babylon.waterMaterial.js 46 KB

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  1. /// <reference path="../../../dist/preview release/babylon.d.ts"/>
  2. /// <reference path="../simple/babylon.simpleMaterial.ts"/>
  3. var BABYLON;
  4. (function (BABYLON) {
  5. var maxSimultaneousLights = 4;
  6. var WaterMaterialDefines = (function (_super) {
  7. __extends(WaterMaterialDefines, _super);
  8. function WaterMaterialDefines() {
  9. _super.call(this);
  10. this.BUMP = false;
  11. this.REFLECTION = false;
  12. this.CLIPPLANE = false;
  13. this.ALPHATEST = false;
  14. this.POINTSIZE = false;
  15. this.FOG = false;
  16. this.LIGHT0 = false;
  17. this.LIGHT1 = false;
  18. this.LIGHT2 = false;
  19. this.LIGHT3 = false;
  20. this.SPOTLIGHT0 = false;
  21. this.SPOTLIGHT1 = false;
  22. this.SPOTLIGHT2 = false;
  23. this.SPOTLIGHT3 = false;
  24. this.HEMILIGHT0 = false;
  25. this.HEMILIGHT1 = false;
  26. this.HEMILIGHT2 = false;
  27. this.HEMILIGHT3 = false;
  28. this.POINTDIRLIGHT0 = false;
  29. this.POINTDIRLIGHT1 = false;
  30. this.POINTDIRLIGHT2 = false;
  31. this.POINTDIRLIGHT3 = false;
  32. this.SHADOW0 = false;
  33. this.SHADOW1 = false;
  34. this.SHADOW2 = false;
  35. this.SHADOW3 = false;
  36. this.SHADOWS = false;
  37. this.SHADOWVSM0 = false;
  38. this.SHADOWVSM1 = false;
  39. this.SHADOWVSM2 = false;
  40. this.SHADOWVSM3 = false;
  41. this.SHADOWPCF0 = false;
  42. this.SHADOWPCF1 = false;
  43. this.SHADOWPCF2 = false;
  44. this.SHADOWPCF3 = false;
  45. this.NORMAL = false;
  46. this.UV1 = false;
  47. this.UV2 = false;
  48. this.VERTEXCOLOR = false;
  49. this.VERTEXALPHA = false;
  50. this.BONES = false;
  51. this.BONES4 = false;
  52. this.BonesPerMesh = 0;
  53. this.INSTANCES = false;
  54. this._keys = Object.keys(this);
  55. }
  56. return WaterMaterialDefines;
  57. })(BABYLON.MaterialDefines);
  58. var WaterMaterial = (function (_super) {
  59. __extends(WaterMaterial, _super);
  60. /**
  61. * Constructor
  62. */
  63. function WaterMaterial(name, scene, sourceMesh, renderTargetSize) {
  64. if (sourceMesh === void 0) { sourceMesh = null; }
  65. if (renderTargetSize === void 0) { renderTargetSize = new BABYLON.Vector2(512, 512); }
  66. _super.call(this, name, scene);
  67. this.diffuseColor = new BABYLON.Color3(1, 1, 1);
  68. this.disableLighting = false;
  69. /**
  70. * @param {number}: Represents the wind force
  71. */
  72. this.windForce = 6;
  73. /**
  74. * @param {Vector2}: The direction of the wind in the plane (X, Z)
  75. */
  76. this.windDirection = new BABYLON.Vector2(0, 1);
  77. /**
  78. * @param {number}: Wave height, represents the height of the waves
  79. */
  80. this.waveHeight = 0.4;
  81. /**
  82. * @param {number}: Bump height, represents the bump height related to the bump map
  83. */
  84. this.bumpHeight = 0.4;
  85. /**
  86. * @param {number}: The water color blended with the reflection and refraction samplers
  87. */
  88. this.waterColor = new BABYLON.Color3(0.1, 0.1, 0.6);
  89. /**
  90. * @param {number}: The blend factor related to the water color
  91. */
  92. this.colorBlendFactor = 0.2;
  93. /**
  94. * @param {number}: Represents the maximum length of a wave
  95. */
  96. this.waveLength = 0.1;
  97. this._reflectionTransform = BABYLON.Matrix.Zero();
  98. this._lastTime = 0;
  99. this._scaledDiffuse = new BABYLON.Color3();
  100. this._defines = new WaterMaterialDefines();
  101. this._cachedDefines = new WaterMaterialDefines();
  102. // Set this
  103. this._mesh = sourceMesh;
  104. // Create render targets
  105. this._createRenderTargets(scene, renderTargetSize);
  106. }
  107. Object.defineProperty(WaterMaterial.prototype, "mesh", {
  108. // Get / Set
  109. get: function () {
  110. return this._mesh;
  111. },
  112. set: function (mesh) {
  113. this._mesh = mesh;
  114. },
  115. enumerable: true,
  116. configurable: true
  117. });
  118. Object.defineProperty(WaterMaterial.prototype, "refractionTexture", {
  119. get: function () {
  120. return this._refractionRTT;
  121. },
  122. enumerable: true,
  123. configurable: true
  124. });
  125. Object.defineProperty(WaterMaterial.prototype, "reflectioNTexture", {
  126. get: function () {
  127. return this._reflectionRTT;
  128. },
  129. enumerable: true,
  130. configurable: true
  131. });
  132. // Methods
  133. WaterMaterial.prototype.addToRenderList = function (node) {
  134. this._refractionRTT.renderList.push(node);
  135. this._reflectionRTT.renderList.push(node);
  136. };
  137. WaterMaterial.prototype.enableRenderTargets = function (enable) {
  138. var refreshRate = enable ? 1 : 0;
  139. this._refractionRTT.refreshRate = refreshRate;
  140. this._reflectionRTT.refreshRate = refreshRate;
  141. };
  142. WaterMaterial.prototype.needAlphaBlending = function () {
  143. return (this.alpha < 1.0);
  144. };
  145. WaterMaterial.prototype.needAlphaTesting = function () {
  146. return false;
  147. };
  148. WaterMaterial.prototype.getAlphaTestTexture = function () {
  149. return null;
  150. };
  151. WaterMaterial.prototype._checkCache = function (scene, mesh, useInstances) {
  152. if (!mesh) {
  153. return true;
  154. }
  155. if (this._defines.INSTANCES !== useInstances) {
  156. return false;
  157. }
  158. if (mesh._materialDefines && mesh._materialDefines.isEqual(this._defines)) {
  159. return true;
  160. }
  161. return false;
  162. };
  163. WaterMaterial.prototype.isReady = function (mesh, useInstances) {
  164. if (this.checkReadyOnlyOnce) {
  165. if (this._wasPreviouslyReady) {
  166. return true;
  167. }
  168. }
  169. var scene = this.getScene();
  170. if (!this.checkReadyOnEveryCall) {
  171. if (this._renderId === scene.getRenderId()) {
  172. if (this._checkCache(scene, mesh, useInstances)) {
  173. return true;
  174. }
  175. }
  176. }
  177. var engine = scene.getEngine();
  178. var needNormals = false;
  179. var needUVs = false;
  180. this._defines.reset();
  181. // Textures
  182. if (scene.texturesEnabled) {
  183. if (this.bumpTexture && BABYLON.StandardMaterial.BumpTextureEnabled) {
  184. if (!this.bumpTexture.isReady()) {
  185. return false;
  186. }
  187. else {
  188. needUVs = true;
  189. this._defines.BUMP = true;
  190. }
  191. }
  192. if (BABYLON.StandardMaterial.ReflectionTextureEnabled) {
  193. this._defines.REFLECTION = true;
  194. }
  195. }
  196. // Effect
  197. if (scene.clipPlane) {
  198. this._defines.CLIPPLANE = true;
  199. }
  200. if (engine.getAlphaTesting()) {
  201. this._defines.ALPHATEST = true;
  202. }
  203. // Point size
  204. if (this.pointsCloud || scene.forcePointsCloud) {
  205. this._defines.POINTSIZE = true;
  206. }
  207. // Fog
  208. if (scene.fogEnabled && mesh && mesh.applyFog && scene.fogMode !== BABYLON.Scene.FOGMODE_NONE && this.fogEnabled) {
  209. this._defines.FOG = true;
  210. }
  211. var lightIndex = 0;
  212. if (scene.lightsEnabled && !this.disableLighting) {
  213. for (var index = 0; index < scene.lights.length; index++) {
  214. var light = scene.lights[index];
  215. if (!light.isEnabled()) {
  216. continue;
  217. }
  218. // Excluded check
  219. if (light._excludedMeshesIds.length > 0) {
  220. for (var excludedIndex = 0; excludedIndex < light._excludedMeshesIds.length; excludedIndex++) {
  221. var excludedMesh = scene.getMeshByID(light._excludedMeshesIds[excludedIndex]);
  222. if (excludedMesh) {
  223. light.excludedMeshes.push(excludedMesh);
  224. }
  225. }
  226. light._excludedMeshesIds = [];
  227. }
  228. // Included check
  229. if (light._includedOnlyMeshesIds.length > 0) {
  230. for (var includedOnlyIndex = 0; includedOnlyIndex < light._includedOnlyMeshesIds.length; includedOnlyIndex++) {
  231. var includedOnlyMesh = scene.getMeshByID(light._includedOnlyMeshesIds[includedOnlyIndex]);
  232. if (includedOnlyMesh) {
  233. light.includedOnlyMeshes.push(includedOnlyMesh);
  234. }
  235. }
  236. light._includedOnlyMeshesIds = [];
  237. }
  238. if (!light.canAffectMesh(mesh)) {
  239. continue;
  240. }
  241. needNormals = true;
  242. this._defines["LIGHT" + lightIndex] = true;
  243. var type;
  244. if (light instanceof BABYLON.SpotLight) {
  245. type = "SPOTLIGHT" + lightIndex;
  246. }
  247. else if (light instanceof BABYLON.HemisphericLight) {
  248. type = "HEMILIGHT" + lightIndex;
  249. }
  250. else {
  251. type = "POINTDIRLIGHT" + lightIndex;
  252. }
  253. this._defines[type] = true;
  254. // Shadows
  255. if (scene.shadowsEnabled) {
  256. var shadowGenerator = light.getShadowGenerator();
  257. if (mesh && mesh.receiveShadows && shadowGenerator) {
  258. this._defines["SHADOW" + lightIndex] = true;
  259. this._defines.SHADOWS = true;
  260. if (shadowGenerator.useVarianceShadowMap || shadowGenerator.useBlurVarianceShadowMap) {
  261. this._defines["SHADOWVSM" + lightIndex] = true;
  262. }
  263. if (shadowGenerator.usePoissonSampling) {
  264. this._defines["SHADOWPCF" + lightIndex] = true;
  265. }
  266. }
  267. }
  268. lightIndex++;
  269. if (lightIndex === maxSimultaneousLights)
  270. break;
  271. }
  272. }
  273. // Attribs
  274. if (mesh) {
  275. if (needNormals && mesh.isVerticesDataPresent(BABYLON.VertexBuffer.NormalKind)) {
  276. this._defines.NORMAL = true;
  277. }
  278. if (needUVs) {
  279. if (mesh.isVerticesDataPresent(BABYLON.VertexBuffer.UVKind)) {
  280. this._defines.UV1 = true;
  281. }
  282. if (mesh.isVerticesDataPresent(BABYLON.VertexBuffer.UV2Kind)) {
  283. this._defines.UV2 = true;
  284. }
  285. }
  286. if (mesh.useVertexColors && mesh.isVerticesDataPresent(BABYLON.VertexBuffer.ColorKind)) {
  287. this._defines.VERTEXCOLOR = true;
  288. if (mesh.hasVertexAlpha) {
  289. this._defines.VERTEXALPHA = true;
  290. }
  291. }
  292. if (mesh.useBones && mesh.computeBonesUsingShaders) {
  293. this._defines.BONES = true;
  294. this._defines.BonesPerMesh = (mesh.skeleton.bones.length + 1);
  295. this._defines.BONES4 = true;
  296. }
  297. // Instances
  298. if (useInstances) {
  299. this._defines.INSTANCES = true;
  300. }
  301. }
  302. // Get correct effect
  303. if (!this._defines.isEqual(this._cachedDefines)) {
  304. this._defines.cloneTo(this._cachedDefines);
  305. scene.resetCachedMaterial();
  306. // Fallbacks
  307. var fallbacks = new BABYLON.EffectFallbacks();
  308. if (this._defines.FOG) {
  309. fallbacks.addFallback(1, "FOG");
  310. }
  311. for (lightIndex = 0; lightIndex < maxSimultaneousLights; lightIndex++) {
  312. if (!this._defines["LIGHT" + lightIndex]) {
  313. continue;
  314. }
  315. if (lightIndex > 0) {
  316. fallbacks.addFallback(lightIndex, "LIGHT" + lightIndex);
  317. }
  318. if (this._defines["SHADOW" + lightIndex]) {
  319. fallbacks.addFallback(0, "SHADOW" + lightIndex);
  320. }
  321. if (this._defines["SHADOWPCF" + lightIndex]) {
  322. fallbacks.addFallback(0, "SHADOWPCF" + lightIndex);
  323. }
  324. if (this._defines["SHADOWVSM" + lightIndex]) {
  325. fallbacks.addFallback(0, "SHADOWVSM" + lightIndex);
  326. }
  327. }
  328. if (this._defines.BONES4) {
  329. fallbacks.addFallback(0, "BONES4");
  330. }
  331. //Attributes
  332. var attribs = [BABYLON.VertexBuffer.PositionKind];
  333. if (this._defines.NORMAL) {
  334. attribs.push(BABYLON.VertexBuffer.NormalKind);
  335. }
  336. if (this._defines.UV1) {
  337. attribs.push(BABYLON.VertexBuffer.UVKind);
  338. }
  339. if (this._defines.UV2) {
  340. attribs.push(BABYLON.VertexBuffer.UV2Kind);
  341. }
  342. if (this._defines.VERTEXCOLOR) {
  343. attribs.push(BABYLON.VertexBuffer.ColorKind);
  344. }
  345. if (this._defines.BONES) {
  346. attribs.push(BABYLON.VertexBuffer.MatricesIndicesKind);
  347. attribs.push(BABYLON.VertexBuffer.MatricesWeightsKind);
  348. }
  349. if (this._defines.INSTANCES) {
  350. attribs.push("world0");
  351. attribs.push("world1");
  352. attribs.push("world2");
  353. attribs.push("world3");
  354. }
  355. // Legacy browser patch
  356. var shaderName = "water";
  357. var join = this._defines.toString();
  358. this._effect = scene.getEngine().createEffect(shaderName, attribs, ["world", "view", "viewProjection", "vEyePosition", "vLightsType", "vDiffuseColor",
  359. "vLightData0", "vLightDiffuse0", "vLightSpecular0", "vLightDirection0", "vLightGround0", "lightMatrix0",
  360. "vLightData1", "vLightDiffuse1", "vLightSpecular1", "vLightDirection1", "vLightGround1", "lightMatrix1",
  361. "vLightData2", "vLightDiffuse2", "vLightSpecular2", "vLightDirection2", "vLightGround2", "lightMatrix2",
  362. "vLightData3", "vLightDiffuse3", "vLightSpecular3", "vLightDirection3", "vLightGround3", "lightMatrix3",
  363. "vFogInfos", "vFogColor", "pointSize",
  364. "vNormalInfos",
  365. "mBones",
  366. "vClipPlane", "normalMatrix",
  367. "shadowsInfo0", "shadowsInfo1", "shadowsInfo2", "shadowsInfo3",
  368. // Water
  369. "worldReflectionViewProjection", "windDirection", "waveLength", "time", "windForce",
  370. "cameraPosition", "bumpHeight", "waveHeight", "waterColor", "colorBlendFactor"
  371. ], ["normalSampler",
  372. "shadowSampler0", "shadowSampler1", "shadowSampler2", "shadowSampler3",
  373. // Water
  374. "refractionSampler", "reflectionSampler"
  375. ], join, fallbacks, this.onCompiled, this.onError);
  376. }
  377. if (!this._effect.isReady()) {
  378. return false;
  379. }
  380. this._renderId = scene.getRenderId();
  381. this._wasPreviouslyReady = true;
  382. if (mesh) {
  383. if (!mesh._materialDefines) {
  384. mesh._materialDefines = new WaterMaterialDefines();
  385. }
  386. this._defines.cloneTo(mesh._materialDefines);
  387. }
  388. return true;
  389. };
  390. WaterMaterial.prototype.bindOnlyWorldMatrix = function (world) {
  391. this._effect.setMatrix("world", world);
  392. };
  393. WaterMaterial.prototype.bind = function (world, mesh) {
  394. var scene = this.getScene();
  395. // Matrices
  396. this.bindOnlyWorldMatrix(world);
  397. this._effect.setMatrix("viewProjection", scene.getTransformMatrix());
  398. // Bones
  399. if (mesh && mesh.useBones && mesh.computeBonesUsingShaders) {
  400. this._effect.setMatrices("mBones", mesh.skeleton.getTransformMatrices());
  401. }
  402. if (scene.getCachedMaterial() !== this) {
  403. // Textures
  404. if (this.bumpTexture && BABYLON.StandardMaterial.BumpTextureEnabled) {
  405. this._effect.setTexture("normalSampler", this.bumpTexture);
  406. this._effect.setFloat2("vNormalInfos", this.bumpTexture.coordinatesIndex, this.bumpTexture.level);
  407. this._effect.setMatrix("normalMatrix", this.bumpTexture.getTextureMatrix());
  408. }
  409. // Clip plane
  410. if (scene.clipPlane) {
  411. var clipPlane = scene.clipPlane;
  412. this._effect.setFloat4("vClipPlane", clipPlane.normal.x, clipPlane.normal.y, clipPlane.normal.z, clipPlane.d);
  413. }
  414. // Point size
  415. if (this.pointsCloud) {
  416. this._effect.setFloat("pointSize", this.pointSize);
  417. }
  418. this._effect.setVector3("vEyePosition", scene._mirroredCameraPosition ? scene._mirroredCameraPosition : scene.activeCamera.position);
  419. }
  420. this._effect.setColor4("vDiffuseColor", this._scaledDiffuse, this.alpha * mesh.visibility);
  421. if (scene.lightsEnabled && !this.disableLighting) {
  422. var lightIndex = 0;
  423. for (var index = 0; index < scene.lights.length; index++) {
  424. var light = scene.lights[index];
  425. if (!light.isEnabled()) {
  426. continue;
  427. }
  428. if (!light.canAffectMesh(mesh)) {
  429. continue;
  430. }
  431. if (light instanceof BABYLON.PointLight) {
  432. // Point Light
  433. light.transferToEffect(this._effect, "vLightData" + lightIndex);
  434. }
  435. else if (light instanceof BABYLON.DirectionalLight) {
  436. // Directional Light
  437. light.transferToEffect(this._effect, "vLightData" + lightIndex);
  438. }
  439. else if (light instanceof BABYLON.SpotLight) {
  440. // Spot Light
  441. light.transferToEffect(this._effect, "vLightData" + lightIndex, "vLightDirection" + lightIndex);
  442. }
  443. else if (light instanceof BABYLON.HemisphericLight) {
  444. // Hemispheric Light
  445. light.transferToEffect(this._effect, "vLightData" + lightIndex, "vLightGround" + lightIndex);
  446. }
  447. light.diffuse.scaleToRef(light.intensity, this._scaledDiffuse);
  448. this._effect.setColor4("vLightDiffuse" + lightIndex, this._scaledDiffuse, light.range);
  449. // Shadows
  450. if (scene.shadowsEnabled) {
  451. var shadowGenerator = light.getShadowGenerator();
  452. if (mesh.receiveShadows && shadowGenerator) {
  453. this._effect.setMatrix("lightMatrix" + lightIndex, shadowGenerator.getTransformMatrix());
  454. this._effect.setTexture("shadowSampler" + lightIndex, shadowGenerator.getShadowMapForRendering());
  455. this._effect.setFloat3("shadowsInfo" + lightIndex, shadowGenerator.getDarkness(), shadowGenerator.getShadowMap().getSize().width, shadowGenerator.bias);
  456. }
  457. }
  458. lightIndex++;
  459. if (lightIndex === maxSimultaneousLights)
  460. break;
  461. }
  462. }
  463. // View
  464. if (scene.fogEnabled && mesh.applyFog && scene.fogMode !== BABYLON.Scene.FOGMODE_NONE) {
  465. this._effect.setMatrix("view", scene.getViewMatrix());
  466. }
  467. // Fog
  468. if (scene.fogEnabled && mesh.applyFog && scene.fogMode !== BABYLON.Scene.FOGMODE_NONE) {
  469. this._effect.setFloat4("vFogInfos", scene.fogMode, scene.fogStart, scene.fogEnd, scene.fogDensity);
  470. this._effect.setColor3("vFogColor", scene.fogColor);
  471. }
  472. // Water
  473. if (BABYLON.StandardMaterial.ReflectionTextureEnabled) {
  474. this._effect.setTexture("refractionSampler", this._refractionRTT);
  475. this._effect.setTexture("reflectionSampler", this._reflectionRTT);
  476. }
  477. var wrvp = this._mesh.getWorldMatrix().multiply(this._reflectionTransform).multiply(scene.getProjectionMatrix());
  478. this._lastTime += scene.getEngine().getDeltaTime();
  479. this._effect.setMatrix("worldReflectionViewProjection", wrvp);
  480. this._effect.setVector2("windDirection", this.windDirection);
  481. this._effect.setFloat("waveLength", this.waveLength);
  482. this._effect.setFloat("time", this._lastTime / 100000);
  483. this._effect.setFloat("windForce", this.windForce);
  484. this._effect.setFloat("waveHeight", this.waveHeight);
  485. this._effect.setFloat("bumpHeight", this.bumpHeight);
  486. this._effect.setColor4("waterColor", this.waterColor, 1.0);
  487. this._effect.setFloat("colorBlendFactor", this.colorBlendFactor);
  488. _super.prototype.bind.call(this, world, mesh);
  489. };
  490. WaterMaterial.prototype._createRenderTargets = function (scene, renderTargetSize) {
  491. var _this = this;
  492. // Render targets
  493. this._refractionRTT = new BABYLON.RenderTargetTexture(name + "_refraction", { width: renderTargetSize.x, height: renderTargetSize.y }, scene, false, true);
  494. this._reflectionRTT = new BABYLON.RenderTargetTexture(name + "_reflection", { width: renderTargetSize.x, height: renderTargetSize.y }, scene, false, true);
  495. scene.customRenderTargets.push(this._refractionRTT);
  496. scene.customRenderTargets.push(this._reflectionRTT);
  497. var isVisible;
  498. var clipPlane = null;
  499. var savedViewMatrix;
  500. var mirrorMatrix = BABYLON.Matrix.Zero();
  501. this._refractionRTT.onBeforeRender = function () {
  502. isVisible = _this._mesh.isVisible;
  503. _this._mesh.isVisible = false;
  504. // Clip plane
  505. clipPlane = scene.clipPlane;
  506. //scene.clipPlane = Plane.FromPositionAndNormal(new Vector3(0, this._mesh.position.y, 0), new Vector3(0, 1, 0));
  507. };
  508. this._refractionRTT.onAfterRender = function () {
  509. _this._mesh.isVisible = isVisible;
  510. // Clip plane
  511. scene.clipPlane = clipPlane;
  512. };
  513. this._reflectionRTT.onBeforeRender = function () {
  514. isVisible = _this._mesh.isVisible;
  515. _this._mesh.isVisible = false;
  516. // Clip plane
  517. clipPlane = scene.clipPlane;
  518. scene.clipPlane = BABYLON.Plane.FromPositionAndNormal(new BABYLON.Vector3(0, _this._mesh.position.y, 0), new BABYLON.Vector3(0, -1, 0));
  519. // Transform
  520. BABYLON.Matrix.ReflectionToRef(scene.clipPlane, mirrorMatrix);
  521. savedViewMatrix = scene.getViewMatrix();
  522. mirrorMatrix.multiplyToRef(savedViewMatrix, _this._reflectionTransform);
  523. scene.setTransformMatrix(_this._reflectionTransform, scene.getProjectionMatrix());
  524. scene.getEngine().cullBackFaces = false;
  525. scene._mirroredCameraPosition = BABYLON.Vector3.TransformCoordinates(scene.activeCamera.position, mirrorMatrix);
  526. };
  527. this._reflectionRTT.onAfterRender = function () {
  528. _this._mesh.isVisible = isVisible;
  529. // Clip plane
  530. scene.clipPlane = clipPlane;
  531. // Transform
  532. scene.setTransformMatrix(savedViewMatrix, scene.getProjectionMatrix());
  533. scene.getEngine().cullBackFaces = true;
  534. scene._mirroredCameraPosition = null;
  535. };
  536. };
  537. WaterMaterial.prototype.getAnimatables = function () {
  538. var results = [];
  539. if (this.bumpTexture && this.bumpTexture.animations && this.bumpTexture.animations.length > 0) {
  540. results.push(this.bumpTexture);
  541. }
  542. if (this._reflectionRTT && this._reflectionRTT.animations && this._reflectionRTT.animations.length > 0) {
  543. results.push(this._reflectionRTT);
  544. }
  545. if (this._refractionRTT && this._refractionRTT.animations && this._refractionRTT.animations.length > 0) {
  546. results.push(this._refractionRTT);
  547. }
  548. return results;
  549. };
  550. WaterMaterial.prototype.dispose = function (forceDisposeEffect) {
  551. if (this.bumpTexture) {
  552. this.bumpTexture.dispose();
  553. }
  554. if (this._reflectionRTT) {
  555. this._reflectionRTT.dispose();
  556. }
  557. if (this._refractionRTT) {
  558. this._refractionRTT.dispose();
  559. }
  560. _super.prototype.dispose.call(this, forceDisposeEffect);
  561. };
  562. WaterMaterial.prototype.clone = function (name) {
  563. var newMaterial = new WaterMaterial(name, this.getScene());
  564. // Base material
  565. this.copyTo(newMaterial);
  566. // water material
  567. if (this.bumpTexture && this.bumpTexture.clone) {
  568. newMaterial.bumpTexture = this.bumpTexture.clone();
  569. }
  570. newMaterial.diffuseColor = this.diffuseColor.clone();
  571. return newMaterial;
  572. };
  573. WaterMaterial.CreateDefaultMesh = function (name, scene) {
  574. var mesh = BABYLON.Mesh.CreateGround(name, 512, 512, 32, scene, false);
  575. return mesh;
  576. };
  577. return WaterMaterial;
  578. })(BABYLON.Material);
  579. BABYLON.WaterMaterial = WaterMaterial;
  580. })(BABYLON || (BABYLON = {}));
  581. BABYLON.Effect.ShadersStore['waterVertexShader'] = "precision highp float;\r\n\r\n// Attributes\r\nattribute vec3 position;\r\n#ifdef NORMAL\r\nattribute vec3 normal;\r\n#endif\r\n#ifdef UV1\r\nattribute vec2 uv;\r\n#endif\r\n#ifdef UV2\r\nattribute vec2 uv2;\r\n#endif\r\n#ifdef VERTEXCOLOR\r\nattribute vec4 color;\r\n#endif\r\n#ifdef BONES\r\nattribute vec4 matricesIndices;\r\nattribute vec4 matricesWeights;\r\n#endif\r\n\r\n// Uniforms\r\n\r\n#ifdef INSTANCES\r\nattribute vec4 world0;\r\nattribute vec4 world1;\r\nattribute vec4 world2;\r\nattribute vec4 world3;\r\n#else\r\nuniform mat4 world;\r\n#endif\r\n\r\nuniform mat4 view;\r\nuniform mat4 viewProjection;\r\n\r\n#ifdef BUMP\r\nvarying vec2 vNormalUV;\r\nuniform mat4 normalMatrix;\r\nuniform vec2 vNormalInfos;\r\n#endif\r\n\r\n#ifdef BONES\r\nuniform mat4 mBones[BonesPerMesh];\r\n#endif\r\n\r\n#ifdef POINTSIZE\r\nuniform float pointSize;\r\n#endif\r\n\r\n// Output\r\nvarying vec3 vPositionW;\r\n#ifdef NORMAL\r\nvarying vec3 vNormalW;\r\n#endif\r\n\r\n#ifdef VERTEXCOLOR\r\nvarying vec4 vColor;\r\n#endif\r\n\r\n#ifdef CLIPPLANE\r\nuniform vec4 vClipPlane;\r\nvarying float fClipDistance;\r\n#endif\r\n\r\n#ifdef FOG\r\nvarying float fFogDistance;\r\n#endif\r\n\r\n#ifdef SHADOWS\r\n#ifdef LIGHT0\r\nuniform mat4 lightMatrix0;\r\nvarying vec4 vPositionFromLight0;\r\n#endif\r\n#ifdef LIGHT1\r\nuniform mat4 lightMatrix1;\r\nvarying vec4 vPositionFromLight1;\r\n#endif\r\n#ifdef LIGHT2\r\nuniform mat4 lightMatrix2;\r\nvarying vec4 vPositionFromLight2;\r\n#endif\r\n#ifdef LIGHT3\r\nuniform mat4 lightMatrix3;\r\nvarying vec4 vPositionFromLight3;\r\n#endif\r\n#endif\r\n\r\n// Water uniforms\r\nuniform mat4 worldReflectionViewProjection;\r\nuniform vec2 windDirection;\r\nuniform float waveLength;\r\nuniform float time;\r\nuniform float windForce;\r\nuniform float bumpHeight;\r\nuniform float waveHeight;\r\n\r\n// Water varyings\r\nvarying vec3 vPosition;\r\nvarying vec3 vRefractionMapTexCoord;\r\nvarying vec3 vReflectionMapTexCoord;\r\nvarying float vWaveHeight;\r\n\r\nvoid main(void) {\r\n\tmat4 finalWorld;\r\n\r\n#ifdef INSTANCES\r\n\tfinalWorld = mat4(world0, world1, world2, world3);\r\n#else\r\n\tfinalWorld = world;\r\n#endif\r\n\r\n#ifdef BONES\r\n\tmat4 m0 = mBones[int(matricesIndices.x)] * matricesWeights.x;\r\n\tmat4 m1 = mBones[int(matricesIndices.y)] * matricesWeights.y;\r\n\tmat4 m2 = mBones[int(matricesIndices.z)] * matricesWeights.z;\r\n\r\n#ifdef BONES4\r\n\tmat4 m3 = mBones[int(matricesIndices.w)] * matricesWeights.w;\r\n\tfinalWorld = finalWorld * (m0 + m1 + m2 + m3);\r\n#else\r\n\tfinalWorld = finalWorld * (m0 + m1 + m2);\r\n#endif \r\n\r\n#endif\r\n\r\n\tvec4 worldPos = finalWorld * vec4(position, 1.0);\r\n\tvPositionW = vec3(worldPos);\r\n\r\n#ifdef NORMAL\r\n\tvNormalW = normalize(vec3(finalWorld * vec4(normal, 0.0)));\r\n#endif\r\n\r\n\t// Texture coordinates\r\n#ifndef UV1\r\n\tvec2 uv = vec2(0., 0.);\r\n#endif\r\n#ifndef UV2\r\n\tvec2 uv2 = vec2(0., 0.);\r\n#endif\r\n\r\n#ifdef BUMP\r\n\tif (vNormalInfos.x == 0.)\r\n\t{\r\n\t\tvNormalUV = vec2(normalMatrix * vec4((uv * 1.0) / waveLength + time * windForce * windDirection, 1.0, 0.0));\r\n\t}\r\n\telse\r\n\t{\r\n\t\tvNormalUV = vec2(normalMatrix * vec4((uv2 * 1.0) / waveLength + time * windForce * windDirection, 1.0, 0.0));\r\n\t}\r\n#endif\r\n\r\n\t// Clip plane\r\n#ifdef CLIPPLANE\r\n\tfClipDistance = dot(worldPos, vClipPlane);\r\n#endif\r\n\r\n\t// Fog\r\n#ifdef FOG\r\n\tfFogDistance = (view * worldPos).z;\r\n#endif\r\n\r\n\t// Shadows\r\n#ifdef SHADOWS\r\n#ifdef LIGHT0\r\n\tvPositionFromLight0 = lightMatrix0 * worldPos;\r\n#endif\r\n#ifdef LIGHT1\r\n\tvPositionFromLight1 = lightMatrix1 * worldPos;\r\n#endif\r\n#ifdef LIGHT2\r\n\tvPositionFromLight2 = lightMatrix2 * worldPos;\r\n#endif\r\n#ifdef LIGHT3\r\n\tvPositionFromLight3 = lightMatrix3 * worldPos;\r\n#endif\r\n#endif\r\n\r\n\t// Vertex color\r\n#ifdef VERTEXCOLOR\r\n\tvColor = color;\r\n#endif\r\n\r\n\t// Point size\r\n#ifdef POINTSIZE\r\n\tgl_PointSize = pointSize;\r\n#endif\r\n\r\n\tvec3 p = position;\r\n\tp.y += (sin(((p.x / 0.05) + time * 100.0)) * waveHeight * 5.0) + (cos(((p.z / 0.05) + time * 100.0)) * waveHeight * 5.0);\r\n\t\r\n\tgl_Position = viewProjection * finalWorld * vec4(p, 1.0);;\r\n\r\n\tworldPos = viewProjection * finalWorld * vec4(position, 1.0);\r\n\r\n\t// Water\r\n\tvWaveHeight = bumpHeight;\r\n\tvPosition = position;\r\n\t\r\n\tvRefractionMapTexCoord.x = 0.5 * (worldPos.w + worldPos.x);\r\n\tvRefractionMapTexCoord.y = 0.5 * (worldPos.w + worldPos.y);\r\n\tvRefractionMapTexCoord.z = worldPos.w;\r\n\t\r\n\tworldPos = worldReflectionViewProjection * vec4(position, 1.0);\r\n\tvReflectionMapTexCoord.x = 0.5 * (worldPos.w + worldPos.x);\r\n\tvReflectionMapTexCoord.y = 0.5 * (worldPos.w + worldPos.y);\r\n\tvReflectionMapTexCoord.z = worldPos.w;\r\n}\r\n";
  582. BABYLON.Effect.ShadersStore['waterPixelShader'] = "precision highp float;\r\n\r\n// Constants\r\nuniform vec3 vEyePosition;\r\nuniform vec4 vDiffuseColor;\r\n\r\n// Input\r\nvarying vec3 vPositionW;\r\n\r\n#ifdef NORMAL\r\nvarying vec3 vNormalW;\r\n#endif\r\n\r\n#ifdef VERTEXCOLOR\r\nvarying vec4 vColor;\r\n#endif\r\n\r\n// Lights\r\n#ifdef LIGHT0\r\nuniform vec4 vLightData0;\r\nuniform vec4 vLightDiffuse0;\r\n#ifdef SHADOW0\r\nvarying vec4 vPositionFromLight0;\r\nuniform sampler2D shadowSampler0;\r\nuniform vec3 shadowsInfo0;\r\n#endif\r\n#ifdef SPOTLIGHT0\r\nuniform vec4 vLightDirection0;\r\n#endif\r\n#ifdef HEMILIGHT0\r\nuniform vec3 vLightGround0;\r\n#endif\r\n#endif\r\n\r\n#ifdef LIGHT1\r\nuniform vec4 vLightData1;\r\nuniform vec4 vLightDiffuse1;\r\n#ifdef SHADOW1\r\nvarying vec4 vPositionFromLight1;\r\nuniform sampler2D shadowSampler1;\r\nuniform vec3 shadowsInfo1;\r\n#endif\r\n#ifdef SPOTLIGHT1\r\nuniform vec4 vLightDirection1;\r\n#endif\r\n#ifdef HEMILIGHT1\r\nuniform vec3 vLightGround1;\r\n#endif\r\n#endif\r\n\r\n#ifdef LIGHT2\r\nuniform vec4 vLightData2;\r\nuniform vec4 vLightDiffuse2;\r\n#ifdef SHADOW2\r\nvarying vec4 vPositionFromLight2;\r\nuniform sampler2D shadowSampler2;\r\nuniform vec3 shadowsInfo2;\r\n#endif\r\n#ifdef SPOTLIGHT2\r\nuniform vec4 vLightDirection2;\r\n#endif\r\n#ifdef HEMILIGHT2\r\nuniform vec3 vLightGround2;\r\n#endif\r\n#endif\r\n\r\n#ifdef LIGHT3\r\nuniform vec4 vLightData3;\r\nuniform vec4 vLightDiffuse3;\r\n#ifdef SHADOW3\r\nvarying vec4 vPositionFromLight3;\r\nuniform sampler2D shadowSampler3;\r\nuniform vec3 shadowsInfo3;\r\n#endif\r\n#ifdef SPOTLIGHT3\r\nuniform vec4 vLightDirection3;\r\n#endif\r\n#ifdef HEMILIGHT3\r\nuniform vec3 vLightGround3;\r\n#endif\r\n#endif\r\n\r\n// Samplers\r\n#ifdef BUMP\r\nvarying vec2 vNormalUV;\r\nuniform sampler2D normalSampler;\r\nuniform vec2 vNormalInfos;\r\n#endif\r\n\r\nuniform sampler2D refractionSampler;\r\nuniform sampler2D reflectionSampler;\r\n\r\n// Water uniforms\r\nconst float LOG2 = 1.442695;\r\n\r\nuniform vec3 cameraPosition;\r\n\r\nuniform vec4 waterColor;\r\nuniform float colorBlendFactor;\r\n\r\n// Water varyings\r\nvarying vec3 vRefractionMapTexCoord;\r\nvarying vec3 vReflectionMapTexCoord;\r\nvarying vec3 vPosition;\r\nvarying float vWaveHeight;\r\n\r\n// Shadows\r\n#ifdef SHADOWS\r\n\r\nfloat unpack(vec4 color)\r\n{\r\n\tconst vec4 bit_shift = vec4(1.0 / (255.0 * 255.0 * 255.0), 1.0 / (255.0 * 255.0), 1.0 / 255.0, 1.0);\r\n\treturn dot(color, bit_shift);\r\n}\r\n\r\nfloat unpackHalf(vec2 color)\r\n{\r\n\treturn color.x + (color.y / 255.0);\r\n}\r\n\r\nfloat computeShadow(vec4 vPositionFromLight, sampler2D shadowSampler, float darkness, float bias)\r\n{\r\n\tvec3 depth = vPositionFromLight.xyz / vPositionFromLight.w;\r\n\tdepth = 0.5 * depth + vec3(0.5);\r\n\tvec2 uv = depth.xy;\r\n\r\n\tif (uv.x < 0. || uv.x > 1.0 || uv.y < 0. || uv.y > 1.0)\r\n\t{\r\n\t\treturn 1.0;\r\n\t}\r\n\r\n\tfloat shadow = unpack(texture2D(shadowSampler, uv)) + bias;\r\n\r\n\tif (depth.z > shadow)\r\n\t{\r\n\t\treturn darkness;\r\n\t}\r\n\treturn 1.;\r\n}\r\n\r\nfloat computeShadowWithPCF(vec4 vPositionFromLight, sampler2D shadowSampler, float mapSize, float bias, float darkness)\r\n{\r\n\tvec3 depth = vPositionFromLight.xyz / vPositionFromLight.w;\r\n\tdepth = 0.5 * depth + vec3(0.5);\r\n\tvec2 uv = depth.xy;\r\n\r\n\tif (uv.x < 0. || uv.x > 1.0 || uv.y < 0. || uv.y > 1.0)\r\n\t{\r\n\t\treturn 1.0;\r\n\t}\r\n\r\n\tfloat visibility = 1.;\r\n\r\n\tvec2 poissonDisk[4];\r\n\tpoissonDisk[0] = vec2(-0.94201624, -0.39906216);\r\n\tpoissonDisk[1] = vec2(0.94558609, -0.76890725);\r\n\tpoissonDisk[2] = vec2(-0.094184101, -0.92938870);\r\n\tpoissonDisk[3] = vec2(0.34495938, 0.29387760);\r\n\r\n\t// Poisson Sampling\r\n\tfloat biasedDepth = depth.z - bias;\r\n\r\n\tif (unpack(texture2D(shadowSampler, uv + poissonDisk[0] / mapSize)) < biasedDepth) visibility -= 0.25;\r\n\tif (unpack(texture2D(shadowSampler, uv + poissonDisk[1] / mapSize)) < biasedDepth) visibility -= 0.25;\r\n\tif (unpack(texture2D(shadowSampler, uv + poissonDisk[2] / mapSize)) < biasedDepth) visibility -= 0.25;\r\n\tif (unpack(texture2D(shadowSampler, uv + poissonDisk[3] / mapSize)) < biasedDepth) visibility -= 0.25;\r\n\r\n\treturn min(1.0, visibility + darkness);\r\n}\r\n\r\n// Thanks to http://devmaster.net/\r\nfloat linstep(float low, float high, float v) {\r\n\treturn clamp((v - low) / (high - low), 0.0, 1.0);\r\n}\r\n\r\nfloat ChebychevInequality(vec2 moments, float compare, float bias)\r\n{\r\n\tfloat p = smoothstep(compare - bias, compare, moments.x);\r\n\tfloat variance = max(moments.y - moments.x * moments.x, 0.02);\r\n\tfloat d = compare - moments.x;\r\n\tfloat p_max = linstep(0.2, 1.0, variance / (variance + d * d));\r\n\r\n\treturn clamp(max(p, p_max), 0.0, 1.0);\r\n}\r\n\r\nfloat computeShadowWithVSM(vec4 vPositionFromLight, sampler2D shadowSampler, float bias, float darkness)\r\n{\r\n\tvec3 depth = vPositionFromLight.xyz / vPositionFromLight.w;\r\n\tdepth = 0.5 * depth + vec3(0.5);\r\n\tvec2 uv = depth.xy;\r\n\r\n\tif (uv.x < 0. || uv.x > 1.0 || uv.y < 0. || uv.y > 1.0 || depth.z >= 1.0)\r\n\t{\r\n\t\treturn 1.0;\r\n\t}\r\n\r\n\tvec4 texel = texture2D(shadowSampler, uv);\r\n\r\n\tvec2 moments = vec2(unpackHalf(texel.xy), unpackHalf(texel.zw));\r\n\treturn min(1.0, 1.0 - ChebychevInequality(moments, depth.z, bias) + darkness);\r\n}\r\n#endif\r\n\r\n#ifdef CLIPPLANE\r\nvarying float fClipDistance;\r\n#endif\r\n\r\n// Fog\r\n#ifdef FOG\r\n\r\n#define FOGMODE_NONE 0.\r\n#define FOGMODE_EXP 1.\r\n#define FOGMODE_EXP2 2.\r\n#define FOGMODE_LINEAR 3.\r\n#define E 2.71828\r\n\r\nuniform vec4 vFogInfos;\r\nuniform vec3 vFogColor;\r\nvarying float fFogDistance;\r\n\r\nfloat CalcFogFactor()\r\n{\r\n\tfloat fogCoeff = 1.0;\r\n\tfloat fogStart = vFogInfos.y;\r\n\tfloat fogEnd = vFogInfos.z;\r\n\tfloat fogDensity = vFogInfos.w;\r\n\r\n\tif (FOGMODE_LINEAR == vFogInfos.x)\r\n\t{\r\n\t\tfogCoeff = (fogEnd - fFogDistance) / (fogEnd - fogStart);\r\n\t}\r\n\telse if (FOGMODE_EXP == vFogInfos.x)\r\n\t{\r\n\t\tfogCoeff = 1.0 / pow(E, fFogDistance * fogDensity);\r\n\t}\r\n\telse if (FOGMODE_EXP2 == vFogInfos.x)\r\n\t{\r\n\t\tfogCoeff = 1.0 / pow(E, fFogDistance * fFogDistance * fogDensity * fogDensity);\r\n\t}\r\n\r\n\treturn clamp(fogCoeff, 0.0, 1.0);\r\n}\r\n#endif\r\n\r\n// Light Computing\r\nstruct lightingInfo\r\n{\r\n\tvec3 diffuse;\r\n};\r\n\r\nlightingInfo computeLighting(vec3 viewDirectionW, vec3 vNormal, vec4 lightData, vec3 diffuseColor, float range) {\r\n\tlightingInfo result;\r\n\r\n\tvec3 lightVectorW;\r\n\tfloat attenuation = 1.0;\r\n\tif (lightData.w == 0.)\r\n\t{\r\n\t\tvec3 direction = lightData.xyz - vPositionW;\r\n\r\n\t\tattenuation = max(0., 1.0 - length(direction) / range);\r\n\t\tlightVectorW = normalize(direction);\r\n\t}\r\n\telse\r\n\t{\r\n\t\tlightVectorW = normalize(-lightData.xyz);\r\n\t}\r\n\r\n\t// diffuse\r\n\tfloat ndl = max(0., dot(vNormal, lightVectorW));\r\n\tresult.diffuse = ndl * diffuseColor * attenuation;\r\n\r\n\treturn result;\r\n}\r\n\r\nlightingInfo computeSpotLighting(vec3 viewDirectionW, vec3 vNormal, vec4 lightData, vec4 lightDirection, vec3 diffuseColor, float range) {\r\n\tlightingInfo result;\r\n\r\n\tvec3 direction = lightData.xyz - vPositionW;\r\n\tvec3 lightVectorW = normalize(direction);\r\n\tfloat attenuation = max(0., 1.0 - length(direction) / range);\r\n\r\n\t// diffuse\r\n\tfloat cosAngle = max(0., dot(-lightDirection.xyz, lightVectorW));\r\n\tfloat spotAtten = 0.0;\r\n\r\n\tif (cosAngle >= lightDirection.w)\r\n\t{\r\n\t\tcosAngle = max(0., pow(cosAngle, lightData.w));\r\n\t\tspotAtten = clamp((cosAngle - lightDirection.w) / (1. - cosAngle), 0.0, 1.0);\r\n\r\n\t\t// Diffuse\r\n\t\tfloat ndl = max(0., dot(vNormal, -lightDirection.xyz));\r\n\t\tresult.diffuse = ndl * spotAtten * diffuseColor * attenuation;\r\n\r\n\t\treturn result;\r\n\t}\r\n\r\n\tresult.diffuse = vec3(0.);\r\n\r\n\treturn result;\r\n}\r\n\r\nlightingInfo computeHemisphericLighting(vec3 viewDirectionW, vec3 vNormal, vec4 lightData, vec3 diffuseColor, vec3 groundColor) {\r\n\tlightingInfo result;\r\n\r\n\t// Diffuse\r\n\tfloat ndl = dot(vNormal, lightData.xyz) * 0.5 + 0.5;\r\n\tresult.diffuse = mix(groundColor, diffuseColor, ndl);\r\n\r\n\treturn result;\r\n}\r\n\r\nvoid main(void) {\r\n\t// Clip plane\r\n#ifdef CLIPPLANE\r\n\tif (fClipDistance > 0.0)\r\n\t\tdiscard;\r\n#endif\r\n\r\n\tvec3 viewDirectionW = normalize(vEyePosition - vPositionW);\r\n\r\n\t// Base color\r\n\tvec4 baseColor = vec4(1., 1., 1., 1.);\r\n\tvec3 diffuseColor = vDiffuseColor.rgb;\r\n\r\n\t// Alpha\r\n\tfloat alpha = vDiffuseColor.a;\r\n\r\n#ifdef BUMP\r\n\tbaseColor = texture2D(normalSampler, vNormalUV);\r\n\r\n#ifdef ALPHATEST\r\n\tif (baseColor.a < 0.4)\r\n\t\tdiscard;\r\n#endif\r\n\r\n\tbaseColor.rgb *= vNormalInfos.y;\r\n#endif\r\n\r\n#ifdef VERTEXCOLOR\r\n\tbaseColor.rgb *= vColor.rgb;\r\n#endif\r\n\r\n#ifdef REFLECTION\r\n\t// Water\r\n\tvec2 perturbation = vWaveHeight * (baseColor.rg - 0.5);\r\n\t\r\n\tvec2 projectedRefractionTexCoords = clamp(vRefractionMapTexCoord.xy / vRefractionMapTexCoord.z + perturbation, 0.0, 1.0);\r\n\tvec4 refractiveColor = texture2D(refractionSampler, projectedRefractionTexCoords);\r\n\t\r\n\tvec2 projectedReflectionTexCoords = clamp(vReflectionMapTexCoord.xy / vReflectionMapTexCoord.z + perturbation, 0.0, 1.0);\r\n\tvec4 reflectiveColor = texture2D(reflectionSampler, projectedReflectionTexCoords);\r\n\t\r\n\tvec3 eyeVector = normalize(vEyePosition - vPosition);\r\n\tvec3 upVector = vec3(0.0, 1.0, 0.0);\r\n\t\r\n\tfloat fresnelTerm = max(dot(eyeVector, upVector), 0.0);\r\n\t\r\n\tvec4 combinedColor = refractiveColor * fresnelTerm + reflectiveColor * (1.0 - fresnelTerm);\r\n\t\r\n\tbaseColor = colorBlendFactor * waterColor + (1.0 - colorBlendFactor) * combinedColor;\r\n#endif\r\n\r\n\t// Bump\r\n#ifdef NORMAL\r\n\tvec3 normalW = normalize(vNormalW);\r\n#else\r\n\tvec3 normalW = vec3(1.0, 1.0, 1.0);\r\n#endif\r\n\r\n\t// Lighting\r\n\tvec3 diffuseBase = vec3(0., 0., 0.);\r\n\tfloat shadow = 1.;\r\n\r\n#ifdef LIGHT0\r\n#ifdef SPOTLIGHT0\r\n\tlightingInfo info = computeSpotLighting(viewDirectionW, normalW, vLightData0, vLightDirection0, vLightDiffuse0.rgb, vLightDiffuse0.a);\r\n#endif\r\n#ifdef HEMILIGHT0\r\n\tlightingInfo info = computeHemisphericLighting(viewDirectionW, normalW, vLightData0, vLightDiffuse0.rgb, vLightGround0);\r\n#endif\r\n#ifdef POINTDIRLIGHT0\r\n\tlightingInfo info = computeLighting(viewDirectionW, normalW, vLightData0, vLightDiffuse0.rgb, vLightDiffuse0.a);\r\n#endif\r\n#ifdef SHADOW0\r\n#ifdef SHADOWVSM0\r\n\tshadow = computeShadowWithVSM(vPositionFromLight0, shadowSampler0, shadowsInfo0.z, shadowsInfo0.x);\r\n#else\r\n#ifdef SHADOWPCF0\r\n\tshadow = computeShadowWithPCF(vPositionFromLight0, shadowSampler0, shadowsInfo0.y, shadowsInfo0.z, shadowsInfo0.x);\r\n#else\r\n\tshadow = computeShadow(vPositionFromLight0, shadowSampler0, shadowsInfo0.x, shadowsInfo0.z);\r\n#endif\r\n#endif\r\n#else\r\n\tshadow = 1.;\r\n#endif\r\n\tdiffuseBase += info.diffuse * shadow;\r\n#endif\r\n\r\n#ifdef LIGHT1\r\n\r\n#ifdef SPOTLIGHT1\r\n\tinfo = computeSpotLighting(viewDirectionW, normalW, vLightData1, vLightDirection1, vLightDiffuse1.rgb, vLightDiffuse1.a);\r\n#endif\r\n#ifdef HEMILIGHT1\r\n\tinfo = computeHemisphericLighting(viewDirectionW, normalW, vLightData1, vLightDiffuse1.rgb, vLightGround1);\r\n#endif\r\n#ifdef POINTDIRLIGHT1\r\n\tinfo = computeLighting(viewDirectionW, normalW, vLightData1, vLightDiffuse1.rgb, vLightDiffuse1.a);\r\n#endif\r\n#ifdef SHADOW1\r\n#ifdef SHADOWVSM1\r\n\tshadow = computeShadowWithVSM(vPositionFromLight1, shadowSampler1, shadowsInfo1.z, shadowsInfo1.x);\r\n#else\r\n#ifdef SHADOWPCF1\r\n\tshadow = computeShadowWithPCF(vPositionFromLight1, shadowSampler1, shadowsInfo1.y, shadowsInfo1.z, shadowsInfo1.x);\r\n#else\r\n\tshadow = computeShadow(vPositionFromLight1, shadowSampler1, shadowsInfo1.x, shadowsInfo1.z);\r\n#endif\r\n#endif\r\n#else\r\n\tshadow = 1.;\r\n#endif\r\n\tdiffuseBase += info.diffuse * shadow;\r\n\r\n#endif\r\n\r\n#ifdef LIGHT2\r\n#ifdef SPOTLIGHT2\r\n\tinfo = computeSpotLighting(viewDirectionW, normalW, vLightData2, vLightDirection2, vLightDiffuse2.rgb, vLightDiffuse2.a);\r\n#endif\r\n#ifdef HEMILIGHT2\r\n\tinfo = computeHemisphericLighting(viewDirectionW, normalW, vLightData2, vLightDiffuse2.rgb, vLightGround2);\r\n#endif\r\n#ifdef POINTDIRLIGHT2\r\n\tinfo = computeLighting(viewDirectionW, normalW, vLightData2, vLightDiffuse2.rgb, vLightDiffuse2.a);\r\n#endif\r\n#ifdef SHADOW2\r\n#ifdef SHADOWVSM2\r\n\tshadow = computeShadowWithVSM(vPositionFromLight2, shadowSampler2, shadowsInfo2.z, shadowsInfo2.x);\r\n#else\r\n#ifdef SHADOWPCF2\r\n\tshadow = computeShadowWithPCF(vPositionFromLight2, shadowSampler2, shadowsInfo2.y, shadowsInfo2.z, shadowsInfo2.x);\r\n#else\r\n\tshadow = computeShadow(vPositionFromLight2, shadowSampler2, shadowsInfo2.x, shadowsInfo2.z);\r\n#endif\t\r\n#endif\t\r\n#else\r\n\tshadow = 1.;\r\n#endif\r\n\tdiffuseBase += info.diffuse * shadow;\r\n\r\n#endif\r\n\r\n#ifdef LIGHT3\r\n\r\n#ifdef SPOTLIGHT3\r\n\tinfo = computeSpotLighting(viewDirectionW, normalW, vLightData3, vLightDirection3, vLightDiffuse3.rgb, vLightDiffuse3.a);\r\n#endif\r\n#ifdef HEMILIGHT3\r\n\tinfo = computeHemisphericLighting(viewDirectionW, normalW, vLightData3, vLightDiffuse3.rgb, vLightGround3);\r\n#endif\r\n#ifdef POINTDIRLIGHT3\r\n\tinfo = computeLighting(viewDirectionW, normalW, vLightData3, vLightDiffuse3.rgb, vLightDiffuse3.a);\r\n#endif\r\n#ifdef SHADOW3\r\n#ifdef SHADOWVSM3\r\n\tshadow = computeShadowWithVSM(vPositionFromLight3, shadowSampler3, shadowsInfo3.z, shadowsInfo3.x);\r\n#else\r\n#ifdef SHADOWPCF3\r\n\tshadow = computeShadowWithPCF(vPositionFromLight3, shadowSampler3, shadowsInfo3.y, shadowsInfo3.z, shadowsInfo3.x);\r\n#else\r\n\tshadow = computeShadow(vPositionFromLight3, shadowSampler3, shadowsInfo3.x, shadowsInfo3.z);\r\n#endif\t\r\n#endif\t\r\n#else\r\n\tshadow = 1.;\r\n#endif\r\n\tdiffuseBase += info.diffuse * shadow;\r\n#endif\r\n\r\n#ifdef VERTEXALPHA\r\n\talpha *= vColor.a;\r\n#endif\r\n\r\n\tvec3 finalDiffuse = clamp(diffuseBase * diffuseColor, 0.0, 1.0) * baseColor.rgb;\r\n\r\n\t// Composition\r\n\tvec4 color = vec4(finalDiffuse, alpha);\r\n\r\n#ifdef FOG\r\n\tfloat fog = CalcFogFactor();\r\n\tcolor.rgb = fog * color.rgb + (1.0 - fog) * vFogColor;\r\n#endif\r\n\t\r\n\tgl_FragColor = color;\r\n}";