Files
spark/dist/spark.module.min.js
T
sparkjsdev[bot] 1e3bfafbc3 Bump dist build
2025-09-24 01:13:23 +00:00

10944 lines
509 KiB
JavaScript

import * as u from "three";
import { Mesh as po, OrthographicCamera as fo, BufferGeometry as yo, Float32BufferAttribute as us, Loader as wo, FileLoader as mo, Quaternion as hs, Vector3 as _A, Color as Cs, Matrix4 as De } from "three";
const xo = new fo(-1, 1, 1, -1, 0, 1);
class So extends yo {
constructor() {
super(), this.setAttribute("position", new us([-1, 3, 0, -1, -1, 0, 3, -1, 0], 3)), this.setAttribute("uv", new us([0, 2, 0, 0, 2, 0], 2));
}
}
const Do = new So();
class xs {
/**
* Constructs a new full screen quad.
*
* @param {?Material} material - The material to render te full screen quad with.
*/
constructor(A) {
this._mesh = new po(Do, A);
}
/**
* Frees the GPU-related resources allocated by this instance. Call this
* method whenever the instance is no longer used in your app.
*/
dispose() {
this._mesh.geometry.dispose();
}
/**
* Renders the full screen quad.
*
* @param {WebGLRenderer} renderer - The renderer.
*/
render(A) {
A.render(this._mesh, xo);
}
/**
* The quad's material.
*
* @type {?Material}
*/
get material() {
return this._mesh.material;
}
set material(A) {
this._mesh.material = A;
}
}
var uA = Uint8Array, mt = Uint16Array, Mo = Int32Array, Ss = new uA([
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
]), Ds = new uA([
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
]), vo = new uA([16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15]), Ms = function(t, A) {
for (var e = new mt(31), s = 0; s < 31; ++s)
e[s] = A += 1 << t[s - 1];
for (var n = new Mo(e[30]), s = 1; s < 30; ++s)
for (var i = e[s]; i < e[s + 1]; ++i)
n[i] = i - e[s] << 5 | s;
return { b: e, r: n };
}, vs = Ms(Ss, 2), bs = vs.b, bo = vs.r;
bs[28] = 258, bo[258] = 28;
var Fo = Ms(Ds, 0), No = Fo.b, Ue = new mt(32768);
for (var sA = 0; sA < 32768; ++sA) {
var At = (sA & 43690) >> 1 | (sA & 21845) << 1;
At = (At & 52428) >> 2 | (At & 13107) << 2, At = (At & 61680) >> 4 | (At & 3855) << 4, Ue[sA] = ((At & 65280) >> 8 | (At & 255) << 8) >> 1;
}
var Lt = function(t, A, e) {
for (var s = t.length, n = 0, i = new mt(A); n < s; ++n)
t[n] && ++i[t[n] - 1];
var r = new mt(A);
for (n = 1; n < A; ++n)
r[n] = r[n - 1] + i[n - 1] << 1;
var a;
if (e) {
a = new mt(1 << A);
var o = 15 - A;
for (n = 0; n < s; ++n)
if (t[n])
for (var g = n << 4 | t[n], l = A - t[n], c = r[t[n] - 1]++ << l, I = c | (1 << l) - 1; c <= I; ++c)
a[Ue[c] >> o] = g;
} else
for (a = new mt(s), n = 0; n < s; ++n)
t[n] && (a[n] = Ue[r[t[n] - 1]++] >> 15 - t[n]);
return a;
}, Pt = new uA(288);
for (var sA = 0; sA < 144; ++sA)
Pt[sA] = 8;
for (var sA = 144; sA < 256; ++sA)
Pt[sA] = 9;
for (var sA = 256; sA < 280; ++sA)
Pt[sA] = 7;
for (var sA = 280; sA < 288; ++sA)
Pt[sA] = 8;
var Fs = new uA(32);
for (var sA = 0; sA < 32; ++sA)
Fs[sA] = 5;
var ko = /* @__PURE__ */ Lt(Pt, 9, 1), To = /* @__PURE__ */ Lt(Fs, 5, 1), Me = function(t) {
for (var A = t[0], e = 1; e < t.length; ++e)
t[e] > A && (A = t[e]);
return A;
}, JA = function(t, A, e) {
var s = A / 8 | 0;
return (t[s] | t[s + 1] << 8) >> (A & 7) & e;
}, ve = function(t, A) {
var e = A / 8 | 0;
return (t[e] | t[e + 1] << 8 | t[e + 2] << 16) >> (A & 7);
}, Ns = function(t) {
return (t + 7) / 8 | 0;
}, Mt = function(t, A, e) {
return (A == null || A < 0) && (A = 0), (e == null || e > t.length) && (e = t.length), new uA(t.subarray(A, e));
}, Uo = [
"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
], yA = function(t, A, e) {
var s = new Error(A || Uo[t]);
if (s.code = t, Error.captureStackTrace && Error.captureStackTrace(s, yA), !e)
throw s;
return s;
}, ks = function(t, A, e, s) {
var n = t.length, i = s ? s.length : 0;
if (!n || A.f && !A.l)
return e || new uA(0);
var r = !e, a = r || A.i != 2, o = A.i;
r && (e = new uA(n * 3));
var g = function(dA) {
var xA = e.length;
if (dA > xA) {
var CA = new uA(Math.max(xA * 2, dA));
CA.set(e), e = CA;
}
}, l = A.f || 0, c = A.p || 0, I = A.b || 0, h = A.l, E = A.d, C = A.m, B = A.n, Q = n * 8;
do {
if (!h) {
l = JA(t, c, 1);
var f = JA(t, c + 1, 3);
if (c += 3, f)
if (f == 1)
h = ko, E = To, C = 9, B = 5;
else if (f == 2) {
var D = JA(t, c, 31) + 257, x = JA(t, c + 10, 15) + 4, w = D + JA(t, c + 5, 31) + 1;
c += 14;
for (var m = new uA(w), k = new uA(19), M = 0; M < x; ++M)
k[vo[M]] = JA(t, c + M * 3, 7);
c += x * 3;
for (var S = Me(k), U = (1 << S) - 1, F = Lt(k, S, 1), M = 0; M < w; ) {
var b = F[JA(t, c, U)];
c += b & 15;
var p = b >> 4;
if (p < 16)
m[M++] = p;
else {
var T = 0, R = 0;
for (p == 16 ? (R = 3 + JA(t, c, 3), c += 2, T = m[M - 1]) : p == 17 ? (R = 3 + JA(t, c, 7), c += 3) : p == 18 && (R = 11 + JA(t, c, 127), c += 7); R--; )
m[M++] = T;
}
}
var X = m.subarray(0, D), _ = m.subarray(D);
C = Me(X), B = Me(_), h = Lt(X, C, 1), E = Lt(_, B, 1);
} else
yA(1);
else {
var p = Ns(c) + 4, d = t[p - 4] | t[p - 3] << 8, y = p + d;
if (y > n) {
o && yA(0);
break;
}
a && g(I + d), e.set(t.subarray(p, y), I), A.b = I += d, A.p = c = y * 8, A.f = l;
continue;
}
if (c > Q) {
o && yA(0);
break;
}
}
a && g(I + 131072);
for (var eA = (1 << C) - 1, q = (1 << B) - 1, O = c; ; O = c) {
var T = h[ve(t, c) & eA], L = T >> 4;
if (c += T & 15, c > Q) {
o && yA(0);
break;
}
if (T || yA(2), L < 256)
e[I++] = L;
else if (L == 256) {
O = c, h = null;
break;
} else {
var j = L - 254;
if (L > 264) {
var M = L - 257, P = Ss[M];
j = JA(t, c, (1 << P) - 1) + bs[M], c += P;
}
var W = E[ve(t, c) & q], G = W >> 4;
W || yA(3), c += W & 15;
var _ = No[G];
if (G > 3) {
var P = Ds[G];
_ += ve(t, c) & (1 << P) - 1, c += P;
}
if (c > Q) {
o && yA(0);
break;
}
a && g(I + 131072);
var pA = I + j;
if (I < _) {
var gA = i - _, fA = Math.min(_, pA);
for (gA + I < 0 && yA(3); I < fA; ++I)
e[I] = s[gA + I];
}
for (; I < pA; ++I)
e[I] = e[I - _];
}
}
A.l = h, A.p = O, A.b = I, A.f = l, h && (l = 1, A.m = C, A.d = E, A.n = B);
} while (!l);
return I != e.length && r ? Mt(e, 0, I) : e.subarray(0, I);
}, Go = /* @__PURE__ */ new uA(0), qA = function(t, A) {
return t[A] | t[A + 1] << 8;
}, LA = function(t, A) {
return (t[A] | t[A + 1] << 8 | t[A + 2] << 16 | t[A + 3] << 24) >>> 0;
}, be = function(t, A) {
return LA(t, A) + LA(t, A + 4) * 4294967296;
}, Ro = function(t) {
(t[0] != 31 || t[1] != 139 || t[2] != 8) && yA(6, "invalid gzip data");
var A = t[3], e = 10;
A & 4 && (e += (t[10] | t[11] << 8) + 2);
for (var s = (A >> 3 & 1) + (A >> 4 & 1); s > 0; s -= !t[e++])
;
return e + (A & 2);
}, Fe = /* @__PURE__ */ function() {
function t(A, e) {
typeof A == "function" && (e = A, A = {}), this.ondata = e;
var s = A && A.dictionary && A.dictionary.subarray(-32768);
this.s = { i: 0, b: s ? s.length : 0 }, this.o = new uA(32768), this.p = new uA(0), s && this.o.set(s);
}
return t.prototype.e = function(A) {
if (this.ondata || yA(5), this.d && yA(4), !this.p.length)
this.p = A;
else if (A.length) {
var e = new uA(this.p.length + A.length);
e.set(this.p), e.set(A, this.p.length), this.p = e;
}
}, t.prototype.c = function(A) {
this.s.i = +(this.d = A || !1);
var e = this.s.b, s = ks(this.p, this.s, this.o);
this.ondata(Mt(s, e, this.s.b), this.d), this.o = Mt(s, this.s.b - 32768), this.s.b = this.o.length, this.p = Mt(this.p, this.s.p / 8 | 0), this.s.p &= 7;
}, t.prototype.push = function(A, e) {
this.e(A), this.c(e);
}, t;
}();
function Yo(t, A) {
return ks(t, { i: 2 }, A && A.out, A && A.dictionary);
}
var Ts = /* @__PURE__ */ function() {
function t(A, e) {
this.v = 1, this.r = 0, Fe.call(this, A, e);
}
return t.prototype.push = function(A, e) {
if (Fe.prototype.e.call(this, A), this.r += A.length, this.v) {
var s = this.p.subarray(this.v - 1), n = s.length > 3 ? Ro(s) : 4;
if (n > s.length) {
if (!e)
return;
} else this.v > 1 && this.onmember && this.onmember(this.r - s.length);
this.p = s.subarray(n), this.v = 0;
}
Fe.prototype.c.call(this, e), this.s.f && !this.s.l && !e && (this.v = Ns(this.s.p) + 9, this.s = { i: 0 }, this.o = new uA(0), this.push(new uA(0), e));
}, t;
}(), Ge = typeof TextDecoder < "u" && /* @__PURE__ */ new TextDecoder(), Jo = 0;
try {
Ge.decode(Go, { stream: !0 }), Jo = 1;
} catch {
}
var _o = function(t) {
for (var A = "", e = 0; ; ) {
var s = t[e++], n = (s > 127) + (s > 223) + (s > 239);
if (e + n > t.length)
return { s: A, r: Mt(t, e - 1) };
n ? n == 3 ? (s = ((s & 15) << 18 | (t[e++] & 63) << 12 | (t[e++] & 63) << 6 | t[e++] & 63) - 65536, A += String.fromCharCode(55296 | s >> 10, 56320 | s & 1023)) : n & 1 ? A += String.fromCharCode((s & 31) << 6 | t[e++] & 63) : A += String.fromCharCode((s & 15) << 12 | (t[e++] & 63) << 6 | t[e++] & 63) : A += String.fromCharCode(s);
}
};
function Lo(t, A) {
if (A) {
for (var e = "", s = 0; s < t.length; s += 16384)
e += String.fromCharCode.apply(null, t.subarray(s, s + 16384));
return e;
} else {
if (Ge)
return Ge.decode(t);
var n = _o(t), i = n.s, e = n.r;
return e.length && yA(8), i;
}
}
var zo = function(t, A) {
return A + 30 + qA(t, A + 26) + qA(t, A + 28);
}, Ho = function(t, A, e) {
var s = qA(t, A + 28), n = Lo(t.subarray(A + 46, A + 46 + s), !(qA(t, A + 8) & 2048)), i = A + 46 + s, r = LA(t, A + 20), a = e && r == 4294967295 ? qo(t, i) : [r, LA(t, A + 24), LA(t, A + 42)], o = a[0], g = a[1], l = a[2];
return [qA(t, A + 10), o, g, n, i + qA(t, A + 30) + qA(t, A + 32), l];
}, qo = function(t, A) {
for (; qA(t, A) != 1; A += 4 + qA(t, A + 2))
;
return [be(t, A + 12), be(t, A + 4), be(t, A + 20)];
};
function Ko(t, A) {
for (var e = {}, s = t.length - 22; LA(t, s) != 101010256; --s)
(!s || t.length - s > 65558) && yA(13);
var n = qA(t, s + 8);
if (!n)
return {};
var i = LA(t, s + 16), r = i == 4294967295 || n == 65535;
if (r) {
var a = LA(t, s - 12);
r = LA(t, a) == 101075792, r && (n = LA(t, a + 32), i = LA(t, a + 48));
}
for (var o = A && A.filter, g = 0; g < n; ++g) {
var l = Ho(t, i, r), c = l[0], I = l[1], h = l[2], E = l[3], C = l[4], B = l[5], Q = zo(t, B);
i = C, (!o || o({
name: E,
size: I,
originalSize: h,
compression: c
})) && (c ? c == 8 ? e[E] = Yo(t.subarray(Q, Q + I), { out: new uA(h) }) : yA(14, "unknown compression type " + c) : e[E] = Mt(t, Q, Q + I));
}
return e;
}
let XA;
const Us = typeof TextDecoder < "u" ? new TextDecoder("utf-8", { ignoreBOM: !0, fatal: !0 }) : { decode: () => {
throw Error("TextDecoder not available");
} };
typeof TextDecoder < "u" && Us.decode();
let Yt = null;
function $o() {
return (Yt === null || Yt.byteLength === 0) && (Yt = new Uint8Array(XA.memory.buffer)), Yt;
}
function Vo(t, A) {
return t = t >>> 0, Us.decode($o().subarray(t, t + A));
}
function Po(t, A, e, s, n, i, r, a, o, g, l, c, I) {
return XA.raycast_splats(t, A, e, s, n, i, r, a, o, g, l, c, I);
}
async function Zo(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 Xo() {
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 = XA.__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 XA.memory;
}, t.wbg.__wbindgen_throw = function(A, e) {
throw new Error(Vo(A, e));
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}
function Oo(t, A) {
return XA = t.exports, Gs.__wbindgen_wasm_module = A, Yt = null, XA.__wbindgen_start(), XA;
}
async function Gs(t) {
if (XA !== void 0) return XA;
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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(typeof t == "string" || typeof Request == "function" && t instanceof Request || typeof URL == "function" && t instanceof URL) && (t = fetch(t));
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return Oo(e, s);
}
const UA = -12, GA = 9, jo = Math.exp(UA), Wo = Math.exp(GA), Rs = -30, It = Math.exp(Rs), Xe = 11, Oe = 11, Ys = 11, Ac = Xe + Oe, Z = 1 << Xe, KA = 1 << Oe, Js = 1 << Ys, je = 1, tc = Z - 1, ec = KA - 1, sc = Js - 1, nc = !0, ic = !0, $h = /* @__PURE__ */ Object.freeze(/* @__PURE__ */ Object.defineProperty({
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LN_SCALE_MIN: UA,
LN_SCALE_ZERO: Rs,
SCALE_MAX: Wo,
SCALE_MIN: jo,
SCALE_ZERO: It,
SPLAT_TEX_DEPTH: Js,
SPLAT_TEX_DEPTH_BITS: Ys,
SPLAT_TEX_DEPTH_MASK: sc,
SPLAT_TEX_HEIGHT: KA,
SPLAT_TEX_HEIGHT_BITS: Oe,
SPLAT_TEX_HEIGHT_MASK: ec,
SPLAT_TEX_LAYER_BITS: Ac,
SPLAT_TEX_MIN_HEIGHT: je,
SPLAT_TEX_WIDTH: Z,
SPLAT_TEX_WIDTH_BITS: Xe,
SPLAT_TEX_WIDTH_MASK: tc,
USE_COMPILED_PARSER_FUNCTION: ic,
WASM_SPLAT_SORT: nc
}, Symbol.toStringTag, { value: "Module" }));
function ft(t) {
return t === "bool" || t === "bvec2" || t === "bvec3" || t === "bvec4";
}
function dt(t) {
return t === "int" || t === "uint" || t === "float";
}
function EA(t) {
return t === "int" || t === "ivec2" || t === "ivec3" || t === "ivec4";
}
function QA(t) {
return t === "uint" || t === "uvec2" || t === "uvec3" || t === "uvec4";
}
function Zt(t) {
return t === "float" || t === "vec2" || t === "vec3" || t === "vec4";
}
function _s(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 at(t) {
return Zt(t) || _s(t);
}
function Nt(t) {
return t === "vec2" || t === "ivec2" || t === "uvec2";
}
function kt(t) {
return t === "vec3" || t === "ivec3" || t === "uvec3";
}
function Xt(t) {
return t === "vec4" || t === "ivec4" || t === "uvec4";
}
function rc(t) {
return Nt(t) || kt(t) || Xt(t);
}
function ot(t) {
return t === "mat2" || t === "mat2x2";
}
function ct(t) {
return t === "mat3" || t === "mat3x3";
}
function gt(t) {
return t === "mat4" || t === "mat4x4";
}
function Ls(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 zs(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 ac(t) {
if (dt(t))
return "float";
if (Nt(t))
return "vec2";
if (kt(t))
return "vec3";
if (Xt(t))
return "vec4";
throw new Error(`Invalid vector type: ${t}`);
}
function Hs(t) {
if (dt(t))
return "uint";
if (Nt(t))
return "uvec2";
if (kt(t))
return "uvec3";
if (Xt(t))
return "uvec4";
throw new Error(`Invalid vector type: ${t}`);
}
function oc(t) {
if (dt(t))
return "int";
if (Nt(t))
return "ivec2";
if (kt(t))
return "ivec3";
if (Xt(t))
return "ivec4";
throw new Error(`Invalid vector type: ${t}`);
}
function qs(t) {
if (typeof t == "string")
return t;
if (typeof t == "object" && t.type)
return t.type;
throw new Error(`Invalid DynoType: ${String(t)}`);
}
function rA(t) {
return Math.trunc(t).toString();
}
function aA(t) {
return `${Math.max(0, Math.trunc(t)).toString()}u`;
}
function H(t) {
return t === Number.POSITIVE_INFINITY ? "INFINITY" : t === Number.NEGATIVE_INFINITY ? "-INFINITY" : Number.isInteger(t) ? t.toFixed(1) : t.toString();
}
function $(t) {
return t instanceof it ? t.type : t.dynoOut().type;
}
class it {
constructor(A) {
this.__isDynoValue = !0, this.type = A;
}
}
class K extends it {
constructor(A, e) {
super(A.outTypes[e]), this.dyno = A, this.key = e;
}
}
class vt extends it {
constructor(A, e) {
super(A), this.literal = e;
}
getLiteral() {
return this.literal;
}
}
function oe(t, A) {
return new vt(t, A);
}
class Ks extends vt {
constructor(A, e) {
super(A, ""), this.value = e;
}
getLiteral() {
const { type: A, value: e } = this;
switch (A) {
case "bool":
return e ? "true" : "false";
case "uint":
return aA(e);
case "int":
return rA(e);
case "float":
return H(e);
case "bvec2": {
const s = e;
return `bvec2(${s[0]}, ${s[1]})`;
}
case "uvec2": {
if (e instanceof u.Vector2)
return `uvec2(${aA(e.x)}, ${aA(e.y)})`;
const s = e;
return `uvec2(${aA(s[0])}, ${aA(s[1])})`;
}
case "ivec2": {
if (e instanceof u.Vector2)
return `ivec2(${rA(e.x)}, ${rA(e.y)})`;
const s = e;
return `ivec2(${rA(s[0])}, ${rA(s[1])})`;
}
case "vec2": {
if (e instanceof u.Vector2)
return `vec2(${H(e.x)}, ${H(e.y)})`;
const s = e;
return `vec2(${H(s[0])}, ${H(s[1])})`;
}
case "bvec3": {
const s = e;
return `bvec3(${s[0]}, ${s[1]}, ${s[2]})`;
}
case "uvec3": {
if (e instanceof u.Vector3)
return `uvec3(${aA(e.x)}, ${aA(e.y)}, ${aA(e.z)})`;
const s = e;
return `uvec3(${aA(s[0])}, ${aA(s[1])}, ${aA(s[2])})`;
}
case "ivec3": {
if (e instanceof u.Vector3)
return `ivec3(${rA(e.x)}, ${rA(e.y)}, ${rA(e.z)})`;
const s = e;
return `ivec3(${rA(s[0])}, ${rA(s[1])}, ${rA(s[2])})`;
}
case "vec3": {
if (e instanceof u.Vector3)
return `vec3(${H(e.x)}, ${H(e.y)}, ${H(e.z)})`;
const s = e;
return `vec3(${H(s[0])}, ${H(s[1])}, ${H(s[2])})`;
}
case "bvec4": {
const s = e;
return `bvec4(${s[0]}, ${s[1]}, ${s[2]}, ${s[3]})`;
}
case "uvec4": {
if (e instanceof u.Vector4)
return `uvec4(${aA(e.x)}, ${aA(e.y)}, ${aA(e.z)}, ${aA(e.w)})`;
const s = e;
return `uvec4(${aA(s[0])}, ${aA(s[1])}, ${aA(s[2])}, ${aA(s[3])})`;
}
case "ivec4": {
if (e instanceof u.Vector4)
return `ivec4(${rA(e.x)}, ${rA(e.y)}, ${rA(e.z)}, ${rA(e.w)})`;
const s = e;
return `ivec4(${rA(s[0])}, ${rA(s[1])}, ${rA(s[2])}, ${rA(s[3])})`;
}
case "vec4": {
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return `${A}(${i.join(", ")})`;
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const s = e, n = new Array(8).fill(0).map((i, r) => H(s[r]));
return `${A}(${n.join(", ")})`;
}
case "mat3":
case "mat3x3": {
const s = e, n = s instanceof u.Matrix3 ? s.elements : e, i = new Array(9).fill(0).map((r, a) => H(n[a]));
return `${A}(${i.join(", ")})`;
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case "mat3x2": {
const s = e, n = new Array(6).fill(0).map((i, r) => H(s[r]));
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const s = e, n = s instanceof u.Matrix4 ? s.elements : e, i = new Array(16).fill(0).map((r, a) => H(n[a]));
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const s = e, n = new Array(12).fill(0).map((i, r) => H(s[r]));
return `${A}(${n.join(", ")})`;
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default:
throw new Error(`Type not implemented: ${String(A)}`);
}
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function J(t, A) {
return new Ks(t, A);
}
function Jt(t) {
const A = String(t);
if (ft(t))
return `${A}(false)`;
if (at(t))
return `${A}(0.0)`;
if (EA(t))
return `${A}(0)`;
if (QA(t))
return `${A}(0u)`;
throw new Error(`Type not implemented: ${A}`);
}
function cc(t) {
const A = String(t);
if (ft(t))
return `${A}(true)`;
if (at(t))
return `${A}(1.0)`;
if (EA(t))
return `${A}(1)`;
if (QA(t))
return `${A}(1u)`;
throw new Error(`Type not implemented: ${A}`);
}
function gc(t) {
const A = String(t);
if (ft(t))
return `${A}(true)`;
if (at(t))
return `${A}(-1.0)`;
if (EA(t))
return `${A}(-1)`;
if (QA(t))
return `${A}(0xFFFFFFFFu)`;
throw new Error(`Type not implemented: ${A}`);
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class $s {
constructor({ indent: A } = {}) {
this.globals = /* @__PURE__ */ new Set(), this.statements = [], this.uniforms = {}, this.declares = /* @__PURE__ */ new Set(), this.updaters = [], this.sequence = 0, this.indent = Bs, this.indent = A ?? Bs;
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nextSequence() {
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constructor({
inTypes: A,
outTypes: e,
inputs: s,
update: n,
globals: i,
statements: r,
generate: a
}) {
this.inTypes = A ?? {}, this.outTypes = e ?? {}, this.inputs = s ?? {}, this.update = n, this.globals = i, this.statements = r, this.generate = a ?? (({ inputs: o, outputs: g, compile: l }) => {
var c, I;
return {
globals: (c = this.globals) == null ? void 0 : c.call(this, { inputs: o, outputs: g, compile: l }),
statements: (I = this.statements) == null ? void 0 : I.call(this, { inputs: o, outputs: g, compile: l })
};
});
}
get outputs() {
const A = {};
for (const e in this.outTypes)
A[e] = new K(this, e);
return A;
}
apply(A) {
return Object.assign(this.inputs, A), this.outputs;
}
compile({
inputs: A,
outputs: e,
compile: s
}) {
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`// ${this.constructor.name}(${Object.values(A).join(", ")}) => (${Object.values(e).join(", ")})`
], i = [];
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l && !s.declares.has(l) && (s.declares.add(l), i.push(g));
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inputs: A,
outputs: e,
compile: s
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s.globals.add(g);
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l && (s.uniforms[l] || n.push(`${We(l, this.outTypes[g])};`));
}
return a != null && a.length && (n.push("{"), n.push(...a.map((g) => s.indent + g)), n.push("}")), n;
}
}
class PA extends V {
constructor({
inTypes: A,
outTypes: e,
inputs: s,
update: n,
globals: i,
construct: r
}) {
super({
inTypes: A,
outTypes: e,
inputs: s,
update: n,
globals: i,
generate: (a) => this.generateBlock(a)
}), this.construct = r;
}
generateBlock({
inputs: A,
outputs: e,
compile: s
}) {
var E, C;
const n = {}, i = {};
for (const B in A)
A[B] != null && (n[B] = new vt(this.inTypes[B], A[B]));
for (const B in e)
e[B] != null && (i[B] = new it(this.outTypes[B]));
const r = { roots: [] }, a = this.construct(n, i, r);
for (const B of ((E = this.globals) == null ? void 0 : E.call(this, { inputs: A, outputs: e, compile: s })) ?? [])
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const o = [], g = /* @__PURE__ */ new Map();
function l(B, Q, f) {
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sequence: s.nextSequence(),
outNames: /* @__PURE__ */ new Map(),
newOuts: /* @__PURE__ */ new Set()
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Q && (f || p.newOuts.add(Q), p.outNames.set(Q, f ?? `${Q}_${p.sequence}`));
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l(B);
for (const B in i) {
let Q = (a == null ? void 0 : a[B]) ?? i[B];
for (; Q; ) {
if (Q instanceof it) {
Q instanceof K && l(Q.dyno, Q.key, e[B]);
break;
}
Q = Q.dynoOut();
}
i[B] = Q;
}
const c = [];
for (const B of o) {
const Q = {}, f = {};
for (const y in B.inputs) {
let D = B.inputs[y];
for (; D; ) {
if (D instanceof it) {
if (D instanceof vt)
Q[y] = D.getLiteral();
else if (D instanceof K) {
const x = (C = g.get(D.dyno)) == null ? void 0 : C.outNames.get(D.key);
if (!x)
throw new Error(
`Source not found for ${D.dyno.constructor.name}.${D.key}`
);
Q[y] = x;
}
break;
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D = D.dynoOut();
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}
const p = g.get(B) ?? { outNames: /* @__PURE__ */ new Map() };
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f[y] = D;
const d = B.compile({ inputs: Q, outputs: f, compile: s });
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const I = [];
for (const B in e)
i[B] instanceof vt && I.push(
`${e[B]} = ${i[B].getLiteral()};`
);
return I.length > 0 && c.push(I), { statements: c.flatMap((B, Q) => Q === 0 ? B : ["", ...B]) };
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function vA(t, A, e, { update: s, globals: n } = {}) {
return new PA({ inTypes: t, outTypes: A, construct: e, update: s, globals: n });
}
function Ot({
inTypes: t,
outTypes: A,
inputs: e,
update: s,
globals: n,
statements: i,
generate: r
}) {
return new V({
inTypes: t,
outTypes: A,
inputs: e,
update: s,
globals: n,
statements: i,
generate: r
});
}
function We(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 ? `[${e}]` : ""}`;
}
function RA(t) {
var i;
let A = !1;
const e = t.split(`
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const a = r.trimEnd();
return A ? a : a.length > 0 ? (A = !0, a) : null;
}).filter((r) => r != null);
for (; e.length > 0 && e[e.length - 1].length === 0; )
e.pop();
if (e.length === 0)
return [];
const s = (i = e[0].match(/^\s*/)) == null ? void 0 : i[0];
if (!s)
return e;
const n = new RegExp(`^${s}`);
return e.map((r) => r.replace(n, ""));
}
function hA(t) {
return RA(t).join(`
`);
}
class v extends V {
constructor({
a: A,
outKey: e,
outTypeFunc: s
}) {
const n = { a: $(A) }, i = s($(A)), r = { [e]: i };
super({ inTypes: n, outTypes: r, inputs: { a: A } }), this.outKey = e;
}
dynoOut() {
return new K(this, this.outKey);
}
}
class tA extends V {
constructor({
a: A,
b: e,
outKey: s,
outTypeFunc: n
}) {
const i = { a: $(A), b: $(e) }, r = n($(A), $(e)), a = { [s]: r };
super({ inTypes: i, outTypes: a, inputs: { a: A, b: e } }), this.outKey = s;
}
dynoOut() {
return new K(this, this.outKey);
}
}
class yt extends V {
constructor({
a: A,
b: e,
c: s,
outKey: n,
outTypeFunc: i
}) {
const r = { a: $(A), b: $(e), c: $(s) }, a = i($(A), $(e), $(s)), o = { [n]: a };
super({ inTypes: r, outTypes: o, inputs: { a: A, b: e, c: s } }), this.outKey = n;
}
dynoOut() {
return new K(this, this.outKey);
}
}
const AA = { type: "Gsplat" }, jt = { type: "PackedSplats" }, lc = (t) => new Ps({ packedSplats: t }), bt = (t, A) => new Xs({ packedSplats: t, index: A }), Vs = (t, A, e, s) => new Os({ packedSplats: t, index: A, base: e, count: s }), ut = (t) => new js({ gsplat: t }), rt = ({
gsplat: t,
flags: A,
index: e,
center: s,
scales: n,
quaternion: i,
rgba: r,
rgb: a,
opacity: o,
x: g,
y: l,
z: c,
r: I,
g: h,
b: E
}) => new Ws({
gsplat: t,
flags: A,
index: e,
center: s,
scales: n,
quaternion: i,
rgba: r,
rgb: a,
opacity: o,
x: g,
y: l,
z: c,
r: I,
g: h,
b: E
}), Re = (t) => new tn({ gsplat: t }), As = (t, {
scale: A,
rotate: e,
translate: s,
recolor: n
}) => new en({ gsplat: t, scale: A, rotate: e, translate: s, recolor: n }), bA = hA(`
struct Gsplat {
vec3 center;
uint flags;
vec3 scales;
int index;
vec4 quaternion;
vec4 rgba;
};
const uint GSPLAT_FLAG_ACTIVE = 1u << 0u;
bool isGsplatActive(uint flags) {
return (flags & GSPLAT_FLAG_ACTIVE) != 0u;
}
`), Qe = hA(`
struct PackedSplats {
usampler2DArray texture;
int numSplats;
vec4 rgbMinMaxLnScaleMinMax;
};
`);
class Ps extends v {
constructor({
packedSplats: A
}) {
super({ a: A, outKey: "numSplats", outTypeFunc: () => "int" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.numSplats} = ${e.a}.numSplats;`
];
}
}
const Zs = hA(`
bool readPackedSplat(usampler2DArray texture, int numSplats, vec4 rgbMinMaxLnScaleMinMax, int index, out Gsplat gsplat) {
if ((index >= 0) && (index < numSplats)) {
uvec4 packed = texelFetch(texture, splatTexCoord(index), 0);
unpackSplatEncoding(packed, gsplat.center, gsplat.scales, gsplat.quaternion, gsplat.rgba, rgbMinMaxLnScaleMinMax);
return true;
} else {
return false;
}
}
`);
class Xs extends V {
constructor({
packedSplats: A,
index: e
}) {
super({
inTypes: { packedSplats: jt, index: "int" },
outTypes: { gsplat: AA },
inputs: { packedSplats: A, index: e },
globals: () => [bA, Qe, Zs],
statements: ({ inputs: s, outputs: n }) => {
const { gsplat: i } = n;
if (!i)
return [];
const { packedSplats: r, index: a } = s;
let o;
return r && a ? o = RA(`
if (readPackedSplat(${r}.texture, ${r}.numSplats, ${r}.rgbMinMaxLnScaleMinMax, ${a}, ${i})) {
bool zeroSize = all(equal(${i}.scales, vec3(0.0, 0.0, 0.0)));
${i}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;
} else {
${i}.flags = 0u;
}
`) : o = [`${i}.flags = 0u;`], o.push(`${i}.index = ${a ?? "0"};`), o;
}
});
}
dynoOut() {
return new K(this, "gsplat");
}
}
class Os extends V {
constructor({
packedSplats: A,
index: e,
base: s,
count: n
}) {
super({
inTypes: {
packedSplats: jt,
index: "int",
base: "int",
count: "int"
},
outTypes: { gsplat: AA },
inputs: { packedSplats: A, index: e, base: s, count: n },
globals: () => [bA, Qe, Zs],
statements: ({ inputs: i, outputs: r }) => {
const { gsplat: a } = r;
if (!a)
return [];
const { packedSplats: o, index: g, base: l, count: c } = i;
let I;
return o && g && l && c ? I = RA(`
${a}.flags = 0u;
if ((${g} >= ${l}) && (${g} < (${l} + ${c}))) {
if (readPackedSplat(${o}.texture, ${o}.numSplats, ${o}.rgbMinMaxLnScaleMinMax, ${g}, ${a})) {
bool zeroSize = all(equal(${a}.scales, vec3(0.0, 0.0, 0.0)));
${a}.flags = zeroSize ? 0u : GSPLAT_FLAG_ACTIVE;
}
}
`) : I = [`${a}.flags = 0u;`], I.push(`${a}.index = ${g ?? "0"};`), I;
}
});
}
dynoOut() {
return new K(this, "gsplat");
}
}
class js extends V {
constructor({ gsplat: A }) {
super({
inTypes: { gsplat: AA },
outTypes: {
flags: "uint",
active: "bool",
index: "int",
center: "vec3",
scales: "vec3",
quaternion: "vec4",
rgba: "vec4",
rgb: "vec3",
opacity: "float",
x: "float",
y: "float",
z: "float",
r: "float",
g: "float",
b: "float"
},
inputs: { gsplat: A },
globals: () => [bA],
statements: ({ inputs: e, outputs: s }) => {
const { gsplat: n } = e, {
flags: i,
active: r,
index: a,
center: o,
scales: g,
quaternion: l,
rgba: c,
rgb: I,
opacity: h,
x: E,
y: C,
z: B,
r: Q,
g: f,
b: p
} = s;
return [
i ? `${i} = ${n ? `${n}.flags` : "0u"};` : null,
r ? `${r} = isGsplatActive(${n ? `${n}.flags` : "0u"});` : null,
a ? `${a} = ${n ? `${n}.index` : "0"};` : null,
o ? `${o} = ${n ? `${n}.center` : "vec3(0.0, 0.0, 0.0)"};` : null,
g ? `${g} = ${n ? `${n}.scales` : "vec3(0.0, 0.0, 0.0)"};` : null,
l ? `${l} = ${n ? `${n}.quaternion` : "vec4(0.0, 0.0, 0.0, 1.0)"};` : null,
c ? `${c} = ${n ? `${n}.rgba` : "vec4(0.0, 0.0, 0.0, 0.0)"};` : null,
I ? `${I} = ${n ? `${n}.rgba.rgb` : "vec3(0.0, 0.0, 0.0)"};` : null,
h ? `${h} = ${n ? `${n}.rgba.a` : "0.0"};` : null,
E ? `${E} = ${n ? `${n}.center.x` : "0.0"};` : null,
C ? `${C} = ${n ? `${n}.center.y` : "0.0"};` : null,
B ? `${B} = ${n ? `${n}.center.z` : "0.0"};` : null,
Q ? `${Q} = ${n ? `${n}.rgba.r` : "0.0"};` : null,
f ? `${f} = ${n ? `${n}.rgba.g` : "0.0"};` : null,
p ? `${p} = ${n ? `${n}.rgba.b` : "0.0"};` : null
].filter(Boolean);
}
});
}
}
class Ws extends V {
constructor({
gsplat: A,
flags: e,
index: s,
center: n,
scales: i,
quaternion: r,
rgba: a,
rgb: o,
opacity: g,
x: l,
y: c,
z: I,
r: h,
g: E,
b: C
}) {
super({
inTypes: {
gsplat: AA,
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: AA },
inputs: {
gsplat: A,
flags: e,
index: s,
center: n,
scales: i,
quaternion: r,
rgba: a,
rgb: o,
opacity: g,
x: l,
y: c,
z: I,
r: h,
g: E,
b: C
},
globals: () => [bA],
statements: ({ inputs: B, outputs: Q }) => {
const { gsplat: f } = Q;
if (!f)
return [];
const {
gsplat: p,
flags: d,
index: y,
center: D,
scales: x,
quaternion: w,
rgba: m,
rgb: k,
opacity: M,
x: S,
y: U,
z: F,
r: b,
g: T,
b: R
} = B;
return [
`${f}.flags = ${d ?? (p ? `${p}.flags` : "0u")};`,
`${f}.index = ${y ?? (p ? `${p}.index` : "0")};`,
`${f}.center = ${D ?? (p ? `${p}.center` : "vec3(0.0, 0.0, 0.0)")};`,
`${f}.scales = ${x ?? (p ? `${p}.scales` : "vec3(0.0, 0.0, 0.0)")};`,
`${f}.quaternion = ${w ?? (p ? `${p}.quaternion` : "vec4(0.0, 0.0, 0.0, 1.0)")};`,
`${f}.rgba = ${m ?? (p ? `${p}.rgba` : "vec4(0.0, 0.0, 0.0, 0.0)")};`,
k ? `${f}.rgba.rgb = ${k};` : null,
M ? `${f}.rgba.a = ${M};` : null,
S ? `${f}.center.x = ${S};` : null,
U ? `${f}.center.y = ${U};` : null,
F ? `${f}.center.z = ${F};` : null,
b ? `${f}.rgba.r = ${b};` : null,
T ? `${f}.rgba.g = ${T};` : null,
R ? `${f}.rgba.b = ${R};` : null
].filter(Boolean);
}
});
}
dynoOut() {
return new K(this, "gsplat");
}
}
const An = hA(`
vec3 gsplatNormal(vec3 scales, vec4 quaternion) {
float minScale = min(scales.x, min(scales.y, scales.z));
vec3 normal;
if (scales.z == minScale) {
normal = vec3(0.0, 0.0, 1.0);
} else if (scales.y == minScale) {
normal = vec3(0.0, 1.0, 0.0);
} else {
normal = vec3(1.0, 0.0, 0.0);
}
return quatVec(quaternion, normal);
}
`);
class tn extends v {
constructor({ gsplat: A }) {
super({ a: A, outKey: "normal", outTypeFunc: () => "vec3" }), this.globals = () => [bA, An], this.statements = ({ inputs: e, outputs: s }) => [
`${s.normal} = gsplatNormal(${e.a}.scales, ${e.a}.quaternion);`
];
}
}
class en extends V {
constructor({
gsplat: A,
scale: e,
rotate: s,
translate: n,
recolor: i
}) {
super({
inTypes: {
gsplat: AA,
scale: "float",
rotate: "vec4",
translate: "vec3",
recolor: "vec4"
},
outTypes: { gsplat: AA },
inputs: { gsplat: A, scale: e, rotate: s, translate: n, recolor: i },
globals: () => [bA],
statements: ({ inputs: r, outputs: a, compile: o }) => {
const { gsplat: g } = a;
if (!g || !r.gsplat)
return [];
const { scale: l, rotate: c, translate: I, recolor: h } = r, E = o.indent;
return [
`${g} = ${r.gsplat};`,
`if (isGsplatActive(${g}.flags)) {`,
l ? `${E}${g}.center *= ${l};` : null,
c ? `${E}${g}.center = quatVec(${c}, ${g}.center);` : null,
I ? `${E}${g}.center += ${I};` : null,
l ? `${E}${g}.scales *= ${l};` : null,
c ? `${E}${g}.quaternion = quatQuat(${c}, ${g}.quaternion);` : null,
h ? `${E}${g}.rgba *= ${h};` : null,
"}"
].filter(Boolean);
}
});
}
dynoOut() {
return new K(this, "gsplat");
}
}
const sn = (t, A) => new nn({ gsplat: t, rgbMinMaxLnScaleMinMax: A }), Ic = (t) => new ts({ rgba8: t });
class nn extends V {
constructor({
gsplat: A,
rgbMinMaxLnScaleMinMax: e
}) {
super({
inTypes: { gsplat: AA, rgbMinMaxLnScaleMinMax: "vec4" },
inputs: { gsplat: A, rgbMinMaxLnScaleMinMax: e },
globals: () => [bA],
statements: ({ inputs: s, outputs: n }) => {
const { output: i } = n;
if (!i)
return [];
const { gsplat: r, rgbMinMaxLnScaleMinMax: a } = s;
return r ? RA(`
if (isGsplatActive(${r}.flags)) {
${i} = packSplatEncoding(${r}.center, ${r}.scales, ${r}.quaternion, ${r}.rgba, ${a});
} else {
${i} = uvec4(0u, 0u, 0u, 0u);
}
`) : [`${i} = uvec4(0u, 0u, 0u, 0u);`];
}
});
}
dynoOut() {
return new K(this, "output");
}
}
class ts 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 K(this, "rgba8");
}
}
const uc = (t, A, e) => new N({ key: t, type: A, value: e }), hc = (t = !1, A) => new ce({ key: A, value: t }), Cc = (t = 0, A) => new rn({ key: A, value: t }), Bc = (t = 0, A) => new $t({ key: A, value: t }), HA = (t = 0, A) => new ht({ key: A, value: t }), Ec = (t, A) => new an({ key: A, value: t }), Qc = (t, A) => new on({ key: A, value: t }), pc = (t, A) => new cn({ key: A, value: t }), fc = (t, A) => new zt({ key: A, value: t }), dc = (t, A) => new gn({ key: A, value: t }), yc = (t, A) => new ln({ key: A, value: t }), wc = (t, A) => new In({ key: A, value: t }), tt = (t, A) => new Ft({ key: A, value: t }), mc = (t, A) => new un({ key: A, value: t }), xc = (t, A) => new hn({ key: A, value: t }), Sc = (t, A) => new Cn({ key: A, value: t }), Dc = (t, A) => new Tt({ key: A, value: t }), Mc = (t, A) => new Bn({ key: A, value: t }), vc = (t, A) => new En({ key: A, value: t }), bc = (t, A) => new Qn({ key: A, value: t }), Fc = (t, A) => new pn({ key: A, value: t }), Nc = (t, A) => new fn({ key: A, value: t }), kc = (t, A) => new dn({ key: A, value: t }), Tc = (t, A) => new yn({ key: A, value: t }), Uc = (t, A) => new wn({ key: A, value: t }), Gc = (t, A) => new mn({ key: A, value: t }), Rc = (t, A) => new xn({ key: A, value: t }), Yc = (t, A) => new Sn({ key: A, value: t }), Jc = (t, A) => new Dn({ key: A, value: t }), _c = (t, A) => new Mn({ key: A, value: t }), Lc = (t, A) => new vn({ key: A, value: t }), zc = (t, A) => new bn({ key: A, value: t }), Hc = (t, A) => new Ht({ key: A, value: t }), qc = (t, A) => new Fn({ key: t, value: A }), Kc = (t, A) => new Nn({ key: A, value: t }), $c = (t, A) => new kn({ key: A, value: t }), Vc = (t, A) => new Tn({ key: A, value: t }), Pc = (t, A) => new Un({ key: A, value: t }), Zc = (t, A) => new Gn({ key: A, value: t }), Xc = (t, A) => new Rn({ key: A, value: t }), Oc = (t, A) => new Yn({ key: A, value: t }), jc = (t, A) => new Jn({ key: A, value: t }), Wc = (t, A) => new _n({ key: A, value: t }), Ag = (t, A) => new Ln({ key: A, value: t });
class N extends V {
constructor({
key: A,
type: e,
count: s,
value: n,
update: i,
globals: r
}) {
A = A ?? "value", super({
outTypes: { [A]: e },
update: () => {
if (i) {
const a = i(this.value);
a !== void 0 && (this.value = a);
}
this.uniform.value = this.value;
},
generate: ({ inputs: a, outputs: o }) => {
const g = (r == null ? void 0 : r({ inputs: a, outputs: o })) ?? [], l = {}, c = o[A];
return c && (g.push(`uniform ${We(c, e, s)};`), l[c] = this.uniform), { globals: g, uniforms: l };
}
}), this.type = e, this.count = s, this.value = n, this.uniform = { value: n }, this.outKey = A;
}
dynoOut() {
return new K(this, this.outKey);
}
}
class ce extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "bool", value: e, update: s });
}
}
class rn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "uint", value: e, update: s });
}
}
class $t extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "int", value: e, update: s });
}
}
class ht extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "float", value: e, update: s });
}
}
class an extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "bvec2", value: e, update: s });
}
}
class on extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "uvec2", value: e, update: s });
}
}
class cn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "ivec2", value: e, update: s });
}
}
class zt extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "vec2", value: e, update: s });
}
}
class gn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "bvec3", value: e, update: s });
}
}
class ln extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "uvec3", value: e, update: s });
}
}
class In extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "ivec3", value: e, update: s });
}
}
class Ft extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "vec3", value: e, update: s });
}
}
class un extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "bvec4", value: e, update: s });
}
}
class hn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "uvec4", value: e, update: s });
}
}
class Cn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "ivec4", value: e, update: s });
}
}
class Tt extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "vec4", value: e, update: s });
}
}
class Bn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "mat2", value: e, update: s });
}
}
class En extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "mat2x2", value: e, update: s });
}
}
class Qn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "mat2x3", value: e, update: s });
}
}
class pn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "mat2x4", value: e, update: s });
}
}
class fn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "mat3", value: e, update: s });
}
}
class dn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "mat3x2", value: e, update: s });
}
}
class yn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "mat3x3", value: e, update: s });
}
}
class wn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "mat3x4", value: e, update: s });
}
}
class mn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "mat4", value: e, update: s });
}
}
class xn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "mat4x2", value: e, update: s });
}
}
class Sn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "mat4x3", value: e, update: s });
}
}
class Dn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "mat4x4", value: e, update: s });
}
}
class Mn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "usampler2D", value: e, update: s });
}
}
class vn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "isampler2D", value: e, update: s });
}
}
class bn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "sampler2D", value: e, update: s });
}
}
class Ht extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "usampler2DArray", value: e, update: s });
}
}
class Fn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "isampler2DArray", value: e, update: s });
}
}
class Nn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "sampler2DArray", value: e, update: s });
}
}
class kn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "usampler3D", value: e, update: s });
}
}
class Tn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "isampler3D", value: e, update: s });
}
}
class Un extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "sampler3D", value: e, update: s });
}
}
class Gn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "usamplerCube", value: e, update: s });
}
}
class Rn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "isamplerCube", value: e, update: s });
}
}
class Yn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "samplerCube", value: e, update: s });
}
}
class Jn extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "sampler2DShadow", value: e, update: s });
}
}
class _n extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "sampler2DArrayShadow", value: e, update: s });
}
}
class Ln extends N {
constructor({
key: A,
value: e,
update: s
}) {
super({ key: A, type: "samplerCubeShadow", value: e, update: s });
}
}
const Wt = new Float32Array(1), pe = new Uint32Array(Wt.buffer), es = "Float16Array" in globalThis, qt = es ? new globalThis.Float16Array(1) : null, zn = new Uint16Array(qt == null ? void 0 : qt.buffer);
function Hn(t) {
const A = Math.sqrt(t.reduce((e, s) => e + s * s, 0));
return t.map((e) => e / A);
}
function tg(t) {
return Wt[0] = t, pe[0];
}
function eg(t) {
return pe[0] = t, Wt[0];
}
const Ct = es ? sg : ng, wA = es ? ig : rg;
function sg(t) {
return qt[0] = t, zn[0];
}
function ng(t) {
Wt[0] = t;
const A = pe[0], e = A >> 31 & 1, s = A >> 23 & 255, n = A & 8388607, i = e << 15;
if (s === 255)
return n !== 0 ? i | 32767 : i | 31744;
const r = s - 127 + 15;
if (r >= 31)
return i | 31744;
if (r <= 0) {
if (r < -10)
return i;
const o = (n | 8388608) >> 1 - r + 13;
return i | o;
}
const a = n >> 13;
return i | r << 10 | a;
}
function ig(t) {
return zn[0] = t, qt[0];
}
function rg(t) {
const A = t >> 15 & 1, e = t >> 10 & 31, s = t & 1023;
let n;
if (e === 0)
if (s === 0)
n = A << 31;
else {
let i = s, r = -14;
for (; (i & 1024) === 0; )
i <<= 1, r--;
i &= 1023;
const a = r + 127, o = i << 13;
n = A << 31 | a << 23 | o;
}
else if (e === 31)
s === 0 ? n = A << 31 | 2139095040 : n = A << 31 | 2143289344;
else {
const i = e - 15 + 127, r = s << 13;
n = A << 31 | i << 23 | r;
}
return pe[0] = n, Wt[0];
}
function FA(t) {
return Math.max(0, Math.min(255, Math.round(t * 255)));
}
function ie(t) {
return Math.max(-127, Math.min(127, Math.round(t * 127)));
}
function ag(t) {
return t / 255;
}
function og(t) {
return t / 127;
}
class cg {
// Create a DataCache with a given function that fetches data not in the cache.
constructor({
asyncFetch: A,
maxItems: e = 5
}) {
this.asyncFetch = A, this.maxItems = e, this.items = [];
}
// Fetch data for the key, returning cached data if available.
async getFetch(A) {
const e = this.items.findIndex((n) => n.key === A);
if (e >= 0) {
const n = this.items.splice(e, 1)[0];
return this.items.push(n), n.data;
}
const s = await this.asyncFetch(A);
for (this.items.push({ key: A, data: s }); this.items.length > this.maxItems; )
this.items.shift();
return s;
}
}
function gg(t, A) {
const e = Object.entries(t).map(([s, n]) => [
s,
A(n, s)
]);
return Object.fromEntries(e);
}
function lg(t, A) {
const e = Object.entries(t).map(([s, n]) => [s, A(n, s)]).filter(([s, n]) => n !== void 0);
return Object.fromEntries(e);
}
function qn(t) {
const A = [], e = /* @__PURE__ */ new Set();
function s(n) {
n && typeof n == "object" && !e.has(n) && (e.add(n), n instanceof ArrayBuffer ? A.push(n) : ArrayBuffer.isView(n) ? A.push(n.buffer) : Array.isArray(n) ? n.forEach(s) : Object.values(n).forEach(s));
}
return s(t), A;
}
function Ig(t, A) {
return new Array(t).fill(null).map((e, s) => A(s));
}
class Kn {
constructor({
// Allocate a new item with the given args
allocate: A,
// Dispose of an item (optional, if GC is enough)
dispose: e,
// Check if an existing item in the list is valid for the given args,
// allowing you to store heterogeneous items in the list.
valid: s
}) {
this.items = [], this.allocate = A, this.dispose = e, this.valid = s;
}
// Allocate a new item from the free list, first checking if a existing item
// on the freelist is valid for the given args.
alloc(A) {
for (; ; ) {
const e = this.items.pop();
if (!e)
break;
if (this.valid(e, A))
return e;
this.dispose && this.dispose(e);
}
return this.allocate(A);
}
free(A) {
this.items.push(A);
}
disposeAll() {
let A;
for (A = this.items.pop(); A; )
this.dispose && this.dispose(A), A = this.items.pop();
}
}
function Ye(t, A, e, s, n, i, r, a, o, g, l, c, I, h, E, C, B) {
const Q = (B == null ? void 0 : B.rgbMin) ?? 0, p = ((B == null ? void 0 : B.rgbMax) ?? 1) - Q, d = FA((h - Q) / p), y = FA((E - Q) / p), D = FA((C - Q) / p), x = FA(I), w = ss(
$n.set(o, g, l, c)
), m = w & 255, k = w >>> 8 & 255, M = w >>> 16 & 255, S = (B == null ? void 0 : B.lnScaleMin) ?? UA, F = 254 / (((B == null ? void 0 : B.lnScaleMax) ?? GA) - S), b = i < It ? 0 : Math.min(
255,
Math.max(
1,
Math.round((Math.log(i) - S) * F) + 1
)
), T = r < It ? 0 : Math.min(
255,
Math.max(
1,
Math.round((Math.log(r) - S) * F) + 1
)
), R = a < It ? 0 : Math.min(
255,
Math.max(
1,
Math.round((Math.log(a) - S) * F) + 1
)
), X = Ct(e), _ = Ct(s), eA = Ct(n), q = A * 4;
t[q] = d | y << 8 | D << 16 | x << 24, t[q + 1] = X | _ << 16, t[q + 2] = eA | m << 16 | k << 24, t[q + 3] = b | T << 8 | R << 16 | M << 24;
}
function ug(t, A, e, s, n) {
const i = Ct(e), r = Ct(s), a = Ct(n), o = A * 4;
t[o + 1] = i | r << 16, t[o + 2] = a | t[o + 2] & 4294901760;
}
function hg(t, A, e, s, n, i) {
const r = (i == null ? void 0 : i.lnScaleMin) ?? UA, o = 254 / (((i == null ? void 0 : i.lnScaleMax) ?? GA) - r), g = e < It ? 0 : Math.min(
255,
Math.max(
1,
Math.round((Math.log(e) - r) * o) + 1
)
), l = s < It ? 0 : Math.min(
255,
Math.max(
1,
Math.round((Math.log(s) - r) * o) + 1
)
), c = n < It ? 0 : Math.min(
255,
Math.max(
1,
Math.round((Math.log(n) - r) * o) + 1
)
), I = A * 4;
t[I + 3] = g | l << 8 | c << 16 | t[I + 3] & 4278190080;
}
const $n = new u.Quaternion();
function Cg(t, A, e, s, n, i) {
const r = ss(
$n.set(e, s, n, i)
), a = r & 255, o = r >>> 8 & 255, g = r >>> 16 & 255, l = A * 4;
t[l + 2] = t[l + 2] & 65535 | a << 16 | o << 24, t[l + 3] = t[l + 3] & 16777215 | g << 24;
}
function Bg(t, A, e, s, n, i, r) {
const a = (r == null ? void 0 : r.rgbMin) ?? 0, g = ((r == null ? void 0 : r.rgbMax) ?? 1) - a, l = FA((e - a) / g), c = FA((s - a) / g), I = FA((n - a) / g), h = FA(i), E = A * 4;
t[E] = l | c << 8 | I << 16 | h << 24;
}
function Eg(t, A, e, s, n, i) {
const r = (i == null ? void 0 : i.rgbMin) ?? 0, o = ((i == null ? void 0 : i.rgbMax) ?? 1) - r, g = FA((e - r) / o), l = FA((s - r) / o), c = FA((n - r) / o), I = A * 4;
t[I] = g | l << 8 | c << 16 | t[I] & 4278190080;
}
function Qg(t, A, e) {
const s = FA(e), n = A * 4;
t[n] = t[n] & 16777215 | s << 24;
}
const pg = new u.Vector3(), fg = new u.Vector3(), dg = new u.Quaternion(), yg = new u.Color(), wg = {
center: pg,
scales: fg,
quaternion: dg,
color: yg,
opacity: 0
};
function Je(t, A, e) {
const s = wg, n = A * 4, i = t[n], r = t[n + 1], a = t[n + 2], o = t[n + 3], g = (e == null ? void 0 : e.rgbMin) ?? 0, c = ((e == null ? void 0 : e.rgbMax) ?? 1) - g;
s.color.set(
g + (i & 255) / 255 * c,
g + (i >>> 8 & 255) / 255 * c,
g + (i >>> 16 & 255) / 255 * c
), s.opacity = (i >>> 24 & 255) / 255, s.center.set(
wA(r & 65535),
wA(r >>> 16 & 65535),
wA(a & 65535)
);
const I = (e == null ? void 0 : e.lnScaleMin) ?? UA, E = (((e == null ? void 0 : e.lnScaleMax) ?? GA) - I) / 254, C = o & 255;
s.scales.x = C === 0 ? 0 : Math.exp(I + (C - 1) * E);
const B = o >>> 8 & 255;
s.scales.y = B === 0 ? 0 : Math.exp(I + (B - 1) * E);
const Q = o >>> 16 & 255;
s.scales.z = Q === 0 ? 0 : Math.exp(I + (Q - 1) * E);
const f = a >>> 16 & 65535 | o >>> 8 & 16711680;
return Wn(f, s.quaternion), s;
}
function mA(t) {
const A = Z, e = Math.max(
je,
Math.min(KA, Math.ceil(t / A))
), s = Math.ceil(t / (A * e)), n = A * e * s;
return { width: A, height: e, depth: s, maxSplats: n };
}
function mg(t) {
const A = Z, e = Math.max(
je,
Math.min(KA, Math.ceil(t / A))
), s = Math.ceil(t / (A * e));
return A * e * s;
}
function xg() {
return navigator.maxTouchPoints > 0 ? !0 : /Mobi|Android|iPhone|iPad|iPod|Opera Mini|IEMobile/.test(
navigator.userAgent
);
}
function Sg() {
return /Android/.test(navigator.userAgent);
}
function Dg() {
return /Oculus/.test(navigator.userAgent);
}
function Mg(t, A, e) {
const s = new Uint8Array(A * 4);
for (let n = 0; n < e / 2; n++) {
const i = n * A * 4, r = (e - 1 - n) * A * 4;
s.set(t.subarray(i, i + A * 4)), t.set(
t.subarray(r, r + A * 4),
i
), t.set(s, r);
}
return t;
}
function vg(t, A, e) {
const s = document.createElement("canvas");
s.width = A, s.height = e;
const n = s.getContext("2d");
if (!n)
throw new Error("Can't get 2d context");
const i = n.createImageData(A, e);
return i.data.set(t), n.putImageData(i, 0, 0), s.toDataURL("image/png");
}
function Vn(t) {
const A = new u.Clock(t.autoStart);
return A.startTime = t.startTime, A.oldTime = t.oldTime, A.elapsedTime = t.elapsedTime, A.running = t.running, A;
}
function bg(t) {
return Object.fromEntries(
Object.entries(t).filter(([A, e]) => e !== void 0)
);
}
const Pn = hA(`
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void main() {
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}
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function Zn(t) {
const A = new u.Vector3();
for (const e of t)
A.add(e);
return A.divideScalar(t.length);
}
function Xn(t) {
if (t.length === 0)
return new u.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 On(t, A) {
const e = new u.Vector3(0, 0, 0).applyMatrix4(t), s = new u.Vector3(0, 0, 0).applyMatrix4(A), n = new u.Vector3(0, 0, -1).applyMatrix4(t).sub(e).normalize(), i = new u.Vector3(0, 0, -1).applyMatrix4(A).sub(s).normalize(), r = e.distanceTo(s), a = n.dot(i);
return { distance: r, coincidence: a };
}
function Fg({
matrix1: t,
matrix2: A,
maxDistance: e
}) {
const s = new u.Vector3(0, 0, 0).applyMatrix4(t), n = new u.Vector3(0, 0, 0).applyMatrix4(A);
return s.distanceTo(n) <= e;
}
function Ng({
matrix1: t,
matrix2: A,
maxDistance: e,
minCoincidence: s
}) {
const { distance: n, coincidence: i } = On(t, A);
return n <= e && (s == null || i >= s);
}
function jn(t, A) {
const [e, s] = [new u.Vector3(), new u.Quaternion()], [n, i] = [new u.Vector3(), new u.Quaternion()];
t.decompose(e, s, new u.Vector3()), A.decompose(n, i, new u.Vector3());
const r = e.distanceTo(n), a = Math.abs(s.dot(i));
return { distance: r, coorient: a };
}
function ge({
matrix1: t,
matrix2: A,
maxDistance: e,
minCoorient: s
}) {
const { distance: n, coorient: i } = jn(t, A);
return n <= e && (s == null || i >= s);
}
function kg(t, A = 1e-3) {
return Math.abs(t) < A ? 0 : Math.sign(t);
}
function Tg(t) {
const A = t.w < 0, e = ie(A ? -t.x : t.x), s = ie(A ? -t.y : t.y), n = ie(A ? -t.z : t.z), i = e & 255, r = s & 255, a = n & 255;
return i | r << 8 | a << 16;
}
function Ug(t, A) {
const e = t << 24 >> 24, s = t << 16 >> 24, n = t << 8 >> 24;
A.set(e / 127, s / 127, n / 127, 0);
const i = A.x * A.x + A.y * A.y + A.z * A.z;
return A.w = Math.sqrt(Math.max(0, 1 - i)), A;
}
const Gg = new u.Quaternion(), _e = new u.Vector3();
function ss(t) {
const A = Gg.copy(t).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
), n = s < 1e-6 ? _e.set(1, 0, 0) : _e.set(A.x, A.y, A.z).divideScalar(s), i = Math.abs(n.x) + Math.abs(n.y) + Math.abs(n.z);
let r = n.x / i, a = n.y / i;
if (n.z < 0) {
const h = r;
r = (1 - Math.abs(a)) * (r >= 0 ? 1 : -1), a = (1 - Math.abs(h)) * (a >= 0 ? 1 : -1);
}
const o = r * 0.5 + 0.5, g = a * 0.5 + 0.5, l = Math.round(o * 255), c = Math.round(g * 255);
return Math.round(e * (255 / Math.PI)) << 16 | c << 8 | l;
}
function Wn(t, A) {
const e = t & 255, s = t >>> 8 & 255, n = t >>> 16 & 255, i = e / 255, r = s / 255;
let a = (i - 0.5) * 2, o = (r - 0.5) * 2;
const g = 1 - (Math.abs(a) + Math.abs(o)), l = Math.max(-g, 0);
a += a >= 0 ? -l : l, o += o >= 0 ? -l : l;
const c = _e.set(a, o, g).normalize(), h = n / 255 * Math.PI * 0.5, E = Math.sin(h), C = Math.cos(h);
return A.set(c.x * E, c.y * E, c.z * E, C), A;
}
function Rg(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), n = Math.atan2(e, s), i = 2 * (A.w * A.y - A.z * A.x), r = Math.abs(i) >= 1 ? Math.sign(i) * (Math.PI / 2) : Math.asin(i), a = 2 * (A.w * A.z + A.x * A.y), o = 1 - 2 * (A.y * A.y + A.z * A.z), g = Math.atan2(a, o), l = (n + Math.PI) / (2 * Math.PI), c = (r + Math.PI) / (2 * Math.PI), I = (g + Math.PI) / (2 * Math.PI), h = Math.round(l * 255), E = Math.round(c * 255);
return Math.round(I * 255) << 16 | E << 8 | h;
}
function Yg(t, A) {
const e = t & 255, s = t >>> 8 & 255, n = t >>> 16 & 255, i = e / 255, r = s / 255, a = n / 255, o = i * (2 * Math.PI) - Math.PI, g = r * (2 * Math.PI) - Math.PI, l = a * (2 * Math.PI) - Math.PI, c = Math.cos(o * 0.5), I = Math.sin(o * 0.5), h = Math.cos(g * 0.5), E = Math.sin(g * 0.5), C = Math.cos(l * 0.5), B = Math.sin(l * 0.5);
return A.w = c * h * C + I * E * B, A.x = I * h * C - c * E * B, A.y = c * E * C + I * h * B, A.z = c * h * B - I * E * C, A.normalize(), A;
}
function te(t, A, e, s) {
const n = Math.max(-127, Math.min(127, t * 127)), i = Math.max(-127, Math.min(127, A * 127)), r = Math.max(-127, Math.min(127, e * 127)), a = Math.max(-127, Math.min(127, s * 127));
return n & 255 | (i & 255) << 8 | (r & 255) << 16 | (a & 255) << 24;
}
function Jg(t, A, e, s) {
const n = (s == null ? void 0 : s.sh1Min) ?? -1, i = (s == null ? void 0 : s.sh1Max) ?? 1, r = 0.5 * (n + i), a = 126 / (i - n), o = A * 2;
for (let g = 0; g < 9; ++g) {
const l = (e[g] - r) * a, c = Math.round(Math.max(-63, Math.min(63, l))) & 127, I = g * 7, h = I + 7, E = Math.floor(I / 32), C = I - E * 32, B = c << C & 4294967295;
if (t[o + E] |= B, h > E * 32 + 32) {
const Q = c >>> 32 - C & 4294967295;
t[o + E + 1] |= Q;
}
}
}
function _g(t, A, e, s) {
const n = (s == null ? void 0 : s.sh2Min) ?? -1, i = (s == null ? void 0 : s.sh2Max) ?? 1, r = 0.5 * (n + i), a = 2 / (i - n);
t[A * 4 + 0] = te(
(e[0] - r) * a,
(e[1] - r) * a,
(e[2] - r) * a,
(e[3] - r) * a
), t[A * 4 + 1] = te(
(e[4] - r) * a,
(e[5] - r) * a,
(e[6] - r) * a,
(e[7] - r) * a
), t[A * 4 + 2] = te(
(e[8] - r) * a,
(e[9] - r) * a,
(e[10] - r) * a,
(e[11] - r) * a
), t[A * 4 + 3] = te(
(e[12] - r) * a,
(e[13] - r) * a,
(e[14] - r) * a,
0
);
}
function Lg(t, A, e, s) {
const n = (s == null ? void 0 : s.sh3Min) ?? -1, i = (s == null ? void 0 : s.sh3Max) ?? 1, r = 0.5 * (n + i), a = 62 / (i - n), o = A * 4;
for (let g = 0; g < 21; ++g) {
const l = (e[g] - r) * a, c = Math.round(Math.max(-31, Math.min(31, l))) & 63, I = g * 6, h = I + 6, E = Math.floor(I / 32), C = I - E * 32, B = c << C & 4294967295;
if (t[o + E] |= B, h > E * 32 + 32) {
const Q = c >>> 32 - C & 4294967295;
t[o + E + 1] |= Q;
}
}
}
function Ai(t, A) {
const e = [];
let s = 0, n = null;
const i = new Ts((o, g) => {
if (e.push(o), s += o.length, g || s >= A) {
const l = new Uint8Array(s);
let c = 0;
for (const I of e)
l.set(I, c), c += I.length;
n = l.slice(0, A);
}
}), r = 1024;
let a = 0;
for (; n == null && a < t.length; ) {
const o = t.slice(a, a + r);
i.push(o, !1), a += r;
}
if (n == null && (i.push(new Uint8Array(), !0), n == null))
throw new Error("Failed to decompress partial gzip");
return n;
}
class ti {
constructor({
fileBytes: A,
chunkBytes: e = 64 * 1024
}) {
this.fileBytes = A, this.chunkBytes = e, this.offset = 0, this.chunks = [], this.totalBytes = 0, this.gunzip = new Ts((s, n) => {
this.chunks.push(s), this.totalBytes += s.length;
});
}
read(A) {
for (; this.totalBytes < A && this.offset < this.fileBytes.length; ) {
const i = Math.min(
this.offset + this.chunkBytes,
this.fileBytes.length
);
this.gunzip.push(this.fileBytes.subarray(this.offset, i), !1), this.offset = i;
}
if (this.totalBytes < A && this.offset >= this.fileBytes.length && this.gunzip.push(new Uint8Array(0), !0), this.totalBytes < A)
throw new Error(
`Unexpected EOF: needed ${A}, got ${this.totalBytes}`
);
const e = new Uint8Array(this.totalBytes);
let s = 0;
for (const i of this.chunks)
e.set(i, s), s += i.length;
const n = e.subarray(0, A);
return this.chunks = [e.subarray(A)], this.totalBytes -= A, n;
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Sint8ToFloat: og,
Uint8ToFloat: ag,
averagePositions: Zn,
averageQuaternions: Xn,
cloneClock: Vn,
coinciDist: On,
computeMaxSplats: mg,
coorientDist: jn,
decodeQuatEulerXyz888: Yg,
decodeQuatOctXy88R8: Wn,
decodeQuatXyz888: Ug,
decompressPartialGzip: Ai,
encodeQuatEulerXyz888: Rg,
encodeQuatOctXy88R8: ss,
encodeQuatXyz888: Tg,
encodeSh1Rgb: Jg,
encodeSh2Rgb: _g,
encodeSh3Rgb: Lg,
epsilonSign: kg,
flipPixels: Mg,
floatBitsToUint: tg,
floatToSint8: ie,
floatToUint8: FA,
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getArrayBuffers: qn,
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setPackedSplatScales: hg,
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uintBitsToFloat: eg,
unpackSplat: Je,
withinCoinciDist: Ng,
withinCoorientDist: ge,
withinDist: Fg
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constructor({
graph: A,
inputs: e,
outputs: s,
template: n
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this.graph = A, this.template = n, this.inputs = e ?? {}, this.outputs = s ?? {};
const i = new $s({ indent: this.template.indent });
for (const a in this.outputs)
this.outputs[a] && i.declares.add(this.outputs[a]);
const r = A.compile({
inputs: this.inputs,
outputs: this.outputs,
compile: i
});
this.shader = n.generate({ globals: i.globals, statements: r }), this.uniforms = i.uniforms, this.updaters = i.updaters;
}
prepareMaterial() {
return zg(this);
}
update() {
for (const A of this.updaters)
A();
}
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class is {
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 }}"
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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
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}
generate({
globals: A,
statements: e
}) {
return this.before + Array.from(A).join(`
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let A = Es.get(t);
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glslVersion: u.GLSL3,
vertexShader: Pn,
fragmentShader: t.shader,
uniforms: t.uniforms
}), Es.set(t, A), A);
}
function rs(t, A, e = "add") {
const s = () => {
throw new Error(`Invalid ${e} types: ${t}, ${A}`);
};
if (t === A) return t;
if (t === "int") {
if (EA(A)) return A;
s();
}
if (A === "int") {
if (EA(t)) return t;
s();
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s();
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if (QA(t)) return t;
s();
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if (t === "float") {
if (at(A)) return A;
s();
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if (A === "float") {
if (at(t)) return t;
s();
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throw new Error(`Invalid ${e} types: ${t}, ${A}`);
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function Hg(t, A) {
return rs(t, A, "sub");
}
function qg(t, A) {
const e = () => {
throw new Error(`Invalid mul types: ${t}, ${A}`);
}, s = (n) => n;
if (t === "int") {
if (EA(A)) return s(A);
e();
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if (A === "int") {
if (EA(t)) return s(t);
e();
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if (QA(A)) return s(A);
e();
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if (QA(t)) return s(t);
e();
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e();
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if (A === "float") {
if (at(t)) return s(t);
e();
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if (t === A) return s(t);
e();
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if (t === "vec2") {
if (A === "vec2" || ot(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" || ct(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" || gt(A)) return s("vec4");
e();
}
if (A === "vec2") {
if (ot(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 (ct(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 (gt(t)) return s("vec4");
e();
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if (ot(t)) {
if (ot(A)) return s("mat2");
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if (A === "mat4x2") return s("mat4x2");
e();
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if (ot(A)) return s("mat2x3");
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if (A === "mat4x2") return s("mat4x3");
e();
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if (t === "mat2x4") {
if (ot(A)) return s("mat2x4");
if (A === "mat3x2") return s("mat3x4");
if (A === "mat4x2") return s("mat4");
e();
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if (A === "mat2x3") return s("mat2");
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if (A === "mat4x3") return s("mat4x2");
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if (A === "mat2x3") return s("mat2x3");
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if (A === "mat4x3") return s("mat4");
e();
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if (gt(A)) return s("mat4x3");
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if (A === "mat2x4") return s("mat2x4");
if (A === "mat3x4") return s("mat3x4");
if (gt(A)) return s("mat4");
e();
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throw new Error(`Invalid mul types: ${t}, ${A}`);
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function Kg(t, A) {
return rs(t, A, "div");
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return t;
throw new Error(`Invalid imod types: ${t}, ${A}`);
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function Vg(t, A) {
if (t === A || A === "float") return t;
throw new Error(`Invalid mod types: ${t}, ${A}`);
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function Pg(t) {
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function al(t) {
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function ol(t) {
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function cl(t) {
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function ei(t, A, e = "min") {
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if (A === "float") {
if (Zt(t)) return t;
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if (EA(t)) return t;
} else if (A === "uint" && QA(t))
return t;
throw new Error(`Invalid ${e} types: ${t}, ${A}`);
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function gl(t, A) {
return ei(t, A, "max");
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function ll(t, A, e) {
if (A === "float") {
if (Zt(t)) return t;
} else if (A === "int") {
if (EA(t)) return t;
} else if (A === "uint" && QA(t))
return t;
throw new Error(`Invalid clamp types: ${t}, ${A}`);
}
function Il(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}`);
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function ul(t, A) {
if (t === A || A === "float") return A;
throw new Error(`Invalid step types: ${t}, ${A}`);
}
function hl(t, A, e) {
if (t === A && (t === e || t === "float"))
return e;
throw new Error(`Invalid smoothstep types: ${t}, ${A}, ${e}`);
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function si(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: ${t}`);
}
function Cl(t) {
return si(t, "isInf");
}
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class ai extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outKey: "sum", outTypeFunc: rs }), this.statements = ({ inputs: s, outputs: n }) => [`${n.sum} = ${s.a} + ${s.b};`];
}
}
class oi extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outKey: "difference", outTypeFunc: Hg }), this.statements = ({ inputs: s, outputs: n }) => [`${n.difference} = ${s.a} - ${s.b};`];
}
}
class ci extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outKey: "product", outTypeFunc: qg }), this.statements = ({ inputs: s, outputs: n }) => [`${n.product} = ${s.a} * ${s.b};`];
}
}
class gi extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outKey: "quotient", outTypeFunc: Kg }), this.statements = ({ inputs: s, outputs: n }) => [`${n.quotient} = ${s.a} / ${s.b};`];
}
}
class li extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outKey: "remainder", outTypeFunc: $g }), this.statements = ({ inputs: s, outputs: n }) => [`${n.remainder} = ${s.a} % ${s.b};`];
}
}
class Ii extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outKey: "remainder", outTypeFunc: Vg }), this.statements = ({ inputs: s, outputs: n }) => [`${n.remainder} = mod(${s.a}, ${s.b});`];
}
}
class ui extends V {
constructor({ a: A }) {
const e = { a: $(A) }, s = e.a, n = {
fract: s,
integer: s
};
super({ inTypes: e, outTypes: n, inputs: { a: A } }), this.statements = ({ inputs: i, outputs: r }) => [`${r.fract} = modf(${i.a}, ${r.integer});`];
}
}
class hi extends v {
constructor({ a: A }) {
super({ a: A, outKey: "neg", outTypeFunc: Pg }), this.statements = ({ inputs: e, outputs: s }) => [`${s.neg} = -${e.a};`];
}
}
class Ci extends v {
constructor({ a: A }) {
super({ a: A, outKey: "abs", outTypeFunc: Zg }), this.statements = ({ inputs: e, outputs: s }) => [`${s.abs} = abs(${e.a});`];
}
}
class Bi extends v {
constructor({ a: A }) {
super({ a: A, outKey: "sign", outTypeFunc: Xg }), this.statements = ({ inputs: e, outputs: s }) => [`${s.sign} = sign(${e.a});`];
}
}
class Ei extends v {
constructor({ a: A }) {
super({ a: A, outKey: "floor", outTypeFunc: Og }), this.statements = ({ inputs: e, outputs: s }) => [`${s.floor} = floor(${e.a});`];
}
}
class Qi extends v {
constructor({ a: A }) {
super({ a: A, outKey: "ceil", outTypeFunc: jg }), this.statements = ({ inputs: e, outputs: s }) => [`${s.ceil} = ceil(${e.a});`];
}
}
class pi extends v {
constructor({ a: A }) {
super({ a: A, outKey: "trunc", outTypeFunc: Wg }), this.statements = ({ inputs: e, outputs: s }) => [`${s.trunc} = trunc(${e.a});`];
}
}
class fi extends v {
constructor({ a: A }) {
super({ a: A, outKey: "round", outTypeFunc: Al }), this.statements = ({ inputs: e, outputs: s }) => [`${s.round} = round(${e.a});`];
}
}
class di extends v {
constructor({ a: A }) {
super({ a: A, outKey: "fract", outTypeFunc: tl }), this.statements = ({ inputs: e, outputs: s }) => [`${s.fract} = fract(${e.a});`];
}
}
class yi extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outKey: "power", outTypeFunc: el }), this.statements = ({ inputs: s, outputs: n }) => [`${n.power} = pow(${s.a}, ${s.b});`];
}
}
class wi extends v {
constructor({ a: A }) {
super({ a: A, outKey: "exp", outTypeFunc: sl }), this.statements = ({ inputs: e, outputs: s }) => [`${s.exp} = exp(${e.a});`];
}
}
class mi extends v {
constructor({ a: A }) {
super({ a: A, outKey: "exp2", outTypeFunc: nl }), this.statements = ({ inputs: e, outputs: s }) => [`${s.exp2} = exp2(${e.a});`];
}
}
class xi extends v {
constructor({ a: A }) {
super({ a: A, outKey: "log", outTypeFunc: il }), this.statements = ({ inputs: e, outputs: s }) => [`${s.log} = log(${e.a});`];
}
}
class Si extends v {
constructor({ a: A }) {
super({ a: A, outKey: "log2", outTypeFunc: rl }), this.statements = ({ inputs: e, outputs: s }) => [`${s.log2} = log2(${e.a});`];
}
}
class Di extends v {
constructor({ a: A }) {
super({ a: A, outKey: "sqr", outTypeFunc: al }), this.statements = ({ inputs: e, outputs: s }) => [`${s.sqr} = ${e.a} * ${e.a};`];
}
}
class Mi extends v {
constructor({ a: A }) {
super({ a: A, outKey: "sqrt", outTypeFunc: ol }), this.statements = ({ inputs: e, outputs: s }) => [`${s.sqrt} = sqrt(${e.a});`];
}
}
class vi extends v {
constructor({ a: A }) {
super({ a: A, outKey: "inversesqrt", outTypeFunc: cl }), this.statements = ({ inputs: e, outputs: s }) => [`${s.inversesqrt} = inversesqrt(${e.a});`];
}
}
class bi extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outKey: "min", outTypeFunc: ei }), this.statements = ({ inputs: s, outputs: n }) => [`${n.min} = min(${s.a}, ${s.b});`];
}
}
class Fi extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outKey: "max", outTypeFunc: gl }), this.statements = ({ inputs: s, outputs: n }) => [`${n.max} = max(${s.a}, ${s.b});`];
}
}
class Ni extends yt {
constructor({
a: A,
min: e,
max: s
}) {
super({
a: A,
b: e,
c: s,
outKey: "clamp",
outTypeFunc: ll
}), this.statements = ({ inputs: n, outputs: i }) => {
const { a: r, b: a, c: o } = n;
return [`${i.clamp} = clamp(${r}, ${a}, ${o});`];
};
}
}
class ki extends yt {
constructor({ a: A, b: e, t: s }) {
super({ a: A, b: e, c: s, outKey: "mix", outTypeFunc: Il }), this.statements = ({ inputs: n, outputs: i }) => {
const { a: r, b: a, c: o } = n;
return [`${i.mix} = mix(${r}, ${a}, ${o});`];
};
}
}
class Ti extends tA {
constructor({ edge: A, x: e }) {
super({
a: A,
b: e,
outKey: "step",
outTypeFunc: ul
}), this.statements = ({ inputs: s, outputs: n }) => {
const { a: i, b: r } = s;
return [`${n.step} = step(${i}, ${r});`];
};
}
}
class Ui extends yt {
constructor({
edge0: A,
edge1: e,
x: s
}) {
super({
a: A,
b: e,
c: s,
outKey: "smoothstep",
outTypeFunc: hl
}), this.statements = ({ inputs: n, outputs: i }) => {
const { a: r, b: a, c: o } = n;
return [`${i.smoothstep} = smoothstep(${r}, ${a}, ${o});`];
};
}
}
class Gi extends v {
constructor({ a: A }) {
super({ a: A, outKey: "isNan", outTypeFunc: si }), this.statements = ({ inputs: e, outputs: s }) => [`${s.isNan} = isNan(${e.a});`];
}
}
class Ri extends v {
constructor({ a: A }) {
super({ a: A, outKey: "isInf", outTypeFunc: Cl }), this.statements = ({ inputs: e, outputs: s }) => [`${s.isInf} = isInf(${e.a});`];
}
}
const Rl = (t, A) => new Ji({ a: t, b: A }), Yl = (t, A) => new _i({ a: t, b: A }), Jl = (t, A) => new Li({ a: t, b: A }), _l = (t) => new zi({ a: t }), Ll = (t, A) => new Hi({ a: t, b: A }), zl = (t, A) => new qi({ a: t, b: A }), Hl = (t, A) => new Ki({ a: t, b: A }), Yi = (t, A) => new $i({ a: t, b: A }), ql = (t, A) => new Vi({ a: t, b: A }), Kl = (t, A) => new Pi({ a: t, b: A }), $l = (t) => new Zi({ a: t }), Vl = (t) => new Xi({ a: t }), os = (t, A, e) => new Oi({ cond: t, t: A, f: e }), Pl = (t) => new Wi({ a: t });
class Ji extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outTypeFunc: (s, n) => s, outKey: "and" }), this.statements = ({ inputs: s, outputs: n }) => this.outTypes.and === "bool" ? [`${n.and} = ${s.a} && ${s.b};`] : [`${n.and} = ${s.a} & ${s.b};`];
}
}
class _i extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outTypeFunc: (s, n) => s, outKey: "or" }), this.statements = ({ inputs: s, outputs: n }) => this.outTypes.or === "bool" ? [`${n.or} = ${s.a} || ${s.b};`] : [`${n.or} = ${s.a} | ${s.b};`];
}
}
class Li extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outTypeFunc: (s, n) => s, outKey: "xor" }), this.statements = ({ inputs: s, outputs: n }) => this.outTypes.xor === "bool" ? [`${n.xor} = ${s.a} ^^ ${s.b};`] : [`${n.xor} = ${s.a} ^ ${s.b};`];
}
}
class zi extends v {
constructor({ a: A }) {
super({ a: A, outTypeFunc: (e) => e, outKey: "not" }), this.statements = ({ inputs: e, outputs: s }) => this.outTypes.not === "bool" ? [`${s.not} = !${e.a};`] : [`${s.not} = not(${e.a});`];
}
}
class Hi extends tA {
constructor({ a: A, b: e }) {
super({
a: A,
b: e,
outTypeFunc: (s, n) => fe(s, "lessThan"),
outKey: "lessThan"
}), this.statements = ({ inputs: s, outputs: n }) => this.outTypes.lessThan === "bool" ? [`${n.lessThan} = ${s.a} < ${s.b};`] : [`${n.lessThan} = lessThan(${s.a}, ${s.b});`];
}
}
class qi extends tA {
constructor({ a: A, b: e }) {
super({
a: A,
b: e,
outTypeFunc: (s, n) => fe(s, "lessThanEqual"),
outKey: "lessThanEqual"
}), this.statements = ({ inputs: s, outputs: n }) => this.outTypes.lessThanEqual === "bool" ? [`${n.lessThanEqual} = ${s.a} <= ${s.b};`] : [
`${n.lessThanEqual} = lessThanEqual(${s.a}, ${s.b});`
];
}
}
class Ki extends tA {
constructor({ a: A, b: e }) {
super({
a: A,
b: e,
outTypeFunc: (s, n) => fe(s, "greaterThan"),
outKey: "greaterThan"
}), this.statements = ({ inputs: s, outputs: n }) => this.outTypes.greaterThan === "bool" ? [`${n.greaterThan} = ${s.a} > ${s.b};`] : [
`${n.greaterThan} = greaterThan(${s.a}, ${s.b});`
];
}
}
class $i extends tA {
constructor({ a: A, b: e }) {
super({
a: A,
b: e,
outTypeFunc: (s, n) => fe(s, "greaterThanEqual"),
outKey: "greaterThanEqual"
}), this.statements = ({ inputs: s, outputs: n }) => this.outTypes.greaterThanEqual === "bool" ? [`${n.greaterThanEqual} = ${s.a} >= ${s.b};`] : [
`${n.greaterThanEqual} = greaterThanEqual(${s.a}, ${s.b});`
];
}
}
class Vi extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outTypeFunc: ji, outKey: "equal" }), this.statements = ({ inputs: s, outputs: n }) => this.outTypes.equal === "bool" ? [`${n.equal} = ${s.a} == ${s.b};`] : [`${n.equal} = equal(${s.a}, ${s.b});`];
}
}
class Pi extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outTypeFunc: Zl, outKey: "notEqual" }), this.statements = ({ inputs: s, outputs: n }) => this.outTypes.notEqual === "bool" ? [`${n.notEqual} = ${s.a} != ${s.b};`] : [`${n.notEqual} = notEqual(${s.a}, ${s.b});`];
}
}
class Zi extends v {
constructor({ a: A }) {
super({ a: A, outTypeFunc: (e) => "bool", outKey: "any" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.any} = any(${e.a});`];
}
}
class Xi extends v {
constructor({ a: A }) {
super({ a: A, outTypeFunc: (e) => "bool", outKey: "all" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.all} = all(${e.a});`];
}
}
class Oi extends yt {
constructor({
cond: A,
t: e,
f: s
}) {
super({
a: A,
b: e,
c: s,
outKey: "select",
outTypeFunc: (n, i, r) => i
}), this.statements = ({ inputs: n, outputs: i }) => {
const { a: r, b: a, c: o } = n;
return [`${i.select} = (${r}) ? (${a}) : (${o});`];
};
}
}
function fe(t, A) {
if (dt(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 ji(t, A = "equal") {
if (dt(t))
return "bool";
if (ft(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 Zl(t) {
return ji(t, "notEqual");
}
function Xl(t) {
if (ft(t))
return "bool";
if (EA(t))
return "int";
if (QA(t))
return "uint";
throw new Error(`Invalid compXor type: ${t}`);
}
class Wi extends v {
constructor({ a: A }) {
const e = Xl($(A));
super({ a: A, outTypeFunc: (s) => e, outKey: "compXor" }), this.statements = ({ inputs: s, outputs: n }) => {
if (dt(this.outTypes.compXor))
return [`${n.compXor} = ${s.a};`];
const r = (Nt(e) ? ["x", "y"] : kt(e) ? ["x", "y", "z"] : ["x", "y", "z", "w"]).map((o) => `${s.a}.${o}`), a = ft(e) ? "^^" : "^";
return [`${n.compXor} = ${r.join(` ${a} `)};`];
};
}
}
const Ol = (t) => new rr({ value: t }), jl = (t) => new ar({ value: t }), Wl = (t) => new or({ value: t }), Ar = (t) => new cr({ value: t }), AI = (t) => new gr({ value: t }), tI = (t) => new lr({ value: t }), eI = (t) => new Ir({ value: t }), sI = (t) => new ur({ value: t }), nI = (t) => new hr({ value: t }), iI = (t) => new Cr({ value: t }), rI = (t) => new Br({ value: t }), aI = (t) => new Er({ value: t }), oI = (t) => new Qr({ value: t }), tr = (t) => new pr({ value: t }), Bt = (t) => new fr({ value: t }), er = (t) => new dr({ value: t }), cI = (t) => new yr({ value: t }), gI = (t) => new wr({ value: t }), lI = (t) => new mr({ value: t }), sr = (t) => new xr({ value: t }), nr = (t) => new Sr({ value: t }), II = (t) => new Dr({ value: t }), uI = (t) => new Mr({ value: t }), hI = (t) => new vr({ value: t }), CI = (t) => new br({ value: t }), BI = (t) => new Fr({ value: t }), EI = (t) => new Nr({ value: t }), ir = (t) => new kr({ value: t }), QI = (t) => new Tr({ value: t }), ze = (t) => new Ur({ value: t });
class cA extends v {
constructor({
value: A,
outType: e,
outKey: s
}) {
super({ a: A, outTypeFunc: () => e, outKey: s }), this.statements = ({ inputs: n, outputs: i }) => [
`${i[s]} = ${qs(e)}(${n.a});`
];
}
}
class rr extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "bool", outKey: "bool" });
}
}
class ar extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "int", outKey: "int" });
}
}
class or extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "uint", outKey: "uint" });
}
}
class cr extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "float", outKey: "float" });
}
}
class gr extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "bvec2", outKey: "bvec2" });
}
}
class lr extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "bvec3", outKey: "bvec3" });
}
}
class Ir extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "bvec4", outKey: "bvec4" });
}
}
class ur extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "ivec2", outKey: "ivec2" });
}
}
class hr extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "ivec3", outKey: "ivec3" });
}
}
class Cr extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "ivec4", outKey: "ivec4" });
}
}
class Br extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "uvec2", outKey: "uvec2" });
}
}
class Er extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "uvec3", outKey: "uvec3" });
}
}
class Qr extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "uvec4", outKey: "uvec4" });
}
}
class pr extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "vec2", outKey: "vec2" });
}
}
class fr extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "vec3", outKey: "vec3" });
}
}
class dr extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "vec4", outKey: "vec4" });
}
}
class yr extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "mat2", outKey: "mat2" });
}
}
class wr extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "mat3", outKey: "mat3" });
}
}
class mr extends cA {
constructor({
value: A
}) {
super({ value: A, outType: "mat4", outKey: "mat4" });
}
}
class xr extends v {
constructor({ value: A }) {
super({ a: A, outKey: "int", outTypeFunc: () => "int" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.int} = floatBitsToInt(${e.a});`];
}
}
class Sr extends v {
constructor({ value: A }) {
super({ a: A, outKey: "uint", outTypeFunc: () => "uint" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.uint} = floatBitsToUint(${e.a});`];
}
}
class Dr extends v {
constructor({ value: A }) {
super({ a: A, outKey: "float", outTypeFunc: () => "float" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.float} = intBitsToFloat(${e.a});`];
}
}
class Mr extends v {
constructor({ value: A }) {
super({ a: A, outKey: "float", outTypeFunc: () => "float" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.float} = uintBitsToFloat(${e.a});`];
}
}
class vr extends v {
constructor({ value: A }) {
super({ a: A, outKey: "uint", outTypeFunc: () => "uint" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.uint} = packSnorm2x16(${e.a});`];
}
}
class br extends v {
constructor({ value: A }) {
super({ a: A, outKey: "vec2", outTypeFunc: () => "vec2" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.vec2} = unpackSnorm2x16(${e.a});`];
}
}
class Fr extends v {
constructor({ value: A }) {
super({ a: A, outKey: "uint", outTypeFunc: () => "uint" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.uint} = packUnorm2x16(${e.a});`];
}
}
class Nr extends v {
constructor({ value: A }) {
super({ a: A, outKey: "vec2", outTypeFunc: () => "vec2" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.vec2} = unpackUnorm2x16(${e.a});`];
}
}
class kr extends v {
constructor({ value: A }) {
super({ a: A, outKey: "uint", outTypeFunc: () => "uint" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.uint} = packHalf2x16(${e.a});`];
}
}
class Tr extends v {
constructor({ value: A }) {
super({ a: A, outKey: "vec2", outTypeFunc: () => "vec2" }), this.statements = ({ inputs: e, outputs: s }) => [`${s.vec2} = unpackHalf2x16(${e.a});`];
}
}
class Ur extends v {
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 pI = (t) => new Jr({ a: t }), fI = (t, A) => new _r({ a: t, b: A }), Gr = (t, A) => new Lr({ a: t, b: A }), dI = (t, A) => new zr({ a: t, b: A }), Rr = (t) => new Hr({ a: t }), yI = (t, A, e) => new $r({ a: t, b: A, c: e }), wI = (t, A) => new Vr({ incident: t, normal: A }), mI = (t, A, e) => new Pr({ incident: t, normal: A, eta: e }), Et = (t) => new Aa({ vector: t }), $A = ({
vector: t,
vectorType: A,
x: e,
y: s,
z: n,
w: i,
r,
g: a,
b: o,
a: g
}) => new ta({ vector: t, vectorType: A, x: e, y: s, z: n, w: i, r, g: a, b: o, a: g }), xI = (t) => new qr({ a: t }), Yr = (t, A) => new Kr({ a: t, b: A }), SI = (t, A) => new ea({ vector: t, select: A }), DI = (t, A) => new Zr({ a: t, b: A }), MI = (t, A) => new Xr({ a: t, b: A }), vI = (t) => new Or({ a: t }), bI = (t) => new jr({ a: t }), FI = (t) => new Wr({ a: t });
class Jr extends v {
constructor({ a: A }) {
super({ a: A, outTypeFunc: (e) => "float", outKey: "length" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.length} = length(${e.a});`
];
}
}
class _r extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outKey: "distance", outTypeFunc: (s, n) => "float" }), this.statements = ({ inputs: s, outputs: n }) => [
`${n.distance} = distance(${s.a}, ${s.b});`
];
}
}
class Lr extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outKey: "dot", outTypeFunc: (s, n) => "float" }), this.statements = ({ inputs: s, outputs: n }) => [
`${n.dot} = dot(${s.a}, ${s.b});`
];
}
}
class zr extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outKey: "cross", outTypeFunc: (s, n) => "vec3" }), this.statements = ({ inputs: s, outputs: n }) => [
`${n.cross} = cross(${s.a}, ${s.b});`
];
}
}
class Hr extends v {
constructor({ a: A }) {
super({ a: A, outTypeFunc: (e) => e, outKey: "normalize" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.normalize} = normalize(${e.a});`
];
}
}
function NI(t) {
if (t === "vec3")
return "vec2";
if (t === "vec4")
return "vec3";
throw new Error("Invalid type");
}
class qr extends v {
constructor({ a: A }) {
super({
a: A,
outTypeFunc: (e) => NI(e),
outKey: "projected"
}), this.statements = ({ inputs: e, outputs: s }) => {
if (this.inTypes.a === "vec3")
return [`${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 kI(t) {
if (t === "float") return "vec2";
if (t === "vec2") return "vec3";
if (t === "vec3") return "vec4";
throw new Error("Invalid type");
}
class Kr extends tA {
constructor({ a: A, b: e }) {
const s = $(A), n = kI(s);
super({ a: A, b: e, outKey: "extend", outTypeFunc: () => n }), this.statements = ({ inputs: i, outputs: r }) => [
`${r.extend} = ${n}(${i.a}, ${i.b});`
];
}
}
class $r extends yt {
constructor({ a: A, b: e, c: s }) {
super({
a: A,
b: e,
c: s,
outKey: "forward",
outTypeFunc: (n, i, r) => n
}), this.statements = ({ inputs: n, outputs: i }) => [
`${i.forward} = faceforward(${n.a}, ${n.b}, ${n.c});`
];
}
}
class Vr extends tA {
constructor({
incident: A,
normal: e
}) {
super({
a: A,
b: e,
outKey: "reflection",
outTypeFunc: (s, n) => s
}), this.statements = ({ inputs: s, outputs: n }) => [
`${n.reflection} = reflect(${s.a}, ${s.b});`
];
}
}
class Pr extends yt {
constructor({
incident: A,
normal: e,
eta: s
}) {
super({
a: A,
b: e,
c: s,
outKey: "refraction",
outTypeFunc: (n, i, r) => n
}), this.statements = ({ inputs: n, outputs: i }) => [
`${i.refraction} = refract(${n.a}, ${n.b}, ${n.c});`
];
}
}
class Zr extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outKey: "product", outTypeFunc: (s, n) => s }), this.statements = ({ inputs: s, outputs: n }) => [
`${n.product} = matrixCompMult(${A}, ${e});`
];
}
}
function TI(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}, ${A}`);
}
class Xr extends tA {
constructor({ a: A, b: e }) {
super({ a: A, b: e, outKey: "outer", outTypeFunc: TI }), this.statements = ({ inputs: s, outputs: n }) => [
`${n.outer} = outerProduct(${s.a}, ${s.b});`
];
}
}
function UI(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: ${t}`);
}
class Or extends v {
constructor({ a: A }) {
super({ a: A, outKey: "transpose", outTypeFunc: UI }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.transpose} = transpose(${e.a});`
];
}
}
class jr extends v {
constructor({ a: A }) {
super({ a: A, outKey: "det", outTypeFunc: (e) => "float" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.det} = determinant(${e.a});`
];
}
}
class Wr extends v {
constructor({ a: A }) {
super({ a: A, outKey: "inverse", outTypeFunc: (e) => e }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.inverse} = inverse(${A});`
];
}
}
function GI(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 Aa extends V {
constructor({ vector: A }) {
const s = { vector: $(A) }, n = GI(s.vector);
super({ inTypes: s, outTypes: n, inputs: { vector: A } }), this.statements = ({ inputs: i, outputs: r }) => {
const { x: a, y: o, z: g, w: l, r: c, g: I, b: h, a: E } = r, { vector: C } = i;
return [
a ? `${a} = ${C}.x;` : null,
o ? `${o} = ${C}.y;` : null,
g ? `${g} = ${C}.z;` : null,
l ? `${l} = ${C}.w;` : null,
c ? `${c} = ${C}.r;` : null,
I ? `${I} = ${C}.g;` : null,
h ? `${h} = ${C}.b;` : null,
E ? `${E} = ${C}.a;` : null
].filter(Boolean);
};
}
}
class ta extends V {
constructor({
vector: A,
vectorType: e,
x: s,
y: n,
z: i,
w: r,
r: a,
g: o,
b: g,
a: l
}) {
if (!A && !e)
throw new Error("Either vector or vectorType must be provided");
const c = e ?? $(A), I = Ls(c), h = zs(c), E = {
vector: c,
x: I,
y: I,
r: I,
g: I
}, C = { vector: A, x: s, y: n, r: a, g: o };
h >= 3 && (Object.assign(E, { z: I, b: I }), Object.assign(C, { z: i, b: g })), h >= 4 && (Object.assign(E, { w: I, a: I }), Object.assign(C, { w: r, a: l })), super({ inTypes: E, outTypes: { vector: c }, inputs: C }), this.statements = ({ inputs: B, outputs: Q }) => {
const { vector: f } = Q, {
vector: p,
x: d,
y,
z: D,
w: x,
r: w,
g: m,
b: k,
a: M
} = B, S = [
`${f}.x = ${d ?? w ?? (p ? `${p}.x` : Jt(I))};`,
`${f}.y = ${y ?? m ?? (p ? `${p}.y` : Jt(I))};`
];
return h >= 3 && S.push(
`${f}.z = ${D ?? k ?? (p ? `${p}.z` : Jt(I))};`
), h >= 4 && S.push(
`${f}.w = ${x ?? M ?? (p ? `${p}.w` : Jt(I))};`
), S;
};
}
dynoOut() {
return new K(
this,
"vector"
);
}
}
function RI(t, A) {
let e = null;
if (Zt(t) ? e = A.length === 1 ? "float" : A.length === 2 ? "vec2" : A.length === 3 ? "vec3" : A.length === 4 ? "vec4" : null : EA(t) ? e = A.length === 1 ? "int" : A.length === 2 ? "ivec2" : A.length === 3 ? "ivec3" : A.length === 4 ? "ivec4" : null : QA(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: ${A}`);
return e;
}
class ea extends v {
constructor({ vector: A, select: e }) {
super({
a: A,
outKey: "swizzle",
outTypeFunc: (s) => RI(s, e)
}), this.statements = ({ inputs: s, outputs: n }) => [
`${n.swizzle} = ${s.a}.${e};`
];
}
}
const YI = (t, A, e) => new ca({ index: t, from: A, to: e }), JI = (t) => new Ut({ value: t }), _I = (t) => new kA({ state: t }), LI = (t) => new TA({ state: t }), sa = (t) => new ga({ value: t }), na = (t) => new la({ value: t }), ia = (t) => new Ia({ value: t }), ra = (t) => new ua({ value: t }), zI = (t) => new ha({ value: t }), HI = (t) => new Ca({ value: t }), aa = (t) => new Ba({ value: t }), He = (t) => new Ea({ value: t }), oa = (t, A, e) => new Qa({ z: t, zNear: A, zFar: e }).outputs.depth;
class ca 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: n, outputs: i }) => [
`${i.index} = ${n.index} - ${n.from} + ${n.to};`
]
});
}
dynoOut() {
return new K(this, "index");
}
}
class kA extends V {
constructor({ state: A }) {
const e = $(A);
super({
inTypes: { state: e },
outTypes: { state: "uint" },
inputs: { state: A },
globals: () => [
hA(`
uint pcg_next(uint state) {
return state * 747796405u + 2891336453u;
}
`)
],
statements: ({ inputs: s, outputs: n }) => {
const i = e === "uint" ? `${s.state}` : e === "int" ? `uint(${s.state})` : `floatBitsToUint(${s.state})`;
return [`${n.state} = pcg_next(${i});`];
}
});
}
dynoOut() {
return new K(this, "state");
}
}
class TA extends V {
constructor({ state: A }) {
super({
inTypes: { state: "uint" },
outTypes: { hash: "uint" },
inputs: { state: A },
globals: () => [
hA(`
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 K(this, "hash");
}
}
class Ut extends V {
constructor({ value: A }) {
const e = $(A), s = Hs(e);
super({
inTypes: { value: e },
outTypes: { state: "uint" },
inputs: { value: A },
globals: () => [
hA(`
uint pcg_mix(uint value) {
return value;
}
uint pcg_mix(uvec2 value) {
return value.x + 0x9e3779b9u * value.y;
}
uint pcg_mix(uvec3 value) {
return value.x + 0x9e3779b9u * value.y + 0x85ebca6bu * value.z;
}
uint pcg_mix(uvec4 value) {
return value.x + 0x9e3779b9u * value.y + 0x85ebca6bu * value.z + 0xc2b2ae35u * value.w;
}
`)
],
statements: ({ inputs: n, outputs: i }) => {
const r = QA(e) ? `${n.value}` : EA(e) ? `${s}(${n.value})` : `floatBitsToUint(${n.value})`;
return [
`${s} bits = ${r};`,
`${i.state} = pcg_mix(bits);`
];
}
});
}
dynoOut() {
return new K(this, "state");
}
}
class ga extends PA {
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 Ut({ value: e }).outputs.state;
return s = new kA({ state: s }).outputs.state, new TA({ state: s }).outputs;
}
});
}
dynoOut() {
return new K(this, "hash");
}
}
class la extends PA {
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 Ut({ value: e }).outputs.state;
s = new kA({ state: s }).outputs.state;
const n = new TA({ state: s }).outputs.hash;
s = new kA({ state: s }).outputs.state;
const i = new TA({ state: s }).outputs.hash;
return { hash: $A({ vectorType: "uvec2", x: n, y: i }) };
}
});
}
dynoOut() {
return new K(this, "hash");
}
}
class Ia extends PA {
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 Ut({ value: e }).outputs.state;
s = new kA({ state: s }).outputs.state;
const n = new TA({ state: s }).outputs.hash;
s = new kA({ state: s }).outputs.state;
const i = new TA({ state: s }).outputs.hash;
s = new kA({ state: s }).outputs.state;
const r = new TA({ state: s }).outputs.hash;
return { hash: $A({ vectorType: "uvec3", x: n, y: i, z: r }) };
}
});
}
dynoOut() {
return new K(this, "hash");
}
}
class ua extends PA {
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 Ut({ value: e }).outputs.state;
s = new kA({ state: s }).outputs.state;
const n = new TA({ state: s }).outputs.hash;
s = new kA({ state: s }).outputs.state;
const i = new TA({ state: s }).outputs.hash;
s = new kA({ state: s }).outputs.state;
const r = new TA({ state: s }).outputs.hash;
s = new kA({ state: s }).outputs.state;
const a = new TA({ state: s }).outputs.hash;
return { hash: $A({ vectorType: "uvec4", x: n, y: i, z: r, w: a }) };
}
});
}
dynoOut() {
return new K(this, "hash");
}
}
class ha extends PA {
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 = sa(e);
return { hash: iA(Ar(s), J("float", 1 / 2 ** 32)) };
}
});
}
dynoOut() {
return new K(this, "hash");
}
}
class Ca extends PA {
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 = na(e);
return { hash: iA(tr(s), J("float", 1 / 2 ** 32)) };
}
});
}
dynoOut() {
return new K(this, "hash");
}
}
class Ba extends PA {
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 = ia(e);
return { hash: iA(Bt(s), J("float", 1 / 2 ** 32)) };
}
});
}
dynoOut() {
return new K(this, "hash");
}
}
class Ea extends PA {
constructor({ value: A }) {
super({
inTypes: { value: $(A) },
outTypes: { hash: "vec4" },
inputs: { value: A },
construct: ({ value: e }) => {
if (!e)
throw new Error("value is required");
const s = ra(e);
return { hash: iA(er(s), J("float", 1 / 2 ** 32)) };
}
});
}
dynoOut() {
return new K(this, "hash");
}
}
class Qa extends V {
constructor({
z: A,
zNear: e,
zFar: s
}) {
super({
inTypes: { z: "float", zNear: "float", zFar: "float" },
outTypes: { depth: "float" },
inputs: { z: A, zNear: e, zFar: s },
statements: ({ inputs: n, outputs: i }) => [
`float clamped = clamp(${n.z}, ${n.zNear}, ${n.zFar});`,
`${i.depth} = (log2(clamped + 1.0) - log2(${n.zNear} + 1.0)) / (log2(${n.zFar} + 1.0) - log2(${n.zNear} + 1.0));`
]
});
}
dynoOut() {
return new K(this, "depth");
}
}
const pa = (t, {
scale: A,
scales: e,
rotate: s,
translate: n
}) => new da({ position: t, scale: A, scales: e, rotate: s, translate: n }).outputs.position, fa = (t, {
scale: A,
scales: e,
rotate: s
}) => new ya({ dir: t, scale: A, scales: e, rotate: s }).outputs.dir, qI = (t, { rotate: A }) => new wa({ quaternion: t, rotate: A }).outputs.quaternion;
class da extends V {
constructor({
position: A,
scale: e,
scales: s,
rotate: n,
translate: i
}) {
super({
inTypes: {
position: "vec3",
scale: "float",
scales: "vec3",
rotate: "vec4",
translate: "vec3"
},
outTypes: { position: "vec3" },
inputs: { position: A, scale: e, scales: s, rotate: n, translate: i },
statements: ({ inputs: r, outputs: a }) => {
const { position: o } = a;
if (!o)
return [];
const { scale: g, scales: l, rotate: c, translate: I } = r;
return [
`${o} = ${r.position ?? "vec3(0.0, 0.0, 0.0)"};`,
g ? `${o} *= ${g};` : null,
l ? `${o} *= ${l};` : null,
c ? `${o} = quatVec(${c}, ${o});` : null,
I ? `${o} += ${I};` : null
].filter(Boolean);
}
});
}
}
class ya extends V {
constructor({
dir: A,
scale: e,
scales: s,
rotate: n
}) {
super({
inTypes: { dir: "vec3", scale: "float", scales: "vec3", rotate: "vec4" },
outTypes: { dir: "vec3" },
inputs: { dir: A, scale: e, scales: s, rotate: n },
statements: ({ inputs: i, outputs: r }) => {
const { dir: a } = r;
if (!a)
return [];
const { scale: o, scales: g, rotate: l } = i;
return [
`${a} = ${i.dir ?? "vec3(0.0, 0.0, 0.0)"};`,
o ? `${a} *= ${o};` : null,
g ? `${a} *= ${g};` : null,
l ? `${a} = quatVec(${l}, ${a});` : null
].filter(Boolean);
}
});
}
}
class wa extends V {
constructor({
quaternion: A,
rotate: e
}) {
super({
inTypes: { quaternion: "vec4", rotate: "vec4" },
outTypes: { quaternion: "vec4" },
inputs: { quaternion: A, rotate: e },
statements: ({ inputs: s, outputs: n }) => {
const { quaternion: i } = n;
return i ? [
`${i} = ${s.quaternion ?? "vec4(0.0, 0.0, 0.0, 1.0)"};`,
e ? `${i} = quatQuat(${s.rotate}, ${i});` : null
].filter(Boolean) : [];
}
});
}
}
const KI = () => {
throw new Error("Not implemented");
}, $I = () => {
throw new Error("Not implemented");
}, VI = () => {
throw new Error("Not implemented");
}, PI = () => {
throw new Error("Not implemented");
}, ZI = () => {
throw new Error("Not implemented");
}, XI = () => {
throw new Error("Not implemented");
}, OI = (t, A) => new ma({ texture: t, lod: A }), jI = (t, A, e) => new xa({ texture: t, coord: A, bias: e }), WI = (t, A, e) => new Sa({ texture: t, coord: A, lod: e });
class ma extends V {
constructor({ texture: A, lod: e }) {
const s = $(A);
super({
inTypes: { texture: s, lod: "int" },
outTypes: { size: Da(s) },
inputs: { texture: A, lod: e },
statements: ({ inputs: n, outputs: i }) => [
`${i.size} = textureSize(${n.texture}, ${n.lod ?? "0"});`
]
});
}
dynoOut() {
return new K(this, "size");
}
}
class xa extends V {
constructor({
texture: A,
coord: e,
bias: s
}) {
const n = $(A);
super({
inTypes: {
texture: n,
coord: Au(n),
bias: "float"
},
outTypes: { sample: Ma(n) },
inputs: { texture: A, coord: e, bias: s },
statements: ({ inputs: i, outputs: r }) => [
`${r.sample} = texture(${i.texture}, ${i.coord}${i.bias ? `, ${i.bias}` : ""});`
]
});
}
dynoOut() {
return new K(this, "sample");
}
}
class Sa extends V {
constructor({
texture: A,
coord: e,
lod: s
}) {
const n = $(A);
super({
inTypes: {
texture: n,
coord: Da(n),
lod: "int"
},
outTypes: { texel: Ma(n) },
inputs: { texture: A, coord: e, lod: s },
statements: ({ inputs: i, outputs: r }) => [
`${r.texel} = texelFetch(${i.texture}, ${i.coord}, ${i.lod ?? "0"});`
]
});
}
dynoOut() {
return new K(this, "texel");
}
}
function Da(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 Au(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 Ma(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: ${t}`);
}
}
const tu = (t) => new va({ degrees: t }), eu = (t) => new ba({ radians: t }), qe = (t) => new Fa({ radians: t }), su = (t) => new Na({ radians: t }), nu = (t) => new ka({ radians: t }), iu = (t) => new Ta({ sin: t }), ru = (t) => new Ua({ cos: t }), au = (t) => new Ga({ tan: t }), ou = (t, A) => new Ra({ y: t, x: A }), cu = (t) => new Ya({ x: t }), gu = (t) => new Ja({ x: t }), lu = (t) => new _a({ x: t }), Iu = (t) => new La({ x: t }), uu = (t) => new za({ x: t }), hu = (t) => new Ha({ x: t });
class va extends v {
constructor({ degrees: A }) {
super({ a: A, outTypeFunc: (e) => e, outKey: "radians" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.radians} = radians(${e.a});`
];
}
}
class ba extends v {
constructor({ radians: A }) {
super({ a: A, outTypeFunc: (e) => e, outKey: "degrees" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.degrees} = degrees(${e.a});`
];
}
}
class Fa extends v {
constructor({ radians: A }) {
super({ a: A, outTypeFunc: (e) => e, outKey: "sin" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.sin} = sin(${e.a});`
];
}
}
class Na extends v {
constructor({ radians: A }) {
super({ a: A, outTypeFunc: (e) => e, outKey: "cos" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.cos} = cos(${e.a});`
];
}
}
class ka extends v {
constructor({ radians: A }) {
super({ a: A, outTypeFunc: (e) => e, outKey: "tan" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.tan} = tan(${e.a});`
];
}
}
class Ta extends v {
constructor({ sin: A }) {
super({ a: A, outTypeFunc: (e) => e, outKey: "asin" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.asin} = asin(${e.a});`
];
}
}
class Ua extends v {
constructor({ cos: A }) {
super({ a: A, outTypeFunc: (e) => e, outKey: "acos" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.acos} = acos(${e.a});`
];
}
}
class Ga extends v {
constructor({ tan: A }) {
super({ a: A, outTypeFunc: (e) => e, outKey: "atan" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.atan} = atan(${e.a});`
];
}
}
class Ra extends tA {
constructor({ y: A, x: e }) {
super({
a: A,
b: e,
outTypeFunc: (s, n) => s,
outKey: "atan2"
}), this.statements = ({ inputs: s, outputs: n }) => [
`${n.atan2} = atan2(${s.a}, ${s.b});`
];
}
}
class Ya extends v {
constructor({ x: A }) {
super({ a: A, outTypeFunc: (e) => e, outKey: "sinh" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.sinh} = sinh(${e.a});`
];
}
}
class Ja extends v {
constructor({ x: A }) {
super({ a: A, outTypeFunc: (e) => e, outKey: "cosh" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.cosh} = cosh(${e.a});`
];
}
}
class _a extends v {
constructor({ x: A }) {
super({ a: A, outTypeFunc: (e) => e, outKey: "tanh" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.tanh} = tanh(${e.a});`
];
}
}
class La extends v {
constructor({ x: A }) {
super({ a: A, outTypeFunc: (e) => e, outKey: "asinh" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.asinh} = asinh(${e.a});`
];
}
}
class za extends v {
constructor({ x: A }) {
super({ a: A, outTypeFunc: (e) => e, outKey: "acosh" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.acosh} = acosh(${e.a});`
];
}
}
class Ha extends v {
constructor({ x: A }) {
super({ a: A, outTypeFunc: (e) => e, outKey: "atanh" }), this.statements = ({ inputs: e, outputs: s }) => [
`${s.atanh} = atanh(${e.a});`
];
}
}
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Acos: Ua,
Acosh: za,
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All: Xi,
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Any: Zi,
Asin: Ta,
Asinh: La,
Atan: Ga,
Atan2: Ra,
Atanh: Ha,
BVec2: gr,
BVec3: lr,
BVec4: Ir,
BinaryOp: tA,
Bool: rr,
Ceil: Qi,
Clamp: Ni,
Combine: ta,
CombineGsplat: Ws,
CompMult: Zr,
CompXor: Wi,
Compilation: $s,
Cos: Na,
Cosh: Ja,
Cross: zr,
Degrees: ba,
Determinant: jr,
Distance: _r,
Div: gi,
Dot: Lr,
Dyno: V,
DynoBlock: PA,
DynoBool: ce,
DynoBvec2: an,
DynoBvec3: gn,
DynoBvec4: un,
DynoConst: Ks,
DynoFloat: ht,
DynoInt: $t,
DynoIsampler2D: vn,
DynoIsampler2DArray: Fn,
DynoIsampler3D: Tn,
DynoIsamplerCube: Rn,
DynoIvec2: cn,
DynoIvec3: In,
DynoIvec4: Cn,
DynoLiteral: vt,
DynoMat2: Bn,
DynoMat2x2: En,
DynoMat2x3: Qn,
DynoMat2x4: pn,
DynoMat3: fn,
DynoMat3x2: dn,
DynoMat3x3: yn,
DynoMat3x4: wn,
DynoMat4: mn,
DynoMat4x2: xn,
DynoMat4x3: Sn,
DynoMat4x4: Dn,
DynoOutput: K,
DynoProgram: ns,
DynoProgramTemplate: is,
DynoRemapIndex: ca,
DynoSampler2D: bn,
DynoSampler2DArray: Nn,
DynoSampler2DArrayShadow: _n,
DynoSampler2DShadow: Jn,
DynoSampler3D: Un,
DynoSamplerCube: Yn,
DynoSamplerCubeShadow: Ln,
DynoUint: rn,
DynoUniform: N,
DynoUsampler2D: Mn,
DynoUsampler2DArray: Ht,
DynoUsampler3D: kn,
DynoUsamplerCube: Gn,
DynoUvec2: on,
DynoUvec3: ln,
DynoUvec4: hn,
DynoValue: it,
DynoVec2: zt,
DynoVec3: Ft,
DynoVec4: Tt,
Equal: Vi,
Exp: wi,
Exp2: mi,
ExtendVec: Kr,
FaceForward: $r,
Float: cr,
FloatBitsToInt: xr,
FloatBitsToUint: Sr,
Floor: Ei,
Fract: di,
GreaterThan: Ki,
GreaterThanEqual: $i,
Gsplat: AA,
GsplatNormal: tn,
Hash: ga,
Hash2: la,
Hash3: Ia,
Hash4: ua,
HashFloat: ha,
HashVec2: Ca,
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IVec3: hr,
IVec4: Cr,
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IntBitsToFloat: Dr,
Inverse: Wr,
InverseSqrt: vi,
IsInf: Ri,
IsNan: Gi,
Length: Jr,
LessThan: Hi,
LessThanEqual: qi,
Log: xi,
Log2: Si,
Mat2: yr,
Mat3: wr,
Mat4: mr,
Max: Fi,
Min: bi,
Mix: ki,
Mod: Ii,
Modf: ui,
Mul: ci,
Neg: hi,
Normalize: Hr,
NormalizedDepth: Qa,
Not: zi,
NotEqual: Pi,
NumPackedSplats: Ps,
Or: _i,
Outer: Xr,
OutputPackedSplat: nn,
OutputRgba8: ts,
PackHalf2x16: kr,
PackSnorm2x16: vr,
PackUnorm2x16: Fr,
PcgHash: TA,
PcgMix: Ut,
PcgNext: kA,
Pow: yi,
ProjectH: qr,
Radians: va,
ReadPackedSplat: Xs,
ReadPackedSplatRange: Os,
ReflectVec: Vr,
RefractVec: Pr,
Round: fi,
Select: Oi,
Sign: Bi,
SimpleCast: cA,
Sin: Fa,
Sinh: Ya,
Smoothstep: Ui,
Split: Aa,
SplitGsplat: js,
Sqr: Di,
Sqrt: Mi,
Step: Ti,
Sub: oi,
Swizzle: ea,
TPackedSplats: jt,
Tan: ka,
Tanh: _a,
TexelFetch: Sa,
Texture: xa,
TextureSize: ma,
TransformDir: ya,
TransformGsplat: en,
TransformPosition: da,
TransformQuaternion: wa,
Transpose: Or,
TrinaryOp: yt,
Trunc: pi,
UVec2: Br,
UVec3: Er,
UVec4: Qr,
Uint: or,
UintBitsToFloat: Mr,
UintToRgba8: Ur,
UnaryOp: v,
UnpackHalf2x16: Tr,
UnpackSnorm2x16: br,
UnpackUnorm2x16: Nr,
Vec2: pr,
Vec3: fr,
Vec4: dr,
Xor: Li,
abs: El,
acos: ru,
acosh: uu,
add: BA,
all: Vl,
and: Rl,
any: $l,
arrayIndex: ZI,
arrayLength: XI,
asin: iu,
asinh: Iu,
atan: au,
atan2: ou,
atanh: hu,
bool: Ol,
bvec2: AI,
bvec3: tI,
bvec4: eI,
ceil: fl,
clamp: Nl,
combine: $A,
combineGsplat: rt,
comment: PI,
compMult: DI,
compXor: Pl,
cos: su,
cosh: gu,
cross: dI,
defineGsplat: bA,
defineGsplatNormal: An,
definePackedSplats: Qe,
degrees: eu,
determinant: bI,
distance: fI,
div: re,
dot: Gr,
dyno: Ot,
dynoBlock: vA,
dynoBool: hc,
dynoBvec2: Ec,
dynoBvec3: dc,
dynoBvec4: mc,
dynoConst: J,
dynoDeclare: We,
dynoFloat: HA,
dynoFor: VI,
dynoIf: KI,
dynoInt: Bc,
dynoIsampler2D: Lc,
dynoIsampler2DArray: qc,
dynoIsampler3D: Vc,
dynoIsamplerCube: Xc,
dynoIvec2: pc,
dynoIvec3: wc,
dynoIvec4: Sc,
dynoLiteral: oe,
dynoMat2: Mc,
dynoMat2x2: vc,
dynoMat2x3: bc,
dynoMat2x4: Fc,
dynoMat3: Nc,
dynoMat3x2: kc,
dynoMat3x3: Tc,
dynoMat3x4: Uc,
dynoMat4: Gc,
dynoMat4x2: Rc,
dynoMat4x3: Yc,
dynoMat4x4: Jc,
dynoSampler2D: zc,
dynoSampler2DArray: Kc,
dynoSampler2DArrayShadow: Wc,
dynoSampler2DShadow: jc,
dynoSampler3D: Pc,
dynoSamplerCube: Oc,
dynoSamplerCubeShadow: Ag,
dynoSwitch: $I,
dynoUint: Cc,
dynoUsampler2D: _c,
dynoUsampler2DArray: Hc,
dynoUsampler3D: $c,
dynoUsamplerCube: Zc,
dynoUvec2: Qc,
dynoUvec3: yc,
dynoUvec4: xc,
dynoVec2: fc,
dynoVec3: tt,
dynoVec4: Dc,
equal: ql,
exp: ml,
exp2: xl,
extendVec: Yr,
faceforward: yI,
float: Ar,
floatBitsToInt: sr,
floatBitsToUint: nr,
floor: pl,
fract: ae,
greaterThan: Hl,
greaterThanEqual: Yi,
gsplatNormal: Re,
hash: sa,
hash2: na,
hash3: ia,
hash4: ra,
hashFloat: zI,
hashVec2: HI,
hashVec3: aa,
hashVec4: He,
imod: Le,
int: jl,
intBitsToFloat: II,
inverse: FI,
inversesqrt: bl,
isAllFloatType: at,
isBoolType: ft,
isFloatType: Zt,
isInf: Gl,
isIntType: EA,
isMat2: ot,
isMat3: ct,
isMat4: gt,
isMatFloatType: _s,
isNan: Ul,
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isUintType: QA,
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isVector3Type: kt,
isVector4Type: Xt,
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ivec3: nI,
ivec4: iI,
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mod: ni,
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outputRgba8: Ic,
packHalf2x16: ir,
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pcgHash: LI,
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pcgNext: _I,
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readPackedSplat: bt,
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var Cu = `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 <splatDefines>
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 NA = class NA {
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 n = Math.ceil(Math.max(1, A) / Z) * Z * 4;
if (e.byteLength >= n)
return e;
const i = new ArrayBuffer(n);
if (e instanceof ArrayBuffer)
return i;
const r = e.constructor;
return new r(i);
}
// Ensure our render target is large enough for the readback of capacity indices.
ensureCapacity(A) {
const { width: e, height: s, depth: n, maxSplats: i } = mA(A);
(!this.target || i > this.capacity) && (this.dispose(), this.capacity = i, this.target = new u.WebGLArrayRenderTarget(e, s, n, {
depthBuffer: !1,
stencilBuffer: !1,
generateMipmaps: !1,
magFilter: u.NearestFilter,
minFilter: u.NearestFilter
}), this.target.texture.format = u.RGBAFormat, this.target.texture.type = u.UnsignedByteType, this.target.texture.internalFormat = "RGBA8", this.target.scissorTest = !0);
}
// Get a program and THREE.RawShaderMaterial for a given Rgba8Readback,
// generating it if necessary and caching the result.
prepareProgramMaterial(A) {
let e = NA.readbackProgram.get(A);
if (!e) {
const n = vA(
{ index: "int" },
{ rgba8: "vec4" },
({ index: i }) => (A.inputs.index = i, { rgba8: new ts({ rgba8: A.outputs.rgba8 }) })
);
NA.programTemplate || (NA.programTemplate = new is(Cu)), e = new ns({
graph: n,
inputs: { index: "index" },
outputs: { rgba8: "target" },
template: NA.programTemplate
}), Object.assign(e.uniforms, {
targetLayer: { value: 0 },
targetBase: { value: 0 },
targetCount: { value: 0 }
}), NA.readbackProgram.set(A, e);
}
const s = e.prepareMaterial();
return NA.fullScreenQuad.material = s, { program: e, material: s };
}
saveRenderState(A) {
return {
xrEnabled: A.xr.enabled,
autoClear: A.autoClear
};
}
resetRenderState(A, e) {
A.setRenderTarget(null), A.xr.enabled = e.xrEnabled, A.autoClear = e.autoClear;
}
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 n = Z * KA;
e.uniforms.targetBase.value = 0, e.uniforms.targetCount.value = A;
let i = 0;
for (; i < A; ) {
const r = Math.floor(i / n), a = r * n, o = Math.min(
KA,
Math.ceil((A - a) / Z)
);
e.uniforms.targetLayer.value = r, this.target.scissor.set(0, 0, Z, o), s.setRenderTarget(this.target, r), s.xr.enabled = !1, s.autoClear = !1, NA.fullScreenQuad.render(s), i += Z * o;
}
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 / Z) * Z;
if (A.byteLength < s * 4)
throw new Error(
`Readback buffer too small: ${A.byteLength} < ${s * 4}`
);
const n = new Uint8Array(
A instanceof ArrayBuffer ? A : A.buffer
), i = Z * KA;
let r = 0;
const a = [];
for (; r < this.count; ) {
const o = Math.floor(r / i), g = o * i, l = Math.min(
KA,
Math.ceil((this.count - g) / Z)
);
e.setRenderTarget(this.target, o);
const c = Z * l * 4, I = n.subarray(
g * 4,
g * 4 + c
), h = e == null ? void 0 : e.readRenderTargetPixelsAsync(
this.target,
0,
0,
Z,
l,
I
);
a.push(h), r += Z * l;
}
return Promise.all(a).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: n, material: i } = this.prepareProgramMaterial(A);
n.update();
const r = this.saveRenderState(this.renderer);
this.process({ count: e, material: i }), this.resetRenderState(this.renderer, r);
}
// 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: n
}) {
if (this.renderer = s || this.renderer, !this.renderer)
throw new Error("No renderer");
this.ensureCapacity(e);
const { program: i, material: r } = this.prepareProgramMaterial(A);
i.update();
const a = this.saveRenderState(this.renderer);
this.process({ count: e, material: r });
const o = this.read({ readback: n });
return this.resetRenderState(this.renderer, a), o;
}
getTexture() {
var A;
return (A = this.target) == null ? void 0 : A.texture;
}
};
NA.programTemplate = null, NA.readbackProgram = /* @__PURE__ */ new Map(), NA.fullScreenQuad = new xs(
new u.RawShaderMaterial({ visible: !1 })
);
let le = NA;
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 N({
key: "rgbaArray",
type: qa,
globals: () => [Ka],
value: {
texture: IA.getEmpty(),
count: 0
},
update: (e) => {
var s;
return e.texture = ((s = this.readback) == null ? void 0 : s.getTexture()) ?? this.source ?? IA.getEmpty(), e.count = this.count, e;
}
}), A.array ? (this.array = A.array, this.capacity = Math.floor(this.array.length / 4), this.capacity = Math.floor(this.capacity / Z) * Z, 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 ?? IA.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 u.DataArrayTexture(
this.array,
A,
e,
s
), this.source.format = u.RGBAFormat, this.source.type = u.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 le({ 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: n
}) {
const { dynoSplats: i, dynoBase: r, dynoCount: a, reader: o } = IA.makeDynos();
return i.packedSplats = A, r.value = e, a.value = s, this.render({ reader: o, count: s, renderer: n }), 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 (!IA.emptySource) {
const A = new Uint8Array(4);
IA.emptySource = new u.DataArrayTexture(A, 1, 1, 1), IA.emptySource.format = u.RGBAFormat, IA.emptySource.type = u.UnsignedByteType, IA.emptySource.internalFormat = "RGBA8", IA.emptySource.needsUpdate = !0;
}
return IA.emptySource;
}
// Create a dyno program that can extract RGBA8 values from a PackedSplats
static makeDynos() {
if (!IA.dynos) {
const A = new ls(), e = new $t({ value: 0 }), s = new $t({ value: 0 }), n = vA(
{ index: "int" },
{ rgba8: "vec4" },
({ index: i }) => {
if (!i)
throw new Error("index is undefined");
i = BA(i, e);
const r = Vs(
A,
i,
e,
s
);
return { rgba8: ut(r).outputs.rgba };
}
);
IA.dynos = { dynoSplats: A, dynoBase: e, dynoCount: s, reader: n };
}
return IA.dynos;
}
};
IA.emptySource = null, IA.dynos = null;
let Ke = IA;
const qa = { type: "RgbaArray" }, Ka = hA(`
struct RgbaArray {
sampler2DArray texture;
int count;
};
`);
function Bu(t, A) {
return new V({
inTypes: { rgba: qa, index: "int" },
outTypes: { rgba: "vec4" },
inputs: { rgba: t, index: A },
globals: () => [Ka],
statements: ({ inputs: s, outputs: n }) => RA(`
if ((index >= 0) && (index < ${s.rgba}.count)) {
${n.rgba} = texelFetch(${s.rgba}.texture, splatTexCoord(index), 0);
} else {
${n.rgba} = vec4(0.0, 0.0, 0.0, 0.0);
}
`)
}).outputs.rgba;
}
var Eu = /* @__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))(Eu || {});
function Qu(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 pu = /* @__PURE__ */ ((t) => (t.MULTIPLY = "multiply", t.SET_RGB = "set_rgb", t.ADD_RGBA = "add_rgba", t))(pu || {});
function fu(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 du extends u.Object3D {
constructor(A = {}) {
super();
const { type: e, invert: s, opacity: n, color: i, displace: r, radius: a } = A;
this.type = e ?? "sphere", this.invert = s ?? !1, this.opacity = n ?? 1, this.color = i ?? new u.Color(1, 1, 1), this.displace = r ?? new u.Vector3(0, 0, 0), this.radius = a ?? 0;
}
}
const Ee = class Ee extends u.Object3D {
constructor(A = {}) {
const {
name: e,
rgbaBlendMode: s = "multiply",
sdfSmooth: n = 0,
softEdge: i = 0,
invert: r = !1,
sdfs: a = null
} = A;
super(), this.rgbaBlendMode = s, this.sdfSmooth = n, this.softEdge = i, this.invert = r, this.sdfs = a, this.ordering = Ee.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));
}
};
Ee.nextOrdering = 1;
let Ie = Ee;
class yu {
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 N({
key: "sdfArray",
type: $a,
globals: () => [Va],
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 $t({ value: 0 }), this.dynoEdits = this.newEdits(this.editData, this.maxEdits);
}
newSdfTexture(A, e) {
const s = new u.DataTexture(
A,
8,
e,
u.RGBAIntegerFormat,
u.UnsignedIntType
);
return s.internalFormat = "RGBA32UI", s.needsUpdate = !0, s;
}
newEdits(A, e) {
return new N({
key: "edits",
type: "uvec4",
count: e,
globals: () => [Pa],
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) {
wt[0] = e;
const s = this.editFloatData[A] !== wt[0];
return s && (this.editFloatData[A] = wt[0]), s;
}
encodeEdit(A, {
sdfFirst: e,
sdfCount: s,
invert: n,
rgbaBlendMode: i,
softEdge: r,
sdfSmooth: a
}) {
const o = A * 4;
let g = !1;
return g = this.updateEditData(o + 0, i | (n ? 256 : 0)) || g, g = this.updateEditData(o + 1, e | s << 16) || g, g = this.updateEditFloatData(o + 2, r) || g, g = this.updateEditFloatData(o + 3, a) || g, g;
}
updateSdfData(A, e) {
const s = this.sdfData[A] !== e;
return this.sdfData[A] = e, s;
}
updateSdfFloatData(A, e) {
wt[0] = e;
const s = this.sdfFloatData[A] !== wt[0];
return s && (this.sdfFloatData[A] = wt[0]), s;
}
encodeSdf(A, {
sdfType: e,
invert: s,
center: n,
quaternion: i,
scale: r,
sizes: a
}, o) {
const g = A * 32, l = e | (s ? 256 : 0);
let c = !1;
c = this.updateSdfFloatData(g + 0, (n == null ? void 0 : n.x) ?? 0) || c, c = this.updateSdfFloatData(g + 1, (n == null ? void 0 : n.y) ?? 0) || c, c = this.updateSdfFloatData(g + 2, (n == null ? void 0 : n.z) ?? 0) || c, c = this.updateSdfData(g + 3, l) || c, c = this.updateSdfFloatData(g + 4, (i == null ? void 0 : i.x) ?? 0) || c, c = this.updateSdfFloatData(g + 5, (i == null ? void 0 : i.y) ?? 0) || c, c = this.updateSdfFloatData(g + 6, (i == null ? void 0 : i.z) ?? 0) || c, c = this.updateSdfFloatData(g + 7, (i == null ? void 0 : i.w) ?? 0) || c, c = this.updateSdfFloatData(g + 8, (r == null ? void 0 : r.x) ?? 0) || c, c = this.updateSdfFloatData(g + 9, (r == null ? void 0 : r.y) ?? 0) || c, c = this.updateSdfFloatData(g + 10, (r == null ? void 0 : r.z) ?? 0) || c, c = this.updateSdfData(g + 11, 0) || c, c = this.updateSdfFloatData(g + 12, (a == null ? void 0 : a.x) ?? 0) || c, c = this.updateSdfFloatData(g + 13, (a == null ? void 0 : a.y) ?? 0) || c, c = this.updateSdfFloatData(g + 14, (a == null ? void 0 : a.z) ?? 0) || c, c = this.updateSdfFloatData(g + 15, (a == null ? void 0 : a.w) ?? 0) || c;
const I = Math.min(4, o.length);
for (let h = 0; h < I; ++h) {
const E = g + 16 + h * 4;
c = this.updateSdfFloatData(E + 0, o[h].x) || c, c = this.updateSdfFloatData(E + 1, o[h].y) || c, c = this.updateSdfFloatData(E + 2, o[h].z) || c, c = this.updateSdfFloatData(E + 3, o[h].w) || c;
}
return c;
}
// 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((c, { sdfs: I }) => c + I.length, 0), s = this.ensureCapacity({
maxEdits: A.length,
maxSdfs: e
}), n = [new u.Vector4(), new u.Vector4()], i = new u.Vector3(), r = new u.Quaternion(), a = new u.Vector3(), o = new u.Vector4();
let g = 0, l = s;
A.length !== this.dynoNumEdits.value && (this.dynoNumEdits.value = A.length, this.numEdits = A.length, l = !0);
for (const [c, { edit: I, sdfs: h }] of A.entries()) {
l = this.encodeEdit(c, {
sdfFirst: g,
sdfCount: h.length,
invert: I.invert,
rgbaBlendMode: fu(I.rgbaBlendMode),
softEdge: I.softEdge,
sdfSmooth: I.sdfSmooth
}) || l;
let E = !1;
for (const C of h)
o.set(C.scale.x, C.scale.y, C.scale.z, C.radius), C.scale.setScalar(1), C.updateMatrixWorld(), C.matrixWorld.clone().invert().decompose(i, r, a), C.scale.set(o.x, o.y, o.z), C.updateMatrixWorld(), n[0].set(C.color.r, C.color.g, C.color.b, C.opacity), n[1].set(C.displace.x, C.displace.y, C.displace.z, 1), E = this.encodeSdf(
g,
{
sdfType: Qu(C.type),
invert: C.invert,
center: i,
quaternion: r,
scale: a,
sizes: o
},
n
) || E, g += 1;
this.numSdfs = g, E && (this.sdfTexture.needsUpdate = !0), l || (l = E);
}
return { updated: l, dynoUpdated: s };
}
// Modify a Gsplat in a dyno shader program using the current edits and SDFs.
modify(A) {
return wu(
A,
this.dynoSdfArray,
this.dynoNumEdits,
this.dynoEdits
);
}
}
const $a = { type: "SdfArray" }, Va = hA(`
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);
}
`), Pa = hA(`
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 wu(t, A, e, s) {
return new V({
inTypes: {
gsplat: AA,
sdfArray: $a,
numEdits: "int",
rgbaDisplaceEdits: "uvec4"
},
outTypes: { gsplat: AA },
globals: () => [Va, Pa],
inputs: { gsplat: t, sdfArray: A, numEdits: e, rgbaDisplaceEdits: s },
statements: ({ inputs: i, outputs: r }) => {
const { sdfArray: a, numEdits: o, rgbaDisplaceEdits: g } = i, { gsplat: l } = r;
return RA(`
${l} = ${i.gsplat};
if (isGsplatActive(${l}.flags)) {
for (int editIndex = 0; editIndex < ${o}; ++editIndex) {
applyPackedRgbaDisplaceEdit(
${g}[editIndex], ${a}.sdfTexture, ${a}.numSdfs,
${l}.center, ${l}.rgba
);
}
}
`);
}
}).outputs.gsplat;
}
const wt = new Float32Array(1);
class mu {
constructor(A) {
this.modifier = A, this.cache = /* @__PURE__ */ new Map();
}
apply(A) {
let e = this.cache.get(A);
return e || (e = vA(
{ index: "int" },
{ gsplat: AA },
({ index: s }) => {
const { gsplat: n } = A.apply({ index: s });
return this.modifier.apply({ gsplat: n });
}
), this.cache.set(A, e)), e;
}
}
class xt {
// Create the dyno uniforms that parameterize the transform, setting them
// to initial values that are different from any valid transform.
constructor() {
this.scale = new ht({ value: Number.NEGATIVE_INFINITY }), this.rotate = new Tt({
value: new u.Quaternion(
Number.POSITIVE_INFINITY,
Number.POSITIVE_INFINITY,
Number.POSITIVE_INFINITY,
Number.POSITIVE_INFINITY
)
}), this.translate = new Ft({
value: new u.Vector3(
Number.POSITIVE_INFINITY,
Number.POSITIVE_INFINITY,
Number.POSITIVE_INFINITY
)
});
}
// Apply the transform to a Vec3 position in a dyno program.
apply(A) {
return pa(A, {
scale: this.scale,
rotate: this.rotate,
translate: this.translate
});
}
applyDir(A) {
return fa(A, {
rotate: this.rotate
});
}
// Apply the transform to a Gsplat in a dyno program.
applyGsplat(A) {
return As(A, {
scale: this.scale,
rotate: this.rotate,
translate: this.translate
});
}
// Update the uniforms to match the given transform matrix.
updateFromMatrix(A) {
const e = new u.Vector3(), s = new u.Quaternion(), n = new u.Vector3();
A.decompose(n, s, e);
const i = (e.x + e.y + e.z) / 3;
let r = !1;
return i !== this.scale.value && (this.scale.value = i, r = !0), n.equals(this.translate.value) || (this.translate.value.copy(n), r = !0), s.equals(this.rotate.value) || (this.rotate.value.copy(s), r = !0), r;
}
// Update this transform to match the object's to-world transform.
update(A) {
return A.updateMatrixWorld(), this.updateFromMatrix(A.matrixWorld);
}
}
class Vt extends u.Object3D {
constructor({
numSplats: A,
generator: e,
construct: s,
update: n
}) {
if (super(), this.numSplats = A ?? 0, this.generator = e, this.frameUpdate = n, this.version = 0, s) {
const i = s(this);
Object.assign(this, i);
}
}
updateVersion() {
this.version += 1;
}
set needsUpdate(A) {
A && this.updateVersion();
}
}
const st = class st extends Vt {
constructor(A = {}) {
const e = new xt(), s = new xt(), n = new xt(), i = new xt(), r = new Tt({
value: new u.Vector4(
Number.NEGATIVE_INFINITY,
Number.NEGATIVE_INFINITY,
Number.NEGATIVE_INFINITY,
Number.NEGATIVE_INFINITY
)
}), a = new ht({ value: 0 }), o = new ht({ value: 0 }), g = {
transform: e,
viewToWorld: s,
worldToView: n,
viewToObject: i,
recolor: r,
time: a,
deltaTime: o
};
if (super({
update: ({ time: l, deltaTime: c, viewToWorld: I, globalEdits: h }) => this.update({ time: l, deltaTime: c, viewToWorld: I, globalEdits: h })
}), this.isInitialized = !1, this.recolor = new u.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 VA(), this.packedSplats.splatEncoding = A.splatEncoding ?? {
...de
}, this.numSplats = this.packedSplats.numSplats, this.editable = A.editable ?? !0, this.onFrame = A.onFrame, this.context = g, 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 l = A.onLoad(this);
l instanceof Promise && await l;
}
return this;
});
else if (this.isInitialized = !0, this.initialized = Promise.resolve(this), A.onLoad) {
const l = A.onLoad(this);
l instanceof Promise && (this.initialized = l.then(() => this));
}
this.add(ku());
}
async asyncInitialize(A) {
const {
url: e,
fileBytes: s,
fileType: n,
fileName: i,
maxSplats: r,
constructSplats: a,
splatEncoding: o
} = A;
if (e || s || a) {
const g = {
url: e,
fileBytes: s,
fileType: n,
fileName: i,
maxSplats: r,
construct: a,
splatEncoding: o
};
this.packedSplats.reinitialize(g);
}
this.packedSplats && (await this.packedSplats.initialized, this.numSplats = this.packedSplats.numSplats, this.updateGenerator());
}
static async staticInitialize() {
await Gs(), st.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, n, i) {
this.packedSplats.pushSplat(A, e, s, n, i);
}
// 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();
}
// Returns axis-aligned bounding box of the SplatMesh. If centers_only is true,
// only the centers of the splats are used to compute the bounding box.
// IMPORTANT: This should only be called after the SplatMesh is initialized.
getBoundingBox(A = !0) {
if (!this.initialized)
throw new Error(
"Cannot get bounding box before SplatMesh is initialized"
);
const e = new u.Vector3(
Number.POSITIVE_INFINITY,
Number.POSITIVE_INFINITY,
Number.POSITIVE_INFINITY
), s = new u.Vector3(
Number.NEGATIVE_INFINITY,
Number.NEGATIVE_INFINITY,
Number.NEGATIVE_INFINITY
), n = new u.Vector3(), i = [-1, 1];
return this.packedSplats.forEachSplat(
(a, o, g, l, c, I) => {
if (A)
e.min(o), s.max(o);
else
for (const h of i)
for (const E of i)
for (const C of i)
n.set(h * g.x, E * g.y, C * g.z), n.applyQuaternion(l), n.add(o), e.min(n), s.max(n);
}
), new u.Box3(e, s);
}
constructGenerator(A) {
const { transform: e, viewToObject: s, recolor: n } = A, i = vA(
{ index: "int" },
{ gsplat: AA },
({ index: r }) => {
if (!r)
throw new Error("index is undefined");
let a = bt(this.packedSplats.dyno, r);
if (this.maxSh >= 1) {
const { sh1Texture: g, sh2Texture: l, sh3Texture: c } = this.ensureShTextures();
if (g) {
let I = function(p, d) {
const { x: y, y: D } = Et(d).outputs, x = iA(BA(y, D), J("float", 0.5)), w = iA(Qt(D, y), J("float", 0.5));
return BA(x, iA(p, w));
};
const h = s.translate, { center: E } = ut(a).outputs, C = Rr(Qt(E, h)), B = Mu(a, g, C);
let Q = I(B, this.packedSplats.dynoSh1MinMax);
if (this.maxSh >= 2 && l) {
const p = vu(a, l, C);
Q = BA(
Q,
I(p, this.packedSplats.dynoSh2MinMax)
);
}
if (this.maxSh >= 3 && c) {
const p = bu(a, c, C);
Q = BA(
Q,
I(p, this.packedSplats.dynoSh3MinMax)
);
}
let { rgba: f } = ut(a).outputs;
f = BA(f, Yr(Q, J("float", 0))), a = rt({ gsplat: a, rgba: f });
}
}
if (this.splatRgba) {
const g = Bu(this.splatRgba.dyno, r);
a = rt({ gsplat: a, rgba: g });
}
this.skinning && (a = this.skinning.modify(a)), this.objectModifier && (a = this.objectModifier.apply({ gsplat: a }).gsplat), a = e.applyGsplat(a);
const o = iA(n, ut(a).outputs.rgba);
return a = rt({ gsplat: a, rgba: o }), this.rgbaDisplaceEdits && (a = this.rgbaDisplaceEdits.modify(a)), this.worldModifier && (a = this.worldModifier.apply({ gsplat: a }).gsplat), { gsplat: a };
}
);
this.generator = i;
}
// 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: n
}) {
var B;
this.numSplats = this.packedSplats.numSplats, this.context.time.value = A, this.context.deltaTime.value = s, st.dynoTime.value = A;
const { transform: i, viewToObject: r, recolor: a } = this.context;
let o = i.update(this);
this.context.viewToWorld.updateFromMatrix(e) && this.enableViewToWorld && (o = !0);
const g = e.clone().invert();
this.context.worldToView.updateFromMatrix(g) && this.enableWorldToView && (o = !0);
const I = new u.Matrix4().compose(
i.translate.value,
i.rotate.value,
new u.Vector3().setScalar(i.scale.value)
).invert().multiply(e);
r.updateFromMatrix(I) && (this.enableViewToObject || this.packedSplats.extra.sh1) && (o = !0);
const h = new u.Vector4(
this.recolor.r,
this.recolor.g,
this.recolor.b,
this.opacity
);
h.equals(a.value) || (a.value.copy(h), o = !0);
const E = this.editable ? (this.edits ?? []).concat(n) : [];
this.editable && !this.edits && this.traverseVisible((Q) => {
Q instanceof Ie && E.push(Q);
}), E.sort((Q, f) => Q.ordering - f.ordering);
const C = E.map((Q) => {
if (Q.sdfs != null)
return { edit: Q, sdfs: Q.sdfs };
const f = [];
return Q.traverseVisible((p) => {
p instanceof du && f.push(p);
}), { edit: Q, sdfs: f };
});
if (C.length > 0 && !this.rgbaDisplaceEdits) {
const Q = C.length, f = C.reduce(
(p, d) => p + d.sdfs.length,
0
);
this.rgbaDisplaceEdits = new yu({
maxEdits: Q,
maxSdfs: f
}), this.updateGenerator();
}
if (this.rgbaDisplaceEdits) {
const Q = this.rgbaDisplaceEdits.update(C);
o || (o = Q.updated), Q.dynoUpdated && this.updateGenerator();
}
o && this.updateVersion(), (B = this.onFrame) == null || B.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) {
var h, E;
if (!this.packedSplats.packedArray || !this.packedSplats.numSplats)
return;
const { near: s, far: n, ray: i } = A, r = this.matrixWorld.clone().invert(), a = new u.Matrix3().setFromMatrix4(r), o = i.origin.clone().applyMatrix4(r), g = i.direction.clone().applyMatrix3(a), l = new u.Vector3();
r.decompose(new u.Vector3(), new u.Quaternion(), l), (l.x * l.y * l.z) ** (1 / 3);
const I = Po(
o.x,
o.y,
o.z,
g.x,
g.y,
g.z,
s,
n,
this.packedSplats.numSplats,
this.packedSplats.packedArray,
!0,
((h = this.packedSplats.splatEncoding) == null ? void 0 : h.lnScaleMin) ?? UA,
((E = this.packedSplats.splatEncoding) == null ? void 0 : E.lnScaleMax) ?? GA
);
for (const C of I) {
const B = i.direction.clone().multiplyScalar(C).add(i.origin);
e.push({
distance: C,
point: B,
object: this
});
}
}
ensureShTextures() {
if (!this.packedSplats.extra.sh1)
return {};
let A = this.packedSplats.extra.sh1Texture;
if (!A) {
let n = this.packedSplats.extra.sh1;
const { width: i, height: r, depth: a, maxSplats: o } = mA(
n.length / 2
);
if (n.length < o * 2) {
const l = new Uint32Array(o * 2);
l.set(n), this.packedSplats.extra.sh1 = l, n = l;
}
const g = new u.DataArrayTexture(n, i, r, a);
g.format = u.RGIntegerFormat, g.type = u.UnsignedIntType, g.internalFormat = "RG32UI", g.needsUpdate = !0, A = new Ht({
value: g,
key: "sh1"
}), this.packedSplats.extra.sh1Texture = A;
}
if (!this.packedSplats.extra.sh2)
return { sh1Texture: A };
let e = this.packedSplats.extra.sh2Texture;
if (!e) {
let n = this.packedSplats.extra.sh2;
const { width: i, height: r, depth: a, maxSplats: o } = mA(
n.length / 4
);
if (n.length < o * 4) {
const l = new Uint32Array(o * 4);
l.set(n), this.packedSplats.extra.sh2 = l, n = l;
}
const g = new u.DataArrayTexture(n, i, r, a);
g.format = u.RGBAIntegerFormat, g.type = u.UnsignedIntType, g.internalFormat = "RGBA32UI", g.needsUpdate = !0, e = new Ht({
value: g,
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 n = this.packedSplats.extra.sh3;
const { width: i, height: r, depth: a, maxSplats: o } = mA(
n.length / 4
);
if (n.length < o * 4) {
const l = new Uint32Array(o * 4);
l.set(n), this.packedSplats.extra.sh3 = l, n = l;
}
const g = new u.DataArrayTexture(n, i, r, a);
g.format = u.RGBAIntegerFormat, g.type = u.UnsignedIntType, g.internalFormat = "RGBA32UI", g.needsUpdate = !0, s = new Ht({
value: g,
key: "sh3"
}), this.packedSplats.extra.sh3Texture = s;
}
return { sh1Texture: A, sh2Texture: e, sh3Texture: s };
}
};
st.staticInitialized = st.staticInitialize(), st.isStaticInitialized = !1, st.dynoTime = new ht({ value: 0 });
let pt = st;
const xu = hA(`
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);
}
`), Su = hA(`
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));
}
`), Du = hA(`
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 Mu(t, A, e) {
return Ot({
inTypes: { gsplat: AA, sh1: "usampler2DArray", viewDir: "vec3" },
outTypes: { rgb: "vec3" },
inputs: { gsplat: t, sh1: A, viewDir: e },
globals: () => [bA, xu],
statements: ({ inputs: s, outputs: n }) => RA(`
if (isGsplatActive(${s.gsplat}.flags)) {
${n.rgb} = evaluateSH1(${s.gsplat}, ${s.sh1}, ${s.viewDir});
} else {
${n.rgb} = vec3(0.0);
}
`)
}).outputs.rgb;
}
function vu(t, A, e) {
return Ot({
inTypes: { gsplat: AA, sh2: "usampler2DArray", viewDir: "vec3" },
outTypes: { rgb: "vec3" },
inputs: { gsplat: t, sh2: A, viewDir: e },
globals: () => [bA, Su],
statements: ({ inputs: s, outputs: n }) => RA(`
if (isGsplatActive(${s.gsplat}.flags)) {
${n.rgb} = evaluateSH2(${s.gsplat}, ${s.sh2}, ${s.viewDir});
} else {
${n.rgb} = vec3(0.0);
}
`)
}).outputs.rgb;
}
function bu(t, A, e) {
return Ot({
inTypes: { gsplat: AA, sh3: "usampler2DArray", viewDir: "vec3" },
outTypes: { rgb: "vec3" },
inputs: { gsplat: t, sh3: A, viewDir: e },
globals: () => [bA, Du],
statements: ({ inputs: s, outputs: n }) => RA(`
if (isGsplatActive(${s.gsplat}.flags)) {
${n.rgb} = evaluateSH3(${s.gsplat}, ${s.sh3}, ${s.viewDir});
} else {
${n.rgb} = vec3(0.0);
}
`)
}).outputs.rgb;
}
const Fu = new u.BufferGeometry(), Nu = new u.ShaderMaterial();
function ku() {
const t = new u.Mesh(Fu, Nu);
return t.frustumCulled = !1, t.onBeforeRender = function(A, e) {
if (!e.isScene) {
this.removeFromParent();
return;
}
let s = !1;
e.traverse((n) => {
n instanceof Be && (s = !0);
}), s || e.add(new Be({ renderer: A })), this.removeFromParent();
}, t;
}
const Qs = [
"char",
"uchar",
"short",
"ushort",
"int",
"uint",
"float",
"double"
], Dt = class Dt {
// 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: (r) => {
r.enqueue(this.fileBytes.slice(0, 65536)), r.close();
}
}).pipeThrough(new TextDecoderStream()).getReader();
this.header = "";
const s = `end_header
`;
for (; ; ) {
const { value: r, done: a } = await e.read();
if (a)
throw new Error("Failed to read header");
this.header += r;
const o = this.header.indexOf(s);
if (o >= 0) {
this.header = this.header.slice(0, o + s.length);
break;
}
}
const n = new TextEncoder().encode(this.header).length;
this.data = new DataView(this.fileBytes.buffer, n), this.elements = {};
let i = null;
this.comments = [], this.header.trim().split(`
`).forEach((r, a) => {
const o = r.trim();
if (a === 0) {
if (o !== "ply")
throw new Error("Invalid PLY header");
return;
}
if (o.length === 0)
return;
const g = o.split(" ");
switch (g[0]) {
case "format":
if (g[1] === "binary_little_endian")
this.littleEndian = !0;
else if (g[1] === "binary_big_endian")
this.littleEndian = !1;
else
throw new Error(`Unsupported PLY format: ${g[1]}`);
if (g[2] !== "1.0")
throw new Error(`Unsupported PLY version: ${g[2]}`);
break;
case "end_header":
break;
case "comment":
this.comments.push(o.slice(8));
break;
case "element": {
const l = g[1];
i = {
name: l,
count: Number.parseInt(g[2]),
properties: {}
}, this.elements[l] = i;
break;
}
case "property":
if (i == null)
throw new Error("Property must be inside an element");
g[1] === "list" ? i.properties[g[4]] = {
isList: !0,
type: g[3],
countType: g[2]
} : i.properties[g[2]] = {
isList: !1,
type: g[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 n in this.elements) {
const i = this.elements[n], { count: r, properties: a } = i, o = Gu(a), g = Ru(a, this.littleEndian), l = A(i) ?? (() => {
});
for (let c = 0; c < r; c++)
e = g(s, e, o), l(c, o);
}
}
// 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 n = [];
let i = 0, r = [], a = [], o = [], g, l, c;
function I() {
const Q = Uu[i];
r = new Array(3).fill(null).flatMap((f, p) => [0, 1, 2].map((d, y) => p + y * Q / 3)), a = new Array(5).fill(null).flatMap(
(f, p) => [0, 1, 2].map((d, y) => 3 + p + y * Q / 3)
), o = new Array(7).fill(null).flatMap(
(f, p) => [0, 1, 2].map((d, y) => 8 + p + y * Q / 3)
), g = i >= 1 ? new Float32Array(3 * 3) : void 0, l = i >= 2 ? new Float32Array(5 * 3) : void 0, c = i >= 3 ? new Float32Array(7 * 3) : void 0;
}
function h(Q, f) {
if (!g)
throw new Error("Missing sh1");
const p = f.f_rest;
for (let d = 0; d < r.length; d++)
g[d] = p[r[d]] * 8 / 255 - 4;
if (l)
for (let d = 0; d < a.length; d++)
l[d] = p[a[d]] * 8 / 255 - 4;
if (c)
for (let d = 0; d < o.length; d++)
c[d] = p[o[d]] * 8 / 255 - 4;
e == null || e(Q, g, l, c);
}
function E(Q) {
const {
min_x: f,
min_y: p,
min_z: d,
max_x: y,
max_y: D,
max_z: x,
min_scale_x: w,
min_scale_y: m,
min_scale_z: k,
max_scale_x: M,
max_scale_y: S,
max_scale_z: U
} = Q.properties;
if (!f || !p || !d || !y || !D || !x || !w || !m || !k || !M || !S || !U)
throw new Error("Missing PLY chunk properties");
return s = !0, (F, b) => {
const {
min_x: T,
min_y: R,
min_z: X,
max_x: _,
max_y: eA,
max_z: q,
min_scale_x: O,
min_scale_y: L,
min_scale_z: j,
max_scale_x: P,
max_scale_y: W,
max_scale_z: G,
min_r: pA,
min_g: gA,
min_b: fA,
max_r: dA,
max_g: xA,
max_b: CA
} = b;
n.push({
min_x: T,
min_y: R,
min_z: X,
max_x: _,
max_y: eA,
max_z: q,
min_scale_x: O,
min_scale_y: L,
min_scale_z: j,
max_scale_x: P,
max_scale_y: W,
max_scale_z: G,
min_r: pA,
min_g: gA,
min_b: fA,
max_r: dA,
max_g: xA,
max_b: CA
});
};
}
function C(Q) {
if (e && Q.name === "sh")
return i = $e(Q.properties), I(), h;
if (Q.name !== "vertex")
return null;
const { packed_position: f, packed_rotation: p, packed_scale: d, packed_color: y } = Q.properties;
if (!f || !p || !d || !y)
throw new Error(
"Missing PLY properties: packed_position, packed_rotation, packed_scale, packed_color"
);
const D = Math.sqrt(2);
return (x, w) => {
const m = n[x >>> 8];
if (m == null)
throw new Error("Missing PLY chunk");
const {
min_x: k,
min_y: M,
min_z: S,
max_x: U,
max_y: F,
max_z: b,
min_scale_x: T,
min_scale_y: R,
min_scale_z: X,
max_scale_x: _,
max_scale_y: eA,
max_scale_z: q,
min_r: O,
min_g: L,
min_b: j,
max_r: P,
max_g: W,
max_b: G
} = m, { packed_position: pA, packed_rotation: gA, packed_scale: fA, packed_color: dA } = w, xA = (pA >>> 21 & 2047) / 2047 * (U - k) + k, CA = (pA >>> 11 & 1023) / 1023 * (F - M) + M, YA = (pA & 2047) / 2047 * (b - S) + S, SA = ((gA >>> 20 & 1023) / 1023 - 0.5) * D, OA = ((gA >>> 10 & 1023) / 1023 - 0.5) * D, jA = ((gA & 1023) / 1023 - 0.5) * D, Y = Math.sqrt(Math.max(0, 1 - SA * SA - OA * OA - jA * jA)), DA = gA >>> 30, lA = DA === 0 ? SA : DA === 1 ? Y : OA, Gt = DA <= 1 ? OA : DA === 2 ? Y : jA, Ae = DA <= 2 ? jA : Y, MA = DA === 0 ? Y : SA, z = Math.exp(
(fA >>> 21 & 2047) / 2047 * (_ - T) + T
), ZA = Math.exp(
(fA >>> 11 & 1023) / 1023 * (eA - R) + R
), ye = Math.exp(
(fA & 2047) / 2047 * (q - X) + X
), we = (dA >>> 24 & 255) / 255 * ((P ?? 1) - (O ?? 0)) + (O ?? 0), me = (dA >>> 16 & 255) / 255 * ((W ?? 1) - (L ?? 0)) + (L ?? 0), xe = (dA >>> 8 & 255) / 255 * ((G ?? 1) - (j ?? 0)) + (j ?? 0), Se = (dA & 255) / 255;
A(
x,
xA,
CA,
YA,
z,
ZA,
ye,
lA,
Gt,
Ae,
MA,
Se,
we,
me,
xe
);
};
}
const B = (Q) => {
if (Q.name === "chunk")
return E(Q);
if (s)
return C(Q);
if (Q.name !== "vertex")
return null;
const {
x: f,
y: p,
z: d,
scale_0: y,
scale_1: D,
scale_2: x,
rot_0: w,
rot_1: m,
rot_2: k,
rot_3: M,
opacity: S,
f_dc_0: U,
f_dc_1: F,
f_dc_2: b,
red: T,
green: R,
blue: X,
alpha: _
} = Q.properties;
if (!f || !p || !d)
throw new Error("Missing PLY properties: x, y, z");
const eA = y && D && x, q = w && m && k && M, O = _ != null ? se[_.type] : 1, L = T != null ? se[T.type] : 1, j = R != null ? se[R.type] : 1, P = X != null ? se[X.type] : 1;
return i = $e(Q.properties), I(), (W, G) => {
const pA = eA ? Math.exp(G.scale_0) : Dt.defaultPointScale, gA = eA ? Math.exp(G.scale_1) : Dt.defaultPointScale, fA = eA ? Math.exp(G.scale_2) : Dt.defaultPointScale, dA = q ? G.rot_1 : 0, xA = q ? G.rot_2 : 0, CA = q ? G.rot_3 : 0, YA = q ? G.rot_0 : 1, SA = S != null ? 1 / (1 + Math.exp(-G.opacity)) : _ != null ? G.alpha / O : 1, OA = U != null ? G.f_dc_0 * ee + 0.5 : T != null ? G.red / L : 1, jA = F != null ? G.f_dc_1 * ee + 0.5 : R != null ? G.green / j : 1, Y = b != null ? G.f_dc_2 * ee + 0.5 : X != null ? G.blue / P : 1;
if (A(
W,
G.x,
G.y,
G.z,
pA,
gA,
fA,
dA,
xA,
CA,
YA,
SA,
OA,
jA,
Y
), e && g) {
const DA = G.f_rest;
if (g)
for (let lA = 0; lA < r.length; lA++)
g[lA] = DA[r[lA]];
if (l)
for (let lA = 0; lA < a.length; lA++)
l[lA] = DA[a[lA]];
if (c)
for (let lA = 0; lA < o.length; lA++)
c[lA] = DA[o[lA]];
e(W, g, l, c);
}
};
};
this.parseData(B);
}
// 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 n in this.elements) {
const i = this.elements[n], { count: r, properties: a } = i, o = [];
let g = 0;
const l = n === "vertex";
if (l) {
for (const c of ["opacity", "f_dc_0", "f_dc_1", "f_dc_2"])
if (!a[c] || a[c].type !== "float")
throw new Error(`Can't injectRgba due to property: ${c}`);
}
for (const [c, I] of Object.entries(a))
if (I.isList)
o.push(() => {
const h = St[I.countType](
s,
e,
this.littleEndian
);
e += zA[I.countType], e += h * zA[I.type];
});
else {
if (l)
if (c === "f_dc_0" || c === "f_dc_1" || c === "f_dc_2") {
const h = Number.parseInt(
c.slice(5)
);
o.push(() => {
const E = (A[g + h] / 255 - 0.5) / ee;
ps[I.type](
s,
e,
this.littleEndian,
E
);
});
} else c === "opacity" && o.push(() => {
const h = Math.max(
-100,
Math.min(
100,
-Math.log(1 / (A[g + 3] / 255) - 1)
)
);
ps[I.type](
s,
e,
this.littleEndian,
h
);
});
o.push(() => {
e += zA[I.type];
});
}
for (let c = 0; c < r; c++) {
for (const I of o)
I();
l && (g += 4);
}
}
}
};
Dt.defaultPointScale = 1e-3;
let ue = Dt;
const ee = 0.28209479177387814, St = {
char: (t, A, e) => t.getInt8(A),
uchar: (t, A, e) => t.getUint8(A),
short: (t, A, e) => t.getInt16(A, e),
ushort: (t, A, e) => t.getUint16(A, e),
int: (t, A, e) => t.getInt32(A, e),
uint: (t, A, e) => t.getUint32(A, e),
float: (t, A, e) => t.getFloat32(A, e),
double: (t, A, e) => t.getFloat64(A, e)
}, ps = {
char: (t, A, e, s) => {
t.setInt8(A, s);
},
uchar: (t, A, e, s) => {
t.setUint8(A, s);
},
short: (t, A, e, s) => {
t.setInt16(A, s, e);
},
ushort: (t, A, e, s) => {
t.setUint16(A, s, e);
},
int: (t, A, e, s) => {
t.setInt32(A, s, e);
},
uint: (t, A, e, s) => {
t.setUint32(A, s, e);
},
float: (t, A, e, s) => {
t.setFloat32(A, s, e);
},
double: (t, A, e, s) => {
t.setFloat64(A, s, e);
}
}, zA = {
char: 1,
uchar: 1,
short: 2,
ushort: 2,
int: 4,
uint: 4,
float: 4,
double: 8
}, se = {
char: 127,
uchar: 255,
short: 32767,
ushort: 65535,
int: 2147483647,
uint: 4294967295,
float: 1,
double: 1
}, Tu = {
0: 0,
9: 1,
24: 2,
45: 3
}, Uu = {
0: 0,
1: 9,
2: 24,
3: 45
}, cs = /^f_rest_([0-9]{1,2})$/;
function Gu(t) {
const A = {};
for (const [e, s] of Object.entries(t))
cs.test(e) ? A.f_rest = new Array($e(t)) : A[e] = s.isList ? [] : 0;
return A;
}
function Ru(t, A) {
return _u(t) ? Lu(t, A) : zu(t, A);
}
const Yu = (() => {
try {
new Function("return 42;");
} catch {
return !1;
}
return !0;
})(), Ju = /^[a-zA-Z0-9_]+$/;
function _u(t) {
if (!Yu)
return !1;
for (const [A, e] of Object.entries(t))
if (!Ju.test(A) || e.isList && !Qs.includes(e.countType) || !Qs.includes(e.type))
return !1;
return !0;
}
function Lu(t, A) {
const e = ["let list;"];
for (const [n, i] of Object.entries(t)) {
const r = n.match(cs);
if (r) {
const a = +r[1];
e.push(
/*js*/
`
item.f_rest[${a}] = PARSE_FIELD['${i.type}'](data, offset, ${A});
offset += ${zA[i.type]};
`
);
} else i.isList ? e.push(
/*js*/
`
list = item['${n}'];
list.length = PARSE_FIELD['${i.countType}'](data, offset, ${A});
offset += ${zA[i.countType]};
for (let i = 0; i < list.length; i++) {
list[i] = PARSE_FIELD['${i.type}'](data, offset, ${A});
offset += ${zA[i.type]};
}
`
) : e.push(
/*js*/
`
item['${n}'] = PARSE_FIELD['${i.type}'](data, offset, ${A});
offset += ${zA[i.type]};
`
);
}
e.push("return offset;");
const s = new Function(
"data",
"offset",
"item",
"PARSE_FIELD",
e.join(`
`)
);
return (n, i, r) => s(n, i, r, St);
}
function zu(t, A) {
const e = [];
for (const [s, n] of Object.entries(t)) {
const i = s.match(cs);
if (i) {
const r = +i[1];
e.push(
(a, o, g) => (g.f_rest[r] = St[n.type](
a,
o,
A
), o + zA[n.type])
);
} else n.isList ? e.push(
(r, a, o) => {
const g = o[s];
g.length = St[n.countType](
r,
a,
A
);
let l = a + zA[n.countType];
for (let c = 0; c < g.length; c++)
g[c] = St[n.type](
r,
l,
A
), l += zA[n.type];
return l;
}
) : e.push(
(r, a, o) => (o[s] = St[n.type](
r,
a,
A
), a + zA[n.type])
);
}
return (s, n, i) => {
let r = n;
for (let a = 0; a < e.length; a++)
r = e[a](s, r, i);
return r;
};
}
function $e(t) {
let A = 0;
for (; t[`f_rest_${A}`]; )
A += 1;
const e = Tu[A];
if (e == null)
throw new Error(`Unsupported number of SH coefficients: ${A}`);
return e;
}
const Za = '(function(){"use strict";let DA;const ge=typeof TextDecoder<"u"?new TextDecoder("utf-8",{ignoreBOM:!0,fatal:!0}):{decode:()=>{throw Error("TextDecoder not available")}};typeof TextDecoder<"u"&&ge.decode();let OA=null;function ns(){return(OA===null||OA.byteLength===0)&&(OA=new Uint8Array(DA.memory.buffer)),OA}function gs(s,A){return s=s>>>0,ge.decode(ns().subarray(s,s+A))}function rs(s,A,t){return DA.sort_splats(s,A,t)>>>0}function Is(s,A,t){return DA.sort32_splats(s,A,t)>>>0}async function os(s,A){if(typeof Response=="function"&&s instanceof Response){if(typeof WebAssembly.instantiateStreaming=="function")try{return await WebAssembly.instantiateStreaming(s,A)}catch(e){if(s.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",e);else throw e}const t=await s.arrayBuffer();return await WebAssembly.instantiate(t,A)}else{const t=await WebAssembly.instantiate(s,A);return t instanceof WebAssembly.Instance?{instance:t,module:s}:t}}function as(){const s={};return s.wbg={},s.wbg.__wbg_buffer_609cc3eee51ed158=function(A){return A.buffer},s.wbg.__wbg_length_3b4f022188ae8db6=function(A){return A.length},s.wbg.__wbg_length_6ca527665d89694d=function(A){return A.length},s.wbg.__wbg_length_8cfd2c6409af88ad=function(A){return A.length},s.wbg.__wbg_new_9fee97a409b32b68=function(A){return new Uint16Array(A)},s.wbg.__wbg_new_e3b321dcfef89fc7=function(A){return new Uint32Array(A)},s.wbg.__wbg_newwithbyteoffsetandlength_e6b7e69acd4c7354=function(A,t,e){return new Float32Array(A,t>>>0,e>>>0)},s.wbg.__wbg_newwithbyteoffsetandlength_f1dead44d1fc7212=function(A,t,e){return new Uint32Array(A,t>>>0,e>>>0)},s.wbg.__wbg_newwithlength_5a5efe313cfd59f1=function(A){return new 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this.applyMatrix4(A.projectionMatrixInverse).applyMatrix4(A.matrixWorld)}transformDirection(A){const t=this.x,e=this.y,i=this.z,n=A.elements;return this.x=n[0]*t+n[4]*e+n[8]*i,this.y=n[1]*t+n[5]*e+n[9]*i,this.z=n[2]*t+n[6]*e+n[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=IA(this.x,A.x,t.x),this.y=IA(this.y,A.y,t.y),this.z=IA(this.z,A.z,t.z),this}clampScalar(A,t){return this.x=IA(this.x,A,t),this.y=IA(this.y,A,t),this.z=IA(this.z,A,t),this}clampLength(A,t){const e=this.length();return this.divideScalar(e||1).multiplyScalar(IA(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,n=A.z,g=t.x,r=t.y,I=t.z;return this.x=i*I-n*r,this.y=n*g-e*I,this.z=e*r-i*g,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 bt.copy(this).projectOnVector(A),this.sub(bt)}reflect(A){return this.sub(bt.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(IA(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 bt=new d,Fe=new GA;class At{constructor(A,t,e,i,n,g,r,I,o){At.prototype.isMatrix3=!0,this.elements=[1,0,0,0,1,0,0,0,1],A!==void 0&&this.set(A,t,e,i,n,g,r,I,o)}set(A,t,e,i,n,g,r,I,o){const a=this.elements;return a[0]=A,a[1]=i,a[2]=r,a[3]=t,a[4]=n,a[5]=I,a[6]=e,a[7]=g,a[8]=o,this}identity(){return this.set(1,0,0,0,1,0,0,0,1),this}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],this}extractBasis(A,t,e){return A.setFromMatrix3Column(this,0),t.setFromMatrix3Column(this,1),e.setFromMatrix3Column(this,2),this}setFromMatrix4(A){const t=A.elements;return 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A[0]=C*u,A[1]=(i*o-a*e)*u,A[2]=(r*e-i*g)*u,A[3]=h*u,A[4]=(a*t-i*I)*u,A[5]=(i*n-r*t)*u,A[6]=B*u,A[7]=(e*I-o*t)*u,A[8]=(g*t-e*n)*u,this}transpose(){let A;const t=this.elements;return A=t[1],t[1]=t[3],t[3]=A,A=t[2],t[2]=t[6],t[6]=A,A=t[5],t[5]=t[7],t[7]=A,this}getNormalMatrix(A){return this.setFromMatrix4(A).invert().transpose()}transposeIntoArray(A){const t=this.elements;return A[0]=t[0],A[1]=t[3],A[2]=t[6],A[3]=t[1],A[4]=t[4],A[5]=t[7],A[6]=t[2],A[7]=t[5],A[8]=t[8],this}setUvTransform(A,t,e,i,n,g,r){const I=Math.cos(n),o=Math.sin(n);return this.set(e*I,e*o,-e*(I*g+o*r)+g+A,-i*o,i*I,-i*(-o*g+I*r)+r+t,0,0,1),this}scale(A,t){return this.premultiply(zt.makeScale(A,t)),this}rotate(A){return this.premultiply(zt.makeRotation(-A)),this}translate(A,t){return this.premultiply(zt.makeTranslation(A,t)),this}makeTranslation(A,t){return A.isVector2?this.set(1,0,A.x,0,1,A.y,0,0,1):this.set(1,0,A,0,1,t,0,0,1),this}makeRotation(A){const t=Math.cos(A),e=Math.sin(A);return this.set(t,-e,0,e,t,0,0,0,1),this}makeScale(A,t){return this.set(A,0,0,0,t,0,0,0,1),this}equals(A){const t=this.elements,e=A.elements;for(let i=0;i<9;i++)if(t[i]!==e[i])return!1;return!0}fromArray(A,t=0){for(let e=0;e<9;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}clone(){return new this.constructor().fromArray(this.elements)}}const zt=new At,de={};function Ne(s){s in de||(de[s]=!0,console.warn(s))}const Ge=new At().set(.4123908,.3575843,.1804808,.212639,.7151687,.0721923,.0193308,.1191948,.9505322),ke=new At().set(3.2409699,-1.5373832,-.4986108,-.9692436,1.8759675,.0415551,.0556301,-.203977,1.0569715);function Ns(){const s={enabled:!0,workingColorSpace:xe,spaces:{},convert:function(i,n,g){return this.enabled===!1||n===g||!n||!g||(this.spaces[n].transfer===Rt&&(i.r=ZA(i.r),i.g=ZA(i.g),i.b=ZA(i.b)),this.spaces[n].primaries!==this.spaces[g].primaries&&(i.applyMatrix3(this.spaces[n].toXYZ),i.applyMatrix3(this.spaces[g].fromXYZ)),this.spaces[g].transfer===Rt&&(i.r=TA(i.r),i.g=TA(i.g),i.b=TA(i.b))),i},workingToColorSpace:function(i,n){return this.convert(i,this.workingColorSpace,n)},colorSpaceToWorking:function(i,n){return this.convert(i,n,this.workingColorSpace)},getPrimaries:function(i){return this.spaces[i].primaries},getTransfer:function(i){return i===Fs?Me:this.spaces[i].transfer},getLuminanceCoefficients:function(i,n=this.workingColorSpace){return i.fromArray(this.spaces[n].luminanceCoefficients)},define:function(i){Object.assign(this.spaces,i)},_getMatrix:function(i,n,g){return i.copy(this.spaces[n].toXYZ).multiply(this.spaces[g].fromXYZ)},_getDrawingBufferColorSpace:function(i){return this.spaces[i].outputColorSpaceConfig.drawingBufferColorSpace},_getUnpackColorSpace:function(i=this.workingColorSpace){return this.spaces[i].workingColorSpaceConfig.unpackColorSpace},fromWorkingColorSpace:function(i,n){return Ne("THREE.ColorManagement: .fromWorkingColorSpace() has been renamed to .workingToColorSpace()."),s.workingToColorSpace(i,n)},toWorkingColorSpace:function(i,n){return Ne("THREE.ColorManagement: .toWorkingColorSpace() has been renamed to .colorSpaceToWorking()."),s.colorSpaceToWorking(i,n)}},A=[.64,.33,.3,.6,.15,.06],t=[.2126,.7152,.0722],e=[.3127,.329];return s.define({[xe]:{primaries:A,whitePoint:e,transfer:Me,toXYZ:Ge,fromXYZ:ke,luminanceCoefficients:t,workingColorSpaceConfig:{unpackColorSpace:yA},outputColorSpaceConfig:{drawingBufferColorSpace:yA}},[yA]:{primaries:A,whitePoint:e,transfer:Rt,toXYZ:Ge,fromXYZ:ke,luminanceCoefficients:t,outputColorSpaceConfig:{drawingBufferColorSpace:yA}}}),s}const fA=Ns();function ZA(s){return s<.04045?s*.0773993808:Math.pow(s*.9478672986+.0521327014,2.4)}function TA(s){return s<.0031308?s*12.92:1.055*Math.pow(s,.41666)-.055}class Ue{constructor(A=new d(1/0,1/0,1/0),t=new d(-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<e;t+=3)this.expandByPoint(wA.fromArray(A,t));return this}setFromBufferAttribute(A){this.makeEmpty();for(let t=0,e=A.count;t<e;t++)this.expandByPoint(wA.fromBufferAttribute(A,t));return this}setFromPoints(A){this.makeEmpty();for(let t=0,e=A.length;t<e;t++)this.expandByPoint(A[t]);return this}setFromCenterAndSize(A,t){const e=wA.copy(t).multiplyScalar(.5);return this.min.copy(A).sub(e),this.max.copy(A).add(e),this}setFromObject(A,t=!1){return this.makeEmpty(),this.expandByObject(A,t)}clone(){return new this.constructor().copy(this)}copy(A){return this.min.copy(A.min),this.max.copy(A.max),this}makeEmpty(){return this.min.x=this.min.y=this.min.z=1/0,this.max.x=this.max.y=this.max.z=-1/0,this}isEmpty(){return this.max.x<this.min.x||this.max.y<this.min.y||this.max.z<this.min.z}getCenter(A){return this.isEmpty()?A.set(0,0,0):A.addVectors(this.min,this.max).multiplyScalar(.5)}getSize(A){return this.isEmpty()?A.set(0,0,0):A.subVectors(this.max,this.min)}expandByPoint(A){return this.min.min(A),this.max.max(A),this}expandByVector(A){return this.min.sub(A),this.max.add(A),this}expandByScalar(A){return this.min.addScalar(-A),this.max.addScalar(A),this}expandByObject(A,t=!1){A.updateWorldMatrix(!1,!1);const e=A.geometry;if(e!==void 0){const n=e.getAttribute("position");if(t===!0&&n!==void 0&&A.isInstancedMesh!==!0)for(let g=0,r=n.count;g<r;g++)A.isMesh===!0?A.getVertexPosition(g,wA):wA.fromBufferAttribute(n,g),wA.applyMatrix4(A.matrixWorld),this.expandByPoint(wA);else A.boundingBox!==void 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parse");for(const i in this.elements){const n=this.elements[i],{count:g,properties:r}=n,I=$s(r),o=Ai(r,this.littleEndian),a=A(n)??(()=>{});for(let C=0;C<g;C++)t=o(e,t,I),a(C,I)}}parseSplats(A,t){if(this.elements.vertex==null)throw new Error("No vertex element found");let e=!1;const i=[];let n=0,g=[],r=[],I=[],o,a,C;function h(){const c=Os[n];g=new Array(3).fill(null).flatMap((y,l)=>[0,1,2].map((f,D)=>l+D*c/3)),r=new Array(5).fill(null).flatMap((y,l)=>[0,1,2].map((f,D)=>3+l+D*c/3)),I=new Array(7).fill(null).flatMap((y,l)=>[0,1,2].map((f,D)=>8+l+D*c/3)),o=n>=1?new Float32Array(3*3):void 0,a=n>=2?new Float32Array(5*3):void 0,C=n>=3?new Float32Array(7*3):void 0}function B(c,y){if(!o)throw new Error("Missing sh1");const l=y.f_rest;for(let f=0;f<g.length;f++)o[f]=l[g[f]]*8/255-4;if(a)for(let f=0;f<r.length;f++)a[f]=l[r[f]]*8/255-4;if(C)for(let f=0;f<I.length;f++)C[f]=l[I[f]]*8/255-4;t==null||t(c,o,a,C)}function Q(c){const{min_x:y,min_y:l,min_z:f,max_x:D,max_y:Y,max_z:N,min_scale_x:m,min_scale_y:w,min_scale_z:_,max_scale_x:S,max_scale_y:p,max_scale_z:M}=c.properties;if(!y||!l||!f||!D||!Y||!N||!m||!w||!_||!S||!p||!M)throw new Error("Missing PLY chunk properties");return e=!0,(x,R)=>{const{min_x:G,min_y:v,min_z:q,max_x:Z,max_y:W,max_z:K,min_scale_x:P,min_scale_y:L,min_scale_z:T,max_scale_x:b,max_scale_y:J,max_scale_z:F,min_r:sA,min_g:iA,min_b:oA,max_r:rA,max_g:aA,max_b:CA}=R;i.push({min_x:G,min_y:v,min_z:q,max_x:Z,max_y:W,max_z:K,min_scale_x:P,min_scale_y:L,min_scale_z:T,max_scale_x:b,max_scale_y:J,max_scale_z:F,min_r:sA,min_g:iA,min_b:oA,max_r:rA,max_g:aA,max_b:CA})}}function u(c){if(t&&c.name==="sh")return n=Xt(c.properties),h(),B;if(c.name!=="vertex")return null;const{packed_position:y,packed_rotation:l,packed_scale:f,packed_color:D}=c.properties;if(!y||!l||!f||!D)throw new Error("Missing PLY properties: packed_position, packed_rotation, packed_scale, packed_color");const Y=Math.sqrt(2);return(N,m)=>{const w=i[N>>>8];if(w==null)throw new Error("Missing PLY chunk");const{min_x:_,min_y:S,min_z:p,max_x:M,max_y:x,max_z:R,min_scale_x:G,min_scale_y:v,min_scale_z:q,max_scale_x:Z,max_scale_y:W,max_scale_z:K,min_r:P,min_g:L,min_b:T,max_r:b,max_g:J,max_b:F}=w,{packed_position:sA,packed_rotation:iA,packed_scale:oA,packed_color:rA}=m,aA=(sA>>>21&2047)/2047*(M-_)+_,CA=(sA>>>11&1023)/1023*(x-S)+S,FA=(sA&2047)/2047*(R-p)+p,BA=((iA>>>20&1023)/1023-.5)*Y,EA=((iA>>>10&1023)/1023-.5)*Y,cA=((iA&1023)/1023-.5)*Y,k=Math.sqrt(Math.max(0,1-BA*BA-EA*EA-cA*cA)),nA=iA>>>30,O=nA===0?BA:nA===1?k:EA,H=nA<=1?EA:nA===2?k:cA,RA=nA<=2?cA:k,gA=nA===0?k:BA,U=Math.exp((oA>>>21&2047)/2047*(Z-G)+G),lA=Math.exp((oA>>>11&1023)/1023*(W-v)+v),AA=Math.exp((oA&2047)/2047*(K-q)+q),z=(rA>>>24&255)/255*((b??1)-(P??0))+(P??0),pA=(rA>>>16&255)/255*((J??1)-(L??0))+(L??0),nt=(rA>>>8&255)/255*((F??1)-(T??0))+(T??0),gt=(rA&255)/255;A(N,aA,CA,FA,U,lA,AA,O,H,RA,gA,gt,z,pA,nt)}}const E=c=>{if(c.name==="chunk")return Q(c);if(e)return u(c);if(c.name!=="vertex")return null;const{x:y,y:l,z:f,scale_0:D,scale_1:Y,scale_2:N,rot_0:m,rot_1:w,rot_2:_,rot_3:S,opacity:p,f_dc_0:M,f_dc_1:x,f_dc_2:R,red:G,green:v,blue:q,alpha:Z}=c.properties;if(!y||!l||!f)throw new Error("Missing PLY properties: x, y, z");const W=D&&Y&&N,K=m&&w&&_&&S,P=Z!=null?St[Z.type]:1,L=G!=null?St[G.type]:1,T=v!=null?St[v.type]:1,b=q!=null?St[q.type]:1;return n=Xt(c.properties),h(),(J,F)=>{const sA=W?Math.exp(F.scale_0):jA.defaultPointScale,iA=W?Math.exp(F.scale_1):jA.defaultPointScale,oA=W?Math.exp(F.scale_2):jA.defaultPointScale,rA=K?F.rot_1:0,aA=K?F.rot_2:0,CA=K?F.rot_3:0,FA=K?F.rot_0:1,BA=p!=null?1/(1+Math.exp(-F.opacity)):Z!=null?F.alpha/P:1,EA=M!=null?F.f_dc_0*Dt+.5:G!=null?F.red/L:1,cA=x!=null?F.f_dc_1*Dt+.5:v!=null?F.green/T:1,k=R!=null?F.f_dc_2*Dt+.5:q!=null?F.blue/b:1;if(A(J,F.x,F.y,F.z,sA,iA,oA,rA,aA,CA,FA,BA,EA,cA,k),t&&o){const nA=F.f_rest;if(o)for(let O=0;O<g.length;O++)o[O]=nA[g[O]];if(a)for(let O=0;O<r.length;O++)a[O]=nA[r[O]];if(C)for(let O=0;O<I.length;O++)C[O]=nA[I[O]];t(J,o,a,C)}}};this.parseData(E)}injectRgba(A){let t=0;const e=this.data;if(e==null)throw new Error("No parsed data");if(A.length!==this.numSplats*4)throw new Error("Invalid RGBA array length");for(const i in this.elements){const n=this.elements[i],{count:g,properties:r}=n,I=[];let o=0;const a=i==="vertex";if(a){for(const C of["opacity","f_dc_0","f_dc_1","f_dc_2"])if(!r[C]||r[C].type!=="float")throw new Error(`Can\'t injectRgba due to property: ${C}`)}for(const[C,h]of Object.entries(r))if(h.isList)I.push(()=>{const B=VA[h.countType](e,t,this.littleEndian);t+=mA[h.countType],t+=B*mA[h.type]});else{if(a)if(C==="f_dc_0"||C==="f_dc_1"||C==="f_dc_2"){const B=Number.parseInt(C.slice(5));I.push(()=>{const Q=(A[o+B]/255-.5)/Dt;je[h.type](e,t,this.littleEndian,Q)})}else C==="opacity"&&I.push(()=>{const B=Math.max(-100,Math.min(100,-Math.log(1/(A[o+3]/255)-1)));je[h.type](e,t,this.littleEndian,B)});I.push(()=>{t+=mA[h.type]})}for(let C=0;C<g;C++){for(const h of I)h();a&&(o+=4)}}}};jA.defaultPointScale=.001;let pt=jA;const Dt=.28209479177387814,VA={char:(s,A,t)=>s.getInt8(A),uchar:(s,A,t)=>s.getUint8(A),short:(s,A,t)=>s.getInt16(A,t),ushort:(s,A,t)=>s.getUint16(A,t),int:(s,A,t)=>s.getInt32(A,t),uint:(s,A,t)=>s.getUint32(A,t),float:(s,A,t)=>s.getFloat32(A,t),double:(s,A,t)=>s.getFloat64(A,t)},je={char:(s,A,t,e)=>{s.setInt8(A,e)},uchar:(s,A,t,e)=>{s.setUint8(A,e)},short:(s,A,t,e)=>{s.setInt16(A,e,t)},ushort:(s,A,t,e)=>{s.setUint16(A,e,t)},int:(s,A,t,e)=>{s.setInt32(A,e,t)},uint:(s,A,t,e)=>{s.setUint32(A,e,t)},float:(s,A,t,e)=>{s.setFloat32(A,e,t)},double:(s,A,t,e)=>{s.setFloat64(A,e,t)}},mA={char:1,uchar:1,short:2,ushort:2,int:4,uint:4,float:4,double:8},St={char:127,uchar:255,short:32767,ushort:65535,int:2147483647,uint:4294967295,float:1,double:1},js={0:0,9:1,24:2,45:3},Os={0:0,1:9,2:24,3:45},Kt=/^f_rest_([0-9]{1,2})$/;function $s(s){const A={};for(const[t,e]of Object.entries(s))Kt.test(t)?A.f_rest=new Array(Xt(s)):A[t]=e.isList?[]:0;return A}function Ai(s,A){return si(s)?ii(s,A):ni(s,A)}const ti=(()=>{try{new Function("return 42;")}catch{return!1}return!0})(),ei=/^[a-zA-Z0-9_]+$/;function si(s){if(!ti)return!1;for(const[A,t]of Object.entries(s))if(!ei.test(A)||t.isList&&!Ve.includes(t.countType)||!Ve.includes(t.type))return!1;return!0}function ii(s,A){const t=["let list;"];for(const[i,n]of Object.entries(s)){const g=i.match(Kt);if(g){const r=+g[1];t.push(`\n item.f_rest[${r}] = PARSE_FIELD[\'${n.type}\'](data, offset, ${A});\n offset += ${mA[n.type]};\n `)}else n.isList?t.push(`\n list = item[\'${i}\'];\n list.length = PARSE_FIELD[\'${n.countType}\'](data, offset, ${A});\n offset += ${mA[n.countType]};\n for (let i = 0; i < list.length; i++) {\n list[i] = PARSE_FIELD[\'${n.type}\'](data, offset, ${A});\n offset += ${mA[n.type]};\n }\n `):t.push(`\n item[\'${i}\'] = PARSE_FIELD[\'${n.type}\'](data, offset, ${A});\n offset += ${mA[n.type]};\n `)}t.push("return offset;");const e=new Function("data","offset","item","PARSE_FIELD",t.join(`\n`));return(i,n,g)=>e(i,n,g,VA)}function ni(s,A){const t=[];for(const[e,i]of Object.entries(s)){const n=e.match(Kt);if(n){const g=+n[1];t.push((r,I,o)=>(o.f_rest[g]=VA[i.type](r,I,A),I+mA[i.type]))}else i.isList?t.push((g,r,I)=>{const o=I[e];o.length=VA[i.countType](g,r,A);let a=r+mA[i.countType];for(let C=0;C<o.length;C++)o[C]=VA[i.type](g,a,A),a+=mA[i.type];return a}):t.push((g,r,I)=>(I[e]=VA[i.type](g,r,A),r+mA[i.type]))}return(e,i,n)=>{let g=i;for(let r=0;r<t.length;r++)g=t[r](e,g,n);return g}}function Xt(s){let A=0;for(;s[`f_rest_${A}`];)A+=1;const t=js[A];if(t==null)throw new Error(`Unsupported number of SH coefficients: ${A}`);return t}var st=(s=>(s.PLY="ply",s.SPZ="spz",s.SPLAT="splat",s.KSPLAT="ksplat",s.PCSOGS="pcsogs",s.PCSOGSZIP="pcsogszip",s))(st||{});function gi(s){const A=new DataView(s.buffer);if((A.getUint32(0,!0)&16777215)===7957616)return"ply";if((A.getUint32(0,!0)&16777215)===559903){const t=Ks(s,4);return new DataView(t.buffer).getUint32(0,!0)===1347635022?"spz":void 0}if(A.getUint32(0,!0)===67324752)return Oe(s)?"pcsogszip":void 0}function ri(s){const A=s.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 Ii(s){const A=ri(s);if(A==="ply")return"ply";if(A==="spz")return"spz";if(A==="splat")return"splat";if(A==="ksplat")return"ksplat"}function oi(s){try{let A;if(typeof s=="string")A=s;else{const e=s instanceof ArrayBuffer?new Uint8Array(s):s;if(e.length>65536)return;A=new TextDecoder().decode(e)}const t=JSON.parse(A);if(!t||typeof t!="object"||Array.isArray(t))return;for(const e of["means","scales","quats","sh0"])if(!t[e]||typeof t[e]!="object"||Array.isArray(t[e])||!t[e].shape||!t[e].files||e!=="quats"&&(!t[e].mins||!t[e].maxs))return;return t}catch{return}}function Oe(s){try{const A=s instanceof ArrayBuffer?new Uint8Array(s):s;let t=null;const e=Ms(A,{filter:({name:n})=>n.split(/[\\\\/]/).pop()==="meta.json"?(t=n,!0):!1});if(!t)return;const i=oi(e[t]);return i?{name:t,json:i}:void 0}catch{return}}class ai{constructor({maxSplats:A=1}={}){this.numSplats=0,this.maxSplats=Ts(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),n=new Float32Array(t*4),g=new Float32Array(t),r=new Float32Array(t*3);if(e.set(this.centers),i.set(this.scales),n.set(this.quaternions),g.set(this.opacities),r.set(this.colors),this.centers=e,this.scales=i,this.quaternions=n,this.opacities=g,this.colors=r,this.sh1){const I=new Float32Array(t*9);I.set(this.sh1),this.sh1=I}if(this.sh2){const I=new Float32Array(t*15);I.set(this.sh2),this.sh2=I}if(this.sh3){const I=new Float32Array(t*21);I.set(this.sh3),this.sh3=I}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,n){this.quaternions[A*4]=t,this.quaternions[A*4+1]=e,this.quaternions[A*4+2]=i,this.quaternions[A*4+3]=n}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]}}async function $e(s,A,t){if(s.quats.encoding!=="quaternion_packed")throw new Error("Unsupported quaternion encoding");const e=s.means.shape[0],i=lt(e),n=new Uint32Array(i*4),g={},r=Promise.all([it(A[s.means.files[0]]),it(A[s.means.files[1]])]).then(h=>{for(let B=0;B<e;++B){const Q=B*4,u=(h[0][Q+0]+(h[1][Q+0]<<8))/65535,E=(h[0][Q+1]+(h[1][Q+1]<<8))/65535,c=(h[0][Q+2]+(h[1][Q+2]<<8))/65535;let y=s.means.mins[0]+(s.means.maxs[0]-s.means.mins[0])*u,l=s.means.mins[1]+(s.means.maxs[1]-s.means.mins[1])*E,f=s.means.mins[2]+(s.means.maxs[2]-s.means.mins[2])*c;y=Math.sign(y)*(Math.exp(Math.abs(y))-1),l=Math.sign(l)*(Math.exp(Math.abs(l))-1),f=Math.sign(f)*(Math.exp(Math.abs(f))-1),ve(n,B,y,l,f)}}),I=it(A[s.scales.files[0]]).then(h=>{const B=new Array(256).fill(0).map((E,c)=>s.scales.mins[0]+(s.scales.maxs[0]-s.scales.mins[0])*(c/255)).map(E=>Math.exp(E)),Q=new Array(256).fill(0).map((E,c)=>s.scales.mins[1]+(s.scales.maxs[1]-s.scales.mins[1])*(c/255)).map(E=>Math.exp(E)),u=new Array(256).fill(0).map((E,c)=>s.scales.mins[2]+(s.scales.maxs[2]-s.scales.mins[2])*(c/255)).map(E=>Math.exp(E));for(let E=0;E<e;++E){const c=E*4;Ze(n,E,B[h[c+0]],Q[h[c+1]],u[h[c+2]],t)}}),o=it(A[s.quats.files[0]]).then(h=>{const B=Math.sqrt(2),Q=new Array(256).fill(0).map((u,E)=>(E/255-.5)*B);for(let u=0;u<e;++u){const E=u*4,c=Q[h[E+0]],y=Q[h[E+1]],l=Q[h[E+2]],f=Math.sqrt(Math.max(0,1-c*c-y*y-l*l)),D=h[E+3]-252,Y=D===0?c:D===1?f:y,N=D<=1?y:D===2?f:l,m=D<=2?l:f;qe(n,u,Y,N,m,D===0?f:c)}}),a=it(A[s.sh0.files[0]]).then(h=>{const B=.28209479177387814,Q=new Array(256).fill(0).map((y,l)=>s.sh0.mins[0]+(s.sh0.maxs[0]-s.sh0.mins[0])*(l/255)).map(y=>B*y+.5),u=new Array(256).fill(0).map((y,l)=>s.sh0.mins[1]+(s.sh0.maxs[1]-s.sh0.mins[1])*(l/255)).map(y=>B*y+.5),E=new Array(256).fill(0).map((y,l)=>s.sh0.mins[2]+(s.sh0.maxs[2]-s.sh0.mins[2])*(l/255)).map(y=>B*y+.5),c=new Array(256).fill(0).map((y,l)=>s.sh0.mins[3]+(s.sh0.maxs[3]-s.sh0.mins[3])*(l/255)).map(y=>1/(1+Math.exp(-y)));for(let y=0;y<e;++y){const l=y*4;Hs(n,y,Q[h[l+0]],u[h[l+1]],E[h[l+2]],c[h[l+3]],t)}}),C=[r,I,o,a];if(s.shN){const h=s.shN.shape[1]>=45,B=s.shN.shape[1]>=24,Q=s.shN.shape[1]>=9;Q&&(g.sh1=new Uint32Array(e*2)),B&&(g.sh2=new Uint32Array(e*4)),h&&(g.sh3=new Uint32Array(e*4));const u=new Float32Array(9),E=new Float32Array(15),c=new Float32Array(21),y=s.shN,l=Promise.all([Pt(A[s.shN.files[0]]),Pt(A[s.shN.files[1]])]).then(([f,D])=>{const Y=new Array(256).fill(0).map((N,m)=>y.mins+(y.maxs-y.mins)*(m/255));for(let N=0;N<e;++N){const m=N*4,w=D.rgba[m+0]+(D.rgba[m+1]<<8),_=(w&63)*15,p=(w>>>6)*f.width+_;for(let M=0;M<3;++M){if(Q)for(let x=0;x<3;++x)u[x*3+M]=Y[f.rgba[(p+x)*4+M]];if(B)for(let x=0;x<5;++x)E[x*3+M]=Y[f.rgba[(p+3+x)*4+M]];if(h)for(let x=0;x<7;++x)c[x*3+M]=Y[f.rgba[(p+8+x)*4+M]]}Q&&yt(g.sh1,N,u,t),B&&ft(g.sh2,N,E,t),h&&wt(g.sh3,N,c,t)}});C.push(l)}return await Promise.all(C),{packedArray:n,numSplats:e,extra:g}}let xt=null;async function Pt(s){if(!xt&&(xt=new OffscreenCanvas(1,1).getContext("webgl2"),!xt))throw new Error("Failed to create WebGL2 context");const A=new Blob([s]),t=await createImageBitmap(A,{premultiplyAlpha:"none"}),e=xt,i=e.createTexture();e.bindTexture(e.TEXTURE_2D,i),e.pixelStorei(e.UNPACK_FLIP_Y_WEBGL,!0),e.texImage2D(e.TEXTURE_2D,0,e.RGBA,e.RGBA,e.UNSIGNED_BYTE,t),e.texParameteri(e.TEXTURE_2D,e.TEXTURE_MAG_FILTER,e.NEAREST),e.texParameteri(e.TEXTURE_2D,e.TEXTURE_MIN_FILTER,e.NEAREST);const n=e.createFramebuffer();e.bindFramebuffer(e.FRAMEBUFFER,n),e.framebufferTexture2D(e.FRAMEBUFFER,e.COLOR_ATTACHMENT0,e.TEXTURE_2D,i,0);const g=new Uint8Array(t.width*t.height*4);return e.readPixels(0,0,t.width,t.height,e.RGBA,e.UNSIGNED_BYTE,g),e.deleteTexture(i),e.deleteFramebuffer(n),{rgba:g,width:t.width,height:t.height}}async function it(s){const{rgba:A}=await Pt(s);return A}async function Ci(s,A){var h;const t=Oe(s);if(!t)throw new Error("Invalid PC SOGS zip file");const{name:e,json:i}=t,n=e.lastIndexOf("/"),g=e.lastIndexOf("\\\\"),r=e.slice(0,Math.max(n,g)+1),I=new Map,o=[...i.means.files,...i.scales.files,...i.quats.files,...i.sh0.files,...((h=i.shN)==null?void 0:h.files)??[]];for(const B of o)I.set(r+B,B);const a=await new Promise((B,Q)=>{xs(s,{filter:({name:u})=>I.has(u)},(u,E)=>{u?Q(u):B(E)})}),C={};for(const[B,Q]of I.entries())C[Q]=a[B];return await $e(i,C,A)}class As{constructor({fileBytes:A}){this.fileBytes=A instanceof ArrayBuffer?new Uint8Array(A):A,this.reader=new Xs({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>3)throw new Error(`Unsupported SPZ version: ${this.version}`);this.numSplats=t.getUint32(8,!0),this.shDegree=t.getUint8(12),this.fractionalBits=t.getUint8(13),this.flags=t.getUint8(14),this.flagAntiAlias=(this.flags&1)!==0,this.reserved=t.getUint8(15),this.parsed=!1}parseSplats(A,t,e,i,n,g){if(this.parsed)throw new Error("SPZ file already parsed");if(this.parsed=!0,this.version===1){const r=this.reader.read(this.numSplats*3*2),I=new Uint16Array(r.buffer);for(let o=0;o<this.numSplats;o++){const a=o*3,C=$(I[a]),h=$(I[a+1]),B=$(I[a+2]);A==null||A(o,C,h,B)}}else if(this.version===2||this.version===3){const r=1<<this.fractionalBits,I=this.reader.read(this.numSplats*3*3);for(let o=0;o<this.numSplats;o++){const a=o*9,C=((I[a+2]<<24|I[a+1]<<16|I[a]<<8)>>8)/r,h=((I[a+5]<<24|I[a+4]<<16|I[a+3]<<8)>>8)/r,B=((I[a+8]<<24|I[a+7]<<16|I[a+6]<<8)>>8)/r;A==null||A(o,C,h,B)}}else throw new Error("Unreachable");{const r=this.reader.read(this.numSplats);for(let I=0;I<this.numSplats;I++)t==null||t(I,r[I]/255)}{const r=this.reader.read(this.numSplats*3),I=es/.15;for(let o=0;o<this.numSplats;o++){const a=o*3,C=(r[a]/255-.5)*I+.5,h=(r[a+1]/255-.5)*I+.5,B=(r[a+2]/255-.5)*I+.5;e==null||e(o,C,h,B)}}{const r=this.reader.read(this.numSplats*3);for(let I=0;I<this.numSplats;I++){const o=I*3,a=Math.exp(r[o]/16-10),C=Math.exp(r[o+1]/16-10),h=Math.exp(r[o+2]/16-10);i==null||i(I,a,C,h)}}if(this.version===3){const r=1/Math.sqrt(2),I=this.reader.read(this.numSplats*4);for(let o=0;o<this.numSplats;o++){const a=o*4,C=[0,0,0,0],h=[I[a],I[a+1],I[a+2],I[a+3]],B=h[0]+(h[1]<<8)+(h[2]<<16)+(h[3]<<24),Q=511,u=B>>>30;let E=B,c=0;for(let l=3;l>=0;--l)if(l!==u){const f=E&Q,D=E>>>9&1;E=E>>>10,C[l]=r*(f/Q),C[l]=D===0?C[l]:-C[l],c+=C[l]*C[l]}const y=1-c;C[u]=Math.sqrt(Math.max(y,0)),n==null||n(o,C[0],C[1],C[2],C[3])}}else{const r=this.reader.read(this.numSplats*3);for(let I=0;I<this.numSplats;I++){const o=I*3,a=r[o]/127.5-1,C=r[o+1]/127.5-1,h=r[o+2]/127.5-1,B=Math.sqrt(Math.max(0,1-a*a-C*C-h*h));n==null||n(I,a,C,h,B)}}if(g&&this.shDegree>=1){const r=new Float32Array(9),I=this.shDegree>=2?new Float32Array(5*3):void 0,o=this.shDegree>=3?new Float32Array(7*3):void 0,a=this.reader.read(this.numSplats*ts[this.shDegree]*3);let C=0;for(let h=0;h<this.numSplats;h++){for(let B=0;B<9;++B)r[B]=(a[C+B]-128)/128;if(C+=9,I){for(let B=0;B<15;++B)I[B]=(a[C+B]-128)/128;C+=15}if(o){for(let B=0;B<21;++B)o[B]=(a[C+B]-128)/128;C+=21}g==null||g(h,r,I,o)}}}}const ts={1:3,2:8,3:15},es=.28209479177387814,Bi=1347635022,hi=3,Qi=1;class _A{constructor({numSplats:A,shDegree:t,fractionalBits:e=12,flagAntiAlias:i=!0}){this.clippedCount=0;const n=20+(t>=1?9:0)+(t>=2?15:0)+(t>=3?21:0),g=16+A*n;this.buffer=new ArrayBuffer(g),this.view=new DataView(this.buffer),this.view.setUint32(0,Bi,!0),this.view.setUint32(4,hi,!0),this.view.setUint32(8,A,!0),this.view.setUint8(12,t),this.view.setUint8(13,e),this.view.setUint8(14,i?Qi:0),this.view.setUint8(15,0),this.numSplats=A,this.shDegree=t,this.fractionalBits=e,this.fraction=1<<e,this.flagAntiAlias=i}setCenter(A,t,e,i){const n=Math.round(t*this.fraction),g=Math.max(-8388607,Math.min(8388607,n)),r=Math.round(e*this.fraction),I=Math.max(-8388607,Math.min(8388607,r)),o=Math.round(i*this.fraction),a=Math.max(-8388607,Math.min(8388607,o));(n!==g||r!==I||o!==a)&&(this.clippedCount+=1);const B=16+A*9;this.view.setUint8(B,g&255),this.view.setUint8(B+1,g>>8&255),this.view.setUint8(B+2,g>>16&255),this.view.setUint8(B+3,I&255),this.view.setUint8(B+4,I>>8&255),this.view.setUint8(B+5,I>>16&255),this.view.setUint8(B+6,a&255),this.view.setUint8(B+7,a>>8&255),this.view.setUint8(B+8,a>>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)/(es/.15)+.5)*255;return Math.max(0,Math.min(255,Math.round(t)))}setRgb(A,t,e,i){const n=16+this.numSplats*10+A*3;this.view.setUint8(n,_A.scaleRgb(t)),this.view.setUint8(n+1,_A.scaleRgb(e)),this.view.setUint8(n+2,_A.scaleRgb(i))}setScale(A,t,e,i){const n=16+this.numSplats*13+A*3;this.view.setUint8(n,Math.max(0,Math.min(255,Math.round((Math.log(t)+10)*16)))),this.view.setUint8(n+1,Math.max(0,Math.min(255,Math.round((Math.log(e)+10)*16)))),this.view.setUint8(n+2,Math.max(0,Math.min(255,Math.round((Math.log(i)+10)*16))))}setQuat(A,...t){const e=16+this.numSplats*16+A*4,i=_s(t);let n=0;for(let I=1;I<4;++I)Math.abs(i[I])>Math.abs(i[n])&&(n=I);const g=i[n]<0?1:0;let r=n;for(let I=0;I<4;++I)if(I!==n){const o=(i[I]<0?1:0)^g,a=Math.floor(511*(Math.abs(i[I])/Math.SQRT1_2)+.5);r=r<<10|o<<9|a}this.view.setUint8(e,r&255),this.view.setUint8(e+1,r>>8&255),this.view.setUint8(e+2,r>>16&255),this.view.setUint8(e+3,r>>>24&255)}static quantizeSh(A,t){const e=Math.round(A*128)+128,i=1<<8-t,n=Math.floor((e+i/2)/i)*i;return Math.max(0,Math.min(255,n))}setSh(A,t,e,i){const n=ts[this.shDegree]||0,g=16+this.numSplats*20+A*n*3;for(let r=0;r<9;++r)this.view.setUint8(g+r,_A.quantizeSh(t[r],5));if(e){const r=g+9;for(let I=0;I<15;++I)this.view.setUint8(r+I,_A.quantizeSh(e[I],4));if(i){const I=r+15;for(let o=0;o<21;++o)this.view.setUint8(I+o,_A.quantizeSh(i[o],4))}}}async finalize(){const A=new Uint8Array(this.buffer),e=new ReadableStream({async start(g){g.enqueue(A),g.close()}}).pipeThrough(new CompressionStream("gzip")),n=await new Response(e).arrayBuffer();return console.log("Compressed",A.length,"bytes to",n.byteLength,"bytes"),new Uint8Array(n)}}async function Ei(s){var a,C,h;const A=new ai,{inputs:t,clipXyz:e,maxSh:i,fractionalBits:n=12,opacityThreshold:g}=s;for(const B of t){let Q=function(m){return m.multiplyScalar(l),m.applyQuaternion(f),m.add(D),m},u=function(m){return m.multiplyScalar(l),m},E=function(m){return m.premultiply(f),m},c=function(m){return!Y||Y.containsPoint(m)},y=function(m){return g!==void 0?m>=g:!0};const l=((a=B.transform)==null?void 0:a.scale)??1,f=new GA().fromArray(((C=B.transform)==null?void 0:C.quaternion)??[0,0,0,1]),D=new d().fromArray(((h=B.transform)==null?void 0:h.translate)??[0,0,0]),Y=e?new Ue(new d().fromArray(e.min),new d().fromArray(e.max)):void 0;let N=B.fileType;switch(N||(N=gi(B.fileBytes),!N&&B.pathOrUrl&&(N=Ii(B.pathOrUrl))),N){case st.PLY:{const m=new pt({fileBytes:B.fileBytes});await m.parseHeader();let w=null;m.parseSplats((_,S,p,M,x,R,G,v,q,Z,W,K,P,L,T)=>{const b=Q(new d(S,p,M));if(c(b)&&y(K)){w=A.pushSplat(),A.setCenter(w,b.x,b.y,b.z);const J=u(new d(x,R,G));A.setScale(w,J.x,J.y,J.z);const F=E(new GA(v,q,Z,W));A.setQuaternion(w,F.x,F.y,F.z,F.w),A.setOpacity(w,K),A.setColor(w,P,L,T)}else w=null},(_,S,p,M)=>{S&&w!==null&&A.setSh1(w,S),p&&w!==null&&A.setSh2(w,p),M&&w!==null&&A.setSh3(w,M)});break}case st.SPZ:{const m=new As({fileBytes:B.fileBytes}),w=new Int32Array(m.numSplats);w.fill(-1);const _=new Float32Array(m.numSplats*3),S=new d;m.parseSplats((p,M,x,R)=>{const G=Q(new d(M,x,R));_[p*3]=G.x,_[p*3+1]=G.y,_[p*3+2]=G.z},(p,M)=>{S.fromArray(_,p*3),c(S)&&y(M)&&(w[p]=A.pushSplat(),A.setCenter(w[p],S.x,S.y,S.z),A.setOpacity(w[p],M))},(p,M,x,R)=>{w[p]>=0&&A.setColor(w[p],M,x,R)},(p,M,x,R)=>{if(w[p]>=0){const G=u(new d(M,x,R));A.setScale(w[p],G.x,G.y,G.z)}},(p,M,x,R,G)=>{if(w[p]>=0){const v=E(new GA(M,x,R,G));A.setQuaternion(w[p],v.x,v.y,v.z,v.w)}},(p,M,x,R)=>{w[p]>=0&&(A.setSh1(w[p],M),x&&A.setSh2(w[p],x),R&&A.setSh3(w[p],R))});break}case st.SPLAT:Pe(B.fileBytes,m=>{},(m,w,_,S,p,M,x,R,G,v,q,Z,W,K,P)=>{const L=Q(new d(w,_,S));if(c(L)&&y(Z)){const T=A.pushSplat();A.setCenter(T,L.x,L.y,L.z);const b=u(new d(p,M,x));A.setScale(T,b.x,b.y,b.z);const J=E(new GA(R,G,v,q));A.setQuaternion(T,J.x,J.y,J.z,J.w),A.setOpacity(T,Z),A.setColor(T,W,K,P)}});break;case st.KSPLAT:{let m=null;Ws(B.fileBytes,w=>{},(w,_,S,p,M,x,R,G,v,q,Z,W,K,P,L)=>{const T=Q(new d(_,S,p));if(c(T)&&y(W)){m=A.pushSplat(),A.setCenter(m,T.x,T.y,T.z);const b=u(new d(M,x,R));A.setScale(m,b.x,b.y,b.z);const J=E(new GA(G,v,q,Z));A.setQuaternion(m,J.x,J.y,J.z,J.w),A.setOpacity(m,W),A.setColor(m,K,P,L)}else m=null},(w,_,S,p)=>{m!==null&&(A.setSh1(m,_),S&&A.setSh2(m,S),p&&A.setSh3(m,p))});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),I=new _A({numSplats:A.numSplats,shDegree:r,fractionalBits:n,flagAntiAlias:!0});for(let B=0;B<A.numSplats;++B){const Q=B*3,u=B*4;I.setCenter(B,A.centers[Q],A.centers[Q+1],A.centers[Q+2]),I.setScale(B,A.scales[Q],A.scales[Q+1],A.scales[Q+2]),I.setQuat(B,A.quaternions[u],A.quaternions[u+1],A.quaternions[u+2],A.quaternions[u+3]),I.setAlpha(B,A.opacities[B]),I.setRgb(B,A.colors[Q],A.colors[Q+1],A.colors[Q+2]),A.sh1&&r>=1&&I.setSh(B,A.sh1.slice(B*9,(B+1)*9),r>=2&&A.sh2?A.sh2.slice(B*15,(B+1)*15):void 0,r>=3&&A.sh3?A.sh3.slice(B*21,(B+1)*21):void 0)}return{fileBytes:await I.finalize(),clippedCount:I.clippedCount}}async function ss(s){const{name:A,args:t,id:e}=s.data;let i,n;try{switch(A){case"unpackPly":{const{packedArray:g,fileBytes:r,splatEncoding:I}=t,o=await ci({packedArray:g,fileBytes:r,splatEncoding:I});i={id:e,numSplats:o.numSplats,packedArray:o.packedArray,extra:o.extra};break}case"decodeSpz":{const{fileBytes:g,splatEncoding:r}=t,I=li(g,r);i={id:e,numSplats:I.numSplats,packedArray:I.packedArray,extra:I.extra};break}case"decodeAntiSplat":{const{fileBytes:g,splatEncoding:r}=t,I=Ps(g,r);i={id:e,numSplats:I.numSplats,packedArray:I.packedArray};break}case"decodeKsplat":{const{fileBytes:g,splatEncoding:r}=t,I=Vs(g,r);i={id:e,numSplats:I.numSplats,packedArray:I.packedArray,extra:I.extra};break}case"decodePcSogs":{const{fileBytes:g,extraFiles:r,splatEncoding:I}=t,o=JSON.parse(new TextDecoder().decode(g)),a=await $e(o,r,I);i={id:e,numSplats:a.numSplats,packedArray:a.packedArray,extra:a.extra};break}case"decodePcSogsZip":{const{fileBytes:g,splatEncoding:r}=t,I=await Ci(g,r);i={id:e,numSplats:I.numSplats,packedArray:I.packedArray,extra:I.extra};break}case"sortSplats":{const{totalSplats:g,readback:r,ordering:I}=t;i={id:e,readback:r,...ui({totalSplats:g,readback:r,ordering:I})};break}case"sortDoubleSplats":{const{numSplats:g,readback:r,ordering:I}=t;i={id:e,readback:r,ordering:I,activeSplats:rs(g,r,I)};break}case"sort32Splats":{const{numSplats:g,readback:r,ordering:I}=t;i={id:e,readback:r,ordering:I,activeSplats:Is(g,r,I)};break}case"transcodeSpz":{const g=t,r=await Ei(g);i={id:e,fileBytes:r,input:g};break}default:throw new Error(`Unknown name: ${A}`)}}catch(g){n=g,console.error(n)}self.postMessage({id:e,result:i,error:n},{transfer:Ls(i)})}async function ci({packedArray:s,fileBytes:A,splatEncoding:t}){const e=new pt({fileBytes:A});await e.parseHeader();const i=e.numSplats,n={};return e.parseSplats((g,r,I,o,a,C,h,B,Q,u,E,c,y,l,f)=>{qt(s,g,r,I,o,a,C,h,B,Q,u,E,c,y,l,f,t)},(g,r,I,o)=>{r&&(n.sh1||(n.sh1=new Uint32Array(i*2)),yt(n.sh1,g,r,t)),I&&(n.sh2||(n.sh2=new Uint32Array(i*4)),ft(n.sh2,g,I,t)),o&&(n.sh3||(n.sh3=new Uint32Array(i*4)),wt(n.sh3,g,o,t))}),{packedArray:s,numSplats:i,extra:n}}function li(s,A){const t=new As({fileBytes:s}),e=t.numSplats,i=lt(e),n=new Uint32Array(i*4),g={};return t.parseSplats((r,I,o,a)=>{ve(n,r,I,o,a)},(r,I)=>{Zs(n,r,I)},(r,I,o,a)=>{vs(n,r,I,o,a,A)},(r,I,o,a)=>{Ze(n,r,I,o,a,A)},(r,I,o,a,C)=>{qe(n,r,I,o,a,C)},(r,I,o,a)=>{I&&(g.sh1||(g.sh1=new Uint32Array(e*2)),yt(g.sh1,r,I,A)),o&&(g.sh2||(g.sh2=new Uint32Array(e*4)),ft(g.sh2,r,o,A)),a&&(g.sh3||(g.sh3=new Uint32Array(e*4)),wt(g.sh3,r,a,A))}),{packedArray:n,numSplats:e,extra:g}}const Wt=31744,Mt=Wt+1;let SA=null;function ui({totalSplats:s,readback:A,ordering:t}){SA||(SA=new Uint32Array(Mt)),SA.fill(0);const e=A.map(I=>new Uint32Array(I.buffer)),i=e[0].length,n=Math.ceil(s/i);let g=0;for(let I=0;I<n;++I){const o=e[I],a=Math.min(o.length,s-g);for(let C=0;C<a;++C){const h=o[C]&32767;h<Wt&&(SA[h]+=1)}g+=a}let r=0;for(let I=0;I<Mt;++I){const o=r+SA[I];SA[I]=r,r=o}g=0;for(let I=0;I<n;++I){const o=e[I],a=Math.min(o.length,s-g);for(let C=0;C<a;++C){const h=o[C]&32767;h<Wt&&(t[SA[h]]=g+C,SA[h]+=1)}g+=a}if(SA[Mt-1]!==r)throw new Error(`Expected ${r} active splats but got ${SA[Mt-1]}`);return{activeSplats:r,ordering:t}}const Vt=[];function is(s){Vt.push(s)}async function yi(){self.addEventListener("message",is),await re(),self.removeEventListener("message",is),self.addEventListener("message",ss);for(const s of Vt)ss(s);Vt.length=0}yi().catch(console.error)})();\n//# sourceMappingURL=worker-DGqIxIk3.js.map\n', fs = typeof self < "u" && self.Blob && new Blob([Za], { type: "text/javascript;charset=utf-8" });
function Hu(t) {
let A;
try {
if (A = fs && (self.URL || self.webkitURL).createObjectURL(fs), !A) throw "";
const e = new Worker(A, {
name: t == null ? void 0 : t.name
});
return e.addEventListener("error", () => {
(self.URL || self.webkitURL).revokeObjectURL(A);
}), e;
} catch {
return new Worker(
"data:text/javascript;charset=utf-8," + encodeURIComponent(Za),
{
name: t == null ? void 0 : t.name
}
);
} finally {
A && (self.URL || self.webkitURL).revokeObjectURL(A);
}
}
class qu {
constructor() {
this.messages = {}, this.messageIdNext = 0, this.worker = new Hu(), this.worker.onmessage = (A) => this.onMessage(A);
}
makeMessageId() {
return ++this.messageIdNext;
}
makeMessagePromiseId() {
const A = this.makeMessageId(), e = new Promise((s, n) => {
this.messages[A] = { resolve: s, reject: n };
});
return { id: A, promise: e };
}
onMessage(A) {
const { id: e, result: s, error: n } = A.data, i = this.messages[e];
i && (delete this.messages[e], n ? i.reject(n) : i.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: n } = this.makeMessagePromiseId();
return this.worker.postMessage(
{ name: A, args: e, id: s },
{ transfer: qn(e) }
), n;
}
}
let Xa = 4, he = 0;
const Oa = [], ja = [];
async function Ku() {
const t = Oa.shift();
if (t)
return t;
if (he < Xa) {
const A = new qu();
return he += 1, A;
}
return new Promise((A) => {
ja.push(A);
});
}
function $u(t) {
if (he > Xa) {
he -= 1;
return;
}
const A = ja.shift();
if (A) {
A(t);
return;
}
Oa.push(t);
}
async function lt(t) {
const A = await Ku();
try {
return await t(A);
} finally {
$u(A);
}
}
class Vu extends wo {
constructor(A) {
super(A), this.fileLoader = new mo(A);
}
load(A, e, s, n) {
const i = this.manager.resolveURL(
(this.path ?? "") + (A ?? "")
), r = new Headers(this.requestHeader), a = this.withCredentials ? "include" : "same-origin", o = new Request(i, { headers: r, credentials: a });
let g = this.fileType;
this.manager.itemStart(i), ds(o, s).then(async (l) => {
var B;
const c = [
new ProgressEvent("progress", {
lengthComputable: !0,
loaded: l.byteLength,
total: l.byteLength
})
];
function I() {
if (s) {
const Q = c.every((d) => d.lengthComputable || d.loaded === 0 && d.total === 0), f = c.reduce((d, y) => d + y.loaded, 0), p = c.reduce((d, y) => d + y.total, 0);
s(
new ProgressEvent("progress", {
lengthComputable: Q,
loaded: f,
total: p
})
);
}
}
const h = {}, E = [], C = gs(l);
if (g === "pcsogs" && C === void 0)
throw new Error("Invalid PC SOGS file");
if (C !== void 0) {
g = "pcsogs";
for (const Q of ["means", "scales", "quats", "sh0", "shN"]) {
const f = C[Q];
if (f)
for (const p of f.files) {
const d = new URL(p, i).toString(), y = c.length;
c.push(new ProgressEvent("progress")), this.manager.itemStart(d);
const D = new Request(d, { headers: r, credentials: a }), x = ds(D, (w) => {
c[y] = w, I();
}).then((w) => {
h[p] = w;
}).catch((w) => {
throw this.manager.itemError(d), w;
}).finally(() => {
this.manager.itemEnd(d);
});
E.push(x);
}
}
}
if (await Promise.all(E), e) {
const Q = ((B = this.packedSplats) == null ? void 0 : B.splatEncoding) ?? de, f = await to({
input: l,
extraFiles: h,
fileType: g,
pathOrUrl: i,
splatEncoding: Q
});
this.packedSplats ? (this.packedSplats.initialize(f), e(this.packedSplats)) : e(new VA(f));
}
}).catch((l) => {
this.manager.itemError(i), n == null || n(l);
}).finally(() => {
this.manager.itemEnd(i);
});
}
async loadAsync(A, e) {
return new Promise((s, n) => {
this.load(
A,
(i) => {
s(i);
},
e,
n
);
});
}
parse(A) {
return new pt({ packedSplats: A });
}
}
async function ds(t, A) {
const e = await fetch(t);
if (!e.ok)
throw new Error(
`${e.status} "${e.statusText}" fetching URL: ${t.url}`
);
if (!e.body)
throw new Error(`Response body is null for URL: ${t.url}`);
const s = e.body.getReader(), n = Number.parseInt(
e.headers.get("Content-Length") || "0"
), i = Number.isNaN(n) ? 0 : n;
let r = 0;
const a = [];
for (; ; ) {
const { done: l, value: c } = await s.read();
if (l)
break;
a.push(c), r += c.length, A && A(
new ProgressEvent("progress", {
lengthComputable: i !== 0,
loaded: r,
total: i
})
);
}
const o = new Uint8Array(r);
let g = 0;
for (const l of a)
o.set(l, g), g += l.length;
return o.buffer;
}
var _t = /* @__PURE__ */ ((t) => (t.PLY = "ply", t.SPZ = "spz", t.SPLAT = "splat", t.KSPLAT = "ksplat", t.PCSOGS = "pcsogs", t.PCSOGSZIP = "pcsogszip", t))(_t || {});
function Wa(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 = Ai(t, 4);
return new DataView(e.buffer).getUint32(0, !0) === 1347635022 ? "spz" : void 0;
}
if (A.getUint32(0, !0) === 67324752)
return Zu(t) ? "pcsogszip" : void 0;
}
function Pu(t) {
const A = t.split(/[?#]/, 1)[0], e = Math.max(
A.lastIndexOf("/"),
A.lastIndexOf("\\")
), s = A.slice(e + 1), n = s.lastIndexOf(".");
return n <= 0 || n === s.length - 1 ? "" : s.slice(n + 1).toLowerCase();
}
function Ao(t) {
const A = Pu(t);
if (A === "ply")
return "ply";
if (A === "spz")
return "spz";
if (A === "splat")
return "splat";
if (A === "ksplat")
return "ksplat";
}
function Zh(t) {
return gs(t) !== void 0;
}
function gs(t) {
try {
let A;
if (typeof t == "string")
A = t;
else {
const s = t instanceof ArrayBuffer ? new Uint8Array(t) : t;
if (s.length > 65536)
return;
A = new TextDecoder().decode(s);
}
const e = JSON.parse(A);
if (!e || typeof e != "object" || Array.isArray(e))
return;
for (const s of ["means", "scales", "quats", "sh0"])
if (!e[s] || typeof e[s] != "object" || Array.isArray(e[s]) || !e[s].shape || !e[s].files || s !== "quats" && (!e[s].mins || !e[s].maxs))
return;
return e;
} catch {
return;
}
}
function Zu(t) {
try {
const A = t instanceof ArrayBuffer ? new Uint8Array(t) : t;
let e = null;
const s = Ko(A, {
filter: ({ name: i }) => i.split(/[\\/]/).pop() === "meta.json" ? (e = i, !0) : !1
});
if (!e)
return;
const n = gs(s[e]);
return n ? { name: e, json: n } : void 0;
} catch {
return;
}
}
async function to({
input: t,
extraFiles: A,
fileType: e,
pathOrUrl: s,
splatEncoding: n
}) {
const i = t instanceof ArrayBuffer ? new Uint8Array(t) : t;
let r = e;
switch (e || (r = Wa(i), !r && s && (r = Ao(s))), r) {
case "ply": {
const a = new ue({ fileBytes: i });
await a.parseHeader();
const o = a.numSplats, g = mA(o).maxSplats, l = {
fileBytes: i,
packedArray: new Uint32Array(g * 4),
splatEncoding: n
};
return await lt(async (c) => {
const { packedArray: I, numSplats: h, extra: E } = await c.call(
"unpackPly",
l
);
return { packedArray: I, numSplats: h, extra: E };
});
}
case "spz":
return await lt(async (a) => {
const { packedArray: o, numSplats: g, extra: l } = await a.call(
"decodeSpz",
{
fileBytes: i,
splatEncoding: n
}
);
return { packedArray: o, numSplats: g, extra: l };
});
case "splat":
return await lt(async (a) => {
const { packedArray: o, numSplats: g } = await a.call(
"decodeAntiSplat",
{
fileBytes: i,
splatEncoding: n
}
);
return { packedArray: o, numSplats: g };
});
case "ksplat":
return await lt(async (a) => {
const { packedArray: o, numSplats: g, extra: l } = await a.call(
"decodeKsplat",
{ fileBytes: i, splatEncoding: n }
);
return { packedArray: o, numSplats: g, extra: l };
});
case "pcsogs":
return await lt(async (a) => {
const { packedArray: o, numSplats: g, extra: l } = await a.call(
"decodePcSogs",
{ fileBytes: i, extraFiles: A, splatEncoding: n }
);
return { packedArray: o, numSplats: g, extra: l };
});
case "pcsogszip":
return await lt(async (a) => {
const { packedArray: o, numSplats: g, extra: l } = await a.call(
"decodePcSogsZip",
{ fileBytes: i, splatEncoding: n }
);
return { packedArray: o, numSplats: g, extra: l };
});
default:
throw new Error(`Unknown splat file type: ${r}`);
}
}
class Xu {
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), n = new Float32Array(e * 3), i = new Float32Array(e * 4), r = new Float32Array(e), a = new Float32Array(e * 3);
if (s.set(this.centers), n.set(this.scales), i.set(this.quaternions), r.set(this.opacities), a.set(this.colors), this.centers = s, this.scales = n, this.quaternions = i, this.opacities = r, this.colors = a, this.sh1) {
const o = new Float32Array(e * 9);
o.set(this.sh1), this.sh1 = o;
}
if (this.sh2) {
const o = new Float32Array(e * 15);
o.set(this.sh2), this.sh2 = o;
}
if (this.sh3) {
const o = new Float32Array(e * 21);
o.set(this.sh3), this.sh3 = o;
}
this.maxSplats = e;
}
}
ensureIndex(A) {
this.ensureCapacity(A + 1);
}
setCenter(A, e, s, n) {
this.centers[A * 3] = e, this.centers[A * 3 + 1] = s, this.centers[A * 3 + 2] = n;
}
setScale(A, e, s, n) {
this.scales[A * 3] = e, this.scales[A * 3 + 1] = s, this.scales[A * 3 + 2] = n;
}
setQuaternion(A, e, s, n, i) {
this.quaternions[A * 4] = e, this.quaternions[A * 4 + 1] = s, this.quaternions[A * 4 + 2] = n, this.quaternions[A * 4 + 3] = i;
}
setOpacity(A, e) {
this.opacities[A] = e;
}
setColor(A, e, s, n) {
this.colors[A * 3] = e, this.colors[A * 3 + 1] = s, this.colors[A * 3 + 2] = n;
}
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 Ou = `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 <splatDefines>
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 de = {
rgbMin: 0,
rgbMax: 1,
lnScaleMin: UA,
lnScaleMax: GA,
sh1Min: -1,
sh1Max: 1,
sh2Min: -1,
sh2Max: 1,
sh3Min: -1,
sh3Max: 1
}, nA = class nA {
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 ls({ packedSplats: this }), this.dynoRgbMinMaxLnScaleMinMax = new Tt({
key: "rgbMinMaxLnScaleMinMax",
value: new u.Vector4(0, 1, UA, GA),
update: (e) => {
var s, n, i, r;
return e.set(
((s = this.splatEncoding) == null ? void 0 : s.rgbMin) ?? 0,
((n = this.splatEncoding) == null ? void 0 : n.rgbMax) ?? 1,
((i = this.splatEncoding) == null ? void 0 : i.lnScaleMin) ?? UA,
((r = this.splatEncoding) == null ? void 0 : r.lnScaleMax) ?? GA
), e;
}
}), this.dynoSh1MinMax = new zt({
key: "sh1MinMax",
value: new u.Vector2(-1, 1),
update: (e) => {
var s, n;
return e.set(
((s = this.splatEncoding) == null ? void 0 : s.sh1Min) ?? -1,
((n = this.splatEncoding) == null ? void 0 : n.sh1Max) ?? 1
), e;
}
}), this.dynoSh2MinMax = new zt({
key: "sh2MinMax",
value: new u.Vector2(-1, 1),
update: (e) => {
var s, n;
return e.set(
((s = this.splatEncoding) == null ? void 0 : s.sh2Min) ?? -1,
((n = this.splatEncoding) == null ? void 0 : n.sh2Max) ?? 1
), e;
}
}), this.dynoSh3MinMax = new zt({
key: "sh3MinMax",
value: new u.Vector2(-1, 1),
update: (e) => {
var s, n;
return e.set(
((s = this.splatEncoding) == null ? void 0 : s.sh3Min) ?? -1,
((n = this.splatEncoding) == null ? void 0 : n.sh3Max) ?? 1
), e;
}
}), this.initialized = Promise.resolve(this), this.reinitialize(A);
}
reinitialize(A) {
this.isInitialized = !1, this.extra = {}, this.splatEncoding = A.splatEncoding, 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 / Z) * Z, 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) {
const { url: e, fileBytes: s, construct: n } = A;
if (e) {
const i = new Vu();
i.packedSplats = this, await i.loadAsync(e);
} else if (s) {
const i = await to({
input: s,
fileType: A.fileType,
pathOrUrl: A.fileName ?? e,
splatEncoding: A.splatEncoding ?? de
});
this.initialize(i);
}
if (n) {
const i = n(this);
i instanceof Promise && await i;
}
}
// 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 n = new Uint32Array(this.maxSplats * 4);
this.packedArray && n.set(this.packedArray), this.packedArray = n;
}
return this.packedArray;
}
// Ensure the extra array for the given level is large enough to hold numSplats
ensureSplatsSh(A, e) {
let s, n;
if (A === 0)
return this.ensureSplats(e);
if (A === 1)
s = 2, n = "sh1";
else if (A === 2)
s = 4, n = "sh2";
else if (A === 3)
s = 4, n = "sh3";
else
throw new Error(`Invalid level: ${A}`);
let i = this.extra[n] ? this.extra[n].length / s : 0;
const r = e <= i ? i : Math.max(e, 2 * i);
if (!this.extra[n] || r > i) {
i = mA(r).maxSplats;
const a = new Uint32Array(i * s);
this.extra[n] && a.set(this.extra[n]), this.extra[n] = a;
}
return this.extra[n];
}
// 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 Je(this.packedArray, A, this.splatEncoding);
}
// 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, n, i, r) {
const a = this.ensureSplats(A + 1);
Ye(
a,
A,
e.x,
e.y,
e.z,
s.x,
s.y,
s.z,
n.x,
n.y,
n.z,
n.w,
i,
r.r,
r.g,
r.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, n, i) {
const r = this.ensureSplats(this.numSplats + 1);
Ye(
r,
this.numSplats,
A.x,
A.y,
A.z,
e.x,
e.y,
e.z,
s.x,
s.y,
s.z,
s.w,
n,
i.r,
i.g,
i.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 = Je(this.packedArray, e, this.splatEncoding);
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: n, depth: i } = e;
return this.maxSplats = e.maxSplats, this.target = new u.WebGLArrayRenderTarget(s, n, i, {
depthBuffer: !1,
stencilBuffer: !1,
generateMipmaps: !1,
magFilter: u.NearestFilter,
minFilter: u.NearestFilter
}), this.target.texture.format = u.RGBAIntegerFormat, this.target.texture.type = u.UnsignedIntType, this.target.texture.internalFormat = "RGBA32UI", this.target.scissorTest = !0, !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((n) => {
const i = e, r = Math.ceil(n / Z) * Z;
return e += r, { base: i, count: n };
});
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() : nA.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 u.DataArrayTexture(
this.packedArray,
A,
e,
s
), this.source.format = u.RGBAIntegerFormat, this.source.type = u.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 (!nA.emptySource) {
const { width: A, height: e, depth: s, maxSplats: n } = mA(1), i = new Uint32Array(n * 4);
nA.emptySource = new u.DataArrayTexture(
i,
A,
e,
s
), nA.emptySource.format = u.RGBAIntegerFormat, nA.emptySource.type = u.UnsignedIntType, nA.emptySource.internalFormat = "RGBA32UI", nA.emptySource.needsUpdate = !0;
}
return nA.emptySource;
}
// Get a program and THREE.RawShaderMaterial for a given GsplatGenerator,
// generating it if necessary and caching the result.
prepareProgramMaterial(A) {
let e = nA.generatorProgram.get(A);
if (!e) {
const n = vA(
{ index: "int" },
{ output: "uvec4" },
({ index: i }) => {
A.inputs.index = i;
const r = A.outputs.gsplat;
return { output: sn(
r,
this.dynoRgbMinMaxLnScaleMinMax
) };
}
);
nA.programTemplate || (nA.programTemplate = new is(
Ou
)), e = new ns({
graph: n,
inputs: { index: "index" },
outputs: { output: "target" },
template: nA.programTemplate
}), Object.assign(e.uniforms, {
targetLayer: { value: 0 },
targetBase: { value: 0 },
targetCount: { value: 0 }
}), nA.generatorProgram.set(A, e);
}
const s = e.prepareMaterial();
return nA.fullScreenQuad.material = s, { program: e, material: s };
}
saveRenderState(A) {
return {
xrEnabled: A.xr.enabled,
autoClear: A.autoClear
};
}
resetRenderState(A, e) {
A.setRenderTarget(null), A.xr.enabled = e.xrEnabled, A.autoClear = e.autoClear;
}
// 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: n
}) {
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: i, material: r } = this.prepareProgramMaterial(A);
i.update();
const a = this.saveRenderState(n), o = Math.ceil((e + s) / Z) * Z, g = Z * KA;
for (r.uniforms.targetBase.value = e, r.uniforms.targetCount.value = s; e < o; ) {
const l = Math.floor(e / g);
r.uniforms.targetLayer.value = l;
const c = l * g, I = Math.floor((e - c) / Z), h = Math.min(
KA,
Math.ceil((o - c) / Z)
);
this.target.scissor.set(
0,
I,
Z,
h - I
), n.setRenderTarget(this.target, l), n.xr.enabled = !1, n.autoClear = !1, nA.fullScreenQuad.render(n), e += Z * (h - I);
}
return this.resetRenderState(n, a), { nextBase: o };
}
};
nA.emptySource = null, nA.programTemplate = null, nA.generatorProgram = /* @__PURE__ */ new Map(), nA.fullScreenQuad = new xs(
new u.RawShaderMaterial({ visible: !1 })
);
let VA = nA;
class ls extends N {
constructor({ packedSplats: A } = {}) {
super({
key: "packedSplats",
type: jt,
globals: () => [Qe],
value: {
texture: VA.getEmpty(),
numSplats: 0,
rgbMinMaxLnScaleMinMax: new u.Vector4(
0,
1,
UA,
GA
)
},
update: (e) => {
var s, n, i, r, a, o, g, l, c, I;
return e.texture = ((s = this.packedSplats) == null ? void 0 : s.getTexture()) ?? VA.getEmpty(), e.numSplats = ((n = this.packedSplats) == null ? void 0 : n.numSplats) ?? 0, e.rgbMinMaxLnScaleMinMax.set(
((r = (i = this.packedSplats) == null ? void 0 : i.splatEncoding) == null ? void 0 : r.rgbMin) ?? 0,
((o = (a = this.packedSplats) == null ? void 0 : a.splatEncoding) == null ? void 0 : o.rgbMax) ?? 1,
((l = (g = this.packedSplats) == null ? void 0 : g.splatEncoding) == null ? void 0 : l.lnScaleMin) ?? UA,
((I = (c = this.packedSplats) == null ? void 0 : c.splatEncoding) == null ? void 0 : I.lnScaleMax) ?? GA
), e;
}
}), this.packedSplats = A;
}
}
class Ve extends u.InstancedBufferGeometry {
constructor(A, e) {
super(), this.ordering = A, this.setAttribute("position", new u.BufferAttribute(ju, 3)), this.setIndex(new u.BufferAttribute(Wu, 1)), this._maxInstanceCount = A.length, this.instanceCount = e, this.attribute = new u.InstancedBufferAttribute(A, 1, !1, 1), this.attribute.setUsage(u.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 ju = new Float32Array([
-1,
-1,
0,
1,
-1,
0,
1,
1,
0,
-1,
1,
0
]), Wu = new Uint16Array([0, 1, 2, 0, 2, 3]), nt = class nt {
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.readback16 = new Uint16Array(0), this.readback32 = new Uint32Array(0), this.spark = A.spark, this.camera = A.camera, this.viewToWorld = A.viewToWorld ?? new u.Matrix4(), A.target) {
const { width: e, height: s, doubleBuffer: n } = A.target, i = Math.max(1, Math.min(4, A.target.superXY ?? 1));
if (this.superXY = i, e * i > 8192 || s * i > 8192)
throw new Error("Target size too large");
this.target = new u.WebGLRenderTarget(
e * i,
s * i,
{
format: u.RGBAFormat,
type: u.UnsignedByteType,
colorSpace: u.SRGBColorSpace
}
), n && (this.back = new u.WebGLRenderTarget(
e * i,
s * i,
{
format: u.RGBAFormat,
type: u.UnsignedByteType,
colorSpace: u.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.sort32 = A.sort32, this.stochastic = A.stochastic ?? !1, this.orderingFreelist = new Kn({
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: n,
forceOrigin: i
}) {
var a;
for (s ? this.viewToWorld = s : (this.camera = e ?? this.camera, this.camera && (this.camera.updateMatrixWorld(), this.viewToWorld = this.camera.matrixWorld.clone())); n ?? !0; ) {
const o = i ? this.viewToWorld : void 0;
if (this.spark.updateInternal({ scene: A, originToWorld: o }))
break;
await new Promise((l) => setTimeout(l, 10));
}
const r = this.spark.active;
r !== ((a = this.display) == null ? void 0 : a.accumulator) && (this.spark.active.refCount += 1), await this.sortUpdate({ accumulator: r, 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 n;
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 u.PerspectiveCamera) {
const i = new u.PerspectiveCamera().copy(e, !1);
i.aspect = s.width / s.height, i.updateProjectionMatrix(), e = i;
}
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]), (n = this.onTextureUpdated) == null || n.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: n } = this;
if (n === 1)
return this.superPixels;
const i = A / n, r = e / n, a = i * r * 4;
(!this.pixels || this.pixels.length < a) && (this.pixels = new Uint8Array(a));
const { superPixels: o, pixels: g } = this, l = n * n;
for (let c = 0; c < r; c++) {
const I = c * i;
for (let h = 0; h < i; h++) {
const E = h * n;
let C = 0, B = 0, Q = 0, f = 0;
for (let d = 0; d < n; d++) {
const y = (c * n + d) * this.target.width;
for (let D = 0; D < n; D++) {
const x = (y + E + D) * 4;
C += o[x], B += o[x + 1], Q += o[x + 2], f += o[x + 3];
}
}
const p = (I + h) * 4;
g[p] = C / l, g[p + 1] = B / l, g[p + 2] = Q / l, g[p + 3] = f / l;
}
}
return g;
}
// 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: n,
forceOrigin: i
}) {
return await this.prepare({ scene: A, camera: e, viewToWorld: s, update: n, forceOrigin: i }), 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 i, r, a, o;
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: g } = this.display.accumulator;
A.mappingVersion === g && (this.spark.releaseAccumulator(this.display.accumulator), this.display.accumulator = A, s = !0);
}
const n = ((i = this.sorting) == null ? void 0 : i.viewToWorld) ?? ((r = this.display) == null ? void 0 : r.viewToWorld);
n && !ge({
matrix1: this.viewToWorld,
matrix2: n,
// 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 && ((a = this.pending) != null && a.accumulator) && this.pending.accumulator !== ((o = this.display) == null ? void 0 : o.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 n = this.pending.accumulator ?? ((A = this.display) == null ? void 0 : A.accumulator);
if (n || (n = this.spark.active, n.refCount += 1), this.pending = null, !n)
throw new Error("No accumulator to sort");
this.sorting = { viewToWorld: e }, await this.sortUpdate({ accumulator: n, 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: n, maxSplats: i } = A.splats;
let r = 0, a = this.orderingFreelist.alloc(i);
if (this.stochastic) {
r = n;
for (let o = 0; o < n; ++o)
a[o] = o;
} else if (n > 0) {
const {
reader: o,
doubleSortReader: g,
sort32Reader: l,
dynoSortRadial: c,
dynoOrigin: I,
dynoDirection: h,
dynoDepthBias: E,
dynoSort360: C,
dynoSplats: B
} = nt.makeSorter(), Q = this.sort32 ?? !1;
let f;
if (Q)
this.readback32 = o.ensureBuffer(i, this.readback32), f = this.readback32;
else {
const w = Math.ceil(i / 2);
this.readback16 = o.ensureBuffer(w, this.readback16), f = this.readback16;
}
const p = A.toWorld.clone().invert(), d = e.clone().premultiply(p);
c.value = this.sort360 ? !0 : this.sortRadial, I.value.set(0, 0, 0).applyMatrix4(d), h.value.set(0, 0, -1).applyMatrix4(d).sub(I.value).normalize(), E.value = this.depthBias ?? 1, C.value = this.sort360 ?? !1, B.packedSplats = A.splats;
const y = Q ? l : g, D = Q ? n : Math.ceil(n / 2);
await o.renderReadback({
renderer: this.spark.renderer,
reader: y,
count: D,
readback: f
});
const x = await lt(async (w) => {
const m = Q ? "sort32Splats" : "sortDoubleSplats";
return w.call(m, {
maxSplats: i,
numSplats: n,
readback: f,
ordering: a
});
});
Q ? this.readback32 = x.readback : this.readback16 = x.readback, a = x.ordering, r = x.activeSplats;
}
this.updateDisplay({
accumulator: A,
viewToWorld: e,
ordering: a,
activeSplats: r,
displayed: s
}), this.sortingCheck = !1;
}
updateDisplay({
accumulator: A,
viewToWorld: e,
ordering: s,
activeSplats: n,
displayed: i = !1
}) {
if (!this.display)
this.display = {
accumulator: A,
viewToWorld: e,
geometry: new Ve(s, n)
};
else {
!i && A !== this.display.accumulator && (this.spark.releaseAccumulator(this.display.accumulator), this.display.accumulator = A), this.display.viewToWorld = e;
const r = this.display.geometry.ordering;
r.length === s.length ? this.display.geometry.update(s, n) : (this.display.geometry.dispose(), this.display.geometry = new Ve(s, n)), this.orderingFreelist.free(r);
}
this.spark.viewpoint === this && this.spark.prepareViewpoint(this);
}
static makeSorter() {
if (!nt.dynos) {
const A = new ce({ value: !0 }), e = new Ft({ value: new u.Vector3() }), s = new Ft({ value: new u.Vector3() }), n = new ht({ value: 1 }), i = new ce({ value: !1 }), r = new ls(), a = new le(), o = vA(
{ index: "int" },
{ rgba8: "vec4" },
({ index: l }) => {
if (!l)
throw new Error("No index");
const c = {
sortRadial: A,
sortOrigin: e,
sortDirection: s,
sortDepthBias: n,
sort360: i
}, I = iA(l, J("int", 2)), h = bt(r, I), E = Ne({ gsplat: h, ...c }), C = bt(
r,
BA(I, J("int", 1))
), B = Ne({ gsplat: C, ...c }), Q = $A({
vectorType: "vec2",
x: E,
y: B
});
return { rgba8: ze(ir(Q)) };
}
), g = vA(
{ index: "int" },
{ rgba8: "vec4" },
({ index: l }) => {
if (!l)
throw new Error("No index");
const c = {
sortRadial: A,
sortOrigin: e,
sortDirection: s,
sortDepthBias: n,
sort360: i
}, I = bt(r, l), h = Ne({ gsplat: I, ...c });
return { rgba8: ze(nr(h)) };
}
);
nt.dynos = {
dynoSortRadial: A,
dynoOrigin: e,
dynoDirection: s,
dynoDepthBias: n,
dynoSort360: i,
dynoSplats: r,
reader: a,
doubleSortReader: o,
sort32Reader: g
};
}
return nt.dynos;
}
};
nt.EMPTY_TEXTURE = new u.Texture(), nt.dynos = null;
let Ce = nt;
const Ah = hA(`
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 Ne({
gsplat: t,
sortRadial: A,
sortOrigin: e,
sortDirection: s,
sortDepthBias: n,
sort360: i
}) {
return Ot({
inTypes: {
gsplat: AA,
sortRadial: "bool",
sortOrigin: "vec3",
sortDirection: "vec3",
sortDepthBias: "float",
sort360: "bool"
},
outTypes: { metric: "float" },
globals: () => [bA, Ah],
inputs: {
gsplat: t,
sortRadial: A,
sortOrigin: e,
sortDirection: s,
sortDepthBias: n,
sort360: i
},
statements: ({ inputs: r, outputs: a }) => {
const {
gsplat: o,
sortRadial: g,
sortOrigin: l,
sortDirection: c,
sortDepthBias: I,
sort360: h
} = r;
return RA(`
${a.metric} = computeSort(${o}, ${g}, ${l}, ${c}, ${I}, ${h});
`);
}
}).outputs.metric;
}
class ke {
constructor() {
this.splats = new VA(), this.toWorld = new u.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: n,
originToWorld: i
}) {
const r = this.mapping.reduce((g, l) => (g.set(l.node, l), g), /* @__PURE__ */ new Map());
let a = 0, o = 0;
for (const { node: g, generator: l, version: c, base: I, count: h } of s) {
const E = r.get(g);
if ((n || l !== (E == null ? void 0 : E.generator) || c !== (E == null ? void 0 : E.version) || I !== (E == null ? void 0 : E.base) || h !== (E == null ? void 0 : E.count)) && l && h > 0) {
const C = e.apply(l);
try {
this.splats.generate({
generator: C,
base: I,
count: h,
renderer: A
});
} catch (B) {
g.generator = void 0, g.generatorError = B;
}
a += 1;
}
o = Math.max(o, I + h);
}
return this.splats.numSplats = o, this.toWorld = i, this.mapping = s, a !== 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: n }, i) => {
const {
node: r,
base: a,
count: o
} = A.mapping[i];
return e === r && s === a && n === o;
});
}
}
var th = `const float LN_SCALE_MIN = -12.0;
const float LN_SCALE_MAX = 9.0;
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;
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 packSplatEncoding(
vec3 center, vec3 scales, vec4 quaternion, vec4 rgba, vec4 rgbMinMaxLnScaleMinMax
) {
float rgbMin = rgbMinMaxLnScaleMinMax.x;
float rgbMax = rgbMinMaxLnScaleMinMax.y;
vec3 encRgb = (rgba.rgb - vec3(rgbMin)) / (rgbMax - rgbMin);
uvec4 uRgba = uvec4(round(clamp(vec4(encRgb, rgba.a) * 255.0, 0.0, 255.0)));
uint uQuat = encodeQuatOctXy88R8(quaternion);
uvec3 uQuat3 = uvec3(uQuat & 0xffu, (uQuat >> 8u) & 0xffu, (uQuat >> 16u) & 0xffu);
float lnScaleMin = rgbMinMaxLnScaleMinMax.z;
float lnScaleMax = rgbMinMaxLnScaleMinMax.w;
float lnScaleScale = 254.0 / (lnScaleMax - lnScaleMin);
uvec3 uScales = uvec3(
(scales.x == 0.0) ? 0u : uint(round(clamp((log(scales.x) - lnScaleMin) * lnScaleScale, 0.0, 254.0))) + 1u,
(scales.y == 0.0) ? 0u : uint(round(clamp((log(scales.y) - lnScaleMin) * lnScaleScale, 0.0, 254.0))) + 1u,
(scales.z == 0.0) ? 0u : uint(round(clamp((log(scales.z) - lnScaleMin) * lnScaleScale, 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);
}
uvec4 packSplat(vec3 center, vec3 scales, vec4 quaternion, vec4 rgba) {
return packSplatEncoding(center, scales, quaternion, rgba, vec4(0.0, 1.0, LN_SCALE_MIN, LN_SCALE_MAX));
}
void unpackSplatEncoding(uvec4 packed, out vec3 center, out vec3 scales, out vec4 quaternion, out vec4 rgba, vec4 rgbMinMaxLnScaleMinMax) {
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);
float rgbMin = rgbMinMaxLnScaleMinMax.x;
float rgbMax = rgbMinMaxLnScaleMinMax.y;
rgba = (vec4(uRgba) / 255.0);
rgba.rgb = rgba.rgb * (rgbMax - rgbMin) + rgbMin;
center = vec4(
unpackHalf2x16(word1),
unpackHalf2x16(word2 & 0xffffu)
).xyz;
uvec3 uScales = uvec3(word3 & 0xffu, (word3 >> 8u) & 0xffu, (word3 >> 16u) & 0xffu);
float lnScaleMin = rgbMinMaxLnScaleMinMax.z;
float lnScaleMax = rgbMinMaxLnScaleMinMax.w;
float lnScaleScale = (lnScaleMax - lnScaleMin) / 254.0;
scales = vec3(
(uScales.x == 0u) ? 0.0 : exp(lnScaleMin + float(uScales.x - 1u) * lnScaleScale),
(uScales.y == 0u) ? 0.0 : exp(lnScaleMin + float(uScales.y - 1u) * lnScaleScale),
(uScales.z == 0u) ? 0.0 : exp(lnScaleMin + float(uScales.z - 1u) * lnScaleScale)
);
uint uQuat = ((word2 >> 16u) & 0xFFFFu) | ((word3 >> 8u) & 0xFF0000u);
quaternion = decodeQuatOctXy88R8(uQuat);
}
void unpackSplat(uvec4 packed, out vec3 center, out vec3 scales, out vec4 quaternion, out vec4 rgba) {
unpackSplatEncoding(packed, center, scales, quaternion, rgba, vec4(0.0, 1.0, LN_SCALE_MIN, LN_SCALE_MAX));
}
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);
}`, eh = `precision highp float;
precision highp int;
#include <splatDefines>
uniform float near;
uniform float far;
uniform bool encodeLinear;
uniform float time;
uniform bool debugFlag;
uniform float maxStdDev;
uniform float minAlpha;
uniform bool stochastic;
uniform bool disableFalloff;
uniform float falloff;
uniform bool splatTexEnable;
uniform sampler3D splatTexture;
uniform mat2 splatTexMul;
uniform vec2 splatTexAdd;
uniform float splatTexNear;
uniform float splatTexFar;
uniform float splatTexMid;
out vec4 fragColor;
in vec4 vRgba;
in vec2 vSplatUv;
in vec3 vNdc;
flat in uint vSplatIndex;
void main() {
vec4 rgba = vRgba;
float z = dot(vSplatUv, vSplatUv);
if (!splatTexEnable) {
if (z > (maxStdDev * maxStdDev)) {
discard;
}
} else {
vec2 uv = splatTexMul * vSplatUv + splatTexAdd;
float ndcZ = vNdc.z;
float depth = (2.0 * near * far) / (far + near - ndcZ * (far - near));
float clampedFar = max(splatTexFar, splatTexNear);
float clampedDepth = clamp(depth, splatTexNear, clampedFar);
float logDepth = log2(clampedDepth + 1.0);
float logNear = log2(splatTexNear + 1.0);
float logFar = log2(clampedFar + 1.0);
float texZ;
if (splatTexMid > 0.0) {
float clampedMid = clamp(splatTexMid, splatTexNear, clampedFar);
float logMid = log2(clampedMid + 1.0);
texZ = (clampedDepth <= clampedMid) ?
(0.5 * ((logDepth - logNear) / (logMid - logNear))) :
(0.5 * ((logDepth - logMid) / (logFar - logMid)) + 0.5);
} else {
texZ = (logDepth - logNear) / (logFar - logNear);
}
vec4 modulate = texture(splatTexture, vec3(uv, 1.0 - texZ));
rgba *= modulate;
}
rgba.a *= mix(1.0, exp(-0.5 * z), falloff);
if (rgba.a < minAlpha) {
discard;
}
if (encodeLinear) {
rgba.rgb = srgbToLinear(rgba.rgb);
}
if (stochastic) {
const bool STEADY = false;
uint uTime = STEADY ? 0u : floatBitsToUint(time);
uvec2 coord = uvec2(gl_FragCoord.xy);
uint state = uTime + 0x9e3779b9u * coord.x + 0x85ebca6bu * coord.y + 0xc2b2ae35u * uint(vSplatIndex);
state = state * 747796405u + 2891336453u;
uint hash = ((state >> ((state >> 28u) + 4u)) ^ state) * 277803737u;
hash = (hash >> 22u) ^ hash;
float rand = float(hash) / 4294967296.0;
if (rand < rgba.a) {
fragColor = vec4(rgba.rgb, 1.0);
} else {
discard;
}
} else {
#ifdef PREMULTIPLIED_ALPHA
fragColor = vec4(rgba.rgb * rgba.a, rgba.a);
#else
fragColor = rgba;
#endif
}
}`, sh = `precision highp float;
precision highp int;
precision highp usampler2DArray;
#include <splatDefines>
attribute uint splatIndex;
out vec4 vRgba;
out vec2 vSplatUv;
out vec3 vNdc;
flat out uint vSplatIndex;
uniform vec2 renderSize;
uniform uint numSplats;
uniform vec4 renderToViewQuat;
uniform vec3 renderToViewPos;
uniform float maxStdDev;
uniform float maxPixelRadius;
uniform float time;
uniform float deltaTime;
uniform bool debugFlag;
uniform float minAlpha;
uniform bool stochastic;
uniform bool enable2DGS;
uniform float blurAmount;
uniform float preBlurAmount;
uniform float focalDistance;
uniform float apertureAngle;
uniform float clipXY;
uniform float focalAdjustment;
uniform usampler2DArray packedSplats;
uniform vec4 rgbMinMaxLnScaleMinMax;
void main() {
gl_Position = vec4(0.0, 0.0, 2.0, 1.0);
if (uint(gl_InstanceID) >= numSplats) {
return;
}
ivec3 texCoord;
if (stochastic) {
texCoord = ivec3(
uint(gl_InstanceID) & SPLAT_TEX_WIDTH_MASK,
(uint(gl_InstanceID) >> SPLAT_TEX_WIDTH_BITS) & SPLAT_TEX_HEIGHT_MASK,
(uint(gl_InstanceID) >> SPLAT_TEX_LAYER_BITS)
);
} else {
if (splatIndex == 0xffffffffu) {
return;
}
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;
unpackSplatEncoding(packed, center, scales, quaternion, rgba, rgbMinMaxLnScaleMinMax);
if (rgba.a < minAlpha) {
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;
}
vSplatIndex = splatIndex;
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 scaledRenderSize = renderSize * focalAdjustment;
vec2 focal = 0.5 * scaledRenderSize * vec2(projectionMatrix[0][0], projectionMatrix[1][1]);
mat3 J;
if(isOrthographic) {
J = mat3(
focal.x, 0.0, 0.0,
0.0, focal.y, 0.0,
0.0, 0.0, 0.0
);
} else {
float invZ = 1.0 / viewCenter.z;
vec2 J1 = focal * invZ;
vec2 J2 = -(J1 * viewCenter.xy) * invZ;
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 = maxPixelRadius;
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(maxPixelRadius));
}
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 < minAlpha) {
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(maxPixelRadius, maxStdDev * sqrt(eigen1));
float scale2 = position.y * min(maxPixelRadius, maxStdDev * sqrt(eigen2));
vec2 pixelOffset = eigenVec1 * scale1 + eigenVec2 * scale2;
vec2 ndcOffset = (2.0 / scaledRenderSize) * 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 Te = null;
function nh() {
return Te || (u.ShaderChunk.splatDefines = th, Te = {
splatVertex: sh,
splatFragment: eh
}), Te;
}
const ys = 5, oA = class oA extends u.Mesh {
constructor(A) {
const e = oA.makeUniforms(), s = nh(), n = A.premultipliedAlpha ?? !0, i = new u.ShaderMaterial({
glslVersion: u.GLSL3,
vertexShader: s.splatVertex,
fragmentShader: s.splatFragment,
uniforms: e,
premultipliedAlpha: n,
transparent: !0,
depthTest: !0,
depthWrite: !1,
side: u.DoubleSide
});
super(ws, i), this.splatTexture = null, this.autoViewpoints = [], this.rotateToAccumulator = new Tt({ value: new u.Quaternion() }), this.translateToAccumulator = new Ft({ value: new u.Vector3() }), this.lastFrame = -1, this.lastUpdateTime = null, this.defaultCameras = [], this.lastStochastic = null, this.pendingUpdate = {
scene: null,
originToWorld: new u.Matrix4(),
timeoutId: -1
}, this.envViewpoint = null, this.frustumCulled = !1, this.renderer = A.renderer, this.material = i, this.uniforms = e;
const r = vA(
{ gsplat: AA },
{ gsplat: AA },
({ gsplat: a }) => {
if (!a)
throw new Error("gsplat not defined");
return a = As(a, {
rotate: this.rotateToAccumulator,
translate: this.translateToAccumulator
}), { gsplat: a };
}
);
this.modifier = new mu(r), this.premultipliedAlpha = n, this.autoUpdate = A.autoUpdate ?? !0, this.preUpdate = A.preUpdate ?? !1, this.needsUpdate = !1, this.originDistance = A.originDistance ?? 1, this.maxStdDev = A.maxStdDev ?? Math.sqrt(8), this.maxPixelRadius = A.maxPixelRadius ?? 512, this.minAlpha = A.minAlpha ?? 0.5 * (1 / 255), 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.focalAdjustment = A.focalAdjustment ?? 1, this.splatEncoding = A.splatEncoding ?? { ...de }, this.active = new ke(), this.accumulatorCount = 1, this.freeAccumulators = [];
for (let a = 0; a < 1; ++a)
this.freeAccumulators.push(new ke()), this.accumulatorCount += 1;
this.defaultView = new Ce({
...A.view,
autoUpdate: !0,
spark: this
}), this.viewpoint = this.defaultView, this.prepareViewpoint(this.viewpoint), this.clock = A.clock ? Vn(A.clock) : new u.Clock();
}
static makeUniforms() {
return {
// Size of render viewport in pixels
renderSize: { value: new u.Vector2() },
// Near and far plane distances
near: { value: 0.1 },
far: { value: 1e3 },
// Total number of Gsplats in packedSplats to render
numSplats: { value: 0 },
// SplatAccumulator to view transformation quaternion
renderToViewQuat: { value: new u.Quaternion() },
// SplatAccumulator to view transformation translation
renderToViewPos: { value: new u.Vector3() },
// Maximum distance (in stddevs) from Gsplat center to render
maxStdDev: { value: 1 },
// Maximum pixel radius for splat rendering
maxPixelRadius: { value: 512 },
// Minimum alpha value for splat rendering
minAlpha: { value: 0.00196078431372549 },
// Enable stochastic splat rendering
stochastic: { 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 },
// Debug renderSize scale factor
focalAdjustment: { value: 1 },
// Enable splat texture rendering
splatTexEnable: { value: !1 },
// Splat texture to render
splatTexture: { type: "t", value: oA.EMPTY_SPLAT_TEXTURE },
// Splat texture UV transform (multiply)
splatTexMul: { value: new u.Matrix2() },
// Splat texture UV transform (add)
splatTexAdd: { value: new u.Vector2() },
// Splat texture near plane distance
splatTexNear: { value: 0.1 },
// Splat texture far plane distance
splatTexFar: { value: 1e3 },
// Splat texture mid plane distance, or 0.0 to disable
splatTexMid: { value: 0 },
// Gsplat collection to render
packedSplats: { type: "t", value: VA.getEmpty() },
// Splat encoding ranges
rgbMinMaxLnScaleMinMax: { value: new u.Vector4() },
// 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 < ys;
}
maybeAllocAccumulator() {
let A = this.freeAccumulators.pop();
if (A === void 0) {
if (this.accumulatorCount >= ys)
return null;
A = new ke(), this.accumulatorCount += 1;
}
return A.refCount = 1, A;
}
releaseAccumulator(A) {
A.refCount -= 1, A.refCount === 0 && this.freeAccumulators.push(A);
}
newViewpoint(A) {
return new Ce({ ...A, spark: this });
}
onBeforeRender(A, e, s) {
var h, E;
const n = this.time ?? this.clock.getElapsedTime(), i = n - (this.viewpoint.lastTime ?? n);
this.viewpoint.lastTime = n;
const r = A.info.render.frame, a = r !== this.lastFrame;
this.lastFrame = r;
const o = this.viewpoint;
if (o === this.defaultView) {
if (a)
if (!A.xr.isPresenting)
this.defaultView.viewToWorld = s.matrixWorld.clone(), this.defaultCameras = [this.defaultView.viewToWorld];
else {
const C = A.xr.getCamera().cameras;
this.defaultCameras = C.map((B) => B.matrixWorld), this.defaultView.viewToWorld = ih(this.defaultCameras) ?? new u.Matrix4();
}
this.autoUpdate && this.update({ scene: e, viewToWorld: this.defaultView.viewToWorld });
}
if (a && (this.material.premultipliedAlpha !== this.premultipliedAlpha && (this.material.premultipliedAlpha = this.premultipliedAlpha, this.material.needsUpdate = !0), this.uniforms.time.value = n, this.uniforms.deltaTime.value = i, this.uniforms.debugFlag.value = performance.now() / 1e3 % 2 < 1, o.display && o.stochastic && (this.geometry.instanceCount = this.uniforms.numSplats.value)), o.target)
this.uniforms.renderSize.value.set(
o.target.width,
o.target.height
);
else {
const C = A.getDrawingBufferSize(
this.uniforms.renderSize.value
);
if (C.x === 1 && C.y === 1) {
const B = (h = A.xr.getSession()) == null ? void 0 : h.renderState.baseLayer;
B && (C.x = B.framebufferWidth, C.y = B.framebufferHeight);
}
}
const g = s;
if (this.uniforms.near.value = g.near, this.uniforms.far.value = g.far, this.uniforms.encodeLinear.value = o.encodeLinear, this.uniforms.maxStdDev.value = this.maxStdDev, this.uniforms.maxPixelRadius.value = this.maxPixelRadius, this.uniforms.minAlpha.value = this.minAlpha, this.uniforms.stochastic.value = o.stochastic, 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, this.uniforms.focalAdjustment.value = this.focalAdjustment, this.lastStochastic !== !o.stochastic && (this.lastStochastic = !o.stochastic, this.material.transparent = !o.stochastic, this.material.depthWrite = o.stochastic, this.material.needsUpdate = !0), this.splatTexture) {
const { enable: C, texture: B, multiply: Q, add: f, near: p, far: d, mid: y } = this.splatTexture;
C && B ? (this.uniforms.splatTexEnable.value = !0, this.uniforms.splatTexture.value = B, Q ? this.uniforms.splatTexMul.value.fromArray(Q.elements) : this.uniforms.splatTexMul.value.set(
0.5 / this.maxStdDev,
0,
0,
0.5 / this.maxStdDev
), this.uniforms.splatTexAdd.value.set((f == null ? void 0 : f.x) ?? 0.5, (f == null ? void 0 : f.y) ?? 0.5), this.uniforms.splatTexNear.value = p ?? this.uniforms.near.value, this.uniforms.splatTexFar.value = d ?? this.uniforms.far.value, this.uniforms.splatTexMid.value = y ?? 0) : (this.uniforms.splatTexEnable.value = !1, this.uniforms.splatTexture.value = oA.EMPTY_SPLAT_TEXTURE);
} else
this.uniforms.splatTexEnable.value = !1, this.uniforms.splatTexture.value = oA.EMPTY_SPLAT_TEXTURE;
const l = ((E = o.display) == null ? void 0 : E.accumulator.toWorld) ?? new u.Matrix4(), c = s.matrixWorld.clone().invert();
l.clone().premultiply(c).decompose(
this.uniforms.renderToViewPos.value,
this.uniforms.renderToViewQuat.value,
new u.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) {
var e, s, n, i;
if (this.viewpoint = A ?? this.viewpoint, this.viewpoint.display) {
const { accumulator: r, geometry: a } = this.viewpoint.display;
this.uniforms.numSplats.value = r.splats.numSplats, this.uniforms.packedSplats.value = r.splats.getTexture(), this.uniforms.rgbMinMaxLnScaleMinMax.value.set(
((e = r.splats.splatEncoding) == null ? void 0 : e.rgbMin) ?? 0,
((s = r.splats.splatEncoding) == null ? void 0 : s.rgbMax) ?? 1,
((n = r.splats.splatEncoding) == null ? void 0 : n.lnScaleMin) ?? UA,
((i = r.splats.splatEncoding) == null ? void 0 : i.lnScaleMax) ?? GA
), this.geometry = a, this.material.transparent = !this.viewpoint.stochastic, this.material.depthWrite = this.viewpoint.stochastic, this.material.needsUpdate = !0;
} else
this.uniforms.numSplats.value = 0, this.uniforms.packedSplats.value = VA.getEmpty(), this.geometry = ws;
}
// 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;
this.preUpdate ? this.updateInternal({
scene: A,
originToWorld: s.clone(),
viewToWorld: e
}) : (this.pendingUpdate.scene = A, this.pendingUpdate.originToWorld.copy(s), this.pendingUpdate.timeoutId === -1 && (this.pendingUpdate.timeoutId = setTimeout(() => {
const { scene: n, originToWorld: i } = this.pendingUpdate;
this.pendingUpdate.scene = null, this.pendingUpdate.timeoutId = -1, this.updateInternal({
scene: n,
originToWorld: i,
viewToWorld: e
}) && this.renderer.getContext().flush();
}, 1)));
}
updateInternal({
scene: A,
originToWorld: e,
viewToWorld: s
}) {
var E;
if (!this.canAllocAccumulator())
return !1;
e || (e = this.active.toWorld), s = s ?? e.clone();
const n = this.time ?? this.clock.getElapsedTime(), i = n - (this.lastUpdateTime ?? n);
this.lastUpdateTime = n;
const r = this.active.mapping.reduce((C, B) => (C.set(B.node, B), C), /* @__PURE__ */ new Map()), { generators: a, visibleGenerators: o, globalEdits: g } = this.compileScene(A);
for (const C of a)
(E = C.frameUpdate) == null || E.call(C, {
object: C,
time: n,
deltaTime: i,
viewToWorld: s,
globalEdits: g
});
const l = new Set(o.map((C) => C.uuid));
for (const C of a) {
const B = r.get(C), f = C.generator && l.has(C.uuid) ? C.numSplats : 0;
(this.needsUpdate || C.generator !== (B == null ? void 0 : B.generator) || f !== (B == null ? void 0 : B.count)) && C.updateVersion();
}
const c = !ge({
matrix1: e,
matrix2: this.active.toWorld,
maxDistance: this.originDistance
}), I = this.needsUpdate || c || a.length !== r.size || a.some((C) => {
var B;
return C.version !== ((B = r.get(C)) == null ? void 0 : B.version);
});
this.needsUpdate = !1;
let h = null;
if (I) {
if (h = this.maybeAllocAccumulator(), !h)
throw new Error("Unreachable");
const C = !ge({
matrix1: e,
matrix2: this.active.toWorld,
maxDistance: 1e-5,
minCoorient: 0.99999
}), Q = o.map((x, w) => {
const m = r.get(x);
return m ? (
// 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.
[x.version - m.version, m.base, x]
) : [Number.POSITIVE_INFINITY, x.version, x];
}).sort((x, w) => x[0] !== w[0] ? x[0] - w[0] : x[1] - w[1]).map(([x, w, m]) => m), f = Q.map((x) => x.numSplats), { maxSplats: p, mapping: d } = h.splats.generateMapping(f), y = Q.map((x, w) => {
const { base: m, count: k } = d[w];
return {
node: x,
generator: x.generator,
version: x.version,
base: m,
count: k
};
});
e.clone().invert().decompose(
this.translateToAccumulator.value,
this.rotateToAccumulator.value,
new u.Vector3()
), h.ensureGenerate(p), h.splats.splatEncoding = { ...this.splatEncoding }, h.generateSplats({
renderer: this.renderer,
modifier: this.modifier,
generators: y,
forceUpdate: C,
originToWorld: e
}), h.splatsVersion = this.active.splatsVersion + 1;
const D = h.hasCorrespondence(this.active);
h.mappingVersion = this.active.mappingVersion + (D ? 0 : 1), this.releaseAccumulator(this.active), this.active = h, this.prepareViewpoint();
}
return setTimeout(() => {
for (const C of this.autoViewpoints)
C.autoPoll({ accumulator: h ?? void 0 });
}, 1), !0;
}
compileScene(A) {
const e = [];
A.traverse((i) => {
i instanceof Vt && e.push(i);
});
const s = [];
A.traverseVisible((i) => {
i instanceof Vt && s.push(i);
});
const n = /* @__PURE__ */ new Set();
return A.traverseVisible((i) => {
if (i instanceof Ie) {
let r = i.parent;
for (; r != null && !(r instanceof pt); )
r = r.parent;
r == null && n.add(i);
}
}), {
generators: e,
visibleGenerators: s,
globalEdits: Array.from(n)
};
}
// 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: n = 256,
near: i = 0.1,
far: r = 1e3,
hideObjects: a = [],
update: o = !1
}) {
var h, E;
if (this.envViewpoint || (this.envViewpoint = this.newViewpoint({ sort360: !0 })), !oA.cubeRender || oA.cubeRender.target.width !== n || oA.cubeRender.near !== i || oA.cubeRender.far !== r) {
oA.cubeRender && oA.cubeRender.target.dispose();
const C = new u.WebGLCubeRenderTarget(n, {
format: u.RGBAFormat,
generateMipmaps: !0,
minFilter: u.LinearMipMapLinearFilter
}), B = new u.CubeCamera(i, r, C);
oA.cubeRender = { target: C, camera: B, near: i, far: r };
}
oA.pmrem || (oA.pmrem = new u.PMREMGenerator(A ?? this.renderer));
const g = new u.Matrix4().setPosition(s);
await ((h = this.envViewpoint) == null ? void 0 : h.prepare({ scene: e, viewToWorld: g, update: o }));
const { target: l, camera: c } = oA.cubeRender;
c.position.copy(s);
const I = /* @__PURE__ */ new Map();
for (const C of a)
I.set(C, C.visible), C.visible = !1;
this.prepareViewpoint(this.envViewpoint), c.update(A ?? this.renderer, e), this.prepareViewpoint(this.defaultView);
for (const [C, B] of I.entries())
C.visible = B;
return (E = oA.pmrem) == null ? void 0 : E.fromCubemap(l.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 u.Mesh)
if (Array.isArray(s.material))
for (const n of s.material)
n instanceof u.MeshStandardMaterial && (n.envMap = e);
else
s.material instanceof u.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: n }) => n === A);
if (!s)
throw new Error("Generator not found");
return e = e ?? new Ke(), 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();
}
};
oA.cubeRender = null, oA.pmrem = null, oA.EMPTY_SPLAT_TEXTURE = new u.Data3DTexture();
let Be = oA;
const ws = new Ve(new Uint32Array(1), 0);
vA(
{ packedSplats: jt, index: "int" },
{ gsplat: AA },
({ packedSplats: t, index: A }) => {
if (!t || !A)
throw new Error("Invalid input");
return { gsplat: bt(t, A) };
}
);
function ih(t) {
if (t.length === 0)
return null;
const A = new u.Vector3(), e = new u.Quaternion(), s = new u.Vector3(), n = [], i = [];
for (const r of t)
r.decompose(A, e, s), n.push(A), i.push(e);
return new u.Matrix4().compose(
Zn(n),
Xn(i),
new u.Vector3(1, 1, 1)
);
}
function rh(t, A, e) {
const s = Math.floor(t.length / 32);
if (s * 32 !== t.length)
throw new Error("Invalid .splat file size");
const n = new Float32Array(t.buffer);
for (let i = 0; i < s; ++i) {
const r = i * 32, a = i * 8, o = n[a + 0], g = n[a + 1], l = n[a + 2], c = n[a + 3], I = n[a + 4], h = n[a + 5], E = t[r + 24] / 255, C = t[r + 25] / 255, B = t[r + 26] / 255, Q = t[r + 27] / 255, f = (t[r + 28] - 128) / 128, p = (t[r + 29] - 128) / 128, d = (t[r + 30] - 128) / 128, y = (t[r + 31] - 128) / 128;
e(
i,
o,
g,
l,
c,
I,
h,
p,
d,
y,
f,
Q,
E,
C,
B
);
}
}
const ms = {
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
}
}, ah = {
0: 0,
1: 9,
2: 24,
3: 45
};
function oh(t, A, e, s) {
var C;
let r = 0;
const a = new DataView(t.buffer, r, 4096);
r += 4096;
const o = a.getUint8(0), g = a.getUint8(1);
if (o !== 0 || g < 1)
throw new Error(
`Unsupported .ksplat version: ${o}.${g}`
);
const l = a.getUint32(4, !0);
a.getUint32(16, !0);
const c = a.getUint16(20, !0);
if (c < 0 || c > 2)
throw new Error(`Invalid .ksplat compression level: ${c}`);
const I = a.getFloat32(36, !0) || -1.5, h = a.getFloat32(40, !0) || 1.5;
let E = 4096 + l * 1024;
for (let B = 0; B < l; ++B) {
let Q = function(MA, z) {
if (c === 0)
return Y.getFloat32(
MA + P + z * 4,
!0
);
if (c === 1)
return wA(
Y.getUint16(
MA + P + z * 2,
!0
)
);
const ZA = Y.getUint8(MA + P + z) / 255;
return I + ZA * (h - I);
};
const f = new DataView(t.buffer, r, 1024);
r += 1024;
const p = f.getUint32(0, !0), d = f.getUint32(4, !0), y = f.getUint32(8, !0), D = f.getUint32(12, !0), x = f.getFloat32(16, !0), w = f.getUint16(20, !0), m = (f.getUint32(24, !0) || ((C = ms[c]) == null ? void 0 : C.scaleRange)) ?? 1, k = f.getUint32(32, !0), M = k * y, S = f.getUint32(36, !0), U = S * 4, F = w * D + U, b = f.getUint16(40, !0), T = ah[b], {
bytesPerCenter: R,
bytesPerScale: X,
bytesPerRotation: _,
bytesPerColor: eA,
bytesPerSphericalHarmonicsComponent: q,
scaleOffsetBytes: O,
rotationOffsetBytes: L,
colorOffsetBytes: j,
sphericalHarmonicsOffsetBytes: P
} = ms[c], W = R + X + _ + eA + T * q, G = W * d, pA = G + F, gA = [0, 3, 6, 1, 4, 7, 2, 5, 8], fA = [
9,
14,
19,
10,
15,
20,
11,
16,
21,
12,
17,
22,
13,
18,
23
], dA = [
24,
31,
38,
25,
32,
39,
26,
33,
40,
27,
34,
41,
28,
35,
42,
29,
36,
43,
30,
37,
44
], xA = b >= 1 ? new Float32Array(3 * 3) : void 0, CA = b >= 2 ? new Float32Array(5 * 3) : void 0, YA = b >= 3 ? new Float32Array(7 * 3) : void 0, SA = x / 2 / m, OA = E + U, jA = E + F, Y = new DataView(
t.buffer,
jA,
G
), DA = new Float32Array(
t.buffer,
OA,
D * 3
), lA = new Uint32Array(
t.buffer,
E,
S
);
let Gt = k, Ae = M;
for (let MA = 0; MA < p; ++MA) {
const z = MA * W;
let ZA;
if (MA < M)
ZA = Math.floor(MA / y);
else {
const WA = lA[Gt - k];
MA >= Ae + WA && (Gt += 1, Ae += WA), ZA = Gt;
}
const ye = c === 0 ? Y.getFloat32(z + 0, !0) : (Y.getUint16(z + 0, !0) - m) * SA + DA[3 * ZA + 0], we = c === 0 ? Y.getFloat32(z + 4, !0) : (Y.getUint16(z + 2, !0) - m) * SA + DA[3 * ZA + 1], me = c === 0 ? Y.getFloat32(z + 8, !0) : (Y.getUint16(z + 4, !0) - m) * SA + DA[3 * ZA + 2], xe = c === 0 ? Y.getFloat32(z + O + 0, !0) : wA(Y.getUint16(z + O + 0, !0)), Se = c === 0 ? Y.getFloat32(z + O + 4, !0) : wA(Y.getUint16(z + O + 2, !0)), go = c === 0 ? Y.getFloat32(z + O + 8, !0) : wA(Y.getUint16(z + O + 4, !0)), lo = c === 0 ? Y.getFloat32(z + L + 0, !0) : wA(
Y.getUint16(z + L + 0, !0)
), Io = c === 0 ? Y.getFloat32(z + L + 4, !0) : wA(
Y.getUint16(z + L + 2, !0)
), uo = c === 0 ? Y.getFloat32(z + L + 8, !0) : wA(
Y.getUint16(z + L + 4, !0)
), ho = c === 0 ? Y.getFloat32(z + L + 12, !0) : wA(
Y.getUint16(z + L + 6, !0)
), Co = Y.getUint8(z + j + 0) / 255, Bo = Y.getUint8(z + j + 1) / 255, Eo = Y.getUint8(z + j + 2) / 255, Qo = Y.getUint8(z + j + 3) / 255;
if (e(
MA,
ye,
we,
me,
xe,
Se,
go,
Io,
uo,
ho,
lo,
Qo,
Co,
Bo,
Eo
), b >= 1 && xA) {
for (const [WA, Rt] of gA.entries())
xA[WA] = Q(z, Rt);
if (CA)
for (const [WA, Rt] of fA.entries())
CA[WA] = Q(z, Rt);
if (YA)
for (const [WA, Rt] of dA.entries())
YA[WA] = Q(z, Rt);
s == null || s(MA, xA, CA, YA);
}
}
E += pA;
}
}
class ch {
constructor({ fileBytes: A }) {
this.fileBytes = A instanceof ArrayBuffer ? new Uint8Array(A) : A, this.reader = new ti({ 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 > 3)
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, n, i, r) {
if (this.parsed)
throw new Error("SPZ file already parsed");
if (this.parsed = !0, this.version === 1) {
const a = this.reader.read(this.numSplats * 3 * 2), o = new Uint16Array(a.buffer);
for (let g = 0; g < this.numSplats; g++) {
const l = g * 3, c = wA(o[l]), I = wA(o[l + 1]), h = wA(o[l + 2]);
A == null || A(g, c, I, h);
}
} else if (this.version === 2 || this.version === 3) {
const a = 1 << this.fractionalBits, o = this.reader.read(this.numSplats * 3 * 3);
for (let g = 0; g < this.numSplats; g++) {
const l = g * 9, c = ((o[l + 2] << 24 | o[l + 1] << 16 | o[l] << 8) >> 8) / a, I = ((o[l + 5] << 24 | o[l + 4] << 16 | o[l + 3] << 8) >> 8) / a, h = ((o[l + 8] << 24 | o[l + 7] << 16 | o[l + 6] << 8) >> 8) / a;
A == null || A(g, c, I, h);
}
} else
throw new Error("Unreachable");
{
const a = this.reader.read(this.numSplats);
for (let o = 0; o < this.numSplats; o++)
e == null || e(o, a[o] / 255);
}
{
const a = this.reader.read(this.numSplats * 3), o = so / 0.15;
for (let g = 0; g < this.numSplats; g++) {
const l = g * 3, c = (a[l] / 255 - 0.5) * o + 0.5, I = (a[l + 1] / 255 - 0.5) * o + 0.5, h = (a[l + 2] / 255 - 0.5) * o + 0.5;
s == null || s(g, c, I, h);
}
}
{
const a = this.reader.read(this.numSplats * 3);
for (let o = 0; o < this.numSplats; o++) {
const g = o * 3, l = Math.exp(a[g] / 16 - 10), c = Math.exp(a[g + 1] / 16 - 10), I = Math.exp(a[g + 2] / 16 - 10);
n == null || n(o, l, c, I);
}
}
if (this.version === 3) {
const a = 1 / Math.sqrt(2), o = this.reader.read(this.numSplats * 4);
for (let g = 0; g < this.numSplats; g++) {
const l = g * 4, c = [0, 0, 0, 0], I = [
o[l],
o[l + 1],
o[l + 2],
o[l + 3]
], h = I[0] + (I[1] << 8) + (I[2] << 16) + (I[3] << 24), E = 511, C = h >>> 30;
let B = h, Q = 0;
for (let p = 3; p >= 0; --p)
if (p !== C) {
const d = B & E, y = B >>> 9 & 1;
B = B >>> 10, c[p] = a * (d / E), c[p] = y === 0 ? c[p] : -c[p], Q += c[p] * c[p];
}
const f = 1 - Q;
c[C] = Math.sqrt(Math.max(f, 0)), i == null || i(
g,
c[0],
c[1],
c[2],
c[3]
);
}
} else {
const a = this.reader.read(this.numSplats * 3);
for (let o = 0; o < this.numSplats; o++) {
const g = o * 3, l = a[g] / 127.5 - 1, c = a[g + 1] / 127.5 - 1, I = a[g + 2] / 127.5 - 1, h = Math.sqrt(
Math.max(0, 1 - l * l - c * c - I * I)
);
i == null || i(o, l, c, I, h);
}
}
if (r && this.shDegree >= 1) {
const a = new Float32Array(9), o = this.shDegree >= 2 ? new Float32Array(5 * 3) : void 0, g = this.shDegree >= 3 ? new Float32Array(7 * 3) : void 0, l = this.reader.read(
this.numSplats * eo[this.shDegree] * 3
);
let c = 0;
for (let I = 0; I < this.numSplats; I++) {
for (let h = 0; h < 9; ++h)
a[h] = (l[c + h] - 128) / 128;
if (c += 9, o) {
for (let h = 0; h < 15; ++h)
o[h] = (l[c + h] - 128) / 128;
c += 15;
}
if (g) {
for (let h = 0; h < 21; ++h)
g[h] = (l[c + h] - 128) / 128;
c += 21;
}
r == null || r(I, a, o, g);
}
}
}
}
const eo = { 1: 3, 2: 8, 3: 15 }, so = 0.28209479177387814, gh = 1347635022, lh = 3, Ih = 1;
class et {
constructor({
numSplats: A,
shDegree: e,
fractionalBits: s = 12,
flagAntiAlias: n = !0
}) {
this.clippedCount = 0;
const i = 20 + // Rotation
(e >= 1 ? 9 : 0) + (e >= 2 ? 15 : 0) + (e >= 3 ? 21 : 0), r = 16 + A * i;
this.buffer = new ArrayBuffer(r), this.view = new DataView(this.buffer), this.view.setUint32(0, gh, !0), this.view.setUint32(4, lh, !0), this.view.setUint32(8, A, !0), this.view.setUint8(12, e), this.view.setUint8(13, s), this.view.setUint8(14, n ? Ih : 0), this.view.setUint8(15, 0), this.numSplats = A, this.shDegree = e, this.fractionalBits = s, this.fraction = 1 << s, this.flagAntiAlias = n;
}
setCenter(A, e, s, n) {
const i = Math.round(e * this.fraction), r = Math.max(-8388607, Math.min(8388607, i)), a = Math.round(s * this.fraction), o = Math.max(-8388607, Math.min(8388607, a)), g = Math.round(n * this.fraction), l = Math.max(-8388607, Math.min(8388607, g));
(i !== r || a !== o || g !== l) && (this.clippedCount += 1);
const h = 16 + A * 9;
this.view.setUint8(h, r & 255), this.view.setUint8(h + 1, r >> 8 & 255), this.view.setUint8(h + 2, r >> 16 & 255), this.view.setUint8(h + 3, o & 255), this.view.setUint8(h + 4, o >> 8 & 255), this.view.setUint8(h + 5, o >> 16 & 255), this.view.setUint8(h + 6, l & 255), this.view.setUint8(h + 7, l >> 8 & 255), this.view.setUint8(h + 8, l >> 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) / (so / 0.15) + 0.5) * 255;
return Math.max(0, Math.min(255, Math.round(e)));
}
setRgb(A, e, s, n) {
const i = 16 + this.numSplats * 10 + A * 3;
this.view.setUint8(i, et.scaleRgb(e)), this.view.setUint8(i + 1, et.scaleRgb(s)), this.view.setUint8(i + 2, et.scaleRgb(n));
}
setScale(A, e, s, n) {
const i = 16 + this.numSplats * 13 + A * 3;
this.view.setUint8(
i,
Math.max(0, Math.min(255, Math.round((Math.log(e) + 10) * 16)))
), this.view.setUint8(
i + 1,
Math.max(0, Math.min(255, Math.round((Math.log(s) + 10) * 16)))
), this.view.setUint8(
i + 2,
Math.max(0, Math.min(255, Math.round((Math.log(n) + 10) * 16)))
);
}
setQuat(A, ...e) {
const s = 16 + this.numSplats * 16 + A * 4, n = Hn(e);
let i = 0;
for (let o = 1; o < 4; ++o)
Math.abs(n[o]) > Math.abs(n[i]) && (i = o);
const r = n[i] < 0 ? 1 : 0;
let a = i;
for (let o = 0; o < 4; ++o)
if (o !== i) {
const g = (n[o] < 0 ? 1 : 0) ^ r, l = Math.floor(
511 * (Math.abs(n[o]) / Math.SQRT1_2) + 0.5
);
a = a << 10 | g << 9 | l;
}
this.view.setUint8(s, a & 255), this.view.setUint8(s + 1, a >> 8 & 255), this.view.setUint8(s + 2, a >> 16 & 255), this.view.setUint8(s + 3, a >>> 24 & 255);
}
static quantizeSh(A, e) {
const s = Math.round(A * 128) + 128, n = 1 << 8 - e, i = Math.floor((s + n / 2) / n) * n;
return Math.max(0, Math.min(255, i));
}
setSh(A, e, s, n) {
const i = eo[this.shDegree] || 0, r = 16 + this.numSplats * 20 + A * i * 3;
for (let a = 0; a < 9; ++a)
this.view.setUint8(r + a, et.quantizeSh(e[a], 5));
if (s) {
const a = r + 9;
for (let o = 0; o < 15; ++o)
this.view.setUint8(a + o, et.quantizeSh(s[o], 4));
if (n) {
const o = a + 15;
for (let g = 0; g < 21; ++g)
this.view.setUint8(o + g, et.quantizeSh(n[g], 4));
}
}
}
async finalize() {
const A = new Uint8Array(this.buffer), s = new ReadableStream({
async start(r) {
r.enqueue(A), r.close();
}
}).pipeThrough(new CompressionStream("gzip")), i = await new Response(s).arrayBuffer();
return console.log(
"Compressed",
A.length,
"bytes to",
i.byteLength,
"bytes"
), new Uint8Array(i);
}
}
async function Xh(t) {
var l, c, I;
const A = new Xu(), {
inputs: e,
clipXyz: s,
maxSh: n,
fractionalBits: i = 12,
opacityThreshold: r
} = t;
for (const h of e) {
let E = function(w) {
return w.multiplyScalar(p), w.applyQuaternion(d), w.add(y), w;
}, C = function(w) {
return w.multiplyScalar(p), w;
}, B = function(w) {
return w.premultiply(d), w;
}, Q = function(w) {
return !D || D.containsPoint(w);
}, f = function(w) {
return r !== void 0 ? w >= r : !0;
};
const p = ((l = h.transform) == null ? void 0 : l.scale) ?? 1, d = new u.Quaternion().fromArray(
((c = h.transform) == null ? void 0 : c.quaternion) ?? [0, 0, 0, 1]
), y = new u.Vector3().fromArray(
((I = h.transform) == null ? void 0 : I.translate) ?? [0, 0, 0]
), D = s ? new u.Box3(
new u.Vector3().fromArray(s.min),
new u.Vector3().fromArray(s.max)
) : void 0;
let x = h.fileType;
switch (x || (x = Wa(h.fileBytes), !x && h.pathOrUrl && (x = Ao(h.pathOrUrl))), x) {
case _t.PLY: {
const w = new ue({ fileBytes: h.fileBytes });
await w.parseHeader();
let m = null;
w.parseSplats(
(k, M, S, U, F, b, T, R, X, _, eA, q, O, L, j) => {
const P = E(new u.Vector3(M, S, U));
if (Q(P) && f(q)) {
m = A.pushSplat(), A.setCenter(m, P.x, P.y, P.z);
const W = C(
new u.Vector3(F, b, T)
);
A.setScale(m, W.x, W.y, W.z);
const G = B(
new u.Quaternion(R, X, _, eA)
);
A.setQuaternion(
m,
G.x,
G.y,
G.z,
G.w
), A.setOpacity(m, q), A.setColor(m, O, L, j);
} else
m = null;
},
(k, M, S, U) => {
M && m !== null && A.setSh1(m, M), S && m !== null && A.setSh2(m, S), U && m !== null && A.setSh3(m, U);
}
);
break;
}
case _t.SPZ: {
const w = new ch({ fileBytes: h.fileBytes }), m = new Int32Array(w.numSplats);
m.fill(-1);
const k = new Float32Array(w.numSplats * 3), M = new u.Vector3();
w.parseSplats(
(S, U, F, b) => {
const T = E(new u.Vector3(U, F, b));
k[S * 3] = T.x, k[S * 3 + 1] = T.y, k[S * 3 + 2] = T.z;
},
(S, U) => {
M.fromArray(k, S * 3), Q(M) && f(U) && (m[S] = A.pushSplat(), A.setCenter(m[S], M.x, M.y, M.z), A.setOpacity(m[S], U));
},
(S, U, F, b) => {
m[S] >= 0 && A.setColor(m[S], U, F, b);
},
(S, U, F, b) => {
if (m[S] >= 0) {
const T = C(
new u.Vector3(U, F, b)
);
A.setScale(m[S], T.x, T.y, T.z);
}
},
(S, U, F, b, T) => {
if (m[S] >= 0) {
const R = B(
new u.Quaternion(U, F, b, T)
);
A.setQuaternion(
m[S],
R.x,
R.y,
R.z,
R.w
);
}
},
(S, U, F, b) => {
m[S] >= 0 && (A.setSh1(m[S], U), F && A.setSh2(m[S], F), b && A.setSh3(m[S], b));
}
);
break;
}
case _t.SPLAT:
rh(
h.fileBytes,
(w) => {
},
(w, m, k, M, S, U, F, b, T, R, X, _, eA, q, O) => {
const L = E(new u.Vector3(m, k, M));
if (Q(L) && f(_)) {
const j = A.pushSplat();
A.setCenter(j, L.x, L.y, L.z);
const P = C(
new u.Vector3(S, U, F)
);
A.setScale(j, P.x, P.y, P.z);
const W = B(
new u.Quaternion(b, T, R, X)
);
A.setQuaternion(
j,
W.x,
W.y,
W.z,
W.w
), A.setOpacity(j, _), A.setColor(j, eA, q, O);
}
}
);
break;
case _t.KSPLAT: {
let w = null;
oh(
h.fileBytes,
(m) => {
},
(m, k, M, S, U, F, b, T, R, X, _, eA, q, O, L) => {
const j = E(new u.Vector3(k, M, S));
if (Q(j) && f(eA)) {
w = A.pushSplat(), A.setCenter(w, j.x, j.y, j.z);
const P = C(
new u.Vector3(U, F, b)
);
A.setScale(w, P.x, P.y, P.z);
const W = B(
new u.Quaternion(T, R, X, _)
);
A.setQuaternion(
w,
W.x,
W.y,
W.z,
W.w
), A.setOpacity(w, eA), A.setColor(w, q, O, L);
} else
w = null;
},
(m, k, M, S) => {
w !== null && (A.setSh1(w, k), M && A.setSh2(w, M), S && A.setSh3(w, S));
}
);
break;
}
default:
throw new Error(`transcodeSpz not implemented for ${x}`);
}
}
const a = Math.min(
n ?? 3,
A.sh3 ? 3 : A.sh2 ? 2 : A.sh1 ? 1 : 0
), o = new et({
numSplats: A.numSplats,
shDegree: a,
fractionalBits: i,
flagAntiAlias: !0
});
for (let h = 0; h < A.numSplats; ++h) {
const E = h * 3, C = h * 4;
o.setCenter(
h,
A.centers[E],
A.centers[E + 1],
A.centers[E + 2]
), o.setScale(
h,
A.scales[E],
A.scales[E + 1],
A.scales[E + 2]
), o.setQuat(
h,
A.quaternions[C],
A.quaternions[C + 1],
A.quaternions[C + 2],
A.quaternions[C + 3]
), o.setAlpha(h, A.opacities[h]), o.setRgb(
h,
A.colors[E],
A.colors[E + 1],
A.colors[E + 2]
), A.sh1 && a >= 1 && o.setSh(
h,
A.sh1.slice(h * 9, (h + 1) * 9),
a >= 2 && A.sh2 ? A.sh2.slice(h * 15, (h + 1) * 15) : void 0,
a >= 3 && A.sh3 ? A.sh3.slice(h * 21, (h + 1) * 21) : void 0
);
}
return { fileBytes: await o.finalize(), clippedCount: o.clippedCount };
}
class Oh {
constructor(A) {
this.mesh = A.mesh, this.numSplats = A.numSplats ?? this.mesh.numSplats;
const { width: e, height: s, depth: n, maxSplats: i } = mA(this.numSplats);
this.skinData = new Uint16Array(i * 4), this.skinTexture = new u.DataArrayTexture(
this.skinData,
e,
s,
n
), this.skinTexture.format = u.RGBAIntegerFormat, this.skinTexture.type = u.UnsignedShortType, this.skinTexture.internalFormat = "RGBA16UI", this.skinTexture.needsUpdate = !0, this.numBones = A.numBones ?? 256, this.boneData = new Float32Array(this.numBones * 16), this.boneTexture = new u.DataTexture(
this.boneData,
4,
this.numBones,
u.RGBAFormat,
u.FloatType
), this.boneTexture.internalFormat = "RGBA32F", this.boneTexture.needsUpdate = !0, this.uniform = new N({
key: "skinning",
type: no,
globals: () => [io],
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 hh(A, this.uniform);
}
// Set the "rest" pose for a bone with position and quaternion orientation.
setRestQuatPos(A, e, s) {
const n = A * 16;
this.boneData[n + 0] = e.x, this.boneData[n + 1] = e.y, this.boneData[n + 2] = e.z, this.boneData[n + 3] = e.w, this.boneData[n + 4] = s.x, this.boneData[n + 5] = s.y, this.boneData[n + 6] = s.z, this.boneData[n + 7] = 0, this.boneData[n + 8] = 0, this.boneData[n + 9] = 0, this.boneData[n + 10] = 0, this.boneData[n + 11] = 1, this.boneData[n + 12] = 0, this.boneData[n + 13] = 0, this.boneData[n + 14] = 0, this.boneData[n + 15] = 0;
}
// Set the "current" position and orientation of a bone.
setBoneQuatPos(A, e, s) {
const n = A * 16, i = new u.Quaternion(
this.boneData[n + 0],
this.boneData[n + 1],
this.boneData[n + 2],
this.boneData[n + 3]
), r = new u.Vector3(
this.boneData[n + 4],
this.boneData[n + 5],
this.boneData[n + 6]
), a = i.clone().invert(), o = s.clone().sub(r);
o.applyQuaternion(a), a.multiply(e);
const g = new u.Quaternion(
o.x,
o.y,
o.z,
0
).multiply(i);
this.boneData[n + 8] = a.x, this.boneData[n + 9] = a.y, this.boneData[n + 10] = a.z, this.boneData[n + 11] = a.w, this.boneData[n + 12] = 0.5 * g.x, this.boneData[n + 13] = 0.5 * g.y, this.boneData[n + 14] = 0.5 * g.z, this.boneData[n + 15] = 0.5 * g.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 n = A * 4;
this.skinData[n + 0] = Math.min(255, Math.max(0, Math.round(s.x * 255))) + (e.x << 8), this.skinData[n + 1] = Math.min(255, Math.max(0, Math.round(s.y * 255))) + (e.y << 8), this.skinData[n + 2] = Math.min(255, Math.max(0, Math.round(s.z * 255))) + (e.z << 8), this.skinData[n + 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 no = { type: "GsplatSkinning" }, io = hA(`
struct GsplatSkinning {
int numSplats;
int numBones;
usampler2DArray skinTexture;
sampler2D boneTexture;
};
`), uh = hA(`
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 hh(t, A) {
return new V({
inTypes: { gsplat: AA, skinning: no },
outTypes: { gsplat: AA },
globals: () => [io, uh],
inputs: { gsplat: t, skinning: A },
statements: ({ inputs: s, outputs: n }) => {
const { skinning: i } = s, { gsplat: r } = n;
return RA(`
${r} = ${s.gsplat};
if (isGsplatActive(${r}.flags)) {
applyGsplatSkinning(
${i}.numSplats, ${i}.numBones,
${i}.skinTexture, ${i}.boneTexture,
${r}.index, ${r}.center, ${r}.quaternion
);
}
`);
}
}).outputs.gsplat;
}
function jh({
// 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: n = 2,
// Gsplat opacity
opacity: i = 1,
// Gsplat color (THREE.Color) or function to set color for position:
// ((THREE.Color, THREE.Vector3) => void) (default: RGB-modulated grid)
color: r
}) {
const o = new u.Vector3(), g = new u.Vector3(), l = new u.Quaternion(0, 0, 0, 1);
r == null && (r = (I, h) => I.set(
0.55 + 0.45 * Math.cos(h.x * 1),
0.55 + 0.45 * Math.cos(h.y * 1),
0.55 + 0.45 * Math.cos(h.z * 1)
));
const c = new u.Color();
for (let I = A.min.z; I < A.max.z + 1e-6; I += e)
for (let h = A.min.y; h < A.max.y + 1e-6; h += e)
for (let E = A.min.x; E < A.max.x + 1e-6; E += e) {
o.set(E, h, I);
for (let C = 0; C < 2; ++C)
g.setScalar(s * (C ? 1 : n)), C ? typeof r == "function" ? r(c, o) : c.copy(r) : c.setScalar(0), t.pushSplat(o, g, l, i, c);
}
}
function Wh({
// 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: n = [new u.Vector3()]
}) {
const i = new u.Vector3(), r = new u.Vector3(), a = new u.Quaternion(0, 0, 0, 1), o = new u.Color(), g = 1;
for (const l of n)
for (let c = 0; c < 3; ++c) {
i.set(
l.x + (c === 0 ? A : 0),
l.y + (c === 1 ? A : 0),
l.z + (c === 2 ? A : 0)
);
for (let I = 0; I < 2; ++I)
r.set(
(c === 0 ? A : e) * (I ? 1 : s),
(c === 1 ? A : e) * (I ? 1 : s),
(c === 2 ? A : e) * (I ? 1 : s)
), o.setRGB(
I === 0 ? 0 : c === 0 ? 1 : 0,
I === 0 ? 0 : c === 1 ? 1 : 0,
I === 0 ? 0 : c === 2 ? 1 : 0
), t.pushSplat(i, r, a, g, o);
}
}
function AC({
// PackedSplats object to add splats to
splats: t,
// center of the sphere (default: origin)
origin: A = new u.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: n = null,
// radius of each oriented Gsplat
pointRadius: i = 0.02,
// flatness of each oriented Gsplat
pointThickness: r = 1e-3,
// color of each Gsplat (THREE.Color) or function to set color for point:
// ((THREE.Color, THREE.Vector3) => void) (default: white)
color: a = new u.Color(1, 1, 1)
}) {
const o = {};
function g(C) {
if (n && !n(C))
return;
const B = `${C.x},${C.y},${C.z}`;
o[B] || (o[B] = C);
}
function l(C, B, Q, f) {
if (g(B), g(Q), g(f), C >= s)
return;
const p = new u.Vector3().addVectors(B, Q).normalize(), d = new u.Vector3().addVectors(Q, f).normalize(), y = new u.Vector3().addVectors(f, B).normalize();
l(C + 1, B, p, y), l(C + 1, p, Q, d), l(C + 1, y, d, f), l(C + 1, p, d, y);
}
for (const C of [-1, 1])
for (const B of [-1, 1])
for (const Q of [-1, 1]) {
const f = new u.Vector3(C, 0, 0), p = new u.Vector3(0, B, 0), d = new u.Vector3(0, 0, Q);
l(0, f, p, d);
}
const c = Object.values(o), I = new u.Vector3(i, i, r), h = new u.Quaternion(), E = typeof a == "function" ? new u.Color() : a;
for (const C of c)
h.setFromUnitVectors(new u.Vector3(0, 0, -1), C), typeof a == "function" && a(E, C), C.multiplyScalar(e), C.add(A), t.pushSplat(C, I, h, 1, E);
}
function tC({
// 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: n,
// Gsplat radius (default: 0.8 covers 1-unit spacing well)
dotRadius: i,
// text alignment: "left", "center", "right", "start", "end" (default: "start")
textAlign: r,
// line spacing multiplier, lines delimited by "\n" (default: 1.0)
lineHeight: a,
// Coordinate scale in object-space (default: 1.0)
objectScale: o
}) {
A = A ?? "Arial", e = e ?? 32, s = s ?? new u.Color(1, 1, 1), i = i ?? 0.8, r = r ?? "start", a = a ?? 1, o = o ?? 1;
const g = t.split(`
`), l = document.createElement("canvas"), c = l.getContext("2d");
if (!c)
throw new Error("Failed to create canvas context");
c.font = `${e}px ${A}`, c.textAlign = r;
const I = c.measureText(""), h = I.fontBoundingBoxAscent + I.fontBoundingBoxDescent;
let E = Number.POSITIVE_INFINITY, C = Number.NEGATIVE_INFINITY, B = Number.POSITIVE_INFINITY, Q = Number.NEGATIVE_INFINITY;
for (let F = 0; F < g.length; ++F) {
const b = c.measureText(g[F]), T = h * a * F;
E = Math.min(E, -b.actualBoundingBoxLeft), C = Math.max(C, b.actualBoundingBoxRight), B = Math.min(B, T - b.actualBoundingBoxAscent), Q = Math.max(Q, T + b.actualBoundingBoxDescent);
}
const f = Math.floor(E), p = Math.floor(B), d = Math.ceil(C) - f, y = Math.ceil(Q) - p;
l.width = d, l.height = y, c.font = `${e}px ${A}`, c.textAlign = r, c.textBaseline = "alphabetic", c.fillStyle = "#FFFFFF";
for (let F = 0; F < g.length; ++F) {
const b = h * a * F - p;
c.fillText(g[F], -f, b);
}
const D = c.getImageData(0, 0, d, y), x = new Uint8Array(D.data.buffer), w = new VA(), m = new u.Vector3(), k = new u.Vector3().setScalar(i * o), M = new u.Quaternion(0, 0, 0, 1);
n = n ?? new u.Color(1, 1, 1);
let S = 0;
for (let F = 0; F < y; ++F)
for (let b = 0; b < d; ++b) {
const T = x[S + 3];
if (T > 0) {
const R = T / 255;
m.set(b - 0.5 * (d - 1), 0.5 * (y - 1) - F, 0), m.multiplyScalar(o), w.pushSplat(m, k, M, R, n);
}
S += 4;
}
const U = new pt({ packedSplats: w });
return U.recolor = s, U;
}
function eC({
// 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 pt({
constructSplats: async (n) => new Promise((i, r) => {
const a = new Image();
a.crossOrigin = "anonymous", a.onerror = r, a.onload = () => {
const { width: o, height: g } = a, l = document.createElement("canvas");
l.width = o, l.height = g;
const c = l.getContext("2d");
if (!c) {
r(new Error("Failed to create canvas context"));
return;
}
c.imageSmoothingEnabled = !0, c.imageSmoothingQuality = "high";
const I = Math.round(o / e), h = Math.round(g / e);
c.drawImage(a, 0, 0, I, h);
try {
const E = c.getImageData(0, 0, I, h), C = new Uint8Array(E.data.buffer), B = new u.Vector3(), Q = new u.Vector3().setScalar(A), f = new u.Quaternion(0, 0, 0, 1), p = new u.Color();
let d = 0;
for (let y = 0; y < h; ++y)
for (let D = 0; D < I; ++D) {
const x = d * 4, w = C[x + 3];
if (w > 0) {
let m = w / 255;
p.set(
C[x + 0] / 255,
C[x + 1] / 255,
C[x + 2] / 255
), B.set(
D - 0.5 * (I - 1),
0.5 * (h - 1) - y,
0
), Q.setScalar(A), f.set(0, 0, 0, 1);
let k = !0;
if (s) {
const M = s(
I,
h,
d,
B,
Q,
f,
m,
p
);
m = M ?? m, k = M !== null;
}
k && n.pushSplat(B, Q, f, m, p);
}
d += 1;
}
i();
} catch (E) {
r(E);
}
}, a.src = t;
})
});
}
function Ch({
box: t,
cells: A,
dotScale: e,
color: s,
opacity: n
}) {
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)), n = n ?? 1;
const i = A.x * A.y * A.z, r = J("int", A.x), a = J("int", A.y);
J("int", A.z);
const o = HA(0), g = new Vt({
numSplats: i,
generator: vA(
{ index: "int" },
{ gsplat: AA },
({ index: c }) => {
if (!c)
throw new Error("index is undefined");
const I = Le(c, r), h = re(c, r), E = Le(h, a), C = re(h, a), B = $A({
vectorType: "ivec3",
x: I,
y: E,
z: C
}), Q = sr(o), f = $A({ vectorType: "ivec2", x: c, y: Q }), p = aa(f), d = J("vec3", t.min), y = J("vec3", t.max), D = Qt(y, d), x = re(BA(Bt(B), p), J("vec3", A));
let w, m, k;
s ? (w = J("float", s.r), m = J("float", s.g), k = J("float", s.b)) : { r: w, g: m, b: k } = Et(x).outputs;
const M = $A({
vectorType: "vec4",
r: w,
g: m,
b: k,
a: J("float", n)
}), S = BA(d, iA(D, x)), U = Bt(J("float", e)), F = J("vec4", new u.Quaternion(0, 0, 0, 1));
let b = rt({
flags: oe("uint", "GSPLAT_FLAG_ACTIVE"),
index: c,
center: S,
scales: U,
quaternion: F,
rgba: M
});
return b = l.applyGsplat(b), { gsplat: b };
},
{
globals: () => [bA]
}
),
update: ({ time: c }) => {
o.value = c, l.update(g), g.updateVersion();
}
}), l = new xt();
return g;
}
const Bh = {
box: new u.Box3(
new u.Vector3(-1, -1, -1),
new u.Vector3(1, 1, 1)
),
density: 100,
fallDirection: new u.Vector3(-1, -3, 1).normalize(),
fallVelocity: 0.02,
wanderScale: 0.04,
wanderVariance: 2,
color1: new u.Color(1, 1, 1),
color2: new u.Color(0.5, 0.5, 1),
minScale: 1e-3,
maxScale: 5e-3,
anisoScale: new u.Vector3(1, 1, 1)
}, Eh = {
box: new u.Box3(
new u.Vector3(-2, -1, -2),
new u.Vector3(2, 5, 2)
),
density: 10,
fallDirection: new u.Vector3(0, -1, 0),
fallVelocity: 2,
wanderScale: 0.1,
wanderVariance: 1,
color1: new u.Color(1, 1, 1),
color2: new u.Color(0.25, 0.25, 0.5),
minScale: 5e-3,
maxScale: 0.01,
anisoScale: new u.Vector3(0.1, 1, 0.1)
};
function Qh({
// 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: n,
// Minimum Gsplat particle scale (default: 0.001)
minScale: i,
// Maximum Gsplat particle scale (default: 0.005)
maxScale: r,
// The average direction of fall (default: (0, -1, 0))
fallDirection: a,
// The average speed of the fall (multiplied with fallDirection) (default: 0.02)
fallVelocity: o,
// The world scale of wandering overlay motion (default: 0.01)
wanderScale: g,
// Controls how uniformly the particles wander in sync, more variance mean
// more randomness in the motion (default: 2)
wanderVariance: l,
// Color 1 of the two colors interpolated between (default: (1, 1, 1))
color1: c,
// Color 2 of the two colors interpolated between (default: (0.5, 0.5, 1))
color2: I,
// The base opacity of the Gsplats (default: 1)
opacity: h,
// Optional callback function to call each frame.
onFrame: E
}) {
t = t ?? new u.Box3(new u.Vector3(-1, -1, -1), new u.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 B = HA(i ?? 1e-3), Q = HA(r ?? 5e-3), f = tt(
((n == null ? void 0 : n.clone()) ?? new u.Vector3(1, 1, 1)).normalize()
), p = tt(
(a ?? new u.Vector3(0, -1, 0)).normalize()
), d = HA(o ?? 0.02), y = HA(g ?? 0.01), D = HA(l ?? 2), x = tt(c ?? new u.Color(1, 1, 1)), w = tt(I ?? new u.Color(0.5, 0.5, 1)), m = HA(h ?? 1), k = HA(0), M = tt(new u.Vector3(0, 0, 0)), S = tt(t.min), U = tt(t.max), F = HA(A ?? Number.NEGATIVE_INFINITY), b = Qt(U, S), T = new Vt({
numSplats: e,
generator: vA(
{ index: "int" },
{ gsplat: AA },
({ index: X }) => {
if (!X)
throw new Error("index not defined");
const _ = He(X), eA = Et(_).outputs.w;
let q = Bt(_), O = ae(iA(eA, J("float", 100)));
O = qe(iA(oe("float", "PI"), O)), O = BA(B, iA(O, Qt(Q, B)));
const L = iA(O, f), j = ae(iA(eA, J("float", 10))), P = ae(eA), W = ri(x, w, P), G = iA(W, j), pA = He(
$A({
vectorType: "ivec2",
x: X,
y: J("int", 6837)
})
);
let gA = Bt(pA), fA = iA(Et(pA).outputs.w, D);
fA = BA(k, fA), q = BA(q, M);
const dA = ni(
q,
J("vec3", new u.Vector3(1, 1, 1))
);
q = BA(S, iA(b, dA));
const xA = J("vec4", new u.Quaternion(0, 0, 0, 1));
gA = qe(BA(Bt(fA), gA)), gA = iA(gA, y);
let CA = BA(q, gA), YA = Et(CA).outputs.y;
YA = ii(F, YA), CA = $A({ vector: CA, y: YA });
let SA = rt({
flags: oe("uint", "GSPLAT_FLAG_ACTIVE"),
index: X,
center: CA,
scales: L,
quaternion: xA,
rgb: G,
opacity: m
});
return SA = R.applyGsplat(SA), { gsplat: SA };
},
{
globals: () => [bA]
}
),
update: ({ object: X, time: _, deltaTime: eA }) => {
k.value = _, R.update(T);
const q = p.value.clone().multiplyScalar(d.value * eA);
M.value.add(q), X.visible = m.value > 0, E == null || E({ object: X, time: _, deltaTime: eA }), T.updateVersion();
}
}), R = new xt();
return {
snow: T,
min: S,
max: U,
minY: F,
color1: x,
color2: w,
opacity: m,
fallVelocity: d,
wanderVariance: D,
wanderScale: y,
fallDirection: p,
minScale: B,
maxScale: Q,
anisoScale: f
};
}
const sC = /* @__PURE__ */ Object.freeze(/* @__PURE__ */ Object.defineProperty({
__proto__: null,
DEFAULT_RAIN: Eh,
DEFAULT_SNOW: Bh,
snowBox: Qh,
staticBox: Ch
}, Symbol.toStringTag, { value: "Module" }));
function ro(t) {
return vA({ gsplat: AA }, { gsplat: AA }, ({ gsplat: A }) => {
if (!A)
throw new Error("No gsplat input");
let e = Re(A);
const s = t.applyGsplat(A), n = ut(s).outputs.center, i = Re(s), r = Gr(n, i), a = Yi(r, J("float", 0));
e = os(a, as(e), e);
const o = BA(
iA(e, J("float", 0.5)),
J("float", 0.5)
);
return A = rt({ gsplat: A, rgb: o }), { gsplat: A };
});
}
function ph(t) {
t.enableWorldToView = !0, t.worldModifier = ro(t.context.worldToView), t.updateGenerator();
}
function ao(t, A, e, s) {
return vA({ gsplat: AA }, { gsplat: AA }, ({ gsplat: n }) => {
if (!n)
throw new Error("No gsplat input");
let { center: i } = ut(n).outputs;
i = t.apply(i);
const { z: r } = Et(i).outputs;
let a = oa(as(r), A, e);
return a = os(s, Qt(J("float", 1), a), a), n = rt({ gsplat: n, r: a, g: a, b: a }), { gsplat: n };
});
}
function fh(t, A, e, s) {
t.enableWorldToView = !0;
const n = J("float", A), i = J("float", e), r = J("bool", s ?? !1);
return t.worldModifier = ao(
t.context.worldToView,
n,
i,
r
), t.updateGenerator(), {
minDepth: n,
maxDepth: i,
reverse: r
};
}
const nC = /* @__PURE__ */ Object.freeze(/* @__PURE__ */ Object.defineProperty({
__proto__: null,
makeDepthColorModifier: ao,
makeNormalColorModifier: ro,
setDepthColor: fh,
setWorldNormalColor: ph
}, Symbol.toStringTag, { value: "Module" })), Kt = class Kt {
static createButton(A, e = {}) {
const s = navigator.xr;
if (!s)
return null;
const n = s, i = document.createElement("button");
A.xr.enabled = !0, A.xr.setReferenceSpaceType("local");
function r() {
let c = null;
async function I(C) {
console.log("onSessionStarted"), C.addEventListener("end", h), await A.xr.setSession(C), i.textContent = "EXIT VR", c = C;
}
function h() {
console.log("onSessionEnded"), c == null || c.removeEventListener("end", h), i.textContent = "ENTER VR", c = null;
}
i.style.display = "", i.style.cursor = "pointer", i.style.left = "calc(50% - 100px)", i.style.width = "200px", i.style.height = "100px", i.textContent = "ENTER VR";
const E = {
...e,
optionalFeatures: [
// "local-floor",
// "bounded-floor",
// "layers",
...e.optionalFeatures || []
]
};
i.onmouseenter = () => {
i.style.opacity = "1.0";
}, i.onmouseleave = () => {
i.style.opacity = "0.5";
}, i.onclick = () => {
c === null ? (console.log("requesting session"), n.requestSession("immersive-vr", E).then(
I
)) : (console.log("ending session"), c.end());
};
}
function a() {
i.style.display = "none", i.style.cursor = "auto", i.style.left = "calc(50% - 75px)", i.style.width = "150px", i.onmouseenter = null, i.onmouseleave = null, i.onclick = null;
}
function o() {
a(), i.textContent = "VR NOT SUPPORTED";
}
function g(c) {
a(), console.warn(
"Exception when trying to call xr.isSessionSupported",
c
), i.textContent = "VR NOT ALLOWED";
}
function l(c) {
c.style.position = "absolute", c.style.bottom = "20px", c.style.padding = "12px 6px", c.style.border = "1px solid #fff", c.style.borderRadius = "4px", c.style.background = "rgba(0,0,0,0.1)", c.style.color = "#fff", c.style.font = "normal 13px sans-serif", c.style.textAlign = "center", c.style.opacity = "0.5", c.style.outline = "none", c.style.zIndex = "999";
}
return i.id = "VRButton", i.style.display = "none", l(i), n.isSessionSupported("immersive-vr").then((c) => {
c ? r() : o(), c && Kt.xrSessionIsGranted && i.click();
}).catch(g), i;
}
static registerSessionGrantedListener() {
const A = navigator.xr;
if (!A)
return null;
const e = A;
/WebXRViewer\//i.test(navigator.userAgent) || e.addEventListener("sessiongranted", () => {
Kt.xrSessionIsGranted = !0;
});
}
};
Kt.xrSessionIsGranted = !1;
let Pe = Kt;
Pe.registerSessionGrantedListener();
const dh = 0.5, yh = 0.5, wh = 0;
var Is = /* @__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))(Is || {});
const oo = Object.keys(Is), iC = oo.length, rC = {
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
}, ne = {
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
}, mh = [
["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"]
], xh = [
[8, 10, 8, 6],
[8, 19, 14, 8, 6],
[8, 19, 14, 8, 6],
[8, 19, 14, 8, 6],
[8, 19, 14, 8, 6]
], aC = ["t3", "i4", "m4", "r4", "p4"], oC = ["i4", "m4", "r4", "p4"];
var co = /* @__PURE__ */ ((t) => (t.left = "left", t.right = "right", t))(co || {});
const Ze = Object.keys(co);
class cC {
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 n = A.getReferenceSpace();
if (n && e.getJointPose) {
this.last = this.hands, this.lastTests = this.tests, this.hands = {}, this.values = {}, this.tests = {};
for (const i of s.inputSources) {
if (!i.hand)
continue;
const r = i.handedness;
this.hands[r] = {};
for (const a of oo) {
const o = i.hand.get(Is[a]);
if (o) {
const g = e.getJointPose(o, n);
if (g) {
const { position: l, orientation: c } = g.transform;
this.hands[r][a] = {
position: new _A(l.x, l.y, l.z),
quaternion: new hs(
c.x,
c.y,
c.z,
c.w
),
radius: g.radius || 1e-3
};
}
}
}
}
for (const i of Ze)
for (const { key: r, value: a } of [
{ key: `${i}AllTips`, value: this.allTipsTouching(i) },
{
key: `${i}IndexThumb`,
value: this.touching(i, "i4", i, "t3")
},
{
key: `${i}MiddleThumb`,
value: this.touching(i, "m4", i, "t3")
},
{
key: `${i}RingThumb`,
value: this.touching(i, "r4", i, "t3")
},
{
key: `${i}PinkyThumb`,
value: this.touching(i, "p4", i, "t3")
},
{ key: `${i}TriTips`, value: this.triTipsTouching(i) }
])
this.values[r] = a, this.tests[r] = a === 1 ? !0 : a === 0 ? !1 : this.lastTests[r] ?? !1;
}
}
makeGhostMesh() {
const A = new _A(), e = new _A(0.01, 0.01, 0.01), s = new hs(0, 0, 0, 1), n = new Cs(1, 1, 1), i = Math.PI * 3;
new Cs(1, 1, 1);
let r = 1;
const a = new pt({
onFrame: () => {
let o = 0;
for (const g of Ze) {
const l = this.hands[g];
for (const [c, I] of mh.entries())
for (let h = 1; h < I.length; ++h) {
const E = xh[c][h - 1] * 2, C = h + 1 === I.length, B = l == null ? void 0 : l[I[h - 1]], Q = l == null ? void 0 : l[I[h]];
for (let f = 0; f < E; ++f) {
const p = (f + 0.5) / E;
if (r = 0, B && Q) {
A.copy(B.position).lerp(Q.position, p), s.copy(B.quaternion).slerp(Q.quaternion, p);
const d = ne[I[h - 1]], y = ne[I[h]];
let D = (1 - p) * d + p * y;
C && p > 0.8 && (D *= Math.sqrt(1 - ((p - 0.8) / 0.2) ** 2)), e.set(0.65 * D, 0.5 * D, 3e-3), n.set(
0.55 + 0.45 * Math.sin(A.x * i),
0.55 + 0.45 * Math.sin(A.y * i),
0.55 + 0.45 * Math.sin(A.z * i)
), g === "right" && n.set(1 - n.r, 1 - n.g, 1 - n.b), r = 0.75;
}
a.packedSplats.setSplat(
o,
A,
e,
s,
r,
n
), o += 1;
}
}
}
a.packedSplats.numSplats = o, a.packedSplats.needsUpdate = !0, a.numSplats = o, a.updateVersion();
}
});
return a;
}
distance(A, e, s, n, i = !1) {
const r = i ? this.last[A] : this.hands[A], a = i ? this.last[s] : this.hands[s], o = r == null ? void 0 : r[e], g = a == null ? void 0 : a[n];
return !o || !g ? Number.POSITIVE_INFINITY : o.position.distanceTo(g.position);
}
separation(A, e, s, n, i = !1) {
const r = this.distance(A, e, s, n, i);
return r === Number.POSITIVE_INFINITY ? Number.POSITIVE_INFINITY : r - ne[e] - ne[n];
}
touching(A, e, s, n, i = !1) {
const r = this.separation(A, e, s, n, i);
return r === Number.POSITIVE_INFINITY ? Number.POSITIVE_INFINITY : 1 - Math.max(0, Math.min(1, r / 0.01 - wh));
}
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 gC {
constructor({
xrHands: A,
control: e,
moveInertia: s,
rotateInertia: n
}) {
this.lastGrip = {}, this.lastPivot = new _A(), this.rotateVelocity = 0, this.velocity = new _A(), this.xrHands = A, this.control = e, this.moveInertia = s ?? dh, this.rotateInertia = n ?? yh;
}
update(A) {
var i, r, a, o, g;
const e = {};
for (const l of Ze) {
const c = this.xrHands.hands[l];
c && this.xrHands.tests[`${l}MiddleThumb`] && (e[l] = new _A().add(((i = c.t3) == null ? void 0 : i.position) ?? new _A()).add(((r = c.i4) == null ? void 0 : r.position) ?? new _A()).add(((a = c.m4) == null ? void 0 : a.position) ?? new _A()).add(((o = c.r4) == null ? void 0 : o.position) ?? new _A()).add(((g = c.p4) == null ? void 0 : g.position) ?? new _A()).multiplyScalar(1 / 5));
}
if (e.left && e.right && this.lastGrip.left && this.lastGrip.right) {
const l = e.left.clone().add(e.right).multiplyScalar(0.5), c = this.lastGrip.left.clone().add(this.lastGrip.right).multiplyScalar(0.5);
this.lastPivot = l;
const I = l.clone().applyMatrix4(this.control.matrix);
I.sub(c.clone().applyMatrix4(this.control.matrix)), I.multiplyScalar(1 / A), this.velocity.lerp(I, 1 - Math.exp(-20 * A));
const h = Math.atan2(e.left.z - l.z, e.left.x - l.x), E = Math.atan2(
this.lastGrip.left.z - c.z,
this.lastGrip.left.x - c.x
);
let C = h - E;
C > Math.PI ? C -= Math.PI * 2 : C < -Math.PI && (C += Math.PI * 2);
const B = C / A, Q = Math.exp(-20 * A);
this.rotateVelocity = this.rotateVelocity * Q + B * (1 - Q);
} else if (this.rotateVelocity *= Math.exp(-A / this.rotateInertia), e.left && this.lastGrip.left) {
const l = e.left.clone().applyMatrix4(this.control.matrix);
l.sub(this.lastGrip.left.clone().applyMatrix4(this.control.matrix)), l.multiplyScalar(1 / A), this.velocity.lerp(l, 1 - Math.exp(-20 * A));
} else if (e.right && this.lastGrip.right) {
const l = e.right.clone().applyMatrix4(this.control.matrix);
l.sub(
this.lastGrip.right.clone().applyMatrix4(this.control.matrix)
), l.multiplyScalar(1 / A), this.velocity.lerp(l, 1 - Math.exp(-20 * A));
} else
this.velocity.multiplyScalar(Math.exp(-A / this.moveInertia));
const s = this.lastPivot.clone().negate(), n = new De().makeTranslation(s).premultiply(new De().makeRotationY(this.rotateVelocity * A)).premultiply(new De().makeTranslation(this.lastPivot));
this.control.matrix.multiply(n), 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 Sh = 1, Dh = 2, Mh = 2e-3, vh = 6e-3, bh = 15e-4, Fh = 0.15, Nh = 0.15, kh = 0.1, Th = 2, Uh = 1, Gh = 200, Rh = 400, Yh = 50, Jh = {
KeyW: new u.Vector3(0, 0, -1),
KeyS: new u.Vector3(0, 0, 1),
KeyA: new u.Vector3(-1, 0, 0),
KeyD: new u.Vector3(1, 0, 0),
KeyR: new u.Vector3(0, 1, 0),
KeyF: new u.Vector3(0, -1, 0)
}, _h = {
ArrowUp: new u.Vector3(0, 0, -1),
ArrowDown: new u.Vector3(0, 0, 1),
ArrowLeft: new u.Vector3(-1, 0, 0),
ArrowRight: new u.Vector3(1, 0, 0),
PageUp: new u.Vector3(0, 1, 0),
PageDown: new u.Vector3(0, -1, 0)
}, Lh = {
KeyQ: new u.Vector3(0, 0, 1),
KeyE: new u.Vector3(0, 0, -1)
}, zh = {
Home: new u.Vector3(0, -1, 0),
End: new u.Vector3(0, 1, 0),
Insert: new u.Vector3(-1, 0, 0),
Delete: new u.Vector3(1, 0, 0)
};
class lC {
constructor({ canvas: A }) {
this.lastTime = 0, this.fpsMovement = new Hh({}), this.pointerControls = new qh({ 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 Hh {
constructor({
moveSpeed: A,
rollSpeed: e,
stickThreshold: s,
rotateSpeed: n,
keycodeMoveMapping: i,
keycodeRotateMapping: r,
gamepadMapping: a,
capsMultiplier: o,
shiftMultiplier: g,
ctrlMultiplier: l,
xr: c
} = {}) {
this.enable = !0, this.moveSpeed = A ?? Sh, this.rollSpeed = e ?? Dh, this.stickThreshold = s ?? kh, this.rotateSpeed = n ?? Th, this.keycodeMoveMapping = i ?? {
...Jh,
..._h
}, this.keycodeRotateMapping = r ?? {
...Lh,
...zh
}, this.gamepadMapping = a ?? {
4: "rollLeft",
5: "rollRight",
6: "ctrl",
7: "shift"
}, this.capsMultiplier = o ?? 10, this.shiftMultiplier = g ?? 5, this.ctrlMultiplier = l ?? 1 / 5, this.xr = c, this.keydown = {}, this.keycode = {}, document.addEventListener("keydown", (I) => {
this.keydown[I.key] = !0, this.keycode[I.code] = !0;
}), document.addEventListener("keyup", (I) => {
this.keydown[I.key] = !1, this.keycode[I.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 l, c;
if (!this.enable)
return;
const s = [new u.Vector2(), new u.Vector2()], n = navigator.getGamepads()[0];
n && (s[0].set(n.axes[0], n.axes[1]), s[1].set(n.axes[2], n.axes[3]));
const i = (n == null ? void 0 : n.buttons.map((I) => I.pressed)) || [], r = Array.from(((c = (l = this.xr) == null ? void 0 : l.getSession()) == null ? void 0 : c.inputSources) ?? []);
for (const I of r) {
const h = I.gamepad;
if (h)
switch (I.handedness) {
case "none": {
s[0].x += h.axes[0], s[0].y += h.axes[1], s[1].x += h.axes[2], s[1].y += h.axes[3];
break;
}
case "left": {
s[0].x += h.axes[2], s[0].y += h.axes[3];
break;
}
case "right": {
s[1].x += h.axes[2], s[1].y += h.axes[3];
break;
}
}
}
for (const I of s)
I.x = Math.abs(I.x) >= this.stickThreshold ? I.x : 0, I.y = Math.abs(I.y) >= this.stickThreshold ? I.y : 0;
const a = new u.Vector3(
s[1].x,
s[1].y,
0
).multiplyScalar(this.rotateSpeed);
for (const [I, h] of Object.entries(this.keycodeRotateMapping))
this.keycode[I] && a.add(h);
for (const I in this.gamepadMapping)
if (i[Number.parseInt(I)])
switch (this.gamepadMapping[I]) {
case "rollLeft":
a.z += 1;
break;
case "rollRight":
a.z -= 1;
break;
}
if (a.multiply(
new u.Vector3(this.rotateSpeed, this.rotateSpeed, this.rollSpeed)
), a.manhattanLength() > 0) {
a.multiplyScalar(A);
const I = new u.Euler().setFromQuaternion(
e.quaternion,
"YXZ"
);
I.y -= a.x, I.x = Math.max(
-Math.PI / 2,
Math.min(Math.PI / 2, I.x - a.y)
), I.z = Math.max(-Math.PI, Math.min(Math.PI, I.z + a.z)), e.quaternion.setFromEuler(I);
}
const o = new u.Vector3(s[0].x, 0, s[0].y);
for (const [I, h] of Object.entries(this.keycodeMoveMapping))
this.keycode[I] && o.add(h);
let g = 1;
this.keydown.CapsLock && (g *= this.capsMultiplier), (this.keycode.ShiftLeft || this.keycode.ShiftRight) && (g *= this.shiftMultiplier), (this.keycode.ControlLeft || this.keycode.ControlRight) && (g *= this.ctrlMultiplier);
for (const I in this.gamepadMapping)
if (i[Number.parseInt(I)])
switch (this.gamepadMapping[I]) {
case "shift":
g *= this.shiftMultiplier;
break;
case "ctrl":
g *= this.ctrlMultiplier;
break;
}
o.applyQuaternion(e.quaternion), e.position.add(
o.multiplyScalar(this.moveSpeed * g * A)
);
}
}
class qh {
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: n,
// Swap the direction of rotation and sliding (default: false)
swapRotateSlide: i,
// Reverse the direction of rotation (default: false)
reverseRotate: r,
// Reverse the direction of sliding (default: false)
reverseSlide: a,
// Reverse the direction of swipe gestures (default: false)
reverseSwipe: o,
// Reverse the direction of scroll wheel movement (default: false)
reverseScroll: g,
// Inertia factor for movement (default: DEFAULT_MOVE_INERTIA)
moveInertia: l,
// Inertia factor for rotation (default: DEFAULT_ROTATE_INERTIA)
rotateInertia: c,
// Pointer rolling scale factor (default: DEFAULT_POINTER_ROLL_SCALE)
pointerRollScale: I,
// Callback for double press events (default: () => {})
doublePress: h
}) {
this.enable = !0, this.canvas = A, this.rotateSpeed = e ?? Mh, this.slideSpeed = s ?? vh, this.scrollSpeed = n ?? bh, this.swapRotateSlide = i ?? !1, this.reverseRotate = r ?? !1, this.reverseSlide = a ?? !1, this.reverseSwipe = o ?? !1, this.reverseScroll = g ?? !1, this.moveInertia = l ?? Nh, this.rotateInertia = c ?? Fh, this.pointerRollScale = I ?? Uh, this.doublePress = h ?? (() => {
}), this.doublePressLimitMs = Rh, this.doublePressDistance = Yh, this.lastUp = null, this.rotating = null, this.sliding = null, this.dualPress = !1, this.scroll = new u.Vector3(), this.rotateVelocity = new u.Vector3(), this.moveVelocity = new u.Vector3(), A.addEventListener("pointerdown", (C) => {
const B = this.getPointerPosition(C), Q = B.clone(), f = B.clone(), p = !this.swapRotateSlide && !this.rotating && (C.pointerType !== "mouse" || C.button === 0) || this.swapRotateSlide && this.sliding && !this.rotating && (C.pointerType !== "mouse" || C.button === 1), { pointerId: d, timeStamp: y } = C;
if (p)
this.rotating = { initial: Q, last: f, position: B, pointerId: d, timeStamp: y }, A.setPointerCapture(C.pointerId), this.dualPress = !1;
else if (!this.sliding) {
const D = C.pointerType === "mouse" ? C.button : void 0;
this.sliding = {
initial: Q,
last: f,
position: B,
pointerId: d,
button: D,
timeStamp: y
}, A.setPointerCapture(C.pointerId), this.dualPress = this.rotating != null && y - this.rotating.timeStamp < Gh;
}
});
const E = (C) => {
var f, p;
((f = this.rotating) == null ? void 0 : f.pointerId) === C.pointerId ? (this.rotating = null, A.releasePointerCapture(C.pointerId), this.dualPress && this.sliding && (A.releasePointerCapture(this.sliding.pointerId), this.sliding = null)) : ((p = this.sliding) == null ? void 0 : p.pointerId) === C.pointerId && (this.sliding = null, A.releasePointerCapture(C.pointerId), this.dualPress && this.rotating && (A.releasePointerCapture(this.rotating.pointerId), this.rotating = null));
const B = this.getPointerPosition(C), Q = this.lastUp;
if (this.lastUp = { position: B, time: C.timeStamp }, Q && Q.position.distanceTo(B) < this.doublePressDistance) {
const y = C.timeStamp - Q.time;
y < this.doublePressLimitMs && (this.lastUp = null, this.doublePress({ position: B, intervalMs: y }));
}
};
document.addEventListener("pointerup", E), document.addEventListener("pointercancel", E), document.addEventListener("pointermove", (C) => {
var B, Q;
((B = this.rotating) == null ? void 0 : B.pointerId) === C.pointerId ? this.rotating.position = this.getPointerPosition(C) : ((Q = this.sliding) == null ? void 0 : Q.pointerId) === C.pointerId && (this.sliding.position = this.getPointerPosition(C));
}), A.addEventListener("contextmenu", (C) => {
C.preventDefault();
}), A.addEventListener("wheel", (C) => {
this.scroll.add(
new u.Vector3(C.deltaX, C.deltaY, C.deltaZ)
), C.preventDefault();
});
}
getPointerPosition(A) {
const e = this.canvas.getBoundingClientRect();
return new u.Vector2(
A.clientX - e.left,
A.clientY - e.top
);
}
update(A, e) {
if (!this.enable)
return;
if (this.dualPress && this.rotating && this.sliding) {
const n = [
this.rotating.position.clone().sub(this.rotating.last),
this.sliding.position.clone().sub(this.sliding.last)
], i = n[0].dot(n[1]);
if (i >= 0.2) {
const r = n[0].clone().add(n[1]), a = new u.Vector3(r.x, -r.y, 0);
a.multiplyScalar(this.slideSpeed * (this.reverseSwipe ? 1 : -1)), a.applyQuaternion(e.quaternion), e.position.add(a), this.moveVelocity = a.clone().multiplyScalar(1 / A);
} else if (i <= -0.2) {
const r = this.sliding.last.clone().sub(this.rotating.last), a = r.length();
r.multiplyScalar(1 / a).normalize();
const o = new u.Vector2(-r.y, r.x), g = [n[0].dot(r), n[1].dot(r)], l = [n[0].dot(o), n[1].dot(o)], c = this.rotating.last.clone().add(this.sliding.last).multiplyScalar(0.5);
let I = new u.Vector3();
if (e instanceof u.Camera) {
const f = new u.Vector2(
c.x / this.canvas.clientWidth * 2 - 1,
-(c.y / this.canvas.clientHeight) * 2 + 1
), p = new u.Raycaster();
p.setFromCamera(f, e), I = p.ray.direction;
}
const h = g[1] - g[0], E = I.multiplyScalar(h * this.slideSpeed);
e.position.add(E), this.moveVelocity = E.clone().multiplyScalar(1 / A);
const C = [
Math.atan(l[0] / (-0.5 * a)),
Math.atan(l[1] / (0.5 * a))
], B = 0.5 * (C[0] + C[1]) * this.pointerRollScale, Q = new u.Euler().setFromQuaternion(
e.quaternion,
"YXZ"
);
Q.z = Math.max(
-Math.PI,
Math.min(Math.PI, Q.z + 0.5 * B)
), e.quaternion.setFromEuler(Q);
}
this.rotating.last.copy(this.rotating.position), this.sliding.last.copy(this.sliding.position);
} else {
const n = new u.Vector3();
if (this.rotating && !this.dualPress) {
const r = this.rotating.position.clone().sub(this.rotating.last);
this.rotating.last.copy(this.rotating.position), n.set(r.x, r.y, 0), n.multiplyScalar(this.rotateSpeed * (this.reverseRotate ? -1 : 1)), this.rotateVelocity = n.clone().multiplyScalar(1 / A);
} else
this.rotateVelocity.multiplyScalar(
Math.exp(-A / this.rotateInertia)
), n.addScaledVector(this.rotateVelocity, A);
const i = new u.Euler().setFromQuaternion(
e.quaternion,
"YXZ"
);
if (i.y -= n.x, i.x = Math.max(
-Math.PI / 2,
Math.min(Math.PI / 2, i.x - n.y)
), i.z *= Math.exp(-0 * A), e.quaternion.setFromEuler(i), this.sliding && !this.dualPress) {
const r = this.sliding.position.clone().sub(this.sliding.last);
this.sliding.last.copy(this.sliding.position);
const a = this.sliding.button !== 2 ? new u.Vector3(r.x, 0, r.y) : new u.Vector3(r.x, -r.y, 0);
a.multiplyScalar(this.slideSpeed * (this.reverseSlide ? -1 : 1)), a.applyQuaternion(e.quaternion), e.position.add(a), this.moveVelocity = a.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 {
oC as FINGER_TIPS,
Hh as FpsMovement,
Ze as HANDS,
co as Hand,
gC as HandMovement,
oo as JOINT_IDS,
rC as JOINT_INDEX,
ne as JOINT_RADIUS,
mh as JOINT_SEGMENTS,
xh as JOINT_SEGMENT_STEPS,
aC as JOINT_TIPS,
Is as JointEnum,
GA as LN_SCALE_MAX,
UA as LN_SCALE_MIN,
iC as NUM_JOINTS,
VA as PackedSplats,
ue as PlyReader,
qh as PointerControls,
le as Readback,
Ke as RgbaArray,
og as Sint8ToFloat,
lC as SparkControls,
Be as SparkRenderer,
Ce as SparkViewpoint,
ke as SplatAccumulator,
Ie as SplatEdit,
pu as SplatEditRgbaBlendMode,
du as SplatEditSdf,
Eu as SplatEditSdfType,
yu as SplatEdits,
_t as SplatFileType,
Vt as SplatGenerator,
Vu as SplatLoader,
pt as SplatMesh,
mu as SplatModifier,
Oh as SplatSkinning,
xt as SplatTransformer,
ch as SpzReader,
et as SpzWriter,
ag as Uint8ToFloat,
Pe as VRButton,
cC as XrHands,
Wh as constructAxes,
jh as constructGrid,
AC as constructSpherePoints,
$h as defines,
Ph as dyno,
Mg as flipPixels,
ie as floatToSint8,
FA as floatToUint8,
wA as fromHalf,
sC as generators,
Wa as getSplatFileType,
eC as imageSplats,
Sg as isAndroid,
xg as isMobile,
Dg as isOculus,
Zh as isPcSogs,
nC as modifiers,
vg as pixelsToPngUrl,
Ye as setPackedSplat,
tC as textSplats,
Ct as toHalf,
Xh as transcodeSpz,
Je as unpackSplat,
to as unpackSplats,
Vh as utils
};
//# sourceMappingURL=spark.module.min.js.map