/// var __extends = (this && this.__extends) || (function () { var extendStatics = Object.setPrototypeOf || ({ __proto__: [] } instanceof Array && function (d, b) { d.__proto__ = b; }) || function (d, b) { for (var p in b) if (b.hasOwnProperty(p)) d[p] = b[p]; }; return function (d, b) { extendStatics(d, b); function __() { this.constructor = d; } d.prototype = b === null ? Object.create(b) : (__.prototype = b.prototype, new __()); }; })(); var __decorate = (this && this.__decorate) || function (decorators, target, key, desc) { var c = arguments.length, r = c < 3 ? target : desc === null ? desc = Object.getOwnPropertyDescriptor(target, key) : desc, d; if (typeof Reflect === "object" && typeof Reflect.decorate === "function") r = Reflect.decorate(decorators, target, key, desc); else for (var i = decorators.length - 1; i >= 0; i--) if (d = decorators[i]) r = (c < 3 ? d(r) : c > 3 ? d(target, key, r) : d(target, key)) || r; return c > 3 && r && Object.defineProperty(target, key, r), r; }; var BABYLON; (function (BABYLON) { var LavaMaterialDefines = /** @class */ (function (_super) { __extends(LavaMaterialDefines, _super); function LavaMaterialDefines() { var _this = _super.call(this) || this; _this.DIFFUSE = false; _this.CLIPPLANE = false; _this.ALPHATEST = false; _this.DEPTHPREPASS = false; _this.POINTSIZE = false; _this.FOG = false; _this.LIGHT0 = false; _this.LIGHT1 = false; _this.LIGHT2 = false; _this.LIGHT3 = false; _this.SPOTLIGHT0 = false; _this.SPOTLIGHT1 = false; _this.SPOTLIGHT2 = false; _this.SPOTLIGHT3 = false; _this.HEMILIGHT0 = false; _this.HEMILIGHT1 = false; _this.HEMILIGHT2 = false; _this.HEMILIGHT3 = false; _this.DIRLIGHT0 = false; _this.DIRLIGHT1 = false; _this.DIRLIGHT2 = false; _this.DIRLIGHT3 = false; _this.POINTLIGHT0 = false; _this.POINTLIGHT1 = false; _this.POINTLIGHT2 = false; _this.POINTLIGHT3 = false; _this.SHADOW0 = false; _this.SHADOW1 = false; _this.SHADOW2 = false; _this.SHADOW3 = false; _this.SHADOWS = false; _this.SHADOWESM0 = false; _this.SHADOWESM1 = false; _this.SHADOWESM2 = false; _this.SHADOWESM3 = false; _this.SHADOWPOISSON0 = false; _this.SHADOWPOISSON1 = false; _this.SHADOWPOISSON2 = false; _this.SHADOWPOISSON3 = false; _this.SHADOWPCF0 = false; _this.SHADOWPCF1 = false; _this.SHADOWPCF2 = false; _this.SHADOWPCF3 = false; _this.SHADOWPCSS0 = false; _this.SHADOWPCSS1 = false; _this.SHADOWPCSS2 = false; _this.SHADOWPCSS3 = false; _this.NORMAL = false; _this.UV1 = false; _this.UV2 = false; _this.VERTEXCOLOR = false; _this.VERTEXALPHA = false; _this.NUM_BONE_INFLUENCERS = 0; _this.BonesPerMesh = 0; _this.INSTANCES = false; _this.rebuild(); return _this; } return LavaMaterialDefines; }(BABYLON.MaterialDefines)); var LavaMaterial = /** @class */ (function (_super) { __extends(LavaMaterial, _super); function LavaMaterial(name, scene) { var _this = _super.call(this, name, scene) || this; _this.speed = 1; _this.movingSpeed = 1; _this.lowFrequencySpeed = 1; _this.fogDensity = 0.15; _this._lastTime = 0; _this.diffuseColor = new BABYLON.Color3(1, 1, 1); _this._disableLighting = false; _this._maxSimultaneousLights = 4; _this._scaledDiffuse = new BABYLON.Color3(); return _this; } LavaMaterial.prototype.needAlphaBlending = function () { return (this.alpha < 1.0); }; LavaMaterial.prototype.needAlphaTesting = function () { return false; }; LavaMaterial.prototype.getAlphaTestTexture = function () { return null; }; // Methods LavaMaterial.prototype.isReadyForSubMesh = function (mesh, subMesh, useInstances) { if (this.isFrozen) { if (this._wasPreviouslyReady && subMesh.effect) { return true; } } if (!subMesh._materialDefines) { subMesh._materialDefines = new LavaMaterialDefines(); } var defines = subMesh._materialDefines; var scene = this.getScene(); if (!this.checkReadyOnEveryCall && subMesh.effect) { if (this._renderId === scene.getRenderId()) { return true; } } var engine = scene.getEngine(); // Textures if (defines._areTexturesDirty) { defines._needUVs = false; if (scene.texturesEnabled) { if (this._diffuseTexture && BABYLON.StandardMaterial.DiffuseTextureEnabled) { if (!this._diffuseTexture.isReady()) { return false; } else { defines._needUVs = true; defines.DIFFUSE = true; } } } } // Misc. BABYLON.MaterialHelper.PrepareDefinesForMisc(mesh, scene, false, this.pointsCloud, this.fogEnabled, this._shouldTurnAlphaTestOn(mesh), defines); // Lights defines._needNormals = BABYLON.MaterialHelper.PrepareDefinesForLights(scene, mesh, defines, false, this._maxSimultaneousLights, this._disableLighting); // Values that need to be evaluated on every frame BABYLON.MaterialHelper.PrepareDefinesForFrameBoundValues(scene, engine, defines, useInstances ? true : false); // Attribs BABYLON.MaterialHelper.PrepareDefinesForAttributes(mesh, defines, true, true); // Get correct effect if (defines.isDirty) { defines.markAsProcessed(); scene.resetCachedMaterial(); // Fallbacks var fallbacks = new BABYLON.EffectFallbacks(); if (defines.FOG) { fallbacks.addFallback(1, "FOG"); } BABYLON.MaterialHelper.HandleFallbacksForShadows(defines, fallbacks); if (defines.NUM_BONE_INFLUENCERS > 0) { fallbacks.addCPUSkinningFallback(0, mesh); } //Attributes var attribs = [BABYLON.VertexBuffer.PositionKind]; if (defines.NORMAL) { attribs.push(BABYLON.VertexBuffer.NormalKind); } if (defines.UV1) { attribs.push(BABYLON.VertexBuffer.UVKind); } if (defines.UV2) { attribs.push(BABYLON.VertexBuffer.UV2Kind); } if (defines.VERTEXCOLOR) { attribs.push(BABYLON.VertexBuffer.ColorKind); } BABYLON.MaterialHelper.PrepareAttributesForBones(attribs, mesh, defines, fallbacks); BABYLON.MaterialHelper.PrepareAttributesForInstances(attribs, defines); // Legacy browser patch var shaderName = "lava"; var join = defines.toString(); var uniforms = ["world", "view", "viewProjection", "vEyePosition", "vLightsType", "vDiffuseColor", "vFogInfos", "vFogColor", "pointSize", "vDiffuseInfos", "mBones", "vClipPlane", "diffuseMatrix", "time", "speed", "movingSpeed", "fogColor", "fogDensity", "lowFrequencySpeed" ]; var samplers = ["diffuseSampler", "noiseTexture" ]; var uniformBuffers = new Array(); BABYLON.MaterialHelper.PrepareUniformsAndSamplersList({ uniformsNames: uniforms, uniformBuffersNames: uniformBuffers, samplers: samplers, defines: defines, maxSimultaneousLights: this.maxSimultaneousLights }); subMesh.setEffect(scene.getEngine().createEffect(shaderName, { attributes: attribs, uniformsNames: uniforms, uniformBuffersNames: uniformBuffers, samplers: samplers, defines: join, fallbacks: fallbacks, onCompiled: this.onCompiled, onError: this.onError, indexParameters: { maxSimultaneousLights: this.maxSimultaneousLights } }, engine), defines); } if (!subMesh.effect || !subMesh.effect.isReady()) { return false; } this._renderId = scene.getRenderId(); this._wasPreviouslyReady = true; return true; }; LavaMaterial.prototype.bindForSubMesh = function (world, mesh, subMesh) { var scene = this.getScene(); var defines = subMesh._materialDefines; if (!defines) { return; } var effect = subMesh.effect; if (!effect) { return; } this._activeEffect = effect; // Matrices this.bindOnlyWorldMatrix(world); this._activeEffect.setMatrix("viewProjection", scene.getTransformMatrix()); // Bones BABYLON.MaterialHelper.BindBonesParameters(mesh, this._activeEffect); if (this._mustRebind(scene, effect)) { // Textures if (this.diffuseTexture && BABYLON.StandardMaterial.DiffuseTextureEnabled) { this._activeEffect.setTexture("diffuseSampler", this.diffuseTexture); this._activeEffect.setFloat2("vDiffuseInfos", this.diffuseTexture.coordinatesIndex, this.diffuseTexture.level); this._activeEffect.setMatrix("diffuseMatrix", this.diffuseTexture.getTextureMatrix()); } if (this.noiseTexture) { this._activeEffect.setTexture("noiseTexture", this.noiseTexture); } // Clip plane BABYLON.MaterialHelper.BindClipPlane(this._activeEffect, scene); // Point size if (this.pointsCloud) { this._activeEffect.setFloat("pointSize", this.pointSize); } BABYLON.MaterialHelper.BindEyePosition(effect, scene); } this._activeEffect.setColor4("vDiffuseColor", this._scaledDiffuse, this.alpha * mesh.visibility); if (scene.lightsEnabled && !this.disableLighting) { BABYLON.MaterialHelper.BindLights(scene, mesh, this._activeEffect, defines); } // View if (scene.fogEnabled && mesh.applyFog && scene.fogMode !== BABYLON.Scene.FOGMODE_NONE) { this._activeEffect.setMatrix("view", scene.getViewMatrix()); } // Fog BABYLON.MaterialHelper.BindFogParameters(scene, mesh, this._activeEffect); this._lastTime += scene.getEngine().getDeltaTime(); this._activeEffect.setFloat("time", this._lastTime * this.speed / 1000); if (!this.fogColor) { this.fogColor = BABYLON.Color3.Black(); } this._activeEffect.setColor3("fogColor", this.fogColor); this._activeEffect.setFloat("fogDensity", this.fogDensity); this._activeEffect.setFloat("lowFrequencySpeed", this.lowFrequencySpeed); this._activeEffect.setFloat("movingSpeed", this.movingSpeed); this._afterBind(mesh, this._activeEffect); }; LavaMaterial.prototype.getAnimatables = function () { var results = []; if (this.diffuseTexture && this.diffuseTexture.animations && this.diffuseTexture.animations.length > 0) { results.push(this.diffuseTexture); } if (this.noiseTexture && this.noiseTexture.animations && this.noiseTexture.animations.length > 0) { results.push(this.noiseTexture); } return results; }; LavaMaterial.prototype.getActiveTextures = function () { var activeTextures = _super.prototype.getActiveTextures.call(this); if (this._diffuseTexture) { activeTextures.push(this._diffuseTexture); } return activeTextures; }; LavaMaterial.prototype.hasTexture = function (texture) { if (_super.prototype.hasTexture.call(this, texture)) { return true; } if (this.diffuseTexture === texture) { return true; } return false; }; LavaMaterial.prototype.dispose = function (forceDisposeEffect) { if (this.diffuseTexture) { this.diffuseTexture.dispose(); } if (this.noiseTexture) { this.noiseTexture.dispose(); } _super.prototype.dispose.call(this, forceDisposeEffect); }; LavaMaterial.prototype.clone = function (name) { var _this = this; return BABYLON.SerializationHelper.Clone(function () { return new LavaMaterial(name, _this.getScene()); }, this); }; LavaMaterial.prototype.serialize = function () { var serializationObject = BABYLON.SerializationHelper.Serialize(this); serializationObject.customType = "BABYLON.LavaMaterial"; return serializationObject; }; LavaMaterial.prototype.getClassName = function () { return "LavaMaterial"; }; // Statics LavaMaterial.Parse = function (source, scene, rootUrl) { return BABYLON.SerializationHelper.Parse(function () { return new LavaMaterial(source.name, scene); }, source, scene, rootUrl); }; __decorate([ BABYLON.serializeAsTexture("diffuseTexture") ], LavaMaterial.prototype, "_diffuseTexture", void 0); __decorate([ BABYLON.expandToProperty("_markAllSubMeshesAsTexturesDirty") ], LavaMaterial.prototype, "diffuseTexture", void 0); __decorate([ BABYLON.serializeAsTexture() ], LavaMaterial.prototype, "noiseTexture", void 0); __decorate([ BABYLON.serializeAsColor3() ], LavaMaterial.prototype, "fogColor", void 0); __decorate([ BABYLON.serialize() ], LavaMaterial.prototype, "speed", void 0); __decorate([ BABYLON.serialize() ], LavaMaterial.prototype, "movingSpeed", void 0); __decorate([ BABYLON.serialize() ], LavaMaterial.prototype, "lowFrequencySpeed", void 0); __decorate([ BABYLON.serialize() ], LavaMaterial.prototype, "fogDensity", void 0); __decorate([ BABYLON.serializeAsColor3() ], LavaMaterial.prototype, "diffuseColor", void 0); __decorate([ BABYLON.serialize("disableLighting") ], LavaMaterial.prototype, "_disableLighting", void 0); __decorate([ BABYLON.expandToProperty("_markAllSubMeshesAsLightsDirty") ], LavaMaterial.prototype, "disableLighting", void 0); __decorate([ BABYLON.serialize("maxSimultaneousLights") ], LavaMaterial.prototype, "_maxSimultaneousLights", void 0); __decorate([ BABYLON.expandToProperty("_markAllSubMeshesAsLightsDirty") ], LavaMaterial.prototype, "maxSimultaneousLights", void 0); return LavaMaterial; }(BABYLON.PushMaterial)); BABYLON.LavaMaterial = LavaMaterial; })(BABYLON || (BABYLON = {})); //# sourceMappingURL=babylon.lavaMaterial.js.map BABYLON.Effect.ShadersStore['lavaVertexShader'] = "precision highp float;\n\nuniform float time;\nuniform float lowFrequencySpeed;\n\nvarying float noise;\n\nattribute vec3 position;\n#ifdef NORMAL\nattribute vec3 normal;\n#endif\n#ifdef UV1\nattribute vec2 uv;\n#endif\n#ifdef UV2\nattribute vec2 uv2;\n#endif\n#ifdef VERTEXCOLOR\nattribute vec4 color;\n#endif\n#include\n\n#include\nuniform mat4 view;\nuniform mat4 viewProjection;\n#ifdef DIFFUSE\nvarying vec2 vDiffuseUV;\nuniform mat4 diffuseMatrix;\nuniform vec2 vDiffuseInfos;\n#endif\n#ifdef POINTSIZE\nuniform float pointSize;\n#endif\n\nvarying vec3 vPositionW;\n#ifdef NORMAL\nvarying vec3 vNormalW;\n#endif\n#ifdef VERTEXCOLOR\nvarying vec4 vColor;\n#endif\n#include\n#include\n#include<__decl__lightFragment>[0..maxSimultaneousLights]\n\n\n\nvec3 mod289(vec3 x)\n{\nreturn x-floor(x*(1.0/289.0))*289.0;\n}\nvec4 mod289(vec4 x)\n{\nreturn x-floor(x*(1.0/289.0))*289.0;\n}\nvec4 permute(vec4 x)\n{\nreturn mod289(((x*34.0)+1.0)*x);\n}\nvec4 taylorInvSqrt(vec4 r)\n{\nreturn 1.79284291400159-0.85373472095314*r;\n}\nvec3 fade(vec3 t) {\nreturn t*t*t*(t*(t*6.0-15.0)+10.0);\n}\n\nfloat pnoise(vec3 P,vec3 rep)\n{\nvec3 Pi0=mod(floor(P),rep); \nvec3 Pi1=mod(Pi0+vec3(1.0),rep); \nPi0=mod289(Pi0);\nPi1=mod289(Pi1);\nvec3 Pf0=fract(P); \nvec3 Pf1=Pf0-vec3(1.0); \nvec4 ix=vec4(Pi0.x,Pi1.x,Pi0.x,Pi1.x);\nvec4 iy=vec4(Pi0.yy,Pi1.yy);\nvec4 iz0=Pi0.zzzz;\nvec4 iz1=Pi1.zzzz;\nvec4 ixy=permute(permute(ix)+iy);\nvec4 ixy0=permute(ixy+iz0);\nvec4 ixy1=permute(ixy+iz1);\nvec4 gx0=ixy0*(1.0/7.0);\nvec4 gy0=fract(floor(gx0)*(1.0/7.0))-0.5;\ngx0=fract(gx0);\nvec4 gz0=vec4(0.5)-abs(gx0)-abs(gy0);\nvec4 sz0=step(gz0,vec4(0.0));\ngx0-=sz0*(step(0.0,gx0)-0.5);\ngy0-=sz0*(step(0.0,gy0)-0.5);\nvec4 gx1=ixy1*(1.0/7.0);\nvec4 gy1=fract(floor(gx1)*(1.0/7.0))-0.5;\ngx1=fract(gx1);\nvec4 gz1=vec4(0.5)-abs(gx1)-abs(gy1);\nvec4 sz1=step(gz1,vec4(0.0));\ngx1-=sz1*(step(0.0,gx1)-0.5);\ngy1-=sz1*(step(0.0,gy1)-0.5);\nvec3 g000=vec3(gx0.x,gy0.x,gz0.x);\nvec3 g100=vec3(gx0.y,gy0.y,gz0.y);\nvec3 g010=vec3(gx0.z,gy0.z,gz0.z);\nvec3 g110=vec3(gx0.w,gy0.w,gz0.w);\nvec3 g001=vec3(gx1.x,gy1.x,gz1.x);\nvec3 g101=vec3(gx1.y,gy1.y,gz1.y);\nvec3 g011=vec3(gx1.z,gy1.z,gz1.z);\nvec3 g111=vec3(gx1.w,gy1.w,gz1.w);\nvec4 norm0=taylorInvSqrt(vec4(dot(g000,g000),dot(g010,g010),dot(g100,g100),dot(g110,g110)));\ng000*=norm0.x;\ng010*=norm0.y;\ng100*=norm0.z;\ng110*=norm0.w;\nvec4 norm1=taylorInvSqrt(vec4(dot(g001,g001),dot(g011,g011),dot(g101,g101),dot(g111,g111)));\ng001*=norm1.x;\ng011*=norm1.y;\ng101*=norm1.z;\ng111*=norm1.w;\nfloat n000=dot(g000,Pf0);\nfloat n100=dot(g100,vec3(Pf1.x,Pf0.yz));\nfloat n010=dot(g010,vec3(Pf0.x,Pf1.y,Pf0.z));\nfloat n110=dot(g110,vec3(Pf1.xy,Pf0.z));\nfloat n001=dot(g001,vec3(Pf0.xy,Pf1.z));\nfloat n101=dot(g101,vec3(Pf1.x,Pf0.y,Pf1.z));\nfloat n011=dot(g011,vec3(Pf0.x,Pf1.yz));\nfloat n111=dot(g111,Pf1);\nvec3 fade_xyz=fade(Pf0);\nvec4 n_z=mix(vec4(n000,n100,n010,n110),vec4(n001,n101,n011,n111),fade_xyz.z);\nvec2 n_yz=mix(n_z.xy,n_z.zw,fade_xyz.y);\nfloat n_xyz=mix(n_yz.x,n_yz.y,fade_xyz.x);\nreturn 2.2*n_xyz;\n}\n\nfloat turbulence( vec3 p ) {\nfloat w=100.0;\nfloat t=-.5;\nfor (float f=1.0 ; f<=10.0 ; f++ ){\nfloat power=pow( 2.0,f );\nt+=abs( pnoise( vec3( power*p ),vec3( 10.0,10.0,10.0 ) )/power );\n}\nreturn t;\n}\nvoid main(void) {\n#include\n#include\n#ifdef NORMAL\n\nnoise=10.0*-.10*turbulence( .5*normal+time*1.15 );\n\nfloat b=lowFrequencySpeed*5.0*pnoise( 0.05*position +vec3(time*1.025),vec3( 100.0 ) );\n\nfloat displacement =-1.5*noise+b;\n\nvec3 newPosition=position+normal*displacement;\ngl_Position=viewProjection*finalWorld*vec4( newPosition,1.0 );\nvec4 worldPos=finalWorld*vec4(newPosition,1.0);\nvPositionW=vec3(worldPos);\nvNormalW=normalize(vec3(finalWorld*vec4(normal,0.0)));\n#endif\n\n#ifndef UV1\nvec2 uv=vec2(0.,0.);\n#endif\n#ifndef UV2\nvec2 uv2=vec2(0.,0.);\n#endif\n#ifdef DIFFUSE\nif (vDiffuseInfos.x == 0.)\n{\nvDiffuseUV=vec2(diffuseMatrix*vec4(uv,1.0,0.0));\n}\nelse\n{\nvDiffuseUV=vec2(diffuseMatrix*vec4(uv2,1.0,0.0));\n}\n#endif\n\n#include\n\n#include\n#include[0..maxSimultaneousLights]\n\n#ifdef VERTEXCOLOR\nvColor=color;\n#endif\n\n#ifdef POINTSIZE\ngl_PointSize=pointSize;\n#endif\n}"; BABYLON.Effect.ShadersStore['lavaPixelShader'] = "precision highp float;\n\nuniform vec3 vEyePosition;\nuniform vec4 vDiffuseColor;\n\nvarying vec3 vPositionW;\n\nuniform float time;\nuniform float speed;\nuniform float movingSpeed;\nuniform vec3 fogColor;\nuniform sampler2D noiseTexture;\nuniform float fogDensity;\n\nvarying float noise;\n#ifdef NORMAL\nvarying vec3 vNormalW;\n#endif\n#ifdef VERTEXCOLOR\nvarying vec4 vColor;\n#endif\n\n#include\n\n#include<__decl__lightFragment>[0]\n#include<__decl__lightFragment>[1]\n#include<__decl__lightFragment>[2]\n#include<__decl__lightFragment>[3]\n#include\n#include\n\n#ifdef DIFFUSE\nvarying vec2 vDiffuseUV;\nuniform sampler2D diffuseSampler;\nuniform vec2 vDiffuseInfos;\n#endif\n#include\n\n#include\nfloat random( vec3 scale,float seed ){\nreturn fract( sin( dot( gl_FragCoord.xyz+seed,scale ) )*43758.5453+seed ) ;\n}\nvoid main(void) {\n#include\nvec3 viewDirectionW=normalize(vEyePosition-vPositionW);\n\nvec4 baseColor=vec4(1.,1.,1.,1.);\nvec3 diffuseColor=vDiffuseColor.rgb;\n\nfloat alpha=vDiffuseColor.a;\n#ifdef DIFFUSE\n\nvec4 noiseTex=texture2D( noiseTexture,vDiffuseUV );\nvec2 T1=vDiffuseUV+vec2( 1.5,-1.5 )*time*0.02;\nvec2 T2=vDiffuseUV+vec2( -0.5,2.0 )*time*0.01*speed;\nT1.x+=noiseTex.x*2.0;\nT1.y+=noiseTex.y*2.0;\nT2.x-=noiseTex.y*0.2+time*0.001*movingSpeed;\nT2.y+=noiseTex.z*0.2+time*0.002*movingSpeed;\nfloat p=texture2D( noiseTexture,T1*3.0 ).a;\nvec4 lavaColor=texture2D( diffuseSampler,T2*4.0);\nvec4 temp=lavaColor*( vec4( p,p,p,p )*2. )+( lavaColor*lavaColor-0.1 );\nbaseColor=temp;\nfloat depth=gl_FragCoord.z*4.0;\nconst float LOG2=1.442695;\nfloat fogFactor=exp2(-fogDensity*fogDensity*depth*depth*LOG2 );\nfogFactor=1.0-clamp( fogFactor,0.0,1.0 );\nbaseColor=mix( baseColor,vec4( fogColor,baseColor.w ),fogFactor );\ndiffuseColor=baseColor.rgb;\n\n\n#ifdef ALPHATEST\nif (baseColor.a<0.4)\ndiscard;\n#endif\n#include\nbaseColor.rgb*=vDiffuseInfos.y;\n#endif\n#ifdef VERTEXCOLOR\nbaseColor.rgb*=vColor.rgb;\n#endif\n\n#ifdef NORMAL\nvec3 normalW=normalize(vNormalW);\n#else\nvec3 normalW=vec3(1.0,1.0,1.0);\n#endif\n\nvec3 diffuseBase=vec3(0.,0.,0.);\nlightingInfo info;\nfloat shadow=1.;\nfloat glossiness=0.;\n#include[0]\n#include[1]\n#include[2]\n#include[3]\n#ifdef VERTEXALPHA\nalpha*=vColor.a;\n#endif\nvec3 finalDiffuse=clamp(diffuseBase*diffuseColor,0.0,1.0)*baseColor.rgb;\n\nvec4 color=vec4(finalDiffuse,alpha);\n#include\ngl_FragColor=color;\n}";