:({inputs:C,outputs:i})=>{const s=(t==null?void 0:t({inputs:C,outputs:i}))??[],a={},e=i[A];return e&&(s.push(`uniform ${Bt(e,g,I)};`),a[e]=this.uniform),{globals:s,uniforms:a}}}),this.type=g,this.count=I,this.value=B,this.uniform={value:B},this.outKey=A}dynoOut(){return new fA(this,this.outKey)}}class OB extends Bg{constructor({key:A,value:g,update:I}){super({key:A,type:"int",value:g,update:I})}}class QB extends Bg{constructor({key:A,value:g,update:I}){super({key:A,type:"float",value:g,update:I})}}class GE extends Bg{constructor({key:A,value:g,update:I}){super({key:A,type:"vec3",value:g,update:I})}}class nt extends Bg{constructor({key:A,value:g,update:I}){super({key:A,type:"vec4",value:g,update:I})}}class PB extends Bg{constructor({key:A,value:g,update:I}){super({key:A,type:"usampler2DArray",value:g,update:I})}}class ot{constructor({graph:A,inputs:g,outputs:I,template:B}){this.graph=A,this.template=B,this.inputs=g??{},this.outputs=I??{};const Q=new TC({indent:this.template.indent});for(const C in this.outputs)this.outputs[C]&&Q.declares.add(this.outputs[C]);const t=A.compile({inputs:this.inputs,outputs:this.outputs,compile:Q});this.shader=B.generate({globals:Q.globals,statements:t}),this.uniforms=Q.uniforms,this.updaters=Q.updaters}prepareMaterial(){return NE(this)}update(){for(const A of this.updaters)A()}}class rt{constructor(A){const g=A.match(/^([ \\t]*)\\{\\{\\s*GLOBALS\\s*\\}\\}/m),I=A.match(/^([ \\t]*)\\{\\{\\s*STATEMENTS\\s*\\}\\}/m);if(!g||!I)throw new Error("Template must contain {{ GLOBALS }} and {{ STATEMENTS }}");this.before=A.substring(0,g.index),this.between=A.substring(g.index+g[0].length,I.index),this.after=A.substring(I.index+I[0].length),this.indent=I[1]}generate({globals:A,statements:g}){return this.before+Array.from(A).join(`\n\n`)+this.between+g.map(I=>this.indent+I).join(`\n`)+this.after}}const ht=new Map;function NE(E){let A=ht.get(E);return A||(A=new LB({glslVersion:sC,vertexShader:QE,fragmentShader:E.shader,uniforms:E.uniforms}),ht.set(E,A),A)}function ct(E,A,g="add"){const I=()=>{throw new Error(`Invalid ${g} types: ${E}, ${A}`)};if(E===A)return E;if(E==="int"){if(Kg(A))return A;I()}if(A==="int"){if(Kg(E))return E;I()}if(E==="uint"){if(qg(A))return A;I()}if(A==="uint"){if(qg(E))return E;I()}if(E==="float"){if(XI(A))return A;I()}if(A==="float"){if(XI(E))return E;I()}throw new Error(`Invalid ${g} types: ${E}, ${A}`)}function FE(E,A){return ct(E,A,"sub")}function kE(E,A){const g=()=>{throw new Error(`Invalid mul types: ${E}, ${A}`)},I=B=>B;if(E==="int"){if(Kg(A))return I(A);g()}if(A==="int"){if(Kg(E))return I(E);g()}if(E==="uint"){if(qg(A))return I(A);g()}if(A==="uint"){if(qg(E))return I(E);g()}if(E==="float"){if(XI(A))return I(A);g()}if(A==="float"){if(XI(E))return I(E);g()}if(Kg(E)||qg(E)||Kg(A)||qg(A)){if(E===A)return I(E);g()}if(E==="vec2"){if(A==="vec2"||Wg(A))return I("vec2");if(A==="mat3x2")return I("vec3");if(A==="mat4x2")return I("vec4");g()}if(E==="vec3"){if(A==="mat2x3")return I("vec2");if(A==="vec3"||Vg(A))return I("vec3");if(A==="mat4x3")return I("vec4");g()}if(E==="vec4"){if(A==="mat2x4")return I("vec2");if(A==="mat3x4")return I("vec3");if(A==="vec4"||Tg(A))return I("vec4");g()}if(A==="vec2"){if(Wg(E))return I("vec2");if(E==="mat2x3")return I("vec3");if(E==="mat2x4")return I("vec4");g()}if(A==="vec3"){if(E==="mat3x2")return I("vec2");if(Vg(E))return I("vec3");if(E==="mat3x4")return I("vec4");g()}if(A==="vec4"){if(E==="mat4x2")return I("vec2");if(E==="mat4x3")return I("vec3");if(Tg(E))return I("vec4");g()}if(Wg(E)){if(Wg(A))return I("mat2");if(A==="mat3x2")return I("mat3x2");if(A==="mat4x2")return I("mat4x2");g()}if(E==="mat2x3"){if(Wg(A))return I("mat2x3");if(A==="mat3x2")return I("mat3");if(A==="mat4x2")return I("mat4x3");g()}if(E==="mat2x4"){if(Wg(A))return I("mat2x4");if(A==="mat3x2")return I("mat3x4");if(A==="mat4x2")return I("mat4");g()}if(E==="mat3x2"){if(A==="mat2x3")return I("mat2");if(Vg(A))return I("mat3x2");if(A==="mat4x3")return I("mat4x2");g()}if(Vg(E)){if(A==="mat2x3")return I("mat2x3");if(Vg(A))return I("mat3");if(A==="mat4x3")return I("mat4x3");g()}if(E==="mat3x4"){if(A==="mat2x3")return I("mat2x4");if(Vg(A))return I("mat3x4");if(A==="mat4x3")return I("mat4");g()}if(E==="mat4x2"){if(A==="mat2x4")return I("mat2");if(A==="mat3x4")return I("mat3x2");if(Tg(A))return I("mat4x2");g()}if(E==="mat4x3"){if(A==="mat2x4")return I("mat2x3");if(A==="mat3x4")return I("mat3");if(Tg(A))return I("mat4x3");g()}if(Tg(E)){if(A==="mat2x4")return I("mat2x4");if(A==="mat3x4")return I("mat3x4");if(Tg(A))return I("mat4");g()}throw new Error(`Invalid mul types: ${E}, ${A}`)}const tB=(E,A)=>new RE({a:E,b:A}),pE=(E,A)=>new JE({a:E,b:A}),fE=(E,A)=>new mE({a:E,b:A});class RE extends PI{constructor({a:A,b:g}){super({a:A,b:g,outKey:"sum",outTypeFunc:ct}),this.statements=({inputs:I,outputs:B})=>[`${B.sum} = ${I.a} + ${I.b};`]}}class JE extends PI{constructor({a:A,b:g}){super({a:A,b:g,outKey:"difference",outTypeFunc:FE}),this.statements=({inputs:I,outputs:B})=>[`${B.difference} = ${I.a} - ${I.b};`]}}class mE extends PI{constructor({a:A,b:g}){super({a:A,b:g,outKey:"product",outTypeFunc:kE}),this.statements=({inputs:I,outputs:B})=>[`${B.product} = ${I.a} * ${I.b};`]}}const SE=E=>new xE({a:E}),YE=(E,A)=>new LE({a:E,b:A});class xE extends zC{constructor({a:A}){super({a:A,outTypeFunc:g=>g,outKey:"normalize"}),this.statements=({inputs:g,outputs:I})=>[`${I.normalize} = normalize(${g.a});`]}}function UE(E){if(E==="float")return"vec2";if(E==="vec2")return"vec3";if(E==="vec3")return"vec4";throw new Error("Invalid type")}class LE extends PI{constructor({a:A,b:g}){const I=Mg(A),B=UE(I);super({a:A,b:g,outKey:"extend",outTypeFunc:()=>B}),this.statements=({inputs:Q,outputs:t})=>[`${t.extend} = ${B}(${Q.a}, ${Q.b});`]}}const bE=(E,{scale:A,scales:g,rotate:I,translate:B})=>new ZE({position:E,scale:A,scales:g,rotate:I,translate:B}).outputs.position,HE=(E,{scale:A,scales:g,rotate:I})=>new KE({dir:E,scale:A,scales:g,rotate:I}).outputs.dir;class ZE extends DA{constructor({position:A,scale:g,scales:I,rotate:B,translate:Q}){super({inTypes:{position:"vec3",scale:"float",scales:"vec3",rotate:"vec4",translate:"vec3"},outTypes:{position:"vec3"},inputs:{position:A,scale:g,scales:I,rotate:B,translate:Q},statements:({inputs:t,outputs:C})=>{const{position:i}=C;if(!i)return[];const{scale:s,scales:a,rotate:e,translate:n}=t;return[`${i} = ${t.position??"vec3(0.0, 0.0, 0.0)"};`,s?`${i} *= ${s};`:null,a?`${i} *= ${a};`:null,e?`${i} = quatVec(${e}, ${i});`:null,n?`${i} += ${n};`:null].filter(Boolean)}})}}class KE extends DA{constructor({dir:A,scale:g,scales:I,rotate:B}){super({inTypes:{dir:"vec3",scale:"float",scales:"vec3",rotate:"vec4"},outTypes:{dir:"vec3"},inputs:{dir:A,scale:g,scales:I,rotate:B},statements:({inputs:Q,outputs:t})=>{const{dir:C}=t;if(!C)return[];const{scale:i,scales:s,rotate:a}=Q;return[`${C} = ${Q.dir??"vec3(0.0, 0.0, 0.0)"};`,i?`${C} *= ${i};`:null,s?`${C} *= ${s};`:null,a?`${C} = quatVec(${a}, ${C});`:null].filter(Boolean)}})}}var qE=`precision highp float;\nprecision highp int;\nprecision highp sampler2D;\nprecision highp usampler2D;\nprecision highp isampler2D;\nprecision highp sampler2DArray;\nprecision highp usampler2DArray;\nprecision highp isampler2DArray;\nprecision highp sampler3D;\nprecision highp usampler3D;\nprecision highp isampler3D;\n\n#include \n\nuniform uint targetLayer;\nuniform int targetBase;\nuniform int targetCount;\n\nout uvec4 target;\n\n{{ GLOBALS }}\n\nvoid produceSplat(int index) {\n {{ STATEMENTS }}\n}\n\nvoid main() {\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\n int index = targetIndex - targetBase;\n\n if ((index >= 0) && (index < targetCount)) {\n produceSplat(index);\n } else {\n target = uvec4(0u, 0u, 0u, 0u);\n }\n}`;const j=class j{constructor(A={}){this.maxSplats=0,this.numSplats=0,this.packedArray=null,this.isInitialized=!1,this.target=null,this.source=null,this.needsUpdate=!0,this.extra={},this.dyno=new wt({packedSplats:this}),this.initialized=Promise.resolve(this),this.reinitialize(A)}reinitialize(A){this.isInitialized=!1,A.url||A.fileBytes||A.construct?this.initialized=this.asyncInitialize(A).then(()=>(this.isInitialized=!0,this)):(this.initialize(A),this.isInitialized=!0,this.initialized=Promise.resolve(this))}initialize(A){A.packedArray?(this.packedArray=A.packedArray,this.maxSplats=Math.floor(this.packedArray.length/4),this.maxSplats=Math.floor(this.maxSplats/v)*v,this.numSplats=Math.min(this.maxSplats,A.numSplats??Number.POSITIVE_INFINITY)):(this.maxSplats=A.maxSplats??0,this.numSplats=0),this.extra=A.extra??{}}async asyncInitialize(A){let{url:g,fileBytes:I,construct:B}=A;if(g&&(I=await fetch(g).then(async Q=>{if(!Q.ok)throw new Error(`${Q.status} "${Q.statusText}" fetching URL: ${g}`);return await Q.arrayBuffer()})),I){const Q=await ii({input:I,fileType:A.fileType,pathOrUrl:A.fileName??g});this.initialize(Q)}if(B){const Q=B(this);Q instanceof Promise&&await Q}}dispose(){this.target&&(this.target.dispose(),this.target=null),this.source&&(this.source.dispose(),this.source=null)}ensureSplats(A){const g=A<=this.maxSplats?this.maxSplats:Math.max(A,2*this.maxSplats),I=this.packedArray?this.packedArray.length/4:0;if(!this.packedArray||g>I){this.maxSplats=RA(g).maxSplats;const B=new Uint32Array(this.maxSplats*4);this.packedArray&&B.set(this.packedArray),this.packedArray=B}return this.packedArray}ensureSplatsSh(A,g){let I,B;if(A===0)return this.ensureSplats(g);if(A===1)I=2,B="sh1";else if(A===2)I=4,B="sh2";else if(A===3)I=4,B="sh3";else throw new Error(`Invalid level: ${A}`);let Q=this.extra[B]?this.extra[B].length/I:0;const t=g<=Q?Q:Math.max(g,2*Q);if(!this.extra[B]||t>Q){Q=RA(t).maxSplats;const C=new Uint32Array(Q*I);this.extra[B]&&C.set(this.extra[B]),this.extra[B]=C}return this.extra[B]}getSplat(A){if(!this.packedArray||A>=this.numSplats)throw new Error("Invalid index");return qB(this.packedArray,A)}setSplat(A,g,I,B,Q,t){const C=this.ensureSplats(A+1);eI(C,A,g.x,g.y,g.z,I.x,I.y,I.z,B.x,B.y,B.z,B.w,Q,t.r,t.g,t.b),this.numSplats=Math.max(this.numSplats,A+1)}pushSplat(A,g,I,B,Q){const t=this.ensureSplats(this.numSplats+1);eI(t,this.numSplats,A.x,A.y,A.z,g.x,g.y,g.z,I.x,I.y,I.z,I.w,B,Q.r,Q.g,Q.b),++this.numSplats}forEachSplat(A){if(!(!this.packedArray||!this.numSplats))for(let g=0;g{const Q=g,t=Math.ceil(B/v)*v;return g+=t,{base:Q,count:B}});return{maxSplats:g,mapping:I}}getTexture(){return this.target?this.target.texture:this.source||this.packedArray?this.maybeUpdateSource():j.getEmpty()}maybeUpdateSource(){if(!this.packedArray)throw new Error("No packed splats");if(this.needsUpdate||!this.source){if(this.needsUpdate=!1,this.source){const{width:A,height:g,depth:I}=this.source.image;this.maxSplats!==A*g*I&&(this.source.dispose(),this.source=null)}if(this.source)this.packedArray.buffer!==this.source.image.data.buffer&&(this.source.image.data=new Uint8Array(this.packedArray.buffer));else{const{width:A,height:g,depth:I}=RA(this.maxSplats);this.source=new Eg(this.packedArray,A,g,I),this.source.format=Fg,this.source.type=wg,this.source.internalFormat="RGBA32UI",this.source.needsUpdate=!0}this.source.needsUpdate=!0}return this.source}static getEmpty(){if(!j.emptySource){const{width:A,height:g,depth:I,maxSplats:B}=RA(1),Q=new Uint32Array(B*4);j.emptySource=new Eg(Q,A,g,I),j.emptySource.format=Fg,j.emptySource.type=wg,j.emptySource.internalFormat="RGBA32UI",j.emptySource.needsUpdate=!0}return j.emptySource}prepareProgramMaterial(A){let g=j.generatorProgram.get(A);if(!g){const B=OI({index:"int"},{output:"uvec4"},({index:Q})=>{A.inputs.index=Q;const t=A.outputs.gsplat;return{output:uE(t)}});j.programTemplate||(j.programTemplate=new rt(qE)),g=new ot({graph:B,inputs:{index:"index"},outputs:{output:"target"},template:j.programTemplate}),Object.assign(g.uniforms,{targetLayer:{value:0},targetBase:{value:0},targetCount:{value:0}}),j.generatorProgram.set(A,g)}const I=g.prepareMaterial();return j.mesh.material=I,{program:g,material:I}}saveRenderState(A){return{xrPresenting:A.xr.isPresenting,autoClear:A.autoClear,scissorTest:A.getScissorTest(),pixelRatio:A.getPixelRatio()}}resetRenderState(A,g){A.setRenderTarget(null),A.setPixelRatio(g.pixelRatio),A.xr.isPresenting=g.xrPresenting,A.autoClear=g.autoClear,A.setScissorTest(g.scissorTest)}generate({generator:A,base:g,count:I,renderer:B}){if(!this.target)throw new Error("Target must be initialized with ensureSplats");if(g+I>this.maxSplats)throw new Error("Base + count exceeds maxSplats");const{program:Q,material:t}=this.prepareProgramMaterial(A);Q.update();const C=this.saveRenderState(B),i=Math.ceil((g+I)/v)*v,s=v*zA;for(t.uniforms.targetBase.value=g,t.uniforms.targetCount.value=I;g[jB],value:{texture:nI.getEmpty(),numSplats:0},update:g=>{var I,B;return g.texture=((I=this.packedSplats)==null?void 0:I.getTexture())??nI.getEmpty(),g.numSplats=((B=this.packedSplats)==null?void 0:B.numSplats)??0,g}}),this.packedSplats=A}}var WE=`precision highp float;\nprecision highp int;\nprecision highp sampler2D;\nprecision highp usampler2D;\nprecision highp isampler2D;\nprecision highp sampler2DArray;\nprecision highp usampler2DArray;\nprecision highp isampler2DArray;\nprecision highp sampler3D;\nprecision highp usampler3D;\nprecision highp isampler3D;\n\n#include \n\nuniform uint targetLayer;\nuniform int targetBase;\nuniform int targetCount;\n\nout vec4 target;\n\n{{ GLOBALS }}\n\nvoid computeReadback(int index) {\n {{ STATEMENTS }}\n}\n\nvoid main() {\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\n int index = targetIndex - targetBase;\n\n if ((index >= 0) && (index < targetCount)) {\n computeReadback(index);\n } else {\n target = vec4(0.0, 0.0, 0.0, 0.0);\n }\n}`;const aA=class aA{constructor({renderer:A}={}){this.renderer=A,this.capacity=0,this.count=0}dispose(){this.target&&(this.target.dispose(),this.target=void 0)}ensureBuffer(A,g){const B=Math.ceil(Math.max(1,A)/v)*v*4;if(g.byteLength>=B)return g;const Q=new ArrayBuffer(B);if(g instanceof ArrayBuffer)return Q;const t=g.constructor;return new t(Q)}ensureCapacity(A){const{width:g,height:I,depth:B,maxSplats:Q}=RA(A);(!this.target||Q>this.capacity)&&(this.dispose(),this.capacity=Q,this.target=new xQ(g,I,B,{depthBuffer:!1,stencilBuffer:!1,generateMipmaps:!1,magFilter:Cg,minFilter:Cg}),this.target.texture.format=pI,this.target.texture.type=kI,this.target.texture.internalFormat="RGBA8")}prepareProgramMaterial(A){let g=aA.readbackProgram.get(A);if(!g){const B=OI({index:"int"},{rgba8:"vec4"},({index:Q})=>(A.inputs.index=Q,{rgba8:new ME({rgba8:A.outputs.rgba8})}));aA.programTemplate||(aA.programTemplate=new rt(WE)),g=new ot({graph:B,inputs:{index:"index"},outputs:{rgba8:"target"},template:aA.programTemplate}),Object.assign(g.uniforms,{targetLayer:{value:0},targetBase:{value:0},targetCount:{value:0}}),aA.readbackProgram.set(A,g)}const I=g.prepareMaterial();return aA.mesh.material=I,{program:g,material:I}}saveRenderState(A){return{xrPresenting:A.xr.isPresenting,autoClear:A.autoClear,scissorTest:A.getScissorTest(),pixelRatio:A.getPixelRatio()}}resetRenderState(A,g){A.setRenderTarget(null),A.setPixelRatio(g.pixelRatio),A.xr.isPresenting=g.xrPresenting,A.autoClear=g.autoClear,A.setScissorTest(g.scissorTest)}process({count:A,material:g}){const I=this.renderer;if(!I)throw new Error("No renderer");if(!this.target)throw new Error("No target");const B=v*zA;g.uniforms.targetBase.value=0,g.uniforms.targetCount.value=A;let Q=0;for(;QA)}render({reader:A,count:g,renderer:I}){if(this.renderer=I||this.renderer,!this.renderer)throw new Error("No renderer");this.ensureCapacity(g);const{program:B,material:Q}=this.prepareProgramMaterial(A);B.update();const t=this.saveRenderState(this.renderer);this.process({count:g,material:Q}),this.resetRenderState(this.renderer,t)}async readback({readback:A}){if(!this.renderer)throw new Error("No renderer");const g=this.saveRenderState(this.renderer),I=this.read({readback:A});return this.resetRenderState(this.renderer,g),I}async renderReadback({reader:A,count:g,renderer:I,readback:B}){if(this.renderer=I||this.renderer,!this.renderer)throw new Error("No renderer");this.ensureCapacity(g);const{program:Q,material:t}=this.prepareProgramMaterial(A);Q.update();const C=this.saveRenderState(this.renderer);this.process({count:g,material:t});const i=this.read({readback:B});return this.resetRenderState(this.renderer,C),i}getTexture(){var A;return(A=this.target)==null?void 0:A.texture}};aA.programTemplate=null,aA.readbackProgram=new Map,aA.geometry=new zI(2,2),aA.mesh=new PQ(aA.geometry,new LB({visible:!1})),aA.scene=new $Q().add(aA.mesh),aA.camera=new _Q;let _B=aA;const nA=class nA{constructor(A={}){this.capacity=0,this.count=0,this.array=null,this.readback=null,this.source=null,this.needsUpdate=!0,this.dyno=new Bg({key:"rgbaArray",type:lt,globals:()=>[yt],value:{texture:nA.getEmpty(),count:0},update:g=>{var I;return g.texture=((I=this.readback)==null?void 0:I.getTexture())??this.source??nA.getEmpty(),g.count=this.count,g}}),A.array?(this.array=A.array,this.capacity=Math.floor(this.array.length/4),this.capacity=Math.floor(this.capacity/v)*v,this.count=Math.min(this.capacity,A.count??Number.POSITIVE_INFINITY)):(this.capacity=A.capacity??0,this.count=0)}dispose(){this.readback&&(this.readback.dispose(),this.readback=null),this.source&&(this.source.dispose(),this.source=null)}ensureCapacity(A){var g;if(!this.array||A>(((g=this.array)==null?void 0:g.length)??0)/4){this.capacity=RA(A).maxSplats;const I=new Uint8Array(this.capacity*4);this.array&&I.set(this.array),this.array=I}return this.array}getTexture(){var g;let A=(g=this.readback)==null?void 0:g.getTexture();return(this.source||this.array)&&(A=this.maybeUpdateSource()),A??nA.getEmpty()}maybeUpdateSource(){if(!this.array)throw new Error("No array");if(this.needsUpdate||!this.source){if(this.needsUpdate=!1,this.source){const{width:A,height:g,depth:I}=this.source.image;this.capacity!==A*g*I&&(this.source.dispose(),this.source=null)}if(this.source)this.array.buffer!==this.source.image.data.buffer&&(this.source.image.data=new Uint8Array(this.array.buffer));else{const{width:A,height:g,depth:I}=RA(this.capacity);this.source=new Eg(this.array,A,g,I),this.source.format=pI,this.source.type=kI,this.source.internalFormat="RGBA8",this.source.needsUpdate=!0}this.source.needsUpdate=!0}return this.source}render({reader:A,count:g,renderer:I}){this.readback||(this.readback=new _B({renderer:I})),this.readback.render({reader:A,count:g,renderer:I}),this.capacity=this.readback.capacity,this.count=this.readback.count}fromPackedSplats({packedSplats:A,base:g,count:I,renderer:B}){const{dynoSplats:Q,dynoBase:t,dynoCount:C,reader:i}=nA.makeDynos();return Q.packedSplats=A,t.value=g,C.value=I,this.render({reader:i,count:I,renderer:B}),this}async read(){if(!this.readback)throw new Error("No readback");return(!this.array||this.array.length{if(!Q)throw new Error("index is undefined");Q=tB(Q,g);const t=rE(A,Q,g,I);return{rgba8:BB(t).outputs.rgba}});nA.dynos={dynoSplats:A,dynoBase:g,dynoCount:I,reader:B}}return nA.dynos}};nA.emptySource=null,nA.dynos=null;let Dt=nA;const lt={type:"RgbaArray"},yt=VA(`\n struct RgbaArray {\n sampler2DArray texture;\n int count;\n };\n`);function VE(E,A){return new DA({inTypes:{rgba:lt,index:"int"},outTypes:{rgba:"vec4"},inputs:{rgba:E,index:A},globals:()=>[yt],statements:({inputs:I,outputs:B})=>gg(`\n if ((index >= 0) && (index < ${I.rgba}.count)) {\n ${B.rgba} = texelFetch(${I.rgba}.texture, splatTexCoord(index), 0);\n } else {\n ${B.rgba} = vec4(0.0, 0.0, 0.0, 0.0);\n }\n `)}).outputs.rgba}function TE(E){switch(E){case"all":return 0;case"plane":return 1;case"sphere":return 2;case"box":return 3;case"ellipsoid":return 4;case"cylinder":return 5;case"capsule":return 6;case"infinite_cone":return 7;default:throw new Error(`Unknown SDF type: ${E}`)}}function vE(E){switch(E){case"multiply":return 0;case"set_rgb":return 1;case"add_rgba":return 2;default:throw new Error(`Unknown blend mode: ${E}`)}}class zE extends MA{constructor(A={}){super();const{type:g,invert:I,opacity:B,color:Q,displace:t,radius:C}=A;this.type=g??"sphere",this.invert=I??!1,this.opacity=B??1,this.color=Q??new ug(1,1,1),this.displace=t??new D(0,0,0),this.radius=C??0}}const iB=class iB extends MA{constructor(A={}){const{name:g,rgbaBlendMode:I="multiply",sdfSmooth:B=0,softEdge:Q=0,invert:t=!1,sdfs:C=null}=A;super(),this.rgbaBlendMode=I,this.sdfSmooth=B,this.softEdge=Q,this.invert=t,this.sdfs=C,this.ordering=iB.nextOrdering++,this.name=g??`Edit ${this.ordering}`}addSdf(A){this.sdfs==null&&(this.sdfs=[]),this.sdfs.push(A)}removeSdf(A){this.sdfs!=null&&(this.sdfs=this.sdfs.filter(g=>g!==A))}};iB.nextOrdering=1;let $B=iB;class XE{constructor({maxSdfs:A,maxEdits:g}){this.maxSdfs=Math.max(16,A??0),this.numSdfs=0,this.sdfData=new Uint32Array(this.maxSdfs*8*4),this.sdfFloatData=new Float32Array(this.sdfData.buffer),this.sdfTexture=this.newSdfTexture(this.sdfData,this.maxSdfs),this.dynoSdfArray=new Bg({key:"sdfArray",type:ut,globals:()=>[dt],value:{numSdfs:0,sdfTexture:this.sdfTexture},update:I=>(I.numSdfs=this.numSdfs,I.sdfTexture=this.sdfTexture,I)}),this.maxEdits=Math.max(16,g??0),this.numEdits=0,this.editData=new Uint32Array(this.maxEdits*4),this.editFloatData=new Float32Array(this.editData.buffer),this.dynoNumEdits=new OB({value:0}),this.dynoEdits=this.newEdits(this.editData,this.maxEdits)}newSdfTexture(A,g){const I=new bC(A,8,g,Fg,wg);return I.internalFormat="RGBA32UI",I.needsUpdate=!0,I}newEdits(A,g){return new Bg({key:"edits",type:"uvec4",count:g,globals:()=>[Mt],value:A})}ensureCapacity({maxSdfs:A,maxEdits:g}){let I=!1;return A>this.sdfTexture.image.height&&(this.sdfTexture.dispose(),this.maxSdfs=Math.max(this.maxSdfs*2,A),this.sdfData=new Uint32Array(this.maxSdfs*8*4),this.sdfFloatData=new Float32Array(this.sdfData.buffer),this.sdfTexture=this.newSdfTexture(this.sdfData,this.maxSdfs)),g>(this.dynoEdits.count??0)&&(this.maxEdits=Math.max(this.maxEdits*2,g),this.editData=new Uint32Array(this.maxEdits*4),this.editFloatData=new Float32Array(this.editData.buffer),this.dynoEdits=this.newEdits(this.editData,this.maxEdits),I=!0),I}updateEditData(A,g){const I=this.editData[A]!==g;return this.editData[A]=g,I}updateEditFloatData(A,g){Xg[0]=g;const I=this.editFloatData[A]!==Xg[0];return I&&(this.editFloatData[A]=Xg[0]),I}encodeEdit(A,{sdfFirst:g,sdfCount:I,invert:B,rgbaBlendMode:Q,softEdge:t,sdfSmooth:C}){const i=A*4;let s=!1;return s=this.updateEditData(i+0,Q|(B?256:0))||s,s=this.updateEditData(i+1,g|I<<16)||s,s=this.updateEditFloatData(i+2,t)||s,s=this.updateEditFloatData(i+3,C)||s,s}updateSdfData(A,g){const I=this.sdfData[A]!==g;return this.sdfData[A]=g,I}updateSdfFloatData(A,g){Xg[0]=g;const I=this.sdfFloatData[A]!==Xg[0];return I&&(this.sdfFloatData[A]=Xg[0]),I}encodeSdf(A,{sdfType:g,invert:I,center:B,quaternion:Q,scale:t,sizes:C},i){const s=A*32,a=g|(I?256:0);let e=!1;e=this.updateSdfFloatData(s+0,(B==null?void 0:B.x)??0)||e,e=this.updateSdfFloatData(s+1,(B==null?void 0:B.y)??0)||e,e=this.updateSdfFloatData(s+2,(B==null?void 0:B.z)??0)||e,e=this.updateSdfData(s+3,a)||e,e=this.updateSdfFloatData(s+4,(Q==null?void 0:Q.x)??0)||e,e=this.updateSdfFloatData(s+5,(Q==null?void 0:Q.y)??0)||e,e=this.updateSdfFloatData(s+6,(Q==null?void 0:Q.z)??0)||e,e=this.updateSdfFloatData(s+7,(Q==null?void 0:Q.w)??0)||e,e=this.updateSdfFloatData(s+8,(t==null?void 0:t.x)??0)||e,e=this.updateSdfFloatData(s+9,(t==null?void 0:t.y)??0)||e,e=this.updateSdfFloatData(s+10,(t==null?void 0:t.z)??0)||e,e=this.updateSdfData(s+11,0)||e,e=this.updateSdfFloatData(s+12,(C==null?void 0:C.x)??0)||e,e=this.updateSdfFloatData(s+13,(C==null?void 0:C.y)??0)||e,e=this.updateSdfFloatData(s+14,(C==null?void 0:C.z)??0)||e,e=this.updateSdfFloatData(s+15,(C==null?void 0:C.w)??0)||e;const n=Math.min(4,i.length);for(let o=0;oe+n.length,0),I=this.ensureCapacity({maxEdits:A.length,maxSdfs:g}),B=[new lA,new lA],Q=new D,t=new sA,C=new D,i=new lA;let s=0,a=I;A.length!==this.dynoNumEdits.value&&(this.dynoNumEdits.value=A.length,this.numEdits=A.length,a=!0);for(const[e,{edit:n,sdfs:o}]of A.entries()){a=this.encodeEdit(e,{sdfFirst:s,sdfCount:o.length,invert:n.invert,rgbaBlendMode:vE(n.rgbaBlendMode),softEdge:n.softEdge,sdfSmooth:n.sdfSmooth})||a;let r=!1;for(const h of o)i.set(h.scale.x,h.scale.y,h.scale.z,h.radius),h.scale.setScalar(1),h.updateMatrixWorld(),h.matrixWorld.clone().invert().decompose(Q,t,C),h.scale.set(i.x,i.y,i.z),h.updateMatrixWorld(),B[0].set(h.color.r,h.color.g,h.color.b,h.opacity),B[1].set(h.displace.x,h.displace.y,h.displace.z,1),r=this.encodeSdf(s,{sdfType:TE(h.type),invert:h.invert,center:Q,quaternion:t,scale:C,sizes:i},B)||r,s+=1;this.numSdfs=s,r&&(this.sdfTexture.needsUpdate=!0),a||(a=r)}return{updated:a,dynoUpdated:I}}modify(A){return jE(A,this.dynoSdfArray,this.dynoNumEdits,this.dynoEdits)}}const ut={type:"SdfArray"},dt=VA(`\n struct SdfArray {\n int numSdfs;\n usampler2D sdfTexture;\n };\n\n void unpackSdfArray(\n usampler2D sdfTexture, int sdfIndex, out uint flags,\n out vec3 center, out vec4 quaternion, out vec3 scale, out vec4 sizes,\n int numValues, out vec4 values[4]\n ) {\n uvec4 temp = texelFetch(sdfTexture, ivec2(0, sdfIndex), 0);\n flags = temp.w;\n center = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z));\n\n temp = texelFetch(sdfTexture, ivec2(1, sdfIndex), 0);\n quaternion = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n\n temp = texelFetch(sdfTexture, ivec2(2, sdfIndex), 0);\n scale = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z));\n\n temp = texelFetch(sdfTexture, ivec2(3, sdfIndex), 0);\n sizes = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n\n for (int i = 0; i < numValues; ++i) {\n temp = texelFetch(sdfTexture, ivec2(4 + i, sdfIndex), 0);\n values[i] = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n }\n }\n\n const uint SDF_FLAG_TYPE = 0xFFu;\n const uint SDF_FLAG_INVERT = 1u << 8u;\n\n const uint SDF_TYPE_ALL = 0u;\n const uint SDF_TYPE_PLANE = 1u;\n const uint SDF_TYPE_SPHERE = 2u;\n const uint SDF_TYPE_BOX = 3u;\n const uint SDF_TYPE_ELLIPSOID = 4u;\n const uint SDF_TYPE_CYLINDER = 5u;\n const uint SDF_TYPE_CAPSULE = 6u;\n const uint SDF_TYPE_INFINITE_CONE = 7u;\n\n float evaluateSdfArray(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos,\n float smoothK, int numValues, out vec4 outValues[4]\n ) {\n float distanceAccum = (smoothK == 0.0) ? 1.0 / 0.0 : 0.0;\n float maxExp = -1.0 / 0.0;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] = vec4(0.0);\n }\n\n uint flags;\n vec3 center, scale;\n vec4 quaternion, sizes;\n vec4 values[4];\n\n int sdfLast = min(sdfFirst + sdfCount, numSdfs);\n for (int index = sdfFirst; index < sdfLast; ++index) {\n unpackSdfArray(sdfTexture, index, flags, center, quaternion, scale, sizes, numValues, values);\n uint sdfType = flags & SDF_FLAG_TYPE;\n vec3 sdfPos = quatVec(quaternion, pos * scale) + center;\n\n float distance;\n switch (sdfType) {\n case SDF_TYPE_ALL:\n distance = -1.0 / 0.0;\n break;\n case SDF_TYPE_PLANE: {\n distance = sdfPos.z;\n break;\n }\n case SDF_TYPE_SPHERE: {\n distance = length(sdfPos) - sizes.w;\n break;\n }\n case SDF_TYPE_BOX: {\n vec3 q = abs(sdfPos) - sizes.xyz + sizes.w;\n distance = length(max(q, 0.0)) + min(max(q.x, max(q.y, q.z)), 0.0) - sizes.w;\n break;\n }\n case SDF_TYPE_ELLIPSOID: {\n vec3 sizes = sizes.xyz;\n float k0 = length(sdfPos / sizes);\n float k1 = length(sdfPos / dot(sizes, sizes));\n distance = k0 * (k0 - 1.0) / k1;\n break;\n }\n case SDF_TYPE_CYLINDER: {\n vec2 d = abs(vec2(length(sdfPos.xz), sdfPos.y)) - sizes.wy;\n distance = min(max(d.x, d.y), 0.0) + length(max(d, 0.0));\n break;\n }\n case SDF_TYPE_CAPSULE: {\n sdfPos.y -= clamp(sdfPos.y, -0.5 * sizes.y, 0.5 * sizes.y);\n distance = length(sdfPos) - sizes.w;\n break;\n }\n case SDF_TYPE_INFINITE_CONE: {\n float angle = 0.25 * PI * sizes.w;\n vec2 c = vec2(sin(angle), cos(angle));\n vec2 q = vec2(length(sdfPos.xy), -sdfPos.z);\n float d = length(q - c * max(dot(q, c), 0.0));\n distance = d * (((q.x * c.y - q.y * c.x) < 0.0) ? -1.0 : 1.0);\n break;\n }\n }\n\n if ((flags & SDF_FLAG_INVERT) != 0u) {\n distance = -distance;\n }\n\n if (smoothK == 0.0) {\n if (distance < distanceAccum) {\n distanceAccum = distance;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] = values[i];\n }\n }\n } else {\n float scaledDistance = -distance / smoothK;\n if (scaledDistance > maxExp) {\n float scale = exp(maxExp - scaledDistance);\n distanceAccum *= scale;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] *= scale;\n }\n maxExp = scaledDistance;\n }\n\n float weight = exp(scaledDistance - maxExp);\n distanceAccum += weight;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] += weight * values[i];\n }\n }\n }\n\n if (smoothK == 0.0) {\n return distanceAccum;\n } else {\n // Very distant SDFs may result in 0 accumulation\n if (distanceAccum == 0.0) {\n return 1.0 / 0.0;\n }\n for (int i = 0; i < numValues; ++i) {\n outValues[i] /= distanceAccum;\n }\n return (-log(distanceAccum) - maxExp) * smoothK;\n }\n }\n\n float modulateSdfArray(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos,\n float smoothK, int numValues, out vec4 values[4],\n float softEdge, bool invert\n ) {\n float distance = evaluateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, numValues, values);\n if (invert) {\n distance = -distance;\n }\n\n return (softEdge == 0.0) ? ((distance < 0.0) ? 1.0 : 0.0)\n : clamp(-distance / softEdge + 0.5, 0.0, 1.0);\n }\n`),Mt=VA(`\n const uint EDIT_FLAG_BLEND = 0xFFu;\n const uint EDIT_BLEND_MULTIPLY = 0u;\n const uint EDIT_BLEND_SET_RGB = 1u;\n const uint EDIT_BLEND_ADD_RGBA = 2u;\n const uint EDIT_FLAG_INVERT = 0x100u;\n\n void decodeEdit(\n uvec4 packedEdit, out int sdfFirst, out int sdfCount,\n out bool invert, out uint rgbaBlendMode, out float softEdge, out float sdfSmooth\n ) {\n rgbaBlendMode = packedEdit.x & EDIT_FLAG_BLEND;\n invert = (packedEdit.x & EDIT_FLAG_INVERT) != 0u;\n\n sdfFirst = int(packedEdit.y & 0xFFFFu);\n sdfCount = int(packedEdit.y >> 16u);\n\n softEdge = uintBitsToFloat(packedEdit.z);\n sdfSmooth = uintBitsToFloat(packedEdit.w);\n }\n\n void applyRgbaDisplaceEdit(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, inout vec3 pos,\n float smoothK, float softEdge, bool invert, uint rgbaBlendMode, inout vec4 rgba\n ) {\n vec4 values[4];\n float modulate = modulateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, 2, values, softEdge, invert);\n // On Android, moving values[0] is necessary to work around a compiler bug.\n vec4 sdfRgba = values[0];\n vec4 sdfDisplaceScale = values[1];\n\n vec4 target;\n switch (rgbaBlendMode) {\n case EDIT_BLEND_MULTIPLY:\n target = rgba * sdfRgba;\n break;\n case EDIT_BLEND_SET_RGB:\n target = vec4(sdfRgba.rgb, rgba.a * sdfRgba.a);\n break;\n case EDIT_BLEND_ADD_RGBA:\n target = rgba + sdfRgba;\n break;\n default:\n // Debug output if blend mode not set\n target = vec4(fract(pos), 1.0);\n }\n rgba = mix(rgba, target, modulate);\n pos += sdfDisplaceScale.xyz * modulate;\n }\n\n void applyPackedRgbaDisplaceEdit(uvec4 packedEdit, usampler2D sdfTexture, int numSdfs, inout vec3 pos, inout vec4 rgba) {\n int sdfFirst, sdfCount;\n bool invert;\n uint rgbaBlendMode;\n float softEdge, sdfSmooth;\n decodeEdit(packedEdit, sdfFirst, sdfCount, invert, rgbaBlendMode, softEdge, sdfSmooth);\n applyRgbaDisplaceEdit(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, sdfSmooth, softEdge, invert, rgbaBlendMode, rgba);\n }\n`);function jE(E,A,g,I){return new DA({inTypes:{gsplat:GA,sdfArray:ut,numEdits:"int",rgbaDisplaceEdits:"uvec4"},outTypes:{gsplat:GA},globals:()=>[dt,Mt],inputs:{gsplat:E,sdfArray:A,numEdits:g,rgbaDisplaceEdits:I},statements:({inputs:Q,outputs:t})=>{const{sdfArray:C,numEdits:i,rgbaDisplaceEdits:s}=Q,{gsplat:a}=t;return gg(`\n ${a} = ${Q.gsplat};\n if (isGsplatActive(${a}.flags)) {\n for (int editIndex = 0; editIndex < ${i}; ++editIndex) {\n applyPackedRgbaDisplaceEdit(\n ${s}[editIndex], ${C}.sdfTexture, ${C}.numSdfs,\n ${a}.center, ${a}.rgba\n );\n }\n }\n `)}}).outputs.gsplat}const Xg=new Float32Array(1);class CB{constructor(){this.scale=new QB({value:Number.NEGATIVE_INFINITY}),this.rotate=new nt({value:new sA(Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY)}),this.translate=new GE({value:new D(Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY)})}apply(A){return bE(A,{scale:this.scale,rotate:this.rotate,translate:this.translate})}applyDir(A){return HE(A,{rotate:this.rotate})}applyGsplat(A){return hE(A,{scale:this.scale,rotate:this.rotate,translate:this.translate})}updateFromMatrix(A){const g=new D,I=new sA,B=new D;A.decompose(B,I,g);const Q=(g.x+g.y+g.z)/3;let t=!1;return Q!==this.scale.value&&(this.scale.value=Q,t=!0),B.equals(this.translate.value)||(this.translate.value.copy(B),t=!0),I.equals(this.rotate.value)||(this.rotate.value.copy(I),t=!0),t}update(A){return A.updateMatrixWorld(),this.updateFromMatrix(A.matrixWorld)}}class OE extends MA{constructor({numSplats:A,generator:g,construct:I,update:B}){if(super(),this.numSplats=A??0,this.generator=g,this.frameUpdate=B,this.version=0,I){const Q=I(this);Object.assign(this,Q)}}updateVersion(){this.version+=1}set needsUpdate(A){A&&this.updateVersion()}}const hg=class hg extends OE{constructor(A={}){const g=new CB,I=new CB,B=new CB,Q=new CB,t=new nt({value:new lA(Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY)}),C=new QB({value:0}),i=new QB({value:0}),s={transform:g,viewToWorld:I,worldToView:B,viewToObject:Q,recolor:t,time:C,deltaTime:i};if(super({update:({time:a,deltaTime:e,viewToWorld:n,globalEdits:o})=>this.update({time:a,deltaTime:e,viewToWorld:n,globalEdits:o})}),this.isInitialized=!1,this.recolor=new ug(1,1,1),this.opacity=1,this.enableViewToObject=!1,this.enableViewToWorld=!1,this.enableWorldToView=!1,this.skinning=null,this.edits=null,this.rgbaDisplaceEdits=null,this.splatRgba=null,this.maxSh=3,this.packedSplats=A.packedSplats??new nI,this.numSplats=this.packedSplats.numSplats,this.editable=A.editable??!0,this.onFrame=A.onFrame,this.context=s,this.objectModifier=A.objectModifier,this.worldModifier=A.worldModifier,this.updateGenerator(),A.url||A.fileBytes||A.constructSplats||A.packedSplats&&!A.packedSplats.isInitialized)this.initialized=this.asyncInitialize(A).then(async()=>{if(this.updateGenerator(),this.isInitialized=!0,A.onLoad){const a=A.onLoad(this);a instanceof Promise&&await a}return this});else if(this.isInitialized=!0,this.initialized=Promise.resolve(this),A.onLoad){const a=A.onLoad(this);a instanceof Promise&&(this.initialized=a.then(()=>this))}}async asyncInitialize(A){const{url:g,fileBytes:I,fileType:B,fileName:Q,maxSplats:t,constructSplats:C}=A;if(g||I||C){const i={url:g,fileBytes:I,fileType:B,fileName:Q,maxSplats:t,construct:C};this.packedSplats.reinitialize(i)}this.packedSplats&&(await this.packedSplats.initialized,this.numSplats=this.packedSplats.numSplats,this.updateGenerator())}static async staticInitialize(){await NI(),hg.isStaticInitialized=!0}pushSplat(A,g,I,B,Q){this.packedSplats.pushSplat(A,g,I,B,Q)}forEachSplat(A){this.packedSplats.forEachSplat(A)}dispose(){this.packedSplats.dispose()}constructGenerator(A){const{transform:g,viewToObject:I,recolor:B}=A,Q=OI({index:"int"},{gsplat:GA},({index:t})=>{if(!t)throw new Error("index is undefined");let C=oE(this.packedSplats.dyno,t);if(this.maxSh>=1){const{sh1Texture:s,sh2Texture:a,sh3Texture:e}=this.ensureShTextures();if(s){const n=I.translate,{center:o}=BB(C).outputs,r=SE(pE(o,n));let h=Ai(C,s,r);this.maxSh>=2&&a&&(h=tB(h,gi(C,a,r))),this.maxSh>=3&&e&&(h=tB(h,Ii(C,e,r)));let{rgba:c}=BB(C).outputs;c=tB(c,YE(h,VC("float",0))),C=XB({gsplat:C,rgba:c})}}if(this.splatRgba){const s=VE(this.splatRgba.dyno,t);C=XB({gsplat:C,rgba:s})}this.skinning&&(C=this.skinning.modify(C)),this.objectModifier&&(C=this.objectModifier.apply({gsplat:C}).gsplat),C=g.applyGsplat(C);const i=fE(B,BB(C).outputs.rgba);return C=XB({gsplat:C,rgba:i}),this.rgbaDisplaceEdits&&(C=this.rgbaDisplaceEdits.modify(C)),this.worldModifier&&(C=this.worldModifier.apply({gsplat:C}).gsplat),{gsplat:C}});this.generator=Q}updateGenerator(){this.constructGenerator(this.context)}update({time:A,viewToWorld:g,deltaTime:I,globalEdits:B}){var c;this.numSplats=this.packedSplats.numSplats,this.context.time.value=A,this.context.deltaTime.value=I,hg.dynoTime.value=A;const{transform:Q,viewToObject:t,recolor:C}=this.context;let i=Q.update(this);this.context.viewToWorld.updateFromMatrix(g)&&this.enableViewToWorld&&(i=!0);const s=g.clone().invert();this.context.worldToView.updateFromMatrix(s)&&this.enableWorldToView&&(i=!0);const n=new cA().compose(Q.translate.value,Q.rotate.value,new D().setScalar(Q.scale.value)).invert().multiply(g);t.updateFromMatrix(n)&&(this.enableViewToObject||this.packedSplats.extra.sh1)&&(i=!0);const o=new lA(this.recolor.r,this.recolor.g,this.recolor.b,this.opacity);o.equals(C.value)||(C.value.copy(o),i=!0);const r=this.editable?(this.edits??[]).concat(B):[];this.editable&&!this.edits&&this.traverseVisible(w=>{w instanceof $B&&r.push(w)}),r.sort((w,y)=>w.ordering-y.ordering);const h=r.map(w=>{if(w.sdfs!=null)return{edit:w,sdfs:w.sdfs};const y=[];return w.traverseVisible(l=>{l instanceof zE&&y.push(l)}),{edit:w,sdfs:y}});if(h.length>0&&!this.rgbaDisplaceEdits){const w=h.length,y=h.reduce((l,u)=>l+u.sdfs.length,0);this.rgbaDisplaceEdits=new XE({maxEdits:w,maxSdfs:y}),this.updateGenerator()}if(this.rgbaDisplaceEdits){const w=this.rgbaDisplaceEdits.update(h);i||(i=w.updated),w.dynoUpdated&&this.updateGenerator()}i&&this.updateVersion(),(c=this.onFrame)==null||c.call(this,{mesh:this,time:A,deltaTime:I})}raycast(A,g){if(!this.packedSplats.packedArray||!this.packedSplats.numSplats)return;const{near:I,far:B,ray:Q}=A,t=this.matrixWorld.clone().invert(),C=new TA().setFromMatrix4(t),i=Q.origin.clone().applyMatrix4(t),s=Q.direction.clone().applyMatrix3(C),a=new D;t.decompose(new D,new sA,a),(a.x*a.y*a.z)**(1/3);const n=Kt(i.x,i.y,i.z,s.x,s.y,s.z,I,B,this.packedSplats.numSplats,this.packedSplats.packedArray,!0);for(const o of n){const r=Q.direction.clone().multiplyScalar(o).add(Q.origin);g.push({distance:o,point:r,object:this})}}ensureShTextures(){if(!this.packedSplats.extra.sh1)return{};let A=this.packedSplats.extra.sh1Texture;if(!A){let B=this.packedSplats.extra.sh1;const{width:Q,height:t,depth:C,maxSplats:i}=RA(B.length/2);if(B.length> 25,\n int(packed.x << 18u) >> 25,\n int(packed.x << 11u) >> 25\n )) / 63.0;\n vec3 sh1_1 = vec3(ivec3(\n int(packed.x << 4u) >> 25,\n int((packed.x >> 3u) | (packed.y << 29u)) >> 25,\n int(packed.y << 22u) >> 25\n )) / 63.0;\n vec3 sh1_2 = vec3(ivec3(\n int(packed.y << 15u) >> 25,\n int(packed.y << 8u) >> 25,\n int(packed.y << 1u) >> 25\n )) / 63.0;\n\n return sh1_0 * (-0.4886025 * viewDir.y)\n + sh1_1 * (0.4886025 * viewDir.z)\n + sh1_2 * (-0.4886025 * viewDir.x);\n }\n`),_E=VA(`\n vec3 evaluateSH2(Gsplat gsplat, usampler2DArray sh2, vec3 viewDir) {\n // Extract sint8 values packed into 4 x uint32\n uvec4 packed = texelFetch(sh2, splatTexCoord(gsplat.index), 0);\n vec3 sh2_0 = vec3(ivec3(\n int(packed.x << 24u) >> 24,\n int(packed.x << 16u) >> 24,\n int(packed.x << 8u) >> 24\n )) / 127.0;\n vec3 sh2_1 = vec3(ivec3(\n int(packed.x) >> 24,\n int(packed.y << 24u) >> 24,\n int(packed.y << 16u) >> 24\n )) / 127.0;\n vec3 sh2_2 = vec3(ivec3(\n int(packed.y << 8u) >> 24,\n int(packed.y) >> 24,\n int(packed.z << 24u) >> 24\n )) / 127.0;\n vec3 sh2_3 = vec3(ivec3(\n int(packed.z << 16u) >> 24,\n int(packed.z << 8u) >> 24,\n int(packed.z) >> 24\n )) / 127.0;\n vec3 sh2_4 = vec3(ivec3(\n int(packed.w << 24u) >> 24,\n int(packed.w << 16u) >> 24,\n int(packed.w << 8u) >> 24\n )) / 127.0;\n\n return sh2_0 * (1.0925484 * viewDir.x * viewDir.y)\n + sh2_1 * (1.0925484 * viewDir.y * viewDir.z)\n + sh2_2 * (0.3153915 * (2.0 * viewDir.z * viewDir.z - viewDir.x * viewDir.x - viewDir.y * viewDir.y))\n + sh2_3 * (1.0925484 * viewDir.x * viewDir.z)\n + sh2_4 * (0.5462742 * (viewDir.x * viewDir.x - viewDir.y * viewDir.y));\n }\n`),$E=VA(`\n vec3 evaluateSH3(Gsplat gsplat, usampler2DArray sh3, vec3 viewDir) {\n // Extract sint6 values packed into 4 x uint32\n uvec4 packed = texelFetch(sh3, splatTexCoord(gsplat.index), 0);\n vec3 sh3_0 = vec3(ivec3(\n int(packed.x << 26u) >> 26,\n int(packed.x << 20u) >> 26,\n int(packed.x << 14u) >> 26\n )) / 31.0;\n vec3 sh3_1 = vec3(ivec3(\n int(packed.x << 8u) >> 26,\n int(packed.x << 2u) >> 26,\n int((packed.x >> 4u) | (packed.y << 28u)) >> 26\n )) / 31.0;\n vec3 sh3_2 = vec3(ivec3(\n int(packed.y << 22u) >> 26,\n int(packed.y << 16u) >> 26,\n int(packed.y << 10u) >> 26\n )) / 31.0;\n vec3 sh3_3 = vec3(ivec3(\n int(packed.y << 4u) >> 26,\n int((packed.y >> 2u) | (packed.z << 30u)) >> 26,\n int(packed.z << 24u) >> 26\n )) / 31.0;\n vec3 sh3_4 = vec3(ivec3(\n int(packed.z << 18u) >> 26,\n int(packed.z << 12u) >> 26,\n int(packed.z << 6u) >> 26\n )) / 31.0;\n vec3 sh3_5 = vec3(ivec3(\n int(packed.z) >> 26,\n int(packed.w << 26u) >> 26,\n int(packed.w << 20u) >> 26\n )) / 31.0;\n vec3 sh3_6 = vec3(ivec3(\n int(packed.w << 14u) >> 26,\n int(packed.w << 8u) >> 26,\n int(packed.w << 2u) >> 26\n )) / 31.0;\n\n float xx = viewDir.x * viewDir.x;\n float yy = viewDir.y * viewDir.y;\n float zz = viewDir.z * viewDir.z;\n float xy = viewDir.x * viewDir.y;\n float yz = viewDir.y * viewDir.z;\n float zx = viewDir.z * viewDir.x;\n\n return sh3_0 * (-0.5900436 * viewDir.y * (3.0 * xx - yy))\n + sh3_1 * (2.8906114 * xy * viewDir.z) +\n + sh3_2 * (-0.4570458 * viewDir.y * (4.0 * zz - xx - yy))\n + sh3_3 * (0.3731763 * viewDir.z * (2.0 * zz - 3.0 * xx - 3.0 * yy))\n + sh3_4 * (-0.4570458 * viewDir.x * (4.0 * zz - xx - yy))\n + sh3_5 * (1.4453057 * viewDir.z * (xx - yy))\n + sh3_6 * (-0.5900436 * viewDir.x * (xx - 3.0 * yy));\n }\n`);function Ai(E,A,g){return ZB({inTypes:{gsplat:GA,sh1:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:E,sh1:A,viewDir:g},globals:()=>[Ig,PE],statements:({inputs:I,outputs:B})=>gg(`\n if (isGsplatActive(${I.gsplat}.flags)) {\n ${B.rgb} = evaluateSH1(${I.gsplat}, ${I.sh1}, ${I.viewDir});\n } else {\n ${B.rgb} = vec3(0.0);\n }\n `)}).outputs.rgb}function gi(E,A,g){return ZB({inTypes:{gsplat:GA,sh2:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:E,sh2:A,viewDir:g},globals:()=>[Ig,_E],statements:({inputs:I,outputs:B})=>gg(`\n if (isGsplatActive(${I.gsplat}.flags)) {\n ${B.rgb} = evaluateSH2(${I.gsplat}, ${I.sh2}, ${I.viewDir});\n } else {\n ${B.rgb} = vec3(0.0);\n }\n `)}).outputs.rgb}function Ii(E,A,g){return ZB({inTypes:{gsplat:GA,sh3:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:E,sh3:A,viewDir:g},globals:()=>[Ig,$E],statements:({inputs:I,outputs:B})=>gg(`\n if (isGsplatActive(${I.gsplat}.flags)) {\n ${B.rgb} = evaluateSH3(${I.gsplat}, ${I.sh3}, ${I.viewDir});\n } else {\n ${B.rgb} = vec3(0.0);\n }\n `)}).outputs.rgb}function Bi(E){return new Worker(self.location.href,{name:E==null?void 0:E.name})}class Qi{constructor(){this.messages={},this.messageIdNext=0,this.worker=new Bi,this.worker.onmessage=A=>this.onMessage(A)}makeMessageId(){return++this.messageIdNext}makeMessagePromiseId(){const A=this.makeMessageId(),g=new Promise((I,B)=>{this.messages[A]={resolve:I,reject:B}});return{id:A,promise:g}}onMessage(A){const{id:g,result:I,error:B}=A.data,Q=this.messages[g];Q&&(delete this.messages[g],B?Q.reject(B):Q.resolve(I))}async call(A,g){const{id:I,promise:B}=this.makeMessagePromiseId();return this.worker.postMessage({name:A,args:g,id:I},{transfer:tt(g)}),B}}let Nt=4,EB=0;const Ft=[],kt=[];async function ti(){const E=Ft.shift();if(E)return E;if(EB{kt.push(A)})}function Ci(E){if(EB>Nt){EB-=1;return}const A=kt.shift();if(A){A(E);return}Ft.push(E)}async function oI(E){const A=await ti();try{return await E(A)}finally{Ci(A)}}var jg=(E=>(E.PLY="ply",E.WLG0="wlg0",E.SPZ="spz",E.SPLAT="splat",E.KSPLAT="ksplat",E))(jg||{});function pt(E){const A=new DataView(E.buffer);if((A.getUint32(0,!0)&16777215)===7957616)return"ply";if(A.getUint32(0,!0)===809978967)return"wlg0";if((A.getUint32(0,!0)&16777215)===559903){const g=CE(E,4);return new DataView(g.buffer).getUint32(0,!0)===1347635022?"spz":void 0}}function Ei(E){const A=E.split(/[?#]/,1)[0],g=Math.max(A.lastIndexOf("/"),A.lastIndexOf("\\\\")),I=A.slice(g+1),B=I.lastIndexOf(".");return B<=0||B===I.length-1?"":I.slice(B+1).toLowerCase()}function ft(E){const A=Ei(E);if(A==="ply")return"ply";if(A==="wlg")return"wlg0";if(A==="spz")return"spz";if(A==="splat")return"splat";if(A==="ksplat")return"ksplat"}async function ii({input:E,fileType:A,pathOrUrl:g}){const I=E instanceof ArrayBuffer?new Uint8Array(E):E;let B=A;switch(A||(B=pt(I),!B&&g&&(B=ft(g))),B){case"wlg0":return await oI(async Q=>{const{packedArray:t,numSplats:C}=await Q.call("decodeWlg",{fileBytes:I});return{packedArray:t,numSplats:C}});case"ply":{const Q=new aI({fileBytes:I});await Q.parseHeader();const t=Q.numSplats,C=RA(t).maxSplats,i={fileBytes:I,packedArray:new Uint32Array(C*4)};return await oI(async s=>{const{packedArray:a,numSplats:e,extra:n}=await s.call("unpackPly",i);return{packedArray:a,numSplats:e,extra:n}})}case"spz":return await oI(async Q=>{const{packedArray:t,numSplats:C,extra:i}=await Q.call("decodeSpz",{fileBytes:I});return{packedArray:t,numSplats:C,extra:i}});case"splat":return await oI(async Q=>{const{packedArray:t,numSplats:C}=await Q.call("decodeAntiSplat",{fileBytes:I});return{packedArray:t,numSplats:C}});case"ksplat":return await oI(async Q=>{const{packedArray:t,numSplats:C,extra:i}=await Q.call("decodeKsplat",{fileBytes:I});return{packedArray:t,numSplats:C,extra:i}});default:throw new Error(`Unknown splat file type: ${B}`)}}class si{constructor({maxSplats:A=1}={}){this.numSplats=0,this.maxSplats=RA(A).maxSplats,this.centers=new Float32Array(this.maxSplats*3),this.scales=new Float32Array(this.maxSplats*3),this.quaternions=new Float32Array(this.maxSplats*4),this.opacities=new Float32Array(this.maxSplats),this.colors=new Float32Array(this.maxSplats*3)}pushSplat(){const A=this.numSplats;return this.ensureIndex(A),this.numSplats+=1,A}unpushSplat(A){if(A===this.numSplats-1)this.numSplats-=1;else throw new Error("Cannot unpush splat from non-last position")}ensureCapacity(A){if(A>this.maxSplats){const g=Math.max(A,this.maxSplats*2),I=new Float32Array(g*3),B=new Float32Array(g*3),Q=new Float32Array(g*4),t=new Float32Array(g),C=new Float32Array(g*3);if(I.set(this.centers),B.set(this.scales),Q.set(this.quaternions),t.set(this.opacities),C.set(this.colors),this.centers=I,this.scales=B,this.quaternions=Q,this.opacities=t,this.colors=C,this.sh1){const i=new Float32Array(g*9);i.set(this.sh1),this.sh1=i}if(this.sh2){const i=new Float32Array(g*15);i.set(this.sh2),this.sh2=i}if(this.sh3){const i=new Float32Array(g*21);i.set(this.sh3),this.sh3=i}this.maxSplats=g}}ensureIndex(A){this.ensureCapacity(A+1)}setCenter(A,g,I,B){this.centers[A*3]=g,this.centers[A*3+1]=I,this.centers[A*3+2]=B}setScale(A,g,I,B){this.scales[A*3]=g,this.scales[A*3+1]=I,this.scales[A*3+2]=B}setQuaternion(A,g,I,B,Q){this.quaternions[A*4]=g,this.quaternions[A*4+1]=I,this.quaternions[A*4+2]=B,this.quaternions[A*4+3]=Q}setOpacity(A,g){this.opacities[A]=g}setColor(A,g,I,B){this.colors[A*3]=g,this.colors[A*3+1]=I,this.colors[A*3+2]=B}setSh1(A,g){this.sh1||(this.sh1=new Float32Array(this.maxSplats*9));for(let I=0;I<9;++I)this.sh1[A*9+I]=g[I]}setSh2(A,g){this.sh2||(this.sh2=new Float32Array(this.maxSplats*15));for(let I=0;I<15;++I)this.sh2[A*15+I]=g[I]}setSh3(A,g){this.sh3||(this.sh3=new Float32Array(this.maxSplats*21));for(let I=0;I<21;++I)this.sh3[A*21+I]=g[I]}}class Rt{constructor({fileBytes:A}){this.fileBytes=A instanceof ArrayBuffer?new Uint8Array(A):A,this.reader=new EE({fileBytes:this.fileBytes});const g=new DataView(this.reader.read(16).buffer);if(g.getUint32(0,!0)!==1347635022)throw new Error("Invalid SPZ file");if(this.version=g.getUint32(4,!0),this.version<1||this.version>2)throw new Error(`Unsupported SPZ version: ${this.version}`);this.numSplats=g.getUint32(8,!0),this.shDegree=g.getUint8(12),this.fractionalBits=g.getUint8(13),this.flags=g.getUint8(14),this.flagAntiAlias=(this.flags&1)!==0,this.reserved=g.getUint8(15),this.parsed=!1}parseSplats(A,g,I,B,Q,t){if(this.parsed)throw new Error("SPZ file already parsed");if(this.parsed=!0,this.version===1){const C=this.reader.read(this.numSplats*3*2),i=new Uint16Array(C.buffer);for(let s=0;s>8)/C,n=((i[a+5]<<24|i[a+4]<<16|i[a+3]<<8)>>8)/C,o=((i[a+8]<<24|i[a+7]<<16|i[a+6]<<8)>>8)/C;A==null||A(s,e,n,o)}}else throw new Error("Unreachable");{const C=this.reader.read(this.numSplats);for(let i=0;i=1){const C=new Float32Array(9),i=this.shDegree>=2?new Float32Array(5*3):void 0,s=this.shDegree>=3?new Float32Array(7*3):void 0,a=this.reader.read(this.numSplats*Jt[this.shDegree]*3);let e=0;for(let n=0;n=1?9:0)+(g>=2?15:0)+(g>=3?21:0),t=16+A*Q;this.buffer=new ArrayBuffer(t),this.view=new DataView(this.buffer),this.view.setUint32(0,ei,!0),this.view.setUint32(4,ai,!0),this.view.setUint32(8,A,!0),this.view.setUint8(12,g),this.view.setUint8(13,I),this.view.setUint8(14,B?ni:0),this.view.setUint8(15,0),this.numSplats=A,this.shDegree=g,this.fractionalBits=I,this.fraction=1<>8&255),this.view.setUint8(o+2,t>>16&255),this.view.setUint8(o+3,i&255),this.view.setUint8(o+4,i>>8&255),this.view.setUint8(o+5,i>>16&255),this.view.setUint8(o+6,a&255),this.view.setUint8(o+7,a>>8&255),this.view.setUint8(o+8,a>>16&255)}setAlpha(A,g){const I=16+this.numSplats*9+A;this.view.setUint8(I,Math.max(0,Math.min(255,Math.round(g*255))))}static scaleRgb(A){const g=((A-.5)/(mt/.15)+.5)*255;return Math.max(0,Math.min(255,Math.round(g)))}setRgb(A,g,I,B){const Q=16+this.numSplats*10+A*3;this.view.setUint8(Q,rg.scaleRgb(g)),this.view.setUint8(Q+1,rg.scaleRgb(I)),this.view.setUint8(Q+2,rg.scaleRgb(B))}setScale(A,g,I,B){const Q=16+this.numSplats*13+A*3;this.view.setUint8(Q,Math.max(0,Math.min(255,Math.round((Math.log(g)+10)*16)))),this.view.setUint8(Q+1,Math.max(0,Math.min(255,Math.round((Math.log(I)+10)*16)))),this.view.setUint8(Q+2,Math.max(0,Math.min(255,Math.round((Math.log(B)+10)*16))))}setQuat(A,g,I,B,Q){const t=16+this.numSplats*16+A*3,C=Q<0;this.view.setUint8(t,Math.max(0,Math.min(255,Math.round(((C?-g:g)+1)*127.5)))),this.view.setUint8(t+1,Math.max(0,Math.min(255,Math.round(((C?-I:I)+1)*127.5)))),this.view.setUint8(t+2,Math.max(0,Math.min(255,Math.round(((C?-B:B)+1)*127.5))))}static quantizeSh(A,g){const I=Math.round(A*128)+128,B=1<<8-g,Q=Math.floor((I+B/2)/B)*B;return Math.max(0,Math.min(255,Q))}setSh(A,g,I,B){const Q=Jt[this.shDegree]||0,t=16+this.numSplats*19+A*Q*3;for(let C=0;C<9;++C)this.view.setUint8(t+C,rg.quantizeSh(g[C],5));if(I){const C=t+9;for(let i=0;i<15;++i)this.view.setUint8(C+i,rg.quantizeSh(I[i],4));if(B){const i=C+15;for(let s=0;s<21;++s)this.view.setUint8(i+s,rg.quantizeSh(B[s],4))}}}async finalize(){const A=new Uint8Array(this.buffer),I=new ReadableStream({async start(t){t.enqueue(A),t.close()}}).pipeThrough(new CompressionStream("gzip")),Q=await new Response(I).arrayBuffer();return console.log("Compressed",A.length,"bytes to",Q.byteLength,"bytes"),new Uint8Array(Q)}}async function oi(E){var a,e,n;const A=new si,{inputs:g,clipXyz:I,maxSh:B,fractionalBits:Q=12,opacityThreshold:t}=E;for(const o of g){let r=function(d){return d.multiplyScalar(l),d.applyQuaternion(u),d.add(M),d},h=function(d){return d.multiplyScalar(l),d},c=function(d){return d.premultiply(u),d},w=function(d){return!F||F.containsPoint(d)},y=function(d){return t!==void 0?d>=t:!0};const l=((a=o.transform)==null?void 0:a.scale)??1,u=new sA().fromArray(((e=o.transform)==null?void 0:e.quaternion)??[0,0,0,1]),M=new D().fromArray(((n=o.transform)==null?void 0:n.translate)??[0,0,0]),F=I?new Rg(new D().fromArray(I.min),new D().fromArray(I.max)):void 0;let p=o.fileType;switch(p||(p=pt(o.fileBytes),!p&&o.pathOrUrl&&(p=ft(o.pathOrUrl))),p){case jg.WLG0:{await NI();const d=CQ(o.fileBytes,v,zA);for(let G=0;G{const X=r(new D(N,k,R));if(w(X)&&y(O)){G=A.pushSplat(),A.setCenter(G,X.x,X.y,X.z);const T=h(new D(J,m,S));A.setScale(G,T.x,T.y,T.z);const x=c(new sA(Y,q,Z,$));A.setQuaternion(G,x.x,x.y,x.z,x.w),A.setOpacity(G,O),A.setColor(G,P,W,z)}else G=null},(f,N,k,R)=>{N&&G!==null&&A.setSh1(G,N),k&&G!==null&&A.setSh2(G,k),R&&G!==null&&A.setSh3(G,R)});break}case jg.SPZ:{const d=new Rt({fileBytes:o.fileBytes}),G=new Int32Array(d.numSplats);G.fill(-1);const f=new Float32Array(d.numSplats*3),N=new D;d.parseSplats((k,R,J,m)=>{const S=r(new D(R,J,m));f[k*3]=S.x,f[k*3+1]=S.y,f[k*3+2]=S.z},(k,R)=>{N.fromArray(f,k*3),w(N)&&y(R)&&(G[k]=A.pushSplat(),A.setCenter(G[k],N.x,N.y,N.z),A.setOpacity(G[k],R))},(k,R,J,m)=>{G[k]>=0&&A.setColor(G[k],R,J,m)},(k,R,J,m)=>{if(G[k]>=0){const S=h(new D(R,J,m));A.setScale(G[k],S.x,S.y,S.z)}},(k,R,J,m,S)=>{if(G[k]>=0){const Y=c(new sA(R,J,m,S));A.setQuaternion(G[k],Y.x,Y.y,Y.z,Y.w)}},(k,R,J,m)=>{G[k]>=0&&(A.setSh1(G[k],R),J&&A.setSh2(G[k],J),m&&A.setSh3(G[k],m))});break}case jg.SPLAT:Et(o.fileBytes,d=>{},(d,G,f,N,k,R,J,m,S,Y,q,Z,$,O,P)=>{const W=r(new D(G,f,N));if(w(W)&&y(Z)){const z=A.pushSplat();A.setCenter(z,W.x,W.y,W.z);const X=h(new D(k,R,J));A.setScale(z,X.x,X.y,X.z);const T=c(new sA(m,S,Y,q));A.setQuaternion(z,T.x,T.y,T.z,T.w),A.setOpacity(z,Z),A.setColor(z,$,O,P)}});break;case jg.KSPLAT:{let d=null;sE(o.fileBytes,G=>{},(G,f,N,k,R,J,m,S,Y,q,Z,$,O,P,W)=>{const z=r(new D(f,N,k));if(w(z)&&y($)){d=A.pushSplat(),A.setCenter(d,z.x,z.y,z.z);const X=h(new D(R,J,m));A.setScale(d,X.x,X.y,X.z);const T=c(new sA(S,Y,q,Z));A.setQuaternion(d,T.x,T.y,T.z,T.w),A.setOpacity(d,$),A.setColor(d,O,P,W)}else d=null},(G,f,N,k)=>{d!==null&&(A.setSh1(d,f),N&&A.setSh2(d,N),k&&A.setSh3(d,k))});break}default:throw new Error(`transcodeSpz not implemented for ${p}`)}}const C=Math.min(B??3,A.sh3?3:A.sh2?2:A.sh1?1:0),i=new rg({numSplats:A.numSplats,shDegree:C,fractionalBits:Q,flagAntiAlias:!0});for(let o=0;o=1&&i.setSh(o,A.sh1.slice(o*9,(o+1)*9),C>=2&&A.sh2?A.sh2.slice(o*15,(o+1)*15):void 0,C>=3&&A.sh3?A.sh3.slice(o*21,(o+1)*21):void 0)}return{fileBytes:await i.finalize(),clippedCount:i.clippedCount}}async function St(E){const{name:A,args:g,id:I}=E.data;let B,Q;try{switch(A){case"unpackPly":{const{packedArray:t,fileBytes:C}=g,i=await ri({packedArray:t,fileBytes:C});B={id:I,numSplats:i.numSplats,packedArray:i.packedArray,extra:i.extra};break}case"decodeWlg":{const{fileBytes:t}=g,C=CQ(t,v,zA);B={id:I,numSplats:C.numSplats,packedArray:C.packedSplats};break}case"decodeSpz":{const{fileBytes:t}=g,C=hi(t);B={id:I,numSplats:C.numSplats,packedArray:C.packedArray,extra:C.extra};break}case"decodeAntiSplat":{const{fileBytes:t}=g,C=iE(t);B={id:I,numSplats:C.numSplats,packedArray:C.packedArray};break}case"decodeKsplat":{const{fileBytes:t}=g,C=eE(t);B={id:I,numSplats:C.numSplats,packedArray:C.packedArray,extra:C.extra};break}case"sortSplats":{const{maxSplats:t,totalSplats:C,readback:i,ordering:s}=g;gt&&(B={id:I,readback:i,ordering:s,activeSplats:Ht(t,C,i,s)});break}case"sortDoubleSplats":{const{numSplats:t,readback:C,ordering:i}=g;B={id:I,readback:C,ordering:i},gt&&(B={id:I,readback:C,ordering:i,activeSplats:Zt(t,C,i)});break}case"transcodeSpz":{const t=g,C=await oi(t);B={id:I,fileBytes:C,input:t};break}default:throw new Error(`Unknown name: ${A}`)}}catch(t){Q=t}self.postMessage({id:I,result:B,error:Q},{transfer:tt(B)})}async function ri({packedArray:E,fileBytes:A}){const g=new aI({fileBytes:A});await g.parseHeader();const I=g.numSplats,B={},Q=Math.exp(-20);return g.parseSplats((t,C,i,s,a,e,n,o,r,h,c,w,y,l,u)=>{eI(E,t,C,i,s,a{C&&(B.sh1||(B.sh1=new Uint32Array(I*2)),VB(B.sh1,t,C)),i&&(B.sh2||(B.sh2=new Uint32Array(I*4)),TB(B.sh2,t,i)),s&&(B.sh3||(B.sh3=new Uint32Array(I*4)),vB(B.sh3,t,s))}),{packedArray:E,numSplats:I,extra:B}}function hi(E){const A=new Rt({fileBytes:E}),g=A.numSplats,I=WB(g),B=new Uint32Array(I*4),Q={};return A.parseSplats((t,C,i,s)=>{XC(B,t,C,i,s)},(t,C)=>{_C(B,t,C)},(t,C,i,s)=>{PC(B,t,C,i,s)},(t,C,i,s)=>{jC(B,t,C,i,s)},(t,C,i,s,a)=>{OC(B,t,C,i,s,a)},(t,C,i,s)=>{C&&(Q.sh1||(Q.sh1=new Uint32Array(g*2)),VB(Q.sh1,t,C)),i&&(Q.sh2||(Q.sh2=new Uint32Array(g*4)),TB(Q.sh2,t,i)),s&&(Q.sh3||(Q.sh3=new Uint32Array(g*4)),vB(Q.sh3,t,s))}),{packedArray:B,numSplats:g,extra:Q}}const Og=31744,rI=Og+1;let BA=null;function Gi({totalSplats:E,readback:A,ordering:g}){BA||(BA=new Uint32Array(rI)),BA.fill(0);const I=A.map(i=>new Uint32Array(i.buffer)),B=I[0].length,Q=Math.ceil(E/B);let t=0;for(let i=0;i=0;--B){const Q=I+BA[B];BA[B]=I,I=Q}for(let B=0;B1){for(let e=0;e0&&(i.userData=this.userData),i.layers=this.layers.mask,i.matrix=this.matrix.toArray(),i.up=this.up.toArray(),this.matrixAutoUpdate===!1&&(i.matrixAutoUpdate=!1),this.isInstancedMesh&&(i.type="InstancedMesh",i.count=this.count,i.instanceMatrix=this.instanceMatrix.toJSON(),this.instanceColor!==null&&(i.instanceColor=this.instanceColor.toJSON())),this.isBatchedMesh&&(i.type="BatchedMesh",i.perObjectFrustumCulled=this.perObjectFrustumCulled,i.sortObjects=this.sortObjects,i.drawRanges=this._drawRanges,i.reservedRanges=this._reservedRanges,i.visibility=this._visibility,i.active=this._active,i.bounds=this._bounds.map(r=>({boxInitialized:r.boxInitialized,boxMin:r.box.min.toArray(),boxMax:r.box.max.toArray(),sphereInitialized:r.sphereInitialized,sphereRadius:r.sphere.radius,sphereCenter:r.sphere.center.toArray()})),i.maxInstanceCount=this._maxInstanceCount,i.maxVertexCount=this._maxVertexCount,i.maxIndexCount=this._maxIndexCount,i.geometryInitialized=this._geometryInitialized,i.geometryCount=this._geometryCount,i.matricesTexture=this._matricesTexture.toJSON(A),this._colorsTexture!==null&&(i.colorsTexture=this._colorsTexture.toJSON(A)),this.boundingSphere!==null&&(i.boundingSphere={center:i.boundingSphere.center.toArray(),radius:i.boundingSphere.radius}),this.boundingBox!==null&&(i.boundingBox={min:i.boundingBox.min.toArray(),max:i.boundingBox.max.toArray()}));function s(r,a){return r[a.uuid]===void 0&&(r[a.uuid]=a.toJSON(A)),a.uuid}if(this.isScene)this.background&&(this.background.isColor?i.background=this.background.toJSON():this.background.isTexture&&(i.background=this.background.toJSON(A).uuid)),this.environment&&this.environment.isTexture&&this.environment.isRenderTargetTexture!==!0&&(i.environment=this.environment.toJSON(A).uuid);else if(this.isMesh||this.isLine||this.isPoints){i.geometry=s(A.geometries,this.geometry);const r=this.geometry.parameters;if(r!==void 0&&r.shapes!==void 0){const a=r.shapes;if(Array.isArray(a))for(let o=0,B=a.length;o0){i.children=[];for(let r=0;r0){i.animations=[];for(let r=0;r0&&(e.geometries=r),a.length>0&&(e.materials=a),o.length>0&&(e.textures=o),B.length>0&&(e.images=B),I.length>0&&(e.shapes=I),Q.length>0&&(e.skeletons=Q),h.length>0&&(e.animations=h),E.length>0&&(e.nodes=E)}return e.object=i,e;function n(r){const a=[];for(const o in r){const B=r[o];delete B.metadata,a.push(B)}return a}}clone(A){return new this.constructor().copy(this,A)}copy(A,t=!0){if(this.name=A.name,this.up.copy(A.up),this.position.copy(A.position),this.rotation.order=A.rotation.order,this.quaternion.copy(A.quaternion),this.scale.copy(A.scale),this.matrix.copy(A.matrix),this.matrixWorld.copy(A.matrixWorld),this.matrixAutoUpdate=A.matrixAutoUpdate,this.matrixWorldAutoUpdate=A.matrixWorldAutoUpdate,this.matrixWorldNeedsUpdate=A.matrixWorldNeedsUpdate,this.layers.mask=A.layers.mask,this.visible=A.visible,this.castShadow=A.castShadow,this.receiveShadow=A.receiveShadow,this.frustumCulled=A.frustumCulled,this.renderOrder=A.renderOrder,this.animations=A.animations.slice(),this.userData=JSON.parse(JSON.stringify(A.userData)),t===!0)for(let e=0;e0?i.multiplyScalar(1/Math.sqrt(s)):i.set(0,0,0)}static getBarycoord(A,t,e,i,s){TA.subVectors(i,t),XA.subVectors(e,t),wi.subVectors(A,t);const n=TA.dot(TA),r=TA.dot(XA),a=TA.dot(wi),o=XA.dot(XA),B=XA.dot(wi),I=n*o-r*r;if(I===0)return s.set(0,0,0),null;const Q=1/I,h=(o*a-r*B)*Q,E=(n*B-r*a)*Q;return s.set(1-h-E,E,h)}static containsPoint(A,t,e,i){return this.getBarycoord(A,t,e,i,jA)===null?!1:jA.x>=0&&jA.y>=0&&jA.x+jA.y<=1}static getInterpolation(A,t,e,i,s,n,r,a){return this.getBarycoord(A,t,e,i,jA)===null?(a.x=0,a.y=0,"z"in a&&(a.z=0),"w"in a&&(a.w=0),null):(a.setScalar(0),a.addScaledVector(s,jA.x),a.addScaledVector(n,jA.y),a.addScaledVector(r,jA.z),a)}static getInterpolatedAttribute(A,t,e,i,s,n){return xi.setScalar(0),Mi.setScalar(0),Si.setScalar(0),xi.fromBufferAttribute(A,t),Mi.fromBufferAttribute(A,e),Si.fromBufferAttribute(A,i),n.setScalar(0),n.addScaledVector(xi,s.x),n.addScaledVector(Mi,s.y),n.addScaledVector(Si,s.z),n}static isFrontFacing(A,t,e,i){return TA.subVectors(e,t),XA.subVectors(A,t),TA.cross(XA).dot(i)<0}set(A,t,e){return this.a.copy(A),this.b.copy(t),this.c.copy(e),this}setFromPointsAndIndices(A,t,e,i){return this.a.copy(A[t]),this.b.copy(A[e]),this.c.copy(A[i]),this}setFromAttributeAndIndices(A,t,e,i){return this.a.fromBufferAttribute(A,t),this.b.fromBufferAttribute(A,e),this.c.fromBufferAttribute(A,i),this}clone(){return new this.constructor().copy(this)}copy(A){return this.a.copy(A.a),this.b.copy(A.b),this.c.copy(A.c),this}getArea(){return TA.subVectors(this.c,this.b),XA.subVectors(this.a,this.b),TA.cross(XA).length()*.5}getMidpoint(A){return A.addVectors(this.a,this.b).add(this.c).multiplyScalar(1/3)}getNormal(A){return zA.getNormal(this.a,this.b,this.c,A)}getPlane(A){return A.setFromCoplanarPoints(this.a,this.b,this.c)}getBarycoord(A,t){return zA.getBarycoord(A,this.a,this.b,this.c,t)}getInterpolation(A,t,e,i,s){return zA.getInterpolation(A,this.a,this.b,this.c,t,e,i,s)}containsPoint(A){return zA.containsPoint(A,this.a,this.b,this.c)}isFrontFacing(A){return zA.isFrontFacing(this.a,this.b,this.c,A)}intersectsBox(A){return A.intersectsTriangle(this)}closestPointToPoint(A,t){const e=this.a,i=this.b,s=this.c;let n,r;Lt.subVectors(i,e),Yt.subVectors(s,e),pi.subVectors(A,e);const a=Lt.dot(pi),o=Yt.dot(pi);if(a<=0&&o<=0)return t.copy(e);Di.subVectors(A,i);const B=Lt.dot(Di),I=Yt.dot(Di);if(B>=0&&I<=B)return t.copy(i);const Q=a*I-B*o;if(Q<=0&&a>=0&&B<=0)return n=a/(a-B),t.copy(e).addScaledVector(Lt,n);mi.subVectors(A,s);const h=Lt.dot(mi),E=Yt.dot(mi);if(E>=0&&h<=E)return t.copy(s);const C=h*o-a*E;if(C<=0&&o>=0&&E<=0)return r=o/(o-E),t.copy(e).addScaledVector(Yt,r);const c=B*E-h*I;if(c<=0&&I-B>=0&&h-E>=0)return Ls.subVectors(s,i),r=(I-B)/(I-B+(h-E)),t.copy(i).addScaledVector(Ls,r);const l=1/(c+C+Q);return n=C*l,r=Q*l,t.copy(e).addScaledVector(Lt,n).addScaledVector(Yt,r)}equals(A){return A.a.equals(this.a)&&A.b.equals(this.b)&&A.c.equals(this.c)}}const Ys={aliceblue:15792383,antiquewhite:16444375,aqua:65535,aquamarine:8388564,azure:15794175,beige:16119260,bisque:16770244,black:0,blanchedalmond:16772045,blue:255,blueviolet:9055202,brown:10824234,burlywood:14596231,cadetblue:6266528,chartreuse:8388352,chocolate:13789470,coral:16744272,cornflowerblue:6591981,cornsilk:16775388,crimson:14423100,cyan:65535,darkblue:139,darkcyan:35723,darkgoldenrod:12092939,darkgray:11119017,darkgreen:25600,darkgrey:11119017,darkkhaki:12433259,darkmagenta:9109643,darkolivegreen:5597999,darkorange:16747520,darkorchid:10040012,darkred:9109504,darksalmon:15308410,darkseagreen:9419919,darkslateblue:4734347,darkslategray:3100495,darkslategrey:3100495,darkturquoise:52945,darkviolet:9699539,deeppink:16716947,deepskyblue:49151,dimgray:6908265,dimgrey:6908265,dodgerblue:2003199,firebrick:11674146,floralwhite:16775920,forestgreen:2263842,fuchsia:16711935,gainsboro:14474460,ghostwhite:16316671,gold:16766720,goldenrod:14329120,gray:8421504,green:32768,greenyellow:11403055,grey:8421504,honeydew:15794160,hotpink:16738740,indianred:13458524,indigo:4915330,ivory:16777200,khaki:15787660,lavender:15132410,lavenderblush:16773365,lawngreen:8190976,lemonchiffon:16775885,lightblue:11393254,lightcoral:15761536,lightcyan:14745599,lightgoldenrodyellow:16448210,lightgray:13882323,lightgreen:9498256,lightgrey:13882323,lightpink:16758465,lightsalmon:16752762,lightseagreen:2142890,lightskyblue:8900346,lightslategray:7833753,lightslategrey:7833753,lightsteelblue:11584734,lightyellow:16777184,lime:65280,limegreen:3329330,linen:16445670,magenta:16711935,maroon:8388608,mediumaquamarine:6737322,mediumblue:205,mediumorchid:12211667,mediumpurple:9662683,mediumseagreen:3978097,mediumslateblue:8087790,mediumspringgreen:64154,mediumturquoise:4772300,mediumvioletred:13047173,midnightblue:1644912,mintcream:16121850,mistyrose:16770273,moccasin:16770229,navajowhite:16768685,navy:128,oldlace:16643558,olive:8421376,olivedrab:7048739,orange:16753920,orangered:16729344,orchid:14315734,palegoldenrod:15657130,palegreen:10025880,paleturquoise:11529966,palevioletred:14381203,papayawhip:16773077,peachpuff:16767673,peru:13468991,pink:16761035,plum:14524637,powderblue:11591910,purple:8388736,rebeccapurple:6697881,red:16711680,rosybrown:12357519,royalblue:4286945,saddlebrown:9127187,salmon:16416882,sandybrown:16032864,seagreen:3050327,seashell:16774638,sienna:10506797,silver:12632256,skyblue:8900331,slateblue:6970061,slategray:7372944,slategrey:7372944,snow:16775930,springgreen:65407,steelblue:4620980,tan:13808780,teal:32896,thistle:14204888,tomato:16737095,turquoise:4251856,violet:15631086,wheat:16113331,white:16777215,whitesmoke:16119285,yellow:16776960,yellowgreen:10145074},Bt={h:0,s:0,l:0},ke={h:0,s:0,l:0};function Fi(g,A,t){return t<0&&(t+=1),t>1&&(t-=1),t<1/6?g+(A-g)*6*t:t<1/2?A:t<2/3?g+(A-g)*6*(2/3-t):g}class yt{constructor(A,t,e){return this.isColor=!0,this.r=1,this.g=1,this.b=1,this.set(A,t,e)}set(A,t,e){if(t===void 0&&e===void 0){const i=A;i&&i.isColor?this.copy(i):typeof i=="number"?this.setHex(i):typeof i=="string"&&this.setStyle(i)}else this.setRGB(A,t,e);return this}setScalar(A){return this.r=A,this.g=A,this.b=A,this}setHex(A,t=LA){return A=Math.floor(A),this.r=(A>>16&255)/255,this.g=(A>>8&255)/255,this.b=(A&255)/255,YA.toWorkingColorSpace(this,t),this}setRGB(A,t,e,i=YA.workingColorSpace){return this.r=A,this.g=t,this.b=e,YA.toWorkingColorSpace(this,i),this}setHSL(A,t,e,i=YA.workingColorSpace){if(A=$n(A,1),t=H(t,0,1),e=H(e,0,1),t===0)this.r=this.g=this.b=e;else{const s=e<=.5?e*(1+t):e+t-e*t,n=2*e-s;this.r=Fi(n,s,A+1/3),this.g=Fi(n,s,A),this.b=Fi(n,s,A-1/3)}return YA.toWorkingColorSpace(this,i),this}setStyle(A,t=LA){function e(s){s!==void 0&&parseFloat(s)<1&&console.warn("THREE.Color: Alpha component of "+A+" will be ignored.")}let i;if(i=/^(\\w+)\\(([^\\)]*)\\)/.exec(A)){let s;const n=i[1],r=i[2];switch(n){case"rgb":case"rgba":if(s=/^\\s*(\\d+)\\s*,\\s*(\\d+)\\s*,\\s*(\\d+)\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(r))return e(s[4]),this.setRGB(Math.min(255,parseInt(s[1],10))/255,Math.min(255,parseInt(s[2],10))/255,Math.min(255,parseInt(s[3],10))/255,t);if(s=/^\\s*(\\d+)\\%\\s*,\\s*(\\d+)\\%\\s*,\\s*(\\d+)\\%\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(r))return e(s[4]),this.setRGB(Math.min(100,parseInt(s[1],10))/100,Math.min(100,parseInt(s[2],10))/100,Math.min(100,parseInt(s[3],10))/100,t);break;case"hsl":case"hsla":if(s=/^\\s*(\\d*\\.?\\d+)\\s*,\\s*(\\d*\\.?\\d+)\\%\\s*,\\s*(\\d*\\.?\\d+)\\%\\s*(?:,\\s*(\\d*\\.?\\d+)\\s*)?$/.exec(r))return e(s[4]),this.setHSL(parseFloat(s[1])/360,parseFloat(s[2])/100,parseFloat(s[3])/100,t);break;default:console.warn("THREE.Color: Unknown color model "+A)}}else if(i=/^\\#([A-Fa-f\\d]+)$/.exec(A)){const s=i[1],n=s.length;if(n===3)return this.setRGB(parseInt(s.charAt(0),16)/15,parseInt(s.charAt(1),16)/15,parseInt(s.charAt(2),16)/15,t);if(n===6)return this.setHex(parseInt(s,16),t);console.warn("THREE.Color: Invalid hex color "+A)}else if(A&&A.length>0)return this.setColorName(A,t);return this}setColorName(A,t=LA){const e=Ys[A.toLowerCase()];return e!==void 0?this.setHex(e,t):console.warn("THREE.Color: Unknown color "+A),this}clone(){return new this.constructor(this.r,this.g,this.b)}copy(A){return this.r=A.r,this.g=A.g,this.b=A.b,this}copySRGBToLinear(A){return this.r=WA(A.r),this.g=WA(A.g),this.b=WA(A.b),this}copyLinearToSRGB(A){return this.r=Mt(A.r),this.g=Mt(A.g),this.b=Mt(A.b),this}convertSRGBToLinear(){return this.copySRGBToLinear(this),this}convertLinearToSRGB(){return this.copyLinearToSRGB(this),this}getHex(A=LA){return YA.fromWorkingColorSpace(cA.copy(this),A),Math.round(H(cA.r*255,0,255))*65536+Math.round(H(cA.g*255,0,255))*256+Math.round(H(cA.b*255,0,255))}getHexString(A=LA){return("000000"+this.getHex(A).toString(16)).slice(-6)}getHSL(A,t=YA.workingColorSpace){YA.fromWorkingColorSpace(cA.copy(this),t);const e=cA.r,i=cA.g,s=cA.b,n=Math.max(e,i,s),r=Math.min(e,i,s);let a,o;const B=(r+n)/2;if(r===n)a=0,o=0;else{const I=n-r;switch(o=B<=.5?I/(n+r):I/(2-n-r),n){case e:a=(i-s)/I+(i0!=A>0&&this.version++,this._alphaTest=A}onBeforeRender(){}onBeforeCompile(){}customProgramCacheKey(){return this.onBeforeCompile.toString()}setValues(A){if(A!==void 0)for(const t in A){const e=A[t];if(e===void 0){console.warn(`THREE.Material: parameter \'${t}\' has value of undefined.`);continue}const i=this[t];if(i===void 0){console.warn(`THREE.Material: \'${t}\' is not a property of THREE.${this.type}.`);continue}i&&i.isColor?i.set(e):i&&i.isVector3&&e&&e.isVector3?i.copy(e):this[t]=e}}toJSON(A){const t=A===void 0||typeof A=="string";t&&(A={textures:{},images:{}});const e={metadata:{version:4.6,type:"Material",generator:"Material.toJSON"}};e.uuid=this.uuid,e.type=this.type,this.name!==""&&(e.name=this.name),this.color&&this.color.isColor&&(e.color=this.color.getHex()),this.roughness!==void 0&&(e.roughness=this.roughness),this.metalness!==void 0&&(e.metalness=this.metalness),this.sheen!==void 0&&(e.sheen=this.sheen),this.sheenColor&&this.sheenColor.isColor&&(e.sheenColor=this.sheenColor.getHex()),this.sheenRoughness!==void 0&&(e.sheenRoughness=this.sheenRoughness),this.emissive&&this.emissive.isColor&&(e.emissive=this.emissive.getHex()),this.emissiveIntensity!==void 0&&this.emissiveIntensity!==1&&(e.emissiveIntensity=this.emissiveIntensity),this.specular&&this.specular.isColor&&(e.specular=this.specular.getHex()),this.specularIntensity!==void 0&&(e.specularIntensity=this.specularIntensity),this.specularColor&&this.specularColor.isColor&&(e.specularColor=this.specularColor.getHex()),this.shininess!==void 0&&(e.shininess=this.shininess),this.clearcoat!==void 0&&(e.clearcoat=this.clearcoat),this.clearcoatRoughness!==void 0&&(e.clearcoatRoughness=this.clearcoatRoughness),this.clearcoatMap&&this.clearcoatMap.isTexture&&(e.clearcoatMap=this.clearcoatMap.toJSON(A).uuid),this.clearcoatRoughnessMap&&this.clearcoatRoughnessMap.isTexture&&(e.clearcoatRoughnessMap=this.clearcoatRoughnessMap.toJSON(A).uuid),this.clearcoatNormalMap&&this.clearcoatNormalMap.isTexture&&(e.clearcoatNormalMap=this.clearcoatNormalMap.toJSON(A).uuid,e.clearcoatNormalScale=this.clearcoatNormalScale.toArray()),this.dispersion!==void 0&&(e.dispersion=this.dispersion),this.iridescence!==void 0&&(e.iridescence=this.iridescence),this.iridescenceIOR!==void 0&&(e.iridescenceIOR=this.iridescenceIOR),this.iridescenceThicknessRange!==void 0&&(e.iridescenceThicknessRange=this.iridescenceThicknessRange),this.iridescenceMap&&this.iridescenceMap.isTexture&&(e.iridescenceMap=this.iridescenceMap.toJSON(A).uuid),this.iridescenceThicknessMap&&this.iridescenceThicknessMap.isTexture&&(e.iridescenceThicknessMap=this.iridescenceThicknessMap.toJSON(A).uuid),this.anisotropy!==void 0&&(e.anisotropy=this.anisotropy),this.anisotropyRotation!==void 0&&(e.anisotropyRotation=this.anisotropyRotation),this.anisotropyMap&&this.anisotropyMap.isTexture&&(e.anisotropyMap=this.anisotropyMap.toJSON(A).uuid),this.map&&this.map.isTexture&&(e.map=this.map.toJSON(A).uuid),this.matcap&&this.matcap.isTexture&&(e.matcap=this.matcap.toJSON(A).uuid),this.alphaMap&&this.alphaMap.isTexture&&(e.alphaMap=this.alphaMap.toJSON(A).uuid),this.lightMap&&this.lightMap.isTexture&&(e.lightMap=this.lightMap.toJSON(A).uuid,e.lightMapIntensity=this.lightMapIntensity),this.aoMap&&this.aoMap.isTexture&&(e.aoMap=this.aoMap.toJSON(A).uuid,e.aoMapIntensity=this.aoMapIntensity),this.bumpMap&&this.bumpMap.isTexture&&(e.bumpMap=this.bumpMap.toJSON(A).uuid,e.bumpScale=this.bumpScale),this.normalMap&&this.normalMap.isTexture&&(e.normalMap=this.normalMap.toJSON(A).uuid,e.normalMapType=this.normalMapType,e.normalScale=this.normalScale.toArray()),this.displacementMap&&this.displacementMap.isTexture&&(e.displacementMap=this.displacementMap.toJSON(A).uuid,e.displacementScale=this.displacementScale,e.displacementBias=this.displacementBias),this.roughnessMap&&this.roughnessMap.isTexture&&(e.roughnessMap=this.roughnessMap.toJSON(A).uuid),this.metalnessMap&&this.metalnessMap.isTexture&&(e.metalnessMap=this.metalnessMap.toJSON(A).uuid),this.emissiveMap&&this.emissiveMap.isTexture&&(e.emissiveMap=this.emissiveMap.toJSON(A).uuid),this.specularMap&&this.specularMap.isTexture&&(e.specularMap=this.specularMap.toJSON(A).uuid),this.specularIntensityMap&&this.specularIntensityMap.isTexture&&(e.specularIntensityMap=this.specularIntensityMap.toJSON(A).uuid),this.specularColorMap&&this.specularColorMap.isTexture&&(e.specularColorMap=this.specularColorMap.toJSON(A).uuid),this.envMap&&this.envMap.isTexture&&(e.envMap=this.envMap.toJSON(A).uuid,this.combine!==void 0&&(e.combine=this.combine)),this.envMapRotation!==void 0&&(e.envMapRotation=this.envMapRotation.toArray()),this.envMapIntensity!==void 0&&(e.envMapIntensity=this.envMapIntensity),this.reflectivity!==void 0&&(e.reflectivity=this.reflectivity),this.refractionRatio!==void 0&&(e.refractionRatio=this.refractionRatio),this.gradientMap&&this.gradientMap.isTexture&&(e.gradientMap=this.gradientMap.toJSON(A).uuid),this.transmission!==void 0&&(e.transmission=this.transmission),this.transmissionMap&&this.transmissionMap.isTexture&&(e.transmissionMap=this.transmissionMap.toJSON(A).uuid),this.thickness!==void 0&&(e.thickness=this.thickness),this.thicknessMap&&this.thicknessMap.isTexture&&(e.thicknessMap=this.thicknessMap.toJSON(A).uuid),this.attenuationDistance!==void 0&&this.attenuationDistance!==1/0&&(e.attenuationDistance=this.attenuationDistance),this.attenuationColor!==void 0&&(e.attenuationColor=this.attenuationColor.getHex()),this.size!==void 0&&(e.size=this.size),this.shadowSide!==null&&(e.shadowSide=this.shadowSide),this.sizeAttenuation!==void 0&&(e.sizeAttenuation=this.sizeAttenuation),this.blending!==as&&(e.blending=this.blending),this.side!==Ii&&(e.side=this.side),this.vertexColors===!0&&(e.vertexColors=!0),this.opacity<1&&(e.opacity=this.opacity),this.transparent===!0&&(e.transparent=!0),this.blendSrc!==os&&(e.blendSrc=this.blendSrc),this.blendDst!==Is&&(e.blendDst=this.blendDst),this.blendEquation!==gs&&(e.blendEquation=this.blendEquation),this.blendSrcAlpha!==null&&(e.blendSrcAlpha=this.blendSrcAlpha),this.blendDstAlpha!==null&&(e.blendDstAlpha=this.blendDstAlpha),this.blendEquationAlpha!==null&&(e.blendEquationAlpha=this.blendEquationAlpha),this.blendColor&&this.blendColor.isColor&&(e.blendColor=this.blendColor.getHex()),this.blendAlpha!==0&&(e.blendAlpha=this.blendAlpha),this.depthFunc!==Bs&&(e.depthFunc=this.depthFunc),this.depthTest===!1&&(e.depthTest=this.depthTest),this.depthWrite===!1&&(e.depthWrite=this.depthWrite),this.colorWrite===!1&&(e.colorWrite=this.colorWrite),this.stencilWriteMask!==255&&(e.stencilWriteMask=this.stencilWriteMask),this.stencilFunc!==ds&&(e.stencilFunc=this.stencilFunc),this.stencilRef!==0&&(e.stencilRef=this.stencilRef),this.stencilFuncMask!==255&&(e.stencilFuncMask=this.stencilFuncMask),this.stencilFail!==xt&&(e.stencilFail=this.stencilFail),this.stencilZFail!==xt&&(e.stencilZFail=this.stencilZFail),this.stencilZPass!==xt&&(e.stencilZPass=this.stencilZPass),this.stencilWrite===!0&&(e.stencilWrite=this.stencilWrite),this.rotation!==void 0&&this.rotation!==0&&(e.rotation=this.rotation),this.polygonOffset===!0&&(e.polygonOffset=!0),this.polygonOffsetFactor!==0&&(e.polygonOffsetFactor=this.polygonOffsetFactor),this.polygonOffsetUnits!==0&&(e.polygonOffsetUnits=this.polygonOffsetUnits),this.linewidth!==void 0&&this.linewidth!==1&&(e.linewidth=this.linewidth),this.dashSize!==void 0&&(e.dashSize=this.dashSize),this.gapSize!==void 0&&(e.gapSize=this.gapSize),this.scale!==void 0&&(e.scale=this.scale),this.dithering===!0&&(e.dithering=!0),this.alphaTest>0&&(e.alphaTest=this.alphaTest),this.alphaHash===!0&&(e.alphaHash=!0),this.alphaToCoverage===!0&&(e.alphaToCoverage=!0),this.premultipliedAlpha===!0&&(e.premultipliedAlpha=!0),this.forceSinglePass===!0&&(e.forceSinglePass=!0),this.wireframe===!0&&(e.wireframe=!0),this.wireframeLinewidth>1&&(e.wireframeLinewidth=this.wireframeLinewidth),this.wireframeLinecap!=="round"&&(e.wireframeLinecap=this.wireframeLinecap),this.wireframeLinejoin!=="round"&&(e.wireframeLinejoin=this.wireframeLinejoin),this.flatShading===!0&&(e.flatShading=!0),this.visible===!1&&(e.visible=!1),this.toneMapped===!1&&(e.toneMapped=!1),this.fog===!1&&(e.fog=!1),Object.keys(this.userData).length>0&&(e.userData=this.userData);function i(s){const n=[];for(const r in s){const a=s[r];delete a.metadata,n.push(a)}return n}if(t){const s=i(A.textures),n=i(A.images);s.length>0&&(e.textures=s),n.length>0&&(e.images=n)}return e}clone(){return new this.constructor().copy(this)}copy(A){this.name=A.name,this.blending=A.blending,this.side=A.side,this.vertexColors=A.vertexColors,this.opacity=A.opacity,this.transparent=A.transparent,this.blendSrc=A.blendSrc,this.blendDst=A.blendDst,this.blendEquation=A.blendEquation,this.blendSrcAlpha=A.blendSrcAlpha,this.blendDstAlpha=A.blendDstAlpha,this.blendEquationAlpha=A.blendEquationAlpha,this.blendColor.copy(A.blendColor),this.blendAlpha=A.blendAlpha,this.depthFunc=A.depthFunc,this.depthTest=A.depthTest,this.depthWrite=A.depthWrite,this.stencilWriteMask=A.stencilWriteMask,this.stencilFunc=A.stencilFunc,this.stencilRef=A.stencilRef,this.stencilFuncMask=A.stencilFuncMask,this.stencilFail=A.stencilFail,this.stencilZFail=A.stencilZFail,this.stencilZPass=A.stencilZPass,this.stencilWrite=A.stencilWrite;const t=A.clippingPlanes;let e=null;if(t!==null){const i=t.length;e=new Array(i);for(let s=0;s!==i;++s)e[s]=t[s].clone()}return this.clippingPlanes=e,this.clipIntersection=A.clipIntersection,this.clipShadows=A.clipShadows,this.shadowSide=A.shadowSide,this.colorWrite=A.colorWrite,this.precision=A.precision,this.polygonOffset=A.polygonOffset,this.polygonOffsetFactor=A.polygonOffsetFactor,this.polygonOffsetUnits=A.polygonOffsetUnits,this.dithering=A.dithering,this.alphaTest=A.alphaTest,this.alphaHash=A.alphaHash,this.alphaToCoverage=A.alphaToCoverage,this.premultipliedAlpha=A.premultipliedAlpha,this.forceSinglePass=A.forceSinglePass,this.visible=A.visible,this.toneMapped=A.toneMapped,this.userData=JSON.parse(JSON.stringify(A.userData)),this}dispose(){this.dispatchEvent({type:"dispose"})}set needsUpdate(A){A===!0&&this.version++}onBuild(){console.warn("Material: onBuild() has been removed.")}}class lr extends Js{constructor(A){super(),this.isMeshBasicMaterial=!0,this.type="MeshBasicMaterial",this.color=new yt(16777215),this.map=null,this.lightMap=null,this.lightMapIntensity=1,this.aoMap=null,this.aoMapIntensity=1,this.specularMap=null,this.alphaMap=null,this.envMap=null,this.envMapRotation=new dt,this.combine=Pn,this.reflectivity=1,this.refractionRatio=.98,this.wireframe=!1,this.wireframeLinewidth=1,this.wireframeLinecap="round",this.wireframeLinejoin="round",this.fog=!0,this.setValues(A)}copy(A){return super.copy(A),this.color.copy(A.color),this.map=A.map,this.lightMap=A.lightMap,this.lightMapIntensity=A.lightMapIntensity,this.aoMap=A.aoMap,this.aoMapIntensity=A.aoMapIntensity,this.specularMap=A.specularMap,this.alphaMap=A.alphaMap,this.envMap=A.envMap,this.envMapRotation.copy(A.envMapRotation),this.combine=A.combine,this.reflectivity=A.reflectivity,this.refractionRatio=A.refractionRatio,this.wireframe=A.wireframe,this.wireframeLinewidth=A.wireframeLinewidth,this.wireframeLinecap=A.wireframeLinecap,this.wireframeLinejoin=A.wireframeLinejoin,this.fog=A.fog,this}}const eA=new u,Re=new fA;class Jt{constructor(A,t,e=!1){if(Array.isArray(A))throw new TypeError("THREE.BufferAttribute: array should be a Typed Array.");this.isBufferAttribute=!0,this.name="",this.array=A,this.itemSize=t,this.count=A!==void 0?A.length/t:0,this.normalized=e,this.usage=ys,this.updateRanges=[],this.gpuType=Vn,this.version=0}onUploadCallback(){}set needsUpdate(A){A===!0&&this.version++}setUsage(A){return this.usage=A,this}addUpdateRange(A,t){this.updateRanges.push({start:A,count:t})}clearUpdateRanges(){this.updateRanges.length=0}copy(A){return this.name=A.name,this.array=new A.array.constructor(A.array),this.itemSize=A.itemSize,this.count=A.count,this.normalized=A.normalized,this.usage=A.usage,this.gpuType=A.gpuType,this}copyAt(A,t,e){A*=this.itemSize,e*=t.itemSize;for(let i=0,s=this.itemSize;it.count&&console.warn("THREE.BufferGeometry: Buffer size too small for points data. Use .dispose() and create a new geometry."),t.needsUpdate=!0}return this}computeBoundingBox(){this.boundingBox===null&&(this.boundingBox=new Ft);const A=this.attributes.position,t=this.morphAttributes.position;if(A&&A.isGLBufferAttribute){console.error("THREE.BufferGeometry.computeBoundingBox(): GLBufferAttribute requires a manual bounding box.",this),this.boundingBox.set(new u(-1/0,-1/0,-1/0),new u(1/0,1/0,1/0));return}if(A!==void 0){if(this.boundingBox.setFromBufferAttribute(A),t)for(let e=0,i=t.length;e0&&(A.userData=this.userData),this.parameters!==void 0){const a=this.parameters;for(const o in a)a[o]!==void 0&&(A[o]=a[o]);return A}A.data={attributes:{}};const t=this.index;t!==null&&(A.data.index={type:t.array.constructor.name,array:Array.prototype.slice.call(t.array)});const e=this.attributes;for(const a in e){const o=e[a];A.data.attributes[a]=o.toJSON(A.data)}const i={};let s=!1;for(const a in this.morphAttributes){const o=this.morphAttributes[a],B=[];for(let I=0,Q=o.length;I0&&(i[a]=B,s=!0)}s&&(A.data.morphAttributes=i,A.data.morphTargetsRelative=this.morphTargetsRelative);const n=this.groups;n.length>0&&(A.data.groups=JSON.parse(JSON.stringify(n)));const r=this.boundingSphere;return r!==null&&(A.data.boundingSphere={center:r.center.toArray(),radius:r.radius}),A}clone(){return new this.constructor().copy(this)}copy(A){this.index=null,this.attributes={},this.morphAttributes={},this.groups=[],this.boundingBox=null,this.boundingSphere=null;const t={};this.name=A.name;const e=A.index;e!==null&&this.setIndex(e.clone(t));const i=A.attributes;for(const o in i){const B=i[o];this.setAttribute(o,B.clone(t))}const s=A.morphAttributes;for(const o in s){const B=[],I=s[o];for(let Q=0,h=I.length;Q0){const i=t[e[0]];if(i!==void 0){this.morphTargetInfluences=[],this.morphTargetDictionary={};for(let s=0,n=i.length;s(A.far-A.near)**2))&&(Hs.copy(s).invert(),ft.copy(A.ray).applyMatrix4(Hs),!(e.boundingBox!==null&&ft.intersectsBox(e.boundingBox)===!1)&&this._computeIntersections(A,t,ft)))}_computeIntersections(A,t,e){let i;const s=this.geometry,n=this.material,r=s.index,a=s.attributes.position,o=s.attributes.uv,B=s.attributes.uv1,I=s.attributes.normal,Q=s.groups,h=s.drawRange;if(r!==null)if(Array.isArray(n))for(let E=0,C=Q.length;Et.far?null:{distance:o,point:Te.clone(),object:g}}function ze(g,A,t,e,i,s,n,r,a,o){g.getVertexPosition(r,Le),g.getVertexPosition(a,Ye),g.getVertexPosition(o,Je);const B=fr(g,A,t,e,Le,Ye,Je,zs);if(B){const I=new u;zA.getBarycoord(zs,Le,Ye,Je,I),i&&(B.uv=zA.getInterpolatedAttribute(i,r,a,o,I,new fA)),s&&(B.uv1=zA.getInterpolatedAttribute(s,r,a,o,I,new fA)),n&&(B.normal=zA.getInterpolatedAttribute(n,r,a,o,I,new u),B.normal.dot(e.direction)>0&&B.normal.multiplyScalar(-1));const Q={a:r,b:a,c:o,normal:new u,materialIndex:0};zA.getNormal(Le,Ye,Je,Q.normal),B.face=Q,B.barycoord=I}return B}function wr(g){const A={};for(const t in g){A[t]={};for(const e in g[t]){const i=g[t][e];i&&(i.isColor||i.isMatrix3||i.isMatrix4||i.isVector2||i.isVector3||i.isVector4||i.isTexture||i.isQuaternion)?i.isRenderTargetTexture?(console.warn("UniformsUtils: Textures of render targets cannot be cloned via cloneUniforms() or mergeUniforms()."),A[t][e]=null):A[t][e]=i.clone():Array.isArray(i)?A[t][e]=i.slice():A[t][e]=i}}return A}function pr(g){const A=[];for(let t=0;t0&&(t.defines=this.defines),t.vertexShader=this.vertexShader,t.fragmentShader=this.fragmentShader,t.lights=this.lights,t.clipping=this.clipping;const e={};for(const i in this.extensions)this.extensions[i]===!0&&(e[i]=!0);return Object.keys(e).length>0&&(t.extensions=e),t}}class Ks extends wA{constructor(){super(),this.isCamera=!0,this.type="Camera",this.matrixWorldInverse=new CA,this.projectionMatrix=new CA,this.projectionMatrixInverse=new CA,this.coordinateSystem=Ae}copy(A,t){return super.copy(A,t),this.matrixWorldInverse.copy(A.matrixWorldInverse),this.projectionMatrix.copy(A.projectionMatrix),this.projectionMatrixInverse.copy(A.projectionMatrixInverse),this.coordinateSystem=A.coordinateSystem,this}getWorldDirection(A){return super.getWorldDirection(A).negate()}updateMatrixWorld(A){super.updateMatrixWorld(A),this.matrixWorldInverse.copy(this.matrixWorld).invert()}updateWorldMatrix(A,t){super.updateWorldMatrix(A,t),this.matrixWorldInverse.copy(this.matrixWorld).invert()}clone(){return new this.constructor().copy(this)}}class _s extends wA{constructor(){super(),this.isScene=!0,this.type="Scene",this.background=null,this.environment=null,this.fog=null,this.backgroundBlurriness=0,this.backgroundIntensity=1,this.backgroundRotation=new dt,this.environmentIntensity=1,this.environmentRotation=new dt,this.overrideMaterial=null,typeof __THREE_DEVTOOLS__<"u"&&__THREE_DEVTOOLS__.dispatchEvent(new CustomEvent("observe",{detail:this}))}copy(A,t){return super.copy(A,t),A.background!==null&&(this.background=A.background.clone()),A.environment!==null&&(this.environment=A.environment.clone()),A.fog!==null&&(this.fog=A.fog.clone()),this.backgroundBlurriness=A.backgroundBlurriness,this.backgroundIntensity=A.backgroundIntensity,this.backgroundRotation.copy(A.backgroundRotation),this.environmentIntensity=A.environmentIntensity,this.environmentRotation.copy(A.environmentRotation),A.overrideMaterial!==null&&(this.overrideMaterial=A.overrideMaterial.clone()),this.matrixAutoUpdate=A.matrixAutoUpdate,this}toJSON(A){const t=super.toJSON(A);return this.fog!==null&&(t.object.fog=this.fog.toJSON()),this.backgroundBlurriness>0&&(t.object.backgroundBlurriness=this.backgroundBlurriness),this.backgroundIntensity!==1&&(t.object.backgroundIntensity=this.backgroundIntensity),t.object.backgroundRotation=this.backgroundRotation.toArray(),this.environmentIntensity!==1&&(t.object.environmentIntensity=this.environmentIntensity),t.object.environmentRotation=this.environmentRotation.toArray(),t}}class Mr extends ZA{constructor(A=null,t=1,e=1,i,s,n,r,a,o=nt,B=nt,I,Q){super(null,n,r,a,o,B,i,s,I,Q),this.isDataTexture=!0,this.image={data:A,width:t,height:e},this.generateMipmaps=!1,this.flipY=!1,this.unpackAlignment=1}}class ve extends Ge{constructor(A=1,t=1,e=1,i=1){super(),this.type="PlaneGeometry",this.parameters={width:A,height:t,widthSegments:e,heightSegments:i};const s=A/2,n=t/2,r=Math.floor(e),a=Math.floor(i),o=r+1,B=a+1,I=A/r,Q=t/a,h=[],E=[],C=[],c=[];for(let l=0;l_(i[r]));return`${A}(${s.join(", ")})`}case"mat2x3":{const e=t,i=new 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I=0;Ig.getInt8(A),uchar:(g,A,t)=>g.getUint8(A),short:(g,A,t)=>g.getInt16(A,t),ushort:(g,A,t)=>g.getUint16(A,t),int:(g,A,t)=>g.getInt32(A,t),uint:(g,A,t)=>g.getUint32(A,t),float:(g,A,t)=>g.getFloat32(A,t),double:(g,A,t)=>g.getFloat64(A,t)},An={char:(g,A,t,e)=>{g.setInt8(A,e)},uchar:(g,A,t,e)=>{g.setUint8(A,e)},short:(g,A,t,e)=>{g.setInt16(A,e,t)},ushort:(g,A,t,e)=>{g.setUint16(A,e,t)},int:(g,A,t,e)=>{g.setInt32(A,e,t)},uint:(g,A,t,e)=>{g.setUint32(A,e,t)},float:(g,A,t,e)=>{g.setFloat32(A,e,t)},double:(g,A,t,e)=>{g.setFloat64(A,e,t)}},Zt={char:1,uchar:1,short:2,ushort:2,int:4,uint:4,float:4,double:8},Xe={char:127,uchar:255,short:32767,ushort:65535,int:2147483647,uint:4294967295,float:1,double:1},ta={0:0,9:1,24:2,45:3},ea={0:0,1:9,2:24,3:45};function tn(g){let A=0;for(;g[`f_rest_${A}`];)A+=1;const t=ta[A];if(t==null)throw new Error(`Unsupported number of SH coefficients: ${A}`);return t}const pA={type:"Gsplat"},zi={type:"PackedSplats"},ia=(g,A)=>new ra({packedSplats:g,index:A}),sa=(g,A,t,e)=>new aa({packedSplats:g,index:A,base:t,count:e}),je=g=>new ga({gsplat:g}),vi=({gsplat:g,flags:A,index:t,center:e,scales:i,quaternion:s,rgba:n,rgb:r,opacity:a,x:o,y:B,z:I,r:Q,g:h,b:E})=>new oa({gsplat:g,flags:A,index:t,center:e,scales:i,quaternion:s,rgba:n,rgb:r,opacity:a,x:o,y:B,z:I,r:Q,g:h,b:E}),na=(g,{scale:A,rotate:t,translate:e,recolor:i})=>new Ia({gsplat:g,scale:A,rotate:t,translate:e,recolor:i}),tt=KA(`\n struct Gsplat {\n vec3 center;\n uint flags;\n vec3 scales;\n int index;\n vec4 quaternion;\n vec4 rgba;\n };\n const uint GSPLAT_FLAG_ACTIVE = 1u << 0u;\n\n bool isGsplatActive(uint flags) {\n return (flags & GSPLAT_FLAG_ACTIVE) != 0u;\n }\n`),Ki=KA(`\n struct PackedSplats {\n usampler2DArray texture;\n int numSplats;\n };\n`),en=KA(`\n bool readPackedSplat(usampler2DArray texture, int numSplats, int index, out Gsplat gsplat) {\n if ((index >= 0) && (index < numSplats)) {\n uvec4 packed = texelFetch(texture, splatTexCoord(index), 0);\n unpackSplat(packed, gsplat.center, gsplat.scales, gsplat.quaternion, gsplat.rgba);\n return true;\n } else {\n return false;\n }\n }\n`);class ra extends lA{constructor({packedSplats:A,index:t}){super({inTypes:{packedSplats:zi,index:"int"},outTypes:{gsplat:pA},inputs:{packedSplats:A,index:t},globals:()=>[tt,Ki,en],statements:({inputs:e,outputs:i})=>{const{gsplat:s}=i;if(!s)return[];const{packedSplats:n,index:r}=e;let a;return n&&r?a=At(`\n if (readPackedSplat(${n}.texture, ${n}.numSplats, ${r}, ${s})) {\n bool zeroSize = all(equal(${s}.scales, vec3(0.0, 0.0, 0.0)));\n ${s}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;\n } else {\n ${s}.flags = 0u;\n }\n `):a=[`${s}.flags = 0u;`],a.push(`${s}.index = ${r??"0"};`),a}})}dynoOut(){return new SA(this,"gsplat")}}class aa extends lA{constructor({packedSplats:A,index:t,base:e,count:i}){super({inTypes:{packedSplats:zi,index:"int",base:"int",count:"int"},outTypes:{gsplat:pA},inputs:{packedSplats:A,index:t,base:e,count:i},globals:()=>[tt,Ki,en],statements:({inputs:s,outputs:n})=>{const{gsplat:r}=n;if(!r)return[];const{packedSplats:a,index:o,base:B,count:I}=s;let Q;return a&&o&&B&&I?Q=At(`\n ${r}.flags = 0u;\n if ((${o} >= ${B}) && (${o} < (${B} + ${I}))) {\n if (readPackedSplat(${a}.texture, ${a}.numSplats, ${o}, ${r})) {\n bool zeroSize = all(equal(${r}.scales, vec3(0.0, 0.0, 0.0)));\n ${r}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;\n }\n }\n `):Q=[`${r}.flags = 0u;`],Q.push(`${r}.index = ${o??"0"};`),Q}})}dynoOut(){return new SA(this,"gsplat")}}class ga extends lA{constructor({gsplat:A}){super({inTypes:{gsplat:pA},outTypes:{flags:"uint",active:"bool",index:"int",center:"vec3",scales:"vec3",quaternion:"vec4",rgba:"vec4",rgb:"vec3",opacity:"float",x:"float",y:"float",z:"float",r:"float",g:"float",b:"float"},inputs:{gsplat:A},globals:()=>[tt],statements:({inputs:t,outputs:e})=>{const{gsplat:i}=t,{flags:s,active:n,index:r,center:a,scales:o,quaternion:B,rgba:I,rgb:Q,opacity:h,x:E,y:C,z:c,r:l,g:y,b:d}=e;return[s?`${s} = ${i?`${i}.flags`:"0u"};`:null,n?`${n} = isGsplatActive(${i?`${i}.flags`:"0u"});`:null,r?`${r} = ${i?`${i}.index`:"0"};`:null,a?`${a} = ${i?`${i}.center`:"vec3(0.0, 0.0, 0.0)"};`:null,o?`${o} = ${i?`${i}.scales`:"vec3(0.0, 0.0, 0.0)"};`:null,B?`${B} = ${i?`${i}.quaternion`:"vec4(0.0, 0.0, 0.0, 1.0)"};`:null,I?`${I} = ${i?`${i}.rgba`:"vec4(0.0, 0.0, 0.0, 0.0)"};`:null,Q?`${Q} = ${i?`${i}.rgba.rgb`:"vec3(0.0, 0.0, 0.0)"};`:null,h?`${h} = ${i?`${i}.rgba.a`:"0.0"};`:null,E?`${E} = ${i?`${i}.center.x`:"0.0"};`:null,C?`${C} = ${i?`${i}.center.y`:"0.0"};`:null,c?`${c} = ${i?`${i}.center.z`:"0.0"};`:null,l?`${l} = ${i?`${i}.rgba.r`:"0.0"};`:null,y?`${y} = ${i?`${i}.rgba.g`:"0.0"};`:null,d?`${d} = ${i?`${i}.rgba.b`:"0.0"};`:null].filter(Boolean)}})}}class oa extends lA{constructor({gsplat:A,flags:t,index:e,center:i,scales:s,quaternion:n,rgba:r,rgb:a,opacity:o,x:B,y:I,z:Q,r:h,g:E,b:C}){super({inTypes:{gsplat:pA,flags:"uint",index:"int",center:"vec3",scales:"vec3",quaternion:"vec4",rgba:"vec4",rgb:"vec3",opacity:"float",x:"float",y:"float",z:"float",r:"float",g:"float",b:"float"},outTypes:{gsplat:pA},inputs:{gsplat:A,flags:t,index:e,center:i,scales:s,quaternion:n,rgba:r,rgb:a,opacity:o,x:B,y:I,z:Q,r:h,g:E,b:C},globals:()=>[tt],statements:({inputs:c,outputs:l})=>{const{gsplat:y}=l;if(!y)return[];const{gsplat:d,flags:f,index:p,center:m,scales:x,quaternion:w,rgba:D,rgb:N,opacity:M,x:S,y:F,z:k,r:U,g:R,b:G}=c;return[`${y}.flags = ${f??(d?`${d}.flags`:"0u")};`,`${y}.index = ${p??(d?`${d}.index`:"0")};`,`${y}.center = ${m??(d?`${d}.center`:"vec3(0.0, 0.0, 0.0)")};`,`${y}.scales = ${x??(d?`${d}.scales`:"vec3(0.0, 0.0, 0.0)")};`,`${y}.quaternion = ${w??(d?`${d}.quaternion`:"vec4(0.0, 0.0, 0.0, 1.0)")};`,`${y}.rgba = ${D??(d?`${d}.rgba`:"vec4(0.0, 0.0, 0.0, 0.0)")};`,N?`${y}.rgba.rgb = ${N};`:null,M?`${y}.rgba.a = ${M};`:null,S?`${y}.center.x = ${S};`:null,F?`${y}.center.y = ${F};`:null,k?`${y}.center.z = ${k};`:null,U?`${y}.rgba.r = ${U};`:null,R?`${y}.rgba.g = ${R};`:null,G?`${y}.rgba.b = ${G};`:null].filter(Boolean)}})}dynoOut(){return new SA(this,"gsplat")}}KA(`\n vec3 gsplatNormal(vec3 scales, vec4 quaternion) {\n float minScale = min(scales.x, min(scales.y, scales.z));\n vec3 normal;\n if (scales.z == minScale) {\n normal = vec3(0.0, 0.0, 1.0);\n } else if (scales.y == minScale) {\n normal = vec3(0.0, 1.0, 0.0);\n } else {\n normal = vec3(1.0, 0.0, 0.0);\n }\n return quatVec(quaternion, normal);\n }\n`);class Ia extends lA{constructor({gsplat:A,scale:t,rotate:e,translate:i,recolor:s}){super({inTypes:{gsplat:pA,scale:"float",rotate:"vec4",translate:"vec3",recolor:"vec4"},outTypes:{gsplat:pA},inputs:{gsplat:A,scale:t,rotate:e,translate:i,recolor:s},globals:()=>[tt],statements:({inputs:n,outputs:r,compile:a})=>{const{gsplat:o}=r;if(!o||!n.gsplat)return[];const{scale:B,rotate:I,translate:Q,recolor:h}=n,E=a.indent;return[`${o} = ${n.gsplat};`,`if (isGsplatActive(${o}.flags)) {`,B?`${E}${o}.center *= ${B};`:null,I?`${E}${o}.center = quatVec(${I}, ${o}.center);`:null,Q?`${E}${o}.center += ${Q};`:null,B?`${E}${o}.scales *= ${B};`:null,I?`${E}${o}.quaternion = quatQuat(${I}, ${o}.quaternion);`:null,h?`${E}${o}.rgba *= ${h};`:null,"}"].filter(Boolean)}})}dynoOut(){return new SA(this,"gsplat")}}const Ba=g=>new Qa({gsplat:g});class Qa extends lA{constructor({gsplat:A}){super({inTypes:{gsplat:pA},inputs:{gsplat:A},globals:()=>[tt],statements:({inputs:t,outputs:e})=>{const{output:i}=e;if(!i)return[];const{gsplat:s}=t;return s?At(`\n if (isGsplatActive(${s}.flags)) {\n ${i} = packSplat(${s}.center, ${s}.scales, ${s}.quaternion, ${s}.rgba);\n } else {\n ${i} = uvec4(0u, 0u, 0u, 0u);\n }\n `):[`${i} = uvec4(0u, 0u, 0u, 0u);`]}})}dynoOut(){return new SA(this,"output")}}class ha extends lA{constructor({rgba8:A}){super({inTypes:{rgba8:"vec4"},inputs:{rgba8:A},statements:({inputs:t,outputs:e})=>[`target = ${t.rgba8??"vec4(0.0, 0.0, 0.0, 0.0)"};`]})}dynoOut(){return new SA(this,"rgba8")}}class et extends lA{constructor({key:A,type:t,count:e,value:i,update:s,globals:n}){A=A??"value",super({outTypes:{[A]:t},update:()=>{if(s){const r=s(this.value);r!==void 0&&(this.value=r)}this.uniform.value=this.value},generate:({inputs:r,outputs:a})=>{const o=(n==null?void 0:n({inputs:r,outputs:a}))??[],B={},I=a[A];return I&&(o.push(`uniform ${Ws(I,t,e)};`),B[I]=this.uniform),{globals:o,uniforms:B}}}),this.type=t,this.count=e,this.value=i,this.uniform={value:i},this.outKey=A}dynoOut(){return new SA(this,this.outKey)}}class _i extends et{constructor({key:A,value:t,update:e}){super({key:A,type:"int",value:t,update:e})}}class $e extends et{constructor({key:A,value:t,update:e}){super({key:A,type:"float",value:t,update:e})}}class Ea extends et{constructor({key:A,value:t,update:e}){super({key:A,type:"vec3",value:t,update:e})}}class sn extends et{constructor({key:A,value:t,update:e}){super({key:A,type:"vec4",value:t,update:e})}}class qi extends et{constructor({key:A,value:t,update:e}){super({key:A,type:"usampler2DArray",value:t,update:e})}}class nn{constructor({graph:A,inputs:t,outputs:e,template:i}){this.graph=A,this.template=i,this.inputs=t??{},this.outputs=e??{};const s=new br({indent:this.template.indent});for(const r in this.outputs)this.outputs[r]&&s.declares.add(this.outputs[r]);const n=A.compile({inputs:this.inputs,outputs:this.outputs,compile:s});this.shader=i.generate({globals:s.globals,statements:n}),this.uniforms=s.uniforms,this.updaters=s.updaters}prepareMaterial(){return Ca(this)}update(){for(const A of this.updaters)A()}}class rn{constructor(A){const t=A.match(/^([ \\t]*)\\{\\{\\s*GLOBALS\\s*\\}\\}/m),e=A.match(/^([ \\t]*)\\{\\{\\s*STATEMENTS\\s*\\}\\}/m);if(!t||!e)throw new Error("Template must contain {{ GLOBALS }} and {{ STATEMENTS }}");this.before=A.substring(0,t.index),this.between=A.substring(t.index+t[0].length,e.index),this.after=A.substring(e.index+e[0].length),this.indent=e[1]}generate({globals:A,statements:t}){return this.before+Array.from(A).join(`\n\n`)+this.between+t.map(e=>this.indent+e).join(`\n`)+this.after}}const an=new Map;function Ca(g){let A=an.get(g);return A||(A=new Ri({glslVersion:jn,vertexShader:Pr,fragmentShader:g.shader,uniforms:g.uniforms}),an.set(g,A),A)}function gn(g,A,t="add"){const e=()=>{throw new Error(`Invalid ${t} types: ${g}, ${A}`)};if(g===A)return g;if(g==="int"){if(Tt(A))return A;e()}if(A==="int"){if(Tt(g))return g;e()}if(g==="uint"){if(zt(A))return A;e()}if(A==="uint"){if(zt(g))return g;e()}if(g==="float"){if(Ke(A))return A;e()}if(A==="float"){if(Ke(g))return g;e()}throw new Error(`Invalid ${t} types: ${g}, ${A}`)}function ca(g,A){return gn(g,A,"sub")}function la(g,A){const t=()=>{throw new Error(`Invalid mul types: ${g}, ${A}`)},e=i=>i;if(g==="int"){if(Tt(A))return e(A);t()}if(A==="int"){if(Tt(g))return e(g);t()}if(g==="uint"){if(zt(A))return e(A);t()}if(A==="uint"){if(zt(g))return e(g);t()}if(g==="float"){if(Ke(A))return e(A);t()}if(A==="float"){if(Ke(g))return e(g);t()}if(Tt(g)||zt(g)||Tt(A)||zt(A)){if(g===A)return e(g);t()}if(g==="vec2"){if(A==="vec2"||vt(A))return e("vec2");if(A==="mat3x2")return e("vec3");if(A==="mat4x2")return e("vec4");t()}if(g==="vec3"){if(A==="mat2x3")return e("vec2");if(A==="vec3"||Kt(A))return e("vec3");if(A==="mat4x3")return e("vec4");t()}if(g==="vec4"){if(A==="mat2x4")return e("vec2");if(A==="mat3x4")return e("vec3");if(A==="vec4"||_t(A))return e("vec4");t()}if(A==="vec2"){if(vt(g))return e("vec2");if(g==="mat2x3")return e("vec3");if(g==="mat2x4")return e("vec4");t()}if(A==="vec3"){if(g==="mat3x2")return e("vec2");if(Kt(g))return e("vec3");if(g==="mat3x4")return e("vec4");t()}if(A==="vec4"){if(g==="mat4x2")return e("vec2");if(g==="mat4x3")return e("vec3");if(_t(g))return e("vec4");t()}if(vt(g)){if(vt(A))return e("mat2");if(A==="mat3x2")return e("mat3x2");if(A==="mat4x2")return e("mat4x2");t()}if(g==="mat2x3"){if(vt(A))return e("mat2x3");if(A==="mat3x2")return e("mat3");if(A==="mat4x2")return e("mat4x3");t()}if(g==="mat2x4"){if(vt(A))return e("mat2x4");if(A==="mat3x2")return e("mat3x4");if(A==="mat4x2")return e("mat4");t()}if(g==="mat3x2"){if(A==="mat2x3")return e("mat2");if(Kt(A))return e("mat3x2");if(A==="mat4x3")return e("mat4x2");t()}if(Kt(g)){if(A==="mat2x3")return e("mat2x3");if(Kt(A))return e("mat3");if(A==="mat4x3")return e("mat4x3");t()}if(g==="mat3x4"){if(A==="mat2x3")return e("mat2x4");if(Kt(A))return e("mat3x4");if(A==="mat4x3")return e("mat4");t()}if(g==="mat4x2"){if(A==="mat2x4")return e("mat2");if(A==="mat3x4")return e("mat3x2");if(_t(A))return e("mat4x2");t()}if(g==="mat4x3"){if(A==="mat2x4")return e("mat2x3");if(A==="mat3x4")return e("mat3");if(_t(A))return e("mat4x3");t()}if(_t(g)){if(A==="mat2x4")return e("mat2x4");if(A==="mat3x4")return e("mat3x4");if(_t(A))return e("mat4");t()}throw new Error(`Invalid mul types: ${g}, ${A}`)}const Ai=(g,A)=>new ya({a:g,b:A}),ua=(g,A)=>new fa({a:g,b:A}),da=(g,A)=>new wa({a:g,b:A});class ya extends Ze{constructor({a:A,b:t}){super({a:A,b:t,outKey:"sum",outTypeFunc:gn}),this.statements=({inputs:e,outputs:i})=>[`${i.sum} = ${e.a} + ${e.b};`]}}class fa extends Ze{constructor({a:A,b:t}){super({a:A,b:t,outKey:"difference",outTypeFunc:ca}),this.statements=({inputs:e,outputs:i})=>[`${i.difference} = ${e.a} - ${e.b};`]}}class wa extends Ze{constructor({a:A,b:t}){super({a:A,b:t,outKey:"product",outTypeFunc:la}),this.statements=({inputs:e,outputs:i})=>[`${i.product} = ${e.a} * ${e.b};`]}}const pa=g=>new ma({a:g}),Da=(g,A)=>new Ma({a:g,b:A});class ma extends Yr{constructor({a:A}){super({a:A,outTypeFunc:t=>t,outKey:"normalize"}),this.statements=({inputs:t,outputs:e})=>[`${e.normalize} = normalize(${t.a});`]}}function xa(g){if(g==="float")return"vec2";if(g==="vec2")return"vec3";if(g==="vec3")return"vec4";throw new Error("Invalid type")}class Ma extends Ze{constructor({a:A,b:t}){const e=wt(A),i=xa(e);super({a:A,b:t,outKey:"extend",outTypeFunc:()=>i}),this.statements=({inputs:s,outputs:n})=>[`${n.extend} = ${i}(${s.a}, ${s.b});`]}}const Sa=(g,{scale:A,scales:t,rotate:e,translate:i})=>new Na({position:g,scale:A,scales:t,rotate:e,translate:i}).outputs.position,Fa=(g,{scale:A,scales:t,rotate:e})=>new ka({dir:g,scale:A,scales:t,rotate:e}).outputs.dir;class Na extends lA{constructor({position:A,scale:t,scales:e,rotate:i,translate:s}){super({inTypes:{position:"vec3",scale:"float",scales:"vec3",rotate:"vec4",translate:"vec3"},outTypes:{position:"vec3"},inputs:{position:A,scale:t,scales:e,rotate:i,translate:s},statements:({inputs:n,outputs:r})=>{const{position:a}=r;if(!a)return[];const{scale:o,scales:B,rotate:I,translate:Q}=n;return[`${a} = ${n.position??"vec3(0.0, 0.0, 0.0)"};`,o?`${a} *= ${o};`:null,B?`${a} *= ${B};`:null,I?`${a} = quatVec(${I}, ${a});`:null,Q?`${a} += ${Q};`:null].filter(Boolean)}})}}class ka extends lA{constructor({dir:A,scale:t,scales:e,rotate:i}){super({inTypes:{dir:"vec3",scale:"float",scales:"vec3",rotate:"vec4"},outTypes:{dir:"vec3"},inputs:{dir:A,scale:t,scales:e,rotate:i},statements:({inputs:s,outputs:n})=>{const{dir:r}=n;if(!r)return[];const{scale:a,scales:o,rotate:B}=s;return[`${r} = ${s.dir??"vec3(0.0, 0.0, 0.0)"};`,a?`${r} *= ${a};`:null,o?`${r} *= ${o};`:null,B?`${r} = quatVec(${B}, ${r});`:null].filter(Boolean)}})}}var Ra=`precision highp float;\nprecision highp int;\nprecision highp sampler2D;\nprecision highp usampler2D;\nprecision highp isampler2D;\nprecision highp sampler2DArray;\nprecision highp usampler2DArray;\nprecision highp isampler2DArray;\nprecision highp sampler3D;\nprecision highp usampler3D;\nprecision highp isampler3D;\n\n#include \n\nuniform uint targetLayer;\nuniform int targetBase;\nuniform int targetCount;\n\nout uvec4 target;\n\n{{ GLOBALS }}\n\nvoid produceSplat(int index) {\n {{ STATEMENTS }}\n}\n\nvoid main() {\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\n int index = targetIndex - targetBase;\n\n if ((index >= 0) && (index < targetCount)) {\n produceSplat(index);\n } else {\n target = uvec4(0u, 0u, 0u, 0u);\n }\n}`;const O=class O{constructor(A={}){this.maxSplats=0,this.numSplats=0,this.packedArray=null,this.isInitialized=!1,this.target=null,this.source=null,this.needsUpdate=!0,this.extra={},this.dyno=new on({packedSplats:this}),this.initialized=Promise.resolve(this),this.reinitialize(A)}reinitialize(A){this.isInitialized=!1,A.url||A.fileBytes||A.construct?this.initialized=this.asyncInitialize(A).then(()=>(this.isInitialized=!0,this)):(this.initialize(A),this.isInitialized=!0,this.initialized=Promise.resolve(this))}initialize(A){A.packedArray?(this.packedArray=A.packedArray,this.maxSplats=Math.floor(this.packedArray.length/4),this.maxSplats=Math.floor(this.maxSplats/P)*P,this.numSplats=Math.min(this.maxSplats,A.numSplats??Number.POSITIVE_INFINITY)):(this.maxSplats=A.maxSplats??0,this.numSplats=0),this.extra=A.extra??{}}async asyncInitialize(A){let{url:t,fileBytes:e,construct:i}=A;if(t&&(e=await fetch(t).then(async s=>{if(!s.ok)throw new Error(`${s.status} "${s.statusText}" fetching URL: ${t}`);return await s.arrayBuffer()})),e){const s=await ja({input:e,fileType:A.fileType,pathOrUrl:A.fileName??t});this.initialize(s)}if(i){const s=i(this);s instanceof Promise&&await s}}dispose(){this.target&&(this.target.dispose(),this.target=null),this.source&&(this.source.dispose(),this.source=null)}ensureSplats(A){const t=A<=this.maxSplats?this.maxSplats:Math.max(A,2*this.maxSplats),e=this.packedArray?this.packedArray.length/4:0;if(!this.packedArray||t>e){this.maxSplats=FA(t).maxSplats;const i=new Uint32Array(this.maxSplats*4);this.packedArray&&i.set(this.packedArray),this.packedArray=i}return this.packedArray}ensureSplatsSh(A,t){let e,i;if(A===0)return this.ensureSplats(t);if(A===1)e=2,i="sh1";else if(A===2)e=4,i="sh2";else if(A===3)e=4,i="sh3";else throw new Error(`Invalid level: ${A}`);let s=this.extra[i]?this.extra[i].length/e:0;const n=t<=s?s:Math.max(t,2*s);if(!this.extra[i]||n>s){s=FA(n).maxSplats;const r=new Uint32Array(s*e);this.extra[i]&&r.set(this.extra[i]),this.extra[i]=r}return this.extra[i]}getSplat(A){if(!this.packedArray||A>=this.numSplats)throw new Error("Invalid index");return Vs(this.packedArray,A)}setSplat(A,t,e,i,s,n){const r=this.ensureSplats(A+1);ge(r,A,t.x,t.y,t.z,e.x,e.y,e.z,i.x,i.y,i.z,i.w,s,n.r,n.g,n.b),this.numSplats=Math.max(this.numSplats,A+1)}pushSplat(A,t,e,i,s){const n=this.ensureSplats(this.numSplats+1);ge(n,this.numSplats,A.x,A.y,A.z,t.x,t.y,t.z,e.x,e.y,e.z,e.w,i,s.r,s.g,s.b),++this.numSplats}forEachSplat(A){if(!(!this.packedArray||!this.numSplats))for(let t=0;t{const s=t,n=Math.ceil(i/P)*P;return t+=n,{base:s,count:i}});return{maxSplats:t,mapping:e}}getTexture(){return this.target?this.target.texture:this.source||this.packedArray?this.maybeUpdateSource():O.getEmpty()}maybeUpdateSource(){if(!this.packedArray)throw new Error("No packed splats");if(this.needsUpdate||!this.source){if(this.needsUpdate=!1,this.source){const{width:A,height:t,depth:e}=this.source.image;this.maxSplats!==A*t*e&&(this.source.dispose(),this.source=null)}if(this.source)this.packedArray.buffer!==this.source.image.data.buffer&&(this.source.image.data=new Uint8Array(this.packedArray.buffer));else{const{width:A,height:t,depth:e}=FA(this.maxSplats);this.source=new rt(this.packedArray,A,t,e),this.source.format=mt,this.source.type=ct,this.source.internalFormat="RGBA32UI",this.source.needsUpdate=!0}this.source.needsUpdate=!0}return this.source}static getEmpty(){if(!O.emptySource){const{width:A,height:t,depth:e,maxSplats:i}=FA(1),s=new Uint32Array(i*4);O.emptySource=new rt(s,A,t,e),O.emptySource.format=mt,O.emptySource.type=ct,O.emptySource.internalFormat="RGBA32UI",O.emptySource.needsUpdate=!0}return O.emptySource}prepareProgramMaterial(A){let t=O.generatorProgram.get(A);if(!t){const i=qe({index:"int"},{output:"uvec4"},({index:s})=>{A.inputs.index=s;const n=A.outputs.gsplat;return{output:Ba(n)}});O.programTemplate||(O.programTemplate=new rn(Ra)),t=new nn({graph:i,inputs:{index:"index"},outputs:{output:"target"},template:O.programTemplate}),Object.assign(t.uniforms,{targetLayer:{value:0},targetBase:{value:0},targetCount:{value:0}}),O.generatorProgram.set(A,t)}const e=t.prepareMaterial();return O.mesh.material=e,{program:t,material:e}}saveRenderState(A){return{xrPresenting:A.xr.isPresenting,autoClear:A.autoClear,scissorTest:A.getScissorTest(),pixelRatio:A.getPixelRatio()}}resetRenderState(A,t){A.setRenderTarget(null),A.setPixelRatio(t.pixelRatio),A.xr.isPresenting=t.xrPresenting,A.autoClear=t.autoClear,A.setScissorTest(t.scissorTest)}generate({generator:A,base:t,count:e,renderer:i}){if(!this.target)throw new Error("Target must be initialized with ensureSplats");if(t+e>this.maxSplats)throw new Error("Base + count exceeds maxSplats");const{program:s,material:n}=this.prepareProgramMaterial(A);s.update();const r=this.saveRenderState(i),a=Math.ceil((t+e)/P)*P,o=P*Qt;for(n.uniforms.targetBase.value=t,n.uniforms.targetCount.value=e;t[Ki],value:{texture:Ie.getEmpty(),numSplats:0},update:t=>{var e,i;return t.texture=((e=this.packedSplats)==null?void 0:e.getTexture())??Ie.getEmpty(),t.numSplats=((i=this.packedSplats)==null?void 0:i.numSplats)??0,t}}),this.packedSplats=A}}var Ua=`precision highp float;\nprecision highp int;\nprecision highp sampler2D;\nprecision highp usampler2D;\nprecision highp isampler2D;\nprecision highp sampler2DArray;\nprecision highp usampler2DArray;\nprecision highp isampler2DArray;\nprecision highp sampler3D;\nprecision highp usampler3D;\nprecision highp isampler3D;\n\n#include \n\nuniform uint targetLayer;\nuniform int targetBase;\nuniform int targetCount;\n\nout vec4 target;\n\n{{ GLOBALS }}\n\nvoid computeReadback(int index) {\n {{ STATEMENTS }}\n}\n\nvoid main() {\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\n int index = targetIndex - targetBase;\n\n if ((index >= 0) && (index < targetCount)) {\n computeReadback(index);\n } else {\n target = vec4(0.0, 0.0, 0.0, 0.0);\n }\n}`;const IA=class IA{constructor({renderer:A}={}){this.renderer=A,this.capacity=0,this.count=0}dispose(){this.target&&(this.target.dispose(),this.target=void 0)}ensureBuffer(A,t){const i=Math.ceil(Math.max(1,A)/P)*P*4;if(t.byteLength>=i)return t;const s=new ArrayBuffer(i);if(t instanceof ArrayBuffer)return s;const n=t.constructor;return new n(s)}ensureCapacity(A){const{width:t,height:e,depth:i,maxSplats:s}=FA(A);(!this.target||s>this.capacity)&&(this.dispose(),this.capacity=s,this.target=new xs(t,e,i,{depthBuffer:!1,stencilBuffer:!1,generateMipmaps:!1,magFilter:nt,minFilter:nt}),this.target.texture.format=pe,this.target.texture.type=we,this.target.texture.internalFormat="RGBA8")}prepareProgramMaterial(A){let t=IA.readbackProgram.get(A);if(!t){const i=qe({index:"int"},{rgba8:"vec4"},({index:s})=>(A.inputs.index=s,{rgba8:new ha({rgba8:A.outputs.rgba8})}));IA.programTemplate||(IA.programTemplate=new rn(Ua)),t=new nn({graph:i,inputs:{index:"index"},outputs:{rgba8:"target"},template:IA.programTemplate}),Object.assign(t.uniforms,{targetLayer:{value:0},targetBase:{value:0},targetCount:{value:0}}),IA.readbackProgram.set(A,t)}const e=t.prepareMaterial();return IA.mesh.material=e,{program:t,material:e}}saveRenderState(A){return{xrPresenting:A.xr.isPresenting,autoClear:A.autoClear,scissorTest:A.getScissorTest(),pixelRatio:A.getPixelRatio()}}resetRenderState(A,t){A.setRenderTarget(null),A.setPixelRatio(t.pixelRatio),A.xr.isPresenting=t.xrPresenting,A.autoClear=t.autoClear,A.setScissorTest(t.scissorTest)}process({count:A,material:t}){const e=this.renderer;if(!e)throw new Error("No renderer");if(!this.target)throw new Error("No target");const i=P*Qt;t.uniforms.targetBase.value=0,t.uniforms.targetCount.value=A;let s=0;for(;sA)}render({reader:A,count:t,renderer:e}){if(this.renderer=e||this.renderer,!this.renderer)throw new Error("No renderer");this.ensureCapacity(t);const{program:i,material:s}=this.prepareProgramMaterial(A);i.update();const n=this.saveRenderState(this.renderer);this.process({count:t,material:s}),this.resetRenderState(this.renderer,n)}async readback({readback:A}){if(!this.renderer)throw new Error("No renderer");const t=this.saveRenderState(this.renderer),e=this.read({readback:A});return this.resetRenderState(this.renderer,t),e}async renderReadback({reader:A,count:t,renderer:e,readback:i}){if(this.renderer=e||this.renderer,!this.renderer)throw new Error("No renderer");this.ensureCapacity(t);const{program:s,material:n}=this.prepareProgramMaterial(A);s.update();const r=this.saveRenderState(this.renderer);this.process({count:t,material:n});const a=this.read({readback:i});return this.resetRenderState(this.renderer,r),a}getTexture(){var A;return(A=this.target)==null?void 0:A.texture}};IA.programTemplate=null,IA.readbackProgram=new Map,IA.geometry=new ve(2,2),IA.mesh=new vs(IA.geometry,new Ri({visible:!1})),IA.scene=new _s().add(IA.mesh),IA.camera=new Ks;let Zi=IA;const BA=class BA{constructor(A={}){this.capacity=0,this.count=0,this.array=null,this.readback=null,this.source=null,this.needsUpdate=!0,this.dyno=new et({key:"rgbaArray",type:Bn,globals:()=>[Qn],value:{texture:BA.getEmpty(),count:0},update:t=>{var e;return t.texture=((e=this.readback)==null?void 0:e.getTexture())??this.source??BA.getEmpty(),t.count=this.count,t}}),A.array?(this.array=A.array,this.capacity=Math.floor(this.array.length/4),this.capacity=Math.floor(this.capacity/P)*P,this.count=Math.min(this.capacity,A.count??Number.POSITIVE_INFINITY)):(this.capacity=A.capacity??0,this.count=0)}dispose(){this.readback&&(this.readback.dispose(),this.readback=null),this.source&&(this.source.dispose(),this.source=null)}ensureCapacity(A){var t;if(!this.array||A>(((t=this.array)==null?void 0:t.length)??0)/4){this.capacity=FA(A).maxSplats;const e=new Uint8Array(this.capacity*4);this.array&&e.set(this.array),this.array=e}return this.array}getTexture(){var t;let A=(t=this.readback)==null?void 0:t.getTexture();return(this.source||this.array)&&(A=this.maybeUpdateSource()),A??BA.getEmpty()}maybeUpdateSource(){if(!this.array)throw new Error("No array");if(this.needsUpdate||!this.source){if(this.needsUpdate=!1,this.source){const{width:A,height:t,depth:e}=this.source.image;this.capacity!==A*t*e&&(this.source.dispose(),this.source=null)}if(this.source)this.array.buffer!==this.source.image.data.buffer&&(this.source.image.data=new Uint8Array(this.array.buffer));else{const{width:A,height:t,depth:e}=FA(this.capacity);this.source=new rt(this.array,A,t,e),this.source.format=pe,this.source.type=we,this.source.internalFormat="RGBA8",this.source.needsUpdate=!0}this.source.needsUpdate=!0}return this.source}render({reader:A,count:t,renderer:e}){this.readback||(this.readback=new Zi({renderer:e})),this.readback.render({reader:A,count:t,renderer:e}),this.capacity=this.readback.capacity,this.count=this.readback.count}fromPackedSplats({packedSplats:A,base:t,count:e,renderer:i}){const{dynoSplats:s,dynoBase:n,dynoCount:r,reader:a}=BA.makeDynos();return s.packedSplats=A,n.value=t,r.value=e,this.render({reader:a,count:e,renderer:i}),this}async read(){if(!this.readback)throw new Error("No readback");return(!this.array||this.array.length{if(!s)throw new Error("index is undefined");s=Ai(s,t);const n=sa(A,s,t,e);return{rgba8:je(n).outputs.rgba}});BA.dynos={dynoSplats:A,dynoBase:t,dynoCount:e,reader:i}}return BA.dynos}};BA.emptySource=null,BA.dynos=null;let In=BA;const Bn={type:"RgbaArray"},Qn=KA(`\n struct RgbaArray {\n sampler2DArray texture;\n int count;\n };\n`);function Ga(g,A){return new lA({inTypes:{rgba:Bn,index:"int"},outTypes:{rgba:"vec4"},inputs:{rgba:g,index:A},globals:()=>[Qn],statements:({inputs:e,outputs:i})=>At(`\n if ((index >= 0) && (index < ${e.rgba}.count)) {\n ${i.rgba} = texelFetch(${e.rgba}.texture, splatTexCoord(index), 0);\n } else {\n ${i.rgba} = vec4(0.0, 0.0, 0.0, 0.0);\n }\n `)}).outputs.rgba}function ba(g){switch(g){case"all":return 0;case"plane":return 1;case"sphere":return 2;case"box":return 3;case"ellipsoid":return 4;case"cylinder":return 5;case"capsule":return 6;case"infinite_cone":return 7;default:throw new Error(`Unknown SDF type: ${g}`)}}function La(g){switch(g){case"multiply":return 0;case"set_rgb":return 1;case"add_rgba":return 2;default:throw new Error(`Unknown blend mode: ${g}`)}}class Ya extends wA{constructor(A={}){super();const{type:t,invert:e,opacity:i,color:s,displace:n,radius:r}=A;this.type=t??"sphere",this.invert=e??!1,this.opacity=i??1,this.color=s??new yt(1,1,1),this.displace=n??new u(0,0,0),this.radius=r??0}}const si=class si extends wA{constructor(A={}){const{name:t,rgbaBlendMode:e="multiply",sdfSmooth:i=0,softEdge:s=0,invert:n=!1,sdfs:r=null}=A;super(),this.rgbaBlendMode=e,this.sdfSmooth=i,this.softEdge=s,this.invert=n,this.sdfs=r,this.ordering=si.nextOrdering++,this.name=t??`Edit ${this.ordering}`}addSdf(A){this.sdfs==null&&(this.sdfs=[]),this.sdfs.push(A)}removeSdf(A){this.sdfs!=null&&(this.sdfs=this.sdfs.filter(t=>t!==A))}};si.nextOrdering=1;let Wi=si;class Ja{constructor({maxSdfs:A,maxEdits:t}){this.maxSdfs=Math.max(16,A??0),this.numSdfs=0,this.sdfData=new Uint32Array(this.maxSdfs*8*4),this.sdfFloatData=new Float32Array(this.sdfData.buffer),this.sdfTexture=this.newSdfTexture(this.sdfData,this.maxSdfs),this.dynoSdfArray=new et({key:"sdfArray",type:hn,globals:()=>[En],value:{numSdfs:0,sdfTexture:this.sdfTexture},update:e=>(e.numSdfs=this.numSdfs,e.sdfTexture=this.sdfTexture,e)}),this.maxEdits=Math.max(16,t??0),this.numEdits=0,this.editData=new Uint32Array(this.maxEdits*4),this.editFloatData=new Float32Array(this.editData.buffer),this.dynoNumEdits=new _i({value:0}),this.dynoEdits=this.newEdits(this.editData,this.maxEdits)}newSdfTexture(A,t){const e=new Mr(A,8,t,mt,ct);return e.internalFormat="RGBA32UI",e.needsUpdate=!0,e}newEdits(A,t){return new et({key:"edits",type:"uvec4",count:t,globals:()=>[Cn],value:A})}ensureCapacity({maxSdfs:A,maxEdits:t}){let e=!1;return A>this.sdfTexture.image.height&&(this.sdfTexture.dispose(),this.maxSdfs=Math.max(this.maxSdfs*2,A),this.sdfData=new Uint32Array(this.maxSdfs*8*4),this.sdfFloatData=new Float32Array(this.sdfData.buffer),this.sdfTexture=this.newSdfTexture(this.sdfData,this.maxSdfs)),t>(this.dynoEdits.count??0)&&(this.maxEdits=Math.max(this.maxEdits*2,t),this.editData=new Uint32Array(this.maxEdits*4),this.editFloatData=new Float32Array(this.editData.buffer),this.dynoEdits=this.newEdits(this.editData,this.maxEdits),e=!0),e}updateEditData(A,t){const e=this.editData[A]!==t;return this.editData[A]=t,e}updateEditFloatData(A,t){Wt[0]=t;const e=this.editFloatData[A]!==Wt[0];return e&&(this.editFloatData[A]=Wt[0]),e}encodeEdit(A,{sdfFirst:t,sdfCount:e,invert:i,rgbaBlendMode:s,softEdge:n,sdfSmooth:r}){const a=A*4;let o=!1;return o=this.updateEditData(a+0,s|(i?256:0))||o,o=this.updateEditData(a+1,t|e<<16)||o,o=this.updateEditFloatData(a+2,n)||o,o=this.updateEditFloatData(a+3,r)||o,o}updateSdfData(A,t){const e=this.sdfData[A]!==t;return this.sdfData[A]=t,e}updateSdfFloatData(A,t){Wt[0]=t;const e=this.sdfFloatData[A]!==Wt[0];return e&&(this.sdfFloatData[A]=Wt[0]),e}encodeSdf(A,{sdfType:t,invert:e,center:i,quaternion:s,scale:n,sizes:r},a){const o=A*32,B=t|(e?256:0);let I=!1;I=this.updateSdfFloatData(o+0,(i==null?void 0:i.x)??0)||I,I=this.updateSdfFloatData(o+1,(i==null?void 0:i.y)??0)||I,I=this.updateSdfFloatData(o+2,(i==null?void 0:i.z)??0)||I,I=this.updateSdfData(o+3,B)||I,I=this.updateSdfFloatData(o+4,(s==null?void 0:s.x)??0)||I,I=this.updateSdfFloatData(o+5,(s==null?void 0:s.y)??0)||I,I=this.updateSdfFloatData(o+6,(s==null?void 0:s.z)??0)||I,I=this.updateSdfFloatData(o+7,(s==null?void 0:s.w)??0)||I,I=this.updateSdfFloatData(o+8,(n==null?void 0:n.x)??0)||I,I=this.updateSdfFloatData(o+9,(n==null?void 0:n.y)??0)||I,I=this.updateSdfFloatData(o+10,(n==null?void 0:n.z)??0)||I,I=this.updateSdfData(o+11,0)||I,I=this.updateSdfFloatData(o+12,(r==null?void 0:r.x)??0)||I,I=this.updateSdfFloatData(o+13,(r==null?void 0:r.y)??0)||I,I=this.updateSdfFloatData(o+14,(r==null?void 0:r.z)??0)||I,I=this.updateSdfFloatData(o+15,(r==null?void 0:r.w)??0)||I;const Q=Math.min(4,a.length);for(let h=0;hI+Q.length,0),e=this.ensureCapacity({maxEdits:A.length,maxSdfs:t}),i=[new uA,new uA],s=new u,n=new gA,r=new u,a=new uA;let o=0,B=e;A.length!==this.dynoNumEdits.value&&(this.dynoNumEdits.value=A.length,this.numEdits=A.length,B=!0);for(const[I,{edit:Q,sdfs:h}]of A.entries()){B=this.encodeEdit(I,{sdfFirst:o,sdfCount:h.length,invert:Q.invert,rgbaBlendMode:La(Q.rgbaBlendMode),softEdge:Q.softEdge,sdfSmooth:Q.sdfSmooth})||B;let E=!1;for(const C of h)a.set(C.scale.x,C.scale.y,C.scale.z,C.radius),C.scale.setScalar(1),C.updateMatrixWorld(),C.matrixWorld.clone().invert().decompose(s,n,r),C.scale.set(a.x,a.y,a.z),C.updateMatrixWorld(),i[0].set(C.color.r,C.color.g,C.color.b,C.opacity),i[1].set(C.displace.x,C.displace.y,C.displace.z,1),E=this.encodeSdf(o,{sdfType:ba(C.type),invert:C.invert,center:s,quaternion:n,scale:r,sizes:a},i)||E,o+=1;this.numSdfs=o,E&&(this.sdfTexture.needsUpdate=!0),B||(B=E)}return{updated:B,dynoUpdated:e}}modify(A){return Ha(A,this.dynoSdfArray,this.dynoNumEdits,this.dynoEdits)}}const hn={type:"SdfArray"},En=KA(`\n struct SdfArray {\n int numSdfs;\n usampler2D sdfTexture;\n };\n\n void unpackSdfArray(\n usampler2D sdfTexture, int sdfIndex, out uint flags,\n out vec3 center, out vec4 quaternion, out vec3 scale, out vec4 sizes,\n int numValues, out vec4 values[4]\n ) {\n uvec4 temp = texelFetch(sdfTexture, ivec2(0, sdfIndex), 0);\n flags = temp.w;\n center = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z));\n\n temp = texelFetch(sdfTexture, ivec2(1, sdfIndex), 0);\n quaternion = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n\n temp = texelFetch(sdfTexture, ivec2(2, sdfIndex), 0);\n scale = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z));\n\n temp = texelFetch(sdfTexture, ivec2(3, sdfIndex), 0);\n sizes = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n\n for (int i = 0; i < numValues; ++i) {\n temp = texelFetch(sdfTexture, ivec2(4 + i, sdfIndex), 0);\n values[i] = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w));\n }\n }\n\n const uint SDF_FLAG_TYPE = 0xFFu;\n const uint SDF_FLAG_INVERT = 1u << 8u;\n\n const uint SDF_TYPE_ALL = 0u;\n const uint SDF_TYPE_PLANE = 1u;\n const uint SDF_TYPE_SPHERE = 2u;\n const uint SDF_TYPE_BOX = 3u;\n const uint SDF_TYPE_ELLIPSOID = 4u;\n const uint SDF_TYPE_CYLINDER = 5u;\n const uint SDF_TYPE_CAPSULE = 6u;\n const uint SDF_TYPE_INFINITE_CONE = 7u;\n\n float evaluateSdfArray(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos,\n float smoothK, int numValues, out vec4 outValues[4]\n ) {\n float distanceAccum = (smoothK == 0.0) ? 1.0 / 0.0 : 0.0;\n float maxExp = -1.0 / 0.0;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] = vec4(0.0);\n }\n\n uint flags;\n vec3 center, scale;\n vec4 quaternion, sizes;\n vec4 values[4];\n\n int sdfLast = min(sdfFirst + sdfCount, numSdfs);\n for (int index = sdfFirst; index < sdfLast; ++index) {\n unpackSdfArray(sdfTexture, index, flags, center, quaternion, scale, sizes, numValues, values);\n uint sdfType = flags & SDF_FLAG_TYPE;\n vec3 sdfPos = quatVec(quaternion, pos * scale) + center;\n\n float distance;\n switch (sdfType) {\n case SDF_TYPE_ALL:\n distance = -1.0 / 0.0;\n break;\n case SDF_TYPE_PLANE: {\n distance = sdfPos.z;\n break;\n }\n case SDF_TYPE_SPHERE: {\n distance = length(sdfPos) - sizes.w;\n break;\n }\n case SDF_TYPE_BOX: {\n vec3 q = abs(sdfPos) - sizes.xyz + sizes.w;\n distance = length(max(q, 0.0)) + min(max(q.x, max(q.y, q.z)), 0.0) - sizes.w;\n break;\n }\n case SDF_TYPE_ELLIPSOID: {\n vec3 sizes = sizes.xyz;\n float k0 = length(sdfPos / sizes);\n float k1 = length(sdfPos / dot(sizes, sizes));\n distance = k0 * (k0 - 1.0) / k1;\n break;\n }\n case SDF_TYPE_CYLINDER: {\n vec2 d = abs(vec2(length(sdfPos.xz), sdfPos.y)) - sizes.wy;\n distance = min(max(d.x, d.y), 0.0) + length(max(d, 0.0));\n break;\n }\n case SDF_TYPE_CAPSULE: {\n sdfPos.y -= clamp(sdfPos.y, -0.5 * sizes.y, 0.5 * sizes.y);\n distance = length(sdfPos) - sizes.w;\n break;\n }\n case SDF_TYPE_INFINITE_CONE: {\n float angle = 0.25 * PI * sizes.w;\n vec2 c = vec2(sin(angle), cos(angle));\n vec2 q = vec2(length(sdfPos.xy), -sdfPos.z);\n float d = length(q - c * max(dot(q, c), 0.0));\n distance = d * (((q.x * c.y - q.y * c.x) < 0.0) ? -1.0 : 1.0);\n break;\n }\n }\n\n if ((flags & SDF_FLAG_INVERT) != 0u) {\n distance = -distance;\n }\n\n if (smoothK == 0.0) {\n if (distance < distanceAccum) {\n distanceAccum = distance;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] = values[i];\n }\n }\n } else {\n float scaledDistance = -distance / smoothK;\n if (scaledDistance > maxExp) {\n float scale = exp(maxExp - scaledDistance);\n distanceAccum *= scale;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] *= scale;\n }\n maxExp = scaledDistance;\n }\n\n float weight = exp(scaledDistance - maxExp);\n distanceAccum += weight;\n for (int i = 0; i < numValues; ++i) {\n outValues[i] += weight * values[i];\n }\n }\n }\n\n if (smoothK == 0.0) {\n return distanceAccum;\n } else {\n // Very distant SDFs may result in 0 accumulation\n if (distanceAccum == 0.0) {\n return 1.0 / 0.0;\n }\n for (int i = 0; i < numValues; ++i) {\n outValues[i] /= distanceAccum;\n }\n return (-log(distanceAccum) - maxExp) * smoothK;\n }\n }\n\n float modulateSdfArray(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos,\n float smoothK, int numValues, out vec4 values[4],\n float softEdge, bool invert\n ) {\n float distance = evaluateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, numValues, values);\n if (invert) {\n distance = -distance;\n }\n\n return (softEdge == 0.0) ? ((distance < 0.0) ? 1.0 : 0.0)\n : clamp(-distance / softEdge + 0.5, 0.0, 1.0);\n }\n`),Cn=KA(`\n const uint EDIT_FLAG_BLEND = 0xFFu;\n const uint EDIT_BLEND_MULTIPLY = 0u;\n const uint EDIT_BLEND_SET_RGB = 1u;\n const uint EDIT_BLEND_ADD_RGBA = 2u;\n const uint EDIT_FLAG_INVERT = 0x100u;\n\n void decodeEdit(\n uvec4 packedEdit, out int sdfFirst, out int sdfCount,\n out bool invert, out uint rgbaBlendMode, out float softEdge, out float sdfSmooth\n ) {\n rgbaBlendMode = packedEdit.x & EDIT_FLAG_BLEND;\n invert = (packedEdit.x & EDIT_FLAG_INVERT) != 0u;\n\n sdfFirst = int(packedEdit.y & 0xFFFFu);\n sdfCount = int(packedEdit.y >> 16u);\n\n softEdge = uintBitsToFloat(packedEdit.z);\n sdfSmooth = uintBitsToFloat(packedEdit.w);\n }\n\n void applyRgbaDisplaceEdit(\n usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, inout vec3 pos,\n float smoothK, float softEdge, bool invert, uint rgbaBlendMode, inout vec4 rgba\n ) {\n vec4 values[4];\n float modulate = modulateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, 2, values, softEdge, invert);\n // On Android, moving values[0] is necessary to work around a compiler bug.\n vec4 sdfRgba = values[0];\n vec4 sdfDisplaceScale = values[1];\n\n vec4 target;\n switch (rgbaBlendMode) {\n case EDIT_BLEND_MULTIPLY:\n target = rgba * sdfRgba;\n break;\n case EDIT_BLEND_SET_RGB:\n target = vec4(sdfRgba.rgb, rgba.a * sdfRgba.a);\n break;\n case EDIT_BLEND_ADD_RGBA:\n target = rgba + sdfRgba;\n break;\n default:\n // Debug output if blend mode not set\n target = vec4(fract(pos), 1.0);\n }\n rgba = mix(rgba, target, modulate);\n pos += sdfDisplaceScale.xyz * modulate;\n }\n\n void applyPackedRgbaDisplaceEdit(uvec4 packedEdit, usampler2D sdfTexture, int numSdfs, inout vec3 pos, inout vec4 rgba) {\n int sdfFirst, sdfCount;\n bool invert;\n uint rgbaBlendMode;\n float softEdge, sdfSmooth;\n decodeEdit(packedEdit, sdfFirst, sdfCount, invert, rgbaBlendMode, softEdge, sdfSmooth);\n applyRgbaDisplaceEdit(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, sdfSmooth, softEdge, invert, rgbaBlendMode, rgba);\n }\n`);function Ha(g,A,t,e){return new lA({inTypes:{gsplat:pA,sdfArray:hn,numEdits:"int",rgbaDisplaceEdits:"uvec4"},outTypes:{gsplat:pA},globals:()=>[En,Cn],inputs:{gsplat:g,sdfArray:A,numEdits:t,rgbaDisplaceEdits:e},statements:({inputs:s,outputs:n})=>{const{sdfArray:r,numEdits:a,rgbaDisplaceEdits:o}=s,{gsplat:B}=n;return At(`\n ${B} = ${s.gsplat};\n if (isGsplatActive(${B}.flags)) {\n for (int editIndex = 0; editIndex < ${a}; ++editIndex) {\n applyPackedRgbaDisplaceEdit(\n ${o}[editIndex], ${r}.sdfTexture, ${r}.numSdfs,\n ${B}.center, ${B}.rgba\n );\n }\n }\n `)}}).outputs.gsplat}const Wt=new Float32Array(1);class ti{constructor(){this.scale=new $e({value:Number.NEGATIVE_INFINITY}),this.rotate=new sn({value:new gA(Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY)}),this.translate=new Ea({value:new u(Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY)})}apply(A){return Sa(A,{scale:this.scale,rotate:this.rotate,translate:this.translate})}applyDir(A){return Fa(A,{rotate:this.rotate})}applyGsplat(A){return na(A,{scale:this.scale,rotate:this.rotate,translate:this.translate})}updateFromMatrix(A){const t=new u,e=new gA,i=new u;A.decompose(i,e,t);const s=(t.x+t.y+t.z)/3;let n=!1;return s!==this.scale.value&&(this.scale.value=s,n=!0),i.equals(this.translate.value)||(this.translate.value.copy(i),n=!0),e.equals(this.rotate.value)||(this.rotate.value.copy(e),n=!0),n}update(A){return A.updateMatrixWorld(),this.updateFromMatrix(A.matrixWorld)}}class Ta extends wA{constructor({numSplats:A,generator:t,construct:e,update:i}){if(super(),this.numSplats=A??0,this.generator=t,this.frameUpdate=i,this.version=0,e){const s=e(this);Object.assign(this,s)}}updateVersion(){this.version+=1}set needsUpdate(A){A&&this.updateVersion()}}const Ct=class Ct extends Ta{constructor(A={}){const t=new ti,e=new ti,i=new ti,s=new ti,n=new sn({value:new uA(Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY)}),r=new $e({value:0}),a=new $e({value:0}),o={transform:t,viewToWorld:e,worldToView:i,viewToObject:s,recolor:n,time:r,deltaTime:a};if(super({update:({time:B,deltaTime:I,viewToWorld:Q,globalEdits:h})=>this.update({time:B,deltaTime:I,viewToWorld:Q,globalEdits:h})}),this.isInitialized=!1,this.recolor=new yt(1,1,1),this.opacity=1,this.enableViewToObject=!1,this.enableViewToWorld=!1,this.enableWorldToView=!1,this.skinning=null,this.edits=null,this.rgbaDisplaceEdits=null,this.splatRgba=null,this.maxSh=3,this.packedSplats=A.packedSplats??new Ie,this.numSplats=this.packedSplats.numSplats,this.editable=A.editable??!0,this.onFrame=A.onFrame,this.context=o,this.objectModifier=A.objectModifier,this.worldModifier=A.worldModifier,this.updateGenerator(),A.url||A.fileBytes||A.constructSplats||A.packedSplats&&!A.packedSplats.isInitialized)this.initialized=this.asyncInitialize(A).then(async()=>{if(this.updateGenerator(),this.isInitialized=!0,A.onLoad){const B=A.onLoad(this);B instanceof Promise&&await B}return this});else if(this.isInitialized=!0,this.initialized=Promise.resolve(this),A.onLoad){const B=A.onLoad(this);B instanceof Promise&&(this.initialized=B.then(()=>this))}}async asyncInitialize(A){const{url:t,fileBytes:e,fileType:i,fileName:s,maxSplats:n,constructSplats:r}=A;if(t||e||r){const a={url:t,fileBytes:e,fileType:i,fileName:s,maxSplats:n,construct:r};this.packedSplats.reinitialize(a)}this.packedSplats&&(await this.packedSplats.initialized,this.numSplats=this.packedSplats.numSplats,this.updateGenerator())}static async staticInitialize(){await ni(),Ct.isStaticInitialized=!0}pushSplat(A,t,e,i,s){this.packedSplats.pushSplat(A,t,e,i,s)}forEachSplat(A){this.packedSplats.forEachSplat(A)}dispose(){this.packedSplats.dispose()}constructGenerator(A){const{transform:t,viewToObject:e,recolor:i}=A,s=qe({index:"int"},{gsplat:pA},({index:n})=>{if(!n)throw new Error("index is undefined");let r=ia(this.packedSplats.dyno,n);if(this.maxSh>=1){const{sh1Texture:o,sh2Texture:B,sh3Texture:I}=this.ensureShTextures();if(o){const Q=e.translate,{center:h}=je(r).outputs,E=pa(ua(h,Q));let C=_a(r,o,E);this.maxSh>=2&&B&&(C=Ai(C,qa(r,B,E))),this.maxSh>=3&&I&&(C=Ai(C,Za(r,I,E)));let{rgba:c}=je(r).outputs;c=Ai(c,Da(C,Gr("float",0))),r=vi({gsplat:r,rgba:c})}}if(this.splatRgba){const o=Ga(this.splatRgba.dyno,n);r=vi({gsplat:r,rgba:o})}this.skinning&&(r=this.skinning.modify(r)),this.objectModifier&&(r=this.objectModifier.apply({gsplat:r}).gsplat),r=t.applyGsplat(r);const a=da(i,je(r).outputs.rgba);return r=vi({gsplat:r,rgba:a}),this.rgbaDisplaceEdits&&(r=this.rgbaDisplaceEdits.modify(r)),this.worldModifier&&(r=this.worldModifier.apply({gsplat:r}).gsplat),{gsplat:r}});this.generator=s}updateGenerator(){this.constructGenerator(this.context)}update({time:A,viewToWorld:t,deltaTime:e,globalEdits:i}){var c;this.numSplats=this.packedSplats.numSplats,this.context.time.value=A,this.context.deltaTime.value=e,Ct.dynoTime.value=A;const{transform:s,viewToObject:n,recolor:r}=this.context;let a=s.update(this);this.context.viewToWorld.updateFromMatrix(t)&&this.enableViewToWorld&&(a=!0);const o=t.clone().invert();this.context.worldToView.updateFromMatrix(o)&&this.enableWorldToView&&(a=!0);const Q=new CA().compose(s.translate.value,s.rotate.value,new u().setScalar(s.scale.value)).invert().multiply(t);n.updateFromMatrix(Q)&&(this.enableViewToObject||this.packedSplats.extra.sh1)&&(a=!0);const h=new uA(this.recolor.r,this.recolor.g,this.recolor.b,this.opacity);h.equals(r.value)||(r.value.copy(h),a=!0);const E=this.editable?(this.edits??[]).concat(i):[];this.editable&&!this.edits&&this.traverseVisible(l=>{l instanceof Wi&&E.push(l)}),E.sort((l,y)=>l.ordering-y.ordering);const C=E.map(l=>{if(l.sdfs!=null)return{edit:l,sdfs:l.sdfs};const y=[];return l.traverseVisible(d=>{d instanceof Ya&&y.push(d)}),{edit:l,sdfs:y}});if(C.length>0&&!this.rgbaDisplaceEdits){const l=C.length,y=C.reduce((d,f)=>d+f.sdfs.length,0);this.rgbaDisplaceEdits=new Ja({maxEdits:l,maxSdfs:y}),this.updateGenerator()}if(this.rgbaDisplaceEdits){const l=this.rgbaDisplaceEdits.update(C);a||(a=l.updated),l.dynoUpdated&&this.updateGenerator()}a&&this.updateVersion(),(c=this.onFrame)==null||c.call(this,{mesh:this,time:A,deltaTime:e})}raycast(A,t){if(!this.packedSplats.packedArray||!this.packedSplats.numSplats)return;const{near:e,far:i,ray:s}=A,n=this.matrixWorld.clone().invert(),r=new qA().setFromMatrix4(n),a=s.origin.clone().applyMatrix4(n),o=s.direction.clone().applyMatrix3(r),B=new u;n.decompose(new u,new gA,B),(B.x*B.y*B.z)**(1/3);const Q=Nn(a.x,a.y,a.z,o.x,o.y,o.z,e,i,this.packedSplats.numSplats,this.packedSplats.packedArray,!0);for(const h of Q){const E=s.direction.clone().multiplyScalar(h).add(s.origin);t.push({distance:h,point:E,object:this})}}ensureShTextures(){if(!this.packedSplats.extra.sh1)return{};let A=this.packedSplats.extra.sh1Texture;if(!A){let i=this.packedSplats.extra.sh1;const{width:s,height:n,depth:r,maxSplats:a}=FA(i.length/2);if(i.length> 25,\n int(packed.x << 18u) >> 25,\n int(packed.x << 11u) >> 25\n )) / 63.0;\n vec3 sh1_1 = vec3(ivec3(\n int(packed.x << 4u) >> 25,\n int((packed.x >> 3u) | (packed.y << 29u)) >> 25,\n int(packed.y << 22u) >> 25\n )) / 63.0;\n vec3 sh1_2 = vec3(ivec3(\n int(packed.y << 15u) >> 25,\n int(packed.y << 8u) >> 25,\n int(packed.y << 1u) >> 25\n )) / 63.0;\n\n return sh1_0 * (-0.4886025 * viewDir.y)\n + sh1_1 * (0.4886025 * viewDir.z)\n + sh1_2 * (-0.4886025 * viewDir.x);\n }\n`),va=KA(`\n vec3 evaluateSH2(Gsplat gsplat, usampler2DArray sh2, vec3 viewDir) {\n // Extract sint8 values packed into 4 x uint32\n uvec4 packed = texelFetch(sh2, splatTexCoord(gsplat.index), 0);\n vec3 sh2_0 = vec3(ivec3(\n int(packed.x << 24u) >> 24,\n int(packed.x << 16u) >> 24,\n int(packed.x << 8u) >> 24\n )) / 127.0;\n vec3 sh2_1 = vec3(ivec3(\n int(packed.x) >> 24,\n int(packed.y << 24u) >> 24,\n int(packed.y << 16u) >> 24\n )) / 127.0;\n vec3 sh2_2 = vec3(ivec3(\n int(packed.y << 8u) >> 24,\n int(packed.y) >> 24,\n int(packed.z << 24u) >> 24\n )) / 127.0;\n vec3 sh2_3 = vec3(ivec3(\n int(packed.z << 16u) >> 24,\n int(packed.z << 8u) >> 24,\n int(packed.z) >> 24\n )) / 127.0;\n vec3 sh2_4 = vec3(ivec3(\n int(packed.w << 24u) >> 24,\n int(packed.w << 16u) >> 24,\n int(packed.w << 8u) >> 24\n )) / 127.0;\n\n return sh2_0 * (1.0925484 * viewDir.x * viewDir.y)\n + sh2_1 * (1.0925484 * viewDir.y * viewDir.z)\n + sh2_2 * (0.3153915 * (2.0 * viewDir.z * viewDir.z - viewDir.x * viewDir.x - viewDir.y * viewDir.y))\n + sh2_3 * (1.0925484 * viewDir.x * viewDir.z)\n + sh2_4 * (0.5462742 * (viewDir.x * viewDir.x - viewDir.y * viewDir.y));\n }\n`),Ka=KA(`\n vec3 evaluateSH3(Gsplat gsplat, usampler2DArray sh3, vec3 viewDir) {\n // Extract sint6 values packed into 4 x uint32\n uvec4 packed = texelFetch(sh3, splatTexCoord(gsplat.index), 0);\n vec3 sh3_0 = vec3(ivec3(\n int(packed.x << 26u) >> 26,\n int(packed.x << 20u) >> 26,\n int(packed.x << 14u) >> 26\n )) / 31.0;\n vec3 sh3_1 = vec3(ivec3(\n int(packed.x << 8u) >> 26,\n int(packed.x << 2u) >> 26,\n int((packed.x >> 4u) | (packed.y << 28u)) >> 26\n )) / 31.0;\n vec3 sh3_2 = vec3(ivec3(\n int(packed.y << 22u) >> 26,\n int(packed.y << 16u) >> 26,\n int(packed.y << 10u) >> 26\n )) / 31.0;\n vec3 sh3_3 = vec3(ivec3(\n int(packed.y << 4u) >> 26,\n int((packed.y >> 2u) | (packed.z << 30u)) >> 26,\n int(packed.z << 24u) >> 26\n )) / 31.0;\n vec3 sh3_4 = vec3(ivec3(\n int(packed.z << 18u) >> 26,\n int(packed.z << 12u) >> 26,\n int(packed.z << 6u) >> 26\n )) / 31.0;\n vec3 sh3_5 = vec3(ivec3(\n int(packed.z) >> 26,\n int(packed.w << 26u) >> 26,\n int(packed.w << 20u) >> 26\n )) / 31.0;\n vec3 sh3_6 = vec3(ivec3(\n int(packed.w << 14u) >> 26,\n int(packed.w << 8u) >> 26,\n int(packed.w << 2u) >> 26\n )) / 31.0;\n\n float xx = viewDir.x * viewDir.x;\n float yy = viewDir.y * viewDir.y;\n float zz = viewDir.z * viewDir.z;\n float xy = viewDir.x * viewDir.y;\n float yz = viewDir.y * viewDir.z;\n float zx = viewDir.z * viewDir.x;\n\n return sh3_0 * (-0.5900436 * viewDir.y * (3.0 * xx - yy))\n + sh3_1 * (2.8906114 * xy * viewDir.z) +\n + sh3_2 * (-0.4570458 * viewDir.y * (4.0 * zz - xx - yy))\n + sh3_3 * (0.3731763 * viewDir.z * (2.0 * zz - 3.0 * xx - 3.0 * yy))\n + sh3_4 * (-0.4570458 * viewDir.x * (4.0 * zz - xx - yy))\n + sh3_5 * (1.4453057 * viewDir.z * (xx - yy))\n + sh3_6 * (-0.5900436 * viewDir.x * (xx - 3.0 * yy));\n }\n`);function _a(g,A,t){return bi({inTypes:{gsplat:pA,sh1:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:g,sh1:A,viewDir:t},globals:()=>[tt,za],statements:({inputs:e,outputs:i})=>At(`\n if (isGsplatActive(${e.gsplat}.flags)) {\n ${i.rgb} = evaluateSH1(${e.gsplat}, ${e.sh1}, ${e.viewDir});\n } else {\n ${i.rgb} = vec3(0.0);\n }\n `)}).outputs.rgb}function qa(g,A,t){return bi({inTypes:{gsplat:pA,sh2:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:g,sh2:A,viewDir:t},globals:()=>[tt,va],statements:({inputs:e,outputs:i})=>At(`\n if (isGsplatActive(${e.gsplat}.flags)) {\n ${i.rgb} = evaluateSH2(${e.gsplat}, ${e.sh2}, ${e.viewDir});\n } else {\n ${i.rgb} = vec3(0.0);\n }\n `)}).outputs.rgb}function Za(g,A,t){return bi({inTypes:{gsplat:pA,sh3:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:g,sh3:A,viewDir:t},globals:()=>[tt,Ka],statements:({inputs:e,outputs:i})=>At(`\n if (isGsplatActive(${e.gsplat}.flags)) {\n ${i.rgb} = evaluateSH3(${e.gsplat}, ${e.sh3}, ${e.viewDir});\n } else {\n ${i.rgb} = vec3(0.0);\n }\n `)}).outputs.rgb}function Wa(g){return new Worker(self.location.href,{name:g==null?void 0:g.name})}class Pa{constructor(){this.messages={},this.messageIdNext=0,this.worker=new Wa,this.worker.onmessage=A=>this.onMessage(A)}makeMessageId(){return++this.messageIdNext}makeMessagePromiseId(){const A=this.makeMessageId(),t=new Promise((e,i)=>{this.messages[A]={resolve:e,reject:i}});return{id:A,promise:t}}onMessage(A){const{id:t,result:e,error:i}=A.data,s=this.messages[t];s&&(delete this.messages[t],i?s.reject(i):s.resolve(e))}async call(A,t){const{id:e,promise:i}=this.makeMessagePromiseId();return this.worker.postMessage({name:A,args:t,id:e},{transfer:Os(t)}),i}}let ln=4,ei=0;const un=[],dn=[];async function Oa(){const g=un.shift();if(g)return g;if(ei{dn.push(A)})}function Va(g){if(ei>ln){ei-=1;return}const A=dn.shift();if(A){A(g);return}un.push(g)}async function ii(g){const A=await Oa();try{return await g(A)}finally{Va(A)}}var Be=(g=>(g.PLY="ply",g.SPZ="spz",g.SPLAT="splat",g.KSPLAT="ksplat",g))(Be||{});function yn(g){const A=new DataView(g.buffer);if((A.getUint32(0,!0)&16777215)===7957616)return"ply";if((A.getUint32(0,!0)&16777215)===559903){const t=Vr(g,4);return new DataView(t.buffer).getUint32(0,!0)===1347635022?"spz":void 0}}function Xa(g){const A=g.split(/[?#]/,1)[0],t=Math.max(A.lastIndexOf("/"),A.lastIndexOf("\\\\")),e=A.slice(t+1),i=e.lastIndexOf(".");return i<=0||i===e.length-1?"":e.slice(i+1).toLowerCase()}function fn(g){const A=Xa(g);if(A==="ply")return"ply";if(A==="spz")return"spz";if(A==="splat")return"splat";if(A==="ksplat")return"ksplat"}async function ja({input:g,fileType:A,pathOrUrl:t}){const e=g instanceof ArrayBuffer?new Uint8Array(g):g;let i=A;switch(A||(i=yn(e),!i&&t&&(i=fn(t))),i){case"ply":{const s=new oe({fileBytes:e});await s.parseHeader();const n=s.numSplats,r=FA(n).maxSplats,a={fileBytes:e,packedArray:new Uint32Array(r*4)};return await ii(async o=>{const{packedArray:B,numSplats:I,extra:Q}=await o.call("unpackPly",a);return{packedArray:B,numSplats:I,extra:Q}})}case"spz":return await ii(async s=>{const{packedArray:n,numSplats:r,extra:a}=await s.call("decodeSpz",{fileBytes:e});return{packedArray:n,numSplats:r,extra:a}});case"splat":return await ii(async s=>{const{packedArray:n,numSplats:r}=await s.call("decodeAntiSplat",{fileBytes:e});return{packedArray:n,numSplats:r}});case"ksplat":return await ii(async s=>{const{packedArray:n,numSplats:r,extra:a}=await s.call("decodeKsplat",{fileBytes:e});return{packedArray:n,numSplats:r,extra:a}});default:throw new Error(`Unknown splat file type: ${i}`)}}class $a{constructor({maxSplats:A=1}={}){this.numSplats=0,this.maxSplats=FA(A).maxSplats,this.centers=new Float32Array(this.maxSplats*3),this.scales=new Float32Array(this.maxSplats*3),this.quaternions=new Float32Array(this.maxSplats*4),this.opacities=new Float32Array(this.maxSplats),this.colors=new Float32Array(this.maxSplats*3)}pushSplat(){const A=this.numSplats;return this.ensureIndex(A),this.numSplats+=1,A}unpushSplat(A){if(A===this.numSplats-1)this.numSplats-=1;else throw new Error("Cannot unpush splat from non-last position")}ensureCapacity(A){if(A>this.maxSplats){const t=Math.max(A,this.maxSplats*2),e=new Float32Array(t*3),i=new Float32Array(t*3),s=new Float32Array(t*4),n=new Float32Array(t),r=new Float32Array(t*3);if(e.set(this.centers),i.set(this.scales),s.set(this.quaternions),n.set(this.opacities),r.set(this.colors),this.centers=e,this.scales=i,this.quaternions=s,this.opacities=n,this.colors=r,this.sh1){const a=new Float32Array(t*9);a.set(this.sh1),this.sh1=a}if(this.sh2){const a=new Float32Array(t*15);a.set(this.sh2),this.sh2=a}if(this.sh3){const a=new Float32Array(t*21);a.set(this.sh3),this.sh3=a}this.maxSplats=t}}ensureIndex(A){this.ensureCapacity(A+1)}setCenter(A,t,e,i){this.centers[A*3]=t,this.centers[A*3+1]=e,this.centers[A*3+2]=i}setScale(A,t,e,i){this.scales[A*3]=t,this.scales[A*3+1]=e,this.scales[A*3+2]=i}setQuaternion(A,t,e,i,s){this.quaternions[A*4]=t,this.quaternions[A*4+1]=e,this.quaternions[A*4+2]=i,this.quaternions[A*4+3]=s}setOpacity(A,t){this.opacities[A]=t}setColor(A,t,e,i){this.colors[A*3]=t,this.colors[A*3+1]=e,this.colors[A*3+2]=i}setSh1(A,t){this.sh1||(this.sh1=new Float32Array(this.maxSplats*9));for(let e=0;e<9;++e)this.sh1[A*9+e]=t[e]}setSh2(A,t){this.sh2||(this.sh2=new Float32Array(this.maxSplats*15));for(let e=0;e<15;++e)this.sh2[A*15+e]=t[e]}setSh3(A,t){this.sh3||(this.sh3=new Float32Array(this.maxSplats*21));for(let e=0;e<21;++e)this.sh3[A*21+e]=t[e]}}class wn{constructor({fileBytes:A}){this.fileBytes=A instanceof ArrayBuffer?new Uint8Array(A):A,this.reader=new Xr({fileBytes:this.fileBytes});const t=new DataView(this.reader.read(16).buffer);if(t.getUint32(0,!0)!==1347635022)throw new Error("Invalid SPZ file");if(this.version=t.getUint32(4,!0),this.version<1||this.version>2)throw new Error(`Unsupported SPZ version: ${this.version}`);this.numSplats=t.getUint32(8,!0),this.shDegree=t.getUint8(12),this.fractionalBits=t.getUint8(13),this.flags=t.getUint8(14),this.flagAntiAlias=(this.flags&1)!==0,this.reserved=t.getUint8(15),this.parsed=!1}parseSplats(A,t,e,i,s,n){if(this.parsed)throw new Error("SPZ file already parsed");if(this.parsed=!0,this.version===1){const r=this.reader.read(this.numSplats*3*2),a=new Uint16Array(r.buffer);for(let o=0;o>8)/r,Q=((a[B+5]<<24|a[B+4]<<16|a[B+3]<<8)>>8)/r,h=((a[B+8]<<24|a[B+7]<<16|a[B+6]<<8)>>8)/r;A==null||A(o,I,Q,h)}}else throw new Error("Unreachable");{const r=this.reader.read(this.numSplats);for(let a=0;a=1){const r=new Float32Array(9),a=this.shDegree>=2?new Float32Array(5*3):void 0,o=this.shDegree>=3?new Float32Array(7*3):void 0,B=this.reader.read(this.numSplats*pn[this.shDegree]*3);let I=0;for(let Q=0;Q=1?9:0)+(t>=2?15:0)+(t>=3?21:0),n=16+A*s;this.buffer=new ArrayBuffer(n),this.view=new DataView(this.buffer),this.view.setUint32(0,Ag,!0),this.view.setUint32(4,tg,!0),this.view.setUint32(8,A,!0),this.view.setUint8(12,t),this.view.setUint8(13,e),this.view.setUint8(14,i?eg:0),this.view.setUint8(15,0),this.numSplats=A,this.shDegree=t,this.fractionalBits=e,this.fraction=1<>8&255),this.view.setUint8(h+2,n>>16&255),this.view.setUint8(h+3,a&255),this.view.setUint8(h+4,a>>8&255),this.view.setUint8(h+5,a>>16&255),this.view.setUint8(h+6,B&255),this.view.setUint8(h+7,B>>8&255),this.view.setUint8(h+8,B>>16&255)}setAlpha(A,t){const e=16+this.numSplats*9+A;this.view.setUint8(e,Math.max(0,Math.min(255,Math.round(t*255))))}static scaleRgb(A){const t=((A-.5)/(Dn/.15)+.5)*255;return Math.max(0,Math.min(255,Math.round(t)))}setRgb(A,t,e,i){const s=16+this.numSplats*10+A*3;this.view.setUint8(s,Et.scaleRgb(t)),this.view.setUint8(s+1,Et.scaleRgb(e)),this.view.setUint8(s+2,Et.scaleRgb(i))}setScale(A,t,e,i){const s=16+this.numSplats*13+A*3;this.view.setUint8(s,Math.max(0,Math.min(255,Math.round((Math.log(t)+10)*16)))),this.view.setUint8(s+1,Math.max(0,Math.min(255,Math.round((Math.log(e)+10)*16)))),this.view.setUint8(s+2,Math.max(0,Math.min(255,Math.round((Math.log(i)+10)*16))))}setQuat(A,t,e,i,s){const n=16+this.numSplats*16+A*3,r=s<0;this.view.setUint8(n,Math.max(0,Math.min(255,Math.round(((r?-t:t)+1)*127.5)))),this.view.setUint8(n+1,Math.max(0,Math.min(255,Math.round(((r?-e:e)+1)*127.5)))),this.view.setUint8(n+2,Math.max(0,Math.min(255,Math.round(((r?-i:i)+1)*127.5))))}static quantizeSh(A,t){const e=Math.round(A*128)+128,i=1<<8-t,s=Math.floor((e+i/2)/i)*i;return Math.max(0,Math.min(255,s))}setSh(A,t,e,i){const s=pn[this.shDegree]||0,n=16+this.numSplats*19+A*s*3;for(let r=0;r<9;++r)this.view.setUint8(n+r,Et.quantizeSh(t[r],5));if(e){const r=n+9;for(let a=0;a<15;++a)this.view.setUint8(r+a,Et.quantizeSh(e[a],4));if(i){const a=r+15;for(let o=0;o<21;++o)this.view.setUint8(a+o,Et.quantizeSh(i[o],4))}}}async finalize(){const A=new Uint8Array(this.buffer),e=new ReadableStream({async start(n){n.enqueue(A),n.close()}}).pipeThrough(new CompressionStream("gzip")),s=await new Response(e).arrayBuffer();return console.log("Compressed",A.length,"bytes to",s.byteLength,"bytes"),new Uint8Array(s)}}async function ig(g){var B,I,Q;const A=new $a,{inputs:t,clipXyz:e,maxSh:i,fractionalBits:s=12,opacityThreshold:n}=g;for(const h of t){let E=function(w){return w.multiplyScalar(d),w.applyQuaternion(f),w.add(p),w},C=function(w){return w.multiplyScalar(d),w},c=function(w){return w.premultiply(f),w},l=function(w){return!m||m.containsPoint(w)},y=function(w){return n!==void 0?w>=n:!0};const d=((B=h.transform)==null?void 0:B.scale)??1,f=new gA().fromArray(((I=h.transform)==null?void 0:I.quaternion)??[0,0,0,1]),p=new u().fromArray(((Q=h.transform)==null?void 0:Q.translate)??[0,0,0]),m=e?new Ft(new u().fromArray(e.min),new u().fromArray(e.max)):void 0;let x=h.fileType;switch(x||(x=yn(h.fileBytes),!x&&h.pathOrUrl&&(x=fn(h.pathOrUrl))),x){case Be.PLY:{const w=new oe({fileBytes:h.fileBytes});await w.parseHeader();let D=null;w.parseSplats((N,M,S,F,k,U,R,G,v,T,$,V,X,K,Z)=>{const W=E(new u(M,S,F));if(l(W)&&y(V)){D=A.pushSplat(),A.setCenter(D,W.x,W.y,W.z);const q=C(new u(k,U,R));A.setScale(D,q.x,q.y,q.z);const b=c(new gA(G,v,T,$));A.setQuaternion(D,b.x,b.y,b.z,b.w),A.setOpacity(D,V),A.setColor(D,X,K,Z)}else D=null},(N,M,S,F)=>{M&&D!==null&&A.setSh1(D,M),S&&D!==null&&A.setSh2(D,S),F&&D!==null&&A.setSh3(D,F)});break}case Be.SPZ:{const w=new wn({fileBytes:h.fileBytes}),D=new Int32Array(w.numSplats);D.fill(-1);const N=new Float32Array(w.numSplats*3),M=new u;w.parseSplats((S,F,k,U)=>{const R=E(new u(F,k,U));N[S*3]=R.x,N[S*3+1]=R.y,N[S*3+2]=R.z},(S,F)=>{M.fromArray(N,S*3),l(M)&&y(F)&&(D[S]=A.pushSplat(),A.setCenter(D[S],M.x,M.y,M.z),A.setOpacity(D[S],F))},(S,F,k,U)=>{D[S]>=0&&A.setColor(D[S],F,k,U)},(S,F,k,U)=>{if(D[S]>=0){const R=C(new u(F,k,U));A.setScale(D[S],R.x,R.y,R.z)}},(S,F,k,U,R)=>{if(D[S]>=0){const G=c(new gA(F,k,U,R));A.setQuaternion(D[S],G.x,G.y,G.z,G.w)}},(S,F,k,U)=>{D[S]>=0&&(A.setSh1(D[S],F),k&&A.setSh2(D[S],k),U&&A.setSh3(D[S],U))});break}case Be.SPLAT:js(h.fileBytes,w=>{},(w,D,N,M,S,F,k,U,R,G,v,T,$,V,X)=>{const K=E(new u(D,N,M));if(l(K)&&y(T)){const Z=A.pushSplat();A.setCenter(Z,K.x,K.y,K.z);const W=C(new u(S,F,k));A.setScale(Z,W.x,W.y,W.z);const q=c(new gA(U,R,G,v));A.setQuaternion(Z,q.x,q.y,q.z,q.w),A.setOpacity(Z,T),A.setColor(Z,$,V,X)}});break;case Be.KSPLAT:{let w=null;$r(h.fileBytes,D=>{},(D,N,M,S,F,k,U,R,G,v,T,$,V,X,K)=>{const Z=E(new u(N,M,S));if(l(Z)&&y($)){w=A.pushSplat(),A.setCenter(w,Z.x,Z.y,Z.z);const W=C(new u(F,k,U));A.setScale(w,W.x,W.y,W.z);const q=c(new gA(R,G,v,T));A.setQuaternion(w,q.x,q.y,q.z,q.w),A.setOpacity(w,$),A.setColor(w,V,X,K)}else w=null},(D,N,M,S)=>{w!==null&&(A.setSh1(w,N),M&&A.setSh2(w,M),S&&A.setSh3(w,S))});break}default:throw new Error(`transcodeSpz not implemented for ${x}`)}}const r=Math.min(i??3,A.sh3?3:A.sh2?2:A.sh1?1:0),a=new Et({numSplats:A.numSplats,shDegree:r,fractionalBits:s,flagAntiAlias:!0});for(let h=0;h=1&&a.setSh(h,A.sh1.slice(h*9,(h+1)*9),r>=2&&A.sh2?A.sh2.slice(h*15,(h+1)*15):void 0,r>=3&&A.sh3?A.sh3.slice(h*21,(h+1)*21):void 0)}return{fileBytes:await a.finalize(),clippedCount:a.clippedCount}}async function mn(g){const{name:A,args:t,id:e}=g.data;let i,s;try{switch(A){case"unpackPly":{const{packedArray:n,fileBytes:r}=t,a=await sg({packedArray:n,fileBytes:r});i={id:e,numSplats:a.numSplats,packedArray:a.packedArray,extra:a.extra};break}case"decodeSpz":{const{fileBytes:n}=t,r=ng(n);i={id:e,numSplats:r.numSplats,packedArray:r.packedArray,extra:r.extra};break}case"decodeAntiSplat":{const{fileBytes:n}=t,r=jr(n);i={id:e,numSplats:r.numSplats,packedArray:r.packedArray};break}case"decodeKsplat":{const{fileBytes:n}=t,r=Aa(n);i={id:e,numSplats:r.numSplats,packedArray:r.packedArray,extra:r.extra};break}case"sortSplats":{const{maxSplats:n,totalSplats:r,readback:a,ordering:o}=t;i={id:e,readback:a,...rg({totalSplats:r,readback:a,ordering:o})};break}case"sortDoubleSplats":{const{numSplats:n,readback:r,ordering:a}=t;i={id:e,readback:r,ordering:a},Nr&&(i={id:e,readback:r,ordering:a,activeSplats:Fn(n,r,a)});break}case"transcodeSpz":{const n=t,r=await ig(n);i={id:e,fileBytes:r,input:n};break}default:throw new Error(`Unknown name: ${A}`)}}catch(n){s=n}self.postMessage({id:e,result:i,error:s},{transfer:Os(i)})}async function sg({packedArray:g,fileBytes:A}){const t=new oe({fileBytes:A});await t.parseHeader();const e=t.numSplats,i={},s=Math.exp(-20);return t.parseSplats((n,r,a,o,B,I,Q,h,E,C,c,l,y,d,f)=>{ge(g,n,r,a,o,B{r&&(i.sh1||(i.sh1=new Uint32Array(e*2)),Ji(i.sh1,n,r)),a&&(i.sh2||(i.sh2=new Uint32Array(e*4)),Hi(i.sh2,n,a)),o&&(i.sh3||(i.sh3=new Uint32Array(e*4)),Ti(i.sh3,n,o))}),{packedArray:g,numSplats:e,extra:i}}function ng(g){const A=new wn({fileBytes:g}),t=A.numSplats,e=Yi(t),i=new Uint32Array(e*4),s={};return A.parseSplats((n,r,a,o)=>{Jr(i,n,r,a,o)},(n,r)=>{vr(i,n,r)},(n,r,a,o)=>{zr(i,n,r,a,o)},(n,r,a,o)=>{Hr(i,n,r,a,o)},(n,r,a,o,B)=>{Tr(i,n,r,a,o,B)},(n,r,a,o)=>{r&&(s.sh1||(s.sh1=new Uint32Array(t*2)),Ji(s.sh1,n,r)),a&&(s.sh2||(s.sh2=new Uint32Array(t*4)),Hi(s.sh2,n,a)),o&&(s.sh3||(s.sh3=new Uint32Array(t*4)),Ti(s.sh3,n,o))}),{packedArray:i,numSplats:t,extra:s}}const Pt=31744,Qe=Pt+1;let iA=null;function rg({totalSplats:g,readback:A,ordering:t}){iA||(iA=new Uint32Array(Qe)),iA.fill(0);const e=A.map(a=>new Uint32Array(a.buffer)),i=e[0].length,s=Math.ceil(g/i);let n=0;for(let a=0;a=0;--i){const s=e+iA[i];iA[i]=e,e=s}for(let i=0;i { + return e.addEventListener("error", () => { (self.URL || self.webkitURL).revokeObjectURL(A); - }), I; + }), e; } catch { return new Worker( - "data:text/javascript;charset=utf-8," + encodeURIComponent(ut), + "data:text/javascript;charset=utf-8," + encodeURIComponent(cr), { - name: g == null ? void 0 : g.name + name: t == null ? void 0 : t.name } ); } finally { A && (self.URL || self.webkitURL).revokeObjectURL(A); } } -class Kn { +class kQ { constructor() { - this.messages = {}, this.messageIdNext = 0, this.worker = new Hn(), this.worker.onmessage = (A) => this.onMessage(A); + this.messages = {}, this.messageIdNext = 0, this.worker = new NQ(), this.worker.onmessage = (A) => this.onMessage(A); } makeMessageId() { return ++this.messageIdNext; } makeMessagePromiseId() { - const A = this.makeMessageId(), I = new Promise((B, Q) => { - this.messages[A] = { resolve: B, reject: Q }; + const A = this.makeMessageId(), e = new Promise((s, i) => { + this.messages[A] = { resolve: s, reject: i }; }); - return { id: A, promise: I }; + return { id: A, promise: e }; } onMessage(A) { - const { id: I, result: B, error: Q } = A.data, C = this.messages[I]; - C && (delete this.messages[I], Q ? C.reject(Q) : C.resolve(B)); + const { id: e, result: s, error: i } = A.data, n = this.messages[e]; + n && (delete this.messages[e], i ? n.reject(i) : n.resolve(s)); } // Invoke an RPC on the worker with the given name and arguments. // The normal usage of a worker is to run one activity at a time, @@ -6560,110 +6438,106 @@ class Kn { // The method will automatically transfer any ArrayBuffers in the // arguments to the worker. If you'd like to transfer a copy of a // buffer then you must clone it before passing to this function. - async call(A, I) { - const { id: B, promise: Q } = this.makeMessagePromiseId(); + async call(A, e) { + const { id: s, promise: i } = this.makeMessagePromiseId(); return this.worker.postMessage( - { name: A, args: I, id: B }, - { transfer: uQ(I) } - ), Q; + { name: A, args: e, id: s }, + { transfer: Ci(e) } + ), i; } } -let dt = 4, CI = 0; -const Gt = [], Mt = []; -async function Zn() { - const g = Gt.shift(); - if (g) - return g; - if (CI < dt) { - const A = new Kn(); - return CI += 1, A; +let hr = 4, te = 0; +const lr = [], ur = []; +async function UQ() { + const t = lr.shift(); + if (t) + return t; + if (te < hr) { + const A = new kQ(); + return te += 1, A; } return new Promise((A) => { - Mt.push(A); + ur.push(A); }); } -function qn(g) { - if (CI > dt) { - CI -= 1; +function RQ(t) { + if (te > hr) { + te -= 1; return; } - const A = Mt.shift(); + const A = ur.shift(); if (A) { - A(g); + A(t); return; } - Gt.push(g); + lr.push(t); } -async function og(g) { - const A = await Zn(); +async function Dt(t) { + const A = await UQ(); try { - return await g(A); + return await t(A); } finally { - qn(A); + RQ(A); } } -class Zo extends bt { +class kE extends Ur { constructor(A) { - super(A), this.fileLoader = new Ht(A); + super(A), this.fileLoader = new Rr(A); } - load(A, I, B, Q) { + load(A, e, s, i) { this.fileLoader.setResponseType("arraybuffer"), this.fileLoader.setCrossOrigin(this.crossOrigin), this.fileLoader.setWithCredentials(this.withCredentials), this.fileLoader.setPath(this.path), this.fileLoader.setResourcePath(this.resourcePath), this.fileLoader.setRequestHeader(this.requestHeader), this.fileLoader.load( A, - async (C) => { - if (I) { - const t = await kt({ - input: C, + async (n) => { + if (e) { + const r = await yr({ + input: n, fileType: this.fileType, pathOrUrl: A }); - I(new ZA(t)); + e(new TA(r)); } }, - B, - Q + s, + i ); } - async loadAsync(A, I) { - return new Promise((B, Q) => { + async loadAsync(A, e) { + return new Promise((s, i) => { this.load( A, - (C) => { - B(C); + (n) => { + s(n); }, - I, - Q + e, + i ); }); } parse(A) { - return new Ag({ packedSplats: A }); + return new At({ packedSplats: A }); } } -var rg = /* @__PURE__ */ ((g) => (g.PLY = "ply", g.WLG0 = "wlg0", g.SPZ = "spz", g.SPLAT = "splat", g.KSPLAT = "ksplat", g))(rg || {}); -function Nt(g) { - const A = new DataView(g.buffer); +var ft = /* @__PURE__ */ ((t) => (t.PLY = "ply", t.SPZ = "spz", t.SPLAT = "splat", t.KSPLAT = "ksplat", t))(ft || {}); +function dr(t) { + const A = new DataView(t.buffer); if ((A.getUint32(0, !0) & 16777215) === 7957616) return "ply"; - if (A.getUint32(0, !0) === 809978967) - return "wlg0"; if ((A.getUint32(0, !0) & 16777215) === 559903) { - const I = JQ(g, 4); - return new DataView(I.buffer).getUint32(0, !0) === 1347635022 ? "spz" : void 0; + const e = Di(t, 4); + return new DataView(e.buffer).getUint32(0, !0) === 1347635022 ? "spz" : void 0; } } -function vn(g) { - const A = g.split(/[?#]/, 1)[0], I = Math.max( +function GQ(t) { + const A = t.split(/[?#]/, 1)[0], e = Math.max( A.lastIndexOf("/"), A.lastIndexOf("\\") - ), B = A.slice(I + 1), Q = B.lastIndexOf("."); - return Q <= 0 || Q === B.length - 1 ? "" : B.slice(Q + 1).toLowerCase(); + ), s = A.slice(e + 1), i = s.lastIndexOf("."); + return i <= 0 || i === s.length - 1 ? "" : s.slice(i + 1).toLowerCase(); } -function pt(g) { - const A = vn(g); +function wr(t) { + const A = GQ(t); if (A === "ply") return "ply"; - if (A === "wlg") - return "wlg0"; if (A === "spz") return "spz"; if (A === "splat") @@ -6671,68 +6545,61 @@ function pt(g) { if (A === "ksplat") return "ksplat"; } -async function kt({ - input: g, +async function yr({ + input: t, fileType: A, - pathOrUrl: I + pathOrUrl: e }) { - const B = g instanceof ArrayBuffer ? new Uint8Array(g) : g; - let Q = A; - switch (A || (Q = Nt(B), !Q && I && (Q = pt(I))), Q) { - case "wlg0": - return await og(async (C) => { - const { packedArray: E, numSplats: t } = await C.call("decodeWlg", { - fileBytes: B - }); - return { packedArray: E, numSplats: t }; - }); + const s = t instanceof ArrayBuffer ? new Uint8Array(t) : t; + let i = A; + switch (A || (i = dr(s), !i && e && (i = wr(e))), i) { case "ply": { - const C = new QI({ fileBytes: B }); - await C.parseHeader(); - const E = C.numSplats, t = dA(E).maxSplats, i = { fileBytes: B, packedArray: new Uint32Array(t * 4) }; - return await og(async (e) => { - const { packedArray: n, numSplats: s, extra: o } = await e.call( + const n = new Ae({ fileBytes: s }); + await n.parseHeader(); + const a = n.numSplats, r = yA(a).maxSplats, g = { fileBytes: s, packedArray: new Uint32Array(r * 4) }; + return await Dt(async (I) => { + const { packedArray: Q, numSplats: o, extra: E } = await I.call( "unpackPly", - i + g ); - return { packedArray: n, numSplats: s, extra: o }; + return { packedArray: Q, numSplats: o, extra: E }; }); } case "spz": - return await og(async (C) => { - const { packedArray: E, numSplats: t, extra: i } = await C.call( + return await Dt(async (n) => { + const { packedArray: a, numSplats: r, extra: g } = await n.call( "decodeSpz", { - fileBytes: B + fileBytes: s } ); - return { packedArray: E, numSplats: t, extra: i }; + return { packedArray: a, numSplats: r, extra: g }; }); case "splat": - return await og(async (C) => { - const { packedArray: E, numSplats: t } = await C.call( + return await Dt(async (n) => { + const { packedArray: a, numSplats: r } = await n.call( "decodeAntiSplat", { - fileBytes: B + fileBytes: s } ); - return { packedArray: E, numSplats: t }; + return { packedArray: a, numSplats: r }; }); case "ksplat": - return await og(async (C) => { - const { packedArray: E, numSplats: t, extra: i } = await C.call( + return await Dt(async (n) => { + const { packedArray: a, numSplats: r, extra: g } = await n.call( "decodeKsplat", - { fileBytes: B } + { fileBytes: s } ); - return { packedArray: E, numSplats: t, extra: i }; + return { packedArray: a, numSplats: r, extra: g }; }); default: - throw new Error(`Unknown splat file type: ${Q}`); + throw new Error(`Unknown splat file type: ${i}`); } } -class Wn { +class bQ { constructor({ maxSplats: A = 1 } = {}) { - this.numSplats = 0, this.maxSplats = dA(A).maxSplats, this.centers = new Float32Array(this.maxSplats * 3), this.scales = new Float32Array(this.maxSplats * 3), this.quaternions = new Float32Array(this.maxSplats * 4), this.opacities = new Float32Array(this.maxSplats), this.colors = new Float32Array(this.maxSplats * 3); + this.numSplats = 0, this.maxSplats = yA(A).maxSplats, this.centers = new Float32Array(this.maxSplats * 3), this.scales = new Float32Array(this.maxSplats * 3), this.quaternions = new Float32Array(this.maxSplats * 4), this.opacities = new Float32Array(this.maxSplats), this.colors = new Float32Array(this.maxSplats * 3); } pushSplat() { const A = this.numSplats; @@ -6746,57 +6613,57 @@ class Wn { } ensureCapacity(A) { if (A > this.maxSplats) { - const I = Math.max(A, this.maxSplats * 2), B = new Float32Array(I * 3), Q = new Float32Array(I * 3), C = new Float32Array(I * 4), E = new Float32Array(I), t = new Float32Array(I * 3); - if (B.set(this.centers), Q.set(this.scales), C.set(this.quaternions), E.set(this.opacities), t.set(this.colors), this.centers = B, this.scales = Q, this.quaternions = C, this.opacities = E, this.colors = t, this.sh1) { - const i = new Float32Array(I * 9); - i.set(this.sh1), this.sh1 = i; + const e = Math.max(A, this.maxSplats * 2), s = new Float32Array(e * 3), i = new Float32Array(e * 3), n = new Float32Array(e * 4), a = new Float32Array(e), r = new Float32Array(e * 3); + if (s.set(this.centers), i.set(this.scales), n.set(this.quaternions), a.set(this.opacities), r.set(this.colors), this.centers = s, this.scales = i, this.quaternions = n, this.opacities = a, this.colors = r, this.sh1) { + const g = new Float32Array(e * 9); + g.set(this.sh1), this.sh1 = g; } if (this.sh2) { - const i = new Float32Array(I * 15); - i.set(this.sh2), this.sh2 = i; + const g = new Float32Array(e * 15); + g.set(this.sh2), this.sh2 = g; } if (this.sh3) { - const i = new Float32Array(I * 21); - i.set(this.sh3), this.sh3 = i; + const g = new Float32Array(e * 21); + g.set(this.sh3), this.sh3 = g; } - this.maxSplats = I; + this.maxSplats = e; } } ensureIndex(A) { this.ensureCapacity(A + 1); } - setCenter(A, I, B, Q) { - this.centers[A * 3] = I, this.centers[A * 3 + 1] = B, this.centers[A * 3 + 2] = Q; + setCenter(A, e, s, i) { + this.centers[A * 3] = e, this.centers[A * 3 + 1] = s, this.centers[A * 3 + 2] = i; } - setScale(A, I, B, Q) { - this.scales[A * 3] = I, this.scales[A * 3 + 1] = B, this.scales[A * 3 + 2] = Q; + setScale(A, e, s, i) { + this.scales[A * 3] = e, this.scales[A * 3 + 1] = s, this.scales[A * 3 + 2] = i; } - setQuaternion(A, I, B, Q, C) { - this.quaternions[A * 4] = I, this.quaternions[A * 4 + 1] = B, this.quaternions[A * 4 + 2] = Q, this.quaternions[A * 4 + 3] = C; + setQuaternion(A, e, s, i, n) { + this.quaternions[A * 4] = e, this.quaternions[A * 4 + 1] = s, this.quaternions[A * 4 + 2] = i, this.quaternions[A * 4 + 3] = n; } - setOpacity(A, I) { - this.opacities[A] = I; + setOpacity(A, e) { + this.opacities[A] = e; } - setColor(A, I, B, Q) { - this.colors[A * 3] = I, this.colors[A * 3 + 1] = B, this.colors[A * 3 + 2] = Q; + setColor(A, e, s, i) { + this.colors[A * 3] = e, this.colors[A * 3 + 1] = s, this.colors[A * 3 + 2] = i; } - setSh1(A, I) { + setSh1(A, e) { this.sh1 || (this.sh1 = new Float32Array(this.maxSplats * 9)); - for (let B = 0; B < 9; ++B) - this.sh1[A * 9 + B] = I[B]; + for (let s = 0; s < 9; ++s) + this.sh1[A * 9 + s] = e[s]; } - setSh2(A, I) { + setSh2(A, e) { this.sh2 || (this.sh2 = new Float32Array(this.maxSplats * 15)); - for (let B = 0; B < 15; ++B) - this.sh2[A * 15 + B] = I[B]; + for (let s = 0; s < 15; ++s) + this.sh2[A * 15 + s] = e[s]; } - setSh3(A, I) { + setSh3(A, e) { this.sh3 || (this.sh3 = new Float32Array(this.maxSplats * 21)); - for (let B = 0; B < 21; ++B) - this.sh3[A * 21 + B] = I[B]; + for (let s = 0; s < 21; ++s) + this.sh3[A * 21 + s] = e[s]; } } -var Vn = `precision highp float; +var vQ = `precision highp float; precision highp int; precision highp sampler2D; precision highp usampler2D; @@ -6832,38 +6699,38 @@ void main() { target = uvec4(0u, 0u, 0u, 0u); } }`; -const _ = class _ { +const $ = class $ { constructor(A = {}) { - this.maxSplats = 0, this.numSplats = 0, this.packedArray = null, this.isInitialized = !1, this.target = null, this.source = null, this.needsUpdate = !0, this.extra = {}, this.dyno = new zI({ packedSplats: this }), this.initialized = Promise.resolve(this), this.reinitialize(A); + this.maxSplats = 0, this.numSplats = 0, this.packedArray = null, this.isInitialized = !1, this.target = null, this.source = null, this.needsUpdate = !0, this.extra = {}, this.dyno = new Ke({ packedSplats: this }), this.initialized = Promise.resolve(this), this.reinitialize(A); } reinitialize(A) { this.isInitialized = !1, A.url || A.fileBytes || A.construct ? this.initialized = this.asyncInitialize(A).then(() => (this.isInitialized = !0, this)) : (this.initialize(A), this.isInitialized = !0, this.initialized = Promise.resolve(this)); } initialize(A) { - A.packedArray ? (this.packedArray = A.packedArray, this.maxSplats = Math.floor(this.packedArray.length / 4), this.maxSplats = Math.floor(this.maxSplats / X) * X, this.numSplats = Math.min( + A.packedArray ? (this.packedArray = A.packedArray, this.maxSplats = Math.floor(this.packedArray.length / 4), this.maxSplats = Math.floor(this.maxSplats / O) * O, this.numSplats = Math.min( this.maxSplats, A.numSplats ?? Number.POSITIVE_INFINITY )) : (this.maxSplats = A.maxSplats ?? 0, this.numSplats = 0), this.extra = A.extra ?? {}; } async asyncInitialize(A) { - let { url: I, fileBytes: B, construct: Q } = A; - if (I && (B = await fetch(I).then(async (C) => { - if (!C.ok) + let { url: e, fileBytes: s, construct: i } = A; + if (e && (s = await fetch(e).then(async (n) => { + if (!n.ok) throw new Error( - `${C.status} "${C.statusText}" fetching URL: ${I}` + `${n.status} "${n.statusText}" fetching URL: ${e}` ); - return await C.arrayBuffer(); - })), B) { - const C = await kt({ - input: B, + return await n.arrayBuffer(); + })), s) { + const n = await yr({ + input: s, fileType: A.fileType, - pathOrUrl: A.fileName ?? I + pathOrUrl: A.fileName ?? e }); - this.initialize(C); + this.initialize(n); } - if (Q) { - const C = Q(this); - C instanceof Promise && await C; + if (i) { + const n = i(this); + n instanceof Promise && await n; } } // Call this when you are finished with the PackedSplats and want to free @@ -6878,38 +6745,38 @@ const _ = class _ { // and this.pushSplat(...) will automatically call ensureSplats() so we have // enough splats. ensureSplats(A) { - const I = A <= this.maxSplats ? this.maxSplats : ( + const e = A <= this.maxSplats ? this.maxSplats : ( // Grow exponentially to avoid frequent reallocations Math.max(A, 2 * this.maxSplats) - ), B = this.packedArray ? this.packedArray.length / 4 : 0; - if (!this.packedArray || I > B) { - this.maxSplats = dA(I).maxSplats; - const Q = new Uint32Array(this.maxSplats * 4); - this.packedArray && Q.set(this.packedArray), this.packedArray = Q; + ), s = this.packedArray ? this.packedArray.length / 4 : 0; + if (!this.packedArray || e > s) { + this.maxSplats = yA(e).maxSplats; + const i = new Uint32Array(this.maxSplats * 4); + this.packedArray && i.set(this.packedArray), this.packedArray = i; } return this.packedArray; } // Ensure the extra array for the given level is large enough to hold numSplats - ensureSplatsSh(A, I) { - let B, Q; + ensureSplatsSh(A, e) { + let s, i; if (A === 0) - return this.ensureSplats(I); + return this.ensureSplats(e); if (A === 1) - B = 2, Q = "sh1"; + s = 2, i = "sh1"; else if (A === 2) - B = 4, Q = "sh2"; + s = 4, i = "sh2"; else if (A === 3) - B = 4, Q = "sh3"; + s = 4, i = "sh3"; else throw new Error(`Invalid level: ${A}`); - let C = this.extra[Q] ? this.extra[Q].length / B : 0; - const E = I <= C ? C : Math.max(I, 2 * C); - if (!this.extra[Q] || E > C) { - C = dA(E).maxSplats; - const t = new Uint32Array(C * B); - this.extra[Q] && t.set(this.extra[Q]), this.extra[Q] = t; + let n = this.extra[i] ? this.extra[i].length / s : 0; + const a = e <= n ? n : Math.max(e, 2 * n); + if (!this.extra[i] || a > n) { + n = yA(a).maxSplats; + const r = new Uint32Array(n * s); + this.extra[i] && r.set(this.extra[i]), this.extra[i] = r; } - return this.extra[Q]; + return this.extra[i]; } // Unpack the 16-byte Gsplat data at index into the Three.js components // center: THREE.Vector3, scales: THREE.Vector3, quaternion: THREE.Quaternion, @@ -6917,68 +6784,68 @@ const _ = class _ { getSplat(A) { if (!this.packedArray || A >= this.numSplats) throw new Error("Invalid index"); - return AI(this.packedArray, A); + return me(this.packedArray, A); } // Set all PackedSplat components at index with the provided Gsplat attributes // (can be the same objects returned by getSplat). Ensures there is capacity // for at least index+1 Gsplats. - setSplat(A, I, B, Q, C, E) { - const t = this.ensureSplats(A + 1); - JI( - t, + setSplat(A, e, s, i, n, a) { + const r = this.ensureSplats(A + 1); + fe( + r, A, - I.x, - I.y, - I.z, - B.x, - B.y, - B.z, - Q.x, - Q.y, - Q.z, - Q.w, - C, - E.r, - E.g, - E.b + e.x, + e.y, + e.z, + s.x, + s.y, + s.z, + i.x, + i.y, + i.z, + i.w, + n, + a.r, + a.g, + a.b ), this.numSplats = Math.max(this.numSplats, A + 1); } // Effectively calls this.setSplat(this.numSplats++, center, ...), useful on // construction where you just want to iterate and create a collection of Gsplats. - pushSplat(A, I, B, Q, C) { - const E = this.ensureSplats(this.numSplats + 1); - JI( - E, + pushSplat(A, e, s, i, n) { + const a = this.ensureSplats(this.numSplats + 1); + fe( + a, this.numSplats, A.x, A.y, A.z, - I.x, - I.y, - I.z, - B.x, - B.y, - B.z, - B.w, - Q, - C.r, - C.g, - C.b + e.x, + e.y, + e.z, + s.x, + s.y, + s.z, + s.w, + i, + n.r, + n.g, + n.b ), ++this.numSplats; } // Iterate over Gsplats index 0..=(this.numSplats-1), unpack each Gsplat // and invoke the callback function with the Gsplat attributes. forEachSplat(A) { if (!(!this.packedArray || !this.numSplats)) - for (let I = 0; I < this.numSplats; ++I) { - const B = AI(this.packedArray, I); + for (let e = 0; e < this.numSplats; ++e) { + const s = me(this.packedArray, e); A( - I, - B.center, - B.scales, - B.quaternion, - B.opacity, - B.color + e, + s.center, + s.scales, + s.quaternion, + s.opacity, + s.color ); } } @@ -6988,30 +6855,30 @@ const _ = class _ { if (this.target && (A ?? 1) <= this.maxSplats) return !1; this.dispose(); - const I = dA(A ?? 1), { width: B, height: Q, depth: C } = I; - return this.maxSplats = I.maxSplats, this.target = new a.WebGLArrayRenderTarget(B, Q, C, { + const e = yA(A ?? 1), { width: s, height: i, depth: n } = e; + return this.maxSplats = e.maxSplats, this.target = new B.WebGLArrayRenderTarget(s, i, n, { depthBuffer: !1, stencilBuffer: !1, generateMipmaps: !1, - magFilter: a.NearestFilter, - minFilter: a.NearestFilter - }), this.target.texture.format = a.RGBAIntegerFormat, this.target.texture.type = a.UnsignedIntType, this.target.texture.internalFormat = "RGBA32UI", !0; + magFilter: B.NearestFilter, + minFilter: B.NearestFilter + }), this.target.texture.format = B.RGBAIntegerFormat, this.target.texture.type = B.UnsignedIntType, this.target.texture.internalFormat = "RGBA32UI", !0; } // Given an array of splatCounts (.numSplats for each // SplatGenerator/SplatMesh in the scene), compute a // "mapping layout" in the composite array of generated outputs. generateMapping(A) { - let I = 0; - const B = A.map((Q) => { - const C = I, E = Math.ceil(Q / X) * X; - return I += E, { base: C, count: Q }; + let e = 0; + const s = A.map((i) => { + const n = e, a = Math.ceil(i / O) * O; + return e += a, { base: n, count: i }; }); - return { maxSplats: I, mapping: B }; + return { maxSplats: e, mapping: s }; } // Returns a THREE.DataArrayTexture representing the PackedSplats content as // a Uint32x4 data array texture (2048 x 2048 x depth in size) getTexture() { - return this.target ? this.target.texture : this.source || this.packedArray ? this.maybeUpdateSource() : _.getEmpty(); + return this.target ? this.target.texture : this.source || this.packedArray ? this.maybeUpdateSource() : $.getEmpty(); } // Check if source texture needs to be created/updated maybeUpdateSource() { @@ -7019,19 +6886,19 @@ const _ = class _ { throw new Error("No packed splats"); if (this.needsUpdate || !this.source) { if (this.needsUpdate = !1, this.source) { - const { width: A, height: I, depth: B } = this.source.image; - this.maxSplats !== A * I * B && (this.source.dispose(), this.source = null); + const { width: A, height: e, depth: s } = this.source.image; + this.maxSplats !== A * e * s && (this.source.dispose(), this.source = null); } if (this.source) this.packedArray.buffer !== this.source.image.data.buffer && (this.source.image.data = new Uint8Array(this.packedArray.buffer)); else { - const { width: A, height: I, depth: B } = dA(this.maxSplats); - this.source = new a.DataArrayTexture( + const { width: A, height: e, depth: s } = yA(this.maxSplats); + this.source = new B.DataArrayTexture( this.packedArray, A, - I, - B - ), this.source.format = a.RGBAIntegerFormat, this.source.type = a.UnsignedIntType, this.source.internalFormat = "RGBA32UI", this.source.needsUpdate = !0; + e, + s + ), this.source.format = B.RGBAIntegerFormat, this.source.type = B.UnsignedIntType, this.source.internalFormat = "RGBA32UI", this.source.needsUpdate = !0; } this.source.needsUpdate = !0; } @@ -7040,46 +6907,46 @@ const _ = class _ { // Can be used where you need an uninitialized THREE.DataArrayTexture like // a uniform you will update with the result of this.getTexture() later. static getEmpty() { - if (!_.emptySource) { - const { width: A, height: I, depth: B, maxSplats: Q } = dA(1), C = new Uint32Array(Q * 4); - _.emptySource = new a.DataArrayTexture( - C, + if (!$.emptySource) { + const { width: A, height: e, depth: s, maxSplats: i } = yA(1), n = new Uint32Array(i * 4); + $.emptySource = new B.DataArrayTexture( + n, A, - I, - B - ), _.emptySource.format = a.RGBAIntegerFormat, _.emptySource.type = a.UnsignedIntType, _.emptySource.internalFormat = "RGBA32UI", _.emptySource.needsUpdate = !0; + e, + s + ), $.emptySource.format = B.RGBAIntegerFormat, $.emptySource.type = B.UnsignedIntType, $.emptySource.internalFormat = "RGBA32UI", $.emptySource.needsUpdate = !0; } - return _.emptySource; + return $.emptySource; } // Get a program and THREE.RawShaderMaterial for a given GsplatGenerator, // generating it if necessary and caching the result. prepareProgramMaterial(A) { - let I = _.generatorProgram.get(A); - if (!I) { - const Q = YA( + let e = $.generatorProgram.get(A); + if (!e) { + const i = RA( { index: "int" }, { output: "uvec4" }, - ({ index: C }) => { - A.inputs.index = C; - const E = A.outputs.gsplat; - return { output: FB(E) }; + ({ index: n }) => { + A.inputs.index = n; + const a = A.outputs.gsplat; + return { output: ys(a) }; } ); - _.programTemplate || (_.programTemplate = new TI( - Vn - )), I = new VI({ - graph: Q, + $.programTemplate || ($.programTemplate = new Te( + vQ + )), e = new Ye({ + graph: i, inputs: { index: "index" }, outputs: { output: "target" }, - template: _.programTemplate - }), Object.assign(I.uniforms, { + template: $.programTemplate + }), Object.assign(e.uniforms, { targetLayer: { value: 0 }, targetBase: { value: 0 }, targetCount: { value: 0 } - }), _.generatorProgram.set(A, I); + }), $.generatorProgram.set(A, e); } - const B = I.prepareMaterial(); - return _.mesh.material = B, { program: I, material: B }; + const s = e.prepareMaterial(); + return $.mesh.material = s, { program: e, material: s }; } saveRenderState(A) { return { @@ -7089,8 +6956,8 @@ const _ = class _ { pixelRatio: A.getPixelRatio() }; } - resetRenderState(A, I) { - A.setRenderTarget(null), A.setPixelRatio(I.pixelRatio), A.xr.isPresenting = I.xrPresenting, A.autoClear = I.autoClear, A.setScissorTest(I.scissorTest); + resetRenderState(A, e) { + A.setRenderTarget(null), A.setPixelRatio(e.pixelRatio), A.xr.isPresenting = e.xrPresenting, A.autoClear = e.autoClear, A.setScissorTest(e.scissorTest); } // Executes a dyno program specified by generator which is any DynoBlock that // maps { index: "int" } to { gsplat: Gsplat }. This is called in @@ -7099,65 +6966,65 @@ const _ = class _ { // for it last time. generate({ generator: A, - base: I, - count: B, - renderer: Q + base: e, + count: s, + renderer: i }) { if (!this.target) throw new Error("Target must be initialized with ensureSplats"); - if (I + B > this.maxSplats) + if (e + s > this.maxSplats) throw new Error("Base + count exceeds maxSplats"); - const { program: C, material: E } = this.prepareProgramMaterial(A); - C.update(); - const t = this.saveRenderState(Q), i = Math.ceil((I + B) / X) * X, e = X * WA; - for (E.uniforms.targetBase.value = I, E.uniforms.targetCount.value = B; I < i; ) { - const n = Math.floor(I / e); - E.uniforms.targetLayer.value = n; - const s = n * e, o = Math.floor((I - s) / X), r = Math.min( - WA, - Math.ceil((i - s) / X) + const { program: n, material: a } = this.prepareProgramMaterial(A); + n.update(); + const r = this.saveRenderState(i), g = Math.ceil((e + s) / O) * O, I = O * XA; + for (a.uniforms.targetBase.value = e, a.uniforms.targetCount.value = s; e < g; ) { + const Q = Math.floor(e / I); + a.uniforms.targetLayer.value = Q; + const o = Q * I, E = Math.floor((e - o) / O), C = Math.min( + XA, + Math.ceil((g - o) / O) ); - Q.setPixelRatio(1), Q.setRenderTarget(this.target, n), Q.xr.isPresenting = !1, Q.autoClear = !1, Q.setScissorTest(!0), Q.setScissor( + i.setPixelRatio(1), i.setRenderTarget(this.target, Q), i.xr.isPresenting = !1, i.autoClear = !1, i.setScissorTest(!0), i.setScissor( 0, - o, - X, - r - o - ), Q.render(_.scene, _.camera), I += X * (r - o); + E, + O, + C - E + ), i.render($.scene, $.camera), e += O * (C - E); } - return this.resetRenderState(Q, t), { nextBase: i }; + return this.resetRenderState(i, r), { nextBase: g }; } }; -_.emptySource = null, _.programTemplate = null, _.generatorProgram = /* @__PURE__ */ new Map(), _.geometry = new a.PlaneGeometry(2, 2), _.mesh = new a.Mesh( - _.geometry, - new a.RawShaderMaterial({ visible: !1 }) -), _.scene = new a.Scene().add(_.mesh), _.camera = new a.Camera(); -let ZA = _; -class zI extends S { +$.emptySource = null, $.programTemplate = null, $.generatorProgram = /* @__PURE__ */ new Map(), $.geometry = new B.PlaneGeometry(2, 2), $.mesh = new B.Mesh( + $.geometry, + new B.RawShaderMaterial({ visible: !1 }) +), $.scene = new B.Scene().add($.mesh), $.camera = new B.Camera(); +let TA = $; +class Ke extends k { constructor({ packedSplats: A } = {}) { super({ key: "packedSplats", - type: Lg, - globals: () => [sI], + type: vt, + globals: () => [ne], value: { - texture: ZA.getEmpty(), + texture: TA.getEmpty(), numSplats: 0 }, - update: (I) => { - var B, Q; - return I.texture = ((B = this.packedSplats) == null ? void 0 : B.getTexture()) ?? ZA.getEmpty(), I.numSplats = ((Q = this.packedSplats) == null ? void 0 : Q.numSplats) ?? 0, I; + update: (e) => { + var s, i; + return e.texture = ((s = this.packedSplats) == null ? void 0 : s.getTexture()) ?? TA.getEmpty(), e.numSplats = ((i = this.packedSplats) == null ? void 0 : i.numSplats) ?? 0, e; } }), this.packedSplats = A; } } -class UI extends a.InstancedBufferGeometry { - constructor(A, I) { - super(), this.ordering = A, this.setAttribute("position", new a.BufferAttribute(Tn, 3)), this.setIndex(new a.BufferAttribute(Xn, 1)), this._maxInstanceCount = A.length, this.instanceCount = I, this.attribute = new a.InstancedBufferAttribute(A, 1, !1, 1), this.attribute.setUsage(a.DynamicDrawUsage), this.setAttribute("splatIndex", this.attribute); +class Ne extends B.InstancedBufferGeometry { + constructor(A, e) { + super(), this.ordering = A, this.setAttribute("position", new B.BufferAttribute(LQ, 3)), this.setIndex(new B.BufferAttribute(JQ, 1)), this._maxInstanceCount = A.length, this.instanceCount = e, this.attribute = new B.InstancedBufferAttribute(A, 1, !1, 1), this.attribute.setUsage(B.DynamicDrawUsage), this.setAttribute("splatIndex", this.attribute); } - update(A, I) { - this.ordering = A, this.attribute.array = A, this.instanceCount = I, this.attribute.addUpdateRange(0, I), this.attribute.needsUpdate = !0; + update(A, e) { + this.ordering = A, this.attribute.array = A, this.instanceCount = e, this.attribute.addUpdateRange(0, e), this.attribute.needsUpdate = !0; } } -const Tn = new Float32Array([ +const LQ = new Float32Array([ -1, -1, 0, @@ -7170,33 +7037,33 @@ const Tn = new Float32Array([ -1, 1, 0 -]), Xn = new Uint16Array([0, 1, 2, 0, 2, 3]), PA = class PA { +]), JQ = new Uint16Array([0, 1, 2, 0, 2, 3]), WA = class WA { constructor(A) { - if (this.lastTime = null, this.encodeLinear = !1, this.superXY = 1, this.display = null, this.sorting = null, this.pending = null, this.sortingCheck = !1, this.readback = new Uint16Array(0), this.forge = A.forge, this.camera = A.camera, this.viewToWorld = A.viewToWorld ?? new a.Matrix4(), A.target) { - const { width: I, height: B, doubleBuffer: Q } = A.target, C = Math.max(1, Math.min(4, A.target.superXY ?? 1)); - if (this.superXY = C, I * C > 8192 || B * C > 8192) + if (this.lastTime = null, this.encodeLinear = !1, this.superXY = 1, this.display = null, this.sorting = null, this.pending = null, this.sortingCheck = !1, this.readback = new Uint16Array(0), this.forge = A.forge, this.camera = A.camera, this.viewToWorld = A.viewToWorld ?? new B.Matrix4(), A.target) { + const { width: e, height: s, doubleBuffer: i } = A.target, n = Math.max(1, Math.min(4, A.target.superXY ?? 1)); + if (this.superXY = n, e * n > 8192 || s * n > 8192) throw new Error("Target size too large"); - this.target = new a.WebGLRenderTarget( - I * C, - B * C, + this.target = new B.WebGLRenderTarget( + e * n, + s * n, { - format: a.RGBAFormat, - type: a.UnsignedByteType, - colorSpace: a.SRGBColorSpace + format: B.RGBAFormat, + type: B.UnsignedByteType, + colorSpace: B.SRGBColorSpace } - ), Q && (this.back = new a.WebGLRenderTarget( - I * C, - B * C, + ), i && (this.back = new B.WebGLRenderTarget( + e * n, + s * n, { - format: a.RGBAFormat, - type: a.UnsignedByteType, - colorSpace: a.SRGBColorSpace + format: B.RGBAFormat, + type: B.UnsignedByteType, + colorSpace: B.SRGBColorSpace } )), this.encodeLinear = !0; } - this.onTextureUpdated = A.onTextureUpdated, this.sortRadial = A.sortRadial ?? !0, this.sortDistance = A.sortDistance, this.sortCoorient = A.sortCoorient, this.depthBias = A.depthBias, this.sort360 = A.sort360, this.orderingFreelist = new dQ({ - allocate: (I) => new Uint32Array(I), - valid: (I, B) => I.length === B + this.onTextureUpdated = A.onTextureUpdated, this.sortRadial = A.sortRadial ?? !0, this.sortDistance = A.sortDistance, this.sortCoorient = A.sortCoorient, this.depthBias = A.depthBias, this.sort360 = A.sort360, this.orderingFreelist = new ci({ + allocate: (e) => new Uint32Array(e), + valid: (e, s) => e.length === s }), this.autoUpdate = !1, this.setAutoUpdate(A.autoUpdate ?? !1); } // Call this when you are done with the ForgeViewpoint and want to @@ -7211,7 +7078,7 @@ const Tn = new Float32Array([ // this viewpoint most frames. setAutoUpdate(A) { !this.autoUpdate && A ? this.forge.autoViewpoints.push(this) : this.autoUpdate && !A && (this.forge.autoViewpoints = this.forge.autoViewpoints.filter( - (I) => I !== this + (e) => e !== this )), this.autoUpdate = A; } // See below async prepareRenderPixels() for explanation of parameters. @@ -7220,45 +7087,45 @@ const Tn = new Float32Array([ // call in the same tick. async prepare({ scene: A, - camera: I, - viewToWorld: B, - update: Q, - forceOrigin: C + camera: e, + viewToWorld: s, + update: i, + forceOrigin: n }) { - var t; - for (B ? this.viewToWorld = B : (this.camera = I ?? this.camera, this.camera && (this.camera.updateMatrixWorld(), this.viewToWorld = this.camera.matrixWorld.clone())); Q ?? !0; ) { - const i = C ? this.viewToWorld : void 0; - if (this.forge.updateInternal({ scene: A, originToWorld: i })) + var r; + for (s ? this.viewToWorld = s : (this.camera = e ?? this.camera, this.camera && (this.camera.updateMatrixWorld(), this.viewToWorld = this.camera.matrixWorld.clone())); i ?? !0; ) { + const g = n ? this.viewToWorld : void 0; + if (this.forge.updateInternal({ scene: A, originToWorld: g })) break; - await new Promise((n) => setTimeout(n, 10)); + await new Promise((Q) => setTimeout(Q, 10)); } - const E = this.forge.active; - E !== ((t = this.display) == null ? void 0 : t.accumulator) && (this.forge.active.refCount += 1), await this.sortUpdate({ accumulator: E, viewToWorld: this.viewToWorld }); + const a = this.forge.active; + a !== ((r = this.display) == null ? void 0 : r.accumulator) && (this.forge.active.refCount += 1), await this.sortUpdate({ accumulator: a, viewToWorld: this.viewToWorld }); } // Render out the viewpoint to the view target RGBA buffer. // Swaps buffers if doubleBuffer: true was set. // Calls onTextureUpdated(texture) with the resulting texture. renderTarget({ scene: A, - camera: I + camera: e }) { - var Q; - const B = this.back ?? this.target; - if (!B) + var i; + const s = this.back ?? this.target; + if (!s) throw new Error("Must initialize ForgeViewpoint with target"); - if (I = I ?? this.camera, !I) + if (e = e ?? this.camera, !e) throw new Error("Must provide camera"); - if (I instanceof a.PerspectiveCamera) { - const C = new a.PerspectiveCamera().copy(I, !1); - C.aspect = B.width / B.height, C.updateProjectionMatrix(), I = C; + if (e instanceof B.PerspectiveCamera) { + const n = new B.PerspectiveCamera().copy(e, !1); + n.aspect = s.width / s.height, n.updateProjectionMatrix(), e = n; } - this.viewToWorld = I.matrixWorld.clone(); + this.viewToWorld = e.matrixWorld.clone(); try { - this.forge.renderer.setRenderTarget(B), this.forge.prepareViewpoint(this), this.forge.renderer.render(A, I); + this.forge.renderer.setRenderTarget(s), this.forge.prepareViewpoint(this), this.forge.renderer.render(A, e); } finally { this.forge.prepareViewpoint(this.forge.defaultView), this.forge.renderer.setRenderTarget(null); } - B !== this.target && ([this.target, this.back] = [this.back, this.target]), (Q = this.onTextureUpdated) == null || Q.call(this, B.texture); + s !== this.target && ([this.target, this.back] = [this.back, this.target]), (i = this.onTextureUpdated) == null || i.call(this, s.texture); } // Read back the previously rendered target image as a Uint8Array of packed // RGBA values (in that order). If superXY was set greater than 1 then @@ -7268,38 +7135,38 @@ const Tn = new Float32Array([ async readTarget() { if (!this.target) throw new Error("Must initialize ForgeViewpoint with target"); - const { width: A, height: I } = this.target, B = A * I * 4; - (!this.superPixels || this.superPixels.length < B) && (this.superPixels = new Uint8Array(B)), await this.forge.renderer.readRenderTargetPixelsAsync( + const { width: A, height: e } = this.target, s = A * e * 4; + (!this.superPixels || this.superPixels.length < s) && (this.superPixels = new Uint8Array(s)), await this.forge.renderer.readRenderTargetPixelsAsync( this.target, 0, 0, A, - I, + e, this.superPixels ); - const { superXY: Q } = this; - if (Q === 1) + const { superXY: i } = this; + if (i === 1) return this.superPixels; - const C = A / Q, E = I / Q, t = C * E * 4; - (!this.pixels || this.pixels.length < t) && (this.pixels = new Uint8Array(t)); - const { superPixels: i, pixels: e } = this, n = Q * Q; - for (let s = 0; s < E; s++) { - const o = s * C; - for (let r = 0; r < C; r++) { - const c = r * Q; - let h = 0, w = 0, D = 0, y = 0; - for (let d = 0; d < Q; d++) { - const u = (s * Q + d) * this.target.width; - for (let p = 0; p < Q; p++) { - const m = (u + c + p) * 4; - h += i[m], w += i[m + 1], D += i[m + 2], y += i[m + 3]; + const n = A / i, a = e / i, r = n * a * 4; + (!this.pixels || this.pixels.length < r) && (this.pixels = new Uint8Array(r)); + const { superPixels: g, pixels: I } = this, Q = i * i; + for (let o = 0; o < a; o++) { + const E = o * n; + for (let C = 0; C < n; C++) { + const c = C * i; + let h = 0, l = 0, u = 0, w = 0; + for (let p = 0; p < i; p++) { + const y = (o * i + p) * this.target.width; + for (let m = 0; m < i; m++) { + const F = (y + c + m) * 4; + h += g[F], l += g[F + 1], u += g[F + 2], w += g[F + 3]; } } - const l = (o + r) * 4; - e[l] = h / n, e[l + 1] = w / n, e[l + 2] = D / n, e[l + 3] = y / n; + const d = (E + C) * 4; + I[d] = h / Q, I[d + 1] = l / Q, I[d + 2] = u / Q, I[d + 3] = w / Q; } } - return e; + return I; } // Render out a viewpoint as a Uint8Array of RGBA values for the provided scene // and any camera/viewToWorld viewpoint overrides. By default update is true, @@ -7318,31 +7185,31 @@ const Tn = new Float32Array([ // this.renderTarget(...) to hide UI elements from being rendered. async prepareRenderPixels({ scene: A, - camera: I, - viewToWorld: B, - update: Q, - forceOrigin: C + camera: e, + viewToWorld: s, + update: i, + forceOrigin: n }) { - return await this.prepare({ scene: A, camera: I, viewToWorld: B, update: Q, forceOrigin: C }), this.renderTarget({ scene: A, camera: I }), this.readTarget(); + return await this.prepare({ scene: A, camera: e, viewToWorld: s, update: i, forceOrigin: n }), this.renderTarget({ scene: A, camera: e }), this.readTarget(); } // This is called automatically by ForgeRenderer, there is no need to call it! // The method cannot be private because then ForgeRenderer would // not be able to call it. autoPoll({ accumulator: A }) { - var C, E, t, i; + var n, a, r, g; this.camera && (this.camera.updateMatrixWorld(), this.viewToWorld = this.camera.matrixWorld.clone()); - let I = !1, B = !1; + let e = !1, s = !1; if (!this.display) - I = !0; + e = !0; else if (A) { - I = !0; - const { mappingVersion: e } = this.display.accumulator; - A.mappingVersion === e && (this.forge.releaseAccumulator(this.display.accumulator), this.display.accumulator = A, B = !0); + e = !0; + const { mappingVersion: I } = this.display.accumulator; + A.mappingVersion === I && (this.forge.releaseAccumulator(this.display.accumulator), this.display.accumulator = A, s = !0); } - const Q = ((C = this.sorting) == null ? void 0 : C.viewToWorld) ?? ((E = this.display) == null ? void 0 : E.viewToWorld); - Q && !gI({ + const i = ((n = this.sorting) == null ? void 0 : n.viewToWorld) ?? ((a = this.display) == null ? void 0 : a.viewToWorld); + i && !Xt({ matrix1: this.viewToWorld, - matrix2: Q, + matrix2: i, // By default update sort each 1 cm maxDistance: this.sortDistance ?? 0.01, // By default for radial sort, update for intermittent movement so that @@ -7350,126 +7217,126 @@ const Tn = new Float32Array([ // For depth sort, small rotations can change sort order a lot, so // update sort for even small rotations. minCoorient: this.sortCoorient ?? this.sortRadial ? 0.99 : 0.999 - }) && (I = !0), I && (A && (A.refCount += 1), A && ((t = this.pending) != null && t.accumulator) && this.pending.accumulator !== ((i = this.display) == null ? void 0 : i.accumulator) && this.forge.releaseAccumulator(this.pending.accumulator), this.pending = { accumulator: A, viewToWorld: this.viewToWorld, displayed: B }, this.driveSort()); + }) && (e = !0), e && (A && (A.refCount += 1), A && ((r = this.pending) != null && r.accumulator) && this.pending.accumulator !== ((g = this.display) == null ? void 0 : g.accumulator) && this.forge.releaseAccumulator(this.pending.accumulator), this.pending = { accumulator: A, viewToWorld: this.viewToWorld, displayed: s }, this.driveSort()); } async driveSort() { var A; for (; ; ) { if (this.sorting || !this.pending) return; - const { viewToWorld: I, displayed: B } = this.pending; - let Q = this.pending.accumulator ?? ((A = this.display) == null ? void 0 : A.accumulator); - if (Q || (Q = this.forge.active, Q.refCount += 1), this.pending = null, !Q) + const { viewToWorld: e, displayed: s } = this.pending; + let i = this.pending.accumulator ?? ((A = this.display) == null ? void 0 : A.accumulator); + if (i || (i = this.forge.active, i.refCount += 1), this.pending = null, !i) throw new Error("No accumulator to sort"); - this.sorting = { viewToWorld: I }, await this.sortUpdate({ accumulator: Q, viewToWorld: I, displayed: B }), this.sorting = null; + this.sorting = { viewToWorld: e }, await this.sortUpdate({ accumulator: i, viewToWorld: e, displayed: s }), this.sorting = null; } } async sortUpdate({ accumulator: A, - viewToWorld: I, - displayed: B = !1 + viewToWorld: e, + displayed: s = !1 }) { if (this.sortingCheck) throw new Error("Only one sort at a time"); this.sortingCheck = !0, A = A ?? this.forge.active; - const { numSplats: Q, maxSplats: C } = A.splats; - let E = 0, t = this.orderingFreelist.alloc(C); - if (Q > 0) { + const { numSplats: i, maxSplats: n } = A.splats; + let a = 0, r = this.orderingFreelist.alloc(n); + if (i > 0) { const { - reader: i, - doubleSortReader: e, - dynoSortRadial: n, - dynoOrigin: s, - dynoDirection: o, - dynoDepthBias: r, + reader: g, + doubleSortReader: I, + dynoSortRadial: Q, + dynoOrigin: o, + dynoDirection: E, + dynoDepthBias: C, dynoSort360: c, dynoSplats: h - } = PA.makeSorter(), w = Math.ceil(C / 2); - this.readback = i.ensureBuffer(w, this.readback); - const D = A.toWorld.clone().invert(), y = I.clone().premultiply(D); - n.value = this.sort360 ? !0 : this.sortRadial, s.value.set(0, 0, 0).applyMatrix4(y), o.value.set(0, 0, -1).applyMatrix4(y).sub(s.value).normalize(), r.value = this.depthBias ?? 1, c.value = this.sort360 ?? !1, h.packedSplats = A.splats, await i.renderReadback({ + } = WA.makeSorter(), l = Math.ceil(n / 2); + this.readback = g.ensureBuffer(l, this.readback); + const u = A.toWorld.clone().invert(), w = e.clone().premultiply(u); + Q.value = this.sort360 ? !0 : this.sortRadial, o.value.set(0, 0, 0).applyMatrix4(w), E.value.set(0, 0, -1).applyMatrix4(w).sub(o.value).normalize(), C.value = this.depthBias ?? 1, c.value = this.sort360 ?? !1, h.packedSplats = A.splats, await g.renderReadback({ renderer: this.forge.renderer, - reader: e, - count: Math.ceil(Q / 2), + reader: I, + count: Math.ceil(i / 2), readback: this.readback }); - const l = await og(async (d) => d.call("sortDoubleSplats", { - numSplats: Q, + const d = await Dt(async (p) => p.call("sortDoubleSplats", { + numSplats: i, readback: this.readback, - ordering: t + ordering: r })); - this.readback = l.readback, t = l.ordering, E = l.activeSplats; + this.readback = d.readback, r = d.ordering, a = d.activeSplats; } this.updateDisplay({ accumulator: A, - viewToWorld: I, - ordering: t, - activeSplats: E, - displayed: B + viewToWorld: e, + ordering: r, + activeSplats: a, + displayed: s }), this.sortingCheck = !1; } updateDisplay({ accumulator: A, - viewToWorld: I, - ordering: B, - activeSplats: Q, - displayed: C = !1 + viewToWorld: e, + ordering: s, + activeSplats: i, + displayed: n = !1 }) { if (!this.display) this.display = { accumulator: A, - viewToWorld: I, - geometry: new UI(B, Q) + viewToWorld: e, + geometry: new Ne(s, i) }; else { - !C && A !== this.display.accumulator && (this.forge.releaseAccumulator(this.display.accumulator), this.display.accumulator = A), this.display.viewToWorld = I; - const E = this.display.geometry.ordering; - E.length === B.length ? this.display.geometry.update(B, Q) : (this.display.geometry.dispose(), this.display.geometry = new UI(B, Q)), this.orderingFreelist.free(E); + !n && A !== this.display.accumulator && (this.forge.releaseAccumulator(this.display.accumulator), this.display.accumulator = A), this.display.viewToWorld = e; + const a = this.display.geometry.ordering; + a.length === s.length ? this.display.geometry.update(s, i) : (this.display.geometry.dispose(), this.display.geometry = new Ne(s, i)), this.orderingFreelist.free(a); } this.forge.viewpoint === this && this.forge.prepareViewpoint(this); } static makeSorter() { - if (!PA.dynos) { - const A = new $g({ value: !0 }), I = new yg({ value: new a.Vector3() }), B = new yg({ value: new a.Vector3() }), Q = new Cg({ value: 1 }), C = new $g({ value: !1 }), E = new zI(), t = new II(), i = YA( + if (!WA.dynos) { + const A = new Wt({ value: !0 }), e = new lt({ value: new B.Vector3() }), s = new lt({ value: new B.Vector3() }), i = new it({ value: 1 }), n = new Wt({ value: !1 }), a = new Ke(), r = new $t(), g = RA( { index: "int" }, { rgba8: "vec4" }, - ({ index: e }) => { - if (!e) + ({ index: I }) => { + if (!I) throw new Error("No index"); - const n = { + const Q = { sortRadial: A, - sortOrigin: I, - sortDirection: B, - sortDepthBias: Q, - sort360: C - }, s = rA(e, gA("int", 2)), o = mg(E, s), r = CB({ gsplat: o, ...n }), c = mg( - E, - NA(s, gA("int", 1)) - ), h = CB({ gsplat: c, ...n }), w = KA({ + sortOrigin: e, + sortDirection: s, + sortDepthBias: i, + sort360: n + }, o = CA(I, tA("int", 2)), E = Nt(a, o), C = Xe({ gsplat: E, ...Q }), c = Nt( + a, + fA(o, tA("int", 1)) + ), h = Xe({ gsplat: c, ...Q }), l = YA({ vectorType: "vec2", - x: r, + x: C, y: h }); - return { rgba8: YC(SC(w)) }; + return { rgba8: Sn(xn(l)) }; } ); - PA.dynos = { + WA.dynos = { dynoSortRadial: A, - dynoOrigin: I, - dynoDirection: B, - dynoDepthBias: Q, - dynoSort360: C, - dynoSplats: E, - reader: t, - doubleSortReader: i + dynoOrigin: e, + dynoDirection: s, + dynoDepthBias: i, + dynoSort360: n, + dynoSplats: a, + reader: r, + doubleSortReader: g }; } - return PA.dynos; + return WA.dynos; } }; -PA.EMPTY_TEXTURE = new a.Texture(), PA.dynos = null; -let EI = PA; -const zn = aA(` +WA.EMPTY_TEXTURE = new B.Texture(), WA.dynos = null; +let ee = WA; +const YQ = BA(` float computeSort(Gsplat gsplat, bool sortRadial, vec3 sortOrigin, vec3 sortDirection, float sortDepthBias, bool sort360) { if (!isGsplatActive(gsplat.flags)) { return INFINITY; @@ -7484,17 +7351,17 @@ const zn = aA(` return sortRadial ? length(center) : biasedDepth; } `); -function CB({ - gsplat: g, +function Xe({ + gsplat: t, sortRadial: A, - sortOrigin: I, - sortDirection: B, - sortDepthBias: Q, - sort360: C + sortOrigin: e, + sortDirection: s, + sortDepthBias: i, + sort360: n }) { - return xg({ + return bt({ inTypes: { - gsplat: BA, + gsplat: sA, sortRadial: "bool", sortOrigin: "vec3", sortDirection: "vec3", @@ -7502,33 +7369,33 @@ function CB({ sort360: "bool" }, outTypes: { metric: "float" }, - globals: () => [pA, zn], + globals: () => [mA, YQ], inputs: { - gsplat: g, + gsplat: t, sortRadial: A, - sortOrigin: I, - sortDirection: B, - sortDepthBias: Q, - sort360: C + sortOrigin: e, + sortDirection: s, + sortDepthBias: i, + sort360: n }, - statements: ({ inputs: E, outputs: t }) => { + statements: ({ inputs: a, outputs: r }) => { const { - gsplat: i, - sortRadial: e, - sortOrigin: n, - sortDirection: s, - sortDepthBias: o, - sort360: r - } = E; - return mA(` - ${t.metric} = computeSort(${i}, ${e}, ${n}, ${s}, ${o}, ${r}); + gsplat: g, + sortRadial: I, + sortOrigin: Q, + sortDirection: o, + sortDepthBias: E, + sort360: C + } = a; + return NA(` + ${r.metric} = computeSort(${g}, ${I}, ${Q}, ${o}, ${E}, ${C}); `); } }).outputs.metric; } -class NI { +class ye { constructor() { - this.splats = new ZA(), this.toWorld = new a.Matrix4(), this.mapping = [], this.refCount = 0, this.splatsVersion = -1, this.mappingVersion = -1; + this.splats = new TA(), this.toWorld = new B.Matrix4(), this.mapping = [], this.refCount = 0, this.splatsVersion = -1, this.mappingVersion = -1; } ensureGenerate(A) { this.splats.ensureGenerate(A) && (this.mapping = []); @@ -7536,47 +7403,47 @@ class NI { // Generate all Gsplats from an array of generators generateSplats({ renderer: A, - modifier: I, - generators: B, - forceUpdate: Q, - originToWorld: C + modifier: e, + generators: s, + forceUpdate: i, + originToWorld: n }) { - const E = this.mapping.reduce((e, n) => (e.set(n.node, n), e), /* @__PURE__ */ new Map()); - let t = 0, i = 0; - for (const { node: e, generator: n, version: s, base: o, count: r } of B) { - const c = E.get(e); - if ((Q || n !== (c == null ? void 0 : c.generator) || s !== (c == null ? void 0 : c.version) || o !== (c == null ? void 0 : c.base) || r !== (c == null ? void 0 : c.count)) && n && r > 0) { - const h = I.apply(n); + const a = this.mapping.reduce((I, Q) => (I.set(Q.node, Q), I), /* @__PURE__ */ new Map()); + let r = 0, g = 0; + for (const { node: I, generator: Q, version: o, base: E, count: C } of s) { + const c = a.get(I); + if ((i || Q !== (c == null ? void 0 : c.generator) || o !== (c == null ? void 0 : c.version) || E !== (c == null ? void 0 : c.base) || C !== (c == null ? void 0 : c.count)) && Q && C > 0) { + const h = e.apply(Q); try { this.splats.generate({ generator: h, - base: o, - count: r, + base: E, + count: C, renderer: A }); - } catch (w) { - e.generator = void 0, e.generatorError = w; + } catch (l) { + I.generator = void 0, I.generatorError = l; } - t += 1; + r += 1; } - i = Math.max(i, o + r); + g = Math.max(g, E + C); } - return this.splats.numSplats = i, this.toWorld = C, this.mapping = B, t !== 0; + return this.splats.numSplats = g, this.toWorld = n, this.mapping = s, r !== 0; } // Check if this accumulator has exactly the same generator mapping as // the previous one. If so, we can reuse the Gsplat sort order. hasCorrespondence(A) { - return this.mapping.length !== A.mapping.length ? !1 : this.mapping.every(({ node: I, base: B, count: Q }, C) => { + return this.mapping.length !== A.mapping.length ? !1 : this.mapping.every(({ node: e, base: s, count: i }, n) => { const { - node: E, - base: t, - count: i - } = A.mapping[C]; - return I === E && B === t && Q === i; + node: a, + base: r, + count: g + } = A.mapping[n]; + return e === a && s === r && i === g; }); } } -var jn = `const float LN_SCALE_MIN = -9.0; +var TQ = `const float LN_SCALE_MIN = -9.0; const float LN_SCALE_MAX = 9.0; const float LN_RESCALE = (LN_SCALE_MAX - LN_SCALE_MIN) / 254.0; @@ -7818,7 +7685,7 @@ ivec3 splatTexCoord(int index) { uint y = (uint(index) >> SPLAT_TEX_WIDTH_BITS) & SPLAT_TEX_HEIGHT_MASK; uint z = uint(index) >> SPLAT_TEX_LAYER_BITS; return ivec3(x, y, z); -}`, On = `precision highp float; +}`, HQ = `precision highp float; precision highp int; #include @@ -7851,7 +7718,7 @@ void main() { rgb = srgbToLinear(rgb); } fragColor = vec4(rgb, alpha); -}`, Pn = `precision highp float; +}`, KQ = `precision highp float; precision highp int; precision highp usampler2DArray; @@ -8022,74 +7889,74 @@ void main() { vNdc = ndc; gl_Position = vec4(ndc.xy * clipCenter.w, clipCenter.zw); }`; -let pI = null; -function _n() { - return pI || (a.ShaderChunk.splatDefines = jn, pI = { - splatVertex: Pn, - splatFragment: On - }), pI; +let pe = null; +function qQ() { + return pe || (B.ShaderChunk.splatDefines = TQ, pe = { + splatVertex: KQ, + splatFragment: HQ + }), pe; } -const EB = 5; -let xI = !1, LI = !1, Ft; -const Rt = a.Scene.prototype.add; -a.Scene.prototype.add = function(g) { - return xI = xI || g instanceof Ag, LI = LI || g instanceof tI, Rt.call(this, g), this; +const $e = 5; +let ke = !1, Ue = !1, pr; +const Dr = B.Scene.prototype.add; +B.Scene.prototype.add = function(t) { + return ke = ke || t instanceof At, Ue = Ue || t instanceof se, Dr.call(this, t), this; }; -const $n = a.Scene.prototype.onBeforeRender; -a.Scene.prototype.onBeforeRender = function(g) { - if (xI) { - if (!LI) { - const A = Ft || new tI({ renderer: g }); +const zQ = B.Scene.prototype.onBeforeRender; +B.Scene.prototype.onBeforeRender = function(t) { + if (ke) { + if (!Ue) { + const A = pr || new se({ renderer: t }); this.add(A); } - a.Scene.prototype.onBeforeRender = $n, a.Scene.prototype.add = Rt; + B.Scene.prototype.onBeforeRender = zQ, B.Scene.prototype.add = Dr; } }; -const yA = class yA extends a.Mesh { +const dA = class dA extends B.Mesh { constructor(A) { - const I = yA.makeUniforms(), B = _n(), Q = new a.ShaderMaterial({ - glslVersion: a.GLSL3, - vertexShader: B.splatVertex, - fragmentShader: B.splatFragment, - uniforms: I, + const e = dA.makeUniforms(), s = qQ(), i = new B.ShaderMaterial({ + glslVersion: B.GLSL3, + vertexShader: s.splatVertex, + fragmentShader: s.splatFragment, + uniforms: e, transparent: !0, - blending: a.NormalBlending, + blending: B.NormalBlending, depthTest: !0, depthWrite: !1, - side: a.DoubleSide + side: B.DoubleSide }); - super(tB, Q), this.autoViewpoints = [], this.rotateToAccumulator = new bg({ value: new a.Quaternion() }), this.translateToAccumulator = new yg({ value: new a.Vector3() }), this.lastFrame = -1, this.lastUpdateTime = null, this.defaultCameras = [], this.pendingUpdate = null, this.envViewpoint = null, this.frustumCulled = !1, this.renderer = A.renderer, this.material = Q, this.uniforms = I; - const C = YA( - { gsplat: BA }, - { gsplat: BA }, - ({ gsplat: E }) => { - if (!E) + super(je, i), this.autoViewpoints = [], this.rotateToAccumulator = new Lt({ value: new B.Quaternion() }), this.translateToAccumulator = new lt({ value: new B.Vector3() }), this.lastFrame = -1, this.lastUpdateTime = null, this.defaultCameras = [], this.pendingUpdate = null, this.envViewpoint = null, this.frustumCulled = !1, this.renderer = A.renderer, this.material = i, this.uniforms = e; + const n = RA( + { gsplat: sA }, + { gsplat: sA }, + ({ gsplat: a }) => { + if (!a) throw new Error("gsplat not defined"); - return E = qI(E, { + return a = ve(a, { rotate: this.rotateToAccumulator, translate: this.translateToAccumulator - }), { gsplat: E }; + }), { gsplat: a }; } ); - this.modifier = new Jn(C), this.autoUpdate = A.autoUpdate ?? !0, this.preUpdate = A.preUpdate ?? !1, this.originDistance = A.originDistance ?? 1, this.maxStdDev = A.maxStdDev ?? Math.sqrt(8), this.enable2DGS = A.enable2DGS ?? !0, this.preBlurAmount = A.preBlurAmount ?? 0, this.blurAmount = A.blurAmount ?? 0.3, this.falloff = A.falloff ?? 1, this.clipXY = A.clipXY ?? 1.4, this.active = new NI(), this.accumulatorCount = 1, this.freeAccumulators = []; - for (let E = 0; E < 1; ++E) - this.freeAccumulators.push(new NI()), this.accumulatorCount += 1; - this.defaultView = new EI({ + this.modifier = new yQ(n), this.autoUpdate = A.autoUpdate ?? !0, this.preUpdate = A.preUpdate ?? !1, this.originDistance = A.originDistance ?? 1, this.maxStdDev = A.maxStdDev ?? Math.sqrt(8), this.enable2DGS = A.enable2DGS ?? !0, this.preBlurAmount = A.preBlurAmount ?? 0, this.blurAmount = A.blurAmount ?? 0.3, this.falloff = A.falloff ?? 1, this.clipXY = A.clipXY ?? 1.4, this.active = new ye(), this.accumulatorCount = 1, this.freeAccumulators = []; + for (let a = 0; a < 1; ++a) + this.freeAccumulators.push(new ye()), this.accumulatorCount += 1; + this.defaultView = new ee({ ...A.view, autoUpdate: !0, forge: this - }), this.viewpoint = this.defaultView, this.prepareViewpoint(this.viewpoint), this.clock = A.clock ? GQ(A.clock) : new a.Clock(), Ft = this; + }), this.viewpoint = this.defaultView, this.prepareViewpoint(this.viewpoint), this.clock = A.clock ? hi(A.clock) : new B.Clock(), pr = this; } static makeUniforms() { return { // Size of render viewport in pixels - renderSize: { value: new a.Vector2() }, + renderSize: { value: new B.Vector2() }, // Total number of Gsplats in packedSplats to render numSplats: { value: 0 }, // SplatAccumulator to view transformation quaternion - renderToViewQuat: { value: new a.Quaternion() }, + renderToViewQuat: { value: new B.Quaternion() }, // SplatAccumulator to view transformation translation - renderToViewPos: { value: new a.Vector3() }, + renderToViewPos: { value: new B.Vector3() }, // Maximum distance (in stddevs) from Gsplat center to render maxStdDev: { value: 1 }, // Enable interpreting 0-thickness Gsplats as 2DGS @@ -8104,7 +7971,7 @@ const yA = class yA extends a.Mesh { // Clip Gsplats that are clipXY times beyond the +-1 frustum bounds clipXY: { value: 1.4 }, // Gsplat collection to render - packedSplats: { type: "t", value: ZA.getEmpty() }, + packedSplats: { type: "t", value: TA.getEmpty() }, // Time in seconds for time-based effects time: { value: 0 }, // Delta time in seconds since last frame @@ -8116,14 +7983,14 @@ const yA = class yA extends a.Mesh { }; } canAllocAccumulator() { - return this.freeAccumulators.length > 0 || this.accumulatorCount < EB; + return this.freeAccumulators.length > 0 || this.accumulatorCount < $e; } maybeAllocAccumulator() { let A = this.freeAccumulators.pop(); if (A === void 0) { - if (this.accumulatorCount >= EB) + if (this.accumulatorCount >= $e) return null; - A = new NI(), this.accumulatorCount += 1; + A = new ye(), this.accumulatorCount += 1; } return A.refCount = 1, A; } @@ -8131,46 +7998,46 @@ const yA = class yA extends a.Mesh { A.refCount -= 1, A.refCount === 0 && this.freeAccumulators.push(A); } newViewpoint(A) { - return new EI({ ...A, forge: this }); + return new ee({ ...A, forge: this }); } - onBeforeRender(A, I, B) { - var o, r; - const Q = this.time ?? this.clock.getElapsedTime(), C = Q - (this.viewpoint.lastTime ?? Q); - this.viewpoint.lastTime = Q; - const E = A.info.render.frame, t = E !== this.lastFrame; - this.lastFrame = E; - const i = this.viewpoint; - if (i === this.defaultView) { - if (t) + onBeforeRender(A, e, s) { + var E, C; + const i = this.time ?? this.clock.getElapsedTime(), n = i - (this.viewpoint.lastTime ?? i); + this.viewpoint.lastTime = i; + const a = A.info.render.frame, r = a !== this.lastFrame; + this.lastFrame = a; + const g = this.viewpoint; + if (g === this.defaultView) { + if (r) if (!A.xr.isPresenting) - this.defaultView.viewToWorld = B.matrixWorld.clone(), this.defaultCameras = [this.defaultView.viewToWorld]; + this.defaultView.viewToWorld = s.matrixWorld.clone(), this.defaultCameras = [this.defaultView.viewToWorld]; else { const c = A.xr.getCamera().cameras; this.defaultCameras = [ c[0].matrixWorld, c[1].matrixWorld - ], this.defaultView.viewToWorld = Ao(this.defaultCameras) ?? new a.Matrix4(); + ], this.defaultView.viewToWorld = _Q(this.defaultCameras) ?? new B.Matrix4(); } - this.autoUpdate && this.update({ scene: I, viewToWorld: this.defaultView.viewToWorld }); + this.autoUpdate && this.update({ scene: e, viewToWorld: this.defaultView.viewToWorld }); } - if (t && (this.uniforms.time.value = Q, this.uniforms.deltaTime.value = C, this.uniforms.debugFlag.value = performance.now() / 1e3 % 2 < 1), i.target) + if (r && (this.uniforms.time.value = i, this.uniforms.deltaTime.value = n, this.uniforms.debugFlag.value = performance.now() / 1e3 % 2 < 1), g.target) this.uniforms.renderSize.value.set( - i.target.width, - i.target.height + g.target.width, + g.target.height ); else { const c = A.getSize(this.uniforms.renderSize.value); if (c.x === 1 && c.y === 1) { - const h = (o = A.xr.getSession()) == null ? void 0 : o.renderState.baseLayer; + const h = (E = A.xr.getSession()) == null ? void 0 : E.renderState.baseLayer; h && (c.x = h.framebufferWidth, c.y = h.framebufferHeight); } } - this.uniforms.encodeLinear.value = i.encodeLinear, this.uniforms.maxStdDev.value = this.maxStdDev, this.uniforms.enable2DGS.value = this.enable2DGS, this.uniforms.preBlurAmount.value = this.preBlurAmount, this.uniforms.blurAmount.value = this.blurAmount, this.uniforms.falloff.value = this.falloff, this.uniforms.clipXY.value = this.clipXY; - const e = ((r = i.display) == null ? void 0 : r.accumulator.toWorld) ?? new a.Matrix4(), n = B.matrixWorld.clone().invert(); - e.clone().premultiply(n).decompose( + this.uniforms.encodeLinear.value = g.encodeLinear, this.uniforms.maxStdDev.value = this.maxStdDev, this.uniforms.enable2DGS.value = this.enable2DGS, this.uniforms.preBlurAmount.value = this.preBlurAmount, this.uniforms.blurAmount.value = this.blurAmount, this.uniforms.falloff.value = this.falloff, this.uniforms.clipXY.value = this.clipXY; + const I = ((C = g.display) == null ? void 0 : C.accumulator.toWorld) ?? new B.Matrix4(), Q = s.matrixWorld.clone().invert(); + I.clone().premultiply(Q).decompose( this.uniforms.renderToViewPos.value, this.uniforms.renderToViewQuat.value, - new a.Vector3() + new B.Vector3() ); } // Update the uniforms for the given viewpoint. @@ -8179,120 +8046,120 @@ const yA = class yA extends a.Mesh { // defaultView when we're finished. prepareViewpoint(A) { if (this.viewpoint = A ?? this.viewpoint, this.viewpoint.display) { - const { accumulator: I, geometry: B } = this.viewpoint.display; - this.uniforms.numSplats.value = I.splats.numSplats, this.uniforms.packedSplats.value = I.splats.getTexture(), this.geometry = B; + const { accumulator: e, geometry: s } = this.viewpoint.display; + this.uniforms.numSplats.value = e.splats.numSplats, this.uniforms.packedSplats.value = e.splats.getTexture(), this.geometry = s; } else - this.uniforms.numSplats.value = 0, this.uniforms.packedSplats.value = ZA.getEmpty(), this.geometry = tB; + this.uniforms.numSplats.value = 0, this.uniforms.packedSplats.value = TA.getEmpty(), this.geometry = je; } // If forge.autoUpdate is false then you must manually call // forge.update({ scene }) to have the scene Gsplats be re-generated. update({ scene: A, - viewToWorld: I + viewToWorld: e }) { - const B = this.matrixWorld.clone(); - this.preUpdate ? this.updateInternal({ scene: A, originToWorld: B, viewToWorld: I }) : (this.pendingUpdate = { + const s = this.matrixWorld.clone(); + this.preUpdate ? this.updateInternal({ scene: A, originToWorld: s, viewToWorld: e }) : (this.pendingUpdate = { scene: A, - originToWorld: B + originToWorld: s }, setTimeout(() => { if (this.pendingUpdate) { - const { scene: Q, originToWorld: C } = this.pendingUpdate; - this.pendingUpdate = null, this.updateInternal({ scene: Q, originToWorld: C, viewToWorld: I }); + const { scene: i, originToWorld: n } = this.pendingUpdate; + this.pendingUpdate = null, this.updateInternal({ scene: i, originToWorld: n, viewToWorld: e }); } }, 1)); } updateInternal({ scene: A, - originToWorld: I, - viewToWorld: B + originToWorld: e, + viewToWorld: s }) { - var o; + var E; if (!this.canAllocAccumulator()) return !1; - I || (I = this.active.toWorld), B = B ?? I.clone(); - const Q = this.time ?? this.clock.getElapsedTime(), C = Q - (this.lastUpdateTime ?? Q); - this.lastUpdateTime = Q; - const E = this.active.mapping.reduce((r, c) => (r.set(c.node, c), r), /* @__PURE__ */ new Map()), { generators: t, globalEdits: i } = this.compileScene(A); - for (const r of t) - (o = r.frameUpdate) == null || o.call(r, { - object: r, - time: Q, - deltaTime: C, - viewToWorld: B, - globalEdits: i + e || (e = this.active.toWorld), s = s ?? e.clone(); + const i = this.time ?? this.clock.getElapsedTime(), n = i - (this.lastUpdateTime ?? i); + this.lastUpdateTime = i; + const a = this.active.mapping.reduce((C, c) => (C.set(c.node, c), C), /* @__PURE__ */ new Map()), { generators: r, globalEdits: g } = this.compileScene(A); + for (const C of r) + (E = C.frameUpdate) == null || E.call(C, { + object: C, + time: i, + deltaTime: n, + viewToWorld: s, + globalEdits: g }); - for (const r of t) { - const c = E.get(r), h = r.generator ? r.numSplats : 0; - (r.generator !== (c == null ? void 0 : c.generator) || h !== (c == null ? void 0 : c.count)) && r.updateVersion(); + for (const C of r) { + const c = a.get(C), h = C.generator ? C.numSplats : 0; + (C.generator !== (c == null ? void 0 : c.generator) || h !== (c == null ? void 0 : c.count)) && C.updateVersion(); } - const n = !gI({ - matrix1: I, + const Q = !Xt({ + matrix1: e, matrix2: this.active.toWorld, maxDistance: this.originDistance - }) || t.length !== E.size || t.some((r) => { + }) || r.length !== a.size || r.some((C) => { var c; - return r.version !== ((c = E.get(r)) == null ? void 0 : c.version); + return C.version !== ((c = a.get(C)) == null ? void 0 : c.version); }); - let s = null; - if (n) { - if (s = this.maybeAllocAccumulator(), !s) + let o = null; + if (Q) { + if (o = this.maybeAllocAccumulator(), !o) throw new Error("Unreachable"); - const r = !gI({ - matrix1: I, + const C = !Xt({ + matrix1: e, matrix2: this.active.toWorld, maxDistance: 1e-5, minCoorient: 0.99999 - }), h = t.map((u, p) => { - const m = E.get(u); - return m ? ( + }), h = r.map((y, m) => { + const F = a.get(y); + return F ? ( // Sort by version deltas then by previous ordering in the mapping, // attempting to keep unchanging generators near the front // to improve our chances of avoiding a re-generation. - [u.version - m.version, m.base, u] - ) : [Number.POSITIVE_INFINITY, u.version, u]; - }).sort((u, p) => u[0] !== p[0] ? u[0] - p[0] : u[1] - p[1]).map(([u, p, m]) => m), w = h.map((u) => u.numSplats), { maxSplats: D, mapping: y } = s.splats.generateMapping(w), l = h.map((u, p) => { - const { base: m, count: M } = y[p]; + [y.version - F.version, F.base, y] + ) : [Number.POSITIVE_INFINITY, y.version, y]; + }).sort((y, m) => y[0] !== m[0] ? y[0] - m[0] : y[1] - m[1]).map(([y, m, F]) => F), l = h.map((y) => y.numSplats), { maxSplats: u, mapping: w } = o.splats.generateMapping(l), d = h.map((y, m) => { + const { base: F, count: D } = w[m]; return { - node: u, - generator: u.generator, - version: u.version, - base: m, - count: M + node: y, + generator: y.generator, + version: y.version, + base: F, + count: D }; }); - I.clone().invert().decompose( + e.clone().invert().decompose( this.translateToAccumulator.value, this.rotateToAccumulator.value, - new a.Vector3() - ), s.ensureGenerate(D), s.generateSplats({ + new B.Vector3() + ), o.ensureGenerate(u), o.generateSplats({ renderer: this.renderer, modifier: this.modifier, - generators: l, - forceUpdate: r, - originToWorld: I - }), s.splatsVersion = this.active.splatsVersion + 1; - const d = s.hasCorrespondence(this.active); - s.mappingVersion = this.active.mappingVersion + (d ? 0 : 1), this.releaseAccumulator(this.active), this.active = s, this.prepareViewpoint(); + generators: d, + forceUpdate: C, + originToWorld: e + }), o.splatsVersion = this.active.splatsVersion + 1; + const p = o.hasCorrespondence(this.active); + o.mappingVersion = this.active.mappingVersion + (p ? 0 : 1), this.releaseAccumulator(this.active), this.active = o, this.prepareViewpoint(); } return setTimeout(() => { - for (const r of this.autoViewpoints) - r.autoPoll({ accumulator: s ?? void 0 }); + for (const C of this.autoViewpoints) + C.autoPoll({ accumulator: o ?? void 0 }); }, 1), !0; } compileScene(A) { - const I = []; - A.traverse((Q) => { - Q instanceof nI && I.push(Q); + const e = []; + A.traverse((i) => { + i instanceof ge && e.push(i); }); - const B = /* @__PURE__ */ new Set(); - return A.traverseVisible((Q) => { - if (Q instanceof BI) { - let C = Q.parent; - for (; C != null && !(C instanceof Ag); ) - C = C.parent; - C == null && B.add(Q); + const s = /* @__PURE__ */ new Set(); + return A.traverseVisible((i) => { + if (i instanceof jt) { + let n = i.parent; + for (; n != null && !(n instanceof At); ) + n = n.parent; + n == null && s.add(i); } - }), { generators: I, globalEdits: Array.from(B) }; + }), { generators: e, globalEdits: Array.from(s) }; } // Renders out the scene to an environment map that can be used for // Image-based lighting or similar applications. First optionally updates Gsplats, @@ -8301,47 +8168,47 @@ const yA = class yA extends a.Mesh { // that can assigned directly to a THREE.MeshStandardMaterial.envMap property. async renderEnvMap({ renderer: A, - scene: I, - worldCenter: B, - size: Q = 256, - near: C = 0.1, - far: E = 1e3, - hideObjects: t = [], - update: i = !1 + scene: e, + worldCenter: s, + size: i = 256, + near: n = 0.1, + far: a = 1e3, + hideObjects: r = [], + update: g = !1 }) { - var r, c; - if (this.envViewpoint || (this.envViewpoint = this.newViewpoint({ sort360: !0 })), !yA.cubeRender || yA.cubeRender.target.width !== Q || yA.cubeRender.near !== C || yA.cubeRender.far !== E) { - yA.cubeRender && yA.cubeRender.target.dispose(); - const h = new a.WebGLCubeRenderTarget(Q, { - format: a.RGBAFormat, + var C, c; + if (this.envViewpoint || (this.envViewpoint = this.newViewpoint({ sort360: !0 })), !dA.cubeRender || dA.cubeRender.target.width !== i || dA.cubeRender.near !== n || dA.cubeRender.far !== a) { + dA.cubeRender && dA.cubeRender.target.dispose(); + const h = new B.WebGLCubeRenderTarget(i, { + format: B.RGBAFormat, generateMipmaps: !0, - minFilter: a.LinearMipMapLinearFilter - }), w = new a.CubeCamera(C, E, h); - yA.cubeRender = { target: h, camera: w, near: C, far: E }; + minFilter: B.LinearMipMapLinearFilter + }), l = new B.CubeCamera(n, a, h); + dA.cubeRender = { target: h, camera: l, near: n, far: a }; } - yA.pmrem || (yA.pmrem = new a.PMREMGenerator(A ?? this.renderer)); - const e = new a.Matrix4().setPosition(B); - await ((r = this.envViewpoint) == null ? void 0 : r.prepare({ scene: I, viewToWorld: e, update: i })); - const { target: n, camera: s } = yA.cubeRender; - s.position.copy(B); - const o = /* @__PURE__ */ new Map(); - for (const h of t) - o.set(h, h.visible), h.visible = !1; - this.prepareViewpoint(this.envViewpoint), s.update(A ?? this.renderer, I), this.prepareViewpoint(this.defaultView); - for (const [h, w] of o.entries()) - h.visible = w; - return (c = yA.pmrem) == null ? void 0 : c.fromCubemap(n.texture).texture; + dA.pmrem || (dA.pmrem = new B.PMREMGenerator(A ?? this.renderer)); + const I = new B.Matrix4().setPosition(s); + await ((C = this.envViewpoint) == null ? void 0 : C.prepare({ scene: e, viewToWorld: I, update: g })); + const { target: Q, camera: o } = dA.cubeRender; + o.position.copy(s); + const E = /* @__PURE__ */ new Map(); + for (const h of r) + E.set(h, h.visible), h.visible = !1; + this.prepareViewpoint(this.envViewpoint), o.update(A ?? this.renderer, e), this.prepareViewpoint(this.defaultView); + for (const [h, l] of E.entries()) + h.visible = l; + return (c = dA.pmrem) == null ? void 0 : c.fromCubemap(Q.texture).texture; } // Utility function to recursively set the envMap property for any // THREE.MeshStandardMaterial within the subtree of root. - recurseSetEnvMap(A, I) { - A.traverse((B) => { - if (B instanceof a.Mesh) - if (Array.isArray(B.material)) - for (const Q of B.material) - Q instanceof a.MeshStandardMaterial && (Q.envMap = I); + recurseSetEnvMap(A, e) { + A.traverse((s) => { + if (s instanceof B.Mesh) + if (Array.isArray(s.material)) + for (const i of s.material) + i instanceof B.MeshStandardMaterial && (i.envMap = e); else - B.material instanceof a.MeshStandardMaterial && (B.material.envMap = I); + s.material instanceof B.MeshStandardMaterial && (s.material.envMap = e); }); } // Utility function that helps extract the Gsplat RGBA values from a @@ -8351,79 +8218,79 @@ const yA = class yA extends a.Mesh { // baked values into the Gsplat data. getRgba({ generator: A, - rgba: I + rgba: e }) { - const B = this.active.mapping.find(({ node: Q }) => Q === A); - if (!B) + const s = this.active.mapping.find(({ node: i }) => i === A); + if (!s) throw new Error("Generator not found"); - return I = I ?? new YI(), I.fromPackedSplats({ + return e = e ?? new Fe(), e.fromPackedSplats({ packedSplats: this.active.splats, - base: B.base, - count: B.count, + base: s.base, + count: s.count, renderer: this.renderer - }), I; + }), e; } // Utility function that builds on getRgba({ generator }) and additionally // reads back the RGBA values to the CPU in a Uint8Array with packed RGBA // in that byte order. async readRgba({ generator: A, - rgba: I + rgba: e }) { - return I = this.getRgba({ generator: A, rgba: I }), I.read(); + return e = this.getRgba({ generator: A, rgba: e }), e.read(); } }; -yA.cubeRender = null, yA.pmrem = null; -let tI = yA; -const tB = new UI(new Uint32Array(1), 0); -YA( - { packedSplats: Lg, index: "int" }, - { gsplat: BA }, - ({ packedSplats: g, index: A }) => { - if (!g || !A) +dA.cubeRender = null, dA.pmrem = null; +let se = dA; +const je = new Ne(new Uint32Array(1), 0); +RA( + { packedSplats: vt, index: "int" }, + { gsplat: sA }, + ({ packedSplats: t, index: A }) => { + if (!t || !A) throw new Error("Invalid input"); - return { gsplat: mg(g, A) }; + return { gsplat: Nt(t, A) }; } ); -function Ao(g) { - if (g.length === 0) +function _Q(t) { + if (t.length === 0) return null; - const A = new a.Vector3(), I = new a.Quaternion(), B = new a.Vector3(), Q = [], C = []; - for (const E of g) - E.decompose(A, I, B), Q.push(A), C.push(I); - return new a.Matrix4().compose( - NQ(Q), - pQ(C), - new a.Vector3(1, 1, 1) + const A = new B.Vector3(), e = new B.Quaternion(), s = new B.Vector3(), i = [], n = []; + for (const a of t) + a.decompose(A, e, s), i.push(A), n.push(e); + return new B.Matrix4().compose( + ui(i), + di(n), + new B.Vector3(1, 1, 1) ); } -function go(g, A, I) { - const B = Math.floor(g.length / 32); - if (B * 32 !== g.length) +function VQ(t, A, e) { + const s = Math.floor(t.length / 32); + if (s * 32 !== t.length) throw new Error("Invalid .splat file size"); - const Q = new Float32Array(g.buffer); - for (let C = 0; C < B; ++C) { - const E = C * 32, t = C * 8, i = Q[t + 0], e = Q[t + 1], n = Q[t + 2], s = Q[t + 3], o = Q[t + 4], r = Q[t + 5], c = g[E + 24] / 255, h = g[E + 25] / 255, w = g[E + 26] / 255, D = g[E + 27] / 255, y = (g[E + 28] - 128) / 128, l = (g[E + 29] - 128) / 128, d = (g[E + 30] - 128) / 128, u = (g[E + 31] - 128) / 128; - I( - C, - i, - e, + const i = new Float32Array(t.buffer); + for (let n = 0; n < s; ++n) { + const a = n * 32, r = n * 8, g = i[r + 0], I = i[r + 1], Q = i[r + 2], o = i[r + 3], E = i[r + 4], C = i[r + 5], c = t[a + 24] / 255, h = t[a + 25] / 255, l = t[a + 26] / 255, u = t[a + 27] / 255, w = (t[a + 28] - 128) / 128, d = (t[a + 29] - 128) / 128, p = (t[a + 30] - 128) / 128, y = (t[a + 31] - 128) / 128; + e( n, - s, + g, + I, + Q, o, - r, - l, + E, + C, d, - u, + p, y, - D, + w, + u, c, h, - w + l ); } } -const iB = { +const As = { 0: { bytesPerCenter: 12, bytesPerScale: 12, @@ -8460,380 +8327,355 @@ const iB = { sphericalHarmonicsOffsetBytes: 24, scaleRange: 32767 } -}, Io = { +}, PQ = { 0: 0, 1: 9, 2: 24, 3: 45 }; -function Bo(g, A, I, B) { - var r; - let E = 0; - const t = new DataView(g.buffer, E, 4096); - E += 4096; - const i = t.getUint8(0), e = t.getUint8(1); - if (i !== 0 || e < 1) +function ZQ(t, A, e, s) { + var C; + let a = 0; + const r = new DataView(t.buffer, a, 4096); + a += 4096; + const g = r.getUint8(0), I = r.getUint8(1); + if (g !== 0 || I < 1) throw new Error( - `Unsupported .ksplat version: ${i}.${e}` + `Unsupported .ksplat version: ${g}.${I}` ); - const n = t.getUint32(4, !0); - t.getUint32(16, !0); - const s = t.getUint16(20, !0); - if (s < 0 || s > 2) - throw new Error(`Invalid .ksplat compression level: ${s}`); - t.getFloat32(36, !0), t.getFloat32(40, !0); - let o = 4096 + n * 1024; - for (let c = 0; c < n; ++c) { - const h = new DataView(g.buffer, E, 1024); - E += 1024; - const w = h.getUint32(0, !0), D = h.getUint32(4, !0), y = h.getUint32(8, !0), l = h.getUint32(12, !0), d = h.getFloat32(16, !0), u = h.getUint16(20, !0), p = (h.getUint32(24, !0) || ((r = iB[s]) == null ? void 0 : r.scaleRange)) ?? 1, M = h.getUint32(36, !0) * 4, G = u * l + M, J = h.getUint16(40, !0), k = Io[J], { - bytesPerCenter: N, - bytesPerScale: Y, - bytesPerRotation: F, - bytesPerColor: f, - bytesPerSphericalHarmonicsComponent: U, + const Q = r.getUint32(4, !0); + r.getUint32(16, !0); + const o = r.getUint16(20, !0); + if (o < 0 || o > 2) + throw new Error(`Invalid .ksplat compression level: ${o}`); + r.getFloat32(36, !0), r.getFloat32(40, !0); + let E = 4096 + Q * 1024; + for (let c = 0; c < Q; ++c) { + const h = new DataView(t.buffer, a, 1024); + a += 1024; + const l = h.getUint32(0, !0), u = h.getUint32(4, !0), w = h.getUint32(8, !0), d = h.getUint32(12, !0), p = h.getFloat32(16, !0), y = h.getUint16(20, !0), m = (h.getUint32(24, !0) || ((C = As[o]) == null ? void 0 : C.scaleRange)) ?? 1, D = h.getUint32(36, !0) * 4, f = y * d + D, U = h.getUint16(40, !0), S = PQ[U], { + bytesPerCenter: M, + bytesPerScale: b, + bytesPerRotation: N, + bytesPerColor: R, + bytesPerSphericalHarmonicsComponent: G, scaleOffsetBytes: L, - rotationOffsetBytes: K, - colorOffsetBytes: Z, - sphericalHarmonicsOffsetBytes: QA - } = iB[s], z = N + Y + F + f + k * U, AA = z * D, $ = AA + G, P = J >= 1 ? new Float32Array(3 * 3) : void 0, j = J >= 2 ? new Float32Array(5 * 3) : void 0, V = J >= 3 ? new Float32Array(7 * 3) : void 0, x = d / 2 / p, uA = o + M, iA = o + G, b = new DataView( - g.buffer, - iA, + rotationOffsetBytes: T, + colorOffsetBytes: H, + sphericalHarmonicsOffsetBytes: iA + } = As[o], P = M + b + N + R + S * G, AA = P * u, j = AA + f, X = U >= 1 ? new Float32Array(3 * 3) : void 0, Z = U >= 2 ? new Float32Array(5 * 3) : void 0, _ = U >= 3 ? new Float32Array(7 * 3) : void 0, v = p / 2 / m, wA = E + D, gA = E + f, J = new DataView( + t.buffer, + gA, AA - ), nA = new Float32Array( - g.buffer, - uA, - l * 3 + ), QA = new Float32Array( + t.buffer, + wA, + d * 3 ); - for (let oA = 0; oA < w; ++oA) { - const H = oA * z, kA = Math.floor(oA / y), GA = s === 0 ? b.getFloat32(H + 0, !0) : (b.getUint16(H + 0, !0) - p) * x + nA[3 * kA + 0], UA = s === 0 ? b.getFloat32(H + 4, !0) : (b.getUint16(H + 2, !0) - p) * x + nA[3 * kA + 1], xA = s === 0 ? b.getFloat32(H + 8, !0) : (b.getUint16(H + 4, !0) - p) * x + nA[3 * kA + 2], LA = s === 0 ? b.getFloat32(H + L + 0, !0) : MA(b.getUint16(H + L + 0, !0)), lA = s === 0 ? b.getFloat32(H + L + 4, !0) : MA(b.getUint16(H + L + 2, !0)), vA = s === 0 ? b.getFloat32(H + L + 8, !0) : MA(b.getUint16(H + L + 4, !0)), oI = s === 0 ? b.getFloat32(H + K + 0, !0) : MA( - b.getUint16(H + K + 0, !0) - ), rI = s === 0 ? b.getFloat32(H + K + 4, !0) : MA( - b.getUint16(H + K + 2, !0) - ), cI = s === 0 ? b.getFloat32(H + K + 8, !0) : MA( - b.getUint16(H + K + 4, !0) - ), hI = s === 0 ? b.getFloat32(H + K + 12, !0) : MA( - b.getUint16(H + K + 6, !0) - ), wI = b.getUint8(H + Z + 0) / 255, DI = b.getUint8(H + Z + 1) / 255, lI = b.getUint8(H + Z + 2) / 255, yI = b.getUint8(H + Z + 3) / 255; - I( - oA, + for (let EA = 0; EA < l; ++EA) { + const Y = EA * P, MA = Math.floor(EA / w), pA = o === 0 ? J.getFloat32(Y + 0, !0) : (J.getUint16(Y + 0, !0) - m) * v + QA[3 * MA + 0], GA = o === 0 ? J.getFloat32(Y + 4, !0) : (J.getUint16(Y + 2, !0) - m) * v + QA[3 * MA + 1], bA = o === 0 ? J.getFloat32(Y + 8, !0) : (J.getUint16(Y + 4, !0) - m) * v + QA[3 * MA + 2], vA = o === 0 ? J.getFloat32(Y + L + 0, !0) : DA(J.getUint16(Y + L + 0, !0)), uA = o === 0 ? J.getFloat32(Y + L + 4, !0) : DA(J.getUint16(Y + L + 2, !0)), KA = o === 0 ? J.getFloat32(Y + L + 8, !0) : DA(J.getUint16(Y + L + 4, !0)), oe = o === 0 ? J.getFloat32(Y + T + 0, !0) : DA( + J.getUint16(Y + T + 0, !0) + ), Ie = o === 0 ? J.getFloat32(Y + T + 4, !0) : DA( + J.getUint16(Y + T + 2, !0) + ), Be = o === 0 ? J.getFloat32(Y + T + 8, !0) : DA( + J.getUint16(Y + T + 4, !0) + ), Qe = o === 0 ? J.getFloat32(Y + T + 12, !0) : DA( + J.getUint16(Y + T + 6, !0) + ), Ee = J.getUint8(Y + H + 0) / 255, Ce = J.getUint8(Y + H + 1) / 255, ce = J.getUint8(Y + H + 2) / 255, he = J.getUint8(Y + H + 3) / 255; + e( + EA, + pA, GA, - UA, - xA, - LA, - lA, + bA, vA, - rI, - cI, - hI, - oI, - yI, - wI, - DI, - lI - ), J >= 1 && P && (B == null || B(oA, P, j, V)); + uA, + KA, + Ie, + Be, + Qe, + oe, + he, + Ee, + Ce, + ce + ), U >= 1 && X && (s == null || s(EA, X, Z, _)); } - o += $; + E += j; } } -class Qo { +class OQ { constructor({ fileBytes: A }) { - this.fileBytes = A instanceof ArrayBuffer ? new Uint8Array(A) : A, this.reader = new mQ({ fileBytes: this.fileBytes }); - const I = new DataView(this.reader.read(16).buffer); - if (I.getUint32(0, !0) !== 1347635022) + this.fileBytes = A instanceof ArrayBuffer ? new Uint8Array(A) : A, this.reader = new fi({ fileBytes: this.fileBytes }); + const e = new DataView(this.reader.read(16).buffer); + if (e.getUint32(0, !0) !== 1347635022) throw new Error("Invalid SPZ file"); - if (this.version = I.getUint32(4, !0), this.version < 1 || this.version > 2) + if (this.version = e.getUint32(4, !0), this.version < 1 || this.version > 2) throw new Error(`Unsupported SPZ version: ${this.version}`); - this.numSplats = I.getUint32(8, !0), this.shDegree = I.getUint8(12), this.fractionalBits = I.getUint8(13), this.flags = I.getUint8(14), this.flagAntiAlias = (this.flags & 1) !== 0, this.reserved = I.getUint8(15), this.parsed = !1; + this.numSplats = e.getUint32(8, !0), this.shDegree = e.getUint8(12), this.fractionalBits = e.getUint8(13), this.flags = e.getUint8(14), this.flagAntiAlias = (this.flags & 1) !== 0, this.reserved = e.getUint8(15), this.parsed = !1; } - parseSplats(A, I, B, Q, C, E) { + parseSplats(A, e, s, i, n, a) { if (this.parsed) throw new Error("SPZ file already parsed"); if (this.parsed = !0, this.version === 1) { - const t = this.reader.read(this.numSplats * 3 * 2), i = new Uint16Array(t.buffer); - for (let e = 0; e < this.numSplats; e++) { - const n = e * 3, s = MA(i[n]), o = MA(i[n + 1]), r = MA(i[n + 2]); - A == null || A(e, s, o, r); + const r = this.reader.read(this.numSplats * 3 * 2), g = new Uint16Array(r.buffer); + for (let I = 0; I < this.numSplats; I++) { + const Q = I * 3, o = DA(g[Q]), E = DA(g[Q + 1]), C = DA(g[Q + 2]); + A == null || A(I, o, E, C); } } else if (this.version === 2) { - const t = 1 << this.fractionalBits, i = this.reader.read(this.numSplats * 3 * 3); - for (let e = 0; e < this.numSplats; e++) { - const n = e * 9, s = ((i[n + 2] << 24 | i[n + 1] << 16 | i[n] << 8) >> 8) / t, o = ((i[n + 5] << 24 | i[n + 4] << 16 | i[n + 3] << 8) >> 8) / t, r = ((i[n + 8] << 24 | i[n + 7] << 16 | i[n + 6] << 8) >> 8) / t; - A == null || A(e, s, o, r); + const r = 1 << this.fractionalBits, g = this.reader.read(this.numSplats * 3 * 3); + for (let I = 0; I < this.numSplats; I++) { + const Q = I * 9, o = ((g[Q + 2] << 24 | g[Q + 1] << 16 | g[Q] << 8) >> 8) / r, E = ((g[Q + 5] << 24 | g[Q + 4] << 16 | g[Q + 3] << 8) >> 8) / r, C = ((g[Q + 8] << 24 | g[Q + 7] << 16 | g[Q + 6] << 8) >> 8) / r; + A == null || A(I, o, E, C); } } else throw new Error("Unreachable"); { - const t = this.reader.read(this.numSplats); - for (let i = 0; i < this.numSplats; i++) - I == null || I(i, t[i] / 255); + const r = this.reader.read(this.numSplats); + for (let g = 0; g < this.numSplats; g++) + e == null || e(g, r[g] / 255); } { - const t = this.reader.read(this.numSplats * 3), i = mt / 0.15; - for (let e = 0; e < this.numSplats; e++) { - const n = e * 3, s = (t[n] / 255 - 0.5) * i + 0.5, o = (t[n + 1] / 255 - 0.5) * i + 0.5, r = (t[n + 2] / 255 - 0.5) * i + 0.5; - B == null || B(e, s, o, r); + const r = this.reader.read(this.numSplats * 3), g = mr / 0.15; + for (let I = 0; I < this.numSplats; I++) { + const Q = I * 3, o = (r[Q] / 255 - 0.5) * g + 0.5, E = (r[Q + 1] / 255 - 0.5) * g + 0.5, C = (r[Q + 2] / 255 - 0.5) * g + 0.5; + s == null || s(I, o, E, C); } } { - const t = this.reader.read(this.numSplats * 3); - for (let i = 0; i < this.numSplats; i++) { - const e = i * 3, n = Math.exp(t[e] / 16 - 10), s = Math.exp(t[e + 1] / 16 - 10), o = Math.exp(t[e + 2] / 16 - 10); - Q == null || Q(i, n, s, o); + const r = this.reader.read(this.numSplats * 3); + for (let g = 0; g < this.numSplats; g++) { + const I = g * 3, Q = Math.exp(r[I] / 16 - 10), o = Math.exp(r[I + 1] / 16 - 10), E = Math.exp(r[I + 2] / 16 - 10); + i == null || i(g, Q, o, E); } } { - const t = this.reader.read(this.numSplats * 3); - for (let i = 0; i < this.numSplats; i++) { - const e = i * 3, n = t[e] / 127.5 - 1, s = t[e + 1] / 127.5 - 1, o = t[e + 2] / 127.5 - 1, r = Math.sqrt( - Math.max(0, 1 - n * n - s * s - o * o) + const r = this.reader.read(this.numSplats * 3); + for (let g = 0; g < this.numSplats; g++) { + const I = g * 3, Q = r[I] / 127.5 - 1, o = r[I + 1] / 127.5 - 1, E = r[I + 2] / 127.5 - 1, C = Math.sqrt( + Math.max(0, 1 - Q * Q - o * o - E * E) ); - C == null || C(i, n, s, o, r); + n == null || n(g, Q, o, E, C); } } - if (E && this.shDegree >= 1) { - const t = new Float32Array(9), i = this.shDegree >= 2 ? new Float32Array(5 * 3) : void 0, e = this.shDegree >= 3 ? new Float32Array(7 * 3) : void 0, n = this.reader.read( - this.numSplats * Jt[this.shDegree] * 3 + if (a && this.shDegree >= 1) { + const r = new Float32Array(9), g = this.shDegree >= 2 ? new Float32Array(5 * 3) : void 0, I = this.shDegree >= 3 ? new Float32Array(7 * 3) : void 0, Q = this.reader.read( + this.numSplats * fr[this.shDegree] * 3 ); - let s = 0; - for (let o = 0; o < this.numSplats; o++) { - for (let r = 0; r < 9; ++r) - t[r] = (n[s + r] - 128) / 128; - if (s += 9, i) { - for (let r = 0; r < 15; ++r) - i[r] = (n[s + r] - 128) / 128; - s += 15; + let o = 0; + for (let E = 0; E < this.numSplats; E++) { + for (let C = 0; C < 9; ++C) + r[C] = (Q[o + C] - 128) / 128; + if (o += 9, g) { + for (let C = 0; C < 15; ++C) + g[C] = (Q[o + C] - 128) / 128; + o += 15; } - if (e) { - for (let r = 0; r < 21; ++r) - e[r] = (n[s + r] - 128) / 128; - s += 21; + if (I) { + for (let C = 0; C < 21; ++C) + I[C] = (Q[o + C] - 128) / 128; + o += 21; } - E == null || E(o, t, i, e); + a == null || a(E, r, g, I); } } } } -const Jt = { 1: 3, 2: 8, 3: 15 }, mt = 0.28209479177387814, Co = 1347635022, Eo = 2, to = 1; -class jA { +const fr = { 1: 3, 2: 8, 3: 15 }, mr = 0.28209479177387814, WQ = 1347635022, XQ = 2, $Q = 1; +class ZA { constructor({ numSplats: A, - shDegree: I, - fractionalBits: B = 12, - flagAntiAlias: Q = !0 + shDegree: e, + fractionalBits: s = 12, + flagAntiAlias: i = !0 }) { this.clippedCount = 0; - const C = 19 + (I >= 1 ? 9 : 0) + (I >= 2 ? 15 : 0) + (I >= 3 ? 21 : 0), E = 16 + A * C; - this.buffer = new ArrayBuffer(E), this.view = new DataView(this.buffer), this.view.setUint32(0, Co, !0), this.view.setUint32(4, Eo, !0), this.view.setUint32(8, A, !0), this.view.setUint8(12, I), this.view.setUint8(13, B), this.view.setUint8(14, Q ? to : 0), this.view.setUint8(15, 0), this.numSplats = A, this.shDegree = I, this.fractionalBits = B, this.fraction = 1 << B, this.flagAntiAlias = Q; + const n = 19 + (e >= 1 ? 9 : 0) + (e >= 2 ? 15 : 0) + (e >= 3 ? 21 : 0), a = 16 + A * n; + this.buffer = new ArrayBuffer(a), this.view = new DataView(this.buffer), this.view.setUint32(0, WQ, !0), this.view.setUint32(4, XQ, !0), this.view.setUint32(8, A, !0), this.view.setUint8(12, e), this.view.setUint8(13, s), this.view.setUint8(14, i ? $Q : 0), this.view.setUint8(15, 0), this.numSplats = A, this.shDegree = e, this.fractionalBits = s, this.fraction = 1 << s, this.flagAntiAlias = i; } - setCenter(A, I, B, Q) { - const C = Math.round(I * this.fraction), E = Math.max(-8388607, Math.min(8388607, C)), t = Math.round(B * this.fraction), i = Math.max(-8388607, Math.min(8388607, t)), e = Math.round(Q * this.fraction), n = Math.max(-8388607, Math.min(8388607, e)); - (C !== E || t !== i || e !== n) && (this.clippedCount += 1); - const r = 16 + A * 9; - this.view.setUint8(r, E & 255), this.view.setUint8(r + 1, E >> 8 & 255), this.view.setUint8(r + 2, E >> 16 & 255), this.view.setUint8(r + 3, i & 255), this.view.setUint8(r + 4, i >> 8 & 255), this.view.setUint8(r + 5, i >> 16 & 255), this.view.setUint8(r + 6, n & 255), this.view.setUint8(r + 7, n >> 8 & 255), this.view.setUint8(r + 8, n >> 16 & 255); + setCenter(A, e, s, i) { + const n = Math.round(e * this.fraction), a = Math.max(-8388607, Math.min(8388607, n)), r = Math.round(s * this.fraction), g = Math.max(-8388607, Math.min(8388607, r)), I = Math.round(i * this.fraction), Q = Math.max(-8388607, Math.min(8388607, I)); + (n !== a || r !== g || I !== Q) && (this.clippedCount += 1); + const C = 16 + A * 9; + this.view.setUint8(C, a & 255), this.view.setUint8(C + 1, a >> 8 & 255), this.view.setUint8(C + 2, a >> 16 & 255), this.view.setUint8(C + 3, g & 255), this.view.setUint8(C + 4, g >> 8 & 255), this.view.setUint8(C + 5, g >> 16 & 255), this.view.setUint8(C + 6, Q & 255), this.view.setUint8(C + 7, Q >> 8 & 255), this.view.setUint8(C + 8, Q >> 16 & 255); } - setAlpha(A, I) { - const B = 16 + this.numSplats * 9 + A; + setAlpha(A, e) { + const s = 16 + this.numSplats * 9 + A; this.view.setUint8( - B, - Math.max(0, Math.min(255, Math.round(I * 255))) + s, + Math.max(0, Math.min(255, Math.round(e * 255))) ); } static scaleRgb(A) { - const I = ((A - 0.5) / (mt / 0.15) + 0.5) * 255; - return Math.max(0, Math.min(255, Math.round(I))); + const e = ((A - 0.5) / (mr / 0.15) + 0.5) * 255; + return Math.max(0, Math.min(255, Math.round(e))); } - setRgb(A, I, B, Q) { - const C = 16 + this.numSplats * 10 + A * 3; - this.view.setUint8(C, jA.scaleRgb(I)), this.view.setUint8(C + 1, jA.scaleRgb(B)), this.view.setUint8(C + 2, jA.scaleRgb(Q)); + setRgb(A, e, s, i) { + const n = 16 + this.numSplats * 10 + A * 3; + this.view.setUint8(n, ZA.scaleRgb(e)), this.view.setUint8(n + 1, ZA.scaleRgb(s)), this.view.setUint8(n + 2, ZA.scaleRgb(i)); } - setScale(A, I, B, Q) { - const C = 16 + this.numSplats * 13 + A * 3; + setScale(A, e, s, i) { + const n = 16 + this.numSplats * 13 + A * 3; this.view.setUint8( - C, - Math.max(0, Math.min(255, Math.round((Math.log(I) + 10) * 16))) + n, + Math.max(0, Math.min(255, Math.round((Math.log(e) + 10) * 16))) ), this.view.setUint8( - C + 1, - Math.max(0, Math.min(255, Math.round((Math.log(B) + 10) * 16))) + n + 1, + Math.max(0, Math.min(255, Math.round((Math.log(s) + 10) * 16))) ), this.view.setUint8( - C + 2, - Math.max(0, Math.min(255, Math.round((Math.log(Q) + 10) * 16))) + n + 2, + Math.max(0, Math.min(255, Math.round((Math.log(i) + 10) * 16))) ); } - setQuat(A, I, B, Q, C) { - const E = 16 + this.numSplats * 16 + A * 3, t = C < 0; + setQuat(A, e, s, i, n) { + const a = 16 + this.numSplats * 16 + A * 3, r = n < 0; this.view.setUint8( - E, + a, Math.max( 0, - Math.min(255, Math.round(((t ? -I : I) + 1) * 127.5)) + Math.min(255, Math.round(((r ? -e : e) + 1) * 127.5)) ) ), this.view.setUint8( - E + 1, + a + 1, Math.max( 0, - Math.min(255, Math.round(((t ? -B : B) + 1) * 127.5)) + Math.min(255, Math.round(((r ? -s : s) + 1) * 127.5)) ) ), this.view.setUint8( - E + 2, + a + 2, Math.max( 0, - Math.min(255, Math.round(((t ? -Q : Q) + 1) * 127.5)) + Math.min(255, Math.round(((r ? -i : i) + 1) * 127.5)) ) ); } - static quantizeSh(A, I) { - const B = Math.round(A * 128) + 128, Q = 1 << 8 - I, C = Math.floor((B + Q / 2) / Q) * Q; - return Math.max(0, Math.min(255, C)); + static quantizeSh(A, e) { + const s = Math.round(A * 128) + 128, i = 1 << 8 - e, n = Math.floor((s + i / 2) / i) * i; + return Math.max(0, Math.min(255, n)); } - setSh(A, I, B, Q) { - const C = Jt[this.shDegree] || 0, E = 16 + this.numSplats * 19 + A * C * 3; - for (let t = 0; t < 9; ++t) - this.view.setUint8(E + t, jA.quantizeSh(I[t], 5)); - if (B) { - const t = E + 9; - for (let i = 0; i < 15; ++i) - this.view.setUint8(t + i, jA.quantizeSh(B[i], 4)); - if (Q) { - const i = t + 15; - for (let e = 0; e < 21; ++e) - this.view.setUint8(i + e, jA.quantizeSh(Q[e], 4)); + setSh(A, e, s, i) { + const n = fr[this.shDegree] || 0, a = 16 + this.numSplats * 19 + A * n * 3; + for (let r = 0; r < 9; ++r) + this.view.setUint8(a + r, ZA.quantizeSh(e[r], 5)); + if (s) { + const r = a + 9; + for (let g = 0; g < 15; ++g) + this.view.setUint8(r + g, ZA.quantizeSh(s[g], 4)); + if (i) { + const g = r + 15; + for (let I = 0; I < 21; ++I) + this.view.setUint8(g + I, ZA.quantizeSh(i[I], 4)); } } } async finalize() { - const A = new Uint8Array(this.buffer), B = new ReadableStream({ - async start(E) { - E.enqueue(A), E.close(); + const A = new Uint8Array(this.buffer), s = new ReadableStream({ + async start(a) { + a.enqueue(A), a.close(); } - }).pipeThrough(new CompressionStream("gzip")), C = await new Response(B).arrayBuffer(); + }).pipeThrough(new CompressionStream("gzip")), n = await new Response(s).arrayBuffer(); return console.log( "Compressed", A.length, "bytes to", - C.byteLength, + n.byteLength, "bytes" - ), new Uint8Array(C); + ), new Uint8Array(n); } } -async function qo(g) { - var n, s, o; - const A = new Wn(), { - inputs: I, - clipXyz: B, - maxSh: Q, - fractionalBits: C = 12, - opacityThreshold: E - } = g; - for (const r of I) { - let c = function(M) { - return M.multiplyScalar(l), M.applyQuaternion(d), M.add(u), M; - }, h = function(M) { - return M.multiplyScalar(l), M; - }, w = function(M) { - return M.premultiply(d), M; - }, D = function(M) { - return !p || p.containsPoint(M); - }, y = function(M) { - return E !== void 0 ? M >= E : !0; +async function UE(t) { + var Q, o, E; + const A = new bQ(), { + inputs: e, + clipXyz: s, + maxSh: i, + fractionalBits: n = 12, + opacityThreshold: a + } = t; + for (const C of e) { + let c = function(D) { + return D.multiplyScalar(d), D.applyQuaternion(p), D.add(y), D; + }, h = function(D) { + return D.multiplyScalar(d), D; + }, l = function(D) { + return D.premultiply(p), D; + }, u = function(D) { + return !m || m.containsPoint(D); + }, w = function(D) { + return a !== void 0 ? D >= a : !0; }; - const l = ((n = r.transform) == null ? void 0 : n.scale) ?? 1, d = new a.Quaternion().fromArray( - ((s = r.transform) == null ? void 0 : s.quaternion) ?? [0, 0, 0, 1] - ), u = new a.Vector3().fromArray( - ((o = r.transform) == null ? void 0 : o.translate) ?? [0, 0, 0] - ), p = B ? new a.Box3( - new a.Vector3().fromArray(B.min), - new a.Vector3().fromArray(B.max) + const d = ((Q = C.transform) == null ? void 0 : Q.scale) ?? 1, p = new B.Quaternion().fromArray( + ((o = C.transform) == null ? void 0 : o.quaternion) ?? [0, 0, 0, 1] + ), y = new B.Vector3().fromArray( + ((E = C.transform) == null ? void 0 : E.translate) ?? [0, 0, 0] + ), m = s ? new B.Box3( + new B.Vector3().fromArray(s.min), + new B.Vector3().fromArray(s.max) ) : void 0; - let m = r.fileType; - switch (m || (m = Nt(r.fileBytes), !m && r.pathOrUrl && (m = pt(r.pathOrUrl))), m) { - case rg.WLG0: { - await KI(); - const M = Wt( - r.fileBytes, - X, - WA - ); - for (let G = 0; G < M.numSplats; ++G) { - let { center: J, scales: k, quaternion: N, opacity: Y, color: F } = AI( - M.packedSplats, - G - ); - if (J = c(J), D(J) && y(Y)) { - const f = A.pushSplat(); - A.setCenter(f, J.x, J.y, J.z), k = h(k), A.setScale(f, k.x, k.y, k.z), N = w(N), A.setQuaternion( - f, - N.x, - N.y, - N.z, - N.w - ), A.setOpacity(f, Y), A.setColor(f, F.r, F.g, F.b); - } - } - break; - } - case rg.PLY: { - const M = new QI({ fileBytes: r.fileBytes }); - await M.parseHeader(); - let G = null; - M.parseSplats( - (J, k, N, Y, F, f, U, L, K, Z, QA, z, AA, $, P) => { - const j = c(new a.Vector3(k, N, Y)); - if (D(j) && y(z)) { - G = A.pushSplat(), A.setCenter(G, j.x, j.y, j.z); - const V = h( - new a.Vector3(F, f, U) + let F = C.fileType; + switch (F || (F = dr(C.fileBytes), !F && C.pathOrUrl && (F = wr(C.pathOrUrl))), F) { + case ft.PLY: { + const D = new Ae({ fileBytes: C.fileBytes }); + await D.parseHeader(); + let f = null; + D.parseSplats( + (U, S, M, b, N, R, G, L, T, H, iA, P, AA, j, X) => { + const Z = c(new B.Vector3(S, M, b)); + if (u(Z) && w(P)) { + f = A.pushSplat(), A.setCenter(f, Z.x, Z.y, Z.z); + const _ = h( + new B.Vector3(N, R, G) ); - A.setScale(G, V.x, V.y, V.z); - const x = w( - new a.Quaternion(L, K, Z, QA) + A.setScale(f, _.x, _.y, _.z); + const v = l( + new B.Quaternion(L, T, H, iA) ); A.setQuaternion( - G, - x.x, - x.y, - x.z, - x.w - ), A.setOpacity(G, z), A.setColor(G, AA, $, P); + f, + v.x, + v.y, + v.z, + v.w + ), A.setOpacity(f, P), A.setColor(f, AA, j, X); } else - G = null; + f = null; }, - (J, k, N, Y) => { - k && G !== null && A.setSh1(G, k), N && G !== null && A.setSh2(G, N), Y && G !== null && A.setSh3(G, Y); + (U, S, M, b) => { + S && f !== null && A.setSh1(f, S), M && f !== null && A.setSh2(f, M), b && f !== null && A.setSh3(f, b); } ); break; } - case rg.SPZ: { - const M = new Qo({ fileBytes: r.fileBytes }), G = new Int32Array(M.numSplats); - G.fill(-1); - const J = new Float32Array(M.numSplats * 3), k = new a.Vector3(); - M.parseSplats( - (N, Y, F, f) => { - const U = c(new a.Vector3(Y, F, f)); - J[N * 3] = U.x, J[N * 3 + 1] = U.y, J[N * 3 + 2] = U.z; + case ft.SPZ: { + const D = new OQ({ fileBytes: C.fileBytes }), f = new Int32Array(D.numSplats); + f.fill(-1); + const U = new Float32Array(D.numSplats * 3), S = new B.Vector3(); + D.parseSplats( + (M, b, N, R) => { + const G = c(new B.Vector3(b, N, R)); + U[M * 3] = G.x, U[M * 3 + 1] = G.y, U[M * 3 + 2] = G.z; }, - (N, Y) => { - k.fromArray(J, N * 3), D(k) && y(Y) && (G[N] = A.pushSplat(), A.setCenter(G[N], k.x, k.y, k.z), A.setOpacity(G[N], Y)); + (M, b) => { + S.fromArray(U, M * 3), u(S) && w(b) && (f[M] = A.pushSplat(), A.setCenter(f[M], S.x, S.y, S.z), A.setOpacity(f[M], b)); }, - (N, Y, F, f) => { - G[N] >= 0 && A.setColor(G[N], Y, F, f); + (M, b, N, R) => { + f[M] >= 0 && A.setColor(f[M], b, N, R); }, - (N, Y, F, f) => { - if (G[N] >= 0) { - const U = h( - new a.Vector3(Y, F, f) + (M, b, N, R) => { + if (f[M] >= 0) { + const G = h( + new B.Vector3(b, N, R) ); - A.setScale(G[N], U.x, U.y, U.z); + A.setScale(f[M], G.x, G.y, G.z); } }, - (N, Y, F, f, U) => { - if (G[N] >= 0) { - const L = w( - new a.Quaternion(Y, F, f, U) + (M, b, N, R, G) => { + if (f[M] >= 0) { + const L = l( + new B.Quaternion(b, N, R, G) ); A.setQuaternion( - G[N], + f[M], L.x, L.y, L.z, @@ -8841,137 +8683,137 @@ async function qo(g) { ); } }, - (N, Y, F, f) => { - G[N] >= 0 && (A.setSh1(G[N], Y), F && A.setSh2(G[N], F), f && A.setSh3(G[N], f)); + (M, b, N, R) => { + f[M] >= 0 && (A.setSh1(f[M], b), N && A.setSh2(f[M], N), R && A.setSh3(f[M], R)); } ); break; } - case rg.SPLAT: - go( - r.fileBytes, - (M) => { + case ft.SPLAT: + VQ( + C.fileBytes, + (D) => { }, - (M, G, J, k, N, Y, F, f, U, L, K, Z, QA, z, AA) => { - const $ = c(new a.Vector3(G, J, k)); - if (D($) && y(Z)) { - const P = A.pushSplat(); - A.setCenter(P, $.x, $.y, $.z); - const j = h( - new a.Vector3(N, Y, F) + (D, f, U, S, M, b, N, R, G, L, T, H, iA, P, AA) => { + const j = c(new B.Vector3(f, U, S)); + if (u(j) && w(H)) { + const X = A.pushSplat(); + A.setCenter(X, j.x, j.y, j.z); + const Z = h( + new B.Vector3(M, b, N) ); - A.setScale(P, j.x, j.y, j.z); - const V = w( - new a.Quaternion(f, U, L, K) + A.setScale(X, Z.x, Z.y, Z.z); + const _ = l( + new B.Quaternion(R, G, L, T) ); A.setQuaternion( - P, - V.x, - V.y, - V.z, - V.w - ), A.setOpacity(P, Z), A.setColor(P, QA, z, AA); + X, + _.x, + _.y, + _.z, + _.w + ), A.setOpacity(X, H), A.setColor(X, iA, P, AA); } } ); break; - case rg.KSPLAT: { - let M = null; - Bo( - r.fileBytes, - (G) => { + case ft.KSPLAT: { + let D = null; + ZQ( + C.fileBytes, + (f) => { }, - (G, J, k, N, Y, F, f, U, L, K, Z, QA, z, AA, $) => { - const P = c(new a.Vector3(J, k, N)); - if (D(P) && y(QA)) { - M = A.pushSplat(), A.setCenter(M, P.x, P.y, P.z); - const j = h( - new a.Vector3(Y, F, f) + (f, U, S, M, b, N, R, G, L, T, H, iA, P, AA, j) => { + const X = c(new B.Vector3(U, S, M)); + if (u(X) && w(iA)) { + D = A.pushSplat(), A.setCenter(D, X.x, X.y, X.z); + const Z = h( + new B.Vector3(b, N, R) ); - A.setScale(M, j.x, j.y, j.z); - const V = w( - new a.Quaternion(U, L, K, Z) + A.setScale(D, Z.x, Z.y, Z.z); + const _ = l( + new B.Quaternion(G, L, T, H) ); A.setQuaternion( - M, - V.x, - V.y, - V.z, - V.w - ), A.setOpacity(M, QA), A.setColor(M, z, AA, $); + D, + _.x, + _.y, + _.z, + _.w + ), A.setOpacity(D, iA), A.setColor(D, P, AA, j); } else - M = null; + D = null; }, - (G, J, k, N) => { - M !== null && (A.setSh1(M, J), k && A.setSh2(M, k), N && A.setSh3(M, N)); + (f, U, S, M) => { + D !== null && (A.setSh1(D, U), S && A.setSh2(D, S), M && A.setSh3(D, M)); } ); break; } default: - throw new Error(`transcodeSpz not implemented for ${m}`); + throw new Error(`transcodeSpz not implemented for ${F}`); } } - const t = Math.min( - Q ?? 3, + const r = Math.min( + i ?? 3, A.sh3 ? 3 : A.sh2 ? 2 : A.sh1 ? 1 : 0 - ), i = new jA({ + ), g = new ZA({ numSplats: A.numSplats, - shDegree: t, - fractionalBits: C, + shDegree: r, + fractionalBits: n, flagAntiAlias: !0 }); - for (let r = 0; r < A.numSplats; ++r) { - const c = r * 3, h = r * 4; - i.setCenter( - r, + for (let C = 0; C < A.numSplats; ++C) { + const c = C * 3, h = C * 4; + g.setCenter( + C, A.centers[c], A.centers[c + 1], A.centers[c + 2] - ), i.setScale( - r, + ), g.setScale( + C, A.scales[c], A.scales[c + 1], A.scales[c + 2] - ), i.setQuat( - r, + ), g.setQuat( + C, A.quaternions[h], A.quaternions[h + 1], A.quaternions[h + 2], A.quaternions[h + 3] - ), i.setAlpha(r, A.opacities[r]), i.setRgb( - r, + ), g.setAlpha(C, A.opacities[C]), g.setRgb( + C, A.colors[c], A.colors[c + 1], A.colors[c + 2] - ), A.sh1 && t >= 1 && i.setSh( - r, - A.sh1.slice(r * 9, (r + 1) * 9), - t >= 2 && A.sh2 ? A.sh2.slice(r * 15, (r + 1) * 15) : void 0, - t >= 3 && A.sh3 ? A.sh3.slice(r * 21, (r + 1) * 21) : void 0 + ), A.sh1 && r >= 1 && g.setSh( + C, + A.sh1.slice(C * 9, (C + 1) * 9), + r >= 2 && A.sh2 ? A.sh2.slice(C * 15, (C + 1) * 15) : void 0, + r >= 3 && A.sh3 ? A.sh3.slice(C * 21, (C + 1) * 21) : void 0 ); } - return { fileBytes: await i.finalize(), clippedCount: i.clippedCount }; + return { fileBytes: await g.finalize(), clippedCount: g.clippedCount }; } -class vo { +class RE { constructor(A) { this.mesh = A.mesh, this.numSplats = A.numSplats ?? this.mesh.numSplats; - const { width: I, height: B, depth: Q, maxSplats: C } = dA(this.numSplats); - this.skinData = new Uint16Array(C * 4), this.skinTexture = new a.DataArrayTexture( + const { width: e, height: s, depth: i, maxSplats: n } = yA(this.numSplats); + this.skinData = new Uint16Array(n * 4), this.skinTexture = new B.DataArrayTexture( this.skinData, - I, - B, - Q - ), this.skinTexture.format = a.RGBAIntegerFormat, this.skinTexture.type = a.UnsignedShortType, this.skinTexture.internalFormat = "RGBA16UI", this.skinTexture.needsUpdate = !0, this.numBones = A.numBones ?? 256, this.boneData = new Float32Array(this.numBones * 16), this.boneTexture = new a.DataTexture( + e, + s, + i + ), this.skinTexture.format = B.RGBAIntegerFormat, this.skinTexture.type = B.UnsignedShortType, this.skinTexture.internalFormat = "RGBA16UI", this.skinTexture.needsUpdate = !0, this.numBones = A.numBones ?? 256, this.boneData = new Float32Array(this.numBones * 16), this.boneTexture = new B.DataTexture( this.boneData, 4, this.numBones, - a.RGBAFormat, - a.FloatType - ), this.boneTexture.internalFormat = "RGBA32F", this.boneTexture.needsUpdate = !0, this.uniform = new S({ + B.RGBAFormat, + B.FloatType + ), this.boneTexture.internalFormat = "RGBA32F", this.boneTexture.needsUpdate = !0, this.uniform = new k({ key: "skinning", - type: ft, - globals: () => [St], + type: Mr, + globals: () => [xr], value: { numSplats: this.numSplats, numBones: this.numBones, @@ -8982,39 +8824,39 @@ class vo { } // Apply the skeletal animation to a Gsplat in a dyno program. modify(A) { - return so(A, this.uniform); + return AE(A, this.uniform); } // Set the "rest" pose for a bone with position and quaternion orientation. - setRestQuatPos(A, I, B) { - const Q = A * 16; - this.boneData[Q + 0] = I.x, this.boneData[Q + 1] = I.y, this.boneData[Q + 2] = I.z, this.boneData[Q + 3] = I.w, this.boneData[Q + 4] = B.x, this.boneData[Q + 5] = B.y, this.boneData[Q + 6] = B.z, this.boneData[Q + 7] = 0, this.boneData[Q + 8] = 0, this.boneData[Q + 9] = 0, this.boneData[Q + 10] = 0, this.boneData[Q + 11] = 1, this.boneData[Q + 12] = 0, this.boneData[Q + 13] = 0, this.boneData[Q + 14] = 0, this.boneData[Q + 15] = 0; + setRestQuatPos(A, e, s) { + const i = A * 16; + this.boneData[i + 0] = e.x, this.boneData[i + 1] = e.y, this.boneData[i + 2] = e.z, this.boneData[i + 3] = e.w, this.boneData[i + 4] = s.x, this.boneData[i + 5] = s.y, this.boneData[i + 6] = s.z, this.boneData[i + 7] = 0, this.boneData[i + 8] = 0, this.boneData[i + 9] = 0, this.boneData[i + 10] = 0, this.boneData[i + 11] = 1, this.boneData[i + 12] = 0, this.boneData[i + 13] = 0, this.boneData[i + 14] = 0, this.boneData[i + 15] = 0; } // Set the "current" position and orientation of a bone. - setBoneQuatPos(A, I, B) { - const Q = A * 16, C = new a.Quaternion( - this.boneData[Q + 0], - this.boneData[Q + 1], - this.boneData[Q + 2], - this.boneData[Q + 3] - ), E = new a.Vector3( - this.boneData[Q + 4], - this.boneData[Q + 5], - this.boneData[Q + 6] - ), t = C.clone().invert(), i = B.clone().sub(E); - i.applyQuaternion(t), t.multiply(I); - const e = new a.Quaternion( - i.x, - i.y, - i.z, + setBoneQuatPos(A, e, s) { + const i = A * 16, n = new B.Quaternion( + this.boneData[i + 0], + this.boneData[i + 1], + this.boneData[i + 2], + this.boneData[i + 3] + ), a = new B.Vector3( + this.boneData[i + 4], + this.boneData[i + 5], + this.boneData[i + 6] + ), r = n.clone().invert(), g = s.clone().sub(a); + g.applyQuaternion(r), r.multiply(e); + const I = new B.Quaternion( + g.x, + g.y, + g.z, 0 - ).multiply(C); - this.boneData[Q + 8] = t.x, this.boneData[Q + 9] = t.y, this.boneData[Q + 10] = t.z, this.boneData[Q + 11] = t.w, this.boneData[Q + 12] = 0.5 * e.x, this.boneData[Q + 13] = 0.5 * e.y, this.boneData[Q + 14] = 0.5 * e.z, this.boneData[Q + 15] = 0.5 * e.w; + ).multiply(n); + this.boneData[i + 8] = r.x, this.boneData[i + 9] = r.y, this.boneData[i + 10] = r.z, this.boneData[i + 11] = r.w, this.boneData[i + 12] = 0.5 * I.x, this.boneData[i + 13] = 0.5 * I.y, this.boneData[i + 14] = 0.5 * I.z, this.boneData[i + 15] = 0.5 * I.w; } // Set up to 4 bone indices and weights for a Gsplat. For fewer than 4 bones, // you can set the remaining weights to 0 (and index=0). - setSplatBones(A, I, B) { - const Q = A * 4; - this.skinData[Q + 0] = Math.min(255, Math.max(0, Math.round(B.x * 255))) + (I.x << 8), this.skinData[Q + 1] = Math.min(255, Math.max(0, Math.round(B.y * 255))) + (I.y << 8), this.skinData[Q + 2] = Math.min(255, Math.max(0, Math.round(B.z * 255))) + (I.z << 8), this.skinData[Q + 3] = Math.min(255, Math.max(0, Math.round(B.w * 255))) + (I.w << 8); + setSplatBones(A, e, s) { + const i = A * 4; + this.skinData[i + 0] = Math.min(255, Math.max(0, Math.round(s.x * 255))) + (e.x << 8), this.skinData[i + 1] = Math.min(255, Math.max(0, Math.round(s.y * 255))) + (e.y << 8), this.skinData[i + 2] = Math.min(255, Math.max(0, Math.round(s.z * 255))) + (e.z << 8), this.skinData[i + 3] = Math.min(255, Math.max(0, Math.round(s.w * 255))) + (e.w << 8); } // Call this to indicate that the bones have changed and the Gsplats need to be // re-generated with updated skinning. @@ -9022,14 +8864,14 @@ class vo { this.boneTexture.needsUpdate = !0, this.mesh.needsUpdate = !0; } } -const ft = { type: "GsplatSkinning" }, St = aA(` +const Mr = { type: "GsplatSkinning" }, xr = BA(` struct GsplatSkinning { int numSplats; int numBones; usampler2DArray skinTexture; sampler2D boneTexture; }; -`), io = aA(` +`), jQ = BA(` void applyGsplatSkinning( int numSplats, int numBones, usampler2DArray skinTexture, sampler2D boneTexture, @@ -9089,531 +8931,531 @@ const ft = { type: "GsplatSkinning" }, St = aA(` quaternion = quatQuat(quat, quaternion); } `); -function so(g, A) { - return new T({ - inTypes: { gsplat: BA, skinning: ft }, - outTypes: { gsplat: BA }, - globals: () => [St, io], - inputs: { gsplat: g, skinning: A }, - statements: ({ inputs: B, outputs: Q }) => { - const { skinning: C } = B, { gsplat: E } = Q; - return mA(` - ${E} = ${B.gsplat}; - if (isGsplatActive(${E}.flags)) { +function AE(t, A) { + return new V({ + inTypes: { gsplat: sA, skinning: Mr }, + outTypes: { gsplat: sA }, + globals: () => [xr, jQ], + inputs: { gsplat: t, skinning: A }, + statements: ({ inputs: s, outputs: i }) => { + const { skinning: n } = s, { gsplat: a } = i; + return NA(` + ${a} = ${s.gsplat}; + if (isGsplatActive(${a}.flags)) { applyGsplatSkinning( - ${C}.numSplats, ${C}.numBones, - ${C}.skinTexture, ${C}.boneTexture, - ${E}.index, ${E}.center, ${E}.quaternion + ${n}.numSplats, ${n}.numBones, + ${n}.skinTexture, ${n}.boneTexture, + ${a}.index, ${a}.center, ${a}.quaternion ); } `); } }).outputs.gsplat; } -function Wo({ +function GE({ // PackedSplats object to add splats to - splats: g, + splats: t, // min and max box extents of the grid extents: A, // step size along each grid axis - stepSize: I = 1, + stepSize: e = 1, // spherical radius of each Gsplat - pointRadius: B = 0.01, + pointRadius: s = 0.01, // relative size of the "shadow copy" of each Gsplat placed behind it - pointShadowScale: Q = 2, + pointShadowScale: i = 2, // Gsplat opacity - opacity: C = 1, + opacity: n = 1, // Gsplat color (THREE.Color) or function to set color for position: // ((THREE.Color, THREE.Vector3) => void) (default: RGB-modulated grid) - color: E + color: a }) { - const i = new a.Vector3(), e = new a.Vector3(), n = new a.Quaternion(0, 0, 0, 1); - E == null && (E = (o, r) => o.set( - 0.55 + 0.45 * Math.cos(r.x * 1), - 0.55 + 0.45 * Math.cos(r.y * 1), - 0.55 + 0.45 * Math.cos(r.z * 1) + const g = new B.Vector3(), I = new B.Vector3(), Q = new B.Quaternion(0, 0, 0, 1); + a == null && (a = (E, C) => E.set( + 0.55 + 0.45 * Math.cos(C.x * 1), + 0.55 + 0.45 * Math.cos(C.y * 1), + 0.55 + 0.45 * Math.cos(C.z * 1) )); - const s = new a.Color(); - for (let o = A.min.z; o < A.max.z + 1e-6; o += I) - for (let r = A.min.y; r < A.max.y + 1e-6; r += I) - for (let c = A.min.x; c < A.max.x + 1e-6; c += I) { - i.set(c, r, o); + const o = new B.Color(); + for (let E = A.min.z; E < A.max.z + 1e-6; E += e) + for (let C = A.min.y; C < A.max.y + 1e-6; C += e) + for (let c = A.min.x; c < A.max.x + 1e-6; c += e) { + g.set(c, C, E); for (let h = 0; h < 2; ++h) - e.setScalar(B * (h ? 1 : Q)), h ? typeof E == "function" ? E(s, i) : s.copy(E) : s.setScalar(0), g.pushSplat(i, e, n, C, s); + I.setScalar(s * (h ? 1 : i)), h ? typeof a == "function" ? a(o, g) : o.copy(a) : o.setScalar(0), t.pushSplat(g, I, Q, n, o); } } -function Vo({ +function bE({ // PackedSplats object to add splats to - splats: g, + splats: t, // scale (Gsplat scale along axis) scale: A = 0.25, // radius of the axes (Gsplat scale orthogonal to axis) - axisRadius: I = 75e-4, + axisRadius: e = 75e-4, // relative size of the "shadow copy" of each Gsplat placed behind it - axisShadowScale: B = 2, + axisShadowScale: s = 2, // origins of the axes (default single axis at origin) - origins: Q = [new a.Vector3()] + origins: i = [new B.Vector3()] }) { - const C = new a.Vector3(), E = new a.Vector3(), t = new a.Quaternion(0, 0, 0, 1), i = new a.Color(), e = 1; - for (const n of Q) - for (let s = 0; s < 3; ++s) { - C.set( - n.x + (s === 0 ? A : 0), - n.y + (s === 1 ? A : 0), - n.z + (s === 2 ? A : 0) + const n = new B.Vector3(), a = new B.Vector3(), r = new B.Quaternion(0, 0, 0, 1), g = new B.Color(), I = 1; + for (const Q of i) + for (let o = 0; o < 3; ++o) { + n.set( + Q.x + (o === 0 ? A : 0), + Q.y + (o === 1 ? A : 0), + Q.z + (o === 2 ? A : 0) ); - for (let o = 0; o < 2; ++o) - E.set( - (s === 0 ? A : I) * (o ? 1 : B), - (s === 1 ? A : I) * (o ? 1 : B), - (s === 2 ? A : I) * (o ? 1 : B) - ), i.setRGB( - o === 0 ? 0 : s === 0 ? 1 : 0, - o === 0 ? 0 : s === 1 ? 1 : 0, - o === 0 ? 0 : s === 2 ? 1 : 0 - ), g.pushSplat(C, E, t, e, i); + for (let E = 0; E < 2; ++E) + a.set( + (o === 0 ? A : e) * (E ? 1 : s), + (o === 1 ? A : e) * (E ? 1 : s), + (o === 2 ? A : e) * (E ? 1 : s) + ), g.setRGB( + E === 0 ? 0 : o === 0 ? 1 : 0, + E === 0 ? 0 : o === 1 ? 1 : 0, + E === 0 ? 0 : o === 2 ? 1 : 0 + ), t.pushSplat(n, a, r, I, g); } } -function To({ +function vE({ // PackedSplats object to add splats to - splats: g, + splats: t, // center of the sphere (default: origin) - origin: A = new a.Vector3(), + origin: A = new B.Vector3(), // radius of the sphere - radius: I = 1, + radius: e = 1, // maximum depth of recursion for subdividing the sphere // Warning: Gsplat count grows exponentially with depth - maxDepth: B = 3, + maxDepth: s = 3, // filter function to apply to each point, for example to select // points in a certain direction or other function ((THREE.Vector3) => boolean) // (default: null) - filter: Q = null, + filter: i = null, // radius of each oriented Gsplat - pointRadius: C = 0.02, + pointRadius: n = 0.02, // flatness of each oriented Gsplat - pointThickness: E = 1e-3, + pointThickness: a = 1e-3, // color of each Gsplat (THREE.Color) or function to set color for point: // ((THREE.Color, THREE.Vector3) => void) (default: white) - color: t = new a.Color(1, 1, 1) + color: r = new B.Color(1, 1, 1) }) { - const i = {}; - function e(h) { - if (Q && !Q(h)) + const g = {}; + function I(h) { + if (i && !i(h)) return; - const w = `${h.x},${h.y},${h.z}`; - i[w] || (i[w] = h); + const l = `${h.x},${h.y},${h.z}`; + g[l] || (g[l] = h); } - function n(h, w, D, y) { - if (e(w), e(D), e(y), h >= B) + function Q(h, l, u, w) { + if (I(l), I(u), I(w), h >= s) return; - const l = new a.Vector3().addVectors(w, D).normalize(), d = new a.Vector3().addVectors(D, y).normalize(), u = new a.Vector3().addVectors(y, w).normalize(); - n(h + 1, w, l, u), n(h + 1, l, D, d), n(h + 1, u, d, y), n(h + 1, l, d, u); + const d = new B.Vector3().addVectors(l, u).normalize(), p = new B.Vector3().addVectors(u, w).normalize(), y = new B.Vector3().addVectors(w, l).normalize(); + Q(h + 1, l, d, y), Q(h + 1, d, u, p), Q(h + 1, y, p, w), Q(h + 1, d, p, y); } for (const h of [-1, 1]) - for (const w of [-1, 1]) - for (const D of [-1, 1]) { - const y = new a.Vector3(h, 0, 0), l = new a.Vector3(0, w, 0), d = new a.Vector3(0, 0, D); - n(0, y, l, d); + for (const l of [-1, 1]) + for (const u of [-1, 1]) { + const w = new B.Vector3(h, 0, 0), d = new B.Vector3(0, l, 0), p = new B.Vector3(0, 0, u); + Q(0, w, d, p); } - const s = Object.values(i), o = new a.Vector3(C, C, E), r = new a.Quaternion(), c = typeof t == "function" ? new a.Color() : t; - for (const h of s) - r.setFromUnitVectors(new a.Vector3(0, 0, -1), h), typeof t == "function" && t(c, h), h.multiplyScalar(I), h.add(A), g.pushSplat(h, o, r, 1, c); + const o = Object.values(g), E = new B.Vector3(n, n, a), C = new B.Quaternion(), c = typeof r == "function" ? new B.Color() : r; + for (const h of o) + C.setFromUnitVectors(new B.Vector3(0, 0, -1), h), typeof r == "function" && r(c, h), h.multiplyScalar(e), h.add(A), t.pushSplat(h, E, C, 1, c); } -function Xo({ +function LE({ // text string to display - text: g, + text: t, // browser font to render text with (default: "Arial") font: A, // font size in pixels/Gsplats (default: 32) - fontSize: I, + fontSize: e, // SplatMesh.recolor tint assuming white Gsplats (default: white) - color: B, + color: s, // Individual Gsplat color (default: white) - rgb: Q, + rgb: i, // Gsplat radius (default: 0.8 covers 1-unit spacing well) - dotRadius: C, + dotRadius: n, // text alignment: "left", "center", "right", "start", "end" (default: "start") - textAlign: E, + textAlign: a, // line spacing multiplier, lines delimited by "\n" (default: 1.0) - lineHeight: t, + lineHeight: r, // Coordinate scale in object-space (default: 1.0) - objectScale: i + objectScale: g }) { - A = A ?? "Arial", I = I ?? 32, B = B ?? new a.Color(1, 1, 1), C = C ?? 0.8, E = E ?? "start", t = t ?? 1, i = i ?? 1; - const e = g.split(` -`), n = document.createElement("canvas"), s = n.getContext("2d"); - if (!s) + A = A ?? "Arial", e = e ?? 32, s = s ?? new B.Color(1, 1, 1), n = n ?? 0.8, a = a ?? "start", r = r ?? 1, g = g ?? 1; + const I = t.split(` +`), Q = document.createElement("canvas"), o = Q.getContext("2d"); + if (!o) throw new Error("Failed to create canvas context"); - s.font = `${I}px ${A}`, s.textAlign = E; - const o = s.measureText(""), r = o.fontBoundingBoxAscent + o.fontBoundingBoxDescent; - let c = Number.POSITIVE_INFINITY, h = Number.NEGATIVE_INFINITY, w = Number.POSITIVE_INFINITY, D = Number.NEGATIVE_INFINITY; - for (let F = 0; F < e.length; ++F) { - const f = s.measureText(e[F]), U = r * t * F; - c = Math.min(c, -f.actualBoundingBoxLeft), h = Math.max(h, f.actualBoundingBoxRight), w = Math.min(w, U - f.actualBoundingBoxAscent), D = Math.max(D, U + f.actualBoundingBoxDescent); + o.font = `${e}px ${A}`, o.textAlign = a; + const E = o.measureText(""), C = E.fontBoundingBoxAscent + E.fontBoundingBoxDescent; + let c = Number.POSITIVE_INFINITY, h = Number.NEGATIVE_INFINITY, l = Number.POSITIVE_INFINITY, u = Number.NEGATIVE_INFINITY; + for (let N = 0; N < I.length; ++N) { + const R = o.measureText(I[N]), G = C * r * N; + c = Math.min(c, -R.actualBoundingBoxLeft), h = Math.max(h, R.actualBoundingBoxRight), l = Math.min(l, G - R.actualBoundingBoxAscent), u = Math.max(u, G + R.actualBoundingBoxDescent); } - const y = Math.floor(c), l = Math.floor(w), d = Math.ceil(h) - y, u = Math.ceil(D) - l; - n.width = d, n.height = u, s.font = `${I}px ${A}`, s.textAlign = E, s.textBaseline = "alphabetic", s.fillStyle = "#FFFFFF"; - for (let F = 0; F < e.length; ++F) { - const f = r * t * F - l; - s.fillText(e[F], -y, f); + const w = Math.floor(c), d = Math.floor(l), p = Math.ceil(h) - w, y = Math.ceil(u) - d; + Q.width = p, Q.height = y, o.font = `${e}px ${A}`, o.textAlign = a, o.textBaseline = "alphabetic", o.fillStyle = "#FFFFFF"; + for (let N = 0; N < I.length; ++N) { + const R = C * r * N - d; + o.fillText(I[N], -w, R); } - const p = s.getImageData(0, 0, d, u), m = new Uint8Array(p.data.buffer), M = new ZA(), G = new a.Vector3(), J = new a.Vector3().setScalar(C * i), k = new a.Quaternion(0, 0, 0, 1); - Q = Q ?? new a.Color(1, 1, 1); - let N = 0; - for (let F = 0; F < u; ++F) - for (let f = 0; f < d; ++f) { - const U = m[N + 3]; - if (U > 0) { - const L = U / 255; - G.set(f - 0.5 * (d - 1), 0.5 * (u - 1) - F, 0), G.multiplyScalar(i), M.pushSplat(G, J, k, L, Q); + const m = o.getImageData(0, 0, p, y), F = new Uint8Array(m.data.buffer), D = new TA(), f = new B.Vector3(), U = new B.Vector3().setScalar(n * g), S = new B.Quaternion(0, 0, 0, 1); + i = i ?? new B.Color(1, 1, 1); + let M = 0; + for (let N = 0; N < y; ++N) + for (let R = 0; R < p; ++R) { + const G = F[M + 3]; + if (G > 0) { + const L = G / 255; + f.set(R - 0.5 * (p - 1), 0.5 * (y - 1) - N, 0), f.multiplyScalar(g), D.pushSplat(f, U, S, L, i); } - N += 4; + M += 4; } - const Y = new Ag({ packedSplats: M }); - return Y.recolor = B, Y; + const b = new At({ packedSplats: D }); + return b.recolor = s, b; } -function zo({ +function JE({ // URL of the image to convert to splats (example: `url: "./image.png"`) - url: g, + url: t, // Radius of each Gsplat, default covers 1-unit spacing well (default: 0.8) dotRadius: A, // Subsampling factor for the image. Higher values reduce resolution, // for example 2 will halve the width and height by averaging (default: 1) - subXY: I, + subXY: e, // Optional callback function to modify each Gsplat before it's added. // Return null to skip adding the Gsplat, or a number to set the opacity // and add the Gsplat with parameter values in the objects center, rgba etc. were // passed into the forEachSplat callback. Ending the callback in `return opacity;` // will retain the original opacity. // ((width: number, height: number, index: number, center: THREE.Vector3, scales: THREE.Vector3, quaternion: THREE.Quaternion, opacity: number, color: THREE.Color) => number | null) - forEachSplat: B + forEachSplat: s }) { - return A = A ?? 0.8, I = Math.max(1, Math.floor(I ?? 1)), new Ag({ - constructSplats: async (Q) => new Promise((C, E) => { - const t = new Image(); - t.crossOrigin = "anonymous", t.onerror = E, t.onload = () => { - const { width: i, height: e } = t, n = document.createElement("canvas"); - n.width = i, n.height = e; - const s = n.getContext("2d"); - if (!s) { - E(new Error("Failed to create canvas context")); + return A = A ?? 0.8, e = Math.max(1, Math.floor(e ?? 1)), new At({ + constructSplats: async (i) => new Promise((n, a) => { + const r = new Image(); + r.crossOrigin = "anonymous", r.onerror = a, r.onload = () => { + const { width: g, height: I } = r, Q = document.createElement("canvas"); + Q.width = g, Q.height = I; + const o = Q.getContext("2d"); + if (!o) { + a(new Error("Failed to create canvas context")); return; } - s.imageSmoothingEnabled = !0, s.imageSmoothingQuality = "high"; - const o = Math.round(i / I), r = Math.round(e / I); - s.drawImage(t, 0, 0, o, r); + o.imageSmoothingEnabled = !0, o.imageSmoothingQuality = "high"; + const E = Math.round(g / e), C = Math.round(I / e); + o.drawImage(r, 0, 0, E, C); try { - const c = s.getImageData(0, 0, o, r), h = new Uint8Array(c.data.buffer), w = new a.Vector3(), D = new a.Vector3().setScalar(A), y = new a.Quaternion(0, 0, 0, 1), l = new a.Color(); - let d = 0; - for (let u = 0; u < r; ++u) - for (let p = 0; p < o; ++p) { - const m = d * 4, M = h[m + 3]; - if (M > 0) { - let G = M / 255; - l.set( - h[m + 0] / 255, - h[m + 1] / 255, - h[m + 2] / 255 - ), w.set( - p - 0.5 * (o - 1), - 0.5 * (r - 1) - u, + const c = o.getImageData(0, 0, E, C), h = new Uint8Array(c.data.buffer), l = new B.Vector3(), u = new B.Vector3().setScalar(A), w = new B.Quaternion(0, 0, 0, 1), d = new B.Color(); + let p = 0; + for (let y = 0; y < C; ++y) + for (let m = 0; m < E; ++m) { + const F = p * 4, D = h[F + 3]; + if (D > 0) { + let f = D / 255; + d.set( + h[F + 0] / 255, + h[F + 1] / 255, + h[F + 2] / 255 + ), l.set( + m - 0.5 * (E - 1), + 0.5 * (C - 1) - y, 0 - ), D.setScalar(A), y.set(0, 0, 0, 1); - let J = !0; - if (B) { - const k = B( - o, - r, - d, + ), u.setScalar(A), w.set(0, 0, 0, 1); + let U = !0; + if (s) { + const S = s( + E, + C, + p, + l, + u, w, - D, - y, - G, - l + f, + d ); - G = k ?? G, J = k !== null; + f = S ?? f, U = S !== null; } - J && Q.pushSplat(w, D, y, G, l); + U && i.pushSplat(l, u, w, f, d); } - d += 1; + p += 1; } - C(); + n(); } catch (c) { - E(c); + a(c); } - }, t.src = g; + }, r.src = t; }) }); } -function eo({ - box: g, +function tE({ + box: t, cells: A, - dotScale: I, - color: B, - opacity: Q + dotScale: e, + color: s, + opacity: i }) { - A.x = Math.max(1, Math.round(A.x)), A.y = Math.max(1, Math.round(A.y)), A.z = Math.max(1, Math.round(A.z)), Q = Q ?? 1; - const C = A.x * A.y * A.z, E = gA("int", A.x), t = gA("int", A.y); - gA("int", A.z); - const i = bA(0), e = new nI({ - numSplats: C, - generator: YA( + A.x = Math.max(1, Math.round(A.x)), A.y = Math.max(1, Math.round(A.y)), A.z = Math.max(1, Math.round(A.z)), i = i ?? 1; + const n = A.x * A.y * A.z, a = tA("int", A.x), r = tA("int", A.y); + tA("int", A.z); + const g = LA(0), I = new ge({ + numSplats: n, + generator: RA( { index: "int" }, - { gsplat: BA }, - ({ index: s }) => { - if (!s) + { gsplat: sA }, + ({ index: o }) => { + if (!o) throw new Error("index is undefined"); - const o = mI(s, E), r = Og(s, E), c = mI(r, t), h = Og(r, t), w = KA({ + const E = Me(o, a), C = Pt(o, a), c = Me(C, r), h = Pt(C, r), l = YA({ vectorType: "ivec3", - x: o, + x: E, y: c, z: h - }), D = fC(i), y = KA({ vectorType: "ivec2", x: s, y: D }), l = UE(y), d = gA("vec3", g.min), u = gA("vec3", g.max), p = Sg(u, d), m = Og(NA(tg(w), l), gA("vec3", A)); - let M, G, J; - B ? (M = gA("float", B.r), G = gA("float", B.g), J = gA("float", B.b)) : { r: M, g: G, b: J } = Rg(m).outputs; - const k = KA({ + }), u = Mn(g), w = YA({ vectorType: "ivec2", x: o, y: u }), d = Fa(w), p = tA("vec3", t.min), y = tA("vec3", t.max), m = Ut(y, p), F = Pt(fA(at(l), d), tA("vec3", A)); + let D, f, U; + s ? (D = tA("float", s.r), f = tA("float", s.g), U = tA("float", s.b)) : { r: D, g: f, b: U } = St(F).outputs; + const S = YA({ vectorType: "vec4", - r: M, - g: G, - b: J, - a: gA("float", Q) - }), N = NA(d, rA(p, m)), Y = tg(gA("float", I)), F = gA("vec4", new a.Quaternion(0, 0, 0, 1)); - let f = lg({ - flags: _g("uint", "GSPLAT_FLAG_ACTIVE"), - index: s, - center: N, - scales: Y, - quaternion: F, - rgba: k + r: D, + g: f, + b: U, + a: tA("float", i) + }), M = fA(p, CA(m, F)), b = at(tA("float", e)), N = tA("vec4", new B.Quaternion(0, 0, 0, 1)); + let R = ht({ + flags: Ot("uint", "GSPLAT_FLAG_ACTIVE"), + index: o, + center: M, + scales: b, + quaternion: N, + rgba: S }); - return f = n.applyGsplat(f), { gsplat: f }; + return R = Q.applyGsplat(R), { gsplat: R }; }, { - globals: () => [pA] + globals: () => [mA] } ), - update: ({ time: s }) => { - i.value = s, n.update(e), e.updateVersion(); + update: ({ time: o }) => { + g.value = o, Q.update(I), I.updateVersion(); } - }), n = new hg(); - return e; + }), Q = new Et(); + return I; } -const ao = { - box: new a.Box3( - new a.Vector3(-1, -1, -1), - new a.Vector3(1, 1, 1) +const eE = { + box: new B.Box3( + new B.Vector3(-1, -1, -1), + new B.Vector3(1, 1, 1) ), density: 100, - fallDirection: new a.Vector3(-1, -3, 1).normalize(), + fallDirection: new B.Vector3(-1, -3, 1).normalize(), fallVelocity: 0.02, wanderScale: 0.04, wanderVariance: 2, - color1: new a.Color(1, 1, 1), - color2: new a.Color(0.5, 0.5, 1), + color1: new B.Color(1, 1, 1), + color2: new B.Color(0.5, 0.5, 1), minScale: 1e-3, maxScale: 5e-3, - anisoScale: new a.Vector3(1, 1, 1) -}, no = { - box: new a.Box3( - new a.Vector3(-2, -1, -2), - new a.Vector3(2, 5, 2) + anisoScale: new B.Vector3(1, 1, 1) +}, sE = { + box: new B.Box3( + new B.Vector3(-2, -1, -2), + new B.Vector3(2, 5, 2) ), density: 10, - fallDirection: new a.Vector3(0, -1, 0), + fallDirection: new B.Vector3(0, -1, 0), fallVelocity: 2, wanderScale: 0.1, wanderVariance: 1, - color1: new a.Color(1, 1, 1), - color2: new a.Color(0.25, 0.25, 0.5), + color1: new B.Color(1, 1, 1), + color2: new B.Color(0.25, 0.25, 0.5), minScale: 5e-3, maxScale: 0.01, - anisoScale: new a.Vector3(0.1, 1, 0.1) + anisoScale: new B.Vector3(0.1, 1, 0.1) }; -function oo({ +function iE({ // min and max box extents of the snowBox - box: g, + box: t, // minimum y-coordinate to clamp particle position, which can be used to // fake hitting a ground plane and lingering there for a bit minY: A, // number of Gsplats to generate (default: calculated from box and density) - numSplats: I, + numSplats: e, // density of Gsplats per unit volume (default: 100) - density: B, + density: s, // The xyz anisotropic scale of the Gsplat, which can be used for example // to elongate rain particles (default: (1, 1, 1)) - anisoScale: Q, + anisoScale: i, // Minimum Gsplat particle scale (default: 0.001) - minScale: C, + minScale: n, // Maximum Gsplat particle scale (default: 0.005) - maxScale: E, + maxScale: a, // The average direction of fall (default: (0, -1, 0)) - fallDirection: t, + fallDirection: r, // The average speed of the fall (multiplied with fallDirection) (default: 0.02) - fallVelocity: i, + fallVelocity: g, // The world scale of wandering overlay motion (default: 0.01) - wanderScale: e, + wanderScale: I, // Controls how uniformly the particles wander in sync, more variance mean // more randomness in the motion (default: 2) - wanderVariance: n, + wanderVariance: Q, // Color 1 of the two colors interpolated between (default: (1, 1, 1)) - color1: s, + color1: o, // Color 2 of the two colors interpolated between (default: (0.5, 0.5, 1)) - color2: o, + color2: E, // The base opacity of the Gsplats (default: 1) - opacity: r, + opacity: C, // Optional callback function to call each frame. onFrame: c }) { - g = g ?? new a.Box3(new a.Vector3(-1, -1, -1), new a.Vector3(1, 1, 1)); - const h = (g.max.x - g.min.x) * (g.max.y - g.min.y) * (g.max.z - g.min.z); - B = B ?? 100, I = I ?? Math.max(1, Math.min(1e6, Math.round(h * B))); - const w = bA(C ?? 1e-3), D = bA(E ?? 5e-3), y = zA( - ((Q == null ? void 0 : Q.clone()) ?? new a.Vector3(1, 1, 1)).normalize() - ), l = zA( - (t ?? new a.Vector3(0, -1, 0)).normalize() - ), d = bA(i ?? 0.02), u = bA(e ?? 0.01), p = bA(n ?? 2), m = zA(s ?? new a.Color(1, 1, 1)), M = zA(o ?? new a.Color(0.5, 0.5, 1)), G = bA(r ?? 1), J = bA(0), k = zA(new a.Vector3(0, 0, 0)), N = zA(g.min), Y = zA(g.max), F = bA(A ?? Number.NEGATIVE_INFINITY), f = Sg(Y, N), U = new nI({ - numSplats: I, - generator: YA( + t = t ?? new B.Box3(new B.Vector3(-1, -1, -1), new B.Vector3(1, 1, 1)); + const h = (t.max.x - t.min.x) * (t.max.y - t.min.y) * (t.max.z - t.min.z); + s = s ?? 100, e = e ?? Math.max(1, Math.min(1e6, Math.round(h * s))); + const l = LA(n ?? 1e-3), u = LA(a ?? 5e-3), w = PA( + ((i == null ? void 0 : i.clone()) ?? new B.Vector3(1, 1, 1)).normalize() + ), d = PA( + (r ?? new B.Vector3(0, -1, 0)).normalize() + ), p = LA(g ?? 0.02), y = LA(I ?? 0.01), m = LA(Q ?? 2), F = PA(o ?? new B.Color(1, 1, 1)), D = PA(E ?? new B.Color(0.5, 0.5, 1)), f = LA(C ?? 1), U = LA(0), S = PA(new B.Vector3(0, 0, 0)), M = PA(t.min), b = PA(t.max), N = LA(A ?? Number.NEGATIVE_INFINITY), R = Ut(b, M), G = new ge({ + numSplats: e, + generator: RA( { index: "int" }, - { gsplat: BA }, - ({ index: K }) => { - if (!K) + { gsplat: sA }, + ({ index: T }) => { + if (!T) throw new Error("index not defined"); - const Z = fI(K), QA = Rg(Z).outputs.w; - let z = tg(Z), AA = Pg(rA(QA, gA("float", 100))); - AA = SI(rA(_g("float", "PI"), AA)), AA = NA(w, rA(AA, Sg(D, w))); - const $ = rA(AA, y), P = Pg(rA(QA, gA("float", 10))), j = Pg(QA), V = xQ(m, M, j), x = rA(V, P), uA = fI( - KA({ + const H = xe(T), iA = St(H).outputs.w; + let P = at(H), AA = Zt(CA(iA, tA("float", 100))); + AA = Se(CA(Ot("float", "PI"), AA)), AA = fA(l, CA(AA, Ut(u, l))); + const j = CA(AA, w), X = Zt(CA(iA, tA("float", 10))), Z = Zt(iA), _ = Fi(F, D, Z), v = CA(_, X), wA = xe( + YA({ vectorType: "ivec2", - x: K, - y: gA("int", 6837) + x: T, + y: tA("int", 6837) }) ); - let iA = tg(uA), b = rA(Rg(uA).outputs.w, p); - b = NA(J, b), z = NA(z, k); - const nA = YQ( - z, - gA("vec3", new a.Vector3(1, 1, 1)) + let gA = at(wA), J = CA(St(wA).outputs.w, m); + J = fA(U, J), P = fA(P, S); + const QA = xi( + P, + tA("vec3", new B.Vector3(1, 1, 1)) ); - z = NA(N, rA(f, nA)); - const oA = gA("vec4", new a.Quaternion(0, 0, 0, 1)); - iA = SI(NA(tg(b), iA)), iA = rA(iA, u); - let H = NA(z, iA), kA = Rg(H).outputs.y; - kA = UQ(F, kA), H = KA({ vector: H, y: kA }); - let GA = lg({ - flags: _g("uint", "GSPLAT_FLAG_ACTIVE"), - index: K, - center: H, - scales: $, - quaternion: oA, - rgb: x, - opacity: G + P = fA(M, CA(R, QA)); + const EA = tA("vec4", new B.Quaternion(0, 0, 0, 1)); + gA = Se(fA(at(J), gA)), gA = CA(gA, y); + let Y = fA(P, gA), MA = St(Y).outputs.y; + MA = Si(N, MA), Y = YA({ vector: Y, y: MA }); + let pA = ht({ + flags: Ot("uint", "GSPLAT_FLAG_ACTIVE"), + index: T, + center: Y, + scales: j, + quaternion: EA, + rgb: v, + opacity: f }); - return GA = L.applyGsplat(GA), { gsplat: GA }; + return pA = L.applyGsplat(pA), { gsplat: pA }; }, { - globals: () => [pA] + globals: () => [mA] } ), - update: ({ object: K, time: Z, deltaTime: QA }) => { - J.value = Z, L.update(U); - const z = l.value.clone().multiplyScalar(d.value * QA); - k.value.add(z), K.visible = G.value > 0, c == null || c({ object: K, time: Z, deltaTime: QA }), U.updateVersion(); + update: ({ object: T, time: H, deltaTime: iA }) => { + U.value = H, L.update(G); + const P = d.value.clone().multiplyScalar(p.value * iA); + S.value.add(P), T.visible = f.value > 0, c == null || c({ object: T, time: H, deltaTime: iA }), G.updateVersion(); } - }), L = new hg(); + }), L = new Et(); return { - snow: U, - min: N, - max: Y, - minY: F, - color1: m, - color2: M, - opacity: G, - fallVelocity: d, - wanderVariance: p, - wanderScale: u, - fallDirection: l, - minScale: w, - maxScale: D, - anisoScale: y + snow: G, + min: M, + max: b, + minY: N, + color1: F, + color2: D, + opacity: f, + fallVelocity: p, + wanderVariance: m, + wanderScale: y, + fallDirection: d, + minScale: l, + maxScale: u, + anisoScale: w }; } -const jo = /* @__PURE__ */ Object.freeze(/* @__PURE__ */ Object.defineProperty({ +const YE = /* @__PURE__ */ Object.freeze(/* @__PURE__ */ Object.defineProperty({ __proto__: null, - DEFAULT_RAIN: no, - DEFAULT_SNOW: ao, - snowBox: oo, - staticBox: eo -}, Symbol.toStringTag, { value: "Module" })), Jg = class Jg { - static createButton(A, I = {}) { - const B = navigator.xr; - if (!B) + DEFAULT_RAIN: sE, + DEFAULT_SNOW: eE, + snowBox: iE, + staticBox: tE +}, Symbol.toStringTag, { value: "Module" })), Ft = class Ft { + static createButton(A, e = {}) { + const s = navigator.xr; + if (!s) return null; - const Q = B, C = document.createElement("button"); + const i = s, n = document.createElement("button"); A.xr.enabled = !0, A.xr.setReferenceSpaceType("local"); - function E() { - let s = null; - async function o(h) { - console.log("onSessionStarted"), h.addEventListener("end", r), await A.xr.setSession(h), C.textContent = "EXIT VR", s = h; + function a() { + let o = null; + async function E(h) { + console.log("onSessionStarted"), h.addEventListener("end", C), await A.xr.setSession(h), n.textContent = "EXIT VR", o = h; } - function r() { - console.log("onSessionEnded"), s == null || s.removeEventListener("end", r), C.textContent = "ENTER VR", s = null; + function C() { + console.log("onSessionEnded"), o == null || o.removeEventListener("end", C), n.textContent = "ENTER VR", o = null; } - C.style.display = "", C.style.cursor = "pointer", C.style.left = "calc(50% - 100px)", C.style.width = "200px", C.style.height = "100px", C.textContent = "ENTER VR"; + n.style.display = "", n.style.cursor = "pointer", n.style.left = "calc(50% - 100px)", n.style.width = "200px", n.style.height = "100px", n.textContent = "ENTER VR"; const c = { - ...I, + ...e, optionalFeatures: [ // "local-floor", // "bounded-floor", // "layers", - ...I.optionalFeatures || [] + ...e.optionalFeatures || [] ] }; - C.onmouseenter = () => { - C.style.opacity = "1.0"; - }, C.onmouseleave = () => { - C.style.opacity = "0.5"; - }, C.onclick = () => { - s === null ? (console.log("requesting session"), Q.requestSession("immersive-vr", c).then( - o - )) : (console.log("ending session"), s.end()); + n.onmouseenter = () => { + n.style.opacity = "1.0"; + }, n.onmouseleave = () => { + n.style.opacity = "0.5"; + }, n.onclick = () => { + o === null ? (console.log("requesting session"), i.requestSession("immersive-vr", c).then( + E + )) : (console.log("ending session"), o.end()); }; } - function t() { - C.style.display = "none", C.style.cursor = "auto", C.style.left = "calc(50% - 75px)", C.style.width = "150px", C.onmouseenter = null, C.onmouseleave = null, C.onclick = null; + function r() { + n.style.display = "none", n.style.cursor = "auto", n.style.left = "calc(50% - 75px)", n.style.width = "150px", n.onmouseenter = null, n.onmouseleave = null, n.onclick = null; } - function i() { - t(), C.textContent = "VR NOT SUPPORTED"; + function g() { + r(), n.textContent = "VR NOT SUPPORTED"; } - function e(s) { - t(), console.warn( + function I(o) { + r(), console.warn( "Exception when trying to call xr.isSessionSupported", - s - ), C.textContent = "VR NOT ALLOWED"; + o + ), n.textContent = "VR NOT ALLOWED"; } - function n(s) { - s.style.position = "absolute", s.style.bottom = "20px", s.style.padding = "12px 6px", s.style.border = "1px solid #fff", s.style.borderRadius = "4px", s.style.background = "rgba(0,0,0,0.1)", s.style.color = "#fff", s.style.font = "normal 13px sans-serif", s.style.textAlign = "center", s.style.opacity = "0.5", s.style.outline = "none", s.style.zIndex = "999"; + function Q(o) { + o.style.position = "absolute", o.style.bottom = "20px", o.style.padding = "12px 6px", o.style.border = "1px solid #fff", o.style.borderRadius = "4px", o.style.background = "rgba(0,0,0,0.1)", o.style.color = "#fff", o.style.font = "normal 13px sans-serif", o.style.textAlign = "center", o.style.opacity = "0.5", o.style.outline = "none", o.style.zIndex = "999"; } - return C.id = "VRButton", C.style.display = "none", n(C), Q.isSessionSupported("immersive-vr").then((s) => { - s ? E() : i(), s && Jg.xrSessionIsGranted && C.click(); - }).catch(e), C; + return n.id = "VRButton", n.style.display = "none", Q(n), i.isSessionSupported("immersive-vr").then((o) => { + o ? a() : g(), o && Ft.xrSessionIsGranted && n.click(); + }).catch(I), n; } static registerSessionGrantedListener() { const A = navigator.xr; if (!A) return null; - const I = A; - /WebXRViewer\//i.test(navigator.userAgent) || I.addEventListener("sessiongranted", () => { - Jg.xrSessionIsGranted = !0; + const e = A; + /WebXRViewer\//i.test(navigator.userAgent) || e.addEventListener("sessiongranted", () => { + Ft.xrSessionIsGranted = !0; }); } }; -Jg.xrSessionIsGranted = !1; -let bI = Jg; -bI.registerSessionGrantedListener(); -const ro = 0.5, co = 0.5, ho = 0; -var jI = /* @__PURE__ */ ((g) => (g.w = "wrist", g.t0 = "thumb-metacarpal", g.t1 = "thumb-phalanx-proximal", g.t2 = "thumb-phalanx-distal", g.t3 = "thumb-tip", g.i0 = "index-finger-metacarpal", g.i1 = "index-finger-phalanx-proximal", g.i2 = "index-finger-phalanx-intermediate", g.i3 = "index-finger-phalanx-distal", g.i4 = "index-finger-tip", g.m0 = "middle-finger-metacarpal", g.m1 = "middle-finger-phalanx-proximal", g.m2 = "middle-finger-phalanx-intermediate", g.m3 = "middle-finger-phalanx-distal", g.m4 = "middle-finger-tip", g.r0 = "ring-finger-metacarpal", g.r1 = "ring-finger-phalanx-proximal", g.r2 = "ring-finger-phalanx-intermediate", g.r3 = "ring-finger-phalanx-distal", g.r4 = "ring-finger-tip", g.p0 = "pinky-finger-metacarpal", g.p1 = "pinky-finger-phalanx-proximal", g.p2 = "pinky-finger-phalanx-intermediate", g.p3 = "pinky-finger-phalanx-distal", g.p4 = "pinky-finger-tip", g))(jI || {}); -const Yt = Object.keys(jI), Oo = Yt.length, Po = { +Ft.xrSessionIsGranted = !1; +let Re = Ft; +Re.registerSessionGrantedListener(); +const nE = 0.5, aE = 0.5, rE = 0; +var qe = /* @__PURE__ */ ((t) => (t.w = "wrist", t.t0 = "thumb-metacarpal", t.t1 = "thumb-phalanx-proximal", t.t2 = "thumb-phalanx-distal", t.t3 = "thumb-tip", t.i0 = "index-finger-metacarpal", t.i1 = "index-finger-phalanx-proximal", t.i2 = "index-finger-phalanx-intermediate", t.i3 = "index-finger-phalanx-distal", t.i4 = "index-finger-tip", t.m0 = "middle-finger-metacarpal", t.m1 = "middle-finger-phalanx-proximal", t.m2 = "middle-finger-phalanx-intermediate", t.m3 = "middle-finger-phalanx-distal", t.m4 = "middle-finger-tip", t.r0 = "ring-finger-metacarpal", t.r1 = "ring-finger-phalanx-proximal", t.r2 = "ring-finger-phalanx-intermediate", t.r3 = "ring-finger-phalanx-distal", t.r4 = "ring-finger-tip", t.p0 = "pinky-finger-metacarpal", t.p1 = "pinky-finger-phalanx-proximal", t.p2 = "pinky-finger-phalanx-intermediate", t.p3 = "pinky-finger-phalanx-distal", t.p4 = "pinky-finger-tip", t))(qe || {}); +const Sr = Object.keys(qe), TE = Sr.length, HE = { w: 0, t0: 1, t1: 2, @@ -9639,7 +9481,7 @@ const Yt = Object.keys(jI), Oo = Yt.length, Po = { p2: 22, p3: 23, p4: 24 -}, Vg = { +}, zt = { w: 0.02, t0: 0.02, t1: 0.014, @@ -9665,539 +9507,539 @@ const Yt = Object.keys(jI), Oo = Yt.length, Po = { p2: 7e-3, p3: 65e-4, p4: 55e-4 -}, wo = [ +}, gE = [ ["w", "t0", "t1", "t2", "t3"], ["w", "i0", "i1", "i2", "i3", "i4"], ["w", "m0", "m1", "m2", "m3", "m4"], ["w", "r0", "r1", "r2", "r3", "r4"], ["w", "p0", "p1", "p2", "p3", "p4"] -], Do = [ +], oE = [ [8, 10, 8, 6], [8, 19, 14, 8, 6], [8, 19, 14, 8, 6], [8, 19, 14, 8, 6], [8, 19, 14, 8, 6] -], _o = ["t3", "i4", "m4", "r4", "p4"], $o = ["i4", "m4", "r4", "p4"]; -var Ut = /* @__PURE__ */ ((g) => (g.left = "left", g.right = "right", g))(Ut || {}); -const HI = Object.keys(Ut); -class Ar { +], KE = ["t3", "i4", "m4", "r4", "p4"], qE = ["i4", "m4", "r4", "p4"]; +var Fr = /* @__PURE__ */ ((t) => (t.left = "left", t.right = "right", t))(Fr || {}); +const Ge = Object.keys(Fr); +class zE { constructor() { this.hands = {}, this.last = {}, this.values = {}, this.tests = {}, this.lastTests = {}, this.updated = !1; } - update({ xr: A, xrFrame: I }) { - const B = A.getSession(); - if (!B) + update({ xr: A, xrFrame: e }) { + const s = A.getSession(); + if (!s) return; - const Q = A.getReferenceSpace(); - if (Q && I.getJointPose) { + const i = A.getReferenceSpace(); + if (i && e.getJointPose) { this.last = this.hands, this.lastTests = this.tests, this.hands = {}, this.values = {}, this.tests = {}; - for (const C of B.inputSources) { - if (!C.hand) + for (const n of s.inputSources) { + if (!n.hand) continue; - const E = C.handedness; - this.hands[E] = {}; - for (const t of Yt) { - const i = C.hand.get(jI[t]); - if (i) { - const e = I.getJointPose(i, Q); - if (e) { - const { position: n, orientation: s } = e.transform; - this.hands[E][t] = { - position: new SA(n.x, n.y, n.z), - quaternion: new OI( - s.x, - s.y, - s.z, - s.w + const a = n.handedness; + this.hands[a] = {}; + for (const r of Sr) { + const g = n.hand.get(qe[r]); + if (g) { + const I = e.getJointPose(g, i); + if (I) { + const { position: Q, orientation: o } = I.transform; + this.hands[a][r] = { + position: new UA(Q.x, Q.y, Q.z), + quaternion: new ze( + o.x, + o.y, + o.z, + o.w ), - radius: e.radius || 1e-3 + radius: I.radius || 1e-3 }; } } } } - for (const C of HI) - for (const { key: E, value: t } of [ - { key: `${C}AllTips`, value: this.allTipsTouching(C) }, + for (const n of Ge) + for (const { key: a, value: r } of [ + { key: `${n}AllTips`, value: this.allTipsTouching(n) }, { - key: `${C}IndexThumb`, - value: this.touching(C, "i4", C, "t3") + key: `${n}IndexThumb`, + value: this.touching(n, "i4", n, "t3") }, { - key: `${C}MiddleThumb`, - value: this.touching(C, "m4", C, "t3") + key: `${n}MiddleThumb`, + value: this.touching(n, "m4", n, "t3") }, { - key: `${C}RingThumb`, - value: this.touching(C, "r4", C, "t3") + key: `${n}RingThumb`, + value: this.touching(n, "r4", n, "t3") }, { - key: `${C}PinkyThumb`, - value: this.touching(C, "p4", C, "t3") + key: `${n}PinkyThumb`, + value: this.touching(n, "p4", n, "t3") }, - { key: `${C}TriTips`, value: this.triTipsTouching(C) } + { key: `${n}TriTips`, value: this.triTipsTouching(n) } ]) - this.values[E] = t, this.tests[E] = t === 1 ? !0 : t === 0 ? !1 : this.lastTests[E] ?? !1; + this.values[a] = r, this.tests[a] = r === 1 ? !0 : r === 0 ? !1 : this.lastTests[a] ?? !1; } } makeGhostMesh() { - const A = new SA(), I = new SA(0.01, 0.01, 0.01), B = new OI(0, 0, 0, 1), Q = new PI(1, 1, 1), C = Math.PI * 3, E = new PI(1, 1, 1); - let t = 1; - const i = new Ag({ + const A = new UA(), e = new UA(0.01, 0.01, 0.01), s = new ze(0, 0, 0, 1), i = new _e(1, 1, 1), n = Math.PI * 3, a = new _e(1, 1, 1); + let r = 1; + const g = new At({ onFrame: () => { - let e = 0; - for (const n of HI) { - const s = this.values[`${n}MiddleThumb`], o = this.hands[n]; - for (const [r, c] of wo.entries()) + let I = 0; + for (const Q of Ge) { + const o = this.values[`${Q}MiddleThumb`], E = this.hands[Q]; + for (const [C, c] of gE.entries()) for (let h = 1; h < c.length; ++h) { - const w = Do[r][h - 1] * 2, D = h + 1 === c.length, y = o == null ? void 0 : o[c[h - 1]], l = o == null ? void 0 : o[c[h]]; - for (let d = 0; d < w; ++d) { - const u = (d + 0.5) / w; - if (t = 0, y && l) { - A.copy(y.position).lerp(l.position, u), B.copy(y.quaternion).slerp(l.quaternion, u); - const p = Vg[c[h - 1]], m = Vg[c[h]]; - let M = (1 - u) * p + u * m; - D && u > 0.8 && (M *= Math.sqrt(1 - ((u - 0.8) / 0.2) ** 2)), I.set(0.65 * M, 0.5 * M, 3e-3), Q.set( - 0.55 + 0.45 * Math.sin(A.x * C), - 0.55 + 0.45 * Math.sin(A.y * C), - 0.55 + 0.45 * Math.sin(A.z * C) - ), n === "right" && Q.set(1 - Q.r, 1 - Q.g, 1 - Q.b), Q.lerp(E, s), t = 0.75; + const l = oE[C][h - 1] * 2, u = h + 1 === c.length, w = E == null ? void 0 : E[c[h - 1]], d = E == null ? void 0 : E[c[h]]; + for (let p = 0; p < l; ++p) { + const y = (p + 0.5) / l; + if (r = 0, w && d) { + A.copy(w.position).lerp(d.position, y), s.copy(w.quaternion).slerp(d.quaternion, y); + const m = zt[c[h - 1]], F = zt[c[h]]; + let D = (1 - y) * m + y * F; + u && y > 0.8 && (D *= Math.sqrt(1 - ((y - 0.8) / 0.2) ** 2)), e.set(0.65 * D, 0.5 * D, 3e-3), i.set( + 0.55 + 0.45 * Math.sin(A.x * n), + 0.55 + 0.45 * Math.sin(A.y * n), + 0.55 + 0.45 * Math.sin(A.z * n) + ), Q === "right" && i.set(1 - i.r, 1 - i.g, 1 - i.b), i.lerp(a, o), r = 0.75; } - i.packedSplats.setSplat( - e, - A, + g.packedSplats.setSplat( I, - B, - t, - Q - ), e += 1; + A, + e, + s, + r, + i + ), I += 1; } } } - i.packedSplats.numSplats = e, i.packedSplats.needsUpdate = !0, i.numSplats = e; + g.packedSplats.numSplats = I, g.packedSplats.needsUpdate = !0, g.numSplats = I; } }); - return i; + return g; } - distance(A, I, B, Q, C = !1) { - const E = C ? this.last[A] : this.hands[A], t = C ? this.last[B] : this.hands[B], i = E == null ? void 0 : E[I], e = t == null ? void 0 : t[Q]; - return !i || !e ? Number.POSITIVE_INFINITY : i.position.distanceTo(e.position); + distance(A, e, s, i, n = !1) { + const a = n ? this.last[A] : this.hands[A], r = n ? this.last[s] : this.hands[s], g = a == null ? void 0 : a[e], I = r == null ? void 0 : r[i]; + return !g || !I ? Number.POSITIVE_INFINITY : g.position.distanceTo(I.position); } - separation(A, I, B, Q, C = !1) { - const E = this.distance(A, I, B, Q, C); - return E === Number.POSITIVE_INFINITY ? Number.POSITIVE_INFINITY : E - Vg[I] - Vg[Q]; + separation(A, e, s, i, n = !1) { + const a = this.distance(A, e, s, i, n); + return a === Number.POSITIVE_INFINITY ? Number.POSITIVE_INFINITY : a - zt[e] - zt[i]; } - touching(A, I, B, Q, C = !1) { - const E = this.separation(A, I, B, Q, C); - return E === Number.POSITIVE_INFINITY ? Number.POSITIVE_INFINITY : 1 - Math.max(0, Math.min(1, E / 0.01 - ho)); + touching(A, e, s, i, n = !1) { + const a = this.separation(A, e, s, i, n); + return a === Number.POSITIVE_INFINITY ? Number.POSITIVE_INFINITY : 1 - Math.max(0, Math.min(1, a / 0.01 - rE)); } - allTipsTouching(A, I = !1) { + allTipsTouching(A, e = !1) { return Math.min( - this.touching(A, "t3", A, "i4", I), - this.touching(A, "i4", A, "m4", I), - this.touching(A, "m4", A, "r4", I), - this.touching(A, "r4", A, "p4", I) + this.touching(A, "t3", A, "i4", e), + this.touching(A, "i4", A, "m4", e), + this.touching(A, "m4", A, "r4", e), + this.touching(A, "r4", A, "p4", e) // this.touching(hand, "p4", hand, "t3", last), ); } - triTipsTouching(A, I = !1) { + triTipsTouching(A, e = !1) { return Math.min( - this.touching(A, "t3", A, "i4", I), - this.touching(A, "i4", A, "m4", I), - this.touching(A, "m4", A, "t3", I) + this.touching(A, "t3", A, "i4", e), + this.touching(A, "i4", A, "m4", e), + this.touching(A, "m4", A, "t3", e) ); } } -class gr { +class _E { constructor({ xrHands: A, - control: I, - moveInertia: B, - rotateInertia: Q + control: e, + moveInertia: s, + rotateInertia: i }) { - this.lastGrip = {}, this.lastPivot = new SA(), this.rotateVelocity = 0, this.velocity = new SA(), this.xrHands = A, this.control = I, this.moveInertia = B ?? ro, this.rotateInertia = Q ?? co; + this.lastGrip = {}, this.lastPivot = new UA(), this.rotateVelocity = 0, this.velocity = new UA(), this.xrHands = A, this.control = e, this.moveInertia = s ?? nE, this.rotateInertia = i ?? aE; } update(A) { - var C, E, t, i, e; - const I = {}; - for (const n of HI) { - const s = this.xrHands.hands[n]; - s && this.xrHands.tests[`${n}MiddleThumb`] && (I[n] = new SA().add(((C = s.t3) == null ? void 0 : C.position) ?? new SA()).add(((E = s.i4) == null ? void 0 : E.position) ?? new SA()).add(((t = s.m4) == null ? void 0 : t.position) ?? new SA()).add(((i = s.r4) == null ? void 0 : i.position) ?? new SA()).add(((e = s.p4) == null ? void 0 : e.position) ?? new SA()).multiplyScalar(1 / 5)); + var n, a, r, g, I; + const e = {}; + for (const Q of Ge) { + const o = this.xrHands.hands[Q]; + o && this.xrHands.tests[`${Q}MiddleThumb`] && (e[Q] = new UA().add(((n = o.t3) == null ? void 0 : n.position) ?? new UA()).add(((a = o.i4) == null ? void 0 : a.position) ?? new UA()).add(((r = o.m4) == null ? void 0 : r.position) ?? new UA()).add(((g = o.r4) == null ? void 0 : g.position) ?? new UA()).add(((I = o.p4) == null ? void 0 : I.position) ?? new UA()).multiplyScalar(1 / 5)); } - if (I.left && I.right && this.lastGrip.left && this.lastGrip.right) { - const n = I.left.clone().add(I.right).multiplyScalar(0.5), s = this.lastGrip.left.clone().add(this.lastGrip.right).multiplyScalar(0.5); - this.lastPivot = n; - const o = n.clone().applyMatrix4(this.control.matrix); - o.sub(s.clone().applyMatrix4(this.control.matrix)), o.multiplyScalar(1 / A), this.velocity.lerp(o, 1 - Math.exp(-20 * A)); - const r = Math.atan2(I.left.z - n.z, I.left.x - n.x), c = Math.atan2( - this.lastGrip.left.z - s.z, - this.lastGrip.left.x - s.x + if (e.left && e.right && this.lastGrip.left && this.lastGrip.right) { + const Q = e.left.clone().add(e.right).multiplyScalar(0.5), o = this.lastGrip.left.clone().add(this.lastGrip.right).multiplyScalar(0.5); + this.lastPivot = Q; + const E = Q.clone().applyMatrix4(this.control.matrix); + E.sub(o.clone().applyMatrix4(this.control.matrix)), E.multiplyScalar(1 / A), this.velocity.lerp(E, 1 - Math.exp(-20 * A)); + const C = Math.atan2(e.left.z - Q.z, e.left.x - Q.x), c = Math.atan2( + this.lastGrip.left.z - o.z, + this.lastGrip.left.x - o.x ); - let h = r - c; + let h = C - c; h > Math.PI ? h -= Math.PI * 2 : h < -Math.PI && (h += Math.PI * 2); - const w = h / A, D = Math.exp(-20 * A); - this.rotateVelocity = this.rotateVelocity * D + w * (1 - D); - } else if (this.rotateVelocity *= Math.exp(-A / this.rotateInertia), I.left && this.lastGrip.left) { - const n = I.left.clone().applyMatrix4(this.control.matrix); - n.sub(this.lastGrip.left.clone().applyMatrix4(this.control.matrix)), n.multiplyScalar(1 / A), this.velocity.lerp(n, 1 - Math.exp(-20 * A)); - } else if (I.right && this.lastGrip.right) { - const n = I.right.clone().applyMatrix4(this.control.matrix); - n.sub( + const l = h / A, u = Math.exp(-20 * A); + this.rotateVelocity = this.rotateVelocity * u + l * (1 - u); + } else if (this.rotateVelocity *= Math.exp(-A / this.rotateInertia), e.left && this.lastGrip.left) { + const Q = e.left.clone().applyMatrix4(this.control.matrix); + Q.sub(this.lastGrip.left.clone().applyMatrix4(this.control.matrix)), Q.multiplyScalar(1 / A), this.velocity.lerp(Q, 1 - Math.exp(-20 * A)); + } else if (e.right && this.lastGrip.right) { + const Q = e.right.clone().applyMatrix4(this.control.matrix); + Q.sub( this.lastGrip.right.clone().applyMatrix4(this.control.matrix) - ), n.multiplyScalar(1 / A), this.velocity.lerp(n, 1 - Math.exp(-20 * A)); + ), Q.multiplyScalar(1 / A), this.velocity.lerp(Q, 1 - Math.exp(-20 * A)); } else this.velocity.multiplyScalar(Math.exp(-A / this.moveInertia)); - const B = this.lastPivot.clone().negate(), Q = new uI().makeTranslation(B).premultiply(new uI().makeRotationY(this.rotateVelocity * A)).premultiply(new uI().makeTranslation(this.lastPivot)); - this.control.matrix.multiply(Q), this.control.matrix.decompose( + const s = this.lastPivot.clone().negate(), i = new le().makeTranslation(s).premultiply(new le().makeRotationY(this.rotateVelocity * A)).premultiply(new le().makeTranslation(this.lastPivot)); + this.control.matrix.multiply(i), this.control.matrix.decompose( this.control.position, this.control.quaternion, this.control.scale - ), this.control.updateMatrixWorld(!0), this.control.position.sub(this.velocity.clone().multiplyScalar(A)), this.lastGrip = I; + ), this.control.updateMatrixWorld(!0), this.control.position.sub(this.velocity.clone().multiplyScalar(A)), this.lastGrip = e; } } -const lo = 1, yo = 2, uo = 2e-3, Go = 6e-3, Mo = 15e-4, No = 0.15, po = 0.15, ko = 0.1, Fo = 2, Ro = 200, Jo = 400, mo = 50, fo = { - KeyW: new a.Vector3(0, 0, -1), - KeyS: new a.Vector3(0, 0, 1), - KeyA: new a.Vector3(-1, 0, 0), - KeyD: new a.Vector3(1, 0, 0), - KeyR: new a.Vector3(0, 1, 0), - KeyF: new a.Vector3(0, -1, 0) -}, So = { - ArrowUp: new a.Vector3(0, 0, -1), - ArrowDown: new a.Vector3(0, 0, 1), - ArrowLeft: new a.Vector3(-1, 0, 0), - ArrowRight: new a.Vector3(1, 0, 0), - PageUp: new a.Vector3(0, 1, 0), - PageDown: new a.Vector3(0, -1, 0) -}, Yo = { - KeyQ: new a.Vector3(0, 0, 1), - KeyE: new a.Vector3(0, 0, -1) -}, Uo = { - Home: new a.Vector3(0, -1, 0), - End: new a.Vector3(0, 1, 0), - Insert: new a.Vector3(-1, 0, 0), - Delete: new a.Vector3(1, 0, 0) +const IE = 1, BE = 2, QE = 2e-3, EE = 6e-3, CE = 15e-4, cE = 0.15, hE = 0.15, lE = 0.1, uE = 2, dE = 200, wE = 400, yE = 50, pE = { + KeyW: new B.Vector3(0, 0, -1), + KeyS: new B.Vector3(0, 0, 1), + KeyA: new B.Vector3(-1, 0, 0), + KeyD: new B.Vector3(1, 0, 0), + KeyR: new B.Vector3(0, 1, 0), + KeyF: new B.Vector3(0, -1, 0) +}, DE = { + ArrowUp: new B.Vector3(0, 0, -1), + ArrowDown: new B.Vector3(0, 0, 1), + ArrowLeft: new B.Vector3(-1, 0, 0), + ArrowRight: new B.Vector3(1, 0, 0), + PageUp: new B.Vector3(0, 1, 0), + PageDown: new B.Vector3(0, -1, 0) +}, fE = { + KeyQ: new B.Vector3(0, 0, 1), + KeyE: new B.Vector3(0, 0, -1) +}, mE = { + Home: new B.Vector3(0, -1, 0), + End: new B.Vector3(0, 1, 0), + Insert: new B.Vector3(-1, 0, 0), + Delete: new B.Vector3(1, 0, 0) }; -class Ir { +class VE { constructor({ canvas: A }) { - this.lastTime = 0, this.fpsMovement = new xo({}), this.pointerControls = new Lo({ canvas: A }); + this.lastTime = 0, this.fpsMovement = new ME({}), this.pointerControls = new xE({ canvas: A }); } update(A) { - const I = performance.now(), B = (I - (this.lastTime || I)) / 1e3; - this.lastTime = I, this.fpsMovement.update(B, A), this.pointerControls.update(B, A); + const e = performance.now(), s = (e - (this.lastTime || e)) / 1e3; + this.lastTime = e, this.fpsMovement.update(s, A), this.pointerControls.update(s, A); } } -class xo { +class ME { constructor({ moveSpeed: A, - rollSpeed: I, - stickThreshold: B, - rotateSpeed: Q, - keycodeMoveMapping: C, - keycodeRotateMapping: E, - gamepadMapping: t, - capsMultiplier: i, - shiftMultiplier: e, - ctrlMultiplier: n, - xr: s + rollSpeed: e, + stickThreshold: s, + rotateSpeed: i, + keycodeMoveMapping: n, + keycodeRotateMapping: a, + gamepadMapping: r, + capsMultiplier: g, + shiftMultiplier: I, + ctrlMultiplier: Q, + xr: o } = {}) { - this.enable = !0, this.moveSpeed = A ?? lo, this.rollSpeed = I ?? yo, this.stickThreshold = B ?? ko, this.rotateSpeed = Q ?? Fo, this.keycodeMoveMapping = C ?? { - ...fo, - ...So - }, this.keycodeRotateMapping = E ?? { - ...Yo, - ...Uo - }, this.gamepadMapping = t ?? { + this.enable = !0, this.moveSpeed = A ?? IE, this.rollSpeed = e ?? BE, this.stickThreshold = s ?? lE, this.rotateSpeed = i ?? uE, this.keycodeMoveMapping = n ?? { + ...pE, + ...DE + }, this.keycodeRotateMapping = a ?? { + ...fE, + ...mE + }, this.gamepadMapping = r ?? { 4: "rollLeft", 5: "rollRight", 6: "ctrl", 7: "shift" - }, this.capsMultiplier = i ?? 10, this.shiftMultiplier = e ?? 5, this.ctrlMultiplier = n ?? 1 / 5, this.xr = s, this.keydown = {}, this.keycode = {}, document.addEventListener("keydown", (o) => { - this.keydown[o.key] = !0, this.keycode[o.code] = !0; - }), document.addEventListener("keyup", (o) => { - this.keydown[o.key] = !1, this.keycode[o.code] = !1; + }, this.capsMultiplier = g ?? 10, this.shiftMultiplier = I ?? 5, this.ctrlMultiplier = Q ?? 1 / 5, this.xr = o, this.keydown = {}, this.keycode = {}, document.addEventListener("keydown", (E) => { + this.keydown[E.key] = !0, this.keycode[E.code] = !0; + }), document.addEventListener("keyup", (E) => { + this.keydown[E.key] = !1, this.keycode[E.code] = !1; }); } // Call this method in your render loop with `control` set to the object to control // (`THREE.Camera` or a `THREE.Object3D` that contains it), with `deltaTime` // in seconds since the last update. - update(A, I) { - var n, s; + update(A, e) { + var Q, o; if (!this.enable) return; - const B = [new a.Vector2(), new a.Vector2()], Q = navigator.getGamepads()[0]; - Q && (B[0].set(Q.axes[0], Q.axes[1]), B[1].set(Q.axes[2], Q.axes[3])); - const C = (Q == null ? void 0 : Q.buttons.map((o) => o.pressed)) || [], E = Array.from(((s = (n = this.xr) == null ? void 0 : n.getSession()) == null ? void 0 : s.inputSources) ?? []); - for (const o of E) { - const r = o.gamepad; - if (r) - switch (o.handedness) { + const s = [new B.Vector2(), new B.Vector2()], i = navigator.getGamepads()[0]; + i && (s[0].set(i.axes[0], i.axes[1]), s[1].set(i.axes[2], i.axes[3])); + const n = (i == null ? void 0 : i.buttons.map((E) => E.pressed)) || [], a = Array.from(((o = (Q = this.xr) == null ? void 0 : Q.getSession()) == null ? void 0 : o.inputSources) ?? []); + for (const E of a) { + const C = E.gamepad; + if (C) + switch (E.handedness) { case "none": { - B[0].x += r.axes[0], B[0].y += r.axes[1], B[1].x += r.axes[2], B[1].y += r.axes[3]; + s[0].x += C.axes[0], s[0].y += C.axes[1], s[1].x += C.axes[2], s[1].y += C.axes[3]; break; } case "left": { - B[0].x += r.axes[2], B[0].y += r.axes[3]; + s[0].x += C.axes[2], s[0].y += C.axes[3]; break; } case "right": { - B[1].x += r.axes[2], B[1].y += r.axes[3]; + s[1].x += C.axes[2], s[1].y += C.axes[3]; break; } } } - for (const o of B) - o.x = Math.abs(o.x) >= this.stickThreshold ? o.x : 0, o.y = Math.abs(o.y) >= this.stickThreshold ? o.y : 0; - const t = new a.Vector3( - B[1].x, - B[1].y, + for (const E of s) + E.x = Math.abs(E.x) >= this.stickThreshold ? E.x : 0, E.y = Math.abs(E.y) >= this.stickThreshold ? E.y : 0; + const r = new B.Vector3( + s[1].x, + s[1].y, 0 ).multiplyScalar(this.rotateSpeed); - for (const [o, r] of Object.entries(this.keycodeRotateMapping)) - this.keycode[o] && t.add(r); - for (const o in this.gamepadMapping) - if (C[Number.parseInt(o)]) - switch (this.gamepadMapping[o]) { + for (const [E, C] of Object.entries(this.keycodeRotateMapping)) + this.keycode[E] && r.add(C); + for (const E in this.gamepadMapping) + if (n[Number.parseInt(E)]) + switch (this.gamepadMapping[E]) { case "rollLeft": - t.z += 1; + r.z += 1; break; case "rollRight": - t.z -= 1; + r.z -= 1; break; } - if (t.multiply( - new a.Vector3(this.rotateSpeed, this.rotateSpeed, this.rollSpeed) - ), t.manhattanLength() > 0) { - t.multiplyScalar(A); - const o = new a.Euler().setFromQuaternion( - I.quaternion, + if (r.multiply( + new B.Vector3(this.rotateSpeed, this.rotateSpeed, this.rollSpeed) + ), r.manhattanLength() > 0) { + r.multiplyScalar(A); + const E = new B.Euler().setFromQuaternion( + e.quaternion, "YXZ" ); - o.y -= t.x, o.x = Math.max( + E.y -= r.x, E.x = Math.max( -Math.PI / 2, - Math.min(Math.PI / 2, o.x - t.y) - ), o.z = Math.max(-Math.PI, Math.min(Math.PI, o.z + t.z)), I.quaternion.setFromEuler(o); + Math.min(Math.PI / 2, E.x - r.y) + ), E.z = Math.max(-Math.PI, Math.min(Math.PI, E.z + r.z)), e.quaternion.setFromEuler(E); } - const i = new a.Vector3(B[0].x, 0, B[0].y); - for (const [o, r] of Object.entries(this.keycodeMoveMapping)) - this.keycode[o] && i.add(r); - let e = 1; - this.keydown.CapsLock && (e *= this.capsMultiplier), (this.keycode.ShiftLeft || this.keycode.ShiftRight) && (e *= this.shiftMultiplier), (this.keycode.ControlLeft || this.keycode.ControlRight) && (e *= this.ctrlMultiplier); - for (const o in this.gamepadMapping) - if (C[Number.parseInt(o)]) - switch (this.gamepadMapping[o]) { + const g = new B.Vector3(s[0].x, 0, s[0].y); + for (const [E, C] of Object.entries(this.keycodeMoveMapping)) + this.keycode[E] && g.add(C); + let I = 1; + this.keydown.CapsLock && (I *= this.capsMultiplier), (this.keycode.ShiftLeft || this.keycode.ShiftRight) && (I *= this.shiftMultiplier), (this.keycode.ControlLeft || this.keycode.ControlRight) && (I *= this.ctrlMultiplier); + for (const E in this.gamepadMapping) + if (n[Number.parseInt(E)]) + switch (this.gamepadMapping[E]) { case "shift": - e *= this.shiftMultiplier; + I *= this.shiftMultiplier; break; case "ctrl": - e *= this.ctrlMultiplier; + I *= this.ctrlMultiplier; break; } - i.applyQuaternion(I.quaternion), I.position.add( - i.multiplyScalar(this.moveSpeed * e * A) + g.applyQuaternion(e.quaternion), e.position.add( + g.multiplyScalar(this.moveSpeed * I * A) ); } } -class Lo { +class xE { constructor({ // The HTML canvas element to attach pointer events to canvas: A, // Speed of rotation (default DEFAULT_ROTATE_SPEED) - rotateSpeed: I, + rotateSpeed: e, // Speed of sliding when dragging with right/middle mouse button or two fingers // (default DEFAULT_SLIDE_SPEED) - slideSpeed: B, + slideSpeed: s, // Speed of movement when using mouse scroll wheel (default DEFAULT_SCROLL_SPEED) - scrollSpeed: Q, + scrollSpeed: i, // Swap the direction of rotation and sliding (default: false) - swapRotateSlide: C, + swapRotateSlide: n, // Reverse the direction of rotation (default: false) - reverseRotate: E, + reverseRotate: a, // Reverse the direction of sliding (default: false) - reverseSlide: t, + reverseSlide: r, // Reverse the direction of swipe gestures (default: false) - reverseSwipe: i, + reverseSwipe: g, // Reverse the direction of scroll wheel movement (default: false) - reverseScroll: e, + reverseScroll: I, // Inertia factor for movement (default: DEFAULT_MOVE_INERTIA) - moveInertia: n, + moveInertia: Q, // Inertia factor for rotation (default: DEFAULT_ROTATE_INERTIA) - rotateInertia: s, + rotateInertia: o, // Callback for double press events (default: () => {}) - doublePress: o + doublePress: E }) { - this.enable = !0, this.canvas = A, this.rotateSpeed = I ?? uo, this.slideSpeed = B ?? Go, this.scrollSpeed = Q ?? Mo, this.swapRotateSlide = C ?? !1, this.reverseRotate = E ?? !1, this.reverseSlide = t ?? !1, this.reverseSwipe = i ?? !1, this.reverseScroll = e ?? !1, this.moveInertia = n ?? po, this.rotateInertia = s ?? No, this.doublePress = o ?? (() => { - }), this.doublePressLimitMs = Jo, this.doublePressDistance = mo, this.lastUp = null, this.rotating = null, this.sliding = null, this.dualPress = !1, this.scroll = new a.Vector3(), this.rotateVelocity = new a.Vector3(), this.moveVelocity = new a.Vector3(), A.addEventListener("pointerdown", (c) => { - const h = this.getPointerPosition(c), w = h.clone(), D = h.clone(), y = !this.swapRotateSlide && !this.rotating && (c.pointerType !== "mouse" || c.button === 0) || this.swapRotateSlide && this.sliding && !this.rotating && (c.pointerType !== "mouse" || c.button === 1), { pointerId: l, timeStamp: d } = c; - if (y) - this.rotating = { initial: w, last: D, position: h, pointerId: l, timeStamp: d }, A.setPointerCapture(c.pointerId), this.dualPress = !1; + this.enable = !0, this.canvas = A, this.rotateSpeed = e ?? QE, this.slideSpeed = s ?? EE, this.scrollSpeed = i ?? CE, this.swapRotateSlide = n ?? !1, this.reverseRotate = a ?? !1, this.reverseSlide = r ?? !1, this.reverseSwipe = g ?? !1, this.reverseScroll = I ?? !1, this.moveInertia = Q ?? hE, this.rotateInertia = o ?? cE, this.doublePress = E ?? (() => { + }), this.doublePressLimitMs = wE, this.doublePressDistance = yE, this.lastUp = null, this.rotating = null, this.sliding = null, this.dualPress = !1, this.scroll = new B.Vector3(), this.rotateVelocity = new B.Vector3(), this.moveVelocity = new B.Vector3(), A.addEventListener("pointerdown", (c) => { + const h = this.getPointerPosition(c), l = h.clone(), u = h.clone(), w = !this.swapRotateSlide && !this.rotating && (c.pointerType !== "mouse" || c.button === 0) || this.swapRotateSlide && this.sliding && !this.rotating && (c.pointerType !== "mouse" || c.button === 1), { pointerId: d, timeStamp: p } = c; + if (w) + this.rotating = { initial: l, last: u, position: h, pointerId: d, timeStamp: p }, A.setPointerCapture(c.pointerId), this.dualPress = !1; else if (!this.sliding) { - const u = c.pointerType === "mouse" ? c.button : void 0; + const y = c.pointerType === "mouse" ? c.button : void 0; this.sliding = { - initial: w, - last: D, + initial: l, + last: u, position: h, - pointerId: l, - button: u, - timeStamp: d - }, A.setPointerCapture(c.pointerId), this.dualPress = this.rotating != null && d - this.rotating.timeStamp < Ro; + pointerId: d, + button: y, + timeStamp: p + }, A.setPointerCapture(c.pointerId), this.dualPress = this.rotating != null && p - this.rotating.timeStamp < dE; } }); - const r = (c) => { - var D, y; - ((D = this.rotating) == null ? void 0 : D.pointerId) === c.pointerId ? (this.rotating = null, A.releasePointerCapture(c.pointerId), this.dualPress && this.sliding && (A.releasePointerCapture(this.sliding.pointerId), this.sliding = null)) : ((y = this.sliding) == null ? void 0 : y.pointerId) === c.pointerId && (this.sliding = null, A.releasePointerCapture(c.pointerId), this.dualPress && this.rotating && (A.releasePointerCapture(this.rotating.pointerId), this.rotating = null)); - const h = this.getPointerPosition(c), w = this.lastUp; - if (this.lastUp = { position: h, time: c.timeStamp }, w && w.position.distanceTo(h) < this.doublePressDistance) { - const d = c.timeStamp - w.time; - d < this.doublePressLimitMs && (this.lastUp = null, this.doublePress({ position: h, intervalMs: d })); + const C = (c) => { + var u, w; + ((u = this.rotating) == null ? void 0 : u.pointerId) === c.pointerId ? (this.rotating = null, A.releasePointerCapture(c.pointerId), this.dualPress && this.sliding && (A.releasePointerCapture(this.sliding.pointerId), this.sliding = null)) : ((w = this.sliding) == null ? void 0 : w.pointerId) === c.pointerId && (this.sliding = null, A.releasePointerCapture(c.pointerId), this.dualPress && this.rotating && (A.releasePointerCapture(this.rotating.pointerId), this.rotating = null)); + const h = this.getPointerPosition(c), l = this.lastUp; + if (this.lastUp = { position: h, time: c.timeStamp }, l && l.position.distanceTo(h) < this.doublePressDistance) { + const p = c.timeStamp - l.time; + p < this.doublePressLimitMs && (this.lastUp = null, this.doublePress({ position: h, intervalMs: p })); } }; - document.addEventListener("pointerup", r), document.addEventListener("pointercancel", r), document.addEventListener("pointermove", (c) => { - var h, w; - ((h = this.rotating) == null ? void 0 : h.pointerId) === c.pointerId ? this.rotating.position = this.getPointerPosition(c) : ((w = this.sliding) == null ? void 0 : w.pointerId) === c.pointerId && (this.sliding.position = this.getPointerPosition(c)); + document.addEventListener("pointerup", C), document.addEventListener("pointercancel", C), document.addEventListener("pointermove", (c) => { + var h, l; + ((h = this.rotating) == null ? void 0 : h.pointerId) === c.pointerId ? this.rotating.position = this.getPointerPosition(c) : ((l = this.sliding) == null ? void 0 : l.pointerId) === c.pointerId && (this.sliding.position = this.getPointerPosition(c)); }), A.addEventListener("contextmenu", (c) => { c.preventDefault(); }), A.addEventListener("wheel", (c) => { this.scroll.add( - new a.Vector3(c.deltaX, c.deltaY, c.deltaZ) + new B.Vector3(c.deltaX, c.deltaY, c.deltaZ) ), c.preventDefault(); }); } getPointerPosition(A) { - const I = this.canvas.getBoundingClientRect(); - return new a.Vector2( - A.clientX - I.left, - A.clientY - I.top + const e = this.canvas.getBoundingClientRect(); + return new B.Vector2( + A.clientX - e.left, + A.clientY - e.top ); } - update(A, I) { + update(A, e) { if (!this.enable) return; if (this.dualPress && this.rotating && this.sliding) { - const Q = [ + const i = [ this.rotating.position.clone().sub(this.rotating.last), this.sliding.position.clone().sub(this.sliding.last) - ], C = Q[0].dot(Q[1]); - if (C >= 0.2) { - const E = Q[0].clone().add(Q[1]), t = new a.Vector3(E.x, -E.y, 0); - t.multiplyScalar(this.slideSpeed * (this.reverseSwipe ? 1 : -1)), t.applyQuaternion(I.quaternion), I.position.add(t), this.moveVelocity = t.clone().multiplyScalar(1 / A); - } else if (C <= -0.2) { - const E = this.sliding.last.clone().sub(this.rotating.last), t = E.length(); - E.multiplyScalar(1 / t).normalize(); - const i = new a.Vector2(-E.y, E.x), e = [Q[0].dot(E), Q[1].dot(E)], n = [Q[0].dot(i), Q[1].dot(i)], s = this.rotating.last.clone().add(this.sliding.last).multiplyScalar(0.5); - let o = new a.Vector3(); - if (I instanceof a.Camera) { - const y = new a.Vector2( - s.x / this.canvas.clientWidth * 2 - 1, - -(s.y / this.canvas.clientHeight) * 2 + 1 - ), l = new a.Raycaster(); - l.setFromCamera(y, I), o = l.ray.direction; + ], n = i[0].dot(i[1]); + if (n >= 0.2) { + const a = i[0].clone().add(i[1]), r = new B.Vector3(a.x, -a.y, 0); + r.multiplyScalar(this.slideSpeed * (this.reverseSwipe ? 1 : -1)), r.applyQuaternion(e.quaternion), e.position.add(r), this.moveVelocity = r.clone().multiplyScalar(1 / A); + } else if (n <= -0.2) { + const a = this.sliding.last.clone().sub(this.rotating.last), r = a.length(); + a.multiplyScalar(1 / r).normalize(); + const g = new B.Vector2(-a.y, a.x), I = [i[0].dot(a), i[1].dot(a)], Q = [i[0].dot(g), i[1].dot(g)], o = this.rotating.last.clone().add(this.sliding.last).multiplyScalar(0.5); + let E = new B.Vector3(); + if (e instanceof B.Camera) { + const w = new B.Vector2( + o.x / this.canvas.clientWidth * 2 - 1, + -(o.y / this.canvas.clientHeight) * 2 + 1 + ), d = new B.Raycaster(); + d.setFromCamera(w, e), E = d.ray.direction; } - const r = e[1] - e[0], c = o.multiplyScalar(r * this.slideSpeed); - I.position.add(c), this.moveVelocity = c.clone().multiplyScalar(1 / A); + const C = I[1] - I[0], c = E.multiplyScalar(C * this.slideSpeed); + e.position.add(c), this.moveVelocity = c.clone().multiplyScalar(1 / A); const h = [ - Math.atan(n[0] / (-0.5 * t)), - Math.atan(n[1] / (0.5 * t)) - ], w = 0.5 * (h[0] + h[1]), D = new a.Euler().setFromQuaternion( - I.quaternion, + Math.atan(Q[0] / (-0.5 * r)), + Math.atan(Q[1] / (0.5 * r)) + ], l = 0.5 * (h[0] + h[1]), u = new B.Euler().setFromQuaternion( + e.quaternion, "YXZ" ); - D.z = Math.max( + u.z = Math.max( -Math.PI, - Math.min(Math.PI, D.z + 0.5 * w) - ), I.quaternion.setFromEuler(D); + Math.min(Math.PI, u.z + 0.5 * l) + ), e.quaternion.setFromEuler(u); } this.rotating.last.copy(this.rotating.position), this.sliding.last.copy(this.sliding.position); } else { - const Q = new a.Vector3(); + const i = new B.Vector3(); if (this.rotating && !this.dualPress) { - const E = this.rotating.position.clone().sub(this.rotating.last); - this.rotating.last.copy(this.rotating.position), Q.set(E.x, E.y, 0), Q.multiplyScalar(this.rotateSpeed * (this.reverseRotate ? -1 : 1)), this.rotateVelocity = Q.clone().multiplyScalar(1 / A); + const a = this.rotating.position.clone().sub(this.rotating.last); + this.rotating.last.copy(this.rotating.position), i.set(a.x, a.y, 0), i.multiplyScalar(this.rotateSpeed * (this.reverseRotate ? -1 : 1)), this.rotateVelocity = i.clone().multiplyScalar(1 / A); } else this.rotateVelocity.multiplyScalar( Math.exp(-A / this.rotateInertia) - ), Q.addScaledVector(this.rotateVelocity, A); - const C = new a.Euler().setFromQuaternion( - I.quaternion, + ), i.addScaledVector(this.rotateVelocity, A); + const n = new B.Euler().setFromQuaternion( + e.quaternion, "YXZ" ); - if (C.y -= Q.x, C.x = Math.max( + if (n.y -= i.x, n.x = Math.max( -Math.PI / 2, - Math.min(Math.PI / 2, C.x - Q.y) - ), C.z *= Math.exp(-0 * A), I.quaternion.setFromEuler(C), this.sliding && !this.dualPress) { - const E = this.sliding.position.clone().sub(this.sliding.last); + Math.min(Math.PI / 2, n.x - i.y) + ), n.z *= Math.exp(-0 * A), e.quaternion.setFromEuler(n), this.sliding && !this.dualPress) { + const a = this.sliding.position.clone().sub(this.sliding.last); this.sliding.last.copy(this.sliding.position); - const t = this.sliding.button !== 2 ? new a.Vector3(E.x, 0, E.y) : new a.Vector3(E.x, -E.y, 0); - t.multiplyScalar(this.slideSpeed * (this.reverseSlide ? -1 : 1)), t.applyQuaternion(I.quaternion), I.position.add(t), this.moveVelocity = t.clone().multiplyScalar(1 / A); + const r = this.sliding.button !== 2 ? new B.Vector3(a.x, 0, a.y) : new B.Vector3(a.x, -a.y, 0); + r.multiplyScalar(this.slideSpeed * (this.reverseSlide ? -1 : 1)), r.applyQuaternion(e.quaternion), e.position.add(r), this.moveVelocity = r.clone().multiplyScalar(1 / A); } else this.moveVelocity.multiplyScalar( Math.exp(-A / this.moveInertia) - ), I.position.addScaledVector(this.moveVelocity, A); + ), e.position.addScaledVector(this.moveVelocity, A); } - const B = this.scroll.multiplyScalar(this.scrollSpeed); - B.set(B.x, B.z, B.y), this.reverseScroll && B.multiplyScalar(-1), B.applyQuaternion(I.quaternion), I.position.add(B), this.scroll.set(0, 0, 0); + const s = this.scroll.multiplyScalar(this.scrollSpeed); + s.set(s.x, s.z, s.y), this.reverseScroll && s.multiplyScalar(-1), s.applyQuaternion(e.quaternion), e.position.add(s), this.scroll.set(0, 0, 0); } } export { - $o as FINGER_TIPS, - Ir as ForgeControls, - tI as ForgeRenderer, - EI as ForgeViewpoint, - xo as FpsMovement, - HI as HANDS, - Ut as Hand, - gr as HandMovement, - Yt as JOINT_IDS, - Po as JOINT_INDEX, - Vg as JOINT_RADIUS, - wo as JOINT_SEGMENTS, - Do as JOINT_SEGMENT_STEPS, - _o as JOINT_TIPS, - jI as JointEnum, - Oo as NUM_JOINTS, - ZA as PackedSplats, - QI as PlyReader, - Lo as PointerControls, - II as Readback, - es as Sint8ToFloat, - NI as SplatAccumulator, - BI as SplatEdit, - Nn as SplatEditRgbaBlendMode, - kn as SplatEditSdf, - Gn as SplatEditSdfType, - Fn as SplatEdits, - rg as SplatFileType, - nI as SplatGenerator, - Zo as SplatLoader, - Ag as SplatMesh, - Jn as SplatModifier, - vo as SplatSkinning, - hg as SplatTransformer, - Qo as SpzReader, - jA as SpzWriter, - ss as Uint8ToFloat, - bI as VRButton, - Ar as XrHands, - Vo as constructAxes, - Wo as constructGrid, - To as constructSpherePoints, - Ko as dyno, - Rs as flipPixels, - jg as floatToSint8, - VA as floatToUint8, - MA as fromHalf, - jo as generators, - Nt as getSplatFileType, - zo as imageSplats, - ks as isAndroid, - ps as isMobile, - Fs as isOculus, - Js as pixelsToPngUrl, - JI as setPackedSplat, - Xo as textSplats, - Eg as toHalf, - qo as transcodeSpz, - AI as unpackSplat, - kt as unpackSplats, - Ho as utils + qE as FINGER_TIPS, + VE as ForgeControls, + se as ForgeRenderer, + ee as ForgeViewpoint, + ME as FpsMovement, + Ge as HANDS, + Fr as Hand, + _E as HandMovement, + Sr as JOINT_IDS, + HE as JOINT_INDEX, + zt as JOINT_RADIUS, + gE as JOINT_SEGMENTS, + oE as JOINT_SEGMENT_STEPS, + KE as JOINT_TIPS, + qe as JointEnum, + TE as NUM_JOINTS, + TA as PackedSplats, + Ae as PlyReader, + xE as PointerControls, + $t as Readback, + to as Sint8ToFloat, + ye as SplatAccumulator, + jt as SplatEdit, + hQ as SplatEditRgbaBlendMode, + uQ as SplatEditSdf, + CQ as SplatEditSdfType, + dQ as SplatEdits, + ft as SplatFileType, + ge as SplatGenerator, + kE as SplatLoader, + At as SplatMesh, + yQ as SplatModifier, + RE as SplatSkinning, + Et as SplatTransformer, + OQ as SpzReader, + ZA as SpzWriter, + Ao as Uint8ToFloat, + Re as VRButton, + zE as XrHands, + bE as constructAxes, + GE as constructGrid, + vE as constructSpherePoints, + NE as dyno, + yo as flipPixels, + Vt as floatToSint8, + qA as floatToUint8, + DA as fromHalf, + YE as generators, + dr as getSplatFileType, + JE as imageSplats, + uo as isAndroid, + lo as isMobile, + wo as isOculus, + po as pixelsToPngUrl, + fe as setPackedSplat, + LE as textSplats, + nt as toHalf, + UE as transcodeSpz, + me as unpackSplat, + yr as unpackSplats, + FE as utils }; diff --git a/dist/types/SplatLoader.d.ts b/dist/types/SplatLoader.d.ts index fa122ca..d961e18 100644 --- a/dist/types/SplatLoader.d.ts +++ b/dist/types/SplatLoader.d.ts @@ -11,7 +11,6 @@ export declare class SplatLoader extends Loader { } export declare enum SplatFileType { PLY = "ply", - WLG0 = "wlg0", SPZ = "spz", SPLAT = "splat", KSPLAT = "ksplat" diff --git a/docs/getting-started.md b/docs/getting-started.md index 63884cc..18cecf1 100644 --- a/docs/getting-started.md +++ b/docs/getting-started.md @@ -23,8 +23,8 @@ const camera = new THREE.PerspectiveCamera(75, window.innerWidth / window.innerH const renderer = new THREE.WebGLRenderer(); renderer.setSize(window.innerWidth, window.innerHeight); document.body.appendChild(renderer.domElement) - -const butterfly = new SplatMesh({ url: "../assets/basic/butterfly.wlg"}); +` +const butterfly = new SplatMesh({ url: "../assets/splats/butterfly.spz"}); butterfly.quaternion.set(1, 0, 0, 0); butterfly.position.set(0, 0, -1); scene.add(butterfly); diff --git a/docs/packed-splats.md b/docs/packed-splats.md index c52eccd..b2bf10e 100644 --- a/docs/packed-splats.md +++ b/docs/packed-splats.md @@ -6,9 +6,9 @@ A `PackedSplats` is a collection of Gaussian splats, packed into a format that t ```typescript const packedSplats = new PackedSplats({ - // Fetch PLY/WLG/SPZ/SPLAT/KSPLAT file from URL + // Fetch PLY/SPZ/SPLAT/KSPLAT file from URL url?: string; - // Decode raw PLY/WLG/SPZ/SPLAT/KSPLAT file bytes + // Decode raw PLY/SPZ/SPLAT/KSPLAT file bytes fileBytes?: Uint8Array | ArrayBuffer; // Override file type fileType?: SplatFileType; diff --git a/docs/splat-mesh.md b/docs/splat-mesh.md index 531c06f..7b77ca6 100644 --- a/docs/splat-mesh.md +++ b/docs/splat-mesh.md @@ -10,9 +10,9 @@ The usual Three.js properties `position`, `quaternion`, `rotation` behave as you ```typescript const splats = new SplatMesh({ - // Fetch PLY/WLG/SPZ/SPLAT/KSPLAT file from URL + // Fetch PLY/SPZ/SPLAT/KSPLAT file from URL url?: string; - // Decode raw PLY/WLG/SPZ/SPLAT/KSPLAT file bytes + // Decode raw PLY/SPZ/SPLAT/KSPLAT file bytes fileBytes?: Uint8Array | ArrayBuffer; // Override file type fileType?: SplatFileType; diff --git a/examples/viewer/index.html b/examples/viewer/index.html index cb4f796..ffc676c 100644 --- a/examples/viewer/index.html +++ b/examples/viewer/index.html @@ -61,7 +61,7 @@
- +