babylon.glTF2Serializer.js 255 KB

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  1. (function webpackUniversalModuleDefinition(root, factory) {
  2. if(typeof exports === 'object' && typeof module === 'object')
  3. module.exports = factory(require("babylonjs"));
  4. else if(typeof define === 'function' && define.amd)
  5. define("babylonjs-serializers", ["babylonjs"], factory);
  6. else if(typeof exports === 'object')
  7. exports["babylonjs-serializers"] = factory(require("babylonjs"));
  8. else
  9. root["SERIALIZERS"] = factory(root["BABYLON"]);
  10. })((typeof self !== "undefined" ? self : typeof global !== "undefined" ? global : this), function(__WEBPACK_EXTERNAL_MODULE_babylonjs_Maths_math_vector__) {
  11. return /******/ (function(modules) { // webpackBootstrap
  12. /******/ // The module cache
  13. /******/ var installedModules = {};
  14. /******/
  15. /******/ // The require function
  16. /******/ function __webpack_require__(moduleId) {
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  18. /******/ // Check if module is in cache
  19. /******/ if(installedModules[moduleId]) {
  20. /******/ return installedModules[moduleId].exports;
  21. /******/ }
  22. /******/ // Create a new module (and put it into the cache)
  23. /******/ var module = installedModules[moduleId] = {
  24. /******/ i: moduleId,
  25. /******/ l: false,
  26. /******/ exports: {}
  27. /******/ };
  28. /******/
  29. /******/ // Execute the module function
  30. /******/ modules[moduleId].call(module.exports, module, module.exports, __webpack_require__);
  31. /******/
  32. /******/ // Flag the module as loaded
  33. /******/ module.l = true;
  34. /******/
  35. /******/ // Return the exports of the module
  36. /******/ return module.exports;
  37. /******/ }
  38. /******/
  39. /******/
  40. /******/ // expose the modules object (__webpack_modules__)
  41. /******/ __webpack_require__.m = modules;
  42. /******/
  43. /******/ // expose the module cache
  44. /******/ __webpack_require__.c = installedModules;
  45. /******/
  46. /******/ // define getter function for harmony exports
  47. /******/ __webpack_require__.d = function(exports, name, getter) {
  48. /******/ if(!__webpack_require__.o(exports, name)) {
  49. /******/ Object.defineProperty(exports, name, { enumerable: true, get: getter });
  50. /******/ }
  51. /******/ };
  52. /******/
  53. /******/ // define __esModule on exports
  54. /******/ __webpack_require__.r = function(exports) {
  55. /******/ if(typeof Symbol !== 'undefined' && Symbol.toStringTag) {
  56. /******/ Object.defineProperty(exports, Symbol.toStringTag, { value: 'Module' });
  57. /******/ }
  58. /******/ Object.defineProperty(exports, '__esModule', { value: true });
  59. /******/ };
  60. /******/
  61. /******/ // create a fake namespace object
  62. /******/ // mode & 1: value is a module id, require it
  63. /******/ // mode & 2: merge all properties of value into the ns
  64. /******/ // mode & 4: return value when already ns object
  65. /******/ // mode & 8|1: behave like require
  66. /******/ __webpack_require__.t = function(value, mode) {
  67. /******/ if(mode & 1) value = __webpack_require__(value);
  68. /******/ if(mode & 8) return value;
  69. /******/ if((mode & 4) && typeof value === 'object' && value && value.__esModule) return value;
  70. /******/ var ns = Object.create(null);
  71. /******/ __webpack_require__.r(ns);
  72. /******/ Object.defineProperty(ns, 'default', { enumerable: true, value: value });
  73. /******/ if(mode & 2 && typeof value != 'string') for(var key in value) __webpack_require__.d(ns, key, function(key) { return value[key]; }.bind(null, key));
  74. /******/ return ns;
  75. /******/ };
  76. /******/
  77. /******/ // getDefaultExport function for compatibility with non-harmony modules
  78. /******/ __webpack_require__.n = function(module) {
  79. /******/ var getter = module && module.__esModule ?
  80. /******/ function getDefault() { return module['default']; } :
  81. /******/ function getModuleExports() { return module; };
  82. /******/ __webpack_require__.d(getter, 'a', getter);
  83. /******/ return getter;
  84. /******/ };
  85. /******/
  86. /******/ // Object.prototype.hasOwnProperty.call
  87. /******/ __webpack_require__.o = function(object, property) { return Object.prototype.hasOwnProperty.call(object, property); };
  88. /******/
  89. /******/ // __webpack_public_path__
  90. /******/ __webpack_require__.p = "";
  91. /******/
  92. /******/
  93. /******/ // Load entry module and return exports
  94. /******/ return __webpack_require__(__webpack_require__.s = "./legacy/legacy-glTF2Serializer.ts");
  95. /******/ })
  96. /************************************************************************/
  97. /******/ ({
  98. /***/ "../../node_modules/tslib/tslib.es6.js":
  99. /*!*****************************************************************!*\
  100. !*** C:/Dev/Babylon/Babylon.js/node_modules/tslib/tslib.es6.js ***!
  101. \*****************************************************************/
  102. /*! exports provided: __extends, __assign, __rest, __decorate, __param, __metadata, __awaiter, __generator, __exportStar, __values, __read, __spread, __spreadArrays, __await, __asyncGenerator, __asyncDelegator, __asyncValues, __makeTemplateObject, __importStar, __importDefault */
  103. /***/ (function(module, __webpack_exports__, __webpack_require__) {
  104. "use strict";
  105. __webpack_require__.r(__webpack_exports__);
  106. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__extends", function() { return __extends; });
  107. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__assign", function() { return __assign; });
  108. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__rest", function() { return __rest; });
  109. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__decorate", function() { return __decorate; });
  110. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__param", function() { return __param; });
  111. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__metadata", function() { return __metadata; });
  112. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__awaiter", function() { return __awaiter; });
  113. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__generator", function() { return __generator; });
  114. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__exportStar", function() { return __exportStar; });
  115. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__values", function() { return __values; });
  116. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__read", function() { return __read; });
  117. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__spread", function() { return __spread; });
  118. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__spreadArrays", function() { return __spreadArrays; });
  119. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__await", function() { return __await; });
  120. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__asyncGenerator", function() { return __asyncGenerator; });
  121. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__asyncDelegator", function() { return __asyncDelegator; });
  122. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__asyncValues", function() { return __asyncValues; });
  123. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__makeTemplateObject", function() { return __makeTemplateObject; });
  124. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__importStar", function() { return __importStar; });
  125. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__importDefault", function() { return __importDefault; });
  126. /*! *****************************************************************************
  127. Copyright (c) Microsoft Corporation. All rights reserved.
  128. Licensed under the Apache License, Version 2.0 (the "License"); you may not use
  129. this file except in compliance with the License. You may obtain a copy of the
  130. License at http://www.apache.org/licenses/LICENSE-2.0
  131. THIS CODE IS PROVIDED ON AN *AS IS* BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
  132. KIND, EITHER EXPRESS OR IMPLIED, INCLUDING WITHOUT LIMITATION ANY IMPLIED
  133. WARRANTIES OR CONDITIONS OF TITLE, FITNESS FOR A PARTICULAR PURPOSE,
  134. MERCHANTABLITY OR NON-INFRINGEMENT.
  135. See the Apache Version 2.0 License for specific language governing permissions
  136. and limitations under the License.
  137. ***************************************************************************** */
  138. /* global Reflect, Promise */
  139. var extendStatics = function(d, b) {
  140. extendStatics = Object.setPrototypeOf ||
  141. ({ __proto__: [] } instanceof Array && function (d, b) { d.__proto__ = b; }) ||
  142. function (d, b) { for (var p in b) if (b.hasOwnProperty(p)) d[p] = b[p]; };
  143. return extendStatics(d, b);
  144. };
  145. function __extends(d, b) {
  146. extendStatics(d, b);
  147. function __() { this.constructor = d; }
  148. d.prototype = b === null ? Object.create(b) : (__.prototype = b.prototype, new __());
  149. }
  150. var __assign = function() {
  151. __assign = Object.assign || function __assign(t) {
  152. for (var s, i = 1, n = arguments.length; i < n; i++) {
  153. s = arguments[i];
  154. for (var p in s) if (Object.prototype.hasOwnProperty.call(s, p)) t[p] = s[p];
  155. }
  156. return t;
  157. }
  158. return __assign.apply(this, arguments);
  159. }
  160. function __rest(s, e) {
  161. var t = {};
  162. for (var p in s) if (Object.prototype.hasOwnProperty.call(s, p) && e.indexOf(p) < 0)
  163. t[p] = s[p];
  164. if (s != null && typeof Object.getOwnPropertySymbols === "function")
  165. for (var i = 0, p = Object.getOwnPropertySymbols(s); i < p.length; i++) {
  166. if (e.indexOf(p[i]) < 0 && Object.prototype.propertyIsEnumerable.call(s, p[i]))
  167. t[p[i]] = s[p[i]];
  168. }
  169. return t;
  170. }
  171. function __decorate(decorators, target, key, desc) {
  172. var c = arguments.length, r = c < 3 ? target : desc === null ? desc = Object.getOwnPropertyDescriptor(target, key) : desc, d;
  173. if (typeof Reflect === "object" && typeof Reflect.decorate === "function") r = Reflect.decorate(decorators, target, key, desc);
  174. else for (var i = decorators.length - 1; i >= 0; i--) if (d = decorators[i]) r = (c < 3 ? d(r) : c > 3 ? d(target, key, r) : d(target, key)) || r;
  175. return c > 3 && r && Object.defineProperty(target, key, r), r;
  176. }
  177. function __param(paramIndex, decorator) {
  178. return function (target, key) { decorator(target, key, paramIndex); }
  179. }
  180. function __metadata(metadataKey, metadataValue) {
  181. if (typeof Reflect === "object" && typeof Reflect.metadata === "function") return Reflect.metadata(metadataKey, metadataValue);
  182. }
  183. function __awaiter(thisArg, _arguments, P, generator) {
  184. return new (P || (P = Promise))(function (resolve, reject) {
  185. function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } }
  186. function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } }
  187. function step(result) { result.done ? resolve(result.value) : new P(function (resolve) { resolve(result.value); }).then(fulfilled, rejected); }
  188. step((generator = generator.apply(thisArg, _arguments || [])).next());
  189. });
  190. }
  191. function __generator(thisArg, body) {
  192. var _ = { label: 0, sent: function() { if (t[0] & 1) throw t[1]; return t[1]; }, trys: [], ops: [] }, f, y, t, g;
  193. return g = { next: verb(0), "throw": verb(1), "return": verb(2) }, typeof Symbol === "function" && (g[Symbol.iterator] = function() { return this; }), g;
  194. function verb(n) { return function (v) { return step([n, v]); }; }
  195. function step(op) {
  196. if (f) throw new TypeError("Generator is already executing.");
  197. while (_) try {
  198. if (f = 1, y && (t = op[0] & 2 ? y["return"] : op[0] ? y["throw"] || ((t = y["return"]) && t.call(y), 0) : y.next) && !(t = t.call(y, op[1])).done) return t;
  199. if (y = 0, t) op = [op[0] & 2, t.value];
  200. switch (op[0]) {
  201. case 0: case 1: t = op; break;
  202. case 4: _.label++; return { value: op[1], done: false };
  203. case 5: _.label++; y = op[1]; op = [0]; continue;
  204. case 7: op = _.ops.pop(); _.trys.pop(); continue;
  205. default:
  206. if (!(t = _.trys, t = t.length > 0 && t[t.length - 1]) && (op[0] === 6 || op[0] === 2)) { _ = 0; continue; }
  207. if (op[0] === 3 && (!t || (op[1] > t[0] && op[1] < t[3]))) { _.label = op[1]; break; }
  208. if (op[0] === 6 && _.label < t[1]) { _.label = t[1]; t = op; break; }
  209. if (t && _.label < t[2]) { _.label = t[2]; _.ops.push(op); break; }
  210. if (t[2]) _.ops.pop();
  211. _.trys.pop(); continue;
  212. }
  213. op = body.call(thisArg, _);
  214. } catch (e) { op = [6, e]; y = 0; } finally { f = t = 0; }
  215. if (op[0] & 5) throw op[1]; return { value: op[0] ? op[1] : void 0, done: true };
  216. }
  217. }
  218. function __exportStar(m, exports) {
  219. for (var p in m) if (!exports.hasOwnProperty(p)) exports[p] = m[p];
  220. }
  221. function __values(o) {
  222. var m = typeof Symbol === "function" && o[Symbol.iterator], i = 0;
  223. if (m) return m.call(o);
  224. return {
  225. next: function () {
  226. if (o && i >= o.length) o = void 0;
  227. return { value: o && o[i++], done: !o };
  228. }
  229. };
  230. }
  231. function __read(o, n) {
  232. var m = typeof Symbol === "function" && o[Symbol.iterator];
  233. if (!m) return o;
  234. var i = m.call(o), r, ar = [], e;
  235. try {
  236. while ((n === void 0 || n-- > 0) && !(r = i.next()).done) ar.push(r.value);
  237. }
  238. catch (error) { e = { error: error }; }
  239. finally {
  240. try {
  241. if (r && !r.done && (m = i["return"])) m.call(i);
  242. }
  243. finally { if (e) throw e.error; }
  244. }
  245. return ar;
  246. }
  247. function __spread() {
  248. for (var ar = [], i = 0; i < arguments.length; i++)
  249. ar = ar.concat(__read(arguments[i]));
  250. return ar;
  251. }
  252. function __spreadArrays() {
  253. for (var s = 0, i = 0, il = arguments.length; i < il; i++) s += arguments[i].length;
  254. for (var r = Array(s), k = 0, i = 0; i < il; i++)
  255. for (var a = arguments[i], j = 0, jl = a.length; j < jl; j++, k++)
  256. r[k] = a[j];
  257. return r;
  258. };
  259. function __await(v) {
  260. return this instanceof __await ? (this.v = v, this) : new __await(v);
  261. }
  262. function __asyncGenerator(thisArg, _arguments, generator) {
  263. if (!Symbol.asyncIterator) throw new TypeError("Symbol.asyncIterator is not defined.");
  264. var g = generator.apply(thisArg, _arguments || []), i, q = [];
  265. return i = {}, verb("next"), verb("throw"), verb("return"), i[Symbol.asyncIterator] = function () { return this; }, i;
  266. function verb(n) { if (g[n]) i[n] = function (v) { return new Promise(function (a, b) { q.push([n, v, a, b]) > 1 || resume(n, v); }); }; }
  267. function resume(n, v) { try { step(g[n](v)); } catch (e) { settle(q[0][3], e); } }
  268. function step(r) { r.value instanceof __await ? Promise.resolve(r.value.v).then(fulfill, reject) : settle(q[0][2], r); }
  269. function fulfill(value) { resume("next", value); }
  270. function reject(value) { resume("throw", value); }
  271. function settle(f, v) { if (f(v), q.shift(), q.length) resume(q[0][0], q[0][1]); }
  272. }
  273. function __asyncDelegator(o) {
  274. var i, p;
  275. return i = {}, verb("next"), verb("throw", function (e) { throw e; }), verb("return"), i[Symbol.iterator] = function () { return this; }, i;
  276. function verb(n, f) { i[n] = o[n] ? function (v) { return (p = !p) ? { value: __await(o[n](v)), done: n === "return" } : f ? f(v) : v; } : f; }
  277. }
  278. function __asyncValues(o) {
  279. if (!Symbol.asyncIterator) throw new TypeError("Symbol.asyncIterator is not defined.");
  280. var m = o[Symbol.asyncIterator], i;
  281. return m ? m.call(o) : (o = typeof __values === "function" ? __values(o) : o[Symbol.iterator](), i = {}, verb("next"), verb("throw"), verb("return"), i[Symbol.asyncIterator] = function () { return this; }, i);
  282. function verb(n) { i[n] = o[n] && function (v) { return new Promise(function (resolve, reject) { v = o[n](v), settle(resolve, reject, v.done, v.value); }); }; }
  283. function settle(resolve, reject, d, v) { Promise.resolve(v).then(function(v) { resolve({ value: v, done: d }); }, reject); }
  284. }
  285. function __makeTemplateObject(cooked, raw) {
  286. if (Object.defineProperty) { Object.defineProperty(cooked, "raw", { value: raw }); } else { cooked.raw = raw; }
  287. return cooked;
  288. };
  289. function __importStar(mod) {
  290. if (mod && mod.__esModule) return mod;
  291. var result = {};
  292. if (mod != null) for (var k in mod) if (Object.hasOwnProperty.call(mod, k)) result[k] = mod[k];
  293. result.default = mod;
  294. return result;
  295. }
  296. function __importDefault(mod) {
  297. return (mod && mod.__esModule) ? mod : { default: mod };
  298. }
  299. /***/ }),
  300. /***/ "../../node_modules/webpack/buildin/global.js":
  301. /*!***********************************!*\
  302. !*** (webpack)/buildin/global.js ***!
  303. \***********************************/
  304. /*! no static exports found */
  305. /***/ (function(module, exports) {
  306. var g;
  307. // This works in non-strict mode
  308. g = (function() {
  309. return this;
  310. })();
  311. try {
  312. // This works if eval is allowed (see CSP)
  313. g = g || new Function("return this")();
  314. } catch (e) {
  315. // This works if the window reference is available
  316. if (typeof window === "object") g = window;
  317. }
  318. // g can still be undefined, but nothing to do about it...
  319. // We return undefined, instead of nothing here, so it's
  320. // easier to handle this case. if(!global) { ...}
  321. module.exports = g;
  322. /***/ }),
  323. /***/ "./glTF/2.0/Extensions/KHR_lights_punctual.ts":
  324. /*!****************************************************!*\
  325. !*** ./glTF/2.0/Extensions/KHR_lights_punctual.ts ***!
  326. \****************************************************/
  327. /*! exports provided: KHR_lights_punctual */
  328. /***/ (function(module, __webpack_exports__, __webpack_require__) {
  329. "use strict";
  330. __webpack_require__.r(__webpack_exports__);
  331. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "KHR_lights_punctual", function() { return KHR_lights_punctual; });
  332. /* harmony import */ var babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__ = __webpack_require__(/*! babylonjs/Maths/math.vector */ "babylonjs/Maths/math.vector");
  333. /* harmony import */ var babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0___default = /*#__PURE__*/__webpack_require__.n(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__);
  334. /* harmony import */ var _glTFExporter__WEBPACK_IMPORTED_MODULE_1__ = __webpack_require__(/*! ../glTFExporter */ "./glTF/2.0/glTFExporter.ts");
  335. /* harmony import */ var _glTFUtilities__WEBPACK_IMPORTED_MODULE_2__ = __webpack_require__(/*! ../glTFUtilities */ "./glTF/2.0/glTFUtilities.ts");
  336. var NAME = "KHR_lights_punctual";
  337. var LightType;
  338. (function (LightType) {
  339. LightType["DIRECTIONAL"] = "directional";
  340. LightType["POINT"] = "point";
  341. LightType["SPOT"] = "spot";
  342. })(LightType || (LightType = {}));
  343. /**
  344. * [Specification](https://github.com/KhronosGroup/glTF/blob/master/extensions/2.0/Khronos/KHR_lights_punctual/README.md)
  345. */
  346. var KHR_lights_punctual = /** @class */ (function () {
  347. /** @hidden */
  348. function KHR_lights_punctual(exporter) {
  349. /** The name of this extension. */
  350. this.name = NAME;
  351. /** Defines whether this extension is enabled. */
  352. this.enabled = true;
  353. /** Defines whether this extension is required */
  354. this.required = false;
  355. this._exporter = exporter;
  356. }
  357. /** @hidden */
  358. KHR_lights_punctual.prototype.dispose = function () {
  359. delete this._lights;
  360. };
  361. Object.defineProperty(KHR_lights_punctual.prototype, "wasUsed", {
  362. /** @hidden */
  363. get: function () {
  364. return !!this._lights;
  365. },
  366. enumerable: true,
  367. configurable: true
  368. });
  369. /** @hidden */
  370. KHR_lights_punctual.prototype.onExporting = function () {
  371. this._exporter._glTF.extensions[NAME] = this._lights;
  372. };
  373. /**
  374. * Define this method to modify the default behavior when exporting a node
  375. * @param context The context when exporting the node
  376. * @param node glTF node
  377. * @param babylonNode BabylonJS node
  378. * @param nodeMap Node mapping of unique id to glTF node index
  379. * @returns nullable INode promise
  380. */
  381. KHR_lights_punctual.prototype.postExportNodeAsync = function (context, node, babylonNode, nodeMap) {
  382. var _this = this;
  383. return new Promise(function (resolve, reject) {
  384. if (node && babylonNode instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["ShadowLight"]) {
  385. var babylonLight = babylonNode;
  386. var light = void 0;
  387. var lightType = (babylonLight.getTypeID() == babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Light"].LIGHTTYPEID_POINTLIGHT ? LightType.POINT : (babylonLight.getTypeID() == babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Light"].LIGHTTYPEID_DIRECTIONALLIGHT ? LightType.DIRECTIONAL : (babylonLight.getTypeID() == babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Light"].LIGHTTYPEID_SPOTLIGHT ? LightType.SPOT : null)));
  388. if (lightType == null) {
  389. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Logger"].Warn(context + ": Light " + babylonLight.name + " is not supported in " + NAME);
  390. }
  391. else {
  392. var lightPosition = babylonLight.position.clone();
  393. var convertToRightHandedSystem = _this._exporter._convertToRightHandedSystemMap[babylonNode.uniqueId];
  394. if (!lightPosition.equals(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector3"].Zero())) {
  395. if (convertToRightHandedSystem) {
  396. _glTFUtilities__WEBPACK_IMPORTED_MODULE_2__["_GLTFUtilities"]._GetRightHandedPositionVector3FromRef(lightPosition);
  397. }
  398. node.translation = lightPosition.asArray();
  399. }
  400. if (lightType !== LightType.POINT) {
  401. var localAxis = babylonLight.direction;
  402. var yaw = -Math.atan2(localAxis.z * (_this._exporter._babylonScene.useRightHandedSystem ? -1 : 1), localAxis.x) + Math.PI / 2;
  403. var len = Math.sqrt(localAxis.x * localAxis.x + localAxis.z * localAxis.z);
  404. var pitch = -Math.atan2(localAxis.y, len);
  405. var lightRotationQuaternion = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].RotationYawPitchRoll(yaw, pitch, 0);
  406. if (convertToRightHandedSystem) {
  407. _glTFUtilities__WEBPACK_IMPORTED_MODULE_2__["_GLTFUtilities"]._GetRightHandedQuaternionFromRef(lightRotationQuaternion);
  408. }
  409. if (!lightRotationQuaternion.equals(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].Identity())) {
  410. node.rotation = lightRotationQuaternion.asArray();
  411. }
  412. }
  413. if (babylonLight.falloffType !== babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Light"].FALLOFF_GLTF) {
  414. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Logger"].Warn(context + ": Light falloff for " + babylonLight.name + " does not match the " + NAME + " specification!");
  415. }
  416. light = {
  417. type: lightType
  418. };
  419. if (!babylonLight.diffuse.equals(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Color3"].White())) {
  420. light.color = babylonLight.diffuse.asArray();
  421. }
  422. if (babylonLight.intensity !== 1.0) {
  423. light.intensity = babylonLight.intensity;
  424. }
  425. if (babylonLight.range !== Number.MAX_VALUE) {
  426. light.range = babylonLight.range;
  427. }
  428. if (lightType === LightType.SPOT) {
  429. var babylonSpotLight = babylonLight;
  430. if (babylonSpotLight.angle !== Math.PI / 2.0) {
  431. if (light.spot == null) {
  432. light.spot = {};
  433. }
  434. light.spot.outerConeAngle = babylonSpotLight.angle / 2.0;
  435. }
  436. if (babylonSpotLight.innerAngle !== 0) {
  437. if (light.spot == null) {
  438. light.spot = {};
  439. }
  440. light.spot.innerConeAngle = babylonSpotLight.innerAngle / 2.0;
  441. }
  442. }
  443. if (_this._lights == null) {
  444. _this._lights = {
  445. lights: []
  446. };
  447. }
  448. _this._lights.lights.push(light);
  449. var lightReference = {
  450. light: _this._lights.lights.length - 1
  451. };
  452. // Avoid duplicating the Light's parent node if possible.
  453. var parentBabylonNode = babylonNode.parent;
  454. if (parentBabylonNode && parentBabylonNode.getChildren().length == 1) {
  455. var parentNode = _this._exporter._nodes[nodeMap[parentBabylonNode.uniqueId]];
  456. if (parentNode) {
  457. var parentNodeLocalMatrix = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["TmpVectors"].Matrix[0];
  458. var parentInvertNodeLocalMatrix = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["TmpVectors"].Matrix[1];
  459. var parentNodeLocalTranslation = parentNode.translation ? new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector3"](parentNode.translation[0], parentNode.translation[1], parentNode.translation[2]) : babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector3"].Zero();
  460. var parentNodeLocalRotation = parentNode.rotation ? new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"](parentNode.rotation[0], parentNode.rotation[1], parentNode.rotation[2], parentNode.rotation[3]) : babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].Identity();
  461. var parentNodeLocalScale = parentNode.scale ? new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector3"](parentNode.scale[0], parentNode.scale[1], parentNode.scale[2]) : babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector3"].One();
  462. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Matrix"].ComposeToRef(parentNodeLocalScale, parentNodeLocalRotation, parentNodeLocalTranslation, parentNodeLocalMatrix);
  463. parentNodeLocalMatrix.invertToRef(parentInvertNodeLocalMatrix);
  464. // Convert light local matrix to local matrix relative to grandparent, facing -Z
  465. var lightLocalMatrix = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["TmpVectors"].Matrix[2];
  466. var nodeLocalTranslation = node.translation ? new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector3"](node.translation[0], node.translation[1], node.translation[2]) : babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector3"].Zero();
  467. // Undo directional light positional offset
  468. if (babylonLight instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["DirectionalLight"]) {
  469. nodeLocalTranslation.subtractInPlace(_this._exporter._babylonScene.useRightHandedSystem ? babylonLight.direction : _glTFUtilities__WEBPACK_IMPORTED_MODULE_2__["_GLTFUtilities"]._GetRightHandedPositionVector3(babylonLight.direction));
  470. }
  471. var nodeLocalRotation = _this._exporter._babylonScene.useRightHandedSystem ? babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].Identity() : new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"](0, 1, 0, 0);
  472. if (node.rotation) {
  473. nodeLocalRotation.multiplyInPlace(new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"](node.rotation[0], node.rotation[1], node.rotation[2], node.rotation[3]));
  474. }
  475. var nodeLocalScale = node.scale ? new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector3"](node.scale[0], node.scale[1], node.scale[2]) : babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector3"].One();
  476. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Matrix"].ComposeToRef(nodeLocalScale, nodeLocalRotation, nodeLocalTranslation, lightLocalMatrix);
  477. lightLocalMatrix.multiplyToRef(parentInvertNodeLocalMatrix, lightLocalMatrix);
  478. var parentNewScale = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["TmpVectors"].Vector3[0];
  479. var parentNewRotationQuaternion = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["TmpVectors"].Quaternion[0];
  480. var parentNewTranslation = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["TmpVectors"].Vector3[1];
  481. lightLocalMatrix.decompose(parentNewScale, parentNewRotationQuaternion, parentNewTranslation);
  482. parentNode.scale = parentNewScale.asArray();
  483. parentNode.rotation = parentNewRotationQuaternion.asArray();
  484. parentNode.translation = parentNewTranslation.asArray();
  485. if (parentNode.extensions == null) {
  486. parentNode.extensions = {};
  487. }
  488. parentNode.extensions[NAME] = lightReference;
  489. // Do not export the original node
  490. resolve(undefined);
  491. return;
  492. }
  493. }
  494. if (node.extensions == null) {
  495. node.extensions = {};
  496. }
  497. node.extensions[NAME] = lightReference;
  498. }
  499. }
  500. resolve(node);
  501. });
  502. };
  503. return KHR_lights_punctual;
  504. }());
  505. _glTFExporter__WEBPACK_IMPORTED_MODULE_1__["_Exporter"].RegisterExtension(NAME, function (exporter) { return new KHR_lights_punctual(exporter); });
  506. /***/ }),
  507. /***/ "./glTF/2.0/Extensions/KHR_materials_sheen.ts":
  508. /*!****************************************************!*\
  509. !*** ./glTF/2.0/Extensions/KHR_materials_sheen.ts ***!
  510. \****************************************************/
  511. /*! exports provided: KHR_materials_sheen */
  512. /***/ (function(module, __webpack_exports__, __webpack_require__) {
  513. "use strict";
  514. __webpack_require__.r(__webpack_exports__);
  515. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "KHR_materials_sheen", function() { return KHR_materials_sheen; });
  516. /* harmony import */ var _glTFExporter__WEBPACK_IMPORTED_MODULE_0__ = __webpack_require__(/*! ../glTFExporter */ "./glTF/2.0/glTFExporter.ts");
  517. /* harmony import */ var babylonjs_Materials_PBR_pbrMaterial__WEBPACK_IMPORTED_MODULE_1__ = __webpack_require__(/*! babylonjs/Materials/PBR/pbrMaterial */ "babylonjs/Maths/math.vector");
  518. /* harmony import */ var babylonjs_Materials_PBR_pbrMaterial__WEBPACK_IMPORTED_MODULE_1___default = /*#__PURE__*/__webpack_require__.n(babylonjs_Materials_PBR_pbrMaterial__WEBPACK_IMPORTED_MODULE_1__);
  519. var NAME = "KHR_materials_sheen";
  520. /**
  521. * @hidden
  522. */
  523. var KHR_materials_sheen = /** @class */ (function () {
  524. function KHR_materials_sheen(exporter) {
  525. /** Name of this extension */
  526. this.name = NAME;
  527. /** Defines whether this extension is enabled */
  528. this.enabled = true;
  529. /** Defines whether this extension is required */
  530. this.required = false;
  531. /** Reference to the glTF exporter */
  532. this._textureInfos = [];
  533. this._exportedTextures = [];
  534. this._wasUsed = false;
  535. }
  536. KHR_materials_sheen.prototype.dispose = function () {
  537. this._textureInfos = [];
  538. this._exportedTextures = [];
  539. };
  540. Object.defineProperty(KHR_materials_sheen.prototype, "wasUsed", {
  541. /** @hidden */
  542. get: function () {
  543. return this._wasUsed;
  544. },
  545. enumerable: true,
  546. configurable: true
  547. });
  548. KHR_materials_sheen.prototype._getTextureIndex = function (babylonTexture) {
  549. var textureIndex = this._exportedTextures.indexOf(babylonTexture);
  550. if (textureIndex === -1 && babylonTexture.reservedDataStore) {
  551. textureIndex = this._exportedTextures.indexOf(babylonTexture.reservedDataStore.source);
  552. }
  553. return textureIndex;
  554. };
  555. KHR_materials_sheen.prototype.postExportTexture = function (context, textureInfo, babylonTexture) {
  556. var textureIndex = this._getTextureIndex(babylonTexture);
  557. if (textureIndex > -1) {
  558. this._textureInfos[textureIndex] = textureInfo;
  559. }
  560. };
  561. KHR_materials_sheen.prototype.postExportMaterialAdditionalTextures = function (context, node, babylonMaterial) {
  562. if (babylonMaterial instanceof babylonjs_Materials_PBR_pbrMaterial__WEBPACK_IMPORTED_MODULE_1__["PBRMaterial"]) {
  563. if (babylonMaterial.sheen.isEnabled && babylonMaterial.sheen.texture) {
  564. this._exportedTextures.push(babylonMaterial.sheen.texture);
  565. return [babylonMaterial.sheen.texture];
  566. }
  567. }
  568. return [];
  569. };
  570. KHR_materials_sheen.prototype.postExportMaterialAsync = function (context, node, babylonMaterial) {
  571. var _this = this;
  572. return new Promise(function (resolve, reject) {
  573. if (babylonMaterial instanceof babylonjs_Materials_PBR_pbrMaterial__WEBPACK_IMPORTED_MODULE_1__["PBRMaterial"]) {
  574. if (!babylonMaterial.sheen.isEnabled) {
  575. resolve(node);
  576. return;
  577. }
  578. _this._wasUsed = true;
  579. if (node.extensions == null) {
  580. node.extensions = {};
  581. }
  582. var sheenInfo = {
  583. colorFactor: babylonMaterial.sheen.color.asArray(),
  584. intensityFactor: babylonMaterial.sheen.intensity
  585. };
  586. if (babylonMaterial.sheen.texture) {
  587. var textureIndex = _this._getTextureIndex(babylonMaterial.sheen.texture);
  588. if (textureIndex > -1) {
  589. sheenInfo.colorIntensityTexture = _this._textureInfos[textureIndex];
  590. }
  591. }
  592. node.extensions[NAME] = sheenInfo;
  593. }
  594. resolve(node);
  595. });
  596. };
  597. return KHR_materials_sheen;
  598. }());
  599. _glTFExporter__WEBPACK_IMPORTED_MODULE_0__["_Exporter"].RegisterExtension(NAME, function (exporter) { return new KHR_materials_sheen(exporter); });
  600. /***/ }),
  601. /***/ "./glTF/2.0/Extensions/KHR_texture_transform.ts":
  602. /*!******************************************************!*\
  603. !*** ./glTF/2.0/Extensions/KHR_texture_transform.ts ***!
  604. \******************************************************/
  605. /*! exports provided: KHR_texture_transform */
  606. /***/ (function(module, __webpack_exports__, __webpack_require__) {
  607. "use strict";
  608. __webpack_require__.r(__webpack_exports__);
  609. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "KHR_texture_transform", function() { return KHR_texture_transform; });
  610. /* harmony import */ var babylonjs_Misc_tools__WEBPACK_IMPORTED_MODULE_0__ = __webpack_require__(/*! babylonjs/Misc/tools */ "babylonjs/Maths/math.vector");
  611. /* harmony import */ var babylonjs_Misc_tools__WEBPACK_IMPORTED_MODULE_0___default = /*#__PURE__*/__webpack_require__.n(babylonjs_Misc_tools__WEBPACK_IMPORTED_MODULE_0__);
  612. /* harmony import */ var _glTFExporter__WEBPACK_IMPORTED_MODULE_1__ = __webpack_require__(/*! ../glTFExporter */ "./glTF/2.0/glTFExporter.ts");
  613. /* harmony import */ var _shaders_textureTransform_fragment__WEBPACK_IMPORTED_MODULE_2__ = __webpack_require__(/*! ../shaders/textureTransform.fragment */ "./glTF/2.0/shaders/textureTransform.fragment.ts");
  614. var NAME = "KHR_texture_transform";
  615. /**
  616. * @hidden
  617. */
  618. var KHR_texture_transform = /** @class */ (function () {
  619. function KHR_texture_transform(exporter) {
  620. this._recordedTextures = [];
  621. /** Name of this extension */
  622. this.name = NAME;
  623. /** Defines whether this extension is enabled */
  624. this.enabled = true;
  625. /** Defines whether this extension is required */
  626. this.required = false;
  627. /** Reference to the glTF exporter */
  628. this._wasUsed = false;
  629. }
  630. KHR_texture_transform.prototype.dispose = function () {
  631. for (var _i = 0, _a = this._recordedTextures; _i < _a.length; _i++) {
  632. var texture = _a[_i];
  633. texture.dispose();
  634. }
  635. };
  636. Object.defineProperty(KHR_texture_transform.prototype, "wasUsed", {
  637. /** @hidden */
  638. get: function () {
  639. return this._wasUsed;
  640. },
  641. enumerable: true,
  642. configurable: true
  643. });
  644. KHR_texture_transform.prototype.postExportTexture = function (context, textureInfo, babylonTexture) {
  645. if (babylonTexture && babylonTexture.uRotationCenter === 0 && babylonTexture.vRotationCenter === 0) {
  646. var textureTransform = {};
  647. var transformIsRequired = false;
  648. if (babylonTexture.uOffset !== 0 || babylonTexture.vOffset !== 0) {
  649. textureTransform.offset = [babylonTexture.uOffset, babylonTexture.vOffset];
  650. transformIsRequired = true;
  651. }
  652. if (babylonTexture.uScale !== 1 || babylonTexture.vScale !== 1) {
  653. textureTransform.scale = [babylonTexture.uScale, babylonTexture.vScale];
  654. transformIsRequired = true;
  655. }
  656. if (babylonTexture.wAng !== 0) {
  657. textureTransform.rotation = babylonTexture.wAng;
  658. transformIsRequired = true;
  659. }
  660. if (babylonTexture.coordinatesIndex !== 0) {
  661. textureTransform.texCoord = babylonTexture.coordinatesIndex;
  662. transformIsRequired = true;
  663. }
  664. if (!transformIsRequired) {
  665. return;
  666. }
  667. this._wasUsed = true;
  668. if (!textureInfo.extensions) {
  669. textureInfo.extensions = {};
  670. }
  671. textureInfo.extensions[NAME] = textureTransform;
  672. }
  673. };
  674. KHR_texture_transform.prototype.preExportTextureAsync = function (context, babylonTexture, mimeType) {
  675. var _this = this;
  676. return new Promise(function (resolve, reject) {
  677. var scene = babylonTexture.getScene();
  678. if (!scene) {
  679. reject(context + ": \"scene\" is not defined for Babylon texture " + babylonTexture.name + "!");
  680. return;
  681. }
  682. var bakeTextureTransform = false;
  683. /*
  684. * The KHR_texture_transform schema only supports rotation around the origin.
  685. * the texture must be baked to preserve appearance.
  686. * see: https://github.com/KhronosGroup/glTF/tree/master/extensions/2.0/Khronos/KHR_texture_transform#gltf-schema-updates
  687. */
  688. if ((babylonTexture.uAng !== 0 || babylonTexture.wAng !== 0 || babylonTexture.vAng !== 0) && (babylonTexture.uRotationCenter !== 0 || babylonTexture.vRotationCenter !== 0)) {
  689. bakeTextureTransform = true;
  690. }
  691. if (!bakeTextureTransform) {
  692. resolve(babylonTexture);
  693. return;
  694. }
  695. return _this._textureTransformTextureAsync(babylonTexture, scene)
  696. .then(function (proceduralTexture) {
  697. resolve(proceduralTexture);
  698. })
  699. .catch(function (e) {
  700. reject(e);
  701. });
  702. });
  703. };
  704. /**
  705. * Transform the babylon texture by the offset, rotation and scale parameters using a procedural texture
  706. * @param babylonTexture
  707. * @param offset
  708. * @param rotation
  709. * @param scale
  710. * @param scene
  711. */
  712. KHR_texture_transform.prototype._textureTransformTextureAsync = function (babylonTexture, scene) {
  713. var _this = this;
  714. return new Promise(function (resolve) {
  715. var proceduralTexture = new babylonjs_Misc_tools__WEBPACK_IMPORTED_MODULE_0__["ProceduralTexture"]("" + babylonTexture.name, babylonTexture.getSize(), "textureTransform", scene);
  716. if (!proceduralTexture) {
  717. babylonjs_Misc_tools__WEBPACK_IMPORTED_MODULE_0__["Tools"].Log("Cannot create procedural texture for " + babylonTexture.name + "!");
  718. resolve(babylonTexture);
  719. }
  720. proceduralTexture.reservedDataStore = {
  721. hidden: true,
  722. source: babylonTexture
  723. };
  724. _this._recordedTextures.push(proceduralTexture);
  725. proceduralTexture.coordinatesIndex = babylonTexture.coordinatesIndex;
  726. proceduralTexture.setTexture("textureSampler", babylonTexture);
  727. proceduralTexture.setMatrix("textureTransformMat", babylonTexture.getTextureMatrix());
  728. // isReady trigger creation of effect if it doesnt exist yet
  729. if (proceduralTexture.isReady()) {
  730. proceduralTexture.render();
  731. resolve(proceduralTexture);
  732. }
  733. else {
  734. proceduralTexture.getEffect().executeWhenCompiled(function () {
  735. proceduralTexture.render();
  736. resolve(proceduralTexture);
  737. });
  738. }
  739. });
  740. };
  741. return KHR_texture_transform;
  742. }());
  743. _glTFExporter__WEBPACK_IMPORTED_MODULE_1__["_Exporter"].RegisterExtension(NAME, function (exporter) { return new KHR_texture_transform(exporter); });
  744. /***/ }),
  745. /***/ "./glTF/2.0/Extensions/index.ts":
  746. /*!**************************************!*\
  747. !*** ./glTF/2.0/Extensions/index.ts ***!
  748. \**************************************/
  749. /*! exports provided: KHR_texture_transform, KHR_lights_punctual, KHR_materials_sheen */
  750. /***/ (function(module, __webpack_exports__, __webpack_require__) {
  751. "use strict";
  752. __webpack_require__.r(__webpack_exports__);
  753. /* harmony import */ var _KHR_texture_transform__WEBPACK_IMPORTED_MODULE_0__ = __webpack_require__(/*! ./KHR_texture_transform */ "./glTF/2.0/Extensions/KHR_texture_transform.ts");
  754. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "KHR_texture_transform", function() { return _KHR_texture_transform__WEBPACK_IMPORTED_MODULE_0__["KHR_texture_transform"]; });
  755. /* harmony import */ var _KHR_lights_punctual__WEBPACK_IMPORTED_MODULE_1__ = __webpack_require__(/*! ./KHR_lights_punctual */ "./glTF/2.0/Extensions/KHR_lights_punctual.ts");
  756. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "KHR_lights_punctual", function() { return _KHR_lights_punctual__WEBPACK_IMPORTED_MODULE_1__["KHR_lights_punctual"]; });
  757. /* harmony import */ var _KHR_materials_sheen__WEBPACK_IMPORTED_MODULE_2__ = __webpack_require__(/*! ./KHR_materials_sheen */ "./glTF/2.0/Extensions/KHR_materials_sheen.ts");
  758. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "KHR_materials_sheen", function() { return _KHR_materials_sheen__WEBPACK_IMPORTED_MODULE_2__["KHR_materials_sheen"]; });
  759. /***/ }),
  760. /***/ "./glTF/2.0/glTFAnimation.ts":
  761. /*!***********************************!*\
  762. !*** ./glTF/2.0/glTFAnimation.ts ***!
  763. \***********************************/
  764. /*! exports provided: _GLTFAnimation */
  765. /***/ (function(module, __webpack_exports__, __webpack_require__) {
  766. "use strict";
  767. __webpack_require__.r(__webpack_exports__);
  768. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "_GLTFAnimation", function() { return _GLTFAnimation; });
  769. /* harmony import */ var babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__ = __webpack_require__(/*! babylonjs/Maths/math.vector */ "babylonjs/Maths/math.vector");
  770. /* harmony import */ var babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0___default = /*#__PURE__*/__webpack_require__.n(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__);
  771. /* harmony import */ var _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__ = __webpack_require__(/*! ./glTFUtilities */ "./glTF/2.0/glTFUtilities.ts");
  772. /**
  773. * @hidden
  774. * Enum for handling in tangent and out tangent.
  775. */
  776. var _TangentType;
  777. (function (_TangentType) {
  778. /**
  779. * Specifies that input tangents are used.
  780. */
  781. _TangentType[_TangentType["INTANGENT"] = 0] = "INTANGENT";
  782. /**
  783. * Specifies that output tangents are used.
  784. */
  785. _TangentType[_TangentType["OUTTANGENT"] = 1] = "OUTTANGENT";
  786. })(_TangentType || (_TangentType = {}));
  787. /**
  788. * @hidden
  789. * Utility class for generating glTF animation data from BabylonJS.
  790. */
  791. var _GLTFAnimation = /** @class */ (function () {
  792. function _GLTFAnimation() {
  793. }
  794. /**
  795. * @ignore
  796. *
  797. * Creates glTF channel animation from BabylonJS animation.
  798. * @param babylonTransformNode - BabylonJS mesh.
  799. * @param animation - animation.
  800. * @param animationChannelTargetPath - The target animation channel.
  801. * @param convertToRightHandedSystem - Specifies if the values should be converted to right-handed.
  802. * @param useQuaternion - Specifies if quaternions are used.
  803. * @returns nullable IAnimationData
  804. */
  805. _GLTFAnimation._CreateNodeAnimation = function (babylonTransformNode, animation, animationChannelTargetPath, convertToRightHandedSystem, useQuaternion, animationSampleRate) {
  806. var inputs = [];
  807. var outputs = [];
  808. var keyFrames = animation.getKeys();
  809. var minMaxKeyFrames = _GLTFAnimation.calculateMinMaxKeyFrames(keyFrames);
  810. var interpolationOrBake = _GLTFAnimation._DeduceInterpolation(keyFrames, animationChannelTargetPath, useQuaternion);
  811. var frameDelta = minMaxKeyFrames.max - minMaxKeyFrames.min;
  812. var interpolation = interpolationOrBake.interpolationType;
  813. var shouldBakeAnimation = interpolationOrBake.shouldBakeAnimation;
  814. if (shouldBakeAnimation) {
  815. _GLTFAnimation._CreateBakedAnimation(babylonTransformNode, animation, animationChannelTargetPath, minMaxKeyFrames.min, minMaxKeyFrames.max, animation.framePerSecond, animationSampleRate, inputs, outputs, minMaxKeyFrames, convertToRightHandedSystem, useQuaternion);
  816. }
  817. else {
  818. if (interpolation === "LINEAR" /* LINEAR */ || interpolation === "STEP" /* STEP */) {
  819. _GLTFAnimation._CreateLinearOrStepAnimation(babylonTransformNode, animation, animationChannelTargetPath, frameDelta, inputs, outputs, convertToRightHandedSystem, useQuaternion);
  820. }
  821. else if (interpolation === "CUBICSPLINE" /* CUBICSPLINE */) {
  822. _GLTFAnimation._CreateCubicSplineAnimation(babylonTransformNode, animation, animationChannelTargetPath, frameDelta, inputs, outputs, convertToRightHandedSystem, useQuaternion);
  823. }
  824. else {
  825. _GLTFAnimation._CreateBakedAnimation(babylonTransformNode, animation, animationChannelTargetPath, minMaxKeyFrames.min, minMaxKeyFrames.max, animation.framePerSecond, animationSampleRate, inputs, outputs, minMaxKeyFrames, convertToRightHandedSystem, useQuaternion);
  826. }
  827. }
  828. if (inputs.length && outputs.length) {
  829. var result = {
  830. inputs: inputs,
  831. outputs: outputs,
  832. samplerInterpolation: interpolation,
  833. inputsMin: shouldBakeAnimation ? minMaxKeyFrames.min : babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Tools"].FloatRound(minMaxKeyFrames.min / animation.framePerSecond),
  834. inputsMax: shouldBakeAnimation ? minMaxKeyFrames.max : babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Tools"].FloatRound(minMaxKeyFrames.max / animation.framePerSecond)
  835. };
  836. return result;
  837. }
  838. return null;
  839. };
  840. _GLTFAnimation._DeduceAnimationInfo = function (animation) {
  841. var animationChannelTargetPath = null;
  842. var dataAccessorType = "VEC3" /* VEC3 */;
  843. var useQuaternion = false;
  844. var property = animation.targetProperty.split('.');
  845. switch (property[0]) {
  846. case 'scaling': {
  847. animationChannelTargetPath = "scale" /* SCALE */;
  848. break;
  849. }
  850. case 'position': {
  851. animationChannelTargetPath = "translation" /* TRANSLATION */;
  852. break;
  853. }
  854. case 'rotation': {
  855. dataAccessorType = "VEC4" /* VEC4 */;
  856. animationChannelTargetPath = "rotation" /* ROTATION */;
  857. break;
  858. }
  859. case 'rotationQuaternion': {
  860. dataAccessorType = "VEC4" /* VEC4 */;
  861. useQuaternion = true;
  862. animationChannelTargetPath = "rotation" /* ROTATION */;
  863. break;
  864. }
  865. default: {
  866. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Tools"].Error("Unsupported animatable property " + property[0]);
  867. }
  868. }
  869. if (animationChannelTargetPath) {
  870. return { animationChannelTargetPath: animationChannelTargetPath, dataAccessorType: dataAccessorType, useQuaternion: useQuaternion };
  871. }
  872. else {
  873. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Tools"].Error('animation channel target path and data accessor type could be deduced');
  874. }
  875. return null;
  876. };
  877. /**
  878. * @ignore
  879. * Create node animations from the transform node animations
  880. * @param babylonNode
  881. * @param runtimeGLTFAnimation
  882. * @param idleGLTFAnimations
  883. * @param nodeMap
  884. * @param nodes
  885. * @param binaryWriter
  886. * @param bufferViews
  887. * @param accessors
  888. * @param convertToRightHandedSystem
  889. * @param animationSampleRate
  890. */
  891. _GLTFAnimation._CreateNodeAnimationFromNodeAnimations = function (babylonNode, runtimeGLTFAnimation, idleGLTFAnimations, nodeMap, nodes, binaryWriter, bufferViews, accessors, convertToRightHandedSystem, animationSampleRate) {
  892. var glTFAnimation;
  893. if (babylonNode instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["TransformNode"]) {
  894. if (babylonNode.animations) {
  895. for (var _i = 0, _a = babylonNode.animations; _i < _a.length; _i++) {
  896. var animation = _a[_i];
  897. var animationInfo = _GLTFAnimation._DeduceAnimationInfo(animation);
  898. if (animationInfo) {
  899. glTFAnimation = {
  900. name: animation.name,
  901. samplers: [],
  902. channels: []
  903. };
  904. _GLTFAnimation.AddAnimation("" + animation.name, animation.hasRunningRuntimeAnimations ? runtimeGLTFAnimation : glTFAnimation, babylonNode, animation, animationInfo.dataAccessorType, animationInfo.animationChannelTargetPath, nodeMap, binaryWriter, bufferViews, accessors, convertToRightHandedSystem, animationInfo.useQuaternion, animationSampleRate);
  905. if (glTFAnimation.samplers.length && glTFAnimation.channels.length) {
  906. idleGLTFAnimations.push(glTFAnimation);
  907. }
  908. }
  909. }
  910. }
  911. }
  912. };
  913. /**
  914. * @ignore
  915. * Create node animations from the animation groups
  916. * @param babylonScene
  917. * @param glTFAnimations
  918. * @param nodeMap
  919. * @param nodes
  920. * @param binaryWriter
  921. * @param bufferViews
  922. * @param accessors
  923. * @param convertToRightHandedSystemMap
  924. * @param animationSampleRate
  925. */
  926. _GLTFAnimation._CreateNodeAnimationFromAnimationGroups = function (babylonScene, glTFAnimations, nodeMap, nodes, binaryWriter, bufferViews, accessors, convertToRightHandedSystemMap, animationSampleRate) {
  927. var glTFAnimation;
  928. if (babylonScene.animationGroups) {
  929. var animationGroups = babylonScene.animationGroups;
  930. for (var _i = 0, animationGroups_1 = animationGroups; _i < animationGroups_1.length; _i++) {
  931. var animationGroup = animationGroups_1[_i];
  932. glTFAnimation = {
  933. name: animationGroup.name,
  934. channels: [],
  935. samplers: []
  936. };
  937. for (var _a = 0, _b = animationGroup.targetedAnimations; _a < _b.length; _a++) {
  938. var targetAnimation = _b[_a];
  939. var target = targetAnimation.target;
  940. var animation = targetAnimation.animation;
  941. if (target instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["TransformNode"] || target.length === 1 && target[0] instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["TransformNode"]) {
  942. var animationInfo = _GLTFAnimation._DeduceAnimationInfo(targetAnimation.animation);
  943. if (animationInfo) {
  944. var babylonTransformNode = target instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["TransformNode"] ? target : target[0];
  945. var convertToRightHandedSystem = convertToRightHandedSystemMap[babylonTransformNode.uniqueId];
  946. _GLTFAnimation.AddAnimation("" + animation.name, glTFAnimation, babylonTransformNode, animation, animationInfo.dataAccessorType, animationInfo.animationChannelTargetPath, nodeMap, binaryWriter, bufferViews, accessors, convertToRightHandedSystem, animationInfo.useQuaternion, animationSampleRate);
  947. }
  948. }
  949. }
  950. if (glTFAnimation.channels.length && glTFAnimation.samplers.length) {
  951. glTFAnimations.push(glTFAnimation);
  952. }
  953. }
  954. }
  955. };
  956. _GLTFAnimation.AddAnimation = function (name, glTFAnimation, babylonTransformNode, animation, dataAccessorType, animationChannelTargetPath, nodeMap, binaryWriter, bufferViews, accessors, convertToRightHandedSystem, useQuaternion, animationSampleRate) {
  957. var animationData = _GLTFAnimation._CreateNodeAnimation(babylonTransformNode, animation, animationChannelTargetPath, convertToRightHandedSystem, useQuaternion, animationSampleRate);
  958. var bufferView;
  959. var accessor;
  960. var keyframeAccessorIndex;
  961. var dataAccessorIndex;
  962. var outputLength;
  963. var animationSampler;
  964. var animationChannel;
  965. if (animationData) {
  966. var nodeIndex = nodeMap[babylonTransformNode.uniqueId];
  967. // Creates buffer view and accessor for key frames.
  968. var byteLength = animationData.inputs.length * 4;
  969. bufferView = _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__["_GLTFUtilities"]._CreateBufferView(0, binaryWriter.getByteOffset(), byteLength, undefined, name + " keyframe data view");
  970. bufferViews.push(bufferView);
  971. animationData.inputs.forEach(function (input) {
  972. binaryWriter.setFloat32(input);
  973. });
  974. accessor = _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__["_GLTFUtilities"]._CreateAccessor(bufferViews.length - 1, name + " keyframes", "SCALAR" /* SCALAR */, 5126 /* FLOAT */, animationData.inputs.length, null, [animationData.inputsMin], [animationData.inputsMax]);
  975. accessors.push(accessor);
  976. keyframeAccessorIndex = accessors.length - 1;
  977. // create bufferview and accessor for keyed values.
  978. outputLength = animationData.outputs.length;
  979. byteLength = dataAccessorType === "VEC3" /* VEC3 */ ? animationData.outputs.length * 12 : animationData.outputs.length * 16;
  980. // check for in and out tangents
  981. bufferView = _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__["_GLTFUtilities"]._CreateBufferView(0, binaryWriter.getByteOffset(), byteLength, undefined, name + " data view");
  982. bufferViews.push(bufferView);
  983. animationData.outputs.forEach(function (output) {
  984. output.forEach(function (entry) {
  985. binaryWriter.setFloat32(entry);
  986. });
  987. });
  988. accessor = _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__["_GLTFUtilities"]._CreateAccessor(bufferViews.length - 1, name + " data", dataAccessorType, 5126 /* FLOAT */, outputLength, null, null, null);
  989. accessors.push(accessor);
  990. dataAccessorIndex = accessors.length - 1;
  991. // create sampler
  992. animationSampler = {
  993. interpolation: animationData.samplerInterpolation,
  994. input: keyframeAccessorIndex,
  995. output: dataAccessorIndex
  996. };
  997. glTFAnimation.samplers.push(animationSampler);
  998. // create channel
  999. animationChannel = {
  1000. sampler: glTFAnimation.samplers.length - 1,
  1001. target: {
  1002. node: nodeIndex,
  1003. path: animationChannelTargetPath
  1004. }
  1005. };
  1006. glTFAnimation.channels.push(animationChannel);
  1007. }
  1008. };
  1009. /**
  1010. * Create a baked animation
  1011. * @param babylonTransformNode BabylonJS mesh
  1012. * @param animation BabylonJS animation corresponding to the BabylonJS mesh
  1013. * @param animationChannelTargetPath animation target channel
  1014. * @param minFrame minimum animation frame
  1015. * @param maxFrame maximum animation frame
  1016. * @param fps frames per second of the animation
  1017. * @param inputs input key frames of the animation
  1018. * @param outputs output key frame data of the animation
  1019. * @param convertToRightHandedSystem converts the values to right-handed
  1020. * @param useQuaternion specifies if quaternions should be used
  1021. */
  1022. _GLTFAnimation._CreateBakedAnimation = function (babylonTransformNode, animation, animationChannelTargetPath, minFrame, maxFrame, fps, sampleRate, inputs, outputs, minMaxFrames, convertToRightHandedSystem, useQuaternion) {
  1023. var value;
  1024. var quaternionCache = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].Identity();
  1025. var previousTime = null;
  1026. var time;
  1027. var maxUsedFrame = null;
  1028. var currKeyFrame = null;
  1029. var nextKeyFrame = null;
  1030. var prevKeyFrame = null;
  1031. var endFrame = null;
  1032. minMaxFrames.min = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Tools"].FloatRound(minFrame / fps);
  1033. var keyFrames = animation.getKeys();
  1034. for (var i = 0, length_1 = keyFrames.length; i < length_1; ++i) {
  1035. endFrame = null;
  1036. currKeyFrame = keyFrames[i];
  1037. if (i + 1 < length_1) {
  1038. nextKeyFrame = keyFrames[i + 1];
  1039. if (currKeyFrame.value.equals && currKeyFrame.value.equals(nextKeyFrame.value) || currKeyFrame.value === nextKeyFrame.value) {
  1040. if (i === 0) { // set the first frame to itself
  1041. endFrame = currKeyFrame.frame;
  1042. }
  1043. else {
  1044. continue;
  1045. }
  1046. }
  1047. else {
  1048. endFrame = nextKeyFrame.frame;
  1049. }
  1050. }
  1051. else {
  1052. // at the last key frame
  1053. prevKeyFrame = keyFrames[i - 1];
  1054. if (currKeyFrame.value.equals && currKeyFrame.value.equals(prevKeyFrame.value) || currKeyFrame.value === prevKeyFrame.value) {
  1055. continue;
  1056. }
  1057. else {
  1058. endFrame = maxFrame;
  1059. }
  1060. }
  1061. if (endFrame) {
  1062. for (var f = currKeyFrame.frame; f <= endFrame; f += sampleRate) {
  1063. time = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Tools"].FloatRound(f / fps);
  1064. if (time === previousTime) {
  1065. continue;
  1066. }
  1067. previousTime = time;
  1068. maxUsedFrame = time;
  1069. var state = {
  1070. key: 0,
  1071. repeatCount: 0,
  1072. loopMode: animation.loopMode
  1073. };
  1074. value = animation._interpolate(f, state);
  1075. _GLTFAnimation._SetInterpolatedValue(babylonTransformNode, value, time, animation, animationChannelTargetPath, quaternionCache, inputs, outputs, convertToRightHandedSystem, useQuaternion);
  1076. }
  1077. }
  1078. }
  1079. if (maxUsedFrame) {
  1080. minMaxFrames.max = maxUsedFrame;
  1081. }
  1082. };
  1083. _GLTFAnimation._ConvertFactorToVector3OrQuaternion = function (factor, babylonTransformNode, animation, animationType, animationChannelTargetPath, convertToRightHandedSystem, useQuaternion) {
  1084. var property;
  1085. var componentName;
  1086. var value = null;
  1087. var basePositionRotationOrScale = _GLTFAnimation._GetBasePositionRotationOrScale(babylonTransformNode, animationChannelTargetPath, convertToRightHandedSystem, useQuaternion);
  1088. if (animationType === babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Animation"].ANIMATIONTYPE_FLOAT) { // handles single component x, y, z or w component animation by using a base property and animating over a component.
  1089. property = animation.targetProperty.split('.');
  1090. componentName = property ? property[1] : ''; // x, y, or z component
  1091. value = useQuaternion ? babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].FromArray(basePositionRotationOrScale).normalize() : babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector3"].FromArray(basePositionRotationOrScale);
  1092. switch (componentName) {
  1093. case 'x': {
  1094. value[componentName] = (convertToRightHandedSystem && useQuaternion && (animationChannelTargetPath !== "scale" /* SCALE */)) ? -factor : factor;
  1095. break;
  1096. }
  1097. case 'y': {
  1098. value[componentName] = (convertToRightHandedSystem && useQuaternion && (animationChannelTargetPath !== "scale" /* SCALE */)) ? -factor : factor;
  1099. break;
  1100. }
  1101. case 'z': {
  1102. value[componentName] = (convertToRightHandedSystem && !useQuaternion && (animationChannelTargetPath !== "scale" /* SCALE */)) ? -factor : factor;
  1103. break;
  1104. }
  1105. case 'w': {
  1106. value.w = factor;
  1107. break;
  1108. }
  1109. default: {
  1110. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Tools"].Error("glTFAnimation: Unsupported component type \"" + componentName + "\" for scale animation!");
  1111. }
  1112. }
  1113. }
  1114. return value;
  1115. };
  1116. _GLTFAnimation._SetInterpolatedValue = function (babylonTransformNode, value, time, animation, animationChannelTargetPath, quaternionCache, inputs, outputs, convertToRightHandedSystem, useQuaternion) {
  1117. var animationType = animation.dataType;
  1118. var cacheValue;
  1119. inputs.push(time);
  1120. if (typeof value === "number") {
  1121. value = this._ConvertFactorToVector3OrQuaternion(value, babylonTransformNode, animation, animationType, animationChannelTargetPath, convertToRightHandedSystem, useQuaternion);
  1122. }
  1123. if (value) {
  1124. if (animationChannelTargetPath === "rotation" /* ROTATION */) {
  1125. if (useQuaternion) {
  1126. quaternionCache = value;
  1127. }
  1128. else {
  1129. cacheValue = value;
  1130. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].RotationYawPitchRollToRef(cacheValue.y, cacheValue.x, cacheValue.z, quaternionCache);
  1131. }
  1132. if (convertToRightHandedSystem) {
  1133. _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__["_GLTFUtilities"]._GetRightHandedQuaternionFromRef(quaternionCache);
  1134. if (!babylonTransformNode.parent) {
  1135. quaternionCache = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].FromArray([0, 1, 0, 0]).multiply(quaternionCache);
  1136. }
  1137. }
  1138. outputs.push(quaternionCache.asArray());
  1139. }
  1140. else {
  1141. cacheValue = value;
  1142. if (convertToRightHandedSystem && (animationChannelTargetPath !== "scale" /* SCALE */)) {
  1143. _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__["_GLTFUtilities"]._GetRightHandedPositionVector3FromRef(cacheValue);
  1144. if (!babylonTransformNode.parent) {
  1145. cacheValue.x *= -1;
  1146. cacheValue.z *= -1;
  1147. }
  1148. }
  1149. outputs.push(cacheValue.asArray());
  1150. }
  1151. }
  1152. };
  1153. /**
  1154. * Creates linear animation from the animation key frames
  1155. * @param babylonTransformNode BabylonJS mesh
  1156. * @param animation BabylonJS animation
  1157. * @param animationChannelTargetPath The target animation channel
  1158. * @param frameDelta The difference between the last and first frame of the animation
  1159. * @param inputs Array to store the key frame times
  1160. * @param outputs Array to store the key frame data
  1161. * @param convertToRightHandedSystem Specifies if the position data should be converted to right handed
  1162. * @param useQuaternion Specifies if quaternions are used in the animation
  1163. */
  1164. _GLTFAnimation._CreateLinearOrStepAnimation = function (babylonTransformNode, animation, animationChannelTargetPath, frameDelta, inputs, outputs, convertToRightHandedSystem, useQuaternion) {
  1165. for (var _i = 0, _a = animation.getKeys(); _i < _a.length; _i++) {
  1166. var keyFrame = _a[_i];
  1167. inputs.push(keyFrame.frame / animation.framePerSecond); // keyframes in seconds.
  1168. _GLTFAnimation._AddKeyframeValue(keyFrame, animation, outputs, animationChannelTargetPath, babylonTransformNode, convertToRightHandedSystem, useQuaternion);
  1169. }
  1170. };
  1171. /**
  1172. * Creates cubic spline animation from the animation key frames
  1173. * @param babylonTransformNode BabylonJS mesh
  1174. * @param animation BabylonJS animation
  1175. * @param animationChannelTargetPath The target animation channel
  1176. * @param frameDelta The difference between the last and first frame of the animation
  1177. * @param inputs Array to store the key frame times
  1178. * @param outputs Array to store the key frame data
  1179. * @param convertToRightHandedSystem Specifies if the position data should be converted to right handed
  1180. * @param useQuaternion Specifies if quaternions are used in the animation
  1181. */
  1182. _GLTFAnimation._CreateCubicSplineAnimation = function (babylonTransformNode, animation, animationChannelTargetPath, frameDelta, inputs, outputs, convertToRightHandedSystem, useQuaternion) {
  1183. animation.getKeys().forEach(function (keyFrame) {
  1184. inputs.push(keyFrame.frame / animation.framePerSecond); // keyframes in seconds.
  1185. _GLTFAnimation.AddSplineTangent(babylonTransformNode, _TangentType.INTANGENT, outputs, animationChannelTargetPath, "CUBICSPLINE" /* CUBICSPLINE */, keyFrame, frameDelta, useQuaternion, convertToRightHandedSystem);
  1186. _GLTFAnimation._AddKeyframeValue(keyFrame, animation, outputs, animationChannelTargetPath, babylonTransformNode, convertToRightHandedSystem, useQuaternion);
  1187. _GLTFAnimation.AddSplineTangent(babylonTransformNode, _TangentType.OUTTANGENT, outputs, animationChannelTargetPath, "CUBICSPLINE" /* CUBICSPLINE */, keyFrame, frameDelta, useQuaternion, convertToRightHandedSystem);
  1188. });
  1189. };
  1190. _GLTFAnimation._GetBasePositionRotationOrScale = function (babylonTransformNode, animationChannelTargetPath, convertToRightHandedSystem, useQuaternion) {
  1191. var basePositionRotationOrScale;
  1192. if (animationChannelTargetPath === "rotation" /* ROTATION */) {
  1193. if (useQuaternion) {
  1194. if (babylonTransformNode.rotationQuaternion) {
  1195. basePositionRotationOrScale = babylonTransformNode.rotationQuaternion.asArray();
  1196. if (convertToRightHandedSystem) {
  1197. _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__["_GLTFUtilities"]._GetRightHandedQuaternionArrayFromRef(basePositionRotationOrScale);
  1198. if (!babylonTransformNode.parent) {
  1199. basePositionRotationOrScale = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].FromArray([0, 1, 0, 0]).multiply(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].FromArray(basePositionRotationOrScale)).asArray();
  1200. }
  1201. }
  1202. }
  1203. else {
  1204. basePositionRotationOrScale = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].Identity().asArray();
  1205. }
  1206. }
  1207. else {
  1208. basePositionRotationOrScale = babylonTransformNode.rotation.asArray();
  1209. _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__["_GLTFUtilities"]._GetRightHandedNormalArray3FromRef(basePositionRotationOrScale);
  1210. }
  1211. }
  1212. else if (animationChannelTargetPath === "translation" /* TRANSLATION */) {
  1213. basePositionRotationOrScale = babylonTransformNode.position.asArray();
  1214. if (convertToRightHandedSystem) {
  1215. _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__["_GLTFUtilities"]._GetRightHandedPositionArray3FromRef(basePositionRotationOrScale);
  1216. }
  1217. }
  1218. else { // scale
  1219. basePositionRotationOrScale = babylonTransformNode.scaling.asArray();
  1220. }
  1221. return basePositionRotationOrScale;
  1222. };
  1223. /**
  1224. * Adds a key frame value
  1225. * @param keyFrame
  1226. * @param animation
  1227. * @param outputs
  1228. * @param animationChannelTargetPath
  1229. * @param basePositionRotationOrScale
  1230. * @param convertToRightHandedSystem
  1231. * @param useQuaternion
  1232. */
  1233. _GLTFAnimation._AddKeyframeValue = function (keyFrame, animation, outputs, animationChannelTargetPath, babylonTransformNode, convertToRightHandedSystem, useQuaternion) {
  1234. var value;
  1235. var newPositionRotationOrScale;
  1236. var animationType = animation.dataType;
  1237. if (animationType === babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Animation"].ANIMATIONTYPE_VECTOR3) {
  1238. value = keyFrame.value.asArray();
  1239. if (animationChannelTargetPath === "rotation" /* ROTATION */) {
  1240. var array = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector3"].FromArray(value);
  1241. var rotationQuaternion = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].RotationYawPitchRoll(array.y, array.x, array.z);
  1242. if (convertToRightHandedSystem) {
  1243. _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__["_GLTFUtilities"]._GetRightHandedQuaternionFromRef(rotationQuaternion);
  1244. if (!babylonTransformNode.parent) {
  1245. rotationQuaternion = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].FromArray([0, 1, 0, 0]).multiply(rotationQuaternion);
  1246. }
  1247. }
  1248. value = rotationQuaternion.asArray();
  1249. }
  1250. else if (animationChannelTargetPath === "translation" /* TRANSLATION */) {
  1251. if (convertToRightHandedSystem) {
  1252. _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__["_GLTFUtilities"]._GetRightHandedNormalArray3FromRef(value);
  1253. if (!babylonTransformNode.parent) {
  1254. value[0] *= -1;
  1255. value[2] *= -1;
  1256. }
  1257. }
  1258. }
  1259. outputs.push(value); // scale vector.
  1260. }
  1261. else if (animationType === babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Animation"].ANIMATIONTYPE_FLOAT) { // handles single component x, y, z or w component animation by using a base property and animating over a component.
  1262. newPositionRotationOrScale = this._ConvertFactorToVector3OrQuaternion(keyFrame.value, babylonTransformNode, animation, animationType, animationChannelTargetPath, convertToRightHandedSystem, useQuaternion);
  1263. if (newPositionRotationOrScale) {
  1264. if (animationChannelTargetPath === "rotation" /* ROTATION */) {
  1265. var posRotScale = useQuaternion ? newPositionRotationOrScale : babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].RotationYawPitchRoll(newPositionRotationOrScale.y, newPositionRotationOrScale.x, newPositionRotationOrScale.z).normalize();
  1266. if (convertToRightHandedSystem) {
  1267. _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__["_GLTFUtilities"]._GetRightHandedQuaternionFromRef(posRotScale);
  1268. if (!babylonTransformNode.parent) {
  1269. posRotScale = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].FromArray([0, 1, 0, 0]).multiply(posRotScale);
  1270. }
  1271. }
  1272. outputs.push(posRotScale.asArray());
  1273. }
  1274. else if (animationChannelTargetPath === "translation" /* TRANSLATION */) {
  1275. if (convertToRightHandedSystem) {
  1276. _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__["_GLTFUtilities"]._GetRightHandedNormalVector3FromRef(newPositionRotationOrScale);
  1277. if (!babylonTransformNode.parent) {
  1278. newPositionRotationOrScale.x *= -1;
  1279. newPositionRotationOrScale.z *= -1;
  1280. }
  1281. }
  1282. }
  1283. outputs.push(newPositionRotationOrScale.asArray());
  1284. }
  1285. }
  1286. else if (animationType === babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Animation"].ANIMATIONTYPE_QUATERNION) {
  1287. value = keyFrame.value.normalize().asArray();
  1288. if (convertToRightHandedSystem) {
  1289. _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__["_GLTFUtilities"]._GetRightHandedQuaternionArrayFromRef(value);
  1290. if (!babylonTransformNode.parent) {
  1291. value = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].FromArray([0, 1, 0, 0]).multiply(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].FromArray(value)).asArray();
  1292. }
  1293. }
  1294. outputs.push(value);
  1295. }
  1296. else {
  1297. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Tools"].Error('glTFAnimation: Unsupported key frame values for animation!');
  1298. }
  1299. };
  1300. /**
  1301. * Determine the interpolation based on the key frames
  1302. * @param keyFrames
  1303. * @param animationChannelTargetPath
  1304. * @param useQuaternion
  1305. */
  1306. _GLTFAnimation._DeduceInterpolation = function (keyFrames, animationChannelTargetPath, useQuaternion) {
  1307. var interpolationType;
  1308. var shouldBakeAnimation = false;
  1309. var key;
  1310. if (animationChannelTargetPath === "rotation" /* ROTATION */ && !useQuaternion) {
  1311. return { interpolationType: "LINEAR" /* LINEAR */, shouldBakeAnimation: true };
  1312. }
  1313. for (var i = 0, length_2 = keyFrames.length; i < length_2; ++i) {
  1314. key = keyFrames[i];
  1315. if (key.inTangent || key.outTangent) {
  1316. if (interpolationType) {
  1317. if (interpolationType !== "CUBICSPLINE" /* CUBICSPLINE */) {
  1318. interpolationType = "LINEAR" /* LINEAR */;
  1319. shouldBakeAnimation = true;
  1320. break;
  1321. }
  1322. }
  1323. else {
  1324. interpolationType = "CUBICSPLINE" /* CUBICSPLINE */;
  1325. }
  1326. }
  1327. else {
  1328. if (interpolationType) {
  1329. if (interpolationType === "CUBICSPLINE" /* CUBICSPLINE */ ||
  1330. (key.interpolation && (key.interpolation === babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["AnimationKeyInterpolation"].STEP) && interpolationType !== "STEP" /* STEP */)) {
  1331. interpolationType = "LINEAR" /* LINEAR */;
  1332. shouldBakeAnimation = true;
  1333. break;
  1334. }
  1335. }
  1336. else {
  1337. if (key.interpolation && (key.interpolation === babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["AnimationKeyInterpolation"].STEP)) {
  1338. interpolationType = "STEP" /* STEP */;
  1339. }
  1340. else {
  1341. interpolationType = "LINEAR" /* LINEAR */;
  1342. }
  1343. }
  1344. }
  1345. }
  1346. if (!interpolationType) {
  1347. interpolationType = "LINEAR" /* LINEAR */;
  1348. }
  1349. return { interpolationType: interpolationType, shouldBakeAnimation: shouldBakeAnimation };
  1350. };
  1351. /**
  1352. * Adds an input tangent or output tangent to the output data
  1353. * If an input tangent or output tangent is missing, it uses the zero vector or zero quaternion
  1354. * @param tangentType Specifies which type of tangent to handle (inTangent or outTangent)
  1355. * @param outputs The animation data by keyframe
  1356. * @param animationChannelTargetPath The target animation channel
  1357. * @param interpolation The interpolation type
  1358. * @param keyFrame The key frame with the animation data
  1359. * @param frameDelta Time difference between two frames used to scale the tangent by the frame delta
  1360. * @param useQuaternion Specifies if quaternions are used
  1361. * @param convertToRightHandedSystem Specifies if the values should be converted to right-handed
  1362. */
  1363. _GLTFAnimation.AddSplineTangent = function (babylonTransformNode, tangentType, outputs, animationChannelTargetPath, interpolation, keyFrame, frameDelta, useQuaternion, convertToRightHandedSystem) {
  1364. var tangent;
  1365. var tangentValue = tangentType === _TangentType.INTANGENT ? keyFrame.inTangent : keyFrame.outTangent;
  1366. if (interpolation === "CUBICSPLINE" /* CUBICSPLINE */) {
  1367. if (animationChannelTargetPath === "rotation" /* ROTATION */) {
  1368. if (tangentValue) {
  1369. if (useQuaternion) {
  1370. tangent = tangentValue.scale(frameDelta).asArray();
  1371. }
  1372. else {
  1373. var array = tangentValue.scale(frameDelta);
  1374. tangent = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].RotationYawPitchRoll(array.y, array.x, array.z).asArray();
  1375. }
  1376. if (convertToRightHandedSystem) {
  1377. _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__["_GLTFUtilities"]._GetRightHandedQuaternionArrayFromRef(tangent);
  1378. if (!babylonTransformNode.parent) {
  1379. tangent = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].FromArray([0, 1, 0, 0]).multiply(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Quaternion"].FromArray(tangent)).asArray();
  1380. }
  1381. }
  1382. }
  1383. else {
  1384. tangent = [0, 0, 0, 0];
  1385. }
  1386. }
  1387. else {
  1388. if (tangentValue) {
  1389. tangent = tangentValue.scale(frameDelta).asArray();
  1390. if (convertToRightHandedSystem) {
  1391. if (animationChannelTargetPath === "translation" /* TRANSLATION */) {
  1392. _glTFUtilities__WEBPACK_IMPORTED_MODULE_1__["_GLTFUtilities"]._GetRightHandedPositionArray3FromRef(tangent);
  1393. if (!babylonTransformNode.parent) {
  1394. tangent[0] *= -1; // x
  1395. tangent[2] *= -1; // z
  1396. }
  1397. }
  1398. }
  1399. }
  1400. else {
  1401. tangent = [0, 0, 0];
  1402. }
  1403. }
  1404. outputs.push(tangent);
  1405. }
  1406. };
  1407. /**
  1408. * Get the minimum and maximum key frames' frame values
  1409. * @param keyFrames animation key frames
  1410. * @returns the minimum and maximum key frame value
  1411. */
  1412. _GLTFAnimation.calculateMinMaxKeyFrames = function (keyFrames) {
  1413. var min = Infinity;
  1414. var max = -Infinity;
  1415. keyFrames.forEach(function (keyFrame) {
  1416. min = Math.min(min, keyFrame.frame);
  1417. max = Math.max(max, keyFrame.frame);
  1418. });
  1419. return { min: min, max: max };
  1420. };
  1421. return _GLTFAnimation;
  1422. }());
  1423. /***/ }),
  1424. /***/ "./glTF/2.0/glTFData.ts":
  1425. /*!******************************!*\
  1426. !*** ./glTF/2.0/glTFData.ts ***!
  1427. \******************************/
  1428. /*! exports provided: GLTFData */
  1429. /***/ (function(module, __webpack_exports__, __webpack_require__) {
  1430. "use strict";
  1431. __webpack_require__.r(__webpack_exports__);
  1432. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "GLTFData", function() { return GLTFData; });
  1433. /**
  1434. * Class for holding and downloading glTF file data
  1435. */
  1436. var GLTFData = /** @class */ (function () {
  1437. /**
  1438. * Initializes the glTF file object
  1439. */
  1440. function GLTFData() {
  1441. this.glTFFiles = {};
  1442. }
  1443. /**
  1444. * Downloads the glTF data as files based on their names and data
  1445. */
  1446. GLTFData.prototype.downloadFiles = function () {
  1447. /**
  1448. * Checks for a matching suffix at the end of a string (for ES5 and lower)
  1449. * @param str Source string
  1450. * @param suffix Suffix to search for in the source string
  1451. * @returns Boolean indicating whether the suffix was found (true) or not (false)
  1452. */
  1453. function endsWith(str, suffix) {
  1454. return str.indexOf(suffix, str.length - suffix.length) !== -1;
  1455. }
  1456. for (var key in this.glTFFiles) {
  1457. var link = document.createElement('a');
  1458. document.body.appendChild(link);
  1459. link.setAttribute("type", "hidden");
  1460. link.download = key;
  1461. var blob = this.glTFFiles[key];
  1462. var mimeType = void 0;
  1463. if (endsWith(key, ".glb")) {
  1464. mimeType = { type: "model/gltf-binary" };
  1465. }
  1466. else if (endsWith(key, ".bin")) {
  1467. mimeType = { type: "application/octet-stream" };
  1468. }
  1469. else if (endsWith(key, ".gltf")) {
  1470. mimeType = { type: "model/gltf+json" };
  1471. }
  1472. else if (endsWith(key, ".jpeg" || false)) {
  1473. mimeType = { type: "image/jpeg" /* JPEG */ };
  1474. }
  1475. else if (endsWith(key, ".png")) {
  1476. mimeType = { type: "image/png" /* PNG */ };
  1477. }
  1478. link.href = window.URL.createObjectURL(new Blob([blob], mimeType));
  1479. link.click();
  1480. }
  1481. };
  1482. return GLTFData;
  1483. }());
  1484. /***/ }),
  1485. /***/ "./glTF/2.0/glTFExporter.ts":
  1486. /*!**********************************!*\
  1487. !*** ./glTF/2.0/glTFExporter.ts ***!
  1488. \**********************************/
  1489. /*! exports provided: _Exporter, _BinaryWriter */
  1490. /***/ (function(module, __webpack_exports__, __webpack_require__) {
  1491. "use strict";
  1492. __webpack_require__.r(__webpack_exports__);
  1493. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "_Exporter", function() { return _Exporter; });
  1494. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "_BinaryWriter", function() { return _BinaryWriter; });
  1495. /* harmony import */ var tslib__WEBPACK_IMPORTED_MODULE_0__ = __webpack_require__(/*! tslib */ "../../node_modules/tslib/tslib.es6.js");
  1496. /* harmony import */ var babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__ = __webpack_require__(/*! babylonjs/Maths/math.vector */ "babylonjs/Maths/math.vector");
  1497. /* harmony import */ var babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1___default = /*#__PURE__*/__webpack_require__.n(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__);
  1498. /* harmony import */ var _glTFMaterialExporter__WEBPACK_IMPORTED_MODULE_2__ = __webpack_require__(/*! ./glTFMaterialExporter */ "./glTF/2.0/glTFMaterialExporter.ts");
  1499. /* harmony import */ var _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__ = __webpack_require__(/*! ./glTFUtilities */ "./glTF/2.0/glTFUtilities.ts");
  1500. /* harmony import */ var _glTFData__WEBPACK_IMPORTED_MODULE_4__ = __webpack_require__(/*! ./glTFData */ "./glTF/2.0/glTFData.ts");
  1501. /* harmony import */ var _glTFAnimation__WEBPACK_IMPORTED_MODULE_5__ = __webpack_require__(/*! ./glTFAnimation */ "./glTF/2.0/glTFAnimation.ts");
  1502. /**
  1503. * Converts Babylon Scene into glTF 2.0.
  1504. * @hidden
  1505. */
  1506. var _Exporter = /** @class */ (function () {
  1507. /**
  1508. * Creates a glTF Exporter instance, which can accept optional exporter options
  1509. * @param babylonScene Babylon scene object
  1510. * @param options Options to modify the behavior of the exporter
  1511. */
  1512. function _Exporter(babylonScene, options) {
  1513. /*
  1514. * Specifies if root Babylon empty nodes that act as a coordinate space transform should be included in export
  1515. */
  1516. this._includeCoordinateSystemConversionNodes = false;
  1517. this._extensions = {};
  1518. this._glTF = {
  1519. asset: { generator: "BabylonJS", version: "2.0" }
  1520. };
  1521. this._babylonScene = babylonScene;
  1522. this._bufferViews = [];
  1523. this._accessors = [];
  1524. this._meshes = [];
  1525. this._scenes = [];
  1526. this._nodes = [];
  1527. this._images = [];
  1528. this._materials = [];
  1529. this._materialMap = [];
  1530. this._textures = [];
  1531. this._samplers = [];
  1532. this._animations = [];
  1533. this._imageData = {};
  1534. this._options = options || {};
  1535. this._animationSampleRate = options && options.animationSampleRate ? options.animationSampleRate : 1 / 60;
  1536. this._includeCoordinateSystemConversionNodes = options && options.includeCoordinateSystemConversionNodes ? true : false;
  1537. this._glTFMaterialExporter = new _glTFMaterialExporter__WEBPACK_IMPORTED_MODULE_2__["_GLTFMaterialExporter"](this);
  1538. this._loadExtensions();
  1539. }
  1540. _Exporter.prototype._applyExtension = function (node, extensions, index, actionAsync) {
  1541. var _this = this;
  1542. if (index >= extensions.length) {
  1543. return Promise.resolve(node);
  1544. }
  1545. var currentPromise = actionAsync(extensions[index], node);
  1546. if (!currentPromise) {
  1547. return this._applyExtension(node, extensions, index + 1, actionAsync);
  1548. }
  1549. return currentPromise.then(function (newNode) { return _this._applyExtension(newNode, extensions, index + 1, actionAsync); });
  1550. };
  1551. _Exporter.prototype._applyExtensions = function (node, actionAsync) {
  1552. var extensions = [];
  1553. for (var _i = 0, _a = _Exporter._ExtensionNames; _i < _a.length; _i++) {
  1554. var name_1 = _a[_i];
  1555. extensions.push(this._extensions[name_1]);
  1556. }
  1557. return this._applyExtension(node, extensions, 0, actionAsync);
  1558. };
  1559. _Exporter.prototype._extensionsPreExportTextureAsync = function (context, babylonTexture, mimeType) {
  1560. return this._applyExtensions(babylonTexture, function (extension, node) { return extension.preExportTextureAsync && extension.preExportTextureAsync(context, node, mimeType); });
  1561. };
  1562. _Exporter.prototype._extensionsPostExportMeshPrimitiveAsync = function (context, meshPrimitive, babylonSubMesh, binaryWriter) {
  1563. return this._applyExtensions(meshPrimitive, function (extension, node) { return extension.postExportMeshPrimitiveAsync && extension.postExportMeshPrimitiveAsync(context, node, babylonSubMesh, binaryWriter); });
  1564. };
  1565. _Exporter.prototype._extensionsPostExportNodeAsync = function (context, node, babylonNode, nodeMap) {
  1566. return this._applyExtensions(node, function (extension, node) { return extension.postExportNodeAsync && extension.postExportNodeAsync(context, node, babylonNode, nodeMap); });
  1567. };
  1568. _Exporter.prototype._extensionsPostExportMaterialAsync = function (context, material, babylonMaterial) {
  1569. return this._applyExtensions(material, function (extension, node) { return extension.postExportMaterialAsync && extension.postExportMaterialAsync(context, node, babylonMaterial); });
  1570. };
  1571. _Exporter.prototype._extensionsPostExportMaterialAdditionalTextures = function (context, material, babylonMaterial) {
  1572. var output = [];
  1573. for (var _i = 0, _a = _Exporter._ExtensionNames; _i < _a.length; _i++) {
  1574. var name_2 = _a[_i];
  1575. var extension = this._extensions[name_2];
  1576. if (extension.postExportMaterialAdditionalTextures) {
  1577. output.push.apply(output, extension.postExportMaterialAdditionalTextures(context, material, babylonMaterial));
  1578. }
  1579. }
  1580. return output;
  1581. };
  1582. _Exporter.prototype._extensionsPostExportTextures = function (context, textureInfo, babylonTexture) {
  1583. for (var _i = 0, _a = _Exporter._ExtensionNames; _i < _a.length; _i++) {
  1584. var name_3 = _a[_i];
  1585. var extension = this._extensions[name_3];
  1586. if (extension.postExportTexture) {
  1587. extension.postExportTexture(context, textureInfo, babylonTexture);
  1588. }
  1589. }
  1590. };
  1591. _Exporter.prototype._forEachExtensions = function (action) {
  1592. for (var _i = 0, _a = _Exporter._ExtensionNames; _i < _a.length; _i++) {
  1593. var name_4 = _a[_i];
  1594. var extension = this._extensions[name_4];
  1595. if (extension.enabled) {
  1596. action(extension);
  1597. }
  1598. }
  1599. };
  1600. _Exporter.prototype._extensionsOnExporting = function () {
  1601. var _this = this;
  1602. this._forEachExtensions(function (extension) {
  1603. if (extension.wasUsed) {
  1604. if (_this._glTF.extensionsUsed == null) {
  1605. _this._glTF.extensionsUsed = [];
  1606. }
  1607. if (_this._glTF.extensionsUsed.indexOf(extension.name) === -1) {
  1608. _this._glTF.extensionsUsed.push(extension.name);
  1609. }
  1610. if (extension.required) {
  1611. if (_this._glTF.extensionsRequired == null) {
  1612. _this._glTF.extensionsRequired = [];
  1613. }
  1614. if (_this._glTF.extensionsRequired.indexOf(extension.name) === -1) {
  1615. _this._glTF.extensionsRequired.push(extension.name);
  1616. }
  1617. }
  1618. if (_this._glTF.extensions == null) {
  1619. _this._glTF.extensions = {};
  1620. }
  1621. if (extension.onExporting) {
  1622. extension.onExporting();
  1623. }
  1624. }
  1625. });
  1626. };
  1627. /**
  1628. * Load glTF serializer extensions
  1629. */
  1630. _Exporter.prototype._loadExtensions = function () {
  1631. for (var _i = 0, _a = _Exporter._ExtensionNames; _i < _a.length; _i++) {
  1632. var name_5 = _a[_i];
  1633. var extension = _Exporter._ExtensionFactories[name_5](this);
  1634. this._extensions[name_5] = extension;
  1635. }
  1636. };
  1637. _Exporter.prototype.dispose = function () {
  1638. for (var extensionKey in this._extensions) {
  1639. var extension = this._extensions[extensionKey];
  1640. extension.dispose();
  1641. }
  1642. };
  1643. /**
  1644. * Registers a glTF exporter extension
  1645. * @param name Name of the extension to export
  1646. * @param factory The factory function that creates the exporter extension
  1647. */
  1648. _Exporter.RegisterExtension = function (name, factory) {
  1649. if (_Exporter.UnregisterExtension(name)) {
  1650. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Warn("Extension with the name " + name + " already exists");
  1651. }
  1652. _Exporter._ExtensionFactories[name] = factory;
  1653. _Exporter._ExtensionNames.push(name);
  1654. };
  1655. /**
  1656. * Un-registers an exporter extension
  1657. * @param name The name fo the exporter extension
  1658. * @returns A boolean indicating whether the extension has been un-registered
  1659. */
  1660. _Exporter.UnregisterExtension = function (name) {
  1661. if (!_Exporter._ExtensionFactories[name]) {
  1662. return false;
  1663. }
  1664. delete _Exporter._ExtensionFactories[name];
  1665. var index = _Exporter._ExtensionNames.indexOf(name);
  1666. if (index !== -1) {
  1667. _Exporter._ExtensionNames.splice(index, 1);
  1668. }
  1669. return true;
  1670. };
  1671. /**
  1672. * Lazy load a local engine
  1673. */
  1674. _Exporter.prototype._getLocalEngine = function () {
  1675. if (!this._localEngine) {
  1676. var localCanvas = document.createElement('canvas');
  1677. localCanvas.id = "WriteCanvas";
  1678. localCanvas.width = 2048;
  1679. localCanvas.height = 2048;
  1680. this._localEngine = new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Engine"](localCanvas, true, { premultipliedAlpha: babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].IsSafari(), preserveDrawingBuffer: true });
  1681. this._localEngine.setViewport(new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Viewport"](0, 0, 1, 1));
  1682. }
  1683. return this._localEngine;
  1684. };
  1685. _Exporter.prototype.reorderIndicesBasedOnPrimitiveMode = function (submesh, primitiveMode, babylonIndices, byteOffset, binaryWriter) {
  1686. switch (primitiveMode) {
  1687. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].TriangleFillMode: {
  1688. if (!byteOffset) {
  1689. byteOffset = 0;
  1690. }
  1691. for (var i = submesh.indexStart, length_1 = submesh.indexStart + submesh.indexCount; i < length_1; i = i + 3) {
  1692. var index = byteOffset + i * 4;
  1693. // swap the second and third indices
  1694. var secondIndex = binaryWriter.getUInt32(index + 4);
  1695. var thirdIndex = binaryWriter.getUInt32(index + 8);
  1696. binaryWriter.setUInt32(thirdIndex, index + 4);
  1697. binaryWriter.setUInt32(secondIndex, index + 8);
  1698. }
  1699. break;
  1700. }
  1701. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].TriangleFanDrawMode: {
  1702. for (var i = submesh.indexStart + submesh.indexCount - 1, start = submesh.indexStart; i >= start; --i) {
  1703. binaryWriter.setUInt32(babylonIndices[i], byteOffset);
  1704. byteOffset += 4;
  1705. }
  1706. break;
  1707. }
  1708. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].TriangleStripDrawMode: {
  1709. if (submesh.indexCount >= 3) {
  1710. binaryWriter.setUInt32(babylonIndices[submesh.indexStart + 2], byteOffset + 4);
  1711. binaryWriter.setUInt32(babylonIndices[submesh.indexStart + 1], byteOffset + 8);
  1712. }
  1713. break;
  1714. }
  1715. }
  1716. };
  1717. /**
  1718. * Reorders the vertex attribute data based on the primitive mode. This is necessary when indices are not available and the winding order is
  1719. * clock-wise during export to glTF
  1720. * @param submesh BabylonJS submesh
  1721. * @param primitiveMode Primitive mode of the mesh
  1722. * @param sideOrientation the winding order of the submesh
  1723. * @param vertexBufferKind The type of vertex attribute
  1724. * @param meshAttributeArray The vertex attribute data
  1725. * @param byteOffset The offset to the binary data
  1726. * @param binaryWriter The binary data for the glTF file
  1727. * @param convertToRightHandedSystem Converts the values to right-handed
  1728. */
  1729. _Exporter.prototype.reorderVertexAttributeDataBasedOnPrimitiveMode = function (submesh, primitiveMode, sideOrientation, vertexBufferKind, meshAttributeArray, byteOffset, binaryWriter, convertToRightHandedSystem) {
  1730. if (convertToRightHandedSystem && sideOrientation === babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].ClockWiseSideOrientation) {
  1731. switch (primitiveMode) {
  1732. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].TriangleFillMode: {
  1733. this.reorderTriangleFillMode(submesh, primitiveMode, sideOrientation, vertexBufferKind, meshAttributeArray, byteOffset, binaryWriter, convertToRightHandedSystem);
  1734. break;
  1735. }
  1736. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].TriangleStripDrawMode: {
  1737. this.reorderTriangleStripDrawMode(submesh, primitiveMode, sideOrientation, vertexBufferKind, meshAttributeArray, byteOffset, binaryWriter, convertToRightHandedSystem);
  1738. break;
  1739. }
  1740. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].TriangleFanDrawMode: {
  1741. this.reorderTriangleFanMode(submesh, primitiveMode, sideOrientation, vertexBufferKind, meshAttributeArray, byteOffset, binaryWriter, convertToRightHandedSystem);
  1742. break;
  1743. }
  1744. }
  1745. }
  1746. };
  1747. /**
  1748. * Reorders the vertex attributes in the correct triangle mode order . This is necessary when indices are not available and the winding order is
  1749. * clock-wise during export to glTF
  1750. * @param submesh BabylonJS submesh
  1751. * @param primitiveMode Primitive mode of the mesh
  1752. * @param sideOrientation the winding order of the submesh
  1753. * @param vertexBufferKind The type of vertex attribute
  1754. * @param meshAttributeArray The vertex attribute data
  1755. * @param byteOffset The offset to the binary data
  1756. * @param binaryWriter The binary data for the glTF file
  1757. * @param convertToRightHandedSystem Converts the values to right-handed
  1758. */
  1759. _Exporter.prototype.reorderTriangleFillMode = function (submesh, primitiveMode, sideOrientation, vertexBufferKind, meshAttributeArray, byteOffset, binaryWriter, convertToRightHandedSystem) {
  1760. var vertexBuffer = this.getVertexBufferFromMesh(vertexBufferKind, submesh.getMesh());
  1761. if (vertexBuffer) {
  1762. var stride = vertexBuffer.byteStride / babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].GetTypeByteLength(vertexBuffer.type);
  1763. if (submesh.verticesCount % 3 !== 0) {
  1764. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Error('The submesh vertices for the triangle fill mode is not divisible by 3!');
  1765. }
  1766. else {
  1767. var vertexData = [];
  1768. var index = 0;
  1769. switch (vertexBufferKind) {
  1770. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].PositionKind:
  1771. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].NormalKind: {
  1772. for (var x = submesh.verticesStart; x < submesh.verticesStart + submesh.verticesCount; x = x + 3) {
  1773. index = x * stride;
  1774. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"].FromArray(meshAttributeArray, index));
  1775. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"].FromArray(meshAttributeArray, index + 2 * stride));
  1776. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"].FromArray(meshAttributeArray, index + stride));
  1777. }
  1778. break;
  1779. }
  1780. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].TangentKind: {
  1781. for (var x = submesh.verticesStart; x < submesh.verticesStart + submesh.verticesCount; x = x + 3) {
  1782. index = x * stride;
  1783. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector4"].FromArray(meshAttributeArray, index));
  1784. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector4"].FromArray(meshAttributeArray, index + 2 * stride));
  1785. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector4"].FromArray(meshAttributeArray, index + stride));
  1786. }
  1787. break;
  1788. }
  1789. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].ColorKind: {
  1790. var size = vertexBuffer.getSize();
  1791. for (var x = submesh.verticesStart; x < submesh.verticesStart + submesh.verticesCount; x = x + size) {
  1792. index = x * stride;
  1793. if (size === 4) {
  1794. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector4"].FromArray(meshAttributeArray, index));
  1795. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector4"].FromArray(meshAttributeArray, index + 2 * stride));
  1796. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector4"].FromArray(meshAttributeArray, index + stride));
  1797. }
  1798. else {
  1799. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"].FromArray(meshAttributeArray, index));
  1800. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"].FromArray(meshAttributeArray, index + 2 * stride));
  1801. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"].FromArray(meshAttributeArray, index + stride));
  1802. }
  1803. }
  1804. break;
  1805. }
  1806. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].UVKind:
  1807. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].UV2Kind: {
  1808. for (var x = submesh.verticesStart; x < submesh.verticesStart + submesh.verticesCount; x = x + 3) {
  1809. index = x * stride;
  1810. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector2"].FromArray(meshAttributeArray, index));
  1811. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector2"].FromArray(meshAttributeArray, index + 2 * stride));
  1812. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector2"].FromArray(meshAttributeArray, index + stride));
  1813. }
  1814. break;
  1815. }
  1816. default: {
  1817. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Error("Unsupported Vertex Buffer type: " + vertexBufferKind);
  1818. }
  1819. }
  1820. this.writeVertexAttributeData(vertexData, byteOffset, vertexBufferKind, meshAttributeArray, binaryWriter, convertToRightHandedSystem);
  1821. }
  1822. }
  1823. else {
  1824. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Warn("reorderTriangleFillMode: Vertex Buffer Kind " + vertexBufferKind + " not present!");
  1825. }
  1826. };
  1827. /**
  1828. * Reorders the vertex attributes in the correct triangle strip order. This is necessary when indices are not available and the winding order is
  1829. * clock-wise during export to glTF
  1830. * @param submesh BabylonJS submesh
  1831. * @param primitiveMode Primitive mode of the mesh
  1832. * @param sideOrientation the winding order of the submesh
  1833. * @param vertexBufferKind The type of vertex attribute
  1834. * @param meshAttributeArray The vertex attribute data
  1835. * @param byteOffset The offset to the binary data
  1836. * @param binaryWriter The binary data for the glTF file
  1837. * @param convertToRightHandedSystem Converts the values to right-handed
  1838. */
  1839. _Exporter.prototype.reorderTriangleStripDrawMode = function (submesh, primitiveMode, sideOrientation, vertexBufferKind, meshAttributeArray, byteOffset, binaryWriter, convertToRightHandedSystem) {
  1840. var vertexBuffer = this.getVertexBufferFromMesh(vertexBufferKind, submesh.getMesh());
  1841. if (vertexBuffer) {
  1842. var stride = vertexBuffer.byteStride / babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].GetTypeByteLength(vertexBuffer.type);
  1843. var vertexData = [];
  1844. var index = 0;
  1845. switch (vertexBufferKind) {
  1846. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].PositionKind:
  1847. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].NormalKind: {
  1848. index = submesh.verticesStart;
  1849. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"].FromArray(meshAttributeArray, index + 2 * stride));
  1850. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"].FromArray(meshAttributeArray, index + stride));
  1851. break;
  1852. }
  1853. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].TangentKind: {
  1854. for (var x = submesh.verticesStart + submesh.verticesCount - 1; x >= submesh.verticesStart; --x) {
  1855. index = x * stride;
  1856. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector4"].FromArray(meshAttributeArray, index));
  1857. }
  1858. break;
  1859. }
  1860. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].ColorKind: {
  1861. for (var x = submesh.verticesStart + submesh.verticesCount - 1; x >= submesh.verticesStart; --x) {
  1862. index = x * stride;
  1863. vertexBuffer.getSize() === 4 ? vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector4"].FromArray(meshAttributeArray, index)) : vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"].FromArray(meshAttributeArray, index));
  1864. }
  1865. break;
  1866. }
  1867. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].UVKind:
  1868. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].UV2Kind: {
  1869. for (var x = submesh.verticesStart + submesh.verticesCount - 1; x >= submesh.verticesStart; --x) {
  1870. index = x * stride;
  1871. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector2"].FromArray(meshAttributeArray, index));
  1872. }
  1873. break;
  1874. }
  1875. default: {
  1876. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Error("Unsupported Vertex Buffer type: " + vertexBufferKind);
  1877. }
  1878. }
  1879. this.writeVertexAttributeData(vertexData, byteOffset + 12, vertexBufferKind, meshAttributeArray, binaryWriter, convertToRightHandedSystem);
  1880. }
  1881. else {
  1882. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Warn("reorderTriangleStripDrawMode: Vertex buffer kind " + vertexBufferKind + " not present!");
  1883. }
  1884. };
  1885. /**
  1886. * Reorders the vertex attributes in the correct triangle fan order. This is necessary when indices are not available and the winding order is
  1887. * clock-wise during export to glTF
  1888. * @param submesh BabylonJS submesh
  1889. * @param primitiveMode Primitive mode of the mesh
  1890. * @param sideOrientation the winding order of the submesh
  1891. * @param vertexBufferKind The type of vertex attribute
  1892. * @param meshAttributeArray The vertex attribute data
  1893. * @param byteOffset The offset to the binary data
  1894. * @param binaryWriter The binary data for the glTF file
  1895. * @param convertToRightHandedSystem Converts the values to right-handed
  1896. */
  1897. _Exporter.prototype.reorderTriangleFanMode = function (submesh, primitiveMode, sideOrientation, vertexBufferKind, meshAttributeArray, byteOffset, binaryWriter, convertToRightHandedSystem) {
  1898. var vertexBuffer = this.getVertexBufferFromMesh(vertexBufferKind, submesh.getMesh());
  1899. if (vertexBuffer) {
  1900. var stride = vertexBuffer.byteStride / babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].GetTypeByteLength(vertexBuffer.type);
  1901. var vertexData = [];
  1902. var index = 0;
  1903. switch (vertexBufferKind) {
  1904. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].PositionKind:
  1905. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].NormalKind: {
  1906. for (var x = submesh.verticesStart + submesh.verticesCount - 1; x >= submesh.verticesStart; --x) {
  1907. index = x * stride;
  1908. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"].FromArray(meshAttributeArray, index));
  1909. }
  1910. break;
  1911. }
  1912. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].TangentKind: {
  1913. for (var x = submesh.verticesStart + submesh.verticesCount - 1; x >= submesh.verticesStart; --x) {
  1914. index = x * stride;
  1915. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector4"].FromArray(meshAttributeArray, index));
  1916. }
  1917. break;
  1918. }
  1919. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].ColorKind: {
  1920. for (var x = submesh.verticesStart + submesh.verticesCount - 1; x >= submesh.verticesStart; --x) {
  1921. index = x * stride;
  1922. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector4"].FromArray(meshAttributeArray, index));
  1923. vertexBuffer.getSize() === 4 ? vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector4"].FromArray(meshAttributeArray, index)) : vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"].FromArray(meshAttributeArray, index));
  1924. }
  1925. break;
  1926. }
  1927. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].UVKind:
  1928. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].UV2Kind: {
  1929. for (var x = submesh.verticesStart + submesh.verticesCount - 1; x >= submesh.verticesStart; --x) {
  1930. index = x * stride;
  1931. vertexData.push(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector2"].FromArray(meshAttributeArray, index));
  1932. }
  1933. break;
  1934. }
  1935. default: {
  1936. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Error("Unsupported Vertex Buffer type: " + vertexBufferKind);
  1937. }
  1938. }
  1939. this.writeVertexAttributeData(vertexData, byteOffset, vertexBufferKind, meshAttributeArray, binaryWriter, convertToRightHandedSystem);
  1940. }
  1941. else {
  1942. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Warn("reorderTriangleFanMode: Vertex buffer kind " + vertexBufferKind + " not present!");
  1943. }
  1944. };
  1945. /**
  1946. * Writes the vertex attribute data to binary
  1947. * @param vertices The vertices to write to the binary writer
  1948. * @param byteOffset The offset into the binary writer to overwrite binary data
  1949. * @param vertexAttributeKind The vertex attribute type
  1950. * @param meshAttributeArray The vertex attribute data
  1951. * @param binaryWriter The writer containing the binary data
  1952. * @param convertToRightHandedSystem Converts the values to right-handed
  1953. */
  1954. _Exporter.prototype.writeVertexAttributeData = function (vertices, byteOffset, vertexAttributeKind, meshAttributeArray, binaryWriter, convertToRightHandedSystem) {
  1955. for (var _i = 0, vertices_1 = vertices; _i < vertices_1.length; _i++) {
  1956. var vertex = vertices_1[_i];
  1957. if (convertToRightHandedSystem && !(vertexAttributeKind === babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].ColorKind) && !(vertex instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector2"])) {
  1958. if (vertex instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"]) {
  1959. if (vertexAttributeKind === babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].NormalKind) {
  1960. _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__["_GLTFUtilities"]._GetRightHandedNormalVector3FromRef(vertex);
  1961. }
  1962. else if (vertexAttributeKind === babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].PositionKind) {
  1963. _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__["_GLTFUtilities"]._GetRightHandedPositionVector3FromRef(vertex);
  1964. }
  1965. else {
  1966. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Error('Unsupported vertex attribute kind!');
  1967. }
  1968. }
  1969. else {
  1970. _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__["_GLTFUtilities"]._GetRightHandedVector4FromRef(vertex);
  1971. }
  1972. }
  1973. if (vertexAttributeKind === babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].NormalKind) {
  1974. vertex.normalize();
  1975. }
  1976. else if (vertexAttributeKind === babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].TangentKind && vertex instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector4"]) {
  1977. _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__["_GLTFUtilities"]._NormalizeTangentFromRef(vertex);
  1978. }
  1979. for (var _a = 0, _b = vertex.asArray(); _a < _b.length; _a++) {
  1980. var component = _b[_a];
  1981. binaryWriter.setFloat32(component, byteOffset);
  1982. byteOffset += 4;
  1983. }
  1984. }
  1985. };
  1986. /**
  1987. * Writes mesh attribute data to a data buffer
  1988. * Returns the bytelength of the data
  1989. * @param vertexBufferKind Indicates what kind of vertex data is being passed in
  1990. * @param meshAttributeArray Array containing the attribute data
  1991. * @param binaryWriter The buffer to write the binary data to
  1992. * @param indices Used to specify the order of the vertex data
  1993. * @param convertToRightHandedSystem Converts the values to right-handed
  1994. */
  1995. _Exporter.prototype.writeAttributeData = function (vertexBufferKind, meshAttributeArray, byteStride, binaryWriter, convertToRightHandedSystem) {
  1996. var stride = byteStride / 4;
  1997. var vertexAttributes = [];
  1998. var index;
  1999. switch (vertexBufferKind) {
  2000. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].PositionKind: {
  2001. for (var k = 0, length_2 = meshAttributeArray.length / stride; k < length_2; ++k) {
  2002. index = k * stride;
  2003. var vertexData = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"].FromArray(meshAttributeArray, index);
  2004. if (convertToRightHandedSystem) {
  2005. _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__["_GLTFUtilities"]._GetRightHandedPositionVector3FromRef(vertexData);
  2006. }
  2007. vertexAttributes.push(vertexData.asArray());
  2008. }
  2009. break;
  2010. }
  2011. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].NormalKind: {
  2012. for (var k = 0, length_3 = meshAttributeArray.length / stride; k < length_3; ++k) {
  2013. index = k * stride;
  2014. var vertexData = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"].FromArray(meshAttributeArray, index);
  2015. if (convertToRightHandedSystem) {
  2016. _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__["_GLTFUtilities"]._GetRightHandedNormalVector3FromRef(vertexData);
  2017. }
  2018. vertexData.normalize();
  2019. vertexAttributes.push(vertexData.asArray());
  2020. }
  2021. break;
  2022. }
  2023. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].TangentKind: {
  2024. for (var k = 0, length_4 = meshAttributeArray.length / stride; k < length_4; ++k) {
  2025. index = k * stride;
  2026. var vertexData = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector4"].FromArray(meshAttributeArray, index);
  2027. if (convertToRightHandedSystem) {
  2028. _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__["_GLTFUtilities"]._GetRightHandedVector4FromRef(vertexData);
  2029. }
  2030. _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__["_GLTFUtilities"]._NormalizeTangentFromRef(vertexData);
  2031. vertexAttributes.push(vertexData.asArray());
  2032. }
  2033. break;
  2034. }
  2035. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].ColorKind: {
  2036. for (var k = 0, length_5 = meshAttributeArray.length / stride; k < length_5; ++k) {
  2037. index = k * stride;
  2038. var vertexData = stride === 3 ? babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"].FromArray(meshAttributeArray, index) : babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector4"].FromArray(meshAttributeArray, index);
  2039. vertexAttributes.push(vertexData.asArray());
  2040. }
  2041. break;
  2042. }
  2043. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].UVKind:
  2044. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].UV2Kind: {
  2045. for (var k = 0, length_6 = meshAttributeArray.length / stride; k < length_6; ++k) {
  2046. index = k * stride;
  2047. vertexAttributes.push(convertToRightHandedSystem ? [meshAttributeArray[index], meshAttributeArray[index + 1]] : [meshAttributeArray[index], meshAttributeArray[index + 1]]);
  2048. }
  2049. break;
  2050. }
  2051. default: {
  2052. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Warn("Unsupported Vertex Buffer Type: " + vertexBufferKind);
  2053. vertexAttributes = [];
  2054. }
  2055. }
  2056. for (var _i = 0, vertexAttributes_1 = vertexAttributes; _i < vertexAttributes_1.length; _i++) {
  2057. var vertexAttribute = vertexAttributes_1[_i];
  2058. for (var _a = 0, vertexAttribute_1 = vertexAttribute; _a < vertexAttribute_1.length; _a++) {
  2059. var component = vertexAttribute_1[_a];
  2060. binaryWriter.setFloat32(component);
  2061. }
  2062. }
  2063. };
  2064. /**
  2065. * Generates glTF json data
  2066. * @param shouldUseGlb Indicates whether the json should be written for a glb file
  2067. * @param glTFPrefix Text to use when prefixing a glTF file
  2068. * @param prettyPrint Indicates whether the json file should be pretty printed (true) or not (false)
  2069. * @returns json data as string
  2070. */
  2071. _Exporter.prototype.generateJSON = function (shouldUseGlb, glTFPrefix, prettyPrint) {
  2072. var _this = this;
  2073. var buffer = { byteLength: this._totalByteLength };
  2074. var imageName;
  2075. var imageData;
  2076. var bufferView;
  2077. var byteOffset = this._totalByteLength;
  2078. if (buffer.byteLength) {
  2079. this._glTF.buffers = [buffer];
  2080. }
  2081. if (this._nodes && this._nodes.length) {
  2082. this._glTF.nodes = this._nodes;
  2083. }
  2084. if (this._meshes && this._meshes.length) {
  2085. this._glTF.meshes = this._meshes;
  2086. }
  2087. if (this._scenes && this._scenes.length) {
  2088. this._glTF.scenes = this._scenes;
  2089. this._glTF.scene = 0;
  2090. }
  2091. if (this._bufferViews && this._bufferViews.length) {
  2092. this._glTF.bufferViews = this._bufferViews;
  2093. }
  2094. if (this._accessors && this._accessors.length) {
  2095. this._glTF.accessors = this._accessors;
  2096. }
  2097. if (this._animations && this._animations.length) {
  2098. this._glTF.animations = this._animations;
  2099. }
  2100. if (this._materials && this._materials.length) {
  2101. this._glTF.materials = this._materials;
  2102. }
  2103. if (this._textures && this._textures.length) {
  2104. this._glTF.textures = this._textures;
  2105. }
  2106. if (this._samplers && this._samplers.length) {
  2107. this._glTF.samplers = this._samplers;
  2108. }
  2109. if (this._images && this._images.length) {
  2110. if (!shouldUseGlb) {
  2111. this._glTF.images = this._images;
  2112. }
  2113. else {
  2114. this._glTF.images = [];
  2115. this._images.forEach(function (image) {
  2116. if (image.uri) {
  2117. imageData = _this._imageData[image.uri];
  2118. imageName = image.uri.split('.')[0] + " image";
  2119. bufferView = _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__["_GLTFUtilities"]._CreateBufferView(0, byteOffset, imageData.data.length, undefined, imageName);
  2120. byteOffset += imageData.data.buffer.byteLength;
  2121. _this._bufferViews.push(bufferView);
  2122. image.bufferView = _this._bufferViews.length - 1;
  2123. image.name = imageName;
  2124. image.mimeType = imageData.mimeType;
  2125. image.uri = undefined;
  2126. if (!_this._glTF.images) {
  2127. _this._glTF.images = [];
  2128. }
  2129. _this._glTF.images.push(image);
  2130. }
  2131. });
  2132. // Replace uri with bufferview and mime type for glb
  2133. buffer.byteLength = byteOffset;
  2134. }
  2135. }
  2136. if (!shouldUseGlb) {
  2137. buffer.uri = glTFPrefix + ".bin";
  2138. }
  2139. var jsonText = prettyPrint ? JSON.stringify(this._glTF, null, 2) : JSON.stringify(this._glTF);
  2140. return jsonText;
  2141. };
  2142. /**
  2143. * Generates data for .gltf and .bin files based on the glTF prefix string
  2144. * @param glTFPrefix Text to use when prefixing a glTF file
  2145. * @param dispose Dispose the exporter
  2146. * @returns GLTFData with glTF file data
  2147. */
  2148. _Exporter.prototype._generateGLTFAsync = function (glTFPrefix, dispose) {
  2149. var _this = this;
  2150. if (dispose === void 0) { dispose = true; }
  2151. return this._generateBinaryAsync().then(function (binaryBuffer) {
  2152. _this._extensionsOnExporting();
  2153. var jsonText = _this.generateJSON(false, glTFPrefix, true);
  2154. var bin = new Blob([binaryBuffer], { type: 'application/octet-stream' });
  2155. var glTFFileName = glTFPrefix + '.gltf';
  2156. var glTFBinFile = glTFPrefix + '.bin';
  2157. var container = new _glTFData__WEBPACK_IMPORTED_MODULE_4__["GLTFData"]();
  2158. container.glTFFiles[glTFFileName] = jsonText;
  2159. container.glTFFiles[glTFBinFile] = bin;
  2160. if (_this._imageData) {
  2161. for (var image in _this._imageData) {
  2162. container.glTFFiles[image] = new Blob([_this._imageData[image].data], { type: _this._imageData[image].mimeType });
  2163. }
  2164. }
  2165. if (dispose) {
  2166. _this.dispose();
  2167. }
  2168. return container;
  2169. });
  2170. };
  2171. /**
  2172. * Creates a binary buffer for glTF
  2173. * @returns array buffer for binary data
  2174. */
  2175. _Exporter.prototype._generateBinaryAsync = function () {
  2176. var _this = this;
  2177. var binaryWriter = new _BinaryWriter(4);
  2178. return this.createSceneAsync(this._babylonScene, binaryWriter).then(function () {
  2179. if (_this._localEngine) {
  2180. _this._localEngine.dispose();
  2181. }
  2182. return binaryWriter.getArrayBuffer();
  2183. });
  2184. };
  2185. /**
  2186. * Pads the number to a multiple of 4
  2187. * @param num number to pad
  2188. * @returns padded number
  2189. */
  2190. _Exporter.prototype._getPadding = function (num) {
  2191. var remainder = num % 4;
  2192. var padding = remainder === 0 ? remainder : 4 - remainder;
  2193. return padding;
  2194. };
  2195. /**
  2196. * @hidden
  2197. */
  2198. _Exporter.prototype._generateGLBAsync = function (glTFPrefix, dispose) {
  2199. var _this = this;
  2200. if (dispose === void 0) { dispose = true; }
  2201. return this._generateBinaryAsync().then(function (binaryBuffer) {
  2202. _this._extensionsOnExporting();
  2203. var jsonText = _this.generateJSON(true);
  2204. var glbFileName = glTFPrefix + '.glb';
  2205. var headerLength = 12;
  2206. var chunkLengthPrefix = 8;
  2207. var jsonLength = jsonText.length;
  2208. var imageByteLength = 0;
  2209. for (var key in _this._imageData) {
  2210. imageByteLength += _this._imageData[key].data.byteLength;
  2211. }
  2212. var jsonPadding = _this._getPadding(jsonLength);
  2213. var binPadding = _this._getPadding(binaryBuffer.byteLength);
  2214. var imagePadding = _this._getPadding(imageByteLength);
  2215. var byteLength = headerLength + (2 * chunkLengthPrefix) + jsonLength + jsonPadding + binaryBuffer.byteLength + binPadding + imageByteLength + imagePadding;
  2216. //header
  2217. var headerBuffer = new ArrayBuffer(headerLength);
  2218. var headerBufferView = new DataView(headerBuffer);
  2219. headerBufferView.setUint32(0, 0x46546C67, true); //glTF
  2220. headerBufferView.setUint32(4, 2, true); // version
  2221. headerBufferView.setUint32(8, byteLength, true); // total bytes in file
  2222. //json chunk
  2223. var jsonChunkBuffer = new ArrayBuffer(chunkLengthPrefix + jsonLength + jsonPadding);
  2224. var jsonChunkBufferView = new DataView(jsonChunkBuffer);
  2225. jsonChunkBufferView.setUint32(0, jsonLength + jsonPadding, true);
  2226. jsonChunkBufferView.setUint32(4, 0x4E4F534A, true);
  2227. //json chunk bytes
  2228. var jsonData = new Uint8Array(jsonChunkBuffer, chunkLengthPrefix);
  2229. for (var i = 0; i < jsonLength; ++i) {
  2230. jsonData[i] = jsonText.charCodeAt(i);
  2231. }
  2232. //json padding
  2233. var jsonPaddingView = new Uint8Array(jsonChunkBuffer, chunkLengthPrefix + jsonLength);
  2234. for (var i = 0; i < jsonPadding; ++i) {
  2235. jsonPaddingView[i] = 0x20;
  2236. }
  2237. //binary chunk
  2238. var binaryChunkBuffer = new ArrayBuffer(chunkLengthPrefix);
  2239. var binaryChunkBufferView = new DataView(binaryChunkBuffer);
  2240. binaryChunkBufferView.setUint32(0, binaryBuffer.byteLength + imageByteLength + imagePadding, true);
  2241. binaryChunkBufferView.setUint32(4, 0x004E4942, true);
  2242. // binary padding
  2243. var binPaddingBuffer = new ArrayBuffer(binPadding);
  2244. var binPaddingView = new Uint8Array(binPaddingBuffer);
  2245. for (var i = 0; i < binPadding; ++i) {
  2246. binPaddingView[i] = 0;
  2247. }
  2248. var imagePaddingBuffer = new ArrayBuffer(imagePadding);
  2249. var imagePaddingView = new Uint8Array(imagePaddingBuffer);
  2250. for (var i = 0; i < imagePadding; ++i) {
  2251. imagePaddingView[i] = 0;
  2252. }
  2253. var glbData = [headerBuffer, jsonChunkBuffer, binaryChunkBuffer, binaryBuffer];
  2254. // binary data
  2255. for (var key in _this._imageData) {
  2256. glbData.push(_this._imageData[key].data.buffer);
  2257. }
  2258. glbData.push(binPaddingBuffer);
  2259. glbData.push(imagePaddingBuffer);
  2260. var glbFile = new Blob(glbData, { type: 'application/octet-stream' });
  2261. var container = new _glTFData__WEBPACK_IMPORTED_MODULE_4__["GLTFData"]();
  2262. container.glTFFiles[glbFileName] = glbFile;
  2263. if (_this._localEngine != null) {
  2264. _this._localEngine.dispose();
  2265. }
  2266. if (dispose) {
  2267. _this.dispose();
  2268. }
  2269. return container;
  2270. });
  2271. };
  2272. /**
  2273. * Sets the TRS for each node
  2274. * @param node glTF Node for storing the transformation data
  2275. * @param babylonTransformNode Babylon mesh used as the source for the transformation data
  2276. * @param convertToRightHandedSystem Converts the values to right-handed
  2277. */
  2278. _Exporter.prototype.setNodeTransformation = function (node, babylonTransformNode, convertToRightHandedSystem) {
  2279. if (!babylonTransformNode.getPivotPoint().equalsToFloats(0, 0, 0)) {
  2280. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Warn("Pivot points are not supported in the glTF serializer");
  2281. }
  2282. if (!babylonTransformNode.position.equalsToFloats(0, 0, 0)) {
  2283. node.translation = convertToRightHandedSystem ? _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__["_GLTFUtilities"]._GetRightHandedPositionVector3(babylonTransformNode.position).asArray() : babylonTransformNode.position.asArray();
  2284. }
  2285. if (!babylonTransformNode.scaling.equalsToFloats(1, 1, 1)) {
  2286. node.scale = babylonTransformNode.scaling.asArray();
  2287. }
  2288. var rotationQuaternion = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Quaternion"].RotationYawPitchRoll(babylonTransformNode.rotation.y, babylonTransformNode.rotation.x, babylonTransformNode.rotation.z);
  2289. if (babylonTransformNode.rotationQuaternion) {
  2290. rotationQuaternion.multiplyInPlace(babylonTransformNode.rotationQuaternion);
  2291. }
  2292. if (!(rotationQuaternion.x === 0 && rotationQuaternion.y === 0 && rotationQuaternion.z === 0 && rotationQuaternion.w === 1)) {
  2293. if (convertToRightHandedSystem) {
  2294. _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__["_GLTFUtilities"]._GetRightHandedQuaternionFromRef(rotationQuaternion);
  2295. }
  2296. node.rotation = rotationQuaternion.normalize().asArray();
  2297. }
  2298. };
  2299. _Exporter.prototype.getVertexBufferFromMesh = function (attributeKind, bufferMesh) {
  2300. if (bufferMesh.isVerticesDataPresent(attributeKind)) {
  2301. var vertexBuffer = bufferMesh.getVertexBuffer(attributeKind);
  2302. if (vertexBuffer) {
  2303. return vertexBuffer;
  2304. }
  2305. }
  2306. return null;
  2307. };
  2308. /**
  2309. * Creates a bufferview based on the vertices type for the Babylon mesh
  2310. * @param kind Indicates the type of vertices data
  2311. * @param babylonTransformNode The Babylon mesh to get the vertices data from
  2312. * @param binaryWriter The buffer to write the bufferview data to
  2313. * @param convertToRightHandedSystem Converts the values to right-handed
  2314. */
  2315. _Exporter.prototype.createBufferViewKind = function (kind, babylonTransformNode, binaryWriter, byteStride, convertToRightHandedSystem) {
  2316. var bufferMesh = babylonTransformNode instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Mesh"] ?
  2317. babylonTransformNode : babylonTransformNode instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["InstancedMesh"] ?
  2318. babylonTransformNode.sourceMesh : null;
  2319. if (bufferMesh) {
  2320. var vertexData = bufferMesh.getVerticesData(kind);
  2321. if (vertexData) {
  2322. var byteLength = vertexData.length * 4;
  2323. var bufferView = _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__["_GLTFUtilities"]._CreateBufferView(0, binaryWriter.getByteOffset(), byteLength, byteStride, kind + " - " + bufferMesh.name);
  2324. this._bufferViews.push(bufferView);
  2325. this.writeAttributeData(kind, vertexData, byteStride, binaryWriter, convertToRightHandedSystem);
  2326. }
  2327. }
  2328. };
  2329. /**
  2330. * The primitive mode of the Babylon mesh
  2331. * @param babylonMesh The BabylonJS mesh
  2332. */
  2333. _Exporter.prototype.getMeshPrimitiveMode = function (babylonMesh) {
  2334. if (babylonMesh instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["LinesMesh"]) {
  2335. return babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].LineListDrawMode;
  2336. }
  2337. return babylonMesh.material ? babylonMesh.material.fillMode : babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].TriangleFillMode;
  2338. };
  2339. /**
  2340. * Sets the primitive mode of the glTF mesh primitive
  2341. * @param meshPrimitive glTF mesh primitive
  2342. * @param primitiveMode The primitive mode
  2343. */
  2344. _Exporter.prototype.setPrimitiveMode = function (meshPrimitive, primitiveMode) {
  2345. switch (primitiveMode) {
  2346. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].TriangleFillMode: {
  2347. // glTF defaults to using Triangle Mode
  2348. break;
  2349. }
  2350. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].TriangleStripDrawMode: {
  2351. meshPrimitive.mode = 5 /* TRIANGLE_STRIP */;
  2352. break;
  2353. }
  2354. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].TriangleFanDrawMode: {
  2355. meshPrimitive.mode = 6 /* TRIANGLE_FAN */;
  2356. break;
  2357. }
  2358. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].PointListDrawMode: {
  2359. meshPrimitive.mode = 0 /* POINTS */;
  2360. }
  2361. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].PointFillMode: {
  2362. meshPrimitive.mode = 0 /* POINTS */;
  2363. break;
  2364. }
  2365. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].LineLoopDrawMode: {
  2366. meshPrimitive.mode = 2 /* LINE_LOOP */;
  2367. break;
  2368. }
  2369. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].LineListDrawMode: {
  2370. meshPrimitive.mode = 1 /* LINES */;
  2371. break;
  2372. }
  2373. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].LineStripDrawMode: {
  2374. meshPrimitive.mode = 3 /* LINE_STRIP */;
  2375. break;
  2376. }
  2377. }
  2378. };
  2379. /**
  2380. * Sets the vertex attribute accessor based of the glTF mesh primitive
  2381. * @param meshPrimitive glTF mesh primitive
  2382. * @param attributeKind vertex attribute
  2383. * @returns boolean specifying if uv coordinates are present
  2384. */
  2385. _Exporter.prototype.setAttributeKind = function (meshPrimitive, attributeKind) {
  2386. switch (attributeKind) {
  2387. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].PositionKind: {
  2388. meshPrimitive.attributes.POSITION = this._accessors.length - 1;
  2389. break;
  2390. }
  2391. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].NormalKind: {
  2392. meshPrimitive.attributes.NORMAL = this._accessors.length - 1;
  2393. break;
  2394. }
  2395. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].ColorKind: {
  2396. meshPrimitive.attributes.COLOR_0 = this._accessors.length - 1;
  2397. break;
  2398. }
  2399. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].TangentKind: {
  2400. meshPrimitive.attributes.TANGENT = this._accessors.length - 1;
  2401. break;
  2402. }
  2403. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].UVKind: {
  2404. meshPrimitive.attributes.TEXCOORD_0 = this._accessors.length - 1;
  2405. break;
  2406. }
  2407. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].UV2Kind: {
  2408. meshPrimitive.attributes.TEXCOORD_1 = this._accessors.length - 1;
  2409. break;
  2410. }
  2411. default: {
  2412. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Warn("Unsupported Vertex Buffer Type: " + attributeKind);
  2413. }
  2414. }
  2415. };
  2416. /**
  2417. * Sets data for the primitive attributes of each submesh
  2418. * @param mesh glTF Mesh object to store the primitive attribute information
  2419. * @param babylonTransformNode Babylon mesh to get the primitive attribute data from
  2420. * @param binaryWriter Buffer to write the attribute data to
  2421. * @param convertToRightHandedSystem Converts the values to right-handed
  2422. */
  2423. _Exporter.prototype.setPrimitiveAttributesAsync = function (mesh, babylonTransformNode, binaryWriter, convertToRightHandedSystem) {
  2424. var _a;
  2425. var promises = [];
  2426. var bufferMesh = null;
  2427. var bufferView;
  2428. var minMax;
  2429. if (babylonTransformNode instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Mesh"]) {
  2430. bufferMesh = babylonTransformNode;
  2431. }
  2432. else if (babylonTransformNode instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["InstancedMesh"]) {
  2433. bufferMesh = babylonTransformNode.sourceMesh;
  2434. }
  2435. var attributeData = [
  2436. { kind: babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].PositionKind, accessorType: "VEC3" /* VEC3 */, byteStride: 12 },
  2437. { kind: babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].NormalKind, accessorType: "VEC3" /* VEC3 */, byteStride: 12 },
  2438. { kind: babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].ColorKind, accessorType: "VEC4" /* VEC4 */, byteStride: 16 },
  2439. { kind: babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].TangentKind, accessorType: "VEC4" /* VEC4 */, byteStride: 16 },
  2440. { kind: babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].UVKind, accessorType: "VEC2" /* VEC2 */, byteStride: 8 },
  2441. { kind: babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].UV2Kind, accessorType: "VEC2" /* VEC2 */, byteStride: 8 },
  2442. ];
  2443. if (bufferMesh) {
  2444. var indexBufferViewIndex = null;
  2445. var primitiveMode = this.getMeshPrimitiveMode(bufferMesh);
  2446. var vertexAttributeBufferViews = {};
  2447. // For each BabylonMesh, create bufferviews for each 'kind'
  2448. for (var _i = 0, attributeData_1 = attributeData; _i < attributeData_1.length; _i++) {
  2449. var attribute = attributeData_1[_i];
  2450. var attributeKind = attribute.kind;
  2451. if (bufferMesh.isVerticesDataPresent(attributeKind)) {
  2452. var vertexBuffer = this.getVertexBufferFromMesh(attributeKind, bufferMesh);
  2453. attribute.byteStride = vertexBuffer ? vertexBuffer.getSize() * 4 : babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].DeduceStride(attributeKind) * 4;
  2454. if (attribute.byteStride === 12) {
  2455. attribute.accessorType = "VEC3" /* VEC3 */;
  2456. }
  2457. this.createBufferViewKind(attributeKind, babylonTransformNode, binaryWriter, attribute.byteStride, convertToRightHandedSystem);
  2458. attribute.bufferViewIndex = this._bufferViews.length - 1;
  2459. vertexAttributeBufferViews[attributeKind] = attribute.bufferViewIndex;
  2460. }
  2461. }
  2462. if (bufferMesh.getTotalIndices()) {
  2463. var indices = bufferMesh.getIndices();
  2464. if (indices) {
  2465. var byteLength = indices.length * 4;
  2466. bufferView = _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__["_GLTFUtilities"]._CreateBufferView(0, binaryWriter.getByteOffset(), byteLength, undefined, "Indices - " + bufferMesh.name);
  2467. this._bufferViews.push(bufferView);
  2468. indexBufferViewIndex = this._bufferViews.length - 1;
  2469. for (var k = 0, length_7 = indices.length; k < length_7; ++k) {
  2470. binaryWriter.setUInt32(indices[k]);
  2471. }
  2472. }
  2473. }
  2474. if (bufferMesh.subMeshes) {
  2475. // go through all mesh primitives (submeshes)
  2476. for (var _b = 0, _c = bufferMesh.subMeshes; _b < _c.length; _b++) {
  2477. var submesh = _c[_b];
  2478. var babylonMaterial = submesh.getMaterial() || bufferMesh.getScene().defaultMaterial;
  2479. var materialIndex = null;
  2480. if (babylonMaterial) {
  2481. if (bufferMesh instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["LinesMesh"]) {
  2482. // get the color from the lines mesh and set it in the material
  2483. var material = {
  2484. name: bufferMesh.name + ' material'
  2485. };
  2486. if (!bufferMesh.color.equals(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Color3"].White()) || bufferMesh.alpha < 1) {
  2487. material.pbrMetallicRoughness = {
  2488. baseColorFactor: bufferMesh.color.asArray().concat([bufferMesh.alpha])
  2489. };
  2490. }
  2491. this._materials.push(material);
  2492. materialIndex = this._materials.length - 1;
  2493. }
  2494. else if (babylonMaterial instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["MultiMaterial"]) {
  2495. var subMaterial = babylonMaterial.subMaterials[submesh.materialIndex];
  2496. if (subMaterial) {
  2497. babylonMaterial = subMaterial;
  2498. materialIndex = this._materialMap[babylonMaterial.uniqueId];
  2499. }
  2500. }
  2501. else {
  2502. materialIndex = this._materialMap[babylonMaterial.uniqueId];
  2503. }
  2504. }
  2505. var glTFMaterial = materialIndex != null ? this._materials[materialIndex] : null;
  2506. var meshPrimitive = { attributes: {} };
  2507. this.setPrimitiveMode(meshPrimitive, primitiveMode);
  2508. for (var _d = 0, attributeData_2 = attributeData; _d < attributeData_2.length; _d++) {
  2509. var attribute = attributeData_2[_d];
  2510. var attributeKind = attribute.kind;
  2511. if (attributeKind === babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].UVKind || attributeKind === babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].UV2Kind) {
  2512. if (glTFMaterial && !this._glTFMaterialExporter._hasTexturesPresent(glTFMaterial)) {
  2513. continue;
  2514. }
  2515. }
  2516. var vertexData = bufferMesh.getVerticesData(attributeKind);
  2517. if (vertexData) {
  2518. var vertexBuffer = this.getVertexBufferFromMesh(attributeKind, bufferMesh);
  2519. if (vertexBuffer) {
  2520. var stride = vertexBuffer.getSize();
  2521. var bufferViewIndex = attribute.bufferViewIndex;
  2522. if (bufferViewIndex != undefined) { // check to see if bufferviewindex has a numeric value assigned.
  2523. minMax = { min: null, max: null };
  2524. if (attributeKind == babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["VertexBuffer"].PositionKind) {
  2525. minMax = _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__["_GLTFUtilities"]._CalculateMinMaxPositions(vertexData, 0, vertexData.length / stride, convertToRightHandedSystem);
  2526. }
  2527. var accessor = _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__["_GLTFUtilities"]._CreateAccessor(bufferViewIndex, attributeKind + " - " + babylonTransformNode.name, attribute.accessorType, 5126 /* FLOAT */, vertexData.length / stride, 0, minMax.min, minMax.max);
  2528. this._accessors.push(accessor);
  2529. this.setAttributeKind(meshPrimitive, attributeKind);
  2530. }
  2531. }
  2532. }
  2533. }
  2534. if (indexBufferViewIndex) {
  2535. // Create accessor
  2536. var accessor = _glTFUtilities__WEBPACK_IMPORTED_MODULE_3__["_GLTFUtilities"]._CreateAccessor(indexBufferViewIndex, "indices - " + babylonTransformNode.name, "SCALAR" /* SCALAR */, 5125 /* UNSIGNED_INT */, submesh.indexCount, submesh.indexStart * 4, null, null);
  2537. this._accessors.push(accessor);
  2538. meshPrimitive.indices = this._accessors.length - 1;
  2539. }
  2540. if (materialIndex != null && Object.keys(meshPrimitive.attributes).length > 0) {
  2541. var sideOrientation = bufferMesh.overrideMaterialSideOrientation !== null ? bufferMesh.overrideMaterialSideOrientation : babylonMaterial.sideOrientation;
  2542. if ((sideOrientation == babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].ClockWiseSideOrientation && this._babylonScene.useRightHandedSystem)
  2543. || (sideOrientation == babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Material"].ClockWiseSideOrientation && convertToRightHandedSystem && bufferMesh.overrideMaterialSideOrientation !== ((_a = bufferMesh.material) === null || _a === void 0 ? void 0 : _a.sideOrientation))) {
  2544. var byteOffset = indexBufferViewIndex != null ? this._bufferViews[indexBufferViewIndex].byteOffset : null;
  2545. if (byteOffset == null) {
  2546. byteOffset = 0;
  2547. }
  2548. var babylonIndices = null;
  2549. if (indexBufferViewIndex != null) {
  2550. babylonIndices = bufferMesh.getIndices();
  2551. }
  2552. if (babylonIndices) {
  2553. this.reorderIndicesBasedOnPrimitiveMode(submesh, primitiveMode, babylonIndices, byteOffset, binaryWriter);
  2554. }
  2555. else {
  2556. for (var _e = 0, attributeData_3 = attributeData; _e < attributeData_3.length; _e++) {
  2557. var attribute = attributeData_3[_e];
  2558. var vertexData = bufferMesh.getVerticesData(attribute.kind);
  2559. if (vertexData) {
  2560. var byteOffset_1 = this._bufferViews[vertexAttributeBufferViews[attribute.kind]].byteOffset;
  2561. if (!byteOffset_1) {
  2562. byteOffset_1 = 0;
  2563. }
  2564. this.reorderVertexAttributeDataBasedOnPrimitiveMode(submesh, primitiveMode, sideOrientation, attribute.kind, vertexData, byteOffset_1, binaryWriter, convertToRightHandedSystem);
  2565. }
  2566. }
  2567. }
  2568. }
  2569. meshPrimitive.material = materialIndex;
  2570. }
  2571. mesh.primitives.push(meshPrimitive);
  2572. var promise = this._extensionsPostExportMeshPrimitiveAsync("postExport", meshPrimitive, submesh, binaryWriter);
  2573. if (promise) {
  2574. promises.push();
  2575. }
  2576. }
  2577. }
  2578. }
  2579. return Promise.all(promises).then(function () {
  2580. /* do nothing */
  2581. });
  2582. };
  2583. /**
  2584. * Check if the node is used to convert its descendants from a right handed coordinate system to the Babylon scene's coordinate system.
  2585. * @param node The node to check
  2586. * @returns True if the node is used to convert its descendants from right-handed to left-handed. False otherwise
  2587. */
  2588. _Exporter.prototype.isBabylonCoordinateSystemConvertingNode = function (node) {
  2589. if (node instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["TransformNode"]) {
  2590. if (node.name !== "__root__") {
  2591. return false;
  2592. }
  2593. // Transform
  2594. var matrix = node.getWorldMatrix();
  2595. var matrixToLeftHanded = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Matrix"].Compose(this._convertToRightHandedSystem ? new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"](-1, 1, 1) : babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"].One(), babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Quaternion"].Identity(), babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Vector3"].Zero());
  2596. var matrixProduct = matrix.multiply(matrixToLeftHanded);
  2597. var matrixIdentity = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Matrix"].IdentityReadOnly;
  2598. for (var i = 0; i < 16; i++) {
  2599. if (Math.abs(matrixProduct.m[i] - matrixIdentity.m[i]) > babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Epsilon"]) {
  2600. return false;
  2601. }
  2602. }
  2603. // Geometry
  2604. if ((node instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Mesh"] && node.geometry !== null) ||
  2605. (node instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["InstancedMesh"] && node.sourceMesh.geometry !== null)) {
  2606. return false;
  2607. }
  2608. if (this._includeCoordinateSystemConversionNodes) {
  2609. return false;
  2610. }
  2611. return true;
  2612. }
  2613. return false;
  2614. };
  2615. /**
  2616. * Creates a glTF scene based on the array of meshes
  2617. * Returns the the total byte offset
  2618. * @param babylonScene Babylon scene to get the mesh data from
  2619. * @param binaryWriter Buffer to write binary data to
  2620. */
  2621. _Exporter.prototype.createSceneAsync = function (babylonScene, binaryWriter) {
  2622. var _this = this;
  2623. var scene = { nodes: [] };
  2624. var glTFNodeIndex;
  2625. var glTFNode;
  2626. var directDescendents;
  2627. var nodes = Object(tslib__WEBPACK_IMPORTED_MODULE_0__["__spreadArrays"])(babylonScene.transformNodes, babylonScene.meshes, babylonScene.lights);
  2628. var rootNodesToLeftHanded = [];
  2629. this._convertToRightHandedSystem = !babylonScene.useRightHandedSystem;
  2630. this._convertToRightHandedSystemMap = {};
  2631. // Set default values for all nodes
  2632. babylonScene.rootNodes.forEach(function (rootNode) {
  2633. _this._convertToRightHandedSystemMap[rootNode.uniqueId] = _this._convertToRightHandedSystem;
  2634. rootNode.getDescendants(false).forEach(function (descendant) {
  2635. _this._convertToRightHandedSystemMap[descendant.uniqueId] = _this._convertToRightHandedSystem;
  2636. });
  2637. });
  2638. // Check if root nodes converting to left-handed are present
  2639. babylonScene.rootNodes.forEach(function (rootNode) {
  2640. if (_this.isBabylonCoordinateSystemConvertingNode(rootNode)) {
  2641. rootNodesToLeftHanded.push(rootNode);
  2642. // Exclude the node from list of nodes to export
  2643. var indexRootNode = nodes.indexOf(rootNode);
  2644. if (indexRootNode !== -1) { // should always be true
  2645. nodes.splice(indexRootNode, 1);
  2646. }
  2647. // Cancel conversion to right handed system
  2648. rootNode.getDescendants(false).forEach(function (descendant) {
  2649. _this._convertToRightHandedSystemMap[descendant.uniqueId] = false;
  2650. });
  2651. }
  2652. });
  2653. return this._glTFMaterialExporter._convertMaterialsToGLTFAsync(babylonScene.materials, "image/png" /* PNG */, true).then(function () {
  2654. return _this.createNodeMapAndAnimationsAsync(babylonScene, nodes, binaryWriter).then(function (nodeMap) {
  2655. _this._nodeMap = nodeMap;
  2656. _this._totalByteLength = binaryWriter.getByteOffset();
  2657. if (_this._totalByteLength == undefined) {
  2658. throw new Error("undefined byte length!");
  2659. }
  2660. // Build Hierarchy with the node map.
  2661. for (var _i = 0, nodes_1 = nodes; _i < nodes_1.length; _i++) {
  2662. var babylonNode = nodes_1[_i];
  2663. glTFNodeIndex = _this._nodeMap[babylonNode.uniqueId];
  2664. if (glTFNodeIndex !== undefined) {
  2665. glTFNode = _this._nodes[glTFNodeIndex];
  2666. if (babylonNode.metadata) {
  2667. if (_this._options.metadataSelector) {
  2668. glTFNode.extras = _this._options.metadataSelector(babylonNode.metadata);
  2669. }
  2670. else if (babylonNode.metadata.gltf) {
  2671. glTFNode.extras = babylonNode.metadata.gltf.extras;
  2672. }
  2673. }
  2674. if (!babylonNode.parent || rootNodesToLeftHanded.indexOf(babylonNode.parent) !== -1) {
  2675. if (_this._options.shouldExportNode && !_this._options.shouldExportNode(babylonNode)) {
  2676. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Log("Omitting " + babylonNode.name + " from scene.");
  2677. }
  2678. else {
  2679. var convertToRightHandedSystem = _this._convertToRightHandedSystemMap[babylonNode.uniqueId];
  2680. if (convertToRightHandedSystem) {
  2681. if (glTFNode.translation) {
  2682. glTFNode.translation[2] *= -1;
  2683. glTFNode.translation[0] *= -1;
  2684. }
  2685. glTFNode.rotation = glTFNode.rotation ? babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Quaternion"].FromArray([0, 1, 0, 0]).multiply(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Quaternion"].FromArray(glTFNode.rotation)).asArray() : (babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Quaternion"].FromArray([0, 1, 0, 0])).asArray();
  2686. }
  2687. scene.nodes.push(glTFNodeIndex);
  2688. }
  2689. }
  2690. directDescendents = babylonNode.getDescendants(true);
  2691. if (!glTFNode.children && directDescendents && directDescendents.length) {
  2692. var children = [];
  2693. for (var _a = 0, directDescendents_1 = directDescendents; _a < directDescendents_1.length; _a++) {
  2694. var descendent = directDescendents_1[_a];
  2695. if (_this._nodeMap[descendent.uniqueId] != null) {
  2696. children.push(_this._nodeMap[descendent.uniqueId]);
  2697. }
  2698. }
  2699. if (children.length) {
  2700. glTFNode.children = children;
  2701. }
  2702. }
  2703. }
  2704. }
  2705. if (scene.nodes.length) {
  2706. _this._scenes.push(scene);
  2707. }
  2708. });
  2709. });
  2710. };
  2711. /**
  2712. * Creates a mapping of Node unique id to node index and handles animations
  2713. * @param babylonScene Babylon Scene
  2714. * @param nodes Babylon transform nodes
  2715. * @param binaryWriter Buffer to write binary data to
  2716. * @returns Node mapping of unique id to index
  2717. */
  2718. _Exporter.prototype.createNodeMapAndAnimationsAsync = function (babylonScene, nodes, binaryWriter) {
  2719. var _this = this;
  2720. var promiseChain = Promise.resolve();
  2721. var nodeMap = {};
  2722. var nodeIndex;
  2723. var runtimeGLTFAnimation = {
  2724. name: 'runtime animations',
  2725. channels: [],
  2726. samplers: []
  2727. };
  2728. var idleGLTFAnimations = [];
  2729. var _loop_1 = function (babylonNode) {
  2730. if (!this_1._options.shouldExportNode || this_1._options.shouldExportNode(babylonNode)) {
  2731. promiseChain = promiseChain.then(function () {
  2732. var convertToRightHandedSystem = _this._convertToRightHandedSystemMap[babylonNode.uniqueId];
  2733. return _this.createNodeAsync(babylonNode, binaryWriter, convertToRightHandedSystem, nodeMap).then(function (node) {
  2734. var promise = _this._extensionsPostExportNodeAsync("createNodeAsync", node, babylonNode, nodeMap);
  2735. if (promise == null) {
  2736. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Warn("Not exporting node " + babylonNode.name);
  2737. return Promise.resolve();
  2738. }
  2739. else {
  2740. return promise.then(function (node) {
  2741. if (!node) {
  2742. return;
  2743. }
  2744. _this._nodes.push(node);
  2745. nodeIndex = _this._nodes.length - 1;
  2746. nodeMap[babylonNode.uniqueId] = nodeIndex;
  2747. if (!babylonScene.animationGroups.length && babylonNode.animations.length) {
  2748. _glTFAnimation__WEBPACK_IMPORTED_MODULE_5__["_GLTFAnimation"]._CreateNodeAnimationFromNodeAnimations(babylonNode, runtimeGLTFAnimation, idleGLTFAnimations, nodeMap, _this._nodes, binaryWriter, _this._bufferViews, _this._accessors, convertToRightHandedSystem, _this._animationSampleRate);
  2749. }
  2750. });
  2751. }
  2752. });
  2753. });
  2754. }
  2755. else {
  2756. "Excluding node " + babylonNode.name;
  2757. }
  2758. };
  2759. var this_1 = this;
  2760. for (var _i = 0, nodes_2 = nodes; _i < nodes_2.length; _i++) {
  2761. var babylonNode = nodes_2[_i];
  2762. _loop_1(babylonNode);
  2763. }
  2764. return promiseChain.then(function () {
  2765. if (runtimeGLTFAnimation.channels.length && runtimeGLTFAnimation.samplers.length) {
  2766. _this._animations.push(runtimeGLTFAnimation);
  2767. }
  2768. idleGLTFAnimations.forEach(function (idleGLTFAnimation) {
  2769. if (idleGLTFAnimation.channels.length && idleGLTFAnimation.samplers.length) {
  2770. _this._animations.push(idleGLTFAnimation);
  2771. }
  2772. });
  2773. if (babylonScene.animationGroups.length) {
  2774. _glTFAnimation__WEBPACK_IMPORTED_MODULE_5__["_GLTFAnimation"]._CreateNodeAnimationFromAnimationGroups(babylonScene, _this._animations, nodeMap, _this._nodes, binaryWriter, _this._bufferViews, _this._accessors, _this._convertToRightHandedSystemMap, _this._animationSampleRate);
  2775. }
  2776. return nodeMap;
  2777. });
  2778. };
  2779. /**
  2780. * Creates a glTF node from a Babylon mesh
  2781. * @param babylonMesh Source Babylon mesh
  2782. * @param binaryWriter Buffer for storing geometry data
  2783. * @param convertToRightHandedSystem Converts the values to right-handed
  2784. * @param nodeMap Node mapping of unique id to glTF node index
  2785. * @returns glTF node
  2786. */
  2787. _Exporter.prototype.createNodeAsync = function (babylonNode, binaryWriter, convertToRightHandedSystem, nodeMap) {
  2788. var _this = this;
  2789. return Promise.resolve().then(function () {
  2790. // create node to hold translation/rotation/scale and the mesh
  2791. var node = {};
  2792. // create mesh
  2793. var mesh = { primitives: [] };
  2794. if (babylonNode.name) {
  2795. node.name = babylonNode.name;
  2796. }
  2797. if (babylonNode instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["TransformNode"]) {
  2798. // Set transformation
  2799. _this.setNodeTransformation(node, babylonNode, convertToRightHandedSystem);
  2800. return _this.setPrimitiveAttributesAsync(mesh, babylonNode, binaryWriter, convertToRightHandedSystem).then(function () {
  2801. if (mesh.primitives.length) {
  2802. _this._meshes.push(mesh);
  2803. node.mesh = _this._meshes.length - 1;
  2804. }
  2805. return node;
  2806. });
  2807. }
  2808. else {
  2809. return node;
  2810. }
  2811. });
  2812. };
  2813. _Exporter._ExtensionNames = new Array();
  2814. _Exporter._ExtensionFactories = {};
  2815. return _Exporter;
  2816. }());
  2817. /**
  2818. * @hidden
  2819. *
  2820. * Stores glTF binary data. If the array buffer byte length is exceeded, it doubles in size dynamically
  2821. */
  2822. var _BinaryWriter = /** @class */ (function () {
  2823. /**
  2824. * Initialize binary writer with an initial byte length
  2825. * @param byteLength Initial byte length of the array buffer
  2826. */
  2827. function _BinaryWriter(byteLength) {
  2828. this._arrayBuffer = new ArrayBuffer(byteLength);
  2829. this._dataView = new DataView(this._arrayBuffer);
  2830. this._byteOffset = 0;
  2831. }
  2832. /**
  2833. * Resize the array buffer to the specified byte length
  2834. * @param byteLength
  2835. */
  2836. _BinaryWriter.prototype.resizeBuffer = function (byteLength) {
  2837. var newBuffer = new ArrayBuffer(byteLength);
  2838. var oldUint8Array = new Uint8Array(this._arrayBuffer);
  2839. var newUint8Array = new Uint8Array(newBuffer);
  2840. for (var i = 0, length_8 = newUint8Array.byteLength; i < length_8; ++i) {
  2841. newUint8Array[i] = oldUint8Array[i];
  2842. }
  2843. this._arrayBuffer = newBuffer;
  2844. this._dataView = new DataView(this._arrayBuffer);
  2845. return newBuffer;
  2846. };
  2847. /**
  2848. * Get an array buffer with the length of the byte offset
  2849. * @returns ArrayBuffer resized to the byte offset
  2850. */
  2851. _BinaryWriter.prototype.getArrayBuffer = function () {
  2852. return this.resizeBuffer(this.getByteOffset());
  2853. };
  2854. /**
  2855. * Get the byte offset of the array buffer
  2856. * @returns byte offset
  2857. */
  2858. _BinaryWriter.prototype.getByteOffset = function () {
  2859. if (this._byteOffset == undefined) {
  2860. throw new Error("Byte offset is undefined!");
  2861. }
  2862. return this._byteOffset;
  2863. };
  2864. /**
  2865. * Stores an UInt8 in the array buffer
  2866. * @param entry
  2867. * @param byteOffset If defined, specifies where to set the value as an offset.
  2868. */
  2869. _BinaryWriter.prototype.setUInt8 = function (entry, byteOffset) {
  2870. if (byteOffset != null) {
  2871. if (byteOffset < this._byteOffset) {
  2872. this._dataView.setUint8(byteOffset, entry);
  2873. }
  2874. else {
  2875. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Error('BinaryWriter: byteoffset is greater than the current binary buffer length!');
  2876. }
  2877. }
  2878. else {
  2879. if (this._byteOffset + 1 > this._arrayBuffer.byteLength) {
  2880. this.resizeBuffer(this._arrayBuffer.byteLength * 2);
  2881. }
  2882. this._dataView.setUint8(this._byteOffset++, entry);
  2883. }
  2884. };
  2885. /**
  2886. * Gets an UInt32 in the array buffer
  2887. * @param entry
  2888. * @param byteOffset If defined, specifies where to set the value as an offset.
  2889. */
  2890. _BinaryWriter.prototype.getUInt32 = function (byteOffset) {
  2891. if (byteOffset < this._byteOffset) {
  2892. return this._dataView.getUint32(byteOffset, true);
  2893. }
  2894. else {
  2895. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Error('BinaryWriter: byteoffset is greater than the current binary buffer length!');
  2896. throw new Error('BinaryWriter: byteoffset is greater than the current binary buffer length!');
  2897. }
  2898. };
  2899. _BinaryWriter.prototype.getVector3Float32FromRef = function (vector3, byteOffset) {
  2900. if (byteOffset + 8 > this._byteOffset) {
  2901. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Error("BinaryWriter: byteoffset is greater than the current binary buffer length!");
  2902. }
  2903. else {
  2904. vector3.x = this._dataView.getFloat32(byteOffset, true);
  2905. vector3.y = this._dataView.getFloat32(byteOffset + 4, true);
  2906. vector3.z = this._dataView.getFloat32(byteOffset + 8, true);
  2907. }
  2908. };
  2909. _BinaryWriter.prototype.setVector3Float32FromRef = function (vector3, byteOffset) {
  2910. if (byteOffset + 8 > this._byteOffset) {
  2911. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Error("BinaryWriter: byteoffset is greater than the current binary buffer length!");
  2912. }
  2913. else {
  2914. this._dataView.setFloat32(byteOffset, vector3.x, true);
  2915. this._dataView.setFloat32(byteOffset + 4, vector3.y, true);
  2916. this._dataView.setFloat32(byteOffset + 8, vector3.z, true);
  2917. }
  2918. };
  2919. _BinaryWriter.prototype.getVector4Float32FromRef = function (vector4, byteOffset) {
  2920. if (byteOffset + 12 > this._byteOffset) {
  2921. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Error("BinaryWriter: byteoffset is greater than the current binary buffer length!");
  2922. }
  2923. else {
  2924. vector4.x = this._dataView.getFloat32(byteOffset, true);
  2925. vector4.y = this._dataView.getFloat32(byteOffset + 4, true);
  2926. vector4.z = this._dataView.getFloat32(byteOffset + 8, true);
  2927. vector4.w = this._dataView.getFloat32(byteOffset + 12, true);
  2928. }
  2929. };
  2930. _BinaryWriter.prototype.setVector4Float32FromRef = function (vector4, byteOffset) {
  2931. if (byteOffset + 12 > this._byteOffset) {
  2932. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Error("BinaryWriter: byteoffset is greater than the current binary buffer length!");
  2933. }
  2934. else {
  2935. this._dataView.setFloat32(byteOffset, vector4.x, true);
  2936. this._dataView.setFloat32(byteOffset + 4, vector4.y, true);
  2937. this._dataView.setFloat32(byteOffset + 8, vector4.z, true);
  2938. this._dataView.setFloat32(byteOffset + 12, vector4.w, true);
  2939. }
  2940. };
  2941. /**
  2942. * Stores a Float32 in the array buffer
  2943. * @param entry
  2944. */
  2945. _BinaryWriter.prototype.setFloat32 = function (entry, byteOffset) {
  2946. if (isNaN(entry)) {
  2947. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Error('Invalid data being written!');
  2948. }
  2949. if (byteOffset != null) {
  2950. if (byteOffset < this._byteOffset) {
  2951. this._dataView.setFloat32(byteOffset, entry, true);
  2952. }
  2953. else {
  2954. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Error('BinaryWriter: byteoffset is greater than the current binary length!');
  2955. }
  2956. }
  2957. if (this._byteOffset + 4 > this._arrayBuffer.byteLength) {
  2958. this.resizeBuffer(this._arrayBuffer.byteLength * 2);
  2959. }
  2960. this._dataView.setFloat32(this._byteOffset, entry, true);
  2961. this._byteOffset += 4;
  2962. };
  2963. /**
  2964. * Stores an UInt32 in the array buffer
  2965. * @param entry
  2966. * @param byteOffset If defined, specifies where to set the value as an offset.
  2967. */
  2968. _BinaryWriter.prototype.setUInt32 = function (entry, byteOffset) {
  2969. if (byteOffset != null) {
  2970. if (byteOffset < this._byteOffset) {
  2971. this._dataView.setUint32(byteOffset, entry, true);
  2972. }
  2973. else {
  2974. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_1__["Tools"].Error('BinaryWriter: byteoffset is greater than the current binary buffer length!');
  2975. }
  2976. }
  2977. else {
  2978. if (this._byteOffset + 4 > this._arrayBuffer.byteLength) {
  2979. this.resizeBuffer(this._arrayBuffer.byteLength * 2);
  2980. }
  2981. this._dataView.setUint32(this._byteOffset, entry, true);
  2982. this._byteOffset += 4;
  2983. }
  2984. };
  2985. return _BinaryWriter;
  2986. }());
  2987. /***/ }),
  2988. /***/ "./glTF/2.0/glTFExporterExtension.ts":
  2989. /*!*******************************************!*\
  2990. !*** ./glTF/2.0/glTFExporterExtension.ts ***!
  2991. \*******************************************/
  2992. /*! exports provided: __IGLTFExporterExtensionV2 */
  2993. /***/ (function(module, __webpack_exports__, __webpack_require__) {
  2994. "use strict";
  2995. __webpack_require__.r(__webpack_exports__);
  2996. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__IGLTFExporterExtensionV2", function() { return __IGLTFExporterExtensionV2; });
  2997. /** @hidden */
  2998. var __IGLTFExporterExtensionV2 = 0; // I am here to allow dts to be created
  2999. /***/ }),
  3000. /***/ "./glTF/2.0/glTFMaterialExporter.ts":
  3001. /*!******************************************!*\
  3002. !*** ./glTF/2.0/glTFMaterialExporter.ts ***!
  3003. \******************************************/
  3004. /*! exports provided: _GLTFMaterialExporter */
  3005. /***/ (function(module, __webpack_exports__, __webpack_require__) {
  3006. "use strict";
  3007. __webpack_require__.r(__webpack_exports__);
  3008. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "_GLTFMaterialExporter", function() { return _GLTFMaterialExporter; });
  3009. /* harmony import */ var babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__ = __webpack_require__(/*! babylonjs/Maths/math.vector */ "babylonjs/Maths/math.vector");
  3010. /* harmony import */ var babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0___default = /*#__PURE__*/__webpack_require__.n(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__);
  3011. /**
  3012. * Utility methods for working with glTF material conversion properties. This class should only be used internally
  3013. * @hidden
  3014. */
  3015. var _GLTFMaterialExporter = /** @class */ (function () {
  3016. function _GLTFMaterialExporter(exporter) {
  3017. /**
  3018. * Mapping to store textures
  3019. */
  3020. this._textureMap = {};
  3021. this._textureMap = {};
  3022. this._exporter = exporter;
  3023. }
  3024. /**
  3025. * Specifies if two colors are approximately equal in value
  3026. * @param color1 first color to compare to
  3027. * @param color2 second color to compare to
  3028. * @param epsilon threshold value
  3029. */
  3030. _GLTFMaterialExporter.FuzzyEquals = function (color1, color2, epsilon) {
  3031. return babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Scalar"].WithinEpsilon(color1.r, color2.r, epsilon) &&
  3032. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Scalar"].WithinEpsilon(color1.g, color2.g, epsilon) &&
  3033. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Scalar"].WithinEpsilon(color1.b, color2.b, epsilon);
  3034. };
  3035. /**
  3036. * Gets the materials from a Babylon scene and converts them to glTF materials
  3037. * @param scene babylonjs scene
  3038. * @param mimeType texture mime type
  3039. * @param images array of images
  3040. * @param textures array of textures
  3041. * @param materials array of materials
  3042. * @param imageData mapping of texture names to base64 textures
  3043. * @param hasTextureCoords specifies if texture coordinates are present on the material
  3044. */
  3045. _GLTFMaterialExporter.prototype._convertMaterialsToGLTFAsync = function (babylonMaterials, mimeType, hasTextureCoords) {
  3046. var promises = [];
  3047. for (var _i = 0, babylonMaterials_1 = babylonMaterials; _i < babylonMaterials_1.length; _i++) {
  3048. var babylonMaterial = babylonMaterials_1[_i];
  3049. if (babylonMaterial instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["StandardMaterial"]) {
  3050. promises.push(this._convertStandardMaterialAsync(babylonMaterial, mimeType, hasTextureCoords));
  3051. }
  3052. else if (babylonMaterial instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["PBRMetallicRoughnessMaterial"]) {
  3053. promises.push(this._convertPBRMetallicRoughnessMaterialAsync(babylonMaterial, mimeType, hasTextureCoords));
  3054. }
  3055. else if (babylonMaterial instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["PBRMaterial"]) {
  3056. promises.push(this._convertPBRMaterialAsync(babylonMaterial, mimeType, hasTextureCoords));
  3057. }
  3058. else {
  3059. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Tools"].Warn("Unsupported material type: " + babylonMaterial.name);
  3060. }
  3061. }
  3062. return Promise.all(promises).then(function () { });
  3063. };
  3064. /**
  3065. * Makes a copy of the glTF material without the texture parameters
  3066. * @param originalMaterial original glTF material
  3067. * @returns glTF material without texture parameters
  3068. */
  3069. _GLTFMaterialExporter.prototype._stripTexturesFromMaterial = function (originalMaterial) {
  3070. var newMaterial = {};
  3071. if (originalMaterial) {
  3072. newMaterial.name = originalMaterial.name;
  3073. newMaterial.doubleSided = originalMaterial.doubleSided;
  3074. newMaterial.alphaMode = originalMaterial.alphaMode;
  3075. newMaterial.alphaCutoff = originalMaterial.alphaCutoff;
  3076. newMaterial.emissiveFactor = originalMaterial.emissiveFactor;
  3077. var originalPBRMetallicRoughness = originalMaterial.pbrMetallicRoughness;
  3078. if (originalPBRMetallicRoughness) {
  3079. newMaterial.pbrMetallicRoughness = {};
  3080. newMaterial.pbrMetallicRoughness.baseColorFactor = originalPBRMetallicRoughness.baseColorFactor;
  3081. newMaterial.pbrMetallicRoughness.metallicFactor = originalPBRMetallicRoughness.metallicFactor;
  3082. newMaterial.pbrMetallicRoughness.roughnessFactor = originalPBRMetallicRoughness.roughnessFactor;
  3083. }
  3084. }
  3085. return newMaterial;
  3086. };
  3087. /**
  3088. * Specifies if the material has any texture parameters present
  3089. * @param material glTF Material
  3090. * @returns boolean specifying if texture parameters are present
  3091. */
  3092. _GLTFMaterialExporter.prototype._hasTexturesPresent = function (material) {
  3093. if (material.emissiveTexture || material.normalTexture || material.occlusionTexture) {
  3094. return true;
  3095. }
  3096. var pbrMat = material.pbrMetallicRoughness;
  3097. if (pbrMat) {
  3098. if (pbrMat.baseColorTexture || pbrMat.metallicRoughnessTexture) {
  3099. return true;
  3100. }
  3101. }
  3102. return false;
  3103. };
  3104. /**
  3105. * Converts a Babylon StandardMaterial to a glTF Metallic Roughness Material
  3106. * @param babylonStandardMaterial
  3107. * @returns glTF Metallic Roughness Material representation
  3108. */
  3109. _GLTFMaterialExporter.prototype._convertToGLTFPBRMetallicRoughness = function (babylonStandardMaterial) {
  3110. var P0 = new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector2"](0, 1);
  3111. var P1 = new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector2"](0, 0.1);
  3112. var P2 = new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector2"](0, 0.1);
  3113. var P3 = new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector2"](1300, 0.1);
  3114. /**
  3115. * Given the control points, solve for x based on a given t for a cubic bezier curve
  3116. * @param t a value between 0 and 1
  3117. * @param p0 first control point
  3118. * @param p1 second control point
  3119. * @param p2 third control point
  3120. * @param p3 fourth control point
  3121. * @returns number result of cubic bezier curve at the specified t
  3122. */
  3123. function _cubicBezierCurve(t, p0, p1, p2, p3) {
  3124. return ((1 - t) * (1 - t) * (1 - t) * p0 +
  3125. 3 * (1 - t) * (1 - t) * t * p1 +
  3126. 3 * (1 - t) * t * t * p2 +
  3127. t * t * t * p3);
  3128. }
  3129. /**
  3130. * Evaluates a specified specular power value to determine the appropriate roughness value,
  3131. * based on a pre-defined cubic bezier curve with specular on the abscissa axis (x-axis)
  3132. * and roughness on the ordinant axis (y-axis)
  3133. * @param specularPower specular power of standard material
  3134. * @returns Number representing the roughness value
  3135. */
  3136. function _solveForRoughness(specularPower) {
  3137. var t = Math.pow(specularPower / P3.x, 0.333333);
  3138. return _cubicBezierCurve(t, P0.y, P1.y, P2.y, P3.y);
  3139. }
  3140. var diffuse = babylonStandardMaterial.diffuseColor.toLinearSpace().scale(0.5);
  3141. var opacity = babylonStandardMaterial.alpha;
  3142. var specularPower = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Scalar"].Clamp(babylonStandardMaterial.specularPower, 0, _GLTFMaterialExporter._MaxSpecularPower);
  3143. var roughness = _solveForRoughness(specularPower);
  3144. var glTFPbrMetallicRoughness = {
  3145. baseColorFactor: [
  3146. diffuse.r,
  3147. diffuse.g,
  3148. diffuse.b,
  3149. opacity
  3150. ],
  3151. metallicFactor: 0,
  3152. roughnessFactor: roughness,
  3153. };
  3154. return glTFPbrMetallicRoughness;
  3155. };
  3156. /**
  3157. * Computes the metallic factor
  3158. * @param diffuse diffused value
  3159. * @param specular specular value
  3160. * @param oneMinusSpecularStrength one minus the specular strength
  3161. * @returns metallic value
  3162. */
  3163. _GLTFMaterialExporter._SolveMetallic = function (diffuse, specular, oneMinusSpecularStrength) {
  3164. if (specular < this._DielectricSpecular.r) {
  3165. this._DielectricSpecular;
  3166. return 0;
  3167. }
  3168. var a = this._DielectricSpecular.r;
  3169. var b = diffuse * oneMinusSpecularStrength / (1.0 - this._DielectricSpecular.r) + specular - 2.0 * this._DielectricSpecular.r;
  3170. var c = this._DielectricSpecular.r - specular;
  3171. var D = b * b - 4.0 * a * c;
  3172. return babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Scalar"].Clamp((-b + Math.sqrt(D)) / (2.0 * a), 0, 1);
  3173. };
  3174. /**
  3175. * Sets the glTF alpha mode to a glTF material from the Babylon Material
  3176. * @param glTFMaterial glTF material
  3177. * @param babylonMaterial Babylon material
  3178. */
  3179. _GLTFMaterialExporter._SetAlphaMode = function (glTFMaterial, babylonMaterial) {
  3180. if (babylonMaterial.needAlphaBlending()) {
  3181. glTFMaterial.alphaMode = "BLEND" /* BLEND */;
  3182. }
  3183. else if (babylonMaterial.needAlphaTesting()) {
  3184. glTFMaterial.alphaMode = "MASK" /* MASK */;
  3185. glTFMaterial.alphaCutoff = babylonMaterial.alphaCutOff;
  3186. }
  3187. };
  3188. /**
  3189. * Converts a Babylon Standard Material to a glTF Material
  3190. * @param babylonStandardMaterial BJS Standard Material
  3191. * @param mimeType mime type to use for the textures
  3192. * @param images array of glTF image interfaces
  3193. * @param textures array of glTF texture interfaces
  3194. * @param materials array of glTF material interfaces
  3195. * @param imageData map of image file name to data
  3196. * @param hasTextureCoords specifies if texture coordinates are present on the submesh to determine if textures should be applied
  3197. */
  3198. _GLTFMaterialExporter.prototype._convertStandardMaterialAsync = function (babylonStandardMaterial, mimeType, hasTextureCoords) {
  3199. var materialMap = this._exporter._materialMap;
  3200. var materials = this._exporter._materials;
  3201. var promises = [];
  3202. var glTFPbrMetallicRoughness = this._convertToGLTFPBRMetallicRoughness(babylonStandardMaterial);
  3203. var glTFMaterial = { name: babylonStandardMaterial.name };
  3204. if (babylonStandardMaterial.backFaceCulling != null && !babylonStandardMaterial.backFaceCulling) {
  3205. if (!babylonStandardMaterial.twoSidedLighting) {
  3206. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Tools"].Warn(babylonStandardMaterial.name + ": Back-face culling enabled and two-sided lighting disabled is not supported in glTF.");
  3207. }
  3208. glTFMaterial.doubleSided = true;
  3209. }
  3210. if (hasTextureCoords) {
  3211. if (babylonStandardMaterial.diffuseTexture) {
  3212. promises.push(this._exportTextureAsync(babylonStandardMaterial.diffuseTexture, mimeType).then(function (glTFTexture) {
  3213. if (glTFTexture) {
  3214. glTFPbrMetallicRoughness.baseColorTexture = glTFTexture;
  3215. }
  3216. }));
  3217. }
  3218. if (babylonStandardMaterial.bumpTexture) {
  3219. promises.push(this._exportTextureAsync(babylonStandardMaterial.bumpTexture, mimeType).then(function (glTFTexture) {
  3220. if (glTFTexture) {
  3221. glTFMaterial.normalTexture = glTFTexture;
  3222. if (babylonStandardMaterial.bumpTexture != null && babylonStandardMaterial.bumpTexture.level !== 1) {
  3223. glTFMaterial.normalTexture.scale = babylonStandardMaterial.bumpTexture.level;
  3224. }
  3225. }
  3226. }));
  3227. }
  3228. if (babylonStandardMaterial.emissiveTexture) {
  3229. glTFMaterial.emissiveFactor = [1.0, 1.0, 1.0];
  3230. promises.push(this._exportTextureAsync(babylonStandardMaterial.emissiveTexture, mimeType).then(function (glTFEmissiveTexture) {
  3231. if (glTFEmissiveTexture) {
  3232. glTFMaterial.emissiveTexture = glTFEmissiveTexture;
  3233. }
  3234. }));
  3235. }
  3236. if (babylonStandardMaterial.ambientTexture) {
  3237. promises.push(this._exportTextureAsync(babylonStandardMaterial.ambientTexture, mimeType).then(function (glTFTexture) {
  3238. if (glTFTexture) {
  3239. var occlusionTexture = {
  3240. index: glTFTexture.index
  3241. };
  3242. glTFMaterial.occlusionTexture = occlusionTexture;
  3243. occlusionTexture.strength = 1.0;
  3244. }
  3245. }));
  3246. }
  3247. }
  3248. if (babylonStandardMaterial.alpha < 1.0 || babylonStandardMaterial.opacityTexture) {
  3249. if (babylonStandardMaterial.alphaMode === babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Constants"].ALPHA_COMBINE) {
  3250. glTFMaterial.alphaMode = "BLEND" /* BLEND */;
  3251. }
  3252. else {
  3253. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Tools"].Warn(babylonStandardMaterial.name + ": glTF 2.0 does not support alpha mode: " + babylonStandardMaterial.alphaMode.toString());
  3254. }
  3255. }
  3256. if (babylonStandardMaterial.emissiveColor && !_GLTFMaterialExporter.FuzzyEquals(babylonStandardMaterial.emissiveColor, babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Color3"].Black(), _GLTFMaterialExporter._Epsilon)) {
  3257. glTFMaterial.emissiveFactor = babylonStandardMaterial.emissiveColor.asArray();
  3258. }
  3259. glTFMaterial.pbrMetallicRoughness = glTFPbrMetallicRoughness;
  3260. _GLTFMaterialExporter._SetAlphaMode(glTFMaterial, babylonStandardMaterial);
  3261. materials.push(glTFMaterial);
  3262. materialMap[babylonStandardMaterial.uniqueId] = materials.length - 1;
  3263. return this._finishMaterial(promises, glTFMaterial, babylonStandardMaterial, mimeType);
  3264. };
  3265. _GLTFMaterialExporter.prototype._finishMaterial = function (promises, glTFMaterial, babylonMaterial, mimeType) {
  3266. var _this = this;
  3267. return Promise.all(promises).then(function () {
  3268. var textures = _this._exporter._extensionsPostExportMaterialAdditionalTextures("exportMaterial", glTFMaterial, babylonMaterial);
  3269. var tasks = null;
  3270. for (var _i = 0, textures_1 = textures; _i < textures_1.length; _i++) {
  3271. var texture = textures_1[_i];
  3272. if (!tasks) {
  3273. tasks = [];
  3274. }
  3275. tasks.push(_this._exportTextureAsync(texture, mimeType));
  3276. }
  3277. if (!tasks) {
  3278. tasks = [Promise.resolve(null)];
  3279. }
  3280. return Promise.all(tasks).then(function () {
  3281. var extensionWork = _this._exporter._extensionsPostExportMaterialAsync("exportMaterial", glTFMaterial, babylonMaterial);
  3282. if (!extensionWork) {
  3283. return glTFMaterial;
  3284. }
  3285. return extensionWork.then(function () { return glTFMaterial; });
  3286. });
  3287. });
  3288. };
  3289. /**
  3290. * Converts a Babylon PBR Metallic Roughness Material to a glTF Material
  3291. * @param babylonPBRMetalRoughMaterial BJS PBR Metallic Roughness Material
  3292. * @param mimeType mime type to use for the textures
  3293. * @param images array of glTF image interfaces
  3294. * @param textures array of glTF texture interfaces
  3295. * @param materials array of glTF material interfaces
  3296. * @param imageData map of image file name to data
  3297. * @param hasTextureCoords specifies if texture coordinates are present on the submesh to determine if textures should be applied
  3298. */
  3299. _GLTFMaterialExporter.prototype._convertPBRMetallicRoughnessMaterialAsync = function (babylonPBRMetalRoughMaterial, mimeType, hasTextureCoords) {
  3300. var materialMap = this._exporter._materialMap;
  3301. var materials = this._exporter._materials;
  3302. var promises = [];
  3303. var glTFPbrMetallicRoughness = {};
  3304. if (babylonPBRMetalRoughMaterial.baseColor) {
  3305. glTFPbrMetallicRoughness.baseColorFactor = [
  3306. babylonPBRMetalRoughMaterial.baseColor.r,
  3307. babylonPBRMetalRoughMaterial.baseColor.g,
  3308. babylonPBRMetalRoughMaterial.baseColor.b,
  3309. babylonPBRMetalRoughMaterial.alpha
  3310. ];
  3311. }
  3312. if (babylonPBRMetalRoughMaterial.metallic != null && babylonPBRMetalRoughMaterial.metallic !== 1) {
  3313. glTFPbrMetallicRoughness.metallicFactor = babylonPBRMetalRoughMaterial.metallic;
  3314. }
  3315. if (babylonPBRMetalRoughMaterial.roughness != null && babylonPBRMetalRoughMaterial.roughness !== 1) {
  3316. glTFPbrMetallicRoughness.roughnessFactor = babylonPBRMetalRoughMaterial.roughness;
  3317. }
  3318. var glTFMaterial = {
  3319. name: babylonPBRMetalRoughMaterial.name
  3320. };
  3321. if (babylonPBRMetalRoughMaterial.doubleSided) {
  3322. glTFMaterial.doubleSided = babylonPBRMetalRoughMaterial.doubleSided;
  3323. }
  3324. _GLTFMaterialExporter._SetAlphaMode(glTFMaterial, babylonPBRMetalRoughMaterial);
  3325. if (hasTextureCoords) {
  3326. if (babylonPBRMetalRoughMaterial.baseTexture != null) {
  3327. promises.push(this._exportTextureAsync(babylonPBRMetalRoughMaterial.baseTexture, mimeType).then(function (glTFTexture) {
  3328. if (glTFTexture) {
  3329. glTFPbrMetallicRoughness.baseColorTexture = glTFTexture;
  3330. }
  3331. }));
  3332. }
  3333. if (babylonPBRMetalRoughMaterial.normalTexture) {
  3334. promises.push(this._exportTextureAsync(babylonPBRMetalRoughMaterial.normalTexture, mimeType).then(function (glTFTexture) {
  3335. if (glTFTexture) {
  3336. glTFMaterial.normalTexture = glTFTexture;
  3337. if (babylonPBRMetalRoughMaterial.normalTexture.level !== 1) {
  3338. glTFMaterial.normalTexture.scale = babylonPBRMetalRoughMaterial.normalTexture.level;
  3339. }
  3340. }
  3341. }));
  3342. }
  3343. if (babylonPBRMetalRoughMaterial.occlusionTexture) {
  3344. promises.push(this._exportTextureAsync(babylonPBRMetalRoughMaterial.occlusionTexture, mimeType).then(function (glTFTexture) {
  3345. if (glTFTexture) {
  3346. glTFMaterial.occlusionTexture = glTFTexture;
  3347. if (babylonPBRMetalRoughMaterial.occlusionStrength != null) {
  3348. glTFMaterial.occlusionTexture.strength = babylonPBRMetalRoughMaterial.occlusionStrength;
  3349. }
  3350. }
  3351. }));
  3352. }
  3353. if (babylonPBRMetalRoughMaterial.emissiveTexture) {
  3354. promises.push(this._exportTextureAsync(babylonPBRMetalRoughMaterial.emissiveTexture, mimeType).then(function (glTFTexture) {
  3355. if (glTFTexture) {
  3356. glTFMaterial.emissiveTexture = glTFTexture;
  3357. }
  3358. }));
  3359. }
  3360. }
  3361. if (_GLTFMaterialExporter.FuzzyEquals(babylonPBRMetalRoughMaterial.emissiveColor, babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Color3"].Black(), _GLTFMaterialExporter._Epsilon)) {
  3362. glTFMaterial.emissiveFactor = babylonPBRMetalRoughMaterial.emissiveColor.asArray();
  3363. }
  3364. glTFMaterial.pbrMetallicRoughness = glTFPbrMetallicRoughness;
  3365. materials.push(glTFMaterial);
  3366. materialMap[babylonPBRMetalRoughMaterial.uniqueId] = materials.length - 1;
  3367. return this._finishMaterial(promises, glTFMaterial, babylonPBRMetalRoughMaterial, mimeType);
  3368. };
  3369. /**
  3370. * Converts an image typed array buffer to a base64 image
  3371. * @param buffer typed array buffer
  3372. * @param width width of the image
  3373. * @param height height of the image
  3374. * @param mimeType mimetype of the image
  3375. * @returns base64 image string
  3376. */
  3377. _GLTFMaterialExporter.prototype._createBase64FromCanvasAsync = function (buffer, width, height, mimeType) {
  3378. var _this = this;
  3379. return new Promise(function (resolve, reject) {
  3380. var hostingScene;
  3381. var textureType = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Constants"].TEXTURETYPE_UNSIGNED_INT;
  3382. var engine = _this._exporter._getLocalEngine();
  3383. hostingScene = new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Scene"](engine);
  3384. // Create a temporary texture with the texture buffer data
  3385. var tempTexture = engine.createRawTexture(buffer, width, height, babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Constants"].TEXTUREFORMAT_RGBA, false, true, babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].NEAREST_SAMPLINGMODE, null, textureType);
  3386. var postProcess = new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["PostProcess"]("pass", "pass", null, null, 1, null, babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].NEAREST_SAMPLINGMODE, engine, false, undefined, babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Constants"].TEXTURETYPE_UNSIGNED_INT, undefined, null, false);
  3387. postProcess.getEffect().executeWhenCompiled(function () {
  3388. postProcess.onApply = function (effect) {
  3389. effect._bindTexture("textureSampler", tempTexture);
  3390. };
  3391. // Set the size of the texture
  3392. engine.setSize(width, height);
  3393. hostingScene.postProcessManager.directRender([postProcess], null);
  3394. postProcess.dispose();
  3395. tempTexture.dispose();
  3396. // Read data from WebGL
  3397. var canvas = engine.getRenderingCanvas();
  3398. if (canvas) {
  3399. if (!canvas.toBlob) { // fallback for browsers without "canvas.toBlob"
  3400. var dataURL = canvas.toDataURL();
  3401. resolve(dataURL);
  3402. }
  3403. else {
  3404. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Tools"].ToBlob(canvas, function (blob) {
  3405. if (blob) {
  3406. var fileReader = new FileReader();
  3407. fileReader.onload = function (event) {
  3408. var base64String = event.target.result;
  3409. hostingScene.dispose();
  3410. resolve(base64String);
  3411. };
  3412. fileReader.readAsDataURL(blob);
  3413. }
  3414. else {
  3415. reject("gltfMaterialExporter: Failed to get blob from image canvas!");
  3416. }
  3417. });
  3418. }
  3419. }
  3420. else {
  3421. reject("Engine is missing a canvas!");
  3422. }
  3423. });
  3424. });
  3425. };
  3426. /**
  3427. * Generates a white texture based on the specified width and height
  3428. * @param width width of the texture in pixels
  3429. * @param height height of the texture in pixels
  3430. * @param scene babylonjs scene
  3431. * @returns white texture
  3432. */
  3433. _GLTFMaterialExporter.prototype._createWhiteTexture = function (width, height, scene) {
  3434. var data = new Uint8Array(width * height * 4);
  3435. for (var i = 0; i < data.length; i = i + 4) {
  3436. data[i] = data[i + 1] = data[i + 2] = data[i + 3] = 0xFF;
  3437. }
  3438. var rawTexture = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["RawTexture"].CreateRGBATexture(data, width, height, scene);
  3439. return rawTexture;
  3440. };
  3441. /**
  3442. * Resizes the two source textures to the same dimensions. If a texture is null, a default white texture is generated. If both textures are null, returns null
  3443. * @param texture1 first texture to resize
  3444. * @param texture2 second texture to resize
  3445. * @param scene babylonjs scene
  3446. * @returns resized textures or null
  3447. */
  3448. _GLTFMaterialExporter.prototype._resizeTexturesToSameDimensions = function (texture1, texture2, scene) {
  3449. var texture1Size = texture1 ? texture1.getSize() : { width: 0, height: 0 };
  3450. var texture2Size = texture2 ? texture2.getSize() : { width: 0, height: 0 };
  3451. var resizedTexture1;
  3452. var resizedTexture2;
  3453. if (texture1Size.width < texture2Size.width) {
  3454. if (texture1 && texture1 instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"]) {
  3455. resizedTexture1 = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["TextureTools"].CreateResizedCopy(texture1, texture2Size.width, texture2Size.height, true);
  3456. }
  3457. else {
  3458. resizedTexture1 = this._createWhiteTexture(texture2Size.width, texture2Size.height, scene);
  3459. }
  3460. resizedTexture2 = texture2;
  3461. }
  3462. else if (texture1Size.width > texture2Size.width) {
  3463. if (texture2 && texture2 instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"]) {
  3464. resizedTexture2 = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["TextureTools"].CreateResizedCopy(texture2, texture1Size.width, texture1Size.height, true);
  3465. }
  3466. else {
  3467. resizedTexture2 = this._createWhiteTexture(texture1Size.width, texture1Size.height, scene);
  3468. }
  3469. resizedTexture1 = texture1;
  3470. }
  3471. else {
  3472. resizedTexture1 = texture1;
  3473. resizedTexture2 = texture2;
  3474. }
  3475. return {
  3476. "texture1": resizedTexture1,
  3477. "texture2": resizedTexture2
  3478. };
  3479. };
  3480. /**
  3481. * Converts an array of pixels to a Float32Array
  3482. * Throws an error if the pixel format is not supported
  3483. * @param pixels - array buffer containing pixel values
  3484. * @returns Float32 of pixels
  3485. */
  3486. _GLTFMaterialExporter.prototype._convertPixelArrayToFloat32 = function (pixels) {
  3487. if (pixels instanceof Uint8Array) {
  3488. var length_1 = pixels.length;
  3489. var buffer = new Float32Array(pixels.length);
  3490. for (var i = 0; i < length_1; ++i) {
  3491. buffer[i] = pixels[i] / 255;
  3492. }
  3493. return buffer;
  3494. }
  3495. else if (pixels instanceof Float32Array) {
  3496. return pixels;
  3497. }
  3498. else {
  3499. throw new Error('Unsupported pixel format!');
  3500. }
  3501. };
  3502. /**
  3503. * Convert Specular Glossiness Textures to Metallic Roughness
  3504. * See link below for info on the material conversions from PBR Metallic/Roughness and Specular/Glossiness
  3505. * @link https://github.com/KhronosGroup/glTF/blob/master/extensions/2.0/Khronos/KHR_materials_pbrSpecularGlossiness/examples/convert-between-workflows-bjs/js/babylon.pbrUtilities.js
  3506. * @param diffuseTexture texture used to store diffuse information
  3507. * @param specularGlossinessTexture texture used to store specular and glossiness information
  3508. * @param factors specular glossiness material factors
  3509. * @param mimeType the mime type to use for the texture
  3510. * @returns pbr metallic roughness interface or null
  3511. */
  3512. _GLTFMaterialExporter.prototype._convertSpecularGlossinessTexturesToMetallicRoughnessAsync = function (diffuseTexture, specularGlossinessTexture, factors, mimeType) {
  3513. var promises = [];
  3514. if (!(diffuseTexture || specularGlossinessTexture)) {
  3515. return Promise.reject('_ConvertSpecularGlosinessTexturesToMetallicRoughness: diffuse and specular glossiness textures are not defined!');
  3516. }
  3517. var scene = diffuseTexture ? diffuseTexture.getScene() : specularGlossinessTexture ? specularGlossinessTexture.getScene() : null;
  3518. if (scene) {
  3519. var resizedTextures = this._resizeTexturesToSameDimensions(diffuseTexture, specularGlossinessTexture, scene);
  3520. var diffuseSize = resizedTextures.texture1.getSize();
  3521. var diffuseBuffer = void 0;
  3522. var specularGlossinessBuffer = void 0;
  3523. var width = diffuseSize.width;
  3524. var height = diffuseSize.height;
  3525. var diffusePixels = resizedTextures.texture1.readPixels();
  3526. var specularPixels = resizedTextures.texture2.readPixels();
  3527. if (diffusePixels) {
  3528. diffuseBuffer = this._convertPixelArrayToFloat32(diffusePixels);
  3529. }
  3530. else {
  3531. return Promise.reject("Failed to retrieve pixels from diffuse texture!");
  3532. }
  3533. if (specularPixels) {
  3534. specularGlossinessBuffer = this._convertPixelArrayToFloat32(specularPixels);
  3535. }
  3536. else {
  3537. return Promise.reject("Failed to retrieve pixels from specular glossiness texture!");
  3538. }
  3539. var byteLength = specularGlossinessBuffer.byteLength;
  3540. var metallicRoughnessBuffer = new Uint8Array(byteLength);
  3541. var baseColorBuffer = new Uint8Array(byteLength);
  3542. var strideSize = 4;
  3543. var maxBaseColor = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Color3"].Black();
  3544. var maxMetallic = 0;
  3545. var maxRoughness = 0;
  3546. for (var h = 0; h < height; ++h) {
  3547. for (var w = 0; w < width; ++w) {
  3548. var offset = (width * h + w) * strideSize;
  3549. var diffuseColor = new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Color3"](diffuseBuffer[offset], diffuseBuffer[offset + 1], diffuseBuffer[offset + 2]).toLinearSpace().multiply(factors.diffuseColor);
  3550. var specularColor = new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Color3"](specularGlossinessBuffer[offset], specularGlossinessBuffer[offset + 1], specularGlossinessBuffer[offset + 2]).toLinearSpace().multiply(factors.specularColor);
  3551. var glossiness = (specularGlossinessBuffer[offset + 3]) * factors.glossiness;
  3552. var specularGlossiness = {
  3553. diffuseColor: diffuseColor,
  3554. specularColor: specularColor,
  3555. glossiness: glossiness
  3556. };
  3557. var metallicRoughness = this._convertSpecularGlossinessToMetallicRoughness(specularGlossiness);
  3558. maxBaseColor.r = Math.max(maxBaseColor.r, metallicRoughness.baseColor.r);
  3559. maxBaseColor.g = Math.max(maxBaseColor.g, metallicRoughness.baseColor.g);
  3560. maxBaseColor.b = Math.max(maxBaseColor.b, metallicRoughness.baseColor.b);
  3561. maxMetallic = Math.max(maxMetallic, metallicRoughness.metallic);
  3562. maxRoughness = Math.max(maxRoughness, metallicRoughness.roughness);
  3563. baseColorBuffer[offset] = metallicRoughness.baseColor.r * 255;
  3564. baseColorBuffer[offset + 1] = metallicRoughness.baseColor.g * 255;
  3565. baseColorBuffer[offset + 2] = metallicRoughness.baseColor.b * 255;
  3566. baseColorBuffer[offset + 3] = resizedTextures.texture1.hasAlpha ? diffuseBuffer[offset + 3] * 255 : 255;
  3567. metallicRoughnessBuffer[offset] = 0;
  3568. metallicRoughnessBuffer[offset + 1] = metallicRoughness.roughness * 255;
  3569. metallicRoughnessBuffer[offset + 2] = metallicRoughness.metallic * 255;
  3570. metallicRoughnessBuffer[offset + 3] = 255;
  3571. }
  3572. }
  3573. // Retrieves the metallic roughness factors from the maximum texture values.
  3574. var metallicRoughnessFactors_1 = {
  3575. baseColor: maxBaseColor,
  3576. metallic: maxMetallic,
  3577. roughness: maxRoughness
  3578. };
  3579. var writeOutMetallicRoughnessTexture = false;
  3580. var writeOutBaseColorTexture = false;
  3581. for (var h = 0; h < height; ++h) {
  3582. for (var w = 0; w < width; ++w) {
  3583. var destinationOffset = (width * h + w) * strideSize;
  3584. baseColorBuffer[destinationOffset] /= metallicRoughnessFactors_1.baseColor.r > _GLTFMaterialExporter._Epsilon ? metallicRoughnessFactors_1.baseColor.r : 1;
  3585. baseColorBuffer[destinationOffset + 1] /= metallicRoughnessFactors_1.baseColor.g > _GLTFMaterialExporter._Epsilon ? metallicRoughnessFactors_1.baseColor.g : 1;
  3586. baseColorBuffer[destinationOffset + 2] /= metallicRoughnessFactors_1.baseColor.b > _GLTFMaterialExporter._Epsilon ? metallicRoughnessFactors_1.baseColor.b : 1;
  3587. var linearBaseColorPixel = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Color3"].FromInts(baseColorBuffer[destinationOffset], baseColorBuffer[destinationOffset + 1], baseColorBuffer[destinationOffset + 2]);
  3588. var sRGBBaseColorPixel = linearBaseColorPixel.toGammaSpace();
  3589. baseColorBuffer[destinationOffset] = sRGBBaseColorPixel.r * 255;
  3590. baseColorBuffer[destinationOffset + 1] = sRGBBaseColorPixel.g * 255;
  3591. baseColorBuffer[destinationOffset + 2] = sRGBBaseColorPixel.b * 255;
  3592. if (!_GLTFMaterialExporter.FuzzyEquals(sRGBBaseColorPixel, babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Color3"].White(), _GLTFMaterialExporter._Epsilon)) {
  3593. writeOutBaseColorTexture = true;
  3594. }
  3595. metallicRoughnessBuffer[destinationOffset + 1] /= metallicRoughnessFactors_1.roughness > _GLTFMaterialExporter._Epsilon ? metallicRoughnessFactors_1.roughness : 1;
  3596. metallicRoughnessBuffer[destinationOffset + 2] /= metallicRoughnessFactors_1.metallic > _GLTFMaterialExporter._Epsilon ? metallicRoughnessFactors_1.metallic : 1;
  3597. var metallicRoughnessPixel = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Color3"].FromInts(255, metallicRoughnessBuffer[destinationOffset + 1], metallicRoughnessBuffer[destinationOffset + 2]);
  3598. if (!_GLTFMaterialExporter.FuzzyEquals(metallicRoughnessPixel, babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Color3"].White(), _GLTFMaterialExporter._Epsilon)) {
  3599. writeOutMetallicRoughnessTexture = true;
  3600. }
  3601. }
  3602. }
  3603. if (writeOutMetallicRoughnessTexture) {
  3604. var promise = this._createBase64FromCanvasAsync(metallicRoughnessBuffer, width, height, mimeType).then(function (metallicRoughnessBase64) {
  3605. metallicRoughnessFactors_1.metallicRoughnessTextureBase64 = metallicRoughnessBase64;
  3606. });
  3607. promises.push(promise);
  3608. }
  3609. if (writeOutBaseColorTexture) {
  3610. var promise = this._createBase64FromCanvasAsync(baseColorBuffer, width, height, mimeType).then(function (baseColorBase64) {
  3611. metallicRoughnessFactors_1.baseColorTextureBase64 = baseColorBase64;
  3612. });
  3613. promises.push(promise);
  3614. }
  3615. return Promise.all(promises).then(function () {
  3616. return metallicRoughnessFactors_1;
  3617. });
  3618. }
  3619. else {
  3620. return Promise.reject("_ConvertSpecularGlossinessTexturesToMetallicRoughness: Scene from textures is missing!");
  3621. }
  3622. };
  3623. /**
  3624. * Converts specular glossiness material properties to metallic roughness
  3625. * @param specularGlossiness interface with specular glossiness material properties
  3626. * @returns interface with metallic roughness material properties
  3627. */
  3628. _GLTFMaterialExporter.prototype._convertSpecularGlossinessToMetallicRoughness = function (specularGlossiness) {
  3629. var diffusePerceivedBrightness = this._getPerceivedBrightness(specularGlossiness.diffuseColor);
  3630. var specularPerceivedBrightness = this._getPerceivedBrightness(specularGlossiness.specularColor);
  3631. var oneMinusSpecularStrength = 1 - this._getMaxComponent(specularGlossiness.specularColor);
  3632. var metallic = _GLTFMaterialExporter._SolveMetallic(diffusePerceivedBrightness, specularPerceivedBrightness, oneMinusSpecularStrength);
  3633. var baseColorFromDiffuse = specularGlossiness.diffuseColor.scale(oneMinusSpecularStrength / (1.0 - _GLTFMaterialExporter._DielectricSpecular.r) / Math.max(1 - metallic, _GLTFMaterialExporter._Epsilon));
  3634. var baseColorFromSpecular = specularGlossiness.specularColor.subtract(_GLTFMaterialExporter._DielectricSpecular.scale(1 - metallic)).scale(1 / Math.max(metallic, _GLTFMaterialExporter._Epsilon));
  3635. var baseColor = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Color3"].Lerp(baseColorFromDiffuse, baseColorFromSpecular, metallic * metallic);
  3636. baseColor = baseColor.clampToRef(0, 1, baseColor);
  3637. var metallicRoughness = {
  3638. baseColor: baseColor,
  3639. metallic: metallic,
  3640. roughness: 1 - specularGlossiness.glossiness
  3641. };
  3642. return metallicRoughness;
  3643. };
  3644. /**
  3645. * Calculates the surface reflectance, independent of lighting conditions
  3646. * @param color Color source to calculate brightness from
  3647. * @returns number representing the perceived brightness, or zero if color is undefined
  3648. */
  3649. _GLTFMaterialExporter.prototype._getPerceivedBrightness = function (color) {
  3650. if (color) {
  3651. return Math.sqrt(0.299 * color.r * color.r + 0.587 * color.g * color.g + 0.114 * color.b * color.b);
  3652. }
  3653. return 0;
  3654. };
  3655. /**
  3656. * Returns the maximum color component value
  3657. * @param color
  3658. * @returns maximum color component value, or zero if color is null or undefined
  3659. */
  3660. _GLTFMaterialExporter.prototype._getMaxComponent = function (color) {
  3661. if (color) {
  3662. return Math.max(color.r, Math.max(color.g, color.b));
  3663. }
  3664. return 0;
  3665. };
  3666. /**
  3667. * Convert a PBRMaterial (Metallic/Roughness) to Metallic Roughness factors
  3668. * @param babylonPBRMaterial BJS PBR Metallic Roughness Material
  3669. * @param mimeType mime type to use for the textures
  3670. * @param images array of glTF image interfaces
  3671. * @param textures array of glTF texture interfaces
  3672. * @param glTFPbrMetallicRoughness glTF PBR Metallic Roughness interface
  3673. * @param imageData map of image file name to data
  3674. * @param hasTextureCoords specifies if texture coordinates are present on the submesh to determine if textures should be applied
  3675. * @returns glTF PBR Metallic Roughness factors
  3676. */
  3677. _GLTFMaterialExporter.prototype._convertMetalRoughFactorsToMetallicRoughnessAsync = function (babylonPBRMaterial, mimeType, glTFPbrMetallicRoughness, hasTextureCoords) {
  3678. var promises = [];
  3679. var metallicRoughness = {
  3680. baseColor: babylonPBRMaterial.albedoColor,
  3681. metallic: babylonPBRMaterial.metallic,
  3682. roughness: babylonPBRMaterial.roughness
  3683. };
  3684. if (hasTextureCoords) {
  3685. if (babylonPBRMaterial.albedoTexture) {
  3686. promises.push(this._exportTextureAsync(babylonPBRMaterial.albedoTexture, mimeType).then(function (glTFTexture) {
  3687. if (glTFTexture) {
  3688. glTFPbrMetallicRoughness.baseColorTexture = glTFTexture;
  3689. }
  3690. }));
  3691. }
  3692. if (babylonPBRMaterial.metallicTexture) {
  3693. promises.push(this._exportTextureAsync(babylonPBRMaterial.metallicTexture, mimeType).then(function (glTFTexture) {
  3694. if (glTFTexture) {
  3695. glTFPbrMetallicRoughness.metallicRoughnessTexture = glTFTexture;
  3696. }
  3697. }));
  3698. }
  3699. }
  3700. return Promise.all(promises).then(function () {
  3701. return metallicRoughness;
  3702. });
  3703. };
  3704. _GLTFMaterialExporter.prototype._getGLTFTextureSampler = function (texture) {
  3705. var sampler = this._getGLTFTextureWrapModesSampler(texture);
  3706. var samplingMode = texture instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"] ? texture.samplingMode : null;
  3707. if (samplingMode != null) {
  3708. switch (samplingMode) {
  3709. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].LINEAR_LINEAR: {
  3710. sampler.magFilter = 9729 /* LINEAR */;
  3711. sampler.minFilter = 9729 /* LINEAR */;
  3712. break;
  3713. }
  3714. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].LINEAR_NEAREST: {
  3715. sampler.magFilter = 9729 /* LINEAR */;
  3716. sampler.minFilter = 9728 /* NEAREST */;
  3717. break;
  3718. }
  3719. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].NEAREST_LINEAR: {
  3720. sampler.magFilter = 9728 /* NEAREST */;
  3721. sampler.minFilter = 9729 /* LINEAR */;
  3722. break;
  3723. }
  3724. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].NEAREST_LINEAR_MIPLINEAR: {
  3725. sampler.magFilter = 9728 /* NEAREST */;
  3726. sampler.minFilter = 9987 /* LINEAR_MIPMAP_LINEAR */;
  3727. break;
  3728. }
  3729. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].NEAREST_NEAREST: {
  3730. sampler.magFilter = 9728 /* NEAREST */;
  3731. sampler.minFilter = 9728 /* NEAREST */;
  3732. break;
  3733. }
  3734. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].NEAREST_LINEAR_MIPNEAREST: {
  3735. sampler.magFilter = 9728 /* NEAREST */;
  3736. sampler.minFilter = 9985 /* LINEAR_MIPMAP_NEAREST */;
  3737. break;
  3738. }
  3739. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].LINEAR_NEAREST_MIPNEAREST: {
  3740. sampler.magFilter = 9729 /* LINEAR */;
  3741. sampler.minFilter = 9984 /* NEAREST_MIPMAP_NEAREST */;
  3742. break;
  3743. }
  3744. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].LINEAR_NEAREST_MIPLINEAR: {
  3745. sampler.magFilter = 9729 /* LINEAR */;
  3746. sampler.minFilter = 9986 /* NEAREST_MIPMAP_LINEAR */;
  3747. break;
  3748. }
  3749. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].NEAREST_NEAREST_MIPLINEAR: {
  3750. sampler.magFilter = 9728 /* NEAREST */;
  3751. sampler.minFilter = 9986 /* NEAREST_MIPMAP_LINEAR */;
  3752. break;
  3753. }
  3754. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].LINEAR_LINEAR_MIPLINEAR: {
  3755. sampler.magFilter = 9729 /* LINEAR */;
  3756. sampler.minFilter = 9987 /* LINEAR_MIPMAP_LINEAR */;
  3757. break;
  3758. }
  3759. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].LINEAR_LINEAR_MIPNEAREST: {
  3760. sampler.magFilter = 9729 /* LINEAR */;
  3761. sampler.minFilter = 9985 /* LINEAR_MIPMAP_NEAREST */;
  3762. break;
  3763. }
  3764. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].NEAREST_NEAREST_MIPNEAREST: {
  3765. sampler.magFilter = 9728 /* NEAREST */;
  3766. sampler.minFilter = 9984 /* NEAREST_MIPMAP_NEAREST */;
  3767. break;
  3768. }
  3769. }
  3770. }
  3771. return sampler;
  3772. };
  3773. _GLTFMaterialExporter.prototype._getGLTFTextureWrapMode = function (wrapMode) {
  3774. switch (wrapMode) {
  3775. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].WRAP_ADDRESSMODE: {
  3776. return 10497 /* REPEAT */;
  3777. }
  3778. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].CLAMP_ADDRESSMODE: {
  3779. return 33071 /* CLAMP_TO_EDGE */;
  3780. }
  3781. case babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].MIRROR_ADDRESSMODE: {
  3782. return 33648 /* MIRRORED_REPEAT */;
  3783. }
  3784. default: {
  3785. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Tools"].Error("Unsupported Texture Wrap Mode " + wrapMode + "!");
  3786. return 10497 /* REPEAT */;
  3787. }
  3788. }
  3789. };
  3790. _GLTFMaterialExporter.prototype._getGLTFTextureWrapModesSampler = function (texture) {
  3791. var wrapS = this._getGLTFTextureWrapMode(texture instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"] ? texture.wrapU : babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].WRAP_ADDRESSMODE);
  3792. var wrapT = this._getGLTFTextureWrapMode(texture instanceof babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"] ? texture.wrapV : babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Texture"].WRAP_ADDRESSMODE);
  3793. if (wrapS === 10497 /* REPEAT */ && wrapT === 10497 /* REPEAT */) { // default wrapping mode in glTF, so omitting
  3794. return {};
  3795. }
  3796. return { wrapS: wrapS, wrapT: wrapT };
  3797. };
  3798. /**
  3799. * Convert a PBRMaterial (Specular/Glossiness) to Metallic Roughness factors
  3800. * @param babylonPBRMaterial BJS PBR Metallic Roughness Material
  3801. * @param mimeType mime type to use for the textures
  3802. * @param images array of glTF image interfaces
  3803. * @param textures array of glTF texture interfaces
  3804. * @param glTFPbrMetallicRoughness glTF PBR Metallic Roughness interface
  3805. * @param imageData map of image file name to data
  3806. * @param hasTextureCoords specifies if texture coordinates are present on the submesh to determine if textures should be applied
  3807. * @returns glTF PBR Metallic Roughness factors
  3808. */
  3809. _GLTFMaterialExporter.prototype._convertSpecGlossFactorsToMetallicRoughnessAsync = function (babylonPBRMaterial, mimeType, glTFPbrMetallicRoughness, hasTextureCoords) {
  3810. var _this = this;
  3811. return Promise.resolve().then(function () {
  3812. var samplers = _this._exporter._samplers;
  3813. var textures = _this._exporter._textures;
  3814. var specGloss = {
  3815. diffuseColor: babylonPBRMaterial.albedoColor || babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Color3"].White(),
  3816. specularColor: babylonPBRMaterial.reflectivityColor || babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Color3"].White(),
  3817. glossiness: babylonPBRMaterial.microSurface || 1,
  3818. };
  3819. var samplerIndex = null;
  3820. var sampler = _this._getGLTFTextureSampler(babylonPBRMaterial.albedoTexture);
  3821. if (sampler.magFilter != null && sampler.minFilter != null && sampler.wrapS != null && sampler.wrapT != null) {
  3822. samplers.push(sampler);
  3823. samplerIndex = samplers.length - 1;
  3824. }
  3825. if (babylonPBRMaterial.reflectivityTexture && !babylonPBRMaterial.useMicroSurfaceFromReflectivityMapAlpha) {
  3826. return Promise.reject("_ConvertPBRMaterial: Glossiness values not included in the reflectivity texture are currently not supported");
  3827. }
  3828. if ((babylonPBRMaterial.albedoTexture || babylonPBRMaterial.reflectivityTexture) && hasTextureCoords) {
  3829. return _this._convertSpecularGlossinessTexturesToMetallicRoughnessAsync(babylonPBRMaterial.albedoTexture, babylonPBRMaterial.reflectivityTexture, specGloss, mimeType).then(function (metallicRoughnessFactors) {
  3830. if (metallicRoughnessFactors.baseColorTextureBase64) {
  3831. var glTFBaseColorTexture = _this._getTextureInfoFromBase64(metallicRoughnessFactors.baseColorTextureBase64, "bjsBaseColorTexture_" + (textures.length) + ".png", mimeType, babylonPBRMaterial.albedoTexture ? babylonPBRMaterial.albedoTexture.coordinatesIndex : null, samplerIndex);
  3832. if (glTFBaseColorTexture) {
  3833. glTFPbrMetallicRoughness.baseColorTexture = glTFBaseColorTexture;
  3834. }
  3835. }
  3836. if (metallicRoughnessFactors.metallicRoughnessTextureBase64) {
  3837. var glTFMRColorTexture = _this._getTextureInfoFromBase64(metallicRoughnessFactors.metallicRoughnessTextureBase64, "bjsMetallicRoughnessTexture_" + (textures.length) + ".png", mimeType, babylonPBRMaterial.reflectivityTexture ? babylonPBRMaterial.reflectivityTexture.coordinatesIndex : null, samplerIndex);
  3838. if (glTFMRColorTexture) {
  3839. glTFPbrMetallicRoughness.metallicRoughnessTexture = glTFMRColorTexture;
  3840. }
  3841. }
  3842. return metallicRoughnessFactors;
  3843. });
  3844. }
  3845. else {
  3846. return _this._convertSpecularGlossinessToMetallicRoughness(specGloss);
  3847. }
  3848. });
  3849. };
  3850. /**
  3851. * Converts a Babylon PBR Metallic Roughness Material to a glTF Material
  3852. * @param babylonPBRMaterial BJS PBR Metallic Roughness Material
  3853. * @param mimeType mime type to use for the textures
  3854. * @param images array of glTF image interfaces
  3855. * @param textures array of glTF texture interfaces
  3856. * @param materials array of glTF material interfaces
  3857. * @param imageData map of image file name to data
  3858. * @param hasTextureCoords specifies if texture coordinates are present on the submesh to determine if textures should be applied
  3859. */
  3860. _GLTFMaterialExporter.prototype._convertPBRMaterialAsync = function (babylonPBRMaterial, mimeType, hasTextureCoords) {
  3861. var _this = this;
  3862. var glTFPbrMetallicRoughness = {};
  3863. var glTFMaterial = {
  3864. name: babylonPBRMaterial.name
  3865. };
  3866. var useMetallicRoughness = babylonPBRMaterial.isMetallicWorkflow();
  3867. if (useMetallicRoughness) {
  3868. if (babylonPBRMaterial.albedoColor) {
  3869. glTFPbrMetallicRoughness.baseColorFactor = [
  3870. babylonPBRMaterial.albedoColor.r,
  3871. babylonPBRMaterial.albedoColor.g,
  3872. babylonPBRMaterial.albedoColor.b,
  3873. babylonPBRMaterial.alpha
  3874. ];
  3875. }
  3876. return this._convertMetalRoughFactorsToMetallicRoughnessAsync(babylonPBRMaterial, mimeType, glTFPbrMetallicRoughness, hasTextureCoords).then(function (metallicRoughness) {
  3877. return _this.setMetallicRoughnessPbrMaterial(metallicRoughness, babylonPBRMaterial, glTFMaterial, glTFPbrMetallicRoughness, mimeType, hasTextureCoords);
  3878. });
  3879. }
  3880. else {
  3881. return this._convertSpecGlossFactorsToMetallicRoughnessAsync(babylonPBRMaterial, mimeType, glTFPbrMetallicRoughness, hasTextureCoords).then(function (metallicRoughness) {
  3882. return _this.setMetallicRoughnessPbrMaterial(metallicRoughness, babylonPBRMaterial, glTFMaterial, glTFPbrMetallicRoughness, mimeType, hasTextureCoords);
  3883. });
  3884. }
  3885. };
  3886. _GLTFMaterialExporter.prototype.setMetallicRoughnessPbrMaterial = function (metallicRoughness, babylonPBRMaterial, glTFMaterial, glTFPbrMetallicRoughness, mimeType, hasTextureCoords) {
  3887. var materialMap = this._exporter._materialMap;
  3888. var materials = this._exporter._materials;
  3889. var promises = [];
  3890. if (metallicRoughness) {
  3891. _GLTFMaterialExporter._SetAlphaMode(glTFMaterial, babylonPBRMaterial);
  3892. if (!(_GLTFMaterialExporter.FuzzyEquals(metallicRoughness.baseColor, babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Color3"].White(), _GLTFMaterialExporter._Epsilon) && babylonPBRMaterial.alpha >= _GLTFMaterialExporter._Epsilon)) {
  3893. glTFPbrMetallicRoughness.baseColorFactor = [
  3894. metallicRoughness.baseColor.r,
  3895. metallicRoughness.baseColor.g,
  3896. metallicRoughness.baseColor.b,
  3897. babylonPBRMaterial.alpha
  3898. ];
  3899. }
  3900. if (metallicRoughness.metallic != null && metallicRoughness.metallic !== 1) {
  3901. glTFPbrMetallicRoughness.metallicFactor = metallicRoughness.metallic;
  3902. }
  3903. if (metallicRoughness.roughness != null && metallicRoughness.roughness !== 1) {
  3904. glTFPbrMetallicRoughness.roughnessFactor = metallicRoughness.roughness;
  3905. }
  3906. if (babylonPBRMaterial.backFaceCulling != null && !babylonPBRMaterial.backFaceCulling) {
  3907. if (!babylonPBRMaterial.twoSidedLighting) {
  3908. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Tools"].Warn(babylonPBRMaterial.name + ": Back-face culling enabled and two-sided lighting disabled is not supported in glTF.");
  3909. }
  3910. glTFMaterial.doubleSided = true;
  3911. }
  3912. if (hasTextureCoords) {
  3913. if (babylonPBRMaterial.bumpTexture) {
  3914. var promise = this._exportTextureAsync(babylonPBRMaterial.bumpTexture, mimeType).then(function (glTFTexture) {
  3915. if (glTFTexture) {
  3916. glTFMaterial.normalTexture = glTFTexture;
  3917. if (babylonPBRMaterial.bumpTexture.level !== 1) {
  3918. glTFMaterial.normalTexture.scale = babylonPBRMaterial.bumpTexture.level;
  3919. }
  3920. }
  3921. });
  3922. promises.push(promise);
  3923. }
  3924. if (babylonPBRMaterial.ambientTexture) {
  3925. var promise = this._exportTextureAsync(babylonPBRMaterial.ambientTexture, mimeType).then(function (glTFTexture) {
  3926. if (glTFTexture) {
  3927. var occlusionTexture = {
  3928. index: glTFTexture.index,
  3929. texCoord: glTFTexture.texCoord
  3930. };
  3931. glTFMaterial.occlusionTexture = occlusionTexture;
  3932. if (babylonPBRMaterial.ambientTextureStrength) {
  3933. occlusionTexture.strength = babylonPBRMaterial.ambientTextureStrength;
  3934. }
  3935. }
  3936. });
  3937. promises.push(promise);
  3938. }
  3939. if (babylonPBRMaterial.emissiveTexture) {
  3940. var promise = this._exportTextureAsync(babylonPBRMaterial.emissiveTexture, mimeType).then(function (glTFTexture) {
  3941. if (glTFTexture) {
  3942. glTFMaterial.emissiveTexture = glTFTexture;
  3943. }
  3944. });
  3945. promises.push(promise);
  3946. }
  3947. }
  3948. if (!_GLTFMaterialExporter.FuzzyEquals(babylonPBRMaterial.emissiveColor, babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Color3"].Black(), _GLTFMaterialExporter._Epsilon)) {
  3949. glTFMaterial.emissiveFactor = babylonPBRMaterial.emissiveColor.asArray();
  3950. }
  3951. glTFMaterial.pbrMetallicRoughness = glTFPbrMetallicRoughness;
  3952. materials.push(glTFMaterial);
  3953. materialMap[babylonPBRMaterial.uniqueId] = materials.length - 1;
  3954. }
  3955. return this._finishMaterial(promises, glTFMaterial, babylonPBRMaterial, mimeType);
  3956. };
  3957. _GLTFMaterialExporter.prototype.getPixelsFromTexture = function (babylonTexture) {
  3958. var pixels = babylonTexture.textureType === babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Constants"].TEXTURETYPE_UNSIGNED_INT ? babylonTexture.readPixels() : babylonTexture.readPixels();
  3959. return pixels;
  3960. };
  3961. /**
  3962. * Extracts a texture from a Babylon texture into file data and glTF data
  3963. * @param babylonTexture Babylon texture to extract
  3964. * @param mimeType Mime Type of the babylonTexture
  3965. * @return glTF texture info, or null if the texture format is not supported
  3966. */
  3967. _GLTFMaterialExporter.prototype._exportTextureAsync = function (babylonTexture, mimeType) {
  3968. var _this = this;
  3969. var extensionPromise = this._exporter._extensionsPreExportTextureAsync("exporter", babylonTexture, mimeType);
  3970. if (!extensionPromise) {
  3971. return this._exportTextureInfoAsync(babylonTexture, mimeType);
  3972. }
  3973. return extensionPromise.then(function (texture) {
  3974. if (!texture) {
  3975. return _this._exportTextureInfoAsync(babylonTexture, mimeType);
  3976. }
  3977. return _this._exportTextureInfoAsync(texture, mimeType);
  3978. });
  3979. };
  3980. _GLTFMaterialExporter.prototype._exportTextureInfoAsync = function (babylonTexture, mimeType) {
  3981. var _this = this;
  3982. return Promise.resolve().then(function () {
  3983. var textureUid = babylonTexture.uid;
  3984. if (textureUid in _this._textureMap) {
  3985. return _this._textureMap[textureUid];
  3986. }
  3987. else {
  3988. var pixels = _this.getPixelsFromTexture(babylonTexture);
  3989. if (!pixels) {
  3990. return null;
  3991. }
  3992. var samplers = _this._exporter._samplers;
  3993. var sampler = _this._getGLTFTextureSampler(babylonTexture);
  3994. var samplerIndex_1 = null;
  3995. // if a pre-existing sampler with identical parameters exists, then reuse the previous sampler
  3996. var foundSamplerIndex = null;
  3997. for (var i = 0; i < samplers.length; ++i) {
  3998. var s = samplers[i];
  3999. if (s.minFilter === sampler.minFilter && s.magFilter === sampler.magFilter &&
  4000. s.wrapS === sampler.wrapS && s.wrapT === sampler.wrapT) {
  4001. foundSamplerIndex = i;
  4002. break;
  4003. }
  4004. }
  4005. if (foundSamplerIndex == null) {
  4006. samplers.push(sampler);
  4007. samplerIndex_1 = samplers.length - 1;
  4008. }
  4009. else {
  4010. samplerIndex_1 = foundSamplerIndex;
  4011. }
  4012. var size = babylonTexture.getSize();
  4013. return _this._createBase64FromCanvasAsync(pixels, size.width, size.height, mimeType).then(function (base64Data) {
  4014. var textureInfo = _this._getTextureInfoFromBase64(base64Data, babylonTexture.name.replace(/\.\/|\/|\.\\|\\/g, "_"), mimeType, babylonTexture.coordinatesIndex, samplerIndex_1);
  4015. if (textureInfo) {
  4016. _this._textureMap[textureUid] = textureInfo;
  4017. _this._exporter._extensionsPostExportTextures("linkTextureInfo", textureInfo, babylonTexture);
  4018. }
  4019. return textureInfo;
  4020. });
  4021. }
  4022. });
  4023. };
  4024. /**
  4025. * Builds a texture from base64 string
  4026. * @param base64Texture base64 texture string
  4027. * @param baseTextureName Name to use for the texture
  4028. * @param mimeType image mime type for the texture
  4029. * @param images array of images
  4030. * @param textures array of textures
  4031. * @param imageData map of image data
  4032. * @returns glTF texture info, or null if the texture format is not supported
  4033. */
  4034. _GLTFMaterialExporter.prototype._getTextureInfoFromBase64 = function (base64Texture, baseTextureName, mimeType, texCoordIndex, samplerIndex) {
  4035. var textures = this._exporter._textures;
  4036. var images = this._exporter._images;
  4037. var imageData = this._exporter._imageData;
  4038. var textureInfo = null;
  4039. var glTFTexture = {
  4040. source: images.length,
  4041. name: baseTextureName
  4042. };
  4043. if (samplerIndex != null) {
  4044. glTFTexture.sampler = samplerIndex;
  4045. }
  4046. var binStr = atob(base64Texture.split(',')[1]);
  4047. var arrBuff = new ArrayBuffer(binStr.length);
  4048. var arr = new Uint8Array(arrBuff);
  4049. for (var i = 0, length_2 = binStr.length; i < length_2; ++i) {
  4050. arr[i] = binStr.charCodeAt(i);
  4051. }
  4052. var imageValues = { data: arr, mimeType: mimeType };
  4053. var extension = mimeType === "image/jpeg" /* JPEG */ ? '.jpeg' : '.png';
  4054. var textureName = baseTextureName + extension;
  4055. var originalTextureName = textureName;
  4056. if (textureName in imageData) {
  4057. textureName = baseTextureName + "_" + babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Tools"].RandomId() + extension;
  4058. }
  4059. imageData[textureName] = imageValues;
  4060. if (mimeType === "image/jpeg" /* JPEG */ || mimeType === "image/png" /* PNG */) {
  4061. var glTFImage = {
  4062. name: baseTextureName,
  4063. uri: textureName
  4064. };
  4065. var foundIndex = null;
  4066. for (var i = 0; i < images.length; ++i) {
  4067. if (images[i].uri === originalTextureName) {
  4068. foundIndex = i;
  4069. break;
  4070. }
  4071. }
  4072. if (foundIndex == null) {
  4073. images.push(glTFImage);
  4074. glTFTexture.source = images.length - 1;
  4075. }
  4076. else {
  4077. glTFTexture.source = foundIndex;
  4078. }
  4079. textures.push(glTFTexture);
  4080. textureInfo = {
  4081. index: textures.length - 1
  4082. };
  4083. if (texCoordIndex != null) {
  4084. textureInfo.texCoord = texCoordIndex;
  4085. }
  4086. }
  4087. else {
  4088. babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Tools"].Error("Unsupported texture mime type " + mimeType);
  4089. }
  4090. return textureInfo;
  4091. };
  4092. /**
  4093. * Represents the dielectric specular values for R, G and B
  4094. */
  4095. _GLTFMaterialExporter._DielectricSpecular = new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Color3"](0.04, 0.04, 0.04);
  4096. /**
  4097. * Allows the maximum specular power to be defined for material calculations
  4098. */
  4099. _GLTFMaterialExporter._MaxSpecularPower = 1024;
  4100. /**
  4101. * Numeric tolerance value
  4102. */
  4103. _GLTFMaterialExporter._Epsilon = 1e-6;
  4104. return _GLTFMaterialExporter;
  4105. }());
  4106. /***/ }),
  4107. /***/ "./glTF/2.0/glTFSerializer.ts":
  4108. /*!************************************!*\
  4109. !*** ./glTF/2.0/glTFSerializer.ts ***!
  4110. \************************************/
  4111. /*! exports provided: GLTF2Export */
  4112. /***/ (function(module, __webpack_exports__, __webpack_require__) {
  4113. "use strict";
  4114. __webpack_require__.r(__webpack_exports__);
  4115. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "GLTF2Export", function() { return GLTF2Export; });
  4116. /* harmony import */ var _glTFExporter__WEBPACK_IMPORTED_MODULE_0__ = __webpack_require__(/*! ./glTFExporter */ "./glTF/2.0/glTFExporter.ts");
  4117. /**
  4118. * Class for generating glTF data from a Babylon scene.
  4119. */
  4120. var GLTF2Export = /** @class */ (function () {
  4121. function GLTF2Export() {
  4122. }
  4123. /**
  4124. * Exports the geometry of the scene to .gltf file format asynchronously
  4125. * @param scene Babylon scene with scene hierarchy information
  4126. * @param filePrefix File prefix to use when generating the glTF file
  4127. * @param options Exporter options
  4128. * @returns Returns an object with a .gltf file and associates texture names
  4129. * as keys and their data and paths as values
  4130. */
  4131. GLTF2Export.GLTFAsync = function (scene, filePrefix, options) {
  4132. return scene.whenReadyAsync().then(function () {
  4133. var glTFPrefix = filePrefix.replace(/\.[^/.]+$/, "");
  4134. var gltfGenerator = new _glTFExporter__WEBPACK_IMPORTED_MODULE_0__["_Exporter"](scene, options);
  4135. return gltfGenerator._generateGLTFAsync(glTFPrefix);
  4136. });
  4137. };
  4138. GLTF2Export._PreExportAsync = function (scene, options) {
  4139. return Promise.resolve().then(function () {
  4140. if (options && options.exportWithoutWaitingForScene) {
  4141. return Promise.resolve();
  4142. }
  4143. else {
  4144. return scene.whenReadyAsync();
  4145. }
  4146. });
  4147. };
  4148. GLTF2Export._PostExportAsync = function (scene, glTFData, options) {
  4149. return Promise.resolve().then(function () {
  4150. if (options && options.exportWithoutWaitingForScene) {
  4151. return glTFData;
  4152. }
  4153. else {
  4154. return glTFData;
  4155. }
  4156. });
  4157. };
  4158. /**
  4159. * Exports the geometry of the scene to .glb file format asychronously
  4160. * @param scene Babylon scene with scene hierarchy information
  4161. * @param filePrefix File prefix to use when generating glb file
  4162. * @param options Exporter options
  4163. * @returns Returns an object with a .glb filename as key and data as value
  4164. */
  4165. GLTF2Export.GLBAsync = function (scene, filePrefix, options) {
  4166. var _this = this;
  4167. return this._PreExportAsync(scene, options).then(function () {
  4168. var glTFPrefix = filePrefix.replace(/\.[^/.]+$/, "");
  4169. var gltfGenerator = new _glTFExporter__WEBPACK_IMPORTED_MODULE_0__["_Exporter"](scene, options);
  4170. return gltfGenerator._generateGLBAsync(glTFPrefix).then(function (glTFData) {
  4171. return _this._PostExportAsync(scene, glTFData, options);
  4172. });
  4173. });
  4174. };
  4175. return GLTF2Export;
  4176. }());
  4177. /***/ }),
  4178. /***/ "./glTF/2.0/glTFUtilities.ts":
  4179. /*!***********************************!*\
  4180. !*** ./glTF/2.0/glTFUtilities.ts ***!
  4181. \***********************************/
  4182. /*! exports provided: _GLTFUtilities */
  4183. /***/ (function(module, __webpack_exports__, __webpack_require__) {
  4184. "use strict";
  4185. __webpack_require__.r(__webpack_exports__);
  4186. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "_GLTFUtilities", function() { return _GLTFUtilities; });
  4187. /* harmony import */ var babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__ = __webpack_require__(/*! babylonjs/Maths/math.vector */ "babylonjs/Maths/math.vector");
  4188. /* harmony import */ var babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0___default = /*#__PURE__*/__webpack_require__.n(babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__);
  4189. /**
  4190. * @hidden
  4191. */
  4192. var _GLTFUtilities = /** @class */ (function () {
  4193. function _GLTFUtilities() {
  4194. }
  4195. /**
  4196. * Creates a buffer view based on the supplied arguments
  4197. * @param bufferIndex index value of the specified buffer
  4198. * @param byteOffset byte offset value
  4199. * @param byteLength byte length of the bufferView
  4200. * @param byteStride byte distance between conequential elements
  4201. * @param name name of the buffer view
  4202. * @returns bufferView for glTF
  4203. */
  4204. _GLTFUtilities._CreateBufferView = function (bufferIndex, byteOffset, byteLength, byteStride, name) {
  4205. var bufferview = { buffer: bufferIndex, byteLength: byteLength };
  4206. if (byteOffset) {
  4207. bufferview.byteOffset = byteOffset;
  4208. }
  4209. if (name) {
  4210. bufferview.name = name;
  4211. }
  4212. if (byteStride) {
  4213. bufferview.byteStride = byteStride;
  4214. }
  4215. return bufferview;
  4216. };
  4217. /**
  4218. * Creates an accessor based on the supplied arguments
  4219. * @param bufferviewIndex The index of the bufferview referenced by this accessor
  4220. * @param name The name of the accessor
  4221. * @param type The type of the accessor
  4222. * @param componentType The datatype of components in the attribute
  4223. * @param count The number of attributes referenced by this accessor
  4224. * @param byteOffset The offset relative to the start of the bufferView in bytes
  4225. * @param min Minimum value of each component in this attribute
  4226. * @param max Maximum value of each component in this attribute
  4227. * @returns accessor for glTF
  4228. */
  4229. _GLTFUtilities._CreateAccessor = function (bufferviewIndex, name, type, componentType, count, byteOffset, min, max) {
  4230. var accessor = { name: name, bufferView: bufferviewIndex, componentType: componentType, count: count, type: type };
  4231. if (min != null) {
  4232. accessor.min = min;
  4233. }
  4234. if (max != null) {
  4235. accessor.max = max;
  4236. }
  4237. if (byteOffset != null) {
  4238. accessor.byteOffset = byteOffset;
  4239. }
  4240. return accessor;
  4241. };
  4242. /**
  4243. * Calculates the minimum and maximum values of an array of position floats
  4244. * @param positions Positions array of a mesh
  4245. * @param vertexStart Starting vertex offset to calculate min and max values
  4246. * @param vertexCount Number of vertices to check for min and max values
  4247. * @returns min number array and max number array
  4248. */
  4249. _GLTFUtilities._CalculateMinMaxPositions = function (positions, vertexStart, vertexCount, convertToRightHandedSystem) {
  4250. var min = [Infinity, Infinity, Infinity];
  4251. var max = [-Infinity, -Infinity, -Infinity];
  4252. var positionStrideSize = 3;
  4253. var indexOffset;
  4254. var position;
  4255. var vector;
  4256. if (vertexCount) {
  4257. for (var i = vertexStart, length_1 = vertexStart + vertexCount; i < length_1; ++i) {
  4258. indexOffset = positionStrideSize * i;
  4259. position = babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector3"].FromArray(positions, indexOffset);
  4260. if (convertToRightHandedSystem) {
  4261. _GLTFUtilities._GetRightHandedPositionVector3FromRef(position);
  4262. }
  4263. vector = position.asArray();
  4264. for (var j = 0; j < positionStrideSize; ++j) {
  4265. var num = vector[j];
  4266. if (num < min[j]) {
  4267. min[j] = num;
  4268. }
  4269. if (num > max[j]) {
  4270. max[j] = num;
  4271. }
  4272. ++indexOffset;
  4273. }
  4274. }
  4275. }
  4276. return { min: min, max: max };
  4277. };
  4278. /**
  4279. * Converts a new right-handed Vector3
  4280. * @param vector vector3 array
  4281. * @returns right-handed Vector3
  4282. */
  4283. _GLTFUtilities._GetRightHandedPositionVector3 = function (vector) {
  4284. return new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector3"](vector.x, vector.y, -vector.z);
  4285. };
  4286. /**
  4287. * Converts a Vector3 to right-handed
  4288. * @param vector Vector3 to convert to right-handed
  4289. */
  4290. _GLTFUtilities._GetRightHandedPositionVector3FromRef = function (vector) {
  4291. vector.z *= -1;
  4292. };
  4293. /**
  4294. * Converts a three element number array to right-handed
  4295. * @param vector number array to convert to right-handed
  4296. */
  4297. _GLTFUtilities._GetRightHandedPositionArray3FromRef = function (vector) {
  4298. vector[2] *= -1;
  4299. };
  4300. /**
  4301. * Converts a new right-handed Vector3
  4302. * @param vector vector3 array
  4303. * @returns right-handed Vector3
  4304. */
  4305. _GLTFUtilities._GetRightHandedNormalVector3 = function (vector) {
  4306. return new babylonjs_Maths_math_vector__WEBPACK_IMPORTED_MODULE_0__["Vector3"](vector.x, vector.y, -vector.z);
  4307. };
  4308. /**
  4309. * Converts a Vector3 to right-handed
  4310. * @param vector Vector3 to convert to right-handed
  4311. */
  4312. _GLTFUtilities._GetRightHandedNormalVector3FromRef = function (vector) {
  4313. vector.z *= -1;
  4314. };
  4315. /**
  4316. * Converts a three element number array to right-handed
  4317. * @param vector number array to convert to right-handed
  4318. */
  4319. _GLTFUtilities._GetRightHandedNormalArray3FromRef = function (vector) {
  4320. vector[2] *= -1;
  4321. };
  4322. /**
  4323. * Converts a Vector4 to right-handed
  4324. * @param vector Vector4 to convert to right-handed
  4325. */
  4326. _GLTFUtilities._GetRightHandedVector4FromRef = function (vector) {
  4327. vector.z *= -1;
  4328. vector.w *= -1;
  4329. };
  4330. /**
  4331. * Converts a Vector4 to right-handed
  4332. * @param vector Vector4 to convert to right-handed
  4333. */
  4334. _GLTFUtilities._GetRightHandedArray4FromRef = function (vector) {
  4335. vector[2] *= -1;
  4336. vector[3] *= -1;
  4337. };
  4338. /**
  4339. * Converts a Quaternion to right-handed
  4340. * @param quaternion Source quaternion to convert to right-handed
  4341. */
  4342. _GLTFUtilities._GetRightHandedQuaternionFromRef = function (quaternion) {
  4343. quaternion.x *= -1;
  4344. quaternion.y *= -1;
  4345. };
  4346. /**
  4347. * Converts a Quaternion to right-handed
  4348. * @param quaternion Source quaternion to convert to right-handed
  4349. */
  4350. _GLTFUtilities._GetRightHandedQuaternionArrayFromRef = function (quaternion) {
  4351. quaternion[0] *= -1;
  4352. quaternion[1] *= -1;
  4353. };
  4354. _GLTFUtilities._NormalizeTangentFromRef = function (tangent) {
  4355. var length = Math.sqrt(tangent.x * tangent.x + tangent.y * tangent.y + tangent.z * tangent.z);
  4356. if (length > 0) {
  4357. tangent.x /= length;
  4358. tangent.y /= length;
  4359. tangent.z /= length;
  4360. }
  4361. };
  4362. return _GLTFUtilities;
  4363. }());
  4364. /***/ }),
  4365. /***/ "./glTF/2.0/index.ts":
  4366. /*!***************************!*\
  4367. !*** ./glTF/2.0/index.ts ***!
  4368. \***************************/
  4369. /*! exports provided: _GLTFAnimation, GLTFData, _Exporter, _BinaryWriter, __IGLTFExporterExtensionV2, _GLTFMaterialExporter, GLTF2Export, _GLTFUtilities, KHR_texture_transform, KHR_lights_punctual, KHR_materials_sheen */
  4370. /***/ (function(module, __webpack_exports__, __webpack_require__) {
  4371. "use strict";
  4372. __webpack_require__.r(__webpack_exports__);
  4373. /* harmony import */ var _glTFAnimation__WEBPACK_IMPORTED_MODULE_0__ = __webpack_require__(/*! ./glTFAnimation */ "./glTF/2.0/glTFAnimation.ts");
  4374. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "_GLTFAnimation", function() { return _glTFAnimation__WEBPACK_IMPORTED_MODULE_0__["_GLTFAnimation"]; });
  4375. /* harmony import */ var _glTFData__WEBPACK_IMPORTED_MODULE_1__ = __webpack_require__(/*! ./glTFData */ "./glTF/2.0/glTFData.ts");
  4376. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "GLTFData", function() { return _glTFData__WEBPACK_IMPORTED_MODULE_1__["GLTFData"]; });
  4377. /* harmony import */ var _glTFExporter__WEBPACK_IMPORTED_MODULE_2__ = __webpack_require__(/*! ./glTFExporter */ "./glTF/2.0/glTFExporter.ts");
  4378. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "_Exporter", function() { return _glTFExporter__WEBPACK_IMPORTED_MODULE_2__["_Exporter"]; });
  4379. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "_BinaryWriter", function() { return _glTFExporter__WEBPACK_IMPORTED_MODULE_2__["_BinaryWriter"]; });
  4380. /* harmony import */ var _glTFExporterExtension__WEBPACK_IMPORTED_MODULE_3__ = __webpack_require__(/*! ./glTFExporterExtension */ "./glTF/2.0/glTFExporterExtension.ts");
  4381. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "__IGLTFExporterExtensionV2", function() { return _glTFExporterExtension__WEBPACK_IMPORTED_MODULE_3__["__IGLTFExporterExtensionV2"]; });
  4382. /* harmony import */ var _glTFMaterialExporter__WEBPACK_IMPORTED_MODULE_4__ = __webpack_require__(/*! ./glTFMaterialExporter */ "./glTF/2.0/glTFMaterialExporter.ts");
  4383. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "_GLTFMaterialExporter", function() { return _glTFMaterialExporter__WEBPACK_IMPORTED_MODULE_4__["_GLTFMaterialExporter"]; });
  4384. /* harmony import */ var _glTFSerializer__WEBPACK_IMPORTED_MODULE_5__ = __webpack_require__(/*! ./glTFSerializer */ "./glTF/2.0/glTFSerializer.ts");
  4385. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "GLTF2Export", function() { return _glTFSerializer__WEBPACK_IMPORTED_MODULE_5__["GLTF2Export"]; });
  4386. /* harmony import */ var _glTFUtilities__WEBPACK_IMPORTED_MODULE_6__ = __webpack_require__(/*! ./glTFUtilities */ "./glTF/2.0/glTFUtilities.ts");
  4387. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "_GLTFUtilities", function() { return _glTFUtilities__WEBPACK_IMPORTED_MODULE_6__["_GLTFUtilities"]; });
  4388. /* harmony import */ var _Extensions__WEBPACK_IMPORTED_MODULE_7__ = __webpack_require__(/*! ./Extensions */ "./glTF/2.0/Extensions/index.ts");
  4389. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "KHR_texture_transform", function() { return _Extensions__WEBPACK_IMPORTED_MODULE_7__["KHR_texture_transform"]; });
  4390. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "KHR_lights_punctual", function() { return _Extensions__WEBPACK_IMPORTED_MODULE_7__["KHR_lights_punctual"]; });
  4391. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "KHR_materials_sheen", function() { return _Extensions__WEBPACK_IMPORTED_MODULE_7__["KHR_materials_sheen"]; });
  4392. /***/ }),
  4393. /***/ "./glTF/2.0/shaders/textureTransform.fragment.ts":
  4394. /*!*******************************************************!*\
  4395. !*** ./glTF/2.0/shaders/textureTransform.fragment.ts ***!
  4396. \*******************************************************/
  4397. /*! exports provided: textureTransformPixelShader */
  4398. /***/ (function(module, __webpack_exports__, __webpack_require__) {
  4399. "use strict";
  4400. __webpack_require__.r(__webpack_exports__);
  4401. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "textureTransformPixelShader", function() { return textureTransformPixelShader; });
  4402. /* harmony import */ var babylonjs_Materials_effect__WEBPACK_IMPORTED_MODULE_0__ = __webpack_require__(/*! babylonjs/Materials/effect */ "babylonjs/Maths/math.vector");
  4403. /* harmony import */ var babylonjs_Materials_effect__WEBPACK_IMPORTED_MODULE_0___default = /*#__PURE__*/__webpack_require__.n(babylonjs_Materials_effect__WEBPACK_IMPORTED_MODULE_0__);
  4404. var name = 'textureTransformPixelShader';
  4405. var shader = "precision highp float;\nvarying vec2 vUV;\nuniform sampler2D textureSampler;\nuniform mat4 textureTransformMat;\nvoid main(void) {\nvec2 uvTransformed=(textureTransformMat*vec4(vUV.xy,1,1)).xy;\ngl_FragColor=texture2D(textureSampler,uvTransformed);\n}";
  4406. babylonjs_Materials_effect__WEBPACK_IMPORTED_MODULE_0__["Effect"].ShadersStore[name] = shader;
  4407. /** @hidden */
  4408. var textureTransformPixelShader = { name: name, shader: shader };
  4409. /***/ }),
  4410. /***/ "./glTF/glTFFileExporter.ts":
  4411. /*!**********************************!*\
  4412. !*** ./glTF/glTFFileExporter.ts ***!
  4413. \**********************************/
  4414. /*! exports provided: __IGLTFExporterExtension */
  4415. /***/ (function(module, __webpack_exports__, __webpack_require__) {
  4416. "use strict";
  4417. __webpack_require__.r(__webpack_exports__);
  4418. /* harmony export (binding) */ __webpack_require__.d(__webpack_exports__, "__IGLTFExporterExtension", function() { return __IGLTFExporterExtension; });
  4419. /** @hidden */
  4420. var __IGLTFExporterExtension = 0; // I am here to allow dts to be created
  4421. /***/ }),
  4422. /***/ "./legacy/legacy-glTF2Serializer.ts":
  4423. /*!******************************************!*\
  4424. !*** ./legacy/legacy-glTF2Serializer.ts ***!
  4425. \******************************************/
  4426. /*! exports provided: __IGLTFExporterExtension, _GLTFAnimation, GLTFData, _Exporter, _BinaryWriter, __IGLTFExporterExtensionV2, _GLTFMaterialExporter, GLTF2Export, _GLTFUtilities, KHR_texture_transform, KHR_lights_punctual, KHR_materials_sheen */
  4427. /***/ (function(module, __webpack_exports__, __webpack_require__) {
  4428. "use strict";
  4429. __webpack_require__.r(__webpack_exports__);
  4430. /* WEBPACK VAR INJECTION */(function(global) {/* harmony import */ var _glTF_glTFFileExporter__WEBPACK_IMPORTED_MODULE_0__ = __webpack_require__(/*! ../glTF/glTFFileExporter */ "./glTF/glTFFileExporter.ts");
  4431. /* harmony import */ var _glTF_2_0_glTFData__WEBPACK_IMPORTED_MODULE_1__ = __webpack_require__(/*! ../glTF/2.0/glTFData */ "./glTF/2.0/glTFData.ts");
  4432. /* harmony import */ var _glTF_2_0_glTFSerializer__WEBPACK_IMPORTED_MODULE_2__ = __webpack_require__(/*! ../glTF/2.0/glTFSerializer */ "./glTF/2.0/glTFSerializer.ts");
  4433. /* harmony import */ var _glTF_2_0_Extensions__WEBPACK_IMPORTED_MODULE_3__ = __webpack_require__(/*! ../glTF/2.0/Extensions */ "./glTF/2.0/Extensions/index.ts");
  4434. /* harmony import */ var _glTF_2_0__WEBPACK_IMPORTED_MODULE_4__ = __webpack_require__(/*! ../glTF/2.0 */ "./glTF/2.0/index.ts");
  4435. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "__IGLTFExporterExtension", function() { return _glTF_glTFFileExporter__WEBPACK_IMPORTED_MODULE_0__["__IGLTFExporterExtension"]; });
  4436. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "_GLTFAnimation", function() { return _glTF_2_0__WEBPACK_IMPORTED_MODULE_4__["_GLTFAnimation"]; });
  4437. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "GLTFData", function() { return _glTF_2_0__WEBPACK_IMPORTED_MODULE_4__["GLTFData"]; });
  4438. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "_Exporter", function() { return _glTF_2_0__WEBPACK_IMPORTED_MODULE_4__["_Exporter"]; });
  4439. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "_BinaryWriter", function() { return _glTF_2_0__WEBPACK_IMPORTED_MODULE_4__["_BinaryWriter"]; });
  4440. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "__IGLTFExporterExtensionV2", function() { return _glTF_2_0__WEBPACK_IMPORTED_MODULE_4__["__IGLTFExporterExtensionV2"]; });
  4441. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "_GLTFMaterialExporter", function() { return _glTF_2_0__WEBPACK_IMPORTED_MODULE_4__["_GLTFMaterialExporter"]; });
  4442. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "GLTF2Export", function() { return _glTF_2_0__WEBPACK_IMPORTED_MODULE_4__["GLTF2Export"]; });
  4443. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "_GLTFUtilities", function() { return _glTF_2_0__WEBPACK_IMPORTED_MODULE_4__["_GLTFUtilities"]; });
  4444. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "KHR_texture_transform", function() { return _glTF_2_0__WEBPACK_IMPORTED_MODULE_4__["KHR_texture_transform"]; });
  4445. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "KHR_lights_punctual", function() { return _glTF_2_0__WEBPACK_IMPORTED_MODULE_4__["KHR_lights_punctual"]; });
  4446. /* harmony reexport (safe) */ __webpack_require__.d(__webpack_exports__, "KHR_materials_sheen", function() { return _glTF_2_0__WEBPACK_IMPORTED_MODULE_4__["KHR_materials_sheen"]; });
  4447. /**
  4448. * This is the entry point for the UMD module.
  4449. * The entry point for a future ESM package should be index.ts
  4450. */
  4451. var globalObject = (typeof global !== 'undefined') ? global : ((typeof window !== 'undefined') ? window : undefined);
  4452. if (typeof globalObject !== "undefined") {
  4453. globalObject.BABYLON = globalObject.BABYLON || {};
  4454. var BABYLON = globalObject.BABYLON;
  4455. BABYLON.GLTF2 = BABYLON.GLTF2 || {};
  4456. BABYLON.GLTF2.Exporter = BABYLON.GLTF2.Exporter || {};
  4457. BABYLON.GLTF2.Exporter.Extensions = BABYLON.GLTF2.Exporter.Extensions || {};
  4458. var keys = [];
  4459. for (var key in _glTF_glTFFileExporter__WEBPACK_IMPORTED_MODULE_0__) {
  4460. BABYLON[key] = _glTF_glTFFileExporter__WEBPACK_IMPORTED_MODULE_0__[key];
  4461. keys.push(key);
  4462. }
  4463. for (var key in _glTF_2_0_glTFData__WEBPACK_IMPORTED_MODULE_1__) {
  4464. BABYLON[key] = _glTF_2_0_glTFData__WEBPACK_IMPORTED_MODULE_1__[key];
  4465. keys.push(key);
  4466. }
  4467. for (var key in _glTF_2_0_glTFSerializer__WEBPACK_IMPORTED_MODULE_2__) {
  4468. BABYLON[key] = _glTF_2_0_glTFSerializer__WEBPACK_IMPORTED_MODULE_2__[key];
  4469. keys.push(key);
  4470. }
  4471. for (var key in _glTF_2_0_Extensions__WEBPACK_IMPORTED_MODULE_3__) {
  4472. BABYLON.GLTF2.Exporter.Extensions[key] = _glTF_2_0_Extensions__WEBPACK_IMPORTED_MODULE_3__[key];
  4473. keys.push(key);
  4474. }
  4475. for (var key in _glTF_2_0__WEBPACK_IMPORTED_MODULE_4__) {
  4476. // Prevent Reassignment.
  4477. if (keys.indexOf(key) > -1) {
  4478. continue;
  4479. }
  4480. BABYLON.GLTF2.Exporter[key] = _glTF_2_0__WEBPACK_IMPORTED_MODULE_4__[key];
  4481. }
  4482. }
  4483. /* WEBPACK VAR INJECTION */}.call(this, __webpack_require__(/*! ./../../../node_modules/webpack/buildin/global.js */ "../../node_modules/webpack/buildin/global.js")))
  4484. /***/ }),
  4485. /***/ "babylonjs/Maths/math.vector":
  4486. /*!****************************************************************************************************!*\
  4487. !*** external {"root":"BABYLON","commonjs":"babylonjs","commonjs2":"babylonjs","amd":"babylonjs"} ***!
  4488. \****************************************************************************************************/
  4489. /*! no static exports found */
  4490. /***/ (function(module, exports) {
  4491. module.exports = __WEBPACK_EXTERNAL_MODULE_babylonjs_Maths_math_vector__;
  4492. /***/ })
  4493. /******/ });
  4494. });
  4495. //# sourceMappingURL=babylon.glTF2Serializer.js.map