babylon.engine.ts 242 KB

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  1. module BABYLON {
  2. var compileShader = (gl: WebGLRenderingContext, source: string, type: string, defines: Nullable<string>, shaderVersion: string): WebGLShader => {
  3. return compileRawShader(gl, shaderVersion + (defines ? defines + "\n" : "") + source, type);
  4. };
  5. var compileRawShader = (gl: WebGLRenderingContext, source: string, type: string): WebGLShader => {
  6. var shader = gl.createShader(type === "vertex" ? gl.VERTEX_SHADER : gl.FRAGMENT_SHADER);
  7. gl.shaderSource(shader, source);
  8. gl.compileShader(shader);
  9. if (!gl.getShaderParameter(shader, gl.COMPILE_STATUS)) {
  10. let log = gl.getShaderInfoLog(shader);
  11. if (log) {
  12. throw new Error(log);
  13. }
  14. }
  15. if (!shader) {
  16. throw new Error("Something went wrong while compile the shader.");
  17. }
  18. return shader;
  19. };
  20. var getSamplingParameters = (samplingMode: number, generateMipMaps: boolean, gl: WebGLRenderingContext): { min: number; mag: number } => {
  21. var magFilter = gl.NEAREST;
  22. var minFilter = gl.NEAREST;
  23. switch (samplingMode) {
  24. case Texture.BILINEAR_SAMPLINGMODE:
  25. magFilter = gl.LINEAR;
  26. if (generateMipMaps) {
  27. minFilter = gl.LINEAR_MIPMAP_NEAREST;
  28. } else {
  29. minFilter = gl.LINEAR;
  30. }
  31. break;
  32. case Texture.TRILINEAR_SAMPLINGMODE:
  33. magFilter = gl.LINEAR;
  34. if (generateMipMaps) {
  35. minFilter = gl.LINEAR_MIPMAP_LINEAR;
  36. } else {
  37. minFilter = gl.LINEAR;
  38. }
  39. break;
  40. case Texture.NEAREST_SAMPLINGMODE:
  41. magFilter = gl.NEAREST;
  42. if (generateMipMaps) {
  43. minFilter = gl.NEAREST_MIPMAP_LINEAR;
  44. } else {
  45. minFilter = gl.NEAREST;
  46. }
  47. break;
  48. case Texture.NEAREST_NEAREST_MIPNEAREST:
  49. magFilter = gl.NEAREST;
  50. if (generateMipMaps) {
  51. minFilter = gl.NEAREST_MIPMAP_NEAREST;
  52. } else {
  53. minFilter = gl.NEAREST;
  54. }
  55. break;
  56. case Texture.NEAREST_LINEAR_MIPNEAREST:
  57. magFilter = gl.NEAREST;
  58. if (generateMipMaps) {
  59. minFilter = gl.LINEAR_MIPMAP_NEAREST;
  60. } else {
  61. minFilter = gl.LINEAR;
  62. }
  63. break;
  64. case Texture.NEAREST_LINEAR_MIPLINEAR:
  65. magFilter = gl.NEAREST;
  66. if (generateMipMaps) {
  67. minFilter = gl.LINEAR_MIPMAP_LINEAR;
  68. } else {
  69. minFilter = gl.LINEAR;
  70. }
  71. break;
  72. case Texture.NEAREST_LINEAR:
  73. magFilter = gl.NEAREST;
  74. minFilter = gl.LINEAR;
  75. break;
  76. case Texture.NEAREST_NEAREST:
  77. magFilter = gl.NEAREST;
  78. minFilter = gl.NEAREST;
  79. break;
  80. case Texture.LINEAR_NEAREST_MIPNEAREST:
  81. magFilter = gl.LINEAR;
  82. if (generateMipMaps) {
  83. minFilter = gl.NEAREST_MIPMAP_NEAREST;
  84. } else {
  85. minFilter = gl.NEAREST;
  86. }
  87. break;
  88. case Texture.LINEAR_NEAREST_MIPLINEAR:
  89. magFilter = gl.LINEAR;
  90. if (generateMipMaps) {
  91. minFilter = gl.NEAREST_MIPMAP_LINEAR;
  92. } else {
  93. minFilter = gl.NEAREST;
  94. }
  95. break;
  96. case Texture.LINEAR_LINEAR:
  97. magFilter = gl.LINEAR;
  98. minFilter = gl.LINEAR;
  99. break;
  100. case Texture.LINEAR_NEAREST:
  101. magFilter = gl.LINEAR;
  102. minFilter = gl.NEAREST;
  103. break;
  104. }
  105. return {
  106. min: minFilter,
  107. mag: magFilter
  108. }
  109. }
  110. var partialLoadImg = (url: string, index: number, loadedImages: HTMLImageElement[], scene: Nullable<Scene>,
  111. onfinish: (images: HTMLImageElement[]) => void, onErrorCallBack: Nullable<(message?: string, exception?: any) => void> = null) => {
  112. var img: HTMLImageElement;
  113. var onload = () => {
  114. loadedImages[index] = img;
  115. (<any>loadedImages)._internalCount++;
  116. if (scene) {
  117. scene._removePendingData(img);
  118. }
  119. if ((<any>loadedImages)._internalCount === 6) {
  120. onfinish(loadedImages);
  121. }
  122. };
  123. var onerror = (message?: string, exception?: any) => {
  124. if (scene) {
  125. scene._removePendingData(img);
  126. }
  127. if (onErrorCallBack) {
  128. onErrorCallBack(message, exception);
  129. }
  130. };
  131. img = Tools.LoadImage(url, onload, onerror, scene ? scene.database : null);
  132. if (scene) {
  133. scene._addPendingData(img);
  134. }
  135. }
  136. var cascadeLoadImgs = (rootUrl: string, scene: Nullable<Scene>,
  137. onfinish: (images: HTMLImageElement[]) => void, files: string[], onError: Nullable<(message?: string, exception?: any) => void> = null) => {
  138. var loadedImages: HTMLImageElement[] = [];
  139. (<any>loadedImages)._internalCount = 0;
  140. for (let index = 0; index < 6; index++) {
  141. partialLoadImg(files[index], index, loadedImages, scene, onfinish, onError);
  142. }
  143. };
  144. class BufferPointer {
  145. public active: boolean;
  146. public index: number;
  147. public size: number;
  148. public type: number;
  149. public normalized: boolean;
  150. public stride: number;
  151. public offset: number;
  152. public buffer: WebGLBuffer;
  153. }
  154. export class InstancingAttributeInfo {
  155. /**
  156. * Index/offset of the attribute in the vertex shader
  157. */
  158. index: number;
  159. /**
  160. * size of the attribute, 1, 2, 3 or 4
  161. */
  162. attributeSize: number;
  163. /**
  164. * type of the attribute, gl.BYTE, gl.UNSIGNED_BYTE, gl.SHORT, gl.UNSIGNED_SHORT, gl.FIXED, gl.FLOAT.
  165. * default is FLOAT
  166. */
  167. attribyteType: number;
  168. /**
  169. * normalization of fixed-point data. behavior unclear, use FALSE, default is FALSE
  170. */
  171. normalized: boolean;
  172. /**
  173. * Offset of the data in the Vertex Buffer acting as the instancing buffer
  174. */
  175. offset: number;
  176. /**
  177. * Name of the GLSL attribute, for debugging purpose only
  178. */
  179. attributeName: string;
  180. }
  181. /**
  182. * Define options used to create a render target texture
  183. */
  184. export class RenderTargetCreationOptions {
  185. generateMipMaps?: boolean;
  186. generateDepthBuffer?: boolean;
  187. generateStencilBuffer?: boolean;
  188. type?: number;
  189. samplingMode?: number;
  190. }
  191. /**
  192. * Regroup several parameters relative to the browser in use
  193. */
  194. export class EngineCapabilities {
  195. /** The maximum textures image */
  196. public maxTexturesImageUnits: number;
  197. public maxVertexTextureImageUnits: number;
  198. public maxCombinedTexturesImageUnits: number;
  199. /** The maximum texture size */
  200. public maxTextureSize: number;
  201. public maxCubemapTextureSize: number;
  202. public maxRenderTextureSize: number;
  203. public maxVertexAttribs: number;
  204. public maxVaryingVectors: number;
  205. public maxVertexUniformVectors: number;
  206. public maxFragmentUniformVectors: number;
  207. public standardDerivatives: boolean;
  208. public s3tc: Nullable<WEBGL_compressed_texture_s3tc>;
  209. public pvrtc: any; //WEBGL_compressed_texture_pvrtc;
  210. public etc1: any; //WEBGL_compressed_texture_etc1;
  211. public etc2: any; //WEBGL_compressed_texture_etc;
  212. public astc: any; //WEBGL_compressed_texture_astc;
  213. public textureFloat: boolean;
  214. public vertexArrayObject: boolean;
  215. public textureAnisotropicFilterExtension: Nullable<EXT_texture_filter_anisotropic>;
  216. public maxAnisotropy: number;
  217. public instancedArrays: boolean;
  218. public uintIndices: boolean;
  219. public highPrecisionShaderSupported: boolean;
  220. public fragmentDepthSupported: boolean;
  221. public textureFloatLinearFiltering: boolean;
  222. public textureFloatRender: boolean;
  223. public textureHalfFloat: boolean;
  224. public textureHalfFloatLinearFiltering: boolean;
  225. public textureHalfFloatRender: boolean;
  226. public textureLOD: boolean;
  227. public drawBuffersExtension: boolean;
  228. public depthTextureExtension: boolean;
  229. public colorBufferFloat: boolean;
  230. public timerQuery: EXT_disjoint_timer_query;
  231. public canUseTimestampForTimerQuery: boolean;
  232. }
  233. export interface EngineOptions extends WebGLContextAttributes {
  234. limitDeviceRatio?: number;
  235. autoEnableWebVR?: boolean;
  236. disableWebGL2Support?: boolean;
  237. audioEngine?: boolean;
  238. deterministicLockstep?: boolean;
  239. lockstepMaxSteps?: number;
  240. doNotHandleContextLost?: boolean;
  241. }
  242. export interface IDisplayChangedEventArgs {
  243. vrDisplay: any;
  244. vrSupported: boolean;
  245. }
  246. /**
  247. * The engine class is responsible for interfacing with all lower-level APIs such as WebGL and Audio.
  248. */
  249. export class Engine {
  250. /** Use this array to turn off some WebGL2 features on known buggy browsers version */
  251. public static ExceptionList = [
  252. { key: "Chrome/63.0", capture: "63\\.0\\.3239\\.(\\d+)", captureConstraint: 108, targets: ["uniformBuffer"] },
  253. { key: "Firefox/58", capture: null, captureConstraint: null, targets: ["uniformBuffer"] },
  254. { key: "Macintosh", capture: null, captureConstraint: null, targets: ["textureBindingOptimization"] },
  255. ];
  256. public static Instances = new Array<Engine>();
  257. public static get LastCreatedEngine(): Nullable<Engine> {
  258. if (Engine.Instances.length === 0) {
  259. return null;
  260. }
  261. return Engine.Instances[Engine.Instances.length - 1];
  262. }
  263. public static get LastCreatedScene(): Nullable<Scene> {
  264. var lastCreatedEngine = Engine.LastCreatedEngine;
  265. if (!lastCreatedEngine) {
  266. return null;
  267. }
  268. if (lastCreatedEngine.scenes.length === 0) {
  269. return null;
  270. }
  271. return lastCreatedEngine.scenes[lastCreatedEngine.scenes.length - 1];
  272. }
  273. /**
  274. * Will flag all materials in all scenes in all engines as dirty to trigger new shader compilation
  275. */
  276. public static MarkAllMaterialsAsDirty(flag: number, predicate?: (mat: Material) => boolean): void {
  277. for (var engineIndex = 0; engineIndex < Engine.Instances.length; engineIndex++) {
  278. var engine = Engine.Instances[engineIndex];
  279. for (var sceneIndex = 0; sceneIndex < engine.scenes.length; sceneIndex++) {
  280. engine.scenes[sceneIndex].markAllMaterialsAsDirty(flag, predicate);
  281. }
  282. }
  283. }
  284. // Const statics
  285. private static _ALPHA_DISABLE = 0;
  286. private static _ALPHA_ADD = 1;
  287. private static _ALPHA_COMBINE = 2;
  288. private static _ALPHA_SUBTRACT = 3;
  289. private static _ALPHA_MULTIPLY = 4;
  290. private static _ALPHA_MAXIMIZED = 5;
  291. private static _ALPHA_ONEONE = 6;
  292. private static _ALPHA_PREMULTIPLIED = 7;
  293. private static _ALPHA_PREMULTIPLIED_PORTERDUFF = 8;
  294. private static _ALPHA_INTERPOLATE = 9;
  295. private static _ALPHA_SCREENMODE = 10;
  296. private static _DELAYLOADSTATE_NONE = 0;
  297. private static _DELAYLOADSTATE_LOADED = 1;
  298. private static _DELAYLOADSTATE_LOADING = 2;
  299. private static _DELAYLOADSTATE_NOTLOADED = 4;
  300. private static _TEXTUREFORMAT_ALPHA = 0;
  301. private static _TEXTUREFORMAT_LUMINANCE = 1;
  302. private static _TEXTUREFORMAT_LUMINANCE_ALPHA = 2;
  303. private static _TEXTUREFORMAT_RGB = 4;
  304. private static _TEXTUREFORMAT_RGBA = 5;
  305. private static _TEXTURETYPE_UNSIGNED_INT = 0;
  306. private static _TEXTURETYPE_FLOAT = 1;
  307. private static _TEXTURETYPE_HALF_FLOAT = 2;
  308. // Depht or Stencil test Constants.
  309. private static _NEVER = 0x0200; // Passed to depthFunction or stencilFunction to specify depth or stencil tests will never pass. i.e. Nothing will be drawn.
  310. private static _ALWAYS = 0x0207; // Passed to depthFunction or stencilFunction to specify depth or stencil tests will always pass. i.e. Pixels will be drawn in the order they are drawn.
  311. private static _LESS = 0x0201; // Passed to depthFunction or stencilFunction to specify depth or stencil tests will pass if the new depth value is less than the stored value.
  312. private static _EQUAL = 0x0202; // Passed to depthFunction or stencilFunction to specify depth or stencil tests will pass if the new depth value is equals to the stored value.
  313. private static _LEQUAL = 0x0203; // Passed to depthFunction or stencilFunction to specify depth or stencil tests will pass if the new depth value is less than or equal to the stored value.
  314. private static _GREATER = 0x0204; // Passed to depthFunction or stencilFunction to specify depth or stencil tests will pass if the new depth value is greater than the stored value.
  315. private static _GEQUAL = 0x0206; // Passed to depthFunction or stencilFunction to specify depth or stencil tests will pass if the new depth value is greater than or equal to the stored value.
  316. private static _NOTEQUAL = 0x0205; // Passed to depthFunction or stencilFunction to specify depth or stencil tests will pass if the new depth value is not equal to the stored value.
  317. public static get NEVER(): number {
  318. return Engine._NEVER;
  319. }
  320. public static get ALWAYS(): number {
  321. return Engine._ALWAYS;
  322. }
  323. public static get LESS(): number {
  324. return Engine._LESS;
  325. }
  326. public static get EQUAL(): number {
  327. return Engine._EQUAL;
  328. }
  329. public static get LEQUAL(): number {
  330. return Engine._LEQUAL;
  331. }
  332. public static get GREATER(): number {
  333. return Engine._GREATER;
  334. }
  335. public static get GEQUAL(): number {
  336. return Engine._GEQUAL;
  337. }
  338. public static get NOTEQUAL(): number {
  339. return Engine._NOTEQUAL;
  340. }
  341. // Stencil Actions Constants.
  342. private static _KEEP = 0x1E00;
  343. private static _REPLACE = 0x1E01;
  344. private static _INCR = 0x1E02;
  345. private static _DECR = 0x1E03;
  346. private static _INVERT = 0x150A;
  347. private static _INCR_WRAP = 0x8507;
  348. private static _DECR_WRAP = 0x8508;
  349. public static get KEEP(): number {
  350. return Engine._KEEP;
  351. }
  352. public static get REPLACE(): number {
  353. return Engine._REPLACE;
  354. }
  355. public static get INCR(): number {
  356. return Engine._INCR;
  357. }
  358. public static get DECR(): number {
  359. return Engine._DECR;
  360. }
  361. public static get INVERT(): number {
  362. return Engine._INVERT;
  363. }
  364. public static get INCR_WRAP(): number {
  365. return Engine._INCR_WRAP;
  366. }
  367. public static get DECR_WRAP(): number {
  368. return Engine._DECR_WRAP;
  369. }
  370. public static get ALPHA_DISABLE(): number {
  371. return Engine._ALPHA_DISABLE;
  372. }
  373. public static get ALPHA_ONEONE(): number {
  374. return Engine._ALPHA_ONEONE;
  375. }
  376. public static get ALPHA_ADD(): number {
  377. return Engine._ALPHA_ADD;
  378. }
  379. public static get ALPHA_COMBINE(): number {
  380. return Engine._ALPHA_COMBINE;
  381. }
  382. public static get ALPHA_SUBTRACT(): number {
  383. return Engine._ALPHA_SUBTRACT;
  384. }
  385. public static get ALPHA_MULTIPLY(): number {
  386. return Engine._ALPHA_MULTIPLY;
  387. }
  388. public static get ALPHA_MAXIMIZED(): number {
  389. return Engine._ALPHA_MAXIMIZED;
  390. }
  391. public static get ALPHA_PREMULTIPLIED(): number {
  392. return Engine._ALPHA_PREMULTIPLIED;
  393. }
  394. public static get ALPHA_PREMULTIPLIED_PORTERDUFF(): number {
  395. return Engine._ALPHA_PREMULTIPLIED_PORTERDUFF;
  396. }
  397. public static get ALPHA_INTERPOLATE(): number {
  398. return Engine._ALPHA_INTERPOLATE;
  399. }
  400. public static get ALPHA_SCREENMODE(): number {
  401. return Engine._ALPHA_SCREENMODE;
  402. }
  403. public static get DELAYLOADSTATE_NONE(): number {
  404. return Engine._DELAYLOADSTATE_NONE;
  405. }
  406. public static get DELAYLOADSTATE_LOADED(): number {
  407. return Engine._DELAYLOADSTATE_LOADED;
  408. }
  409. public static get DELAYLOADSTATE_LOADING(): number {
  410. return Engine._DELAYLOADSTATE_LOADING;
  411. }
  412. public static get DELAYLOADSTATE_NOTLOADED(): number {
  413. return Engine._DELAYLOADSTATE_NOTLOADED;
  414. }
  415. public static get TEXTUREFORMAT_ALPHA(): number {
  416. return Engine._TEXTUREFORMAT_ALPHA;
  417. }
  418. public static get TEXTUREFORMAT_LUMINANCE(): number {
  419. return Engine._TEXTUREFORMAT_LUMINANCE;
  420. }
  421. public static get TEXTUREFORMAT_LUMINANCE_ALPHA(): number {
  422. return Engine._TEXTUREFORMAT_LUMINANCE_ALPHA;
  423. }
  424. public static get TEXTUREFORMAT_RGB(): number {
  425. return Engine._TEXTUREFORMAT_RGB;
  426. }
  427. public static get TEXTUREFORMAT_RGBA(): number {
  428. return Engine._TEXTUREFORMAT_RGBA;
  429. }
  430. public static get TEXTURETYPE_UNSIGNED_INT(): number {
  431. return Engine._TEXTURETYPE_UNSIGNED_INT;
  432. }
  433. public static get TEXTURETYPE_FLOAT(): number {
  434. return Engine._TEXTURETYPE_FLOAT;
  435. }
  436. public static get TEXTURETYPE_HALF_FLOAT(): number {
  437. return Engine._TEXTURETYPE_HALF_FLOAT;
  438. }
  439. // Texture rescaling mode
  440. private static _SCALEMODE_FLOOR = 1;
  441. private static _SCALEMODE_NEAREST = 2;
  442. private static _SCALEMODE_CEILING = 3;
  443. public static get SCALEMODE_FLOOR(): number {
  444. return Engine._SCALEMODE_FLOOR;
  445. }
  446. public static get SCALEMODE_NEAREST(): number {
  447. return Engine._SCALEMODE_NEAREST;
  448. }
  449. public static get SCALEMODE_CEILING(): number {
  450. return Engine._SCALEMODE_CEILING;
  451. }
  452. public static get Version(): string {
  453. return "3.2.0-alpha5";
  454. }
  455. // Updatable statics so stick with vars here
  456. public static CollisionsEpsilon = 0.001;
  457. public static CodeRepository = "src/";
  458. public static ShadersRepository = "src/Shaders/";
  459. // Public members
  460. public forcePOTTextures = false;
  461. public isFullscreen = false;
  462. public isPointerLock = false;
  463. public cullBackFaces = true;
  464. public renderEvenInBackground = true;
  465. public preventCacheWipeBetweenFrames = false;
  466. // To enable/disable IDB support and avoid XHR on .manifest
  467. public enableOfflineSupport = false;
  468. public scenes = new Array<Scene>();
  469. public postProcesses = new Array<PostProcess>();
  470. // Observables
  471. /**
  472. * Observable event triggered each time the rendering canvas is resized
  473. */
  474. public onResizeObservable = new Observable<Engine>();
  475. /**
  476. * Observable event triggered each time the canvas loses focus
  477. */
  478. public onCanvasBlurObservable = new Observable<Engine>();
  479. /**
  480. * Observable event triggered each time the canvas gains focus
  481. */
  482. public onCanvasFocusObservable = new Observable<Engine>();
  483. /**
  484. * Observable event triggered each time the canvas receives pointerout event
  485. */
  486. public onCanvasPointerOutObservable = new Observable<Engine>();
  487. /**
  488. * Observable event triggered before each texture is initialized
  489. */
  490. public onBeforeTextureInitObservable = new Observable<Texture>();
  491. //WebVR
  492. private _vrDisplay: any = undefined;
  493. private _vrSupported: boolean = false;
  494. private _oldSize: Size;
  495. private _oldHardwareScaleFactor: number;
  496. private _vrExclusivePointerMode = false;
  497. public get isInVRExclusivePointerMode(): boolean {
  498. return this._vrExclusivePointerMode;
  499. }
  500. // Uniform buffers list
  501. public disableUniformBuffers = false;
  502. public _uniformBuffers = new Array<UniformBuffer>();
  503. public get supportsUniformBuffers(): boolean {
  504. return this.webGLVersion > 1 && !this.disableUniformBuffers;
  505. }
  506. // Observables
  507. /**
  508. * Observable raised when the engine begins a new frame
  509. */
  510. public onBeginFrameObservable = new Observable<Engine>();
  511. /**
  512. * Observable raised when the engine ends the current frame
  513. */
  514. public onEndFrameObservable = new Observable<Engine>();
  515. /**
  516. * Observable raised when the engine is about to compile a shader
  517. */
  518. public onBeforeShaderCompilationObservable = new Observable<Engine>();
  519. /**
  520. * Observable raised when the engine has jsut compiled a shader
  521. */
  522. public onAfterShaderCompilationObservable = new Observable<Engine>();
  523. // Private Members
  524. private _gl: WebGLRenderingContext;
  525. private _renderingCanvas: Nullable<HTMLCanvasElement>;
  526. private _windowIsBackground = false;
  527. private _webGLVersion = 1.0;
  528. public get needPOTTextures(): boolean {
  529. return this._webGLVersion < 2 || this.forcePOTTextures;
  530. }
  531. private _badOS = false;
  532. public get badOS(): boolean {
  533. return this._badOS;
  534. }
  535. private _badDesktopOS = false;
  536. public get badDesktopOS(): boolean {
  537. return this._badDesktopOS;
  538. }
  539. /**
  540. * Gets or sets a value indicating if we want to disable texture binding optmization.
  541. * This could be required on some buggy drivers which wants to have textures bound in a progressive order
  542. * By default Babylon.js will try to let textures bound where they are and only update the samplers to point where the texture is.
  543. */
  544. public disableTextureBindingOptimization = false;
  545. public static audioEngine: AudioEngine;
  546. // Focus
  547. private _onFocus: () => void;
  548. private _onBlur: () => void;
  549. private _onCanvasPointerOut: () => void;
  550. private _onCanvasBlur: () => void;
  551. private _onCanvasFocus: () => void;
  552. private _onFullscreenChange: () => void;
  553. private _onPointerLockChange: () => void;
  554. private _onVRDisplayPointerRestricted: () => void;
  555. private _onVRDisplayPointerUnrestricted: () => void;
  556. // VRDisplay connection
  557. private _onVrDisplayConnect: Nullable<(display: any) => void>;
  558. private _onVrDisplayDisconnect: Nullable<() => void>;
  559. private _onVrDisplayPresentChange: Nullable<() => void>;
  560. public onVRDisplayChangedObservable = new Observable<IDisplayChangedEventArgs>();
  561. public onVRRequestPresentComplete = new Observable<boolean>();
  562. public onVRRequestPresentStart = new Observable<Engine>();
  563. private _hardwareScalingLevel: number;
  564. protected _caps: EngineCapabilities;
  565. private _pointerLockRequested: boolean;
  566. private _isStencilEnable: boolean;
  567. private _colorWrite = true;
  568. private _loadingScreen: ILoadingScreen;
  569. public _drawCalls = new PerfCounter();
  570. public _textureCollisions = new PerfCounter();
  571. private _glVersion: string;
  572. private _glRenderer: string;
  573. private _glVendor: string;
  574. private _videoTextureSupported: boolean;
  575. private _renderingQueueLaunched = false;
  576. private _activeRenderLoops = new Array<() => void>();
  577. // Deterministic lockstepMaxSteps
  578. private _deterministicLockstep: boolean = false;
  579. private _lockstepMaxSteps: number = 4;
  580. // Lost context
  581. public onContextLostObservable = new Observable<Engine>();
  582. public onContextRestoredObservable = new Observable<Engine>();
  583. private _onContextLost: (evt: Event) => void;
  584. private _onContextRestored: (evt: Event) => void;
  585. private _contextWasLost = false;
  586. private _doNotHandleContextLost = false;
  587. // FPS
  588. private _performanceMonitor = new PerformanceMonitor();
  589. private _fps = 60;
  590. private _deltaTime = 0;
  591. /**
  592. * Turn this value on if you want to pause FPS computation when in background
  593. */
  594. public disablePerformanceMonitorInBackground = false;
  595. public get performanceMonitor(): PerformanceMonitor {
  596. return this._performanceMonitor;
  597. }
  598. // States
  599. protected _depthCullingState = new _DepthCullingState();
  600. protected _stencilState = new _StencilState();
  601. protected _alphaState = new _AlphaState();
  602. protected _alphaMode = Engine.ALPHA_DISABLE;
  603. // Cache
  604. private _internalTexturesCache = new Array<InternalTexture>();
  605. protected _activeChannel = 0;
  606. private _currentTextureChannel = -1;
  607. protected _boundTexturesCache: { [key: string]: Nullable<InternalTexture> } = {};
  608. protected _currentEffect: Nullable<Effect>;
  609. protected _currentProgram: Nullable<WebGLProgram>;
  610. private _compiledEffects: { [key: string]: Effect } = {}
  611. private _vertexAttribArraysEnabled: boolean[] = [];
  612. protected _cachedViewport: Nullable<Viewport>;
  613. private _cachedVertexArrayObject: Nullable<WebGLVertexArrayObject>;
  614. protected _cachedVertexBuffers: any;
  615. protected _cachedIndexBuffer: Nullable<WebGLBuffer>;
  616. protected _cachedEffectForVertexBuffers: Nullable<Effect>;
  617. protected _currentRenderTarget: Nullable<InternalTexture>;
  618. private _uintIndicesCurrentlySet = false;
  619. private _currentBoundBuffer = new Array<Nullable<WebGLBuffer>>();
  620. protected _currentFramebuffer: Nullable<WebGLFramebuffer>;
  621. private _currentBufferPointers = new Array<BufferPointer>();
  622. private _currentInstanceLocations = new Array<number>();
  623. private _currentInstanceBuffers = new Array<WebGLBuffer>();
  624. private _textureUnits: Int32Array;
  625. private _firstBoundInternalTextureTracker = new DummyInternalTextureTracker();
  626. private _lastBoundInternalTextureTracker = new DummyInternalTextureTracker();
  627. private _workingCanvas: Nullable<HTMLCanvasElement>;
  628. private _workingContext: Nullable<CanvasRenderingContext2D>;
  629. private _rescalePostProcess: PassPostProcess;
  630. private _dummyFramebuffer: WebGLFramebuffer;
  631. private _externalData: StringDictionary<Object>;
  632. private _bindedRenderFunction: any;
  633. private _vaoRecordInProgress = false;
  634. private _mustWipeVertexAttributes = false;
  635. private _emptyTexture: Nullable<InternalTexture>;
  636. private _emptyCubeTexture: Nullable<InternalTexture>;
  637. private _emptyTexture3D: Nullable<InternalTexture>;
  638. private _frameHandler: number;
  639. private _nextFreeTextureSlots = new Array<number>();
  640. private _maxSimultaneousTextures = 0;
  641. private _activeRequests = new Array<IFileRequest>();
  642. // Hardware supported Compressed Textures
  643. private _texturesSupported = new Array<string>();
  644. private _textureFormatInUse: Nullable<string>;
  645. public get texturesSupported(): Array<string> {
  646. return this._texturesSupported;
  647. }
  648. public get textureFormatInUse(): Nullable<string> {
  649. return this._textureFormatInUse;
  650. }
  651. public get currentViewport(): Nullable<Viewport> {
  652. return this._cachedViewport;
  653. }
  654. // Empty texture
  655. public get emptyTexture(): InternalTexture {
  656. if (!this._emptyTexture) {
  657. this._emptyTexture = this.createRawTexture(new Uint8Array(4), 1, 1, Engine.TEXTUREFORMAT_RGBA, false, false, Texture.NEAREST_SAMPLINGMODE);
  658. }
  659. return this._emptyTexture;
  660. }
  661. public get emptyTexture3D(): InternalTexture {
  662. if (!this._emptyTexture3D) {
  663. this._emptyTexture3D = this.createRawTexture3D(new Uint8Array(4), 1, 1, 1, Engine.TEXTUREFORMAT_RGBA, false, false, Texture.NEAREST_SAMPLINGMODE);
  664. }
  665. return this._emptyTexture3D;
  666. }
  667. public get emptyCubeTexture(): InternalTexture {
  668. if (!this._emptyCubeTexture) {
  669. var faceData = new Uint8Array(4);
  670. var cubeData = [faceData, faceData, faceData, faceData, faceData, faceData];
  671. this._emptyCubeTexture = this.createRawCubeTexture(cubeData, 1, Engine.TEXTUREFORMAT_RGBA, Engine.TEXTURETYPE_UNSIGNED_INT, false, false, Texture.NEAREST_SAMPLINGMODE);
  672. }
  673. return this._emptyCubeTexture;
  674. }
  675. /**
  676. * @constructor
  677. * @param canvasOrContext defines the canvas or WebGL context to use for rendering
  678. * @param antialias defines enable antialiasing (default: false)
  679. * @param options defines further options to be sent to the getContext() function
  680. * @param adaptToDeviceRatio defines whether to adapt to the device's viewport characteristics (default: false)
  681. */
  682. constructor(canvasOrContext: Nullable<HTMLCanvasElement | WebGLRenderingContext>, antialias?: boolean, options?: EngineOptions, adaptToDeviceRatio: boolean = false) {
  683. let canvas: Nullable<HTMLCanvasElement> = null;
  684. Engine.Instances.push(this);
  685. if (!canvasOrContext) {
  686. return;
  687. }
  688. options = options || {};
  689. if ((<HTMLCanvasElement>canvasOrContext).getContext) {
  690. canvas = <HTMLCanvasElement>canvasOrContext;
  691. this._renderingCanvas = canvas;
  692. if (antialias != null) {
  693. options.antialias = antialias;
  694. }
  695. if (options.deterministicLockstep === undefined) {
  696. options.deterministicLockstep = false;
  697. }
  698. if (options.lockstepMaxSteps === undefined) {
  699. options.lockstepMaxSteps = 4;
  700. }
  701. if (options.preserveDrawingBuffer === undefined) {
  702. options.preserveDrawingBuffer = false;
  703. }
  704. if (options.audioEngine === undefined) {
  705. options.audioEngine = true;
  706. }
  707. if (options.stencil === undefined) {
  708. options.stencil = true;
  709. }
  710. this._deterministicLockstep = options.deterministicLockstep;
  711. this._lockstepMaxSteps = options.lockstepMaxSteps;
  712. this._doNotHandleContextLost = options.doNotHandleContextLost ? true : false;
  713. // Exceptions
  714. if (navigator && navigator.userAgent) {
  715. let ua = navigator.userAgent;
  716. for (var exception of Engine.ExceptionList) {
  717. let key = exception.key;
  718. let targets = exception.targets;
  719. if (ua.indexOf(key) > -1) {
  720. if (exception.capture && exception.captureConstraint) {
  721. let capture = exception.capture;
  722. let constraint = exception.captureConstraint;
  723. let regex = new RegExp(capture);
  724. let matches = regex.exec(ua);
  725. if (matches && matches.length > 0) {
  726. let capturedValue = parseInt(matches[matches.length - 1]);
  727. if (capturedValue >= constraint) {
  728. continue;
  729. }
  730. }
  731. }
  732. for (var target of targets) {
  733. switch (target) {
  734. case "uniformBuffer":
  735. this.disableUniformBuffers = true;
  736. break;
  737. case "textureBindingOptimization":
  738. this.disableTextureBindingOptimization = true;
  739. break;
  740. }
  741. }
  742. break;
  743. }
  744. }
  745. }
  746. // GL
  747. if (!options.disableWebGL2Support) {
  748. try {
  749. this._gl = <any>(canvas.getContext("webgl2", options) || canvas.getContext("experimental-webgl2", options));
  750. if (this._gl) {
  751. this._webGLVersion = 2.0;
  752. }
  753. } catch (e) {
  754. // Do nothing
  755. }
  756. }
  757. if (!this._gl) {
  758. if (!canvas) {
  759. throw new Error("The provided canvas is null or undefined.");
  760. }
  761. try {
  762. this._gl = <WebGLRenderingContext>(canvas.getContext("webgl", options) || canvas.getContext("experimental-webgl", options));
  763. } catch (e) {
  764. throw new Error("WebGL not supported");
  765. }
  766. }
  767. if (!this._gl) {
  768. throw new Error("WebGL not supported");
  769. }
  770. this._onCanvasFocus = () => {
  771. this.onCanvasFocusObservable.notifyObservers(this);
  772. }
  773. this._onCanvasBlur = () => {
  774. this.onCanvasBlurObservable.notifyObservers(this);
  775. }
  776. canvas.addEventListener("focus", this._onCanvasFocus);
  777. canvas.addEventListener("blur", this._onCanvasBlur);
  778. this._onBlur = () => {
  779. if (this.disablePerformanceMonitorInBackground) {
  780. this._performanceMonitor.disable();
  781. }
  782. this._windowIsBackground = true;
  783. };
  784. this._onFocus = () => {
  785. if (this.disablePerformanceMonitorInBackground) {
  786. this._performanceMonitor.enable();
  787. }
  788. this._windowIsBackground = false;
  789. };
  790. this._onCanvasPointerOut = () => {
  791. this.onCanvasPointerOutObservable.notifyObservers(this);
  792. };
  793. window.addEventListener("blur", this._onBlur);
  794. window.addEventListener("focus", this._onFocus);
  795. canvas.addEventListener("pointerout", this._onCanvasPointerOut);
  796. // Context lost
  797. if (!this._doNotHandleContextLost) {
  798. this._onContextLost = (evt: Event) => {
  799. evt.preventDefault();
  800. this._contextWasLost = true;
  801. Tools.Warn("WebGL context lost.");
  802. this.onContextLostObservable.notifyObservers(this);
  803. };
  804. this._onContextRestored = (evt: Event) => {
  805. // Adding a timeout to avoid race condition at browser level
  806. setTimeout(() => {
  807. // Rebuild gl context
  808. this._initGLContext();
  809. // Rebuild effects
  810. this._rebuildEffects();
  811. // Rebuild textures
  812. this._rebuildInternalTextures();
  813. // Rebuild buffers
  814. this._rebuildBuffers();
  815. // Cache
  816. this.wipeCaches(true);
  817. Tools.Warn("WebGL context successfully restored.");
  818. this.onContextRestoredObservable.notifyObservers(this);
  819. this._contextWasLost = false;
  820. }, 0);
  821. };
  822. canvas.addEventListener("webglcontextlost", this._onContextLost, false);
  823. canvas.addEventListener("webglcontextrestored", this._onContextRestored, false);
  824. }
  825. } else {
  826. this._gl = <WebGLRenderingContext>canvasOrContext;
  827. this._renderingCanvas = this._gl.canvas
  828. if (this._gl.renderbufferStorageMultisample) {
  829. this._webGLVersion = 2.0;
  830. }
  831. options.stencil = this._gl.getContextAttributes().stencil;
  832. }
  833. // Viewport
  834. var limitDeviceRatio = options.limitDeviceRatio || window.devicePixelRatio || 1.0;
  835. this._hardwareScalingLevel = adaptToDeviceRatio ? 1.0 / Math.min(limitDeviceRatio, window.devicePixelRatio || 1.0) : 1.0;
  836. this.resize();
  837. this._isStencilEnable = options.stencil ? true : false;
  838. this._initGLContext();
  839. if (canvas) {
  840. // Fullscreen
  841. this._onFullscreenChange = () => {
  842. if (document.fullscreen !== undefined) {
  843. this.isFullscreen = document.fullscreen;
  844. } else if (document.mozFullScreen !== undefined) {
  845. this.isFullscreen = document.mozFullScreen;
  846. } else if (document.webkitIsFullScreen !== undefined) {
  847. this.isFullscreen = document.webkitIsFullScreen;
  848. } else if (document.msIsFullScreen !== undefined) {
  849. this.isFullscreen = document.msIsFullScreen;
  850. }
  851. // Pointer lock
  852. if (this.isFullscreen && this._pointerLockRequested && canvas) {
  853. canvas.requestPointerLock = canvas.requestPointerLock ||
  854. canvas.msRequestPointerLock ||
  855. canvas.mozRequestPointerLock ||
  856. canvas.webkitRequestPointerLock;
  857. if (canvas.requestPointerLock) {
  858. canvas.requestPointerLock();
  859. }
  860. }
  861. };
  862. document.addEventListener("fullscreenchange", this._onFullscreenChange, false);
  863. document.addEventListener("mozfullscreenchange", this._onFullscreenChange, false);
  864. document.addEventListener("webkitfullscreenchange", this._onFullscreenChange, false);
  865. document.addEventListener("msfullscreenchange", this._onFullscreenChange, false);
  866. // Pointer lock
  867. this._onPointerLockChange = () => {
  868. this.isPointerLock = (document.mozPointerLockElement === canvas ||
  869. document.webkitPointerLockElement === canvas ||
  870. document.msPointerLockElement === canvas ||
  871. document.pointerLockElement === canvas
  872. );
  873. };
  874. document.addEventListener("pointerlockchange", this._onPointerLockChange, false);
  875. document.addEventListener("mspointerlockchange", this._onPointerLockChange, false);
  876. document.addEventListener("mozpointerlockchange", this._onPointerLockChange, false);
  877. document.addEventListener("webkitpointerlockchange", this._onPointerLockChange, false);
  878. this._onVRDisplayPointerRestricted = () => {
  879. if (canvas) {
  880. canvas.requestPointerLock();
  881. }
  882. }
  883. this._onVRDisplayPointerUnrestricted = () => {
  884. document.exitPointerLock();
  885. }
  886. window.addEventListener('vrdisplaypointerrestricted', this._onVRDisplayPointerRestricted, false);
  887. window.addEventListener('vrdisplaypointerunrestricted', this._onVRDisplayPointerUnrestricted, false);
  888. }
  889. if (options.audioEngine && AudioEngine && !Engine.audioEngine) {
  890. Engine.audioEngine = new AudioEngine();
  891. }
  892. // Prepare buffer pointers
  893. for (var i = 0; i < this._caps.maxVertexAttribs; i++) {
  894. this._currentBufferPointers[i] = new BufferPointer();
  895. }
  896. this._linkTrackers(this._firstBoundInternalTextureTracker, this._lastBoundInternalTextureTracker);
  897. // Load WebVR Devices
  898. if (options.autoEnableWebVR) {
  899. this.initWebVR();
  900. }
  901. // Detect if we are running on a faulty buggy OS.
  902. this._badOS = /iPad/i.test(navigator.userAgent) || /iPhone/i.test(navigator.userAgent);
  903. // Detect if we are running on a faulty buggy desktop OS.
  904. this._badDesktopOS = /^((?!chrome|android).)*safari/i.test(navigator.userAgent);
  905. Tools.Log("Babylon.js engine (v" + Engine.Version + ") launched");
  906. this.enableOfflineSupport = (Database !== undefined);
  907. }
  908. private _rebuildInternalTextures(): void {
  909. let currentState = this._internalTexturesCache.slice(); // Do a copy because the rebuild will add proxies
  910. for (var internalTexture of currentState) {
  911. internalTexture._rebuild();
  912. }
  913. }
  914. private _rebuildEffects(): void {
  915. for (var key in this._compiledEffects) {
  916. let effect = <Effect>this._compiledEffects[key];
  917. effect._prepareEffect();
  918. }
  919. Effect.ResetCache();
  920. }
  921. private _rebuildBuffers(): void {
  922. // Index / Vertex
  923. for (var scene of this.scenes) {
  924. scene.resetCachedMaterial();
  925. scene._rebuildGeometries();
  926. scene._rebuildTextures();
  927. }
  928. // Uniforms
  929. for (var uniformBuffer of this._uniformBuffers) {
  930. uniformBuffer._rebuild();
  931. }
  932. }
  933. private _initGLContext(): void {
  934. // Caps
  935. this._caps = new EngineCapabilities();
  936. this._caps.maxTexturesImageUnits = this._gl.getParameter(this._gl.MAX_TEXTURE_IMAGE_UNITS);
  937. this._caps.maxCombinedTexturesImageUnits = this._gl.getParameter(this._gl.MAX_COMBINED_TEXTURE_IMAGE_UNITS);
  938. this._caps.maxVertexTextureImageUnits = this._gl.getParameter(this._gl.MAX_VERTEX_TEXTURE_IMAGE_UNITS);
  939. this._caps.maxTextureSize = this._gl.getParameter(this._gl.MAX_TEXTURE_SIZE);
  940. this._caps.maxCubemapTextureSize = this._gl.getParameter(this._gl.MAX_CUBE_MAP_TEXTURE_SIZE);
  941. this._caps.maxRenderTextureSize = this._gl.getParameter(this._gl.MAX_RENDERBUFFER_SIZE);
  942. this._caps.maxVertexAttribs = this._gl.getParameter(this._gl.MAX_VERTEX_ATTRIBS);
  943. this._caps.maxVaryingVectors = this._gl.getParameter(this._gl.MAX_VARYING_VECTORS);
  944. this._caps.maxFragmentUniformVectors = this._gl.getParameter(this._gl.MAX_FRAGMENT_UNIFORM_VECTORS);
  945. this._caps.maxVertexUniformVectors = this._gl.getParameter(this._gl.MAX_VERTEX_UNIFORM_VECTORS);
  946. // Infos
  947. this._glVersion = this._gl.getParameter(this._gl.VERSION);
  948. var rendererInfo: any = this._gl.getExtension("WEBGL_debug_renderer_info");
  949. if (rendererInfo != null) {
  950. this._glRenderer = this._gl.getParameter(rendererInfo.UNMASKED_RENDERER_WEBGL);
  951. this._glVendor = this._gl.getParameter(rendererInfo.UNMASKED_VENDOR_WEBGL);
  952. }
  953. if (!this._glVendor) {
  954. this._glVendor = "Unknown vendor";
  955. }
  956. if (!this._glRenderer) {
  957. this._glRenderer = "Unknown renderer";
  958. }
  959. // Constants
  960. this._gl.HALF_FLOAT_OES = 0x8D61; // Half floating-point type (16-bit).
  961. if (this._gl.RGBA16F !== 0x881A) {
  962. this._gl.RGBA16F = 0x881A; // RGBA 16-bit floating-point color-renderable internal sized format.
  963. }
  964. if (this._gl.RGBA32F !== 0x8814) {
  965. this._gl.RGBA32F = 0x8814; // RGBA 32-bit floating-point color-renderable internal sized format.
  966. }
  967. if (this._gl.DEPTH24_STENCIL8 !== 35056) {
  968. this._gl.DEPTH24_STENCIL8 = 35056;
  969. }
  970. // Extensions
  971. this._caps.standardDerivatives = this._webGLVersion > 1 || (this._gl.getExtension('OES_standard_derivatives') !== null);
  972. this._caps.astc = this._gl.getExtension('WEBGL_compressed_texture_astc') || this._gl.getExtension('WEBKIT_WEBGL_compressed_texture_astc');
  973. this._caps.s3tc = this._gl.getExtension('WEBGL_compressed_texture_s3tc') || this._gl.getExtension('WEBKIT_WEBGL_compressed_texture_s3tc');
  974. this._caps.pvrtc = this._gl.getExtension('WEBGL_compressed_texture_pvrtc') || this._gl.getExtension('WEBKIT_WEBGL_compressed_texture_pvrtc');
  975. this._caps.etc1 = this._gl.getExtension('WEBGL_compressed_texture_etc1') || this._gl.getExtension('WEBKIT_WEBGL_compressed_texture_etc1');
  976. this._caps.etc2 = this._gl.getExtension('WEBGL_compressed_texture_etc') || this._gl.getExtension('WEBKIT_WEBGL_compressed_texture_etc') ||
  977. this._gl.getExtension('WEBGL_compressed_texture_es3_0'); // also a requirement of OpenGL ES 3
  978. this._caps.textureAnisotropicFilterExtension = this._gl.getExtension('EXT_texture_filter_anisotropic') || this._gl.getExtension('WEBKIT_EXT_texture_filter_anisotropic') || this._gl.getExtension('MOZ_EXT_texture_filter_anisotropic');
  979. this._caps.maxAnisotropy = this._caps.textureAnisotropicFilterExtension ? this._gl.getParameter(this._caps.textureAnisotropicFilterExtension.MAX_TEXTURE_MAX_ANISOTROPY_EXT) : 0;
  980. this._caps.uintIndices = this._webGLVersion > 1 || this._gl.getExtension('OES_element_index_uint') !== null;
  981. this._caps.fragmentDepthSupported = this._webGLVersion > 1 || this._gl.getExtension('EXT_frag_depth') !== null;
  982. this._caps.highPrecisionShaderSupported = true;
  983. this._caps.timerQuery = this._gl.getExtension('EXT_disjoint_timer_query_webgl2') || this._gl.getExtension("EXT_disjoint_timer_query");
  984. if (this._caps.timerQuery) {
  985. if (this._webGLVersion === 1) {
  986. this._gl.getQuery = (<any>this._caps.timerQuery).getQueryEXT.bind(this._caps.timerQuery);
  987. }
  988. this._caps.canUseTimestampForTimerQuery = this._gl.getQuery(this._caps.timerQuery.TIMESTAMP_EXT, this._caps.timerQuery.QUERY_COUNTER_BITS_EXT) > 0;
  989. }
  990. // Checks if some of the format renders first to allow the use of webgl inspector.
  991. this._caps.colorBufferFloat = this._webGLVersion > 1 && this._gl.getExtension('EXT_color_buffer_float');
  992. this._caps.textureFloat = this._webGLVersion > 1 || this._gl.getExtension('OES_texture_float');
  993. this._caps.textureFloatLinearFiltering = this._caps.textureFloat && this._gl.getExtension('OES_texture_float_linear');
  994. this._caps.textureFloatRender = this._caps.textureFloat && this._canRenderToFloatFramebuffer();
  995. this._caps.textureHalfFloat = this._webGLVersion > 1 || this._gl.getExtension('OES_texture_half_float');
  996. this._caps.textureHalfFloatLinearFiltering = this._webGLVersion > 1 || (this._caps.textureHalfFloat && this._gl.getExtension('OES_texture_half_float_linear'));
  997. if (this._webGLVersion > 1) {
  998. this._gl.HALF_FLOAT_OES = 0x140B;
  999. }
  1000. this._caps.textureHalfFloatRender = this._caps.textureHalfFloat && this._canRenderToHalfFloatFramebuffer();
  1001. this._caps.textureLOD = this._webGLVersion > 1 || this._gl.getExtension('EXT_shader_texture_lod');
  1002. // Draw buffers
  1003. if (this._webGLVersion > 1) {
  1004. this._caps.drawBuffersExtension = true;
  1005. } else {
  1006. var drawBuffersExtension = this._gl.getExtension('WEBGL_draw_buffers');
  1007. if (drawBuffersExtension !== null) {
  1008. this._caps.drawBuffersExtension = true;
  1009. this._gl.drawBuffers = drawBuffersExtension.drawBuffersWEBGL.bind(drawBuffersExtension);
  1010. this._gl.DRAW_FRAMEBUFFER = this._gl.FRAMEBUFFER;
  1011. for (var i = 0; i < 16; i++) {
  1012. (<any>this._gl)["COLOR_ATTACHMENT" + i + "_WEBGL"] = drawBuffersExtension["COLOR_ATTACHMENT" + i + "_WEBGL"];
  1013. }
  1014. } else {
  1015. this._caps.drawBuffersExtension = false;
  1016. }
  1017. }
  1018. // Depth Texture
  1019. if (this._webGLVersion > 1) {
  1020. this._caps.depthTextureExtension = true;
  1021. } else {
  1022. var depthTextureExtension = this._gl.getExtension('WEBGL_depth_texture');
  1023. if (depthTextureExtension != null) {
  1024. this._caps.depthTextureExtension = true;
  1025. }
  1026. }
  1027. // Vertex array object
  1028. if (this._webGLVersion > 1) {
  1029. this._caps.vertexArrayObject = true;
  1030. } else {
  1031. var vertexArrayObjectExtension = this._gl.getExtension('OES_vertex_array_object');
  1032. if (vertexArrayObjectExtension != null) {
  1033. this._caps.vertexArrayObject = true;
  1034. this._gl.createVertexArray = vertexArrayObjectExtension.createVertexArrayOES.bind(vertexArrayObjectExtension);
  1035. this._gl.bindVertexArray = vertexArrayObjectExtension.bindVertexArrayOES.bind(vertexArrayObjectExtension);
  1036. this._gl.deleteVertexArray = vertexArrayObjectExtension.deleteVertexArrayOES.bind(vertexArrayObjectExtension);
  1037. } else {
  1038. this._caps.vertexArrayObject = false;
  1039. }
  1040. }
  1041. // Instances count
  1042. if (this._webGLVersion > 1) {
  1043. this._caps.instancedArrays = true;
  1044. } else {
  1045. var instanceExtension = <ANGLE_instanced_arrays>this._gl.getExtension('ANGLE_instanced_arrays');
  1046. if (instanceExtension != null) {
  1047. this._caps.instancedArrays = true;
  1048. this._gl.drawArraysInstanced = instanceExtension.drawArraysInstancedANGLE.bind(instanceExtension);
  1049. this._gl.drawElementsInstanced = instanceExtension.drawElementsInstancedANGLE.bind(instanceExtension);
  1050. this._gl.vertexAttribDivisor = instanceExtension.vertexAttribDivisorANGLE.bind(instanceExtension);
  1051. } else {
  1052. this._caps.instancedArrays = false;
  1053. }
  1054. }
  1055. // Intelligently add supported compressed formats in order to check for.
  1056. // Check for ASTC support first as it is most powerful and to be very cross platform.
  1057. // Next PVRTC & DXT, which are probably superior to ETC1/2.
  1058. // Likely no hardware which supports both PVR & DXT, so order matters little.
  1059. // ETC2 is newer and handles ETC1 (no alpha capability), so check for first.
  1060. if (this._caps.astc) this.texturesSupported.push('-astc.ktx');
  1061. if (this._caps.s3tc) this.texturesSupported.push('-dxt.ktx');
  1062. if (this._caps.pvrtc) this.texturesSupported.push('-pvrtc.ktx');
  1063. if (this._caps.etc2) this.texturesSupported.push('-etc2.ktx');
  1064. if (this._caps.etc1) this.texturesSupported.push('-etc1.ktx');
  1065. if (this._gl.getShaderPrecisionFormat) {
  1066. var highp = this._gl.getShaderPrecisionFormat(this._gl.FRAGMENT_SHADER, this._gl.HIGH_FLOAT);
  1067. if (highp) {
  1068. this._caps.highPrecisionShaderSupported = highp.precision !== 0;
  1069. }
  1070. }
  1071. // Depth buffer
  1072. this.setDepthBuffer(true);
  1073. this.setDepthFunctionToLessOrEqual();
  1074. this.setDepthWrite(true);
  1075. // Texture maps
  1076. this._maxSimultaneousTextures = this._caps.maxCombinedTexturesImageUnits;
  1077. for (let slot = 0; slot < this._maxSimultaneousTextures; slot++) {
  1078. this._nextFreeTextureSlots.push(slot);
  1079. }
  1080. }
  1081. public get webGLVersion(): number {
  1082. return this._webGLVersion;
  1083. }
  1084. /**
  1085. * Returns true if the stencil buffer has been enabled through the creation option of the context.
  1086. */
  1087. public get isStencilEnable(): boolean {
  1088. return this._isStencilEnable;
  1089. }
  1090. private _prepareWorkingCanvas(): void {
  1091. if (this._workingCanvas) {
  1092. return;
  1093. }
  1094. this._workingCanvas = document.createElement("canvas");
  1095. let context = this._workingCanvas.getContext("2d");
  1096. if (context) {
  1097. this._workingContext = context;
  1098. }
  1099. }
  1100. public resetTextureCache() {
  1101. for (var key in this._boundTexturesCache) {
  1102. let boundTexture = this._boundTexturesCache[key];
  1103. if (boundTexture) {
  1104. this._removeDesignatedSlot(boundTexture);
  1105. }
  1106. this._boundTexturesCache[key] = null;
  1107. }
  1108. this._nextFreeTextureSlots = [];
  1109. for (let slot = 0; slot < this._maxSimultaneousTextures; slot++) {
  1110. this._nextFreeTextureSlots.push(slot);
  1111. }
  1112. this._currentTextureChannel = -1;
  1113. }
  1114. public isDeterministicLockStep(): boolean {
  1115. return this._deterministicLockstep;
  1116. }
  1117. public getLockstepMaxSteps(): number {
  1118. return this._lockstepMaxSteps;
  1119. }
  1120. public getGlInfo() {
  1121. return {
  1122. vendor: this._glVendor,
  1123. renderer: this._glRenderer,
  1124. version: this._glVersion
  1125. }
  1126. }
  1127. public getAspectRatio(camera: Camera, useScreen = false): number {
  1128. var viewport = camera.viewport;
  1129. return (this.getRenderWidth(useScreen) * viewport.width) / (this.getRenderHeight(useScreen) * viewport.height);
  1130. }
  1131. public getRenderWidth(useScreen = false): number {
  1132. if (!useScreen && this._currentRenderTarget) {
  1133. return this._currentRenderTarget.width;
  1134. }
  1135. return this._gl.drawingBufferWidth;
  1136. }
  1137. public getRenderHeight(useScreen = false): number {
  1138. if (!useScreen && this._currentRenderTarget) {
  1139. return this._currentRenderTarget.height;
  1140. }
  1141. return this._gl.drawingBufferHeight;
  1142. }
  1143. public getRenderingCanvas(): Nullable<HTMLCanvasElement> {
  1144. return this._renderingCanvas;
  1145. }
  1146. public getRenderingCanvasClientRect(): Nullable<ClientRect> {
  1147. if (!this._renderingCanvas) {
  1148. return null;
  1149. }
  1150. return this._renderingCanvas.getBoundingClientRect();
  1151. }
  1152. public setHardwareScalingLevel(level: number): void {
  1153. this._hardwareScalingLevel = level;
  1154. this.resize();
  1155. }
  1156. public getHardwareScalingLevel(): number {
  1157. return this._hardwareScalingLevel;
  1158. }
  1159. public getLoadedTexturesCache(): InternalTexture[] {
  1160. return this._internalTexturesCache;
  1161. }
  1162. public getCaps(): EngineCapabilities {
  1163. return this._caps;
  1164. }
  1165. /** The number of draw calls submitted last frame */
  1166. public get drawCalls(): number {
  1167. Tools.Warn("drawCalls is deprecated. Please use SceneInstrumentation class");
  1168. return 0;
  1169. }
  1170. public get drawCallsPerfCounter(): Nullable<PerfCounter> {
  1171. Tools.Warn("drawCallsPerfCounter is deprecated. Please use SceneInstrumentation class");
  1172. return null;
  1173. }
  1174. public getDepthFunction(): Nullable<number> {
  1175. return this._depthCullingState.depthFunc;
  1176. }
  1177. public setDepthFunction(depthFunc: number) {
  1178. this._depthCullingState.depthFunc = depthFunc;
  1179. }
  1180. public setDepthFunctionToGreater(): void {
  1181. this._depthCullingState.depthFunc = this._gl.GREATER;
  1182. }
  1183. public setDepthFunctionToGreaterOrEqual(): void {
  1184. this._depthCullingState.depthFunc = this._gl.GEQUAL;
  1185. }
  1186. public setDepthFunctionToLess(): void {
  1187. this._depthCullingState.depthFunc = this._gl.LESS;
  1188. }
  1189. public setDepthFunctionToLessOrEqual(): void {
  1190. this._depthCullingState.depthFunc = this._gl.LEQUAL;
  1191. }
  1192. public getStencilBuffer(): boolean {
  1193. return this._stencilState.stencilTest;
  1194. }
  1195. public setStencilBuffer(enable: boolean): void {
  1196. this._stencilState.stencilTest = enable;
  1197. }
  1198. public getStencilMask(): number {
  1199. return this._stencilState.stencilMask;
  1200. }
  1201. public setStencilMask(mask: number): void {
  1202. this._stencilState.stencilMask = mask;
  1203. }
  1204. public getStencilFunction(): number {
  1205. return this._stencilState.stencilFunc;
  1206. }
  1207. public getStencilFunctionReference(): number {
  1208. return this._stencilState.stencilFuncRef;
  1209. }
  1210. public getStencilFunctionMask(): number {
  1211. return this._stencilState.stencilFuncMask;
  1212. }
  1213. public setStencilFunction(stencilFunc: number) {
  1214. this._stencilState.stencilFunc = stencilFunc;
  1215. }
  1216. public setStencilFunctionReference(reference: number) {
  1217. this._stencilState.stencilFuncRef = reference;
  1218. }
  1219. public setStencilFunctionMask(mask: number) {
  1220. this._stencilState.stencilFuncMask = mask;
  1221. }
  1222. public getStencilOperationFail(): number {
  1223. return this._stencilState.stencilOpStencilFail;
  1224. }
  1225. public getStencilOperationDepthFail(): number {
  1226. return this._stencilState.stencilOpDepthFail;
  1227. }
  1228. public getStencilOperationPass(): number {
  1229. return this._stencilState.stencilOpStencilDepthPass;
  1230. }
  1231. public setStencilOperationFail(operation: number): void {
  1232. this._stencilState.stencilOpStencilFail = operation;
  1233. }
  1234. public setStencilOperationDepthFail(operation: number): void {
  1235. this._stencilState.stencilOpDepthFail = operation;
  1236. }
  1237. public setStencilOperationPass(operation: number): void {
  1238. this._stencilState.stencilOpStencilDepthPass = operation;
  1239. }
  1240. public setDitheringState(value: boolean): void {
  1241. if (value) {
  1242. this._gl.enable(this._gl.DITHER);
  1243. } else {
  1244. this._gl.disable(this._gl.DITHER);
  1245. }
  1246. }
  1247. public setRasterizerState(value: boolean): void {
  1248. if (value) {
  1249. this._gl.disable(this._gl.RASTERIZER_DISCARD);
  1250. } else {
  1251. this._gl.enable(this._gl.RASTERIZER_DISCARD);
  1252. }
  1253. }
  1254. /**
  1255. * stop executing a render loop function and remove it from the execution array
  1256. * @param {Function} [renderFunction] the function to be removed. If not provided all functions will be removed.
  1257. */
  1258. public stopRenderLoop(renderFunction?: () => void): void {
  1259. if (!renderFunction) {
  1260. this._activeRenderLoops = [];
  1261. return;
  1262. }
  1263. var index = this._activeRenderLoops.indexOf(renderFunction);
  1264. if (index >= 0) {
  1265. this._activeRenderLoops.splice(index, 1);
  1266. }
  1267. }
  1268. public _renderLoop(): void {
  1269. if (!this._contextWasLost) {
  1270. var shouldRender = true;
  1271. if (!this.renderEvenInBackground && this._windowIsBackground) {
  1272. shouldRender = false;
  1273. }
  1274. if (shouldRender) {
  1275. // Start new frame
  1276. this.beginFrame();
  1277. for (var index = 0; index < this._activeRenderLoops.length; index++) {
  1278. var renderFunction = this._activeRenderLoops[index];
  1279. renderFunction();
  1280. }
  1281. // Present
  1282. this.endFrame();
  1283. }
  1284. }
  1285. if (this._activeRenderLoops.length > 0) {
  1286. // Register new frame
  1287. var requester = null;
  1288. if (this._vrDisplay && this._vrDisplay.isPresenting)
  1289. requester = this._vrDisplay;
  1290. this._frameHandler = Tools.QueueNewFrame(this._bindedRenderFunction, requester);
  1291. } else {
  1292. this._renderingQueueLaunched = false;
  1293. }
  1294. }
  1295. /**
  1296. * Register and execute a render loop. The engine can have more than one render function.
  1297. * @param {Function} renderFunction - the function to continuously execute starting the next render loop.
  1298. * @example
  1299. * engine.runRenderLoop(function () {
  1300. * scene.render()
  1301. * })
  1302. */
  1303. public runRenderLoop(renderFunction: () => void): void {
  1304. if (this._activeRenderLoops.indexOf(renderFunction) !== -1) {
  1305. return;
  1306. }
  1307. this._activeRenderLoops.push(renderFunction);
  1308. if (!this._renderingQueueLaunched) {
  1309. this._renderingQueueLaunched = true;
  1310. this._bindedRenderFunction = this._renderLoop.bind(this);
  1311. this._frameHandler = Tools.QueueNewFrame(this._bindedRenderFunction);
  1312. }
  1313. }
  1314. /**
  1315. * Toggle full screen mode.
  1316. * @param {boolean} requestPointerLock - should a pointer lock be requested from the user
  1317. * @param {any} options - an options object to be sent to the requestFullscreen function
  1318. */
  1319. public switchFullscreen(requestPointerLock: boolean): void {
  1320. if (this.isFullscreen) {
  1321. Tools.ExitFullscreen();
  1322. } else {
  1323. this._pointerLockRequested = requestPointerLock;
  1324. if (this._renderingCanvas) {
  1325. Tools.RequestFullscreen(this._renderingCanvas);
  1326. }
  1327. }
  1328. }
  1329. public clear(color: Nullable<Color4>, backBuffer: boolean, depth: boolean, stencil: boolean = false): void {
  1330. this.applyStates();
  1331. var mode = 0;
  1332. if (backBuffer && color) {
  1333. this._gl.clearColor(color.r, color.g, color.b, color.a !== undefined ? color.a : 1.0);
  1334. mode |= this._gl.COLOR_BUFFER_BIT;
  1335. }
  1336. if (depth) {
  1337. this._gl.clearDepth(1.0);
  1338. mode |= this._gl.DEPTH_BUFFER_BIT;
  1339. }
  1340. if (stencil) {
  1341. this._gl.clearStencil(0);
  1342. mode |= this._gl.STENCIL_BUFFER_BIT;
  1343. }
  1344. this._gl.clear(mode);
  1345. }
  1346. public scissorClear(x: number, y: number, width: number, height: number, clearColor: Color4): void {
  1347. let gl = this._gl;
  1348. // Save state
  1349. var curScissor = gl.getParameter(gl.SCISSOR_TEST);
  1350. var curScissorBox = gl.getParameter(gl.SCISSOR_BOX);
  1351. // Change state
  1352. gl.enable(gl.SCISSOR_TEST);
  1353. gl.scissor(x, y, width, height);
  1354. // Clear
  1355. this.clear(clearColor, true, true, true);
  1356. // Restore state
  1357. gl.scissor(curScissorBox[0], curScissorBox[1], curScissorBox[2], curScissorBox[3]);
  1358. if (curScissor === true) {
  1359. gl.enable(gl.SCISSOR_TEST);
  1360. } else {
  1361. gl.disable(gl.SCISSOR_TEST);
  1362. }
  1363. }
  1364. /**
  1365. * Set the WebGL's viewport
  1366. * @param {BABYLON.Viewport} viewport - the viewport element to be used.
  1367. * @param {number} [requiredWidth] - the width required for rendering. If not provided the rendering canvas' width is used.
  1368. * @param {number} [requiredHeight] - the height required for rendering. If not provided the rendering canvas' height is used.
  1369. */
  1370. public setViewport(viewport: Viewport, requiredWidth?: number, requiredHeight?: number): void {
  1371. var width = requiredWidth || this.getRenderWidth();
  1372. var height = requiredHeight || this.getRenderHeight();
  1373. var x = viewport.x || 0;
  1374. var y = viewport.y || 0;
  1375. this._cachedViewport = viewport;
  1376. this._gl.viewport(x * width, y * height, width * viewport.width, height * viewport.height);
  1377. }
  1378. /**
  1379. * Directly set the WebGL Viewport
  1380. * The x, y, width & height are directly passed to the WebGL call
  1381. * @return the current viewport Object (if any) that is being replaced by this call. You can restore this viewport later on to go back to the original state.
  1382. */
  1383. public setDirectViewport(x: number, y: number, width: number, height: number): Nullable<Viewport> {
  1384. let currentViewport = this._cachedViewport;
  1385. this._cachedViewport = null;
  1386. this._gl.viewport(x, y, width, height);
  1387. return currentViewport;
  1388. }
  1389. public beginFrame(): void {
  1390. this.onBeginFrameObservable.notifyObservers(this);
  1391. this._measureFps();
  1392. }
  1393. public endFrame(): void {
  1394. //force a flush in case we are using a bad OS.
  1395. if (this._badOS) {
  1396. this.flushFramebuffer();
  1397. }
  1398. //submit frame to the vr device, if enabled
  1399. if (this._vrDisplay && this._vrDisplay.isPresenting) {
  1400. // TODO: We should only submit the frame if we read frameData successfully.
  1401. this._vrDisplay.submitFrame();
  1402. }
  1403. this.onEndFrameObservable.notifyObservers(this);
  1404. }
  1405. /**
  1406. * resize the view according to the canvas' size.
  1407. * @example
  1408. * window.addEventListener("resize", function () {
  1409. * engine.resize();
  1410. * });
  1411. */
  1412. public resize(): void {
  1413. // We're not resizing the size of the canvas while in VR mode & presenting
  1414. if (!(this._vrDisplay && this._vrDisplay.isPresenting)) {
  1415. var width = this._renderingCanvas ? this._renderingCanvas.clientWidth : window.innerWidth;
  1416. var height = this._renderingCanvas ? this._renderingCanvas.clientHeight : window.innerHeight;
  1417. this.setSize(width / this._hardwareScalingLevel, height / this._hardwareScalingLevel);
  1418. }
  1419. }
  1420. /**
  1421. * force a specific size of the canvas
  1422. * @param {number} width - the new canvas' width
  1423. * @param {number} height - the new canvas' height
  1424. */
  1425. public setSize(width: number, height: number): void {
  1426. if (!this._renderingCanvas) {
  1427. return;
  1428. }
  1429. if (this._renderingCanvas.width === width && this._renderingCanvas.height === height) {
  1430. return;
  1431. }
  1432. this._renderingCanvas.width = width;
  1433. this._renderingCanvas.height = height;
  1434. for (var index = 0; index < this.scenes.length; index++) {
  1435. var scene = this.scenes[index];
  1436. for (var camIndex = 0; camIndex < scene.cameras.length; camIndex++) {
  1437. var cam = scene.cameras[camIndex];
  1438. cam._currentRenderId = 0;
  1439. }
  1440. }
  1441. if (this.onResizeObservable.hasObservers) {
  1442. this.onResizeObservable.notifyObservers(this);
  1443. }
  1444. }
  1445. // WebVR functions
  1446. public isVRDevicePresent(): boolean {
  1447. return !!this._vrDisplay;
  1448. }
  1449. public getVRDevice(): any {
  1450. return this._vrDisplay;
  1451. }
  1452. public initWebVR(): Observable<{ vrDisplay: any, vrSupported: any }> {
  1453. var notifyObservers = () => {
  1454. var eventArgs = {
  1455. vrDisplay: this._vrDisplay,
  1456. vrSupported: this._vrSupported
  1457. };
  1458. this.onVRDisplayChangedObservable.notifyObservers(eventArgs);
  1459. }
  1460. if (!this._onVrDisplayConnect) {
  1461. this._onVrDisplayConnect = (event) => {
  1462. this._vrDisplay = event.display;
  1463. notifyObservers();
  1464. };
  1465. this._onVrDisplayDisconnect = () => {
  1466. this._vrDisplay.cancelAnimationFrame(this._frameHandler);
  1467. this._vrDisplay = undefined;
  1468. this._frameHandler = Tools.QueueNewFrame(this._bindedRenderFunction);
  1469. notifyObservers();
  1470. };
  1471. this._onVrDisplayPresentChange = () => {
  1472. this._vrExclusivePointerMode = this._vrDisplay && this._vrDisplay.isPresenting;
  1473. }
  1474. window.addEventListener('vrdisplayconnect', this._onVrDisplayConnect);
  1475. window.addEventListener('vrdisplaydisconnect', this._onVrDisplayDisconnect);
  1476. window.addEventListener('vrdisplaypresentchange', this._onVrDisplayPresentChange);
  1477. }
  1478. this._getVRDisplays(notifyObservers);
  1479. return this.onVRDisplayChangedObservable;
  1480. }
  1481. public enableVR() {
  1482. if (this._vrDisplay && !this._vrDisplay.isPresenting) {
  1483. var onResolved = () => {
  1484. this.onVRRequestPresentComplete.notifyObservers(true);
  1485. this._onVRFullScreenTriggered();
  1486. };
  1487. var onRejected = () => {
  1488. this.onVRRequestPresentComplete.notifyObservers(false);
  1489. };
  1490. this.onVRRequestPresentStart.notifyObservers(this);
  1491. this._vrDisplay.requestPresent([{ source: this.getRenderingCanvas() }]).then(onResolved).catch(onRejected);
  1492. }
  1493. }
  1494. public disableVR() {
  1495. if (this._vrDisplay && this._vrDisplay.isPresenting) {
  1496. this._vrDisplay.exitPresent().then(this._onVRFullScreenTriggered).catch(this._onVRFullScreenTriggered);
  1497. }
  1498. }
  1499. private _onVRFullScreenTriggered = () => {
  1500. if (this._vrDisplay && this._vrDisplay.isPresenting) {
  1501. //get the old size before we change
  1502. this._oldSize = new Size(this.getRenderWidth(), this.getRenderHeight());
  1503. this._oldHardwareScaleFactor = this.getHardwareScalingLevel();
  1504. //get the width and height, change the render size
  1505. var leftEye = this._vrDisplay.getEyeParameters('left');
  1506. this.setHardwareScalingLevel(1);
  1507. this.setSize(leftEye.renderWidth * 2, leftEye.renderHeight);
  1508. } else {
  1509. this.setHardwareScalingLevel(this._oldHardwareScaleFactor);
  1510. this.setSize(this._oldSize.width, this._oldSize.height);
  1511. }
  1512. }
  1513. private _getVRDisplays(callback: () => void) {
  1514. var getWebVRDevices = (devices: Array<any>) => {
  1515. this._vrSupported = true;
  1516. // note that devices may actually be an empty array. This is fine;
  1517. // we expect this._vrDisplay to be undefined in this case.
  1518. return this._vrDisplay = devices[0];
  1519. }
  1520. if (navigator.getVRDisplays) {
  1521. navigator.getVRDisplays().then(getWebVRDevices).then(callback).catch((error: () => void) => {
  1522. // TODO: System CANNOT support WebVR, despite API presence.
  1523. this._vrSupported = false;
  1524. callback();
  1525. });
  1526. } else {
  1527. // TODO: Browser does not support WebVR
  1528. this._vrDisplay = undefined;
  1529. this._vrSupported = false;
  1530. callback();
  1531. }
  1532. }
  1533. public bindFramebuffer(texture: InternalTexture, faceIndex?: number, requiredWidth?: number, requiredHeight?: number, forceFullscreenViewport?: boolean): void {
  1534. if (this._currentRenderTarget) {
  1535. this.unBindFramebuffer(this._currentRenderTarget);
  1536. }
  1537. this._currentRenderTarget = texture;
  1538. this.bindUnboundFramebuffer(texture._MSAAFramebuffer ? texture._MSAAFramebuffer : texture._framebuffer);
  1539. var gl = this._gl;
  1540. if (texture.isCube) {
  1541. if (faceIndex === undefined) {
  1542. faceIndex = 0;
  1543. }
  1544. gl.framebufferTexture2D(gl.FRAMEBUFFER, gl.COLOR_ATTACHMENT0, gl.TEXTURE_CUBE_MAP_POSITIVE_X + faceIndex, texture._webGLTexture, 0);
  1545. }
  1546. if (this._cachedViewport && !forceFullscreenViewport) {
  1547. this.setViewport(this._cachedViewport, requiredWidth, requiredHeight);
  1548. } else {
  1549. gl.viewport(0, 0, requiredWidth || texture.width, requiredHeight || texture.height);
  1550. }
  1551. this.wipeCaches();
  1552. }
  1553. private bindUnboundFramebuffer(framebuffer: Nullable<WebGLFramebuffer>) {
  1554. if (this._currentFramebuffer !== framebuffer) {
  1555. this._gl.bindFramebuffer(this._gl.FRAMEBUFFER, framebuffer);
  1556. this._currentFramebuffer = framebuffer;
  1557. }
  1558. }
  1559. public unBindFramebuffer(texture: InternalTexture, disableGenerateMipMaps = false, onBeforeUnbind?: () => void): void {
  1560. this._currentRenderTarget = null;
  1561. // If MSAA, we need to bitblt back to main texture
  1562. var gl = this._gl;
  1563. if (texture._MSAAFramebuffer) {
  1564. gl.bindFramebuffer(gl.READ_FRAMEBUFFER, texture._MSAAFramebuffer);
  1565. gl.bindFramebuffer(gl.DRAW_FRAMEBUFFER, texture._framebuffer);
  1566. gl.blitFramebuffer(0, 0, texture.width, texture.height,
  1567. 0, 0, texture.width, texture.height,
  1568. gl.COLOR_BUFFER_BIT, gl.NEAREST);
  1569. }
  1570. if (texture.generateMipMaps && !disableGenerateMipMaps && !texture.isCube) {
  1571. this._bindTextureDirectly(gl.TEXTURE_2D, texture, true);
  1572. gl.generateMipmap(gl.TEXTURE_2D);
  1573. this._bindTextureDirectly(gl.TEXTURE_2D, null);
  1574. }
  1575. if (onBeforeUnbind) {
  1576. if (texture._MSAAFramebuffer) {
  1577. // Bind the correct framebuffer
  1578. this.bindUnboundFramebuffer(texture._framebuffer);
  1579. }
  1580. onBeforeUnbind();
  1581. }
  1582. this.bindUnboundFramebuffer(null);
  1583. }
  1584. public unBindMultiColorAttachmentFramebuffer(textures: InternalTexture[], disableGenerateMipMaps = false, onBeforeUnbind?: () => void): void {
  1585. this._currentRenderTarget = null;
  1586. // If MSAA, we need to bitblt back to main texture
  1587. var gl = this._gl;
  1588. if (textures[0]._MSAAFramebuffer) {
  1589. gl.bindFramebuffer(gl.READ_FRAMEBUFFER, textures[0]._MSAAFramebuffer);
  1590. gl.bindFramebuffer(gl.DRAW_FRAMEBUFFER, textures[0]._framebuffer);
  1591. var attachments = textures[0]._attachments;
  1592. if (!attachments) {
  1593. attachments = new Array(textures.length);
  1594. textures[0]._attachments = attachments;
  1595. }
  1596. for (var i = 0; i < textures.length; i++) {
  1597. var texture = textures[i];
  1598. for (var j = 0; j < attachments.length; j++) {
  1599. attachments[j] = gl.NONE;
  1600. }
  1601. attachments[i] = (<any>gl)[this.webGLVersion > 1 ? "COLOR_ATTACHMENT" + i : "COLOR_ATTACHMENT" + i + "_WEBGL"];
  1602. gl.readBuffer(attachments[i]);
  1603. gl.drawBuffers(attachments);
  1604. gl.blitFramebuffer(0, 0, texture.width, texture.height,
  1605. 0, 0, texture.width, texture.height,
  1606. gl.COLOR_BUFFER_BIT, gl.NEAREST);
  1607. }
  1608. for (var i = 0; i < attachments.length; i++) {
  1609. attachments[i] = (<any>gl)[this.webGLVersion > 1 ? "COLOR_ATTACHMENT" + i : "COLOR_ATTACHMENT" + i + "_WEBGL"];
  1610. }
  1611. gl.drawBuffers(attachments);
  1612. }
  1613. for (var i = 0; i < textures.length; i++) {
  1614. var texture = textures[i];
  1615. if (texture.generateMipMaps && !disableGenerateMipMaps && !texture.isCube) {
  1616. this._bindTextureDirectly(gl.TEXTURE_2D, texture);
  1617. gl.generateMipmap(gl.TEXTURE_2D);
  1618. this._bindTextureDirectly(gl.TEXTURE_2D, null);
  1619. }
  1620. }
  1621. if (onBeforeUnbind) {
  1622. if (textures[0]._MSAAFramebuffer) {
  1623. // Bind the correct framebuffer
  1624. this.bindUnboundFramebuffer(textures[0]._framebuffer);
  1625. }
  1626. onBeforeUnbind();
  1627. }
  1628. this.bindUnboundFramebuffer(null);
  1629. }
  1630. public generateMipMapsForCubemap(texture: InternalTexture) {
  1631. if (texture.generateMipMaps) {
  1632. var gl = this._gl;
  1633. this._bindTextureDirectly(gl.TEXTURE_CUBE_MAP, texture, true);
  1634. gl.generateMipmap(gl.TEXTURE_CUBE_MAP);
  1635. this._bindTextureDirectly(gl.TEXTURE_CUBE_MAP, null);
  1636. }
  1637. }
  1638. public flushFramebuffer(): void {
  1639. this._gl.flush();
  1640. }
  1641. public restoreDefaultFramebuffer(): void {
  1642. if (this._currentRenderTarget) {
  1643. this.unBindFramebuffer(this._currentRenderTarget);
  1644. } else {
  1645. this.bindUnboundFramebuffer(null);
  1646. }
  1647. if (this._cachedViewport) {
  1648. this.setViewport(this._cachedViewport);
  1649. }
  1650. this.wipeCaches();
  1651. }
  1652. // UBOs
  1653. public createUniformBuffer(elements: FloatArray): WebGLBuffer {
  1654. var ubo = this._gl.createBuffer();
  1655. if (!ubo) {
  1656. throw new Error("Unable to create uniform buffer");
  1657. }
  1658. this.bindUniformBuffer(ubo);
  1659. if (elements instanceof Float32Array) {
  1660. this._gl.bufferData(this._gl.UNIFORM_BUFFER, <Float32Array>elements, this._gl.STATIC_DRAW);
  1661. } else {
  1662. this._gl.bufferData(this._gl.UNIFORM_BUFFER, new Float32Array(<number[]>elements), this._gl.STATIC_DRAW);
  1663. }
  1664. this.bindUniformBuffer(null);
  1665. ubo.references = 1;
  1666. return ubo;
  1667. }
  1668. public createDynamicUniformBuffer(elements: FloatArray): WebGLBuffer {
  1669. var ubo = this._gl.createBuffer();
  1670. if (!ubo) {
  1671. throw new Error("Unable to create dynamic uniform buffer");
  1672. }
  1673. this.bindUniformBuffer(ubo);
  1674. if (elements instanceof Float32Array) {
  1675. this._gl.bufferData(this._gl.UNIFORM_BUFFER, <Float32Array>elements, this._gl.DYNAMIC_DRAW);
  1676. } else {
  1677. this._gl.bufferData(this._gl.UNIFORM_BUFFER, new Float32Array(<number[]>elements), this._gl.DYNAMIC_DRAW);
  1678. }
  1679. this.bindUniformBuffer(null);
  1680. ubo.references = 1;
  1681. return ubo;
  1682. }
  1683. public updateUniformBuffer(uniformBuffer: WebGLBuffer, elements: FloatArray, offset?: number, count?: number): void {
  1684. this.bindUniformBuffer(uniformBuffer);
  1685. if (offset === undefined) {
  1686. offset = 0;
  1687. }
  1688. if (count === undefined) {
  1689. if (elements instanceof Float32Array) {
  1690. this._gl.bufferSubData(this._gl.UNIFORM_BUFFER, offset, <Float32Array>elements);
  1691. } else {
  1692. this._gl.bufferSubData(this._gl.UNIFORM_BUFFER, offset, new Float32Array(<number[]>elements));
  1693. }
  1694. } else {
  1695. if (elements instanceof Float32Array) {
  1696. this._gl.bufferSubData(this._gl.UNIFORM_BUFFER, 0, <Float32Array>elements.subarray(offset, offset + count));
  1697. } else {
  1698. this._gl.bufferSubData(this._gl.UNIFORM_BUFFER, 0, new Float32Array(<number[]>elements).subarray(offset, offset + count));
  1699. }
  1700. }
  1701. this.bindUniformBuffer(null);
  1702. }
  1703. // VBOs
  1704. private _resetVertexBufferBinding(): void {
  1705. this.bindArrayBuffer(null);
  1706. this._cachedVertexBuffers = null;
  1707. }
  1708. public createVertexBuffer(vertices: FloatArray): WebGLBuffer {
  1709. var vbo = this._gl.createBuffer();
  1710. if (!vbo) {
  1711. throw new Error("Unable to create vertex buffer");
  1712. }
  1713. this.bindArrayBuffer(vbo);
  1714. if (vertices instanceof Float32Array) {
  1715. this._gl.bufferData(this._gl.ARRAY_BUFFER, <Float32Array>vertices, this._gl.STATIC_DRAW);
  1716. } else {
  1717. this._gl.bufferData(this._gl.ARRAY_BUFFER, new Float32Array(<number[]>vertices), this._gl.STATIC_DRAW);
  1718. }
  1719. this._resetVertexBufferBinding();
  1720. vbo.references = 1;
  1721. return vbo;
  1722. }
  1723. public createDynamicVertexBuffer(vertices: FloatArray): WebGLBuffer {
  1724. var vbo = this._gl.createBuffer();
  1725. if (!vbo) {
  1726. throw new Error("Unable to create dynamic vertex buffer");
  1727. }
  1728. this.bindArrayBuffer(vbo);
  1729. if (vertices instanceof Float32Array) {
  1730. this._gl.bufferData(this._gl.ARRAY_BUFFER, <Float32Array>vertices, this._gl.DYNAMIC_DRAW);
  1731. } else {
  1732. this._gl.bufferData(this._gl.ARRAY_BUFFER, new Float32Array(<number[]>vertices), this._gl.DYNAMIC_DRAW);
  1733. }
  1734. this._resetVertexBufferBinding();
  1735. vbo.references = 1;
  1736. return vbo;
  1737. }
  1738. public updateDynamicIndexBuffer(indexBuffer: WebGLBuffer, indices: IndicesArray, offset: number = 0): void {
  1739. // Force cache update
  1740. this._currentBoundBuffer[this._gl.ELEMENT_ARRAY_BUFFER] = null;
  1741. this.bindIndexBuffer(indexBuffer);
  1742. var arrayBuffer;
  1743. if (indices instanceof Uint16Array || indices instanceof Uint32Array) {
  1744. arrayBuffer = indices;
  1745. } else {
  1746. arrayBuffer = indexBuffer.is32Bits ? new Uint32Array(indices) : new Uint16Array(indices);
  1747. }
  1748. this._gl.bufferData(this._gl.ELEMENT_ARRAY_BUFFER, arrayBuffer, this._gl.DYNAMIC_DRAW);
  1749. this._resetIndexBufferBinding();
  1750. }
  1751. public updateDynamicVertexBuffer(vertexBuffer: WebGLBuffer, vertices: FloatArray, offset?: number, count?: number): void {
  1752. this.bindArrayBuffer(vertexBuffer);
  1753. if (offset === undefined) {
  1754. offset = 0;
  1755. }
  1756. if (count === undefined) {
  1757. if (vertices instanceof Float32Array) {
  1758. this._gl.bufferSubData(this._gl.ARRAY_BUFFER, offset, <Float32Array>vertices);
  1759. } else {
  1760. this._gl.bufferSubData(this._gl.ARRAY_BUFFER, offset, new Float32Array(<number[]>vertices));
  1761. }
  1762. } else {
  1763. if (vertices instanceof Float32Array) {
  1764. this._gl.bufferSubData(this._gl.ARRAY_BUFFER, 0, <Float32Array>vertices.subarray(offset, offset + count));
  1765. } else {
  1766. this._gl.bufferSubData(this._gl.ARRAY_BUFFER, 0, new Float32Array(<number[]>vertices).subarray(offset, offset + count));
  1767. }
  1768. }
  1769. this._resetVertexBufferBinding();
  1770. }
  1771. private _resetIndexBufferBinding(): void {
  1772. this.bindIndexBuffer(null);
  1773. this._cachedIndexBuffer = null;
  1774. }
  1775. public createIndexBuffer(indices: IndicesArray, updatable?: boolean): WebGLBuffer {
  1776. var vbo = this._gl.createBuffer();
  1777. if (!vbo) {
  1778. throw new Error("Unable to create index buffer");
  1779. }
  1780. this.bindIndexBuffer(vbo);
  1781. // Check for 32 bits indices
  1782. var arrayBuffer;
  1783. var need32Bits = false;
  1784. if (indices instanceof Uint16Array) {
  1785. arrayBuffer = indices;
  1786. } else {
  1787. //check 32 bit support
  1788. if (this._caps.uintIndices) {
  1789. if (indices instanceof Uint32Array) {
  1790. arrayBuffer = indices;
  1791. need32Bits = true;
  1792. } else {
  1793. //number[] or Int32Array, check if 32 bit is necessary
  1794. for (var index = 0; index < indices.length; index++) {
  1795. if (indices[index] > 65535) {
  1796. need32Bits = true;
  1797. break;
  1798. }
  1799. }
  1800. arrayBuffer = need32Bits ? new Uint32Array(indices) : new Uint16Array(indices);
  1801. }
  1802. } else {
  1803. //no 32 bit support, force conversion to 16 bit (values greater 16 bit are lost)
  1804. arrayBuffer = new Uint16Array(indices);
  1805. }
  1806. }
  1807. this._gl.bufferData(this._gl.ELEMENT_ARRAY_BUFFER, arrayBuffer, updatable ? this._gl.DYNAMIC_DRAW : this._gl.STATIC_DRAW);
  1808. this._resetIndexBufferBinding();
  1809. vbo.references = 1;
  1810. vbo.is32Bits = need32Bits;
  1811. return vbo;
  1812. }
  1813. public bindArrayBuffer(buffer: Nullable<WebGLBuffer>): void {
  1814. if (!this._vaoRecordInProgress) {
  1815. this._unbindVertexArrayObject();
  1816. }
  1817. this.bindBuffer(buffer, this._gl.ARRAY_BUFFER);
  1818. }
  1819. public bindUniformBuffer(buffer: Nullable<WebGLBuffer>): void {
  1820. this._gl.bindBuffer(this._gl.UNIFORM_BUFFER, buffer);
  1821. }
  1822. public bindUniformBufferBase(buffer: WebGLBuffer, location: number): void {
  1823. this._gl.bindBufferBase(this._gl.UNIFORM_BUFFER, location, buffer);
  1824. }
  1825. public bindUniformBlock(shaderProgram: WebGLProgram, blockName: string, index: number): void {
  1826. var uniformLocation = this._gl.getUniformBlockIndex(shaderProgram, blockName);
  1827. this._gl.uniformBlockBinding(shaderProgram, uniformLocation, index);
  1828. };
  1829. private bindIndexBuffer(buffer: Nullable<WebGLBuffer>): void {
  1830. if (!this._vaoRecordInProgress) {
  1831. this._unbindVertexArrayObject();
  1832. }
  1833. this.bindBuffer(buffer, this._gl.ELEMENT_ARRAY_BUFFER);
  1834. }
  1835. private bindBuffer(buffer: Nullable<WebGLBuffer>, target: number): void {
  1836. if (this._vaoRecordInProgress || this._currentBoundBuffer[target] !== buffer) {
  1837. this._gl.bindBuffer(target, buffer);
  1838. this._currentBoundBuffer[target] = buffer;
  1839. }
  1840. }
  1841. public updateArrayBuffer(data: Float32Array): void {
  1842. this._gl.bufferSubData(this._gl.ARRAY_BUFFER, 0, data);
  1843. }
  1844. private vertexAttribPointer(buffer: WebGLBuffer, indx: number, size: number, type: number, normalized: boolean, stride: number, offset: number): void {
  1845. var pointer = this._currentBufferPointers[indx];
  1846. var changed = false;
  1847. if (!pointer.active) {
  1848. changed = true;
  1849. pointer.active = true;
  1850. pointer.index = indx;
  1851. pointer.size = size;
  1852. pointer.type = type;
  1853. pointer.normalized = normalized;
  1854. pointer.stride = stride;
  1855. pointer.offset = offset;
  1856. pointer.buffer = buffer;
  1857. } else {
  1858. if (pointer.buffer !== buffer) { pointer.buffer = buffer; changed = true; }
  1859. if (pointer.size !== size) { pointer.size = size; changed = true; }
  1860. if (pointer.type !== type) { pointer.type = type; changed = true; }
  1861. if (pointer.normalized !== normalized) { pointer.normalized = normalized; changed = true; }
  1862. if (pointer.stride !== stride) { pointer.stride = stride; changed = true; }
  1863. if (pointer.offset !== offset) { pointer.offset = offset; changed = true; }
  1864. }
  1865. if (changed || this._vaoRecordInProgress) {
  1866. this.bindArrayBuffer(buffer);
  1867. this._gl.vertexAttribPointer(indx, size, type, normalized, stride, offset);
  1868. }
  1869. }
  1870. private _bindIndexBufferWithCache(indexBuffer: Nullable<WebGLBuffer>): void {
  1871. if (indexBuffer == null) {
  1872. return;
  1873. }
  1874. if (this._cachedIndexBuffer !== indexBuffer) {
  1875. this._cachedIndexBuffer = indexBuffer;
  1876. this.bindIndexBuffer(indexBuffer);
  1877. this._uintIndicesCurrentlySet = indexBuffer.is32Bits;
  1878. }
  1879. }
  1880. private _bindVertexBuffersAttributes(vertexBuffers: { [key: string]: Nullable<VertexBuffer> }, effect: Effect): void {
  1881. var attributes = effect.getAttributesNames();
  1882. if (!this._vaoRecordInProgress) {
  1883. this._unbindVertexArrayObject();
  1884. }
  1885. this.unbindAllAttributes();
  1886. for (var index = 0; index < attributes.length; index++) {
  1887. var order = effect.getAttributeLocation(index);
  1888. if (order >= 0) {
  1889. var vertexBuffer = vertexBuffers[attributes[index]];
  1890. if (!vertexBuffer) {
  1891. continue;
  1892. }
  1893. this._gl.enableVertexAttribArray(order);
  1894. if (!this._vaoRecordInProgress) {
  1895. this._vertexAttribArraysEnabled[order] = true;
  1896. }
  1897. var buffer = vertexBuffer.getBuffer();
  1898. if (buffer) {
  1899. this.vertexAttribPointer(buffer, order, vertexBuffer.getSize(), this._gl.FLOAT, false, vertexBuffer.getStrideSize() * 4, vertexBuffer.getOffset() * 4);
  1900. if (vertexBuffer.getIsInstanced()) {
  1901. this._gl.vertexAttribDivisor(order, vertexBuffer.getInstanceDivisor());
  1902. if (!this._vaoRecordInProgress) {
  1903. this._currentInstanceLocations.push(order);
  1904. this._currentInstanceBuffers.push(buffer);
  1905. }
  1906. }
  1907. }
  1908. }
  1909. }
  1910. }
  1911. public recordVertexArrayObject(vertexBuffers: { [key: string]: VertexBuffer; }, indexBuffer: Nullable<WebGLBuffer>, effect: Effect): WebGLVertexArrayObject {
  1912. var vao = this._gl.createVertexArray();
  1913. this._vaoRecordInProgress = true;
  1914. this._gl.bindVertexArray(vao);
  1915. this._mustWipeVertexAttributes = true;
  1916. this._bindVertexBuffersAttributes(vertexBuffers, effect);
  1917. this.bindIndexBuffer(indexBuffer);
  1918. this._vaoRecordInProgress = false;
  1919. this._gl.bindVertexArray(null);
  1920. return vao;
  1921. }
  1922. public bindVertexArrayObject(vertexArrayObject: WebGLVertexArrayObject, indexBuffer: Nullable<WebGLBuffer>): void {
  1923. if (this._cachedVertexArrayObject !== vertexArrayObject) {
  1924. this._cachedVertexArrayObject = vertexArrayObject;
  1925. this._gl.bindVertexArray(vertexArrayObject);
  1926. this._cachedVertexBuffers = null;
  1927. this._cachedIndexBuffer = null;
  1928. this._uintIndicesCurrentlySet = indexBuffer != null && indexBuffer.is32Bits;
  1929. this._mustWipeVertexAttributes = true;
  1930. }
  1931. }
  1932. public bindBuffersDirectly(vertexBuffer: WebGLBuffer, indexBuffer: WebGLBuffer, vertexDeclaration: number[], vertexStrideSize: number, effect: Effect): void {
  1933. if (this._cachedVertexBuffers !== vertexBuffer || this._cachedEffectForVertexBuffers !== effect) {
  1934. this._cachedVertexBuffers = vertexBuffer;
  1935. this._cachedEffectForVertexBuffers = effect;
  1936. let attributesCount = effect.getAttributesCount();
  1937. this._unbindVertexArrayObject();
  1938. this.unbindAllAttributes();
  1939. var offset = 0;
  1940. for (var index = 0; index < attributesCount; index++) {
  1941. if (index < vertexDeclaration.length) {
  1942. var order = effect.getAttributeLocation(index);
  1943. if (order >= 0) {
  1944. this._gl.enableVertexAttribArray(order);
  1945. this._vertexAttribArraysEnabled[order] = true;
  1946. this.vertexAttribPointer(vertexBuffer, order, vertexDeclaration[index], this._gl.FLOAT, false, vertexStrideSize, offset);
  1947. }
  1948. offset += vertexDeclaration[index] * 4;
  1949. }
  1950. }
  1951. }
  1952. this._bindIndexBufferWithCache(indexBuffer);
  1953. }
  1954. private _unbindVertexArrayObject(): void {
  1955. if (!this._cachedVertexArrayObject) {
  1956. return;
  1957. }
  1958. this._cachedVertexArrayObject = null;
  1959. this._gl.bindVertexArray(null);
  1960. }
  1961. public bindBuffers(vertexBuffers: { [key: string]: Nullable<VertexBuffer> }, indexBuffer: Nullable<WebGLBuffer>, effect: Effect): void {
  1962. if (this._cachedVertexBuffers !== vertexBuffers || this._cachedEffectForVertexBuffers !== effect) {
  1963. this._cachedVertexBuffers = vertexBuffers;
  1964. this._cachedEffectForVertexBuffers = effect;
  1965. this._bindVertexBuffersAttributes(vertexBuffers, effect);
  1966. }
  1967. this._bindIndexBufferWithCache(indexBuffer);
  1968. }
  1969. public unbindInstanceAttributes() {
  1970. var boundBuffer;
  1971. for (var i = 0, ul = this._currentInstanceLocations.length; i < ul; i++) {
  1972. var instancesBuffer = this._currentInstanceBuffers[i];
  1973. if (boundBuffer != instancesBuffer && instancesBuffer.references) {
  1974. boundBuffer = instancesBuffer;
  1975. this.bindArrayBuffer(instancesBuffer);
  1976. }
  1977. var offsetLocation = this._currentInstanceLocations[i];
  1978. this._gl.vertexAttribDivisor(offsetLocation, 0);
  1979. }
  1980. this._currentInstanceBuffers.length = 0;
  1981. this._currentInstanceLocations.length = 0;
  1982. }
  1983. public releaseVertexArrayObject(vao: WebGLVertexArrayObject) {
  1984. this._gl.deleteVertexArray(vao);
  1985. }
  1986. public _releaseBuffer(buffer: WebGLBuffer): boolean {
  1987. buffer.references--;
  1988. if (buffer.references === 0) {
  1989. this._gl.deleteBuffer(buffer);
  1990. return true;
  1991. }
  1992. return false;
  1993. }
  1994. public createInstancesBuffer(capacity: number): WebGLBuffer {
  1995. var buffer = this._gl.createBuffer();
  1996. if (!buffer) {
  1997. throw new Error("Unable to create instance buffer");
  1998. }
  1999. buffer.capacity = capacity;
  2000. this.bindArrayBuffer(buffer);
  2001. this._gl.bufferData(this._gl.ARRAY_BUFFER, capacity, this._gl.DYNAMIC_DRAW);
  2002. return buffer;
  2003. }
  2004. public deleteInstancesBuffer(buffer: WebGLBuffer): void {
  2005. this._gl.deleteBuffer(buffer);
  2006. }
  2007. public updateAndBindInstancesBuffer(instancesBuffer: WebGLBuffer, data: Float32Array, offsetLocations: number[] | InstancingAttributeInfo[]): void {
  2008. this.bindArrayBuffer(instancesBuffer);
  2009. if (data) {
  2010. this._gl.bufferSubData(this._gl.ARRAY_BUFFER, 0, data);
  2011. }
  2012. if ((<any>offsetLocations[0]).index !== undefined) {
  2013. let stride = 0;
  2014. for (let i = 0; i < offsetLocations.length; i++) {
  2015. let ai = <InstancingAttributeInfo>offsetLocations[i];
  2016. stride += ai.attributeSize * 4;
  2017. }
  2018. for (let i = 0; i < offsetLocations.length; i++) {
  2019. let ai = <InstancingAttributeInfo>offsetLocations[i];
  2020. if (!this._vertexAttribArraysEnabled[ai.index]) {
  2021. this._gl.enableVertexAttribArray(ai.index);
  2022. this._vertexAttribArraysEnabled[ai.index] = true;
  2023. }
  2024. this.vertexAttribPointer(instancesBuffer, ai.index, ai.attributeSize, ai.attribyteType || this._gl.FLOAT, ai.normalized || false, stride, ai.offset);
  2025. this._gl.vertexAttribDivisor(ai.index, 1);
  2026. this._currentInstanceLocations.push(ai.index);
  2027. this._currentInstanceBuffers.push(instancesBuffer);
  2028. }
  2029. } else {
  2030. for (let index = 0; index < 4; index++) {
  2031. let offsetLocation = <number>offsetLocations[index];
  2032. if (!this._vertexAttribArraysEnabled[offsetLocation]) {
  2033. this._gl.enableVertexAttribArray(offsetLocation);
  2034. this._vertexAttribArraysEnabled[offsetLocation] = true;
  2035. }
  2036. this.vertexAttribPointer(instancesBuffer, offsetLocation, 4, this._gl.FLOAT, false, 64, index * 16);
  2037. this._gl.vertexAttribDivisor(offsetLocation, 1);
  2038. this._currentInstanceLocations.push(offsetLocation);
  2039. this._currentInstanceBuffers.push(instancesBuffer);
  2040. }
  2041. }
  2042. }
  2043. public applyStates() {
  2044. this._depthCullingState.apply(this._gl);
  2045. this._stencilState.apply(this._gl);
  2046. this._alphaState.apply(this._gl);
  2047. }
  2048. public draw(useTriangles: boolean, indexStart: number, indexCount: number, instancesCount?: number): void {
  2049. this.drawElementsType(useTriangles ? Material.TriangleFillMode : Material.WireFrameFillMode, indexStart, indexCount, instancesCount);
  2050. }
  2051. public drawPointClouds(verticesStart: number, verticesCount: number, instancesCount?: number): void {
  2052. this.drawArraysType(Material.PointFillMode, verticesStart, verticesCount, instancesCount);
  2053. }
  2054. public drawUnIndexed(useTriangles: boolean, verticesStart: number, verticesCount: number, instancesCount?: number): void {
  2055. this.drawArraysType(useTriangles ? Material.TriangleFillMode : Material.WireFrameFillMode, verticesStart, verticesCount, instancesCount);
  2056. }
  2057. public drawElementsType(fillMode: number, indexStart: number, indexCount: number, instancesCount?: number): void {
  2058. // Apply states
  2059. this.applyStates();
  2060. this._drawCalls.addCount(1, false);
  2061. // Render
  2062. const drawMode = this.DrawMode(fillMode);
  2063. var indexFormat = this._uintIndicesCurrentlySet ? this._gl.UNSIGNED_INT : this._gl.UNSIGNED_SHORT;
  2064. var mult = this._uintIndicesCurrentlySet ? 4 : 2;
  2065. if (instancesCount) {
  2066. this._gl.drawElementsInstanced(drawMode, indexCount, indexFormat, indexStart * mult, instancesCount);
  2067. } else {
  2068. this._gl.drawElements(drawMode, indexCount, indexFormat, indexStart * mult);
  2069. }
  2070. }
  2071. public drawArraysType(fillMode: number, verticesStart: number, verticesCount: number, instancesCount?: number): void {
  2072. // Apply states
  2073. this.applyStates();
  2074. this._drawCalls.addCount(1, false);
  2075. const drawMode = this.DrawMode(fillMode);
  2076. if (instancesCount) {
  2077. this._gl.drawArraysInstanced(drawMode, verticesStart, verticesCount, instancesCount);
  2078. } else {
  2079. this._gl.drawArrays(drawMode, verticesStart, verticesCount);
  2080. }
  2081. }
  2082. private DrawMode(fillMode: number): number {
  2083. switch (fillMode) {
  2084. // Triangle views
  2085. case Material.TriangleFillMode:
  2086. return this._gl.TRIANGLES;
  2087. case Material.PointFillMode:
  2088. return this._gl.POINTS;
  2089. case Material.WireFrameFillMode:
  2090. return this._gl.LINES;
  2091. // Draw modes
  2092. case Material.PointListDrawMode:
  2093. return this._gl.POINTS
  2094. case Material.LineListDrawMode:
  2095. return this._gl.LINES;
  2096. case Material.LineLoopDrawMode:
  2097. return this._gl.LINE_LOOP
  2098. case Material.LineStripDrawMode:
  2099. return this._gl.LINE_STRIP
  2100. case Material.TriangleStripDrawMode:
  2101. return this._gl.TRIANGLE_STRIP
  2102. case Material.TriangleFanDrawMode:
  2103. return this._gl.TRIANGLE_FAN;
  2104. default:
  2105. return this._gl.TRIANGLES;
  2106. }
  2107. }
  2108. // Shaders
  2109. public _releaseEffect(effect: Effect): void {
  2110. if (this._compiledEffects[effect._key]) {
  2111. delete this._compiledEffects[effect._key];
  2112. this._deleteProgram(effect.getProgram());
  2113. }
  2114. }
  2115. public _deleteProgram(program: WebGLProgram): void {
  2116. if (program) {
  2117. program.__SPECTOR_rebuildProgram = null;
  2118. if (program.transformFeedback) {
  2119. this.deleteTransformFeedback(program.transformFeedback);
  2120. program.transformFeedback = null;
  2121. }
  2122. this._gl.deleteProgram(program);
  2123. }
  2124. }
  2125. /**
  2126. * @param baseName The base name of the effect (The name of file without .fragment.fx or .vertex.fx)
  2127. * @param samplers An array of string used to represent textures
  2128. */
  2129. public createEffect(baseName: any, attributesNamesOrOptions: string[] | EffectCreationOptions, uniformsNamesOrEngine: string[] | Engine, samplers?: string[], defines?: string, fallbacks?: EffectFallbacks,
  2130. onCompiled?: (effect: Effect) => void, onError?: (effect: Effect, errors: string) => void, indexParameters?: any): Effect {
  2131. var vertex = baseName.vertexElement || baseName.vertex || baseName;
  2132. var fragment = baseName.fragmentElement || baseName.fragment || baseName;
  2133. var name = vertex + "+" + fragment + "@" + (defines ? defines : (<EffectCreationOptions>attributesNamesOrOptions).defines);
  2134. if (this._compiledEffects[name]) {
  2135. var compiledEffect = <Effect>this._compiledEffects[name];
  2136. if (onCompiled && compiledEffect.isReady()) {
  2137. onCompiled(compiledEffect);
  2138. }
  2139. return compiledEffect;
  2140. }
  2141. var effect = new Effect(baseName, attributesNamesOrOptions, uniformsNamesOrEngine, samplers, this, defines, fallbacks, onCompiled, onError, indexParameters);
  2142. effect._key = name;
  2143. this._compiledEffects[name] = effect;
  2144. return effect;
  2145. }
  2146. public createEffectForParticles(fragmentName: string, uniformsNames: string[] = [], samplers: string[] = [], defines = "", fallbacks?: EffectFallbacks,
  2147. onCompiled?: (effect: Effect) => void, onError?: (effect: Effect, errors: string) => void): Effect {
  2148. return this.createEffect(
  2149. {
  2150. vertex: "particles",
  2151. fragmentElement: fragmentName
  2152. },
  2153. ["position", "color", "options"],
  2154. ["view", "projection"].concat(uniformsNames),
  2155. ["diffuseSampler"].concat(samplers), defines, fallbacks, onCompiled, onError);
  2156. }
  2157. public createRawShaderProgram(vertexCode: string, fragmentCode: string, context?: WebGLRenderingContext, transformFeedbackVaryings: Nullable<string[]> = null): WebGLProgram {
  2158. context = context || this._gl;
  2159. var vertexShader = compileRawShader(context, vertexCode, "vertex");
  2160. var fragmentShader = compileRawShader(context, fragmentCode, "fragment");
  2161. return this._createShaderProgram(vertexShader, fragmentShader, context, transformFeedbackVaryings);
  2162. }
  2163. public createShaderProgram(vertexCode: string, fragmentCode: string, defines: Nullable<string>, context?: WebGLRenderingContext, transformFeedbackVaryings: Nullable<string[]> = null): WebGLProgram {
  2164. context = context || this._gl;
  2165. this.onBeforeShaderCompilationObservable.notifyObservers(this);
  2166. var shaderVersion = (this._webGLVersion > 1) ? "#version 300 es\n" : "";
  2167. var vertexShader = compileShader(context, vertexCode, "vertex", defines, shaderVersion);
  2168. var fragmentShader = compileShader(context, fragmentCode, "fragment", defines, shaderVersion);
  2169. let program = this._createShaderProgram(vertexShader, fragmentShader, context, transformFeedbackVaryings);
  2170. this.onAfterShaderCompilationObservable.notifyObservers(this);
  2171. return program;
  2172. }
  2173. private _createShaderProgram(vertexShader: WebGLShader, fragmentShader: WebGLShader, context: WebGLRenderingContext, transformFeedbackVaryings: Nullable<string[]> = null): WebGLProgram {
  2174. var shaderProgram = context.createProgram();
  2175. if (!shaderProgram) {
  2176. throw new Error("Unable to create program");
  2177. }
  2178. context.attachShader(shaderProgram, vertexShader);
  2179. context.attachShader(shaderProgram, fragmentShader);
  2180. if (this.webGLVersion > 1 && transformFeedbackVaryings) {
  2181. let transformFeedback = this.createTransformFeedback();
  2182. this.bindTransformFeedback(transformFeedback);
  2183. this.setTranformFeedbackVaryings(shaderProgram, transformFeedbackVaryings);
  2184. shaderProgram.transformFeedback = transformFeedback;
  2185. }
  2186. context.linkProgram(shaderProgram);
  2187. if (this.webGLVersion > 1 && transformFeedbackVaryings) {
  2188. this.bindTransformFeedback(null);
  2189. }
  2190. var linked = context.getProgramParameter(shaderProgram, context.LINK_STATUS);
  2191. if (!linked) {
  2192. context.validateProgram(shaderProgram);
  2193. var error = context.getProgramInfoLog(shaderProgram);
  2194. if (error) {
  2195. throw new Error(error);
  2196. }
  2197. }
  2198. context.deleteShader(vertexShader);
  2199. context.deleteShader(fragmentShader);
  2200. return shaderProgram;
  2201. }
  2202. public getUniforms(shaderProgram: WebGLProgram, uniformsNames: string[]): Nullable<WebGLUniformLocation>[] {
  2203. var results = new Array<Nullable<WebGLUniformLocation>>();
  2204. for (var index = 0; index < uniformsNames.length; index++) {
  2205. results.push(this._gl.getUniformLocation(shaderProgram, uniformsNames[index]));
  2206. }
  2207. return results;
  2208. }
  2209. public getAttributes(shaderProgram: WebGLProgram, attributesNames: string[]): number[] {
  2210. var results = [];
  2211. for (var index = 0; index < attributesNames.length; index++) {
  2212. try {
  2213. results.push(this._gl.getAttribLocation(shaderProgram, attributesNames[index]));
  2214. } catch (e) {
  2215. results.push(-1);
  2216. }
  2217. }
  2218. return results;
  2219. }
  2220. public enableEffect(effect: Nullable<Effect>): void {
  2221. if (!effect) {
  2222. return;
  2223. }
  2224. // Use program
  2225. this.bindSamplers(effect);
  2226. this._currentEffect = effect;
  2227. if (effect.onBind) {
  2228. effect.onBind(effect);
  2229. }
  2230. effect.onBindObservable.notifyObservers(effect);
  2231. }
  2232. public setIntArray(uniform: Nullable<WebGLUniformLocation>, array: Int32Array): void {
  2233. if (!uniform)
  2234. return;
  2235. this._gl.uniform1iv(uniform, array);
  2236. }
  2237. public setIntArray2(uniform: Nullable<WebGLUniformLocation>, array: Int32Array): void {
  2238. if (!uniform || array.length % 2 !== 0)
  2239. return;
  2240. this._gl.uniform2iv(uniform, array);
  2241. }
  2242. public setIntArray3(uniform: Nullable<WebGLUniformLocation>, array: Int32Array): void {
  2243. if (!uniform || array.length % 3 !== 0)
  2244. return;
  2245. this._gl.uniform3iv(uniform, array);
  2246. }
  2247. public setIntArray4(uniform: Nullable<WebGLUniformLocation>, array: Int32Array): void {
  2248. if (!uniform || array.length % 4 !== 0)
  2249. return;
  2250. this._gl.uniform4iv(uniform, array);
  2251. }
  2252. public setFloatArray(uniform: Nullable<WebGLUniformLocation>, array: Float32Array): void {
  2253. if (!uniform)
  2254. return;
  2255. this._gl.uniform1fv(uniform, array);
  2256. }
  2257. public setFloatArray2(uniform: Nullable<WebGLUniformLocation>, array: Float32Array): void {
  2258. if (!uniform || array.length % 2 !== 0)
  2259. return;
  2260. this._gl.uniform2fv(uniform, array);
  2261. }
  2262. public setFloatArray3(uniform: Nullable<WebGLUniformLocation>, array: Float32Array): void {
  2263. if (!uniform || array.length % 3 !== 0)
  2264. return;
  2265. this._gl.uniform3fv(uniform, array);
  2266. }
  2267. public setFloatArray4(uniform: Nullable<WebGLUniformLocation>, array: Float32Array): void {
  2268. if (!uniform || array.length % 4 !== 0)
  2269. return;
  2270. this._gl.uniform4fv(uniform, array);
  2271. }
  2272. public setArray(uniform: Nullable<WebGLUniformLocation>, array: number[]): void {
  2273. if (!uniform)
  2274. return;
  2275. this._gl.uniform1fv(uniform, <any>array);
  2276. }
  2277. public setArray2(uniform: Nullable<WebGLUniformLocation>, array: number[]): void {
  2278. if (!uniform || array.length % 2 !== 0)
  2279. return;
  2280. this._gl.uniform2fv(uniform, <any>array);
  2281. }
  2282. public setArray3(uniform: Nullable<WebGLUniformLocation>, array: number[]): void {
  2283. if (!uniform || array.length % 3 !== 0)
  2284. return;
  2285. this._gl.uniform3fv(uniform, <any>array);
  2286. }
  2287. public setArray4(uniform: Nullable<WebGLUniformLocation>, array: number[]): void {
  2288. if (!uniform || array.length % 4 !== 0)
  2289. return;
  2290. this._gl.uniform4fv(uniform, <any>array);
  2291. }
  2292. public setMatrices(uniform: Nullable<WebGLUniformLocation>, matrices: Float32Array): void {
  2293. if (!uniform)
  2294. return;
  2295. this._gl.uniformMatrix4fv(uniform, false, matrices);
  2296. }
  2297. public setMatrix(uniform: Nullable<WebGLUniformLocation>, matrix: Matrix): void {
  2298. if (!uniform)
  2299. return;
  2300. this._gl.uniformMatrix4fv(uniform, false, matrix.toArray());
  2301. }
  2302. public setMatrix3x3(uniform: Nullable<WebGLUniformLocation>, matrix: Float32Array): void {
  2303. if (!uniform)
  2304. return;
  2305. this._gl.uniformMatrix3fv(uniform, false, matrix);
  2306. }
  2307. public setMatrix2x2(uniform: Nullable<WebGLUniformLocation>, matrix: Float32Array): void {
  2308. if (!uniform)
  2309. return;
  2310. this._gl.uniformMatrix2fv(uniform, false, matrix);
  2311. }
  2312. public setInt(uniform: Nullable<WebGLUniformLocation>, value: number): void {
  2313. if (!uniform)
  2314. return;
  2315. this._gl.uniform1i(uniform, value);
  2316. }
  2317. public setFloat(uniform: Nullable<WebGLUniformLocation>, value: number): void {
  2318. if (!uniform)
  2319. return;
  2320. this._gl.uniform1f(uniform, value);
  2321. }
  2322. public setFloat2(uniform: Nullable<WebGLUniformLocation>, x: number, y: number): void {
  2323. if (!uniform)
  2324. return;
  2325. this._gl.uniform2f(uniform, x, y);
  2326. }
  2327. public setFloat3(uniform: Nullable<WebGLUniformLocation>, x: number, y: number, z: number): void {
  2328. if (!uniform)
  2329. return;
  2330. this._gl.uniform3f(uniform, x, y, z);
  2331. }
  2332. public setBool(uniform: Nullable<WebGLUniformLocation>, bool: number): void {
  2333. if (!uniform)
  2334. return;
  2335. this._gl.uniform1i(uniform, bool);
  2336. }
  2337. public setFloat4(uniform: Nullable<WebGLUniformLocation>, x: number, y: number, z: number, w: number): void {
  2338. if (!uniform)
  2339. return;
  2340. this._gl.uniform4f(uniform, x, y, z, w);
  2341. }
  2342. public setColor3(uniform: Nullable<WebGLUniformLocation>, color3: Color3): void {
  2343. if (!uniform)
  2344. return;
  2345. this._gl.uniform3f(uniform, color3.r, color3.g, color3.b);
  2346. }
  2347. public setColor4(uniform: Nullable<WebGLUniformLocation>, color3: Color3, alpha: number): void {
  2348. if (!uniform)
  2349. return;
  2350. this._gl.uniform4f(uniform, color3.r, color3.g, color3.b, alpha);
  2351. }
  2352. // States
  2353. public setState(culling: boolean, zOffset: number = 0, force?: boolean, reverseSide = false): void {
  2354. // Culling
  2355. if (this._depthCullingState.cull !== culling || force) {
  2356. this._depthCullingState.cull = culling;
  2357. }
  2358. // Cull face
  2359. var cullFace = this.cullBackFaces ? this._gl.BACK : this._gl.FRONT;
  2360. if (this._depthCullingState.cullFace !== cullFace || force) {
  2361. this._depthCullingState.cullFace = cullFace;
  2362. }
  2363. // Z offset
  2364. this.setZOffset(zOffset);
  2365. // Front face
  2366. var frontFace = reverseSide ? this._gl.CW : this._gl.CCW;
  2367. if (this._depthCullingState.frontFace !== frontFace || force) {
  2368. this._depthCullingState.frontFace = frontFace;
  2369. }
  2370. }
  2371. public setZOffset(value: number): void {
  2372. this._depthCullingState.zOffset = value;
  2373. }
  2374. public getZOffset(): number {
  2375. return this._depthCullingState.zOffset;
  2376. }
  2377. public setDepthBuffer(enable: boolean): void {
  2378. this._depthCullingState.depthTest = enable;
  2379. }
  2380. public getDepthWrite(): boolean {
  2381. return this._depthCullingState.depthMask;
  2382. }
  2383. public setDepthWrite(enable: boolean): void {
  2384. this._depthCullingState.depthMask = enable;
  2385. }
  2386. public setColorWrite(enable: boolean): void {
  2387. this._gl.colorMask(enable, enable, enable, enable);
  2388. this._colorWrite = enable;
  2389. }
  2390. public getColorWrite(): boolean {
  2391. return this._colorWrite;
  2392. }
  2393. public setAlphaConstants(r: number, g: number, b: number, a: number) {
  2394. this._alphaState.setAlphaBlendConstants(r, g, b, a);
  2395. }
  2396. public setAlphaMode(mode: number, noDepthWriteChange: boolean = false): void {
  2397. if (this._alphaMode === mode) {
  2398. return;
  2399. }
  2400. switch (mode) {
  2401. case Engine.ALPHA_DISABLE:
  2402. this._alphaState.alphaBlend = false;
  2403. break;
  2404. case Engine.ALPHA_PREMULTIPLIED:
  2405. this._alphaState.setAlphaBlendFunctionParameters(this._gl.ONE, this._gl.ONE_MINUS_SRC_ALPHA, this._gl.ONE, this._gl.ONE);
  2406. this._alphaState.alphaBlend = true;
  2407. break;
  2408. case Engine.ALPHA_PREMULTIPLIED_PORTERDUFF:
  2409. this._alphaState.setAlphaBlendFunctionParameters(this._gl.ONE, this._gl.ONE_MINUS_SRC_ALPHA, this._gl.ONE, this._gl.ONE_MINUS_SRC_ALPHA);
  2410. this._alphaState.alphaBlend = true;
  2411. break;
  2412. case Engine.ALPHA_COMBINE:
  2413. this._alphaState.setAlphaBlendFunctionParameters(this._gl.SRC_ALPHA, this._gl.ONE_MINUS_SRC_ALPHA, this._gl.ONE, this._gl.ONE);
  2414. this._alphaState.alphaBlend = true;
  2415. break;
  2416. case Engine.ALPHA_ONEONE:
  2417. this._alphaState.setAlphaBlendFunctionParameters(this._gl.ONE, this._gl.ONE, this._gl.ZERO, this._gl.ONE);
  2418. this._alphaState.alphaBlend = true;
  2419. break;
  2420. case Engine.ALPHA_ADD:
  2421. this._alphaState.setAlphaBlendFunctionParameters(this._gl.SRC_ALPHA, this._gl.ONE, this._gl.ZERO, this._gl.ONE);
  2422. this._alphaState.alphaBlend = true;
  2423. break;
  2424. case Engine.ALPHA_SUBTRACT:
  2425. this._alphaState.setAlphaBlendFunctionParameters(this._gl.ZERO, this._gl.ONE_MINUS_SRC_COLOR, this._gl.ONE, this._gl.ONE);
  2426. this._alphaState.alphaBlend = true;
  2427. break;
  2428. case Engine.ALPHA_MULTIPLY:
  2429. this._alphaState.setAlphaBlendFunctionParameters(this._gl.DST_COLOR, this._gl.ZERO, this._gl.ONE, this._gl.ONE);
  2430. this._alphaState.alphaBlend = true;
  2431. break;
  2432. case Engine.ALPHA_MAXIMIZED:
  2433. this._alphaState.setAlphaBlendFunctionParameters(this._gl.SRC_ALPHA, this._gl.ONE_MINUS_SRC_COLOR, this._gl.ONE, this._gl.ONE);
  2434. this._alphaState.alphaBlend = true;
  2435. break;
  2436. case Engine.ALPHA_INTERPOLATE:
  2437. this._alphaState.setAlphaBlendFunctionParameters(this._gl.CONSTANT_COLOR, this._gl.ONE_MINUS_CONSTANT_COLOR, this._gl.CONSTANT_ALPHA, this._gl.ONE_MINUS_CONSTANT_ALPHA);
  2438. this._alphaState.alphaBlend = true;
  2439. break;
  2440. case Engine.ALPHA_SCREENMODE:
  2441. this._alphaState.setAlphaBlendFunctionParameters(this._gl.ONE, this._gl.ONE_MINUS_SRC_COLOR, this._gl.ONE, this._gl.ONE_MINUS_SRC_ALPHA);
  2442. this._alphaState.alphaBlend = true;
  2443. break;
  2444. }
  2445. if (!noDepthWriteChange) {
  2446. this.setDepthWrite(mode === Engine.ALPHA_DISABLE);
  2447. }
  2448. this._alphaMode = mode;
  2449. }
  2450. public getAlphaMode(): number {
  2451. return this._alphaMode;
  2452. }
  2453. // Textures
  2454. public wipeCaches(bruteForce?: boolean): void {
  2455. if (this.preventCacheWipeBetweenFrames && !bruteForce) {
  2456. return;
  2457. }
  2458. this._currentEffect = null;
  2459. // 6/8/2017: deltakosh: Should not be required anymore.
  2460. // This message is then mostly for the future myself who will scream out loud when seeing that it was actually required :)
  2461. if (bruteForce) {
  2462. this.resetTextureCache();
  2463. this._currentProgram = null;
  2464. this._stencilState.reset();
  2465. this._depthCullingState.reset();
  2466. this.setDepthFunctionToLessOrEqual();
  2467. this._alphaState.reset();
  2468. }
  2469. this._resetVertexBufferBinding();
  2470. this._cachedIndexBuffer = null;
  2471. this._cachedEffectForVertexBuffers = null;
  2472. this._unbindVertexArrayObject();
  2473. this.bindIndexBuffer(null);
  2474. }
  2475. /**
  2476. * Set the compressed texture format to use, based on the formats you have, and the formats
  2477. * supported by the hardware / browser.
  2478. *
  2479. * Khronos Texture Container (.ktx) files are used to support this. This format has the
  2480. * advantage of being specifically designed for OpenGL. Header elements directly correspond
  2481. * to API arguments needed to compressed textures. This puts the burden on the container
  2482. * generator to house the arcane code for determining these for current & future formats.
  2483. *
  2484. * for description see https://www.khronos.org/opengles/sdk/tools/KTX/
  2485. * for file layout see https://www.khronos.org/opengles/sdk/tools/KTX/file_format_spec/
  2486. *
  2487. * Note: The result of this call is not taken into account when a texture is base64.
  2488. *
  2489. * @param {Array<string>} formatsAvailable- The list of those format families you have created
  2490. * on your server. Syntax: '-' + format family + '.ktx'. (Case and order do not matter.)
  2491. *
  2492. * Current families are astc, dxt, pvrtc, etc2, & etc1.
  2493. * @returns The extension selected.
  2494. */
  2495. public setTextureFormatToUse(formatsAvailable: Array<string>): Nullable<string> {
  2496. for (var i = 0, len1 = this.texturesSupported.length; i < len1; i++) {
  2497. for (var j = 0, len2 = formatsAvailable.length; j < len2; j++) {
  2498. if (this._texturesSupported[i] === formatsAvailable[j].toLowerCase()) {
  2499. return this._textureFormatInUse = this._texturesSupported[i];
  2500. }
  2501. }
  2502. }
  2503. // actively set format to nothing, to allow this to be called more than once
  2504. // and possibly fail the 2nd time
  2505. this._textureFormatInUse = null;
  2506. return null;
  2507. }
  2508. public _createTexture(): WebGLTexture {
  2509. let texture = this._gl.createTexture();
  2510. if (!texture) {
  2511. throw new Error("Unable to create texture");
  2512. }
  2513. return texture;
  2514. }
  2515. /**
  2516. * Usually called from BABYLON.Texture.ts. Passed information to create a WebGLTexture.
  2517. * @param {string} urlArg- This contains one of the following:
  2518. * 1. A conventional http URL, e.g. 'http://...' or 'file://...'
  2519. * 2. A base64 string of in-line texture data, e.g. 'data:image/jpg;base64,/...'
  2520. * 3. An indicator that data being passed using the buffer parameter, e.g. 'data:mytexture.jpg'
  2521. *
  2522. * @param {boolean} noMipmap- When true, no mipmaps shall be generated. Ignored for compressed textures. They must be in the file.
  2523. * @param {boolean} invertY- When true, image is flipped when loaded. You probably want true. Ignored for compressed textures. Must be flipped in the file.
  2524. * @param {Scene} scene- Needed for loading to the correct scene.
  2525. * @param {number} samplingMode- Mode with should be used sample / access the texture. Default: TRILINEAR
  2526. * @param {callback} onLoad- Optional callback to be called upon successful completion.
  2527. * @param {callback} onError- Optional callback to be called upon failure.
  2528. * @param {ArrayBuffer | HTMLImageElement} buffer- A source of a file previously fetched as either an ArrayBuffer (compressed or image format) or HTMLImageElement (image format)
  2529. * @param {WebGLTexture} fallback- An internal argument in case the function must be called again, due to etc1 not having alpha capabilities.
  2530. * @param {number} format- Internal format. Default: RGB when extension is '.jpg' else RGBA. Ignored for compressed textures.
  2531. *
  2532. * @returns {WebGLTexture} for assignment back into BABYLON.Texture
  2533. */
  2534. public createTexture(urlArg: Nullable<string>, noMipmap: boolean, invertY: boolean, scene: Nullable<Scene>, samplingMode: number = Texture.TRILINEAR_SAMPLINGMODE,
  2535. onLoad: Nullable<() => void> = null, onError: Nullable<(message: string, exception: any) => void> = null,
  2536. buffer: Nullable<ArrayBuffer | HTMLImageElement> = null, fallBack: Nullable<InternalTexture> = null, format: Nullable<number> = null): InternalTexture {
  2537. var url = String(urlArg); // assign a new string, so that the original is still available in case of fallback
  2538. var fromData = url.substr(0, 5) === "data:";
  2539. var fromBlob = url.substr(0, 5) === "blob:";
  2540. var isBase64 = fromData && url.indexOf("base64") !== -1;
  2541. let texture = fallBack ? fallBack : new InternalTexture(this, InternalTexture.DATASOURCE_URL);
  2542. // establish the file extension, if possible
  2543. var lastDot = url.lastIndexOf('.');
  2544. var extension = (lastDot > 0) ? url.substring(lastDot).toLowerCase() : "";
  2545. var isDDS = this.getCaps().s3tc && (extension === ".dds");
  2546. var isTGA = (extension === ".tga");
  2547. // determine if a ktx file should be substituted
  2548. var isKTX = false;
  2549. if (this._textureFormatInUse && !isBase64 && !fallBack) {
  2550. url = url.substring(0, lastDot) + this._textureFormatInUse;
  2551. isKTX = true;
  2552. }
  2553. if (scene) {
  2554. scene._addPendingData(texture);
  2555. }
  2556. texture.url = url;
  2557. texture.generateMipMaps = !noMipmap;
  2558. texture.samplingMode = samplingMode;
  2559. texture.invertY = invertY;
  2560. if (!this._doNotHandleContextLost) {
  2561. // Keep a link to the buffer only if we plan to handle context lost
  2562. texture._buffer = buffer;
  2563. }
  2564. let onLoadObserver: Nullable<Observer<InternalTexture>> = null;
  2565. if (onLoad && !fallBack) {
  2566. onLoadObserver = texture.onLoadedObservable.add(onLoad);
  2567. }
  2568. if (!fallBack) this._internalTexturesCache.push(texture);
  2569. var onerror = (message?: string, exception?: any) => {
  2570. if (scene) {
  2571. scene._removePendingData(texture);
  2572. }
  2573. if (onLoadObserver) {
  2574. texture.onLoadedObservable.remove(onLoadObserver);
  2575. }
  2576. // fallback for when compressed file not found to try again. For instance, etc1 does not have an alpha capable type
  2577. if (isKTX) {
  2578. this.createTexture(urlArg, noMipmap, invertY, scene, samplingMode, null, onError, buffer, texture);
  2579. } else if (Tools.UseFallbackTexture) {
  2580. this.createTexture(Tools.fallbackTexture, noMipmap, invertY, scene, samplingMode, null, onError, buffer, texture);
  2581. }
  2582. if (onError) {
  2583. onError(message || "Unknown error", exception);
  2584. }
  2585. };
  2586. var callback: Nullable<(arrayBuffer: any) => void> = null;
  2587. // processing for non-image formats
  2588. if (isKTX || isTGA || isDDS) {
  2589. if (isKTX) {
  2590. callback = (data) => {
  2591. var ktx = new KhronosTextureContainer(data, 1);
  2592. this._prepareWebGLTexture(texture, scene, ktx.pixelWidth, ktx.pixelHeight, invertY, false, true, () => {
  2593. ktx.uploadLevels(this._gl, !noMipmap);
  2594. return false;
  2595. }, samplingMode);
  2596. };
  2597. } else if (isTGA) {
  2598. callback = (arrayBuffer) => {
  2599. var data = new Uint8Array(arrayBuffer);
  2600. var header = TGATools.GetTGAHeader(data);
  2601. this._prepareWebGLTexture(texture, scene, header.width, header.height, invertY, noMipmap, false, () => {
  2602. TGATools.UploadContent(this._gl, data);
  2603. return false;
  2604. }, samplingMode);
  2605. };
  2606. } else if (isDDS) {
  2607. callback = (data) => {
  2608. var info = DDSTools.GetDDSInfo(data);
  2609. var loadMipmap = (info.isRGB || info.isLuminance || info.mipmapCount > 1) && !noMipmap && ((info.width >> (info.mipmapCount - 1)) === 1);
  2610. this._prepareWebGLTexture(texture, scene, info.width, info.height, invertY, !loadMipmap, info.isFourCC, () => {
  2611. DDSTools.UploadDDSLevels(this, this._gl, data, info, loadMipmap, 1);
  2612. return false;
  2613. }, samplingMode);
  2614. };
  2615. }
  2616. if (!buffer) {
  2617. this._loadFile(url, data => {
  2618. if (callback) {
  2619. callback(data);
  2620. }
  2621. }, undefined, scene ? scene.database : undefined, true, (request?: XMLHttpRequest, exception?: any) => {
  2622. onerror("Unable to load " + (request ? request.responseURL : url, exception));
  2623. });
  2624. } else {
  2625. if (callback) {
  2626. callback(buffer);
  2627. }
  2628. }
  2629. // image format processing
  2630. } else {
  2631. var onload = (img: HTMLImageElement) => {
  2632. if (fromBlob && !this._doNotHandleContextLost) {
  2633. // We need to store the image if we need to rebuild the texture
  2634. // in case of a webgl context lost
  2635. texture._buffer = img;
  2636. }
  2637. this._prepareWebGLTexture(texture, scene, img.width, img.height, invertY, noMipmap, false, (potWidth, potHeight, continuationCallback) => {
  2638. let gl = this._gl;
  2639. var isPot = (img.width === potWidth && img.height === potHeight);
  2640. let internalFormat = format ? this._getInternalFormat(format) : ((extension === ".jpg") ? gl.RGB : gl.RGBA);
  2641. if (isPot) {
  2642. gl.texImage2D(gl.TEXTURE_2D, 0, internalFormat, internalFormat, gl.UNSIGNED_BYTE, img);
  2643. return false;
  2644. }
  2645. // Using shaders to rescale because canvas.drawImage is lossy
  2646. let source = new InternalTexture(this, InternalTexture.DATASOURCE_TEMP);
  2647. this._bindTextureDirectly(gl.TEXTURE_2D, source, true);
  2648. gl.texImage2D(gl.TEXTURE_2D, 0, internalFormat, internalFormat, gl.UNSIGNED_BYTE, img);
  2649. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_MAG_FILTER, gl.LINEAR);
  2650. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_MIN_FILTER, gl.LINEAR);
  2651. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_WRAP_S, gl.CLAMP_TO_EDGE);
  2652. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_WRAP_T, gl.CLAMP_TO_EDGE);
  2653. this._rescaleTexture(source, texture, scene, internalFormat, () => {
  2654. this._releaseTexture(source);
  2655. this._bindTextureDirectly(gl.TEXTURE_2D, texture, true);
  2656. continuationCallback();
  2657. });
  2658. return true;
  2659. }, samplingMode);
  2660. };
  2661. if (!fromData || isBase64)
  2662. if (buffer instanceof HTMLImageElement) {
  2663. onload(buffer);
  2664. } else {
  2665. Tools.LoadImage(url, onload, onerror, scene ? scene.database : null);
  2666. }
  2667. else if (buffer instanceof Array || typeof buffer === "string" || buffer instanceof ArrayBuffer)
  2668. Tools.LoadImage(buffer, onload, onerror, scene ? scene.database : null);
  2669. else
  2670. onload(<HTMLImageElement>buffer);
  2671. }
  2672. return texture;
  2673. }
  2674. private _rescaleTexture(source: InternalTexture, destination: InternalTexture, scene: Nullable<Scene>, internalFormat: number, onComplete: () => void): void {
  2675. let rtt = this.createRenderTargetTexture({
  2676. width: destination.width,
  2677. height: destination.height,
  2678. }, {
  2679. generateMipMaps: false,
  2680. type: Engine.TEXTURETYPE_UNSIGNED_INT,
  2681. samplingMode: Texture.BILINEAR_SAMPLINGMODE,
  2682. generateDepthBuffer: false,
  2683. generateStencilBuffer: false
  2684. }
  2685. );
  2686. if (!this._rescalePostProcess) {
  2687. this._rescalePostProcess = new PassPostProcess("rescale", 1, null, Texture.BILINEAR_SAMPLINGMODE, this, false, Engine.TEXTURETYPE_UNSIGNED_INT);
  2688. }
  2689. this._rescalePostProcess.getEffect().executeWhenCompiled(() => {
  2690. this._rescalePostProcess.onApply = function (effect) {
  2691. effect._bindTexture("textureSampler", source);
  2692. }
  2693. let hostingScene = scene;
  2694. if (!hostingScene) {
  2695. hostingScene = this.scenes[this.scenes.length - 1];
  2696. }
  2697. hostingScene.postProcessManager.directRender([this._rescalePostProcess], rtt, true);
  2698. this._bindTextureDirectly(this._gl.TEXTURE_2D, destination, true);
  2699. this._gl.copyTexImage2D(this._gl.TEXTURE_2D, 0, internalFormat, 0, 0, destination.width, destination.height, 0);
  2700. this.unBindFramebuffer(rtt);
  2701. this._releaseTexture(rtt);
  2702. if (onComplete) {
  2703. onComplete();
  2704. }
  2705. });
  2706. }
  2707. private _getInternalFormat(format: number): number {
  2708. var internalFormat = this._gl.RGBA;
  2709. switch (format) {
  2710. case Engine.TEXTUREFORMAT_ALPHA:
  2711. internalFormat = this._gl.ALPHA;
  2712. break;
  2713. case Engine.TEXTUREFORMAT_LUMINANCE:
  2714. internalFormat = this._gl.LUMINANCE;
  2715. break;
  2716. case Engine.TEXTUREFORMAT_LUMINANCE_ALPHA:
  2717. internalFormat = this._gl.LUMINANCE_ALPHA;
  2718. break;
  2719. case Engine.TEXTUREFORMAT_RGB:
  2720. internalFormat = this._gl.RGB;
  2721. break;
  2722. case Engine.TEXTUREFORMAT_RGBA:
  2723. internalFormat = this._gl.RGBA;
  2724. break;
  2725. }
  2726. return internalFormat;
  2727. }
  2728. public updateRawTexture(texture: Nullable<InternalTexture>, data: Nullable<ArrayBufferView>, format: number, invertY: boolean, compression: Nullable<string> = null, type = Engine.TEXTURETYPE_UNSIGNED_INT): void {
  2729. if (!texture) {
  2730. return;
  2731. }
  2732. var internalFormat = this._getInternalFormat(format);
  2733. var internalSizedFomat = this._getRGBABufferInternalSizedFormat(type);
  2734. var textureType = this._getWebGLTextureType(type);
  2735. this._bindTextureDirectly(this._gl.TEXTURE_2D, texture, true);
  2736. this._gl.pixelStorei(this._gl.UNPACK_FLIP_Y_WEBGL, invertY === undefined ? 1 : (invertY ? 1 : 0));
  2737. if (!this._doNotHandleContextLost) {
  2738. texture._bufferView = data;
  2739. texture.format = format;
  2740. texture.type = type;
  2741. texture.invertY = invertY;
  2742. texture._compression = compression;
  2743. }
  2744. if (texture.width % 4 !== 0) {
  2745. this._gl.pixelStorei(this._gl.UNPACK_ALIGNMENT, 1);
  2746. }
  2747. if (compression && data) {
  2748. this._gl.compressedTexImage2D(this._gl.TEXTURE_2D, 0, (<any>this.getCaps().s3tc)[compression], texture.width, texture.height, 0, data);
  2749. } else {
  2750. this._gl.texImage2D(this._gl.TEXTURE_2D, 0, internalSizedFomat, texture.width, texture.height, 0, internalFormat, textureType, data);
  2751. }
  2752. if (texture.generateMipMaps) {
  2753. this._gl.generateMipmap(this._gl.TEXTURE_2D);
  2754. }
  2755. this._bindTextureDirectly(this._gl.TEXTURE_2D, null);
  2756. // this.resetTextureCache();
  2757. texture.isReady = true;
  2758. }
  2759. public createRawTexture(data: Nullable<ArrayBufferView>, width: number, height: number, format: number, generateMipMaps: boolean, invertY: boolean, samplingMode: number, compression: Nullable<string> = null, type: number = Engine.TEXTURETYPE_UNSIGNED_INT): InternalTexture {
  2760. var texture = new InternalTexture(this, InternalTexture.DATASOURCE_RAW);
  2761. texture.baseWidth = width;
  2762. texture.baseHeight = height;
  2763. texture.width = width;
  2764. texture.height = height;
  2765. texture.format = format;
  2766. texture.generateMipMaps = generateMipMaps;
  2767. texture.samplingMode = samplingMode;
  2768. texture.invertY = invertY;
  2769. texture._compression = compression;
  2770. texture.type = type;
  2771. if (!this._doNotHandleContextLost) {
  2772. texture._bufferView = data;
  2773. }
  2774. this.updateRawTexture(texture, data, format, invertY, compression, type);
  2775. this._bindTextureDirectly(this._gl.TEXTURE_2D, texture, true);
  2776. // Filters
  2777. var filters = getSamplingParameters(samplingMode, generateMipMaps, this._gl);
  2778. this._gl.texParameteri(this._gl.TEXTURE_2D, this._gl.TEXTURE_MAG_FILTER, filters.mag);
  2779. this._gl.texParameteri(this._gl.TEXTURE_2D, this._gl.TEXTURE_MIN_FILTER, filters.min);
  2780. if (generateMipMaps) {
  2781. this._gl.generateMipmap(this._gl.TEXTURE_2D);
  2782. }
  2783. this._bindTextureDirectly(this._gl.TEXTURE_2D, null);
  2784. this._internalTexturesCache.push(texture);
  2785. return texture;
  2786. }
  2787. public createDynamicTexture(width: number, height: number, generateMipMaps: boolean, samplingMode: number): InternalTexture {
  2788. var texture = new InternalTexture(this, InternalTexture.DATASOURCE_DYNAMIC)
  2789. texture.baseWidth = width;
  2790. texture.baseHeight = height;
  2791. if (generateMipMaps) {
  2792. width = this.needPOTTextures ? Tools.GetExponentOfTwo(width, this._caps.maxTextureSize) : width;
  2793. height = this.needPOTTextures ? Tools.GetExponentOfTwo(height, this._caps.maxTextureSize) : height;
  2794. }
  2795. // this.resetTextureCache();
  2796. texture.width = width;
  2797. texture.height = height;
  2798. texture.isReady = false;
  2799. texture.generateMipMaps = generateMipMaps;
  2800. texture.samplingMode = samplingMode;
  2801. this.updateTextureSamplingMode(samplingMode, texture);
  2802. this._internalTexturesCache.push(texture);
  2803. return texture;
  2804. }
  2805. public updateTextureSamplingMode(samplingMode: number, texture: InternalTexture): void {
  2806. var filters = getSamplingParameters(samplingMode, texture.generateMipMaps, this._gl);
  2807. if (texture.isCube) {
  2808. this._bindTextureDirectly(this._gl.TEXTURE_CUBE_MAP, texture, true);
  2809. this._gl.texParameteri(this._gl.TEXTURE_CUBE_MAP, this._gl.TEXTURE_MAG_FILTER, filters.mag);
  2810. this._gl.texParameteri(this._gl.TEXTURE_CUBE_MAP, this._gl.TEXTURE_MIN_FILTER, filters.min);
  2811. this._bindTextureDirectly(this._gl.TEXTURE_CUBE_MAP, null);
  2812. } else if (texture.is3D) {
  2813. this._bindTextureDirectly(this._gl.TEXTURE_3D, texture, true);
  2814. this._gl.texParameteri(this._gl.TEXTURE_3D, this._gl.TEXTURE_MAG_FILTER, filters.mag);
  2815. this._gl.texParameteri(this._gl.TEXTURE_3D, this._gl.TEXTURE_MIN_FILTER, filters.min);
  2816. this._bindTextureDirectly(this._gl.TEXTURE_3D, null);
  2817. } else {
  2818. this._bindTextureDirectly(this._gl.TEXTURE_2D, texture, true);
  2819. this._gl.texParameteri(this._gl.TEXTURE_2D, this._gl.TEXTURE_MAG_FILTER, filters.mag);
  2820. this._gl.texParameteri(this._gl.TEXTURE_2D, this._gl.TEXTURE_MIN_FILTER, filters.min);
  2821. this._bindTextureDirectly(this._gl.TEXTURE_2D, null);
  2822. }
  2823. texture.samplingMode = samplingMode;
  2824. }
  2825. public updateDynamicTexture(texture: Nullable<InternalTexture>, canvas: HTMLCanvasElement, invertY: boolean, premulAlpha: boolean = false, format?: number): void {
  2826. if (!texture) {
  2827. return;
  2828. }
  2829. this._bindTextureDirectly(this._gl.TEXTURE_2D, texture, true);
  2830. this._gl.pixelStorei(this._gl.UNPACK_FLIP_Y_WEBGL, invertY ? 1 : 0);
  2831. if (premulAlpha) {
  2832. this._gl.pixelStorei(this._gl.UNPACK_PREMULTIPLY_ALPHA_WEBGL, 1);
  2833. }
  2834. let internalFormat = format ? this._getInternalFormat(format) : this._gl.RGBA;
  2835. this._gl.texImage2D(this._gl.TEXTURE_2D, 0, internalFormat, internalFormat, this._gl.UNSIGNED_BYTE, canvas);
  2836. if (texture.generateMipMaps) {
  2837. this._gl.generateMipmap(this._gl.TEXTURE_2D);
  2838. }
  2839. this._bindTextureDirectly(this._gl.TEXTURE_2D, null);
  2840. if (premulAlpha) {
  2841. this._gl.pixelStorei(this._gl.UNPACK_PREMULTIPLY_ALPHA_WEBGL, 0);
  2842. }
  2843. texture.isReady = true;
  2844. }
  2845. public updateVideoTexture(texture: Nullable<InternalTexture>, video: HTMLVideoElement, invertY: boolean): void {
  2846. if (!texture || texture._isDisabled) {
  2847. return;
  2848. }
  2849. this._bindTextureDirectly(this._gl.TEXTURE_2D, texture, true);
  2850. this._gl.pixelStorei(this._gl.UNPACK_FLIP_Y_WEBGL, invertY ? 0 : 1); // Video are upside down by default
  2851. try {
  2852. // Testing video texture support
  2853. if (this._videoTextureSupported === undefined) {
  2854. this._gl.texImage2D(this._gl.TEXTURE_2D, 0, this._gl.RGBA, this._gl.RGBA, this._gl.UNSIGNED_BYTE, video);
  2855. if (this._gl.getError() !== 0) {
  2856. this._videoTextureSupported = false;
  2857. } else {
  2858. this._videoTextureSupported = true;
  2859. }
  2860. }
  2861. // Copy video through the current working canvas if video texture is not supported
  2862. if (!this._videoTextureSupported) {
  2863. if (!texture._workingCanvas) {
  2864. texture._workingCanvas = document.createElement("canvas");
  2865. let context = texture._workingCanvas.getContext("2d");
  2866. if (!context) {
  2867. throw new Error("Unable to get 2d context");
  2868. }
  2869. texture._workingContext = context;
  2870. texture._workingCanvas.width = texture.width;
  2871. texture._workingCanvas.height = texture.height;
  2872. }
  2873. texture._workingContext.drawImage(video, 0, 0, video.videoWidth, video.videoHeight, 0, 0, texture.width, texture.height);
  2874. this._gl.texImage2D(this._gl.TEXTURE_2D, 0, this._gl.RGBA, this._gl.RGBA, this._gl.UNSIGNED_BYTE, texture._workingCanvas);
  2875. } else {
  2876. this._gl.texImage2D(this._gl.TEXTURE_2D, 0, this._gl.RGBA, this._gl.RGBA, this._gl.UNSIGNED_BYTE, video);
  2877. }
  2878. if (texture.generateMipMaps) {
  2879. this._gl.generateMipmap(this._gl.TEXTURE_2D);
  2880. }
  2881. this._bindTextureDirectly(this._gl.TEXTURE_2D, null);
  2882. // this.resetTextureCache();
  2883. texture.isReady = true;
  2884. } catch (ex) {
  2885. // Something unexpected
  2886. // Let's disable the texture
  2887. texture._isDisabled = true;
  2888. }
  2889. }
  2890. public createRenderTargetTexture(size: number | { width: number, height: number }, options: boolean | RenderTargetCreationOptions): InternalTexture {
  2891. let fullOptions = new RenderTargetCreationOptions();
  2892. if (options !== undefined && typeof options === "object") {
  2893. fullOptions.generateMipMaps = options.generateMipMaps;
  2894. fullOptions.generateDepthBuffer = options.generateDepthBuffer === undefined ? true : options.generateDepthBuffer;
  2895. fullOptions.generateStencilBuffer = fullOptions.generateDepthBuffer && options.generateStencilBuffer;
  2896. fullOptions.type = options.type === undefined ? Engine.TEXTURETYPE_UNSIGNED_INT : options.type;
  2897. fullOptions.samplingMode = options.samplingMode === undefined ? Texture.TRILINEAR_SAMPLINGMODE : options.samplingMode;
  2898. } else {
  2899. fullOptions.generateMipMaps = <boolean>options;
  2900. fullOptions.generateDepthBuffer = true;
  2901. fullOptions.generateStencilBuffer = false;
  2902. fullOptions.type = Engine.TEXTURETYPE_UNSIGNED_INT;
  2903. fullOptions.samplingMode = Texture.TRILINEAR_SAMPLINGMODE;
  2904. }
  2905. if (fullOptions.type === Engine.TEXTURETYPE_FLOAT && !this._caps.textureFloatLinearFiltering) {
  2906. // if floating point linear (gl.FLOAT) then force to NEAREST_SAMPLINGMODE
  2907. fullOptions.samplingMode = Texture.NEAREST_SAMPLINGMODE;
  2908. }
  2909. else if (fullOptions.type === Engine.TEXTURETYPE_HALF_FLOAT && !this._caps.textureHalfFloatLinearFiltering) {
  2910. // if floating point linear (HALF_FLOAT) then force to NEAREST_SAMPLINGMODE
  2911. fullOptions.samplingMode = Texture.NEAREST_SAMPLINGMODE;
  2912. }
  2913. var gl = this._gl;
  2914. var texture = new InternalTexture(this, InternalTexture.DATASOURCE_RENDERTARGET);
  2915. this._bindTextureDirectly(gl.TEXTURE_2D, texture, true);
  2916. var width = (<{ width: number, height: number }>size).width || <number>size;
  2917. var height = (<{ width: number, height: number }>size).height || <number>size;
  2918. var filters = getSamplingParameters(fullOptions.samplingMode, fullOptions.generateMipMaps ? true : false, gl);
  2919. if (fullOptions.type === Engine.TEXTURETYPE_FLOAT && !this._caps.textureFloat) {
  2920. fullOptions.type = Engine.TEXTURETYPE_UNSIGNED_INT;
  2921. Tools.Warn("Float textures are not supported. Render target forced to TEXTURETYPE_UNSIGNED_BYTE type");
  2922. }
  2923. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_MAG_FILTER, filters.mag);
  2924. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_MIN_FILTER, filters.min);
  2925. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_WRAP_S, gl.CLAMP_TO_EDGE);
  2926. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_WRAP_T, gl.CLAMP_TO_EDGE);
  2927. gl.texImage2D(gl.TEXTURE_2D, 0, this._getRGBABufferInternalSizedFormat(fullOptions.type), width, height, 0, gl.RGBA, this._getWebGLTextureType(fullOptions.type), null);
  2928. // Create the framebuffer
  2929. var framebuffer = gl.createFramebuffer();
  2930. this.bindUnboundFramebuffer(framebuffer);
  2931. gl.framebufferTexture2D(gl.FRAMEBUFFER, gl.COLOR_ATTACHMENT0, gl.TEXTURE_2D, texture._webGLTexture, 0);
  2932. texture._depthStencilBuffer = this._setupFramebufferDepthAttachments(fullOptions.generateStencilBuffer ? true : false, fullOptions.generateDepthBuffer, width, height);
  2933. if (fullOptions.generateMipMaps) {
  2934. this._gl.generateMipmap(this._gl.TEXTURE_2D);
  2935. }
  2936. // Unbind
  2937. this._bindTextureDirectly(gl.TEXTURE_2D, null);
  2938. gl.bindRenderbuffer(gl.RENDERBUFFER, null);
  2939. this.bindUnboundFramebuffer(null);
  2940. texture._framebuffer = framebuffer;
  2941. texture.baseWidth = width;
  2942. texture.baseHeight = height;
  2943. texture.width = width;
  2944. texture.height = height;
  2945. texture.isReady = true;
  2946. texture.samples = 1;
  2947. texture.generateMipMaps = fullOptions.generateMipMaps ? true : false;
  2948. texture.samplingMode = fullOptions.samplingMode;
  2949. texture.type = fullOptions.type;
  2950. texture._generateDepthBuffer = fullOptions.generateDepthBuffer;
  2951. texture._generateStencilBuffer = fullOptions.generateStencilBuffer ? true : false;
  2952. // this.resetTextureCache();
  2953. this._internalTexturesCache.push(texture);
  2954. return texture;
  2955. }
  2956. public createMultipleRenderTarget(size: any, options: any): InternalTexture[] {
  2957. var generateMipMaps = false;
  2958. var generateDepthBuffer = true;
  2959. var generateStencilBuffer = false;
  2960. var generateDepthTexture = false;
  2961. var textureCount = 1;
  2962. var defaultType = Engine.TEXTURETYPE_UNSIGNED_INT;
  2963. var defaultSamplingMode = Texture.TRILINEAR_SAMPLINGMODE;
  2964. var types = [], samplingModes = [];
  2965. if (options !== undefined) {
  2966. generateMipMaps = options.generateMipMaps;
  2967. generateDepthBuffer = options.generateDepthBuffer === undefined ? true : options.generateDepthBuffer;
  2968. generateStencilBuffer = options.generateStencilBuffer;
  2969. generateDepthTexture = options.generateDepthTexture;
  2970. textureCount = options.textureCount || 1;
  2971. if (options.types) {
  2972. types = options.types;
  2973. }
  2974. if (options.samplingModes) {
  2975. samplingModes = options.samplingModes;
  2976. }
  2977. }
  2978. var gl = this._gl;
  2979. // Create the framebuffer
  2980. var framebuffer = gl.createFramebuffer();
  2981. this.bindUnboundFramebuffer(framebuffer);
  2982. var width = size.width || size;
  2983. var height = size.height || size;
  2984. var textures = [];
  2985. var attachments = []
  2986. var depthStencilBuffer = this._setupFramebufferDepthAttachments(generateStencilBuffer, generateDepthBuffer, width, height);
  2987. for (var i = 0; i < textureCount; i++) {
  2988. var samplingMode = samplingModes[i] || defaultSamplingMode;
  2989. var type = types[i] || defaultType;
  2990. if (type === Engine.TEXTURETYPE_FLOAT && !this._caps.textureFloatLinearFiltering) {
  2991. // if floating point linear (gl.FLOAT) then force to NEAREST_SAMPLINGMODE
  2992. samplingMode = Texture.NEAREST_SAMPLINGMODE;
  2993. }
  2994. else if (type === Engine.TEXTURETYPE_HALF_FLOAT && !this._caps.textureHalfFloatLinearFiltering) {
  2995. // if floating point linear (HALF_FLOAT) then force to NEAREST_SAMPLINGMODE
  2996. samplingMode = Texture.NEAREST_SAMPLINGMODE;
  2997. }
  2998. var filters = getSamplingParameters(samplingMode, generateMipMaps, gl);
  2999. if (type === Engine.TEXTURETYPE_FLOAT && !this._caps.textureFloat) {
  3000. type = Engine.TEXTURETYPE_UNSIGNED_INT;
  3001. Tools.Warn("Float textures are not supported. Render target forced to TEXTURETYPE_UNSIGNED_BYTE type");
  3002. }
  3003. var texture = new InternalTexture(this, InternalTexture.DATASOURCE_MULTIRENDERTARGET);
  3004. var attachment = (<any>gl)[this.webGLVersion > 1 ? "COLOR_ATTACHMENT" + i : "COLOR_ATTACHMENT" + i + "_WEBGL"];
  3005. textures.push(texture);
  3006. attachments.push(attachment);
  3007. gl.activeTexture((<any>gl)["TEXTURE" + i]);
  3008. gl.bindTexture(gl.TEXTURE_2D, texture._webGLTexture);
  3009. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_MAG_FILTER, filters.mag);
  3010. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_MIN_FILTER, filters.min);
  3011. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_WRAP_S, gl.CLAMP_TO_EDGE);
  3012. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_WRAP_T, gl.CLAMP_TO_EDGE);
  3013. gl.texImage2D(gl.TEXTURE_2D, 0, this._getRGBABufferInternalSizedFormat(type), width, height, 0, gl.RGBA, this._getWebGLTextureType(type), null);
  3014. gl.framebufferTexture2D(gl.DRAW_FRAMEBUFFER, attachment, gl.TEXTURE_2D, texture._webGLTexture, 0);
  3015. if (generateMipMaps) {
  3016. this._gl.generateMipmap(this._gl.TEXTURE_2D);
  3017. }
  3018. // Unbind
  3019. this._bindTextureDirectly(gl.TEXTURE_2D, null);
  3020. texture._framebuffer = framebuffer;
  3021. texture._depthStencilBuffer = depthStencilBuffer;
  3022. texture.baseWidth = width;
  3023. texture.baseHeight = height;
  3024. texture.width = width;
  3025. texture.height = height;
  3026. texture.isReady = true;
  3027. texture.samples = 1;
  3028. texture.generateMipMaps = generateMipMaps;
  3029. texture.samplingMode = samplingMode;
  3030. texture.type = type;
  3031. texture._generateDepthBuffer = generateDepthBuffer;
  3032. texture._generateStencilBuffer = generateStencilBuffer;
  3033. texture._attachments = attachments;
  3034. this._internalTexturesCache.push(texture);
  3035. }
  3036. if (generateDepthTexture && this._caps.depthTextureExtension) {
  3037. // Depth texture
  3038. var depthTexture = new InternalTexture(this, InternalTexture.DATASOURCE_MULTIRENDERTARGET);
  3039. gl.activeTexture(gl.TEXTURE0);
  3040. gl.bindTexture(gl.TEXTURE_2D, depthTexture._webGLTexture);
  3041. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_MAG_FILTER, gl.NEAREST);
  3042. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_MIN_FILTER, gl.NEAREST);
  3043. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_WRAP_S, gl.CLAMP_TO_EDGE);
  3044. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_WRAP_T, gl.CLAMP_TO_EDGE);
  3045. gl.texImage2D(
  3046. gl.TEXTURE_2D,
  3047. 0,
  3048. this.webGLVersion < 2 ? gl.DEPTH_COMPONENT : gl.DEPTH_COMPONENT16,
  3049. width,
  3050. height,
  3051. 0,
  3052. gl.DEPTH_COMPONENT,
  3053. gl.UNSIGNED_SHORT,
  3054. null
  3055. );
  3056. gl.framebufferTexture2D(
  3057. gl.FRAMEBUFFER,
  3058. gl.DEPTH_ATTACHMENT,
  3059. gl.TEXTURE_2D,
  3060. depthTexture._webGLTexture,
  3061. 0
  3062. );
  3063. depthTexture._framebuffer = framebuffer;
  3064. depthTexture.baseWidth = width;
  3065. depthTexture.baseHeight = height;
  3066. depthTexture.width = width;
  3067. depthTexture.height = height;
  3068. depthTexture.isReady = true;
  3069. depthTexture.samples = 1;
  3070. depthTexture.generateMipMaps = generateMipMaps;
  3071. depthTexture.samplingMode = gl.NEAREST;
  3072. depthTexture._generateDepthBuffer = generateDepthBuffer;
  3073. depthTexture._generateStencilBuffer = generateStencilBuffer;
  3074. textures.push(depthTexture)
  3075. this._internalTexturesCache.push(depthTexture);
  3076. }
  3077. gl.drawBuffers(attachments);
  3078. gl.bindRenderbuffer(gl.RENDERBUFFER, null);
  3079. this.bindUnboundFramebuffer(null);
  3080. this.resetTextureCache();
  3081. return textures;
  3082. }
  3083. private _setupFramebufferDepthAttachments(generateStencilBuffer: boolean, generateDepthBuffer: boolean, width: number, height: number, samples = 1): Nullable<WebGLRenderbuffer> {
  3084. var depthStencilBuffer: Nullable<WebGLRenderbuffer> = null;
  3085. var gl = this._gl;
  3086. // Create the depth/stencil buffer
  3087. if (generateStencilBuffer) {
  3088. depthStencilBuffer = gl.createRenderbuffer();
  3089. gl.bindRenderbuffer(gl.RENDERBUFFER, depthStencilBuffer);
  3090. if (samples > 1) {
  3091. gl.renderbufferStorageMultisample(gl.RENDERBUFFER, samples, gl.DEPTH24_STENCIL8, width, height);
  3092. } else {
  3093. gl.renderbufferStorage(gl.RENDERBUFFER, gl.DEPTH_STENCIL, width, height);
  3094. }
  3095. gl.framebufferRenderbuffer(gl.FRAMEBUFFER, gl.DEPTH_STENCIL_ATTACHMENT, gl.RENDERBUFFER, depthStencilBuffer);
  3096. }
  3097. else if (generateDepthBuffer) {
  3098. depthStencilBuffer = gl.createRenderbuffer();
  3099. gl.bindRenderbuffer(gl.RENDERBUFFER, depthStencilBuffer);
  3100. if (samples > 1) {
  3101. gl.renderbufferStorageMultisample(gl.RENDERBUFFER, samples, gl.DEPTH_COMPONENT16, width, height);
  3102. } else {
  3103. gl.renderbufferStorage(gl.RENDERBUFFER, gl.DEPTH_COMPONENT16, width, height);
  3104. }
  3105. gl.framebufferRenderbuffer(gl.FRAMEBUFFER, gl.DEPTH_ATTACHMENT, gl.RENDERBUFFER, depthStencilBuffer);
  3106. }
  3107. return depthStencilBuffer;
  3108. }
  3109. public updateRenderTargetTextureSampleCount(texture: Nullable<InternalTexture>, samples: number): number {
  3110. if (this.webGLVersion < 2 || !texture) {
  3111. return 1;
  3112. }
  3113. if (texture.samples === samples) {
  3114. return samples;
  3115. }
  3116. var gl = this._gl;
  3117. samples = Math.min(samples, gl.getParameter(gl.MAX_SAMPLES));
  3118. // Dispose previous render buffers
  3119. if (texture._depthStencilBuffer) {
  3120. gl.deleteRenderbuffer(texture._depthStencilBuffer);
  3121. texture._depthStencilBuffer = null;
  3122. }
  3123. if (texture._MSAAFramebuffer) {
  3124. gl.deleteFramebuffer(texture._MSAAFramebuffer);
  3125. texture._MSAAFramebuffer = null;
  3126. }
  3127. if (texture._MSAARenderBuffer) {
  3128. gl.deleteRenderbuffer(texture._MSAARenderBuffer);
  3129. texture._MSAARenderBuffer = null;
  3130. }
  3131. if (samples > 1) {
  3132. let framebuffer = gl.createFramebuffer();
  3133. if (!framebuffer) {
  3134. throw new Error("Unable to create multi sampled framebuffer");
  3135. }
  3136. texture._MSAAFramebuffer = framebuffer;
  3137. this.bindUnboundFramebuffer(texture._MSAAFramebuffer);
  3138. var colorRenderbuffer = gl.createRenderbuffer();
  3139. if (!colorRenderbuffer) {
  3140. throw new Error("Unable to create multi sampled framebuffer");
  3141. }
  3142. gl.bindRenderbuffer(gl.RENDERBUFFER, colorRenderbuffer);
  3143. gl.renderbufferStorageMultisample(gl.RENDERBUFFER, samples, this._getRGBAMultiSampleBufferFormat(texture.type), texture.width, texture.height);
  3144. gl.framebufferRenderbuffer(gl.FRAMEBUFFER, gl.COLOR_ATTACHMENT0, gl.RENDERBUFFER, colorRenderbuffer);
  3145. texture._MSAARenderBuffer = colorRenderbuffer;
  3146. } else {
  3147. this.bindUnboundFramebuffer(texture._framebuffer);
  3148. }
  3149. texture.samples = samples;
  3150. texture._depthStencilBuffer = this._setupFramebufferDepthAttachments(texture._generateStencilBuffer, texture._generateDepthBuffer, texture.width, texture.height, samples);
  3151. gl.bindRenderbuffer(gl.RENDERBUFFER, null);
  3152. this.bindUnboundFramebuffer(null);
  3153. return samples;
  3154. }
  3155. public updateMultipleRenderTargetTextureSampleCount(textures: Nullable<InternalTexture[]>, samples: number): number {
  3156. if (this.webGLVersion < 2 || !textures || textures.length == 0) {
  3157. return 1;
  3158. }
  3159. if (textures[0].samples === samples) {
  3160. return samples;
  3161. }
  3162. var gl = this._gl;
  3163. samples = Math.min(samples, gl.getParameter(gl.MAX_SAMPLES));
  3164. // Dispose previous render buffers
  3165. if (textures[0]._depthStencilBuffer) {
  3166. gl.deleteRenderbuffer(textures[0]._depthStencilBuffer);
  3167. textures[0]._depthStencilBuffer = null;
  3168. }
  3169. if (textures[0]._MSAAFramebuffer) {
  3170. gl.deleteFramebuffer(textures[0]._MSAAFramebuffer);
  3171. textures[0]._MSAAFramebuffer = null;
  3172. }
  3173. for (var i = 0; i < textures.length; i++) {
  3174. if (textures[i]._MSAARenderBuffer) {
  3175. gl.deleteRenderbuffer(textures[i]._MSAARenderBuffer);
  3176. textures[i]._MSAARenderBuffer = null;
  3177. }
  3178. }
  3179. if (samples > 1) {
  3180. let framebuffer = gl.createFramebuffer();
  3181. if (!framebuffer) {
  3182. throw new Error("Unable to create multi sampled framebuffer");
  3183. }
  3184. this.bindUnboundFramebuffer(framebuffer);
  3185. let depthStencilBuffer = this._setupFramebufferDepthAttachments(textures[0]._generateStencilBuffer, textures[0]._generateDepthBuffer, textures[0].width, textures[0].height, samples);
  3186. var attachments = [];
  3187. for (var i = 0; i < textures.length; i++) {
  3188. var texture = textures[i];
  3189. var attachment = (<any>gl)[this.webGLVersion > 1 ? "COLOR_ATTACHMENT" + i : "COLOR_ATTACHMENT" + i + "_WEBGL"];
  3190. var colorRenderbuffer = gl.createRenderbuffer();
  3191. if (!colorRenderbuffer) {
  3192. throw new Error("Unable to create multi sampled framebuffer");
  3193. }
  3194. gl.bindRenderbuffer(gl.RENDERBUFFER, colorRenderbuffer);
  3195. gl.renderbufferStorageMultisample(gl.RENDERBUFFER, samples, this._getRGBAMultiSampleBufferFormat(texture.type), texture.width, texture.height);
  3196. gl.framebufferRenderbuffer(gl.FRAMEBUFFER, attachment, gl.RENDERBUFFER, colorRenderbuffer);
  3197. texture._MSAAFramebuffer = framebuffer;
  3198. texture._MSAARenderBuffer = colorRenderbuffer;
  3199. texture.samples = samples;
  3200. texture._depthStencilBuffer = depthStencilBuffer;
  3201. gl.bindRenderbuffer(gl.RENDERBUFFER, null);
  3202. attachments.push(attachment);
  3203. }
  3204. gl.drawBuffers(attachments);
  3205. } else {
  3206. this.bindUnboundFramebuffer(textures[0]._framebuffer);
  3207. }
  3208. this.bindUnboundFramebuffer(null);
  3209. return samples;
  3210. }
  3211. public _uploadDataToTexture(target: number, lod: number, internalFormat: number, width: number, height: number, format: number, type: number, data: ArrayBufferView) {
  3212. this._gl.texImage2D(target, lod, internalFormat, width, height, 0, format, type, data);
  3213. }
  3214. public _uploadCompressedDataToTexture(target: number, lod: number, internalFormat: number, width: number, height: number, data: ArrayBufferView) {
  3215. this._gl.compressedTexImage2D(target, lod, internalFormat, width, height, 0, data);
  3216. }
  3217. public createRenderTargetCubeTexture(size: number, options?: RenderTargetCreationOptions): InternalTexture {
  3218. var gl = this._gl;
  3219. var texture = new InternalTexture(this, InternalTexture.DATASOURCE_RENDERTARGET);
  3220. var generateMipMaps = true;
  3221. var generateDepthBuffer = true;
  3222. var generateStencilBuffer = false;
  3223. var samplingMode = Texture.TRILINEAR_SAMPLINGMODE;
  3224. if (options !== undefined) {
  3225. generateMipMaps = options.generateMipMaps === undefined ? true : options.generateMipMaps;
  3226. generateDepthBuffer = options.generateDepthBuffer === undefined ? true : options.generateDepthBuffer;
  3227. generateStencilBuffer = (generateDepthBuffer && options.generateStencilBuffer) ? true : false;
  3228. if (options.samplingMode !== undefined) {
  3229. samplingMode = options.samplingMode;
  3230. }
  3231. }
  3232. texture.isCube = true;
  3233. texture.generateMipMaps = generateMipMaps;
  3234. texture.samples = 1;
  3235. texture.samplingMode = samplingMode;
  3236. var filters = getSamplingParameters(samplingMode, generateMipMaps, gl);
  3237. this._bindTextureDirectly(gl.TEXTURE_CUBE_MAP, texture, true);
  3238. for (var face = 0; face < 6; face++) {
  3239. gl.texImage2D((gl.TEXTURE_CUBE_MAP_POSITIVE_X + face), 0, gl.RGBA, size, size, 0, gl.RGBA, gl.UNSIGNED_BYTE, null);
  3240. }
  3241. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_MAG_FILTER, filters.mag);
  3242. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_MIN_FILTER, filters.min);
  3243. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_WRAP_S, gl.CLAMP_TO_EDGE);
  3244. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_WRAP_T, gl.CLAMP_TO_EDGE);
  3245. // Create the framebuffer
  3246. var framebuffer = gl.createFramebuffer();
  3247. this.bindUnboundFramebuffer(framebuffer);
  3248. texture._depthStencilBuffer = this._setupFramebufferDepthAttachments(generateStencilBuffer, generateDepthBuffer, size, size);
  3249. // Mipmaps
  3250. if (texture.generateMipMaps) {
  3251. gl.generateMipmap(gl.TEXTURE_CUBE_MAP);
  3252. }
  3253. // Unbind
  3254. this._bindTextureDirectly(gl.TEXTURE_CUBE_MAP, null);
  3255. gl.bindRenderbuffer(gl.RENDERBUFFER, null);
  3256. this.bindUnboundFramebuffer(null);
  3257. texture._framebuffer = framebuffer;
  3258. texture.width = size;
  3259. texture.height = size;
  3260. texture.isReady = true;
  3261. //this.resetTextureCache();
  3262. this._internalTexturesCache.push(texture);
  3263. return texture;
  3264. }
  3265. public createPrefilteredCubeTexture(rootUrl: string, scene: Nullable<Scene>, scale: number, offset: number,
  3266. onLoad: Nullable<(internalTexture: Nullable<InternalTexture>) => void> = null,
  3267. onError: Nullable<(message?: string, exception?: any) => void> = null, format?: number, forcedExtension: any = null): InternalTexture {
  3268. var callback = (loadData: any) => {
  3269. if (!loadData) {
  3270. if (onLoad) {
  3271. onLoad(null);
  3272. }
  3273. return;
  3274. }
  3275. let texture = loadData.texture as InternalTexture;
  3276. texture._dataSource = InternalTexture.DATASOURCE_CUBEPREFILTERED;
  3277. texture._lodGenerationScale = scale;
  3278. texture._lodGenerationOffset = offset;
  3279. if (this._caps.textureLOD) {
  3280. // Do not add extra process if texture lod is supported.
  3281. if (onLoad) {
  3282. onLoad(texture);
  3283. }
  3284. return;
  3285. }
  3286. const mipSlices = 3;
  3287. var gl = this._gl;
  3288. const width = loadData.width;
  3289. if (!width) {
  3290. return;
  3291. }
  3292. const textures: BaseTexture[] = [];
  3293. for (let i = 0; i < mipSlices; i++) {
  3294. //compute LOD from even spacing in smoothness (matching shader calculation)
  3295. let smoothness = i / (mipSlices - 1);
  3296. let roughness = 1 - smoothness;
  3297. let minLODIndex = offset; // roughness = 0
  3298. let maxLODIndex = Scalar.Log2(width) * scale + offset; // roughness = 1
  3299. let lodIndex = minLODIndex + (maxLODIndex - minLODIndex) * roughness;
  3300. let mipmapIndex = Math.round(Math.min(Math.max(lodIndex, 0), maxLODIndex));
  3301. var glTextureFromLod = new InternalTexture(this, InternalTexture.DATASOURCE_TEMP);
  3302. glTextureFromLod.isCube = true;
  3303. this._bindTextureDirectly(gl.TEXTURE_CUBE_MAP, glTextureFromLod, true);
  3304. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_MAG_FILTER, gl.LINEAR);
  3305. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_MIN_FILTER, gl.LINEAR);
  3306. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_WRAP_S, gl.CLAMP_TO_EDGE);
  3307. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_WRAP_T, gl.CLAMP_TO_EDGE);
  3308. if (loadData.isDDS) {
  3309. var info: DDSInfo = loadData.info;
  3310. var data: any = loadData.data;
  3311. gl.pixelStorei(gl.UNPACK_FLIP_Y_WEBGL, info.isCompressed ? 1 : 0);
  3312. DDSTools.UploadDDSLevels(this, this._gl, data, info, true, 6, mipmapIndex);
  3313. }
  3314. else {
  3315. Tools.Warn("DDS is the only prefiltered cube map supported so far.")
  3316. }
  3317. this._bindTextureDirectly(gl.TEXTURE_CUBE_MAP, null);
  3318. // Wrap in a base texture for easy binding.
  3319. const lodTexture = new BaseTexture(scene);
  3320. lodTexture.isCube = true;
  3321. lodTexture._texture = glTextureFromLod;
  3322. glTextureFromLod.isReady = true;
  3323. textures.push(lodTexture);
  3324. }
  3325. texture._lodTextureHigh = textures[2];
  3326. texture._lodTextureMid = textures[1];
  3327. texture._lodTextureLow = textures[0];
  3328. if (onLoad) {
  3329. onLoad(texture);
  3330. }
  3331. };
  3332. return this.createCubeTexture(rootUrl, scene, null, false, callback, onError, format, forcedExtension);
  3333. }
  3334. public createCubeTexture(rootUrl: string, scene: Nullable<Scene>, files: Nullable<string[]>, noMipmap?: boolean, onLoad: Nullable<(data?: any) => void> = null, onError: Nullable<(message?: string, exception?: any) => void> = null, format?: number, forcedExtension: any = null): InternalTexture {
  3335. var gl = this._gl;
  3336. var texture = new InternalTexture(this, InternalTexture.DATASOURCE_CUBE);
  3337. texture.isCube = true;
  3338. texture.url = rootUrl;
  3339. texture.generateMipMaps = !noMipmap;
  3340. if (!this._doNotHandleContextLost) {
  3341. texture._extension = forcedExtension;
  3342. texture._files = files;
  3343. }
  3344. var isKTX = false;
  3345. var isDDS = false;
  3346. var lastDot = rootUrl.lastIndexOf('.');
  3347. var extension = forcedExtension ? forcedExtension : (lastDot > -1 ? rootUrl.substring(lastDot).toLowerCase() : "");
  3348. if (this._textureFormatInUse) {
  3349. extension = this._textureFormatInUse;
  3350. rootUrl = (lastDot > -1 ? rootUrl.substring(0, lastDot) : rootUrl) + this._textureFormatInUse;
  3351. isKTX = true;
  3352. } else {
  3353. isDDS = (extension === ".dds");
  3354. }
  3355. let onerror = (request?: XMLHttpRequest, exception?: any) => {
  3356. if (onError && request) {
  3357. onError(request.status + " " + request.statusText, exception);
  3358. }
  3359. }
  3360. if (isKTX) {
  3361. this._loadFile(rootUrl, data => {
  3362. var ktx = new KhronosTextureContainer(data, 6);
  3363. var loadMipmap = ktx.numberOfMipmapLevels > 1 && !noMipmap;
  3364. this._bindTextureDirectly(gl.TEXTURE_CUBE_MAP, texture, true);
  3365. gl.pixelStorei(gl.UNPACK_FLIP_Y_WEBGL, 1);
  3366. ktx.uploadLevels(this._gl, !noMipmap);
  3367. this.setCubeMapTextureParams(gl, loadMipmap);
  3368. texture.width = ktx.pixelWidth;
  3369. texture.height = ktx.pixelHeight;
  3370. texture.isReady = true;
  3371. }, undefined, undefined, true, onerror);
  3372. } else if (isDDS) {
  3373. if (files && files.length === 6) {
  3374. this._cascadeLoadFiles(rootUrl,
  3375. scene,
  3376. imgs => {
  3377. var info: DDSInfo | undefined;
  3378. var loadMipmap: boolean = false;
  3379. var width: number = 0;
  3380. for (let index = 0; index < imgs.length; index++) {
  3381. let data = imgs[index];
  3382. info = DDSTools.GetDDSInfo(data);
  3383. loadMipmap = (info.isRGB || info.isLuminance || info.mipmapCount > 1) && !noMipmap;
  3384. this._bindTextureDirectly(gl.TEXTURE_CUBE_MAP, texture, true);
  3385. gl.pixelStorei(gl.UNPACK_FLIP_Y_WEBGL, info.isCompressed ? 1 : 0);
  3386. DDSTools.UploadDDSLevels(this, this._gl, data, info, loadMipmap, 6, -1, index);
  3387. if (!noMipmap && !info.isFourCC && info.mipmapCount === 1) {
  3388. gl.generateMipmap(gl.TEXTURE_CUBE_MAP);
  3389. }
  3390. texture.width = info.width;
  3391. texture.height = info.height;
  3392. texture.type = info.textureType;
  3393. width = info.width;
  3394. }
  3395. this.setCubeMapTextureParams(gl, loadMipmap);
  3396. texture.isReady = true;
  3397. if (onLoad) {
  3398. onLoad({ isDDS: true, width: width, info, imgs, texture });
  3399. }
  3400. },
  3401. files,
  3402. onError);
  3403. } else {
  3404. this._loadFile(rootUrl,
  3405. data => {
  3406. var info = DDSTools.GetDDSInfo(data);
  3407. var loadMipmap = (info.isRGB || info.isLuminance || info.mipmapCount > 1) && !noMipmap;
  3408. this._bindTextureDirectly(gl.TEXTURE_CUBE_MAP, texture, true);
  3409. gl.pixelStorei(gl.UNPACK_FLIP_Y_WEBGL, info.isCompressed ? 1 : 0);
  3410. DDSTools.UploadDDSLevels(this, this._gl, data, info, loadMipmap, 6);
  3411. if (!noMipmap && !info.isFourCC && info.mipmapCount === 1) {
  3412. gl.generateMipmap(gl.TEXTURE_CUBE_MAP);
  3413. }
  3414. this.setCubeMapTextureParams(gl, loadMipmap);
  3415. texture.width = info.width;
  3416. texture.height = info.height;
  3417. texture.isReady = true;
  3418. texture.type = info.textureType;
  3419. if (onLoad) {
  3420. onLoad({ isDDS: true, width: info.width, info, data, texture });
  3421. }
  3422. },
  3423. undefined,
  3424. undefined,
  3425. true,
  3426. onerror);
  3427. }
  3428. } else {
  3429. if (!files) {
  3430. throw new Error("Cannot load cubemap because files were not defined");
  3431. }
  3432. cascadeLoadImgs(rootUrl, scene, imgs => {
  3433. var width = this.needPOTTextures ? Tools.GetExponentOfTwo(imgs[0].width, this._caps.maxCubemapTextureSize) : imgs[0].width;
  3434. var height = width;
  3435. this._prepareWorkingCanvas();
  3436. if (!this._workingCanvas || !this._workingContext) {
  3437. return;
  3438. }
  3439. this._workingCanvas.width = width;
  3440. this._workingCanvas.height = height;
  3441. var faces = [
  3442. gl.TEXTURE_CUBE_MAP_POSITIVE_X, gl.TEXTURE_CUBE_MAP_POSITIVE_Y, gl.TEXTURE_CUBE_MAP_POSITIVE_Z,
  3443. gl.TEXTURE_CUBE_MAP_NEGATIVE_X, gl.TEXTURE_CUBE_MAP_NEGATIVE_Y, gl.TEXTURE_CUBE_MAP_NEGATIVE_Z
  3444. ];
  3445. this._bindTextureDirectly(gl.TEXTURE_CUBE_MAP, texture, true);
  3446. gl.pixelStorei(gl.UNPACK_FLIP_Y_WEBGL, 0);
  3447. let internalFormat = format ? this._getInternalFormat(format) : this._gl.RGBA;
  3448. for (var index = 0; index < faces.length; index++) {
  3449. this._workingContext.drawImage(imgs[index], 0, 0, imgs[index].width, imgs[index].height, 0, 0, width, height);
  3450. gl.texImage2D(faces[index], 0, internalFormat, internalFormat, gl.UNSIGNED_BYTE, this._workingCanvas);
  3451. }
  3452. if (!noMipmap) {
  3453. gl.generateMipmap(gl.TEXTURE_CUBE_MAP);
  3454. }
  3455. this.setCubeMapTextureParams(gl, !noMipmap);
  3456. texture.width = width;
  3457. texture.height = height;
  3458. texture.isReady = true;
  3459. if (format) {
  3460. texture.format = format;
  3461. }
  3462. texture.onLoadedObservable.notifyObservers(texture);
  3463. texture.onLoadedObservable.clear();
  3464. if (onLoad) {
  3465. onLoad();
  3466. }
  3467. }, files, onError);
  3468. }
  3469. this._internalTexturesCache.push(texture);
  3470. return texture;
  3471. }
  3472. private setCubeMapTextureParams(gl: WebGLRenderingContext, loadMipmap: boolean) {
  3473. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_MAG_FILTER, gl.LINEAR);
  3474. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_MIN_FILTER, loadMipmap ? gl.LINEAR_MIPMAP_LINEAR : gl.LINEAR);
  3475. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_WRAP_S, gl.CLAMP_TO_EDGE);
  3476. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_WRAP_T, gl.CLAMP_TO_EDGE);
  3477. this._bindTextureDirectly(gl.TEXTURE_CUBE_MAP, null);
  3478. // this.resetTextureCache();
  3479. }
  3480. public updateRawCubeTexture(texture: InternalTexture, data: ArrayBufferView[], format: number, type: number, invertY: boolean, compression: Nullable<string> = null, level = 0): void {
  3481. texture._bufferViewArray = data;
  3482. texture.format = format;
  3483. texture.type = type;
  3484. texture.invertY = invertY;
  3485. texture._compression = compression;
  3486. var gl = this._gl;
  3487. var textureType = this._getWebGLTextureType(type);
  3488. var internalFormat = this._getInternalFormat(format);
  3489. var internalSizedFomat = this._getRGBABufferInternalSizedFormat(type);
  3490. var needConversion = false;
  3491. if (internalFormat === gl.RGB) {
  3492. internalFormat = gl.RGBA;
  3493. needConversion = true;
  3494. }
  3495. this._bindTextureDirectly(gl.TEXTURE_CUBE_MAP, texture, true);
  3496. gl.pixelStorei(gl.UNPACK_FLIP_Y_WEBGL, invertY === undefined ? 1 : (invertY ? 1 : 0));
  3497. if (texture.width % 4 !== 0) {
  3498. gl.pixelStorei(gl.UNPACK_ALIGNMENT, 1);
  3499. }
  3500. // Data are known to be in +X +Y +Z -X -Y -Z
  3501. for (let faceIndex = 0; faceIndex < 6; faceIndex++) {
  3502. let faceData = data[faceIndex];
  3503. if (compression) {
  3504. gl.compressedTexImage2D(gl.TEXTURE_CUBE_MAP_POSITIVE_X + faceIndex, level, (<any>(this.getCaps().s3tc))[compression], texture.width, texture.height, 0, faceData);
  3505. } else {
  3506. if (needConversion) {
  3507. faceData = this._convertRGBtoRGBATextureData(faceData, texture.width, texture.height, type);
  3508. }
  3509. gl.texImage2D(gl.TEXTURE_CUBE_MAP_POSITIVE_X + faceIndex, level, internalSizedFomat, texture.width, texture.height, 0, internalFormat, textureType, faceData);
  3510. }
  3511. }
  3512. var isPot = !this.needPOTTextures || (Tools.IsExponentOfTwo(texture.width) && Tools.IsExponentOfTwo(texture.height));
  3513. if (isPot && texture.generateMipMaps && level === 0) {
  3514. this._gl.generateMipmap(this._gl.TEXTURE_CUBE_MAP);
  3515. }
  3516. this._bindTextureDirectly(this._gl.TEXTURE_CUBE_MAP, null);
  3517. // this.resetTextureCache();
  3518. texture.isReady = true;
  3519. }
  3520. public createRawCubeTexture(data: Nullable<ArrayBufferView[]>, size: number, format: number, type: number, generateMipMaps: boolean, invertY: boolean, samplingMode: number, compression: Nullable<string> = null): InternalTexture {
  3521. var gl = this._gl;
  3522. var texture = new InternalTexture(this, InternalTexture.DATASOURCE_CUBERAW);
  3523. texture.isCube = true;
  3524. texture.generateMipMaps = generateMipMaps;
  3525. texture.format = format;
  3526. texture.type = type;
  3527. if (!this._doNotHandleContextLost) {
  3528. texture._bufferViewArray = data;
  3529. }
  3530. var textureType = this._getWebGLTextureType(type);
  3531. var internalFormat = this._getInternalFormat(format);
  3532. if (internalFormat === gl.RGB) {
  3533. internalFormat = gl.RGBA;
  3534. }
  3535. var width = size;
  3536. var height = width;
  3537. texture.width = width;
  3538. texture.height = height;
  3539. // Double check on POT to generate Mips.
  3540. var isPot = !this.needPOTTextures || (Tools.IsExponentOfTwo(texture.width) && Tools.IsExponentOfTwo(texture.height));
  3541. if (!isPot) {
  3542. generateMipMaps = false;
  3543. }
  3544. // Upload data if needed. The texture won't be ready until then.
  3545. if (data) {
  3546. this.updateRawCubeTexture(texture, data, format, type, invertY, compression);
  3547. }
  3548. this._bindTextureDirectly(this._gl.TEXTURE_CUBE_MAP, texture, true);
  3549. // Filters
  3550. if (data && generateMipMaps) {
  3551. this._gl.generateMipmap(this._gl.TEXTURE_CUBE_MAP);
  3552. }
  3553. if (textureType === gl.FLOAT && !this._caps.textureFloatLinearFiltering) {
  3554. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_MAG_FILTER, gl.NEAREST);
  3555. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_MIN_FILTER, gl.NEAREST);
  3556. }
  3557. else if (textureType === this._gl.HALF_FLOAT_OES && !this._caps.textureHalfFloatLinearFiltering) {
  3558. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_MAG_FILTER, gl.NEAREST);
  3559. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_MIN_FILTER, gl.NEAREST);
  3560. }
  3561. else {
  3562. var filters = getSamplingParameters(samplingMode, generateMipMaps, gl);
  3563. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_MAG_FILTER, filters.mag);
  3564. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_MIN_FILTER, filters.min);
  3565. }
  3566. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_WRAP_S, gl.CLAMP_TO_EDGE);
  3567. gl.texParameteri(gl.TEXTURE_CUBE_MAP, gl.TEXTURE_WRAP_T, gl.CLAMP_TO_EDGE);
  3568. this._bindTextureDirectly(gl.TEXTURE_CUBE_MAP, null);
  3569. return texture;
  3570. }
  3571. public createRawCubeTextureFromUrl(url: string, scene: Scene, size: number, format: number, type: number, noMipmap: boolean,
  3572. callback: (ArrayBuffer: ArrayBuffer) => Nullable<ArrayBufferView[]>,
  3573. mipmmapGenerator: Nullable<((faces: ArrayBufferView[]) => ArrayBufferView[][])>,
  3574. onLoad: Nullable<() => void> = null,
  3575. onError: Nullable<(message?: string, exception?: any) => void> = null,
  3576. samplingMode = Texture.TRILINEAR_SAMPLINGMODE,
  3577. invertY = false): InternalTexture {
  3578. var gl = this._gl;
  3579. var texture = this.createRawCubeTexture(null, size, format, type, !noMipmap, invertY, samplingMode);
  3580. scene._addPendingData(texture);
  3581. texture.url = url;
  3582. this._internalTexturesCache.push(texture);
  3583. var onerror = (request?: XMLHttpRequest, exception?: any) => {
  3584. scene._removePendingData(texture);
  3585. if (onError && request) {
  3586. onError(request.status + " " + request.statusText, exception);
  3587. }
  3588. };
  3589. var internalCallback = (data: any) => {
  3590. var width = texture.width;
  3591. var faceDataArrays = callback(data);
  3592. if (!faceDataArrays) {
  3593. return;
  3594. }
  3595. if (mipmmapGenerator) {
  3596. var textureType = this._getWebGLTextureType(type);
  3597. var internalFormat = this._getInternalFormat(format);
  3598. var internalSizedFomat = this._getRGBABufferInternalSizedFormat(type);
  3599. var needConversion = false;
  3600. if (internalFormat === gl.RGB) {
  3601. internalFormat = gl.RGBA;
  3602. needConversion = true;
  3603. }
  3604. this._bindTextureDirectly(gl.TEXTURE_CUBE_MAP, texture, true);
  3605. gl.pixelStorei(gl.UNPACK_FLIP_Y_WEBGL, 0);
  3606. var mipData = mipmmapGenerator(faceDataArrays);
  3607. for (var level = 0; level < mipData.length; level++) {
  3608. var mipSize = width >> level;
  3609. for (var faceIndex = 0; faceIndex < 6; faceIndex++) {
  3610. let mipFaceData = mipData[level][faceIndex];
  3611. if (needConversion) {
  3612. mipFaceData = this._convertRGBtoRGBATextureData(mipFaceData, mipSize, mipSize, type);
  3613. }
  3614. gl.texImage2D(faceIndex, level, internalSizedFomat, mipSize, mipSize, 0, internalFormat, textureType, mipFaceData);
  3615. }
  3616. }
  3617. this._bindTextureDirectly(gl.TEXTURE_CUBE_MAP, null);
  3618. }
  3619. else {
  3620. texture.generateMipMaps = !noMipmap;
  3621. this.updateRawCubeTexture(texture, faceDataArrays, format, type, invertY);
  3622. }
  3623. texture.isReady = true;
  3624. // this.resetTextureCache();
  3625. scene._removePendingData(texture);
  3626. if (onLoad) {
  3627. onLoad();
  3628. }
  3629. };
  3630. this._loadFile(url, data => {
  3631. internalCallback(data);
  3632. }, undefined, scene.database, true, onerror);
  3633. return texture;
  3634. };
  3635. public updateRawTexture3D(texture: InternalTexture, data: Nullable<ArrayBufferView>, format: number, invertY: boolean, compression: Nullable<string> = null): void {
  3636. var internalFormat = this._getInternalFormat(format);
  3637. this._bindTextureDirectly(this._gl.TEXTURE_3D, texture, true);
  3638. this._gl.pixelStorei(this._gl.UNPACK_FLIP_Y_WEBGL, invertY === undefined ? 1 : (invertY ? 1 : 0));
  3639. if (!this._doNotHandleContextLost) {
  3640. texture._bufferView = data;
  3641. texture.format = format;
  3642. texture.invertY = invertY;
  3643. texture._compression = compression;
  3644. }
  3645. if (texture.width % 4 !== 0) {
  3646. this._gl.pixelStorei(this._gl.UNPACK_ALIGNMENT, 1);
  3647. }
  3648. if (compression && data) {
  3649. this._gl.compressedTexImage3D(this._gl.TEXTURE_3D, 0, (<any>this.getCaps().s3tc)[compression], texture.width, texture.height, texture.depth, 0, data);
  3650. } else {
  3651. this._gl.texImage3D(this._gl.TEXTURE_3D, 0, internalFormat, texture.width, texture.height, texture.depth, 0, internalFormat, this._gl.UNSIGNED_BYTE, data);
  3652. }
  3653. if (texture.generateMipMaps) {
  3654. this._gl.generateMipmap(this._gl.TEXTURE_3D);
  3655. }
  3656. this._bindTextureDirectly(this._gl.TEXTURE_3D, null);
  3657. // this.resetTextureCache();
  3658. texture.isReady = true;
  3659. }
  3660. public createRawTexture3D(data: Nullable<ArrayBufferView>, width: number, height: number, depth: number, format: number, generateMipMaps: boolean, invertY: boolean, samplingMode: number, compression: Nullable<string> = null): InternalTexture {
  3661. var texture = new InternalTexture(this, InternalTexture.DATASOURCE_RAW3D);
  3662. texture.baseWidth = width;
  3663. texture.baseHeight = height;
  3664. texture.baseDepth = depth;
  3665. texture.width = width;
  3666. texture.height = height;
  3667. texture.depth = depth;
  3668. texture.format = format;
  3669. texture.generateMipMaps = generateMipMaps;
  3670. texture.samplingMode = samplingMode;
  3671. texture.is3D = true;
  3672. if (!this._doNotHandleContextLost) {
  3673. texture._bufferView = data;
  3674. }
  3675. this.updateRawTexture3D(texture, data, format, invertY, compression);
  3676. this._bindTextureDirectly(this._gl.TEXTURE_3D, texture, true);
  3677. // Filters
  3678. var filters = getSamplingParameters(samplingMode, generateMipMaps, this._gl);
  3679. this._gl.texParameteri(this._gl.TEXTURE_3D, this._gl.TEXTURE_MAG_FILTER, filters.mag);
  3680. this._gl.texParameteri(this._gl.TEXTURE_3D, this._gl.TEXTURE_MIN_FILTER, filters.min);
  3681. if (generateMipMaps) {
  3682. this._gl.generateMipmap(this._gl.TEXTURE_3D);
  3683. }
  3684. this._bindTextureDirectly(this._gl.TEXTURE_3D, null);
  3685. this._internalTexturesCache.push(texture);
  3686. return texture;
  3687. }
  3688. private _prepareWebGLTextureContinuation(texture: InternalTexture, scene: Nullable<Scene>, noMipmap: boolean, isCompressed: boolean, samplingMode: number): void {
  3689. var gl = this._gl;
  3690. if (!gl) {
  3691. return;
  3692. }
  3693. var filters = getSamplingParameters(samplingMode, !noMipmap, gl);
  3694. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_MAG_FILTER, filters.mag);
  3695. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_MIN_FILTER, filters.min);
  3696. if (!noMipmap && !isCompressed) {
  3697. gl.generateMipmap(gl.TEXTURE_2D);
  3698. }
  3699. this._bindTextureDirectly(gl.TEXTURE_2D, null);
  3700. // this.resetTextureCache();
  3701. if (scene) {
  3702. scene._removePendingData(texture);
  3703. }
  3704. texture.onLoadedObservable.notifyObservers(texture);
  3705. texture.onLoadedObservable.clear();
  3706. }
  3707. private _prepareWebGLTexture(texture: InternalTexture, scene: Nullable<Scene>, width: number, height: number, invertY: boolean, noMipmap: boolean, isCompressed: boolean,
  3708. processFunction: (width: number, height: number, continuationCallback: () => void) => boolean, samplingMode: number = Texture.TRILINEAR_SAMPLINGMODE): void {
  3709. var potWidth = this.needPOTTextures ? Tools.GetExponentOfTwo(width, this.getCaps().maxTextureSize) : width;
  3710. var potHeight = this.needPOTTextures ? Tools.GetExponentOfTwo(height, this.getCaps().maxTextureSize) : height;
  3711. var gl = this._gl;
  3712. if (!gl) {
  3713. return;
  3714. }
  3715. if (!texture._webGLTexture) {
  3716. // this.resetTextureCache();
  3717. if (scene) {
  3718. scene._removePendingData(texture);
  3719. }
  3720. return;
  3721. }
  3722. this._bindTextureDirectly(gl.TEXTURE_2D, texture, true);
  3723. gl.pixelStorei(gl.UNPACK_FLIP_Y_WEBGL, invertY === undefined ? 1 : (invertY ? 1 : 0));
  3724. texture.baseWidth = width;
  3725. texture.baseHeight = height;
  3726. texture.width = potWidth;
  3727. texture.height = potHeight;
  3728. texture.isReady = true;
  3729. if (processFunction(potWidth, potHeight, () => {
  3730. this._prepareWebGLTextureContinuation(texture, scene, noMipmap, isCompressed, samplingMode);
  3731. })) {
  3732. // Returning as texture needs extra async steps
  3733. return;
  3734. }
  3735. this._prepareWebGLTextureContinuation(texture, scene, noMipmap, isCompressed, samplingMode);
  3736. }
  3737. private _convertRGBtoRGBATextureData(rgbData: any, width: number, height: number, textureType: number): ArrayBufferView {
  3738. // Create new RGBA data container.
  3739. var rgbaData: any;
  3740. if (textureType === Engine.TEXTURETYPE_FLOAT) {
  3741. rgbaData = new Float32Array(width * height * 4);
  3742. }
  3743. else {
  3744. rgbaData = new Uint32Array(width * height * 4);
  3745. }
  3746. // Convert each pixel.
  3747. for (let x = 0; x < width; x++) {
  3748. for (let y = 0; y < height; y++) {
  3749. let index = (y * width + x) * 3;
  3750. let newIndex = (y * width + x) * 4;
  3751. // Map Old Value to new value.
  3752. rgbaData[newIndex + 0] = rgbData[index + 0];
  3753. rgbaData[newIndex + 1] = rgbData[index + 1];
  3754. rgbaData[newIndex + 2] = rgbData[index + 2];
  3755. // Add fully opaque alpha channel.
  3756. rgbaData[newIndex + 3] = 1;
  3757. }
  3758. }
  3759. return rgbaData;
  3760. }
  3761. public _releaseFramebufferObjects(texture: InternalTexture): void {
  3762. var gl = this._gl;
  3763. if (texture._framebuffer) {
  3764. gl.deleteFramebuffer(texture._framebuffer);
  3765. texture._framebuffer = null;
  3766. }
  3767. if (texture._depthStencilBuffer) {
  3768. gl.deleteRenderbuffer(texture._depthStencilBuffer);
  3769. texture._depthStencilBuffer = null;
  3770. }
  3771. if (texture._MSAAFramebuffer) {
  3772. gl.deleteFramebuffer(texture._MSAAFramebuffer);
  3773. texture._MSAAFramebuffer = null;
  3774. }
  3775. if (texture._MSAARenderBuffer) {
  3776. gl.deleteRenderbuffer(texture._MSAARenderBuffer);
  3777. texture._MSAARenderBuffer = null;
  3778. }
  3779. }
  3780. public _releaseTexture(texture: InternalTexture): void {
  3781. var gl = this._gl;
  3782. this._releaseFramebufferObjects(texture);
  3783. gl.deleteTexture(texture._webGLTexture);
  3784. // Unbind channels
  3785. this.unbindAllTextures();
  3786. var index = this._internalTexturesCache.indexOf(texture);
  3787. if (index !== -1) {
  3788. this._internalTexturesCache.splice(index, 1);
  3789. }
  3790. // Integrated fixed lod samplers.
  3791. if (texture._lodTextureHigh) {
  3792. texture._lodTextureHigh.dispose();
  3793. }
  3794. if (texture._lodTextureMid) {
  3795. texture._lodTextureMid.dispose();
  3796. }
  3797. if (texture._lodTextureLow) {
  3798. texture._lodTextureLow.dispose();
  3799. }
  3800. }
  3801. private setProgram(program: WebGLProgram): void {
  3802. if (this._currentProgram !== program) {
  3803. this._gl.useProgram(program);
  3804. this._currentProgram = program;
  3805. }
  3806. }
  3807. private _boundUniforms: { [key: number]: WebGLUniformLocation } = {};
  3808. public bindSamplers(effect: Effect): void {
  3809. this.setProgram(effect.getProgram());
  3810. var samplers = effect.getSamplers();
  3811. for (var index = 0; index < samplers.length; index++) {
  3812. var uniform = effect.getUniform(samplers[index]);
  3813. if (uniform) {
  3814. this._boundUniforms[index] = uniform;
  3815. }
  3816. }
  3817. this._currentEffect = null;
  3818. }
  3819. private _moveBoundTextureOnTop(internalTexture: InternalTexture): void {
  3820. if (this._lastBoundInternalTextureTracker.previous === internalTexture) {
  3821. return;
  3822. }
  3823. // Remove
  3824. this._linkTrackers(internalTexture.previous, internalTexture.next);
  3825. // Bind last to it
  3826. this._linkTrackers(this._lastBoundInternalTextureTracker.previous, internalTexture);
  3827. // Bind to dummy
  3828. this._linkTrackers(internalTexture, this._lastBoundInternalTextureTracker);
  3829. }
  3830. private _getCorrectTextureChannel(channel: number, internalTexture: Nullable<InternalTexture>): number {
  3831. if (!internalTexture) {
  3832. return -1;
  3833. }
  3834. internalTexture._initialSlot = channel;
  3835. if (this.disableTextureBindingOptimization) { // We want texture sampler ID === texture channel
  3836. if (channel !== internalTexture._designatedSlot) {
  3837. this._textureCollisions.addCount(1, false);
  3838. }
  3839. } else {
  3840. if (channel !== internalTexture._designatedSlot) {
  3841. if (internalTexture._designatedSlot > -1) { // Texture is already assigned to a slot
  3842. return internalTexture._designatedSlot;
  3843. } else {
  3844. // No slot for this texture, let's pick a new one (if we find a free slot)
  3845. if (this._nextFreeTextureSlots.length) {
  3846. return this._nextFreeTextureSlots[0];
  3847. }
  3848. // We need to recycle the oldest bound texture, sorry.
  3849. this._textureCollisions.addCount(1, false);
  3850. return this._removeDesignatedSlot(<InternalTexture>this._firstBoundInternalTextureTracker.next);
  3851. }
  3852. }
  3853. }
  3854. return channel;
  3855. }
  3856. private _linkTrackers(previous: Nullable<IInternalTextureTracker>, next: Nullable<IInternalTextureTracker>) {
  3857. previous!.next = next;
  3858. next!.previous = previous;
  3859. }
  3860. private _removeDesignatedSlot(internalTexture: InternalTexture): number {
  3861. let currentSlot = internalTexture._designatedSlot;
  3862. if (currentSlot === -1) {
  3863. return -1;
  3864. }
  3865. internalTexture._designatedSlot = -1;
  3866. // Remove from bound list
  3867. this._linkTrackers(internalTexture.previous, internalTexture.next);
  3868. // Free the slot
  3869. this._boundTexturesCache[currentSlot] = null;
  3870. this._nextFreeTextureSlots.push(currentSlot);
  3871. return currentSlot;
  3872. }
  3873. private _activateCurrentTexture() {
  3874. if (this._currentTextureChannel !== this._activeChannel) {
  3875. this._gl.activeTexture(this._gl.TEXTURE0 + this._activeChannel);
  3876. this._currentTextureChannel = this._activeChannel;
  3877. }
  3878. }
  3879. protected _bindTextureDirectly(target: number, texture: Nullable<InternalTexture>, forTextureDataUpdate = false): void {
  3880. if (forTextureDataUpdate && texture && texture._designatedSlot > -1) {
  3881. this._activeChannel = texture._designatedSlot;
  3882. }
  3883. let currentTextureBound = this._boundTexturesCache[this._activeChannel];
  3884. let isTextureForRendering = texture && texture._initialSlot > -1;
  3885. if (currentTextureBound !== texture) {
  3886. if (currentTextureBound && !this.disableTextureBindingOptimization) {
  3887. this._removeDesignatedSlot(currentTextureBound);
  3888. }
  3889. this._activateCurrentTexture();
  3890. this._gl.bindTexture(target, texture ? texture._webGLTexture : null);
  3891. this._boundTexturesCache[this._activeChannel] = texture;
  3892. if (texture) {
  3893. if (!this.disableTextureBindingOptimization) {
  3894. let slotIndex = this._nextFreeTextureSlots.indexOf(this._activeChannel);
  3895. if (slotIndex > -1) {
  3896. this._nextFreeTextureSlots.splice(slotIndex, 1);
  3897. }
  3898. this._linkTrackers(this._lastBoundInternalTextureTracker.previous, texture);
  3899. this._linkTrackers(texture, this._lastBoundInternalTextureTracker);
  3900. }
  3901. texture._designatedSlot = this._activeChannel;
  3902. }
  3903. } else if (forTextureDataUpdate) {
  3904. this._activateCurrentTexture();
  3905. }
  3906. if (isTextureForRendering && !forTextureDataUpdate) {
  3907. this._bindSamplerUniformToChannel(texture!._initialSlot, this._activeChannel);
  3908. }
  3909. }
  3910. public _bindTexture(channel: number, texture: Nullable<InternalTexture>): void {
  3911. if (channel < 0) {
  3912. return;
  3913. }
  3914. if (texture) {
  3915. channel = this._getCorrectTextureChannel(channel, texture);
  3916. }
  3917. this._activeChannel = channel;
  3918. this._bindTextureDirectly(this._gl.TEXTURE_2D, texture);
  3919. }
  3920. public setTextureFromPostProcess(channel: number, postProcess: Nullable<PostProcess>): void {
  3921. this._bindTexture(channel, postProcess ? postProcess._textures.data[postProcess._currentRenderTextureInd] : null);
  3922. }
  3923. public unbindAllTextures(): void {
  3924. for (var channel = 0; channel < this._maxSimultaneousTextures; channel++) {
  3925. this._activeChannel = channel;
  3926. this._bindTextureDirectly(this._gl.TEXTURE_2D, null);
  3927. this._bindTextureDirectly(this._gl.TEXTURE_CUBE_MAP, null);
  3928. if (this.webGLVersion > 1) {
  3929. this._bindTextureDirectly(this._gl.TEXTURE_3D, null);
  3930. }
  3931. }
  3932. }
  3933. public setTexture(channel: number, uniform: Nullable<WebGLUniformLocation>, texture: Nullable<BaseTexture>): void {
  3934. if (channel < 0) {
  3935. return;
  3936. }
  3937. if (uniform) {
  3938. this._boundUniforms[channel] = uniform;
  3939. }
  3940. this._setTexture(channel, texture);
  3941. }
  3942. private _bindSamplerUniformToChannel(sourceSlot: number, destination: number) {
  3943. let uniform = this._boundUniforms[sourceSlot];
  3944. if (uniform._currentState === destination) {
  3945. return;
  3946. }
  3947. this._gl.uniform1i(uniform, destination);
  3948. uniform._currentState = destination;
  3949. }
  3950. private _setTexture(channel: number, texture: Nullable<BaseTexture>, isPartOfTextureArray = false): boolean {
  3951. // Not ready?
  3952. if (!texture) {
  3953. if (this._boundTexturesCache[channel] != null) {
  3954. this._activeChannel = channel;
  3955. this._bindTextureDirectly(this._gl.TEXTURE_2D, null);
  3956. this._bindTextureDirectly(this._gl.TEXTURE_CUBE_MAP, null);
  3957. if (this.webGLVersion > 1) {
  3958. this._bindTextureDirectly(this._gl.TEXTURE_3D, null);
  3959. }
  3960. }
  3961. return false;
  3962. }
  3963. // Video
  3964. if ((<VideoTexture>texture).video) {
  3965. this._activeChannel = channel;
  3966. (<VideoTexture>texture).update();
  3967. } else if (texture.delayLoadState === Engine.DELAYLOADSTATE_NOTLOADED) { // Delay loading
  3968. texture.delayLoad();
  3969. return false;
  3970. }
  3971. let internalTexture: InternalTexture;
  3972. if (texture.isReady()) {
  3973. internalTexture = <InternalTexture>texture.getInternalTexture();
  3974. }
  3975. else if (texture.isCube) {
  3976. internalTexture = this.emptyCubeTexture;
  3977. }
  3978. else if (texture.is3D) {
  3979. internalTexture = this.emptyTexture3D;
  3980. }
  3981. else {
  3982. internalTexture = this.emptyTexture;
  3983. }
  3984. if (!isPartOfTextureArray) {
  3985. channel = this._getCorrectTextureChannel(channel, internalTexture);
  3986. }
  3987. if (this._boundTexturesCache[channel] === internalTexture) {
  3988. this._moveBoundTextureOnTop(internalTexture);
  3989. if (!isPartOfTextureArray) {
  3990. this._bindSamplerUniformToChannel(internalTexture._initialSlot, channel);
  3991. }
  3992. return false;
  3993. }
  3994. this._activeChannel = channel;
  3995. if (internalTexture && internalTexture.is3D) {
  3996. this._bindTextureDirectly(this._gl.TEXTURE_3D, internalTexture, isPartOfTextureArray);
  3997. if (internalTexture && internalTexture._cachedWrapU !== texture.wrapU) {
  3998. internalTexture._cachedWrapU = texture.wrapU;
  3999. switch (texture.wrapU) {
  4000. case Texture.WRAP_ADDRESSMODE:
  4001. this._gl.texParameteri(this._gl.TEXTURE_3D, this._gl.TEXTURE_WRAP_S, this._gl.REPEAT);
  4002. break;
  4003. case Texture.CLAMP_ADDRESSMODE:
  4004. this._gl.texParameteri(this._gl.TEXTURE_3D, this._gl.TEXTURE_WRAP_S, this._gl.CLAMP_TO_EDGE);
  4005. break;
  4006. case Texture.MIRROR_ADDRESSMODE:
  4007. this._gl.texParameteri(this._gl.TEXTURE_3D, this._gl.TEXTURE_WRAP_S, this._gl.MIRRORED_REPEAT);
  4008. break;
  4009. }
  4010. }
  4011. if (internalTexture && internalTexture._cachedWrapV !== texture.wrapV) {
  4012. internalTexture._cachedWrapV = texture.wrapV;
  4013. switch (texture.wrapV) {
  4014. case Texture.WRAP_ADDRESSMODE:
  4015. this._gl.texParameteri(this._gl.TEXTURE_3D, this._gl.TEXTURE_WRAP_T, this._gl.REPEAT);
  4016. break;
  4017. case Texture.CLAMP_ADDRESSMODE:
  4018. this._gl.texParameteri(this._gl.TEXTURE_3D, this._gl.TEXTURE_WRAP_T, this._gl.CLAMP_TO_EDGE);
  4019. break;
  4020. case Texture.MIRROR_ADDRESSMODE:
  4021. this._gl.texParameteri(this._gl.TEXTURE_3D, this._gl.TEXTURE_WRAP_T, this._gl.MIRRORED_REPEAT);
  4022. break;
  4023. }
  4024. }
  4025. if (internalTexture && internalTexture._cachedWrapR !== texture.wrapR) {
  4026. internalTexture._cachedWrapR = texture.wrapR;
  4027. switch (texture.wrapV) {
  4028. case Texture.WRAP_ADDRESSMODE:
  4029. this._gl.texParameteri(this._gl.TEXTURE_3D, this._gl.TEXTURE_WRAP_R, this._gl.REPEAT);
  4030. break;
  4031. case Texture.CLAMP_ADDRESSMODE:
  4032. this._gl.texParameteri(this._gl.TEXTURE_3D, this._gl.TEXTURE_WRAP_R, this._gl.CLAMP_TO_EDGE);
  4033. break;
  4034. case Texture.MIRROR_ADDRESSMODE:
  4035. this._gl.texParameteri(this._gl.TEXTURE_3D, this._gl.TEXTURE_WRAP_R, this._gl.MIRRORED_REPEAT);
  4036. break;
  4037. }
  4038. }
  4039. this._setAnisotropicLevel(this._gl.TEXTURE_3D, texture);
  4040. }
  4041. else if (internalTexture && internalTexture.isCube) {
  4042. this._bindTextureDirectly(this._gl.TEXTURE_CUBE_MAP, internalTexture, isPartOfTextureArray);
  4043. if (internalTexture._cachedCoordinatesMode !== texture.coordinatesMode) {
  4044. internalTexture._cachedCoordinatesMode = texture.coordinatesMode;
  4045. // CUBIC_MODE and SKYBOX_MODE both require CLAMP_TO_EDGE. All other modes use REPEAT.
  4046. var textureWrapMode = (texture.coordinatesMode !== Texture.CUBIC_MODE && texture.coordinatesMode !== Texture.SKYBOX_MODE) ? this._gl.REPEAT : this._gl.CLAMP_TO_EDGE;
  4047. this._gl.texParameteri(this._gl.TEXTURE_CUBE_MAP, this._gl.TEXTURE_WRAP_S, textureWrapMode);
  4048. this._gl.texParameteri(this._gl.TEXTURE_CUBE_MAP, this._gl.TEXTURE_WRAP_T, textureWrapMode);
  4049. }
  4050. this._setAnisotropicLevel(this._gl.TEXTURE_CUBE_MAP, texture);
  4051. } else {
  4052. this._bindTextureDirectly(this._gl.TEXTURE_2D, internalTexture, isPartOfTextureArray);
  4053. if (internalTexture && internalTexture._cachedWrapU !== texture.wrapU) {
  4054. internalTexture._cachedWrapU = texture.wrapU;
  4055. switch (texture.wrapU) {
  4056. case Texture.WRAP_ADDRESSMODE:
  4057. this._gl.texParameteri(this._gl.TEXTURE_2D, this._gl.TEXTURE_WRAP_S, this._gl.REPEAT);
  4058. break;
  4059. case Texture.CLAMP_ADDRESSMODE:
  4060. this._gl.texParameteri(this._gl.TEXTURE_2D, this._gl.TEXTURE_WRAP_S, this._gl.CLAMP_TO_EDGE);
  4061. break;
  4062. case Texture.MIRROR_ADDRESSMODE:
  4063. this._gl.texParameteri(this._gl.TEXTURE_2D, this._gl.TEXTURE_WRAP_S, this._gl.MIRRORED_REPEAT);
  4064. break;
  4065. }
  4066. }
  4067. if (internalTexture && internalTexture._cachedWrapV !== texture.wrapV) {
  4068. internalTexture._cachedWrapV = texture.wrapV;
  4069. switch (texture.wrapV) {
  4070. case Texture.WRAP_ADDRESSMODE:
  4071. this._gl.texParameteri(this._gl.TEXTURE_2D, this._gl.TEXTURE_WRAP_T, this._gl.REPEAT);
  4072. break;
  4073. case Texture.CLAMP_ADDRESSMODE:
  4074. this._gl.texParameteri(this._gl.TEXTURE_2D, this._gl.TEXTURE_WRAP_T, this._gl.CLAMP_TO_EDGE);
  4075. break;
  4076. case Texture.MIRROR_ADDRESSMODE:
  4077. this._gl.texParameteri(this._gl.TEXTURE_2D, this._gl.TEXTURE_WRAP_T, this._gl.MIRRORED_REPEAT);
  4078. break;
  4079. }
  4080. }
  4081. this._setAnisotropicLevel(this._gl.TEXTURE_2D, texture);
  4082. }
  4083. return true;
  4084. }
  4085. public setTextureArray(channel: number, uniform: Nullable<WebGLUniformLocation>, textures: BaseTexture[]): void {
  4086. if (channel < 0 || !uniform) {
  4087. return;
  4088. }
  4089. if (!this._textureUnits || this._textureUnits.length !== textures.length) {
  4090. this._textureUnits = new Int32Array(textures.length);
  4091. }
  4092. for (let i = 0; i < textures.length; i++) {
  4093. this._textureUnits[i] = this._getCorrectTextureChannel(channel + i, textures[i].getInternalTexture());
  4094. }
  4095. this._gl.uniform1iv(uniform, this._textureUnits);
  4096. for (var index = 0; index < textures.length; index++) {
  4097. this._setTexture(this._textureUnits[index], textures[index], true);
  4098. }
  4099. }
  4100. public _setAnisotropicLevel(key: number, texture: BaseTexture) {
  4101. var internalTexture = texture.getInternalTexture();
  4102. if (!internalTexture) {
  4103. return;
  4104. }
  4105. var anisotropicFilterExtension = this._caps.textureAnisotropicFilterExtension;
  4106. var value = texture.anisotropicFilteringLevel;
  4107. if (internalTexture.samplingMode !== Texture.LINEAR_LINEAR_MIPNEAREST
  4108. && internalTexture.samplingMode !== Texture.LINEAR_LINEAR_MIPLINEAR
  4109. && internalTexture.samplingMode !== Texture.LINEAR_LINEAR) {
  4110. value = 1; // Forcing the anisotropic to 1 because else webgl will force filters to linear
  4111. }
  4112. if (anisotropicFilterExtension && internalTexture._cachedAnisotropicFilteringLevel !== value) {
  4113. this._gl.texParameterf(key, anisotropicFilterExtension.TEXTURE_MAX_ANISOTROPY_EXT, Math.min(value, this._caps.maxAnisotropy));
  4114. internalTexture._cachedAnisotropicFilteringLevel = value;
  4115. }
  4116. }
  4117. public readPixels(x: number, y: number, width: number, height: number): Uint8Array {
  4118. var data = new Uint8Array(height * width * 4);
  4119. this._gl.readPixels(x, y, width, height, this._gl.RGBA, this._gl.UNSIGNED_BYTE, data);
  4120. return data;
  4121. }
  4122. /**
  4123. * Add an externaly attached data from its key.
  4124. * This method call will fail and return false, if such key already exists.
  4125. * If you don't care and just want to get the data no matter what, use the more convenient getOrAddExternalDataWithFactory() method.
  4126. * @param key the unique key that identifies the data
  4127. * @param data the data object to associate to the key for this Engine instance
  4128. * @return true if no such key were already present and the data was added successfully, false otherwise
  4129. */
  4130. public addExternalData<T>(key: string, data: T): boolean {
  4131. if (!this._externalData) {
  4132. this._externalData = new StringDictionary<Object>();
  4133. }
  4134. return this._externalData.add(key, data);
  4135. }
  4136. /**
  4137. * Get an externaly attached data from its key
  4138. * @param key the unique key that identifies the data
  4139. * @return the associated data, if present (can be null), or undefined if not present
  4140. */
  4141. public getExternalData<T>(key: string): T {
  4142. if (!this._externalData) {
  4143. this._externalData = new StringDictionary<Object>();
  4144. }
  4145. return <T>this._externalData.get(key);
  4146. }
  4147. /**
  4148. * Get an externaly attached data from its key, create it using a factory if it's not already present
  4149. * @param key the unique key that identifies the data
  4150. * @param factory the factory that will be called to create the instance if and only if it doesn't exists
  4151. * @return the associated data, can be null if the factory returned null.
  4152. */
  4153. public getOrAddExternalDataWithFactory<T>(key: string, factory: (k: string) => T): T {
  4154. if (!this._externalData) {
  4155. this._externalData = new StringDictionary<Object>();
  4156. }
  4157. return <T>this._externalData.getOrAddWithFactory(key, factory);
  4158. }
  4159. /**
  4160. * Remove an externaly attached data from the Engine instance
  4161. * @param key the unique key that identifies the data
  4162. * @return true if the data was successfully removed, false if it doesn't exist
  4163. */
  4164. public removeExternalData(key: string): boolean {
  4165. if (!this._externalData) {
  4166. this._externalData = new StringDictionary<Object>();
  4167. }
  4168. return this._externalData.remove(key);
  4169. }
  4170. public unbindAllAttributes() {
  4171. if (this._mustWipeVertexAttributes) {
  4172. this._mustWipeVertexAttributes = false;
  4173. for (var i = 0; i < this._caps.maxVertexAttribs; i++) {
  4174. this._gl.disableVertexAttribArray(i);
  4175. this._vertexAttribArraysEnabled[i] = false;
  4176. this._currentBufferPointers[i].active = false;
  4177. }
  4178. return;
  4179. }
  4180. for (var i = 0, ul = this._vertexAttribArraysEnabled.length; i < ul; i++) {
  4181. if (i >= this._caps.maxVertexAttribs || !this._vertexAttribArraysEnabled[i]) {
  4182. continue;
  4183. }
  4184. this._gl.disableVertexAttribArray(i);
  4185. this._vertexAttribArraysEnabled[i] = false;
  4186. this._currentBufferPointers[i].active = false;
  4187. }
  4188. }
  4189. public releaseEffects() {
  4190. for (var name in this._compiledEffects) {
  4191. this._deleteProgram(this._compiledEffects[name]._program)
  4192. }
  4193. this._compiledEffects = {};
  4194. }
  4195. // Dispose
  4196. public dispose(): void {
  4197. this.hideLoadingUI();
  4198. this.stopRenderLoop();
  4199. // Release postProcesses
  4200. while (this.postProcesses.length) {
  4201. this.postProcesses[0].dispose();
  4202. }
  4203. // Empty texture
  4204. if (this._emptyTexture) {
  4205. this._releaseTexture(this._emptyTexture);
  4206. this._emptyTexture = null;
  4207. }
  4208. if (this._emptyCubeTexture) {
  4209. this._releaseTexture(this._emptyCubeTexture);
  4210. this._emptyCubeTexture = null;
  4211. }
  4212. // Rescale PP
  4213. if (this._rescalePostProcess) {
  4214. this._rescalePostProcess.dispose();
  4215. }
  4216. // Release scenes
  4217. while (this.scenes.length) {
  4218. this.scenes[0].dispose();
  4219. }
  4220. // Release audio engine
  4221. if (Engine.audioEngine) {
  4222. Engine.audioEngine.dispose();
  4223. }
  4224. // Release effects
  4225. this.releaseEffects();
  4226. // Unbind
  4227. this.unbindAllAttributes();
  4228. if (this._dummyFramebuffer) {
  4229. this._gl.deleteFramebuffer(this._dummyFramebuffer);
  4230. }
  4231. //WebVR
  4232. this.disableVR();
  4233. // Events
  4234. if (Tools.IsWindowObjectExist()) {
  4235. window.removeEventListener("blur", this._onBlur);
  4236. window.removeEventListener("focus", this._onFocus);
  4237. window.removeEventListener('vrdisplaypointerrestricted', this._onVRDisplayPointerRestricted);
  4238. window.removeEventListener('vrdisplaypointerunrestricted', this._onVRDisplayPointerUnrestricted);
  4239. if (this._renderingCanvas) {
  4240. this._renderingCanvas.removeEventListener("focus", this._onCanvasFocus);
  4241. this._renderingCanvas.removeEventListener("blur", this._onCanvasBlur);
  4242. this._renderingCanvas.removeEventListener("pointerout", this._onCanvasBlur);
  4243. if (!this._doNotHandleContextLost) {
  4244. this._renderingCanvas.removeEventListener("webglcontextlost", this._onContextLost);
  4245. this._renderingCanvas.removeEventListener("webglcontextrestored", this._onContextRestored);
  4246. }
  4247. }
  4248. document.removeEventListener("fullscreenchange", this._onFullscreenChange);
  4249. document.removeEventListener("mozfullscreenchange", this._onFullscreenChange);
  4250. document.removeEventListener("webkitfullscreenchange", this._onFullscreenChange);
  4251. document.removeEventListener("msfullscreenchange", this._onFullscreenChange);
  4252. document.removeEventListener("pointerlockchange", this._onPointerLockChange);
  4253. document.removeEventListener("mspointerlockchange", this._onPointerLockChange);
  4254. document.removeEventListener("mozpointerlockchange", this._onPointerLockChange);
  4255. document.removeEventListener("webkitpointerlockchange", this._onPointerLockChange);
  4256. if (this._onVrDisplayConnect) {
  4257. window.removeEventListener('vrdisplayconnect', this._onVrDisplayConnect);
  4258. if (this._onVrDisplayDisconnect) {
  4259. window.removeEventListener('vrdisplaydisconnect', this._onVrDisplayDisconnect);
  4260. }
  4261. if (this._onVrDisplayPresentChange) {
  4262. window.removeEventListener('vrdisplaypresentchange', this._onVrDisplayPresentChange);
  4263. }
  4264. this._onVrDisplayConnect = null;
  4265. this._onVrDisplayDisconnect = null;
  4266. }
  4267. }
  4268. // Remove from Instances
  4269. var index = Engine.Instances.indexOf(this);
  4270. if (index >= 0) {
  4271. Engine.Instances.splice(index, 1);
  4272. }
  4273. this._workingCanvas = null;
  4274. this._workingContext = null;
  4275. this._currentBufferPointers = [];
  4276. this._renderingCanvas = null;
  4277. this._currentProgram = null;
  4278. this.onResizeObservable.clear();
  4279. this.onCanvasBlurObservable.clear();
  4280. this.onCanvasFocusObservable.clear();
  4281. this.onCanvasPointerOutObservable.clear();
  4282. this.onBeginFrameObservable.clear();
  4283. this.onEndFrameObservable.clear();
  4284. Effect.ResetCache();
  4285. // Abort active requests
  4286. for (let request of this._activeRequests) {
  4287. request.abort();
  4288. }
  4289. }
  4290. // Loading screen
  4291. public displayLoadingUI(): void {
  4292. if (!Tools.IsWindowObjectExist()) {
  4293. return;
  4294. }
  4295. const loadingScreen = this.loadingScreen;
  4296. if (loadingScreen) {
  4297. loadingScreen.displayLoadingUI();
  4298. }
  4299. }
  4300. public hideLoadingUI(): void {
  4301. if (!Tools.IsWindowObjectExist()) {
  4302. return;
  4303. }
  4304. const loadingScreen = this.loadingScreen;
  4305. if (loadingScreen) {
  4306. loadingScreen.hideLoadingUI();
  4307. }
  4308. }
  4309. public get loadingScreen(): ILoadingScreen {
  4310. if (!this._loadingScreen && DefaultLoadingScreen && this._renderingCanvas)
  4311. this._loadingScreen = new DefaultLoadingScreen(this._renderingCanvas)
  4312. return this._loadingScreen;
  4313. }
  4314. public set loadingScreen(loadingScreen: ILoadingScreen) {
  4315. this._loadingScreen = loadingScreen;
  4316. }
  4317. public set loadingUIText(text: string) {
  4318. this.loadingScreen.loadingUIText = text;
  4319. }
  4320. public set loadingUIBackgroundColor(color: string) {
  4321. this.loadingScreen.loadingUIBackgroundColor = color;
  4322. }
  4323. public attachContextLostEvent(callback: ((event: WebGLContextEvent) => void)): void {
  4324. if (this._renderingCanvas) {
  4325. this._renderingCanvas.addEventListener("webglcontextlost", <any>callback, false);
  4326. }
  4327. }
  4328. public attachContextRestoredEvent(callback: ((event: WebGLContextEvent) => void)): void {
  4329. if (this._renderingCanvas) {
  4330. this._renderingCanvas.addEventListener("webglcontextrestored", <any>callback, false);
  4331. }
  4332. }
  4333. public getVertexShaderSource(program: WebGLProgram): Nullable<string> {
  4334. var shaders = this._gl.getAttachedShaders(program);
  4335. if (!shaders) {
  4336. return null;
  4337. }
  4338. return this._gl.getShaderSource(shaders[0]);
  4339. }
  4340. public getFragmentShaderSource(program: WebGLProgram): Nullable<string> {
  4341. var shaders = this._gl.getAttachedShaders(program);
  4342. if (!shaders) {
  4343. return null;
  4344. }
  4345. return this._gl.getShaderSource(shaders[1]);
  4346. }
  4347. public getError(): number {
  4348. return this._gl.getError();
  4349. }
  4350. // FPS
  4351. public getFps(): number {
  4352. return this._fps;
  4353. }
  4354. public getDeltaTime(): number {
  4355. return this._deltaTime;
  4356. }
  4357. private _measureFps(): void {
  4358. this._performanceMonitor.sampleFrame();
  4359. this._fps = this._performanceMonitor.averageFPS;
  4360. this._deltaTime = this._performanceMonitor.instantaneousFrameTime || 0;
  4361. }
  4362. public _readTexturePixels(texture: InternalTexture, width: number, height: number, faceIndex = -1): ArrayBufferView {
  4363. let gl = this._gl;
  4364. if (!this._dummyFramebuffer) {
  4365. let dummy = gl.createFramebuffer();
  4366. if (!dummy) {
  4367. throw new Error("Unable to create dummy framebuffer");
  4368. }
  4369. this._dummyFramebuffer = dummy;
  4370. }
  4371. gl.bindFramebuffer(gl.FRAMEBUFFER, this._dummyFramebuffer);
  4372. if (faceIndex > -1) {
  4373. gl.framebufferTexture2D(gl.FRAMEBUFFER, gl.COLOR_ATTACHMENT0, gl.TEXTURE_CUBE_MAP_POSITIVE_X + faceIndex, texture._webGLTexture, 0);
  4374. } else {
  4375. gl.framebufferTexture2D(gl.FRAMEBUFFER, gl.COLOR_ATTACHMENT0, gl.TEXTURE_2D, texture._webGLTexture, 0);
  4376. }
  4377. let readType = (texture.type !== undefined) ? this._getWebGLTextureType(texture.type) : gl.UNSIGNED_BYTE;
  4378. let buffer: ArrayBufferView;
  4379. switch (readType) {
  4380. case gl.UNSIGNED_BYTE:
  4381. buffer = new Uint8Array(4 * width * height);
  4382. readType = gl.UNSIGNED_BYTE;
  4383. break;
  4384. default:
  4385. buffer = new Float32Array(4 * width * height);
  4386. readType = gl.FLOAT;
  4387. break;
  4388. }
  4389. gl.readPixels(0, 0, width, height, gl.RGBA, readType, buffer);
  4390. gl.bindFramebuffer(gl.FRAMEBUFFER, this._currentFramebuffer);
  4391. return buffer;
  4392. }
  4393. private _canRenderToFloatFramebuffer(): boolean {
  4394. if (this._webGLVersion > 1) {
  4395. return this._caps.colorBufferFloat;
  4396. }
  4397. return this._canRenderToFramebuffer(Engine.TEXTURETYPE_FLOAT);
  4398. }
  4399. private _canRenderToHalfFloatFramebuffer(): boolean {
  4400. if (this._webGLVersion > 1) {
  4401. return this._caps.colorBufferFloat;
  4402. }
  4403. return this._canRenderToFramebuffer(Engine.TEXTURETYPE_HALF_FLOAT);
  4404. }
  4405. // Thank you : http://stackoverflow.com/questions/28827511/webgl-ios-render-to-floating-point-texture
  4406. private _canRenderToFramebuffer(type: number): boolean {
  4407. let gl = this._gl;
  4408. //clear existing errors
  4409. while (gl.getError() !== gl.NO_ERROR) { }
  4410. let successful = true;
  4411. let texture = gl.createTexture();
  4412. gl.bindTexture(gl.TEXTURE_2D, texture);
  4413. gl.texImage2D(gl.TEXTURE_2D, 0, this._getRGBABufferInternalSizedFormat(type), 1, 1, 0, gl.RGBA, this._getWebGLTextureType(type), null);
  4414. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_MIN_FILTER, gl.NEAREST);
  4415. gl.texParameteri(gl.TEXTURE_2D, gl.TEXTURE_MAG_FILTER, gl.NEAREST);
  4416. let fb = gl.createFramebuffer();
  4417. gl.bindFramebuffer(gl.FRAMEBUFFER, fb);
  4418. gl.framebufferTexture2D(gl.FRAMEBUFFER, gl.COLOR_ATTACHMENT0, gl.TEXTURE_2D, texture, 0);
  4419. let status = gl.checkFramebufferStatus(gl.FRAMEBUFFER);
  4420. successful = successful && (status === gl.FRAMEBUFFER_COMPLETE);
  4421. successful = successful && (gl.getError() === gl.NO_ERROR);
  4422. //try render by clearing frame buffer's color buffer
  4423. if (successful) {
  4424. gl.clear(gl.COLOR_BUFFER_BIT);
  4425. successful = successful && (gl.getError() === gl.NO_ERROR);
  4426. }
  4427. //try reading from frame to ensure render occurs (just creating the FBO is not sufficient to determine if rendering is supported)
  4428. if (successful) {
  4429. //in practice it's sufficient to just read from the backbuffer rather than handle potentially issues reading from the texture
  4430. gl.bindFramebuffer(gl.FRAMEBUFFER, null);
  4431. let readFormat = gl.RGBA;
  4432. let readType = gl.UNSIGNED_BYTE;
  4433. let buffer = new Uint8Array(4);
  4434. gl.readPixels(0, 0, 1, 1, readFormat, readType, buffer);
  4435. successful = successful && (gl.getError() === gl.NO_ERROR);
  4436. }
  4437. //clean up
  4438. gl.deleteTexture(texture);
  4439. gl.deleteFramebuffer(fb);
  4440. gl.bindFramebuffer(gl.FRAMEBUFFER, null);
  4441. //clear accumulated errors
  4442. while (!successful && (gl.getError() !== gl.NO_ERROR)) { }
  4443. return successful;
  4444. }
  4445. public _getWebGLTextureType(type: number): number {
  4446. if (type === Engine.TEXTURETYPE_FLOAT) {
  4447. return this._gl.FLOAT;
  4448. }
  4449. else if (type === Engine.TEXTURETYPE_HALF_FLOAT) {
  4450. // Add Half Float Constant.
  4451. return this._gl.HALF_FLOAT_OES;
  4452. }
  4453. return this._gl.UNSIGNED_BYTE;
  4454. };
  4455. public _getRGBABufferInternalSizedFormat(type: number): number {
  4456. if (this._webGLVersion === 1) {
  4457. return this._gl.RGBA;
  4458. }
  4459. if (type === Engine.TEXTURETYPE_FLOAT) {
  4460. return this._gl.RGBA32F;
  4461. }
  4462. else if (type === Engine.TEXTURETYPE_HALF_FLOAT) {
  4463. return this._gl.RGBA16F;
  4464. }
  4465. return this._gl.RGBA;
  4466. };
  4467. public _getRGBAMultiSampleBufferFormat(type: number): number {
  4468. if (type === Engine.TEXTURETYPE_FLOAT) {
  4469. return this._gl.RGBA32F;
  4470. }
  4471. else if (type === Engine.TEXTURETYPE_HALF_FLOAT) {
  4472. return this._gl.RGBA16F;
  4473. }
  4474. return this._gl.RGBA8;
  4475. };
  4476. public createQuery(): WebGLQuery {
  4477. return this._gl.createQuery();
  4478. }
  4479. public deleteQuery(query: WebGLQuery): Engine {
  4480. this._gl.deleteQuery(query);
  4481. return this;
  4482. }
  4483. public isQueryResultAvailable(query: WebGLQuery): boolean {
  4484. return this._gl.getQueryParameter(query, this._gl.QUERY_RESULT_AVAILABLE) as boolean;
  4485. }
  4486. public getQueryResult(query: WebGLQuery): number {
  4487. return this._gl.getQueryParameter(query, this._gl.QUERY_RESULT) as number;
  4488. }
  4489. public beginOcclusionQuery(algorithmType: number, query: WebGLQuery): Engine {
  4490. var glAlgorithm = this.getGlAlgorithmType(algorithmType);
  4491. this._gl.beginQuery(glAlgorithm, query);
  4492. return this;
  4493. }
  4494. public endOcclusionQuery(algorithmType: number): Engine {
  4495. var glAlgorithm = this.getGlAlgorithmType(algorithmType);
  4496. this._gl.endQuery(glAlgorithm);
  4497. return this;
  4498. }
  4499. /* Time queries */
  4500. private _createTimeQuery(): WebGLQuery {
  4501. let timerQuery = <EXT_disjoint_timer_query>this._caps.timerQuery;
  4502. if (timerQuery.createQueryEXT) {
  4503. return timerQuery.createQueryEXT();
  4504. }
  4505. return this.createQuery();
  4506. }
  4507. private _deleteTimeQuery(query: WebGLQuery): void {
  4508. let timerQuery = <EXT_disjoint_timer_query>this._caps.timerQuery;
  4509. if (timerQuery.deleteQueryEXT) {
  4510. timerQuery.deleteQueryEXT(query);
  4511. return;
  4512. }
  4513. this.deleteQuery(query);
  4514. }
  4515. private _getTimeQueryResult(query: WebGLQuery): any {
  4516. let timerQuery = <EXT_disjoint_timer_query>this._caps.timerQuery;
  4517. if (timerQuery.getQueryObjectEXT) {
  4518. return timerQuery.getQueryObjectEXT(query, timerQuery.QUERY_RESULT_EXT);
  4519. }
  4520. return this.getQueryResult(query);
  4521. }
  4522. private _getTimeQueryAvailability(query: WebGLQuery): any {
  4523. let timerQuery = <EXT_disjoint_timer_query>this._caps.timerQuery;
  4524. if (timerQuery.getQueryObjectEXT) {
  4525. return timerQuery.getQueryObjectEXT(query, timerQuery.QUERY_RESULT_AVAILABLE_EXT);
  4526. }
  4527. return this.isQueryResultAvailable(query);
  4528. }
  4529. private _currentNonTimestampToken: Nullable<_TimeToken>;
  4530. public startTimeQuery(): Nullable<_TimeToken> {
  4531. let timerQuery = this._caps.timerQuery;
  4532. if (!timerQuery) {
  4533. return null;
  4534. }
  4535. let token = new _TimeToken();
  4536. this._gl.getParameter(timerQuery.GPU_DISJOINT_EXT);
  4537. if (this._caps.canUseTimestampForTimerQuery) {
  4538. token._startTimeQuery = this._createTimeQuery();
  4539. timerQuery.queryCounterEXT(token._startTimeQuery, timerQuery.TIMESTAMP_EXT);
  4540. } else {
  4541. if (this._currentNonTimestampToken) {
  4542. return this._currentNonTimestampToken;
  4543. }
  4544. token._timeElapsedQuery = this._createTimeQuery();
  4545. if (timerQuery.beginQueryEXT) {
  4546. timerQuery.beginQueryEXT(timerQuery.TIME_ELAPSED_EXT, token._timeElapsedQuery);
  4547. } else {
  4548. this._gl.beginQuery(timerQuery.TIME_ELAPSED_EXT, token._timeElapsedQuery);
  4549. }
  4550. this._currentNonTimestampToken = token;
  4551. }
  4552. return token;
  4553. }
  4554. public endTimeQuery(token: _TimeToken): int {
  4555. let timerQuery = this._caps.timerQuery;
  4556. if (!timerQuery || !token) {
  4557. return -1;
  4558. }
  4559. if (this._caps.canUseTimestampForTimerQuery) {
  4560. if (!token._startTimeQuery) {
  4561. return -1;
  4562. }
  4563. if (!token._endTimeQuery) {
  4564. token._endTimeQuery = this._createTimeQuery();
  4565. timerQuery.queryCounterEXT(token._endTimeQuery, timerQuery.TIMESTAMP_EXT);
  4566. }
  4567. } else if (!token._timeElapsedQueryEnded) {
  4568. if (!token._timeElapsedQuery) {
  4569. return -1;
  4570. }
  4571. if (timerQuery.endQueryEXT) {
  4572. timerQuery.endQueryEXT(timerQuery.TIME_ELAPSED_EXT);
  4573. } else {
  4574. this._gl.endQuery(timerQuery.TIME_ELAPSED_EXT);
  4575. }
  4576. token._timeElapsedQueryEnded = true;
  4577. }
  4578. let disjoint = this._gl.getParameter(timerQuery.GPU_DISJOINT_EXT);
  4579. let available: boolean = false;
  4580. if (token._endTimeQuery) {
  4581. available = this._getTimeQueryAvailability(token._endTimeQuery);
  4582. } else if (token._timeElapsedQuery) {
  4583. available = this._getTimeQueryAvailability(token._timeElapsedQuery);
  4584. }
  4585. if (available && !disjoint) {
  4586. let result = 0;
  4587. if (this._caps.canUseTimestampForTimerQuery) {
  4588. if (!token._startTimeQuery || !token._endTimeQuery) {
  4589. return -1;
  4590. }
  4591. let timeStart = this._getTimeQueryResult(token._startTimeQuery);
  4592. let timeEnd = this._getTimeQueryResult(token._endTimeQuery);
  4593. result = timeEnd - timeStart;
  4594. this._deleteTimeQuery(token._startTimeQuery);
  4595. this._deleteTimeQuery(token._endTimeQuery);
  4596. token._startTimeQuery = null;
  4597. token._endTimeQuery = null;
  4598. } else {
  4599. if (!token._timeElapsedQuery) {
  4600. return -1;
  4601. }
  4602. result = this._getTimeQueryResult(token._timeElapsedQuery);
  4603. this._deleteTimeQuery(token._timeElapsedQuery);
  4604. token._timeElapsedQuery = null;
  4605. token._timeElapsedQueryEnded = false;
  4606. this._currentNonTimestampToken = null;
  4607. }
  4608. return result;
  4609. }
  4610. return -1;
  4611. }
  4612. private getGlAlgorithmType(algorithmType: number): number {
  4613. return algorithmType === AbstractMesh.OCCLUSION_ALGORITHM_TYPE_CONSERVATIVE ? this._gl.ANY_SAMPLES_PASSED_CONSERVATIVE : this._gl.ANY_SAMPLES_PASSED;
  4614. }
  4615. // Transform feedback
  4616. public createTransformFeedback(): WebGLTransformFeedback {
  4617. return this._gl.createTransformFeedback();
  4618. }
  4619. public deleteTransformFeedback(value: WebGLTransformFeedback): void {
  4620. this._gl.deleteTransformFeedback(value);
  4621. }
  4622. public bindTransformFeedback(value: Nullable<WebGLTransformFeedback>): void {
  4623. this._gl.bindTransformFeedback(this._gl.TRANSFORM_FEEDBACK, value);
  4624. }
  4625. public beginTransformFeedback(usePoints: boolean = true): void {
  4626. this._gl.beginTransformFeedback(usePoints ? this._gl.POINTS : this._gl.TRIANGLES);
  4627. }
  4628. public endTransformFeedback(): void {
  4629. this._gl.endTransformFeedback();
  4630. }
  4631. public setTranformFeedbackVaryings(program: WebGLProgram, value: string[]): void {
  4632. this._gl.transformFeedbackVaryings(program, value, this._gl.INTERLEAVED_ATTRIBS);
  4633. }
  4634. public bindTransformFeedbackBuffer(value: Nullable<WebGLBuffer>): void {
  4635. this._gl.bindBufferBase(this._gl.TRANSFORM_FEEDBACK_BUFFER, 0, value);
  4636. }
  4637. public _loadFile(url: string, onSuccess: (data: string | ArrayBuffer, responseURL?: string) => void, onProgress?: (data: any) => void, database?: Database, useArrayBuffer?: boolean, onError?: (request?: XMLHttpRequest, exception?: any) => void): IFileRequest {
  4638. let request = Tools.LoadFile(url, onSuccess, onProgress, database, useArrayBuffer, onError);
  4639. this._activeRequests.push(request);
  4640. request.onCompleteObservable.add(request => {
  4641. this._activeRequests.splice(this._activeRequests.indexOf(request), 1);
  4642. });
  4643. return request;
  4644. }
  4645. private _partialLoadFile(url: string, index: number, loadedFiles: (string | ArrayBuffer)[], scene: Nullable<Scene>, onfinish: (files: (string | ArrayBuffer)[]) => void, onErrorCallBack: Nullable<(message?: string, exception?: any) => void> = null): void {
  4646. var onload = (data: string | ArrayBuffer) => {
  4647. loadedFiles[index] = data;
  4648. (<any>loadedFiles)._internalCount++;
  4649. if ((<any>loadedFiles)._internalCount === 6) {
  4650. onfinish(loadedFiles);
  4651. }
  4652. };
  4653. const onerror = (request?: XMLHttpRequest, exception?: any) => {
  4654. if (onErrorCallBack && request) {
  4655. onErrorCallBack(request.status + " " + request.statusText, exception);
  4656. }
  4657. };
  4658. this._loadFile(url, onload, undefined, undefined, true, onerror);
  4659. }
  4660. private _cascadeLoadFiles(rootUrl: string, scene: Nullable<Scene>, onfinish: (images: (string | ArrayBuffer)[]) => void, files: string[], onError: Nullable<(message?: string, exception?: any) => void> = null): void {
  4661. var loadedFiles: (string | ArrayBuffer)[] = [];
  4662. (<any>loadedFiles)._internalCount = 0;
  4663. for (let index = 0; index < 6; index++) {
  4664. this._partialLoadFile(files[index], index, loadedFiles, scene, onfinish, onError);
  4665. }
  4666. }
  4667. // Statics
  4668. public static isSupported(): boolean {
  4669. try {
  4670. var tempcanvas = document.createElement("canvas");
  4671. var gl = tempcanvas.getContext("webgl") || tempcanvas.getContext("experimental-webgl");
  4672. return gl != null && !!window.WebGLRenderingContext;
  4673. } catch (e) {
  4674. return false;
  4675. }
  4676. }
  4677. }
  4678. }