babylon.glTF2FileLoader.js 202 KB

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  1. /// <reference path="../../../dist/preview release/babylon.d.ts"/>
  2. /// <reference path="../../../dist/preview release/glTF2Interface/babylon.glTF2Interface.d.ts"/>
  3. var BABYLON;
  4. (function (BABYLON) {
  5. /**
  6. * Mode that determines the coordinate system to use.
  7. */
  8. var GLTFLoaderCoordinateSystemMode;
  9. (function (GLTFLoaderCoordinateSystemMode) {
  10. /**
  11. * Automatically convert the glTF right-handed data to the appropriate system based on the current coordinate system mode of the scene.
  12. */
  13. GLTFLoaderCoordinateSystemMode[GLTFLoaderCoordinateSystemMode["AUTO"] = 0] = "AUTO";
  14. /**
  15. * Sets the useRightHandedSystem flag on the scene.
  16. */
  17. GLTFLoaderCoordinateSystemMode[GLTFLoaderCoordinateSystemMode["FORCE_RIGHT_HANDED"] = 1] = "FORCE_RIGHT_HANDED";
  18. })(GLTFLoaderCoordinateSystemMode = BABYLON.GLTFLoaderCoordinateSystemMode || (BABYLON.GLTFLoaderCoordinateSystemMode = {}));
  19. /**
  20. * Mode that determines what animations will start.
  21. */
  22. var GLTFLoaderAnimationStartMode;
  23. (function (GLTFLoaderAnimationStartMode) {
  24. /**
  25. * No animation will start.
  26. */
  27. GLTFLoaderAnimationStartMode[GLTFLoaderAnimationStartMode["NONE"] = 0] = "NONE";
  28. /**
  29. * The first animation will start.
  30. */
  31. GLTFLoaderAnimationStartMode[GLTFLoaderAnimationStartMode["FIRST"] = 1] = "FIRST";
  32. /**
  33. * All animations will start.
  34. */
  35. GLTFLoaderAnimationStartMode[GLTFLoaderAnimationStartMode["ALL"] = 2] = "ALL";
  36. })(GLTFLoaderAnimationStartMode = BABYLON.GLTFLoaderAnimationStartMode || (BABYLON.GLTFLoaderAnimationStartMode = {}));
  37. /**
  38. * Loader state.
  39. */
  40. var GLTFLoaderState;
  41. (function (GLTFLoaderState) {
  42. /**
  43. * The asset is loading.
  44. */
  45. GLTFLoaderState[GLTFLoaderState["LOADING"] = 0] = "LOADING";
  46. /**
  47. * The asset is ready for rendering.
  48. */
  49. GLTFLoaderState[GLTFLoaderState["READY"] = 1] = "READY";
  50. /**
  51. * The asset is completely loaded.
  52. */
  53. GLTFLoaderState[GLTFLoaderState["COMPLETE"] = 2] = "COMPLETE";
  54. })(GLTFLoaderState = BABYLON.GLTFLoaderState || (BABYLON.GLTFLoaderState = {}));
  55. /**
  56. * File loader for loading glTF files into a scene.
  57. */
  58. var GLTFFileLoader = /** @class */ (function () {
  59. function GLTFFileLoader() {
  60. // --------------
  61. // Common options
  62. // --------------
  63. /**
  64. * Raised when the asset has been parsed
  65. */
  66. this.onParsedObservable = new BABYLON.Observable();
  67. // ----------
  68. // V2 options
  69. // ----------
  70. /**
  71. * The coordinate system mode. Defaults to AUTO.
  72. */
  73. this.coordinateSystemMode = GLTFLoaderCoordinateSystemMode.AUTO;
  74. /**
  75. * The animation start mode. Defaults to FIRST.
  76. */
  77. this.animationStartMode = GLTFLoaderAnimationStartMode.FIRST;
  78. /**
  79. * Defines if the loader should compile materials before raising the success callback. Defaults to false.
  80. */
  81. this.compileMaterials = false;
  82. /**
  83. * Defines if the loader should also compile materials with clip planes. Defaults to false.
  84. */
  85. this.useClipPlane = false;
  86. /**
  87. * Defines if the loader should compile shadow generators before raising the success callback. Defaults to false.
  88. */
  89. this.compileShadowGenerators = false;
  90. /**
  91. * Defines if the Alpha blended materials are only applied as coverage.
  92. * If false, (default) The luminance of each pixel will reduce its opacity to simulate the behaviour of most physical materials.
  93. * If true, no extra effects are applied to transparent pixels.
  94. */
  95. this.transparencyAsCoverage = false;
  96. /**
  97. * Function called before loading a url referenced by the asset.
  98. */
  99. this.preprocessUrlAsync = function (url) { return Promise.resolve(url); };
  100. /**
  101. * Observable raised when the loader creates a mesh after parsing the glTF properties of the mesh.
  102. */
  103. this.onMeshLoadedObservable = new BABYLON.Observable();
  104. /**
  105. * Observable raised when the loader creates a texture after parsing the glTF properties of the texture.
  106. */
  107. this.onTextureLoadedObservable = new BABYLON.Observable();
  108. /**
  109. * Observable raised when the loader creates a material after parsing the glTF properties of the material.
  110. */
  111. this.onMaterialLoadedObservable = new BABYLON.Observable();
  112. /**
  113. * Observable raised when the loader creates a camera after parsing the glTF properties of the camera.
  114. */
  115. this.onCameraLoadedObservable = new BABYLON.Observable();
  116. /**
  117. * Observable raised when the asset is completely loaded, immediately before the loader is disposed.
  118. * For assets with LODs, raised when all of the LODs are complete.
  119. * For assets without LODs, raised when the model is complete, immediately after the loader resolves the returned promise.
  120. */
  121. this.onCompleteObservable = new BABYLON.Observable();
  122. /**
  123. * Observable raised when an error occurs.
  124. */
  125. this.onErrorObservable = new BABYLON.Observable();
  126. /**
  127. * Observable raised after the loader is disposed.
  128. */
  129. this.onDisposeObservable = new BABYLON.Observable();
  130. /**
  131. * Observable raised after a loader extension is created.
  132. * Set additional options for a loader extension in this event.
  133. */
  134. this.onExtensionLoadedObservable = new BABYLON.Observable();
  135. /**
  136. * Defines if the loader should validate the asset.
  137. */
  138. this.validate = false;
  139. /**
  140. * Observable raised after validation when validate is set to true. The event data is the result of the validation.
  141. */
  142. this.onValidatedObservable = new BABYLON.Observable();
  143. this._loader = null;
  144. /**
  145. * Name of the loader ("gltf")
  146. */
  147. this.name = "gltf";
  148. /**
  149. * Supported file extensions of the loader (.gltf, .glb)
  150. */
  151. this.extensions = {
  152. ".gltf": { isBinary: false },
  153. ".glb": { isBinary: true }
  154. };
  155. this._logIndentLevel = 0;
  156. this._loggingEnabled = false;
  157. /** @hidden */
  158. this._log = this._logDisabled;
  159. this._capturePerformanceCounters = false;
  160. /** @hidden */
  161. this._startPerformanceCounter = this._startPerformanceCounterDisabled;
  162. /** @hidden */
  163. this._endPerformanceCounter = this._endPerformanceCounterDisabled;
  164. }
  165. Object.defineProperty(GLTFFileLoader.prototype, "onParsed", {
  166. /**
  167. * Raised when the asset has been parsed
  168. */
  169. set: function (callback) {
  170. if (this._onParsedObserver) {
  171. this.onParsedObservable.remove(this._onParsedObserver);
  172. }
  173. this._onParsedObserver = this.onParsedObservable.add(callback);
  174. },
  175. enumerable: true,
  176. configurable: true
  177. });
  178. Object.defineProperty(GLTFFileLoader.prototype, "onMeshLoaded", {
  179. /**
  180. * Callback raised when the loader creates a mesh after parsing the glTF properties of the mesh.
  181. */
  182. set: function (callback) {
  183. if (this._onMeshLoadedObserver) {
  184. this.onMeshLoadedObservable.remove(this._onMeshLoadedObserver);
  185. }
  186. this._onMeshLoadedObserver = this.onMeshLoadedObservable.add(callback);
  187. },
  188. enumerable: true,
  189. configurable: true
  190. });
  191. Object.defineProperty(GLTFFileLoader.prototype, "onTextureLoaded", {
  192. /**
  193. * Callback raised when the loader creates a texture after parsing the glTF properties of the texture.
  194. */
  195. set: function (callback) {
  196. if (this._onTextureLoadedObserver) {
  197. this.onTextureLoadedObservable.remove(this._onTextureLoadedObserver);
  198. }
  199. this._onTextureLoadedObserver = this.onTextureLoadedObservable.add(callback);
  200. },
  201. enumerable: true,
  202. configurable: true
  203. });
  204. Object.defineProperty(GLTFFileLoader.prototype, "onMaterialLoaded", {
  205. /**
  206. * Callback raised when the loader creates a material after parsing the glTF properties of the material.
  207. */
  208. set: function (callback) {
  209. if (this._onMaterialLoadedObserver) {
  210. this.onMaterialLoadedObservable.remove(this._onMaterialLoadedObserver);
  211. }
  212. this._onMaterialLoadedObserver = this.onMaterialLoadedObservable.add(callback);
  213. },
  214. enumerable: true,
  215. configurable: true
  216. });
  217. Object.defineProperty(GLTFFileLoader.prototype, "onCameraLoaded", {
  218. /**
  219. * Callback raised when the loader creates a camera after parsing the glTF properties of the camera.
  220. */
  221. set: function (callback) {
  222. if (this._onCameraLoadedObserver) {
  223. this.onCameraLoadedObservable.remove(this._onCameraLoadedObserver);
  224. }
  225. this._onCameraLoadedObserver = this.onCameraLoadedObservable.add(callback);
  226. },
  227. enumerable: true,
  228. configurable: true
  229. });
  230. Object.defineProperty(GLTFFileLoader.prototype, "onComplete", {
  231. /**
  232. * Callback raised when the asset is completely loaded, immediately before the loader is disposed.
  233. * For assets with LODs, raised when all of the LODs are complete.
  234. * For assets without LODs, raised when the model is complete, immediately after the loader resolves the returned promise.
  235. */
  236. set: function (callback) {
  237. if (this._onCompleteObserver) {
  238. this.onCompleteObservable.remove(this._onCompleteObserver);
  239. }
  240. this._onCompleteObserver = this.onCompleteObservable.add(callback);
  241. },
  242. enumerable: true,
  243. configurable: true
  244. });
  245. Object.defineProperty(GLTFFileLoader.prototype, "onError", {
  246. /**
  247. * Callback raised when an error occurs.
  248. */
  249. set: function (callback) {
  250. if (this._onErrorObserver) {
  251. this.onErrorObservable.remove(this._onErrorObserver);
  252. }
  253. this._onErrorObserver = this.onErrorObservable.add(callback);
  254. },
  255. enumerable: true,
  256. configurable: true
  257. });
  258. Object.defineProperty(GLTFFileLoader.prototype, "onDispose", {
  259. /**
  260. * Callback raised after the loader is disposed.
  261. */
  262. set: function (callback) {
  263. if (this._onDisposeObserver) {
  264. this.onDisposeObservable.remove(this._onDisposeObserver);
  265. }
  266. this._onDisposeObserver = this.onDisposeObservable.add(callback);
  267. },
  268. enumerable: true,
  269. configurable: true
  270. });
  271. Object.defineProperty(GLTFFileLoader.prototype, "onExtensionLoaded", {
  272. /**
  273. * Callback raised after a loader extension is created.
  274. */
  275. set: function (callback) {
  276. if (this._onExtensionLoadedObserver) {
  277. this.onExtensionLoadedObservable.remove(this._onExtensionLoadedObserver);
  278. }
  279. this._onExtensionLoadedObserver = this.onExtensionLoadedObservable.add(callback);
  280. },
  281. enumerable: true,
  282. configurable: true
  283. });
  284. Object.defineProperty(GLTFFileLoader.prototype, "loggingEnabled", {
  285. /**
  286. * Defines if the loader logging is enabled.
  287. */
  288. get: function () {
  289. return this._loggingEnabled;
  290. },
  291. set: function (value) {
  292. if (this._loggingEnabled === value) {
  293. return;
  294. }
  295. this._loggingEnabled = value;
  296. if (this._loggingEnabled) {
  297. this._log = this._logEnabled;
  298. }
  299. else {
  300. this._log = this._logDisabled;
  301. }
  302. },
  303. enumerable: true,
  304. configurable: true
  305. });
  306. Object.defineProperty(GLTFFileLoader.prototype, "capturePerformanceCounters", {
  307. /**
  308. * Defines if the loader should capture performance counters.
  309. */
  310. get: function () {
  311. return this._capturePerformanceCounters;
  312. },
  313. set: function (value) {
  314. if (this._capturePerformanceCounters === value) {
  315. return;
  316. }
  317. this._capturePerformanceCounters = value;
  318. if (this._capturePerformanceCounters) {
  319. this._startPerformanceCounter = this._startPerformanceCounterEnabled;
  320. this._endPerformanceCounter = this._endPerformanceCounterEnabled;
  321. }
  322. else {
  323. this._startPerformanceCounter = this._startPerformanceCounterDisabled;
  324. this._endPerformanceCounter = this._endPerformanceCounterDisabled;
  325. }
  326. },
  327. enumerable: true,
  328. configurable: true
  329. });
  330. Object.defineProperty(GLTFFileLoader.prototype, "onValidated", {
  331. /**
  332. * Callback raised after a loader extension is created.
  333. */
  334. set: function (callback) {
  335. if (this._onValidatedObserver) {
  336. this.onValidatedObservable.remove(this._onValidatedObserver);
  337. }
  338. this._onValidatedObserver = this.onValidatedObservable.add(callback);
  339. },
  340. enumerable: true,
  341. configurable: true
  342. });
  343. /**
  344. * Disposes the loader, releases resources during load, and cancels any outstanding requests.
  345. */
  346. GLTFFileLoader.prototype.dispose = function () {
  347. if (this._loader) {
  348. this._loader.dispose();
  349. this._loader = null;
  350. }
  351. this._clear();
  352. this.onDisposeObservable.notifyObservers(undefined);
  353. this.onDisposeObservable.clear();
  354. };
  355. /** @hidden */
  356. GLTFFileLoader.prototype._clear = function () {
  357. this.preprocessUrlAsync = function (url) { return Promise.resolve(url); };
  358. this.onMeshLoadedObservable.clear();
  359. this.onTextureLoadedObservable.clear();
  360. this.onMaterialLoadedObservable.clear();
  361. this.onCameraLoadedObservable.clear();
  362. this.onCompleteObservable.clear();
  363. this.onExtensionLoadedObservable.clear();
  364. };
  365. /**
  366. * Imports one or more meshes from the loaded glTF data and adds them to the scene
  367. * @param meshesNames a string or array of strings of the mesh names that should be loaded from the file
  368. * @param scene the scene the meshes should be added to
  369. * @param data the glTF data to load
  370. * @param rootUrl root url to load from
  371. * @param onProgress event that fires when loading progress has occured
  372. * @param fileName Defines the name of the file to load
  373. * @returns a promise containg the loaded meshes, particles, skeletons and animations
  374. */
  375. GLTFFileLoader.prototype.importMeshAsync = function (meshesNames, scene, data, rootUrl, onProgress, fileName) {
  376. var _this = this;
  377. return this._parseAsync(scene, data, rootUrl, fileName).then(function (loaderData) {
  378. _this._log("Loading " + (fileName || ""));
  379. _this._loader = _this._getLoader(loaderData);
  380. return _this._loader.importMeshAsync(meshesNames, scene, loaderData, rootUrl, onProgress, fileName);
  381. });
  382. };
  383. /**
  384. * Imports all objects from the loaded glTF data and adds them to the scene
  385. * @param scene the scene the objects should be added to
  386. * @param data the glTF data to load
  387. * @param rootUrl root url to load from
  388. * @param onProgress event that fires when loading progress has occured
  389. * @param fileName Defines the name of the file to load
  390. * @returns a promise which completes when objects have been loaded to the scene
  391. */
  392. GLTFFileLoader.prototype.loadAsync = function (scene, data, rootUrl, onProgress, fileName) {
  393. var _this = this;
  394. return this._parseAsync(scene, data, rootUrl, fileName).then(function (loaderData) {
  395. _this._log("Loading " + (fileName || ""));
  396. _this._loader = _this._getLoader(loaderData);
  397. return _this._loader.loadAsync(scene, loaderData, rootUrl, onProgress, fileName);
  398. });
  399. };
  400. /**
  401. * Load into an asset container.
  402. * @param scene The scene to load into
  403. * @param data The data to import
  404. * @param rootUrl The root url for scene and resources
  405. * @param onProgress The callback when the load progresses
  406. * @param fileName Defines the name of the file to load
  407. * @returns The loaded asset container
  408. */
  409. GLTFFileLoader.prototype.loadAssetContainerAsync = function (scene, data, rootUrl, onProgress, fileName) {
  410. var _this = this;
  411. return this._parseAsync(scene, data, rootUrl, fileName).then(function (loaderData) {
  412. _this._log("Loading " + (fileName || ""));
  413. _this._loader = _this._getLoader(loaderData);
  414. return _this._loader.importMeshAsync(null, scene, loaderData, rootUrl, onProgress, fileName).then(function (result) {
  415. var container = new BABYLON.AssetContainer(scene);
  416. Array.prototype.push.apply(container.meshes, result.meshes);
  417. Array.prototype.push.apply(container.particleSystems, result.particleSystems);
  418. Array.prototype.push.apply(container.skeletons, result.skeletons);
  419. Array.prototype.push.apply(container.animationGroups, result.animationGroups);
  420. container.removeAllFromScene();
  421. return container;
  422. });
  423. });
  424. };
  425. /**
  426. * If the data string can be loaded directly.
  427. * @param data string contianing the file data
  428. * @returns if the data can be loaded directly
  429. */
  430. GLTFFileLoader.prototype.canDirectLoad = function (data) {
  431. return ((data.indexOf("scene") !== -1) && (data.indexOf("node") !== -1));
  432. };
  433. /**
  434. * Instantiates a glTF file loader plugin.
  435. * @returns the created plugin
  436. */
  437. GLTFFileLoader.prototype.createPlugin = function () {
  438. return new GLTFFileLoader();
  439. };
  440. Object.defineProperty(GLTFFileLoader.prototype, "loaderState", {
  441. /**
  442. * The loader state or null if the loader is not active.
  443. */
  444. get: function () {
  445. return this._loader ? this._loader.state : null;
  446. },
  447. enumerable: true,
  448. configurable: true
  449. });
  450. /**
  451. * Returns a promise that resolves when the asset is completely loaded.
  452. * @returns a promise that resolves when the asset is completely loaded.
  453. */
  454. GLTFFileLoader.prototype.whenCompleteAsync = function () {
  455. var _this = this;
  456. return new Promise(function (resolve, reject) {
  457. _this.onCompleteObservable.addOnce(function () {
  458. resolve();
  459. });
  460. _this.onErrorObservable.addOnce(function (reason) {
  461. reject(reason);
  462. });
  463. });
  464. };
  465. GLTFFileLoader.prototype._parseAsync = function (scene, data, rootUrl, fileName) {
  466. var _this = this;
  467. return Promise.resolve().then(function () {
  468. var unpacked = (data instanceof ArrayBuffer) ? _this._unpackBinary(data) : { json: data, bin: null };
  469. return _this._validateAsync(scene, unpacked.json, rootUrl, fileName).then(function () {
  470. _this._startPerformanceCounter("Parse JSON");
  471. _this._log("JSON length: " + unpacked.json.length);
  472. var loaderData = {
  473. json: JSON.parse(unpacked.json),
  474. bin: unpacked.bin
  475. };
  476. _this._endPerformanceCounter("Parse JSON");
  477. _this.onParsedObservable.notifyObservers(loaderData);
  478. _this.onParsedObservable.clear();
  479. return loaderData;
  480. });
  481. });
  482. };
  483. GLTFFileLoader.prototype._validateAsync = function (scene, json, rootUrl, fileName) {
  484. var _this = this;
  485. if (!this.validate || typeof GLTFValidator === "undefined") {
  486. return Promise.resolve();
  487. }
  488. this._startPerformanceCounter("Validate JSON");
  489. var options = {
  490. externalResourceFunction: function (uri) {
  491. return _this.preprocessUrlAsync(rootUrl + uri)
  492. .then(function (url) { return scene._loadFileAsync(url, true, true); })
  493. .then(function (data) { return new Uint8Array(data); });
  494. }
  495. };
  496. if (fileName && fileName.substr(0, 5) !== "data:") {
  497. options.uri = (rootUrl === "file:" ? fileName : "" + rootUrl + fileName);
  498. }
  499. return GLTFValidator.validateString(json, options).then(function (result) {
  500. _this._endPerformanceCounter("Validate JSON");
  501. _this.onValidatedObservable.notifyObservers(result);
  502. _this.onValidatedObservable.clear();
  503. }, function (reason) {
  504. _this._endPerformanceCounter("Validate JSON");
  505. BABYLON.Tools.Warn("Failed to validate: " + reason);
  506. _this.onValidatedObservable.clear();
  507. });
  508. };
  509. GLTFFileLoader.prototype._getLoader = function (loaderData) {
  510. var asset = loaderData.json.asset || {};
  511. this._log("Asset version: " + asset.version);
  512. asset.minVersion && this._log("Asset minimum version: " + asset.minVersion);
  513. asset.generator && this._log("Asset generator: " + asset.generator);
  514. var version = GLTFFileLoader._parseVersion(asset.version);
  515. if (!version) {
  516. throw new Error("Invalid version: " + asset.version);
  517. }
  518. if (asset.minVersion !== undefined) {
  519. var minVersion = GLTFFileLoader._parseVersion(asset.minVersion);
  520. if (!minVersion) {
  521. throw new Error("Invalid minimum version: " + asset.minVersion);
  522. }
  523. if (GLTFFileLoader._compareVersion(minVersion, { major: 2, minor: 0 }) > 0) {
  524. throw new Error("Incompatible minimum version: " + asset.minVersion);
  525. }
  526. }
  527. var createLoaders = {
  528. 1: GLTFFileLoader._CreateGLTFLoaderV1,
  529. 2: GLTFFileLoader._CreateGLTFLoaderV2
  530. };
  531. var createLoader = createLoaders[version.major];
  532. if (!createLoader) {
  533. throw new Error("Unsupported version: " + asset.version);
  534. }
  535. return createLoader(this);
  536. };
  537. GLTFFileLoader.prototype._unpackBinary = function (data) {
  538. this._startPerformanceCounter("Unpack binary");
  539. this._log("Binary length: " + data.byteLength);
  540. var Binary = {
  541. Magic: 0x46546C67
  542. };
  543. var binaryReader = new BinaryReader(data);
  544. var magic = binaryReader.readUint32();
  545. if (magic !== Binary.Magic) {
  546. throw new Error("Unexpected magic: " + magic);
  547. }
  548. var version = binaryReader.readUint32();
  549. if (this.loggingEnabled) {
  550. this._log("Binary version: " + version);
  551. }
  552. var unpacked;
  553. switch (version) {
  554. case 1: {
  555. unpacked = this._unpackBinaryV1(binaryReader);
  556. break;
  557. }
  558. case 2: {
  559. unpacked = this._unpackBinaryV2(binaryReader);
  560. break;
  561. }
  562. default: {
  563. throw new Error("Unsupported version: " + version);
  564. }
  565. }
  566. this._endPerformanceCounter("Unpack binary");
  567. return unpacked;
  568. };
  569. GLTFFileLoader.prototype._unpackBinaryV1 = function (binaryReader) {
  570. var ContentFormat = {
  571. JSON: 0
  572. };
  573. var length = binaryReader.readUint32();
  574. if (length != binaryReader.getLength()) {
  575. throw new Error("Length in header does not match actual data length: " + length + " != " + binaryReader.getLength());
  576. }
  577. var contentLength = binaryReader.readUint32();
  578. var contentFormat = binaryReader.readUint32();
  579. var content;
  580. switch (contentFormat) {
  581. case ContentFormat.JSON: {
  582. content = GLTFFileLoader._decodeBufferToText(binaryReader.readUint8Array(contentLength));
  583. break;
  584. }
  585. default: {
  586. throw new Error("Unexpected content format: " + contentFormat);
  587. }
  588. }
  589. var bytesRemaining = binaryReader.getLength() - binaryReader.getPosition();
  590. var body = binaryReader.readUint8Array(bytesRemaining);
  591. return {
  592. json: content,
  593. bin: body
  594. };
  595. };
  596. GLTFFileLoader.prototype._unpackBinaryV2 = function (binaryReader) {
  597. var ChunkFormat = {
  598. JSON: 0x4E4F534A,
  599. BIN: 0x004E4942
  600. };
  601. var length = binaryReader.readUint32();
  602. if (length !== binaryReader.getLength()) {
  603. throw new Error("Length in header does not match actual data length: " + length + " != " + binaryReader.getLength());
  604. }
  605. // JSON chunk
  606. var chunkLength = binaryReader.readUint32();
  607. var chunkFormat = binaryReader.readUint32();
  608. if (chunkFormat !== ChunkFormat.JSON) {
  609. throw new Error("First chunk format is not JSON");
  610. }
  611. var json = GLTFFileLoader._decodeBufferToText(binaryReader.readUint8Array(chunkLength));
  612. // Look for BIN chunk
  613. var bin = null;
  614. while (binaryReader.getPosition() < binaryReader.getLength()) {
  615. var chunkLength_1 = binaryReader.readUint32();
  616. var chunkFormat_1 = binaryReader.readUint32();
  617. switch (chunkFormat_1) {
  618. case ChunkFormat.JSON: {
  619. throw new Error("Unexpected JSON chunk");
  620. }
  621. case ChunkFormat.BIN: {
  622. bin = binaryReader.readUint8Array(chunkLength_1);
  623. break;
  624. }
  625. default: {
  626. // ignore unrecognized chunkFormat
  627. binaryReader.skipBytes(chunkLength_1);
  628. break;
  629. }
  630. }
  631. }
  632. return {
  633. json: json,
  634. bin: bin
  635. };
  636. };
  637. GLTFFileLoader._parseVersion = function (version) {
  638. if (version === "1.0" || version === "1.0.1") {
  639. return {
  640. major: 1,
  641. minor: 0
  642. };
  643. }
  644. var match = (version + "").match(/^(\d+)\.(\d+)/);
  645. if (!match) {
  646. return null;
  647. }
  648. return {
  649. major: parseInt(match[1]),
  650. minor: parseInt(match[2])
  651. };
  652. };
  653. GLTFFileLoader._compareVersion = function (a, b) {
  654. if (a.major > b.major) {
  655. return 1;
  656. }
  657. if (a.major < b.major) {
  658. return -1;
  659. }
  660. if (a.minor > b.minor) {
  661. return 1;
  662. }
  663. if (a.minor < b.minor) {
  664. return -1;
  665. }
  666. return 0;
  667. };
  668. GLTFFileLoader._decodeBufferToText = function (buffer) {
  669. var result = "";
  670. var length = buffer.byteLength;
  671. for (var i = 0; i < length; i++) {
  672. result += String.fromCharCode(buffer[i]);
  673. }
  674. return result;
  675. };
  676. /** @hidden */
  677. GLTFFileLoader.prototype._logOpen = function (message) {
  678. this._log(message);
  679. this._logIndentLevel++;
  680. };
  681. /** @hidden */
  682. GLTFFileLoader.prototype._logClose = function () {
  683. --this._logIndentLevel;
  684. };
  685. GLTFFileLoader.prototype._logEnabled = function (message) {
  686. var spaces = GLTFFileLoader._logSpaces.substr(0, this._logIndentLevel * 2);
  687. BABYLON.Tools.Log("" + spaces + message);
  688. };
  689. GLTFFileLoader.prototype._logDisabled = function (message) {
  690. };
  691. GLTFFileLoader.prototype._startPerformanceCounterEnabled = function (counterName) {
  692. BABYLON.Tools.StartPerformanceCounter(counterName);
  693. };
  694. GLTFFileLoader.prototype._startPerformanceCounterDisabled = function (counterName) {
  695. };
  696. GLTFFileLoader.prototype._endPerformanceCounterEnabled = function (counterName) {
  697. BABYLON.Tools.EndPerformanceCounter(counterName);
  698. };
  699. GLTFFileLoader.prototype._endPerformanceCounterDisabled = function (counterName) {
  700. };
  701. // ----------
  702. // V1 options
  703. // ----------
  704. /**
  705. * Set this property to false to disable incremental loading which delays the loader from calling the success callback until after loading the meshes and shaders.
  706. * Textures always loads asynchronously. For example, the success callback can compute the bounding information of the loaded meshes when incremental loading is disabled.
  707. * Defaults to true.
  708. * @hidden
  709. */
  710. GLTFFileLoader.IncrementalLoading = true;
  711. /**
  712. * Set this property to true in order to work with homogeneous coordinates, available with some converters and exporters.
  713. * Defaults to false. See https://en.wikipedia.org/wiki/Homogeneous_coordinates.
  714. * @hidden
  715. */
  716. GLTFFileLoader.HomogeneousCoordinates = false;
  717. GLTFFileLoader._logSpaces = " ";
  718. return GLTFFileLoader;
  719. }());
  720. BABYLON.GLTFFileLoader = GLTFFileLoader;
  721. var BinaryReader = /** @class */ (function () {
  722. function BinaryReader(arrayBuffer) {
  723. this._arrayBuffer = arrayBuffer;
  724. this._dataView = new DataView(arrayBuffer);
  725. this._byteOffset = 0;
  726. }
  727. BinaryReader.prototype.getPosition = function () {
  728. return this._byteOffset;
  729. };
  730. BinaryReader.prototype.getLength = function () {
  731. return this._arrayBuffer.byteLength;
  732. };
  733. BinaryReader.prototype.readUint32 = function () {
  734. var value = this._dataView.getUint32(this._byteOffset, true);
  735. this._byteOffset += 4;
  736. return value;
  737. };
  738. BinaryReader.prototype.readUint8Array = function (length) {
  739. var value = new Uint8Array(this._arrayBuffer, this._byteOffset, length);
  740. this._byteOffset += length;
  741. return value;
  742. };
  743. BinaryReader.prototype.skipBytes = function (length) {
  744. this._byteOffset += length;
  745. };
  746. return BinaryReader;
  747. }());
  748. if (BABYLON.SceneLoader) {
  749. BABYLON.SceneLoader.RegisterPlugin(new GLTFFileLoader());
  750. }
  751. })(BABYLON || (BABYLON = {}));
  752. //# sourceMappingURL=babylon.glTFFileLoader.js.map
  753. /// <reference path="../../../../dist/preview release/babylon.d.ts"/>
  754. //# sourceMappingURL=babylon.glTFLoaderInterfaces.js.map
  755. /// <reference path="../../../../dist/preview release/babylon.d.ts"/>
  756. /**
  757. * Defines the module for importing and exporting glTF 2.0 assets
  758. */
  759. var BABYLON;
  760. (function (BABYLON) {
  761. var GLTF2;
  762. (function (GLTF2) {
  763. /**
  764. * Helper class for working with arrays when loading the glTF asset
  765. */
  766. var ArrayItem = /** @class */ (function () {
  767. function ArrayItem() {
  768. }
  769. /**
  770. * Gets an item from the given array.
  771. * @param context The context when loading the asset
  772. * @param array The array to get the item from
  773. * @param index The index to the array
  774. * @returns The array item
  775. */
  776. ArrayItem.Get = function (context, array, index) {
  777. if (!array || index == undefined || !array[index]) {
  778. throw new Error(context + ": Failed to find index (" + index + ")");
  779. }
  780. return array[index];
  781. };
  782. /**
  783. * Assign an `index` field to each item of the given array.
  784. * @param array The array of items
  785. */
  786. ArrayItem.Assign = function (array) {
  787. if (array) {
  788. for (var index = 0; index < array.length; index++) {
  789. array[index].index = index;
  790. }
  791. }
  792. };
  793. return ArrayItem;
  794. }());
  795. GLTF2.ArrayItem = ArrayItem;
  796. /**
  797. * The glTF 2.0 loader
  798. */
  799. var GLTFLoader = /** @class */ (function () {
  800. /** @hidden */
  801. function GLTFLoader(parent) {
  802. /** @hidden */
  803. this._completePromises = new Array();
  804. this._disposed = false;
  805. this._state = null;
  806. this._extensions = {};
  807. this._defaultBabylonMaterialData = {};
  808. this._requests = new Array();
  809. this._parent = parent;
  810. }
  811. /**
  812. * Registers a loader extension.
  813. * @param name The name of the loader extension.
  814. * @param factory The factory function that creates the loader extension.
  815. */
  816. GLTFLoader.RegisterExtension = function (name, factory) {
  817. if (GLTFLoader.UnregisterExtension(name)) {
  818. BABYLON.Tools.Warn("Extension with the name '" + name + "' already exists");
  819. }
  820. GLTFLoader._ExtensionFactories[name] = factory;
  821. // Keep the order of registration so that extensions registered first are called first.
  822. GLTFLoader._ExtensionNames.push(name);
  823. };
  824. /**
  825. * Unregisters a loader extension.
  826. * @param name The name of the loader extenion.
  827. * @returns A boolean indicating whether the extension has been unregistered
  828. */
  829. GLTFLoader.UnregisterExtension = function (name) {
  830. if (!GLTFLoader._ExtensionFactories[name]) {
  831. return false;
  832. }
  833. delete GLTFLoader._ExtensionFactories[name];
  834. var index = GLTFLoader._ExtensionNames.indexOf(name);
  835. if (index !== -1) {
  836. GLTFLoader._ExtensionNames.splice(index, 1);
  837. }
  838. return true;
  839. };
  840. Object.defineProperty(GLTFLoader.prototype, "state", {
  841. /**
  842. * Gets the loader state.
  843. */
  844. get: function () {
  845. return this._state;
  846. },
  847. enumerable: true,
  848. configurable: true
  849. });
  850. /** @hidden */
  851. GLTFLoader.prototype.dispose = function () {
  852. if (this._disposed) {
  853. return;
  854. }
  855. this._disposed = true;
  856. for (var _i = 0, _a = this._requests; _i < _a.length; _i++) {
  857. var request = _a[_i];
  858. request.abort();
  859. }
  860. this._requests.length = 0;
  861. delete this.gltf;
  862. delete this.babylonScene;
  863. this._completePromises.length = 0;
  864. for (var name_1 in this._extensions) {
  865. var extension = this._extensions[name_1];
  866. if (extension.dispose) {
  867. this._extensions[name_1].dispose();
  868. }
  869. }
  870. this._extensions = {};
  871. delete this._rootBabylonMesh;
  872. delete this._progressCallback;
  873. this._parent._clear();
  874. };
  875. /** @hidden */
  876. GLTFLoader.prototype.importMeshAsync = function (meshesNames, scene, data, rootUrl, onProgress, fileName) {
  877. var _this = this;
  878. return Promise.resolve().then(function () {
  879. _this.babylonScene = scene;
  880. _this._rootUrl = rootUrl;
  881. _this._fileName = fileName || "scene";
  882. _this._progressCallback = onProgress;
  883. _this._loadData(data);
  884. var nodes = null;
  885. if (meshesNames) {
  886. var nodeMap_1 = {};
  887. if (_this.gltf.nodes) {
  888. for (var _i = 0, _a = _this.gltf.nodes; _i < _a.length; _i++) {
  889. var node = _a[_i];
  890. if (node.name) {
  891. nodeMap_1[node.name] = node.index;
  892. }
  893. }
  894. }
  895. var names = (meshesNames instanceof Array) ? meshesNames : [meshesNames];
  896. nodes = names.map(function (name) {
  897. var node = nodeMap_1[name];
  898. if (node === undefined) {
  899. throw new Error("Failed to find node '" + name + "'");
  900. }
  901. return node;
  902. });
  903. }
  904. return _this._loadAsync(nodes, function () {
  905. return {
  906. meshes: _this._getMeshes(),
  907. particleSystems: [],
  908. skeletons: _this._getSkeletons(),
  909. animationGroups: _this._getAnimationGroups()
  910. };
  911. });
  912. });
  913. };
  914. /** @hidden */
  915. GLTFLoader.prototype.loadAsync = function (scene, data, rootUrl, onProgress, fileName) {
  916. var _this = this;
  917. return Promise.resolve().then(function () {
  918. _this.babylonScene = scene;
  919. _this._rootUrl = rootUrl;
  920. _this._fileName = fileName || "scene";
  921. _this._progressCallback = onProgress;
  922. _this._loadData(data);
  923. return _this._loadAsync(null, function () { return undefined; });
  924. });
  925. };
  926. GLTFLoader.prototype._loadAsync = function (nodes, resultFunc) {
  927. var _this = this;
  928. return Promise.resolve().then(function () {
  929. _this._uniqueRootUrl = (_this._rootUrl.indexOf("file:") === -1 && _this._fileName) ? _this._rootUrl : "" + _this._rootUrl + Date.now() + "/";
  930. _this._loadExtensions();
  931. _this._checkExtensions();
  932. var loadingToReadyCounterName = BABYLON.GLTFLoaderState[BABYLON.GLTFLoaderState.LOADING] + " => " + BABYLON.GLTFLoaderState[BABYLON.GLTFLoaderState.READY];
  933. var loadingToCompleteCounterName = BABYLON.GLTFLoaderState[BABYLON.GLTFLoaderState.LOADING] + " => " + BABYLON.GLTFLoaderState[BABYLON.GLTFLoaderState.COMPLETE];
  934. _this._parent._startPerformanceCounter(loadingToReadyCounterName);
  935. _this._parent._startPerformanceCounter(loadingToCompleteCounterName);
  936. _this._setState(BABYLON.GLTFLoaderState.LOADING);
  937. _this._extensionsOnLoading();
  938. var promises = new Array();
  939. if (nodes) {
  940. promises.push(_this.loadSceneAsync("/nodes", { nodes: nodes, index: -1 }));
  941. }
  942. else {
  943. var scene = ArrayItem.Get("/scene", _this.gltf.scenes, _this.gltf.scene || 0);
  944. promises.push(_this.loadSceneAsync("/scenes/" + scene.index, scene));
  945. }
  946. if (_this._parent.compileMaterials) {
  947. promises.push(_this._compileMaterialsAsync());
  948. }
  949. if (_this._parent.compileShadowGenerators) {
  950. promises.push(_this._compileShadowGeneratorsAsync());
  951. }
  952. var resultPromise = Promise.all(promises).then(function () {
  953. if (_this._rootBabylonMesh) {
  954. _this._rootBabylonMesh.setEnabled(true);
  955. }
  956. _this._setState(BABYLON.GLTFLoaderState.READY);
  957. _this._extensionsOnReady();
  958. _this._startAnimations();
  959. return resultFunc();
  960. });
  961. resultPromise.then(function () {
  962. _this._parent._endPerformanceCounter(loadingToReadyCounterName);
  963. BABYLON.Tools.SetImmediate(function () {
  964. if (!_this._disposed) {
  965. Promise.all(_this._completePromises).then(function () {
  966. _this._parent._endPerformanceCounter(loadingToCompleteCounterName);
  967. _this._setState(BABYLON.GLTFLoaderState.COMPLETE);
  968. _this._parent.onCompleteObservable.notifyObservers(undefined);
  969. _this._parent.onCompleteObservable.clear();
  970. _this.dispose();
  971. }, function (error) {
  972. _this._parent.onErrorObservable.notifyObservers(error);
  973. _this._parent.onErrorObservable.clear();
  974. _this.dispose();
  975. });
  976. }
  977. });
  978. });
  979. return resultPromise;
  980. }, function (error) {
  981. if (!_this._disposed) {
  982. _this._parent.onErrorObservable.notifyObservers(error);
  983. _this._parent.onErrorObservable.clear();
  984. _this.dispose();
  985. }
  986. throw error;
  987. });
  988. };
  989. GLTFLoader.prototype._loadData = function (data) {
  990. this.gltf = data.json;
  991. this._setupData();
  992. if (data.bin) {
  993. var buffers = this.gltf.buffers;
  994. if (buffers && buffers[0] && !buffers[0].uri) {
  995. var binaryBuffer = buffers[0];
  996. if (binaryBuffer.byteLength < data.bin.byteLength - 3 || binaryBuffer.byteLength > data.bin.byteLength) {
  997. BABYLON.Tools.Warn("Binary buffer length (" + binaryBuffer.byteLength + ") from JSON does not match chunk length (" + data.bin.byteLength + ")");
  998. }
  999. binaryBuffer._data = Promise.resolve(data.bin);
  1000. }
  1001. else {
  1002. BABYLON.Tools.Warn("Unexpected BIN chunk");
  1003. }
  1004. }
  1005. };
  1006. GLTFLoader.prototype._setupData = function () {
  1007. ArrayItem.Assign(this.gltf.accessors);
  1008. ArrayItem.Assign(this.gltf.animations);
  1009. ArrayItem.Assign(this.gltf.buffers);
  1010. ArrayItem.Assign(this.gltf.bufferViews);
  1011. ArrayItem.Assign(this.gltf.cameras);
  1012. ArrayItem.Assign(this.gltf.images);
  1013. ArrayItem.Assign(this.gltf.materials);
  1014. ArrayItem.Assign(this.gltf.meshes);
  1015. ArrayItem.Assign(this.gltf.nodes);
  1016. ArrayItem.Assign(this.gltf.samplers);
  1017. ArrayItem.Assign(this.gltf.scenes);
  1018. ArrayItem.Assign(this.gltf.skins);
  1019. ArrayItem.Assign(this.gltf.textures);
  1020. if (this.gltf.nodes) {
  1021. var nodeParents = {};
  1022. for (var _i = 0, _a = this.gltf.nodes; _i < _a.length; _i++) {
  1023. var node = _a[_i];
  1024. if (node.children) {
  1025. for (var _b = 0, _c = node.children; _b < _c.length; _b++) {
  1026. var index = _c[_b];
  1027. nodeParents[index] = node.index;
  1028. }
  1029. }
  1030. }
  1031. var rootNode = this._createRootNode();
  1032. for (var _d = 0, _e = this.gltf.nodes; _d < _e.length; _d++) {
  1033. var node = _e[_d];
  1034. var parentIndex = nodeParents[node.index];
  1035. node.parent = parentIndex === undefined ? rootNode : this.gltf.nodes[parentIndex];
  1036. }
  1037. }
  1038. };
  1039. GLTFLoader.prototype._loadExtensions = function () {
  1040. for (var _i = 0, _a = GLTFLoader._ExtensionNames; _i < _a.length; _i++) {
  1041. var name_2 = _a[_i];
  1042. var extension = GLTFLoader._ExtensionFactories[name_2](this);
  1043. this._extensions[name_2] = extension;
  1044. this._parent.onExtensionLoadedObservable.notifyObservers(extension);
  1045. }
  1046. this._parent.onExtensionLoadedObservable.clear();
  1047. };
  1048. GLTFLoader.prototype._checkExtensions = function () {
  1049. if (this.gltf.extensionsRequired) {
  1050. for (var _i = 0, _a = this.gltf.extensionsRequired; _i < _a.length; _i++) {
  1051. var name_3 = _a[_i];
  1052. var extension = this._extensions[name_3];
  1053. if (!extension || !extension.enabled) {
  1054. throw new Error("Require extension " + name_3 + " is not available");
  1055. }
  1056. }
  1057. }
  1058. };
  1059. GLTFLoader.prototype._setState = function (state) {
  1060. this._state = state;
  1061. this.log(BABYLON.GLTFLoaderState[this._state]);
  1062. };
  1063. GLTFLoader.prototype._createRootNode = function () {
  1064. this._rootBabylonMesh = new BABYLON.Mesh("__root__", this.babylonScene);
  1065. this._rootBabylonMesh.setEnabled(false);
  1066. var rootNode = {
  1067. _babylonTransformNode: this._rootBabylonMesh,
  1068. index: -1
  1069. };
  1070. switch (this._parent.coordinateSystemMode) {
  1071. case BABYLON.GLTFLoaderCoordinateSystemMode.AUTO: {
  1072. if (!this.babylonScene.useRightHandedSystem) {
  1073. rootNode.rotation = [0, 1, 0, 0];
  1074. rootNode.scale = [1, 1, -1];
  1075. GLTFLoader._LoadTransform(rootNode, this._rootBabylonMesh);
  1076. }
  1077. break;
  1078. }
  1079. case BABYLON.GLTFLoaderCoordinateSystemMode.FORCE_RIGHT_HANDED: {
  1080. this.babylonScene.useRightHandedSystem = true;
  1081. break;
  1082. }
  1083. default: {
  1084. throw new Error("Invalid coordinate system mode (" + this._parent.coordinateSystemMode + ")");
  1085. }
  1086. }
  1087. this._parent.onMeshLoadedObservable.notifyObservers(this._rootBabylonMesh);
  1088. return rootNode;
  1089. };
  1090. /**
  1091. * Loads a glTF scene.
  1092. * @param context The context when loading the asset
  1093. * @param scene The glTF scene property
  1094. * @returns A promise that resolves when the load is complete
  1095. */
  1096. GLTFLoader.prototype.loadSceneAsync = function (context, scene) {
  1097. var _this = this;
  1098. var extensionPromise = this._extensionsLoadSceneAsync(context, scene);
  1099. if (extensionPromise) {
  1100. return extensionPromise;
  1101. }
  1102. var promises = new Array();
  1103. this.logOpen(context + " " + (scene.name || ""));
  1104. if (scene.nodes) {
  1105. for (var _i = 0, _a = scene.nodes; _i < _a.length; _i++) {
  1106. var index = _a[_i];
  1107. var node = ArrayItem.Get(context + "/nodes/" + index, this.gltf.nodes, index);
  1108. promises.push(this.loadNodeAsync("/nodes/" + node.index, node, function (babylonMesh) {
  1109. babylonMesh.parent = _this._rootBabylonMesh;
  1110. }));
  1111. }
  1112. }
  1113. // Link all Babylon bones for each glTF node with the corresponding Babylon transform node.
  1114. // A glTF joint is a pointer to a glTF node in the glTF node hierarchy similar to Unity3D.
  1115. if (this.gltf.nodes) {
  1116. for (var _b = 0, _c = this.gltf.nodes; _b < _c.length; _b++) {
  1117. var node = _c[_b];
  1118. if (node._babylonTransformNode && node._babylonBones) {
  1119. for (var _d = 0, _e = node._babylonBones; _d < _e.length; _d++) {
  1120. var babylonBone = _e[_d];
  1121. babylonBone.linkTransformNode(node._babylonTransformNode);
  1122. }
  1123. }
  1124. }
  1125. }
  1126. promises.push(this._loadAnimationsAsync());
  1127. this.logClose();
  1128. return Promise.all(promises).then(function () { });
  1129. };
  1130. GLTFLoader.prototype._forEachPrimitive = function (node, callback) {
  1131. if (node._primitiveBabylonMeshes) {
  1132. for (var _i = 0, _a = node._primitiveBabylonMeshes; _i < _a.length; _i++) {
  1133. var babylonMesh = _a[_i];
  1134. callback(babylonMesh);
  1135. }
  1136. }
  1137. };
  1138. GLTFLoader.prototype._getMeshes = function () {
  1139. var meshes = new Array();
  1140. // Root mesh is always first.
  1141. meshes.push(this._rootBabylonMesh);
  1142. var nodes = this.gltf.nodes;
  1143. if (nodes) {
  1144. for (var _i = 0, nodes_1 = nodes; _i < nodes_1.length; _i++) {
  1145. var node = nodes_1[_i];
  1146. this._forEachPrimitive(node, function (babylonMesh) {
  1147. meshes.push(babylonMesh);
  1148. });
  1149. }
  1150. }
  1151. return meshes;
  1152. };
  1153. GLTFLoader.prototype._getSkeletons = function () {
  1154. var skeletons = new Array();
  1155. var skins = this.gltf.skins;
  1156. if (skins) {
  1157. for (var _i = 0, skins_1 = skins; _i < skins_1.length; _i++) {
  1158. var skin = skins_1[_i];
  1159. if (skin._data) {
  1160. skeletons.push(skin._data.babylonSkeleton);
  1161. }
  1162. }
  1163. }
  1164. return skeletons;
  1165. };
  1166. GLTFLoader.prototype._getAnimationGroups = function () {
  1167. var animationGroups = new Array();
  1168. var animations = this.gltf.animations;
  1169. if (animations) {
  1170. for (var _i = 0, animations_1 = animations; _i < animations_1.length; _i++) {
  1171. var animation = animations_1[_i];
  1172. if (animation._babylonAnimationGroup) {
  1173. animationGroups.push(animation._babylonAnimationGroup);
  1174. }
  1175. }
  1176. }
  1177. return animationGroups;
  1178. };
  1179. GLTFLoader.prototype._startAnimations = function () {
  1180. switch (this._parent.animationStartMode) {
  1181. case BABYLON.GLTFLoaderAnimationStartMode.NONE: {
  1182. // do nothing
  1183. break;
  1184. }
  1185. case BABYLON.GLTFLoaderAnimationStartMode.FIRST: {
  1186. var babylonAnimationGroups = this._getAnimationGroups();
  1187. if (babylonAnimationGroups.length !== 0) {
  1188. babylonAnimationGroups[0].start(true);
  1189. }
  1190. break;
  1191. }
  1192. case BABYLON.GLTFLoaderAnimationStartMode.ALL: {
  1193. var babylonAnimationGroups = this._getAnimationGroups();
  1194. for (var _i = 0, babylonAnimationGroups_1 = babylonAnimationGroups; _i < babylonAnimationGroups_1.length; _i++) {
  1195. var babylonAnimationGroup = babylonAnimationGroups_1[_i];
  1196. babylonAnimationGroup.start(true);
  1197. }
  1198. break;
  1199. }
  1200. default: {
  1201. BABYLON.Tools.Error("Invalid animation start mode (" + this._parent.animationStartMode + ")");
  1202. return;
  1203. }
  1204. }
  1205. };
  1206. /**
  1207. * Loads a glTF node.
  1208. * @param context The context when loading the asset
  1209. * @param node The glTF node property
  1210. * @param assign A function called synchronously after parsing the glTF properties
  1211. * @returns A promise that resolves with the loaded Babylon mesh when the load is complete
  1212. */
  1213. GLTFLoader.prototype.loadNodeAsync = function (context, node, assign) {
  1214. var _this = this;
  1215. if (assign === void 0) { assign = function () { }; }
  1216. var extensionPromise = this._extensionsLoadNodeAsync(context, node, assign);
  1217. if (extensionPromise) {
  1218. return extensionPromise;
  1219. }
  1220. if (node._babylonTransformNode) {
  1221. throw new Error(context + ": Invalid recursive node hierarchy");
  1222. }
  1223. var promises = new Array();
  1224. this.logOpen(context + " " + (node.name || ""));
  1225. var loadNode = function (babylonTransformNode) {
  1226. GLTFLoader.AddPointerMetadata(babylonTransformNode, context);
  1227. GLTFLoader._LoadTransform(node, babylonTransformNode);
  1228. if (node.camera != undefined) {
  1229. var camera = ArrayItem.Get(context + "/camera", _this.gltf.cameras, node.camera);
  1230. promises.push(_this.loadCameraAsync("/cameras/" + camera.index, camera, function (babylonCamera) {
  1231. babylonCamera.parent = babylonTransformNode;
  1232. }));
  1233. }
  1234. if (node.children) {
  1235. for (var _i = 0, _a = node.children; _i < _a.length; _i++) {
  1236. var index = _a[_i];
  1237. var childNode = ArrayItem.Get(context + "/children/" + index, _this.gltf.nodes, index);
  1238. promises.push(_this.loadNodeAsync("/nodes/" + childNode.index, childNode, function (childBabylonMesh) {
  1239. childBabylonMesh.parent = babylonTransformNode;
  1240. }));
  1241. }
  1242. }
  1243. assign(babylonTransformNode);
  1244. };
  1245. if (node.mesh == undefined) {
  1246. var nodeName = node.name || "node" + node.index;
  1247. node._babylonTransformNode = new BABYLON.TransformNode(nodeName, this.babylonScene);
  1248. loadNode(node._babylonTransformNode);
  1249. }
  1250. else {
  1251. var mesh = ArrayItem.Get(context + "/mesh", this.gltf.meshes, node.mesh);
  1252. promises.push(this._loadMeshAsync("/meshes/" + mesh.index, node, mesh, loadNode));
  1253. }
  1254. this.logClose();
  1255. return Promise.all(promises).then(function () {
  1256. _this._forEachPrimitive(node, function (babylonMesh) {
  1257. babylonMesh.refreshBoundingInfo(true);
  1258. });
  1259. return node._babylonTransformNode;
  1260. });
  1261. };
  1262. GLTFLoader.prototype._loadMeshAsync = function (context, node, mesh, assign) {
  1263. var primitives = mesh.primitives;
  1264. if (!primitives || !primitives.length) {
  1265. throw new Error(context + ": Primitives are missing");
  1266. }
  1267. if (primitives[0].index == undefined) {
  1268. ArrayItem.Assign(primitives);
  1269. }
  1270. var promises = new Array();
  1271. this.logOpen(context + " " + (mesh.name || ""));
  1272. var name = node.name || "node" + node.index;
  1273. if (primitives.length === 1) {
  1274. var primitive = mesh.primitives[0];
  1275. promises.push(this._loadMeshPrimitiveAsync(context + "/primitives/" + primitive.index, name, node, mesh, primitive, function (babylonMesh) {
  1276. node._babylonTransformNode = babylonMesh;
  1277. node._primitiveBabylonMeshes = [babylonMesh];
  1278. }));
  1279. }
  1280. else {
  1281. node._babylonTransformNode = new BABYLON.TransformNode(name, this.babylonScene);
  1282. node._primitiveBabylonMeshes = [];
  1283. for (var _i = 0, primitives_1 = primitives; _i < primitives_1.length; _i++) {
  1284. var primitive = primitives_1[_i];
  1285. promises.push(this._loadMeshPrimitiveAsync(context + "/primitives/" + primitive.index, name + "_primitive" + primitive.index, node, mesh, primitive, function (babylonMesh) {
  1286. babylonMesh.parent = node._babylonTransformNode;
  1287. node._primitiveBabylonMeshes.push(babylonMesh);
  1288. }));
  1289. }
  1290. }
  1291. if (node.skin != undefined) {
  1292. var skin = ArrayItem.Get(context + "/skin", this.gltf.skins, node.skin);
  1293. promises.push(this._loadSkinAsync("/skins/" + skin.index, node, skin));
  1294. }
  1295. assign(node._babylonTransformNode);
  1296. this.logClose();
  1297. return Promise.all(promises).then(function () {
  1298. return node._babylonTransformNode;
  1299. });
  1300. };
  1301. GLTFLoader.prototype._loadMeshPrimitiveAsync = function (context, name, node, mesh, primitive, assign) {
  1302. var _this = this;
  1303. this.logOpen("" + context);
  1304. var canInstance = (node.skin == undefined && !mesh.primitives[0].targets);
  1305. var babylonAbstractMesh;
  1306. var promise;
  1307. var instanceData = primitive._instanceData;
  1308. if (canInstance && instanceData) {
  1309. babylonAbstractMesh = instanceData.babylonSourceMesh.createInstance(name);
  1310. promise = instanceData.promise;
  1311. }
  1312. else {
  1313. var promises = new Array();
  1314. var babylonMesh_1 = new BABYLON.Mesh(name, this.babylonScene);
  1315. this._createMorphTargets(context, node, mesh, primitive, babylonMesh_1);
  1316. promises.push(this._loadVertexDataAsync(context, primitive, babylonMesh_1).then(function (babylonGeometry) {
  1317. return _this._loadMorphTargetsAsync(context, primitive, babylonMesh_1, babylonGeometry).then(function () {
  1318. babylonGeometry.applyToMesh(babylonMesh_1);
  1319. });
  1320. }));
  1321. var babylonDrawMode = GLTFLoader._GetDrawMode(context, primitive.mode);
  1322. if (primitive.material == undefined) {
  1323. var babylonMaterial = this._defaultBabylonMaterialData[babylonDrawMode];
  1324. if (!babylonMaterial) {
  1325. babylonMaterial = this._createDefaultMaterial("__gltf_default", babylonDrawMode);
  1326. this._parent.onMaterialLoadedObservable.notifyObservers(babylonMaterial);
  1327. this._defaultBabylonMaterialData[babylonDrawMode] = babylonMaterial;
  1328. }
  1329. babylonMesh_1.material = babylonMaterial;
  1330. }
  1331. else {
  1332. var material = ArrayItem.Get(context + "/material", this.gltf.materials, primitive.material);
  1333. promises.push(this._loadMaterialAsync("/materials/" + material.index, material, babylonMesh_1, babylonDrawMode, function (babylonMaterial) {
  1334. babylonMesh_1.material = babylonMaterial;
  1335. }));
  1336. }
  1337. promise = Promise.all(promises);
  1338. if (canInstance) {
  1339. primitive._instanceData = {
  1340. babylonSourceMesh: babylonMesh_1,
  1341. promise: promise
  1342. };
  1343. }
  1344. babylonAbstractMesh = babylonMesh_1;
  1345. }
  1346. GLTFLoader.AddPointerMetadata(babylonAbstractMesh, context);
  1347. this._parent.onMeshLoadedObservable.notifyObservers(babylonAbstractMesh);
  1348. assign(babylonAbstractMesh);
  1349. this.logClose();
  1350. return promise.then(function () {
  1351. return babylonAbstractMesh;
  1352. });
  1353. };
  1354. GLTFLoader.prototype._loadVertexDataAsync = function (context, primitive, babylonMesh) {
  1355. var _this = this;
  1356. var extensionPromise = this._extensionsLoadVertexDataAsync(context, primitive, babylonMesh);
  1357. if (extensionPromise) {
  1358. return extensionPromise;
  1359. }
  1360. var attributes = primitive.attributes;
  1361. if (!attributes) {
  1362. throw new Error(context + ": Attributes are missing");
  1363. }
  1364. var promises = new Array();
  1365. var babylonGeometry = new BABYLON.Geometry(babylonMesh.name, this.babylonScene);
  1366. if (primitive.indices == undefined) {
  1367. babylonMesh.isUnIndexed = true;
  1368. }
  1369. else {
  1370. var accessor = ArrayItem.Get(context + "/indices", this.gltf.accessors, primitive.indices);
  1371. promises.push(this._loadIndicesAccessorAsync("/accessors/" + accessor.index, accessor).then(function (data) {
  1372. babylonGeometry.setIndices(data);
  1373. }));
  1374. }
  1375. var loadAttribute = function (attribute, kind, callback) {
  1376. if (attributes[attribute] == undefined) {
  1377. return;
  1378. }
  1379. babylonMesh._delayInfo = babylonMesh._delayInfo || [];
  1380. if (babylonMesh._delayInfo.indexOf(kind) === -1) {
  1381. babylonMesh._delayInfo.push(kind);
  1382. }
  1383. var accessor = ArrayItem.Get(context + "/attributes/" + attribute, _this.gltf.accessors, attributes[attribute]);
  1384. promises.push(_this._loadVertexAccessorAsync("/accessors/" + accessor.index, accessor, kind).then(function (babylonVertexBuffer) {
  1385. babylonGeometry.setVerticesBuffer(babylonVertexBuffer, accessor.count);
  1386. }));
  1387. if (callback) {
  1388. callback(accessor);
  1389. }
  1390. };
  1391. loadAttribute("POSITION", BABYLON.VertexBuffer.PositionKind);
  1392. loadAttribute("NORMAL", BABYLON.VertexBuffer.NormalKind);
  1393. loadAttribute("TANGENT", BABYLON.VertexBuffer.TangentKind);
  1394. loadAttribute("TEXCOORD_0", BABYLON.VertexBuffer.UVKind);
  1395. loadAttribute("TEXCOORD_1", BABYLON.VertexBuffer.UV2Kind);
  1396. loadAttribute("JOINTS_0", BABYLON.VertexBuffer.MatricesIndicesKind);
  1397. loadAttribute("WEIGHTS_0", BABYLON.VertexBuffer.MatricesWeightsKind);
  1398. loadAttribute("COLOR_0", BABYLON.VertexBuffer.ColorKind, function (accessor) {
  1399. if (accessor.type === "VEC4" /* VEC4 */) {
  1400. babylonMesh.hasVertexAlpha = true;
  1401. }
  1402. });
  1403. return Promise.all(promises).then(function () {
  1404. return babylonGeometry;
  1405. });
  1406. };
  1407. GLTFLoader.prototype._createMorphTargets = function (context, node, mesh, primitive, babylonMesh) {
  1408. if (!primitive.targets) {
  1409. return;
  1410. }
  1411. if (node._numMorphTargets == undefined) {
  1412. node._numMorphTargets = primitive.targets.length;
  1413. }
  1414. else if (primitive.targets.length !== node._numMorphTargets) {
  1415. throw new Error(context + ": Primitives do not have the same number of targets");
  1416. }
  1417. babylonMesh.morphTargetManager = new BABYLON.MorphTargetManager();
  1418. for (var index = 0; index < primitive.targets.length; index++) {
  1419. var weight = node.weights ? node.weights[index] : mesh.weights ? mesh.weights[index] : 0;
  1420. babylonMesh.morphTargetManager.addTarget(new BABYLON.MorphTarget("morphTarget" + index, weight));
  1421. // TODO: tell the target whether it has positions, normals, tangents
  1422. }
  1423. };
  1424. GLTFLoader.prototype._loadMorphTargetsAsync = function (context, primitive, babylonMesh, babylonGeometry) {
  1425. if (!primitive.targets) {
  1426. return Promise.resolve();
  1427. }
  1428. var promises = new Array();
  1429. var morphTargetManager = babylonMesh.morphTargetManager;
  1430. for (var index = 0; index < morphTargetManager.numTargets; index++) {
  1431. var babylonMorphTarget = morphTargetManager.getTarget(index);
  1432. promises.push(this._loadMorphTargetVertexDataAsync(context + "/targets/" + index, babylonGeometry, primitive.targets[index], babylonMorphTarget));
  1433. }
  1434. return Promise.all(promises).then(function () { });
  1435. };
  1436. GLTFLoader.prototype._loadMorphTargetVertexDataAsync = function (context, babylonGeometry, attributes, babylonMorphTarget) {
  1437. var _this = this;
  1438. var promises = new Array();
  1439. var loadAttribute = function (attribute, kind, setData) {
  1440. if (attributes[attribute] == undefined) {
  1441. return;
  1442. }
  1443. var babylonVertexBuffer = babylonGeometry.getVertexBuffer(kind);
  1444. if (!babylonVertexBuffer) {
  1445. return;
  1446. }
  1447. var accessor = ArrayItem.Get(context + "/" + attribute, _this.gltf.accessors, attributes[attribute]);
  1448. promises.push(_this._loadFloatAccessorAsync("/accessors/" + accessor.index, accessor).then(function (data) {
  1449. setData(babylonVertexBuffer, data);
  1450. }));
  1451. };
  1452. loadAttribute("POSITION", BABYLON.VertexBuffer.PositionKind, function (babylonVertexBuffer, data) {
  1453. babylonVertexBuffer.forEach(data.length, function (value, index) {
  1454. data[index] += value;
  1455. });
  1456. babylonMorphTarget.setPositions(data);
  1457. });
  1458. loadAttribute("NORMAL", BABYLON.VertexBuffer.NormalKind, function (babylonVertexBuffer, data) {
  1459. babylonVertexBuffer.forEach(data.length, function (value, index) {
  1460. data[index] += value;
  1461. });
  1462. babylonMorphTarget.setNormals(data);
  1463. });
  1464. loadAttribute("TANGENT", BABYLON.VertexBuffer.TangentKind, function (babylonVertexBuffer, data) {
  1465. var dataIndex = 0;
  1466. babylonVertexBuffer.forEach(data.length / 3 * 4, function (value, index) {
  1467. // Tangent data for morph targets is stored as xyz delta.
  1468. // The vertexData.tangent is stored as xyzw.
  1469. // So we need to skip every fourth vertexData.tangent.
  1470. if (((index + 1) % 4) !== 0) {
  1471. data[dataIndex++] += value;
  1472. }
  1473. });
  1474. babylonMorphTarget.setTangents(data);
  1475. });
  1476. return Promise.all(promises).then(function () { });
  1477. };
  1478. GLTFLoader._LoadTransform = function (node, babylonNode) {
  1479. // Ignore the TRS of skinned nodes.
  1480. // See https://github.com/KhronosGroup/glTF/tree/master/specification/2.0#skins (second implementation note)
  1481. if (node.skin != undefined) {
  1482. return;
  1483. }
  1484. var position = BABYLON.Vector3.Zero();
  1485. var rotation = BABYLON.Quaternion.Identity();
  1486. var scaling = BABYLON.Vector3.One();
  1487. if (node.matrix) {
  1488. var matrix = BABYLON.Matrix.FromArray(node.matrix);
  1489. matrix.decompose(scaling, rotation, position);
  1490. }
  1491. else {
  1492. if (node.translation) {
  1493. position = BABYLON.Vector3.FromArray(node.translation);
  1494. }
  1495. if (node.rotation) {
  1496. rotation = BABYLON.Quaternion.FromArray(node.rotation);
  1497. }
  1498. if (node.scale) {
  1499. scaling = BABYLON.Vector3.FromArray(node.scale);
  1500. }
  1501. }
  1502. babylonNode.position = position;
  1503. babylonNode.rotationQuaternion = rotation;
  1504. babylonNode.scaling = scaling;
  1505. };
  1506. GLTFLoader.prototype._loadSkinAsync = function (context, node, skin) {
  1507. var _this = this;
  1508. var assignSkeleton = function (skeleton) {
  1509. _this._forEachPrimitive(node, function (babylonMesh) {
  1510. babylonMesh.skeleton = skeleton;
  1511. });
  1512. };
  1513. if (skin._data) {
  1514. assignSkeleton(skin._data.babylonSkeleton);
  1515. return skin._data.promise;
  1516. }
  1517. var skeletonId = "skeleton" + skin.index;
  1518. var babylonSkeleton = new BABYLON.Skeleton(skin.name || skeletonId, skeletonId, this.babylonScene);
  1519. // See https://github.com/KhronosGroup/glTF/tree/master/specification/2.0#skins (second implementation note)
  1520. babylonSkeleton.overrideMesh = this._rootBabylonMesh;
  1521. this._loadBones(context, skin, babylonSkeleton);
  1522. assignSkeleton(babylonSkeleton);
  1523. var promise = this._loadSkinInverseBindMatricesDataAsync(context, skin).then(function (inverseBindMatricesData) {
  1524. _this._updateBoneMatrices(babylonSkeleton, inverseBindMatricesData);
  1525. });
  1526. skin._data = {
  1527. babylonSkeleton: babylonSkeleton,
  1528. promise: promise
  1529. };
  1530. return promise;
  1531. };
  1532. GLTFLoader.prototype._loadBones = function (context, skin, babylonSkeleton) {
  1533. var babylonBones = {};
  1534. for (var _i = 0, _a = skin.joints; _i < _a.length; _i++) {
  1535. var index = _a[_i];
  1536. var node = ArrayItem.Get(context + "/joints/" + index, this.gltf.nodes, index);
  1537. this._loadBone(node, skin, babylonSkeleton, babylonBones);
  1538. }
  1539. };
  1540. GLTFLoader.prototype._loadBone = function (node, skin, babylonSkeleton, babylonBones) {
  1541. var babylonBone = babylonBones[node.index];
  1542. if (babylonBone) {
  1543. return babylonBone;
  1544. }
  1545. var babylonParentBone = null;
  1546. if (node.parent && node.parent._babylonTransformNode !== this._rootBabylonMesh) {
  1547. babylonParentBone = this._loadBone(node.parent, skin, babylonSkeleton, babylonBones);
  1548. }
  1549. var boneIndex = skin.joints.indexOf(node.index);
  1550. babylonBone = new BABYLON.Bone(node.name || "joint" + node.index, babylonSkeleton, babylonParentBone, this._getNodeMatrix(node), null, null, boneIndex);
  1551. babylonBones[node.index] = babylonBone;
  1552. node._babylonBones = node._babylonBones || [];
  1553. node._babylonBones.push(babylonBone);
  1554. return babylonBone;
  1555. };
  1556. GLTFLoader.prototype._loadSkinInverseBindMatricesDataAsync = function (context, skin) {
  1557. if (skin.inverseBindMatrices == undefined) {
  1558. return Promise.resolve(null);
  1559. }
  1560. var accessor = ArrayItem.Get(context + "/inverseBindMatrices", this.gltf.accessors, skin.inverseBindMatrices);
  1561. return this._loadFloatAccessorAsync("/accessors/" + accessor.index, accessor);
  1562. };
  1563. GLTFLoader.prototype._updateBoneMatrices = function (babylonSkeleton, inverseBindMatricesData) {
  1564. for (var _i = 0, _a = babylonSkeleton.bones; _i < _a.length; _i++) {
  1565. var babylonBone = _a[_i];
  1566. var baseMatrix = BABYLON.Matrix.Identity();
  1567. var boneIndex = babylonBone._index;
  1568. if (inverseBindMatricesData && boneIndex !== -1) {
  1569. BABYLON.Matrix.FromArrayToRef(inverseBindMatricesData, boneIndex * 16, baseMatrix);
  1570. baseMatrix.invertToRef(baseMatrix);
  1571. }
  1572. var babylonParentBone = babylonBone.getParent();
  1573. if (babylonParentBone) {
  1574. baseMatrix.multiplyToRef(babylonParentBone.getInvertedAbsoluteTransform(), baseMatrix);
  1575. }
  1576. babylonBone.updateMatrix(baseMatrix, false, false);
  1577. babylonBone._updateDifferenceMatrix(undefined, false);
  1578. }
  1579. };
  1580. GLTFLoader.prototype._getNodeMatrix = function (node) {
  1581. return node.matrix ?
  1582. BABYLON.Matrix.FromArray(node.matrix) :
  1583. BABYLON.Matrix.Compose(node.scale ? BABYLON.Vector3.FromArray(node.scale) : BABYLON.Vector3.One(), node.rotation ? BABYLON.Quaternion.FromArray(node.rotation) : BABYLON.Quaternion.Identity(), node.translation ? BABYLON.Vector3.FromArray(node.translation) : BABYLON.Vector3.Zero());
  1584. };
  1585. /**
  1586. * Loads a glTF camera.
  1587. * @param context The context when loading the asset
  1588. * @param camera The glTF camera property
  1589. * @param assign A function called synchronously after parsing the glTF properties
  1590. * @returns A promise that resolves with the loaded Babylon camera when the load is complete
  1591. */
  1592. GLTFLoader.prototype.loadCameraAsync = function (context, camera, assign) {
  1593. if (assign === void 0) { assign = function () { }; }
  1594. var extensionPromise = this._extensionsLoadCameraAsync(context, camera, assign);
  1595. if (extensionPromise) {
  1596. return extensionPromise;
  1597. }
  1598. var promises = new Array();
  1599. this.logOpen(context + " " + (camera.name || ""));
  1600. var babylonCamera = new BABYLON.FreeCamera(camera.name || "camera" + camera.index, BABYLON.Vector3.Zero(), this.babylonScene, false);
  1601. babylonCamera.rotation = new BABYLON.Vector3(0, Math.PI, 0);
  1602. switch (camera.type) {
  1603. case "perspective" /* PERSPECTIVE */: {
  1604. var perspective = camera.perspective;
  1605. if (!perspective) {
  1606. throw new Error(context + ": Camera perspective properties are missing");
  1607. }
  1608. babylonCamera.fov = perspective.yfov;
  1609. babylonCamera.minZ = perspective.znear;
  1610. babylonCamera.maxZ = perspective.zfar || Number.MAX_VALUE;
  1611. break;
  1612. }
  1613. case "orthographic" /* ORTHOGRAPHIC */: {
  1614. if (!camera.orthographic) {
  1615. throw new Error(context + ": Camera orthographic properties are missing");
  1616. }
  1617. babylonCamera.mode = BABYLON.Camera.ORTHOGRAPHIC_CAMERA;
  1618. babylonCamera.orthoLeft = -camera.orthographic.xmag;
  1619. babylonCamera.orthoRight = camera.orthographic.xmag;
  1620. babylonCamera.orthoBottom = -camera.orthographic.ymag;
  1621. babylonCamera.orthoTop = camera.orthographic.ymag;
  1622. babylonCamera.minZ = camera.orthographic.znear;
  1623. babylonCamera.maxZ = camera.orthographic.zfar;
  1624. break;
  1625. }
  1626. default: {
  1627. throw new Error(context + ": Invalid camera type (" + camera.type + ")");
  1628. }
  1629. }
  1630. GLTFLoader.AddPointerMetadata(babylonCamera, context);
  1631. this._parent.onCameraLoadedObservable.notifyObservers(babylonCamera);
  1632. assign(babylonCamera);
  1633. return Promise.all(promises).then(function () {
  1634. return babylonCamera;
  1635. });
  1636. };
  1637. GLTFLoader.prototype._loadAnimationsAsync = function () {
  1638. var animations = this.gltf.animations;
  1639. if (!animations) {
  1640. return Promise.resolve();
  1641. }
  1642. var promises = new Array();
  1643. for (var index = 0; index < animations.length; index++) {
  1644. var animation = animations[index];
  1645. promises.push(this.loadAnimationAsync("/animations/" + animation.index, animation));
  1646. }
  1647. return Promise.all(promises).then(function () { });
  1648. };
  1649. /**
  1650. * Loads a glTF animation.
  1651. * @param context The context when loading the asset
  1652. * @param animation The glTF animation property
  1653. * @returns A promise that resolves with the loaded Babylon animation group when the load is complete
  1654. */
  1655. GLTFLoader.prototype.loadAnimationAsync = function (context, animation) {
  1656. var promise = this._extensionsLoadAnimationAsync(context, animation);
  1657. if (promise) {
  1658. return promise;
  1659. }
  1660. var babylonAnimationGroup = new BABYLON.AnimationGroup(animation.name || "animation" + animation.index, this.babylonScene);
  1661. animation._babylonAnimationGroup = babylonAnimationGroup;
  1662. var promises = new Array();
  1663. ArrayItem.Assign(animation.channels);
  1664. ArrayItem.Assign(animation.samplers);
  1665. for (var _i = 0, _a = animation.channels; _i < _a.length; _i++) {
  1666. var channel = _a[_i];
  1667. promises.push(this._loadAnimationChannelAsync(context + "/channels/" + channel.index, context, animation, channel, babylonAnimationGroup));
  1668. }
  1669. return Promise.all(promises).then(function () {
  1670. babylonAnimationGroup.normalize(0);
  1671. return babylonAnimationGroup;
  1672. });
  1673. };
  1674. GLTFLoader.prototype._loadAnimationChannelAsync = function (context, animationContext, animation, channel, babylonAnimationGroup) {
  1675. var _this = this;
  1676. if (channel.target.node == undefined) {
  1677. return Promise.resolve();
  1678. }
  1679. var targetNode = ArrayItem.Get(context + "/target/node", this.gltf.nodes, channel.target.node);
  1680. // Ignore animations that have no animation targets.
  1681. if ((channel.target.path === "weights" /* WEIGHTS */ && !targetNode._numMorphTargets) ||
  1682. (channel.target.path !== "weights" /* WEIGHTS */ && !targetNode._babylonTransformNode)) {
  1683. return Promise.resolve();
  1684. }
  1685. var sampler = ArrayItem.Get(context + "/sampler", animation.samplers, channel.sampler);
  1686. return this._loadAnimationSamplerAsync(animationContext + "/samplers/" + channel.sampler, sampler).then(function (data) {
  1687. var targetPath;
  1688. var animationType;
  1689. switch (channel.target.path) {
  1690. case "translation" /* TRANSLATION */: {
  1691. targetPath = "position";
  1692. animationType = BABYLON.Animation.ANIMATIONTYPE_VECTOR3;
  1693. break;
  1694. }
  1695. case "rotation" /* ROTATION */: {
  1696. targetPath = "rotationQuaternion";
  1697. animationType = BABYLON.Animation.ANIMATIONTYPE_QUATERNION;
  1698. break;
  1699. }
  1700. case "scale" /* SCALE */: {
  1701. targetPath = "scaling";
  1702. animationType = BABYLON.Animation.ANIMATIONTYPE_VECTOR3;
  1703. break;
  1704. }
  1705. case "weights" /* WEIGHTS */: {
  1706. targetPath = "influence";
  1707. animationType = BABYLON.Animation.ANIMATIONTYPE_FLOAT;
  1708. break;
  1709. }
  1710. default: {
  1711. throw new Error(context + "/target/path: Invalid value (" + channel.target.path + ")");
  1712. }
  1713. }
  1714. var outputBufferOffset = 0;
  1715. var getNextOutputValue;
  1716. switch (targetPath) {
  1717. case "position": {
  1718. getNextOutputValue = function () {
  1719. var value = BABYLON.Vector3.FromArray(data.output, outputBufferOffset);
  1720. outputBufferOffset += 3;
  1721. return value;
  1722. };
  1723. break;
  1724. }
  1725. case "rotationQuaternion": {
  1726. getNextOutputValue = function () {
  1727. var value = BABYLON.Quaternion.FromArray(data.output, outputBufferOffset);
  1728. outputBufferOffset += 4;
  1729. return value;
  1730. };
  1731. break;
  1732. }
  1733. case "scaling": {
  1734. getNextOutputValue = function () {
  1735. var value = BABYLON.Vector3.FromArray(data.output, outputBufferOffset);
  1736. outputBufferOffset += 3;
  1737. return value;
  1738. };
  1739. break;
  1740. }
  1741. case "influence": {
  1742. getNextOutputValue = function () {
  1743. var value = new Array(targetNode._numMorphTargets);
  1744. for (var i = 0; i < targetNode._numMorphTargets; i++) {
  1745. value[i] = data.output[outputBufferOffset++];
  1746. }
  1747. return value;
  1748. };
  1749. break;
  1750. }
  1751. }
  1752. var getNextKey;
  1753. switch (data.interpolation) {
  1754. case "STEP" /* STEP */: {
  1755. getNextKey = function (frameIndex) { return ({
  1756. frame: data.input[frameIndex],
  1757. value: getNextOutputValue(),
  1758. interpolation: BABYLON.AnimationKeyInterpolation.STEP
  1759. }); };
  1760. break;
  1761. }
  1762. case "LINEAR" /* LINEAR */: {
  1763. getNextKey = function (frameIndex) { return ({
  1764. frame: data.input[frameIndex],
  1765. value: getNextOutputValue()
  1766. }); };
  1767. break;
  1768. }
  1769. case "CUBICSPLINE" /* CUBICSPLINE */: {
  1770. getNextKey = function (frameIndex) { return ({
  1771. frame: data.input[frameIndex],
  1772. inTangent: getNextOutputValue(),
  1773. value: getNextOutputValue(),
  1774. outTangent: getNextOutputValue()
  1775. }); };
  1776. break;
  1777. }
  1778. }
  1779. var keys = new Array(data.input.length);
  1780. for (var frameIndex = 0; frameIndex < data.input.length; frameIndex++) {
  1781. keys[frameIndex] = getNextKey(frameIndex);
  1782. }
  1783. if (targetPath === "influence") {
  1784. var _loop_1 = function (targetIndex) {
  1785. var animationName = babylonAnimationGroup.name + "_channel" + babylonAnimationGroup.targetedAnimations.length;
  1786. var babylonAnimation = new BABYLON.Animation(animationName, targetPath, 1, animationType);
  1787. babylonAnimation.setKeys(keys.map(function (key) { return ({
  1788. frame: key.frame,
  1789. inTangent: key.inTangent ? key.inTangent[targetIndex] : undefined,
  1790. value: key.value[targetIndex],
  1791. outTangent: key.outTangent ? key.outTangent[targetIndex] : undefined
  1792. }); }));
  1793. _this._forEachPrimitive(targetNode, function (babylonMesh) {
  1794. var morphTarget = babylonMesh.morphTargetManager.getTarget(targetIndex);
  1795. var babylonAnimationClone = babylonAnimation.clone();
  1796. morphTarget.animations.push(babylonAnimationClone);
  1797. babylonAnimationGroup.addTargetedAnimation(babylonAnimationClone, morphTarget);
  1798. });
  1799. };
  1800. for (var targetIndex = 0; targetIndex < targetNode._numMorphTargets; targetIndex++) {
  1801. _loop_1(targetIndex);
  1802. }
  1803. }
  1804. else {
  1805. var animationName = babylonAnimationGroup.name + "_channel" + babylonAnimationGroup.targetedAnimations.length;
  1806. var babylonAnimation = new BABYLON.Animation(animationName, targetPath, 1, animationType);
  1807. babylonAnimation.setKeys(keys);
  1808. targetNode._babylonTransformNode.animations.push(babylonAnimation);
  1809. babylonAnimationGroup.addTargetedAnimation(babylonAnimation, targetNode._babylonTransformNode);
  1810. }
  1811. });
  1812. };
  1813. GLTFLoader.prototype._loadAnimationSamplerAsync = function (context, sampler) {
  1814. if (sampler._data) {
  1815. return sampler._data;
  1816. }
  1817. var interpolation = sampler.interpolation || "LINEAR" /* LINEAR */;
  1818. switch (interpolation) {
  1819. case "STEP" /* STEP */:
  1820. case "LINEAR" /* LINEAR */:
  1821. case "CUBICSPLINE" /* CUBICSPLINE */: {
  1822. break;
  1823. }
  1824. default: {
  1825. throw new Error(context + "/interpolation: Invalid value (" + sampler.interpolation + ")");
  1826. }
  1827. }
  1828. var inputAccessor = ArrayItem.Get(context + "/input", this.gltf.accessors, sampler.input);
  1829. var outputAccessor = ArrayItem.Get(context + "/output", this.gltf.accessors, sampler.output);
  1830. sampler._data = Promise.all([
  1831. this._loadFloatAccessorAsync("/accessors/" + inputAccessor.index, inputAccessor),
  1832. this._loadFloatAccessorAsync("/accessors/" + outputAccessor.index, outputAccessor)
  1833. ]).then(function (_a) {
  1834. var inputData = _a[0], outputData = _a[1];
  1835. return {
  1836. input: inputData,
  1837. interpolation: interpolation,
  1838. output: outputData,
  1839. };
  1840. });
  1841. return sampler._data;
  1842. };
  1843. GLTFLoader.prototype._loadBufferAsync = function (context, buffer) {
  1844. if (buffer._data) {
  1845. return buffer._data;
  1846. }
  1847. if (!buffer.uri) {
  1848. throw new Error(context + "/uri: Value is missing");
  1849. }
  1850. buffer._data = this.loadUriAsync(context + "/uri", buffer.uri);
  1851. return buffer._data;
  1852. };
  1853. /**
  1854. * Loads a glTF buffer view.
  1855. * @param context The context when loading the asset
  1856. * @param bufferView The glTF buffer view property
  1857. * @returns A promise that resolves with the loaded data when the load is complete
  1858. */
  1859. GLTFLoader.prototype.loadBufferViewAsync = function (context, bufferView) {
  1860. if (bufferView._data) {
  1861. return bufferView._data;
  1862. }
  1863. var buffer = ArrayItem.Get(context + "/buffer", this.gltf.buffers, bufferView.buffer);
  1864. bufferView._data = this._loadBufferAsync("/buffers/" + buffer.index, buffer).then(function (data) {
  1865. try {
  1866. return new Uint8Array(data.buffer, data.byteOffset + (bufferView.byteOffset || 0), bufferView.byteLength);
  1867. }
  1868. catch (e) {
  1869. throw new Error(context + ": " + e.message);
  1870. }
  1871. });
  1872. return bufferView._data;
  1873. };
  1874. GLTFLoader.prototype._loadIndicesAccessorAsync = function (context, accessor) {
  1875. if (accessor.type !== "SCALAR" /* SCALAR */) {
  1876. throw new Error(context + "/type: Invalid value " + accessor.type);
  1877. }
  1878. if (accessor.componentType !== 5121 /* UNSIGNED_BYTE */ &&
  1879. accessor.componentType !== 5123 /* UNSIGNED_SHORT */ &&
  1880. accessor.componentType !== 5125 /* UNSIGNED_INT */) {
  1881. throw new Error(context + "/componentType: Invalid value " + accessor.componentType);
  1882. }
  1883. if (accessor._data) {
  1884. return accessor._data;
  1885. }
  1886. var bufferView = ArrayItem.Get(context + "/bufferView", this.gltf.bufferViews, accessor.bufferView);
  1887. accessor._data = this.loadBufferViewAsync("/bufferViews/" + bufferView.index, bufferView).then(function (data) {
  1888. return GLTFLoader._GetTypedArray(context, accessor.componentType, data, accessor.byteOffset, accessor.count);
  1889. });
  1890. return accessor._data;
  1891. };
  1892. GLTFLoader.prototype._loadFloatAccessorAsync = function (context, accessor) {
  1893. // TODO: support normalized and stride
  1894. var _this = this;
  1895. if (accessor.componentType !== 5126 /* FLOAT */) {
  1896. throw new Error("Invalid component type " + accessor.componentType);
  1897. }
  1898. if (accessor._data) {
  1899. return accessor._data;
  1900. }
  1901. var numComponents = GLTFLoader._GetNumComponents(context, accessor.type);
  1902. var length = numComponents * accessor.count;
  1903. if (accessor.bufferView == undefined) {
  1904. accessor._data = Promise.resolve(new Float32Array(length));
  1905. }
  1906. else {
  1907. var bufferView = ArrayItem.Get(context + "/bufferView", this.gltf.bufferViews, accessor.bufferView);
  1908. accessor._data = this.loadBufferViewAsync("/bufferViews/" + bufferView.index, bufferView).then(function (data) {
  1909. return GLTFLoader._GetTypedArray(context, accessor.componentType, data, accessor.byteOffset, length);
  1910. });
  1911. }
  1912. if (accessor.sparse) {
  1913. var sparse_1 = accessor.sparse;
  1914. accessor._data = accessor._data.then(function (data) {
  1915. var indicesBufferView = ArrayItem.Get(context + "/sparse/indices/bufferView", _this.gltf.bufferViews, sparse_1.indices.bufferView);
  1916. var valuesBufferView = ArrayItem.Get(context + "/sparse/values/bufferView", _this.gltf.bufferViews, sparse_1.values.bufferView);
  1917. return Promise.all([
  1918. _this.loadBufferViewAsync("/bufferViews/" + indicesBufferView.index, indicesBufferView),
  1919. _this.loadBufferViewAsync("/bufferViews/" + valuesBufferView.index, valuesBufferView)
  1920. ]).then(function (_a) {
  1921. var indicesData = _a[0], valuesData = _a[1];
  1922. var indices = GLTFLoader._GetTypedArray(context + "/sparse/indices", sparse_1.indices.componentType, indicesData, sparse_1.indices.byteOffset, sparse_1.count);
  1923. var values = GLTFLoader._GetTypedArray(context + "/sparse/values", accessor.componentType, valuesData, sparse_1.values.byteOffset, numComponents * sparse_1.count);
  1924. var valuesIndex = 0;
  1925. for (var indicesIndex = 0; indicesIndex < indices.length; indicesIndex++) {
  1926. var dataIndex = indices[indicesIndex] * numComponents;
  1927. for (var componentIndex = 0; componentIndex < numComponents; componentIndex++) {
  1928. data[dataIndex++] = values[valuesIndex++];
  1929. }
  1930. }
  1931. return data;
  1932. });
  1933. });
  1934. }
  1935. return accessor._data;
  1936. };
  1937. GLTFLoader.prototype._loadVertexBufferViewAsync = function (bufferView, kind) {
  1938. var _this = this;
  1939. if (bufferView._babylonBuffer) {
  1940. return bufferView._babylonBuffer;
  1941. }
  1942. bufferView._babylonBuffer = this.loadBufferViewAsync("/bufferViews/" + bufferView.index, bufferView).then(function (data) {
  1943. return new BABYLON.Buffer(_this.babylonScene.getEngine(), data, false);
  1944. });
  1945. return bufferView._babylonBuffer;
  1946. };
  1947. GLTFLoader.prototype._loadVertexAccessorAsync = function (context, accessor, kind) {
  1948. var _this = this;
  1949. if (accessor._babylonVertexBuffer) {
  1950. return accessor._babylonVertexBuffer;
  1951. }
  1952. if (accessor.sparse) {
  1953. accessor._babylonVertexBuffer = this._loadFloatAccessorAsync("/accessors/" + accessor.index, accessor).then(function (data) {
  1954. return new BABYLON.VertexBuffer(_this.babylonScene.getEngine(), data, kind, false);
  1955. });
  1956. }
  1957. // HACK: If byte offset is not a multiple of component type byte length then load as a float array instead of using Babylon buffers.
  1958. else if (accessor.byteOffset && accessor.byteOffset % BABYLON.VertexBuffer.GetTypeByteLength(accessor.componentType) !== 0) {
  1959. BABYLON.Tools.Warn("Accessor byte offset is not a multiple of component type byte length");
  1960. accessor._babylonVertexBuffer = this._loadFloatAccessorAsync("/accessors/" + accessor.index, accessor).then(function (data) {
  1961. return new BABYLON.VertexBuffer(_this.babylonScene.getEngine(), data, kind, false);
  1962. });
  1963. }
  1964. else {
  1965. var bufferView_1 = ArrayItem.Get(context + "/bufferView", this.gltf.bufferViews, accessor.bufferView);
  1966. accessor._babylonVertexBuffer = this._loadVertexBufferViewAsync(bufferView_1, kind).then(function (babylonBuffer) {
  1967. var size = GLTFLoader._GetNumComponents(context, accessor.type);
  1968. return new BABYLON.VertexBuffer(_this.babylonScene.getEngine(), babylonBuffer, kind, false, false, bufferView_1.byteStride, false, accessor.byteOffset, size, accessor.componentType, accessor.normalized, true);
  1969. });
  1970. }
  1971. return accessor._babylonVertexBuffer;
  1972. };
  1973. GLTFLoader.prototype._loadMaterialMetallicRoughnessPropertiesAsync = function (context, properties, babylonMaterial) {
  1974. if (!(babylonMaterial instanceof BABYLON.PBRMaterial)) {
  1975. throw new Error(context + ": Material type not supported");
  1976. }
  1977. var promises = new Array();
  1978. if (properties) {
  1979. if (properties.baseColorFactor) {
  1980. babylonMaterial.albedoColor = BABYLON.Color3.FromArray(properties.baseColorFactor);
  1981. babylonMaterial.alpha = properties.baseColorFactor[3];
  1982. }
  1983. else {
  1984. babylonMaterial.albedoColor = BABYLON.Color3.White();
  1985. }
  1986. babylonMaterial.metallic = properties.metallicFactor == undefined ? 1 : properties.metallicFactor;
  1987. babylonMaterial.roughness = properties.roughnessFactor == undefined ? 1 : properties.roughnessFactor;
  1988. if (properties.baseColorTexture) {
  1989. promises.push(this.loadTextureInfoAsync(context + "/baseColorTexture", properties.baseColorTexture, function (texture) {
  1990. texture.name = babylonMaterial.name + " (Base Color)";
  1991. babylonMaterial.albedoTexture = texture;
  1992. }));
  1993. }
  1994. if (properties.metallicRoughnessTexture) {
  1995. promises.push(this.loadTextureInfoAsync(context + "/metallicRoughnessTexture", properties.metallicRoughnessTexture, function (texture) {
  1996. texture.name = babylonMaterial.name + " (Metallic Roughness)";
  1997. babylonMaterial.metallicTexture = texture;
  1998. }));
  1999. babylonMaterial.useMetallnessFromMetallicTextureBlue = true;
  2000. babylonMaterial.useRoughnessFromMetallicTextureGreen = true;
  2001. babylonMaterial.useRoughnessFromMetallicTextureAlpha = false;
  2002. }
  2003. }
  2004. return Promise.all(promises).then(function () { });
  2005. };
  2006. /** @hidden */
  2007. GLTFLoader.prototype._loadMaterialAsync = function (context, material, babylonMesh, babylonDrawMode, assign) {
  2008. if (assign === void 0) { assign = function () { }; }
  2009. var extensionPromise = this._extensionsLoadMaterialAsync(context, material, babylonMesh, babylonDrawMode, assign);
  2010. if (extensionPromise) {
  2011. return extensionPromise;
  2012. }
  2013. material._data = material._data || {};
  2014. var babylonData = material._data[babylonDrawMode];
  2015. if (!babylonData) {
  2016. this.logOpen(context + " " + (material.name || ""));
  2017. var babylonMaterial = this.createMaterial(context, material, babylonDrawMode);
  2018. babylonData = {
  2019. babylonMaterial: babylonMaterial,
  2020. babylonMeshes: [],
  2021. promise: this.loadMaterialPropertiesAsync(context, material, babylonMaterial)
  2022. };
  2023. material._data[babylonDrawMode] = babylonData;
  2024. GLTFLoader.AddPointerMetadata(babylonMaterial, context);
  2025. this._parent.onMaterialLoadedObservable.notifyObservers(babylonMaterial);
  2026. this.logClose();
  2027. }
  2028. babylonData.babylonMeshes.push(babylonMesh);
  2029. babylonMesh.onDisposeObservable.addOnce(function () {
  2030. var index = babylonData.babylonMeshes.indexOf(babylonMesh);
  2031. if (index !== -1) {
  2032. babylonData.babylonMeshes.splice(index, 1);
  2033. }
  2034. });
  2035. assign(babylonData.babylonMaterial);
  2036. return babylonData.promise.then(function () {
  2037. return babylonData.babylonMaterial;
  2038. });
  2039. };
  2040. GLTFLoader.prototype._createDefaultMaterial = function (name, babylonDrawMode) {
  2041. var babylonMaterial = new BABYLON.PBRMaterial(name, this.babylonScene);
  2042. babylonMaterial.sideOrientation = this.babylonScene.useRightHandedSystem ? BABYLON.Material.CounterClockWiseSideOrientation : BABYLON.Material.ClockWiseSideOrientation;
  2043. babylonMaterial.fillMode = babylonDrawMode;
  2044. babylonMaterial.enableSpecularAntiAliasing = true;
  2045. babylonMaterial.useRadianceOverAlpha = !this._parent.transparencyAsCoverage;
  2046. babylonMaterial.useSpecularOverAlpha = !this._parent.transparencyAsCoverage;
  2047. babylonMaterial.transparencyMode = BABYLON.PBRMaterial.PBRMATERIAL_OPAQUE;
  2048. babylonMaterial.metallic = 1;
  2049. babylonMaterial.roughness = 1;
  2050. return babylonMaterial;
  2051. };
  2052. /**
  2053. * Creates a Babylon material from a glTF material.
  2054. * @param context The context when loading the asset
  2055. * @param material The glTF material property
  2056. * @param babylonDrawMode The draw mode for the Babylon material
  2057. * @returns The Babylon material
  2058. */
  2059. GLTFLoader.prototype.createMaterial = function (context, material, babylonDrawMode) {
  2060. var extensionPromise = this._extensionsCreateMaterial(context, material, babylonDrawMode);
  2061. if (extensionPromise) {
  2062. return extensionPromise;
  2063. }
  2064. var name = material.name || "material" + material.index;
  2065. var babylonMaterial = this._createDefaultMaterial(name, babylonDrawMode);
  2066. return babylonMaterial;
  2067. };
  2068. /**
  2069. * Loads properties from a glTF material into a Babylon material.
  2070. * @param context The context when loading the asset
  2071. * @param material The glTF material property
  2072. * @param babylonMaterial The Babylon material
  2073. * @returns A promise that resolves when the load is complete
  2074. */
  2075. GLTFLoader.prototype.loadMaterialPropertiesAsync = function (context, material, babylonMaterial) {
  2076. var extensionPromise = this._extensionsLoadMaterialPropertiesAsync(context, material, babylonMaterial);
  2077. if (extensionPromise) {
  2078. return extensionPromise;
  2079. }
  2080. var promises = new Array();
  2081. promises.push(this.loadMaterialBasePropertiesAsync(context, material, babylonMaterial));
  2082. if (material.pbrMetallicRoughness) {
  2083. promises.push(this._loadMaterialMetallicRoughnessPropertiesAsync(context + "/pbrMetallicRoughness", material.pbrMetallicRoughness, babylonMaterial));
  2084. }
  2085. this.loadMaterialAlphaProperties(context, material, babylonMaterial);
  2086. return Promise.all(promises).then(function () { });
  2087. };
  2088. /**
  2089. * Loads the normal, occlusion, and emissive properties from a glTF material into a Babylon material.
  2090. * @param context The context when loading the asset
  2091. * @param material The glTF material property
  2092. * @param babylonMaterial The Babylon material
  2093. * @returns A promise that resolves when the load is complete
  2094. */
  2095. GLTFLoader.prototype.loadMaterialBasePropertiesAsync = function (context, material, babylonMaterial) {
  2096. if (!(babylonMaterial instanceof BABYLON.PBRMaterial)) {
  2097. throw new Error(context + ": Material type not supported");
  2098. }
  2099. var promises = new Array();
  2100. babylonMaterial.emissiveColor = material.emissiveFactor ? BABYLON.Color3.FromArray(material.emissiveFactor) : new BABYLON.Color3(0, 0, 0);
  2101. if (material.doubleSided) {
  2102. babylonMaterial.backFaceCulling = false;
  2103. babylonMaterial.twoSidedLighting = true;
  2104. }
  2105. if (material.normalTexture) {
  2106. promises.push(this.loadTextureInfoAsync(context + "/normalTexture", material.normalTexture, function (texture) {
  2107. texture.name = babylonMaterial.name + " (Normal)";
  2108. babylonMaterial.bumpTexture = texture;
  2109. }));
  2110. babylonMaterial.invertNormalMapX = !this.babylonScene.useRightHandedSystem;
  2111. babylonMaterial.invertNormalMapY = this.babylonScene.useRightHandedSystem;
  2112. if (material.normalTexture.scale != undefined) {
  2113. babylonMaterial.bumpTexture.level = material.normalTexture.scale;
  2114. }
  2115. }
  2116. if (material.occlusionTexture) {
  2117. promises.push(this.loadTextureInfoAsync(context + "/occlusionTexture", material.occlusionTexture, function (texture) {
  2118. texture.name = babylonMaterial.name + " (Occlusion)";
  2119. babylonMaterial.ambientTexture = texture;
  2120. }));
  2121. babylonMaterial.useAmbientInGrayScale = true;
  2122. if (material.occlusionTexture.strength != undefined) {
  2123. babylonMaterial.ambientTextureStrength = material.occlusionTexture.strength;
  2124. }
  2125. }
  2126. if (material.emissiveTexture) {
  2127. promises.push(this.loadTextureInfoAsync(context + "/emissiveTexture", material.emissiveTexture, function (texture) {
  2128. texture.name = babylonMaterial.name + " (Emissive)";
  2129. babylonMaterial.emissiveTexture = texture;
  2130. }));
  2131. }
  2132. return Promise.all(promises).then(function () { });
  2133. };
  2134. /**
  2135. * Loads the alpha properties from a glTF material into a Babylon material.
  2136. * Must be called after the setting the albedo texture of the Babylon material when the material has an albedo texture.
  2137. * @param context The context when loading the asset
  2138. * @param material The glTF material property
  2139. * @param babylonMaterial The Babylon material
  2140. */
  2141. GLTFLoader.prototype.loadMaterialAlphaProperties = function (context, material, babylonMaterial) {
  2142. if (!(babylonMaterial instanceof BABYLON.PBRMaterial)) {
  2143. throw new Error(context + ": Material type not supported");
  2144. }
  2145. var alphaMode = material.alphaMode || "OPAQUE" /* OPAQUE */;
  2146. switch (alphaMode) {
  2147. case "OPAQUE" /* OPAQUE */: {
  2148. babylonMaterial.transparencyMode = BABYLON.PBRMaterial.PBRMATERIAL_OPAQUE;
  2149. break;
  2150. }
  2151. case "MASK" /* MASK */: {
  2152. babylonMaterial.transparencyMode = BABYLON.PBRMaterial.PBRMATERIAL_ALPHATEST;
  2153. babylonMaterial.alphaCutOff = (material.alphaCutoff == undefined ? 0.5 : material.alphaCutoff);
  2154. if (babylonMaterial.albedoTexture) {
  2155. babylonMaterial.albedoTexture.hasAlpha = true;
  2156. }
  2157. break;
  2158. }
  2159. case "BLEND" /* BLEND */: {
  2160. babylonMaterial.transparencyMode = BABYLON.PBRMaterial.PBRMATERIAL_ALPHABLEND;
  2161. if (babylonMaterial.albedoTexture) {
  2162. babylonMaterial.albedoTexture.hasAlpha = true;
  2163. babylonMaterial.useAlphaFromAlbedoTexture = true;
  2164. }
  2165. break;
  2166. }
  2167. default: {
  2168. throw new Error(context + "/alphaMode: Invalid value (" + material.alphaMode + ")");
  2169. }
  2170. }
  2171. };
  2172. /**
  2173. * Loads a glTF texture info.
  2174. * @param context The context when loading the asset
  2175. * @param textureInfo The glTF texture info property
  2176. * @param assign A function called synchronously after parsing the glTF properties
  2177. * @returns A promise that resolves with the loaded Babylon texture when the load is complete
  2178. */
  2179. GLTFLoader.prototype.loadTextureInfoAsync = function (context, textureInfo, assign) {
  2180. var _this = this;
  2181. if (assign === void 0) { assign = function () { }; }
  2182. var extensionPromise = this._extensionsLoadTextureInfoAsync(context, textureInfo, assign);
  2183. if (extensionPromise) {
  2184. return extensionPromise;
  2185. }
  2186. this.logOpen("" + context);
  2187. var texture = ArrayItem.Get(context + "/index", this.gltf.textures, textureInfo.index);
  2188. var promise = this._loadTextureAsync("/textures/" + textureInfo.index, texture, function (babylonTexture) {
  2189. babylonTexture.coordinatesIndex = textureInfo.texCoord || 0;
  2190. GLTFLoader.AddPointerMetadata(babylonTexture, context);
  2191. _this._parent.onTextureLoadedObservable.notifyObservers(babylonTexture);
  2192. assign(babylonTexture);
  2193. });
  2194. this.logClose();
  2195. return promise;
  2196. };
  2197. GLTFLoader.prototype._loadTextureAsync = function (context, texture, assign) {
  2198. var _this = this;
  2199. if (assign === void 0) { assign = function () { }; }
  2200. var promises = new Array();
  2201. this.logOpen(context + " " + (texture.name || ""));
  2202. var sampler = (texture.sampler == undefined ? GLTFLoader._DefaultSampler : ArrayItem.Get(context + "/sampler", this.gltf.samplers, texture.sampler));
  2203. var samplerData = this._loadSampler("/samplers/" + sampler.index, sampler);
  2204. var image = ArrayItem.Get(context + "/source", this.gltf.images, texture.source);
  2205. var textureURL = null;
  2206. if (image.uri && !BABYLON.Tools.IsBase64(image.uri) && this.babylonScene.getEngine().textureFormatInUse) {
  2207. // If an image uri and a texture format is set like (eg. KTX) load from url instead of blob to support texture format and fallback
  2208. textureURL = this._uniqueRootUrl + image.uri;
  2209. }
  2210. var deferred = new BABYLON.Deferred();
  2211. var babylonTexture = new BABYLON.Texture(textureURL, this.babylonScene, samplerData.noMipMaps, false, samplerData.samplingMode, function () {
  2212. if (!_this._disposed) {
  2213. deferred.resolve();
  2214. }
  2215. }, function (message, exception) {
  2216. if (!_this._disposed) {
  2217. deferred.reject(new Error(context + ": " + ((exception && exception.message) ? exception.message : message || "Failed to load texture")));
  2218. }
  2219. });
  2220. promises.push(deferred.promise);
  2221. if (!textureURL) {
  2222. promises.push(this.loadImageAsync("/images/" + image.index, image).then(function (data) {
  2223. var name = image.uri || _this._fileName + "#image" + image.index;
  2224. var dataUrl = "data:" + _this._uniqueRootUrl + name;
  2225. babylonTexture.updateURL(dataUrl, new Blob([data], { type: image.mimeType }));
  2226. }));
  2227. }
  2228. babylonTexture.wrapU = samplerData.wrapU;
  2229. babylonTexture.wrapV = samplerData.wrapV;
  2230. assign(babylonTexture);
  2231. this.logClose();
  2232. return Promise.all(promises).then(function () {
  2233. return babylonTexture;
  2234. });
  2235. };
  2236. GLTFLoader.prototype._loadSampler = function (context, sampler) {
  2237. if (!sampler._data) {
  2238. sampler._data = {
  2239. noMipMaps: (sampler.minFilter === 9728 /* NEAREST */ || sampler.minFilter === 9729 /* LINEAR */),
  2240. samplingMode: GLTFLoader._GetTextureSamplingMode(context, sampler),
  2241. wrapU: GLTFLoader._GetTextureWrapMode(context + "/wrapS", sampler.wrapS),
  2242. wrapV: GLTFLoader._GetTextureWrapMode(context + "/wrapT", sampler.wrapT)
  2243. };
  2244. }
  2245. return sampler._data;
  2246. };
  2247. /**
  2248. * Loads a glTF image.
  2249. * @param context The context when loading the asset
  2250. * @param image The glTF image property
  2251. * @returns A promise that resolves with the loaded data when the load is complete
  2252. */
  2253. GLTFLoader.prototype.loadImageAsync = function (context, image) {
  2254. if (!image._data) {
  2255. this.logOpen(context + " " + (image.name || ""));
  2256. if (image.uri) {
  2257. image._data = this.loadUriAsync(context + "/uri", image.uri);
  2258. }
  2259. else {
  2260. var bufferView = ArrayItem.Get(context + "/bufferView", this.gltf.bufferViews, image.bufferView);
  2261. image._data = this.loadBufferViewAsync("/bufferViews/" + bufferView.index, bufferView);
  2262. }
  2263. this.logClose();
  2264. }
  2265. return image._data;
  2266. };
  2267. /**
  2268. * Loads a glTF uri.
  2269. * @param context The context when loading the asset
  2270. * @param uri The base64 or relative uri
  2271. * @returns A promise that resolves with the loaded data when the load is complete
  2272. */
  2273. GLTFLoader.prototype.loadUriAsync = function (context, uri) {
  2274. var _this = this;
  2275. var extensionPromise = this._extensionsLoadUriAsync(context, uri);
  2276. if (extensionPromise) {
  2277. return extensionPromise;
  2278. }
  2279. if (!GLTFLoader._ValidateUri(uri)) {
  2280. throw new Error(context + ": '" + uri + "' is invalid");
  2281. }
  2282. if (BABYLON.Tools.IsBase64(uri)) {
  2283. var data = new Uint8Array(BABYLON.Tools.DecodeBase64(uri));
  2284. this.log("Decoded " + uri.substr(0, 64) + "... (" + data.length + " bytes)");
  2285. return Promise.resolve(data);
  2286. }
  2287. this.log("Loading " + uri);
  2288. return this._parent.preprocessUrlAsync(this._rootUrl + uri).then(function (url) {
  2289. return new Promise(function (resolve, reject) {
  2290. if (!_this._disposed) {
  2291. var request_1 = BABYLON.Tools.LoadFile(url, function (fileData) {
  2292. if (!_this._disposed) {
  2293. var data = new Uint8Array(fileData);
  2294. _this.log("Loaded " + uri + " (" + data.length + " bytes)");
  2295. resolve(data);
  2296. }
  2297. }, function (event) {
  2298. if (!_this._disposed) {
  2299. if (request_1) {
  2300. request_1._lengthComputable = event.lengthComputable;
  2301. request_1._loaded = event.loaded;
  2302. request_1._total = event.total;
  2303. }
  2304. if (_this._state === BABYLON.GLTFLoaderState.LOADING) {
  2305. try {
  2306. _this._onProgress();
  2307. }
  2308. catch (e) {
  2309. reject(e);
  2310. }
  2311. }
  2312. }
  2313. }, _this.babylonScene.offlineProvider, true, function (request, exception) {
  2314. if (!_this._disposed) {
  2315. reject(new BABYLON.LoadFileError(context + ": Failed to load '" + uri + "'" + (request ? ": " + request.status + " " + request.statusText : ""), request));
  2316. }
  2317. });
  2318. _this._requests.push(request_1);
  2319. }
  2320. });
  2321. });
  2322. };
  2323. GLTFLoader.prototype._onProgress = function () {
  2324. if (!this._progressCallback) {
  2325. return;
  2326. }
  2327. var lengthComputable = true;
  2328. var loaded = 0;
  2329. var total = 0;
  2330. for (var _i = 0, _a = this._requests; _i < _a.length; _i++) {
  2331. var request = _a[_i];
  2332. if (request._lengthComputable === undefined || request._loaded === undefined || request._total === undefined) {
  2333. return;
  2334. }
  2335. lengthComputable = lengthComputable && request._lengthComputable;
  2336. loaded += request._loaded;
  2337. total += request._total;
  2338. }
  2339. this._progressCallback(new BABYLON.SceneLoaderProgressEvent(lengthComputable, loaded, lengthComputable ? total : 0));
  2340. };
  2341. /**
  2342. * Adds a JSON pointer to the metadata of the Babylon object at `<object>.metadata.gltf.pointers`.
  2343. * @param babylonObject the Babylon object with metadata
  2344. * @param pointer the JSON pointer
  2345. */
  2346. GLTFLoader.AddPointerMetadata = function (babylonObject, pointer) {
  2347. var metadata = (babylonObject.metadata = babylonObject.metadata || {});
  2348. var gltf = (metadata.gltf = metadata.gltf || {});
  2349. var pointers = (gltf.pointers = gltf.pointers || []);
  2350. pointers.push(pointer);
  2351. };
  2352. GLTFLoader._GetTextureWrapMode = function (context, mode) {
  2353. // Set defaults if undefined
  2354. mode = mode == undefined ? 10497 /* REPEAT */ : mode;
  2355. switch (mode) {
  2356. case 33071 /* CLAMP_TO_EDGE */: return BABYLON.Texture.CLAMP_ADDRESSMODE;
  2357. case 33648 /* MIRRORED_REPEAT */: return BABYLON.Texture.MIRROR_ADDRESSMODE;
  2358. case 10497 /* REPEAT */: return BABYLON.Texture.WRAP_ADDRESSMODE;
  2359. default:
  2360. BABYLON.Tools.Warn(context + ": Invalid value (" + mode + ")");
  2361. return BABYLON.Texture.WRAP_ADDRESSMODE;
  2362. }
  2363. };
  2364. GLTFLoader._GetTextureSamplingMode = function (context, sampler) {
  2365. // Set defaults if undefined
  2366. var magFilter = sampler.magFilter == undefined ? 9729 /* LINEAR */ : sampler.magFilter;
  2367. var minFilter = sampler.minFilter == undefined ? 9987 /* LINEAR_MIPMAP_LINEAR */ : sampler.minFilter;
  2368. if (magFilter === 9729 /* LINEAR */) {
  2369. switch (minFilter) {
  2370. case 9728 /* NEAREST */: return BABYLON.Texture.LINEAR_NEAREST;
  2371. case 9729 /* LINEAR */: return BABYLON.Texture.LINEAR_LINEAR;
  2372. case 9984 /* NEAREST_MIPMAP_NEAREST */: return BABYLON.Texture.LINEAR_NEAREST_MIPNEAREST;
  2373. case 9985 /* LINEAR_MIPMAP_NEAREST */: return BABYLON.Texture.LINEAR_LINEAR_MIPNEAREST;
  2374. case 9986 /* NEAREST_MIPMAP_LINEAR */: return BABYLON.Texture.LINEAR_NEAREST_MIPLINEAR;
  2375. case 9987 /* LINEAR_MIPMAP_LINEAR */: return BABYLON.Texture.LINEAR_LINEAR_MIPLINEAR;
  2376. default:
  2377. BABYLON.Tools.Warn(context + "/minFilter: Invalid value (" + minFilter + ")");
  2378. return BABYLON.Texture.LINEAR_LINEAR_MIPLINEAR;
  2379. }
  2380. }
  2381. else {
  2382. if (magFilter !== 9728 /* NEAREST */) {
  2383. BABYLON.Tools.Warn(context + "/magFilter: Invalid value (" + magFilter + ")");
  2384. }
  2385. switch (minFilter) {
  2386. case 9728 /* NEAREST */: return BABYLON.Texture.NEAREST_NEAREST;
  2387. case 9729 /* LINEAR */: return BABYLON.Texture.NEAREST_LINEAR;
  2388. case 9984 /* NEAREST_MIPMAP_NEAREST */: return BABYLON.Texture.NEAREST_NEAREST_MIPNEAREST;
  2389. case 9985 /* LINEAR_MIPMAP_NEAREST */: return BABYLON.Texture.NEAREST_LINEAR_MIPNEAREST;
  2390. case 9986 /* NEAREST_MIPMAP_LINEAR */: return BABYLON.Texture.NEAREST_NEAREST_MIPLINEAR;
  2391. case 9987 /* LINEAR_MIPMAP_LINEAR */: return BABYLON.Texture.NEAREST_LINEAR_MIPLINEAR;
  2392. default:
  2393. BABYLON.Tools.Warn(context + "/minFilter: Invalid value (" + minFilter + ")");
  2394. return BABYLON.Texture.NEAREST_NEAREST_MIPNEAREST;
  2395. }
  2396. }
  2397. };
  2398. GLTFLoader._GetTypedArray = function (context, componentType, bufferView, byteOffset, length) {
  2399. var buffer = bufferView.buffer;
  2400. byteOffset = bufferView.byteOffset + (byteOffset || 0);
  2401. try {
  2402. switch (componentType) {
  2403. case 5120 /* BYTE */: return new Int8Array(buffer, byteOffset, length);
  2404. case 5121 /* UNSIGNED_BYTE */: return new Uint8Array(buffer, byteOffset, length);
  2405. case 5122 /* SHORT */: return new Int16Array(buffer, byteOffset, length);
  2406. case 5123 /* UNSIGNED_SHORT */: return new Uint16Array(buffer, byteOffset, length);
  2407. case 5125 /* UNSIGNED_INT */: return new Uint32Array(buffer, byteOffset, length);
  2408. case 5126 /* FLOAT */: return new Float32Array(buffer, byteOffset, length);
  2409. default: throw new Error("Invalid component type " + componentType);
  2410. }
  2411. }
  2412. catch (e) {
  2413. throw new Error(context + ": " + e);
  2414. }
  2415. };
  2416. GLTFLoader._GetNumComponents = function (context, type) {
  2417. switch (type) {
  2418. case "SCALAR": return 1;
  2419. case "VEC2": return 2;
  2420. case "VEC3": return 3;
  2421. case "VEC4": return 4;
  2422. case "MAT2": return 4;
  2423. case "MAT3": return 9;
  2424. case "MAT4": return 16;
  2425. }
  2426. throw new Error(context + ": Invalid type (" + type + ")");
  2427. };
  2428. GLTFLoader._ValidateUri = function (uri) {
  2429. return (BABYLON.Tools.IsBase64(uri) || uri.indexOf("..") === -1);
  2430. };
  2431. GLTFLoader._GetDrawMode = function (context, mode) {
  2432. if (mode == undefined) {
  2433. mode = 4 /* TRIANGLES */;
  2434. }
  2435. switch (mode) {
  2436. case 0 /* POINTS */: return BABYLON.Material.PointListDrawMode;
  2437. case 1 /* LINES */: return BABYLON.Material.LineListDrawMode;
  2438. case 2 /* LINE_LOOP */: return BABYLON.Material.LineLoopDrawMode;
  2439. case 3 /* LINE_STRIP */: return BABYLON.Material.LineStripDrawMode;
  2440. case 4 /* TRIANGLES */: return BABYLON.Material.TriangleFillMode;
  2441. case 5 /* TRIANGLE_STRIP */: return BABYLON.Material.TriangleStripDrawMode;
  2442. case 6 /* TRIANGLE_FAN */: return BABYLON.Material.TriangleFanDrawMode;
  2443. }
  2444. throw new Error(context + ": Invalid mesh primitive mode (" + mode + ")");
  2445. };
  2446. GLTFLoader.prototype._compileMaterialsAsync = function () {
  2447. var _this = this;
  2448. this._parent._startPerformanceCounter("Compile materials");
  2449. var promises = new Array();
  2450. if (this.gltf.materials) {
  2451. for (var _i = 0, _a = this.gltf.materials; _i < _a.length; _i++) {
  2452. var material = _a[_i];
  2453. if (material._data) {
  2454. for (var babylonDrawMode in material._data) {
  2455. var babylonData = material._data[babylonDrawMode];
  2456. for (var _b = 0, _c = babylonData.babylonMeshes; _b < _c.length; _b++) {
  2457. var babylonMesh = _c[_b];
  2458. // Ensure nonUniformScaling is set if necessary.
  2459. babylonMesh.computeWorldMatrix(true);
  2460. var babylonMaterial = babylonData.babylonMaterial;
  2461. promises.push(babylonMaterial.forceCompilationAsync(babylonMesh));
  2462. if (this._parent.useClipPlane) {
  2463. promises.push(babylonMaterial.forceCompilationAsync(babylonMesh, { clipPlane: true }));
  2464. }
  2465. }
  2466. }
  2467. }
  2468. }
  2469. }
  2470. return Promise.all(promises).then(function () {
  2471. _this._parent._endPerformanceCounter("Compile materials");
  2472. });
  2473. };
  2474. GLTFLoader.prototype._compileShadowGeneratorsAsync = function () {
  2475. var _this = this;
  2476. this._parent._startPerformanceCounter("Compile shadow generators");
  2477. var promises = new Array();
  2478. var lights = this.babylonScene.lights;
  2479. for (var _i = 0, lights_1 = lights; _i < lights_1.length; _i++) {
  2480. var light = lights_1[_i];
  2481. var generator = light.getShadowGenerator();
  2482. if (generator) {
  2483. promises.push(generator.forceCompilationAsync());
  2484. }
  2485. }
  2486. return Promise.all(promises).then(function () {
  2487. _this._parent._endPerformanceCounter("Compile shadow generators");
  2488. });
  2489. };
  2490. GLTFLoader.prototype._forEachExtensions = function (action) {
  2491. for (var _i = 0, _a = GLTFLoader._ExtensionNames; _i < _a.length; _i++) {
  2492. var name_4 = _a[_i];
  2493. var extension = this._extensions[name_4];
  2494. if (extension.enabled) {
  2495. action(extension);
  2496. }
  2497. }
  2498. };
  2499. GLTFLoader.prototype._applyExtensions = function (property, actionAsync) {
  2500. for (var _i = 0, _a = GLTFLoader._ExtensionNames; _i < _a.length; _i++) {
  2501. var name_5 = _a[_i];
  2502. var extension = this._extensions[name_5];
  2503. if (extension.enabled) {
  2504. var loaderProperty = property;
  2505. loaderProperty._activeLoaderExtensions = loaderProperty._activeLoaderExtensions || {};
  2506. var activeLoaderExtensions = loaderProperty._activeLoaderExtensions;
  2507. if (!activeLoaderExtensions[name_5]) {
  2508. activeLoaderExtensions[name_5] = true;
  2509. try {
  2510. var result = actionAsync(extension);
  2511. if (result) {
  2512. return result;
  2513. }
  2514. }
  2515. finally {
  2516. delete activeLoaderExtensions[name_5];
  2517. }
  2518. }
  2519. }
  2520. }
  2521. return null;
  2522. };
  2523. GLTFLoader.prototype._extensionsOnLoading = function () {
  2524. this._forEachExtensions(function (extension) { return extension.onLoading && extension.onLoading(); });
  2525. };
  2526. GLTFLoader.prototype._extensionsOnReady = function () {
  2527. this._forEachExtensions(function (extension) { return extension.onReady && extension.onReady(); });
  2528. };
  2529. GLTFLoader.prototype._extensionsLoadSceneAsync = function (context, scene) {
  2530. return this._applyExtensions(scene, function (extension) { return extension.loadSceneAsync && extension.loadSceneAsync(context, scene); });
  2531. };
  2532. GLTFLoader.prototype._extensionsLoadNodeAsync = function (context, node, assign) {
  2533. return this._applyExtensions(node, function (extension) { return extension.loadNodeAsync && extension.loadNodeAsync(context, node, assign); });
  2534. };
  2535. GLTFLoader.prototype._extensionsLoadCameraAsync = function (context, camera, assign) {
  2536. return this._applyExtensions(camera, function (extension) { return extension.loadCameraAsync && extension.loadCameraAsync(context, camera, assign); });
  2537. };
  2538. GLTFLoader.prototype._extensionsLoadVertexDataAsync = function (context, primitive, babylonMesh) {
  2539. return this._applyExtensions(primitive, function (extension) { return extension._loadVertexDataAsync && extension._loadVertexDataAsync(context, primitive, babylonMesh); });
  2540. };
  2541. GLTFLoader.prototype._extensionsLoadMaterialAsync = function (context, material, babylonMesh, babylonDrawMode, assign) {
  2542. return this._applyExtensions(material, function (extension) { return extension._loadMaterialAsync && extension._loadMaterialAsync(context, material, babylonMesh, babylonDrawMode, assign); });
  2543. };
  2544. GLTFLoader.prototype._extensionsCreateMaterial = function (context, material, babylonDrawMode) {
  2545. return this._applyExtensions({}, function (extension) { return extension.createMaterial && extension.createMaterial(context, material, babylonDrawMode); });
  2546. };
  2547. GLTFLoader.prototype._extensionsLoadMaterialPropertiesAsync = function (context, material, babylonMaterial) {
  2548. return this._applyExtensions(material, function (extension) { return extension.loadMaterialPropertiesAsync && extension.loadMaterialPropertiesAsync(context, material, babylonMaterial); });
  2549. };
  2550. GLTFLoader.prototype._extensionsLoadTextureInfoAsync = function (context, textureInfo, assign) {
  2551. return this._applyExtensions(textureInfo, function (extension) { return extension.loadTextureInfoAsync && extension.loadTextureInfoAsync(context, textureInfo, assign); });
  2552. };
  2553. GLTFLoader.prototype._extensionsLoadAnimationAsync = function (context, animation) {
  2554. return this._applyExtensions(animation, function (extension) { return extension.loadAnimationAsync && extension.loadAnimationAsync(context, animation); });
  2555. };
  2556. GLTFLoader.prototype._extensionsLoadUriAsync = function (context, uri) {
  2557. return this._applyExtensions({}, function (extension) { return extension._loadUriAsync && extension._loadUriAsync(context, uri); });
  2558. };
  2559. /**
  2560. * Helper method called by a loader extension to load an glTF extension.
  2561. * @param context The context when loading the asset
  2562. * @param property The glTF property to load the extension from
  2563. * @param extensionName The name of the extension to load
  2564. * @param actionAsync The action to run
  2565. * @returns The promise returned by actionAsync or null if the extension does not exist
  2566. */
  2567. GLTFLoader.LoadExtensionAsync = function (context, property, extensionName, actionAsync) {
  2568. if (!property.extensions) {
  2569. return null;
  2570. }
  2571. var extensions = property.extensions;
  2572. var extension = extensions[extensionName];
  2573. if (!extension) {
  2574. return null;
  2575. }
  2576. return actionAsync(context + "/extensions/" + extensionName, extension);
  2577. };
  2578. /**
  2579. * Helper method called by a loader extension to load a glTF extra.
  2580. * @param context The context when loading the asset
  2581. * @param property The glTF property to load the extra from
  2582. * @param extensionName The name of the extension to load
  2583. * @param actionAsync The action to run
  2584. * @returns The promise returned by actionAsync or null if the extra does not exist
  2585. */
  2586. GLTFLoader.LoadExtraAsync = function (context, property, extensionName, actionAsync) {
  2587. if (!property.extras) {
  2588. return null;
  2589. }
  2590. var extras = property.extras;
  2591. var extra = extras[extensionName];
  2592. if (!extra) {
  2593. return null;
  2594. }
  2595. return actionAsync(context + "/extras/" + extensionName, extra);
  2596. };
  2597. /**
  2598. * Increments the indentation level and logs a message.
  2599. * @param message The message to log
  2600. */
  2601. GLTFLoader.prototype.logOpen = function (message) {
  2602. this._parent._logOpen(message);
  2603. };
  2604. /**
  2605. * Decrements the indentation level.
  2606. */
  2607. GLTFLoader.prototype.logClose = function () {
  2608. this._parent._logClose();
  2609. };
  2610. /**
  2611. * Logs a message
  2612. * @param message The message to log
  2613. */
  2614. GLTFLoader.prototype.log = function (message) {
  2615. this._parent._log(message);
  2616. };
  2617. /**
  2618. * Starts a performance counter.
  2619. * @param counterName The name of the performance counter
  2620. */
  2621. GLTFLoader.prototype.startPerformanceCounter = function (counterName) {
  2622. this._parent._startPerformanceCounter(counterName);
  2623. };
  2624. /**
  2625. * Ends a performance counter.
  2626. * @param counterName The name of the performance counter
  2627. */
  2628. GLTFLoader.prototype.endPerformanceCounter = function (counterName) {
  2629. this._parent._endPerformanceCounter(counterName);
  2630. };
  2631. GLTFLoader._DefaultSampler = { index: -1 };
  2632. GLTFLoader._ExtensionNames = new Array();
  2633. GLTFLoader._ExtensionFactories = {};
  2634. return GLTFLoader;
  2635. }());
  2636. GLTF2.GLTFLoader = GLTFLoader;
  2637. BABYLON.GLTFFileLoader._CreateGLTFLoaderV2 = function (parent) { return new GLTFLoader(parent); };
  2638. })(GLTF2 = BABYLON.GLTF2 || (BABYLON.GLTF2 = {}));
  2639. })(BABYLON || (BABYLON = {}));
  2640. //# sourceMappingURL=babylon.glTFLoader.js.map
  2641. /// <reference path="../../../../dist/preview release/babylon.d.ts"/>
  2642. //# sourceMappingURL=babylon.glTFLoaderExtension.js.map
  2643. /// <reference path="../../../../../dist/preview release/babylon.d.ts"/>
  2644. var BABYLON;
  2645. (function (BABYLON) {
  2646. var GLTF2;
  2647. (function (GLTF2) {
  2648. var Loader;
  2649. (function (Loader) {
  2650. var Extensions;
  2651. (function (Extensions) {
  2652. var NAME = "MSFT_lod";
  2653. /**
  2654. * [Specification](https://github.com/KhronosGroup/glTF/tree/master/extensions/2.0/Vendor/MSFT_lod)
  2655. */
  2656. var MSFT_lod = /** @class */ (function () {
  2657. /** @hidden */
  2658. function MSFT_lod(loader) {
  2659. /** The name of this extension. */
  2660. this.name = NAME;
  2661. /** Defines whether this extension is enabled. */
  2662. this.enabled = true;
  2663. /**
  2664. * Maximum number of LODs to load, starting from the lowest LOD.
  2665. */
  2666. this.maxLODsToLoad = Number.MAX_VALUE;
  2667. /**
  2668. * Observable raised when all node LODs of one level are loaded.
  2669. * The event data is the index of the loaded LOD starting from zero.
  2670. * Dispose the loader to cancel the loading of the next level of LODs.
  2671. */
  2672. this.onNodeLODsLoadedObservable = new BABYLON.Observable();
  2673. /**
  2674. * Observable raised when all material LODs of one level are loaded.
  2675. * The event data is the index of the loaded LOD starting from zero.
  2676. * Dispose the loader to cancel the loading of the next level of LODs.
  2677. */
  2678. this.onMaterialLODsLoadedObservable = new BABYLON.Observable();
  2679. this._nodeIndexLOD = null;
  2680. this._nodeSignalLODs = new Array();
  2681. this._nodePromiseLODs = new Array();
  2682. this._materialIndexLOD = null;
  2683. this._materialSignalLODs = new Array();
  2684. this._materialPromiseLODs = new Array();
  2685. this._loader = loader;
  2686. }
  2687. /** @hidden */
  2688. MSFT_lod.prototype.dispose = function () {
  2689. delete this._loader;
  2690. this._nodeIndexLOD = null;
  2691. this._nodeSignalLODs.length = 0;
  2692. this._nodePromiseLODs.length = 0;
  2693. this._materialIndexLOD = null;
  2694. this._materialSignalLODs.length = 0;
  2695. this._materialPromiseLODs.length = 0;
  2696. this.onMaterialLODsLoadedObservable.clear();
  2697. this.onNodeLODsLoadedObservable.clear();
  2698. };
  2699. /** @hidden */
  2700. MSFT_lod.prototype.onReady = function () {
  2701. var _this = this;
  2702. var _loop_1 = function (indexLOD) {
  2703. var promise = Promise.all(this_1._nodePromiseLODs[indexLOD]).then(function () {
  2704. if (indexLOD !== 0) {
  2705. _this._loader.endPerformanceCounter("Node LOD " + indexLOD);
  2706. }
  2707. _this._loader.log("Loaded node LOD " + indexLOD);
  2708. _this.onNodeLODsLoadedObservable.notifyObservers(indexLOD);
  2709. if (indexLOD !== _this._nodePromiseLODs.length - 1) {
  2710. _this._loader.startPerformanceCounter("Node LOD " + (indexLOD + 1));
  2711. if (_this._nodeSignalLODs[indexLOD]) {
  2712. _this._nodeSignalLODs[indexLOD].resolve();
  2713. }
  2714. }
  2715. });
  2716. this_1._loader._completePromises.push(promise);
  2717. };
  2718. var this_1 = this;
  2719. for (var indexLOD = 0; indexLOD < this._nodePromiseLODs.length; indexLOD++) {
  2720. _loop_1(indexLOD);
  2721. }
  2722. var _loop_2 = function (indexLOD) {
  2723. var promise = Promise.all(this_2._materialPromiseLODs[indexLOD]).then(function () {
  2724. if (indexLOD !== 0) {
  2725. _this._loader.endPerformanceCounter("Material LOD " + indexLOD);
  2726. }
  2727. _this._loader.log("Loaded material LOD " + indexLOD);
  2728. _this.onMaterialLODsLoadedObservable.notifyObservers(indexLOD);
  2729. if (indexLOD !== _this._materialPromiseLODs.length - 1) {
  2730. _this._loader.startPerformanceCounter("Material LOD " + (indexLOD + 1));
  2731. if (_this._materialSignalLODs[indexLOD]) {
  2732. _this._materialSignalLODs[indexLOD].resolve();
  2733. }
  2734. }
  2735. });
  2736. this_2._loader._completePromises.push(promise);
  2737. };
  2738. var this_2 = this;
  2739. for (var indexLOD = 0; indexLOD < this._materialPromiseLODs.length; indexLOD++) {
  2740. _loop_2(indexLOD);
  2741. }
  2742. };
  2743. /** @hidden */
  2744. MSFT_lod.prototype.loadNodeAsync = function (context, node, assign) {
  2745. var _this = this;
  2746. return GLTF2.GLTFLoader.LoadExtensionAsync(context, node, this.name, function (extensionContext, extension) {
  2747. var firstPromise;
  2748. var nodeLODs = _this._getLODs(extensionContext, node, _this._loader.gltf.nodes, extension.ids);
  2749. _this._loader.logOpen("" + extensionContext);
  2750. var _loop_3 = function (indexLOD) {
  2751. var nodeLOD = nodeLODs[indexLOD];
  2752. if (indexLOD !== 0) {
  2753. _this._nodeIndexLOD = indexLOD;
  2754. _this._nodeSignalLODs[indexLOD] = _this._nodeSignalLODs[indexLOD] || new BABYLON.Deferred();
  2755. }
  2756. var assign_1 = function (babylonTransformNode) { babylonTransformNode.setEnabled(false); };
  2757. var promise = _this._loader.loadNodeAsync("#/nodes/" + nodeLOD.index, nodeLOD, assign_1).then(function (babylonMesh) {
  2758. if (indexLOD !== 0) {
  2759. // TODO: should not rely on _babylonMesh
  2760. var previousNodeLOD = nodeLODs[indexLOD - 1];
  2761. if (previousNodeLOD._babylonTransformNode) {
  2762. previousNodeLOD._babylonTransformNode.dispose();
  2763. delete previousNodeLOD._babylonTransformNode;
  2764. _this._disposeUnusedMaterials();
  2765. }
  2766. }
  2767. babylonMesh.setEnabled(true);
  2768. return babylonMesh;
  2769. });
  2770. if (indexLOD === 0) {
  2771. firstPromise = promise;
  2772. }
  2773. else {
  2774. _this._nodeIndexLOD = null;
  2775. }
  2776. _this._nodePromiseLODs[indexLOD] = _this._nodePromiseLODs[indexLOD] || [];
  2777. _this._nodePromiseLODs[indexLOD].push(promise);
  2778. };
  2779. for (var indexLOD = 0; indexLOD < nodeLODs.length; indexLOD++) {
  2780. _loop_3(indexLOD);
  2781. }
  2782. _this._loader.logClose();
  2783. return firstPromise;
  2784. });
  2785. };
  2786. /** @hidden */
  2787. MSFT_lod.prototype._loadMaterialAsync = function (context, material, babylonMesh, babylonDrawMode, assign) {
  2788. var _this = this;
  2789. // Don't load material LODs if already loading a node LOD.
  2790. if (this._nodeIndexLOD) {
  2791. return null;
  2792. }
  2793. return GLTF2.GLTFLoader.LoadExtensionAsync(context, material, this.name, function (extensionContext, extension) {
  2794. var firstPromise;
  2795. var materialLODs = _this._getLODs(extensionContext, material, _this._loader.gltf.materials, extension.ids);
  2796. _this._loader.logOpen("" + extensionContext);
  2797. var _loop_4 = function (indexLOD) {
  2798. var materialLOD = materialLODs[indexLOD];
  2799. if (indexLOD !== 0) {
  2800. _this._materialIndexLOD = indexLOD;
  2801. }
  2802. var promise = _this._loader._loadMaterialAsync("#/materials/" + materialLOD.index, materialLOD, babylonMesh, babylonDrawMode, function (babylonMaterial) {
  2803. if (indexLOD === 0) {
  2804. assign(babylonMaterial);
  2805. }
  2806. }).then(function (babylonMaterial) {
  2807. if (indexLOD !== 0) {
  2808. assign(babylonMaterial);
  2809. // TODO: should not rely on _data
  2810. var previousDataLOD = materialLODs[indexLOD - 1]._data;
  2811. if (previousDataLOD[babylonDrawMode]) {
  2812. previousDataLOD[babylonDrawMode].babylonMaterial.dispose();
  2813. delete previousDataLOD[babylonDrawMode];
  2814. }
  2815. }
  2816. return babylonMaterial;
  2817. });
  2818. if (indexLOD === 0) {
  2819. firstPromise = promise;
  2820. }
  2821. else {
  2822. _this._materialIndexLOD = null;
  2823. }
  2824. _this._materialPromiseLODs[indexLOD] = _this._materialPromiseLODs[indexLOD] || [];
  2825. _this._materialPromiseLODs[indexLOD].push(promise);
  2826. };
  2827. for (var indexLOD = 0; indexLOD < materialLODs.length; indexLOD++) {
  2828. _loop_4(indexLOD);
  2829. }
  2830. _this._loader.logClose();
  2831. return firstPromise;
  2832. });
  2833. };
  2834. /** @hidden */
  2835. MSFT_lod.prototype._loadUriAsync = function (context, uri) {
  2836. var _this = this;
  2837. // Defer the loading of uris if loading a material or node LOD.
  2838. if (this._materialIndexLOD !== null) {
  2839. this._loader.log("deferred");
  2840. var previousIndexLOD = this._materialIndexLOD - 1;
  2841. this._materialSignalLODs[previousIndexLOD] = this._materialSignalLODs[previousIndexLOD] || new BABYLON.Deferred();
  2842. return this._materialSignalLODs[previousIndexLOD].promise.then(function () {
  2843. return _this._loader.loadUriAsync(context, uri);
  2844. });
  2845. }
  2846. else if (this._nodeIndexLOD !== null) {
  2847. this._loader.log("deferred");
  2848. var previousIndexLOD = this._nodeIndexLOD - 1;
  2849. this._nodeSignalLODs[previousIndexLOD] = this._nodeSignalLODs[previousIndexLOD] || new BABYLON.Deferred();
  2850. return this._nodeSignalLODs[this._nodeIndexLOD - 1].promise.then(function () {
  2851. return _this._loader.loadUriAsync(context, uri);
  2852. });
  2853. }
  2854. return null;
  2855. };
  2856. /**
  2857. * Gets an array of LOD properties from lowest to highest.
  2858. */
  2859. MSFT_lod.prototype._getLODs = function (context, property, array, ids) {
  2860. if (this.maxLODsToLoad <= 0) {
  2861. throw new Error("maxLODsToLoad must be greater than zero");
  2862. }
  2863. var properties = new Array();
  2864. for (var i = ids.length - 1; i >= 0; i--) {
  2865. properties.push(GLTF2.ArrayItem.Get(context + "/ids/" + ids[i], array, ids[i]));
  2866. if (properties.length === this.maxLODsToLoad) {
  2867. return properties;
  2868. }
  2869. }
  2870. properties.push(property);
  2871. return properties;
  2872. };
  2873. MSFT_lod.prototype._disposeUnusedMaterials = function () {
  2874. // TODO: should not rely on _data
  2875. var materials = this._loader.gltf.materials;
  2876. if (materials) {
  2877. for (var _i = 0, materials_1 = materials; _i < materials_1.length; _i++) {
  2878. var material = materials_1[_i];
  2879. if (material._data) {
  2880. for (var drawMode in material._data) {
  2881. var data = material._data[drawMode];
  2882. if (data.babylonMeshes.length === 0) {
  2883. data.babylonMaterial.dispose(false, true);
  2884. delete material._data[drawMode];
  2885. }
  2886. }
  2887. }
  2888. }
  2889. }
  2890. };
  2891. return MSFT_lod;
  2892. }());
  2893. Extensions.MSFT_lod = MSFT_lod;
  2894. GLTF2.GLTFLoader.RegisterExtension(NAME, function (loader) { return new MSFT_lod(loader); });
  2895. })(Extensions = Loader.Extensions || (Loader.Extensions = {}));
  2896. })(Loader = GLTF2.Loader || (GLTF2.Loader = {}));
  2897. })(GLTF2 = BABYLON.GLTF2 || (BABYLON.GLTF2 = {}));
  2898. })(BABYLON || (BABYLON = {}));
  2899. //# sourceMappingURL=MSFT_lod.js.map
  2900. /// <reference path="../../../../../dist/preview release/babylon.d.ts"/>
  2901. var BABYLON;
  2902. (function (BABYLON) {
  2903. var GLTF2;
  2904. (function (GLTF2) {
  2905. var Loader;
  2906. (function (Loader) {
  2907. var Extensions;
  2908. (function (Extensions) {
  2909. var NAME = "MSFT_minecraftMesh";
  2910. /** @hidden */
  2911. var MSFT_minecraftMesh = /** @class */ (function () {
  2912. function MSFT_minecraftMesh(loader) {
  2913. this.name = NAME;
  2914. this.enabled = true;
  2915. this._loader = loader;
  2916. }
  2917. MSFT_minecraftMesh.prototype.dispose = function () {
  2918. delete this._loader;
  2919. };
  2920. MSFT_minecraftMesh.prototype.loadMaterialPropertiesAsync = function (context, material, babylonMaterial) {
  2921. var _this = this;
  2922. return GLTF2.GLTFLoader.LoadExtraAsync(context, material, this.name, function (extraContext, extra) {
  2923. if (extra) {
  2924. if (!(babylonMaterial instanceof BABYLON.PBRMaterial)) {
  2925. throw new Error(extraContext + ": Material type not supported");
  2926. }
  2927. var promise = _this._loader.loadMaterialPropertiesAsync(context, material, babylonMaterial);
  2928. if (babylonMaterial.needAlphaBlending()) {
  2929. babylonMaterial.forceDepthWrite = true;
  2930. babylonMaterial.separateCullingPass = true;
  2931. }
  2932. babylonMaterial.backFaceCulling = babylonMaterial.forceDepthWrite;
  2933. babylonMaterial.twoSidedLighting = true;
  2934. return promise;
  2935. }
  2936. return null;
  2937. });
  2938. };
  2939. return MSFT_minecraftMesh;
  2940. }());
  2941. Extensions.MSFT_minecraftMesh = MSFT_minecraftMesh;
  2942. GLTF2.GLTFLoader.RegisterExtension(NAME, function (loader) { return new MSFT_minecraftMesh(loader); });
  2943. })(Extensions = Loader.Extensions || (Loader.Extensions = {}));
  2944. })(Loader = GLTF2.Loader || (GLTF2.Loader = {}));
  2945. })(GLTF2 = BABYLON.GLTF2 || (BABYLON.GLTF2 = {}));
  2946. })(BABYLON || (BABYLON = {}));
  2947. //# sourceMappingURL=MSFT_minecraftMesh.js.map
  2948. /// <reference path="../../../../../dist/preview release/babylon.d.ts"/>
  2949. var BABYLON;
  2950. (function (BABYLON) {
  2951. var GLTF2;
  2952. (function (GLTF2) {
  2953. var Loader;
  2954. (function (Loader) {
  2955. var Extensions;
  2956. (function (Extensions) {
  2957. var NAME = "MSFT_sRGBFactors";
  2958. /** @hidden */
  2959. var MSFT_sRGBFactors = /** @class */ (function () {
  2960. function MSFT_sRGBFactors(loader) {
  2961. this.name = NAME;
  2962. this.enabled = true;
  2963. this._loader = loader;
  2964. }
  2965. MSFT_sRGBFactors.prototype.dispose = function () {
  2966. delete this._loader;
  2967. };
  2968. MSFT_sRGBFactors.prototype.loadMaterialPropertiesAsync = function (context, material, babylonMaterial) {
  2969. var _this = this;
  2970. return GLTF2.GLTFLoader.LoadExtraAsync(context, material, this.name, function (extraContext, extra) {
  2971. if (extra) {
  2972. if (!(babylonMaterial instanceof BABYLON.PBRMaterial)) {
  2973. throw new Error(extraContext + ": Material type not supported");
  2974. }
  2975. var promise = _this._loader.loadMaterialPropertiesAsync(context, material, babylonMaterial);
  2976. if (!babylonMaterial.albedoTexture) {
  2977. babylonMaterial.albedoColor.toLinearSpaceToRef(babylonMaterial.albedoColor);
  2978. }
  2979. if (!babylonMaterial.reflectivityTexture) {
  2980. babylonMaterial.reflectivityColor.toLinearSpaceToRef(babylonMaterial.reflectivityColor);
  2981. }
  2982. return promise;
  2983. }
  2984. return null;
  2985. });
  2986. };
  2987. return MSFT_sRGBFactors;
  2988. }());
  2989. Extensions.MSFT_sRGBFactors = MSFT_sRGBFactors;
  2990. GLTF2.GLTFLoader.RegisterExtension(NAME, function (loader) { return new MSFT_sRGBFactors(loader); });
  2991. })(Extensions = Loader.Extensions || (Loader.Extensions = {}));
  2992. })(Loader = GLTF2.Loader || (GLTF2.Loader = {}));
  2993. })(GLTF2 = BABYLON.GLTF2 || (BABYLON.GLTF2 = {}));
  2994. })(BABYLON || (BABYLON = {}));
  2995. //# sourceMappingURL=MSFT_sRGBFactors.js.map
  2996. /// <reference path="../../../../../dist/preview release/babylon.d.ts"/>
  2997. var BABYLON;
  2998. (function (BABYLON) {
  2999. var GLTF2;
  3000. (function (GLTF2) {
  3001. var Loader;
  3002. (function (Loader) {
  3003. var Extensions;
  3004. (function (Extensions) {
  3005. var NAME = "MSFT_audio_emitter";
  3006. /**
  3007. * [Specification](https://github.com/najadojo/glTF/tree/MSFT_audio_emitter/extensions/2.0/Vendor/MSFT_audio_emitter)
  3008. */
  3009. var MSFT_audio_emitter = /** @class */ (function () {
  3010. /** @hidden */
  3011. function MSFT_audio_emitter(loader) {
  3012. /** The name of this extension. */
  3013. this.name = NAME;
  3014. /** Defines whether this extension is enabled. */
  3015. this.enabled = true;
  3016. this._loader = loader;
  3017. }
  3018. /** @hidden */
  3019. MSFT_audio_emitter.prototype.dispose = function () {
  3020. delete this._loader;
  3021. delete this._clips;
  3022. delete this._emitters;
  3023. };
  3024. /** @hidden */
  3025. MSFT_audio_emitter.prototype.onLoading = function () {
  3026. var extensions = this._loader.gltf.extensions;
  3027. if (extensions && extensions[this.name]) {
  3028. var extension = extensions[this.name];
  3029. this._clips = extension.clips;
  3030. this._emitters = extension.emitters;
  3031. GLTF2.ArrayItem.Assign(this._clips);
  3032. GLTF2.ArrayItem.Assign(this._emitters);
  3033. }
  3034. };
  3035. /** @hidden */
  3036. MSFT_audio_emitter.prototype.loadSceneAsync = function (context, scene) {
  3037. var _this = this;
  3038. return GLTF2.GLTFLoader.LoadExtensionAsync(context, scene, this.name, function (extensionContext, extension) {
  3039. var promises = new Array();
  3040. promises.push(_this._loader.loadSceneAsync(context, scene));
  3041. for (var _i = 0, _a = extension.emitters; _i < _a.length; _i++) {
  3042. var emitterIndex = _a[_i];
  3043. var emitter = GLTF2.ArrayItem.Get(extensionContext + "/emitters", _this._emitters, emitterIndex);
  3044. if (emitter.refDistance != undefined || emitter.maxDistance != undefined || emitter.rolloffFactor != undefined ||
  3045. emitter.distanceModel != undefined || emitter.innerAngle != undefined || emitter.outerAngle != undefined) {
  3046. throw new Error(extensionContext + ": Direction or Distance properties are not allowed on emitters attached to a scene");
  3047. }
  3048. promises.push(_this._loadEmitterAsync(extensionContext + "/emitters/" + emitter.index, emitter));
  3049. }
  3050. return Promise.all(promises).then(function () { });
  3051. });
  3052. };
  3053. /** @hidden */
  3054. MSFT_audio_emitter.prototype.loadNodeAsync = function (context, node, assign) {
  3055. var _this = this;
  3056. return GLTF2.GLTFLoader.LoadExtensionAsync(context, node, this.name, function (extensionContext, extension) {
  3057. var promises = new Array();
  3058. return _this._loader.loadNodeAsync(extensionContext, node, function (babylonMesh) {
  3059. var _loop_1 = function (emitterIndex) {
  3060. var emitter = GLTF2.ArrayItem.Get(extensionContext + "/emitters", _this._emitters, emitterIndex);
  3061. promises.push(_this._loadEmitterAsync(extensionContext + "/emitters/" + emitter.index, emitter).then(function () {
  3062. for (var _i = 0, _a = emitter._babylonSounds; _i < _a.length; _i++) {
  3063. var sound = _a[_i];
  3064. sound.attachToMesh(babylonMesh);
  3065. if (emitter.innerAngle != undefined || emitter.outerAngle != undefined) {
  3066. sound.setLocalDirectionToMesh(BABYLON.Vector3.Forward());
  3067. sound.setDirectionalCone(2 * BABYLON.Tools.ToDegrees(emitter.innerAngle == undefined ? Math.PI : emitter.innerAngle), 2 * BABYLON.Tools.ToDegrees(emitter.outerAngle == undefined ? Math.PI : emitter.outerAngle), 0);
  3068. }
  3069. }
  3070. }));
  3071. };
  3072. for (var _i = 0, _a = extension.emitters; _i < _a.length; _i++) {
  3073. var emitterIndex = _a[_i];
  3074. _loop_1(emitterIndex);
  3075. }
  3076. assign(babylonMesh);
  3077. }).then(function (babylonMesh) {
  3078. return Promise.all(promises).then(function () {
  3079. return babylonMesh;
  3080. });
  3081. });
  3082. });
  3083. };
  3084. /** @hidden */
  3085. MSFT_audio_emitter.prototype.loadAnimationAsync = function (context, animation) {
  3086. var _this = this;
  3087. return GLTF2.GLTFLoader.LoadExtensionAsync(context, animation, this.name, function (extensionContext, extension) {
  3088. return _this._loader.loadAnimationAsync(context, animation).then(function (babylonAnimationGroup) {
  3089. var promises = new Array();
  3090. GLTF2.ArrayItem.Assign(extension.events);
  3091. for (var _i = 0, _a = extension.events; _i < _a.length; _i++) {
  3092. var event_1 = _a[_i];
  3093. promises.push(_this._loadAnimationEventAsync(extensionContext + "/events/" + event_1.index, context, animation, event_1, babylonAnimationGroup));
  3094. }
  3095. return Promise.all(promises).then(function () {
  3096. return babylonAnimationGroup;
  3097. });
  3098. });
  3099. });
  3100. };
  3101. MSFT_audio_emitter.prototype._loadClipAsync = function (context, clip) {
  3102. if (clip._objectURL) {
  3103. return clip._objectURL;
  3104. }
  3105. var promise;
  3106. if (clip.uri) {
  3107. promise = this._loader.loadUriAsync(context, clip.uri);
  3108. }
  3109. else {
  3110. var bufferView = GLTF2.ArrayItem.Get(context + "/bufferView", this._loader.gltf.bufferViews, clip.bufferView);
  3111. promise = this._loader.loadBufferViewAsync("#/bufferViews/" + bufferView.index, bufferView);
  3112. }
  3113. clip._objectURL = promise.then(function (data) {
  3114. return URL.createObjectURL(new Blob([data], { type: clip.mimeType }));
  3115. });
  3116. return clip._objectURL;
  3117. };
  3118. MSFT_audio_emitter.prototype._loadEmitterAsync = function (context, emitter) {
  3119. var _this = this;
  3120. emitter._babylonSounds = emitter._babylonSounds || [];
  3121. if (!emitter._babylonData) {
  3122. var clipPromises = new Array();
  3123. var name_1 = emitter.name || "emitter" + emitter.index;
  3124. var options_1 = {
  3125. loop: false,
  3126. autoplay: false,
  3127. volume: emitter.volume == undefined ? 1 : emitter.volume,
  3128. };
  3129. var _loop_2 = function (i) {
  3130. var clipContext = "#/extensions/" + this_1.name + "/clips";
  3131. var clip = GLTF2.ArrayItem.Get(clipContext, this_1._clips, emitter.clips[i].clip);
  3132. clipPromises.push(this_1._loadClipAsync(clipContext + "/" + emitter.clips[i].clip, clip).then(function (objectURL) {
  3133. var sound = emitter._babylonSounds[i] = new BABYLON.Sound(name_1, objectURL, _this._loader.babylonScene, null, options_1);
  3134. sound.refDistance = emitter.refDistance || 1;
  3135. sound.maxDistance = emitter.maxDistance || 256;
  3136. sound.rolloffFactor = emitter.rolloffFactor || 1;
  3137. sound.distanceModel = emitter.distanceModel || 'exponential';
  3138. sound._positionInEmitterSpace = true;
  3139. }));
  3140. };
  3141. var this_1 = this;
  3142. for (var i = 0; i < emitter.clips.length; i++) {
  3143. _loop_2(i);
  3144. }
  3145. var promise = Promise.all(clipPromises).then(function () {
  3146. var weights = emitter.clips.map(function (clip) { return clip.weight || 1; });
  3147. var weightedSound = new BABYLON.WeightedSound(emitter.loop || false, emitter._babylonSounds, weights);
  3148. if (emitter.innerAngle) {
  3149. weightedSound.directionalConeInnerAngle = 2 * BABYLON.Tools.ToDegrees(emitter.innerAngle);
  3150. }
  3151. if (emitter.outerAngle) {
  3152. weightedSound.directionalConeOuterAngle = 2 * BABYLON.Tools.ToDegrees(emitter.outerAngle);
  3153. }
  3154. if (emitter.volume) {
  3155. weightedSound.volume = emitter.volume;
  3156. }
  3157. emitter._babylonData.sound = weightedSound;
  3158. });
  3159. emitter._babylonData = {
  3160. loaded: promise
  3161. };
  3162. }
  3163. return emitter._babylonData.loaded;
  3164. };
  3165. MSFT_audio_emitter.prototype._getEventAction = function (context, sound, action, time, startOffset) {
  3166. switch (action) {
  3167. case "play" /* play */: {
  3168. return function (currentFrame) {
  3169. var frameOffset = (startOffset || 0) + (currentFrame - time);
  3170. sound.play(frameOffset);
  3171. };
  3172. }
  3173. case "stop" /* stop */: {
  3174. return function (currentFrame) {
  3175. sound.stop();
  3176. };
  3177. }
  3178. case "pause" /* pause */: {
  3179. return function (currentFrame) {
  3180. sound.pause();
  3181. };
  3182. }
  3183. default: {
  3184. throw new Error(context + ": Unsupported action " + action);
  3185. }
  3186. }
  3187. };
  3188. MSFT_audio_emitter.prototype._loadAnimationEventAsync = function (context, animationContext, animation, event, babylonAnimationGroup) {
  3189. var _this = this;
  3190. if (babylonAnimationGroup.targetedAnimations.length == 0) {
  3191. return Promise.resolve();
  3192. }
  3193. var babylonAnimation = babylonAnimationGroup.targetedAnimations[0];
  3194. var emitterIndex = event.emitter;
  3195. var emitter = GLTF2.ArrayItem.Get("#/extensions/" + this.name + "/emitters", this._emitters, emitterIndex);
  3196. return this._loadEmitterAsync(context, emitter).then(function () {
  3197. var sound = emitter._babylonData.sound;
  3198. if (sound) {
  3199. var babylonAnimationEvent = new BABYLON.AnimationEvent(event.time, _this._getEventAction(context, sound, event.action, event.time, event.startOffset));
  3200. babylonAnimation.animation.addEvent(babylonAnimationEvent);
  3201. // Make sure all started audio stops when this animation is terminated.
  3202. babylonAnimationGroup.onAnimationGroupEndObservable.add(function () {
  3203. sound.stop();
  3204. });
  3205. babylonAnimationGroup.onAnimationGroupPauseObservable.add(function () {
  3206. sound.pause();
  3207. });
  3208. }
  3209. });
  3210. };
  3211. return MSFT_audio_emitter;
  3212. }());
  3213. Extensions.MSFT_audio_emitter = MSFT_audio_emitter;
  3214. GLTF2.GLTFLoader.RegisterExtension(NAME, function (loader) { return new MSFT_audio_emitter(loader); });
  3215. })(Extensions = Loader.Extensions || (Loader.Extensions = {}));
  3216. })(Loader = GLTF2.Loader || (GLTF2.Loader = {}));
  3217. })(GLTF2 = BABYLON.GLTF2 || (BABYLON.GLTF2 = {}));
  3218. })(BABYLON || (BABYLON = {}));
  3219. //# sourceMappingURL=MSFT_audio_emitter.js.map
  3220. /// <reference path="../../../../../dist/preview release/babylon.d.ts"/>
  3221. var BABYLON;
  3222. (function (BABYLON) {
  3223. var GLTF2;
  3224. (function (GLTF2) {
  3225. var Loader;
  3226. (function (Loader) {
  3227. var Extensions;
  3228. (function (Extensions) {
  3229. var NAME = "KHR_draco_mesh_compression";
  3230. /**
  3231. * [Specification](https://github.com/KhronosGroup/glTF/tree/master/extensions/2.0/Khronos/KHR_draco_mesh_compression)
  3232. */
  3233. var KHR_draco_mesh_compression = /** @class */ (function () {
  3234. /** @hidden */
  3235. function KHR_draco_mesh_compression(loader) {
  3236. /** The name of this extension. */
  3237. this.name = NAME;
  3238. /** Defines whether this extension is enabled. */
  3239. this.enabled = BABYLON.DracoCompression.DecoderAvailable;
  3240. this._loader = loader;
  3241. }
  3242. /** @hidden */
  3243. KHR_draco_mesh_compression.prototype.dispose = function () {
  3244. if (this._dracoCompression) {
  3245. this._dracoCompression.dispose();
  3246. delete this._dracoCompression;
  3247. }
  3248. delete this._loader;
  3249. };
  3250. /** @hidden */
  3251. KHR_draco_mesh_compression.prototype._loadVertexDataAsync = function (context, primitive, babylonMesh) {
  3252. var _this = this;
  3253. return GLTF2.GLTFLoader.LoadExtensionAsync(context, primitive, this.name, function (extensionContext, extension) {
  3254. if (primitive.mode != undefined) {
  3255. if (primitive.mode !== 5 /* TRIANGLE_STRIP */ &&
  3256. primitive.mode !== 4 /* TRIANGLES */) {
  3257. throw new Error(context + ": Unsupported mode " + primitive.mode);
  3258. }
  3259. // TODO: handle triangle strips
  3260. if (primitive.mode === 5 /* TRIANGLE_STRIP */) {
  3261. throw new Error(context + ": Mode " + primitive.mode + " is not currently supported");
  3262. }
  3263. }
  3264. var attributes = {};
  3265. var loadAttribute = function (name, kind) {
  3266. var uniqueId = extension.attributes[name];
  3267. if (uniqueId == undefined) {
  3268. return;
  3269. }
  3270. babylonMesh._delayInfo = babylonMesh._delayInfo || [];
  3271. if (babylonMesh._delayInfo.indexOf(kind) === -1) {
  3272. babylonMesh._delayInfo.push(kind);
  3273. }
  3274. attributes[kind] = uniqueId;
  3275. };
  3276. loadAttribute("POSITION", BABYLON.VertexBuffer.PositionKind);
  3277. loadAttribute("NORMAL", BABYLON.VertexBuffer.NormalKind);
  3278. loadAttribute("TANGENT", BABYLON.VertexBuffer.TangentKind);
  3279. loadAttribute("TEXCOORD_0", BABYLON.VertexBuffer.UVKind);
  3280. loadAttribute("TEXCOORD_1", BABYLON.VertexBuffer.UV2Kind);
  3281. loadAttribute("JOINTS_0", BABYLON.VertexBuffer.MatricesIndicesKind);
  3282. loadAttribute("WEIGHTS_0", BABYLON.VertexBuffer.MatricesWeightsKind);
  3283. loadAttribute("COLOR_0", BABYLON.VertexBuffer.ColorKind);
  3284. var bufferView = GLTF2.ArrayItem.Get(extensionContext, _this._loader.gltf.bufferViews, extension.bufferView);
  3285. if (!bufferView._dracoBabylonGeometry) {
  3286. bufferView._dracoBabylonGeometry = _this._loader.loadBufferViewAsync("#/bufferViews/" + bufferView.index, bufferView).then(function (data) {
  3287. if (!_this._dracoCompression) {
  3288. _this._dracoCompression = new BABYLON.DracoCompression();
  3289. }
  3290. return _this._dracoCompression.decodeMeshAsync(data, attributes).then(function (babylonVertexData) {
  3291. var babylonGeometry = new BABYLON.Geometry(babylonMesh.name, _this._loader.babylonScene);
  3292. babylonVertexData.applyToGeometry(babylonGeometry);
  3293. return babylonGeometry;
  3294. }).catch(function (error) {
  3295. throw new Error(context + ": " + error.message);
  3296. });
  3297. });
  3298. }
  3299. return bufferView._dracoBabylonGeometry;
  3300. });
  3301. };
  3302. return KHR_draco_mesh_compression;
  3303. }());
  3304. Extensions.KHR_draco_mesh_compression = KHR_draco_mesh_compression;
  3305. GLTF2.GLTFLoader.RegisterExtension(NAME, function (loader) { return new KHR_draco_mesh_compression(loader); });
  3306. })(Extensions = Loader.Extensions || (Loader.Extensions = {}));
  3307. })(Loader = GLTF2.Loader || (GLTF2.Loader = {}));
  3308. })(GLTF2 = BABYLON.GLTF2 || (BABYLON.GLTF2 = {}));
  3309. })(BABYLON || (BABYLON = {}));
  3310. //# sourceMappingURL=KHR_draco_mesh_compression.js.map
  3311. /// <reference path="../../../../../dist/preview release/babylon.d.ts"/>
  3312. var BABYLON;
  3313. (function (BABYLON) {
  3314. var GLTF2;
  3315. (function (GLTF2) {
  3316. var Loader;
  3317. (function (Loader) {
  3318. var Extensions;
  3319. (function (Extensions) {
  3320. var NAME = "KHR_materials_pbrSpecularGlossiness";
  3321. /**
  3322. * [Specification](https://github.com/KhronosGroup/glTF/tree/master/extensions/2.0/Khronos/KHR_materials_pbrSpecularGlossiness)
  3323. */
  3324. var KHR_materials_pbrSpecularGlossiness = /** @class */ (function () {
  3325. /** @hidden */
  3326. function KHR_materials_pbrSpecularGlossiness(loader) {
  3327. /** The name of this extension. */
  3328. this.name = NAME;
  3329. /** Defines whether this extension is enabled. */
  3330. this.enabled = true;
  3331. this._loader = loader;
  3332. }
  3333. /** @hidden */
  3334. KHR_materials_pbrSpecularGlossiness.prototype.dispose = function () {
  3335. delete this._loader;
  3336. };
  3337. /** @hidden */
  3338. KHR_materials_pbrSpecularGlossiness.prototype.loadMaterialPropertiesAsync = function (context, material, babylonMaterial) {
  3339. var _this = this;
  3340. return GLTF2.GLTFLoader.LoadExtensionAsync(context, material, this.name, function (extensionContext, extension) {
  3341. var promises = new Array();
  3342. promises.push(_this._loader.loadMaterialBasePropertiesAsync(context, material, babylonMaterial));
  3343. promises.push(_this._loadSpecularGlossinessPropertiesAsync(extensionContext, material, extension, babylonMaterial));
  3344. _this._loader.loadMaterialAlphaProperties(context, material, babylonMaterial);
  3345. return Promise.all(promises).then(function () { });
  3346. });
  3347. };
  3348. KHR_materials_pbrSpecularGlossiness.prototype._loadSpecularGlossinessPropertiesAsync = function (context, material, properties, babylonMaterial) {
  3349. if (!(babylonMaterial instanceof BABYLON.PBRMaterial)) {
  3350. throw new Error(context + ": Material type not supported");
  3351. }
  3352. var promises = new Array();
  3353. babylonMaterial.metallic = null;
  3354. babylonMaterial.roughness = null;
  3355. if (properties.diffuseFactor) {
  3356. babylonMaterial.albedoColor = BABYLON.Color3.FromArray(properties.diffuseFactor);
  3357. babylonMaterial.alpha = properties.diffuseFactor[3];
  3358. }
  3359. else {
  3360. babylonMaterial.albedoColor = BABYLON.Color3.White();
  3361. }
  3362. babylonMaterial.reflectivityColor = properties.specularFactor ? BABYLON.Color3.FromArray(properties.specularFactor) : BABYLON.Color3.White();
  3363. babylonMaterial.microSurface = properties.glossinessFactor == undefined ? 1 : properties.glossinessFactor;
  3364. if (properties.diffuseTexture) {
  3365. promises.push(this._loader.loadTextureInfoAsync(context + "/diffuseTexture", properties.diffuseTexture, function (texture) {
  3366. texture.name = babylonMaterial.name + " (Diffuse)";
  3367. babylonMaterial.albedoTexture = texture;
  3368. }));
  3369. }
  3370. if (properties.specularGlossinessTexture) {
  3371. promises.push(this._loader.loadTextureInfoAsync(context + "/specularGlossinessTexture", properties.specularGlossinessTexture, function (texture) {
  3372. texture.name = babylonMaterial.name + " (Specular Glossiness)";
  3373. babylonMaterial.reflectivityTexture = texture;
  3374. }));
  3375. babylonMaterial.reflectivityTexture.hasAlpha = true;
  3376. babylonMaterial.useMicroSurfaceFromReflectivityMapAlpha = true;
  3377. }
  3378. return Promise.all(promises).then(function () { });
  3379. };
  3380. return KHR_materials_pbrSpecularGlossiness;
  3381. }());
  3382. Extensions.KHR_materials_pbrSpecularGlossiness = KHR_materials_pbrSpecularGlossiness;
  3383. GLTF2.GLTFLoader.RegisterExtension(NAME, function (loader) { return new KHR_materials_pbrSpecularGlossiness(loader); });
  3384. })(Extensions = Loader.Extensions || (Loader.Extensions = {}));
  3385. })(Loader = GLTF2.Loader || (GLTF2.Loader = {}));
  3386. })(GLTF2 = BABYLON.GLTF2 || (BABYLON.GLTF2 = {}));
  3387. })(BABYLON || (BABYLON = {}));
  3388. //# sourceMappingURL=KHR_materials_pbrSpecularGlossiness.js.map
  3389. /// <reference path="../../../../../dist/preview release/babylon.d.ts"/>
  3390. var BABYLON;
  3391. (function (BABYLON) {
  3392. var GLTF2;
  3393. (function (GLTF2) {
  3394. var Loader;
  3395. (function (Loader) {
  3396. var Extensions;
  3397. (function (Extensions) {
  3398. var NAME = "KHR_materials_unlit";
  3399. /**
  3400. * [Specification](https://github.com/KhronosGroup/glTF/tree/master/extensions/2.0/Khronos/KHR_materials_unlit)
  3401. */
  3402. var KHR_materials_unlit = /** @class */ (function () {
  3403. /** @hidden */
  3404. function KHR_materials_unlit(loader) {
  3405. /** The name of this extension. */
  3406. this.name = NAME;
  3407. /** Defines whether this extension is enabled. */
  3408. this.enabled = true;
  3409. this._loader = loader;
  3410. }
  3411. /** @hidden */
  3412. KHR_materials_unlit.prototype.dispose = function () {
  3413. delete this._loader;
  3414. };
  3415. /** @hidden */
  3416. KHR_materials_unlit.prototype.loadMaterialPropertiesAsync = function (context, material, babylonMaterial) {
  3417. var _this = this;
  3418. return GLTF2.GLTFLoader.LoadExtensionAsync(context, material, this.name, function () {
  3419. return _this._loadUnlitPropertiesAsync(context, material, babylonMaterial);
  3420. });
  3421. };
  3422. KHR_materials_unlit.prototype._loadUnlitPropertiesAsync = function (context, material, babylonMaterial) {
  3423. if (!(babylonMaterial instanceof BABYLON.PBRMaterial)) {
  3424. throw new Error(context + ": Material type not supported");
  3425. }
  3426. var promises = new Array();
  3427. babylonMaterial.unlit = true;
  3428. var properties = material.pbrMetallicRoughness;
  3429. if (properties) {
  3430. if (properties.baseColorFactor) {
  3431. babylonMaterial.albedoColor = BABYLON.Color3.FromArray(properties.baseColorFactor);
  3432. babylonMaterial.alpha = properties.baseColorFactor[3];
  3433. }
  3434. else {
  3435. babylonMaterial.albedoColor = BABYLON.Color3.White();
  3436. }
  3437. if (properties.baseColorTexture) {
  3438. promises.push(this._loader.loadTextureInfoAsync(context + "/baseColorTexture", properties.baseColorTexture, function (texture) {
  3439. texture.name = babylonMaterial.name + " (Base Color)";
  3440. babylonMaterial.albedoTexture = texture;
  3441. }));
  3442. }
  3443. }
  3444. if (material.doubleSided) {
  3445. babylonMaterial.backFaceCulling = false;
  3446. babylonMaterial.twoSidedLighting = true;
  3447. }
  3448. this._loader.loadMaterialAlphaProperties(context, material, babylonMaterial);
  3449. return Promise.all(promises).then(function () { });
  3450. };
  3451. return KHR_materials_unlit;
  3452. }());
  3453. Extensions.KHR_materials_unlit = KHR_materials_unlit;
  3454. GLTF2.GLTFLoader.RegisterExtension(NAME, function (loader) { return new KHR_materials_unlit(loader); });
  3455. })(Extensions = Loader.Extensions || (Loader.Extensions = {}));
  3456. })(Loader = GLTF2.Loader || (GLTF2.Loader = {}));
  3457. })(GLTF2 = BABYLON.GLTF2 || (BABYLON.GLTF2 = {}));
  3458. })(BABYLON || (BABYLON = {}));
  3459. //# sourceMappingURL=KHR_materials_unlit.js.map
  3460. /// <reference path="../../../../../dist/preview release/babylon.d.ts"/>
  3461. var BABYLON;
  3462. (function (BABYLON) {
  3463. var GLTF2;
  3464. (function (GLTF2) {
  3465. var Loader;
  3466. (function (Loader) {
  3467. var Extensions;
  3468. (function (Extensions) {
  3469. var NAME = "KHR_lights_punctual";
  3470. var LightType;
  3471. (function (LightType) {
  3472. LightType["DIRECTIONAL"] = "directional";
  3473. LightType["POINT"] = "point";
  3474. LightType["SPOT"] = "spot";
  3475. })(LightType || (LightType = {}));
  3476. /**
  3477. * [Specification](https://github.com/KhronosGroup/glTF/blob/1048d162a44dbcb05aefc1874bfd423cf60135a6/extensions/2.0/Khronos/KHR_lights_punctual/README.md) (Experimental)
  3478. */
  3479. var KHR_lights = /** @class */ (function () {
  3480. /** @hidden */
  3481. function KHR_lights(loader) {
  3482. /** The name of this extension. */
  3483. this.name = NAME;
  3484. /** Defines whether this extension is enabled. */
  3485. this.enabled = true;
  3486. this._loader = loader;
  3487. }
  3488. /** @hidden */
  3489. KHR_lights.prototype.dispose = function () {
  3490. delete this._loader;
  3491. delete this._lights;
  3492. };
  3493. /** @hidden */
  3494. KHR_lights.prototype.onLoading = function () {
  3495. var extensions = this._loader.gltf.extensions;
  3496. if (extensions && extensions[this.name]) {
  3497. var extension = extensions[this.name];
  3498. this._lights = extension.lights;
  3499. }
  3500. };
  3501. /** @hidden */
  3502. KHR_lights.prototype.loadNodeAsync = function (context, node, assign) {
  3503. var _this = this;
  3504. return GLTF2.GLTFLoader.LoadExtensionAsync(context, node, this.name, function (extensionContext, extension) {
  3505. return _this._loader.loadNodeAsync(context, node, function (babylonMesh) {
  3506. var babylonLight;
  3507. var light = GLTF2.ArrayItem.Get(extensionContext, _this._lights, extension.light);
  3508. var name = light.name || babylonMesh.name;
  3509. switch (light.type) {
  3510. case LightType.DIRECTIONAL: {
  3511. babylonLight = new BABYLON.DirectionalLight(name, BABYLON.Vector3.Backward(), _this._loader.babylonScene);
  3512. break;
  3513. }
  3514. case LightType.POINT: {
  3515. babylonLight = new BABYLON.PointLight(name, BABYLON.Vector3.Zero(), _this._loader.babylonScene);
  3516. break;
  3517. }
  3518. case LightType.SPOT: {
  3519. var babylonSpotLight = new BABYLON.SpotLight(name, BABYLON.Vector3.Zero(), BABYLON.Vector3.Backward(), 0, 1, _this._loader.babylonScene);
  3520. babylonSpotLight.angle = ((light.spot && light.spot.outerConeAngle) || Math.PI / 4) * 2;
  3521. babylonSpotLight.innerAngle = ((light.spot && light.spot.innerConeAngle) || 0) * 2;
  3522. babylonLight = babylonSpotLight;
  3523. break;
  3524. }
  3525. default: {
  3526. throw new Error(extensionContext + ": Invalid light type (" + light.type + ")");
  3527. }
  3528. }
  3529. babylonLight.falloffType = BABYLON.Light.FALLOFF_GLTF;
  3530. babylonLight.diffuse = light.color ? BABYLON.Color3.FromArray(light.color) : BABYLON.Color3.White();
  3531. babylonLight.intensity = light.intensity == undefined ? 1 : light.intensity;
  3532. babylonLight.range = light.range == undefined ? Number.MAX_VALUE : light.range;
  3533. babylonLight.parent = babylonMesh;
  3534. GLTF2.GLTFLoader.AddPointerMetadata(babylonLight, extensionContext);
  3535. assign(babylonMesh);
  3536. });
  3537. });
  3538. };
  3539. return KHR_lights;
  3540. }());
  3541. Extensions.KHR_lights = KHR_lights;
  3542. GLTF2.GLTFLoader.RegisterExtension(NAME, function (loader) { return new KHR_lights(loader); });
  3543. })(Extensions = Loader.Extensions || (Loader.Extensions = {}));
  3544. })(Loader = GLTF2.Loader || (GLTF2.Loader = {}));
  3545. })(GLTF2 = BABYLON.GLTF2 || (BABYLON.GLTF2 = {}));
  3546. })(BABYLON || (BABYLON = {}));
  3547. //# sourceMappingURL=KHR_lights_punctual.js.map
  3548. /// <reference path="../../../../../dist/preview release/babylon.d.ts"/>
  3549. var BABYLON;
  3550. (function (BABYLON) {
  3551. var GLTF2;
  3552. (function (GLTF2) {
  3553. var Loader;
  3554. (function (Loader) {
  3555. var Extensions;
  3556. (function (Extensions) {
  3557. var NAME = "KHR_texture_transform";
  3558. /**
  3559. * [Specification](https://github.com/KhronosGroup/glTF/blob/master/extensions/2.0/Khronos/KHR_texture_transform/README.md)
  3560. */
  3561. var KHR_texture_transform = /** @class */ (function () {
  3562. /** @hidden */
  3563. function KHR_texture_transform(loader) {
  3564. /** The name of this extension. */
  3565. this.name = NAME;
  3566. /** Defines whether this extension is enabled. */
  3567. this.enabled = true;
  3568. this._loader = loader;
  3569. }
  3570. /** @hidden */
  3571. KHR_texture_transform.prototype.dispose = function () {
  3572. delete this._loader;
  3573. };
  3574. /** @hidden */
  3575. KHR_texture_transform.prototype.loadTextureInfoAsync = function (context, textureInfo, assign) {
  3576. var _this = this;
  3577. return GLTF2.GLTFLoader.LoadExtensionAsync(context, textureInfo, this.name, function (extensionContext, extension) {
  3578. return _this._loader.loadTextureInfoAsync(context, textureInfo, function (babylonTexture) {
  3579. if (!(babylonTexture instanceof BABYLON.Texture)) {
  3580. throw new Error(extensionContext + ": Texture type not supported");
  3581. }
  3582. if (extension.offset) {
  3583. babylonTexture.uOffset = extension.offset[0];
  3584. babylonTexture.vOffset = extension.offset[1];
  3585. }
  3586. // Always rotate around the origin.
  3587. babylonTexture.uRotationCenter = 0;
  3588. babylonTexture.vRotationCenter = 0;
  3589. if (extension.rotation) {
  3590. babylonTexture.wAng = -extension.rotation;
  3591. }
  3592. if (extension.scale) {
  3593. babylonTexture.uScale = extension.scale[0];
  3594. babylonTexture.vScale = extension.scale[1];
  3595. }
  3596. if (extension.texCoord != undefined) {
  3597. babylonTexture.coordinatesIndex = extension.texCoord;
  3598. }
  3599. assign(babylonTexture);
  3600. });
  3601. });
  3602. };
  3603. return KHR_texture_transform;
  3604. }());
  3605. Extensions.KHR_texture_transform = KHR_texture_transform;
  3606. GLTF2.GLTFLoader.RegisterExtension(NAME, function (loader) { return new KHR_texture_transform(loader); });
  3607. })(Extensions = Loader.Extensions || (Loader.Extensions = {}));
  3608. })(Loader = GLTF2.Loader || (GLTF2.Loader = {}));
  3609. })(GLTF2 = BABYLON.GLTF2 || (BABYLON.GLTF2 = {}));
  3610. })(BABYLON || (BABYLON = {}));
  3611. //# sourceMappingURL=KHR_texture_transform.js.map
  3612. /// <reference path="../../../../../dist/preview release/babylon.d.ts"/>
  3613. var BABYLON;
  3614. (function (BABYLON) {
  3615. var GLTF2;
  3616. (function (GLTF2) {
  3617. var Loader;
  3618. (function (Loader) {
  3619. var Extensions;
  3620. (function (Extensions) {
  3621. var NAME = "EXT_lights_image_based";
  3622. /**
  3623. * [Specification](https://github.com/KhronosGroup/glTF/blob/eb3e32332042e04691a5f35103f8c261e50d8f1e/extensions/2.0/Khronos/EXT_lights_image_based/README.md) (Experimental)
  3624. */
  3625. var EXT_lights_image_based = /** @class */ (function () {
  3626. /** @hidden */
  3627. function EXT_lights_image_based(loader) {
  3628. /** The name of this extension. */
  3629. this.name = NAME;
  3630. /** Defines whether this extension is enabled. */
  3631. this.enabled = true;
  3632. this._loader = loader;
  3633. }
  3634. /** @hidden */
  3635. EXT_lights_image_based.prototype.dispose = function () {
  3636. delete this._loader;
  3637. delete this._lights;
  3638. };
  3639. /** @hidden */
  3640. EXT_lights_image_based.prototype.onLoading = function () {
  3641. var extensions = this._loader.gltf.extensions;
  3642. if (extensions && extensions[this.name]) {
  3643. var extension = extensions[this.name];
  3644. this._lights = extension.lights;
  3645. }
  3646. };
  3647. /** @hidden */
  3648. EXT_lights_image_based.prototype.loadSceneAsync = function (context, scene) {
  3649. var _this = this;
  3650. return GLTF2.GLTFLoader.LoadExtensionAsync(context, scene, this.name, function (extensionContext, extension) {
  3651. var promises = new Array();
  3652. promises.push(_this._loader.loadSceneAsync(context, scene));
  3653. _this._loader.logOpen("" + extensionContext);
  3654. var light = GLTF2.ArrayItem.Get(extensionContext + "/light", _this._lights, extension.light);
  3655. promises.push(_this._loadLightAsync("#/extensions/" + _this.name + "/lights/" + extension.light, light).then(function (texture) {
  3656. _this._loader.babylonScene.environmentTexture = texture;
  3657. }));
  3658. _this._loader.logClose();
  3659. return Promise.all(promises).then(function () { });
  3660. });
  3661. };
  3662. EXT_lights_image_based.prototype._loadLightAsync = function (context, light) {
  3663. var _this = this;
  3664. if (!light._loaded) {
  3665. var promises = new Array();
  3666. this._loader.logOpen("" + context);
  3667. var imageData_1 = new Array(light.specularImages.length);
  3668. var _loop_1 = function (mipmap) {
  3669. var faces = light.specularImages[mipmap];
  3670. imageData_1[mipmap] = new Array(faces.length);
  3671. var _loop_2 = function (face) {
  3672. var specularImageContext = context + "/specularImages/" + mipmap + "/" + face;
  3673. this_1._loader.logOpen("" + specularImageContext);
  3674. var index = faces[face];
  3675. var image = GLTF2.ArrayItem.Get(specularImageContext, this_1._loader.gltf.images, index);
  3676. promises.push(this_1._loader.loadImageAsync("#/images/" + index, image).then(function (data) {
  3677. imageData_1[mipmap][face] = data;
  3678. }));
  3679. this_1._loader.logClose();
  3680. };
  3681. for (var face = 0; face < faces.length; face++) {
  3682. _loop_2(face);
  3683. }
  3684. };
  3685. var this_1 = this;
  3686. for (var mipmap = 0; mipmap < light.specularImages.length; mipmap++) {
  3687. _loop_1(mipmap);
  3688. }
  3689. this._loader.logClose();
  3690. light._loaded = Promise.all(promises).then(function () {
  3691. var babylonTexture = new BABYLON.RawCubeTexture(_this._loader.babylonScene, null, light.specularImageSize);
  3692. light._babylonTexture = babylonTexture;
  3693. if (light.intensity != undefined) {
  3694. babylonTexture.level = light.intensity;
  3695. }
  3696. if (light.rotation) {
  3697. var rotation = BABYLON.Quaternion.FromArray(light.rotation);
  3698. // Invert the rotation so that positive rotation is counter-clockwise.
  3699. if (!_this._loader.babylonScene.useRightHandedSystem) {
  3700. rotation = BABYLON.Quaternion.Inverse(rotation);
  3701. }
  3702. BABYLON.Matrix.FromQuaternionToRef(rotation, babylonTexture.getReflectionTextureMatrix());
  3703. }
  3704. var sphericalHarmonics = BABYLON.SphericalHarmonics.FromArray(light.irradianceCoefficients);
  3705. sphericalHarmonics.scale(light.intensity);
  3706. sphericalHarmonics.convertIrradianceToLambertianRadiance();
  3707. var sphericalPolynomial = BABYLON.SphericalPolynomial.FromHarmonics(sphericalHarmonics);
  3708. // Compute the lod generation scale to fit exactly to the number of levels available.
  3709. var lodGenerationScale = (imageData_1.length - 1) / BABYLON.Scalar.Log2(light.specularImageSize);
  3710. return babylonTexture.updateRGBDAsync(imageData_1, sphericalPolynomial, lodGenerationScale);
  3711. });
  3712. }
  3713. return light._loaded.then(function () {
  3714. return light._babylonTexture;
  3715. });
  3716. };
  3717. return EXT_lights_image_based;
  3718. }());
  3719. Extensions.EXT_lights_image_based = EXT_lights_image_based;
  3720. GLTF2.GLTFLoader.RegisterExtension(NAME, function (loader) { return new EXT_lights_image_based(loader); });
  3721. })(Extensions = Loader.Extensions || (Loader.Extensions = {}));
  3722. })(Loader = GLTF2.Loader || (GLTF2.Loader = {}));
  3723. })(GLTF2 = BABYLON.GLTF2 || (BABYLON.GLTF2 = {}));
  3724. })(BABYLON || (BABYLON = {}));
  3725. //# sourceMappingURL=EXT_lights_image_based.js.map