import * as Q from "three"; import { Loader as _r, FileLoader as Vr, Quaternion as je, Vector3 as vA, Color as Pe, Matrix4 as de } from "three"; let zA; const rs = typeof TextDecoder < "u" ? new TextDecoder("utf-8", { ignoreBOM: !0, fatal: !0 }) : { decode: () => { throw Error("TextDecoder not available"); } }; typeof TextDecoder < "u" && rs.decode(); let ft = null; function Zr() { return (ft === null || ft.byteLength === 0) && (ft = new Uint8Array(zA.memory.buffer)), ft; } function Or(t, A) { return t = t >>> 0, rs.decode(Zr().subarray(t, t + A)); } function Wr(t, A, e, s, i, n, a, r, g, I, B) { return zA.raycast_splats(t, A, e, s, i, n, a, r, g, I, B); } async function jr(t, A) { if (typeof Response == "function" && t instanceof Response) { if (typeof WebAssembly.instantiateStreaming == "function") try { 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 s; } const e = await t.arrayBuffer(); return await WebAssembly.instantiate(e, A); } else { const e = await WebAssembly.instantiate(t, A); return e instanceof WebAssembly.Instance ? { instance: e, module: t } : e; } } function Pr() { const t = {}; return t.wbg = {}, t.wbg.__wbg_buffer_609cc3eee51ed158 = function(A) { return A.buffer; }, t.wbg.__wbg_length_3b4f022188ae8db6 = function(A) { return A.length; }, t.wbg.__wbg_length_6ca527665d89694d = function(A) { return A.length; }, t.wbg.__wbg_length_8cfd2c6409af88ad = function(A) { return A.length; }, t.wbg.__wbg_new_9fee97a409b32b68 = function(A) { return new Uint16Array(A); }, t.wbg.__wbg_new_e3b321dcfef89fc7 = function(A) { return new Uint32Array(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); }, 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(Or(A, e)); }, t; } function Xr(t, A) { return zA = t.exports, gs.__wbindgen_wasm_module = A, ft = null, zA.__wbindgen_start(), zA; } async function gs(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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import.meta.url)); const A = Pr(); (typeof t == "string" || typeof Request == "function" && t instanceof Request || typeof URL == "function" && t instanceof URL) && (t = fetch(t)); const { instance: e, module: s } = await jr(await t, A); return Xr(e, s); } const YA = -9, $r = 9, _A = ($r - YA) / 254, Ag = 11, tg = 11, j = 1 << Ag, XA = 1 << tg, os = 1; function ot(t) { return t === "bool" || t === "bvec2" || t === "bvec3" || t === "bvec4"; } function It(t) { return t === "int" || t === "uint" || t === "float"; } function lA(t) { return t === "int" || t === "ivec2" || t === "ivec3" || t === "ivec4"; } function uA(t) { return t === "uint" || t === "uvec2" || t === "uvec3" || t === "uvec4"; } function Rt(t) { return t === "float" || t === "vec2" || t === "vec3" || t === "vec4"; } 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 tt(t) { return Rt(t) || Is(t); } function pt(t) { return t === "vec2" || t === "ivec2" || t === "uvec2"; } function yt(t) { return t === "vec3" || t === "ivec3" || t === "uvec3"; } function Ut(t) { return t === "vec4" || t === "ivec4" || t === "uvec4"; } function eg(t) { return pt(t) || yt(t) || Ut(t); } function et(t) { return t === "mat2" || t === "mat2x2"; } function st(t) { return t === "mat3" || t === "mat3x3"; } function it(t) { return t === "mat4" || t === "mat4x4"; } function Bs(t) { switch (t) { case "vec2": return "float"; case "vec3": return "float"; case "vec4": return "float"; case "ivec2": return "int"; case "ivec3": return "int"; case "ivec4": return "int"; case "uvec2": return "uint"; case "uvec3": return "uint"; case "uvec4": return "uint"; default: throw new Error(`Invalid vector type: ${t}`); } } function Qs(t) { switch (t) { case "vec2": case "ivec2": case "uvec2": return 2; case "vec3": case "ivec3": case "uvec3": return 3; case "vec4": case "ivec4": case "uvec4": return 4; default: throw new Error(`Invalid vector type: ${t}`); } } function sg(t) { if (It(t)) return "float"; if (pt(t)) return "vec2"; if (yt(t)) return "vec3"; if (Ut(t)) return "vec4"; throw new Error(`Invalid vector type: ${t}`); } function Cs(t) { if (It(t)) return "uint"; if (pt(t)) return "uvec2"; if (yt(t)) return "uvec3"; if (Ut(t)) return "uvec4"; throw new Error(`Invalid vector type: ${t}`); } function ig(t) { if (It(t)) return "int"; if (pt(t)) return "ivec2"; if (yt(t)) return "ivec3"; if (Ut(t)) return "ivec4"; throw new Error(`Invalid vector type: ${t}`); } function Es(t) { if (typeof t == "string") return t; if (typeof t == "object" && t.type) return t.type; throw new Error(`Invalid DynoType: ${String(t)}`); } function rA(t) { return Math.trunc(t).toString(); } function gA(t) { return `${Math.max(0, Math.trunc(t)).toString()}u`; } function H(t) { return t === Number.POSITIVE_INFINITY ? 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(({ inputs: g, outputs: I, compile: B }) => { var o, C; return { globals: (o = this.globals) == null ? void 0 : o.call(this, { inputs: g, outputs: I, compile: B }), statements: (C = this.statements) == null ? void 0 : C.call(this, { inputs: g, outputs: I, compile: B }) }; }); } get outputs() { const A = {}; for (const e in this.outTypes) A[e] = new q(this, e); return A; } apply(A) { return Object.assign(this.inputs, A), this.outputs; } compile({ inputs: A, outputs: e, compile: s }) { const i = [ `// ${this.constructor.name}(${Object.values(A).join(", ")}) => (${Object.values(e).join(", ")})` ], n = []; for (const I in e) { const B = e[I]; B && !s.declares.has(B) && (s.declares.add(B), n.push(I)); } const { globals: a, statements: r, uniforms: g } = this.generate({ inputs: A, outputs: e, compile: s }); for (const I of a ?? []) s.globals.add(I); for (const I in g) s.uniforms[I] = g[I]; this.update && s.updaters.push(this.update); for (const I of n) { const B = e[I]; B && (s.uniforms[B] || i.push(`${Ye(B, this.outTypes[I])};`)); } return r != null && r.length && (i.push("{"), i.push(...r.map((I) => s.indent + I)), i.push("}")), i; } } class HA 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 h, c; const i = {}, n = {}; for (const l in A) A[l] != null && (i[l] = new lt(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 ((h = this.globals) == null ? void 0 : h.call(this, { inputs: A, outputs: e, compile: s })) ?? []) s.globals.add(l); const g = [], I = /* @__PURE__ */ new Map(); function B(l, u, w) { let d = I.get(l); if (!d) { d = { sequence: s.nextSequence(), outNames: /* @__PURE__ */ new Map(), newOuts: /* @__PURE__ */ new Set() }, I.set(l, d); for (const y in l.inputs) { let p = l.inputs[y]; for (; p; ) { if (p instanceof $A) { p instanceof q && B(p.dyno, p.key); break; } p = p.dynoOut(); } } g.push(l); } u && (w || d.newOuts.add(u), d.outNames.set(u, w ?? `${u}_${d.sequence}`)); } for (const l of a.roots) B(l); for (const l in n) { let u = (r == null ? void 0 : r[l]) ?? n[l]; for (; u; ) { if (u instanceof $A) { u instanceof q && B(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 p in l.inputs) { let f = l.inputs[p]; for (; f; ) { if (f instanceof $A) { if (f instanceof lt) u[p] = f.getLiteral(); else if (f instanceof q) { const N = (c = I.get(f.dyno)) == null ? void 0 : c.outNames.get(f.key); if (!N) throw new Error( `Source not found for ${f.dyno.constructor.name}.${f.key}` ); u[p] = N; } break; } f = f.dynoOut(); } } const d = I.get(l) ?? { outNames: /* @__PURE__ */ new Map() }; for (const [p, f] of d.outNames.entries()) w[p] = f; const y = l.compile({ inputs: u, outputs: w, compile: s }); o.push(y); } const C = []; for (const l in e) n[l] instanceof lt && C.push( `${e[l]} = ${n[l].getLiteral()};` ); return C.length > 0 && o.push(C), { statements: o.flatMap((l, u) => u === 0 ? l : ["", ...l]) }; } } function SA(t, A, e, { update: s, globals: i } = {}) { return new HA({ inTypes: t, outTypes: A, construct: e, update: s, globals: i }); } function bt({ 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 Ye(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 ? `[${e}]` : ""}`; } function GA(t) { var n; let A = !1; const e = t.split(` `).map((a) => { const r = a.trimEnd(); return A ? r : r.length > 0 ? (A = !0, r) : null; }).filter((a) => a != null); for (; e.length > 0 && e[e.length - 1].length === 0; ) e.pop(); if (e.length === 0) return []; const s = (n = e[0].match(/^\s*/)) == null ? void 0 : n[0]; if (!s) return e; const i = new RegExp(`^${s}`); return e.map((a) => a.replace(i, "")); } function CA(t) { return GA(t).join(` `); } class S extends V { constructor({ a: A, outKey: e, outTypeFunc: s }) { const i = { a: _(A) }, n = s(_(A)), a = { [e]: n }; super({ inTypes: i, outTypes: a, inputs: { a: A } }), this.outKey = e; } dynoOut() { return new q(this, this.outKey); } } class X extends V { constructor({ a: A, b: e, outKey: s, outTypeFunc: i }) { const n = { a: _(A), b: _(e) }, a = i(_(A), _(e)), r = { [s]: a }; super({ inTypes: n, outTypes: r, inputs: { a: A, b: e } }), this.outKey = s; } dynoOut() { return new q(this, this.outKey); } } class Bt extends V { constructor({ a: A, b: e, c: s, outKey: i, outTypeFunc: n }) { const a = { a: _(A), b: _(e), c: _(s) }, r = n(_(A), _(e), _(s)), g = { [i]: r }; super({ inTypes: a, outTypes: g, inputs: { a: A, b: e, c: s } }), this.outKey = i; } dynoOut() { return new q(this, this.outKey); } } const P = { type: "Gsplat" }, vt = { type: "PackedSplats" }, rg = (t) => new us({ packedSplats: t }), kt = (t, A) => new ws({ packedSplats: t, index: A }), ls = (t, A, e, s) => new ps({ packedSplats: t, index: A, base: e, count: s }), nt = (t) => new ys({ gsplat: t }), At = ({ gsplat: t, flags: A, index: e, center: s, scales: i, quaternion: n, rgba: a, rgb: r, opacity: g, x: I, y: B, z: o, r: C, g: E, b: h }) => new Ds({ gsplat: t, flags: A, index: e, center: s, scales: i, quaternion: n, rgba: a, rgb: r, opacity: g, x: I, y: B, z: o, r: C, g: E, b: h }), me = (t) => new ms({ gsplat: t }), Je = (t, { scale: A, rotate: e, translate: s, recolor: i }) => new Ms({ gsplat: t, scale: A, rotate: e, translate: s, recolor: i }), xA = CA(` struct Gsplat { vec3 center; uint flags; vec3 scales; int index; vec4 quaternion; vec4 rgba; }; const uint GSPLAT_FLAG_ACTIVE = 1u << 0u; bool isGsplatActive(uint flags) { return (flags & GSPLAT_FLAG_ACTIVE) != 0u; } `), ne = CA(` struct PackedSplats { usampler2DArray texture; int numSplats; }; `); class us extends S { constructor({ packedSplats: A }) { super({ a: A, outKey: "numSplats", outTypeFunc: () => "int" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.numSplats} = ${e.a}.numSplats;` ]; } } const ds = CA(` bool readPackedSplat(usampler2DArray texture, int numSplats, int index, out Gsplat gsplat) { if ((index >= 0) && (index < numSplats)) { uvec4 packed = texelFetch(texture, splatTexCoord(index), 0); unpackSplat(packed, gsplat.center, gsplat.scales, gsplat.quaternion, gsplat.rgba); return true; } else { return false; } } `); class ws extends V { constructor({ packedSplats: A, index: e }) { super({ inTypes: { packedSplats: vt, index: "int" }, outTypes: { gsplat: P }, inputs: { packedSplats: A, index: e }, globals: () => [xA, ne, ds], statements: ({ inputs: s, outputs: i }) => { const { gsplat: n } = i; if (!n) return []; const { packedSplats: a, index: r } = s; let g; return a && r ? g = GA(` if (readPackedSplat(${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 { ${n}.flags = 0u; } `) : g = [`${n}.flags = 0u;`], g.push(`${n}.index = ${r ?? "0"};`), g; } }); } dynoOut() { return new q(this, "gsplat"); } } class ps extends V { constructor({ packedSplats: A, index: e, base: s, count: i }) { super({ inTypes: { packedSplats: vt, index: "int", base: "int", count: "int" }, outTypes: { gsplat: P }, inputs: { packedSplats: A, index: e, base: s, count: i }, globals: () => [xA, ne, ds], statements: ({ inputs: n, outputs: a }) => { const { gsplat: r } = a; if (!r) return []; const { packedSplats: g, index: I, base: B, count: o } = n; let C; return g && I && B && o ? C = GA(` ${r}.flags = 0u; if ((${I} >= ${B}) && (${I} < (${B} + ${o}))) { if (readPackedSplat(${g}.texture, ${g}.numSplats, ${I}, ${r})) { bool zeroSize = all(equal(${r}.scales, vec3(0.0, 0.0, 0.0))); ${r}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE; } } `) : C = [`${r}.flags = 0u;`], C.push(`${r}.index = ${I ?? "0"};`), C; } }); } dynoOut() { return new q(this, "gsplat"); } } class ys extends V { constructor({ gsplat: A }) { super({ inTypes: { gsplat: P }, outTypes: { flags: "uint", active: "bool", index: "int", center: "vec3", scales: "vec3", quaternion: "vec4", rgba: "vec4", rgb: "vec3", opacity: "float", x: "float", y: "float", z: "float", r: "float", g: "float", b: "float" }, inputs: { gsplat: A }, globals: () => [xA], statements: ({ inputs: e, outputs: s }) => { const { gsplat: i } = e, { flags: n, active: a, index: r, center: g, scales: I, quaternion: B, rgba: o, rgb: C, opacity: E, x: h, y: c, z: l, r: u, g: w, b: d } = s; return [ n ? `${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, B ? `${B} = ${i ? `${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, C ? `${C} = ${i ? `${i}.rgba.rgb` : "vec3(0.0, 0.0, 0.0)"};` : null, E ? `${E} = ${i ? `${i}.rgba.a` : "0.0"};` : null, h ? `${h} = ${i ? `${i}.center.x` : "0.0"};` : null, c ? `${c} = ${i ? `${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: B, y: o, z: C, r: E, g: h, b: c }) { super({ inTypes: { gsplat: P, 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: P }, inputs: { gsplat: A, flags: e, index: s, center: i, scales: n, quaternion: a, rgba: r, rgb: g, opacity: I, x: B, y: o, z: C, r: E, g: h, b: c }, globals: () => [xA], statements: ({ inputs: l, outputs: u }) => { const { gsplat: w } = u; if (!w) return []; const { gsplat: d, flags: y, index: p, center: f, scales: N, quaternion: m, rgba: D, rgb: U, opacity: x, x: M, y: b, z: F, r: G, g: R, b: J } = l; return [ `${w}.flags = ${y ?? (d ? `${d}.flags` : "0u")};`, `${w}.index = ${p ?? (d ? `${d}.index` : "0")};`, `${w}.center = ${f ?? (d ? `${d}.center` : "vec3(0.0, 0.0, 0.0)")};`, `${w}.scales = ${N ?? (d ? `${d}.scales` : "vec3(0.0, 0.0, 0.0)")};`, `${w}.quaternion = ${m ?? (d ? `${d}.quaternion` : "vec4(0.0, 0.0, 0.0, 1.0)")};`, `${w}.rgba = ${D ?? (d ? `${d}.rgba` : "vec4(0.0, 0.0, 0.0, 0.0)")};`, U ? `${w}.rgba.rgb = ${U};` : null, x ? `${w}.rgba.a = ${x};` : null, M ? `${w}.center.x = ${M};` : null, b ? `${w}.center.y = ${b};` : null, F ? `${w}.center.z = ${F};` : null, G ? `${w}.rgba.r = ${G};` : null, R ? `${w}.rgba.g = ${R};` : null, J ? `${w}.rgba.b = ${J};` : null ].filter(Boolean); } }); } dynoOut() { return new q(this, "gsplat"); } } const fs = CA(` vec3 gsplatNormal(vec3 scales, vec4 quaternion) { float minScale = min(scales.x, min(scales.y, scales.z)); vec3 normal; if (scales.z == minScale) { normal = vec3(0.0, 0.0, 1.0); } else if (scales.y == minScale) { normal = vec3(0.0, 1.0, 0.0); } else { normal = vec3(1.0, 0.0, 0.0); } return quatVec(quaternion, normal); } `); class ms extends S { constructor({ gsplat: A }) { super({ a: A, outKey: "normal", outTypeFunc: () => "vec3" }), this.globals = () => [xA, fs], this.statements = ({ inputs: e, outputs: s }) => [ `${s.normal} = gsplatNormal(${e.a}.scales, ${e.a}.quaternion);` ]; } } class Ms extends V { constructor({ gsplat: A, scale: e, rotate: s, translate: i, recolor: n }) { super({ inTypes: { gsplat: P, scale: "float", rotate: "vec4", translate: "vec3", recolor: "vec4" }, outTypes: { gsplat: P }, inputs: { gsplat: A, scale: e, rotate: s, translate: i, recolor: n }, globals: () => [xA], statements: ({ inputs: a, outputs: r, compile: g }) => { const { gsplat: I } = r; if (!I || !a.gsplat) return []; const { scale: B, rotate: o, translate: C, recolor: E } = a, h = g.indent; return [ `${I} = ${a.gsplat};`, `if (isGsplatActive(${I}.flags)) {`, B ? `${h}${I}.center *= ${B};` : null, o ? `${h}${I}.center = quatVec(${o}, ${I}.center);` : null, C ? `${h}${I}.center += ${C};` : null, B ? `${h}${I}.scales *= ${B};` : null, o ? `${h}${I}.quaternion = quatQuat(${o}, ${I}.quaternion);` : null, E ? `${h}${I}.rgba *= ${E};` : null, "}" ].filter(Boolean); } }); } dynoOut() { return new q(this, "gsplat"); } } const xs = (t) => new Ss({ gsplat: t }), gg = (t) => new Te({ rgba8: t }); class Ss extends V { constructor({ gsplat: A }) { super({ inTypes: { gsplat: P }, inputs: { gsplat: A }, globals: () => [xA], statements: ({ inputs: e, outputs: s }) => { const { output: i } = s; if (!i) return []; const { gsplat: n } = e; return n ? GA(` if (isGsplatActive(${n}.flags)) { ${i} = packSplat(${n}.center, ${n}.scales, ${n}.quaternion, ${n}.rgba); } else { ${i} = uvec4(0u, 0u, 0u, 0u); } `) : [`${i} = uvec4(0u, 0u, 0u, 0u);`]; } }); } dynoOut() { return new q(this, "output"); } } class Te extends V { constructor({ rgba8: A }) { super({ inTypes: { rgba8: "vec4" }, inputs: { rgba8: A }, statements: ({ inputs: e, outputs: s }) => [ `target = ${e.rgba8 ?? "vec4(0.0, 0.0, 0.0, 0.0)"};` ] }); } dynoOut() { return new q(this, "rgba8"); } } const og = (t, A, e) => new k({ key: t, type: A, value: e }), Ig = (t = !1, A) => new jt({ key: A, value: t }), Bg = (t = 0, A) => new Ns({ key: A, value: t }), Qg = (t = 0, A) => new Gt({ key: A, value: t }), LA = (t = 0, A) => new at({ key: A, value: t }), Cg = (t, A) => new Fs({ key: A, value: t }), Eg = (t, A) => new ks({ key: A, value: t }), cg = (t, A) => new Gs({ key: A, value: t }), hg = (t, A) => new Rs({ key: A, value: t }), lg = (t, A) => new Us({ key: A, value: t }), ug = (t, A) => new bs({ key: A, value: t }), dg = (t, A) => new vs({ key: A, value: t }), OA = (t, A) => new dt({ key: A, value: t }), wg = (t, A) => new Ls({ key: A, value: t }), pg = (t, A) => new Ys({ key: A, value: t }), yg = (t, A) => new Js({ key: A, value: t }), Dg = (t, A) => new Lt({ key: A, value: t }), fg = (t, A) => new Ts({ key: A, value: t }), mg = (t, A) => new Hs({ key: A, value: t }), Mg = (t, A) => new Ks({ key: A, value: t }), xg = (t, A) => new qs({ key: A, value: t }), Sg = (t, A) => new zs({ key: A, value: t }), Ng = (t, A) => new _s({ key: A, value: t }), Fg = (t, A) => new Vs({ key: A, value: t }), kg = (t, A) => new Zs({ key: A, value: t }), Gg = (t, A) => new Os({ key: A, value: t }), Rg = (t, A) => new Ws({ key: A, value: t }), Ug = (t, A) => new js({ key: A, value: t }), bg = (t, A) => new Ps({ key: A, value: t }), vg = (t, A) => new Xs({ key: A, value: t }), Lg = (t, A) => new $s({ key: A, value: t }), Yg = (t, A) => new Ai({ key: A, value: t }), Jg = (t, A) => new St({ key: A, value: t }), Tg = (t, A) => new ti({ key: t, value: A }), Hg = (t, A) => new ei({ key: A, value: t }), Kg = (t, A) => new si({ key: A, value: t }), qg = (t, A) => new ii({ key: A, value: t }), zg = (t, A) => new ni({ key: A, value: t }), _g = (t, A) => new ai({ key: A, value: t }), Vg = (t, A) => new ri({ key: A, value: t }), Zg = (t, A) => new gi({ key: A, value: t }), Og = (t, A) => new oi({ key: A, value: t }), Wg = (t, A) => new Ii({ key: A, value: t }), jg = (t, A) => new Bi({ key: A, value: t }); class k extends V { constructor({ key: A, type: e, count: s, value: i, update: n, globals: a }) { A = A ?? "value", super({ outTypes: { [A]: e }, update: () => { if (n) { const r = n(this.value); r !== void 0 && (this.value = r); } this.uniform.value = this.value; }, generate: ({ inputs: r, outputs: g }) => { const I = (a == null ? void 0 : a({ inputs: r, outputs: g })) ?? [], B = {}, o = g[A]; return o && (I.push(`uniform ${Ye(o, e, s)};`), B[o] = this.uniform), { globals: I, uniforms: B }; } }), this.type = e, this.count = s, this.value = i, this.uniform = { value: i }, this.outKey = A; } dynoOut() { return new q(this, this.outKey); } } class jt extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "bool", value: e, update: s }); } } class Ns extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "uint", value: e, update: s }); } } class Gt extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "int", value: e, update: s }); } } class at extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "float", value: e, update: s }); } } class Fs extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "bvec2", value: e, update: s }); } } class ks extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "uvec2", value: e, update: s }); } } class Gs extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "ivec2", value: e, update: s }); } } class Rs extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "vec2", value: e, update: s }); } } class Us extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "bvec3", value: e, update: s }); } } class bs extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "uvec3", value: e, update: s }); } } class vs extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "ivec3", value: e, update: s }); } } class dt extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "vec3", value: e, update: s }); } } class Ls extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "bvec4", value: e, update: s }); } } class Ys extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "uvec4", value: e, update: s }); } } class Js extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "ivec4", value: e, update: s }); } } class Lt extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "vec4", value: e, update: s }); } } class Ts extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "mat2", value: e, update: s }); } } class Hs extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "mat2x2", value: e, update: s }); } } class Ks extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "mat2x3", value: e, update: s }); } } class qs extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "mat2x4", value: e, update: s }); } } class zs extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "mat3", value: e, update: s }); } } class _s extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "mat3x2", value: e, update: s }); } } class Vs extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "mat3x3", value: e, update: s }); } } class Zs extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "mat3x4", value: e, update: s }); } } class Os extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "mat4", value: e, update: s }); } } class Ws extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "mat4x2", value: e, update: s }); } } class js extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "mat4x3", value: e, update: s }); } } class Ps extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "mat4x4", value: e, update: s }); } } class Xs extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "usampler2D", value: e, update: s }); } } class $s extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "isampler2D", value: e, update: s }); } } class Ai extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "sampler2D", value: e, update: s }); } } class St extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "usampler2DArray", value: e, update: s }); } } class ti extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "isampler2DArray", value: e, update: s }); } } class ei extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "sampler2DArray", value: e, update: s }); } } class si extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "usampler3D", value: e, update: s }); } } class ii extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "isampler3D", value: e, update: s }); } } class ni extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "sampler3D", value: e, update: s }); } } class ai extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "usamplerCube", value: e, update: s }); } } class ri extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "isamplerCube", value: e, update: s }); } } class gi extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "samplerCube", value: e, update: s }); } } class oi extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "sampler2DShadow", value: e, update: s }); } } class Ii extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "sampler2DArrayShadow", value: e, update: s }); } } class Bi extends k { constructor({ key: A, value: e, update: s }) { super({ key: A, type: "samplerCubeShadow", value: e, update: s }); } } var hA = Uint8Array, Et = Uint16Array, Pg = Int32Array, Qi = new hA([ 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3, 4, 4, 4, 4, 5, 5, 5, 5, 0, /* unused */ 0, 0, /* impossible */ 0 ]), Ci = new hA([ 0, 0, 0, 0, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8, 8, 9, 9, 10, 10, 11, 11, 12, 12, 13, 13, /* unused */ 0, 0 ]), Xg = new hA([16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15]), Ei = function(t, A) { for (var e = new Et(31), s = 0; s < 31; ++s) e[s] = A += 1 << t[s - 1]; for (var i = new Pg(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 }; }, ci = Ei(Qi, 2), hi = ci.b, $g = ci.r; hi[28] = 258, $g[258] = 28; var Ao = Ei(Ci, 0), to = Ao.b, Me = new Et(32768); for (var sA = 0; sA < 32768; ++sA) { var ZA = (sA & 43690) >> 1 | (sA & 21845) << 1; ZA = (ZA & 52428) >> 2 | (ZA & 13107) << 2, ZA = (ZA & 61680) >> 4 | (ZA & 3855) << 4, Me[sA] = ((ZA & 65280) >> 8 | (ZA & 255) << 8) >> 1; } var Nt = function(t, A, e) { for (var s = t.length, i = 0, n = new Et(A); i < s; ++i) t[i] && ++n[t[i] - 1]; var a = new Et(A); for (i = 1; i < A; ++i) a[i] = a[i - 1] + n[i - 1] << 1; var r; if (e) { r = new Et(1 << A); var g = 15 - A; for (i = 0; i < s; ++i) if (t[i]) for (var I = i << 4 | t[i], B = A - t[i], o = a[t[i] - 1]++ << B, C = o | (1 << B) - 1; o <= C; ++o) r[Me[o] >> g] = I; } else for (r = new Et(s), i = 0; i < s; ++i) t[i] && (r[i] = Me[a[t[i] - 1]++] >> 15 - t[i]); return r; }, Yt = new hA(288); for (var sA = 0; sA < 144; ++sA) Yt[sA] = 8; for (var sA = 144; sA < 256; ++sA) Yt[sA] = 9; for (var sA = 256; sA < 280; ++sA) Yt[sA] = 7; for (var sA = 280; sA < 288; ++sA) Yt[sA] = 8; var li = new hA(32); for (var sA = 0; sA < 32; ++sA) li[sA] = 5; var eo = /* @__PURE__ */ Nt(Yt, 9, 1), so = /* @__PURE__ */ Nt(li, 5, 1), we = function(t) { for (var A = t[0], e = 1; e < t.length; ++e) t[e] > A && (A = t[e]); return A; }, bA = function(t, A, e) { var s = A / 8 | 0; return (t[s] | t[s + 1] << 8) >> (A & 7) & e; }, pe = function(t, A) { var e = A / 8 | 0; return (t[e] | t[e + 1] << 8 | t[e + 2] << 16) >> (A & 7); }, ui = 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 hA(t.subarray(A, e)); }, io = [ "unexpected EOF", "invalid block type", "invalid length/literal", "invalid distance", "stream finished", "no stream handler", , "no callback", "invalid UTF-8 data", "extra field too long", "date not in range 1980-2099", "filename too long", "stream finishing", "invalid zip data" // determined by unknown compression method ], NA = function(t, A, e) { var s = new Error(A || io[t]); if (s.code = t, Error.captureStackTrace && Error.captureStackTrace(s, NA), !e) throw s; return s; }, no = function(t, A, e, s) { var i = t.length, n = 0; if (!i || A.f && !A.l) return e || new hA(0); var a = !e, r = a || A.i != 2, g = A.i; a && (e = new hA(i * 3)); var I = function(DA) { var Y = e.length; if (DA > Y) { var EA = new hA(Math.max(Y * 2, DA)); EA.set(e), e = EA; } }, B = A.f || 0, o = A.p || 0, C = A.b || 0, E = A.l, h = A.d, c = A.m, l = A.n, u = i * 8; do { if (!E) { B = bA(t, o, 1); var w = bA(t, o + 1, 3); if (o += 3, w) if (w == 1) E = eo, h = so, c = 9, l = 5; else if (w == 2) { var f = bA(t, o, 31) + 257, N = bA(t, o + 10, 15) + 4, m = f + bA(t, o + 5, 31) + 1; o += 14; for (var D = new hA(m), U = new hA(19), x = 0; x < N; ++x) U[Xg[x]] = bA(t, o + x * 3, 7); o += N * 3; for (var M = we(U), b = (1 << M) - 1, F = Nt(U, M, 1), x = 0; x < m; ) { var G = F[bA(t, o, b)]; o += G & 15; var d = G >> 4; if (d < 16) D[x++] = d; else { var R = 0, J = 0; for (d == 16 ? (J = 3 + bA(t, o, 3), o += 2, R = D[x - 1]) : d == 17 ? (J = 3 + bA(t, o, 7), o += 3) : d == 18 && (J = 11 + bA(t, o, 127), o += 7); J--; ) D[x++] = R; } } var $ = D.subarray(0, f), L = D.subarray(f); c = we($), l = we(L), E = Nt($, c, 1), h = Nt(L, l, 1); } else NA(1); else { var d = ui(o) + 4, y = t[d - 4] | t[d - 3] << 8, p = d + y; if (p > i) { g && NA(0); break; } r && I(C + y), e.set(t.subarray(d, p), C), A.b = C += y, A.p = o = p * 8, A.f = B; continue; } if (o > u) { g && NA(0); break; } } r && I(C + 131072); for (var z = (1 << c) - 1, Z = (1 << l) - 1, iA = o; ; iA = o) { var R = E[pe(t, o) & z], AA = R >> 4; if (o += R & 15, o > u) { g && NA(0); break; } if (R || NA(2), AA < 256) e[C++] = AA; else if (AA == 256) { iA = o, E = null; break; } else { var tA = AA - 254; if (AA > 264) { var x = AA - 257, W = Qi[x]; tA = bA(t, o, (1 << W) - 1) + hi[x], o += W; } var O = h[pe(t, o) & Z], v = O >> 4; O || NA(3), o += O & 15; var L = to[v]; if (v > 3) { var W = Ci[v]; L += pe(t, o) & (1 << W) - 1, o += W; } if (o > u) { g && NA(0); break; } r && I(C + 131072); var pA = C + tA; if (C < L) { var nA = n - L, yA = Math.min(L, pA); for (nA + C < 0 && NA(3); C < yA; ++C) e[C] = s[nA + C]; } for (; C < pA; ++C) e[C] = e[C - L]; } } A.l = E, A.p = iA, A.b = C, A.f = B, E && (B = 1, A.m = c, A.d = h, A.n = l); } while (!B); return C != e.length && a ? 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0 : Math.min( 255, Math.max( 0, Math.round((Math.log(n) - YA) / _A) + 1 ) ), D = a === 0 ? 0 : Math.min( 255, Math.max( 0, Math.round((Math.log(a) - YA) / _A) + 1 ) ), U = r === 0 ? 0 : Math.min( 255, Math.max( 0, Math.round((Math.log(r) - YA) / _A) + 1 ) ), x = rt(e), M = rt(s), b = rt(i), F = A * 4; t[F] = l | u << 8 | w << 16 | d << 24, t[F + 1] = x | M << 16, t[F + 2] = b | p << 16 | f << 24, t[F + 3] = m | D << 8 | U << 16 | N << 24; } function uo(t, A, e, s, i) { const n = rt(e), a = rt(s), r = rt(i), g = A * 4; t[g + 1] = n | a << 16, t[g + 2] = r | t[g + 2] & 4294901760; } function wo(t, A, e, s, i) { const n = e === 0 ? 0 : Math.min( 255, Math.max( 0, Math.round((Math.log(e) - YA) / _A) + 1 ) ), a = s === 0 ? 0 : Math.min( 255, Math.max( 0, Math.round((Math.log(s) - YA) / _A) + 1 ) ), r = i === 0 ? 0 : Math.min( 255, Math.max( 0, Math.round((Math.log(i) - YA) / _A) + 1 ) ), g = A * 4; t[g + 3] = n | a << 8 | r << 16 | t[g + 3] & 4278190080; } function po(t, A, e, s, i, n) { const a = He( new Q.Quaternion(e, s, i, n) ), r = a & 255, g = a >>> 8 & 255, I = a >>> 16 & 255, B = A * 4; t[B + 2] = t[B + 2] & 65535 | r << 16 | g << 24, t[B + 3] = t[B + 3] & 16777215 | I << 24; } function yo(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 Do(t, A, e) { const s = qA(e), i = A * 4; t[i] = t[i] & 16777215 | s << 24; } const fo = new Q.Vector3(), mo = new Q.Vector3(), Mo = new Q.Quaternion(), xo = new Q.Color(), So = { center: fo, scales: mo, quaternion: Mo, color: xo, opacity: 0 }; function Se(t, A) { const e = So, 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( MA(n & 65535), MA(n >>> 16 & 65535), MA(a & 65535) ); const g = r & 255; e.scales.x = g === 0 ? 0 : Math.exp(YA + (g - 1) * _A); const I = r >>> 8 & 255; e.scales.y = I === 0 ? 0 : Math.exp(YA + (I - 1) * _A); const B = r >>> 16 & 255; e.scales.z = B === 0 ? 0 : Math.exp(YA + (B - 1) * _A); const o = a >>> 16 & 65535 | r >>> 8 & 16711680; return Si(o, e.quaternion), e; } function mA(t) { const A = j, e = Math.max( os, 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 No(t) { const A = j, e = Math.max( os, Math.min(XA, Math.ceil(t / A)) ), s = Math.ceil(t / (A * e)); return A * e * s; } function Fo() { return navigator.maxTouchPoints > 0 ? !0 : /Mobi|Android|iPhone|iPad|iPod|Opera Mini|IEMobile/.test( navigator.userAgent ); } function ko() { return /Android/.test(navigator.userAgent); } function Go() { return /Oculus/.test(navigator.userAgent); } function Ro(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 t; } function Uo(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 n = i.createImageData(A, e); return n.data.set(t), i.putImageData(n, 0, 0), s.toDataURL("image/png"); } function yi(t) { const A = new Q.Clock(t.autoStart); return A.startTime = t.startTime, A.oldTime = t.oldTime, A.elapsedTime = t.elapsedTime, A.running = t.running, A; } function bo(t) { return Object.fromEntries( Object.entries(t).filter(([A, e]) => e !== void 0) ); } const Di = CA(` precision highp float; in vec3 position; void main() { gl_Position = vec4(position.xy, 0.0, 1.0); } `); function fi(t) { const A = new Q.Vector3(); for (const e of t) A.add(e); return A.divideScalar(t.length); } function mi(t) { if (t.length === 0) return new Q.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 Mi(t, A) { const e = new Q.Vector3(0, 0, 0).applyMatrix4(t), s = new Q.Vector3(0, 0, 0).applyMatrix4(A), i = new Q.Vector3(0, 0, -1).applyMatrix4(t).sub(e).normalize(), n = new Q.Vector3(0, 0, -1).applyMatrix4(A).sub(s).normalize(), a = e.distanceTo(s), r = i.dot(n); return { distance: a, coincidence: r }; } function vo({ matrix1: t, matrix2: A, maxDistance: e }) { const s = new Q.Vector3(0, 0, 0).applyMatrix4(t), i = new Q.Vector3(0, 0, 0).applyMatrix4(A); return s.distanceTo(i) <= e; } function Lo({ matrix1: t, matrix2: A, maxDistance: e, minCoincidence: s }) { const { distance: i, coincidence: n } = Mi(t, A); return i <= e && (s == null || n >= s); } function xi(t, A) { const [e, s] = [new Q.Vector3(), new Q.Quaternion()], [i, n] = [new Q.Vector3(), new Q.Quaternion()]; t.decompose(e, s, new Q.Vector3()), A.decompose(i, n, new Q.Vector3()); const a = e.distanceTo(i), r = Math.abs(s.dot(n)); return { distance: a, coorient: r }; } function Pt({ matrix1: t, matrix2: A, maxDistance: e, minCoorient: s }) { const { distance: i, coorient: n } = xi(t, A); return i <= e && (s == null || n >= s); } function Yo(t, A = 1e-3) { return Math.abs(t) < A ? 0 : Math.sign(t); } function Jo(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 To(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 He(t) { const A = t.clone().normalize(); A.w < 0 && A.set(-A.x, -A.y, -A.z, -A.w); const e = 2 * Math.acos(A.w), s = Math.sqrt( A.x * A.x + A.y * A.y + A.z * A.z ), i = s < 1e-6 ? new Q.Vector3(1, 0, 0) : new Q.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 E = a; a = (1 - Math.abs(r)) * (a >= 0 ? 1 : -1), r = (1 - Math.abs(E)) * (r >= 0 ? 1 : -1); } const g = a * 0.5 + 0.5, I = r * 0.5 + 0.5, B = Math.round(g * 255), o = Math.round(I * 255); return Math.round(e * (255 / Math.PI)) << 16 | o << 8 | B; } function Si(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)), B = Math.max(-I, 0); r += r >= 0 ? -B : B, g += g >= 0 ? -B : B; const o = new Q.Vector3(r, g, I).normalize(), E = i / 255 * Math.PI * 0.5, h = Math.sin(E), c = Math.cos(E); return A.set(o.x * h, o.y * h, o.z * h, c), A; } function Ho(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), B = (i + Math.PI) / (2 * Math.PI), o = (a + Math.PI) / (2 * Math.PI), C = (I + Math.PI) / (2 * Math.PI), E = Math.round(B * 255), h = Math.round(o * 255); return Math.round(C * 255) << 16 | h << 8 | E; } function Ko(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, B = r * (2 * Math.PI) - Math.PI, o = Math.cos(g * 0.5), C = Math.sin(g * 0.5), E = Math.cos(I * 0.5), h = Math.sin(I * 0.5), c = Math.cos(B * 0.5), l = Math.sin(B * 0.5); return A.w = o * E * c + C * h * l, A.x = C * E * c - o * h * l, A.y = o * h * c + C * E * l, A.z = o * E * l - C * h * c, A.normalize(), A; } 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 qo(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, B = n << I & 4294967295; if (t[s + g] |= B, r > g * 32 + 32) { const o = n >>> 32 - I & 4294967295; t[s + g + 1] |= o; } } } function zo(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 _o(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, B = n << I & 4294967295; if (t[s + g] |= B, r > g * 32 + 32) { const o = n >>> 32 - I & 4294967295; t[s + g + 1] |= o; } } } function Ni(t, A) { const e = []; let s = 0, i = null; const n = new di((g, I) => { if (e.push(g), s += g.length, I || s >= A) { const B = new Uint8Array(s); let o = 0; for (const C of e) B.set(C, o), o += C.length; i = B.slice(0, A); } }), 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 (i == null && (n.push(new Uint8Array(), !0), i == null)) throw new Error("Failed to decompress partial gzip"); return i; } class Fi { constructor({ fileBytes: A, chunkBytes: e = 64 * 1024 }) { this.fileBytes = A, this.chunkBytes = e, this.offset = 0, this.chunks = [], this.totalBytes = 0, this.gunzip = new di((s, i) => { this.chunks.push(s), this.totalBytes += s.length; }); } read(A) { for (; this.totalBytes < A && this.offset < this.fileBytes.length; ) { const n = Math.min( this.offset + this.chunkBytes, this.fileBytes.length ); 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}` ); 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class Ke { constructor({ graph: A, inputs: e, outputs: s, template: i }) { this.graph = A, this.template = i, this.inputs = e ?? {}, this.outputs = s ?? {}; const n = new hs({ 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: n }); this.shader = i.generate({ globals: n.globals, statements: a }), this.uniforms = n.uniforms, this.updaters = n.updaters; } prepareMaterial() { return Vo(this); } update() { for (const A of this.updaters) A(); } } class qe { constructor(A) { 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, e.index), this.between = A.substring( e.index + e[0].length, s.index ), this.after = A.substring( s.index + s[0].length ), this.indent = s[1]; } generate({ globals: A, statements: e }) { return this.before + Array.from(A).join(` `) + this.between + e.map((s) => this.indent + s).join(` `) + this.after; } } const $e = /* @__PURE__ */ new Map(); function Vo(t) { let A = $e.get(t); return A || (A = new Q.RawShaderMaterial({ glslVersion: Q.GLSL3, vertexShader: Di, fragmentShader: t.shader, uniforms: t.uniforms }), $e.set(t, A), A); } function ze(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 Zo(t, A) { return ze(t, A, "sub"); } function Oo(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 Wo(t, A) { return ze(t, A, "div"); } function jo(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 Xo(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 II(t) { return t; } function BI(t) { return t; } function QI(t) { return t; } function CI(t) { return t; } function ki(t, A, e = "min") { if (t === A) return t; if (A === "float") { if (Rt(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 EI(t, A) { return ki(t, A, "max"); } function cI(t, A, e) { if (A === "float") { if (Rt(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 hI(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 lI(t, A) { if (t === A || A === "float") return A; throw new Error(`Invalid step types: ${t}, ${A}`); } function uI(t, A, e) { if (t === A && (t === e || t === "float")) return e; throw new Error(`Invalid smoothstep types: ${t}, ${A}, ${e}`); } function Gi(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 dI(t) { return Gi(t, "isInf"); } const fA = (t, A) => new vi({ a: t, b: A }), wt = (t, A) => new Li({ a: t, b: A }), QA = (t, A) => new Yi({ a: t, b: A }), Zt = (t, A) => new Ji({ a: t, b: A }), Ne = (t, A) => new Ti({ a: t, b: A }), Ri = (t, A) => new Hi({ a: t, b: A }), wI = (t) => new Ki({ a: t }).outputs, _e = (t) => new qi({ a: t }), pI = (t) => new zi({ a: t }), yI = (t) => new _i({ a: t }), DI = (t) => new Vi({ a: t }), fI = (t) => new Zi({ a: t }), mI = (t) => new Oi({ a: t }), MI = (t) => new Wi({ a: t }), Ot = (t) => new ji({ a: t }), xI = (t, A) => new Pi({ a: t, b: A }), SI = (t) => new Xi({ a: t }), NI = (t) => new $i({ a: t }), FI = (t) => new An({ a: t }), kI = (t) => new tn({ a: t }), GI = (t) => new en({ a: t }), RI = (t) => new sn({ a: t }), UI = (t) => new nn({ a: t }), bI = (t, A) => new an({ a: t, b: A }), Ui = (t, A) => new rn({ a: t, b: A }), vI = (t, A, e) => new gn({ a: t, min: A, max: e }), bi = (t, A, e) => new on({ a: t, b: A, t: e }), LI = (t, A) => new In({ edge: t, x: A }), YI = (t, A, e) => new Bn({ edge0: t, edge1: A, x: e }), JI = (t) => new Qn({ a: t }), TI = (t) => new Cn({ a: t }); class vi extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outKey: "sum", outTypeFunc: ze }), this.statements = ({ inputs: s, outputs: i }) => [`${i.sum} = ${s.a} + ${s.b};`]; } } class Li extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outKey: "difference", outTypeFunc: Zo }), this.statements = ({ inputs: s, outputs: i }) => [`${i.difference} = ${s.a} - ${s.b};`]; } } class Yi extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outKey: "product", outTypeFunc: Oo }), this.statements = ({ inputs: s, outputs: i }) => [`${i.product} = ${s.a} * ${s.b};`]; } } class Ji extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outKey: "quotient", outTypeFunc: Wo }), this.statements = ({ inputs: s, outputs: i }) => [`${i.quotient} = ${s.a} / ${s.b};`]; } } class Ti extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outKey: "remainder", outTypeFunc: jo }), this.statements = ({ inputs: s, outputs: i }) => [`${i.remainder} = ${s.a} % ${s.b};`]; } } class Hi extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outKey: "remainder", outTypeFunc: Po }), this.statements = ({ inputs: s, outputs: i }) => [`${i.remainder} = mod(${s.a}, ${s.b});`]; } } class Ki extends V { constructor({ a: A }) { const e = { a: _(A) }, s = e.a, i = { fract: s, integer: s }; super({ inTypes: e, outTypes: i, inputs: { a: A } }), this.statements = ({ inputs: n, outputs: a }) => [`${a.fract} = modf(${n.a}, ${a.integer});`]; } } class qi extends S { constructor({ a: A }) { super({ a: A, outKey: "neg", outTypeFunc: Xo }), this.statements = ({ inputs: e, outputs: s }) => [`${s.neg} = -${e.a};`]; } } class zi extends S { constructor({ a: A }) { super({ a: A, outKey: "abs", outTypeFunc: $o }), this.statements = ({ inputs: e, outputs: s }) => [`${s.abs} = abs(${e.a});`]; } } class _i extends S { constructor({ a: A }) { super({ a: A, outKey: "sign", outTypeFunc: AI }), this.statements = ({ inputs: e, outputs: s }) => [`${s.sign} = sign(${e.a});`]; } } class Vi extends S { constructor({ a: A }) { super({ a: A, outKey: "floor", outTypeFunc: tI }), this.statements = ({ inputs: e, outputs: s }) => [`${s.floor} = floor(${e.a});`]; } } class Zi extends S { constructor({ a: A }) { super({ a: A, outKey: "ceil", outTypeFunc: eI }), this.statements = ({ inputs: e, outputs: s }) => [`${s.ceil} = ceil(${e.a});`]; } } class Oi extends S { constructor({ a: A }) { super({ a: A, outKey: "trunc", outTypeFunc: sI }), this.statements = ({ inputs: e, outputs: s }) => [`${s.trunc} = trunc(${e.a});`]; } } class Wi extends S { constructor({ a: A }) { super({ a: A, outKey: "round", outTypeFunc: iI }), this.statements = ({ inputs: e, outputs: s }) => [`${s.round} = round(${e.a});`]; } } class ji extends S { constructor({ a: A }) { super({ a: A, outKey: "fract", outTypeFunc: nI }), this.statements = ({ inputs: e, outputs: s }) => [`${s.fract} = fract(${e.a});`]; } } class Pi extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outKey: "power", outTypeFunc: aI }), this.statements = ({ inputs: s, outputs: i }) => [`${i.power} = pow(${s.a}, ${s.b});`]; } } class Xi extends S { constructor({ a: A }) { super({ a: A, outKey: "exp", outTypeFunc: rI }), this.statements = ({ inputs: e, outputs: s }) => [`${s.exp} = exp(${e.a});`]; } } class $i extends S { constructor({ a: A }) { super({ a: A, outKey: "exp2", outTypeFunc: gI }), this.statements = ({ inputs: e, outputs: s }) => [`${s.exp2} = exp2(${e.a});`]; } } class An extends S { constructor({ a: A }) { super({ a: A, outKey: "log", outTypeFunc: oI }), this.statements = ({ inputs: e, outputs: s }) => [`${s.log} = log(${e.a});`]; } } class tn extends S { constructor({ a: A }) { super({ a: A, outKey: "log2", outTypeFunc: II }), this.statements = ({ inputs: e, outputs: s }) => [`${s.log2} = log2(${e.a});`]; } } class en extends S { constructor({ a: A }) { super({ a: A, outKey: "sqr", outTypeFunc: BI }), this.statements = ({ inputs: e, outputs: s }) => [`${s.sqr} = ${e.a} * ${e.a};`]; } } class sn extends S { constructor({ a: A }) { super({ a: A, outKey: "sqrt", outTypeFunc: QI }), this.statements = ({ inputs: e, outputs: s }) => [`${s.sqrt} = sqrt(${e.a});`]; } } class nn extends S { constructor({ a: A }) { super({ a: A, outKey: "inversesqrt", outTypeFunc: CI }), this.statements = ({ inputs: e, outputs: s }) => [`${s.inversesqrt} = inversesqrt(${e.a});`]; } } class an extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outKey: "min", outTypeFunc: ki }), this.statements = ({ inputs: s, outputs: i }) => [`${i.min} = min(${s.a}, ${s.b});`]; } } class rn extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outKey: "max", outTypeFunc: EI }), this.statements = ({ inputs: s, outputs: i }) => [`${i.max} = max(${s.a}, ${s.b});`]; } } class gn extends Bt { constructor({ a: A, min: e, max: s }) { super({ a: A, b: e, c: s, outKey: "clamp", outTypeFunc: cI }), this.statements = ({ inputs: i, outputs: n }) => { const { a, b: r, c: g } = i; return [`${n.clamp} = clamp(${a}, ${r}, ${g});`]; }; } } class on extends Bt { constructor({ a: A, b: e, t: s }) { super({ a: A, b: e, c: s, outKey: "mix", outTypeFunc: hI }), this.statements = ({ inputs: i, outputs: n }) => { const { a, b: r, c: g } = i; return [`${n.mix} = mix(${a}, ${r}, ${g});`]; }; } } class In extends X { constructor({ edge: A, x: e }) { super({ a: A, b: e, outKey: "step", outTypeFunc: lI }), this.statements = ({ inputs: s, outputs: i }) => { const { a: n, b: a } = s; return [`${i.step} = step(${n}, ${a});`]; }; } } class Bn extends Bt { constructor({ edge0: A, edge1: e, x: s }) { super({ a: A, b: e, c: s, outKey: "smoothstep", outTypeFunc: uI }), this.statements = ({ inputs: i, outputs: n }) => { const { a, b: r, c: g } = i; return [`${n.smoothstep} = smoothstep(${a}, ${r}, ${g});`]; }; } } class Qn extends S { constructor({ a: A }) { super({ a: A, outKey: "isNan", outTypeFunc: Gi }), this.statements = ({ inputs: e, outputs: s }) => [`${s.isNan} = isNan(${e.a});`]; } } class Cn extends S { constructor({ a: A }) { super({ a: A, outKey: "isInf", outTypeFunc: dI }), this.statements = ({ inputs: e, outputs: s }) => [`${s.isInf} = isInf(${e.a});`]; } } const HI = (t, A) => new cn({ a: t, b: A }), KI = (t, A) => new hn({ a: t, b: A }), qI = (t, A) => new ln({ a: t, b: A }), zI = (t) => new un({ a: t }), _I = (t, A) => new dn({ a: t, b: A }), VI = (t, A) => new wn({ a: t, b: A }), ZI = (t, A) => new pn({ a: t, b: A }), En = (t, A) => new yn({ a: t, b: A }), OI = (t, A) => new Dn({ a: t, b: A }), WI = (t, A) => new fn({ a: t, b: A }), jI = (t) => new mn({ a: t }), PI = (t) => new Mn({ a: t }), Ve = (t, A, e) => new xn({ cond: t, t: A, f: e }), XI = (t) => new Nn({ a: t }); class cn extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outTypeFunc: (s, i) => s, outKey: "and" }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.and === "bool" ? [`${i.and} = ${s.a} && ${s.b};`] : [`${i.and} = ${s.a} & ${s.b};`]; } } class hn extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outTypeFunc: (s, i) => s, outKey: "or" }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.or === "bool" ? [`${i.or} = ${s.a} || ${s.b};`] : [`${i.or} = ${s.a} | ${s.b};`]; } } class ln extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outTypeFunc: (s, i) => s, outKey: "xor" }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.xor === "bool" ? [`${i.xor} = ${s.a} ^^ ${s.b};`] : [`${i.xor} = ${s.a} ^ ${s.b};`]; } } class un extends S { constructor({ a: A }) { super({ a: A, outTypeFunc: (e) => e, outKey: "not" }), this.statements = ({ inputs: e, outputs: s }) => this.outTypes.not === "bool" ? [`${s.not} = !${e.a};`] : [`${s.not} = not(${e.a});`]; } } class dn extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outTypeFunc: (s, i) => re(s, "lessThan"), outKey: "lessThan" }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.lessThan === "bool" ? [`${i.lessThan} = ${s.a} < ${s.b};`] : [`${i.lessThan} = lessThan(${s.a}, ${s.b});`]; } } class wn extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outTypeFunc: (s, i) => re(s, "lessThanEqual"), outKey: "lessThanEqual" }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.lessThanEqual === "bool" ? [`${i.lessThanEqual} = ${s.a} <= ${s.b};`] : [ `${i.lessThanEqual} = lessThanEqual(${s.a}, ${s.b});` ]; } } class pn extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outTypeFunc: (s, i) => re(s, "greaterThan"), outKey: "greaterThan" }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.greaterThan === "bool" ? [`${i.greaterThan} = ${s.a} > ${s.b};`] : [ `${i.greaterThan} = greaterThan(${s.a}, ${s.b});` ]; } } class yn extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outTypeFunc: (s, i) => re(s, "greaterThanEqual"), outKey: "greaterThanEqual" }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.greaterThanEqual === "bool" ? [`${i.greaterThanEqual} = ${s.a} >= ${s.b};`] : [ `${i.greaterThanEqual} = greaterThanEqual(${s.a}, ${s.b});` ]; } } class Dn extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outTypeFunc: Sn, outKey: "equal" }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.equal === "bool" ? [`${i.equal} = ${s.a} == ${s.b};`] : [`${i.equal} = equal(${s.a}, ${s.b});`]; } } class fn extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outTypeFunc: $I, outKey: "notEqual" }), this.statements = ({ inputs: s, outputs: i }) => this.outTypes.notEqual === "bool" ? [`${i.notEqual} = ${s.a} != ${s.b};`] : [`${i.notEqual} = notEqual(${s.a}, ${s.b});`]; } } class mn extends S { constructor({ a: A }) { super({ a: A, outTypeFunc: (e) => "bool", outKey: "any" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.any} = any(${e.a});`]; } } class Mn extends S { constructor({ a: A }) { super({ a: A, outTypeFunc: (e) => "bool", outKey: "all" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.all} = all(${e.a});`]; } } class xn extends Bt { constructor({ cond: A, t: e, f: s }) { super({ a: A, b: e, c: s, outKey: "select", outTypeFunc: (i, n, a) => n }), this.statements = ({ inputs: i, outputs: n }) => { const { a, b: r, c: g } = i; return [`${n.select} = (${a}) ? (${r}) : (${g});`]; }; } } function re(t, A) { if (It(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 Sn(t, A = "equal") { if (It(t)) return "bool"; if (ot(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 $I(t) { return Sn(t, "notEqual"); } function AB(t) { if (ot(t)) return "bool"; if (lA(t)) return "int"; if (uA(t)) return "uint"; throw new Error(`Invalid compXor type: ${t}`); } class Nn extends S { constructor({ a: A }) { const e = AB(_(A)); super({ a: A, outTypeFunc: (s) => e, outKey: "compXor" }), this.statements = ({ inputs: s, outputs: i }) => { if (It(this.outTypes.compXor)) return [`${i.compXor} = ${s.a};`]; const a = (pt(e) ? ["x", "y"] : yt(e) ? ["x", "y", "z"] : ["x", "y", "z", "w"]).map((g) => `${s.a}.${g}`), r = ot(e) ? "^^" : "^"; return [`${i.compXor} = ${a.join(` ${r} `)};`]; }; } } const tB = (t) => new vn({ value: t }), eB = (t) => new Ln({ value: t }), sB = (t) => new Yn({ value: t }), Fn = (t) => new Jn({ value: t }), iB = (t) => new Tn({ value: t }), nB = (t) => new Hn({ value: t }), aB = (t) => new Kn({ value: t }), rB = (t) => new qn({ value: t }), gB = (t) => new zn({ value: t }), oB = (t) => new _n({ value: t }), IB = (t) => new Vn({ value: t }), BB = (t) => new Zn({ value: t }), QB = (t) => new On({ value: t }), kn = (t) => new Wn({ value: t }), gt = (t) => new jn({ value: t }), Gn = (t) => new Pn({ value: t }), CB = (t) => new Xn({ value: t }), EB = (t) => new $n({ value: t }), cB = (t) => new Aa({ value: t }), Rn = (t) => new ta({ value: t }), hB = (t) => new ea({ value: t }), lB = (t) => new sa({ value: t }), uB = (t) => new ia({ value: t }), dB = (t) => new na({ value: t }), wB = (t) => new aa({ value: t }), pB = (t) => new ra({ value: t }), yB = (t) => new ga({ value: t }), Un = (t) => new oa({ value: t }), DB = (t) => new Ia({ value: t }), bn = (t) => new Ba({ value: t }); class oA extends S { constructor({ value: A, outType: e, outKey: s }) { super({ a: A, outTypeFunc: () => e, outKey: s }), this.statements = ({ inputs: i, outputs: n }) => [ `${n[s]} = ${Es(e)}(${i.a});` ]; } } class vn extends oA { constructor({ value: A }) { super({ value: A, outType: "bool", outKey: "bool" }); } } class Ln extends oA { constructor({ value: A }) { super({ value: A, outType: "int", outKey: "int" }); } } class Yn extends oA { constructor({ value: A }) { super({ value: A, outType: "uint", outKey: "uint" }); } } class Jn extends oA { constructor({ value: A }) { super({ value: A, outType: "float", outKey: "float" }); } } class Tn extends oA { constructor({ value: A }) { super({ value: A, outType: "bvec2", outKey: "bvec2" }); } } class Hn extends oA { constructor({ value: A }) { super({ value: A, outType: "bvec3", outKey: "bvec3" }); } } class Kn extends oA { constructor({ value: A }) { super({ value: A, outType: "bvec4", outKey: "bvec4" }); } } class qn extends oA { constructor({ value: A }) { super({ value: A, outType: "ivec2", outKey: "ivec2" }); } } class zn extends oA { constructor({ value: A }) { super({ value: A, outType: "ivec3", outKey: "ivec3" }); } } class _n extends oA { constructor({ value: A }) { super({ value: A, outType: "ivec4", outKey: "ivec4" }); } } class Vn extends oA { constructor({ value: A }) { super({ value: A, outType: "uvec2", outKey: "uvec2" }); } } class Zn extends oA { constructor({ value: A }) { super({ value: A, outType: "uvec3", outKey: "uvec3" }); } } class On extends oA { constructor({ value: A }) { super({ value: A, outType: "uvec4", outKey: "uvec4" }); } } class Wn extends oA { constructor({ value: A }) { super({ value: A, outType: "vec2", outKey: "vec2" }); } } class jn extends oA { constructor({ value: A }) { super({ value: A, outType: "vec3", outKey: "vec3" }); } } class Pn extends oA { constructor({ value: A }) { super({ value: A, outType: "vec4", outKey: "vec4" }); } } class Xn extends oA { constructor({ value: A }) { super({ value: A, outType: "mat2", outKey: "mat2" }); } } class $n extends oA { constructor({ value: A }) { super({ value: A, outType: "mat3", outKey: "mat3" }); } } class Aa extends oA { constructor({ value: A }) { super({ value: A, outType: "mat4", outKey: "mat4" }); } } class ta extends S { constructor({ value: A }) { super({ a: A, outKey: "int", outTypeFunc: () => "int" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.int} = floatBitsToInt(${e.a});`]; } } class ea extends S { constructor({ value: A }) { super({ a: A, outKey: "uint", outTypeFunc: () => "uint" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.uint} = floatBitsToUint(${e.a});`]; } } class sa extends S { constructor({ value: A }) { super({ a: A, outKey: "float", outTypeFunc: () => "float" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.float} = intBitsToFloat(${e.a});`]; } } class ia extends S { constructor({ value: A }) { super({ a: A, outKey: "float", outTypeFunc: () => "float" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.float} = uintBitsToFloat(${e.a});`]; } } class na extends S { constructor({ value: A }) { super({ a: A, outKey: "uint", outTypeFunc: () => "uint" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.uint} = packSnorm2x16(${e.a});`]; } } class aa extends S { constructor({ value: A }) { super({ a: A, outKey: "vec2", outTypeFunc: () => "vec2" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.vec2} = unpackSnorm2x16(${e.a});`]; } } class ra extends S { constructor({ value: A }) { super({ a: A, outKey: "uint", outTypeFunc: () => "uint" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.uint} = packUnorm2x16(${e.a});`]; } } class ga extends S { constructor({ value: A }) { super({ a: A, outKey: "vec2", outTypeFunc: () => "vec2" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.vec2} = unpackUnorm2x16(${e.a});`]; } } class oa extends S { constructor({ value: A }) { super({ a: A, outKey: "uint", outTypeFunc: () => "uint" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.uint} = packHalf2x16(${e.a});`]; } } class Ia extends S { constructor({ value: A }) { super({ a: A, outKey: "vec2", outTypeFunc: () => "vec2" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.vec2} = unpackHalf2x16(${e.a});`]; } } class Ba extends S { constructor({ value: A }) { super({ a: A, outKey: "rgba8", outTypeFunc: () => "vec4" }), this.statements = ({ inputs: e, outputs: s }) => [ `uvec4 uRgba = uvec4(${e.a} & 0xffu, (${e.a} >> 8u) & 0xffu, (${e.a} >> 16u) & 0xffu, (${e.a} >> 24u) & 0xffu);`, `${s.rgba8} = vec4(uRgba) / 255.0;` ]; } } const fB = (t) => new ca({ a: t }), mB = (t, A) => new ha({ a: t, b: A }), Qa = (t, A) => new la({ a: t, b: A }), MB = (t, A) => new ua({ a: t, b: A }), Ca = (t) => new da({ a: t }), xB = (t, A, e) => new ya({ a: t, b: A, c: e }), SB = (t, A) => new Da({ incident: t, normal: A }), NB = (t, A, e) => new fa({ incident: t, normal: A, eta: e }), ut = (t) => new Fa({ vector: t }), JA = ({ vector: t, vectorType: A, x: e, y: s, z: i, w: n, r: a, g: r, b: g, a: I }) => new ka({ vector: t, vectorType: A, x: e, y: s, z: i, w: n, r: a, g: r, b: g, a: I }), FB = (t) => new wa({ a: t }), Ea = (t, A) => new pa({ a: t, b: A }), kB = (t, A) => new Ga({ vector: t, select: A }), GB = (t, A) => new ma({ a: t, b: A }), RB = (t, A) => new Ma({ a: t, b: A }), UB = (t) => new xa({ a: t }), bB = (t) => new Sa({ a: t }), vB = (t) => new Na({ a: t }); class ca extends S { constructor({ a: A }) { super({ a: A, outTypeFunc: (e) => "float", outKey: "length" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.length} = length(${e.a});` ]; } } class ha extends X { 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}, ${s.b});` ]; } } class la extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outKey: "dot", outTypeFunc: (s, i) => "float" }), this.statements = ({ inputs: s, outputs: i }) => [ `${i.dot} = dot(${s.a}, ${s.b});` ]; } } class ua extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outKey: "cross", outTypeFunc: (s, i) => "vec3" }), this.statements = ({ inputs: s, outputs: i }) => [ `${i.cross} = cross(${s.a}, ${s.b});` ]; } } class da extends S { constructor({ a: A }) { super({ a: A, outTypeFunc: (e) => e, outKey: "normalize" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.normalize} = normalize(${e.a});` ]; } } function LB(t) { if (t === "vec3") return "vec2"; if (t === "vec4") return "vec3"; throw new Error("Invalid type"); } class wa extends S { constructor({ a: A }) { super({ a: A, outTypeFunc: (e) => LB(e), outKey: "projected" }), this.statements = ({ inputs: e, outputs: s }) => { if (this.inTypes.a === "vec3") return [`${s.projected} = ${e.a}.xy / ${e.a}.z;`]; if (this.inTypes.a === "vec4") return [`${s.projected} = ${e.a}.xyz / ${e.a}.w;`]; throw new Error("Invalid type"); }; } } function YB(t) { if (t === "float") return "vec2"; if (t === "vec2") return "vec3"; if (t === "vec3") return "vec4"; throw new Error("Invalid type"); } class pa extends X { constructor({ a: A, b: e }) { const s = _(A), i = YB(s); super({ a: A, b: e, outKey: "extend", outTypeFunc: () => i }), this.statements = ({ inputs: n, outputs: a }) => [ `${a.extend} = ${i}(${n.a}, ${n.b});` ]; } } class ya extends Bt { constructor({ a: A, b: e, c: s }) { super({ a: A, b: e, c: s, outKey: "forward", outTypeFunc: (i, n, a) => i }), this.statements = ({ inputs: i, outputs: n }) => [ `${n.forward} = faceforward(${i.a}, ${i.b}, ${i.c});` ]; } } class Da extends X { constructor({ incident: A, normal: e }) { super({ a: A, b: e, outKey: "reflection", outTypeFunc: (s, i) => s }), this.statements = ({ inputs: s, outputs: i }) => [ `${i.reflection} = reflect(${s.a}, ${s.b});` ]; } } class fa extends Bt { constructor({ incident: A, normal: e, eta: s }) { super({ a: A, b: e, c: s, outKey: "refraction", outTypeFunc: (i, n, a) => i }), this.statements = ({ inputs: i, outputs: n }) => [ `${n.refraction} = refract(${i.a}, ${i.b}, ${i.c});` ]; } } class ma extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outKey: "product", outTypeFunc: (s, i) => s }), this.statements = ({ inputs: s, outputs: i }) => [ `${i.product} = matrixCompMult(${A}, ${e});` ]; } } function JB(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}, ${A}`); } class Ma extends X { constructor({ a: A, b: e }) { super({ a: A, b: e, outKey: "outer", outTypeFunc: JB }), this.statements = ({ inputs: s, outputs: i }) => [ `${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: ${t}`); } class xa extends S { constructor({ a: A }) { super({ a: A, outKey: "transpose", outTypeFunc: TB }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.transpose} = transpose(${e.a});` ]; } } class Sa extends S { constructor({ a: A }) { super({ a: A, outKey: "det", outTypeFunc: (e) => "float" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.det} = determinant(${e.a});` ]; } } class Na extends S { constructor({ a: A }) { super({ a: A, outKey: "inverse", outTypeFunc: (e) => e }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.inverse} = inverse(${A});` ]; } } function HB(t) { const A = (e) => e; switch (t) { case "vec2": return 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: ${t}`); } } class Fa extends V { constructor({ vector: A }) { const s = { vector: _(A) }, i = HB(s.vector); super({ inTypes: s, outTypes: i, inputs: { vector: A } }), this.statements = ({ inputs: n, outputs: a }) => { const { x: r, y: g, z: I, w: B, r: o, g: C, b: E, a: h } = a, { vector: c } = n; return [ r ? `${r} = ${c}.x;` : null, g ? `${g} = ${c}.y;` : null, I ? `${I} = ${c}.z;` : null, B ? `${B} = ${c}.w;` : null, o ? `${o} = ${c}.r;` : null, C ? `${C} = ${c}.g;` : null, E ? `${E} = ${c}.b;` : null, h ? `${h} = ${c}.a;` : null ].filter(Boolean); }; } } class ka extends V { constructor({ vector: A, vectorType: e, x: s, y: i, z: n, w: a, r, g, b: I, a: B }) { if (!A && !e) throw new Error("Either vector or vectorType must be provided"); const o = e ?? _(A), C = Bs(o), E = Qs(o), h = { vector: o, x: C, y: C, r: C, g: C }, c = { vector: A, x: s, y: i, r, g }; E >= 3 && (Object.assign(h, { z: C, b: C }), Object.assign(c, { z: n, b: I })), E >= 4 && (Object.assign(h, { w: C, a: C }), Object.assign(c, { w: a, a: B })), super({ inTypes: h, outTypes: { vector: o }, inputs: c }), this.statements = ({ inputs: l, outputs: u }) => { const { vector: w } = u, { vector: d, x: y, y: p, z: f, w: N, r: m, g: D, b: U, a: x } = l, M = [ `${w}.x = ${y ?? m ?? (d ? `${d}.x` : mt(C))};`, `${w}.y = ${p ?? D ?? (d ? `${d}.y` : mt(C))};` ]; return E >= 3 && M.push( `${w}.z = ${f ?? U ?? (d ? `${d}.z` : mt(C))};` ), E >= 4 && M.push( `${w}.w = ${N ?? x ?? (d ? `${d}.w` : mt(C))};` ), M; }; } dynoOut() { return new q( this, "vector" ); } } function KB(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 : lA(t) ? e = A.length === 1 ? "int" : A.length === 2 ? "ivec2" : A.length === 3 ? "ivec3" : A.length === 4 ? "ivec4" : null : uA(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: ${A}`); return e; } class Ga extends S { constructor({ vector: A, select: e }) { super({ a: A, outKey: "swizzle", outTypeFunc: (s) => KB(s, e) }), this.statements = ({ inputs: s, outputs: i }) => [ `${i.swizzle} = ${s.a}.${e};` ]; } } const qB = (t, A, e) => new Ja({ index: t, from: A, to: e }), zB = (t) => new Dt({ value: t }), _B = (t) => new FA({ state: t }), VB = (t) => new kA({ state: t }), Ra = (t) => new Ta({ value: t }), Ua = (t) => new Ha({ value: t }), ba = (t) => new Ka({ value: t }), va = (t) => new qa({ value: t }), ZB = (t) => new za({ value: t }), OB = (t) => new _a({ value: t }), La = (t) => new Va({ value: t }), Fe = (t) => new Za({ value: t }), Ya = (t, A, e) => new Oa({ z: t, zNear: A, zFar: e }).outputs.depth; class Ja extends V { constructor({ from: A, to: e, index: s }) { super({ inTypes: { from: "int", to: "int", index: "int" }, outTypes: { index: "int" }, inputs: { from: A, to: e, index: s }, statements: ({ inputs: i, outputs: n }) => [ `${n.index} = ${i.index} - ${i.from} + ${i.to};` ] }); } dynoOut() { return new q(this, "index"); } } class FA extends V { constructor({ state: A }) { const e = _(A); super({ inTypes: { state: e }, outTypes: { state: "uint" }, inputs: { state: A }, globals: () => [ CA(` uint pcg_next(uint state) { return state * 747796405u + 2891336453u; } `) ], statements: ({ inputs: s, outputs: i }) => { const n = e === "uint" ? `${s.state}` : e === "int" ? `uint(${s.state})` : `floatBitsToUint(${s.state})`; return [`${i.state} = pcg_next(${n});`]; } }); } dynoOut() { return new q(this, "state"); } } class kA extends V { constructor({ state: A }) { super({ inTypes: { state: "uint" }, outTypes: { hash: "uint" }, inputs: { state: A }, globals: () => [ CA(` uint pcg_hash(uint state) { uint hash = ((state >> ((state >> 28u) + 4u)) ^ state) * 277803737u; return (hash >> 22u) ^ hash; } `) ], statements: ({ inputs: e, outputs: s }) => [ `${s.hash} = pcg_hash(${e.state});` ] }); } dynoOut() { return new q(this, "hash"); } } class Dt extends V { constructor({ value: A }) { const e = _(A), s = Cs(e); super({ inTypes: { value: e }, outTypes: { state: "uint" }, inputs: { value: A }, globals: () => [ CA(` uint pcg_mix(uint value) { return value; } uint pcg_mix(uvec2 value) { return value.x + 0x9e3779b9u * value.y; } uint pcg_mix(uvec3 value) { return value.x + 0x9e3779b9u * value.y + 0x85ebca6bu * value.z; } uint pcg_mix(uvec4 value) { return value.x + 0x9e3779b9u * value.y + 0x85ebca6bu * value.z + 0xc2b2ae35u * value.w; } `) ], statements: ({ inputs: i, outputs: n }) => { const a = uA(e) ? `${i.value}` : lA(e) ? `${s}(${i.value})` : `floatBitsToUint(${i.value})`; return [ `${s} bits = ${a};`, `${n.state} = pcg_mix(bits);` ]; } }); } dynoOut() { return new q(this, "state"); } } class Ta extends HA { constructor({ value: A }) { super({ inTypes: { value: _(A) }, outTypes: { hash: "uint" }, inputs: { value: A }, construct: ({ value: e }) => { if (!e) throw new Error("value is required"); let s = new Dt({ value: e }).outputs.state; return s = new FA({ state: s }).outputs.state, new kA({ state: s }).outputs; } }); } dynoOut() { return new q(this, "hash"); } } class Ha extends HA { constructor({ value: A }) { super({ inTypes: { value: _(A) }, outTypes: { hash: "uvec2" }, inputs: { value: A }, construct: ({ value: e }) => { if (!e) throw new Error("value is required"); let s = new Dt({ value: e }).outputs.state; s = new FA({ state: s }).outputs.state; const i = new kA({ state: s }).outputs.hash; s = new FA({ state: s }).outputs.state; const n = new kA({ state: s }).outputs.hash; return { hash: JA({ vectorType: "uvec2", x: i, y: n }) }; } }); } dynoOut() { return new q(this, "hash"); } } class Ka extends HA { constructor({ value: A }) { super({ inTypes: { value: _(A) }, outTypes: { hash: "uvec3" }, inputs: { value: A }, construct: ({ value: e }) => { if (!e) throw new Error("value is required"); let s = new Dt({ value: e }).outputs.state; s = new FA({ state: s }).outputs.state; const i = new kA({ state: s }).outputs.hash; s = new FA({ state: s }).outputs.state; const n = new kA({ state: s }).outputs.hash; s = new FA({ state: s }).outputs.state; const a = new kA({ state: s }).outputs.hash; return { hash: JA({ vectorType: "uvec3", x: i, y: n, z: a }) }; } }); } dynoOut() { return new q(this, "hash"); } } class qa extends HA { constructor({ value: A }) { super({ inTypes: { value: _(A) }, outTypes: { hash: "uvec4" }, inputs: { value: A }, construct: ({ value: e }) => { if (!e) throw new Error("value is required"); let s = new Dt({ value: e }).outputs.state; s = new FA({ state: s }).outputs.state; const i = new kA({ state: s }).outputs.hash; s = new FA({ state: s }).outputs.state; const n = new kA({ state: s }).outputs.hash; s = new FA({ state: s }).outputs.state; const a = new kA({ state: s }).outputs.hash; s = new FA({ state: s }).outputs.state; const r = new kA({ state: s }).outputs.hash; return { hash: JA({ vectorType: "uvec4", x: i, y: n, z: a, w: r }) }; } }); } dynoOut() { return new q(this, "hash"); } } class za extends HA { constructor({ value: A }) { super({ inTypes: { value: _(A) }, outTypes: { hash: "float" }, inputs: { value: A }, construct: ({ value: e }) => { if (!e) throw new Error("value is required"); const s = Ra(e); return { hash: QA(Fn(s), K("float", 1 / 2 ** 32)) }; } }); } dynoOut() { return new q(this, "hash"); } } class _a extends HA { constructor({ value: A }) { super({ inTypes: { value: _(A) }, outTypes: { hash: "vec2" }, inputs: { value: A }, construct: ({ value: e }) => { if (!e) throw new Error("value is required"); const s = Ua(e); return { hash: QA(kn(s), K("float", 1 / 2 ** 32)) }; } }); } dynoOut() { return new q(this, "hash"); } } class Va extends HA { constructor({ value: A }) { super({ inTypes: { value: _(A) }, outTypes: { hash: "vec3" }, inputs: { value: A }, construct: ({ value: e }) => { if (!e) throw new Error("value is required"); const s = ba(e); return { hash: QA(gt(s), K("float", 1 / 2 ** 32)) }; } }); } dynoOut() { return new q(this, "hash"); } } class Za extends HA { constructor({ value: A }) { super({ inTypes: { value: _(A) }, outTypes: { hash: "vec4" }, inputs: { value: A }, construct: ({ value: e }) => { if (!e) throw new Error("value is required"); const s = va(e); return { hash: QA(Gn(s), K("float", 1 / 2 ** 32)) }; } }); } dynoOut() { return new q(this, "hash"); } } class Oa extends V { constructor({ z: A, zNear: e, zFar: s }) { super({ inTypes: { z: "float", zNear: "float", zFar: "float" }, outTypes: { depth: "float" }, inputs: { z: A, zNear: e, zFar: s }, statements: ({ inputs: i, outputs: n }) => [ `float clamped = clamp(${i.z}, ${i.zNear}, ${i.zFar});`, `${n.depth} = (log2(clamped + 1.0) - log2(${i.zNear} + 1.0)) / (log2(${i.zFar} + 1.0) - log2(${i.zNear} + 1.0));` ] }); } dynoOut() { return new q(this, "depth"); } } const Wa = (t, { scale: A, scales: e, rotate: s, translate: i }) => new Pa({ position: t, scale: A, scales: e, rotate: s, translate: i }).outputs.position, ja = (t, { scale: A, scales: e, rotate: s }) => new Xa({ dir: t, scale: A, scales: e, rotate: s }).outputs.dir, WB = (t, { rotate: A }) => new $a({ quaternion: t, rotate: A }).outputs.quaternion; class Pa extends V { constructor({ position: A, scale: e, scales: s, rotate: i, translate: n }) { super({ inTypes: { position: "vec3", scale: "float", scales: "vec3", rotate: "vec4", translate: "vec3" }, outTypes: { position: "vec3" }, inputs: { position: A, scale: e, scales: s, rotate: i, translate: n }, statements: ({ inputs: a, outputs: r }) => { const { position: g } = r; if (!g) return []; const { scale: I, scales: B, rotate: o, translate: C } = a; return [ `${g} = ${a.position ?? "vec3(0.0, 0.0, 0.0)"};`, I ? `${g} *= ${I};` : null, B ? `${g} *= ${B};` : null, o ? `${g} = quatVec(${o}, ${g});` : null, C ? `${g} += ${C};` : null ].filter(Boolean); } }); } } class Xa extends V { constructor({ dir: A, scale: e, scales: s, rotate: i }) { super({ inTypes: { dir: "vec3", scale: "float", scales: "vec3", rotate: "vec4" }, outTypes: { dir: "vec3" }, inputs: { dir: A, scale: e, scales: s, rotate: i }, statements: ({ inputs: n, outputs: a }) => { const { dir: r } = a; if (!r) return []; const { scale: g, scales: I, rotate: B } = n; return [ `${r} = ${n.dir ?? "vec3(0.0, 0.0, 0.0)"};`, g ? `${r} *= ${g};` : null, I ? `${r} *= ${I};` : null, B ? `${r} = quatVec(${B}, ${r});` : null ].filter(Boolean); } }); } } class $a extends V { constructor({ quaternion: A, rotate: e }) { super({ inTypes: { quaternion: "vec4", rotate: "vec4" }, outTypes: { quaternion: "vec4" }, inputs: { quaternion: A, rotate: e }, statements: ({ inputs: s, outputs: i }) => { const { quaternion: n } = i; return n ? [ `${n} = ${s.quaternion ?? "vec4(0.0, 0.0, 0.0, 1.0)"};`, e ? `${n} = quatQuat(${s.rotate}, ${n});` : null ].filter(Boolean) : []; } }); } } const jB = () => { throw new Error("Not implemented"); }, PB = () => { throw new Error("Not implemented"); }, XB = () => { throw new Error("Not implemented"); }, $B = () => { throw new Error("Not implemented"); }, AQ = () => { throw new Error("Not implemented"); }, tQ = () => { throw new Error("Not implemented"); }, eQ = (t, A) => new Ar({ texture: t, lod: A }), sQ = (t, A, e) => new tr({ texture: t, coord: A, bias: e }), iQ = (t, A, e) => new er({ texture: t, coord: A, lod: e }); class Ar extends V { constructor({ texture: A, lod: e }) { const s = _(A); super({ inTypes: { texture: s, lod: "int" }, outTypes: { size: sr(s) }, inputs: { texture: A, lod: e }, statements: ({ inputs: i, outputs: n }) => [ `${n.size} = textureSize(${i.texture}, ${i.lod ?? "0"});` ] }); } dynoOut() { return new q(this, "size"); } } class tr extends V { constructor({ texture: A, coord: e, bias: s }) { const i = _(A); super({ inTypes: { texture: i, coord: nQ(i), bias: "float" }, outTypes: { sample: ir(i) }, inputs: { texture: A, coord: e, bias: s }, statements: ({ inputs: n, outputs: a }) => [ `${a.sample} = texture(${n.texture}, ${n.coord}${n.bias ? `, ${n.bias}` : ""});` ] }); } dynoOut() { return new q(this, "sample"); } } class er extends V { constructor({ texture: A, coord: e, lod: s }) { const i = _(A); super({ inTypes: { texture: i, coord: sr(i), lod: "int" }, outTypes: { texel: ir(i) }, inputs: { texture: A, coord: e, lod: s }, statements: ({ inputs: n, outputs: a }) => [ `${a.texel} = texelFetch(${n.texture}, ${n.coord}, ${n.lod ?? "0"});` ] }); } dynoOut() { return new q(this, "texel"); } } function sr(t) { switch (t) { 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: ${t}`); } } function nQ(t) { switch (t) { 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: ${t}`); } } function ir(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: ${t}`); } } const aQ = (t) => new nr({ degrees: t }), rQ = (t) => new ar({ radians: t }), ke = (t) => new rr({ radians: t }), gQ = (t) => new gr({ radians: t }), oQ = (t) => new or({ radians: t }), IQ = (t) => new Ir({ sin: t }), BQ = (t) => new Br({ cos: t }), QQ = (t) => new Qr({ tan: t }), CQ = (t, A) => new Cr({ y: t, x: A }), EQ = (t) => new Er({ x: t }), cQ = (t) => new cr({ x: t }), hQ = (t) => new hr({ x: t }), lQ = (t) => new lr({ x: t }), uQ = (t) => new ur({ x: t }), dQ = (t) => new dr({ x: t }); class nr extends S { constructor({ degrees: A }) { super({ a: A, outTypeFunc: (e) => e, outKey: "radians" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.radians} = radians(${e.a});` ]; } } class ar extends S { constructor({ radians: A }) { super({ a: A, outTypeFunc: (e) => e, outKey: "degrees" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.degrees} = degrees(${e.a});` ]; } } class rr extends S { constructor({ radians: A }) { super({ a: A, outTypeFunc: (e) => e, outKey: "sin" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.sin} = sin(${e.a});` ]; } } class gr extends S { constructor({ radians: A }) { super({ a: A, outTypeFunc: (e) => e, outKey: "cos" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.cos} = cos(${e.a});` ]; } } class or extends S { constructor({ radians: A }) { super({ a: A, outTypeFunc: (e) => e, outKey: "tan" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.tan} = tan(${e.a});` ]; } } class Ir extends S { constructor({ sin: A }) { super({ a: A, outTypeFunc: (e) => e, outKey: "asin" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.asin} = asin(${e.a});` ]; } } class Br extends S { constructor({ cos: A }) { super({ a: A, outTypeFunc: (e) => e, outKey: "acos" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.acos} = acos(${e.a});` ]; } } class Qr extends S { constructor({ tan: A }) { super({ a: A, outTypeFunc: (e) => e, outKey: "atan" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.atan} = atan(${e.a});` ]; } } class Cr extends X { constructor({ y: A, x: e }) { super({ a: A, b: e, outTypeFunc: (s, i) => s, outKey: "atan2" }), this.statements = ({ inputs: s, outputs: i }) => [ `${i.atan2} = atan2(${s.a}, ${s.b});` ]; } } class Er extends S { constructor({ x: A }) { super({ a: A, outTypeFunc: (e) => e, outKey: "sinh" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.sinh} = sinh(${e.a});` ]; } } class cr extends S { constructor({ x: A }) { super({ a: A, outTypeFunc: (e) => e, outKey: "cosh" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.cosh} = cosh(${e.a});` ]; } } class hr extends S { constructor({ x: A }) { super({ a: A, outTypeFunc: (e) => e, outKey: "tanh" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.tanh} = tanh(${e.a});` ]; } } class lr extends S { constructor({ x: A }) { super({ a: A, outTypeFunc: (e) => e, outKey: "asinh" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.asinh} = asinh(${e.a});` ]; } } class ur extends S { constructor({ x: A }) { super({ a: A, outTypeFunc: (e) => e, outKey: "acosh" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.acosh} = acosh(${e.a});` ]; } } class dr extends S { constructor({ x: A }) { super({ a: A, outTypeFunc: (e) => e, outKey: "atanh" }), this.statements = ({ inputs: e, outputs: s }) => [ `${s.atanh} = atanh(${e.a});` ]; } } const KC = /* @__PURE__ */ Object.freeze(/* @__PURE__ */ Object.defineProperty({ __proto__: null, Abs: zi, Acos: Br, Acosh: ur, Add: vi, All: Mn, And: cn, Any: mn, Asin: Ir, Asinh: lr, Atan: Qr, Atan2: Cr, Atanh: dr, BVec2: Tn, BVec3: Hn, BVec4: Kn, BinaryOp: X, Bool: vn, Ceil: Zi, Clamp: gn, Combine: ka, CombineGsplat: Ds, CompMult: ma, CompXor: Nn, Compilation: hs, Cos: gr, Cosh: cr, Cross: ua, Degrees: ar, Determinant: Sa, Distance: ha, Div: Ji, Dot: la, Dyno: V, DynoBlock: HA, DynoBool: jt, DynoBvec2: Fs, DynoBvec3: Us, DynoBvec4: Ls, DynoConst: cs, DynoFloat: at, DynoInt: Gt, DynoIsampler2D: $s, DynoIsampler2DArray: ti, DynoIsampler3D: ii, DynoIsamplerCube: ri, DynoIvec2: Gs, DynoIvec3: vs, DynoIvec4: Js, DynoLiteral: lt, DynoMat2: Ts, DynoMat2x2: Hs, DynoMat2x3: Ks, DynoMat2x4: qs, DynoMat3: zs, DynoMat3x2: _s, DynoMat3x3: Vs, DynoMat3x4: Zs, DynoMat4: Os, DynoMat4x2: Ws, DynoMat4x3: js, DynoMat4x4: Ps, DynoOutput: q, DynoProgram: Ke, DynoProgramTemplate: qe, DynoRemapIndex: Ja, DynoSampler2D: Ai, DynoSampler2DArray: ei, DynoSampler2DArrayShadow: Ii, DynoSampler2DShadow: oi, DynoSampler3D: ni, DynoSamplerCube: gi, 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combineGsplat: At, comment: $B, compMult: GB, compXor: XI, cos: gQ, cosh: cQ, cross: MB, defineGsplat: xA, defineGsplatNormal: fs, definePackedSplats: ne, degrees: rQ, determinant: bB, distance: mB, div: Zt, dot: Qa, dyno: bt, dynoBlock: SA, dynoBool: Ig, dynoBvec2: Cg, dynoBvec3: lg, dynoBvec4: wg, dynoConst: K, dynoDeclare: Ye, dynoFloat: LA, dynoFor: XB, dynoIf: jB, dynoInt: Qg, dynoIsampler2D: Lg, dynoIsampler2DArray: Tg, dynoIsampler3D: qg, dynoIsamplerCube: Vg, dynoIvec2: cg, dynoIvec3: dg, dynoIvec4: yg, dynoLiteral: Wt, dynoMat2: fg, dynoMat2x2: mg, dynoMat2x3: Mg, dynoMat2x4: xg, dynoMat3: Sg, dynoMat3x2: Ng, dynoMat3x3: Fg, dynoMat3x4: kg, dynoMat4: Gg, dynoMat4x2: Rg, dynoMat4x3: Ug, dynoMat4x4: bg, dynoSampler2D: Yg, dynoSampler2DArray: Hg, dynoSampler2DArrayShadow: Wg, dynoSampler2DShadow: Og, dynoSampler3D: zg, dynoSamplerCube: Zg, dynoSamplerCubeShadow: jg, dynoSwitch: PB, dynoUint: Bg, dynoUsampler2D: vg, dynoUsampler2DArray: Jg, dynoUsampler3D: Kg, dynoUsamplerCube: _g, dynoUvec2: Eg, dynoUvec3: ug, dynoUvec4: pg, dynoVec2: hg, dynoVec3: OA, dynoVec4: Dg, equal: OI, exp: SI, exp2: NI, extendVec: Ea, faceforward: xB, float: Fn, floatBitsToInt: Rn, floatBitsToUint: hB, floor: DI, fract: Ot, greaterThan: ZI, greaterThanEqual: En, gsplatNormal: me, hash: Ra, hash2: Ua, hash3: ba, hash4: va, hashFloat: ZB, hashVec2: OB, hashVec3: La, hashVec4: Fe, imod: Ne, int: eB, intBitsToFloat: lB, inverse: vB, inversesqrt: UI, isAllFloatType: tt, isBoolType: ot, isFloatType: Rt, isInf: TI, isIntType: lA, isMat2: et, isMat3: st, isMat4: it, isMatFloatType: Is, isNan: JI, isScalarType: It, isUintType: uA, isVector2Type: pt, isVector3Type: yt, isVector4Type: Ut, isVectorType: eg, ivec2: rB, ivec3: gB, ivec4: oB, length: fB, lessThan: _I, lessThanEqual: VI, literalNegOne: ag, literalOne: ng, literalZero: mt, log: FI, log2: kI, mat2: CB, mat3: EB, mat4: cB, max: Ui, min: bI, mix: bi, mod: Ri, modf: wI, mul: QA, neg: _e, normalize: Ca, normalizedDepth: Ya, not: zI, notEqual: WI, numPackedSplats: rg, numberAsFloat: H, numberAsInt: rA, numberAsUint: gA, or: KI, outer: RB, outputPackedSplat: xs, outputRgba8: gg, packHalf2x16: Un, packSnorm2x16: dB, packUnorm2x16: pB, pcgHash: VB, pcgMix: zB, pcgNext: _B, pow: xI, projectH: FB, radians: aQ, readPackedSplat: kt, readPackedSplatRange: ls, reflectVec: SB, refractVec: NB, remapIndex: qB, round: MI, sameSizeIvec: ig, sameSizeUvec: Cs, sameSizeVec: sg, select: Ve, sign: yI, sin: ke, sinh: EQ, smoothstep: YI, split: ut, splitGsplat: nt, sqr: GI, sqrt: RI, step: LI, sub: wt, swizzle: kB, tan: oQ, tanh: hQ, texelFetch: iQ, texture: sQ, textureSize: eQ, transformDir: ja, transformGsplat: Je, transformPos: Wa, transformQuat: WB, transpose: UB, trunc: mI, typeLiteral: Es, uint: sB, uintBitsToFloat: uB, uintToRgba8: bn, uniform: og, unindent: CA, unindentLines: GA, unpackHalf2x16: DB, unpackSnorm2x16: wB, unpackUnorm2x16: yB, uvec2: IB, uvec3: BB, uvec4: QB, valType: _, vec2: kn, vec3: gt, vec4: Gn, vectorDim: Qs, vectorElementType: Bs, xor: qI }, Symbol.toStringTag, { value: "Module" })); var wQ = `precision highp float; precision highp int; precision highp sampler2D; precision highp usampler2D; precision highp isampler2D; precision highp sampler2DArray; precision highp usampler2DArray; precision highp isampler2DArray; precision highp sampler3D; precision highp usampler3D; precision highp isampler3D; #include uniform uint targetLayer; uniform int targetBase; uniform int targetCount; out vec4 target; {{ GLOBALS }} void computeReadback(int index) { {{ STATEMENTS }} } void main() { int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x); int index = targetIndex - targetBase; if ((index >= 0) && (index < targetCount)) { computeReadback(index); } else { target = vec4(0.0, 0.0, 0.0, 0.0); } }`; 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); } // Ensure we have a buffer large enough for the readback of count indices. // Pass in previous bufer of the desired type. ensureBuffer(A, e) { const i = Math.ceil(Math.max(1, A) / j) * j * 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: e, height: s, depth: i, maxSplats: n } = mA(A); (!this.target || n > this.capacity) && (this.dispose(), this.capacity = n, this.target = new Q.WebGLArrayRenderTarget(e, s, i, { depthBuffer: !1, stencilBuffer: !1, generateMipmaps: !1, magFilter: Q.NearestFilter, minFilter: Q.NearestFilter }), this.target.texture.format = Q.RGBAFormat, this.target.texture.type = Q.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 e = IA.readbackProgram.get(A); if (!e) { const i = SA( { index: "int" }, { rgba8: "vec4" }, ({ index: n }) => (A.inputs.index = n, { rgba8: new Te({ rgba8: A.outputs.rgba8 }) }) ); IA.programTemplate || (IA.programTemplate = new qe(wQ)), e = new Ke({ 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 = j * 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) / j) ); 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, j, g), s.render(IA.scene, IA.camera), n += j * g; } this.count = A; } async read({ readback: A }) { const e = this.renderer; if (!e) throw new Error("No renderer"); if (!this.target) throw new Error("No target"); const s = Math.ceil(this.count / j) * j; if (A.byteLength < s * 4) throw new Error( `Readback buffer too small: ${A.byteLength} < ${s * 4}` ); const i = new Uint8Array( A instanceof ArrayBuffer ? A : A.buffer ), n = j * XA; let a = 0; const r = []; for (; a < this.count; ) { const g = Math.floor(a / n), I = g * n, B = Math.min( XA, Math.ceil((this.count - I) / j) ); e.setPixelRatio(1), e.setRenderTarget(this.target, g); const o = j * B * 4, C = i.subarray( I * 4, I * 4 + o ), E = e == null ? void 0 : e.readRenderTargetPixelsAsync( this.target, 0, 0, j, B, C ); r.push(E), a += j * B; } 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: 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); } // Perform a readback of the render target, returning a buffer of the // given type. 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; } // Perform a render and readback operation for the given Rgba8Readback, // and readback buffer (call ensureBuffer first). 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 = /* @__PURE__ */ new Map(), IA.geometry = new Q.PlaneGeometry(2, 2), IA.mesh = new Q.Mesh( IA.geometry, new Q.RawShaderMaterial({ visible: !1 }) ), IA.scene = new Q.Scene().add(IA.mesh), IA.camera = new Q.Camera(); let Xt = 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: wr, globals: () => [pr], 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 / j) * j, this.count = Math.min( this.capacity, A.count ?? Number.POSITIVE_INFINITY )) : (this.capacity = A.capacity ?? 0, this.count = 0); } // Free up resources dispose() { this.readback && (this.readback.dispose(), this.readback = null), this.source && (this.source.dispose(), this.source = null); } // Ensure that our array is large enough to hold capacity RGBA8 values. ensureCapacity(A) { var e; if (!this.array || A > (((e = this.array) == null ? void 0 : e.length) ?? 0) / 4) { this.capacity = mA(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 e; let A = (e = this.readback) == null ? void 0 : e.getTexture(); return (this.source || this.array) && (A = this.maybeUpdateSource()), A ?? BA.getEmpty(); } // Create or get a THREE.DataArrayTexture from the data array. 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 } = mA(this.capacity); this.source = new Q.DataArrayTexture( this.array, A, e, s ), this.source.format = Q.RGBAFormat, this.source.type = Q.UnsignedByteType, this.source.internalFormat = "RGBA8", this.source.needsUpdate = !0; } this.source.needsUpdate = !0; } return this.source; } // Generate the RGBA8 values from a Rgba8Readback dyno program. render({ reader: A, count: e, renderer: s }) { this.readback || (this.readback = new Xt({ 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: 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; } // Read back the RGBA8 values from the readback buffer. async read() { if (!this.readback) throw new Error("No readback"); return (!this.array || this.array.length < this.count * 4) && (this.array = new Uint8Array(this.capacity * 4)), (await this.readback.readback({ readback: this.array })).subarray(0, this.count * 4); } // 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 (!BA.emptySource) { const A = new Uint8Array(4); BA.emptySource = new Q.DataArrayTexture(A, 1, 1, 1), BA.emptySource.format = Q.RGBAFormat, BA.emptySource.type = Q.UnsignedByteType, BA.emptySource.internalFormat = "RGBA8", BA.emptySource.needsUpdate = !0; } return BA.emptySource; } // Create a dyno program that can extract RGBA8 values from a PackedSplats static makeDynos() { if (!BA.dynos) { const A = new Ze(), e = new Gt({ value: 0 }), s = new Gt({ value: 0 }), i = SA( { index: "int" }, { rgba8: "vec4" }, ({ index: n }) => { if (!n) throw new Error("index is undefined"); n = fA(n, e); const a = ls( A, n, e, s ); return { rgba8: nt(a).outputs.rgba }; } ); BA.dynos = { dynoSplats: A, dynoBase: e, dynoCount: s, reader: i }; } return BA.dynos; } }; BA.emptySource = null, BA.dynos = null; let Ge = BA; const wr = { type: "RgbaArray" }, pr = CA(` struct RgbaArray { sampler2DArray texture; int count; }; `); function pQ(t, A) { return new V({ inTypes: { rgba: wr, index: "int" }, outTypes: { rgba: "vec4" }, inputs: { rgba: t, index: A }, globals: () => [pr], statements: ({ inputs: s, outputs: i }) => GA(` if ((index >= 0) && (index < ${s.rgba}.count)) { ${i.rgba} = texelFetch(${s.rgba}.texture, splatTexCoord(index), 0); } else { ${i.rgba} = vec4(0.0, 0.0, 0.0, 0.0); } `) }).outputs.rgba; } var yQ = /* @__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))(yQ || {}); 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 fQ = /* @__PURE__ */ ((t) => (t.MULTIPLY = "multiply", t.SET_RGB = "set_rgb", t.ADD_RGBA = "add_rgba", t))(fQ || {}); function mQ(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 MQ extends Q.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 Q.Color(1, 1, 1), this.displace = a ?? new Q.Vector3(0, 0, 0), this.radius = r ?? 0; } } const ie = class ie extends Q.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.includes(A) || this.sdfs.push(A); } removeSdf(A) { this.sdfs != null && (this.sdfs = this.sdfs.filter((e) => e !== A)); } }; ie.nextOrdering = 1; let $t = ie; class xQ { 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: yr, globals: () => [Dr], 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 Gt({ value: 0 }), this.dynoEdits = this.newEdits(this.editData, this.maxEdits); } newSdfTexture(A, e) { const s = new Q.DataTexture( A, 8, e, Q.RGBAIntegerFormat, Q.UnsignedIntType ); return s.internalFormat = "RGBA32UI", s.needsUpdate = !0, s; } newEdits(A, e) { return new k({ key: "edits", type: "uvec4", count: e, globals: () => [fr], value: A }); } // Ensure our SDF texture and edits uniform array have enough capacity. // Reallocate if not. 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) { Qt[0] = e; const s = this.editFloatData[A] !== Qt[0]; return s && (this.editFloatData[A] = Qt[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) { Qt[0] = e; const s = this.sdfFloatData[A] !== Qt[0]; return s && (this.sdfFloatData[A] = Qt[0]), s; } encodeSdf(A, { sdfType: e, invert: s, center: i, quaternion: n, scale: a, sizes: r }, g) { const I = A * 32, B = 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, B) || 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 C = Math.min(4, g.length); for (let E = 0; E < C; ++E) { const h = I + 16 + E * 4; o = this.updateSdfFloatData(h + 0, g[E].x) || o, o = this.updateSdfFloatData(h + 1, g[E].y) || o, o = this.updateSdfFloatData(h + 2, g[E].z) || o, o = this.updateSdfFloatData(h + 3, g[E].w) || o; } 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 e = A.reduce((o, { sdfs: C }) => o + C.length, 0), s = this.ensureCapacity({ maxEdits: A.length, maxSdfs: e }), i = [new Q.Vector4(), new Q.Vector4()], n = new Q.Vector3(), a = new Q.Quaternion(), r = new Q.Vector3(), g = new Q.Vector4(); let I = 0, B = s; A.length !== this.dynoNumEdits.value && (this.dynoNumEdits.value = A.length, this.numEdits = A.length, B = !0); for (const [o, { edit: C, sdfs: E }] of A.entries()) { B = this.encodeEdit(o, { sdfFirst: I, sdfCount: E.length, invert: C.invert, rgbaBlendMode: mQ(C.rgbaBlendMode), softEdge: C.softEdge, sdfSmooth: C.sdfSmooth }) || B; let h = !1; for (const c of E) g.set(c.scale.x, c.scale.y, c.scale.z, c.radius), c.scale.setScalar(1), c.updateMatrixWorld(), c.matrixWorld.clone().invert().decompose(n, a, r), c.scale.set(g.x, g.y, g.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), h = this.encodeSdf( I, { sdfType: DQ(c.type), invert: c.invert, center: n, quaternion: a, scale: r, sizes: g }, i ) || h, I += 1; this.numSdfs = I, h && (this.sdfTexture.needsUpdate = !0), B || (B = h); } return { updated: B, dynoUpdated: s }; } // Modify a Gsplat in a dyno shader program using the current edits and SDFs. modify(A) { return SQ( A, this.dynoSdfArray, this.dynoNumEdits, this.dynoEdits ); } } const yr = { type: "SdfArray" }, Dr = CA(` struct SdfArray { int numSdfs; usampler2D sdfTexture; }; void unpackSdfArray( usampler2D sdfTexture, int sdfIndex, out uint flags, out vec3 center, out vec4 quaternion, out vec3 scale, out vec4 sizes, int numValues, out vec4 values[4] ) { uvec4 temp = texelFetch(sdfTexture, ivec2(0, sdfIndex), 0); flags = temp.w; center = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z)); temp = texelFetch(sdfTexture, ivec2(1, sdfIndex), 0); quaternion = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w)); temp = texelFetch(sdfTexture, ivec2(2, sdfIndex), 0); scale = vec3(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z)); temp = texelFetch(sdfTexture, ivec2(3, sdfIndex), 0); sizes = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w)); for (int i = 0; i < numValues; ++i) { temp = texelFetch(sdfTexture, ivec2(4 + i, sdfIndex), 0); values[i] = vec4(uintBitsToFloat(temp.x), uintBitsToFloat(temp.y), uintBitsToFloat(temp.z), uintBitsToFloat(temp.w)); } } const uint SDF_FLAG_TYPE = 0xFFu; const uint SDF_FLAG_INVERT = 1u << 8u; const uint SDF_TYPE_ALL = 0u; const uint SDF_TYPE_PLANE = 1u; const uint SDF_TYPE_SPHERE = 2u; const uint SDF_TYPE_BOX = 3u; const uint SDF_TYPE_ELLIPSOID = 4u; const uint SDF_TYPE_CYLINDER = 5u; const uint SDF_TYPE_CAPSULE = 6u; const uint SDF_TYPE_INFINITE_CONE = 7u; float evaluateSdfArray( usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos, float smoothK, int numValues, out vec4 outValues[4] ) { float distanceAccum = (smoothK == 0.0) ? 1.0 / 0.0 : 0.0; float maxExp = -1.0 / 0.0; for (int i = 0; i < numValues; ++i) { outValues[i] = vec4(0.0); } uint flags; vec3 center, scale; vec4 quaternion, sizes; vec4 values[4]; int sdfLast = min(sdfFirst + sdfCount, numSdfs); for (int index = sdfFirst; index < sdfLast; ++index) { unpackSdfArray(sdfTexture, index, flags, center, quaternion, scale, sizes, numValues, values); uint sdfType = flags & SDF_FLAG_TYPE; vec3 sdfPos = quatVec(quaternion, pos * scale) + center; float distance; switch (sdfType) { case SDF_TYPE_ALL: distance = -1.0 / 0.0; break; case SDF_TYPE_PLANE: { distance = sdfPos.z; break; } case SDF_TYPE_SPHERE: { distance = length(sdfPos) - sizes.w; break; } case SDF_TYPE_BOX: { vec3 q = abs(sdfPos) - sizes.xyz + sizes.w; distance = length(max(q, 0.0)) + min(max(q.x, max(q.y, q.z)), 0.0) - sizes.w; break; } case SDF_TYPE_ELLIPSOID: { vec3 sizes = sizes.xyz; float k0 = length(sdfPos / sizes); float k1 = length(sdfPos / dot(sizes, sizes)); distance = k0 * (k0 - 1.0) / k1; break; } case SDF_TYPE_CYLINDER: { vec2 d = abs(vec2(length(sdfPos.xz), sdfPos.y)) - sizes.wy; distance = min(max(d.x, d.y), 0.0) + length(max(d, 0.0)); break; } case SDF_TYPE_CAPSULE: { sdfPos.y -= clamp(sdfPos.y, -0.5 * sizes.y, 0.5 * sizes.y); distance = length(sdfPos) - sizes.w; break; } case SDF_TYPE_INFINITE_CONE: { float angle = 0.25 * PI * sizes.w; vec2 c = vec2(sin(angle), cos(angle)); vec2 q = vec2(length(sdfPos.xy), -sdfPos.z); float d = length(q - c * max(dot(q, c), 0.0)); distance = d * (((q.x * c.y - q.y * c.x) < 0.0) ? -1.0 : 1.0); break; } } if ((flags & SDF_FLAG_INVERT) != 0u) { distance = -distance; } if (smoothK == 0.0) { if (distance < distanceAccum) { distanceAccum = distance; for (int i = 0; i < numValues; ++i) { outValues[i] = values[i]; } } } else { float scaledDistance = -distance / smoothK; if (scaledDistance > maxExp) { float scale = exp(maxExp - scaledDistance); distanceAccum *= scale; for (int i = 0; i < numValues; ++i) { outValues[i] *= scale; } maxExp = scaledDistance; } float weight = exp(scaledDistance - maxExp); distanceAccum += weight; for (int i = 0; i < numValues; ++i) { outValues[i] += weight * values[i]; } } } if (smoothK == 0.0) { return distanceAccum; } else { // Very distant SDFs may result in 0 accumulation if (distanceAccum == 0.0) { return 1.0 / 0.0; } for (int i = 0; i < numValues; ++i) { outValues[i] /= distanceAccum; } return (-log(distanceAccum) - maxExp) * smoothK; } } float modulateSdfArray( usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, vec3 pos, float smoothK, int numValues, out vec4 values[4], float softEdge, bool invert ) { float distance = evaluateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, numValues, values); if (invert) { distance = -distance; } return (softEdge == 0.0) ? ((distance < 0.0) ? 1.0 : 0.0) : clamp(-distance / softEdge + 0.5, 0.0, 1.0); } `), fr = CA(` const uint EDIT_FLAG_BLEND = 0xFFu; const uint EDIT_BLEND_MULTIPLY = 0u; const uint EDIT_BLEND_SET_RGB = 1u; const uint EDIT_BLEND_ADD_RGBA = 2u; const uint EDIT_FLAG_INVERT = 0x100u; void decodeEdit( uvec4 packedEdit, out int sdfFirst, out int sdfCount, out bool invert, out uint rgbaBlendMode, out float softEdge, out float sdfSmooth ) { rgbaBlendMode = packedEdit.x & EDIT_FLAG_BLEND; invert = (packedEdit.x & EDIT_FLAG_INVERT) != 0u; sdfFirst = int(packedEdit.y & 0xFFFFu); sdfCount = int(packedEdit.y >> 16u); softEdge = uintBitsToFloat(packedEdit.z); sdfSmooth = uintBitsToFloat(packedEdit.w); } void applyRgbaDisplaceEdit( usampler2D sdfTexture, int numSdfs, int sdfFirst, int sdfCount, inout vec3 pos, float smoothK, float softEdge, bool invert, uint rgbaBlendMode, inout vec4 rgba ) { vec4 values[4]; float modulate = modulateSdfArray(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, smoothK, 2, values, softEdge, invert); // On Android, moving values[0] is necessary to work around a compiler bug. vec4 sdfRgba = values[0]; vec4 sdfDisplaceScale = values[1]; vec4 target; switch (rgbaBlendMode) { case EDIT_BLEND_MULTIPLY: target = rgba * sdfRgba; break; case EDIT_BLEND_SET_RGB: target = vec4(sdfRgba.rgb, rgba.a * sdfRgba.a); break; case EDIT_BLEND_ADD_RGBA: target = rgba + sdfRgba; break; default: // Debug output if blend mode not set target = vec4(fract(pos), 1.0); } rgba = mix(rgba, target, modulate); pos += sdfDisplaceScale.xyz * modulate; } void applyPackedRgbaDisplaceEdit(uvec4 packedEdit, usampler2D sdfTexture, int numSdfs, inout vec3 pos, inout vec4 rgba) { int sdfFirst, sdfCount; bool invert; uint rgbaBlendMode; float softEdge, sdfSmooth; decodeEdit(packedEdit, sdfFirst, sdfCount, invert, rgbaBlendMode, softEdge, sdfSmooth); applyRgbaDisplaceEdit(sdfTexture, numSdfs, sdfFirst, sdfCount, pos, sdfSmooth, softEdge, invert, rgbaBlendMode, rgba); } `); function SQ(t, A, e, s) { return new V({ inTypes: { gsplat: P, sdfArray: yr, numEdits: "int", rgbaDisplaceEdits: "uvec4" }, outTypes: { gsplat: P }, globals: () => [Dr, fr], inputs: { gsplat: t, sdfArray: A, numEdits: e, rgbaDisplaceEdits: s }, statements: ({ inputs: n, outputs: a }) => { const { sdfArray: r, numEdits: g, rgbaDisplaceEdits: I } = n, { gsplat: B } = a; return GA(` ${B} = ${n.gsplat}; if (isGsplatActive(${B}.flags)) { for (int editIndex = 0; editIndex < ${g}; ++editIndex) { applyPackedRgbaDisplaceEdit( ${I}[editIndex], ${r}.sdfTexture, ${r}.numSdfs, ${B}.center, ${B}.rgba ); } } `); } }).outputs.gsplat; } const Qt = new Float32Array(1); class NQ { constructor(A) { this.modifier = A, this.cache = /* @__PURE__ */ new Map(); } apply(A) { let e = this.cache.get(A); return e || (e = SA( { index: "int" }, { gsplat: P }, ({ index: s }) => { const { gsplat: i } = A.apply({ index: s }); return this.modifier.apply({ gsplat: i }); } ), this.cache.set(A, e)), e; } } class ct { // Create the dyno uniforms that parameterize the transform, setting them // to initial values that are different from any valid transform. constructor() { this.scale = new at({ value: Number.NEGATIVE_INFINITY }), this.rotate = new Lt({ value: new Q.Quaternion( Number.POSITIVE_INFINITY, Number.POSITIVE_INFINITY, Number.POSITIVE_INFINITY, Number.POSITIVE_INFINITY ) }), this.translate = new dt({ value: new Q.Vector3( Number.POSITIVE_INFINITY, Number.POSITIVE_INFINITY, Number.POSITIVE_INFINITY ) }); } // Apply the transform to a Vec3 position in a dyno program. apply(A) { return Wa(A, { scale: this.scale, rotate: this.rotate, translate: this.translate }); } applyDir(A) { return ja(A, { rotate: this.rotate }); } // Apply the transform to a Gsplat in a dyno program. applyGsplat(A) { return Je(A, { scale: this.scale, rotate: this.rotate, translate: this.translate }); } // Update the uniforms to match the given transform matrix. updateFromMatrix(A) { const e = new Q.Vector3(), s = new Q.Quaternion(), i = new Q.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 ge extends Q.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 jA = class jA extends ge { constructor(A = {}) { const e = new ct(), s = new ct(), i = new ct(), n = new ct(), a = new Lt({ value: new Q.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: B, deltaTime: o, viewToWorld: C, globalEdits: E }) => this.update({ time: B, deltaTime: o, viewToWorld: C, globalEdits: E }) }), this.isInitialized = !1, this.recolor = new Q.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 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: 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 gs(), jA.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, 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 // center: THREE.Vector3, scales: THREE.Vector3, quaternion: THREE.Quaternion, // opacity: number (0..1), and color: THREE.Color (rgb values in 0..1). // Note that the objects passed in as center etc. are the same for every callback // invocation: these objects are reused for efficiency. Changing these values has // no effect as they are decoded/unpacked copies of the underlying data. To update // the packedSplats, call .packedSplats.setSplat(index, center, scales, // quaternion, opacity, color). forEachSplat(A) { this.packedSplats.forEachSplat(A); } // Call this when you are finished with the SplatMesh and want to free // any buffers it holds (via packedSplats). dispose() { this.packedSplats.dispose(); } constructGenerator(A) { const { transform: e, viewToObject: s, recolor: i } = A, n = SA( { index: "int" }, { gsplat: P }, ({ index: a }) => { if (!a) throw new Error("index is undefined"); let r = kt(this.packedSplats.dyno, a); if (this.maxSh >= 1) { const { sh1Texture: I, sh2Texture: B, sh3Texture: o } = this.ensureShTextures(); if (I) { const C = s.translate, { center: E } = nt(r).outputs, h = Ca(wt(E, C)); let c = RQ(r, I, h); this.maxSh >= 2 && B && (c = fA(c, UQ(r, B, h))), this.maxSh >= 3 && o && (c = fA(c, bQ(r, o, h))); let { rgba: l } = nt(r).outputs; l = fA(l, Ea(c, K("float", 0))), r = At({ gsplat: r, rgba: l }); } } if (this.splatRgba) { const I = pQ(this.splatRgba.dyno, a); r = At({ 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 = QA(i, nt(r).outputs.rgba); return r = At({ 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; } // Call this whenever something changes in the Gsplat processing pipeline, // for example changing maxSh or updating objectModifier or worldModifier. // Compiled generators are cached for efficiency and re-use when the same // pipeline structure emerges after successive changes. updateGenerator() { this.constructGenerator(this.context); } // This is called automatically by SparkRenderer and you should not have to // call it. It updates parameters for the generated pipeline and calls // updateGenerator() if the pipeline needs to change. 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, jA.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 C = new Q.Matrix4().compose( n.translate.value, n.rotate.value, new Q.Vector3().setScalar(n.scale.value) ).invert().multiply(e); a.updateFromMatrix(C) && (this.enableViewToObject || this.packedSplats.extra.sh1) && (g = !0); const E = new Q.Vector4( this.recolor.r, this.recolor.g, this.recolor.b, this.opacity ); E.equals(r.value) || (r.value.copy(E), g = !0); const h = this.editable ? (this.edits ?? []).concat(i) : []; this.editable && !this.edits && this.traverseVisible((u) => { u instanceof $t && h.push(u); }), h.sort((u, w) => u.ordering - w.ordering); const c = h.map((u) => { if (u.sdfs != null) return { edit: u, sdfs: u.sdfs }; const w = []; return u.traverseVisible((d) => { d instanceof MQ && w.push(d); }), { edit: u, sdfs: w }; }); if (c.length > 0 && !this.rgbaDisplaceEdits) { const u = c.length, w = c.reduce( (d, y) => d + y.sdfs.length, 0 ); this.rgbaDisplaceEdits = new xQ({ maxEdits: u, maxSdfs: w }), this.updateGenerator(); } if (this.rgbaDisplaceEdits) { const u = this.rgbaDisplaceEdits.update(c); g || (g = u.updated), u.dynoUpdated && this.updateGenerator(); } 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, e) { if (!this.packedSplats.packedArray || !this.packedSplats.numSplats) return; const { near: s, far: i, ray: n } = A, a = this.matrixWorld.clone().invert(), r = new Q.Matrix3().setFromMatrix4(a), g = n.origin.clone().applyMatrix4(a), I = n.direction.clone().applyMatrix3(r), B = new Q.Vector3(); a.decompose(new Q.Vector3(), new Q.Quaternion(), B), (B.x * B.y * B.z) ** (1 / 3); const C = Wr( g.x, g.y, g.z, I.x, I.y, I.z, s, i, this.packedSplats.numSplats, this.packedSplats.packedArray, !0 ); for (const E of C) { const h = n.direction.clone().multiplyScalar(E).add(n.origin); e.push({ distance: E, point: h, 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 } = mA( i.length / 2 ); if (i.length < g * 2) { const B = new Uint32Array(g * 2); B.set(i), this.packedSplats.extra.sh1 = B, i = B; } const I = new Q.DataArrayTexture(i, n, a, r); I.format = Q.RGIntegerFormat, I.type = Q.UnsignedIntType, I.internalFormat = "RG32UI", I.needsUpdate = !0, A = new St({ value: I, key: "sh1" }), this.packedSplats.extra.sh1Texture = A; } if (!this.packedSplats.extra.sh2) return { sh1Texture: A }; let e = this.packedSplats.extra.sh2Texture; if (!e) { let i = this.packedSplats.extra.sh2; const { width: n, height: a, depth: r, maxSplats: g } = mA( i.length / 4 ); if (i.length < g * 4) { const B = new Uint32Array(g * 4); B.set(i), this.packedSplats.extra.sh2 = B, i = B; } const I = new Q.DataArrayTexture(i, n, a, r); I.format = Q.RGBAIntegerFormat, I.type = Q.UnsignedIntType, I.internalFormat = "RGBA32UI", I.needsUpdate = !0, e = new St({ value: I, key: "sh2" }), this.packedSplats.extra.sh2Texture = e; } if (!this.packedSplats.extra.sh3) 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 } = mA( i.length / 4 ); if (i.length < g * 4) { const B = new Uint32Array(g * 4); B.set(i), this.packedSplats.extra.sh3 = B, i = B; } const I = new Q.DataArrayTexture(i, n, a, r); I.format = Q.RGBAIntegerFormat, I.type = Q.UnsignedIntType, I.internalFormat = "RGBA32UI", I.needsUpdate = !0, s = new St({ value: I, key: "sh3" }), this.packedSplats.extra.sh3Texture = s; } return { sh1Texture: A, sh2Texture: e, sh3Texture: s }; } }; jA.staticInitialized = jA.staticInitialize(), jA.isStaticInitialized = !1, jA.dynoTime = new at({ value: 0 }); let VA = jA; const FQ = CA(` 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; vec3 sh1_0 = vec3(ivec3( int(packed.x << 25u) >> 25, int(packed.x << 18u) >> 25, int(packed.x << 11u) >> 25 )) / 63.0; vec3 sh1_1 = vec3(ivec3( int(packed.x << 4u) >> 25, int((packed.x >> 3u) | (packed.y << 29u)) >> 25, int(packed.y << 22u) >> 25 )) / 63.0; vec3 sh1_2 = vec3(ivec3( int(packed.y << 15u) >> 25, int(packed.y << 8u) >> 25, int(packed.y << 1u) >> 25 )) / 63.0; return sh1_0 * (-0.4886025 * viewDir.y) + sh1_1 * (0.4886025 * viewDir.z) + sh1_2 * (-0.4886025 * viewDir.x); } `), kQ = CA(` vec3 evaluateSH2(Gsplat gsplat, usampler2DArray sh2, vec3 viewDir) { // Extract sint8 values packed into 4 x uint32 uvec4 packed = texelFetch(sh2, splatTexCoord(gsplat.index), 0); vec3 sh2_0 = vec3(ivec3( int(packed.x << 24u) >> 24, int(packed.x << 16u) >> 24, int(packed.x << 8u) >> 24 )) / 127.0; vec3 sh2_1 = vec3(ivec3( int(packed.x) >> 24, int(packed.y << 24u) >> 24, int(packed.y << 16u) >> 24 )) / 127.0; vec3 sh2_2 = vec3(ivec3( int(packed.y << 8u) >> 24, int(packed.y) >> 24, int(packed.z << 24u) >> 24 )) / 127.0; vec3 sh2_3 = vec3(ivec3( int(packed.z << 16u) >> 24, int(packed.z << 8u) >> 24, int(packed.z) >> 24 )) / 127.0; vec3 sh2_4 = vec3(ivec3( int(packed.w << 24u) >> 24, int(packed.w << 16u) >> 24, int(packed.w << 8u) >> 24 )) / 127.0; return sh2_0 * (1.0925484 * viewDir.x * viewDir.y) + sh2_1 * (-1.0925484 * viewDir.y * viewDir.z) + sh2_2 * (0.3153915 * (2.0 * viewDir.z * viewDir.z - viewDir.x * viewDir.x - viewDir.y * viewDir.y)) + sh2_3 * (-1.0925484 * viewDir.x * viewDir.z) + sh2_4 * (0.5462742 * (viewDir.x * viewDir.x - viewDir.y * viewDir.y)); } `), GQ = CA(` vec3 evaluateSH3(Gsplat gsplat, usampler2DArray sh3, vec3 viewDir) { // Extract sint6 values packed into 4 x uint32 uvec4 packed = texelFetch(sh3, splatTexCoord(gsplat.index), 0); vec3 sh3_0 = vec3(ivec3( int(packed.x << 26u) >> 26, int(packed.x << 20u) >> 26, int(packed.x << 14u) >> 26 )) / 31.0; vec3 sh3_1 = vec3(ivec3( int(packed.x << 8u) >> 26, int(packed.x << 2u) >> 26, int((packed.x >> 4u) | (packed.y << 28u)) >> 26 )) / 31.0; vec3 sh3_2 = vec3(ivec3( int(packed.y << 22u) >> 26, int(packed.y << 16u) >> 26, int(packed.y << 10u) >> 26 )) / 31.0; vec3 sh3_3 = vec3(ivec3( int(packed.y << 4u) >> 26, int((packed.y >> 2u) | (packed.z << 30u)) >> 26, int(packed.z << 24u) >> 26 )) / 31.0; vec3 sh3_4 = vec3(ivec3( int(packed.z << 18u) >> 26, int(packed.z << 12u) >> 26, int(packed.z << 6u) >> 26 )) / 31.0; vec3 sh3_5 = vec3(ivec3( int(packed.z) >> 26, int(packed.w << 26u) >> 26, int(packed.w << 20u) >> 26 )) / 31.0; vec3 sh3_6 = vec3(ivec3( int(packed.w << 14u) >> 26, int(packed.w << 8u) >> 26, int(packed.w << 2u) >> 26 )) / 31.0; float xx = viewDir.x * viewDir.x; float yy = viewDir.y * viewDir.y; float zz = viewDir.z * viewDir.z; float xy = viewDir.x * viewDir.y; float yz = viewDir.y * viewDir.z; float zx = viewDir.z * viewDir.x; return sh3_0 * (-0.5900436 * viewDir.y * (3.0 * xx - yy)) + sh3_1 * (2.8906114 * xy * viewDir.z) + + sh3_2 * (-0.4570458 * viewDir.y * (4.0 * zz - xx - yy)) + sh3_3 * (0.3731763 * viewDir.z * (2.0 * zz - 3.0 * xx - 3.0 * yy)) + sh3_4 * (-0.4570458 * viewDir.x * (4.0 * zz - xx - yy)) + sh3_5 * (1.4453057 * viewDir.z * (xx - yy)) + sh3_6 * (-0.5900436 * viewDir.x * (xx - 3.0 * yy)); } `); function RQ(t, A, e) { return bt({ inTypes: { gsplat: P, sh1: "usampler2DArray", viewDir: "vec3" }, outTypes: { rgb: "vec3" }, inputs: { gsplat: t, sh1: A, viewDir: e }, globals: () => [xA, FQ], statements: ({ inputs: s, outputs: i }) => GA(` if (isGsplatActive(${s.gsplat}.flags)) { ${i.rgb} = evaluateSH1(${s.gsplat}, ${s.sh1}, ${s.viewDir}); } else { ${i.rgb} = vec3(0.0); } `) }).outputs.rgb; } function UQ(t, A, e) { return bt({ inTypes: { gsplat: P, sh2: "usampler2DArray", viewDir: "vec3" }, outTypes: { rgb: "vec3" }, inputs: { gsplat: t, sh2: A, viewDir: e }, globals: () => [xA, kQ], statements: ({ inputs: s, outputs: i }) => GA(` if (isGsplatActive(${s.gsplat}.flags)) { ${i.rgb} = evaluateSH2(${s.gsplat}, ${s.sh2}, ${s.viewDir}); } else { ${i.rgb} = vec3(0.0); } `) }).outputs.rgb; } function bQ(t, A, e) { return bt({ inTypes: { gsplat: P, sh3: "usampler2DArray", viewDir: "vec3" }, outTypes: { rgb: "vec3" }, inputs: { gsplat: t, sh3: A, viewDir: e }, globals: () => [xA, GQ], statements: ({ inputs: s, outputs: i }) => GA(` if (isGsplatActive(${s.gsplat}.flags)) { ${i.rgb} = evaluateSH3(${s.gsplat}, ${s.sh3}, ${s.viewDir}); } else { ${i.rgb} = vec3(0.0); } `) }).outputs.rgb; } const ht = class ht { // 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; } // Identify and parse the PLY text header (assumed to be <64KB in size). // this.elements will contain all the elements in the file, typically // "vertex" contains the Gsplat data. 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: ${I[2]}`); break; case "end_header": break; case "comment": this.comments.push(g.slice(8)); break; case "element": { const B = I[1]; n = { name: B, count: Number.parseInt(I[2]), properties: {} }, this.elements[B] = n; break; } case "property": if (n == null) throw new Error("Property must be inside an element"); I[1] === "list" ? n.properties[I[4]] = { isList: !0, type: I[3], countType: I[2] } : n.properties[I[2]] = { isList: !1, type: I[1] }; break; } }), this.elements.vertex && (this.numSplats = this.elements.vertex.count); } parseData(A) { let e = 0; const s = this.data; if (s == null) throw new Error("No data to parse"); for (const i in this.elements) { const n = this.elements[i], { count: a, properties: r } = n, g = {}, I = []; for (const [o, C] of Object.entries(r)) C.isList ? (g[o] = [], I.push(() => { const E = g[o]; E.length = Kt[C.countType]( s, e, this.littleEndian ), e += Ct[C.countType]; for (let h = 0; h < E.length; h++) E[h] = Kt[C.type]( s, e, this.littleEndian ), e += Ct[C.type]; })) : (g[o] = 0, I.push(() => { g[o] = Kt[C.type]( s, e, this.littleEndian ), e += Ct[C.type]; })); const B = A(n) ?? (() => { }); for (let o = 0; o < a; o++) { for (const C of I) C(); B(o, g); } } } // Parse all the Gsplat data in the PLY file in go, invoking the given // callbacks for each Gsplat. parseSplats(A, e) { if (this.elements.vertex == null) throw new Error("No vertex element found"); let s = !1; const i = []; let n = 0, a = [], r = [], g = [], I, B, o; function C() { const u = LQ[n]; a = new Array(3).fill(null).flatMap( (w, d) => [0, 1, 2].map((y, p) => `f_rest_${d + p * u / 3}`) ), r = new Array(5).fill(null).flatMap( (w, d) => [0, 1, 2].map((y, p) => `f_rest_${3 + d + p * u / 3}`) ), g = new Array(7).fill(null).flatMap( (w, d) => [0, 1, 2].map((y, p) => `f_rest_${8 + d + p * u / 3}`) ), I = n >= 1 ? new Float32Array(3 * 3) : void 0, B = n >= 2 ? new Float32Array(5 * 3) : void 0, o = n >= 3 ? new Float32Array(7 * 3) : void 0; } function E(u, w) { if (!I) throw new Error("Missing sh1"); for (const [d, y] of a.entries()) I[d] = w[y] * 8 / 255 - 4; if (B) for (const [d, y] of r.entries()) B[d] = w[y] * 8 / 255 - 4; if (o) for (const [d, y] of g.entries()) o[d] = w[y] * 8 / 255 - 4; e == null || e(u, I, B, o); } function h(u) { const { min_x: w, min_y: d, min_z: y, max_x: p, max_y: f, max_z: N, min_scale_x: m, min_scale_y: D, min_scale_z: U, max_scale_x: x, max_scale_y: M, max_scale_z: b, min_r: F, min_g: G, min_b: R, max_r: J, max_g: $, max_b: L } = u.properties; if (!w || !d || !y || !p || !f || !N || !m || !D || !U || !x || !M || !b || !F || !G || !R || !J || !$ || !L) throw new Error("Missing PLY chunk properties"); return s = !0, (z, Z) => { const { min_x: iA, min_y: AA, min_z: tA, max_x: W, max_y: O, max_z: v, min_scale_x: pA, min_scale_y: nA, min_scale_z: yA, max_scale_x: DA, max_scale_y: Y, max_scale_z: EA, min_r: RA, min_g: dA, min_b: UA, max_r: cA, max_g: T, max_b: aA } = Z; i.push({ min_x: iA, min_y: AA, min_z: tA, max_x: W, max_y: O, max_z: v, min_scale_x: pA, min_scale_y: nA, min_scale_z: yA, max_scale_x: DA, max_scale_y: Y, max_scale_z: EA, min_r: RA, min_g: dA, min_b: UA, max_r: cA, max_g: T, max_b: aA }); }; } function c(u) { if (e && u.name === "sh") return n = ts(u.properties), C(), E; if (u.name !== "vertex") return null; const { packed_position: w, packed_rotation: d, packed_scale: y, packed_color: p } = u.properties; if (!w || !d || !y || !p) throw new Error( "Missing PLY properties: packed_position, packed_rotation, packed_scale, packed_color" ); const f = Math.sqrt(2); return (N, m) => { const D = i[N >>> 8]; if (D == null) throw new Error("Missing PLY chunk"); const { min_x: U, min_y: x, min_z: M, max_x: b, max_y: F, max_z: G, min_scale_x: R, min_scale_y: J, min_scale_z: $, max_scale_x: L, max_scale_y: z, max_scale_z: Z, min_r: iA, min_g: AA, min_b: tA, max_r: W, max_g: O, max_b: v } = D, { packed_position: pA, packed_rotation: nA, packed_scale: yA, packed_color: DA } = m, Y = (pA >>> 21 & 2047) / 2047 * (b - U) + U, EA = (pA >>> 11 & 1023) / 1023 * (F - x) + x, RA = (pA & 2047) / 2047 * (G - M) + M, dA = ((nA >>> 20 & 1023) / 1023 - 0.5) * f, UA = ((nA >>> 10 & 1023) / 1023 - 0.5) * f, cA = ((nA & 1023) / 1023 - 0.5) * f, T = Math.sqrt(Math.max(0, 1 - dA * dA - UA * UA - cA * cA)), aA = nA >>> 30, KA = aA === 0 ? dA : aA === 1 ? T : UA, oe = aA <= 1 ? UA : aA === 2 ? T : cA, Ie = aA <= 2 ? cA : T, Be = aA === 0 ? T : dA, Qe = Math.exp( (yA >>> 21 & 2047) / 2047 * (L - R) + R ), Ce = Math.exp( (yA >>> 11 & 1023) / 1023 * (z - J) + J ), Ee = Math.exp( (yA & 2047) / 2047 * (Z - $) + $ ), ce = (DA >>> 24 & 255) / 255 * (W - iA) + iA, he = (DA >>> 16 & 255) / 255 * (O - AA) + AA, le = (DA >>> 8 & 255) / 255 * (v - tA) + tA, ue = (DA & 255) / 255; A( N, Y, EA, RA, Qe, Ce, Ee, KA, oe, Ie, Be, ue, ce, he, le ); }; } const l = (u) => { if (u.name === "chunk") return h(u); if (s) return c(u); if (u.name !== "vertex") return null; const { x: w, y: d, z: y, scale_0: p, scale_1: f, scale_2: N, rot_0: m, rot_1: D, rot_2: U, rot_3: x, opacity: M, f_dc_0: b, f_dc_1: F, f_dc_2: G, red: R, green: J, blue: $, alpha: L } = u.properties; if (!w || !d || !y) throw new Error("Missing PLY properties: x, y, z"); const z = p && f && N, Z = m && D && U && x, iA = L != null ? qt[L.type] : 1, AA = R != null ? qt[R.type] : 1, tA = J != null ? qt[J.type] : 1, W = $ != null ? qt[$.type] : 1; return n = ts(u.properties), C(), (O, v) => { const pA = z ? Math.exp(v.scale_0) : ht.defaultPointScale, nA = z ? Math.exp(v.scale_1) : ht.defaultPointScale, yA = z ? Math.exp(v.scale_2) : ht.defaultPointScale, DA = Z ? v.rot_1 : 0, Y = Z ? v.rot_2 : 0, EA = Z ? v.rot_3 : 0, RA = Z ? v.rot_0 : 1, dA = M != null ? 1 / (1 + Math.exp(-v.opacity)) : L != null ? v.alpha / iA : 1, UA = b != null ? v.f_dc_0 * Ht + 0.5 : R != null ? v.red / AA : 1, cA = F != null ? v.f_dc_1 * Ht + 0.5 : J != null ? v.green / tA : 1, T = G != null ? v.f_dc_2 * Ht + 0.5 : $ != null ? v.blue / W : 1; if (A( O, v.x, v.y, v.z, pA, nA, yA, DA, Y, EA, RA, dA, UA, cA, T ), e && I) { if (I) for (const [aA, KA] of a.entries()) I[aA] = v[KA]; if (B) for (const [aA, KA] of r.entries()) B[aA] = v[KA]; if (o) for (const [aA, KA] of g.entries()) o[aA] = v[KA]; e(O, I, B, o); } }; }; 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 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 i in this.elements) { const n = this.elements[i], { count: a, properties: r } = n, g = []; let I = 0; const B = i === "vertex"; if (B) { 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: ${o}`); } for (const [o, C] of Object.entries(r)) if (C.isList) g.push(() => { const E = Kt[C.countType]( s, e, this.littleEndian ); e += Ct[C.countType], e += E * Ct[C.type]; }); else { if (B) if (o === "f_dc_0" || o === "f_dc_1" || o === "f_dc_2") { const E = Number.parseInt( o.slice(5) ); g.push(() => { const h = (A[I + E] / 255 - 0.5) / Ht; As[C.type]( s, e, this.littleEndian, h ); }); } else o === "opacity" && g.push(() => { const E = Math.max( -100, Math.min( 100, -Math.log(1 / (A[I + 3] / 255) - 1) ) ); As[C.type]( s, e, this.littleEndian, E ); }); g.push(() => { e += Ct[C.type]; }); } for (let o = 0; o < a; o++) { for (const C of g) C(); B && (I += 4); } } } }; ht.defaultPointScale = 1e-3; let Ae = ht; const Ht = 0.28209479177387814, Kt = { char: (t, A, e) => t.getInt8(A), uchar: (t, A, e) => t.getUint8(A), short: (t, A, e) => t.getInt16(A, e), ushort: (t, A, e) => t.getUint16(A, e), int: (t, A, e) => t.getInt32(A, e), uint: (t, A, e) => t.getUint32(A, e), float: (t, A, e) => t.getFloat32(A, e), double: (t, A, e) => t.getFloat64(A, e) }, As = { char: (t, A, e, s) => { t.setInt8(A, s); }, uchar: (t, A, e, s) => { t.setUint8(A, s); }, short: (t, A, e, s) => { t.setInt16(A, s, e); }, ushort: (t, A, e, s) => { t.setUint16(A, s, e); }, int: (t, A, e, s) => { t.setInt32(A, s, e); }, uint: (t, A, e, s) => { t.setUint32(A, s, e); }, float: (t, A, e, s) => { t.setFloat32(A, s, e); }, double: (t, A, e, s) => { t.setFloat64(A, s, e); } }, Ct = { char: 1, uchar: 1, short: 2, ushort: 2, int: 4, uint: 4, float: 4, double: 8 }, qt = { char: 127, uchar: 255, short: 32767, ushort: 65535, int: 2147483647, uint: 4294967295, float: 1, double: 1 }, vQ = { 0: 0, 9: 1, 24: 2, 45: 3 }, LQ = { 0: 0, 1: 9, 2: 24, 3: 45 }; function ts(t) { let A = 0; for (; t[`f_rest_${A}`]; ) A += 1; const e = vQ[A]; if (e == null) throw new Error(`Unsupported number of SH coefficients: ${A}`); return e; } const mr = '(function(){"use strict";let ZA;const ts=typeof TextDecoder<"u"?new TextDecoder("utf-8",{ignoreBOM:!0,fatal:!0}):{decode:()=>{throw Error("TextDecoder not available")}};typeof TextDecoder<"u"&&ts.decode();let te=null;function kn(){return(te===null||te.byteLength===0)&&(te=new Uint8Array(ZA.memory.buffer)),te}function Rn(g,A){return g=g>>>0,ts.decode(kn().subarray(g,g+A))}function Gn(g,A,t){return ZA.sort_splats(g,A,t)>>>0}function Un(g,A,t,e,i,s,n,r,a,o,B){return ZA.raycast_splats(g,A,t,e,i,s,n,r,a,o,B)}async function bn(g,A){if(typeof Response=="function"&&g instanceof Response){if(typeof WebAssembly.instantiateStreaming=="function")try{return await WebAssembly.instantiateStreaming(g,A)}catch(e){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. 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this.convert(i,this.workingColorSpace,s)},toWorkingColorSpace:function(i,s){return this.convert(i,s,this.workingColorSpace)},getPrimaries:function(i){return this.spaces[i].primaries},getTransfer:function(i){return i===ys?ws:this.spaces[i].transfer},getLuminanceCoefficients:function(i,s=this.workingColorSpace){return i.fromArray(this.spaces[s].luminanceCoefficients)},define:function(i){Object.assign(this.spaces,i)},_getMatrix:function(i,s,n){return i.copy(this.spaces[s].toXYZ).multiply(this.spaces[n].fromXYZ)},_getDrawingBufferColorSpace:function(i){return this.spaces[i].outputColorSpaceConfig.drawingBufferColorSpace},_getUnpackColorSpace:function(i=this.workingColorSpace){return this.spaces[i].workingColorSpaceConfig.unpackColorSpace}},A=[.64,.33,.3,.6,.15,.06],t=[.2126,.7152,.0722],e=[.3127,.329];return g.define({[fs]:{primaries:A,whitePoint:e,transfer:ws,toXYZ:Ms,fromXYZ:Ss,luminanceCoefficients:t,workingColorSpaceConfig:{unpackColorSpace:LA},outputColorSpaceConfig:{drawingBufferColorSpace:LA}},[LA]:{primaries:A,whitePoint:e,transfer:Ci,toXYZ:Ms,fromXYZ:Ss,luminanceCoefficients:t,outputColorSpaceConfig:{drawingBufferColorSpace:LA}}}),g}const YA=nr();function jA(g){return g<.04045?g*.0773993808:Math.pow(g*.9478672986+.0521327014,2.4)}function kt(g){return g<.0031308?g*12.92:1.055*Math.pow(g,.41666)-.055}let Rt;class rr{static getDataURL(A){if(/^data:/i.test(A.src)||typeof HTMLCanvasElement>"u")return A.src;let t;if(A instanceof HTMLCanvasElement)t=A;else{Rt===void 0&&(Rt=xs("canvas")),Rt.width=A.width,Rt.height=A.height;const e=Rt.getContext("2d");A instanceof ImageData?e.putImageData(A,0,0):e.drawImage(A,0,0,A.width,A.height),t=Rt}return t.width>2048||t.height>2048?(console.warn("THREE.ImageUtils.getDataURL: Image converted to jpg for performance 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=xs("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!==cs)return A;if(A.applyMatrix3(this.matrix),A.x<0||A.x>1)switch(this.wrapS){case ls:A.x=A.x-Math.floor(A.x);break;case se:A.x=A.x<0?0:1;break;case us: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 ls:A.y=A.y-Math.floor(A.y);break;case se:A.y=A.y<0?0:1;break;case us: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++}}OA.DEFAULT_IMAGE=null,OA.DEFAULT_MAPPING=cs,OA.DEFAULT_ANISOTROPY=1;class dA{constructor(A=0,t=0,e=0,i=1){dA.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 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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],C=a[9],E=a[2],c=a[6],l=a[10];if(Math.abs(B-Q)<.01&&Math.abs(I-E)<.01&&Math.abs(C-c)<.01){if(Math.abs(B+Q)<.1&&Math.abs(I+E)<.1&&Math.abs(C+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+E)/4,w=(C+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-C)*(c-C)+(I-E)*(I-E)+(Q-B)*(Q-B));return Math.abs(y)<.001&&(y=1),this.x=(c-C)/y,this.y=(I-E)/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=J(this.x,A.x,t.x),this.y=J(this.y,A.y,t.y),this.z=J(this.z,A.z,t.z),this.w=J(this.w,A.w,t.w),this}clampScalar(A,t){return this.x=J(this.x,A,t),this.y=J(this.y,A,t),this.z=J(this.z,A,t),this.w=J(this.w,A,t),this}clampLength(A,t){const e=this.length();return this.divideScalar(e||1).multiplyScalar(J(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 or extends re{constructor(A=1,t=1,e={}){super(),this.isRenderTarget=!0,this.width=A,this.height=t,this.depth=1,this.scissor=new dA(0,0,A,t),this.scissorTest=!1,this.viewport=new dA(0,0,A,t);const i={width:A,height:t,depth:1};e=Object.assign({generateMipmaps:!1,internalFormat:null,minFilter:ds,depthBuffer:!0,stencilBuffer:!1,resolveDepthBuffer:!0,resolveStencilBuffer:!0,depthTexture:null,samples:0,count:1},e);const s=new OA(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+C*f,I=I*c+E*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],C=s[n+3];return A[t]=r*C+B*I+a*h-o*Q,A[t+1]=a*C+B*Q+o*I-r*h,A[t+2]=o*C+B*h+r*Q-a*I,A[t+3]=B*C-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),C=a(s/2);switch(n){case"XYZ":this._x=Q*B*I+o*h*C,this._y=o*h*I-Q*B*C,this._z=o*B*C+Q*h*I,this._w=o*B*I-Q*h*C;break;case"YXZ":this._x=Q*B*I+o*h*C,this._y=o*h*I-Q*B*C,this._z=o*B*C-Q*h*I,this._w=o*B*I+Q*h*C;break;case"ZXY":this._x=Q*B*I-o*h*C,this._y=o*h*I+Q*B*C,this._z=o*B*C+Q*h*I,this._w=o*B*I-Q*h*C;break;case"ZYX":this._x=Q*B*I-o*h*C,this._y=o*h*I+Q*B*C,this._z=o*B*C-Q*h*I,this._w=o*B*I+Q*h*C;break;case"YZX":this._x=Q*B*I+o*h*C,this._y=o*h*I+Q*B*C,this._z=o*B*C-Q*h*I,this._w=o*B*I-Q*h*C;break;case"XZY":this._x=Q*B*I-o*h*C,this._y=o*h*I-Q*B*C,this._z=o*B*C+Q*h*I,this._w=o*B*I+Q*h*C;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(J(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(ks.setFromEuler(A))}applyAxisAngle(A,t){return this.applyQuaternion(ks.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=J(this.x,A.x,t.x),this.y=J(this.y,A.y,t.y),this.z=J(this.z,A.z,t.z),this}clampScalar(A,t){return this.x=J(this.x,A,t),this.y=J(this.y,A,t),this.z=J(this.z,A,t),this}clampLength(A,t){const e=this.length();return this.divideScalar(e||1).multiplyScalar(J(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 ui.copy(this).projectOnVector(A),this.sub(ui)}reflect(A){return this.sub(ui.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(J(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 ui=new u,ks=new aA;class Gt{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(oe),Me.subVectors(this.max,oe),Ut.subVectors(A.a,oe),bt.subVectors(A.b,oe),Lt.subVectors(A.c,oe),gt.subVectors(bt,Ut),ot.subVectors(Lt,bt),dt.subVectors(Ut,Lt);let t=[0,-gt.z,gt.y,0,-ot.z,ot.y,0,-dt.z,dt.y,gt.z,0,-gt.x,ot.z,0,-ot.x,dt.z,0,-dt.x,-gt.y,gt.x,0,-ot.y,ot.x,0,-dt.y,dt.x,0];return!di(t,Ut,bt,Lt,Me)||(t=[1,0,0,0,1,0,0,0,1],!di(t,Ut,bt,Lt,Me))?!1:(Se.crossVectors(gt,ot),t=[Se.x,Se.y,Se.z],di(t,Ut,bt,Lt,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:(VA[0].set(this.min.x,this.min.y,this.min.z).applyMatrix4(A),VA[1].set(this.min.x,this.min.y,this.max.z).applyMatrix4(A),VA[2].set(this.min.x,this.max.y,this.min.z).applyMatrix4(A),VA[3].set(this.min.x,this.max.y,this.max.z).applyMatrix4(A),VA[4].set(this.max.x,this.min.y,this.min.z).applyMatrix4(A),VA[5].set(this.max.x,this.min.y,this.max.z).applyMatrix4(A),VA[6].set(this.max.x,this.max.y,this.min.z).applyMatrix4(A),VA[7].set(this.max.x,this.max.y,this.max.z).applyMatrix4(A),this.setFromPoints(VA),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 VA=[new u,new u,new u,new u,new u,new u,new u,new u],JA=new u,xe=new Gt,Ut=new u,bt=new u,Lt=new u,gt=new u,ot=new u,dt=new u,oe=new u,Me=new u,Se=new u,yt=new u;function di(g,A,t,e,i){for(let s=0,n=g.length-3;s<=n;s+=3){yt.fromArray(g,s);const r=i.x*Math.abs(yt.x)+i.y*Math.abs(yt.y)+i.z*Math.abs(yt.z),a=A.dot(yt),o=t.dot(yt),B=e.dot(yt);if(Math.max(-Math.max(a,o,B),Math.min(a,o,B))>r)return!1}return!0}const Br=new Gt,Ie=new u,yi=new u;class Rs{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):Br.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;Ie.subVectors(A,this.center);const t=Ie.lengthSq();if(t>this.radius*this.radius){const e=Math.sqrt(t),i=(e-this.radius)*.5;this.center.addScaledVector(Ie,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):(yi.subVectors(A.center,this.center).setLength(A.radius),this.expandByPoint(Ie.copy(A.center).add(yi)),this.expandByPoint(Ie.copy(A.center).sub(yi))),this)}equals(A){return A.center.equals(this.center)&&A.radius===this.radius}clone(){return new this.constructor().copy(this)}}const PA=new u,fi=new u,Fe=new u,It=new u,wi=new u,Ne=new u,pi=new u;class Qr{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,PA)),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=PA.subVectors(A,this.origin).dot(this.direction);return t<0?this.origin.distanceToSquared(A):(PA.copy(this.origin).addScaledVector(this.direction,t),PA.distanceToSquared(A))}distanceSqToSegment(A,t,e,i){fi.copy(A).add(t).multiplyScalar(.5),Fe.copy(t).sub(A).normalize(),It.copy(this.origin).sub(fi);const s=A.distanceTo(t)*.5,n=-this.direction.dot(Fe),r=It.dot(this.direction),a=-It.dot(Fe),o=It.lengthSq(),B=Math.abs(1-n*n);let I,Q,h,C;if(B>0)if(I=n*a-r,Q=n*r-a,C=s*B,I>=0)if(Q>=-C)if(Q<=C){const E=1/B;I*=E,Q*=E,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<=-C?(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<=C?(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(fi).addScaledVector(Fe,Q),h}intersectSphere(A,t){PA.subVectors(A.center,this.origin);const e=PA.dot(this.direction),i=PA.dot(PA)-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,PA)!==null}intersectTriangle(A,t,e,i,s){wi.subVectors(t,A),Ne.subVectors(e,A),pi.crossVectors(wi,Ne);let n=this.direction.dot(pi),r;if(n>0){if(i)return null;r=1}else if(n<0)r=-1,n=-n;else return null;It.subVectors(this.origin,A);const a=r*this.direction.dot(Ne.crossVectors(It,Ne));if(a<0)return null;const o=r*this.direction.dot(wi.cross(It));if(o<0||a+o>n)return null;const B=-r*It.dot(pi);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 EA{constructor(A,t,e,i,s,n,r,a,o,B,I,Q,h,C,E,c){EA.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,C,E,c)}set(A,t,e,i,s,n,r,a,o,B,I,Q,h,C,E,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]=C,l[11]=E,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 EA().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/Yt.setFromMatrixColumn(A,0).length(),s=1/Yt.setFromMatrixColumn(A,1).length(),n=1/Yt.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,C=r*B,E=r*I;t[0]=a*B,t[4]=-a*I,t[8]=o,t[1]=h+C*o,t[5]=Q-E*o,t[9]=-r*a,t[2]=E-Q*o,t[6]=C+h*o,t[10]=n*a}else if(A.order==="YXZ"){const Q=a*B,h=a*I,C=o*B,E=o*I;t[0]=Q+E*r,t[4]=C*r-h,t[8]=n*o,t[1]=n*I,t[5]=n*B,t[9]=-r,t[2]=h*r-C,t[6]=E+Q*r,t[10]=n*a}else if(A.order==="ZXY"){const Q=a*B,h=a*I,C=o*B,E=o*I;t[0]=Q-E*r,t[4]=-n*I,t[8]=C+h*r,t[1]=h+C*r,t[5]=n*B,t[9]=E-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,C=r*B,E=r*I;t[0]=a*B,t[4]=C*o-h,t[8]=Q*o+E,t[1]=a*I,t[5]=E*o+Q,t[9]=h*o-C,t[2]=-o,t[6]=r*a,t[10]=n*a}else if(A.order==="YZX"){const Q=n*a,h=n*o,C=r*a,E=r*o;t[0]=a*B,t[4]=E-Q*I,t[8]=C*I+h,t[1]=I,t[5]=n*B,t[9]=-r*B,t[2]=-o*B,t[6]=h*I+C,t[10]=Q-E*I}else if(A.order==="XZY"){const Q=n*a,h=n*o,C=r*a,E=r*o;t[0]=a*B,t[4]=-I,t[8]=o*B,t[1]=Q*I+E,t[5]=n*B,t[9]=h*I-C,t[2]=C*I-h,t[6]=r*B,t[10]=E*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(hr,A,Cr)}lookAt(A,t,e){const i=this.elements;return SA.subVectors(A,t),SA.lengthSq()===0&&(SA.z=1),SA.normalize(),Bt.crossVectors(e,SA),Bt.lengthSq()===0&&(Math.abs(e.z)===1?SA.x+=1e-4:SA.z+=1e-4,SA.normalize(),Bt.crossVectors(e,SA)),Bt.normalize(),ke.crossVectors(SA,Bt),i[0]=Bt.x,i[4]=ke.x,i[8]=SA.x,i[1]=Bt.y,i[5]=ke.y,i[9]=SA.y,i[2]=Bt.z,i[6]=ke.z,i[10]=SA.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],C=e[2],E=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],S=i[5],M=i[9],F=i[13],k=i[2],b=i[6],R=i[10],G=i[14],P=i[3],L=i[7],Z=i[11],W=i[15];return s[0]=n*m+r*N+a*k+o*P,s[4]=n*x+r*S+a*b+o*L,s[8]=n*w+r*M+a*R+o*Z,s[12]=n*D+r*F+a*G+o*W,s[1]=B*m+I*N+Q*k+h*P,s[5]=B*x+I*S+Q*b+h*L,s[9]=B*w+I*M+Q*R+h*Z,s[13]=B*D+I*F+Q*G+h*W,s[2]=C*m+E*N+c*k+l*P,s[6]=C*x+E*S+c*b+l*L,s[10]=C*w+E*M+c*R+l*Z,s[14]=C*D+E*F+c*G+l*W,s[3]=y*m+d*N+f*k+p*P,s[7]=y*x+d*S+f*b+p*L,s[11]=y*w+d*M+f*R+p*Z,s[15]=y*D+d*F+f*G+p*W,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],C=A[3],E=A[7],c=A[11],l=A[15];return C*(+s*a*I-i*o*I-s*r*Q+e*o*Q+i*r*h-e*a*h)+E*(+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],C=A[12],E=A[13],c=A[14],l=A[15],y=I*c*o-E*Q*o+E*a*h-r*c*h-I*a*l+r*Q*l,d=C*Q*o-B*c*o-C*a*h+n*c*h+B*a*l-n*Q*l,f=B*E*o-C*I*o+C*r*h-n*E*h-B*r*l+n*I*l,p=C*I*a-B*E*a-C*r*Q+n*E*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]=(E*Q*s-I*c*s-E*i*h+e*c*h+I*i*l-e*Q*l)*x,A[2]=(r*c*s-E*a*s+E*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-C*Q*s+C*i*h-t*c*h-B*i*l+t*Q*l)*x,A[6]=(C*a*s-n*c*s-C*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]=(C*I*s-B*E*s-C*e*h+t*E*h+B*e*l-t*I*l)*x,A[10]=(n*E*s-C*r*s+C*e*o-t*E*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*E*i-C*I*i+C*e*Q-t*E*Q-B*e*c+t*I*c)*x,A[14]=(C*r*i-n*E*i-C*e*a+t*E*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,C=s*I,E=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-(E+l))*p,i[1]=(h+f)*p,i[2]=(C-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]=(C+d)*x,i[9]=(c-y)*x,i[10]=(1-(Q+E))*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=Yt.set(i[0],i[1],i[2]).length();const n=Yt.set(i[4],i[5],i[6]).length(),r=Yt.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],TA.copy(this);const o=1/s,B=1/n,I=1/r;return TA.elements[0]*=o,TA.elements[1]*=o,TA.elements[2]*=o,TA.elements[4]*=B,TA.elements[5]*=B,TA.elements[6]*=B,TA.elements[8]*=I,TA.elements[9]*=I,TA.elements[10]*=I,t.setFromRotationMatrix(TA),e.x=s,e.y=n,e.z=r,this}makePerspective(A,t,e,i,s,n,r=ne){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,C;if(r===ne)h=-(n+s)/(n-s),C=-2*n*s/(n-s);else if(r===ms)h=-n/(n-s),C=-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]=C,a[3]=0,a[7]=0,a[11]=-1,a[15]=0,this}makeOrthographic(A,t,e,i,s,n,r=ne){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 C,E;if(r===ne)C=(n+s)*I,E=-2*I;else if(r===ms)C=s*I,E=-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]=E,a[14]=-C,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 Yt=new u,TA=new EA,hr=new u(0,0,0),Cr=new u(1,1,1),Bt=new u,ke=new u,SA=new u,Gs=new EA,Us=new aA;class ft{constructor(A=0,t=0,e=0,i=ft.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(J(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(-J(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(J(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(-J(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(J(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(-J(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 Gs.makeRotationFromQuaternion(A),this.setFromRotationMatrix(Gs,t,e)}setFromVector3(A,t=this._order){return this.set(A.x,A.y,A.z,t)}reorder(A){return Us.setFromEuler(this),this.setFromQuaternion(Us,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}}ft.DEFAULT_ORDER="XYZ";class Er{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),C.length>0&&(e.nodes=C)}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){HA.subVectors(i,t),$A.subVectors(e,t),mi.subVectors(A,t);const n=HA.dot(HA),r=HA.dot($A),a=HA.dot(mi),o=$A.dot($A),B=$A.dot(mi),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,C=(n*B-r*a)*Q;return s.set(1-h-C,C,h)}static containsPoint(A,t,e,i){return this.getBarycoord(A,t,e,i,At)===null?!1:At.x>=0&&At.y>=0&&At.x+At.y<=1}static getInterpolation(A,t,e,i,s,n,r,a){return this.getBarycoord(A,t,e,i,At)===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,At.x),a.addScaledVector(n,At.y),a.addScaledVector(r,At.z),a)}static getInterpolatedAttribute(A,t,e,i,s,n){return Fi.setScalar(0),Ni.setScalar(0),ki.setScalar(0),Fi.fromBufferAttribute(A,t),Ni.fromBufferAttribute(A,e),ki.fromBufferAttribute(A,i),n.setScalar(0),n.addScaledVector(Fi,s.x),n.addScaledVector(Ni,s.y),n.addScaledVector(ki,s.z),n}static isFrontFacing(A,t,e,i){return HA.subVectors(e,t),$A.subVectors(A,t),HA.cross($A).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 HA.subVectors(this.c,this.b),$A.subVectors(this.a,this.b),HA.cross($A).length()*.5}getMidpoint(A){return A.addVectors(this.a,this.b).add(this.c).multiplyScalar(1/3)}getNormal(A){return vA.getNormal(this.a,this.b,this.c,A)}getPlane(A){return A.setFromCoplanarPoints(this.a,this.b,this.c)}getBarycoord(A,t){return vA.getBarycoord(A,this.a,this.b,this.c,t)}getInterpolation(A,t,e,i,s){return vA.getInterpolation(A,this.a,this.b,this.c,t,e,i,s)}containsPoint(A){return vA.containsPoint(A,this.a,this.b,this.c)}isFrontFacing(A){return vA.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;Ht.subVectors(i,e),vt.subVectors(s,e),xi.subVectors(A,e);const a=Ht.dot(xi),o=vt.dot(xi);if(a<=0&&o<=0)return t.copy(e);Mi.subVectors(A,i);const B=Ht.dot(Mi),I=vt.dot(Mi);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(Ht,n);Si.subVectors(A,s);const h=Ht.dot(Si),C=vt.dot(Si);if(C>=0&&h<=C)return t.copy(s);const E=h*o-a*C;if(E<=0&&o>=0&&C<=0)return r=o/(o-C),t.copy(e).addScaledVector(vt,r);const c=B*C-h*I;if(c<=0&&I-B>=0&&h-C>=0)return Hs.subVectors(s,i),r=(I-B)/(I-B+(h-C)),t.copy(i).addScaledVector(Hs,r);const l=1/(c+E+Q);return n=E*l,r=Q*l,t.copy(e).addScaledVector(Ht,n).addScaledVector(vt,r)}equals(A){return A.a.equals(this.a)&&A.b.equals(this.b)&&A.c.equals(this.c)}}const vs={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},Qt={h:0,s:0,l:0},Ge={h:0,s:0,l:0};function Ri(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 wt{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=ir(A,1),t=J(t,0,1),e=J(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=Ri(n,s,A+1/3),this.g=Ri(n,s,A),this.b=Ri(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=vs[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=jA(A.r),this.g=jA(A.g),this.b=jA(A.b),this}copyLinearToSRGB(A){return this.r=kt(A.r),this.g=kt(A.g),this.b=kt(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(J(cA.r*255,0,255))*65536+Math.round(J(cA.g*255,0,255))*256+Math.round(J(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!==Bs&&(e.blending=this.blending),this.side!==hi&&(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!==hs&&(e.blendSrc=this.blendSrc),this.blendDst!==Cs&&(e.blendDst=this.blendDst),this.blendEquation!==Qs&&(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!==Es&&(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!==ps&&(e.stencilFunc=this.stencilFunc),this.stencilRef!==0&&(e.stencilRef=this.stencilRef),this.stencilFuncMask!==255&&(e.stencilFuncMask=this.stencilFuncMask),this.stencilFail!==Nt&&(e.stencilFail=this.stencilFail),this.stencilZFail!==Nt&&(e.stencilZFail=this.stencilZFail),this.stencilZPass!==Nt&&(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 fr extends zs{constructor(A){super(),this.isMeshBasicMaterial=!0,this.type="MeshBasicMaterial",this.color=new wt(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 ft,this.combine=Xn,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,Ue=new DA;class zt{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=Ds,this.updateRanges=[],this.gpuType=Ar,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 Gt);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))&&(Ks.copy(s).invert(),pt.copy(A.ray).applyMatrix4(Ks),!(e.boundingBox!==null&&pt.intersectsBox(e.boundingBox)===!1)&&this._computeIntersections(A,t,pt)))}_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 C=0,E=Q.length;Ct.far?null:{distance:o,point:ze.clone(),object:g}}function Ke(g,A,t,e,i,s,n,r,a,o){g.getVertexPosition(r,Je),g.getVertexPosition(a,Te),g.getVertexPosition(o,He);const B=mr(g,A,t,e,Je,Te,He,qs);if(B){const I=new u;vA.getBarycoord(qs,Je,Te,He,I),i&&(B.uv=vA.getInterpolatedAttribute(i,r,a,o,I,new DA)),s&&(B.uv1=vA.getInterpolatedAttribute(s,r,a,o,I,new DA)),n&&(B.normal=vA.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};vA.getNormal(Je,Te,He,Q.normal),B.face=Q,B.barycoord=I}return B}function xr(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 Mr(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 Ws extends mA{constructor(){super(),this.isCamera=!0,this.type="Camera",this.matrixWorldInverse=new EA,this.projectionMatrix=new EA,this.projectionMatrixInverse=new EA,this.coordinateSystem=ne}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 Os 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 ft,this.environmentIntensity=1,this.environmentRotation=new ft,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 kr extends OA{constructor(A=null,t=1,e=1,i,s,n,r,a,o=rt,B=rt,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 _e extends Le{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=[],C=[],E=[],c=[];for(let l=0;lK(i[r]));return`${A}(${s.join(", ")})`}case"mat2x3":{const e=t,i=new Array(6).fill(0).map((s,n)=>K(e[n]));return`${A}(${i.join(", ")})`}case"mat2x4":{const e=t,i=new Array(8).fill(0).map((s,n)=>K(e[n]));return`${A}(${i.join(", ")})`}case"mat3":case"mat3x3":{const e=t,i=e instanceof WA?e.elements:t,s=new Array(9).fill(0).map((n,r)=>K(i[r]));return`${A}(${s.join(", ")})`}case"mat3x2":{const e=t,i=new Array(6).fill(0).map((s,n)=>K(e[n]));return`${A}(${i.join(", ")})`}case"mat3x4":{const e=t,i=new Array(12).fill(0).map((s,n)=>K(e[n]));return`${A}(${i.join(", ")})`}case"mat4":case"mat4x4":{const e=t,i=e instanceof EA?e.elements:t,s=new Array(16).fill(0).map((n,r)=>K(i[r]));return`${A}(${s.join(", ")})`}case"mat4x2":{const e=t,i=new Array(8).fill(0).map((s,n)=>K(e[n]));return`${A}(${i.join(", ")})`}case"mat4x3":{const e=t,i=new Array(12).fill(0).map((s,n)=>K(e[n]));return`${A}(${i.join(", ")})`}default:throw new Error(`Type not implemented: ${String(A)}`)}}}function Jr(g,A){return new Yr(g,A)}const Vs=" ";class Tr{constructor({indent:A}={}){this.globals=new Set,this.statements=[],this.uniforms={},this.declares=new Set,this.updaters=[],this.sequence=0,this.indent=Vs,this.indent=A??Vs}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 NA(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(", ")}) => (${Object.values(t).join(", ")})`],s=[];for(const o in t){const B=t[o];B&&!e.declares.has(B)&&(e.declares.add(B),s.push(o))}const{globals:n,statements:r,uniforms:a}=this.generate({inputs:A,outputs:t,compile:e});for(const o of n??[])e.globals.add(o);for(const o in a)e.uniforms[o]=a[o];this.update&&e.updaters.push(this.update);for(const o of s){const B=t[o];B&&(e.uniforms[B]||i.push(`${Ps(B,this.outTypes[o])};`))}return r!=null&&r.length&&(i.push("{"),i.push(...r.map(o=>e.indent+o)),i.push("}")),i}}class Hr 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 C,E;const i={},s={};for(const c in A)A[c]!=null&&(i[c]=new Ze(this.inTypes[c],A[c]));for(const c in t)t[c]!=null&&(s[c]=new mt(this.outTypes[c]));const n={roots:[]},r=this.construct(i,s,n);for(const c of((C=this.globals)==null?void 0:C.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 mt){p instanceof NA&&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 mt){l instanceof NA&&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 mt){if(m instanceof Ze)l[p]=m.getLiteral();else if(m instanceof NA){const x=(E=o.get(m.dyno))==null?void 0:E.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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c=l=>{if(l.name==="chunk")return C(l);if(e)return E(l);if(l.name!=="vertex")return 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:S,opacity:M,f_dc_0:F,f_dc_1:k,f_dc_2:b,red:R,green:G,blue:P,alpha:L}=l.properties;if(!y||!d||!f)throw new Error("Missing PLY properties: x, y, z");const Z=p&&m&&x,W=w&&D&&N&&S,rA=L!=null?$e[L.type]:1,V=R!=null?$e[R.type]:1,_=G!=null?$e[G.type]:1,T=P!=null?$e[P.type]:1;return s=rn(l.properties),Q(),(q,U)=>{const yA=Z?Math.exp(U.scale_0):$t.defaultPointScale,BA=Z?Math.exp(U.scale_1):$t.defaultPointScale,RA=Z?Math.exp(U.scale_2):$t.defaultPointScale,fA=W?U.rot_1:0,H=W?U.rot_2:0,MA=W?U.rot_3:0,_A=W?U.rot_0:1,uA=M!=null?1/(1+Math.exp(-U.opacity)):L!=null?U.alpha/rA:1,wA=F!=null?U.f_dc_0*Pe+.5:R!=null?U.red/V:1,tA=k!=null?U.f_dc_1*Pe+.5:G!=null?U.green/_:1,v=b!=null?U.f_dc_2*Pe+.5:P!=null?U.blue/T:1;if(A(q,U.x,U.y,U.z,yA,BA,RA,fA,H,MA,_A,uA,wA,tA,v),t&&o){if(o)for(const[$,Y]of n.entries())o[$]=U[Y];if(B)for(const[$,Y]of 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coefficients: ${A}`);return t}const xA={type:"Gsplat"},_i={type:"PackedSplats"},aa=(g,A)=>new Ia({packedSplats:g,index:A}),ga=(g,A,t,e)=>new Ba({packedSplats:g,index:A,base:t,count:e}),Ai=g=>new Qa({gsplat:g}),qi=({gsplat:g,flags:A,index:t,center:e,scales:i,quaternion:s,rgba:n,rgb:r,opacity:a,x:o,y:B,z:I,r:Q,g:h,b:C})=>new ha({gsplat:g,flags:A,index:t,center:e,scales:i,quaternion:s,rgba:n,rgb:r,opacity:a,x:o,y:B,z:I,r:Q,g:h,b:C}),oa=(g,{scale:A,rotate:t,translate:e,recolor:i})=>new Ca({gsplat:g,scale:A,rotate:t,translate:e,recolor:i}),it=KA(`\n struct Gsplat {\n vec3 center;\n uint flags;\n vec3 scales;\n int index;\n vec4 quaternion;\n vec4 rgba;\n };\n const uint GSPLAT_FLAG_ACTIVE = 1u << 0u;\n\n bool isGsplatActive(uint flags) {\n return (flags & GSPLAT_FLAG_ACTIVE) != 0u;\n }\n`),Zi=KA(`\n struct PackedSplats {\n usampler2DArray texture;\n int numSplats;\n };\n`),an=KA(`\n bool readPackedSplat(usampler2DArray texture, int numSplats, int index, out Gsplat gsplat) {\n if ((index >= 0) && (index < numSplats)) {\n uvec4 packed = texelFetch(texture, splatTexCoord(index), 0);\n unpackSplat(packed, gsplat.center, gsplat.scales, gsplat.quaternion, gsplat.rgba);\n return true;\n } else {\n return false;\n }\n }\n`);class Ia extends lA{constructor({packedSplats:A,index:t}){super({inTypes:{packedSplats:_i,index:"int"},outTypes:{gsplat:xA},inputs:{packedSplats:A,index:t},globals:()=>[it,Zi,an],statements:({inputs:e,outputs:i})=>{const{gsplat:s}=i;if(!s)return[];const{packedSplats:n,index:r}=e;let a;return n&&r?a=et(`\n if (readPackedSplat(${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 NA(this,"gsplat")}}class Ba extends lA{constructor({packedSplats:A,index:t,base:e,count:i}){super({inTypes:{packedSplats:_i,index:"int",base:"int",count:"int"},outTypes:{gsplat:xA},inputs:{packedSplats:A,index:t,base:e,count:i},globals:()=>[it,Zi,an],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=et(`\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 = ${o??"0"};`),Q}})}dynoOut(){return new NA(this,"gsplat")}}class Qa extends lA{constructor({gsplat:A}){super({inTypes:{gsplat:xA},outTypes:{flags:"uint",active:"bool",index:"int",center:"vec3",scales:"vec3",quaternion:"vec4",rgba:"vec4",rgb:"vec3",opacity:"float",x:"float",y:"float",z:"float",r:"float",g:"float",b:"float"},inputs:{gsplat:A},globals:()=>[it],statements:({inputs:t,outputs:e})=>{const{gsplat:i}=t,{flags:s,active:n,index:r,center:a,scales:o,quaternion:B,rgba:I,rgb:Q,opacity:h,x:C,y:E,z:c,r:l,g:y,b:d}=e;return[s?`${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,C?`${C} = ${i?`${i}.center.x`:"0.0"};`:null,E?`${E} = ${i?`${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 ha 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:C,b:E}){super({inTypes:{gsplat:xA,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:xA},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:C,b:E},globals:()=>[it],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:S,x:M,y:F,z:k,r:b,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 = ${N};`:null,S?`${y}.rgba.a = ${S};`:null,M?`${y}.center.x = ${M};`:null,F?`${y}.center.y = ${F};`:null,k?`${y}.center.z = ${k};`:null,b?`${y}.rgba.r = ${b};`:null,R?`${y}.rgba.g = ${R};`:null,G?`${y}.rgba.b = ${G};`:null].filter(Boolean)}})}dynoOut(){return new NA(this,"gsplat")}}KA(`\n vec3 gsplatNormal(vec3 scales, vec4 quaternion) {\n float minScale = min(scales.x, min(scales.y, scales.z));\n vec3 normal;\n if (scales.z == minScale) {\n normal = vec3(0.0, 0.0, 1.0);\n } else if (scales.y == minScale) {\n normal = vec3(0.0, 1.0, 0.0);\n } else {\n normal = vec3(1.0, 0.0, 0.0);\n }\n return quatVec(quaternion, normal);\n }\n`);class Ca extends lA{constructor({gsplat:A,scale:t,rotate:e,translate:i,recolor:s}){super({inTypes:{gsplat:xA,scale:"float",rotate:"vec4",translate:"vec3",recolor:"vec4"},outTypes:{gsplat:xA},inputs:{gsplat:A,scale:t,rotate:e,translate:i,recolor:s},globals:()=>[it],statements:({inputs:n,outputs:r,compile:a})=>{const{gsplat:o}=r;if(!o||!n.gsplat)return[];const{scale:B,rotate:I,translate:Q,recolor:h}=n,C=a.indent;return[`${o} = ${n.gsplat};`,`if (isGsplatActive(${o}.flags)) {`,B?`${C}${o}.center *= ${B};`:null,I?`${C}${o}.center = quatVec(${I}, ${o}.center);`:null,Q?`${C}${o}.center += ${Q};`:null,B?`${C}${o}.scales *= ${B};`:null,I?`${C}${o}.quaternion = quatQuat(${I}, ${o}.quaternion);`:null,h?`${C}${o}.rgba *= ${h};`:null,"}"].filter(Boolean)}})}dynoOut(){return new NA(this,"gsplat")}}const Ea=g=>new ca({gsplat:g});class ca extends lA{constructor({gsplat:A}){super({inTypes:{gsplat:xA},inputs:{gsplat:A},globals:()=>[it],statements:({inputs:t,outputs:e})=>{const{output:i}=e;if(!i)return[];const{gsplat:s}=t;return s?et(`\n if (isGsplatActive(${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 NA(this,"output")}}class la 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 NA(this,"rgba8")}}class st 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 ${Ps(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 NA(this,this.outKey)}}class Wi extends st{constructor({key:A,value:t,update:e}){super({key:A,type:"int",value:t,update:e})}}class ti extends st{constructor({key:A,value:t,update:e}){super({key:A,type:"float",value:t,update:e})}}class ua extends st{constructor({key:A,value:t,update:e}){super({key:A,type:"vec3",value:t,update:e})}}class gn extends st{constructor({key:A,value:t,update:e}){super({key:A,type:"vec4",value:t,update:e})}}class Oi extends st{constructor({key:A,value:t,update:e}){super({key:A,type:"usampler2DArray",value:t,update:e})}}class on{constructor({graph:A,inputs:t,outputs:e,template:i}){this.graph=A,this.template=i,this.inputs=t??{},this.outputs=e??{};const s=new Tr({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 da(this)}update(){for(const A of this.updaters)A()}}class In{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 Bn=new Map;function da(g){let A=Bn.get(g);return A||(A=new bi({glslVersion:er,vertexShader:Xr,fragmentShader:g.shader,uniforms:g.uniforms}),Bn.set(g,A),A)}function Qn(g,A,t="add"){const e=()=>{throw new Error(`Invalid ${t} types: ${g}, ${A}`)};if(g===A)return g;if(g==="int"){if(_t(A))return A;e()}if(A==="int"){if(_t(g))return g;e()}if(g==="uint"){if(qt(A))return A;e()}if(A==="uint"){if(qt(g))return g;e()}if(g==="float"){if(qe(A))return A;e()}if(A==="float"){if(qe(g))return g;e()}throw new Error(`Invalid ${t} types: ${g}, ${A}`)}function ya(g,A){return Qn(g,A,"sub")}function fa(g,A){const t=()=>{throw new Error(`Invalid mul types: ${g}, ${A}`)},e=i=>i;if(g==="int"){if(_t(A))return e(A);t()}if(A==="int"){if(_t(g))return e(g);t()}if(g==="uint"){if(qt(A))return e(A);t()}if(A==="uint"){if(qt(g))return e(g);t()}if(g==="float"){if(qe(A))return e(A);t()}if(A==="float"){if(qe(g))return e(g);t()}if(_t(g)||qt(g)||_t(A)||qt(A)){if(g===A)return e(g);t()}if(g==="vec2"){if(A==="vec2"||Zt(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"||Wt(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"||Ot(A))return e("vec4");t()}if(A==="vec2"){if(Zt(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(Wt(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(Ot(g))return e("vec4");t()}if(Zt(g)){if(Zt(A))return e("mat2");if(A==="mat3x2")return e("mat3x2");if(A==="mat4x2")return e("mat4x2");t()}if(g==="mat2x3"){if(Zt(A))return e("mat2x3");if(A==="mat3x2")return e("mat3");if(A==="mat4x2")return e("mat4x3");t()}if(g==="mat2x4"){if(Zt(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(Wt(A))return e("mat3x2");if(A==="mat4x3")return e("mat4x2");t()}if(Wt(g)){if(A==="mat2x3")return e("mat2x3");if(Wt(A))return e("mat3");if(A==="mat4x3")return e("mat4x3");t()}if(g==="mat3x4"){if(A==="mat2x3")return e("mat2x4");if(Wt(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(Ot(A))return e("mat4x2");t()}if(g==="mat4x3"){if(A==="mat2x4")return e("mat2x3");if(A==="mat3x4")return e("mat3");if(Ot(A))return e("mat4x3");t()}if(Ot(g)){if(A==="mat2x4")return e("mat2x4");if(A==="mat3x4")return e("mat3x4");if(Ot(A))return e("mat4");t()}throw new Error(`Invalid mul types: ${g}, ${A}`)}const ei=(g,A)=>new Da({a:g,b:A}),wa=(g,A)=>new ma({a:g,b:A}),pa=(g,A)=>new xa({a:g,b:A});class Da extends Oe{constructor({a:A,b:t}){super({a:A,b:t,outKey:"sum",outTypeFunc:Qn}),this.statements=({inputs:e,outputs:i})=>[`${i.sum} = ${e.a} + ${e.b};`]}}class ma extends Oe{constructor({a:A,b:t}){super({a:A,b:t,outKey:"difference",outTypeFunc:ya}),this.statements=({inputs:e,outputs:i})=>[`${i.difference} = ${e.a} - ${e.b};`]}}class xa extends Oe{constructor({a:A,b:t}){super({a:A,b:t,outKey:"product",outTypeFunc:fa}),this.statements=({inputs:e,outputs:i})=>[`${i.product} = ${e.a} * ${e.b};`]}}const Ma=g=>new Fa({a:g}),Sa=(g,A)=>new ka({a:g,b:A});class Fa extends vr{constructor({a:A}){super({a:A,outTypeFunc:t=>t,outKey:"normalize"}),this.statements=({inputs:t,outputs:e})=>[`${e.normalize} = normalize(${t.a});`]}}function Na(g){if(g==="float")return"vec2";if(g==="vec2")return"vec3";if(g==="vec3")return"vec4";throw new Error("Invalid type")}class ka extends Oe{constructor({a:A,b:t}){const e=Dt(A),i=Na(e);super({a:A,b:t,outKey:"extend",outTypeFunc:()=>i}),this.statements=({inputs:s,outputs:n})=>[`${n.extend} = ${i}(${s.a}, ${s.b});`]}}const Ra=(g,{scale:A,scales:t,rotate:e,translate:i})=>new Ua({position:g,scale:A,scales:t,rotate:e,translate:i}).outputs.position,Ga=(g,{scale:A,scales:t,rotate:e})=>new ba({dir:g,scale:A,scales:t,rotate:e}).outputs.dir;class Ua extends lA{constructor({position:A,scale:t,scales:e,rotate:i,translate:s}){super({inTypes:{position:"vec3",scale:"float",scales:"vec3",rotate:"vec4",translate:"vec3"},outTypes:{position:"vec3"},inputs:{position:A,scale:t,scales:e,rotate:i,translate:s},statements:({inputs:n,outputs:r})=>{const{position:a}=r;if(!a)return[];const{scale:o,scales:B,rotate:I,translate:Q}=n;return[`${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} += ${Q};`:null].filter(Boolean)}})}}class ba extends lA{constructor({dir:A,scale:t,scales:e,rotate:i}){super({inTypes:{dir:"vec3",scale:"float",scales:"vec3",rotate:"vec4"},outTypes:{dir:"vec3"},inputs:{dir:A,scale:t,scales:e,rotate:i},statements:({inputs:s,outputs:n})=>{const{dir:r}=n;if(!r)return[];const{scale:a,scales:o,rotate:B}=s;return[`${r} = ${s.dir??"vec3(0.0, 0.0, 0.0)"};`,a?`${r} *= ${a};`:null,o?`${r} *= ${o};`:null,B?`${r} = quatVec(${B}, ${r});`:null].filter(Boolean)}})}}var La=`precision highp float;\nprecision highp int;\nprecision highp sampler2D;\nprecision highp usampler2D;\nprecision highp isampler2D;\nprecision highp sampler2DArray;\nprecision highp usampler2DArray;\nprecision highp isampler2DArray;\nprecision highp sampler3D;\nprecision highp usampler3D;\nprecision highp isampler3D;\n\n#include \n\nuniform uint targetLayer;\nuniform int targetBase;\nuniform int targetCount;\n\nout uvec4 target;\n\n{{ GLOBALS }}\n\nvoid produceSplat(int index) {\n {{ STATEMENTS }}\n}\n\nvoid main() {\n int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x);\n int index = targetIndex - targetBase;\n\n if ((index >= 0) && (index < targetCount)) {\n produceSplat(index);\n } else {\n target = uvec4(0u, 0u, 0u, 0u);\n }\n}`;const j=class j{constructor(A={}){this.maxSplats=0,this.numSplats=0,this.packedArray=null,this.isInitialized=!1,this.target=null,this.source=null,this.needsUpdate=!0,this.extra={},this.dyno=new hn({packedSplats:this}),this.initialized=Promise.resolve(this),this.reinitialize(A)}reinitialize(A){this.isInitialized=!1,A.url||A.fileBytes||A.construct?this.initialized=this.asyncInitialize(A).then(()=>(this.isInitialized=!0,this)):(this.initialize(A),this.isInitialized=!0,this.initialized=Promise.resolve(this))}initialize(A){A.packedArray?(this.packedArray=A.packedArray,this.maxSplats=Math.floor(this.packedArray.length/4),this.maxSplats=Math.floor(this.maxSplats/O)*O,this.numSplats=Math.min(this.maxSplats,A.numSplats??Number.POSITIVE_INFINITY)):(this.maxSplats=A.maxSplats??0,this.numSplats=0),this.extra=A.extra??{}}async asyncInitialize(A){let{url:t,fileBytes:e,construct:i}=A;if(t&&(e=await fetch(t).then(async s=>{if(!s.ok)throw new Error(`${s.status} "${s.statusText}" fetching URL: ${t}`);return await s.arrayBuffer()})),e){const s=await eg({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=kA(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=kA(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 An(this.packedArray,A)}setSplat(A,t,e,i,s,n){const r=this.ensureSplats(A+1);he(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);he(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/O)*O;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():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: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}=kA(this.maxSplats);this.source=new at(this.packedArray,A,t,e),this.source.format=Ft,this.source.type=ut,this.source.internalFormat="RGBA32UI",this.source.needsUpdate=!0}this.source.needsUpdate=!0}return this.source}static getEmpty(){if(!j.emptySource){const{width:A,height:t,depth:e,maxSplats:i}=kA(1),s=new Uint32Array(i*4);j.emptySource=new at(s,A,t,e),j.emptySource.format=Ft,j.emptySource.type=ut,j.emptySource.internalFormat="RGBA32UI",j.emptySource.needsUpdate=!0}return j.emptySource}prepareProgramMaterial(A){let t=j.generatorProgram.get(A);if(!t){const i=We({index:"int"},{output:"uvec4"},({index:s})=>{A.inputs.index=s;const n=A.outputs.gsplat;return{output:Ea(n)}});j.programTemplate||(j.programTemplate=new In(La)),t=new on({graph:i,inputs:{index:"index"},outputs:{output:"target"},template:j.programTemplate}),Object.assign(t.uniforms,{targetLayer:{value:0},targetBase:{value:0},targetCount:{value:0}}),j.generatorProgram.set(A,t)}const e=t.prepareMaterial();return j.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)/O)*O,o=O*ht;for(n.uniforms.targetBase.value=t,n.uniforms.targetCount.value=e;t[Zi],value:{texture:Ee.getEmpty(),numSplats:0},update:t=>{var e,i;return t.texture=((e=this.packedSplats)==null?void 0:e.getTexture())??Ee.getEmpty(),t.numSplats=((i=this.packedSplats)==null?void 0:i.numSplats)??0,t}}),this.packedSplats=A}}var Ya=`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 oA=class oA{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)/O)*O*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}=kA(A);(!this.target||s>this.capacity)&&(this.dispose(),this.capacity=s,this.target=new Ns(t,e,i,{depthBuffer:!1,stencilBuffer:!1,generateMipmaps:!1,magFilter:rt,minFilter:rt}),this.target.texture.format=me,this.target.texture.type=De,this.target.texture.internalFormat="RGBA8")}prepareProgramMaterial(A){let t=oA.readbackProgram.get(A);if(!t){const i=We({index:"int"},{rgba8:"vec4"},({index:s})=>(A.inputs.index=s,{rgba8:new la({rgba8:A.outputs.rgba8})}));oA.programTemplate||(oA.programTemplate=new In(Ya)),t=new on({graph:i,inputs:{index:"index"},outputs:{rgba8:"target"},template:oA.programTemplate}),Object.assign(t.uniforms,{targetLayer:{value:0},targetBase:{value:0},targetCount:{value:0}}),oA.readbackProgram.set(A,t)}const e=t.prepareMaterial();return oA.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=O*ht;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}};oA.programTemplate=null,oA.readbackProgram=new Map,oA.geometry=new _e(2,2),oA.mesh=new Zs(oA.geometry,new bi({visible:!1})),oA.scene=new Os().add(oA.mesh),oA.camera=new Ws;let ji=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 st({key:"rgbaArray",type:En,globals:()=>[cn],value:{texture:IA.getEmpty(),count:0},update:t=>{var e;return t.texture=((e=this.readback)==null?void 0:e.getTexture())??this.source??IA.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/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 t;if(!this.array||A>(((t=this.array)==null?void 0:t.length)??0)/4){this.capacity=kA(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??IA.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}=kA(this.capacity);this.source=new at(this.array,A,t,e),this.source.format=me,this.source.type=De,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 ji({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}=IA.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=ei(s,t);const n=ga(A,s,t,e);return{rgba8:Ai(n).outputs.rgba}});IA.dynos={dynoSplats:A,dynoBase:t,dynoCount:e,reader:i}}return IA.dynos}};IA.emptySource=null,IA.dynos=null;let Cn=IA;const En={type:"RgbaArray"},cn=KA(`\n struct RgbaArray {\n sampler2DArray texture;\n int count;\n };\n`);function Ja(g,A){return new lA({inTypes:{rgba:En,index:"int"},outTypes:{rgba:"vec4"},inputs:{rgba:g,index:A},globals:()=>[cn],statements:({inputs:e,outputs:i})=>et(`\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 Ta(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 Ha(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 va extends mA{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 wt(1,1,1),this.displace=n??new u(0,0,0),this.radius=r??0}}const ri=class ri extends mA{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=ri.nextOrdering++,this.name=t??`Edit ${this.ordering}`}addSdf(A){this.sdfs==null&&(this.sdfs=[]),this.sdfs.includes(A)||this.sdfs.push(A)}removeSdf(A){this.sdfs!=null&&(this.sdfs=this.sdfs.filter(t=>t!==A))}};ri.nextOrdering=1;let Vi=ri;class za{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 st({key:"sdfArray",type:ln,globals:()=>[un],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 Wi({value:0}),this.dynoEdits=this.newEdits(this.editData,this.maxEdits)}newSdfTexture(A,t){const e=new kr(A,8,t,Ft,ut);return e.internalFormat="RGBA32UI",e.needsUpdate=!0,e}newEdits(A,t){return new st({key:"edits",type:"uvec4",count:t,globals:()=>[dn],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){Pt[0]=t;const e=this.editFloatData[A]!==Pt[0];return e&&(this.editFloatData[A]=Pt[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){Pt[0]=t;const e=this.sdfFloatData[A]!==Pt[0];return e&&(this.sdfFloatData[A]=Pt[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 dA,new dA],s=new u,n=new aA,r=new u,a=new dA;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:Ha(Q.rgbaBlendMode),softEdge:Q.softEdge,sdfSmooth:Q.sdfSmooth})||B;let C=!1;for(const E of h)a.set(E.scale.x,E.scale.y,E.scale.z,E.radius),E.scale.setScalar(1),E.updateMatrixWorld(),E.matrixWorld.clone().invert().decompose(s,n,r),E.scale.set(a.x,a.y,a.z),E.updateMatrixWorld(),i[0].set(E.color.r,E.color.g,E.color.b,E.opacity),i[1].set(E.displace.x,E.displace.y,E.displace.z,1),C=this.encodeSdf(o,{sdfType:Ta(E.type),invert:E.invert,center:s,quaternion:n,scale:r,sizes:a},i)||C,o+=1;this.numSdfs=o,C&&(this.sdfTexture.needsUpdate=!0),B||(B=C)}return{updated:B,dynoUpdated:e}}modify(A){return Ka(A,this.dynoSdfArray,this.dynoNumEdits,this.dynoEdits)}}const ln={type:"SdfArray"},un=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`),dn=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 Ka(g,A,t,e){return new lA({inTypes:{gsplat:xA,sdfArray:ln,numEdits:"int",rgbaDisplaceEdits:"uvec4"},outTypes:{gsplat:xA},globals:()=>[un,dn],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 et(`\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 Pt=new Float32Array(1);class ii{constructor(){this.scale=new ti({value:Number.NEGATIVE_INFINITY}),this.rotate=new gn({value:new aA(Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY)}),this.translate=new ua({value:new u(Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY,Number.POSITIVE_INFINITY)})}apply(A){return Ra(A,{scale:this.scale,rotate:this.rotate,translate:this.translate})}applyDir(A){return Ga(A,{rotate:this.rotate})}applyGsplat(A){return oa(A,{scale:this.scale,rotate:this.rotate,translate:this.translate})}updateFromMatrix(A){const t=new u,e=new aA,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 _a extends mA{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 _a{constructor(A={}){const t=new ii,e=new ii,i=new ii,s=new ii,n=new gn({value:new dA(Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY,Number.NEGATIVE_INFINITY)}),r=new ti({value:0}),a=new ti({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 wt(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 Ee,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 gi(),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=We({index:"int"},{gsplat:xA},({index:n})=>{if(!n)throw new Error("index is undefined");let r=aa(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}=Ai(r).outputs,C=Ma(wa(h,Q));let E=Oa(r,o,C);this.maxSh>=2&&B&&(E=ei(E,ja(r,B,C))),this.maxSh>=3&&I&&(E=ei(E,Va(r,I,C)));let{rgba:c}=Ai(r).outputs;c=ei(c,Sa(E,Jr("float",0))),r=qi({gsplat:r,rgba:c})}}if(this.splatRgba){const o=Ja(this.splatRgba.dyno,n);r=qi({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=pa(i,Ai(r).outputs.rgba);return r=qi({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 EA().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 dA(this.recolor.r,this.recolor.g,this.recolor.b,this.opacity);h.equals(r.value)||(r.value.copy(h),a=!0);const C=this.editable?(this.edits??[]).concat(i):[];this.editable&&!this.edits&&this.traverseVisible(l=>{l instanceof Vi&&C.push(l)}),C.sort((l,y)=>l.ordering-y.ordering);const E=C.map(l=>{if(l.sdfs!=null)return{edit:l,sdfs:l.sdfs};const y=[];return l.traverseVisible(d=>{d instanceof va&&y.push(d)}),{edit:l,sdfs:y}});if(E.length>0&&!this.rgbaDisplaceEdits){const l=E.length,y=E.reduce((d,f)=>d+f.sdfs.length,0);this.rgbaDisplaceEdits=new za({maxEdits:l,maxSdfs:y}),this.updateGenerator()}if(this.rgbaDisplaceEdits){const l=this.rgbaDisplaceEdits.update(E);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 WA().setFromMatrix4(n),a=s.origin.clone().applyMatrix4(n),o=s.direction.clone().applyMatrix3(r),B=new u;n.decompose(new u,new aA,B),(B.x*B.y*B.z)**(1/3);const Q=Un(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 C=s.direction.clone().multiplyScalar(h).add(s.origin);t.push({distance:h,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:s,height:n,depth:r,maxSplats:a}=kA(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`),Za=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`),Wa=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 Oa(g,A,t){return Ji({inTypes:{gsplat:xA,sh1:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:g,sh1:A,viewDir:t},globals:()=>[it,qa],statements:({inputs:e,outputs:i})=>et(`\n if (isGsplatActive(${e.gsplat}.flags)) {\n ${i.rgb} = evaluateSH1(${e.gsplat}, ${e.sh1}, ${e.viewDir});\n } else {\n ${i.rgb} = vec3(0.0);\n }\n `)}).outputs.rgb}function ja(g,A,t){return Ji({inTypes:{gsplat:xA,sh2:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:g,sh2:A,viewDir:t},globals:()=>[it,Za],statements:({inputs:e,outputs:i})=>et(`\n if (isGsplatActive(${e.gsplat}.flags)) {\n ${i.rgb} = evaluateSH2(${e.gsplat}, ${e.sh2}, ${e.viewDir});\n } else {\n ${i.rgb} = vec3(0.0);\n }\n `)}).outputs.rgb}function Va(g,A,t){return Ji({inTypes:{gsplat:xA,sh3:"usampler2DArray",viewDir:"vec3"},outTypes:{rgb:"vec3"},inputs:{gsplat:g,sh3:A,viewDir:t},globals:()=>[it,Wa],statements:({inputs:e,outputs:i})=>et(`\n if (isGsplatActive(${e.gsplat}.flags)) {\n ${i.rgb} = evaluateSH3(${e.gsplat}, ${e.sh3}, ${e.viewDir});\n } else {\n ${i.rgb} = vec3(0.0);\n }\n `)}).outputs.rgb}function Pa(g){return new Worker(self.location.href,{name:g==null?void 0:g.name})}class Xa{constructor(){this.messages={},this.messageIdNext=0,this.worker=new Pa,this.worker.onmessage=A=>this.onMessage(A)}makeMessageId(){return++this.messageIdNext}makeMessagePromiseId(){const A=this.makeMessageId(),t=new Promise((e,i)=>{this.messages[A]={resolve:e,reject:i}});return{id:A,promise:t}}onMessage(A){const{id:t,result:e,error:i}=A.data,s=this.messages[t];s&&(delete this.messages[t],i?s.reject(i):s.resolve(e))}async call(A,t){const{id:e,promise:i}=this.makeMessagePromiseId();return this.worker.postMessage({name:A,args:t,id:e},{transfer:$s(t)}),i}}let fn=4,si=0;const wn=[],pn=[];async function $a(){const g=wn.shift();if(g)return g;if(si{pn.push(A)})}function Ag(g){if(si>fn){si-=1;return}const A=pn.shift();if(A){A(g);return}wn.push(g)}async function ni(g){const A=await $a();try{return await g(A)}finally{Ag(A)}}var ce=(g=>(g.PLY="ply",g.SPZ="spz",g.SPLAT="splat",g.KSPLAT="ksplat",g))(ce||{});function Dn(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=Aa(g,4);return new DataView(t.buffer).getUint32(0,!0)===1347635022?"spz":void 0}}function tg(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 mn(g){const A=tg(g);if(A==="ply")return"ply";if(A==="spz")return"spz";if(A==="splat")return"splat";if(A==="ksplat")return"ksplat"}async function eg({input:g,fileType:A,pathOrUrl:t}){const e=g instanceof ArrayBuffer?new Uint8Array(g):g;let i=A;switch(A||(i=Dn(e),!i&&t&&(i=mn(t))),i){case"ply":{const s=new Ce({fileBytes:e});await s.parseHeader();const n=s.numSplats,r=kA(n).maxSplats,a={fileBytes:e,packedArray:new Uint32Array(r*4)};return await ni(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 ni(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 ni(async s=>{const{packedArray:n,numSplats:r}=await s.call("decodeAntiSplat",{fileBytes:e});return{packedArray:n,numSplats:r}});case"ksplat":return await ni(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 ig{constructor({maxSplats:A=1}={}){this.numSplats=0,this.maxSplats=kA(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 xn{constructor({fileBytes:A}){this.fileBytes=A instanceof ArrayBuffer?new Uint8Array(A):A,this.reader=new ta({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*Mn[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,sg,!0),this.view.setUint32(4,ng,!0),this.view.setUint32(8,A,!0),this.view.setUint8(12,t),this.view.setUint8(13,e),this.view.setUint8(14,i?rg: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)/(Sn/.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=Mn[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 ag(g){var B,I,Q;const A=new ig,{inputs:t,clipXyz:e,maxSh:i,fractionalBits:s=12,opacityThreshold:n}=g;for(const h of t){let C=function(w){return w.multiplyScalar(d),w.applyQuaternion(f),w.add(p),w},E=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 aA().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 Gt(new u().fromArray(e.min),new u().fromArray(e.max)):void 0;let x=h.fileType;switch(x||(x=Dn(h.fileBytes),!x&&h.pathOrUrl&&(x=mn(h.pathOrUrl))),x){case ce.PLY:{const w=new Ce({fileBytes:h.fileBytes});await w.parseHeader();let D=null;w.parseSplats((N,S,M,F,k,b,R,G,P,L,Z,W,rA,V,_)=>{const T=C(new u(S,M,F));if(l(T)&&y(W)){D=A.pushSplat(),A.setCenter(D,T.x,T.y,T.z);const q=E(new u(k,b,R));A.setScale(D,q.x,q.y,q.z);const U=c(new aA(G,P,L,Z));A.setQuaternion(D,U.x,U.y,U.z,U.w),A.setOpacity(D,W),A.setColor(D,rA,V,_)}else D=null},(N,S,M,F)=>{S&&D!==null&&A.setSh1(D,S),M&&D!==null&&A.setSh2(D,M),F&&D!==null&&A.setSh3(D,F)});break}case ce.SPZ:{const w=new xn({fileBytes:h.fileBytes}),D=new Int32Array(w.numSplats);D.fill(-1);const N=new Float32Array(w.numSplats*3),S=new u;w.parseSplats((M,F,k,b)=>{const R=C(new u(F,k,b));N[M*3]=R.x,N[M*3+1]=R.y,N[M*3+2]=R.z},(M,F)=>{S.fromArray(N,M*3),l(S)&&y(F)&&(D[M]=A.pushSplat(),A.setCenter(D[M],S.x,S.y,S.z),A.setOpacity(D[M],F))},(M,F,k,b)=>{D[M]>=0&&A.setColor(D[M],F,k,b)},(M,F,k,b)=>{if(D[M]>=0){const R=E(new u(F,k,b));A.setScale(D[M],R.x,R.y,R.z)}},(M,F,k,b,R)=>{if(D[M]>=0){const G=c(new aA(F,k,b,R));A.setQuaternion(D[M],G.x,G.y,G.z,G.w)}},(M,F,k,b)=>{D[M]>=0&&(A.setSh1(D[M],F),k&&A.setSh2(D[M],k),b&&A.setSh3(D[M],b))});break}case ce.SPLAT:en(h.fileBytes,w=>{},(w,D,N,S,M,F,k,b,R,G,P,L,Z,W,rA)=>{const V=C(new u(D,N,S));if(l(V)&&y(L)){const _=A.pushSplat();A.setCenter(_,V.x,V.y,V.z);const T=E(new u(M,F,k));A.setScale(_,T.x,T.y,T.z);const q=c(new aA(b,R,G,P));A.setQuaternion(_,q.x,q.y,q.z,q.w),A.setOpacity(_,L),A.setColor(_,Z,W,rA)}});break;case ce.KSPLAT:{let w=null;ia(h.fileBytes,D=>{},(D,N,S,M,F,k,b,R,G,P,L,Z,W,rA,V)=>{const _=C(new u(N,S,M));if(l(_)&&y(Z)){w=A.pushSplat(),A.setCenter(w,_.x,_.y,_.z);const T=E(new u(F,k,b));A.setScale(w,T.x,T.y,T.z);const q=c(new aA(R,G,P,L));A.setQuaternion(w,q.x,q.y,q.z,q.w),A.setOpacity(w,Z),A.setColor(w,W,rA,V)}else w=null},(D,N,S,M)=>{w!==null&&(A.setSh1(w,N),S&&A.setSh2(w,S),M&&A.setSh3(w,M))});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 Fn(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 gg({packedArray:n,fileBytes:r});i={id:e,numSplats:a.numSplats,packedArray:a.packedArray,extra:a.extra};break}case"decodeSpz":{const{fileBytes:n}=t,r=og(n);i={id:e,numSplats:r.numSplats,packedArray:r.packedArray,extra:r.extra};break}case"decodeAntiSplat":{const{fileBytes:n}=t,r=ea(n);i={id:e,numSplats:r.numSplats,packedArray:r.packedArray};break}case"decodeKsplat":{const{fileBytes:n}=t,r=sa(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,...Ig({totalSplats:r,readback:a,ordering:o})};break}case"sortDoubleSplats":{const{numSplats:n,readback:r,ordering:a}=t;i={id:e,readback:r,ordering:a},Ur&&(i={id:e,readback:r,ordering:a,activeSplats:Gn(n,r,a)});break}case"transcodeSpz":{const n=t,r=await ag(n);i={id:e,fileBytes:r,input:n};break}default:throw new Error(`Unknown name: ${A}`)}}catch(n){s=n}self.postMessage({id:e,result:i,error:s},{transfer:$s(i)})}async function gg({packedArray:g,fileBytes:A}){const t=new Ce({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,C,E,c,l,y,d,f)=>{he(g,n,r,a,o,B{r&&(i.sh1||(i.sh1=new Uint32Array(e*2)),vi(i.sh1,n,r)),a&&(i.sh2||(i.sh2=new Uint32Array(e*4)),zi(i.sh2,n,a)),o&&(i.sh3||(i.sh3=new Uint32Array(e*4)),Ki(i.sh3,n,o))}),{packedArray:g,numSplats:e,extra:i}}function og(g){const A=new xn({fileBytes:g}),t=A.numSplats,e=Hi(t),i=new Uint32Array(e*4),s={};return A.parseSplats((n,r,a,o)=>{zr(i,n,r,a,o)},(n,r)=>{Zr(i,n,r)},(n,r,a,o)=>{qr(i,n,r,a,o)},(n,r,a,o)=>{Kr(i,n,r,a,o)},(n,r,a,o,B)=>{_r(i,n,r,a,o,B)},(n,r,a,o)=>{r&&(s.sh1||(s.sh1=new Uint32Array(t*2)),vi(s.sh1,n,r)),a&&(s.sh2||(s.sh2=new Uint32Array(t*4)),zi(s.sh2,n,a)),o&&(s.sh3||(s.sh3=new Uint32Array(t*4)),Ki(s.sh3,n,o))}),{packedArray:i,numSplats:t,extra:s}}const Xt=31744,le=Xt+1;let iA=null;function Ig({totalSplats:g,readback:A,ordering:t}){iA||(iA=new Uint32Array(le)),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(mr), { name: t == null ? void 0 : t.name } ); } finally { A && (self.URL || self.webkitURL).revokeObjectURL(A); } } class JQ { constructor() { this.messages = {}, this.messageIdNext = 0, this.worker = new YQ(), 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)); } // 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, // but this function allows for concurrent calls, tagging each request // with a unique message Id and awaiting a response to that same Id. // 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, e) { const { id: s, promise: i } = this.makeMessagePromiseId(); return this.worker.postMessage( { name: A, args: e, id: s }, { transfer: wi(e) } ), i; } } let Mr = 4, te = 0; const xr = [], Sr = []; async function TQ() { const t = xr.shift(); if (t) return t; if (te < Mr) { const A = new JQ(); return te += 1, A; } return new Promise((A) => { Sr.push(A); }); } function HQ(t) { if (te > Mr) { te -= 1; return; } const A = Sr.shift(); if (A) { A(t); return; } xr.push(t); } async function Mt(t) { const A = await TQ(); try { return await t(A); } finally { HQ(A); } } class qC extends _r { constructor(A) { super(A), this.fileLoader = new Vr(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 kr({ input: n, fileType: this.fileType, pathOrUrl: A }); e(new TA(r)); } }, s, i ); } async loadAsync(A, e) { return new Promise((s, i) => { this.load( A, (n) => { s(n); }, e, i ); }); } parse(A) { return new VA({ packedSplats: A }); } } var xt = /* @__PURE__ */ ((t) => (t.PLY = "ply", t.SPZ = "spz", t.SPLAT = "splat", t.KSPLAT = "ksplat", t))(xt || {}); function Nr(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 = Ni(t, 4); return new DataView(e.buffer).getUint32(0, !0) === 1347635022 ? "spz" : void 0; } } function KQ(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 Fr(t) { const A = KQ(t); if (A === "ply") return "ply"; if (A === "spz") return "spz"; if (A === "splat") return "splat"; if (A === "ksplat") return "ksplat"; } async function kr({ input: t, fileType: A, pathOrUrl: e }) { const s = t instanceof ArrayBuffer ? new Uint8Array(t) : t; let i = A; switch (A || (i = Nr(s), !i && e && (i = Fr(e))), i) { case "ply": { const n = new Ae({ fileBytes: s }); await n.parseHeader(); const a = n.numSplats, r = mA(a).maxSplats, g = { fileBytes: s, packedArray: new Uint32Array(r * 4) }; return await Mt(async (I) => { const { packedArray: B, numSplats: o, extra: C } = await I.call( "unpackPly", g ); return { packedArray: B, numSplats: o, extra: C }; }); } case "spz": return await Mt(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 Mt(async (n) => { const { packedArray: a, numSplats: r } = await n.call( "decodeAntiSplat", { fileBytes: s } ); return { packedArray: a, numSplats: r }; }); case "ksplat": return await Mt(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 qQ { 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 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 zQ = `precision highp float; precision highp int; precision highp sampler2D; precision highp usampler2D; precision highp isampler2D; precision highp sampler2DArray; precision highp usampler2DArray; precision highp isampler2DArray; precision highp sampler3D; precision highp usampler3D; precision highp isampler3D; #include uniform uint targetLayer; uniform int targetBase; uniform int targetCount; out uvec4 target; {{ GLOBALS }} void produceSplat(int index) { {{ STATEMENTS }} } void main() { int targetIndex = int(targetLayer << SPLAT_TEX_LAYER_BITS) + int(uint(gl_FragCoord.y) << SPLAT_TEX_WIDTH_BITS) + int(gl_FragCoord.x); int index = targetIndex - targetBase; if ((index >= 0) && (index < targetCount)) { produceSplat(index); } else { target = uvec4(0u, 0u, 0u, 0u); } }`; const eA = class eA { 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 Ze({ 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 / j) * j, 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 kr({ input: s, fileType: A.fileType, pathOrUrl: A.fileName ?? e }); this.initialize(n); } if (i) { const n = i(this); n instanceof Promise && await n; } } // Call this when you are finished with the PackedSplats and want to free // any buffers it holds. dispose() { this.target && (this.target.dispose(), this.target = null), this.source && (this.source.dispose(), this.source = null); } // Ensures that this.packedArray can fit numSplats Gsplats. If it's too small, // resize exponentially and copy over the original data. // // Typically you don't need to call this, because calling this.setSplat(index, ...) // and this.pushSplat(...) will automatically call ensureSplats() so we have // enough splats. ensureSplats(A) { const e = A <= this.maxSplats ? this.maxSplats : ( // Grow exponentially to avoid frequent reallocations Math.max(A, 2 * this.maxSplats) ), s = this.packedArray ? this.packedArray.length / 4 : 0; if (!this.packedArray || e > s) { this.maxSplats = mA(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, 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 = mA(a).maxSplats; const r = new Uint32Array(n * s); this.extra[i] && r.set(this.extra[i]), this.extra[i] = r; } 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, // opacity: number 0..1, color: THREE.Color 0..1. getSplat(A) { if (!this.packedArray || A >= this.numSplats) throw new Error("Invalid index"); return Se(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, e, s, i, n, a) { const r = this.ensureSplats(A + 1); xe( 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); } // Effectively calls this.setSplat(this.numSplats++, center, ...), useful on // construction where you just want to iterate and create a collection of Gsplats. pushSplat(A, e, s, i, n) { const a = this.ensureSplats(this.numSplats + 1); xe( 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; } // 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 e = 0; e < this.numSplats; ++e) { const s = Se(this.packedArray, e); A( e, s.center, s.scales, s.quaternion, s.opacity, s.color ); } } // Ensures our PackedSplats.target render target has enough space to generate // maxSplats total Gsplats, and reallocate if not large enough. ensureGenerate(A) { if (this.target && (A ?? 1) <= this.maxSplats) return !1; this.dispose(); const e = mA(A ?? 1), { width: s, height: i, depth: n } = e; return this.maxSplats = e.maxSplats, this.target = new Q.WebGLArrayRenderTarget(s, i, n, { depthBuffer: !1, stencilBuffer: !1, generateMipmaps: !1, magFilter: Q.NearestFilter, minFilter: Q.NearestFilter }), this.target.texture.format = Q.RGBAIntegerFormat, this.target.texture.type = Q.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 e = 0; const s = A.map((i) => { const n = e, a = Math.ceil(i / j) * j; return e += a, { base: n, count: i }; }); 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() : eA.getEmpty(); } // Check if source texture needs to be created/updated 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 } = mA(this.maxSplats); this.source = new Q.DataArrayTexture( this.packedArray, A, e, s ), this.source.format = Q.RGBAIntegerFormat, this.source.type = Q.UnsignedIntType, this.source.internalFormat = "RGBA32UI", this.source.needsUpdate = !0; } this.source.needsUpdate = !0; } return this.source; } // 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) { const { width: A, height: e, depth: s, maxSplats: i } = mA(1), n = new Uint32Array(i * 4); eA.emptySource = new Q.DataArrayTexture( n, A, e, s ), eA.emptySource.format = Q.RGBAIntegerFormat, eA.emptySource.type = Q.UnsignedIntType, eA.emptySource.internalFormat = "RGBA32UI", eA.emptySource.needsUpdate = !0; } return eA.emptySource; } // Get a program and THREE.RawShaderMaterial for a given GsplatGenerator, // generating it if necessary and caching the result. prepareProgramMaterial(A) { let e = eA.generatorProgram.get(A); if (!e) { const i = SA( { index: "int" }, { output: "uvec4" }, ({ index: n }) => { A.inputs.index = n; const a = A.outputs.gsplat; return { output: xs(a) }; } ); eA.programTemplate || (eA.programTemplate = new qe( zQ )), e = new Ke({ graph: i, inputs: { index: "index" }, outputs: { output: "target" }, template: eA.programTemplate }), Object.assign(e.uniforms, { targetLayer: { value: 0 }, targetBase: { value: 0 }, targetCount: { value: 0 } }), eA.generatorProgram.set(A, e); } const s = e.prepareMaterial(); return eA.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); } // Executes a dyno program specified by generator which is any DynoBlock that // maps { index: "int" } to { gsplat: Gsplat }. This is called in // SparkRenderer.updateInternal() to re-generate Gsplats in the scene for // SplatGenerator instances whose version is newer than what was generated // for it last time. 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) / j) * j, I = j * XA; for (a.uniforms.targetBase.value = e, a.uniforms.targetCount.value = s; e < g; ) { const B = Math.floor(e / I); a.uniforms.targetLayer.value = B; const o = B * I, C = Math.floor((e - o) / j), E = Math.min( XA, Math.ceil((g - o) / j) ); i.setPixelRatio(1), i.setRenderTarget(this.target, B), i.xr.isPresenting = !1, i.autoClear = !1, i.setScissorTest(!0), i.setScissor( 0, C, j, E - C ), i.render(eA.scene, eA.camera), e += j * (E - C); } return this.resetRenderState(i, r), { nextBase: g }; } }; eA.emptySource = null, eA.programTemplate = null, eA.generatorProgram = /* @__PURE__ */ new Map(), eA.geometry = new Q.PlaneGeometry(2, 2), eA.mesh = new Q.Mesh( eA.geometry, new Q.RawShaderMaterial({ visible: !1 }) ), eA.scene = new Q.Scene().add(eA.mesh), eA.camera = new Q.Camera(); let TA = eA; class Ze extends k { constructor({ packedSplats: A } = {}) { super({ key: "packedSplats", type: vt, globals: () => [ne], value: { texture: TA.getEmpty(), numSplats: 0 }, 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 Re extends Q.InstancedBufferGeometry { constructor(A, e) { super(), this.ordering = A, this.setAttribute("position", new Q.BufferAttribute(_Q, 3)), this.setIndex(new Q.BufferAttribute(VQ, 1)), this._maxInstanceCount = A.length, this.instanceCount = e, this.attribute = new Q.InstancedBufferAttribute(A, 1, !1, 1), this.attribute.setUsage(Q.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 _Q = new Float32Array([ -1, -1, 0, 1, -1, 0, 1, 1, 0, -1, 1, 0 ]), VQ = new Uint16Array([0, 1, 2, 0, 2, 3]), PA = class PA { 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.spark = A.spark, this.camera = A.camera, this.viewToWorld = A.viewToWorld ?? new Q.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 Q.WebGLRenderTarget( e * n, s * n, { format: Q.RGBAFormat, type: Q.UnsignedByteType, colorSpace: Q.SRGBColorSpace } ), i && (this.back = new Q.WebGLRenderTarget( e * n, s * n, { format: Q.RGBAFormat, type: Q.UnsignedByteType, colorSpace: Q.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 pi({ 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 SparkViewpoint and want to // free up its resources (GPU targets, pixel buffers, etc.) 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.spark.releaseAccumulator(this.display.accumulator), this.display.geometry.dispose(), this.display = null), (A = this.pending) != null && A.accumulator && (this.spark.releaseAccumulator(this.pending.accumulator), this.pending = null); } // Use this function to change whether this viewpoint will auto-update // its sort order whenever the attached SparkRenderer updates the Gsplats. // Turn this on or off depending on whether you expect to do renders from // this viewpoint most frames. setAutoUpdate(A) { !this.autoUpdate && A ? this.spark.autoViewpoints.push(this) : this.autoUpdate && !A && (this.spark.autoViewpoints = this.spark.autoViewpoints.filter( (e) => e !== this )), this.autoUpdate = A; } // See below async prepareRenderPixels() for explanation of parameters. // Awaiting this method updates the Gsplats in the scene and performs a sort of the // Gsplats from this viewpoint, preparing it for a subsequent this.renderTarget() // call in the same tick. 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.spark.updateInternal({ scene: A, originToWorld: g })) break; await new Promise((B) => setTimeout(B, 10)); } const a = this.spark.active; a !== ((r = this.display) == null ? void 0 : r.accumulator) && (this.spark.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: e }) { var i; const s = this.back ?? this.target; if (!s) throw new Error("Must initialize SparkViewpoint with target"); if (e = e ?? this.camera, !e) throw new Error("Must provide camera"); if (e instanceof Q.PerspectiveCamera) { const n = new Q.PerspectiveCamera().copy(e, !1); n.aspect = s.width / s.height, n.updateProjectionMatrix(), e = n; } this.viewToWorld = e.matrixWorld.clone(); try { this.spark.renderer.setRenderTarget(s), this.spark.prepareViewpoint(this), this.spark.renderer.render(A, e); } finally { this.spark.prepareViewpoint(this.spark.defaultView), this.spark.renderer.setRenderTarget(null); } 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 // downsampling is performed in the target pixel array with simple averaging // to derive the returned pixel values. Subsequent calls to this.readTarget() // will reuse the same buffers to minimize memory allocations. async readTarget() { if (!this.target) throw new Error("Must initialize SparkViewpoint with target"); const { width: A, height: e } = this.target, s = A * e * 4; (!this.superPixels || this.superPixels.length < s) && (this.superPixels = new Uint8Array(s)), await this.spark.renderer.readRenderTargetPixelsAsync( this.target, 0, 0, A, e, this.superPixels ); const { superXY: i } = this; if (i === 1) return this.superPixels; 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, B = i * i; for (let o = 0; o < a; o++) { const C = o * n; for (let E = 0; E < n; E++) { const h = E * i; let c = 0, l = 0, u = 0, w = 0; for (let y = 0; y < i; y++) { const p = (o * i + y) * this.target.width; for (let f = 0; f < i; f++) { const N = (p + h + f) * 4; c += g[N], l += g[N + 1], u += g[N + 2], w += g[N + 3]; } } const d = (C + E) * 4; I[d] = c / B, I[d + 1] = l / B, I[d + 2] = u / B, I[d + 3] = w / B; } } 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, // which triggers its SparkRenderer to check and potentially update the Gsplats. // Setting update to false disables this and sorts the Gsplats as they are. // Setting forceOrigin (default: false) to true forces the view update to // recalculate the splats with this view origin, potentially altering any // view-dependent effects. If you expect view-dependent effects to play a role // in the rendering quality, enable this. // // Underneath, prepareRenderPixels() simply calls await this.prepare(...), // this.renderTarget(...), and finally returns the result this.readTarget(), // a Promise to a Uint8Array with RGBA values for all the pixels (potentially // downsampled if the superXY parameter was used). These steps can also be called // manually, for example if you need to alter the scene before and after // this.renderTarget(...) to hide UI elements from being rendered. async prepareRenderPixels({ scene: A, camera: e, viewToWorld: s, update: i, forceOrigin: n }) { 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 SparkRenderer, there is no need to call it! // The method cannot be private because then SparkRenderer would // not be able to call it. autoPoll({ accumulator: A }) { var n, a, r, g; this.camera && (this.camera.updateMatrixWorld(), this.viewToWorld = this.camera.matrixWorld.clone()); let e = !1, s = !1; if (!this.display) e = !0; else if (A) { e = !0; const { mappingVersion: I } = this.display.accumulator; A.mappingVersion === I && (this.spark.releaseAccumulator(this.display.accumulator), this.display.accumulator = A, s = !0); } const i = ((n = this.sorting) == null ? void 0 : n.viewToWorld) ?? ((a = this.display) == null ? void 0 : a.viewToWorld); i && !Pt({ matrix1: this.viewToWorld, 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 // we bring back splats culled by being behind the camera. // 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 }) && (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.spark.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: e, displayed: s } = this.pending; let i = this.pending.accumulator ?? ((A = this.display) == null ? void 0 : A.accumulator); if (i || (i = this.spark.active, i.refCount += 1), this.pending = null, !i) throw new Error("No accumulator to sort"); this.sorting = { viewToWorld: e }, await this.sortUpdate({ accumulator: i, viewToWorld: e, displayed: s }), this.sorting = null; } } async sortUpdate({ accumulator: A, viewToWorld: e, displayed: s = !1 }) { if (this.sortingCheck) throw new Error("Only one sort at a time"); this.sortingCheck = !0, A = A ?? this.spark.active; const { numSplats: i, maxSplats: n } = A.splats; let a = 0, r = this.orderingFreelist.alloc(n); if (i > 0) { const { reader: g, doubleSortReader: I, dynoSortRadial: B, dynoOrigin: o, dynoDirection: C, dynoDepthBias: E, dynoSort360: h, dynoSplats: c } = PA.makeSorter(), l = Math.ceil(n / 2); this.readback = g.ensureBuffer(l, this.readback); const u = A.toWorld.clone().invert(), w = e.clone().premultiply(u); B.value = this.sort360 ? !0 : this.sortRadial, o.value.set(0, 0, 0).applyMatrix4(w), C.value.set(0, 0, -1).applyMatrix4(w).sub(o.value).normalize(), E.value = this.depthBias ?? 1, h.value = this.sort360 ?? !1, c.packedSplats = A.splats, await g.renderReadback({ renderer: this.spark.renderer, reader: I, count: Math.ceil(i / 2), readback: this.readback }); const d = await Mt(async (y) => y.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 Re(s, i) }; else { !n && A !== this.display.accumulator && (this.spark.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 Re(s, i)), this.orderingFreelist.free(a); } this.spark.viewpoint === this && this.spark.prepareViewpoint(this); } static makeSorter() { if (!PA.dynos) { const A = new jt({ value: !0 }), e = new dt({ value: new Q.Vector3() }), s = new dt({ value: new Q.Vector3() }), i = new at({ value: 1 }), n = new jt({ value: !1 }), a = new Ze(), r = new Xt(), g = SA( { index: "int" }, { rgba8: "vec4" }, ({ index: I }) => { if (!I) throw new Error("No index"); const B = { sortRadial: A, sortOrigin: e, sortDirection: s, sortDepthBias: i, sort360: n }, o = QA(I, K("int", 2)), C = kt(a, o), E = ss({ gsplat: C, ...B }), h = kt( a, fA(o, K("int", 1)) ), c = ss({ gsplat: h, ...B }), l = JA({ vectorType: "vec2", x: E, y: c }); return { rgba8: bn(Un(l)) }; } ); PA.dynos = { dynoSortRadial: A, dynoOrigin: e, dynoDirection: s, dynoDepthBias: i, dynoSort360: n, dynoSplats: a, reader: r, doubleSortReader: g }; } return PA.dynos; } }; PA.EMPTY_TEXTURE = new Q.Texture(), PA.dynos = null; let ee = PA; const ZQ = CA(` float computeSort(Gsplat gsplat, bool sortRadial, vec3 sortOrigin, vec3 sortDirection, float sortDepthBias, bool sort360) { if (!isGsplatActive(gsplat.flags)) { return INFINITY; } vec3 center = gsplat.center - sortOrigin; float biasedDepth = dot(center, sortDirection) + sortDepthBias; if (!sort360 && (biasedDepth <= 0.0)) { return INFINITY; } return sortRadial ? length(center) : biasedDepth; } `); function ss({ gsplat: t, sortRadial: A, sortOrigin: e, sortDirection: s, sortDepthBias: i, sort360: n }) { return bt({ inTypes: { gsplat: P, sortRadial: "bool", sortOrigin: "vec3", sortDirection: "vec3", sortDepthBias: "float", sort360: "bool" }, outTypes: { metric: "float" }, globals: () => [xA, 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: B, sortDirection: o, sortDepthBias: C, sort360: E } = a; return GA(` ${r.metric} = computeSort(${g}, ${I}, ${B}, ${o}, ${C}, ${E}); `); } }).outputs.metric; } class De { constructor() { this.splats = new TA(), this.toWorld = new Q.Matrix4(), this.mapping = [], this.refCount = 0, this.splatsVersion = -1, this.mappingVersion = -1; } ensureGenerate(A) { this.splats.ensureGenerate(A) && (this.mapping = []); } // Generate all Gsplats from an array of generators generateSplats({ renderer: A, modifier: e, generators: s, forceUpdate: i, originToWorld: n }) { const a = this.mapping.reduce((I, B) => (I.set(B.node, B), I), /* @__PURE__ */ new Map()); let r = 0, g = 0; for (const { node: I, generator: B, version: o, base: C, count: E } of s) { const h = a.get(I); if ((i || B !== (h == null ? void 0 : h.generator) || o !== (h == null ? void 0 : h.version) || C !== (h == null ? void 0 : h.base) || E !== (h == null ? void 0 : h.count)) && B && E > 0) { const c = e.apply(B); try { this.splats.generate({ generator: c, base: C, count: E, renderer: A }); } catch (l) { I.generator = void 0, I.generatorError = l; } r += 1; } g = Math.max(g, C + E); } 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: e, base: s, count: i }, n) => { const { node: a, base: r, count: g } = A.mapping[n]; return e === a && s === r && i === g; }); } } var OQ = `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; const uint SPLAT_TEX_WIDTH_BITS = 11u; const uint SPLAT_TEX_HEIGHT_BITS = 11u; const uint SPLAT_TEX_DEPTH_BITS = 11u; const uint SPLAT_TEX_LAYER_BITS = SPLAT_TEX_WIDTH_BITS + SPLAT_TEX_HEIGHT_BITS; const uint SPLAT_TEX_WIDTH = 1u << SPLAT_TEX_WIDTH_BITS; const uint SPLAT_TEX_HEIGHT = 1u << SPLAT_TEX_HEIGHT_BITS; const uint SPLAT_TEX_DEPTH = 1u << SPLAT_TEX_DEPTH_BITS; const uint SPLAT_TEX_WIDTH_MASK = SPLAT_TEX_WIDTH - 1u; const uint SPLAT_TEX_HEIGHT_MASK = SPLAT_TEX_HEIGHT - 1u; const uint SPLAT_TEX_DEPTH_MASK = SPLAT_TEX_DEPTH - 1u; const uint F16_INF = 0x7c00u; const float PI = 3.1415926535897932384626433832795; const float INFINITY = 1.0 / 0.0; const float NEG_INFINITY = -INFINITY; const float MAX_PIXEL_RADIUS = 512.0; const float MIN_ALPHA = 0.5 * (1.0 / 255.0); const float MAX_STDDEV = sqrt(8.0); float sqr(float x) { return x * x; } float pow4(float x) { float x2 = x * x; return x2 * x2; } float pow8(float x) { float x4 = pow4(x); return x4 * x4; } vec3 srgbToLinear(vec3 rgb) { return pow(rgb, vec3(2.2)); } vec3 linearToSrgb(vec3 rgb) { return pow(rgb, vec3(1.0 / 2.2)); } uint encodeQuatOctXy88R8(vec4 q) { if (q.w < 0.0) { q = -q; } float theta = 2.0 * acos(q.w); float halfTheta = theta * 0.5; float s = sin(halfTheta); vec3 axis = (abs(s) < 1e-6) ? vec3(1.0, 0.0, 0.0) : q.xyz / s; float sum = abs(axis.x) + abs(axis.y) + abs(axis.z); vec2 p = vec2(axis.x, axis.y) / sum; if (axis.z < 0.0) { float oldPx = p.x; p.x = (1.0 - abs(p.y)) * (p.x >= 0.0 ? 1.0 : -1.0); p.y = (1.0 - abs(oldPx)) * (p.y >= 0.0 ? 1.0 : -1.0); } float u_f = p.x * 0.5 + 0.5; float v_f = p.y * 0.5 + 0.5; uint quantU = uint(clamp(round(u_f * 255.0), 0.0, 255.0)); uint quantV = uint(clamp(round(v_f * 255.0), 0.0, 255.0)); uint angleInt = uint(clamp(round((theta / 3.14159265359) * 255.0), 0.0, 255.0)); return (angleInt << 16u) | (quantV << 8u) | quantU; } vec4 decodeQuatOctXy88R8(uint encoded) { uint quantU = encoded & uint(0xFFu); uint quantV = (encoded >> 8u) & uint(0xFFu); uint angleInt = encoded >> 16u; float u_f = float(quantU) / 255.0; float v_f = float(quantV) / 255.0; vec2 f = vec2(u_f * 2.0 - 1.0, v_f * 2.0 - 1.0); vec3 axis = vec3(f.xy, 1.0 - abs(f.x) - abs(f.y)); float t = max(-axis.z, 0.0); axis.x += (axis.x >= 0.0) ? -t : t; axis.y += (axis.y >= 0.0) ? -t : t; axis = normalize(axis); float theta = (float(angleInt) / 255.0) * 3.14159265359; float halfTheta = theta * 0.5; float s = sin(halfTheta); float w = cos(halfTheta); return vec4(axis * s, w); } uvec4 packSplat(vec3 center, vec3 scales, vec4 quaternion, vec4 rgba) { uvec4 uRgba = uvec4(round(clamp(rgba * 255.0, 0.0, 255.0))); uint uQuat = encodeQuatOctXy88R8(quaternion); uvec3 uQuat3 = uvec3(uQuat & 0xffu, (uQuat >> 8u) & 0xffu, (uQuat >> 16u) & 0xffu); uvec3 uScales = uvec3( (scales.x == 0.0) ? 0u : uint(round(clamp((log(scales.x) - LN_SCALE_MIN) / LN_RESCALE, 0.0, 254.0))) + 1u, (scales.y == 0.0) ? 0u : uint(round(clamp((log(scales.y) - LN_SCALE_MIN) / LN_RESCALE, 0.0, 254.0))) + 1u, (scales.z == 0.0) ? 0u : uint(round(clamp((log(scales.z) - LN_SCALE_MIN) / LN_RESCALE, 0.0, 254.0))) + 1u ); uint word0 = uRgba.r | (uRgba.g << 8u) | (uRgba.b << 16u) | (uRgba.a << 24u); uint word1 = packHalf2x16(center.xy); uint word2 = packHalf2x16(vec2(center.z, 0.0)) | (uQuat3.x << 16u) | (uQuat3.y << 24u); uint word3 = uScales.x | (uScales.y << 8u) | (uScales.z << 16u) | (uQuat3.z << 24u); return uvec4(word0, word1, word2, word3); } void unpackSplat(uvec4 packed, out vec3 center, out vec3 scales, out vec4 quaternion, out vec4 rgba) { uint word0 = packed.x, word1 = packed.y, word2 = packed.z, word3 = packed.w; uvec4 uRgba = uvec4(word0 & 0xffu, (word0 >> 8u) & 0xffu, (word0 >> 16u) & 0xffu, (word0 >> 24u) & 0xffu); rgba = vec4(uRgba) / 255.0; center = vec4( unpackHalf2x16(word1), unpackHalf2x16(word2 & 0xffffu) ).xyz; uvec3 uScales = uvec3(word3 & 0xffu, (word3 >> 8u) & 0xffu, (word3 >> 16u) & 0xffu); scales = vec3( (uScales.x == 0u) ? 0.0 : exp(LN_SCALE_MIN + float(uScales.x - 1u) * LN_RESCALE), (uScales.y == 0u) ? 0.0 : exp(LN_SCALE_MIN + float(uScales.y - 1u) * LN_RESCALE), (uScales.z == 0u) ? 0.0 : exp(LN_SCALE_MIN + float(uScales.z - 1u) * LN_RESCALE) ); uint uQuat = ((word2 >> 16u) & 0xFFFFu) | ((word3 >> 8u) & 0xFF0000u); quaternion = decodeQuatOctXy88R8(uQuat); } vec3 quatVec(vec4 q, vec3 v) { vec3 t = 2.0 * cross(q.xyz, v); return v + q.w * t + cross(q.xyz, t); } vec4 quatQuat(vec4 q1, vec4 q2) { return vec4( q1.w * q2.x + q1.x * q2.w + q1.y * q2.z - q1.z * q2.y, q1.w * q2.y - q1.x * q2.z + q1.y * q2.w + q1.z * q2.x, q1.w * q2.z + q1.x * q2.y - q1.y * q2.x + q1.z * q2.w, q1.w * q2.w - q1.x * q2.x - q1.y * q2.y - q1.z * q2.z ); } mat3 scaleQuaternionToMatrix(vec3 s, vec4 q) { return mat3( s.x * (1.0 - 2.0 * (q.y * q.y + q.z * q.z)), s.x * (2.0 * (q.x * q.y + q.w * q.z)), s.x * (2.0 * (q.x * q.z - q.w * q.y)), s.y * (2.0 * (q.x * q.y - q.w * q.z)), s.y * (1.0 - 2.0 * (q.x * q.x + q.z * q.z)), s.y * (2.0 * (q.y * q.z + q.w * q.x)), s.z * (2.0 * (q.x * q.z + q.w * q.y)), s.z * (2.0 * (q.y * q.z - q.w * q.x)), s.z * (1.0 - 2.0 * (q.x * q.x + q.y * q.y)) ); } vec4 slerp(vec4 q1, vec4 q2, float t) { float cosHalfTheta = dot(q1, q2); if (abs(cosHalfTheta) >= 0.999) { return q1; } if (cosHalfTheta < 0.0) { q2 = -q2; cosHalfTheta = -cosHalfTheta; } float halfTheta = acos(cosHalfTheta); float sinHalfTheta = sqrt(1.0 - cosHalfTheta * cosHalfTheta); float ratioA = sin((1.0 - t) * halfTheta) / sinHalfTheta; float ratioB = sin(t * halfTheta) / sinHalfTheta; return q1 * ratioA + q2 * ratioB; } ivec3 splatTexCoord(int index) { uint x = uint(index) & SPLAT_TEX_WIDTH_MASK; 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); }`, WQ = `precision highp float; precision highp int; #include uniform bool encodeLinear; uniform float maxStdDev; uniform bool disableFalloff; uniform float falloff; out vec4 fragColor; in vec4 vRgba; in vec2 vSplatUv; in vec3 vNdc; void main() { float z = dot(vSplatUv, vSplatUv); if (z > (maxStdDev * maxStdDev)) { discard; } float alpha = vRgba.a; alpha *= mix(1.0, exp(-0.5 * z), falloff); if (alpha < MIN_ALPHA) { discard; } vec3 rgb = vRgba.rgb; if (encodeLinear) { rgb = srgbToLinear(rgb); } fragColor = vec4(rgb, alpha); }`, jQ = `precision highp float; precision highp int; precision highp usampler2DArray; #include attribute uint splatIndex; out vec4 vRgba; out vec2 vSplatUv; out vec3 vNdc; uniform vec2 renderSize; uniform uint numSplats; uniform vec4 renderToViewQuat; uniform vec3 renderToViewPos; uniform float maxStdDev; uniform float time; uniform float deltaTime; uniform bool debugFlag; uniform bool enable2DGS; uniform float blurAmount; uniform float preBlurAmount; uniform float focalDistance; uniform float apertureAngle; uniform float clipXY; uniform usampler2DArray packedSplats; void main() { gl_Position = vec4(0.0, 0.0, 2.0, 1.0); if (uint(gl_InstanceID) >= numSplats) { return; } if (splatIndex == 0xffffffffu) { return; } ivec3 texCoord = ivec3( splatIndex & SPLAT_TEX_WIDTH_MASK, (splatIndex >> SPLAT_TEX_WIDTH_BITS) & SPLAT_TEX_HEIGHT_MASK, splatIndex >> SPLAT_TEX_LAYER_BITS ); uvec4 packed = texelFetch(packedSplats, texCoord, 0); vec3 center, scales; vec4 quaternion, rgba; unpackSplat(packed, center, scales, quaternion, rgba); if (rgba.a < MIN_ALPHA) { return; } bvec3 zeroScales = equal(scales, vec3(0.0)); if (all(zeroScales)) { return; } vec3 viewCenter = quatVec(renderToViewQuat, center) + renderToViewPos; if (viewCenter.z >= 0.0) { return; } vec4 clipCenter = projectionMatrix * vec4(viewCenter, 1.0); if (abs(clipCenter.z) >= clipCenter.w) { return; } float clip = clipXY * clipCenter.w; if (abs(clipCenter.x) > clip || abs(clipCenter.y) > clip) { return; } vec4 viewQuaternion = quatQuat(renderToViewQuat, quaternion); if (enable2DGS && any(zeroScales)) { vRgba = rgba; vSplatUv = position.xy * maxStdDev; vec3 offset; if (zeroScales.z) { offset = vec3(vSplatUv.xy * scales.xy, 0.0); } else if (zeroScales.y) { offset = vec3(vSplatUv.x * scales.x, 0.0, vSplatUv.y * scales.z); } else { offset = vec3(0.0, vSplatUv.xy * scales.yz); } vec3 viewPos = viewCenter + quatVec(viewQuaternion, offset); gl_Position = projectionMatrix * vec4(viewPos, 1.0); vNdc = gl_Position.xyz / gl_Position.w; return; } vec3 ndcCenter = clipCenter.xyz / clipCenter.w; mat3 RS = scaleQuaternionToMatrix(scales, viewQuaternion); mat3 cov3D = RS * transpose(RS); vec2 focal = 0.5 * renderSize * vec2(projectionMatrix[0][0], projectionMatrix[1][1]); float invZ = 1.0 / viewCenter.z; vec2 J1 = focal * invZ; vec2 J2 = -(J1 * viewCenter.xy) * invZ; mat3 J = mat3( J1.x, 0.0, J2.x, 0.0, J1.y, J2.y, 0.0, 0.0, 0.0 ); mat3 cov2D = transpose(J) * cov3D * J; float a = cov2D[0][0]; float d = cov2D[1][1]; float b = cov2D[0][1]; a += preBlurAmount; d += preBlurAmount; float fullBlurAmount = blurAmount; if ((focalDistance > 0.0) && (apertureAngle > 0.0)) { float focusRadius = MAX_PIXEL_RADIUS; if (viewCenter.z < 0.0) { float focusBlur = abs((-viewCenter.z - focalDistance) / viewCenter.z); float apertureRadius = focal.x * tan(0.5 * apertureAngle); focusRadius = focusBlur * apertureRadius; } fullBlurAmount = clamp(sqr(focusRadius), blurAmount, sqr(MAX_PIXEL_RADIUS)); } float detOrig = a * d - b * b; a += fullBlurAmount; d += fullBlurAmount; float det = a * d - b * b; float blurAdjust = sqrt(max(0.0, detOrig / det)); rgba.a *= blurAdjust; if (rgba.a < MIN_ALPHA) { return; } float eigenAvg = 0.5 * (a + d); float eigenDelta = sqrt(max(0.0, eigenAvg * eigenAvg - det)); float eigen1 = eigenAvg + eigenDelta; float eigen2 = eigenAvg - eigenDelta; vec2 eigenVec1 = normalize(vec2((abs(b) < 0.001) ? 1.0 : b, eigen1 - a)); vec2 eigenVec2 = vec2(eigenVec1.y, -eigenVec1.x); float scale1 = position.x * min(MAX_PIXEL_RADIUS, maxStdDev * sqrt(eigen1)); float scale2 = position.y * min(MAX_PIXEL_RADIUS, maxStdDev * sqrt(eigen2)); vec2 pixelOffset = eigenVec1 * scale1 + eigenVec2 * scale2; vec2 ndcOffset = (2.0 / renderSize) * pixelOffset; vec3 ndc = vec3(ndcCenter.xy + ndcOffset, ndcCenter.z); vRgba = rgba; vSplatUv = position.xy * maxStdDev; vNdc = ndc; gl_Position = vec4(ndc.xy * clipCenter.w, clipCenter.zw); }`; let fe = null; function PQ() { return fe || (Q.ShaderChunk.splatDefines = OQ, fe = { splatVertex: jQ, splatFragment: WQ }), fe; } const is = 5; let Ue = !1, be = !1, Gr; function XQ(t) { let A = !1; return t instanceof VA ? !0 : (t.traverse((e) => { A = A || e instanceof VA; }), A); } const Rr = Q.Scene.prototype.add; Q.Scene.prototype.add = function(t) { return Ue = Ue || XQ(t), be = be || t instanceof se, Rr.call(this, t), this; }; const $Q = Q.Scene.prototype.onBeforeRender; Q.Scene.prototype.onBeforeRender = function(t) { if (Ue) { if (!be) { const A = Gr || new se({ renderer: t }); this.add(A); } Q.Scene.prototype.onBeforeRender = $Q, Q.Scene.prototype.add = Rr; } }; const wA = class wA extends Q.Mesh { constructor(A) { const e = wA.makeUniforms(), s = PQ(), i = new Q.ShaderMaterial({ glslVersion: Q.GLSL3, vertexShader: s.splatVertex, fragmentShader: s.splatFragment, uniforms: e, transparent: !0, blending: Q.NormalBlending, depthTest: !0, depthWrite: !1, side: Q.DoubleSide }); super(ns, i), this.autoViewpoints = [], this.rotateToAccumulator = new Lt({ value: new Q.Quaternion() }), this.translateToAccumulator = new dt({ value: new Q.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 = SA( { gsplat: P }, { gsplat: P }, ({ gsplat: a }) => { if (!a) throw new Error("gsplat not defined"); return a = Je(a, { rotate: this.rotateToAccumulator, translate: this.translateToAccumulator }), { gsplat: a }; } ); this.modifier = new NQ(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 ?? !1, this.preBlurAmount = A.preBlurAmount ?? 0, this.blurAmount = A.blurAmount ?? 0.3, this.focalDistance = A.focalDistance ?? 0, this.apertureAngle = A.apertureAngle ?? 0, this.falloff = A.falloff ?? 1, this.clipXY = A.clipXY ?? 1.4, this.active = new De(), this.accumulatorCount = 1, this.freeAccumulators = []; for (let a = 0; a < 1; ++a) this.freeAccumulators.push(new De()), this.accumulatorCount += 1; this.defaultView = new ee({ ...A.view, autoUpdate: !0, spark: this }), this.viewpoint = this.defaultView, this.prepareViewpoint(this.viewpoint), this.clock = A.clock ? yi(A.clock) : new Q.Clock(), Gr = this; } static makeUniforms() { return { // Size of render viewport in pixels renderSize: { value: new Q.Vector2() }, // Total number of Gsplats in packedSplats to render numSplats: { value: 0 }, // SplatAccumulator to view transformation quaternion renderToViewQuat: { value: new Q.Quaternion() }, // SplatAccumulator to view transformation translation renderToViewPos: { value: new Q.Vector3() }, // Maximum distance (in stddevs) from Gsplat center to render maxStdDev: { value: 1 }, // Enable interpreting 0-thickness Gsplats as 2DGS enable2DGS: { value: !1 }, // Add to projected 2D splat covariance diagonal (thickens and brightens) preBlurAmount: { value: 0 }, // Add to 2D splat covariance diagonal and adjust opacity (anti-aliasing) blurAmount: { value: 0.3 }, // Depth-of-field distance to focal plane focalDistance: { value: 0 }, // Full-width angle of aperture opening (in radians) apertureAngle: { value: 0 }, // Modulate Gaussian kernal falloff. 0 means "no falloff, flat shading", // 1 is normal e^-x^2 falloff. falloff: { value: 1 }, // Clip Gsplats that are clipXY times beyond the +-1 frustum bounds clipXY: { value: 1.4 }, // Gsplat collection to render packedSplats: { type: "t", value: TA.getEmpty() }, // Time in seconds for time-based effects time: { value: 0 }, // Delta time in seconds since last frame deltaTime: { value: 0 }, // Whether to encode Gsplat with linear RGB (for environment mapping) encodeLinear: { value: !1 }, // Debug flag that alternates each frame debugFlag: { value: !1 } }; } canAllocAccumulator() { return this.freeAccumulators.length > 0 || this.accumulatorCount < is; } maybeAllocAccumulator() { let A = this.freeAccumulators.pop(); if (A === void 0) { if (this.accumulatorCount >= is) return null; A = new De(), this.accumulatorCount += 1; } return A.refCount = 1, A; } releaseAccumulator(A) { A.refCount -= 1, A.refCount === 0 && this.freeAccumulators.push(A); } newViewpoint(A) { return new ee({ ...A, spark: this }); } onBeforeRender(A, e, s) { var C, E; 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 h = A.xr.getCamera().cameras; this.defaultCameras = h.map((c) => c.matrixWorld), this.defaultView.viewToWorld = AC(this.defaultCameras) ?? new Q.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 h = A.getSize(this.uniforms.renderSize.value); if (h.x === 1 && h.y === 1) { const c = (C = A.xr.getSession()) == null ? void 0 : C.renderState.baseLayer; c && (h.x = c.framebufferWidth, h.y = c.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.focalDistance.value = this.focalDistance, this.uniforms.apertureAngle.value = this.apertureAngle, this.uniforms.falloff.value = this.falloff, this.uniforms.clipXY.value = this.clipXY; const I = ((E = g.display) == null ? void 0 : E.accumulator.toWorld) ?? new Q.Matrix4(), B = s.matrixWorld.clone().invert(); I.clone().premultiply(B).decompose( this.uniforms.renderToViewPos.value, this.uniforms.renderToViewQuat.value, new Q.Vector3() ); } // Update the uniforms for the given viewpoint. // Note that the client expects to be able to call render() at any point // to update the canvas, so we must switch the viewpoint back to // defaultView when we're finished. 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 = TA.getEmpty(), this.geometry = ns; } // If spark.autoUpdate is false then you must manually call // spark.update({ scene }) to have the scene Gsplats be re-generated. 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 C; 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((E, h) => (E.set(h.node, h), E), /* @__PURE__ */ new Map()), { generators: r, globalEdits: g } = this.compileScene(A); for (const E of r) (C = E.frameUpdate) == null || C.call(E, { object: E, time: i, deltaTime: n, viewToWorld: s, globalEdits: g }); for (const E of r) { const h = a.get(E), c = E.generator ? E.numSplats : 0; (E.generator !== (h == null ? void 0 : h.generator) || c !== (h == null ? void 0 : h.count)) && E.updateVersion(); } const B = !Pt({ matrix1: e, matrix2: this.active.toWorld, maxDistance: this.originDistance }) || r.length !== a.size || r.some((E) => { var h; return E.version !== ((h = a.get(E)) == null ? void 0 : h.version); }); let o = null; if (B) { if (o = this.maybeAllocAccumulator(), !o) throw new Error("Unreachable"); const E = !Pt({ matrix1: e, matrix2: this.active.toWorld, maxDistance: 1e-5, minCoorient: 0.99999 }), c = r.map((p, f) => { const N = a.get(p); return N ? ( // 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. [p.version - N.version, N.base, p] ) : [Number.POSITIVE_INFINITY, p.version, p]; }).sort((p, f) => p[0] !== f[0] ? p[0] - f[0] : p[1] - f[1]).map(([p, f, N]) => N), l = c.map((p) => p.numSplats), { maxSplats: u, mapping: w } = o.splats.generateMapping(l), d = c.map((p, f) => { const { base: N, count: m } = w[f]; return { node: p, generator: p.generator, version: p.version, base: N, count: m }; }); e.clone().invert().decompose( this.translateToAccumulator.value, this.rotateToAccumulator.value, new Q.Vector3() ), o.ensureGenerate(u), o.generateSplats({ renderer: this.renderer, modifier: this.modifier, generators: d, forceUpdate: E, originToWorld: e }), o.splatsVersion = this.active.splatsVersion + 1; const y = o.hasCorrespondence(this.active); o.mappingVersion = this.active.mappingVersion + (y ? 0 : 1), this.releaseAccumulator(this.active), this.active = o, this.prepareViewpoint(); } return setTimeout(() => { for (const E of this.autoViewpoints) E.autoPoll({ accumulator: o ?? void 0 }); }, 1), !0; } compileScene(A) { const e = []; A.traverse((i) => { i instanceof ge && e.push(i); }); const s = /* @__PURE__ */ new Set(); return A.traverseVisible((i) => { if (i instanceof $t) { let n = i.parent; for (; n != null && !(n instanceof VA); ) n = n.parent; n == null && s.add(i); } }), { 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, // sorts them with respect to the provided worldCenter, renders 6 cube faces, // then pre-filters them using THREE.PMREMGenerator and returns a THREE.Texture // that can assigned directly to a THREE.MeshStandardMaterial.envMap property. async renderEnvMap({ renderer: A, scene: e, worldCenter: s, size: i = 256, near: n = 0.1, far: a = 1e3, hideObjects: r = [], update: g = !1 }) { var E, h; 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 c = new Q.WebGLCubeRenderTarget(i, { format: Q.RGBAFormat, generateMipmaps: !0, minFilter: Q.LinearMipMapLinearFilter }), l = new Q.CubeCamera(n, a, c); wA.cubeRender = { target: c, camera: l, near: n, far: a }; } wA.pmrem || (wA.pmrem = new Q.PMREMGenerator(A ?? this.renderer)); const I = new Q.Matrix4().setPosition(s); await ((E = this.envViewpoint) == null ? void 0 : E.prepare({ scene: e, viewToWorld: I, update: g })); const { target: B, camera: o } = wA.cubeRender; o.position.copy(s); const C = /* @__PURE__ */ new Map(); for (const c of r) C.set(c, c.visible), c.visible = !1; this.prepareViewpoint(this.envViewpoint), o.update(A ?? this.renderer, e), this.prepareViewpoint(this.defaultView); for (const [c, l] of C.entries()) c.visible = l; return (h = wA.pmrem) == null ? void 0 : h.fromCubemap(B.texture).texture; } // Utility function to recursively set the envMap property for any // THREE.MeshStandardMaterial within the subtree of root. recurseSetEnvMap(A, e) { A.traverse((s) => { if (s instanceof Q.Mesh) if (Array.isArray(s.material)) for (const i of s.material) i instanceof Q.MeshStandardMaterial && (i.envMap = e); else s.material instanceof Q.MeshStandardMaterial && (s.material.envMap = e); }); } // Utility function that helps extract the Gsplat RGBA values from a // SplatGenerator, including the result of any real-time RGBA SDF edits applied // to a SplatMesh. This effectively "bakes" any computed RGBA values, which can // now be used as a pipeline input via SplatMesh.splatRgba to inject these // baked values into the Gsplat data. 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 Ge(), e.fromPackedSplats({ packedSplats: this.active.splats, base: s.base, count: s.count, renderer: this.renderer }), 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: e }) { return e = this.getRgba({ generator: A, rgba: e }), e.read(); } }; wA.cubeRender = null, wA.pmrem = null; let se = wA; const ns = new Re(new Uint32Array(1), 0); SA( { packedSplats: vt, index: "int" }, { gsplat: P }, ({ packedSplats: t, index: A }) => { if (!t || !A) throw new Error("Invalid input"); return { gsplat: kt(t, A) }; } ); function AC(t) { if (t.length === 0) return null; const A = new Q.Vector3(), e = new Q.Quaternion(), s = new Q.Vector3(), i = [], n = []; for (const a of t) a.decompose(A, e, s), i.push(A), n.push(e); return new Q.Matrix4().compose( fi(i), mi(n), new Q.Vector3(1, 1, 1) ); } function tC(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; n < s; ++n) { const a = n * 32, r = n * 8, g = i[r + 0], I = i[r + 1], B = i[r + 2], o = i[r + 3], C = i[r + 4], E = i[r + 5], h = t[a + 24] / 255, c = 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, y = (t[a + 30] - 128) / 128, p = (t[a + 31] - 128) / 128; e( n, g, I, B, o, C, E, d, y, p, w, u, h, c, l ); } } const as = { 0: { bytesPerCenter: 12, bytesPerScale: 12, bytesPerRotation: 16, bytesPerColor: 4, bytesPerSphericalHarmonicsComponent: 4, scaleOffsetBytes: 12, rotationOffsetBytes: 24, colorOffsetBytes: 40, sphericalHarmonicsOffsetBytes: 44, scaleRange: 1 }, 1: { bytesPerCenter: 6, bytesPerScale: 6, bytesPerRotation: 8, bytesPerColor: 4, bytesPerSphericalHarmonicsComponent: 2, scaleOffsetBytes: 6, rotationOffsetBytes: 12, colorOffsetBytes: 20, sphericalHarmonicsOffsetBytes: 24, scaleRange: 32767 }, 2: { bytesPerCenter: 6, bytesPerScale: 6, bytesPerRotation: 8, bytesPerColor: 4, bytesPerSphericalHarmonicsComponent: 1, scaleOffsetBytes: 6, rotationOffsetBytes: 12, colorOffsetBytes: 20, sphericalHarmonicsOffsetBytes: 24, scaleRange: 32767 } }, eC = { 0: 0, 1: 9, 2: 24, 3: 45 }; function sC(t, A, e, s) { var E; 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: ${g}.${I}` ); const B = 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 C = 4096 + B * 1024; for (let h = 0; h < B; ++h) { const c = new DataView(t.buffer, a, 1024); a += 1024; const l = c.getUint32(0, !0), u = c.getUint32(4, !0), w = c.getUint32(8, !0), d = c.getUint32(12, !0), y = c.getFloat32(16, !0), p = c.getUint16(20, !0), f = (c.getUint32(24, !0) || ((E = as[o]) == null ? void 0 : E.scaleRange)) ?? 1, N = c.getUint32(32, !0), m = N * w, D = c.getUint32(36, !0), U = D * 4, x = p * d + U, M = c.getUint16(40, !0), b = eC[M], { bytesPerCenter: F, bytesPerScale: G, bytesPerRotation: R, bytesPerColor: J, bytesPerSphericalHarmonicsComponent: $, scaleOffsetBytes: L, rotationOffsetBytes: z, colorOffsetBytes: Z, sphericalHarmonicsOffsetBytes: iA } = as[o], AA = F + G + R + J + b * $, tA = AA * u, W = tA + x, O = M >= 1 ? new Float32Array(3 * 3) : void 0, v = M >= 2 ? new Float32Array(5 * 3) : void 0, pA = M >= 3 ? new Float32Array(7 * 3) : void 0, nA = y / 2 / f, yA = C + U, DA = C + x, Y = new DataView( t.buffer, DA, tA ), EA = new Float32Array( t.buffer, yA, d * 3 ), RA = new Uint32Array( t.buffer, C, D ); let dA = N, UA = m; for (let cA = 0; cA < l; ++cA) { const T = cA * AA; let aA; if (cA < m) aA = Math.floor(cA / w); else { const We = RA[dA - N]; cA >= UA + We && (dA += 1, UA += We), aA = dA; } const KA = o === 0 ? Y.getFloat32(T + 0, !0) : (Y.getUint16(T + 0, !0) - f) * nA + EA[3 * aA + 0], oe = o === 0 ? Y.getFloat32(T + 4, !0) : (Y.getUint16(T + 2, !0) - f) * nA + EA[3 * aA + 1], Ie = o === 0 ? Y.getFloat32(T + 8, !0) : (Y.getUint16(T + 4, !0) - f) * nA + EA[3 * aA + 2], Be = o === 0 ? Y.getFloat32(T + L + 0, !0) : MA(Y.getUint16(T + L + 0, !0)), Qe = o === 0 ? Y.getFloat32(T + L + 4, !0) : MA(Y.getUint16(T + L + 2, !0)), Ce = o === 0 ? Y.getFloat32(T + L + 8, !0) : MA(Y.getUint16(T + L + 4, !0)), Ee = o === 0 ? Y.getFloat32(T + z + 0, !0) : MA( Y.getUint16(T + z + 0, !0) ), ce = o === 0 ? Y.getFloat32(T + z + 4, !0) : MA( Y.getUint16(T + z + 2, !0) ), he = o === 0 ? Y.getFloat32(T + z + 8, !0) : MA( Y.getUint16(T + z + 4, !0) ), le = o === 0 ? Y.getFloat32(T + z + 12, !0) : MA( Y.getUint16(T + z + 6, !0) ), ue = Y.getUint8(T + Z + 0) / 255, Kr = Y.getUint8(T + Z + 1) / 255, qr = Y.getUint8(T + Z + 2) / 255, zr = Y.getUint8(T + Z + 3) / 255; e( cA, KA, oe, Ie, Be, Qe, Ce, ce, he, le, Ee, zr, ue, Kr, qr ), M >= 1 && O && (s == null || s(cA, O, v, pA)); } C += W; } } class iC { constructor({ fileBytes: A }) { 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 = 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 < this.numSplats; I++) { const B = I * 3, o = MA(g[B]), C = MA(g[B + 1]), E = MA(g[B + 2]); A == null || A(I, o, C, E); } } else if (this.version === 2) { const r = 1 << this.fractionalBits, g = this.reader.read(this.numSplats * 3 * 3); for (let I = 0; I < this.numSplats; I++) { const B = I * 9, o = ((g[B + 2] << 24 | g[B + 1] << 16 | g[B] << 8) >> 8) / r, C = ((g[B + 5] << 24 | g[B + 4] << 16 | g[B + 3] << 8) >> 8) / r, E = ((g[B + 8] << 24 | g[B + 7] << 16 | g[B + 6] << 8) >> 8) / r; A == null || A(I, o, C, E); } } else throw new Error("Unreachable"); { const r = this.reader.read(this.numSplats); for (let g = 0; g < this.numSplats; g++) e == null || e(g, r[g] / 255); } { const r = this.reader.read(this.numSplats * 3), g = br / 0.15; for (let I = 0; I < this.numSplats; I++) { const B = I * 3, o = (r[B] / 255 - 0.5) * g + 0.5, C = (r[B + 1] / 255 - 0.5) * g + 0.5, E = (r[B + 2] / 255 - 0.5) * g + 0.5; s == null || s(I, o, C, E); } } { const r = this.reader.read(this.numSplats * 3); for (let g = 0; g < this.numSplats; g++) { const I = g * 3, B = Math.exp(r[I] / 16 - 10), o = Math.exp(r[I + 1] / 16 - 10), C = Math.exp(r[I + 2] / 16 - 10); i == null || i(g, B, o, C); } } { const r = this.reader.read(this.numSplats * 3); for (let g = 0; g < this.numSplats; g++) { const I = g * 3, B = r[I] / 127.5 - 1, o = r[I + 1] / 127.5 - 1, C = r[I + 2] / 127.5 - 1, E = Math.sqrt( Math.max(0, 1 - B * B - o * o - C * C) ); n == null || n(g, B, o, C, E); } } 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, B = this.reader.read( this.numSplats * Ur[this.shDegree] * 3 ); let o = 0; for (let C = 0; C < this.numSplats; C++) { for (let E = 0; E < 9; ++E) r[E] = (B[o + E] - 128) / 128; if (o += 9, g) { for (let E = 0; E < 15; ++E) g[E] = (B[o + E] - 128) / 128; o += 15; } if (I) { for (let E = 0; E < 21; ++E) I[E] = (B[o + E] - 128) / 128; o += 21; } a == null || a(C, r, g, I); } } } } const Ur = { 1: 3, 2: 8, 3: 15 }, br = 0.28209479177387814, nC = 1347635022, aC = 2, rC = 1; class WA { constructor({ numSplats: A, shDegree: e, fractionalBits: s = 12, flagAntiAlias: i = !0 }) { this.clippedCount = 0; 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, nC, !0), this.view.setUint32(4, aC, !0), this.view.setUint32(8, A, !0), this.view.setUint8(12, e), this.view.setUint8(13, s), this.view.setUint8(14, i ? rC : 0), this.view.setUint8(15, 0), this.numSplats = A, this.shDegree = e, this.fractionalBits = s, this.fraction = 1 << s, this.flagAntiAlias = i; } 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), B = Math.max(-8388607, Math.min(8388607, I)); (n !== a || r !== g || I !== B) && (this.clippedCount += 1); const E = 16 + A * 9; this.view.setUint8(E, a & 255), this.view.setUint8(E + 1, a >> 8 & 255), this.view.setUint8(E + 2, a >> 16 & 255), this.view.setUint8(E + 3, g & 255), this.view.setUint8(E + 4, g >> 8 & 255), this.view.setUint8(E + 5, g >> 16 & 255), this.view.setUint8(E + 6, B & 255), this.view.setUint8(E + 7, B >> 8 & 255), this.view.setUint8(E + 8, B >> 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 - 0.5) / (br / 0.15) + 0.5) * 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, WA.scaleRgb(e)), this.view.setUint8(n + 1, WA.scaleRgb(s)), this.view.setUint8(n + 2, WA.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 = Ur[this.shDegree] || 0, a = 16 + this.numSplats * 19 + A * n * 3; for (let r = 0; r < 9; ++r) this.view.setUint8(a + r, WA.quantizeSh(e[r], 5)); if (s) { const r = a + 9; for (let g = 0; g < 15; ++g) this.view.setUint8(r + g, WA.quantizeSh(s[g], 4)); if (i) { const g = r + 15; for (let I = 0; I < 21; ++I) this.view.setUint8(g + I, WA.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 zC(t) { var B, o, C; const A = new qQ(), { inputs: e, clipXyz: s, maxSh: i, fractionalBits: n = 12, opacityThreshold: a } = t; for (const E of e) { let h = function(m) { return m.multiplyScalar(d), m.applyQuaternion(y), m.add(p), m; }, c = function(m) { return m.multiplyScalar(d), m; }, l = function(m) { return m.premultiply(y), m; }, u = function(m) { return !f || f.containsPoint(m); }, w = function(m) { return a !== void 0 ? m >= a : !0; }; const d = ((B = E.transform) == null ? void 0 : B.scale) ?? 1, y = new Q.Quaternion().fromArray( ((o = E.transform) == null ? void 0 : o.quaternion) ?? [0, 0, 0, 1] ), p = new Q.Vector3().fromArray( ((C = E.transform) == null ? void 0 : C.translate) ?? [0, 0, 0] ), f = s ? new Q.Box3( new Q.Vector3().fromArray(s.min), new Q.Vector3().fromArray(s.max) ) : void 0; let N = E.fileType; switch (N || (N = Nr(E.fileBytes), !N && E.pathOrUrl && (N = Fr(E.pathOrUrl))), N) { case xt.PLY: { const m = new Ae({ fileBytes: E.fileBytes }); await m.parseHeader(); let D = null; m.parseSplats( (U, x, M, b, F, G, R, J, $, L, z, Z, iA, AA, tA) => { const W = h(new Q.Vector3(x, M, b)); if (u(W) && w(Z)) { D = A.pushSplat(), A.setCenter(D, W.x, W.y, W.z); const O = c( new Q.Vector3(F, G, R) ); A.setScale(D, O.x, O.y, O.z); const v = l( new Q.Quaternion(J, $, L, z) ); A.setQuaternion( D, v.x, v.y, v.z, v.w ), A.setOpacity(D, Z), A.setColor(D, iA, AA, tA); } else D = null; }, (U, x, M, b) => { x && D !== null && A.setSh1(D, x), M && D !== null && A.setSh2(D, M), b && D !== null && A.setSh3(D, b); } ); break; } case xt.SPZ: { const m = new iC({ fileBytes: E.fileBytes }), D = new Int32Array(m.numSplats); D.fill(-1); const U = new Float32Array(m.numSplats * 3), x = new Q.Vector3(); m.parseSplats( (M, b, F, G) => { const R = h(new Q.Vector3(b, F, G)); U[M * 3] = R.x, U[M * 3 + 1] = R.y, U[M * 3 + 2] = R.z; }, (M, b) => { x.fromArray(U, M * 3), u(x) && w(b) && (D[M] = A.pushSplat(), A.setCenter(D[M], x.x, x.y, x.z), A.setOpacity(D[M], b)); }, (M, b, F, G) => { D[M] >= 0 && A.setColor(D[M], b, F, G); }, (M, b, F, G) => { if (D[M] >= 0) { const R = c( new Q.Vector3(b, F, G) ); A.setScale(D[M], R.x, R.y, R.z); } }, (M, b, F, G, R) => { if (D[M] >= 0) { const J = l( new Q.Quaternion(b, F, G, R) ); A.setQuaternion( D[M], J.x, J.y, J.z, J.w ); } }, (M, b, F, G) => { D[M] >= 0 && (A.setSh1(D[M], b), F && A.setSh2(D[M], F), G && A.setSh3(D[M], G)); } ); break; } case xt.SPLAT: tC( E.fileBytes, (m) => { }, (m, D, U, x, M, b, F, G, R, J, $, L, z, Z, iA) => { const AA = h(new Q.Vector3(D, U, x)); if (u(AA) && w(L)) { const tA = A.pushSplat(); A.setCenter(tA, AA.x, AA.y, AA.z); const W = c( new Q.Vector3(M, b, F) ); A.setScale(tA, W.x, W.y, W.z); const O = l( new Q.Quaternion(G, R, J, $) ); A.setQuaternion( tA, O.x, O.y, O.z, O.w ), A.setOpacity(tA, L), A.setColor(tA, z, Z, iA); } } ); break; case xt.KSPLAT: { let m = null; sC( E.fileBytes, (D) => { }, (D, U, x, M, b, F, G, R, J, $, L, z, Z, iA, AA) => { const tA = h(new Q.Vector3(U, x, M)); if (u(tA) && w(z)) { m = A.pushSplat(), A.setCenter(m, tA.x, tA.y, tA.z); const W = c( new Q.Vector3(b, F, G) ); A.setScale(m, W.x, W.y, W.z); const O = l( new Q.Quaternion(R, J, $, L) ); A.setQuaternion( m, O.x, O.y, O.z, O.w ), A.setOpacity(m, z), A.setColor(m, Z, iA, AA); } else m = null; }, (D, U, x, M) => { m !== null && (A.setSh1(m, U), x && A.setSh2(m, x), M && A.setSh3(m, M)); } ); break; } default: throw new Error(`transcodeSpz not implemented for ${N}`); } } const r = Math.min( i ?? 3, A.sh3 ? 3 : A.sh2 ? 2 : A.sh1 ? 1 : 0 ), g = new WA({ numSplats: A.numSplats, shDegree: r, fractionalBits: n, flagAntiAlias: !0 }); for (let E = 0; E < A.numSplats; ++E) { const h = E * 3, c = E * 4; g.setCenter( E, A.centers[h], A.centers[h + 1], A.centers[h + 2] ), g.setScale( E, A.scales[h], A.scales[h + 1], A.scales[h + 2] ), g.setQuat( E, A.quaternions[c], A.quaternions[c + 1], A.quaternions[c + 2], A.quaternions[c + 3] ), g.setAlpha(E, A.opacities[E]), g.setRgb( E, A.colors[h], A.colors[h + 1], A.colors[h + 2] ), A.sh1 && r >= 1 && g.setSh( E, A.sh1.slice(E * 9, (E + 1) * 9), r >= 2 && A.sh2 ? A.sh2.slice(E * 15, (E + 1) * 15) : void 0, r >= 3 && A.sh3 ? A.sh3.slice(E * 21, (E + 1) * 21) : void 0 ); } return { fileBytes: await g.finalize(), clippedCount: g.clippedCount }; } class _C { constructor(A) { this.mesh = A.mesh, this.numSplats = A.numSplats ?? this.mesh.numSplats; const { width: e, height: s, depth: i, maxSplats: n } = mA(this.numSplats); this.skinData = new Uint16Array(n * 4), this.skinTexture = new Q.DataArrayTexture( this.skinData, e, s, i ), this.skinTexture.format = Q.RGBAIntegerFormat, this.skinTexture.type = Q.UnsignedShortType, this.skinTexture.internalFormat = "RGBA16UI", this.skinTexture.needsUpdate = !0, this.numBones = A.numBones ?? 256, this.boneData = new Float32Array(this.numBones * 16), this.boneTexture = new Q.DataTexture( this.boneData, 4, this.numBones, Q.RGBAFormat, Q.FloatType ), this.boneTexture.internalFormat = "RGBA32F", this.boneTexture.needsUpdate = !0, this.uniform = new k({ key: "skinning", type: vr, globals: () => [Lr], value: { numSplats: this.numSplats, numBones: this.numBones, skinTexture: this.skinTexture, boneTexture: this.boneTexture } }); } // Apply the skeletal animation to a Gsplat in a dyno program. modify(A) { return oC(A, this.uniform); } // Set the "rest" pose for a bone with position and quaternion orientation. 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, e, s) { const i = A * 16, n = new Q.Quaternion( this.boneData[i + 0], this.boneData[i + 1], this.boneData[i + 2], this.boneData[i + 3] ), a = new Q.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 Q.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] = 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, 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. updateBones() { this.boneTexture.needsUpdate = !0, this.mesh.needsUpdate = !0; } } const vr = { type: "GsplatSkinning" }, Lr = CA(` struct GsplatSkinning { int numSplats; int numBones; usampler2DArray skinTexture; sampler2D boneTexture; }; `), gC = CA(` void applyGsplatSkinning( int numSplats, int numBones, usampler2DArray skinTexture, sampler2D boneTexture, int splatIndex, inout vec3 center, inout vec4 quaternion ) { if ((splatIndex < 0) || (splatIndex >= numSplats)) { return; } uvec4 skinData = texelFetch(skinTexture, splatTexCoord(splatIndex), 0); float weights[4]; weights[0] = float(skinData.x & 0xffu) / 255.0; weights[1] = float(skinData.y & 0xffu) / 255.0; weights[2] = float(skinData.z & 0xffu) / 255.0; weights[3] = float(skinData.w & 0xffu) / 255.0; uint boneIndices[4]; boneIndices[0] = (skinData.x >> 8u) & 0xffu; boneIndices[1] = (skinData.y >> 8u) & 0xffu; boneIndices[2] = (skinData.z >> 8u) & 0xffu; boneIndices[3] = (skinData.w >> 8u) & 0xffu; vec4 quat = vec4(0.0); vec4 dual = vec4(0.0); for (int i = 0; i < 4; i++) { if (weights[i] > 0.0) { int boneIndex = int(boneIndices[i]); vec4 boneQuat = vec4(0.0, 0.0, 0.0, 1.0); vec4 boneDual = vec4(0.0); if (boneIndex < numBones) { boneQuat = texelFetch(boneTexture, ivec2(2, boneIndex), 0); boneDual = texelFetch(boneTexture, ivec2(3, boneIndex), 0); } if ((i > 0) && (dot(quat, boneQuat) < 0.0)) { // Flip sign if next blend is pointing in the opposite direction boneQuat = -boneQuat; boneDual = -boneDual; } quat += weights[i] * boneQuat; dual += weights[i] * boneDual; } } // Normalize dual quaternion float norm = length(quat); quat /= norm; dual /= norm; vec3 translate = vec3( 2.0 * (-dual.w * quat.x + dual.x * quat.w - dual.y * quat.z + dual.z * quat.y), 2.0 * (-dual.w * quat.y + dual.x * quat.z + dual.y * quat.w - dual.z * quat.x), 2.0 * (-dual.w * quat.z - dual.x * quat.y + dual.y * quat.x + dual.z * quat.w) ); center = quatVec(quat, center) + translate; quaternion = quatQuat(quat, quaternion); } `); function oC(t, A) { return new V({ inTypes: { gsplat: P, skinning: vr }, outTypes: { gsplat: P }, globals: () => [Lr, gC], inputs: { gsplat: t, skinning: A }, statements: ({ inputs: s, outputs: i }) => { const { skinning: n } = s, { gsplat: a } = i; return GA(` ${a} = ${s.gsplat}; if (isGsplatActive(${a}.flags)) { applyGsplatSkinning( ${n}.numSplats, ${n}.numBones, ${n}.skinTexture, ${n}.boneTexture, ${a}.index, ${a}.center, ${a}.quaternion ); } `); } }).outputs.gsplat; } function VC({ // PackedSplats object to add splats to splats: t, // min and max box extents of the grid extents: A, // step size along each grid axis stepSize: e = 1, // spherical radius of each Gsplat pointRadius: s = 0.01, // relative size of the "shadow copy" of each Gsplat placed behind it pointShadowScale: i = 2, // Gsplat opacity opacity: n = 1, // Gsplat color (THREE.Color) or function to set color for position: // ((THREE.Color, THREE.Vector3) => void) (default: RGB-modulated grid) color: a }) { const g = new Q.Vector3(), I = new Q.Vector3(), B = new Q.Quaternion(0, 0, 0, 1); a == null && (a = (C, E) => C.set( 0.55 + 0.45 * Math.cos(E.x * 1), 0.55 + 0.45 * Math.cos(E.y * 1), 0.55 + 0.45 * Math.cos(E.z * 1) )); const o = new Q.Color(); for (let C = A.min.z; C < A.max.z + 1e-6; C += e) for (let E = A.min.y; E < A.max.y + 1e-6; E += e) for (let h = A.min.x; h < A.max.x + 1e-6; h += e) { g.set(h, E, C); for (let c = 0; c < 2; ++c) I.setScalar(s * (c ? 1 : i)), c ? typeof a == "function" ? a(o, g) : o.copy(a) : o.setScalar(0), t.pushSplat(g, I, B, n, o); } } function ZC({ // PackedSplats object to add splats to splats: t, // scale (Gsplat scale along axis) scale: A = 0.25, // radius of the axes (Gsplat scale orthogonal to axis) axisRadius: e = 75e-4, // relative size of the "shadow copy" of each Gsplat placed behind it axisShadowScale: s = 2, // origins of the axes (default single axis at origin) origins: i = [new Q.Vector3()] }) { const n = new Q.Vector3(), a = new Q.Vector3(), r = new Q.Quaternion(0, 0, 0, 1), g = new Q.Color(), I = 1; for (const B of i) for (let o = 0; o < 3; ++o) { n.set( B.x + (o === 0 ? A : 0), B.y + (o === 1 ? A : 0), B.z + (o === 2 ? A : 0) ); for (let C = 0; C < 2; ++C) a.set( (o === 0 ? A : e) * (C ? 1 : s), (o === 1 ? A : e) * (C ? 1 : s), (o === 2 ? A : e) * (C ? 1 : s) ), g.setRGB( C === 0 ? 0 : o === 0 ? 1 : 0, C === 0 ? 0 : o === 1 ? 1 : 0, C === 0 ? 0 : o === 2 ? 1 : 0 ), t.pushSplat(n, a, r, I, g); } } function OC({ // PackedSplats object to add splats to splats: t, // center of the sphere (default: origin) origin: A = new Q.Vector3(), // radius of the sphere radius: e = 1, // maximum depth of recursion for subdividing the sphere // Warning: Gsplat count grows exponentially with depth 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: i = null, // radius of each oriented Gsplat pointRadius: n = 0.02, // flatness of each oriented Gsplat 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: r = new Q.Color(1, 1, 1) }) { const g = {}; function I(c) { if (i && !i(c)) return; const l = `${c.x},${c.y},${c.z}`; g[l] || (g[l] = c); } function B(c, l, u, w) { if (I(l), I(u), I(w), c >= s) return; const d = new Q.Vector3().addVectors(l, u).normalize(), y = new Q.Vector3().addVectors(u, w).normalize(), p = new Q.Vector3().addVectors(w, l).normalize(); B(c + 1, l, d, p), B(c + 1, d, u, y), B(c + 1, p, y, w), B(c + 1, d, y, p); } for (const c of [-1, 1]) for (const l of [-1, 1]) for (const u of [-1, 1]) { const w = new Q.Vector3(c, 0, 0), d = new Q.Vector3(0, l, 0), y = new Q.Vector3(0, 0, u); B(0, w, d, y); } const o = Object.values(g), C = new Q.Vector3(n, n, a), E = new Q.Quaternion(), h = typeof r == "function" ? new Q.Color() : r; for (const c of o) E.setFromUnitVectors(new Q.Vector3(0, 0, -1), c), typeof r == "function" && r(h, c), c.multiplyScalar(e), c.add(A), t.pushSplat(c, C, E, 1, h); } function WC({ // text string to display text: t, // browser font to render text with (default: "Arial") font: A, // font size in pixels/Gsplats (default: 32) fontSize: e, // SplatMesh.recolor tint assuming white Gsplats (default: white) color: s, // Individual Gsplat color (default: white) rgb: i, // Gsplat radius (default: 0.8 covers 1-unit spacing well) dotRadius: n, // text alignment: "left", "center", "right", "start", "end" (default: "start") textAlign: a, // line spacing multiplier, lines delimited by "\n" (default: 1.0) lineHeight: r, // Coordinate scale in object-space (default: 1.0) objectScale: g }) { A = A ?? "Arial", e = e ?? 32, s = s ?? new Q.Color(1, 1, 1), n = n ?? 0.8, a = a ?? "start", r = r ?? 1, g = g ?? 1; const I = t.split(` `), B = document.createElement("canvas"), o = B.getContext("2d"); if (!o) throw new Error("Failed to create canvas context"); o.font = `${e}px ${A}`, o.textAlign = a; const C = o.measureText(""), E = C.fontBoundingBoxAscent + C.fontBoundingBoxDescent; let h = Number.POSITIVE_INFINITY, c = Number.NEGATIVE_INFINITY, l = Number.POSITIVE_INFINITY, u = Number.NEGATIVE_INFINITY; for (let F = 0; F < I.length; ++F) { const G = o.measureText(I[F]), R = E * r * F; h = Math.min(h, -G.actualBoundingBoxLeft), c = Math.max(c, G.actualBoundingBoxRight), l = Math.min(l, R - G.actualBoundingBoxAscent), u = Math.max(u, R + G.actualBoundingBoxDescent); } const w = Math.floor(h), d = Math.floor(l), y = Math.ceil(c) - w, p = Math.ceil(u) - d; B.width = y, B.height = p, o.font = `${e}px ${A}`, o.textAlign = a, o.textBaseline = "alphabetic", o.fillStyle = "#FFFFFF"; for (let F = 0; F < I.length; ++F) { const G = E * r * F - d; o.fillText(I[F], -w, G); } const f = o.getImageData(0, 0, y, p), N = new Uint8Array(f.data.buffer), m = new TA(), D = new Q.Vector3(), U = new Q.Vector3().setScalar(n * g), x = new Q.Quaternion(0, 0, 0, 1); i = i ?? new Q.Color(1, 1, 1); let M = 0; for (let F = 0; F < p; ++F) for (let G = 0; G < y; ++G) { const R = N[M + 3]; if (R > 0) { const J = R / 255; D.set(G - 0.5 * (y - 1), 0.5 * (p - 1) - F, 0), D.multiplyScalar(g), m.pushSplat(D, U, x, J, i); } M += 4; } const b = new VA({ packedSplats: m }); return b.recolor = s, b; } function jC({ // URL of the image to convert to splats (example: `url: "./image.png"`) 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: 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: s }) { return A = A ?? 0.8, e = Math.max(1, Math.floor(e ?? 1)), new VA({ 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, B = document.createElement("canvas"); B.width = g, B.height = I; const o = B.getContext("2d"); if (!o) { a(new Error("Failed to create canvas context")); return; } o.imageSmoothingEnabled = !0, o.imageSmoothingQuality = "high"; const C = Math.round(g / e), E = Math.round(I / e); o.drawImage(r, 0, 0, C, E); try { const h = o.getImageData(0, 0, C, E), c = new Uint8Array(h.data.buffer), l = new Q.Vector3(), u = new Q.Vector3().setScalar(A), w = new Q.Quaternion(0, 0, 0, 1), d = new Q.Color(); let y = 0; for (let p = 0; p < E; ++p) for (let f = 0; f < C; ++f) { const N = y * 4, m = c[N + 3]; if (m > 0) { let D = m / 255; d.set( c[N + 0] / 255, c[N + 1] / 255, c[N + 2] / 255 ), l.set( f - 0.5 * (C - 1), 0.5 * (E - 1) - p, 0 ), u.setScalar(A), w.set(0, 0, 0, 1); let U = !0; if (s) { const x = s( C, E, y, l, u, w, D, d ); D = x ?? D, U = x !== null; } U && i.pushSplat(l, u, w, D, d); } y += 1; } n(); } catch (h) { a(h); } }, r.src = t; }) }); } function IC({ 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 = K("int", A.x), r = K("int", A.y); K("int", A.z); const g = LA(0), I = new ge({ numSplats: n, generator: SA( { index: "int" }, { gsplat: P }, ({ index: o }) => { if (!o) throw new Error("index is undefined"); const C = Ne(o, a), E = Zt(o, a), h = Ne(E, r), c = Zt(E, r), l = JA({ vectorType: "ivec3", x: C, y: h, z: c }), u = Rn(g), w = JA({ vectorType: "ivec2", x: o, y: u }), d = La(w), y = K("vec3", t.min), p = K("vec3", t.max), f = wt(p, y), N = Zt(fA(gt(l), d), K("vec3", A)); let m, D, U; s ? (m = K("float", s.r), D = K("float", s.g), U = K("float", s.b)) : { r: m, g: D, b: U } = ut(N).outputs; const x = JA({ vectorType: "vec4", r: m, g: D, b: U, a: K("float", i) }), M = fA(y, QA(f, N)), b = gt(K("float", e)), F = K("vec4", new Q.Quaternion(0, 0, 0, 1)); let G = At({ flags: Wt("uint", "GSPLAT_FLAG_ACTIVE"), index: o, center: M, scales: b, quaternion: F, rgba: x }); return G = B.applyGsplat(G), { gsplat: G }; }, { globals: () => [xA] } ), update: ({ time: o }) => { g.value = o, B.update(I), I.updateVersion(); } }), B = new ct(); return I; } const BC = { box: new Q.Box3( new Q.Vector3(-1, -1, -1), new Q.Vector3(1, 1, 1) ), density: 100, fallDirection: new Q.Vector3(-1, -3, 1).normalize(), fallVelocity: 0.02, wanderScale: 0.04, wanderVariance: 2, color1: new Q.Color(1, 1, 1), color2: new Q.Color(0.5, 0.5, 1), minScale: 1e-3, maxScale: 5e-3, anisoScale: new Q.Vector3(1, 1, 1) }, QC = { box: new Q.Box3( new Q.Vector3(-2, -1, -2), new Q.Vector3(2, 5, 2) ), density: 10, fallDirection: new Q.Vector3(0, -1, 0), fallVelocity: 2, wanderScale: 0.1, wanderVariance: 1, color1: new Q.Color(1, 1, 1), color2: new Q.Color(0.25, 0.25, 0.5), minScale: 5e-3, maxScale: 0.01, anisoScale: new Q.Vector3(0.1, 1, 0.1) }; function CC({ // min and max box extents of the snowBox 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: e, // density of Gsplats per unit volume (default: 100) density: s, // The xyz anisotropic scale of the Gsplat, which can be used for example // to elongate rain particles (default: (1, 1, 1)) anisoScale: i, // Minimum Gsplat particle scale (default: 0.001) minScale: n, // Maximum Gsplat particle scale (default: 0.005) maxScale: a, // The average direction of fall (default: (0, -1, 0)) fallDirection: r, // The average speed of the fall (multiplied with fallDirection) (default: 0.02) fallVelocity: g, // The world scale of wandering overlay motion (default: 0.01) wanderScale: I, // Controls how uniformly the particles wander in sync, more variance mean // more randomness in the motion (default: 2) wanderVariance: B, // Color 1 of the two colors interpolated between (default: (1, 1, 1)) color1: o, // Color 2 of the two colors interpolated between (default: (0.5, 0.5, 1)) color2: C, // The base opacity of the Gsplats (default: 1) opacity: E, // Optional callback function to call each frame. onFrame: h }) { t = t ?? new Q.Box3(new Q.Vector3(-1, -1, -1), new Q.Vector3(1, 1, 1)); const c = (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(c * s))); const l = LA(n ?? 1e-3), u = LA(a ?? 5e-3), w = OA( ((i == null ? void 0 : i.clone()) ?? new Q.Vector3(1, 1, 1)).normalize() ), d = OA( (r ?? new Q.Vector3(0, -1, 0)).normalize() ), y = LA(g ?? 0.02), p = LA(I ?? 0.01), f = LA(B ?? 2), N = OA(o ?? new Q.Color(1, 1, 1)), m = OA(C ?? new Q.Color(0.5, 0.5, 1)), D = LA(E ?? 1), U = LA(0), x = OA(new Q.Vector3(0, 0, 0)), M = OA(t.min), b = OA(t.max), F = LA(A ?? Number.NEGATIVE_INFINITY), G = wt(b, M), R = new ge({ numSplats: e, generator: SA( { index: "int" }, { gsplat: P }, ({ index: $ }) => { if (!$) throw new Error("index not defined"); const L = Fe($), z = ut(L).outputs.w; let Z = gt(L), iA = Ot(QA(z, K("float", 100))); iA = ke(QA(Wt("float", "PI"), iA)), iA = fA(l, QA(iA, wt(u, l))); const AA = QA(iA, w), tA = Ot(QA(z, K("float", 10))), W = Ot(z), O = bi(N, m, W), v = QA(O, tA), pA = Fe( JA({ vectorType: "ivec2", x: $, y: K("int", 6837) }) ); let nA = gt(pA), yA = QA(ut(pA).outputs.w, f); yA = fA(U, yA), Z = fA(Z, x); const DA = Ri( Z, K("vec3", new Q.Vector3(1, 1, 1)) ); Z = fA(M, QA(G, DA)); const Y = K("vec4", new Q.Quaternion(0, 0, 0, 1)); nA = ke(fA(gt(yA), nA)), nA = QA(nA, p); let EA = fA(Z, nA), RA = ut(EA).outputs.y; RA = Ui(F, RA), EA = JA({ vector: EA, y: RA }); let dA = At({ flags: Wt("uint", "GSPLAT_FLAG_ACTIVE"), index: $, center: EA, scales: AA, quaternion: Y, rgb: v, opacity: D }); return dA = J.applyGsplat(dA), { gsplat: dA }; }, { globals: () => [xA] } ), update: ({ object: $, time: L, deltaTime: z }) => { U.value = L, J.update(R); const Z = d.value.clone().multiplyScalar(y.value * z); x.value.add(Z), $.visible = D.value > 0, h == null || h({ object: $, time: L, deltaTime: z }), R.updateVersion(); } }), J = new ct(); return { snow: R, min: M, max: b, minY: F, color1: N, color2: m, opacity: D, fallVelocity: y, wanderVariance: f, wanderScale: p, fallDirection: d, minScale: l, maxScale: u, anisoScale: w }; } const PC = /* @__PURE__ */ Object.freeze(/* @__PURE__ */ Object.defineProperty({ __proto__: null, DEFAULT_RAIN: QC, DEFAULT_SNOW: BC, snowBox: CC, staticBox: IC }, Symbol.toStringTag, { value: "Module" })); function Yr(t) { return SA({ gsplat: P }, { gsplat: P }, ({ gsplat: A }) => { if (!A) throw new Error("No gsplat input"); let e = me(A); const s = t.applyGsplat(A), i = nt(s).outputs.center, n = me(s), a = Qa(i, n), r = En(a, K("float", 0)); e = Ve(r, _e(e), e); const g = fA( QA(e, K("float", 0.5)), K("float", 0.5) ); return A = At({ gsplat: A, rgb: g }), { gsplat: A }; }); } function EC(t) { t.enableWorldToView = !0, t.worldModifier = Yr(t.context.worldToView), t.updateGenerator(); } function Jr(t, A, e, s) { return SA({ gsplat: P }, { gsplat: P }, ({ gsplat: i }) => { if (!i) throw new Error("No gsplat input"); let { center: n } = nt(i).outputs; n = t.apply(n); const { z: a } = ut(n).outputs; let r = Ya(_e(a), A, e); return r = Ve(s, wt(K("float", 1), r), r), i = At({ gsplat: i, r, g: r, b: r }), { gsplat: i }; }); } function cC(t, A, e, s) { t.enableWorldToView = !0; const i = K("float", A), n = K("float", e), a = K("bool", s ?? !1); return t.worldModifier = Jr( t.context.worldToView, i, n, a ), t.updateGenerator(), { minDepth: i, maxDepth: n, reverse: a }; } const XC = /* @__PURE__ */ Object.freeze(/* @__PURE__ */ Object.defineProperty({ __proto__: null, makeDepthColorModifier: Jr, makeNormalColorModifier: Yr, setDepthColor: cC, setWorldNormalColor: EC }, Symbol.toStringTag, { value: "Module" })), Ft = class Ft { 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 C(c) { console.log("onSessionStarted"), c.addEventListener("end", E), await A.xr.setSession(c), n.textContent = "EXIT VR", o = c; } function E() { console.log("onSessionEnded"), o == null || o.removeEventListener("end", E), 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 h = { ...e, optionalFeatures: [ // "local-floor", // "bounded-floor", // "layers", ...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", h).then( C )) : (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 B(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", B(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 e = A; /WebXRViewer\//i.test(navigator.userAgent) || e.addEventListener("sessiongranted", () => { Ft.xrSessionIsGranted = !0; }); } }; Ft.xrSessionIsGranted = !1; let ve = Ft; ve.registerSessionGrantedListener(); const hC = 0.5, lC = 0.5, uC = 0; var Oe = /* @__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))(Oe || {}); const Tr = Object.keys(Oe), $C = Tr.length, AE = { w: 0, t0: 1, t1: 2, t2: 3, t3: 4, i0: 5, i1: 6, i2: 7, i3: 8, i4: 9, m0: 10, m1: 11, m2: 12, m3: 13, m4: 14, r0: 15, r1: 16, r2: 17, r3: 18, r4: 19, p0: 20, p1: 21, p2: 22, p3: 23, p4: 24 }, zt = { w: 0.02, t0: 0.02, t1: 0.014, t2: 0.0115, t3: 85e-4, i0: 0.022, i1: 0.012, i2: 85e-4, i3: 75e-4, i4: 65e-4, m0: 0.021, m1: 0.012, m2: 8e-3, m3: 75e-4, m4: 65e-4, r0: 0.019, r1: 0.011, r2: 75e-4, r3: 7e-3, r4: 6e-3, p0: 0.012, p1: 0.01, p2: 7e-3, p3: 65e-4, p4: 55e-4 }, dC = [ ["w", "t0", "t1", "t2", "t3"], ["w", "i0", "i1", "i2", "i3", "i4"], ["w", "m0", "m1", "m2", "m3", "m4"], ["w", "r0", "r1", "r2", "r3", "r4"], ["w", "p0", "p1", "p2", "p3", "p4"] ], wC = [ [8, 10, 8, 6], [8, 19, 14, 8, 6], [8, 19, 14, 8, 6], [8, 19, 14, 8, 6], [8, 19, 14, 8, 6] ], tE = ["t3", "i4", "m4", "r4", "p4"], eE = ["i4", "m4", "r4", "p4"]; var Hr = /* @__PURE__ */ ((t) => (t.left = "left", t.right = "right", t))(Hr || {}); const Le = Object.keys(Hr); class sE { constructor() { this.hands = {}, this.last = {}, this.values = {}, this.tests = {}, this.lastTests = {}, this.updated = !1; } update({ xr: A, xrFrame: e }) { const s = A.getSession(); if (!s) return; const i = A.getReferenceSpace(); if (i && e.getJointPose) { this.last = this.hands, this.lastTests = this.tests, this.hands = {}, this.values = {}, this.tests = {}; for (const n of s.inputSources) { if (!n.hand) continue; const a = n.handedness; this.hands[a] = {}; for (const r of Tr) { const g = n.hand.get(Oe[r]); if (g) { const I = e.getJointPose(g, i); if (I) { const { position: B, orientation: o } = I.transform; this.hands[a][r] = { position: new vA(B.x, B.y, B.z), quaternion: new je( o.x, o.y, o.z, o.w ), radius: I.radius || 1e-3 }; } } } } for (const n of Le) for (const { key: a, value: r } of [ { key: `${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 vA(), e = new vA(0.01, 0.01, 0.01), s = new je(0, 0, 0, 1), i = new Pe(1, 1, 1), n = Math.PI * 3; new Pe(1, 1, 1); let a = 1; const r = new VA({ onFrame: () => { let g = 0; for (const I of Le) { const B = this.hands[I]; for (const [o, C] of dC.entries()) for (let E = 1; E < C.length; ++E) { const h = wC[o][E - 1] * 2, c = E + 1 === C.length, l = B == null ? void 0 : B[C[E - 1]], u = B == null ? void 0 : B[C[E]]; for (let w = 0; w < h; ++w) { const d = (w + 0.5) / h; if (a = 0, l && u) { A.copy(l.position).lerp(u.position, d), s.copy(l.quaternion).slerp(u.quaternion, d); const y = zt[C[E - 1]], p = zt[C[E]]; let f = (1 - d) * y + d * p; c && d > 0.8 && (f *= Math.sqrt(1 - ((d - 0.8) / 0.2) ** 2)), e.set(0.65 * f, 0.5 * f, 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) ), I === "right" && i.set(1 - i.r, 1 - i.g, 1 - i.b), a = 0.75; } r.packedSplats.setSplat( g, A, e, s, a, i ), g += 1; } } } r.packedSplats.numSplats = g, r.packedSplats.needsUpdate = !0, r.numSplats = g, r.updateVersion(); } }); return r; } 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 - zt[e] - zt[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 / 0.01 - uC)); } 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) // this.touching(hand, "p4", hand, "t3", last), ); } 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 iE { constructor({ xrHands: A, control: e, moveInertia: s, rotateInertia: i }) { this.lastGrip = {}, this.lastPivot = new vA(), this.rotateVelocity = 0, this.velocity = new vA(), this.xrHands = A, this.control = e, this.moveInertia = s ?? hC, this.rotateInertia = i ?? lC; } update(A) { var n, a, r, g, I; const e = {}; for (const B of Le) { const o = this.xrHands.hands[B]; o && this.xrHands.tests[`${B}MiddleThumb`] && (e[B] = new vA().add(((n = o.t3) == null ? void 0 : n.position) ?? new vA()).add(((a = o.i4) == null ? void 0 : a.position) ?? new vA()).add(((r = o.m4) == null ? void 0 : r.position) ?? new vA()).add(((g = o.r4) == null ? void 0 : g.position) ?? new vA()).add(((I = o.p4) == null ? void 0 : I.position) ?? new vA()).multiplyScalar(1 / 5)); } if (e.left && e.right && this.lastGrip.left && this.lastGrip.right) { const B = e.left.clone().add(e.right).multiplyScalar(0.5), o = this.lastGrip.left.clone().add(this.lastGrip.right).multiplyScalar(0.5); this.lastPivot = B; const C = B.clone().applyMatrix4(this.control.matrix); C.sub(o.clone().applyMatrix4(this.control.matrix)), C.multiplyScalar(1 / A), this.velocity.lerp(C, 1 - Math.exp(-20 * A)); const E = Math.atan2(e.left.z - B.z, e.left.x - B.x), h = Math.atan2( this.lastGrip.left.z - o.z, this.lastGrip.left.x - o.x ); let c = E - h; c > Math.PI ? c -= Math.PI * 2 : c < -Math.PI && (c += Math.PI * 2); const l = c / 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 B = e.left.clone().applyMatrix4(this.control.matrix); B.sub(this.lastGrip.left.clone().applyMatrix4(this.control.matrix)), B.multiplyScalar(1 / A), this.velocity.lerp(B, 1 - Math.exp(-20 * A)); } else if (e.right && this.lastGrip.right) { const B = e.right.clone().applyMatrix4(this.control.matrix); B.sub( this.lastGrip.right.clone().applyMatrix4(this.control.matrix) ), B.multiplyScalar(1 / A), this.velocity.lerp(B, 1 - Math.exp(-20 * A)); } else this.velocity.multiplyScalar(Math.exp(-A / this.moveInertia)); const s = this.lastPivot.clone().negate(), i = new de().makeTranslation(s).premultiply(new de().makeRotationY(this.rotateVelocity * A)).premultiply(new de().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 pC = 1, yC = 2, DC = 2e-3, fC = 6e-3, mC = 15e-4, MC = 0.15, xC = 0.15, SC = 0.1, NC = 2, FC = 1, kC = 200, GC = 400, RC = 50, UC = { KeyW: new Q.Vector3(0, 0, -1), KeyS: new Q.Vector3(0, 0, 1), KeyA: new Q.Vector3(-1, 0, 0), KeyD: new Q.Vector3(1, 0, 0), KeyR: new Q.Vector3(0, 1, 0), KeyF: new Q.Vector3(0, -1, 0) }, bC = { ArrowUp: new Q.Vector3(0, 0, -1), ArrowDown: new Q.Vector3(0, 0, 1), ArrowLeft: new Q.Vector3(-1, 0, 0), ArrowRight: new Q.Vector3(1, 0, 0), PageUp: new Q.Vector3(0, 1, 0), PageDown: new Q.Vector3(0, -1, 0) }, vC = { KeyQ: new Q.Vector3(0, 0, 1), KeyE: new Q.Vector3(0, 0, -1) }, LC = { Home: new Q.Vector3(0, -1, 0), End: new Q.Vector3(0, 1, 0), Insert: new Q.Vector3(-1, 0, 0), Delete: new Q.Vector3(1, 0, 0) }; class nE { constructor({ canvas: A }) { this.lastTime = 0, this.fpsMovement = new YC({}), this.pointerControls = new JC({ 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 YC { constructor({ moveSpeed: A, rollSpeed: e, stickThreshold: s, rotateSpeed: i, keycodeMoveMapping: n, keycodeRotateMapping: a, gamepadMapping: r, capsMultiplier: g, shiftMultiplier: I, ctrlMultiplier: B, xr: o } = {}) { this.enable = !0, this.moveSpeed = A ?? pC, this.rollSpeed = e ?? yC, this.stickThreshold = s ?? SC, this.rotateSpeed = i ?? NC, this.keycodeMoveMapping = n ?? { ...UC, ...bC }, this.keycodeRotateMapping = a ?? { ...vC, ...LC }, this.gamepadMapping = r ?? { 4: "rollLeft", 5: "rollRight", 6: "ctrl", 7: "shift" }, this.capsMultiplier = g ?? 10, this.shiftMultiplier = I ?? 5, this.ctrlMultiplier = B ?? 1 / 5, this.xr = o, this.keydown = {}, this.keycode = {}, document.addEventListener("keydown", (C) => { this.keydown[C.key] = !0, this.keycode[C.code] = !0; }), document.addEventListener("keyup", (C) => { this.keydown[C.key] = !1, this.keycode[C.code] = !1; }), window.addEventListener("blur", () => { this.keydown = {}, this.keycode = {}; }); } // 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, e) { var B, o; if (!this.enable) return; const s = [new Q.Vector2(), new Q.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((C) => C.pressed)) || [], a = Array.from(((o = (B = this.xr) == null ? void 0 : B.getSession()) == null ? void 0 : o.inputSources) ?? []); for (const C of a) { const E = C.gamepad; if (E) switch (C.handedness) { case "none": { s[0].x += E.axes[0], s[0].y += E.axes[1], s[1].x += E.axes[2], s[1].y += E.axes[3]; break; } case "left": { s[0].x += E.axes[2], s[0].y += E.axes[3]; break; } case "right": { s[1].x += E.axes[2], s[1].y += E.axes[3]; break; } } } for (const C of s) C.x = Math.abs(C.x) >= this.stickThreshold ? C.x : 0, C.y = Math.abs(C.y) >= this.stickThreshold ? C.y : 0; const r = new Q.Vector3( s[1].x, s[1].y, 0 ).multiplyScalar(this.rotateSpeed); for (const [C, E] of Object.entries(this.keycodeRotateMapping)) this.keycode[C] && r.add(E); for (const C in this.gamepadMapping) if (n[Number.parseInt(C)]) switch (this.gamepadMapping[C]) { case "rollLeft": r.z += 1; break; case "rollRight": r.z -= 1; break; } if (r.multiply( new Q.Vector3(this.rotateSpeed, this.rotateSpeed, this.rollSpeed) ), r.manhattanLength() > 0) { r.multiplyScalar(A); const C = new Q.Euler().setFromQuaternion( e.quaternion, "YXZ" ); C.y -= r.x, C.x = Math.max( -Math.PI / 2, Math.min(Math.PI / 2, C.x - r.y) ), C.z = Math.max(-Math.PI, Math.min(Math.PI, C.z + r.z)), e.quaternion.setFromEuler(C); } const g = new Q.Vector3(s[0].x, 0, s[0].y); for (const [C, E] of Object.entries(this.keycodeMoveMapping)) this.keycode[C] && g.add(E); 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 C in this.gamepadMapping) if (n[Number.parseInt(C)]) switch (this.gamepadMapping[C]) { 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 JC { constructor({ // The HTML canvas element to attach pointer events to canvas: A, // Speed of rotation (default DEFAULT_ROTATE_SPEED) rotateSpeed: e, // Speed of sliding when dragging with right/middle mouse button or two fingers // (default DEFAULT_SLIDE_SPEED) slideSpeed: s, // Speed of movement when using mouse scroll wheel (default DEFAULT_SCROLL_SPEED) scrollSpeed: i, // Swap the direction of rotation and sliding (default: false) swapRotateSlide: n, // Reverse the direction of rotation (default: false) reverseRotate: a, // Reverse the direction of sliding (default: false) reverseSlide: r, // Reverse the direction of swipe gestures (default: false) reverseSwipe: g, // Reverse the direction of scroll wheel movement (default: false) reverseScroll: I, // Inertia factor for movement (default: DEFAULT_MOVE_INERTIA) moveInertia: B, // Inertia factor for rotation (default: DEFAULT_ROTATE_INERTIA) rotateInertia: o, // Pointer rolling scale factor (default: DEFAULT_POINTER_ROLL_SCALE) pointerRollScale: C, // Callback for double press events (default: () => {}) doublePress: E }) { this.enable = !0, this.canvas = A, this.rotateSpeed = e ?? DC, this.slideSpeed = s ?? fC, this.scrollSpeed = i ?? mC, this.swapRotateSlide = n ?? !1, this.reverseRotate = a ?? !1, this.reverseSlide = r ?? !1, this.reverseSwipe = g ?? !1, this.reverseScroll = I ?? !1, this.moveInertia = B ?? xC, this.rotateInertia = o ?? MC, this.pointerRollScale = C ?? FC, this.doublePress = E ?? (() => { }), this.doublePressLimitMs = GC, this.doublePressDistance = RC, this.lastUp = null, this.rotating = null, this.sliding = null, this.dualPress = !1, this.scroll = new Q.Vector3(), this.rotateVelocity = new Q.Vector3(), this.moveVelocity = new Q.Vector3(), A.addEventListener("pointerdown", (c) => { const l = this.getPointerPosition(c), u = l.clone(), w = l.clone(), d = !this.swapRotateSlide && !this.rotating && (c.pointerType !== "mouse" || c.button === 0) || this.swapRotateSlide && this.sliding && !this.rotating && (c.pointerType !== "mouse" || c.button === 1), { pointerId: y, timeStamp: p } = c; if (d) this.rotating = { initial: u, last: w, position: l, pointerId: y, timeStamp: p }, A.setPointerCapture(c.pointerId), this.dualPress = !1; else if (!this.sliding) { const f = c.pointerType === "mouse" ? c.button : void 0; this.sliding = { initial: u, last: w, position: l, pointerId: y, button: f, timeStamp: p }, A.setPointerCapture(c.pointerId), this.dualPress = this.rotating != null && p - this.rotating.timeStamp < kC; } }); const h = (c) => { var w, d; ((w = this.rotating) == null ? void 0 : w.pointerId) === c.pointerId ? (this.rotating = null, A.releasePointerCapture(c.pointerId), this.dualPress && this.sliding && (A.releasePointerCapture(this.sliding.pointerId), this.sliding = null)) : ((d = this.sliding) == null ? void 0 : d.pointerId) === c.pointerId && (this.sliding = null, A.releasePointerCapture(c.pointerId), this.dualPress && this.rotating && (A.releasePointerCapture(this.rotating.pointerId), this.rotating = null)); const l = this.getPointerPosition(c), u = this.lastUp; if (this.lastUp = { position: l, time: c.timeStamp }, u && u.position.distanceTo(l) < this.doublePressDistance) { const p = c.timeStamp - u.time; p < this.doublePressLimitMs && (this.lastUp = null, this.doublePress({ position: l, intervalMs: p })); } }; document.addEventListener("pointerup", h), document.addEventListener("pointercancel", h), document.addEventListener("pointermove", (c) => { var l, u; ((l = this.rotating) == null ? void 0 : l.pointerId) === c.pointerId ? this.rotating.position = this.getPointerPosition(c) : ((u = this.sliding) == null ? void 0 : u.pointerId) === c.pointerId && (this.sliding.position = this.getPointerPosition(c)); }), A.addEventListener("contextmenu", (c) => { c.preventDefault(); }), A.addEventListener("wheel", (c) => { this.scroll.add( new Q.Vector3(c.deltaX, c.deltaY, c.deltaZ) ), c.preventDefault(); }); } getPointerPosition(A) { const e = this.canvas.getBoundingClientRect(); return new Q.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 >= 0.2) { const a = i[0].clone().add(i[1]), r = new Q.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 Q.Vector2(-a.y, a.x), I = [i[0].dot(a), i[1].dot(a)], B = [i[0].dot(g), i[1].dot(g)], o = this.rotating.last.clone().add(this.sliding.last).multiplyScalar(0.5); let C = new Q.Vector3(); if (e instanceof Q.Camera) { const w = new Q.Vector2( o.x / this.canvas.clientWidth * 2 - 1, -(o.y / this.canvas.clientHeight) * 2 + 1 ), d = new Q.Raycaster(); d.setFromCamera(w, e), C = d.ray.direction; } const E = I[1] - I[0], h = C.multiplyScalar(E * this.slideSpeed); e.position.add(h), this.moveVelocity = h.clone().multiplyScalar(1 / A); const c = [ Math.atan(B[0] / (-0.5 * r)), Math.atan(B[1] / (0.5 * r)) ], l = 0.5 * (c[0] + c[1]) * this.pointerRollScale, u = new Q.Euler().setFromQuaternion( e.quaternion, "YXZ" ); u.z = Math.max( -Math.PI, 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 i = new Q.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 Q.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 Q.Vector3(a.x, 0, a.y) : new Q.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); } } export { eE as FINGER_TIPS, YC as FpsMovement, Le as HANDS, Hr as Hand, iE as HandMovement, Tr as JOINT_IDS, AE as JOINT_INDEX, zt as JOINT_RADIUS, dC as JOINT_SEGMENTS, wC as JOINT_SEGMENT_STEPS, tE as JOINT_TIPS, Oe as JointEnum, $C as NUM_JOINTS, TA as PackedSplats, Ae as PlyReader, JC as PointerControls, Xt as Readback, Co as Sint8ToFloat, nE as SparkControls, se as SparkRenderer, ee as SparkViewpoint, De as SplatAccumulator, $t as SplatEdit, fQ as SplatEditRgbaBlendMode, MQ as SplatEditSdf, yQ as SplatEditSdfType, xQ as SplatEdits, xt as SplatFileType, ge as SplatGenerator, qC as SplatLoader, VA as SplatMesh, NQ as SplatModifier, _C as SplatSkinning, ct as SplatTransformer, iC as SpzReader, WA as SpzWriter, Qo as Uint8ToFloat, ve as VRButton, sE as XrHands, ZC as constructAxes, VC as constructGrid, OC as constructSpherePoints, KC as dyno, Ro as flipPixels, Vt as floatToSint8, qA as floatToUint8, MA as fromHalf, PC as generators, Nr as getSplatFileType, jC as imageSplats, ko as isAndroid, Fo as isMobile, Go as isOculus, XC as modifiers, Uo as pixelsToPngUrl, xe as setPackedSplat, WC as textSplats, rt as toHalf, zC as transcodeSpz, Se as unpackSplat, kr as unpackSplats, HC as utils }; //# sourceMappingURL=spark.module.min.js.map