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Dashboard v2.1 "Nuclear" upgrade: - Dark glassmorphism UI system (4-tier glass utilities, ambient orbs, nav glow) - Graph3D decomposed from 806-line monolith into 10 focused modules - Custom GLSL shaders (nebula FBM background, chromatic aberration, film grain, vignette) - Enhanced dream mode with smooth 2s lerped transitions and aurora cycling - Cognitive pipeline visualizer (7-stage search cascade animation) - Temporal playback slider (scrub through memory evolution over time) - Bioluminescent color palette for node types and events Fix flaky CI test on macOS: - vector::tests::test_add_and_search used near-identical test vectors (additive phase shift) - Changed to multiplicative frequency so each seed produces a distinct vector Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
4113 lines
545 KiB
JavaScript
4113 lines
545 KiB
JavaScript
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* @license
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* SPDX-License-Identifier: MIT
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i={enabled:!0,workingColorSpace:Hi,spaces:{},convert:function(s,r,a){return this.enabled===!1||r===a||!r||!a||(this.spaces[r].transfer===se&&(s.r=An(s.r),s.g=An(s.g),s.b=An(s.b)),this.spaces[r].primaries!==this.spaces[a].primaries&&(s.applyMatrix3(this.spaces[r].toXYZ),s.applyMatrix3(this.spaces[a].fromXYZ)),this.spaces[a].transfer===se&&(s.r=Ii(s.r),s.g=Ii(s.g),s.b=Ii(s.b))),s},fromWorkingColorSpace:function(s,r){return this.convert(s,this.workingColorSpace,r)},toWorkingColorSpace:function(s,r){return this.convert(s,r,this.workingColorSpace)},getPrimaries:function(s){return this.spaces[s].primaries},getTransfer:function(s){return s===Fn?Ks:this.spaces[s].transfer},getLuminanceCoefficients:function(s,r=this.workingColorSpace){return s.fromArray(this.spaces[r].luminanceCoefficients)},define:function(s){Object.assign(this.spaces,s)},_getMatrix:function(s,r,a){return s.copy(this.spaces[r].toXYZ).multiply(this.spaces[a].fromXYZ)},_getDrawingBufferColorSpace:function(s){return this.spaces[s].outputColorSpaceConfig.drawingBufferColorSpace},_getUnpackColorSpace:function(s=this.workingColorSpace){return this.spaces[s].workingColorSpaceConfig.unpackColorSpace}},t=[.64,.33,.3,.6,.15,.06],e=[.2126,.7152,.0722],n=[.3127,.329];return i.define({[Hi]:{primaries:t,whitePoint:n,transfer:Ks,toXYZ:_o,fromXYZ:go,luminanceCoefficients:e,workingColorSpaceConfig:{unpackColorSpace:$e},outputColorSpaceConfig:{drawingBufferColorSpace:$e}},[$e]:{primaries:t,whitePoint:n,transfer:se,toXYZ:_o,fromXYZ:go,luminanceCoefficients:e,outputColorSpaceConfig:{drawingBufferColorSpace:$e}}}),i}const $t=Th();function An(i){return i<.04045?i*.0773993808:Math.pow(i*.9478672986+.0521327014,2.4)}function Ii(i){return i<.0031308?i*12.92:1.055*Math.pow(i,.41666)-.055}let li;class bh{static getDataURL(t){if(/^data:/i.test(t.src)||typeof HTMLCanvasElement>"u")return t.src;let e;if(t instanceof HTMLCanvasElement)e=t;else{li===void 0&&(li=Js("canvas")),li.width=t.width,li.height=t.height;const n=li.getContext("2d");t instanceof ImageData?n.putImageData(t,0,0):n.drawImage(t,0,0,t.width,t.height),e=li}return e.width>2048||e.height>2048?(console.warn("THREE.ImageUtils.getDataURL: Image converted to jpg for performance reasons",t),e.toDataURL("image/jpeg",.6)):e.toDataURL("image/png")}static sRGBToLinear(t){if(typeof HTMLImageElement<"u"&&t instanceof HTMLImageElement||typeof HTMLCanvasElement<"u"&&t instanceof HTMLCanvasElement||typeof ImageBitmap<"u"&&t instanceof ImageBitmap){const e=Js("canvas");e.width=t.width,e.height=t.height;const n=e.getContext("2d");n.drawImage(t,0,0,t.width,t.height);const s=n.getImageData(0,0,t.width,t.height),r=s.data;for(let a=0;a<r.length;a++)r[a]=An(r[a]/255)*255;return n.putImageData(s,0,0),e}else if(t.data){const e=t.data.slice(0);for(let n=0;n<e.length;n++)e instanceof Uint8Array||e instanceof Uint8ClampedArray?e[n]=Math.floor(An(e[n]/255)*255):e[n]=An(e[n]);return{data:e,width:t.width,height:t.height}}else return console.warn("THREE.ImageUtils.sRGBToLinear(): Unsupported image type. No color space conversion applied."),t}}let Ah=0;class Zl{constructor(t=null){this.isSource=!0,Object.defineProperty(this,"id",{value:Ah++}),this.uuid=Bn(),this.data=t,this.dataReady=!0,this.version=0}set needsUpdate(t){t===!0&&this.version++}toJSON(t){const e=t===void 0||typeof t=="string";if(!e&&t.images[this.uuid]!==void 0)return t.images[this.uuid];const n={uuid:this.uuid,url:""},s=this.data;if(s!==null){let r;if(Array.isArray(s)){r=[];for(let a=0,o=s.length;a<o;a++)s[a].isDataTexture?r.push(mr(s[a].image)):r.push(mr(s[a]))}else r=mr(s);n.url=r}return e||(t.images[this.uuid]=n),n}}function mr(i){return typeof HTMLImageElement<"u"&&i instanceof HTMLImageElement||typeof HTMLCanvasElement<"u"&&i instanceof HTMLCanvasElement||typeof ImageBitmap<"u"&&i instanceof ImageBitmap?bh.getDataURL(i):i.data?{data:Array.from(i.data),width:i.width,height:i.height,type:i.data.constructor.name}:(console.warn("THREE.Texture: Unable to serialize Texture."),{})}let wh=0;class Ce extends ii{constructor(t=Ce.DEFAULT_IMAGE,e=Ce.DEFAULT_MAPPING,n=Jn,s=Jn,r=un,a=Qn,o=rn,l=wn,c=Ce.DEFAULT_ANISOTROPY,h=Fn){super(),this.isTexture=!0,Object.defineProperty(this,"id",{value:wh++}),this.uuid=Bn(),this.name="",this.source=new Zl(t),this.mipmaps=[],this.mapping=e,this.channel=0,this.wrapS=n,this.wrapT=s,this.magFilter=r,this.minFilter=a,this.anisotropy=c,this.format=o,this.internalFormat=null,this.type=l,this.offset=new gt(0,0),this.repeat=new gt(1,1),this.center=new gt(0,0),this.rotation=0,this.matrixAutoUpdate=!0,this.matrix=new zt,this.generateMipmaps=!0,this.premultiplyAlpha=!1,this.flipY=!0,this.unpackAlignment=4,this.colorSpace=h,this.userData={},this.version=0,this.onUpdate=null,this.renderTarget=null,this.isRenderTargetTexture=!1,this.pmremVersion=0}get image(){return this.source.data}set image(t=null){this.source.data=t}updateMatrix(){this.matrix.setUvTransform(this.offset.x,this.offset.y,this.repeat.x,this.repeat.y,this.rotation,this.center.x,this.center.y)}clone(){return new this.constructor().copy(this)}copy(t){return this.name=t.name,this.source=t.source,this.mipmaps=t.mipmaps.slice(0),this.mapping=t.mapping,this.channel=t.channel,this.wrapS=t.wrapS,this.wrapT=t.wrapT,this.magFilter=t.magFilter,this.minFilter=t.minFilter,this.anisotropy=t.anisotropy,this.format=t.format,this.internalFormat=t.internalFormat,this.type=t.type,this.offset.copy(t.offset),this.repeat.copy(t.repeat),this.center.copy(t.center),this.rotation=t.rotation,this.matrixAutoUpdate=t.matrixAutoUpdate,this.matrix.copy(t.matrix),this.generateMipmaps=t.generateMipmaps,this.premultiplyAlpha=t.premultiplyAlpha,this.flipY=t.flipY,this.unpackAlignment=t.unpackAlignment,this.colorSpace=t.colorSpace,this.renderTarget=t.renderTarget,this.isRenderTargetTexture=t.isRenderTargetTexture,this.userData=JSON.parse(JSON.stringify(t.userData)),this.needsUpdate=!0,this}toJSON(t){const e=t===void 0||typeof t=="string";if(!e&&t.textures[this.uuid]!==void 0)return t.textures[this.uuid];const n={metadata:{version:4.6,type:"Texture",generator:"Texture.toJSON"},uuid:this.uuid,name:this.name,image:this.source.toJSON(t).uuid,mapping:this.mapping,channel:this.channel,repeat:[this.repeat.x,this.repeat.y],offset:[this.offset.x,this.offset.y],center:[this.center.x,this.center.y],rotation:this.rotation,wrap:[this.wrapS,this.wrapT],format:this.format,internalFormat:this.internalFormat,type:this.type,colorSpace:this.colorSpace,minFilter:this.minFilter,magFilter:this.magFilter,anisotropy:this.anisotropy,flipY:this.flipY,generateMipmaps:this.generateMipmaps,premultiplyAlpha:this.premultiplyAlpha,unpackAlignment:this.unpackAlignment};return Object.keys(this.userData).length>0&&(n.userData=this.userData),e||(t.textures[this.uuid]=n),n}dispose(){this.dispatchEvent({type:"dispose"})}transformUv(t){if(this.mapping!==Fl)return t;if(t.applyMatrix3(this.matrix),t.x<0||t.x>1)switch(this.wrapS){case aa:t.x=t.x-Math.floor(t.x);break;case Jn:t.x=t.x<0?0:1;break;case oa:Math.abs(Math.floor(t.x)%2)===1?t.x=Math.ceil(t.x)-t.x:t.x=t.x-Math.floor(t.x);break}if(t.y<0||t.y>1)switch(this.wrapT){case aa:t.y=t.y-Math.floor(t.y);break;case Jn:t.y=t.y<0?0:1;break;case oa:Math.abs(Math.floor(t.y)%2)===1?t.y=Math.ceil(t.y)-t.y:t.y=t.y-Math.floor(t.y);break}return this.flipY&&(t.y=1-t.y),t}set needsUpdate(t){t===!0&&(this.version++,this.source.needsUpdate=!0)}set needsPMREMUpdate(t){t===!0&&this.pmremVersion++}}Ce.DEFAULT_IMAGE=null;Ce.DEFAULT_MAPPING=Fl;Ce.DEFAULT_ANISOTROPY=1;class oe{constructor(t=0,e=0,n=0,s=1){oe.prototype.isVector4=!0,this.x=t,this.y=e,this.z=n,this.w=s}get width(){return this.z}set width(t){this.z=t}get height(){return this.w}set height(t){this.w=t}set(t,e,n,s){return this.x=t,this.y=e,this.z=n,this.w=s,this}setScalar(t){return this.x=t,this.y=t,this.z=t,this.w=t,this}setX(t){return this.x=t,this}setY(t){return this.y=t,this}setZ(t){return this.z=t,this}setW(t){return this.w=t,this}setComponent(t,e){switch(t){case 0:this.x=e;break;case 1:this.y=e;break;case 2:this.z=e;break;case 3:this.w=e;break;default:throw new Error("index is out of range: "+t)}return this}getComponent(t){switch(t){case 0:return this.x;case 1:return this.y;case 2:return this.z;case 3:return this.w;default:throw new Error("index is out of range: "+t)}}clone(){return new this.constructor(this.x,this.y,this.z,this.w)}copy(t){return this.x=t.x,this.y=t.y,this.z=t.z,this.w=t.w!==void 0?t.w:1,this}add(t){return this.x+=t.x,this.y+=t.y,this.z+=t.z,this.w+=t.w,this}addScalar(t){return this.x+=t,this.y+=t,this.z+=t,this.w+=t,this}addVectors(t,e){return this.x=t.x+e.x,this.y=t.y+e.y,this.z=t.z+e.z,this.w=t.w+e.w,this}addScaledVector(t,e){return this.x+=t.x*e,this.y+=t.y*e,this.z+=t.z*e,this.w+=t.w*e,this}sub(t){return this.x-=t.x,this.y-=t.y,this.z-=t.z,this.w-=t.w,this}subScalar(t){return this.x-=t,this.y-=t,this.z-=t,this.w-=t,this}subVectors(t,e){return this.x=t.x-e.x,this.y=t.y-e.y,this.z=t.z-e.z,this.w=t.w-e.w,this}multiply(t){return this.x*=t.x,this.y*=t.y,this.z*=t.z,this.w*=t.w,this}multiplyScalar(t){return this.x*=t,this.y*=t,this.z*=t,this.w*=t,this}applyMatrix4(t){const e=this.x,n=this.y,s=this.z,r=this.w,a=t.elements;return this.x=a[0]*e+a[4]*n+a[8]*s+a[12]*r,this.y=a[1]*e+a[5]*n+a[9]*s+a[13]*r,this.z=a[2]*e+a[6]*n+a[10]*s+a[14]*r,this.w=a[3]*e+a[7]*n+a[11]*s+a[15]*r,this}divide(t){return this.x/=t.x,this.y/=t.y,this.z/=t.z,this.w/=t.w,this}divideScalar(t){return this.multiplyScalar(1/t)}setAxisAngleFromQuaternion(t){this.w=2*Math.acos(t.w);const e=Math.sqrt(1-t.w*t.w);return e<1e-4?(this.x=1,this.y=0,this.z=0):(this.x=t.x/e,this.y=t.y/e,this.z=t.z/e),this}setAxisAngleFromRotationMatrix(t){let e,n,s,r;const l=t.elements,c=l[0],h=l[4],d=l[8],f=l[1],m=l[5],g=l[9],x=l[2],p=l[6],u=l[10];if(Math.abs(h-f)<.01&&Math.abs(d-x)<.01&&Math.abs(g-p)<.01){if(Math.abs(h+f)<.1&&Math.abs(d+x)<.1&&Math.abs(g+p)<.1&&Math.abs(c+m+u-3)<.1)return this.set(1,0,0,0),this;e=Math.PI;const E=(c+1)/2,S=(m+1)/2,D=(u+1)/2,A=(h+f)/4,w=(d+x)/4,N=(g+p)/4;return E>S&&E>D?E<.01?(n=0,s=.707106781,r=.707106781):(n=Math.sqrt(E),s=A/n,r=w/n):S>D?S<.01?(n=.707106781,s=0,r=.707106781):(s=Math.sqrt(S),n=A/s,r=N/s):D<.01?(n=.707106781,s=.707106781,r=0):(r=Math.sqrt(D),n=w/r,s=N/r),this.set(n,s,r,e),this}let b=Math.sqrt((p-g)*(p-g)+(d-x)*(d-x)+(f-h)*(f-h));return Math.abs(b)<.001&&(b=1),this.x=(p-g)/b,this.y=(d-x)/b,this.z=(f-h)/b,this.w=Math.acos((c+m+u-1)/2),this}setFromMatrixPosition(t){const e=t.elements;return this.x=e[12],this.y=e[13],this.z=e[14],this.w=e[15],this}min(t){return this.x=Math.min(this.x,t.x),this.y=Math.min(this.y,t.y),this.z=Math.min(this.z,t.z),this.w=Math.min(this.w,t.w),this}max(t){return this.x=Math.max(this.x,t.x),this.y=Math.max(this.y,t.y),this.z=Math.max(this.z,t.z),this.w=Math.max(this.w,t.w),this}clamp(t,e){return this.x=Gt(this.x,t.x,e.x),this.y=Gt(this.y,t.y,e.y),this.z=Gt(this.z,t.z,e.z),this.w=Gt(this.w,t.w,e.w),this}clampScalar(t,e){return this.x=Gt(this.x,t,e),this.y=Gt(this.y,t,e),this.z=Gt(this.z,t,e),this.w=Gt(this.w,t,e),this}clampLength(t,e){const n=this.length();return this.divideScalar(n||1).multiplyScalar(Gt(n,t,e))}floor(){return this.x=Math.floor(this.x),this.y=Math.floor(this.y),this.z=Math.floor(this.z),this.w=Math.floor(this.w),this}ceil(){return this.x=Math.ceil(this.x),this.y=Math.ceil(this.y),this.z=Math.ceil(this.z),this.w=Math.ceil(this.w),this}round(){return this.x=Math.round(this.x),this.y=Math.round(this.y),this.z=Math.round(this.z),this.w=Math.round(this.w),this}roundToZero(){return this.x=Math.trunc(this.x),this.y=Math.trunc(this.y),this.z=Math.trunc(this.z),this.w=Math.trunc(this.w),this}negate(){return this.x=-this.x,this.y=-this.y,this.z=-this.z,this.w=-this.w,this}dot(t){return this.x*t.x+this.y*t.y+this.z*t.z+this.w*t.w}lengthSq(){return this.x*this.x+this.y*this.y+this.z*this.z+this.w*this.w}length(){return Math.sqrt(this.x*this.x+this.y*this.y+this.z*this.z+this.w*this.w)}manhattanLength(){return Math.abs(this.x)+Math.abs(this.y)+Math.abs(this.z)+Math.abs(this.w)}normalize(){return this.divideScalar(this.length()||1)}setLength(t){return this.normalize().multiplyScalar(t)}lerp(t,e){return this.x+=(t.x-this.x)*e,this.y+=(t.y-this.y)*e,this.z+=(t.z-this.z)*e,this.w+=(t.w-this.w)*e,this}lerpVectors(t,e,n){return this.x=t.x+(e.x-t.x)*n,this.y=t.y+(e.y-t.y)*n,this.z=t.z+(e.z-t.z)*n,this.w=t.w+(e.w-t.w)*n,this}equals(t){return t.x===this.x&&t.y===this.y&&t.z===this.z&&t.w===this.w}fromArray(t,e=0){return this.x=t[e],this.y=t[e+1],this.z=t[e+2],this.w=t[e+3],this}toArray(t=[],e=0){return t[e]=this.x,t[e+1]=this.y,t[e+2]=this.z,t[e+3]=this.w,t}fromBufferAttribute(t,e){return this.x=t.getX(e),this.y=t.getY(e),this.z=t.getZ(e),this.w=t.getW(e),this}random(){return this.x=Math.random(),this.y=Math.random(),this.z=Math.random(),this.w=Math.random(),this}*[Symbol.iterator](){yield this.x,yield this.y,yield this.z,yield this.w}}class Rh extends ii{constructor(t=1,e=1,n={}){super(),this.isRenderTarget=!0,this.width=t,this.height=e,this.depth=1,this.scissor=new oe(0,0,t,e),this.scissorTest=!1,this.viewport=new oe(0,0,t,e);const s={width:t,height:e,depth:1};n=Object.assign({generateMipmaps:!1,internalFormat:null,minFilter:un,depthBuffer:!0,stencilBuffer:!1,resolveDepthBuffer:!0,resolveStencilBuffer:!0,depthTexture:null,samples:0,count:1},n);const r=new Ce(s,n.mapping,n.wrapS,n.wrapT,n.magFilter,n.minFilter,n.format,n.type,n.anisotropy,n.colorSpace);r.flipY=!1,r.generateMipmaps=n.generateMipmaps,r.internalFormat=n.internalFormat,this.textures=[];const a=n.count;for(let o=0;o<a;o++)this.textures[o]=r.clone(),this.textures[o].isRenderTargetTexture=!0,this.textures[o].renderTarget=this;this.depthBuffer=n.depthBuffer,this.stencilBuffer=n.stencilBuffer,this.resolveDepthBuffer=n.resolveDepthBuffer,this.resolveStencilBuffer=n.resolveStencilBuffer,this._depthTexture=null,this.depthTexture=n.depthTexture,this.samples=n.samples}get texture(){return this.textures[0]}set texture(t){this.textures[0]=t}set depthTexture(t){this._depthTexture!==null&&(this._depthTexture.renderTarget=null),t!==null&&(t.renderTarget=this),this._depthTexture=t}get depthTexture(){return this._depthTexture}setSize(t,e,n=1){if(this.width!==t||this.height!==e||this.depth!==n){this.width=t,this.height=e,this.depth=n;for(let s=0,r=this.textures.length;s<r;s++)this.textures[s].image.width=t,this.textures[s].image.height=e,this.textures[s].image.depth=n;this.dispose()}this.viewport.set(0,0,t,e),this.scissor.set(0,0,t,e)}clone(){return new this.constructor().copy(this)}copy(t){this.width=t.width,this.height=t.height,this.depth=t.depth,this.scissor.copy(t.scissor),this.scissorTest=t.scissorTest,this.viewport.copy(t.viewport),this.textures.length=0;for(let n=0,s=t.textures.length;n<s;n++)this.textures[n]=t.textures[n].clone(),this.textures[n].isRenderTargetTexture=!0,this.textures[n].renderTarget=this;const e=Object.assign({},t.texture.image);return this.texture.source=new Zl(e),this.depthBuffer=t.depthBuffer,this.stencilBuffer=t.stencilBuffer,this.resolveDepthBuffer=t.resolveDepthBuffer,this.resolveStencilBuffer=t.resolveStencilBuffer,t.depthTexture!==null&&(this.depthTexture=t.depthTexture.clone()),this.samples=t.samples,this}dispose(){this.dispatchEvent({type:"dispose"})}}class an extends Rh{constructor(t=1,e=1,n={}){super(t,e,n),this.isWebGLRenderTarget=!0}}class Kl extends Ce{constructor(t=null,e=1,n=1,s=1){super(null),this.isDataArrayTexture=!0,this.image={data:t,width:e,height:n,depth:s},this.magFilter=Xe,this.minFilter=Xe,this.wrapR=Jn,this.generateMipmaps=!1,this.flipY=!1,this.unpackAlignment=1,this.layerUpdates=new Set}addLayerUpdate(t){this.layerUpdates.add(t)}clearLayerUpdates(){this.layerUpdates.clear()}}class Ch extends Ce{constructor(t=null,e=1,n=1,s=1){super(null),this.isData3DTexture=!0,this.image={data:t,width:e,height:n,depth:s},this.magFilter=Xe,this.minFilter=Xe,this.wrapR=Jn,this.generateMipmaps=!1,this.flipY=!1,this.unpackAlignment=1}}class ni{constructor(t=0,e=0,n=0,s=1){this.isQuaternion=!0,this._x=t,this._y=e,this._z=n,this._w=s}static slerpFlat(t,e,n,s,r,a,o){let l=n[s+0],c=n[s+1],h=n[s+2],d=n[s+3];const f=r[a+0],m=r[a+1],g=r[a+2],x=r[a+3];if(o===0){t[e+0]=l,t[e+1]=c,t[e+2]=h,t[e+3]=d;return}if(o===1){t[e+0]=f,t[e+1]=m,t[e+2]=g,t[e+3]=x;return}if(d!==x||l!==f||c!==m||h!==g){let p=1-o;const u=l*f+c*m+h*g+d*x,b=u>=0?1:-1,E=1-u*u;if(E>Number.EPSILON){const D=Math.sqrt(E),A=Math.atan2(D,u*b);p=Math.sin(p*A)/D,o=Math.sin(o*A)/D}const S=o*b;if(l=l*p+f*S,c=c*p+m*S,h=h*p+g*S,d=d*p+x*S,p===1-o){const D=1/Math.sqrt(l*l+c*c+h*h+d*d);l*=D,c*=D,h*=D,d*=D}}t[e]=l,t[e+1]=c,t[e+2]=h,t[e+3]=d}static multiplyQuaternionsFlat(t,e,n,s,r,a){const o=n[s],l=n[s+1],c=n[s+2],h=n[s+3],d=r[a],f=r[a+1],m=r[a+2],g=r[a+3];return t[e]=o*g+h*d+l*m-c*f,t[e+1]=l*g+h*f+c*d-o*m,t[e+2]=c*g+h*m+o*f-l*d,t[e+3]=h*g-o*d-l*f-c*m,t}get x(){return this._x}set x(t){this._x=t,this._onChangeCallback()}get y(){return this._y}set y(t){this._y=t,this._onChangeCallback()}get z(){return this._z}set z(t){this._z=t,this._onChangeCallback()}get w(){return this._w}set w(t){this._w=t,this._onChangeCallback()}set(t,e,n,s){return this._x=t,this._y=e,this._z=n,this._w=s,this._onChangeCallback(),this}clone(){return new this.constructor(this._x,this._y,this._z,this._w)}copy(t){return this._x=t.x,this._y=t.y,this._z=t.z,this._w=t.w,this._onChangeCallback(),this}setFromEuler(t,e=!0){const n=t._x,s=t._y,r=t._z,a=t._order,o=Math.cos,l=Math.sin,c=o(n/2),h=o(s/2),d=o(r/2),f=l(n/2),m=l(s/2),g=l(r/2);switch(a){case"XYZ":this._x=f*h*d+c*m*g,this._y=c*m*d-f*h*g,this._z=c*h*g+f*m*d,this._w=c*h*d-f*m*g;break;case"YXZ":this._x=f*h*d+c*m*g,this._y=c*m*d-f*h*g,this._z=c*h*g-f*m*d,this._w=c*h*d+f*m*g;break;case"ZXY":this._x=f*h*d-c*m*g,this._y=c*m*d+f*h*g,this._z=c*h*g+f*m*d,this._w=c*h*d-f*m*g;break;case"ZYX":this._x=f*h*d-c*m*g,this._y=c*m*d+f*h*g,this._z=c*h*g-f*m*d,this._w=c*h*d+f*m*g;break;case"YZX":this._x=f*h*d+c*m*g,this._y=c*m*d+f*h*g,this._z=c*h*g-f*m*d,this._w=c*h*d-f*m*g;break;case"XZY":this._x=f*h*d-c*m*g,this._y=c*m*d-f*h*g,this._z=c*h*g+f*m*d,this._w=c*h*d+f*m*g;break;default:console.warn("THREE.Quaternion: .setFromEuler() encountered an unknown order: "+a)}return e===!0&&this._onChangeCallback(),this}setFromAxisAngle(t,e){const n=e/2,s=Math.sin(n);return this._x=t.x*s,this._y=t.y*s,this._z=t.z*s,this._w=Math.cos(n),this._onChangeCallback(),this}setFromRotationMatrix(t){const e=t.elements,n=e[0],s=e[4],r=e[8],a=e[1],o=e[5],l=e[9],c=e[2],h=e[6],d=e[10],f=n+o+d;if(f>0){const m=.5/Math.sqrt(f+1);this._w=.25/m,this._x=(h-l)*m,this._y=(r-c)*m,this._z=(a-s)*m}else if(n>o&&n>d){const m=2*Math.sqrt(1+n-o-d);this._w=(h-l)/m,this._x=.25*m,this._y=(s+a)/m,this._z=(r+c)/m}else if(o>d){const m=2*Math.sqrt(1+o-n-d);this._w=(r-c)/m,this._x=(s+a)/m,this._y=.25*m,this._z=(l+h)/m}else{const m=2*Math.sqrt(1+d-n-o);this._w=(a-s)/m,this._x=(r+c)/m,this._y=(l+h)/m,this._z=.25*m}return this._onChangeCallback(),this}setFromUnitVectors(t,e){let n=t.dot(e)+1;return n<Number.EPSILON?(n=0,Math.abs(t.x)>Math.abs(t.z)?(this._x=-t.y,this._y=t.x,this._z=0,this._w=n):(this._x=0,this._y=-t.z,this._z=t.y,this._w=n)):(this._x=t.y*e.z-t.z*e.y,this._y=t.z*e.x-t.x*e.z,this._z=t.x*e.y-t.y*e.x,this._w=n),this.normalize()}angleTo(t){return 2*Math.acos(Math.abs(Gt(this.dot(t),-1,1)))}rotateTowards(t,e){const n=this.angleTo(t);if(n===0)return this;const s=Math.min(1,e/n);return this.slerp(t,s),this}identity(){return this.set(0,0,0,1)}invert(){return this.conjugate()}conjugate(){return this._x*=-1,this._y*=-1,this._z*=-1,this._onChangeCallback(),this}dot(t){return this._x*t._x+this._y*t._y+this._z*t._z+this._w*t._w}lengthSq(){return this._x*this._x+this._y*this._y+this._z*this._z+this._w*this._w}length(){return Math.sqrt(this._x*this._x+this._y*this._y+this._z*this._z+this._w*this._w)}normalize(){let t=this.length();return t===0?(this._x=0,this._y=0,this._z=0,this._w=1):(t=1/t,this._x=this._x*t,this._y=this._y*t,this._z=this._z*t,this._w=this._w*t),this._onChangeCallback(),this}multiply(t){return this.multiplyQuaternions(this,t)}premultiply(t){return this.multiplyQuaternions(t,this)}multiplyQuaternions(t,e){const n=t._x,s=t._y,r=t._z,a=t._w,o=e._x,l=e._y,c=e._z,h=e._w;return this._x=n*h+a*o+s*c-r*l,this._y=s*h+a*l+r*o-n*c,this._z=r*h+a*c+n*l-s*o,this._w=a*h-n*o-s*l-r*c,this._onChangeCallback(),this}slerp(t,e){if(e===0)return this;if(e===1)return this.copy(t);const n=this._x,s=this._y,r=this._z,a=this._w;let o=a*t._w+n*t._x+s*t._y+r*t._z;if(o<0?(this._w=-t._w,this._x=-t._x,this._y=-t._y,this._z=-t._z,o=-o):this.copy(t),o>=1)return this._w=a,this._x=n,this._y=s,this._z=r,this;const l=1-o*o;if(l<=Number.EPSILON){const m=1-e;return this._w=m*a+e*this._w,this._x=m*n+e*this._x,this._y=m*s+e*this._y,this._z=m*r+e*this._z,this.normalize(),this}const c=Math.sqrt(l),h=Math.atan2(c,o),d=Math.sin((1-e)*h)/c,f=Math.sin(e*h)/c;return this._w=a*d+this._w*f,this._x=n*d+this._x*f,this._y=s*d+this._y*f,this._z=r*d+this._z*f,this._onChangeCallback(),this}slerpQuaternions(t,e,n){return this.copy(t).slerp(e,n)}random(){const t=2*Math.PI*Math.random(),e=2*Math.PI*Math.random(),n=Math.random(),s=Math.sqrt(1-n),r=Math.sqrt(n);return this.set(s*Math.sin(t),s*Math.cos(t),r*Math.sin(e),r*Math.cos(e))}equals(t){return t._x===this._x&&t._y===this._y&&t._z===this._z&&t._w===this._w}fromArray(t,e=0){return this._x=t[e],this._y=t[e+1],this._z=t[e+2],this._w=t[e+3],this._onChangeCallback(),this}toArray(t=[],e=0){return t[e]=this._x,t[e+1]=this._y,t[e+2]=this._z,t[e+3]=this._w,t}fromBufferAttribute(t,e){return this._x=t.getX(e),this._y=t.getY(e),this._z=t.getZ(e),this._w=t.getW(e),this._onChangeCallback(),this}toJSON(){return this.toArray()}_onChange(t){return this._onChangeCallback=t,this}_onChangeCallback(){}*[Symbol.iterator](){yield this._x,yield this._y,yield this._z,yield this._w}}class P{constructor(t=0,e=0,n=0){P.prototype.isVector3=!0,this.x=t,this.y=e,this.z=n}set(t,e,n){return n===void 0&&(n=this.z),this.x=t,this.y=e,this.z=n,this}setScalar(t){return this.x=t,this.y=t,this.z=t,this}setX(t){return this.x=t,this}setY(t){return this.y=t,this}setZ(t){return this.z=t,this}setComponent(t,e){switch(t){case 0:this.x=e;break;case 1:this.y=e;break;case 2:this.z=e;break;default:throw new Error("index is out of range: "+t)}return this}getComponent(t){switch(t){case 0:return this.x;case 1:return this.y;case 2:return this.z;default:throw new Error("index is out of range: "+t)}}clone(){return new this.constructor(this.x,this.y,this.z)}copy(t){return this.x=t.x,this.y=t.y,this.z=t.z,this}add(t){return this.x+=t.x,this.y+=t.y,this.z+=t.z,this}addScalar(t){return this.x+=t,this.y+=t,this.z+=t,this}addVectors(t,e){return this.x=t.x+e.x,this.y=t.y+e.y,this.z=t.z+e.z,this}addScaledVector(t,e){return this.x+=t.x*e,this.y+=t.y*e,this.z+=t.z*e,this}sub(t){return this.x-=t.x,this.y-=t.y,this.z-=t.z,this}subScalar(t){return this.x-=t,this.y-=t,this.z-=t,this}subVectors(t,e){return this.x=t.x-e.x,this.y=t.y-e.y,this.z=t.z-e.z,this}multiply(t){return this.x*=t.x,this.y*=t.y,this.z*=t.z,this}multiplyScalar(t){return this.x*=t,this.y*=t,this.z*=t,this}multiplyVectors(t,e){return this.x=t.x*e.x,this.y=t.y*e.y,this.z=t.z*e.z,this}applyEuler(t){return this.applyQuaternion(vo.setFromEuler(t))}applyAxisAngle(t,e){return this.applyQuaternion(vo.setFromAxisAngle(t,e))}applyMatrix3(t){const e=this.x,n=this.y,s=this.z,r=t.elements;return this.x=r[0]*e+r[3]*n+r[6]*s,this.y=r[1]*e+r[4]*n+r[7]*s,this.z=r[2]*e+r[5]*n+r[8]*s,this}applyNormalMatrix(t){return this.applyMatrix3(t).normalize()}applyMatrix4(t){const e=this.x,n=this.y,s=this.z,r=t.elements,a=1/(r[3]*e+r[7]*n+r[11]*s+r[15]);return this.x=(r[0]*e+r[4]*n+r[8]*s+r[12])*a,this.y=(r[1]*e+r[5]*n+r[9]*s+r[13])*a,this.z=(r[2]*e+r[6]*n+r[10]*s+r[14])*a,this}applyQuaternion(t){const e=this.x,n=this.y,s=this.z,r=t.x,a=t.y,o=t.z,l=t.w,c=2*(a*s-o*n),h=2*(o*e-r*s),d=2*(r*n-a*e);return this.x=e+l*c+a*d-o*h,this.y=n+l*h+o*c-r*d,this.z=s+l*d+r*h-a*c,this}project(t){return this.applyMatrix4(t.matrixWorldInverse).applyMatrix4(t.projectionMatrix)}unproject(t){return this.applyMatrix4(t.projectionMatrixInverse).applyMatrix4(t.matrixWorld)}transformDirection(t){const e=this.x,n=this.y,s=this.z,r=t.elements;return this.x=r[0]*e+r[4]*n+r[8]*s,this.y=r[1]*e+r[5]*n+r[9]*s,this.z=r[2]*e+r[6]*n+r[10]*s,this.normalize()}divide(t){return this.x/=t.x,this.y/=t.y,this.z/=t.z,this}divideScalar(t){return this.multiplyScalar(1/t)}min(t){return this.x=Math.min(this.x,t.x),this.y=Math.min(this.y,t.y),this.z=Math.min(this.z,t.z),this}max(t){return this.x=Math.max(this.x,t.x),this.y=Math.max(this.y,t.y),this.z=Math.max(this.z,t.z),this}clamp(t,e){return this.x=Gt(this.x,t.x,e.x),this.y=Gt(this.y,t.y,e.y),this.z=Gt(this.z,t.z,e.z),this}clampScalar(t,e){return this.x=Gt(this.x,t,e),this.y=Gt(this.y,t,e),this.z=Gt(this.z,t,e),this}clampLength(t,e){const n=this.length();return this.divideScalar(n||1).multiplyScalar(Gt(n,t,e))}floor(){return this.x=Math.floor(this.x),this.y=Math.floor(this.y),this.z=Math.floor(this.z),this}ceil(){return this.x=Math.ceil(this.x),this.y=Math.ceil(this.y),this.z=Math.ceil(this.z),this}round(){return this.x=Math.round(this.x),this.y=Math.round(this.y),this.z=Math.round(this.z),this}roundToZero(){return this.x=Math.trunc(this.x),this.y=Math.trunc(this.y),this.z=Math.trunc(this.z),this}negate(){return this.x=-this.x,this.y=-this.y,this.z=-this.z,this}dot(t){return this.x*t.x+this.y*t.y+this.z*t.z}lengthSq(){return this.x*this.x+this.y*this.y+this.z*this.z}length(){return Math.sqrt(this.x*this.x+this.y*this.y+this.z*this.z)}manhattanLength(){return Math.abs(this.x)+Math.abs(this.y)+Math.abs(this.z)}normalize(){return this.divideScalar(this.length()||1)}setLength(t){return this.normalize().multiplyScalar(t)}lerp(t,e){return this.x+=(t.x-this.x)*e,this.y+=(t.y-this.y)*e,this.z+=(t.z-this.z)*e,this}lerpVectors(t,e,n){return this.x=t.x+(e.x-t.x)*n,this.y=t.y+(e.y-t.y)*n,this.z=t.z+(e.z-t.z)*n,this}cross(t){return this.crossVectors(this,t)}crossVectors(t,e){const n=t.x,s=t.y,r=t.z,a=e.x,o=e.y,l=e.z;return this.x=s*l-r*o,this.y=r*a-n*l,this.z=n*o-s*a,this}projectOnVector(t){const e=t.lengthSq();if(e===0)return this.set(0,0,0);const n=t.dot(this)/e;return this.copy(t).multiplyScalar(n)}projectOnPlane(t){return _r.copy(this).projectOnVector(t),this.sub(_r)}reflect(t){return this.sub(_r.copy(t).multiplyScalar(2*this.dot(t)))}angleTo(t){const e=Math.sqrt(this.lengthSq()*t.lengthSq());if(e===0)return Math.PI/2;const n=this.dot(t)/e;return Math.acos(Gt(n,-1,1))}distanceTo(t){return Math.sqrt(this.distanceToSquared(t))}distanceToSquared(t){const e=this.x-t.x,n=this.y-t.y,s=this.z-t.z;return e*e+n*n+s*s}manhattanDistanceTo(t){return Math.abs(this.x-t.x)+Math.abs(this.y-t.y)+Math.abs(this.z-t.z)}setFromSpherical(t){return this.setFromSphericalCoords(t.radius,t.phi,t.theta)}setFromSphericalCoords(t,e,n){const s=Math.sin(e)*t;return this.x=s*Math.sin(n),this.y=Math.cos(e)*t,this.z=s*Math.cos(n),this}setFromCylindrical(t){return this.setFromCylindricalCoords(t.radius,t.theta,t.y)}setFromCylindricalCoords(t,e,n){return this.x=t*Math.sin(e),this.y=n,this.z=t*Math.cos(e),this}setFromMatrixPosition(t){const e=t.elements;return this.x=e[12],this.y=e[13],this.z=e[14],this}setFromMatrixScale(t){const e=this.setFromMatrixColumn(t,0).length(),n=this.setFromMatrixColumn(t,1).length(),s=this.setFromMatrixColumn(t,2).length();return this.x=e,this.y=n,this.z=s,this}setFromMatrixColumn(t,e){return this.fromArray(t.elements,e*4)}setFromMatrix3Column(t,e){return this.fromArray(t.elements,e*3)}setFromEuler(t){return this.x=t._x,this.y=t._y,this.z=t._z,this}setFromColor(t){return this.x=t.r,this.y=t.g,this.z=t.b,this}equals(t){return t.x===this.x&&t.y===this.y&&t.z===this.z}fromArray(t,e=0){return this.x=t[e],this.y=t[e+1],this.z=t[e+2],this}toArray(t=[],e=0){return t[e]=this.x,t[e+1]=this.y,t[e+2]=this.z,t}fromBufferAttribute(t,e){return this.x=t.getX(e),this.y=t.getY(e),this.z=t.getZ(e),this}random(){return this.x=Math.random(),this.y=Math.random(),this.z=Math.random(),this}randomDirection(){const t=Math.random()*Math.PI*2,e=Math.random()*2-1,n=Math.sqrt(1-e*e);return this.x=n*Math.cos(t),this.y=e,this.z=n*Math.sin(t),this}*[Symbol.iterator](){yield this.x,yield this.y,yield this.z}}const _r=new P,vo=new ni;class si{constructor(t=new P(1/0,1/0,1/0),e=new P(-1/0,-1/0,-1/0)){this.isBox3=!0,this.min=t,this.max=e}set(t,e){return this.min.copy(t),this.max.copy(e),this}setFromArray(t){this.makeEmpty();for(let e=0,n=t.length;e<n;e+=3)this.expandByPoint(en.fromArray(t,e));return this}setFromBufferAttribute(t){this.makeEmpty();for(let e=0,n=t.count;e<n;e++)this.expandByPoint(en.fromBufferAttribute(t,e));return this}setFromPoints(t){this.makeEmpty();for(let e=0,n=t.length;e<n;e++)this.expandByPoint(t[e]);return this}setFromCenterAndSize(t,e){const n=en.copy(e).multiplyScalar(.5);return this.min.copy(t).sub(n),this.max.copy(t).add(n),this}setFromObject(t,e=!1){return this.makeEmpty(),this.expandByObject(t,e)}clone(){return new this.constructor().copy(this)}copy(t){return this.min.copy(t.min),this.max.copy(t.max),this}makeEmpty(){return this.min.x=this.min.y=this.min.z=1/0,this.max.x=this.max.y=this.max.z=-1/0,this}isEmpty(){return this.max.x<this.min.x||this.max.y<this.min.y||this.max.z<this.min.z}getCenter(t){return this.isEmpty()?t.set(0,0,0):t.addVectors(this.min,this.max).multiplyScalar(.5)}getSize(t){return this.isEmpty()?t.set(0,0,0):t.subVectors(this.max,this.min)}expandByPoint(t){return this.min.min(t),this.max.max(t),this}expandByVector(t){return this.min.sub(t),this.max.add(t),this}expandByScalar(t){return this.min.addScalar(-t),this.max.addScalar(t),this}expandByObject(t,e=!1){t.updateWorldMatrix(!1,!1);const n=t.geometry;if(n!==void 0){const r=n.getAttribute("position");if(e===!0&&r!==void 0&&t.isInstancedMesh!==!0)for(let a=0,o=r.count;a<o;a++)t.isMesh===!0?t.getVertexPosition(a,en):en.fromBufferAttribute(r,a),en.applyMatrix4(t.matrixWorld),this.expandByPoint(en);else t.boundingBox!==void 0?(t.boundingBox===null&&t.computeBoundingBox(),ds.copy(t.boundingBox)):(n.boundingBox===null&&n.computeBoundingBox(),ds.copy(n.boundingBox)),ds.applyMatrix4(t.matrixWorld),this.union(ds)}const s=t.children;for(let r=0,a=s.length;r<a;r++)this.expandByObject(s[r],e);return this}containsPoint(t){return t.x>=this.min.x&&t.x<=this.max.x&&t.y>=this.min.y&&t.y<=this.max.y&&t.z>=this.min.z&&t.z<=this.max.z}containsBox(t){return this.min.x<=t.min.x&&t.max.x<=this.max.x&&this.min.y<=t.min.y&&t.max.y<=this.max.y&&this.min.z<=t.min.z&&t.max.z<=this.max.z}getParameter(t,e){return e.set((t.x-this.min.x)/(this.max.x-this.min.x),(t.y-this.min.y)/(this.max.y-this.min.y),(t.z-this.min.z)/(this.max.z-this.min.z))}intersectsBox(t){return t.max.x>=this.min.x&&t.min.x<=this.max.x&&t.max.y>=this.min.y&&t.min.y<=this.max.y&&t.max.z>=this.min.z&&t.min.z<=this.max.z}intersectsSphere(t){return this.clampPoint(t.center,en),en.distanceToSquared(t.center)<=t.radius*t.radius}intersectsPlane(t){let e,n;return t.normal.x>0?(e=t.normal.x*this.min.x,n=t.normal.x*this.max.x):(e=t.normal.x*this.max.x,n=t.normal.x*this.min.x),t.normal.y>0?(e+=t.normal.y*this.min.y,n+=t.normal.y*this.max.y):(e+=t.normal.y*this.max.y,n+=t.normal.y*this.min.y),t.normal.z>0?(e+=t.normal.z*this.min.z,n+=t.normal.z*this.max.z):(e+=t.normal.z*this.max.z,n+=t.normal.z*this.min.z),e<=-t.constant&&n>=-t.constant}intersectsTriangle(t){if(this.isEmpty())return!1;this.getCenter(Yi),fs.subVectors(this.max,Yi),ci.subVectors(t.a,Yi),hi.subVectors(t.b,Yi),ui.subVectors(t.c,Yi),Rn.subVectors(hi,ci),Cn.subVectors(ui,hi),Gn.subVectors(ci,ui);let e=[0,-Rn.z,Rn.y,0,-Cn.z,Cn.y,0,-Gn.z,Gn.y,Rn.z,0,-Rn.x,Cn.z,0,-Cn.x,Gn.z,0,-Gn.x,-Rn.y,Rn.x,0,-Cn.y,Cn.x,0,-Gn.y,Gn.x,0];return!gr(e,ci,hi,ui,fs)||(e=[1,0,0,0,1,0,0,0,1],!gr(e,ci,hi,ui,fs))?!1:(ps.crossVectors(Rn,Cn),e=[ps.x,ps.y,ps.z],gr(e,ci,hi,ui,fs))}clampPoint(t,e){return e.copy(t).clamp(this.min,this.max)}distanceToPoint(t){return this.clampPoint(t,en).distanceTo(t)}getBoundingSphere(t){return this.isEmpty()?t.makeEmpty():(this.getCenter(t.center),t.radius=this.getSize(en).length()*.5),t}intersect(t){return this.min.max(t.min),this.max.min(t.max),this.isEmpty()&&this.makeEmpty(),this}union(t){return this.min.min(t.min),this.max.max(t.max),this}applyMatrix4(t){return this.isEmpty()?this:(_n[0].set(this.min.x,this.min.y,this.min.z).applyMatrix4(t),_n[1].set(this.min.x,this.min.y,this.max.z).applyMatrix4(t),_n[2].set(this.min.x,this.max.y,this.min.z).applyMatrix4(t),_n[3].set(this.min.x,this.max.y,this.max.z).applyMatrix4(t),_n[4].set(this.max.x,this.min.y,this.min.z).applyMatrix4(t),_n[5].set(this.max.x,this.min.y,this.max.z).applyMatrix4(t),_n[6].set(this.max.x,this.max.y,this.min.z).applyMatrix4(t),_n[7].set(this.max.x,this.max.y,this.max.z).applyMatrix4(t),this.setFromPoints(_n),this)}translate(t){return this.min.add(t),this.max.add(t),this}equals(t){return t.min.equals(this.min)&&t.max.equals(this.max)}}const _n=[new P,new P,new P,new P,new P,new P,new P,new P],en=new P,ds=new si,ci=new P,hi=new P,ui=new P,Rn=new P,Cn=new P,Gn=new P,Yi=new P,fs=new P,ps=new P,Wn=new P;function gr(i,t,e,n,s){for(let r=0,a=i.length-3;r<=a;r+=3){Wn.fromArray(i,r);const o=s.x*Math.abs(Wn.x)+s.y*Math.abs(Wn.y)+s.z*Math.abs(Wn.z),l=t.dot(Wn),c=e.dot(Wn),h=n.dot(Wn);if(Math.max(-Math.max(l,c,h),Math.min(l,c,h))>o)return!1}return!0}const Ph=new si,qi=new P,vr=new P;class ri{constructor(t=new P,e=-1){this.isSphere=!0,this.center=t,this.radius=e}set(t,e){return this.center.copy(t),this.radius=e,this}setFromPoints(t,e){const n=this.center;e!==void 0?n.copy(e):Ph.setFromPoints(t).getCenter(n);let s=0;for(let r=0,a=t.length;r<a;r++)s=Math.max(s,n.distanceToSquared(t[r]));return this.radius=Math.sqrt(s),this}copy(t){return this.center.copy(t.center),this.radius=t.radius,this}isEmpty(){return this.radius<0}makeEmpty(){return this.center.set(0,0,0),this.radius=-1,this}containsPoint(t){return t.distanceToSquared(this.center)<=this.radius*this.radius}distanceToPoint(t){return t.distanceTo(this.center)-this.radius}intersectsSphere(t){const e=this.radius+t.radius;return t.center.distanceToSquared(this.center)<=e*e}intersectsBox(t){return t.intersectsSphere(this)}intersectsPlane(t){return Math.abs(t.distanceToPoint(this.center))<=this.radius}clampPoint(t,e){const n=this.center.distanceToSquared(t);return e.copy(t),n>this.radius*this.radius&&(e.sub(this.center).normalize(),e.multiplyScalar(this.radius).add(this.center)),e}getBoundingBox(t){return this.isEmpty()?(t.makeEmpty(),t):(t.set(this.center,this.center),t.expandByScalar(this.radius),t)}applyMatrix4(t){return this.center.applyMatrix4(t),this.radius=this.radius*t.getMaxScaleOnAxis(),this}translate(t){return this.center.add(t),this}expandByPoint(t){if(this.isEmpty())return this.center.copy(t),this.radius=0,this;qi.subVectors(t,this.center);const e=qi.lengthSq();if(e>this.radius*this.radius){const n=Math.sqrt(e),s=(n-this.radius)*.5;this.center.addScaledVector(qi,s/n),this.radius+=s}return this}union(t){return t.isEmpty()?this:this.isEmpty()?(this.copy(t),this):(this.center.equals(t.center)===!0?this.radius=Math.max(this.radius,t.radius):(vr.subVectors(t.center,this.center).setLength(t.radius),this.expandByPoint(qi.copy(t.center).add(vr)),this.expandByPoint(qi.copy(t.center).sub(vr))),this)}equals(t){return t.center.equals(this.center)&&t.radius===this.radius}clone(){return new this.constructor().copy(this)}}const gn=new P,xr=new P,ms=new P,Pn=new P,Mr=new P,_s=new P,Sr=new P;class rs{constructor(t=new P,e=new P(0,0,-1)){this.origin=t,this.direction=e}set(t,e){return this.origin.copy(t),this.direction.copy(e),this}copy(t){return this.origin.copy(t.origin),this.direction.copy(t.direction),this}at(t,e){return e.copy(this.origin).addScaledVector(this.direction,t)}lookAt(t){return this.direction.copy(t).sub(this.origin).normalize(),this}recast(t){return this.origin.copy(this.at(t,gn)),this}closestPointToPoint(t,e){e.subVectors(t,this.origin);const n=e.dot(this.direction);return n<0?e.copy(this.origin):e.copy(this.origin).addScaledVector(this.direction,n)}distanceToPoint(t){return Math.sqrt(this.distanceSqToPoint(t))}distanceSqToPoint(t){const e=gn.subVectors(t,this.origin).dot(this.direction);return e<0?this.origin.distanceToSquared(t):(gn.copy(this.origin).addScaledVector(this.direction,e),gn.distanceToSquared(t))}distanceSqToSegment(t,e,n,s){xr.copy(t).add(e).multiplyScalar(.5),ms.copy(e).sub(t).normalize(),Pn.copy(this.origin).sub(xr);const r=t.distanceTo(e)*.5,a=-this.direction.dot(ms),o=Pn.dot(this.direction),l=-Pn.dot(ms),c=Pn.lengthSq(),h=Math.abs(1-a*a);let d,f,m,g;if(h>0)if(d=a*l-o,f=a*o-l,g=r*h,d>=0)if(f>=-g)if(f<=g){const x=1/h;d*=x,f*=x,m=d*(d+a*f+2*o)+f*(a*d+f+2*l)+c}else f=r,d=Math.max(0,-(a*f+o)),m=-d*d+f*(f+2*l)+c;else f=-r,d=Math.max(0,-(a*f+o)),m=-d*d+f*(f+2*l)+c;else f<=-g?(d=Math.max(0,-(-a*r+o)),f=d>0?-r:Math.min(Math.max(-r,-l),r),m=-d*d+f*(f+2*l)+c):f<=g?(d=0,f=Math.min(Math.max(-r,-l),r),m=f*(f+2*l)+c):(d=Math.max(0,-(a*r+o)),f=d>0?r:Math.min(Math.max(-r,-l),r),m=-d*d+f*(f+2*l)+c);else f=a>0?-r:r,d=Math.max(0,-(a*f+o)),m=-d*d+f*(f+2*l)+c;return n&&n.copy(this.origin).addScaledVector(this.direction,d),s&&s.copy(xr).addScaledVector(ms,f),m}intersectSphere(t,e){gn.subVectors(t.center,this.origin);const n=gn.dot(this.direction),s=gn.dot(gn)-n*n,r=t.radius*t.radius;if(s>r)return null;const a=Math.sqrt(r-s),o=n-a,l=n+a;return l<0?null:o<0?this.at(l,e):this.at(o,e)}intersectsSphere(t){return this.distanceSqToPoint(t.center)<=t.radius*t.radius}distanceToPlane(t){const e=t.normal.dot(this.direction);if(e===0)return t.distanceToPoint(this.origin)===0?0:null;const n=-(this.origin.dot(t.normal)+t.constant)/e;return n>=0?n:null}intersectPlane(t,e){const n=this.distanceToPlane(t);return n===null?null:this.at(n,e)}intersectsPlane(t){const e=t.distanceToPoint(this.origin);return e===0||t.normal.dot(this.direction)*e<0}intersectBox(t,e){let n,s,r,a,o,l;const c=1/this.direction.x,h=1/this.direction.y,d=1/this.direction.z,f=this.origin;return c>=0?(n=(t.min.x-f.x)*c,s=(t.max.x-f.x)*c):(n=(t.max.x-f.x)*c,s=(t.min.x-f.x)*c),h>=0?(r=(t.min.y-f.y)*h,a=(t.max.y-f.y)*h):(r=(t.max.y-f.y)*h,a=(t.min.y-f.y)*h),n>a||r>s||((r>n||isNaN(n))&&(n=r),(a<s||isNaN(s))&&(s=a),d>=0?(o=(t.min.z-f.z)*d,l=(t.max.z-f.z)*d):(o=(t.max.z-f.z)*d,l=(t.min.z-f.z)*d),n>l||o>s)||((o>n||n!==n)&&(n=o),(l<s||s!==s)&&(s=l),s<0)?null:this.at(n>=0?n:s,e)}intersectsBox(t){return this.intersectBox(t,gn)!==null}intersectTriangle(t,e,n,s,r){Mr.subVectors(e,t),_s.subVectors(n,t),Sr.crossVectors(Mr,_s);let a=this.direction.dot(Sr),o;if(a>0){if(s)return null;o=1}else if(a<0)o=-1,a=-a;else return null;Pn.subVectors(this.origin,t);const l=o*this.direction.dot(_s.crossVectors(Pn,_s));if(l<0)return null;const c=o*this.direction.dot(Mr.cross(Pn));if(c<0||l+c>a)return null;const h=-o*Pn.dot(Sr);return h<0?null:this.at(h/a,r)}applyMatrix4(t){return this.origin.applyMatrix4(t),this.direction.transformDirection(t),this}equals(t){return t.origin.equals(this.origin)&&t.direction.equals(this.direction)}clone(){return new this.constructor().copy(this)}}class ee{constructor(t,e,n,s,r,a,o,l,c,h,d,f,m,g,x,p){ee.prototype.isMatrix4=!0,this.elements=[1,0,0,0,0,1,0,0,0,0,1,0,0,0,0,1],t!==void 0&&this.set(t,e,n,s,r,a,o,l,c,h,d,f,m,g,x,p)}set(t,e,n,s,r,a,o,l,c,h,d,f,m,g,x,p){const u=this.elements;return u[0]=t,u[4]=e,u[8]=n,u[12]=s,u[1]=r,u[5]=a,u[9]=o,u[13]=l,u[2]=c,u[6]=h,u[10]=d,u[14]=f,u[3]=m,u[7]=g,u[11]=x,u[15]=p,this}identity(){return this.set(1,0,0,0,0,1,0,0,0,0,1,0,0,0,0,1),this}clone(){return new ee().fromArray(this.elements)}copy(t){const e=this.elements,n=t.elements;return e[0]=n[0],e[1]=n[1],e[2]=n[2],e[3]=n[3],e[4]=n[4],e[5]=n[5],e[6]=n[6],e[7]=n[7],e[8]=n[8],e[9]=n[9],e[10]=n[10],e[11]=n[11],e[12]=n[12],e[13]=n[13],e[14]=n[14],e[15]=n[15],this}copyPosition(t){const e=this.elements,n=t.elements;return e[12]=n[12],e[13]=n[13],e[14]=n[14],this}setFromMatrix3(t){const e=t.elements;return this.set(e[0],e[3],e[6],0,e[1],e[4],e[7],0,e[2],e[5],e[8],0,0,0,0,1),this}extractBasis(t,e,n){return t.setFromMatrixColumn(this,0),e.setFromMatrixColumn(this,1),n.setFromMatrixColumn(this,2),this}makeBasis(t,e,n){return this.set(t.x,e.x,n.x,0,t.y,e.y,n.y,0,t.z,e.z,n.z,0,0,0,0,1),this}extractRotation(t){const e=this.elements,n=t.elements,s=1/di.setFromMatrixColumn(t,0).length(),r=1/di.setFromMatrixColumn(t,1).length(),a=1/di.setFromMatrixColumn(t,2).length();return e[0]=n[0]*s,e[1]=n[1]*s,e[2]=n[2]*s,e[3]=0,e[4]=n[4]*r,e[5]=n[5]*r,e[6]=n[6]*r,e[7]=0,e[8]=n[8]*a,e[9]=n[9]*a,e[10]=n[10]*a,e[11]=0,e[12]=0,e[13]=0,e[14]=0,e[15]=1,this}makeRotationFromEuler(t){const e=this.elements,n=t.x,s=t.y,r=t.z,a=Math.cos(n),o=Math.sin(n),l=Math.cos(s),c=Math.sin(s),h=Math.cos(r),d=Math.sin(r);if(t.order==="XYZ"){const f=a*h,m=a*d,g=o*h,x=o*d;e[0]=l*h,e[4]=-l*d,e[8]=c,e[1]=m+g*c,e[5]=f-x*c,e[9]=-o*l,e[2]=x-f*c,e[6]=g+m*c,e[10]=a*l}else if(t.order==="YXZ"){const f=l*h,m=l*d,g=c*h,x=c*d;e[0]=f+x*o,e[4]=g*o-m,e[8]=a*c,e[1]=a*d,e[5]=a*h,e[9]=-o,e[2]=m*o-g,e[6]=x+f*o,e[10]=a*l}else if(t.order==="ZXY"){const f=l*h,m=l*d,g=c*h,x=c*d;e[0]=f-x*o,e[4]=-a*d,e[8]=g+m*o,e[1]=m+g*o,e[5]=a*h,e[9]=x-f*o,e[2]=-a*c,e[6]=o,e[10]=a*l}else if(t.order==="ZYX"){const f=a*h,m=a*d,g=o*h,x=o*d;e[0]=l*h,e[4]=g*c-m,e[8]=f*c+x,e[1]=l*d,e[5]=x*c+f,e[9]=m*c-g,e[2]=-c,e[6]=o*l,e[10]=a*l}else if(t.order==="YZX"){const f=a*l,m=a*c,g=o*l,x=o*c;e[0]=l*h,e[4]=x-f*d,e[8]=g*d+m,e[1]=d,e[5]=a*h,e[9]=-o*h,e[2]=-c*h,e[6]=m*d+g,e[10]=f-x*d}else if(t.order==="XZY"){const f=a*l,m=a*c,g=o*l,x=o*c;e[0]=l*h,e[4]=-d,e[8]=c*h,e[1]=f*d+x,e[5]=a*h,e[9]=m*d-g,e[2]=g*d-m,e[6]=o*h,e[10]=x*d+f}return e[3]=0,e[7]=0,e[11]=0,e[12]=0,e[13]=0,e[14]=0,e[15]=1,this}makeRotationFromQuaternion(t){return this.compose(Dh,t,Lh)}lookAt(t,e,n){const s=this.elements;return ke.subVectors(t,e),ke.lengthSq()===0&&(ke.z=1),ke.normalize(),Dn.crossVectors(n,ke),Dn.lengthSq()===0&&(Math.abs(n.z)===1?ke.x+=1e-4:ke.z+=1e-4,ke.normalize(),Dn.crossVectors(n,ke)),Dn.normalize(),gs.crossVectors(ke,Dn),s[0]=Dn.x,s[4]=gs.x,s[8]=ke.x,s[1]=Dn.y,s[5]=gs.y,s[9]=ke.y,s[2]=Dn.z,s[6]=gs.z,s[10]=ke.z,this}multiply(t){return this.multiplyMatrices(this,t)}premultiply(t){return this.multiplyMatrices(t,this)}multiplyMatrices(t,e){const n=t.elements,s=e.elements,r=this.elements,a=n[0],o=n[4],l=n[8],c=n[12],h=n[1],d=n[5],f=n[9],m=n[13],g=n[2],x=n[6],p=n[10],u=n[14],b=n[3],E=n[7],S=n[11],D=n[15],A=s[0],w=s[4],N=s[8],y=s[12],M=s[1],C=s[5],W=s[9],z=s[13],V=s[2],K=s[6],G=s[10],$=s[14],H=s[3],nt=s[7],dt=s[11],Mt=s[15];return r[0]=a*A+o*M+l*V+c*H,r[4]=a*w+o*C+l*K+c*nt,r[8]=a*N+o*W+l*G+c*dt,r[12]=a*y+o*z+l*$+c*Mt,r[1]=h*A+d*M+f*V+m*H,r[5]=h*w+d*C+f*K+m*nt,r[9]=h*N+d*W+f*G+m*dt,r[13]=h*y+d*z+f*$+m*Mt,r[2]=g*A+x*M+p*V+u*H,r[6]=g*w+x*C+p*K+u*nt,r[10]=g*N+x*W+p*G+u*dt,r[14]=g*y+x*z+p*$+u*Mt,r[3]=b*A+E*M+S*V+D*H,r[7]=b*w+E*C+S*K+D*nt,r[11]=b*N+E*W+S*G+D*dt,r[15]=b*y+E*z+S*$+D*Mt,this}multiplyScalar(t){const e=this.elements;return e[0]*=t,e[4]*=t,e[8]*=t,e[12]*=t,e[1]*=t,e[5]*=t,e[9]*=t,e[13]*=t,e[2]*=t,e[6]*=t,e[10]*=t,e[14]*=t,e[3]*=t,e[7]*=t,e[11]*=t,e[15]*=t,this}determinant(){const t=this.elements,e=t[0],n=t[4],s=t[8],r=t[12],a=t[1],o=t[5],l=t[9],c=t[13],h=t[2],d=t[6],f=t[10],m=t[14],g=t[3],x=t[7],p=t[11],u=t[15];return g*(+r*l*d-s*c*d-r*o*f+n*c*f+s*o*m-n*l*m)+x*(+e*l*m-e*c*f+r*a*f-s*a*m+s*c*h-r*l*h)+p*(+e*c*d-e*o*m-r*a*d+n*a*m+r*o*h-n*c*h)+u*(-s*o*h-e*l*d+e*o*f+s*a*d-n*a*f+n*l*h)}transpose(){const t=this.elements;let e;return e=t[1],t[1]=t[4],t[4]=e,e=t[2],t[2]=t[8],t[8]=e,e=t[6],t[6]=t[9],t[9]=e,e=t[3],t[3]=t[12],t[12]=e,e=t[7],t[7]=t[13],t[13]=e,e=t[11],t[11]=t[14],t[14]=e,this}setPosition(t,e,n){const s=this.elements;return t.isVector3?(s[12]=t.x,s[13]=t.y,s[14]=t.z):(s[12]=t,s[13]=e,s[14]=n),this}invert(){const t=this.elements,e=t[0],n=t[1],s=t[2],r=t[3],a=t[4],o=t[5],l=t[6],c=t[7],h=t[8],d=t[9],f=t[10],m=t[11],g=t[12],x=t[13],p=t[14],u=t[15],b=d*p*c-x*f*c+x*l*m-o*p*m-d*l*u+o*f*u,E=g*f*c-h*p*c-g*l*m+a*p*m+h*l*u-a*f*u,S=h*x*c-g*d*c+g*o*m-a*x*m-h*o*u+a*d*u,D=g*d*l-h*x*l-g*o*f+a*x*f+h*o*p-a*d*p,A=e*b+n*E+s*S+r*D;if(A===0)return this.set(0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0);const w=1/A;return t[0]=b*w,t[1]=(x*f*r-d*p*r-x*s*m+n*p*m+d*s*u-n*f*u)*w,t[2]=(o*p*r-x*l*r+x*s*c-n*p*c-o*s*u+n*l*u)*w,t[3]=(d*l*r-o*f*r-d*s*c+n*f*c+o*s*m-n*l*m)*w,t[4]=E*w,t[5]=(h*p*r-g*f*r+g*s*m-e*p*m-h*s*u+e*f*u)*w,t[6]=(g*l*r-a*p*r-g*s*c+e*p*c+a*s*u-e*l*u)*w,t[7]=(a*f*r-h*l*r+h*s*c-e*f*c-a*s*m+e*l*m)*w,t[8]=S*w,t[9]=(g*d*r-h*x*r-g*n*m+e*x*m+h*n*u-e*d*u)*w,t[10]=(a*x*r-g*o*r+g*n*c-e*x*c-a*n*u+e*o*u)*w,t[11]=(h*o*r-a*d*r-h*n*c+e*d*c+a*n*m-e*o*m)*w,t[12]=D*w,t[13]=(h*x*s-g*d*s+g*n*f-e*x*f-h*n*p+e*d*p)*w,t[14]=(g*o*s-a*x*s-g*n*l+e*x*l+a*n*p-e*o*p)*w,t[15]=(a*d*s-h*o*s+h*n*l-e*d*l-a*n*f+e*o*f)*w,this}scale(t){const e=this.elements,n=t.x,s=t.y,r=t.z;return e[0]*=n,e[4]*=s,e[8]*=r,e[1]*=n,e[5]*=s,e[9]*=r,e[2]*=n,e[6]*=s,e[10]*=r,e[3]*=n,e[7]*=s,e[11]*=r,this}getMaxScaleOnAxis(){const t=this.elements,e=t[0]*t[0]+t[1]*t[1]+t[2]*t[2],n=t[4]*t[4]+t[5]*t[5]+t[6]*t[6],s=t[8]*t[8]+t[9]*t[9]+t[10]*t[10];return Math.sqrt(Math.max(e,n,s))}makeTranslation(t,e,n){return t.isVector3?this.set(1,0,0,t.x,0,1,0,t.y,0,0,1,t.z,0,0,0,1):this.set(1,0,0,t,0,1,0,e,0,0,1,n,0,0,0,1),this}makeRotationX(t){const e=Math.cos(t),n=Math.sin(t);return this.set(1,0,0,0,0,e,-n,0,0,n,e,0,0,0,0,1),this}makeRotationY(t){const e=Math.cos(t),n=Math.sin(t);return this.set(e,0,n,0,0,1,0,0,-n,0,e,0,0,0,0,1),this}makeRotationZ(t){const e=Math.cos(t),n=Math.sin(t);return this.set(e,-n,0,0,n,e,0,0,0,0,1,0,0,0,0,1),this}makeRotationAxis(t,e){const n=Math.cos(e),s=Math.sin(e),r=1-n,a=t.x,o=t.y,l=t.z,c=r*a,h=r*o;return this.set(c*a+n,c*o-s*l,c*l+s*o,0,c*o+s*l,h*o+n,h*l-s*a,0,c*l-s*o,h*l+s*a,r*l*l+n,0,0,0,0,1),this}makeScale(t,e,n){return this.set(t,0,0,0,0,e,0,0,0,0,n,0,0,0,0,1),this}makeShear(t,e,n,s,r,a){return this.set(1,n,r,0,t,1,a,0,e,s,1,0,0,0,0,1),this}compose(t,e,n){const s=this.elements,r=e._x,a=e._y,o=e._z,l=e._w,c=r+r,h=a+a,d=o+o,f=r*c,m=r*h,g=r*d,x=a*h,p=a*d,u=o*d,b=l*c,E=l*h,S=l*d,D=n.x,A=n.y,w=n.z;return s[0]=(1-(x+u))*D,s[1]=(m+S)*D,s[2]=(g-E)*D,s[3]=0,s[4]=(m-S)*A,s[5]=(1-(f+u))*A,s[6]=(p+b)*A,s[7]=0,s[8]=(g+E)*w,s[9]=(p-b)*w,s[10]=(1-(f+x))*w,s[11]=0,s[12]=t.x,s[13]=t.y,s[14]=t.z,s[15]=1,this}decompose(t,e,n){const s=this.elements;let r=di.set(s[0],s[1],s[2]).length();const a=di.set(s[4],s[5],s[6]).length(),o=di.set(s[8],s[9],s[10]).length();this.determinant()<0&&(r=-r),t.x=s[12],t.y=s[13],t.z=s[14],nn.copy(this);const c=1/r,h=1/a,d=1/o;return nn.elements[0]*=c,nn.elements[1]*=c,nn.elements[2]*=c,nn.elements[4]*=h,nn.elements[5]*=h,nn.elements[6]*=h,nn.elements[8]*=d,nn.elements[9]*=d,nn.elements[10]*=d,e.setFromRotationMatrix(nn),n.x=r,n.y=a,n.z=o,this}makePerspective(t,e,n,s,r,a,o=En){const l=this.elements,c=2*r/(e-t),h=2*r/(n-s),d=(e+t)/(e-t),f=(n+s)/(n-s);let m,g;if(o===En)m=-(a+r)/(a-r),g=-2*a*r/(a-r);else if(o===$s)m=-a/(a-r),g=-a*r/(a-r);else throw new Error("THREE.Matrix4.makePerspective(): Invalid coordinate system: "+o);return l[0]=c,l[4]=0,l[8]=d,l[12]=0,l[1]=0,l[5]=h,l[9]=f,l[13]=0,l[2]=0,l[6]=0,l[10]=m,l[14]=g,l[3]=0,l[7]=0,l[11]=-1,l[15]=0,this}makeOrthographic(t,e,n,s,r,a,o=En){const l=this.elements,c=1/(e-t),h=1/(n-s),d=1/(a-r),f=(e+t)*c,m=(n+s)*h;let g,x;if(o===En)g=(a+r)*d,x=-2*d;else if(o===$s)g=r*d,x=-1*d;else throw new Error("THREE.Matrix4.makeOrthographic(): Invalid coordinate system: "+o);return l[0]=2*c,l[4]=0,l[8]=0,l[12]=-f,l[1]=0,l[5]=2*h,l[9]=0,l[13]=-m,l[2]=0,l[6]=0,l[10]=x,l[14]=-g,l[3]=0,l[7]=0,l[11]=0,l[15]=1,this}equals(t){const e=this.elements,n=t.elements;for(let s=0;s<16;s++)if(e[s]!==n[s])return!1;return!0}fromArray(t,e=0){for(let n=0;n<16;n++)this.elements[n]=t[n+e];return this}toArray(t=[],e=0){const n=this.elements;return t[e]=n[0],t[e+1]=n[1],t[e+2]=n[2],t[e+3]=n[3],t[e+4]=n[4],t[e+5]=n[5],t[e+6]=n[6],t[e+7]=n[7],t[e+8]=n[8],t[e+9]=n[9],t[e+10]=n[10],t[e+11]=n[11],t[e+12]=n[12],t[e+13]=n[13],t[e+14]=n[14],t[e+15]=n[15],t}}const di=new P,nn=new ee,Dh=new P(0,0,0),Lh=new P(1,1,1),Dn=new P,gs=new P,ke=new P,xo=new ee,Mo=new ni;class pn{constructor(t=0,e=0,n=0,s=pn.DEFAULT_ORDER){this.isEuler=!0,this._x=t,this._y=e,this._z=n,this._order=s}get x(){return this._x}set x(t){this._x=t,this._onChangeCallback()}get y(){return this._y}set y(t){this._y=t,this._onChangeCallback()}get z(){return this._z}set z(t){this._z=t,this._onChangeCallback()}get order(){return this._order}set order(t){this._order=t,this._onChangeCallback()}set(t,e,n,s=this._order){return this._x=t,this._y=e,this._z=n,this._order=s,this._onChangeCallback(),this}clone(){return new this.constructor(this._x,this._y,this._z,this._order)}copy(t){return this._x=t._x,this._y=t._y,this._z=t._z,this._order=t._order,this._onChangeCallback(),this}setFromRotationMatrix(t,e=this._order,n=!0){const s=t.elements,r=s[0],a=s[4],o=s[8],l=s[1],c=s[5],h=s[9],d=s[2],f=s[6],m=s[10];switch(e){case"XYZ":this._y=Math.asin(Gt(o,-1,1)),Math.abs(o)<.9999999?(this._x=Math.atan2(-h,m),this._z=Math.atan2(-a,r)):(this._x=Math.atan2(f,c),this._z=0);break;case"YXZ":this._x=Math.asin(-Gt(h,-1,1)),Math.abs(h)<.9999999?(this._y=Math.atan2(o,m),this._z=Math.atan2(l,c)):(this._y=Math.atan2(-d,r),this._z=0);break;case"ZXY":this._x=Math.asin(Gt(f,-1,1)),Math.abs(f)<.9999999?(this._y=Math.atan2(-d,m),this._z=Math.atan2(-a,c)):(this._y=0,this._z=Math.atan2(l,r));break;case"ZYX":this._y=Math.asin(-Gt(d,-1,1)),Math.abs(d)<.9999999?(this._x=Math.atan2(f,m),this._z=Math.atan2(l,r)):(this._x=0,this._z=Math.atan2(-a,c));break;case"YZX":this._z=Math.asin(Gt(l,-1,1)),Math.abs(l)<.9999999?(this._x=Math.atan2(-h,c),this._y=Math.atan2(-d,r)):(this._x=0,this._y=Math.atan2(o,m));break;case"XZY":this._z=Math.asin(-Gt(a,-1,1)),Math.abs(a)<.9999999?(this._x=Math.atan2(f,c),this._y=Math.atan2(o,r)):(this._x=Math.atan2(-h,m),this._y=0);break;default:console.warn("THREE.Euler: .setFromRotationMatrix() encountered an unknown order: "+e)}return this._order=e,n===!0&&this._onChangeCallback(),this}setFromQuaternion(t,e,n){return xo.makeRotationFromQuaternion(t),this.setFromRotationMatrix(xo,e,n)}setFromVector3(t,e=this._order){return this.set(t.x,t.y,t.z,e)}reorder(t){return Mo.setFromEuler(this),this.setFromQuaternion(Mo,t)}equals(t){return t._x===this._x&&t._y===this._y&&t._z===this._z&&t._order===this._order}fromArray(t){return this._x=t[0],this._y=t[1],this._z=t[2],t[3]!==void 0&&(this._order=t[3]),this._onChangeCallback(),this}toArray(t=[],e=0){return t[e]=this._x,t[e+1]=this._y,t[e+2]=this._z,t[e+3]=this._order,t}_onChange(t){return this._onChangeCallback=t,this}_onChangeCallback(){}*[Symbol.iterator](){yield this._x,yield this._y,yield this._z,yield this._order}}pn.DEFAULT_ORDER="XYZ";class Za{constructor(){this.mask=1}set(t){this.mask=(1<<t|0)>>>0}enable(t){this.mask|=1<<t|0}enableAll(){this.mask=-1}toggle(t){this.mask^=1<<t|0}disable(t){this.mask&=~(1<<t|0)}disableAll(){this.mask=0}test(t){return(this.mask&t.mask)!==0}isEnabled(t){return(this.mask&(1<<t|0))!==0}}let Uh=0;const So=new P,fi=new ni,vn=new ee,vs=new P,ji=new P,Ih=new P,Nh=new ni,yo=new P(1,0,0),Eo=new P(0,1,0),To=new P(0,0,1),bo={type:"added"},Fh={type:"removed"},pi={type:"childadded",child:null},yr={type:"childremoved",child:null};class be extends ii{constructor(){super(),this.isObject3D=!0,Object.defineProperty(this,"id",{value:Uh++}),this.uuid=Bn(),this.name="",this.type="Object3D",this.parent=null,this.children=[],this.up=be.DEFAULT_UP.clone();const t=new P,e=new pn,n=new ni,s=new P(1,1,1);function r(){n.setFromEuler(e,!1)}function a(){e.setFromQuaternion(n,void 0,!1)}e._onChange(r),n._onChange(a),Object.defineProperties(this,{position:{configurable:!0,enumerable:!0,value:t},rotation:{configurable:!0,enumerable:!0,value:e},quaternion:{configurable:!0,enumerable:!0,value:n},scale:{configurable:!0,enumerable:!0,value:s},modelViewMatrix:{value:new ee},normalMatrix:{value:new zt}}),this.matrix=new ee,this.matrixWorld=new ee,this.matrixAutoUpdate=be.DEFAULT_MATRIX_AUTO_UPDATE,this.matrixWorldAutoUpdate=be.DEFAULT_MATRIX_WORLD_AUTO_UPDATE,this.matrixWorldNeedsUpdate=!1,this.layers=new Za,this.visible=!0,this.castShadow=!1,this.receiveShadow=!1,this.frustumCulled=!0,this.renderOrder=0,this.animations=[],this.userData={}}onBeforeShadow(){}onAfterShadow(){}onBeforeRender(){}onAfterRender(){}applyMatrix4(t){this.matrixAutoUpdate&&this.updateMatrix(),this.matrix.premultiply(t),this.matrix.decompose(this.position,this.quaternion,this.scale)}applyQuaternion(t){return this.quaternion.premultiply(t),this}setRotationFromAxisAngle(t,e){this.quaternion.setFromAxisAngle(t,e)}setRotationFromEuler(t){this.quaternion.setFromEuler(t,!0)}setRotationFromMatrix(t){this.quaternion.setFromRotationMatrix(t)}setRotationFromQuaternion(t){this.quaternion.copy(t)}rotateOnAxis(t,e){return fi.setFromAxisAngle(t,e),this.quaternion.multiply(fi),this}rotateOnWorldAxis(t,e){return fi.setFromAxisAngle(t,e),this.quaternion.premultiply(fi),this}rotateX(t){return this.rotateOnAxis(yo,t)}rotateY(t){return this.rotateOnAxis(Eo,t)}rotateZ(t){return this.rotateOnAxis(To,t)}translateOnAxis(t,e){return So.copy(t).applyQuaternion(this.quaternion),this.position.add(So.multiplyScalar(e)),this}translateX(t){return this.translateOnAxis(yo,t)}translateY(t){return this.translateOnAxis(Eo,t)}translateZ(t){return this.translateOnAxis(To,t)}localToWorld(t){return this.updateWorldMatrix(!0,!1),t.applyMatrix4(this.matrixWorld)}worldToLocal(t){return this.updateWorldMatrix(!0,!1),t.applyMatrix4(vn.copy(this.matrixWorld).invert())}lookAt(t,e,n){t.isVector3?vs.copy(t):vs.set(t,e,n);const s=this.parent;this.updateWorldMatrix(!0,!1),ji.setFromMatrixPosition(this.matrixWorld),this.isCamera||this.isLight?vn.lookAt(ji,vs,this.up):vn.lookAt(vs,ji,this.up),this.quaternion.setFromRotationMatrix(vn),s&&(vn.extractRotation(s.matrixWorld),fi.setFromRotationMatrix(vn),this.quaternion.premultiply(fi.invert()))}add(t){if(arguments.length>1){for(let e=0;e<arguments.length;e++)this.add(arguments[e]);return this}return t===this?(console.error("THREE.Object3D.add: object can't be added as a child of itself.",t),this):(t&&t.isObject3D?(t.removeFromParent(),t.parent=this,this.children.push(t),t.dispatchEvent(bo),pi.child=t,this.dispatchEvent(pi),pi.child=null):console.error("THREE.Object3D.add: object not an instance of THREE.Object3D.",t),this)}remove(t){if(arguments.length>1){for(let n=0;n<arguments.length;n++)this.remove(arguments[n]);return this}const e=this.children.indexOf(t);return e!==-1&&(t.parent=null,this.children.splice(e,1),t.dispatchEvent(Fh),yr.child=t,this.dispatchEvent(yr),yr.child=null),this}removeFromParent(){const t=this.parent;return t!==null&&t.remove(this),this}clear(){return this.remove(...this.children)}attach(t){return this.updateWorldMatrix(!0,!1),vn.copy(this.matrixWorld).invert(),t.parent!==null&&(t.parent.updateWorldMatrix(!0,!1),vn.multiply(t.parent.matrixWorld)),t.applyMatrix4(vn),t.removeFromParent(),t.parent=this,this.children.push(t),t.updateWorldMatrix(!1,!0),t.dispatchEvent(bo),pi.child=t,this.dispatchEvent(pi),pi.child=null,this}getObjectById(t){return this.getObjectByProperty("id",t)}getObjectByName(t){return this.getObjectByProperty("name",t)}getObjectByProperty(t,e){if(this[t]===e)return this;for(let n=0,s=this.children.length;n<s;n++){const a=this.children[n].getObjectByProperty(t,e);if(a!==void 0)return a}}getObjectsByProperty(t,e,n=[]){this[t]===e&&n.push(this);const s=this.children;for(let r=0,a=s.length;r<a;r++)s[r].getObjectsByProperty(t,e,n);return n}getWorldPosition(t){return this.updateWorldMatrix(!0,!1),t.setFromMatrixPosition(this.matrixWorld)}getWorldQuaternion(t){return this.updateWorldMatrix(!0,!1),this.matrixWorld.decompose(ji,t,Ih),t}getWorldScale(t){return this.updateWorldMatrix(!0,!1),this.matrixWorld.decompose(ji,Nh,t),t}getWorldDirection(t){this.updateWorldMatrix(!0,!1);const e=this.matrixWorld.elements;return t.set(e[8],e[9],e[10]).normalize()}raycast(){}traverse(t){t(this);const e=this.children;for(let n=0,s=e.length;n<s;n++)e[n].traverse(t)}traverseVisible(t){if(this.visible===!1)return;t(this);const e=this.children;for(let n=0,s=e.length;n<s;n++)e[n].traverseVisible(t)}traverseAncestors(t){const e=this.parent;e!==null&&(t(e),e.traverseAncestors(t))}updateMatrix(){this.matrix.compose(this.position,this.quaternion,this.scale),this.matrixWorldNeedsUpdate=!0}updateMatrixWorld(t){this.matrixAutoUpdate&&this.updateMatrix(),(this.matrixWorldNeedsUpdate||t)&&(this.matrixWorldAutoUpdate===!0&&(this.parent===null?this.matrixWorld.copy(this.matrix):this.matrixWorld.multiplyMatrices(this.parent.matrixWorld,this.matrix)),this.matrixWorldNeedsUpdate=!1,t=!0);const e=this.children;for(let n=0,s=e.length;n<s;n++)e[n].updateMatrixWorld(t)}updateWorldMatrix(t,e){const n=this.parent;if(t===!0&&n!==null&&n.updateWorldMatrix(!0,!1),this.matrixAutoUpdate&&this.updateMatrix(),this.matrixWorldAutoUpdate===!0&&(this.parent===null?this.matrixWorld.copy(this.matrix):this.matrixWorld.multiplyMatrices(this.parent.matrixWorld,this.matrix)),e===!0){const s=this.children;for(let r=0,a=s.length;r<a;r++)s[r].updateWorldMatrix(!1,!0)}}toJSON(t){const e=t===void 0||typeof t=="string",n={};e&&(t={geometries:{},materials:{},textures:{},images:{},shapes:{},skeletons:{},animations:{},nodes:{}},n.metadata={version:4.6,type:"Object",generator:"Object3D.toJSON"});const s={};s.uuid=this.uuid,s.type=this.type,this.name!==""&&(s.name=this.name),this.castShadow===!0&&(s.castShadow=!0),this.receiveShadow===!0&&(s.receiveShadow=!0),this.visible===!1&&(s.visible=!1),this.frustumCulled===!1&&(s.frustumCulled=!1),this.renderOrder!==0&&(s.renderOrder=this.renderOrder),Object.keys(this.userData).length>0&&(s.userData=this.userData),s.layers=this.layers.mask,s.matrix=this.matrix.toArray(),s.up=this.up.toArray(),this.matrixAutoUpdate===!1&&(s.matrixAutoUpdate=!1),this.isInstancedMesh&&(s.type="InstancedMesh",s.count=this.count,s.instanceMatrix=this.instanceMatrix.toJSON(),this.instanceColor!==null&&(s.instanceColor=this.instanceColor.toJSON())),this.isBatchedMesh&&(s.type="BatchedMesh",s.perObjectFrustumCulled=this.perObjectFrustumCulled,s.sortObjects=this.sortObjects,s.drawRanges=this._drawRanges,s.reservedRanges=this._reservedRanges,s.visibility=this._visibility,s.active=this._active,s.bounds=this._bounds.map(o=>({boxInitialized:o.boxInitialized,boxMin:o.box.min.toArray(),boxMax:o.box.max.toArray(),sphereInitialized:o.sphereInitialized,sphereRadius:o.sphere.radius,sphereCenter:o.sphere.center.toArray()})),s.maxInstanceCount=this._maxInstanceCount,s.maxVertexCount=this._maxVertexCount,s.maxIndexCount=this._maxIndexCount,s.geometryInitialized=this._geometryInitialized,s.geometryCount=this._geometryCount,s.matricesTexture=this._matricesTexture.toJSON(t),this._colorsTexture!==null&&(s.colorsTexture=this._colorsTexture.toJSON(t)),this.boundingSphere!==null&&(s.boundingSphere={center:s.boundingSphere.center.toArray(),radius:s.boundingSphere.radius}),this.boundingBox!==null&&(s.boundingBox={min:s.boundingBox.min.toArray(),max:s.boundingBox.max.toArray()}));function r(o,l){return o[l.uuid]===void 0&&(o[l.uuid]=l.toJSON(t)),l.uuid}if(this.isScene)this.background&&(this.background.isColor?s.background=this.background.toJSON():this.background.isTexture&&(s.background=this.background.toJSON(t).uuid)),this.environment&&this.environment.isTexture&&this.environment.isRenderTargetTexture!==!0&&(s.environment=this.environment.toJSON(t).uuid);else if(this.isMesh||this.isLine||this.isPoints){s.geometry=r(t.geometries,this.geometry);const o=this.geometry.parameters;if(o!==void 0&&o.shapes!==void 0){const l=o.shapes;if(Array.isArray(l))for(let c=0,h=l.length;c<h;c++){const d=l[c];r(t.shapes,d)}else r(t.shapes,l)}}if(this.isSkinnedMesh&&(s.bindMode=this.bindMode,s.bindMatrix=this.bindMatrix.toArray(),this.skeleton!==void 0&&(r(t.skeletons,this.skeleton),s.skeleton=this.skeleton.uuid)),this.material!==void 0)if(Array.isArray(this.material)){const o=[];for(let l=0,c=this.material.length;l<c;l++)o.push(r(t.materials,this.material[l]));s.material=o}else s.material=r(t.materials,this.material);if(this.children.length>0){s.children=[];for(let o=0;o<this.children.length;o++)s.children.push(this.children[o].toJSON(t).object)}if(this.animations.length>0){s.animations=[];for(let o=0;o<this.animations.length;o++){const l=this.animations[o];s.animations.push(r(t.animations,l))}}if(e){const o=a(t.geometries),l=a(t.materials),c=a(t.textures),h=a(t.images),d=a(t.shapes),f=a(t.skeletons),m=a(t.animations),g=a(t.nodes);o.length>0&&(n.geometries=o),l.length>0&&(n.materials=l),c.length>0&&(n.textures=c),h.length>0&&(n.images=h),d.length>0&&(n.shapes=d),f.length>0&&(n.skeletons=f),m.length>0&&(n.animations=m),g.length>0&&(n.nodes=g)}return n.object=s,n;function a(o){const l=[];for(const c in o){const h=o[c];delete h.metadata,l.push(h)}return l}}clone(t){return new this.constructor().copy(this,t)}copy(t,e=!0){if(this.name=t.name,this.up.copy(t.up),this.position.copy(t.position),this.rotation.order=t.rotation.order,this.quaternion.copy(t.quaternion),this.scale.copy(t.scale),this.matrix.copy(t.matrix),this.matrixWorld.copy(t.matrixWorld),this.matrixAutoUpdate=t.matrixAutoUpdate,this.matrixWorldAutoUpdate=t.matrixWorldAutoUpdate,this.matrixWorldNeedsUpdate=t.matrixWorldNeedsUpdate,this.layers.mask=t.layers.mask,this.visible=t.visible,this.castShadow=t.castShadow,this.receiveShadow=t.receiveShadow,this.frustumCulled=t.frustumCulled,this.renderOrder=t.renderOrder,this.animations=t.animations.slice(),this.userData=JSON.parse(JSON.stringify(t.userData)),e===!0)for(let n=0;n<t.children.length;n++){const s=t.children[n];this.add(s.clone())}return this}}be.DEFAULT_UP=new P(0,1,0);be.DEFAULT_MATRIX_AUTO_UPDATE=!0;be.DEFAULT_MATRIX_WORLD_AUTO_UPDATE=!0;const sn=new P,xn=new P,Er=new P,Mn=new P,mi=new P,_i=new P,Ao=new P,Tr=new P,br=new P,Ar=new P,wr=new oe,Rr=new oe,Cr=new oe;class Je{constructor(t=new P,e=new P,n=new P){this.a=t,this.b=e,this.c=n}static getNormal(t,e,n,s){s.subVectors(n,e),sn.subVectors(t,e),s.cross(sn);const r=s.lengthSq();return r>0?s.multiplyScalar(1/Math.sqrt(r)):s.set(0,0,0)}static getBarycoord(t,e,n,s,r){sn.subVectors(s,e),xn.subVectors(n,e),Er.subVectors(t,e);const a=sn.dot(sn),o=sn.dot(xn),l=sn.dot(Er),c=xn.dot(xn),h=xn.dot(Er),d=a*c-o*o;if(d===0)return r.set(0,0,0),null;const f=1/d,m=(c*l-o*h)*f,g=(a*h-o*l)*f;return r.set(1-m-g,g,m)}static containsPoint(t,e,n,s){return this.getBarycoord(t,e,n,s,Mn)===null?!1:Mn.x>=0&&Mn.y>=0&&Mn.x+Mn.y<=1}static getInterpolation(t,e,n,s,r,a,o,l){return this.getBarycoord(t,e,n,s,Mn)===null?(l.x=0,l.y=0,"z"in l&&(l.z=0),"w"in l&&(l.w=0),null):(l.setScalar(0),l.addScaledVector(r,Mn.x),l.addScaledVector(a,Mn.y),l.addScaledVector(o,Mn.z),l)}static getInterpolatedAttribute(t,e,n,s,r,a){return wr.setScalar(0),Rr.setScalar(0),Cr.setScalar(0),wr.fromBufferAttribute(t,e),Rr.fromBufferAttribute(t,n),Cr.fromBufferAttribute(t,s),a.setScalar(0),a.addScaledVector(wr,r.x),a.addScaledVector(Rr,r.y),a.addScaledVector(Cr,r.z),a}static isFrontFacing(t,e,n,s){return sn.subVectors(n,e),xn.subVectors(t,e),sn.cross(xn).dot(s)<0}set(t,e,n){return this.a.copy(t),this.b.copy(e),this.c.copy(n),this}setFromPointsAndIndices(t,e,n,s){return this.a.copy(t[e]),this.b.copy(t[n]),this.c.copy(t[s]),this}setFromAttributeAndIndices(t,e,n,s){return this.a.fromBufferAttribute(t,e),this.b.fromBufferAttribute(t,n),this.c.fromBufferAttribute(t,s),this}clone(){return new this.constructor().copy(this)}copy(t){return this.a.copy(t.a),this.b.copy(t.b),this.c.copy(t.c),this}getArea(){return sn.subVectors(this.c,this.b),xn.subVectors(this.a,this.b),sn.cross(xn).length()*.5}getMidpoint(t){return t.addVectors(this.a,this.b).add(this.c).multiplyScalar(1/3)}getNormal(t){return Je.getNormal(this.a,this.b,this.c,t)}getPlane(t){return t.setFromCoplanarPoints(this.a,this.b,this.c)}getBarycoord(t,e){return Je.getBarycoord(t,this.a,this.b,this.c,e)}getInterpolation(t,e,n,s,r){return Je.getInterpolation(t,this.a,this.b,this.c,e,n,s,r)}containsPoint(t){return Je.containsPoint(t,this.a,this.b,this.c)}isFrontFacing(t){return Je.isFrontFacing(this.a,this.b,this.c,t)}intersectsBox(t){return t.intersectsTriangle(this)}closestPointToPoint(t,e){const n=this.a,s=this.b,r=this.c;let a,o;mi.subVectors(s,n),_i.subVectors(r,n),Tr.subVectors(t,n);const l=mi.dot(Tr),c=_i.dot(Tr);if(l<=0&&c<=0)return e.copy(n);br.subVectors(t,s);const h=mi.dot(br),d=_i.dot(br);if(h>=0&&d<=h)return e.copy(s);const f=l*d-h*c;if(f<=0&&l>=0&&h<=0)return a=l/(l-h),e.copy(n).addScaledVector(mi,a);Ar.subVectors(t,r);const m=mi.dot(Ar),g=_i.dot(Ar);if(g>=0&&m<=g)return e.copy(r);const x=m*c-l*g;if(x<=0&&c>=0&&g<=0)return o=c/(c-g),e.copy(n).addScaledVector(_i,o);const p=h*g-m*d;if(p<=0&&d-h>=0&&m-g>=0)return Ao.subVectors(r,s),o=(d-h)/(d-h+(m-g)),e.copy(s).addScaledVector(Ao,o);const u=1/(p+x+f);return a=x*u,o=f*u,e.copy(n).addScaledVector(mi,a).addScaledVector(_i,o)}equals(t){return t.a.equals(this.a)&&t.b.equals(this.b)&&t.c.equals(this.c)}}const $l={aliceblue:15792383,antiquewhite:16444375,aqua:65535,aquamarine:8388564,azure:15794175,beige:16119260,bisque:16770244,black:0,blanchedalmond:16772045,blue:255,blueviolet:9055202,brown:10824234,burlywood:14596231,cadetblue:6266528,chartreuse:8388352,chocolate:13789470,coral:16744272,cornflowerblue:6591981,cornsilk:16775388,crimson:14423100,cyan:65535,darkblue:139,darkcyan:35723,darkgoldenrod:12092939,darkgray:11119017,darkgreen:25600,darkgrey:11119017,darkkhaki:12433259,darkmagenta:9109643,darkolivegreen:5597999,darkorange:16747520,darkorchid:10040012,darkred:9109504,darksalmon:15308410,darkseagreen:9419919,darkslateblue:4734347,darkslategray:3100495,darkslategrey:3100495,darkturquoise:52945,darkviolet:9699539,deeppink:16716947,deepskyblue:49151,dimgray:6908265,dimgrey:6908265,dodgerblue:2003199,firebrick:11674146,floralwhite:16775920,forestgreen:2263842,fuchsia:16711935,gainsboro:14474460,ghostwhite:16316671,gold:16766720,goldenrod:14329120,gray:8421504,green:32768,greenyellow:11403055,grey:8421504,honeydew:15794160,hotpink:16738740,indianred:13458524,indigo:4915330,ivory:16777200,khaki:15787660,lavender:15132410,lavenderblush:16773365,lawngreen:8190976,lemonchiffon:16775885,lightblue:11393254,lightcoral:15761536,lightcyan:14745599,lightgoldenrodyellow:16448210,lightgray:13882323,lightgreen:9498256,lightgrey:13882323,lightpink:16758465,lightsalmon:16752762,lightseagreen:2142890,lightskyblue:8900346,lightslategray:7833753,lightslategrey:7833753,lightsteelblue:11584734,lightyellow:16777184,lime:65280,limegreen:3329330,linen:16445670,magenta:16711935,maroon:8388608,mediumaquamarine:6737322,mediumblue:205,mediumorchid:12211667,mediumpurple:9662683,mediumseagreen:3978097,mediumslateblue:8087790,mediumspringgreen:64154,mediumturquoise:4772300,mediumvioletred:13047173,midnightblue:1644912,mintcream:16121850,mistyrose:16770273,moccasin:16770229,navajowhite:16768685,navy:128,oldlace:16643558,olive:8421376,olivedrab:7048739,orange:16753920,orangered:16729344,orchid:14315734,palegoldenrod:15657130,palegreen:10025880,paleturquoise:11529966,palevioletred:14381203,papayawhip:16773077,peachpuff:16767673,peru:13468991,pink:16761035,plum:14524637,powderblue:11591910,purple:8388736,rebeccapurple:6697881,red:16711680,rosybrown:12357519,royalblue:4286945,saddlebrown:9127187,salmon:16416882,sandybrown:16032864,seagreen:3050327,seashell:16774638,sienna:10506797,silver:12632256,skyblue:8900331,slateblue:6970061,slategray:7372944,slategrey:7372944,snow:16775930,springgreen:65407,steelblue:4620980,tan:13808780,teal:32896,thistle:14204888,tomato:16737095,turquoise:4251856,violet:15631086,wheat:16113331,white:16777215,whitesmoke:16119285,yellow:16776960,yellowgreen:10145074},Ln={h:0,s:0,l:0},xs={h:0,s:0,l:0};function Pr(i,t,e){return e<0&&(e+=1),e>1&&(e-=1),e<1/6?i+(t-i)*6*e:e<1/2?t:e<2/3?i+(t-i)*6*(2/3-e):i}class xt{constructor(t,e,n){return this.isColor=!0,this.r=1,this.g=1,this.b=1,this.set(t,e,n)}set(t,e,n){if(e===void 0&&n===void 0){const s=t;s&&s.isColor?this.copy(s):typeof s=="number"?this.setHex(s):typeof s=="string"&&this.setStyle(s)}else this.setRGB(t,e,n);return this}setScalar(t){return this.r=t,this.g=t,this.b=t,this}setHex(t,e=$e){return t=Math.floor(t),this.r=(t>>16&255)/255,this.g=(t>>8&255)/255,this.b=(t&255)/255,$t.toWorkingColorSpace(this,e),this}setRGB(t,e,n,s=$t.workingColorSpace){return this.r=t,this.g=e,this.b=n,$t.toWorkingColorSpace(this,s),this}setHSL(t,e,n,s=$t.workingColorSpace){if(t=vh(t,1),e=Gt(e,0,1),n=Gt(n,0,1),e===0)this.r=this.g=this.b=n;else{const r=n<=.5?n*(1+e):n+e-n*e,a=2*n-r;this.r=Pr(a,r,t+1/3),this.g=Pr(a,r,t),this.b=Pr(a,r,t-1/3)}return $t.toWorkingColorSpace(this,s),this}setStyle(t,e=$e){function n(r){r!==void 0&&parseFloat(r)<1&&console.warn("THREE.Color: Alpha component of "+t+" will be ignored.")}let s;if(s=/^(\w+)\(([^\)]*)\)/.exec(t)){let r;const a=s[1],o=s[2];switch(a){case"rgb":case"rgba":if(r=/^\s*(\d+)\s*,\s*(\d+)\s*,\s*(\d+)\s*(?:,\s*(\d*\.?\d+)\s*)?$/.exec(o))return n(r[4]),this.setRGB(Math.min(255,parseInt(r[1],10))/255,Math.min(255,parseInt(r[2],10))/255,Math.min(255,parseInt(r[3],10))/255,e);if(r=/^\s*(\d+)\%\s*,\s*(\d+)\%\s*,\s*(\d+)\%\s*(?:,\s*(\d*\.?\d+)\s*)?$/.exec(o))return n(r[4]),this.setRGB(Math.min(100,parseInt(r[1],10))/100,Math.min(100,parseInt(r[2],10))/100,Math.min(100,parseInt(r[3],10))/100,e);break;case"hsl":case"hsla":if(r=/^\s*(\d*\.?\d+)\s*,\s*(\d*\.?\d+)\%\s*,\s*(\d*\.?\d+)\%\s*(?:,\s*(\d*\.?\d+)\s*)?$/.exec(o))return n(r[4]),this.setHSL(parseFloat(r[1])/360,parseFloat(r[2])/100,parseFloat(r[3])/100,e);break;default:console.warn("THREE.Color: Unknown color model "+t)}}else if(s=/^\#([A-Fa-f\d]+)$/.exec(t)){const r=s[1],a=r.length;if(a===3)return this.setRGB(parseInt(r.charAt(0),16)/15,parseInt(r.charAt(1),16)/15,parseInt(r.charAt(2),16)/15,e);if(a===6)return this.setHex(parseInt(r,16),e);console.warn("THREE.Color: Invalid hex color "+t)}else if(t&&t.length>0)return this.setColorName(t,e);return this}setColorName(t,e=$e){const n=$l[t.toLowerCase()];return n!==void 0?this.setHex(n,e):console.warn("THREE.Color: Unknown color "+t),this}clone(){return new this.constructor(this.r,this.g,this.b)}copy(t){return this.r=t.r,this.g=t.g,this.b=t.b,this}copySRGBToLinear(t){return this.r=An(t.r),this.g=An(t.g),this.b=An(t.b),this}copyLinearToSRGB(t){return this.r=Ii(t.r),this.g=Ii(t.g),this.b=Ii(t.b),this}convertSRGBToLinear(){return this.copySRGBToLinear(this),this}convertLinearToSRGB(){return this.copyLinearToSRGB(this),this}getHex(t=$e){return $t.fromWorkingColorSpace(Re.copy(this),t),Math.round(Gt(Re.r*255,0,255))*65536+Math.round(Gt(Re.g*255,0,255))*256+Math.round(Gt(Re.b*255,0,255))}getHexString(t=$e){return("000000"+this.getHex(t).toString(16)).slice(-6)}getHSL(t,e=$t.workingColorSpace){$t.fromWorkingColorSpace(Re.copy(this),e);const n=Re.r,s=Re.g,r=Re.b,a=Math.max(n,s,r),o=Math.min(n,s,r);let l,c;const h=(o+a)/2;if(o===a)l=0,c=0;else{const d=a-o;switch(c=h<=.5?d/(a+o):d/(2-a-o),a){case n:l=(s-r)/d+(s<r?6:0);break;case s:l=(r-n)/d+2;break;case r:l=(n-s)/d+4;break}l/=6}return t.h=l,t.s=c,t.l=h,t}getRGB(t,e=$t.workingColorSpace){return $t.fromWorkingColorSpace(Re.copy(this),e),t.r=Re.r,t.g=Re.g,t.b=Re.b,t}getStyle(t=$e){$t.fromWorkingColorSpace(Re.copy(this),t);const e=Re.r,n=Re.g,s=Re.b;return t!==$e?`color(${t} ${e.toFixed(3)} ${n.toFixed(3)} ${s.toFixed(3)})`:`rgb(${Math.round(e*255)},${Math.round(n*255)},${Math.round(s*255)})`}offsetHSL(t,e,n){return this.getHSL(Ln),this.setHSL(Ln.h+t,Ln.s+e,Ln.l+n)}add(t){return this.r+=t.r,this.g+=t.g,this.b+=t.b,this}addColors(t,e){return this.r=t.r+e.r,this.g=t.g+e.g,this.b=t.b+e.b,this}addScalar(t){return this.r+=t,this.g+=t,this.b+=t,this}sub(t){return this.r=Math.max(0,this.r-t.r),this.g=Math.max(0,this.g-t.g),this.b=Math.max(0,this.b-t.b),this}multiply(t){return this.r*=t.r,this.g*=t.g,this.b*=t.b,this}multiplyScalar(t){return this.r*=t,this.g*=t,this.b*=t,this}lerp(t,e){return this.r+=(t.r-this.r)*e,this.g+=(t.g-this.g)*e,this.b+=(t.b-this.b)*e,this}lerpColors(t,e,n){return this.r=t.r+(e.r-t.r)*n,this.g=t.g+(e.g-t.g)*n,this.b=t.b+(e.b-t.b)*n,this}lerpHSL(t,e){this.getHSL(Ln),t.getHSL(xs);const n=fr(Ln.h,xs.h,e),s=fr(Ln.s,xs.s,e),r=fr(Ln.l,xs.l,e);return this.setHSL(n,s,r),this}setFromVector3(t){return this.r=t.x,this.g=t.y,this.b=t.z,this}applyMatrix3(t){const e=this.r,n=this.g,s=this.b,r=t.elements;return this.r=r[0]*e+r[3]*n+r[6]*s,this.g=r[1]*e+r[4]*n+r[7]*s,this.b=r[2]*e+r[5]*n+r[8]*s,this}equals(t){return t.r===this.r&&t.g===this.g&&t.b===this.b}fromArray(t,e=0){return this.r=t[e],this.g=t[e+1],this.b=t[e+2],this}toArray(t=[],e=0){return t[e]=this.r,t[e+1]=this.g,t[e+2]=this.b,t}fromBufferAttribute(t,e){return this.r=t.getX(e),this.g=t.getY(e),this.b=t.getZ(e),this}toJSON(){return this.getHex()}*[Symbol.iterator](){yield this.r,yield this.g,yield this.b}}const Re=new xt;xt.NAMES=$l;let Oh=0;class Hn extends ii{constructor(){super(),this.isMaterial=!0,Object.defineProperty(this,"id",{value:Oh++}),this.uuid=Bn(),this.name="",this.type="Material",this.blending=Li,this.side=zn,this.vertexColors=!1,this.opacity=1,this.transparent=!1,this.alphaHash=!1,this.blendSrc=Zr,this.blendDst=Kr,this.blendEquation=Kn,this.blendSrcAlpha=null,this.blendDstAlpha=null,this.blendEquationAlpha=null,this.blendColor=new xt(0,0,0),this.blendAlpha=0,this.depthFunc=Ni,this.depthTest=!0,this.depthWrite=!0,this.stencilWriteMask=255,this.stencilFunc=fo,this.stencilRef=0,this.stencilFuncMask=255,this.stencilFail=oi,this.stencilZFail=oi,this.stencilZPass=oi,this.stencilWrite=!1,this.clippingPlanes=null,this.clipIntersection=!1,this.clipShadows=!1,this.shadowSide=null,this.colorWrite=!0,this.precision=null,this.polygonOffset=!1,this.polygonOffsetFactor=0,this.polygonOffsetUnits=0,this.dithering=!1,this.alphaToCoverage=!1,this.premultipliedAlpha=!1,this.forceSinglePass=!1,this.visible=!0,this.toneMapped=!0,this.userData={},this.version=0,this._alphaTest=0}get alphaTest(){return this._alphaTest}set alphaTest(t){this._alphaTest>0!=t>0&&this.version++,this._alphaTest=t}onBeforeRender(){}onBeforeCompile(){}customProgramCacheKey(){return this.onBeforeCompile.toString()}setValues(t){if(t!==void 0)for(const e in t){const n=t[e];if(n===void 0){console.warn(`THREE.Material: parameter '${e}' has value of undefined.`);continue}const s=this[e];if(s===void 0){console.warn(`THREE.Material: '${e}' is not a property of THREE.${this.type}.`);continue}s&&s.isColor?s.set(n):s&&s.isVector3&&n&&n.isVector3?s.copy(n):this[e]=n}}toJSON(t){const e=t===void 0||typeof t=="string";e&&(t={textures:{},images:{}});const n={metadata:{version:4.6,type:"Material",generator:"Material.toJSON"}};n.uuid=this.uuid,n.type=this.type,this.name!==""&&(n.name=this.name),this.color&&this.color.isColor&&(n.color=this.color.getHex()),this.roughness!==void 0&&(n.roughness=this.roughness),this.metalness!==void 0&&(n.metalness=this.metalness),this.sheen!==void 0&&(n.sheen=this.sheen),this.sheenColor&&this.sheenColor.isColor&&(n.sheenColor=this.sheenColor.getHex()),this.sheenRoughness!==void 0&&(n.sheenRoughness=this.sheenRoughness),this.emissive&&this.emissive.isColor&&(n.emissive=this.emissive.getHex()),this.emissiveIntensity!==void 0&&this.emissiveIntensity!==1&&(n.emissiveIntensity=this.emissiveIntensity),this.specular&&this.specular.isColor&&(n.specular=this.specular.getHex()),this.specularIntensity!==void 0&&(n.specularIntensity=this.specularIntensity),this.specularColor&&this.specularColor.isColor&&(n.specularColor=this.specularColor.getHex()),this.shininess!==void 0&&(n.shininess=this.shininess),this.clearcoat!==void 0&&(n.clearcoat=this.clearcoat),this.clearcoatRoughness!==void 0&&(n.clearcoatRoughness=this.clearcoatRoughness),this.clearcoatMap&&this.clearcoatMap.isTexture&&(n.clearcoatMap=this.clearcoatMap.toJSON(t).uuid),this.clearcoatRoughnessMap&&this.clearcoatRoughnessMap.isTexture&&(n.clearcoatRoughnessMap=this.clearcoatRoughnessMap.toJSON(t).uuid),this.clearcoatNormalMap&&this.clearcoatNormalMap.isTexture&&(n.clearcoatNormalMap=this.clearcoatNormalMap.toJSON(t).uuid,n.clearcoatNormalScale=this.clearcoatNormalScale.toArray()),this.dispersion!==void 0&&(n.dispersion=this.dispersion),this.iridescence!==void 0&&(n.iridescence=this.iridescence),this.iridescenceIOR!==void 0&&(n.iridescenceIOR=this.iridescenceIOR),this.iridescenceThicknessRange!==void 0&&(n.iridescenceThicknessRange=this.iridescenceThicknessRange),this.iridescenceMap&&this.iridescenceMap.isTexture&&(n.iridescenceMap=this.iridescenceMap.toJSON(t).uuid),this.iridescenceThicknessMap&&this.iridescenceThicknessMap.isTexture&&(n.iridescenceThicknessMap=this.iridescenceThicknessMap.toJSON(t).uuid),this.anisotropy!==void 0&&(n.anisotropy=this.anisotropy),this.anisotropyRotation!==void 0&&(n.anisotropyRotation=this.anisotropyRotation),this.anisotropyMap&&this.anisotropyMap.isTexture&&(n.anisotropyMap=this.anisotropyMap.toJSON(t).uuid),this.map&&this.map.isTexture&&(n.map=this.map.toJSON(t).uuid),this.matcap&&this.matcap.isTexture&&(n.matcap=this.matcap.toJSON(t).uuid),this.alphaMap&&this.alphaMap.isTexture&&(n.alphaMap=this.alphaMap.toJSON(t).uuid),this.lightMap&&this.lightMap.isTexture&&(n.lightMap=this.lightMap.toJSON(t).uuid,n.lightMapIntensity=this.lightMapIntensity),this.aoMap&&this.aoMap.isTexture&&(n.aoMap=this.aoMap.toJSON(t).uuid,n.aoMapIntensity=this.aoMapIntensity),this.bumpMap&&this.bumpMap.isTexture&&(n.bumpMap=this.bumpMap.toJSON(t).uuid,n.bumpScale=this.bumpScale),this.normalMap&&this.normalMap.isTexture&&(n.normalMap=this.normalMap.toJSON(t).uuid,n.normalMapType=this.normalMapType,n.normalScale=this.normalScale.toArray()),this.displacementMap&&this.displacementMap.isTexture&&(n.displacementMap=this.displacementMap.toJSON(t).uuid,n.displacementScale=this.displacementScale,n.displacementBias=this.displacementBias),this.roughnessMap&&this.roughnessMap.isTexture&&(n.roughnessMap=this.roughnessMap.toJSON(t).uuid),this.metalnessMap&&this.metalnessMap.isTexture&&(n.metalnessMap=this.metalnessMap.toJSON(t).uuid),this.emissiveMap&&this.emissiveMap.isTexture&&(n.emissiveMap=this.emissiveMap.toJSON(t).uuid),this.specularMap&&this.specularMap.isTexture&&(n.specularMap=this.specularMap.toJSON(t).uuid),this.specularIntensityMap&&this.specularIntensityMap.isTexture&&(n.specularIntensityMap=this.specularIntensityMap.toJSON(t).uuid),this.specularColorMap&&this.specularColorMap.isTexture&&(n.specularColorMap=this.specularColorMap.toJSON(t).uuid),this.envMap&&this.envMap.isTexture&&(n.envMap=this.envMap.toJSON(t).uuid,this.combine!==void 0&&(n.combine=this.combine)),this.envMapRotation!==void 0&&(n.envMapRotation=this.envMapRotation.toArray()),this.envMapIntensity!==void 0&&(n.envMapIntensity=this.envMapIntensity),this.reflectivity!==void 0&&(n.reflectivity=this.reflectivity),this.refractionRatio!==void 0&&(n.refractionRatio=this.refractionRatio),this.gradientMap&&this.gradientMap.isTexture&&(n.gradientMap=this.gradientMap.toJSON(t).uuid),this.transmission!==void 0&&(n.transmission=this.transmission),this.transmissionMap&&this.transmissionMap.isTexture&&(n.transmissionMap=this.transmissionMap.toJSON(t).uuid),this.thickness!==void 0&&(n.thickness=this.thickness),this.thicknessMap&&this.thicknessMap.isTexture&&(n.thicknessMap=this.thicknessMap.toJSON(t).uuid),this.attenuationDistance!==void 0&&this.attenuationDistance!==1/0&&(n.attenuationDistance=this.attenuationDistance),this.attenuationColor!==void 0&&(n.attenuationColor=this.attenuationColor.getHex()),this.size!==void 0&&(n.size=this.size),this.shadowSide!==null&&(n.shadowSide=this.shadowSide),this.sizeAttenuation!==void 0&&(n.sizeAttenuation=this.sizeAttenuation),this.blending!==Li&&(n.blending=this.blending),this.side!==zn&&(n.side=this.side),this.vertexColors===!0&&(n.vertexColors=!0),this.opacity<1&&(n.opacity=this.opacity),this.transparent===!0&&(n.transparent=!0),this.blendSrc!==Zr&&(n.blendSrc=this.blendSrc),this.blendDst!==Kr&&(n.blendDst=this.blendDst),this.blendEquation!==Kn&&(n.blendEquation=this.blendEquation),this.blendSrcAlpha!==null&&(n.blendSrcAlpha=this.blendSrcAlpha),this.blendDstAlpha!==null&&(n.blendDstAlpha=this.blendDstAlpha),this.blendEquationAlpha!==null&&(n.blendEquationAlpha=this.blendEquationAlpha),this.blendColor&&this.blendColor.isColor&&(n.blendColor=this.blendColor.getHex()),this.blendAlpha!==0&&(n.blendAlpha=this.blendAlpha),this.depthFunc!==Ni&&(n.depthFunc=this.depthFunc),this.depthTest===!1&&(n.depthTest=this.depthTest),this.depthWrite===!1&&(n.depthWrite=this.depthWrite),this.colorWrite===!1&&(n.colorWrite=this.colorWrite),this.stencilWriteMask!==255&&(n.stencilWriteMask=this.stencilWriteMask),this.stencilFunc!==fo&&(n.stencilFunc=this.stencilFunc),this.stencilRef!==0&&(n.stencilRef=this.stencilRef),this.stencilFuncMask!==255&&(n.stencilFuncMask=this.stencilFuncMask),this.stencilFail!==oi&&(n.stencilFail=this.stencilFail),this.stencilZFail!==oi&&(n.stencilZFail=this.stencilZFail),this.stencilZPass!==oi&&(n.stencilZPass=this.stencilZPass),this.stencilWrite===!0&&(n.stencilWrite=this.stencilWrite),this.rotation!==void 0&&this.rotation!==0&&(n.rotation=this.rotation),this.polygonOffset===!0&&(n.polygonOffset=!0),this.polygonOffsetFactor!==0&&(n.polygonOffsetFactor=this.polygonOffsetFactor),this.polygonOffsetUnits!==0&&(n.polygonOffsetUnits=this.polygonOffsetUnits),this.linewidth!==void 0&&this.linewidth!==1&&(n.linewidth=this.linewidth),this.dashSize!==void 0&&(n.dashSize=this.dashSize),this.gapSize!==void 0&&(n.gapSize=this.gapSize),this.scale!==void 0&&(n.scale=this.scale),this.dithering===!0&&(n.dithering=!0),this.alphaTest>0&&(n.alphaTest=this.alphaTest),this.alphaHash===!0&&(n.alphaHash=!0),this.alphaToCoverage===!0&&(n.alphaToCoverage=!0),this.premultipliedAlpha===!0&&(n.premultipliedAlpha=!0),this.forceSinglePass===!0&&(n.forceSinglePass=!0),this.wireframe===!0&&(n.wireframe=!0),this.wireframeLinewidth>1&&(n.wireframeLinewidth=this.wireframeLinewidth),this.wireframeLinecap!=="round"&&(n.wireframeLinecap=this.wireframeLinecap),this.wireframeLinejoin!=="round"&&(n.wireframeLinejoin=this.wireframeLinejoin),this.flatShading===!0&&(n.flatShading=!0),this.visible===!1&&(n.visible=!1),this.toneMapped===!1&&(n.toneMapped=!1),this.fog===!1&&(n.fog=!1),Object.keys(this.userData).length>0&&(n.userData=this.userData);function s(r){const a=[];for(const o in r){const l=r[o];delete l.metadata,a.push(l)}return a}if(e){const r=s(t.textures),a=s(t.images);r.length>0&&(n.textures=r),a.length>0&&(n.images=a)}return n}clone(){return new this.constructor().copy(this)}copy(t){this.name=t.name,this.blending=t.blending,this.side=t.side,this.vertexColors=t.vertexColors,this.opacity=t.opacity,this.transparent=t.transparent,this.blendSrc=t.blendSrc,this.blendDst=t.blendDst,this.blendEquation=t.blendEquation,this.blendSrcAlpha=t.blendSrcAlpha,this.blendDstAlpha=t.blendDstAlpha,this.blendEquationAlpha=t.blendEquationAlpha,this.blendColor.copy(t.blendColor),this.blendAlpha=t.blendAlpha,this.depthFunc=t.depthFunc,this.depthTest=t.depthTest,this.depthWrite=t.depthWrite,this.stencilWriteMask=t.stencilWriteMask,this.stencilFunc=t.stencilFunc,this.stencilRef=t.stencilRef,this.stencilFuncMask=t.stencilFuncMask,this.stencilFail=t.stencilFail,this.stencilZFail=t.stencilZFail,this.stencilZPass=t.stencilZPass,this.stencilWrite=t.stencilWrite;const e=t.clippingPlanes;let n=null;if(e!==null){const s=e.length;n=new Array(s);for(let r=0;r!==s;++r)n[r]=e[r].clone()}return this.clippingPlanes=n,this.clipIntersection=t.clipIntersection,this.clipShadows=t.clipShadows,this.shadowSide=t.shadowSide,this.colorWrite=t.colorWrite,this.precision=t.precision,this.polygonOffset=t.polygonOffset,this.polygonOffsetFactor=t.polygonOffsetFactor,this.polygonOffsetUnits=t.polygonOffsetUnits,this.dithering=t.dithering,this.alphaTest=t.alphaTest,this.alphaHash=t.alphaHash,this.alphaToCoverage=t.alphaToCoverage,this.premultipliedAlpha=t.premultipliedAlpha,this.forceSinglePass=t.forceSinglePass,this.visible=t.visible,this.toneMapped=t.toneMapped,this.userData=JSON.parse(JSON.stringify(t.userData)),this}dispose(){this.dispatchEvent({type:"dispose"})}set needsUpdate(t){t===!0&&this.version++}onBuild(){console.warn("Material: onBuild() has been removed.")}}class or extends Hn{constructor(t){super(),this.isMeshBasicMaterial=!0,this.type="MeshBasicMaterial",this.color=new xt(16777215),this.map=null,this.lightMap=null,this.lightMapIntensity=1,this.aoMap=null,this.aoMapIntensity=1,this.specularMap=null,this.alphaMap=null,this.envMap=null,this.envMapRotation=new pn,this.combine=Il,this.reflectivity=1,this.refractionRatio=.98,this.wireframe=!1,this.wireframeLinewidth=1,this.wireframeLinecap="round",this.wireframeLinejoin="round",this.fog=!0,this.setValues(t)}copy(t){return super.copy(t),this.color.copy(t.color),this.map=t.map,this.lightMap=t.lightMap,this.lightMapIntensity=t.lightMapIntensity,this.aoMap=t.aoMap,this.aoMapIntensity=t.aoMapIntensity,this.specularMap=t.specularMap,this.alphaMap=t.alphaMap,this.envMap=t.envMap,this.envMapRotation.copy(t.envMapRotation),this.combine=t.combine,this.reflectivity=t.reflectivity,this.refractionRatio=t.refractionRatio,this.wireframe=t.wireframe,this.wireframeLinewidth=t.wireframeLinewidth,this.wireframeLinecap=t.wireframeLinecap,this.wireframeLinejoin=t.wireframeLinejoin,this.fog=t.fog,this}}const pe=new P,Ms=new gt;class Se{constructor(t,e,n=!1){if(Array.isArray(t))throw new TypeError("THREE.BufferAttribute: array should be a Typed Array.");this.isBufferAttribute=!0,this.name="",this.array=t,this.itemSize=e,this.count=t!==void 0?t.length/e:0,this.normalized=n,this.usage=Ia,this.updateRanges=[],this.gpuType=dn,this.version=0}onUploadCallback(){}set needsUpdate(t){t===!0&&this.version++}setUsage(t){return this.usage=t,this}addUpdateRange(t,e){this.updateRanges.push({start:t,count:e})}clearUpdateRanges(){this.updateRanges.length=0}copy(t){return this.name=t.name,this.array=new t.array.constructor(t.array),this.itemSize=t.itemSize,this.count=t.count,this.normalized=t.normalized,this.usage=t.usage,this.gpuType=t.gpuType,this}copyAt(t,e,n){t*=this.itemSize,n*=e.itemSize;for(let s=0,r=this.itemSize;s<r;s++)this.array[t+s]=e.array[n+s];return this}copyArray(t){return this.array.set(t),this}applyMatrix3(t){if(this.itemSize===2)for(let e=0,n=this.count;e<n;e++)Ms.fromBufferAttribute(this,e),Ms.applyMatrix3(t),this.setXY(e,Ms.x,Ms.y);else if(this.itemSize===3)for(let e=0,n=this.count;e<n;e++)pe.fromBufferAttribute(this,e),pe.applyMatrix3(t),this.setXYZ(e,pe.x,pe.y,pe.z);return this}applyMatrix4(t){for(let e=0,n=this.count;e<n;e++)pe.fromBufferAttribute(this,e),pe.applyMatrix4(t),this.setXYZ(e,pe.x,pe.y,pe.z);return this}applyNormalMatrix(t){for(let e=0,n=this.count;e<n;e++)pe.fromBufferAttribute(this,e),pe.applyNormalMatrix(t),this.setXYZ(e,pe.x,pe.y,pe.z);return this}transformDirection(t){for(let e=0,n=this.count;e<n;e++)pe.fromBufferAttribute(this,e),pe.transformDirection(t),this.setXYZ(e,pe.x,pe.y,pe.z);return this}set(t,e=0){return this.array.set(t,e),this}getComponent(t,e){let n=this.array[t*this.itemSize+e];return this.normalized&&(n=hn(n,this.array)),n}setComponent(t,e,n){return this.normalized&&(n=re(n,this.array)),this.array[t*this.itemSize+e]=n,this}getX(t){let e=this.array[t*this.itemSize];return this.normalized&&(e=hn(e,this.array)),e}setX(t,e){return this.normalized&&(e=re(e,this.array)),this.array[t*this.itemSize]=e,this}getY(t){let e=this.array[t*this.itemSize+1];return this.normalized&&(e=hn(e,this.array)),e}setY(t,e){return this.normalized&&(e=re(e,this.array)),this.array[t*this.itemSize+1]=e,this}getZ(t){let e=this.array[t*this.itemSize+2];return this.normalized&&(e=hn(e,this.array)),e}setZ(t,e){return this.normalized&&(e=re(e,this.array)),this.array[t*this.itemSize+2]=e,this}getW(t){let e=this.array[t*this.itemSize+3];return this.normalized&&(e=hn(e,this.array)),e}setW(t,e){return this.normalized&&(e=re(e,this.array)),this.array[t*this.itemSize+3]=e,this}setXY(t,e,n){return t*=this.itemSize,this.normalized&&(e=re(e,this.array),n=re(n,this.array)),this.array[t+0]=e,this.array[t+1]=n,this}setXYZ(t,e,n,s){return t*=this.itemSize,this.normalized&&(e=re(e,this.array),n=re(n,this.array),s=re(s,this.array)),this.array[t+0]=e,this.array[t+1]=n,this.array[t+2]=s,this}setXYZW(t,e,n,s,r){return t*=this.itemSize,this.normalized&&(e=re(e,this.array),n=re(n,this.array),s=re(s,this.array),r=re(r,this.array)),this.array[t+0]=e,this.array[t+1]=n,this.array[t+2]=s,this.array[t+3]=r,this}onUpload(t){return this.onUploadCallback=t,this}clone(){return new this.constructor(this.array,this.itemSize).copy(this)}toJSON(){const t={itemSize:this.itemSize,type:this.array.constructor.name,array:Array.from(this.array),normalized:this.normalized};return this.name!==""&&(t.name=this.name),this.usage!==Ia&&(t.usage=this.usage),t}}class Jl extends Se{constructor(t,e,n){super(new Uint16Array(t),e,n)}}class Ql extends Se{constructor(t,e,n){super(new Uint32Array(t),e,n)}}class Pe extends Se{constructor(t,e,n){super(new Float32Array(t),e,n)}}let Bh=0;const Ze=new ee,Dr=new be,gi=new P,Ve=new si,Zi=new si,Me=new P;class Ee extends ii{constructor(){super(),this.isBufferGeometry=!0,Object.defineProperty(this,"id",{value:Bh++}),this.uuid=Bn(),this.name="",this.type="BufferGeometry",this.index=null,this.indirect=null,this.attributes={},this.morphAttributes={},this.morphTargetsRelative=!1,this.groups=[],this.boundingBox=null,this.boundingSphere=null,this.drawRange={start:0,count:1/0},this.userData={}}getIndex(){return this.index}setIndex(t){return Array.isArray(t)?this.index=new(jl(t)?Ql:Jl)(t,1):this.index=t,this}setIndirect(t){return this.indirect=t,this}getIndirect(){return this.indirect}getAttribute(t){return this.attributes[t]}setAttribute(t,e){return this.attributes[t]=e,this}deleteAttribute(t){return delete this.attributes[t],this}hasAttribute(t){return this.attributes[t]!==void 0}addGroup(t,e,n=0){this.groups.push({start:t,count:e,materialIndex:n})}clearGroups(){this.groups=[]}setDrawRange(t,e){this.drawRange.start=t,this.drawRange.count=e}applyMatrix4(t){const e=this.attributes.position;e!==void 0&&(e.applyMatrix4(t),e.needsUpdate=!0);const n=this.attributes.normal;if(n!==void 0){const r=new zt().getNormalMatrix(t);n.applyNormalMatrix(r),n.needsUpdate=!0}const s=this.attributes.tangent;return s!==void 0&&(s.transformDirection(t),s.needsUpdate=!0),this.boundingBox!==null&&this.computeBoundingBox(),this.boundingSphere!==null&&this.computeBoundingSphere(),this}applyQuaternion(t){return Ze.makeRotationFromQuaternion(t),this.applyMatrix4(Ze),this}rotateX(t){return Ze.makeRotationX(t),this.applyMatrix4(Ze),this}rotateY(t){return Ze.makeRotationY(t),this.applyMatrix4(Ze),this}rotateZ(t){return Ze.makeRotationZ(t),this.applyMatrix4(Ze),this}translate(t,e,n){return Ze.makeTranslation(t,e,n),this.applyMatrix4(Ze),this}scale(t,e,n){return Ze.makeScale(t,e,n),this.applyMatrix4(Ze),this}lookAt(t){return Dr.lookAt(t),Dr.updateMatrix(),this.applyMatrix4(Dr.matrix),this}center(){return this.computeBoundingBox(),this.boundingBox.getCenter(gi).negate(),this.translate(gi.x,gi.y,gi.z),this}setFromPoints(t){const e=this.getAttribute("position");if(e===void 0){const n=[];for(let s=0,r=t.length;s<r;s++){const a=t[s];n.push(a.x,a.y,a.z||0)}this.setAttribute("position",new Pe(n,3))}else{const n=Math.min(t.length,e.count);for(let s=0;s<n;s++){const r=t[s];e.setXYZ(s,r.x,r.y,r.z||0)}t.length>e.count&&console.warn("THREE.BufferGeometry: Buffer size too small for points data. Use .dispose() and create a new geometry."),e.needsUpdate=!0}return this}computeBoundingBox(){this.boundingBox===null&&(this.boundingBox=new si);const t=this.attributes.position,e=this.morphAttributes.position;if(t&&t.isGLBufferAttribute){console.error("THREE.BufferGeometry.computeBoundingBox(): GLBufferAttribute requires a manual bounding box.",this),this.boundingBox.set(new P(-1/0,-1/0,-1/0),new P(1/0,1/0,1/0));return}if(t!==void 0){if(this.boundingBox.setFromBufferAttribute(t),e)for(let n=0,s=e.length;n<s;n++){const r=e[n];Ve.setFromBufferAttribute(r),this.morphTargetsRelative?(Me.addVectors(this.boundingBox.min,Ve.min),this.boundingBox.expandByPoint(Me),Me.addVectors(this.boundingBox.max,Ve.max),this.boundingBox.expandByPoint(Me)):(this.boundingBox.expandByPoint(Ve.min),this.boundingBox.expandByPoint(Ve.max))}}else this.boundingBox.makeEmpty();(isNaN(this.boundingBox.min.x)||isNaN(this.boundingBox.min.y)||isNaN(this.boundingBox.min.z))&&console.error('THREE.BufferGeometry.computeBoundingBox(): Computed min/max have NaN values. The "position" attribute is likely to have NaN values.',this)}computeBoundingSphere(){this.boundingSphere===null&&(this.boundingSphere=new ri);const t=this.attributes.position,e=this.morphAttributes.position;if(t&&t.isGLBufferAttribute){console.error("THREE.BufferGeometry.computeBoundingSphere(): GLBufferAttribute requires a manual bounding sphere.",this),this.boundingSphere.set(new P,1/0);return}if(t){const n=this.boundingSphere.center;if(Ve.setFromBufferAttribute(t),e)for(let r=0,a=e.length;r<a;r++){const o=e[r];Zi.setFromBufferAttribute(o),this.morphTargetsRelative?(Me.addVectors(Ve.min,Zi.min),Ve.expandByPoint(Me),Me.addVectors(Ve.max,Zi.max),Ve.expandByPoint(Me)):(Ve.expandByPoint(Zi.min),Ve.expandByPoint(Zi.max))}Ve.getCenter(n);let s=0;for(let r=0,a=t.count;r<a;r++)Me.fromBufferAttribute(t,r),s=Math.max(s,n.distanceToSquared(Me));if(e)for(let r=0,a=e.length;r<a;r++){const o=e[r],l=this.morphTargetsRelative;for(let c=0,h=o.count;c<h;c++)Me.fromBufferAttribute(o,c),l&&(gi.fromBufferAttribute(t,c),Me.add(gi)),s=Math.max(s,n.distanceToSquared(Me))}this.boundingSphere.radius=Math.sqrt(s),isNaN(this.boundingSphere.radius)&&console.error('THREE.BufferGeometry.computeBoundingSphere(): Computed radius is NaN. The "position" attribute is likely to have NaN values.',this)}}computeTangents(){const t=this.index,e=this.attributes;if(t===null||e.position===void 0||e.normal===void 0||e.uv===void 0){console.error("THREE.BufferGeometry: .computeTangents() failed. Missing required attributes (index, position, normal or uv)");return}const n=e.position,s=e.normal,r=e.uv;this.hasAttribute("tangent")===!1&&this.setAttribute("tangent",new Se(new Float32Array(4*n.count),4));const a=this.getAttribute("tangent"),o=[],l=[];for(let N=0;N<n.count;N++)o[N]=new P,l[N]=new P;const c=new P,h=new P,d=new P,f=new gt,m=new gt,g=new gt,x=new P,p=new P;function u(N,y,M){c.fromBufferAttribute(n,N),h.fromBufferAttribute(n,y),d.fromBufferAttribute(n,M),f.fromBufferAttribute(r,N),m.fromBufferAttribute(r,y),g.fromBufferAttribute(r,M),h.sub(c),d.sub(c),m.sub(f),g.sub(f);const C=1/(m.x*g.y-g.x*m.y);isFinite(C)&&(x.copy(h).multiplyScalar(g.y).addScaledVector(d,-m.y).multiplyScalar(C),p.copy(d).multiplyScalar(m.x).addScaledVector(h,-g.x).multiplyScalar(C),o[N].add(x),o[y].add(x),o[M].add(x),l[N].add(p),l[y].add(p),l[M].add(p))}let b=this.groups;b.length===0&&(b=[{start:0,count:t.count}]);for(let N=0,y=b.length;N<y;++N){const M=b[N],C=M.start,W=M.count;for(let z=C,V=C+W;z<V;z+=3)u(t.getX(z+0),t.getX(z+1),t.getX(z+2))}const E=new P,S=new P,D=new P,A=new P;function w(N){D.fromBufferAttribute(s,N),A.copy(D);const y=o[N];E.copy(y),E.sub(D.multiplyScalar(D.dot(y))).normalize(),S.crossVectors(A,y);const C=S.dot(l[N])<0?-1:1;a.setXYZW(N,E.x,E.y,E.z,C)}for(let N=0,y=b.length;N<y;++N){const M=b[N],C=M.start,W=M.count;for(let z=C,V=C+W;z<V;z+=3)w(t.getX(z+0)),w(t.getX(z+1)),w(t.getX(z+2))}}computeVertexNormals(){const t=this.index,e=this.getAttribute("position");if(e!==void 0){let n=this.getAttribute("normal");if(n===void 0)n=new Se(new Float32Array(e.count*3),3),this.setAttribute("normal",n);else for(let f=0,m=n.count;f<m;f++)n.setXYZ(f,0,0,0);const s=new P,r=new P,a=new P,o=new P,l=new P,c=new P,h=new P,d=new P;if(t)for(let f=0,m=t.count;f<m;f+=3){const g=t.getX(f+0),x=t.getX(f+1),p=t.getX(f+2);s.fromBufferAttribute(e,g),r.fromBufferAttribute(e,x),a.fromBufferAttribute(e,p),h.subVectors(a,r),d.subVectors(s,r),h.cross(d),o.fromBufferAttribute(n,g),l.fromBufferAttribute(n,x),c.fromBufferAttribute(n,p),o.add(h),l.add(h),c.add(h),n.setXYZ(g,o.x,o.y,o.z),n.setXYZ(x,l.x,l.y,l.z),n.setXYZ(p,c.x,c.y,c.z)}else for(let f=0,m=e.count;f<m;f+=3)s.fromBufferAttribute(e,f+0),r.fromBufferAttribute(e,f+1),a.fromBufferAttribute(e,f+2),h.subVectors(a,r),d.subVectors(s,r),h.cross(d),n.setXYZ(f+0,h.x,h.y,h.z),n.setXYZ(f+1,h.x,h.y,h.z),n.setXYZ(f+2,h.x,h.y,h.z);this.normalizeNormals(),n.needsUpdate=!0}}normalizeNormals(){const t=this.attributes.normal;for(let e=0,n=t.count;e<n;e++)Me.fromBufferAttribute(t,e),Me.normalize(),t.setXYZ(e,Me.x,Me.y,Me.z)}toNonIndexed(){function t(o,l){const c=o.array,h=o.itemSize,d=o.normalized,f=new c.constructor(l.length*h);let m=0,g=0;for(let x=0,p=l.length;x<p;x++){o.isInterleavedBufferAttribute?m=l[x]*o.data.stride+o.offset:m=l[x]*h;for(let u=0;u<h;u++)f[g++]=c[m++]}return new Se(f,h,d)}if(this.index===null)return console.warn("THREE.BufferGeometry.toNonIndexed(): BufferGeometry is already non-indexed."),this;const e=new Ee,n=this.index.array,s=this.attributes;for(const o in s){const l=s[o],c=t(l,n);e.setAttribute(o,c)}const r=this.morphAttributes;for(const o in r){const l=[],c=r[o];for(let h=0,d=c.length;h<d;h++){const f=c[h],m=t(f,n);l.push(m)}e.morphAttributes[o]=l}e.morphTargetsRelative=this.morphTargetsRelative;const a=this.groups;for(let o=0,l=a.length;o<l;o++){const c=a[o];e.addGroup(c.start,c.count,c.materialIndex)}return e}toJSON(){const t={metadata:{version:4.6,type:"BufferGeometry",generator:"BufferGeometry.toJSON"}};if(t.uuid=this.uuid,t.type=this.type,this.name!==""&&(t.name=this.name),Object.keys(this.userData).length>0&&(t.userData=this.userData),this.parameters!==void 0){const l=this.parameters;for(const c in l)l[c]!==void 0&&(t[c]=l[c]);return t}t.data={attributes:{}};const e=this.index;e!==null&&(t.data.index={type:e.array.constructor.name,array:Array.prototype.slice.call(e.array)});const n=this.attributes;for(const l in n){const c=n[l];t.data.attributes[l]=c.toJSON(t.data)}const s={};let r=!1;for(const l in this.morphAttributes){const c=this.morphAttributes[l],h=[];for(let d=0,f=c.length;d<f;d++){const m=c[d];h.push(m.toJSON(t.data))}h.length>0&&(s[l]=h,r=!0)}r&&(t.data.morphAttributes=s,t.data.morphTargetsRelative=this.morphTargetsRelative);const a=this.groups;a.length>0&&(t.data.groups=JSON.parse(JSON.stringify(a)));const o=this.boundingSphere;return o!==null&&(t.data.boundingSphere={center:o.center.toArray(),radius:o.radius}),t}clone(){return new this.constructor().copy(this)}copy(t){this.index=null,this.attributes={},this.morphAttributes={},this.groups=[],this.boundingBox=null,this.boundingSphere=null;const e={};this.name=t.name;const n=t.index;n!==null&&this.setIndex(n.clone(e));const s=t.attributes;for(const c in s){const h=s[c];this.setAttribute(c,h.clone(e))}const r=t.morphAttributes;for(const c in r){const h=[],d=r[c];for(let f=0,m=d.length;f<m;f++)h.push(d[f].clone(e));this.morphAttributes[c]=h}this.morphTargetsRelative=t.morphTargetsRelative;const a=t.groups;for(let c=0,h=a.length;c<h;c++){const d=a[c];this.addGroup(d.start,d.count,d.materialIndex)}const o=t.boundingBox;o!==null&&(this.boundingBox=o.clone());const l=t.boundingSphere;return l!==null&&(this.boundingSphere=l.clone()),this.drawRange.start=t.drawRange.start,this.drawRange.count=t.drawRange.count,this.userData=t.userData,this}dispose(){this.dispatchEvent({type:"dispose"})}}const wo=new ee,Xn=new rs,Ss=new ri,Ro=new P,ys=new P,Es=new P,Ts=new P,Lr=new P,bs=new P,Co=new P,As=new P;class ye extends be{constructor(t=new Ee,e=new or){super(),this.isMesh=!0,this.type="Mesh",this.geometry=t,this.material=e,this.updateMorphTargets()}copy(t,e){return super.copy(t,e),t.morphTargetInfluences!==void 0&&(this.morphTargetInfluences=t.morphTargetInfluences.slice()),t.morphTargetDictionary!==void 0&&(this.morphTargetDictionary=Object.assign({},t.morphTargetDictionary)),this.material=Array.isArray(t.material)?t.material.slice():t.material,this.geometry=t.geometry,this}updateMorphTargets(){const e=this.geometry.morphAttributes,n=Object.keys(e);if(n.length>0){const s=e[n[0]];if(s!==void 0){this.morphTargetInfluences=[],this.morphTargetDictionary={};for(let r=0,a=s.length;r<a;r++){const o=s[r].name||String(r);this.morphTargetInfluences.push(0),this.morphTargetDictionary[o]=r}}}}getVertexPosition(t,e){const n=this.geometry,s=n.attributes.position,r=n.morphAttributes.position,a=n.morphTargetsRelative;e.fromBufferAttribute(s,t);const o=this.morphTargetInfluences;if(r&&o){bs.set(0,0,0);for(let l=0,c=r.length;l<c;l++){const h=o[l],d=r[l];h!==0&&(Lr.fromBufferAttribute(d,t),a?bs.addScaledVector(Lr,h):bs.addScaledVector(Lr.sub(e),h))}e.add(bs)}return e}raycast(t,e){const n=this.geometry,s=this.material,r=this.matrixWorld;s!==void 0&&(n.boundingSphere===null&&n.computeBoundingSphere(),Ss.copy(n.boundingSphere),Ss.applyMatrix4(r),Xn.copy(t.ray).recast(t.near),!(Ss.containsPoint(Xn.origin)===!1&&(Xn.intersectSphere(Ss,Ro)===null||Xn.origin.distanceToSquared(Ro)>(t.far-t.near)**2))&&(wo.copy(r).invert(),Xn.copy(t.ray).applyMatrix4(wo),!(n.boundingBox!==null&&Xn.intersectsBox(n.boundingBox)===!1)&&this._computeIntersections(t,e,Xn)))}_computeIntersections(t,e,n){let s;const r=this.geometry,a=this.material,o=r.index,l=r.attributes.position,c=r.attributes.uv,h=r.attributes.uv1,d=r.attributes.normal,f=r.groups,m=r.drawRange;if(o!==null)if(Array.isArray(a))for(let g=0,x=f.length;g<x;g++){const p=f[g],u=a[p.materialIndex],b=Math.max(p.start,m.start),E=Math.min(o.count,Math.min(p.start+p.count,m.start+m.count));for(let S=b,D=E;S<D;S+=3){const A=o.getX(S),w=o.getX(S+1),N=o.getX(S+2);s=ws(this,u,t,n,c,h,d,A,w,N),s&&(s.faceIndex=Math.floor(S/3),s.face.materialIndex=p.materialIndex,e.push(s))}}else{const g=Math.max(0,m.start),x=Math.min(o.count,m.start+m.count);for(let p=g,u=x;p<u;p+=3){const b=o.getX(p),E=o.getX(p+1),S=o.getX(p+2);s=ws(this,a,t,n,c,h,d,b,E,S),s&&(s.faceIndex=Math.floor(p/3),e.push(s))}}else if(l!==void 0)if(Array.isArray(a))for(let g=0,x=f.length;g<x;g++){const p=f[g],u=a[p.materialIndex],b=Math.max(p.start,m.start),E=Math.min(l.count,Math.min(p.start+p.count,m.start+m.count));for(let S=b,D=E;S<D;S+=3){const A=S,w=S+1,N=S+2;s=ws(this,u,t,n,c,h,d,A,w,N),s&&(s.faceIndex=Math.floor(S/3),s.face.materialIndex=p.materialIndex,e.push(s))}}else{const g=Math.max(0,m.start),x=Math.min(l.count,m.start+m.count);for(let p=g,u=x;p<u;p+=3){const b=p,E=p+1,S=p+2;s=ws(this,a,t,n,c,h,d,b,E,S),s&&(s.faceIndex=Math.floor(p/3),e.push(s))}}}}function zh(i,t,e,n,s,r,a,o){let l;if(t.side===Be?l=n.intersectTriangle(a,r,s,!0,o):l=n.intersectTriangle(s,r,a,t.side===zn,o),l===null)return null;As.copy(o),As.applyMatrix4(i.matrixWorld);const c=e.ray.origin.distanceTo(As);return c<e.near||c>e.far?null:{distance:c,point:As.clone(),object:i}}function ws(i,t,e,n,s,r,a,o,l,c){i.getVertexPosition(o,ys),i.getVertexPosition(l,Es),i.getVertexPosition(c,Ts);const h=zh(i,t,e,n,ys,Es,Ts,Co);if(h){const d=new P;Je.getBarycoord(Co,ys,Es,Ts,d),s&&(h.uv=Je.getInterpolatedAttribute(s,o,l,c,d,new gt)),r&&(h.uv1=Je.getInterpolatedAttribute(r,o,l,c,d,new gt)),a&&(h.normal=Je.getInterpolatedAttribute(a,o,l,c,d,new P),h.normal.dot(n.direction)>0&&h.normal.multiplyScalar(-1));const f={a:o,b:l,c,normal:new P,materialIndex:0};Je.getNormal(ys,Es,Ts,f.normal),h.face=f,h.barycoord=d}return h}class as extends Ee{constructor(t=1,e=1,n=1,s=1,r=1,a=1){super(),this.type="BoxGeometry",this.parameters={width:t,height:e,depth:n,widthSegments:s,heightSegments:r,depthSegments:a};const o=this;s=Math.floor(s),r=Math.floor(r),a=Math.floor(a);const l=[],c=[],h=[],d=[];let f=0,m=0;g("z","y","x",-1,-1,n,e,t,a,r,0),g("z","y","x",1,-1,n,e,-t,a,r,1),g("x","z","y",1,1,t,n,e,s,a,2),g("x","z","y",1,-1,t,n,-e,s,a,3),g("x","y","z",1,-1,t,e,n,s,r,4),g("x","y","z",-1,-1,t,e,-n,s,r,5),this.setIndex(l),this.setAttribute("position",new Pe(c,3)),this.setAttribute("normal",new Pe(h,3)),this.setAttribute("uv",new Pe(d,2));function g(x,p,u,b,E,S,D,A,w,N,y){const M=S/w,C=D/N,W=S/2,z=D/2,V=A/2,K=w+1,G=N+1;let $=0,H=0;const nt=new P;for(let dt=0;dt<G;dt++){const Mt=dt*C-z;for(let Ft=0;Ft<K;Ft++){const Yt=Ft*M-W;nt[x]=Yt*b,nt[p]=Mt*E,nt[u]=V,c.push(nt.x,nt.y,nt.z),nt[x]=0,nt[p]=0,nt[u]=A>0?1:-1,h.push(nt.x,nt.y,nt.z),d.push(Ft/w),d.push(1-dt/N),$+=1}}for(let dt=0;dt<N;dt++)for(let Mt=0;Mt<w;Mt++){const Ft=f+Mt+K*dt,Yt=f+Mt+K*(dt+1),Y=f+(Mt+1)+K*(dt+1),et=f+(Mt+1)+K*dt;l.push(Ft,Yt,et),l.push(Yt,Y,et),H+=6}o.addGroup(m,H,y),m+=H,f+=$}}copy(t){return super.copy(t),this.parameters=Object.assign({},t.parameters),this}static fromJSON(t){return new as(t.width,t.height,t.depth,t.widthSegments,t.heightSegments,t.depthSegments)}}function ki(i){const t={};for(const e in i){t[e]={};for(const n in i[e]){const s=i[e][n];s&&(s.isColor||s.isMatrix3||s.isMatrix4||s.isVector2||s.isVector3||s.isVector4||s.isTexture||s.isQuaternion)?s.isRenderTargetTexture?(console.warn("UniformsUtils: Textures of render targets cannot be cloned via cloneUniforms() or mergeUniforms()."),t[e][n]=null):t[e][n]=s.clone():Array.isArray(s)?t[e][n]=s.slice():t[e][n]=s}}return t}function Ue(i){const t={};for(let e=0;e<i.length;e++){const n=ki(i[e]);for(const s in n)t[s]=n[s]}return t}function Hh(i){const t=[];for(let e=0;e<i.length;e++)t.push(i[e].clone());return t}function tc(i){const t=i.getRenderTarget();return t===null?i.outputColorSpace:t.isXRRenderTarget===!0?t.texture.colorSpace:$t.workingColorSpace}const Qs={clone:ki,merge:Ue};var kh=`void main() {
|
||
gl_Position = projectionMatrix * modelViewMatrix * vec4( position, 1.0 );
|
||
}`,Vh=`void main() {
|
||
gl_FragColor = vec4( 1.0, 0.0, 0.0, 1.0 );
|
||
}`;class Ie extends Hn{constructor(t){super(),this.isShaderMaterial=!0,this.type="ShaderMaterial",this.defines={},this.uniforms={},this.uniformsGroups=[],this.vertexShader=kh,this.fragmentShader=Vh,this.linewidth=1,this.wireframe=!1,this.wireframeLinewidth=1,this.fog=!1,this.lights=!1,this.clipping=!1,this.forceSinglePass=!0,this.extensions={clipCullDistance:!1,multiDraw:!1},this.defaultAttributeValues={color:[1,1,1],uv:[0,0],uv1:[0,0]},this.index0AttributeName=void 0,this.uniformsNeedUpdate=!1,this.glslVersion=null,t!==void 0&&this.setValues(t)}copy(t){return super.copy(t),this.fragmentShader=t.fragmentShader,this.vertexShader=t.vertexShader,this.uniforms=ki(t.uniforms),this.uniformsGroups=Hh(t.uniformsGroups),this.defines=Object.assign({},t.defines),this.wireframe=t.wireframe,this.wireframeLinewidth=t.wireframeLinewidth,this.fog=t.fog,this.lights=t.lights,this.clipping=t.clipping,this.extensions=Object.assign({},t.extensions),this.glslVersion=t.glslVersion,this}toJSON(t){const e=super.toJSON(t);e.glslVersion=this.glslVersion,e.uniforms={};for(const s in this.uniforms){const a=this.uniforms[s].value;a&&a.isTexture?e.uniforms[s]={type:"t",value:a.toJSON(t).uuid}:a&&a.isColor?e.uniforms[s]={type:"c",value:a.getHex()}:a&&a.isVector2?e.uniforms[s]={type:"v2",value:a.toArray()}:a&&a.isVector3?e.uniforms[s]={type:"v3",value:a.toArray()}:a&&a.isVector4?e.uniforms[s]={type:"v4",value:a.toArray()}:a&&a.isMatrix3?e.uniforms[s]={type:"m3",value:a.toArray()}:a&&a.isMatrix4?e.uniforms[s]={type:"m4",value:a.toArray()}:e.uniforms[s]={value:a}}Object.keys(this.defines).length>0&&(e.defines=this.defines),e.vertexShader=this.vertexShader,e.fragmentShader=this.fragmentShader,e.lights=this.lights,e.clipping=this.clipping;const n={};for(const s in this.extensions)this.extensions[s]===!0&&(n[s]=!0);return Object.keys(n).length>0&&(e.extensions=n),e}}class ec extends be{constructor(){super(),this.isCamera=!0,this.type="Camera",this.matrixWorldInverse=new ee,this.projectionMatrix=new ee,this.projectionMatrixInverse=new ee,this.coordinateSystem=En}copy(t,e){return super.copy(t,e),this.matrixWorldInverse.copy(t.matrixWorldInverse),this.projectionMatrix.copy(t.projectionMatrix),this.projectionMatrixInverse.copy(t.projectionMatrixInverse),this.coordinateSystem=t.coordinateSystem,this}getWorldDirection(t){return super.getWorldDirection(t).negate()}updateMatrixWorld(t){super.updateMatrixWorld(t),this.matrixWorldInverse.copy(this.matrixWorld).invert()}updateWorldMatrix(t,e){super.updateWorldMatrix(t,e),this.matrixWorldInverse.copy(this.matrixWorld).invert()}clone(){return new this.constructor().copy(this)}}const Un=new P,Po=new gt,Do=new gt;class We extends ec{constructor(t=50,e=1,n=.1,s=2e3){super(),this.isPerspectiveCamera=!0,this.type="PerspectiveCamera",this.fov=t,this.zoom=1,this.near=n,this.far=s,this.focus=10,this.aspect=e,this.view=null,this.filmGauge=35,this.filmOffset=0,this.updateProjectionMatrix()}copy(t,e){return super.copy(t,e),this.fov=t.fov,this.zoom=t.zoom,this.near=t.near,this.far=t.far,this.focus=t.focus,this.aspect=t.aspect,this.view=t.view===null?null:Object.assign({},t.view),this.filmGauge=t.filmGauge,this.filmOffset=t.filmOffset,this}setFocalLength(t){const e=.5*this.getFilmHeight()/t;this.fov=Na*2*Math.atan(e),this.updateProjectionMatrix()}getFocalLength(){const t=Math.tan(Ys*.5*this.fov);return .5*this.getFilmHeight()/t}getEffectiveFOV(){return Na*2*Math.atan(Math.tan(Ys*.5*this.fov)/this.zoom)}getFilmWidth(){return this.filmGauge*Math.min(this.aspect,1)}getFilmHeight(){return this.filmGauge/Math.max(this.aspect,1)}getViewBounds(t,e,n){Un.set(-1,-1,.5).applyMatrix4(this.projectionMatrixInverse),e.set(Un.x,Un.y).multiplyScalar(-t/Un.z),Un.set(1,1,.5).applyMatrix4(this.projectionMatrixInverse),n.set(Un.x,Un.y).multiplyScalar(-t/Un.z)}getViewSize(t,e){return this.getViewBounds(t,Po,Do),e.subVectors(Do,Po)}setViewOffset(t,e,n,s,r,a){this.aspect=t/e,this.view===null&&(this.view={enabled:!0,fullWidth:1,fullHeight:1,offsetX:0,offsetY:0,width:1,height:1}),this.view.enabled=!0,this.view.fullWidth=t,this.view.fullHeight=e,this.view.offsetX=n,this.view.offsetY=s,this.view.width=r,this.view.height=a,this.updateProjectionMatrix()}clearViewOffset(){this.view!==null&&(this.view.enabled=!1),this.updateProjectionMatrix()}updateProjectionMatrix(){const t=this.near;let e=t*Math.tan(Ys*.5*this.fov)/this.zoom,n=2*e,s=this.aspect*n,r=-.5*s;const a=this.view;if(this.view!==null&&this.view.enabled){const l=a.fullWidth,c=a.fullHeight;r+=a.offsetX*s/l,e-=a.offsetY*n/c,s*=a.width/l,n*=a.height/c}const o=this.filmOffset;o!==0&&(r+=t*o/this.getFilmWidth()),this.projectionMatrix.makePerspective(r,r+s,e,e-n,t,this.far,this.coordinateSystem),this.projectionMatrixInverse.copy(this.projectionMatrix).invert()}toJSON(t){const e=super.toJSON(t);return e.object.fov=this.fov,e.object.zoom=this.zoom,e.object.near=this.near,e.object.far=this.far,e.object.focus=this.focus,e.object.aspect=this.aspect,this.view!==null&&(e.object.view=Object.assign({},this.view)),e.object.filmGauge=this.filmGauge,e.object.filmOffset=this.filmOffset,e}}const vi=-90,xi=1;class Gh extends be{constructor(t,e,n){super(),this.type="CubeCamera",this.renderTarget=n,this.coordinateSystem=null,this.activeMipmapLevel=0;const s=new We(vi,xi,t,e);s.layers=this.layers,this.add(s);const r=new We(vi,xi,t,e);r.layers=this.layers,this.add(r);const a=new We(vi,xi,t,e);a.layers=this.layers,this.add(a);const o=new We(vi,xi,t,e);o.layers=this.layers,this.add(o);const l=new We(vi,xi,t,e);l.layers=this.layers,this.add(l);const c=new We(vi,xi,t,e);c.layers=this.layers,this.add(c)}updateCoordinateSystem(){const t=this.coordinateSystem,e=this.children.concat(),[n,s,r,a,o,l]=e;for(const c of e)this.remove(c);if(t===En)n.up.set(0,1,0),n.lookAt(1,0,0),s.up.set(0,1,0),s.lookAt(-1,0,0),r.up.set(0,0,-1),r.lookAt(0,1,0),a.up.set(0,0,1),a.lookAt(0,-1,0),o.up.set(0,1,0),o.lookAt(0,0,1),l.up.set(0,1,0),l.lookAt(0,0,-1);else if(t===$s)n.up.set(0,-1,0),n.lookAt(-1,0,0),s.up.set(0,-1,0),s.lookAt(1,0,0),r.up.set(0,0,1),r.lookAt(0,1,0),a.up.set(0,0,-1),a.lookAt(0,-1,0),o.up.set(0,-1,0),o.lookAt(0,0,1),l.up.set(0,-1,0),l.lookAt(0,0,-1);else throw new Error("THREE.CubeCamera.updateCoordinateSystem(): Invalid coordinate system: "+t);for(const c of e)this.add(c),c.updateMatrixWorld()}update(t,e){this.parent===null&&this.updateMatrixWorld();const{renderTarget:n,activeMipmapLevel:s}=this;this.coordinateSystem!==t.coordinateSystem&&(this.coordinateSystem=t.coordinateSystem,this.updateCoordinateSystem());const[r,a,o,l,c,h]=this.children,d=t.getRenderTarget(),f=t.getActiveCubeFace(),m=t.getActiveMipmapLevel(),g=t.xr.enabled;t.xr.enabled=!1;const x=n.texture.generateMipmaps;n.texture.generateMipmaps=!1,t.setRenderTarget(n,0,s),t.render(e,r),t.setRenderTarget(n,1,s),t.render(e,a),t.setRenderTarget(n,2,s),t.render(e,o),t.setRenderTarget(n,3,s),t.render(e,l),t.setRenderTarget(n,4,s),t.render(e,c),n.texture.generateMipmaps=x,t.setRenderTarget(n,5,s),t.render(e,h),t.setRenderTarget(d,f,m),t.xr.enabled=g,n.texture.needsPMREMUpdate=!0}}class nc extends Ce{constructor(t,e,n,s,r,a,o,l,c,h){t=t!==void 0?t:[],e=e!==void 0?e:Fi,super(t,e,n,s,r,a,o,l,c,h),this.isCubeTexture=!0,this.flipY=!1}get images(){return this.image}set images(t){this.image=t}}class Wh extends an{constructor(t=1,e={}){super(t,t,e),this.isWebGLCubeRenderTarget=!0;const n={width:t,height:t,depth:1},s=[n,n,n,n,n,n];this.texture=new nc(s,e.mapping,e.wrapS,e.wrapT,e.magFilter,e.minFilter,e.format,e.type,e.anisotropy,e.colorSpace),this.texture.isRenderTargetTexture=!0,this.texture.generateMipmaps=e.generateMipmaps!==void 0?e.generateMipmaps:!1,this.texture.minFilter=e.minFilter!==void 0?e.minFilter:un}fromEquirectangularTexture(t,e){this.texture.type=e.type,this.texture.colorSpace=e.colorSpace,this.texture.generateMipmaps=e.generateMipmaps,this.texture.minFilter=e.minFilter,this.texture.magFilter=e.magFilter;const n={uniforms:{tEquirect:{value:null}},vertexShader:`
|
||
|
||
varying vec3 vWorldDirection;
|
||
|
||
vec3 transformDirection( in vec3 dir, in mat4 matrix ) {
|
||
|
||
return normalize( ( matrix * vec4( dir, 0.0 ) ).xyz );
|
||
|
||
}
|
||
|
||
void main() {
|
||
|
||
vWorldDirection = transformDirection( position, modelMatrix );
|
||
|
||
#include <begin_vertex>
|
||
#include <project_vertex>
|
||
|
||
}
|
||
`,fragmentShader:`
|
||
|
||
uniform sampler2D tEquirect;
|
||
|
||
varying vec3 vWorldDirection;
|
||
|
||
#include <common>
|
||
|
||
void main() {
|
||
|
||
vec3 direction = normalize( vWorldDirection );
|
||
|
||
vec2 sampleUV = equirectUv( direction );
|
||
|
||
gl_FragColor = texture2D( tEquirect, sampleUV );
|
||
|
||
}
|
||
`},s=new as(5,5,5),r=new Ie({name:"CubemapFromEquirect",uniforms:ki(n.uniforms),vertexShader:n.vertexShader,fragmentShader:n.fragmentShader,side:Be,blending:Tn});r.uniforms.tEquirect.value=e;const a=new ye(s,r),o=e.minFilter;return e.minFilter===Qn&&(e.minFilter=un),new Gh(1,10,this).update(t,a),e.minFilter=o,a.geometry.dispose(),a.material.dispose(),this}clear(t,e,n,s){const r=t.getRenderTarget();for(let a=0;a<6;a++)t.setRenderTarget(this,a),t.clear(e,n,s);t.setRenderTarget(r)}}class lr{constructor(t,e=25e-5){this.isFogExp2=!0,this.name="",this.color=new xt(t),this.density=e}clone(){return new lr(this.color,this.density)}toJSON(){return{type:"FogExp2",name:this.name,color:this.color.getHex(),density:this.density}}}class Xh extends be{constructor(){super(),this.isScene=!0,this.type="Scene",this.background=null,this.environment=null,this.fog=null,this.backgroundBlurriness=0,this.backgroundIntensity=1,this.backgroundRotation=new pn,this.environmentIntensity=1,this.environmentRotation=new pn,this.overrideMaterial=null,typeof __THREE_DEVTOOLS__<"u"&&__THREE_DEVTOOLS__.dispatchEvent(new CustomEvent("observe",{detail:this}))}copy(t,e){return super.copy(t,e),t.background!==null&&(this.background=t.background.clone()),t.environment!==null&&(this.environment=t.environment.clone()),t.fog!==null&&(this.fog=t.fog.clone()),this.backgroundBlurriness=t.backgroundBlurriness,this.backgroundIntensity=t.backgroundIntensity,this.backgroundRotation.copy(t.backgroundRotation),this.environmentIntensity=t.environmentIntensity,this.environmentRotation.copy(t.environmentRotation),t.overrideMaterial!==null&&(this.overrideMaterial=t.overrideMaterial.clone()),this.matrixAutoUpdate=t.matrixAutoUpdate,this}toJSON(t){const e=super.toJSON(t);return this.fog!==null&&(e.object.fog=this.fog.toJSON()),this.backgroundBlurriness>0&&(e.object.backgroundBlurriness=this.backgroundBlurriness),this.backgroundIntensity!==1&&(e.object.backgroundIntensity=this.backgroundIntensity),e.object.backgroundRotation=this.backgroundRotation.toArray(),this.environmentIntensity!==1&&(e.object.environmentIntensity=this.environmentIntensity),e.object.environmentRotation=this.environmentRotation.toArray(),e}}class Yh{constructor(t,e){this.isInterleavedBuffer=!0,this.array=t,this.stride=e,this.count=t!==void 0?t.length/e:0,this.usage=Ia,this.updateRanges=[],this.version=0,this.uuid=Bn()}onUploadCallback(){}set needsUpdate(t){t===!0&&this.version++}setUsage(t){return this.usage=t,this}addUpdateRange(t,e){this.updateRanges.push({start:t,count:e})}clearUpdateRanges(){this.updateRanges.length=0}copy(t){return this.array=new t.array.constructor(t.array),this.count=t.count,this.stride=t.stride,this.usage=t.usage,this}copyAt(t,e,n){t*=this.stride,n*=e.stride;for(let s=0,r=this.stride;s<r;s++)this.array[t+s]=e.array[n+s];return this}set(t,e=0){return this.array.set(t,e),this}clone(t){t.arrayBuffers===void 0&&(t.arrayBuffers={}),this.array.buffer._uuid===void 0&&(this.array.buffer._uuid=Bn()),t.arrayBuffers[this.array.buffer._uuid]===void 0&&(t.arrayBuffers[this.array.buffer._uuid]=this.array.slice(0).buffer);const e=new this.array.constructor(t.arrayBuffers[this.array.buffer._uuid]),n=new this.constructor(e,this.stride);return n.setUsage(this.usage),n}onUpload(t){return this.onUploadCallback=t,this}toJSON(t){return t.arrayBuffers===void 0&&(t.arrayBuffers={}),this.array.buffer._uuid===void 0&&(this.array.buffer._uuid=Bn()),t.arrayBuffers[this.array.buffer._uuid]===void 0&&(t.arrayBuffers[this.array.buffer._uuid]=Array.from(new Uint32Array(this.array.buffer))),{uuid:this.uuid,buffer:this.array.buffer._uuid,type:this.array.constructor.name,stride:this.stride}}}const Le=new P;class tr{constructor(t,e,n,s=!1){this.isInterleavedBufferAttribute=!0,this.name="",this.data=t,this.itemSize=e,this.offset=n,this.normalized=s}get count(){return this.data.count}get array(){return this.data.array}set needsUpdate(t){this.data.needsUpdate=t}applyMatrix4(t){for(let e=0,n=this.data.count;e<n;e++)Le.fromBufferAttribute(this,e),Le.applyMatrix4(t),this.setXYZ(e,Le.x,Le.y,Le.z);return this}applyNormalMatrix(t){for(let e=0,n=this.count;e<n;e++)Le.fromBufferAttribute(this,e),Le.applyNormalMatrix(t),this.setXYZ(e,Le.x,Le.y,Le.z);return this}transformDirection(t){for(let e=0,n=this.count;e<n;e++)Le.fromBufferAttribute(this,e),Le.transformDirection(t),this.setXYZ(e,Le.x,Le.y,Le.z);return this}getComponent(t,e){let n=this.array[t*this.data.stride+this.offset+e];return this.normalized&&(n=hn(n,this.array)),n}setComponent(t,e,n){return this.normalized&&(n=re(n,this.array)),this.data.array[t*this.data.stride+this.offset+e]=n,this}setX(t,e){return this.normalized&&(e=re(e,this.array)),this.data.array[t*this.data.stride+this.offset]=e,this}setY(t,e){return this.normalized&&(e=re(e,this.array)),this.data.array[t*this.data.stride+this.offset+1]=e,this}setZ(t,e){return this.normalized&&(e=re(e,this.array)),this.data.array[t*this.data.stride+this.offset+2]=e,this}setW(t,e){return this.normalized&&(e=re(e,this.array)),this.data.array[t*this.data.stride+this.offset+3]=e,this}getX(t){let e=this.data.array[t*this.data.stride+this.offset];return this.normalized&&(e=hn(e,this.array)),e}getY(t){let e=this.data.array[t*this.data.stride+this.offset+1];return this.normalized&&(e=hn(e,this.array)),e}getZ(t){let e=this.data.array[t*this.data.stride+this.offset+2];return this.normalized&&(e=hn(e,this.array)),e}getW(t){let e=this.data.array[t*this.data.stride+this.offset+3];return this.normalized&&(e=hn(e,this.array)),e}setXY(t,e,n){return t=t*this.data.stride+this.offset,this.normalized&&(e=re(e,this.array),n=re(n,this.array)),this.data.array[t+0]=e,this.data.array[t+1]=n,this}setXYZ(t,e,n,s){return t=t*this.data.stride+this.offset,this.normalized&&(e=re(e,this.array),n=re(n,this.array),s=re(s,this.array)),this.data.array[t+0]=e,this.data.array[t+1]=n,this.data.array[t+2]=s,this}setXYZW(t,e,n,s,r){return t=t*this.data.stride+this.offset,this.normalized&&(e=re(e,this.array),n=re(n,this.array),s=re(s,this.array),r=re(r,this.array)),this.data.array[t+0]=e,this.data.array[t+1]=n,this.data.array[t+2]=s,this.data.array[t+3]=r,this}clone(t){if(t===void 0){console.log("THREE.InterleavedBufferAttribute.clone(): Cloning an interleaved buffer attribute will de-interleave buffer data.");const e=[];for(let n=0;n<this.count;n++){const s=n*this.data.stride+this.offset;for(let r=0;r<this.itemSize;r++)e.push(this.data.array[s+r])}return new Se(new this.array.constructor(e),this.itemSize,this.normalized)}else return t.interleavedBuffers===void 0&&(t.interleavedBuffers={}),t.interleavedBuffers[this.data.uuid]===void 0&&(t.interleavedBuffers[this.data.uuid]=this.data.clone(t)),new tr(t.interleavedBuffers[this.data.uuid],this.itemSize,this.offset,this.normalized)}toJSON(t){if(t===void 0){console.log("THREE.InterleavedBufferAttribute.toJSON(): Serializing an interleaved buffer attribute will de-interleave buffer data.");const e=[];for(let n=0;n<this.count;n++){const s=n*this.data.stride+this.offset;for(let r=0;r<this.itemSize;r++)e.push(this.data.array[s+r])}return{itemSize:this.itemSize,type:this.array.constructor.name,array:e,normalized:this.normalized}}else return t.interleavedBuffers===void 0&&(t.interleavedBuffers={}),t.interleavedBuffers[this.data.uuid]===void 0&&(t.interleavedBuffers[this.data.uuid]=this.data.toJSON(t)),{isInterleavedBufferAttribute:!0,itemSize:this.itemSize,data:this.data.uuid,offset:this.offset,normalized:this.normalized}}}class Fa extends Hn{constructor(t){super(),this.isSpriteMaterial=!0,this.type="SpriteMaterial",this.color=new xt(16777215),this.map=null,this.alphaMap=null,this.rotation=0,this.sizeAttenuation=!0,this.transparent=!0,this.fog=!0,this.setValues(t)}copy(t){return super.copy(t),this.color.copy(t.color),this.map=t.map,this.alphaMap=t.alphaMap,this.rotation=t.rotation,this.sizeAttenuation=t.sizeAttenuation,this.fog=t.fog,this}}let Mi;const Ki=new P,Si=new P,yi=new P,Ei=new gt,$i=new gt,ic=new ee,Rs=new P,Ji=new P,Cs=new P,Lo=new gt,Ur=new gt,Uo=new gt;class Ir extends be{constructor(t=new Fa){if(super(),this.isSprite=!0,this.type="Sprite",Mi===void 0){Mi=new Ee;const e=new Float32Array([-.5,-.5,0,0,0,.5,-.5,0,1,0,.5,.5,0,1,1,-.5,.5,0,0,1]),n=new Yh(e,5);Mi.setIndex([0,1,2,0,2,3]),Mi.setAttribute("position",new tr(n,3,0,!1)),Mi.setAttribute("uv",new tr(n,2,3,!1))}this.geometry=Mi,this.material=t,this.center=new gt(.5,.5)}raycast(t,e){t.camera===null&&console.error('THREE.Sprite: "Raycaster.camera" needs to be set in order to raycast against sprites.'),Si.setFromMatrixScale(this.matrixWorld),ic.copy(t.camera.matrixWorld),this.modelViewMatrix.multiplyMatrices(t.camera.matrixWorldInverse,this.matrixWorld),yi.setFromMatrixPosition(this.modelViewMatrix),t.camera.isPerspectiveCamera&&this.material.sizeAttenuation===!1&&Si.multiplyScalar(-yi.z);const n=this.material.rotation;let s,r;n!==0&&(r=Math.cos(n),s=Math.sin(n));const a=this.center;Ps(Rs.set(-.5,-.5,0),yi,a,Si,s,r),Ps(Ji.set(.5,-.5,0),yi,a,Si,s,r),Ps(Cs.set(.5,.5,0),yi,a,Si,s,r),Lo.set(0,0),Ur.set(1,0),Uo.set(1,1);let o=t.ray.intersectTriangle(Rs,Ji,Cs,!1,Ki);if(o===null&&(Ps(Ji.set(-.5,.5,0),yi,a,Si,s,r),Ur.set(0,1),o=t.ray.intersectTriangle(Rs,Cs,Ji,!1,Ki),o===null))return;const l=t.ray.origin.distanceTo(Ki);l<t.near||l>t.far||e.push({distance:l,point:Ki.clone(),uv:Je.getInterpolation(Ki,Rs,Ji,Cs,Lo,Ur,Uo,new gt),face:null,object:this})}copy(t,e){return super.copy(t,e),t.center!==void 0&&this.center.copy(t.center),this.material=t.material,this}}function Ps(i,t,e,n,s,r){Ei.subVectors(i,e).addScalar(.5).multiply(n),s!==void 0?($i.x=r*Ei.x-s*Ei.y,$i.y=s*Ei.x+r*Ei.y):$i.copy(Ei),i.copy(t),i.x+=$i.x,i.y+=$i.y,i.applyMatrix4(ic)}class qh extends Ce{constructor(t=null,e=1,n=1,s,r,a,o,l,c=Xe,h=Xe,d,f){super(null,a,o,l,c,h,s,r,d,f),this.isDataTexture=!0,this.image={data:t,width:e,height:n},this.generateMipmaps=!1,this.flipY=!1,this.unpackAlignment=1}}class Io extends Se{constructor(t,e,n,s=1){super(t,e,n),this.isInstancedBufferAttribute=!0,this.meshPerAttribute=s}copy(t){return super.copy(t),this.meshPerAttribute=t.meshPerAttribute,this}toJSON(){const t=super.toJSON();return t.meshPerAttribute=this.meshPerAttribute,t.isInstancedBufferAttribute=!0,t}}const Ti=new ee,No=new ee,Ds=[],Fo=new si,jh=new ee,Qi=new ye,ts=new ri;class Zh extends ye{constructor(t,e,n){super(t,e),this.isInstancedMesh=!0,this.instanceMatrix=new Io(new Float32Array(n*16),16),this.instanceColor=null,this.morphTexture=null,this.count=n,this.boundingBox=null,this.boundingSphere=null;for(let s=0;s<n;s++)this.setMatrixAt(s,jh)}computeBoundingBox(){const t=this.geometry,e=this.count;this.boundingBox===null&&(this.boundingBox=new si),t.boundingBox===null&&t.computeBoundingBox(),this.boundingBox.makeEmpty();for(let n=0;n<e;n++)this.getMatrixAt(n,Ti),Fo.copy(t.boundingBox).applyMatrix4(Ti),this.boundingBox.union(Fo)}computeBoundingSphere(){const t=this.geometry,e=this.count;this.boundingSphere===null&&(this.boundingSphere=new ri),t.boundingSphere===null&&t.computeBoundingSphere(),this.boundingSphere.makeEmpty();for(let n=0;n<e;n++)this.getMatrixAt(n,Ti),ts.copy(t.boundingSphere).applyMatrix4(Ti),this.boundingSphere.union(ts)}copy(t,e){return super.copy(t,e),this.instanceMatrix.copy(t.instanceMatrix),t.morphTexture!==null&&(this.morphTexture=t.morphTexture.clone()),t.instanceColor!==null&&(this.instanceColor=t.instanceColor.clone()),this.count=t.count,t.boundingBox!==null&&(this.boundingBox=t.boundingBox.clone()),t.boundingSphere!==null&&(this.boundingSphere=t.boundingSphere.clone()),this}getColorAt(t,e){e.fromArray(this.instanceColor.array,t*3)}getMatrixAt(t,e){e.fromArray(this.instanceMatrix.array,t*16)}getMorphAt(t,e){const n=e.morphTargetInfluences,s=this.morphTexture.source.data.data,r=n.length+1,a=t*r+1;for(let o=0;o<n.length;o++)n[o]=s[a+o]}raycast(t,e){const n=this.matrixWorld,s=this.count;if(Qi.geometry=this.geometry,Qi.material=this.material,Qi.material!==void 0&&(this.boundingSphere===null&&this.computeBoundingSphere(),ts.copy(this.boundingSphere),ts.applyMatrix4(n),t.ray.intersectsSphere(ts)!==!1))for(let r=0;r<s;r++){this.getMatrixAt(r,Ti),No.multiplyMatrices(n,Ti),Qi.matrixWorld=No,Qi.raycast(t,Ds);for(let a=0,o=Ds.length;a<o;a++){const l=Ds[a];l.instanceId=r,l.object=this,e.push(l)}Ds.length=0}}setColorAt(t,e){this.instanceColor===null&&(this.instanceColor=new Io(new Float32Array(this.instanceMatrix.count*3).fill(1),3)),e.toArray(this.instanceColor.array,t*3)}setMatrixAt(t,e){e.toArray(this.instanceMatrix.array,t*16)}setMorphAt(t,e){const n=e.morphTargetInfluences,s=n.length+1;this.morphTexture===null&&(this.morphTexture=new qh(new Float32Array(s*this.count),s,this.count,Xa,dn));const r=this.morphTexture.source.data.data;let a=0;for(let c=0;c<n.length;c++)a+=n[c];const o=this.geometry.morphTargetsRelative?1:1-a,l=s*t;r[l]=o,r.set(n,l+1)}updateMorphTargets(){}dispose(){return this.dispatchEvent({type:"dispose"}),this.morphTexture!==null&&(this.morphTexture.dispose(),this.morphTexture=null),this}}const Nr=new P,Kh=new P,$h=new zt;class Nn{constructor(t=new P(1,0,0),e=0){this.isPlane=!0,this.normal=t,this.constant=e}set(t,e){return this.normal.copy(t),this.constant=e,this}setComponents(t,e,n,s){return this.normal.set(t,e,n),this.constant=s,this}setFromNormalAndCoplanarPoint(t,e){return this.normal.copy(t),this.constant=-e.dot(this.normal),this}setFromCoplanarPoints(t,e,n){const s=Nr.subVectors(n,e).cross(Kh.subVectors(t,e)).normalize();return this.setFromNormalAndCoplanarPoint(s,t),this}copy(t){return this.normal.copy(t.normal),this.constant=t.constant,this}normalize(){const t=1/this.normal.length();return this.normal.multiplyScalar(t),this.constant*=t,this}negate(){return this.constant*=-1,this.normal.negate(),this}distanceToPoint(t){return this.normal.dot(t)+this.constant}distanceToSphere(t){return this.distanceToPoint(t.center)-t.radius}projectPoint(t,e){return e.copy(t).addScaledVector(this.normal,-this.distanceToPoint(t))}intersectLine(t,e){const n=t.delta(Nr),s=this.normal.dot(n);if(s===0)return this.distanceToPoint(t.start)===0?e.copy(t.start):null;const r=-(t.start.dot(this.normal)+this.constant)/s;return r<0||r>1?null:e.copy(t.start).addScaledVector(n,r)}intersectsLine(t){const e=this.distanceToPoint(t.start),n=this.distanceToPoint(t.end);return e<0&&n>0||n<0&&e>0}intersectsBox(t){return t.intersectsPlane(this)}intersectsSphere(t){return t.intersectsPlane(this)}coplanarPoint(t){return t.copy(this.normal).multiplyScalar(-this.constant)}applyMatrix4(t,e){const n=e||$h.getNormalMatrix(t),s=this.coplanarPoint(Nr).applyMatrix4(t),r=this.normal.applyMatrix3(n).normalize();return this.constant=-s.dot(r),this}translate(t){return this.constant-=t.dot(this.normal),this}equals(t){return t.normal.equals(this.normal)&&t.constant===this.constant}clone(){return new this.constructor().copy(this)}}const Yn=new ri,Ls=new P;class Ka{constructor(t=new Nn,e=new Nn,n=new Nn,s=new Nn,r=new Nn,a=new Nn){this.planes=[t,e,n,s,r,a]}set(t,e,n,s,r,a){const o=this.planes;return o[0].copy(t),o[1].copy(e),o[2].copy(n),o[3].copy(s),o[4].copy(r),o[5].copy(a),this}copy(t){const e=this.planes;for(let n=0;n<6;n++)e[n].copy(t.planes[n]);return this}setFromProjectionMatrix(t,e=En){const n=this.planes,s=t.elements,r=s[0],a=s[1],o=s[2],l=s[3],c=s[4],h=s[5],d=s[6],f=s[7],m=s[8],g=s[9],x=s[10],p=s[11],u=s[12],b=s[13],E=s[14],S=s[15];if(n[0].setComponents(l-r,f-c,p-m,S-u).normalize(),n[1].setComponents(l+r,f+c,p+m,S+u).normalize(),n[2].setComponents(l+a,f+h,p+g,S+b).normalize(),n[3].setComponents(l-a,f-h,p-g,S-b).normalize(),n[4].setComponents(l-o,f-d,p-x,S-E).normalize(),e===En)n[5].setComponents(l+o,f+d,p+x,S+E).normalize();else if(e===$s)n[5].setComponents(o,d,x,E).normalize();else throw new Error("THREE.Frustum.setFromProjectionMatrix(): Invalid coordinate system: "+e);return this}intersectsObject(t){if(t.boundingSphere!==void 0)t.boundingSphere===null&&t.computeBoundingSphere(),Yn.copy(t.boundingSphere).applyMatrix4(t.matrixWorld);else{const e=t.geometry;e.boundingSphere===null&&e.computeBoundingSphere(),Yn.copy(e.boundingSphere).applyMatrix4(t.matrixWorld)}return this.intersectsSphere(Yn)}intersectsSprite(t){return Yn.center.set(0,0,0),Yn.radius=.7071067811865476,Yn.applyMatrix4(t.matrixWorld),this.intersectsSphere(Yn)}intersectsSphere(t){const e=this.planes,n=t.center,s=-t.radius;for(let r=0;r<6;r++)if(e[r].distanceToPoint(n)<s)return!1;return!0}intersectsBox(t){const e=this.planes;for(let n=0;n<6;n++){const s=e[n];if(Ls.x=s.normal.x>0?t.max.x:t.min.x,Ls.y=s.normal.y>0?t.max.y:t.min.y,Ls.z=s.normal.z>0?t.max.z:t.min.z,s.distanceToPoint(Ls)<0)return!1}return!0}containsPoint(t){const e=this.planes;for(let n=0;n<6;n++)if(e[n].distanceToPoint(t)<0)return!1;return!0}clone(){return new this.constructor().copy(this)}}class $a extends Hn{constructor(t){super(),this.isLineBasicMaterial=!0,this.type="LineBasicMaterial",this.color=new xt(16777215),this.map=null,this.linewidth=1,this.linecap="round",this.linejoin="round",this.fog=!0,this.setValues(t)}copy(t){return super.copy(t),this.color.copy(t.color),this.map=t.map,this.linewidth=t.linewidth,this.linecap=t.linecap,this.linejoin=t.linejoin,this.fog=t.fog,this}}const er=new P,nr=new P,Oo=new ee,es=new rs,Us=new ri,Fr=new P,Bo=new P;class sc extends be{constructor(t=new Ee,e=new $a){super(),this.isLine=!0,this.type="Line",this.geometry=t,this.material=e,this.updateMorphTargets()}copy(t,e){return super.copy(t,e),this.material=Array.isArray(t.material)?t.material.slice():t.material,this.geometry=t.geometry,this}computeLineDistances(){const t=this.geometry;if(t.index===null){const e=t.attributes.position,n=[0];for(let s=1,r=e.count;s<r;s++)er.fromBufferAttribute(e,s-1),nr.fromBufferAttribute(e,s),n[s]=n[s-1],n[s]+=er.distanceTo(nr);t.setAttribute("lineDistance",new Pe(n,1))}else console.warn("THREE.Line.computeLineDistances(): Computation only possible with non-indexed BufferGeometry.");return this}raycast(t,e){const n=this.geometry,s=this.matrixWorld,r=t.params.Line.threshold,a=n.drawRange;if(n.boundingSphere===null&&n.computeBoundingSphere(),Us.copy(n.boundingSphere),Us.applyMatrix4(s),Us.radius+=r,t.ray.intersectsSphere(Us)===!1)return;Oo.copy(s).invert(),es.copy(t.ray).applyMatrix4(Oo);const o=r/((this.scale.x+this.scale.y+this.scale.z)/3),l=o*o,c=this.isLineSegments?2:1,h=n.index,f=n.attributes.position;if(h!==null){const m=Math.max(0,a.start),g=Math.min(h.count,a.start+a.count);for(let x=m,p=g-1;x<p;x+=c){const u=h.getX(x),b=h.getX(x+1),E=Is(this,t,es,l,u,b);E&&e.push(E)}if(this.isLineLoop){const x=h.getX(g-1),p=h.getX(m),u=Is(this,t,es,l,x,p);u&&e.push(u)}}else{const m=Math.max(0,a.start),g=Math.min(f.count,a.start+a.count);for(let x=m,p=g-1;x<p;x+=c){const u=Is(this,t,es,l,x,x+1);u&&e.push(u)}if(this.isLineLoop){const x=Is(this,t,es,l,g-1,m);x&&e.push(x)}}}updateMorphTargets(){const e=this.geometry.morphAttributes,n=Object.keys(e);if(n.length>0){const s=e[n[0]];if(s!==void 0){this.morphTargetInfluences=[],this.morphTargetDictionary={};for(let r=0,a=s.length;r<a;r++){const o=s[r].name||String(r);this.morphTargetInfluences.push(0),this.morphTargetDictionary[o]=r}}}}}function Is(i,t,e,n,s,r){const a=i.geometry.attributes.position;if(er.fromBufferAttribute(a,s),nr.fromBufferAttribute(a,r),e.distanceSqToSegment(er,nr,Fr,Bo)>n)return;Fr.applyMatrix4(i.matrixWorld);const l=t.ray.origin.distanceTo(Fr);if(!(l<t.near||l>t.far))return{distance:l,point:Bo.clone().applyMatrix4(i.matrixWorld),index:s,face:null,faceIndex:null,barycoord:null,object:i}}class ir extends Hn{constructor(t){super(),this.isPointsMaterial=!0,this.type="PointsMaterial",this.color=new xt(16777215),this.map=null,this.alphaMap=null,this.size=1,this.sizeAttenuation=!0,this.fog=!0,this.setValues(t)}copy(t){return super.copy(t),this.color.copy(t.color),this.map=t.map,this.alphaMap=t.alphaMap,this.size=t.size,this.sizeAttenuation=t.sizeAttenuation,this.fog=t.fog,this}}const zo=new ee,Oa=new rs,Ns=new ri,Fs=new P;class Ba extends be{constructor(t=new Ee,e=new ir){super(),this.isPoints=!0,this.type="Points",this.geometry=t,this.material=e,this.updateMorphTargets()}copy(t,e){return super.copy(t,e),this.material=Array.isArray(t.material)?t.material.slice():t.material,this.geometry=t.geometry,this}raycast(t,e){const n=this.geometry,s=this.matrixWorld,r=t.params.Points.threshold,a=n.drawRange;if(n.boundingSphere===null&&n.computeBoundingSphere(),Ns.copy(n.boundingSphere),Ns.applyMatrix4(s),Ns.radius+=r,t.ray.intersectsSphere(Ns)===!1)return;zo.copy(s).invert(),Oa.copy(t.ray).applyMatrix4(zo);const o=r/((this.scale.x+this.scale.y+this.scale.z)/3),l=o*o,c=n.index,d=n.attributes.position;if(c!==null){const f=Math.max(0,a.start),m=Math.min(c.count,a.start+a.count);for(let g=f,x=m;g<x;g++){const p=c.getX(g);Fs.fromBufferAttribute(d,p),Ho(Fs,p,l,s,t,e,this)}}else{const f=Math.max(0,a.start),m=Math.min(d.count,a.start+a.count);for(let g=f,x=m;g<x;g++)Fs.fromBufferAttribute(d,g),Ho(Fs,g,l,s,t,e,this)}}updateMorphTargets(){const e=this.geometry.morphAttributes,n=Object.keys(e);if(n.length>0){const s=e[n[0]];if(s!==void 0){this.morphTargetInfluences=[],this.morphTargetDictionary={};for(let r=0,a=s.length;r<a;r++){const o=s[r].name||String(r);this.morphTargetInfluences.push(0),this.morphTargetDictionary[o]=r}}}}}function Ho(i,t,e,n,s,r,a){const o=Oa.distanceSqToPoint(i);if(o<e){const l=new P;Oa.closestPointToPoint(i,l),l.applyMatrix4(n);const c=s.ray.origin.distanceTo(l);if(c<s.near||c>s.far)return;r.push({distance:c,distanceToRay:Math.sqrt(o),point:l,index:t,face:null,faceIndex:null,barycoord:null,object:a})}}class Ci extends be{constructor(){super(),this.isGroup=!0,this.type="Group"}}class Jh extends Ce{constructor(t,e,n,s,r,a,o,l,c){super(t,e,n,s,r,a,o,l,c),this.isCanvasTexture=!0,this.needsUpdate=!0}}class rc extends Ce{constructor(t,e,n,s,r,a,o,l,c,h=Ui){if(h!==Ui&&h!==zi)throw new Error("DepthTexture format must be either THREE.DepthFormat or THREE.DepthStencilFormat");n===void 0&&h===Ui&&(n=ei),n===void 0&&h===zi&&(n=Bi),super(null,s,r,a,o,l,h,n,c),this.isDepthTexture=!0,this.image={width:t,height:e},this.magFilter=o!==void 0?o:Xe,this.minFilter=l!==void 0?l:Xe,this.flipY=!1,this.generateMipmaps=!1,this.compareFunction=null}copy(t){return super.copy(t),this.compareFunction=t.compareFunction,this}toJSON(t){const e=super.toJSON(t);return this.compareFunction!==null&&(e.compareFunction=this.compareFunction),e}}class os extends Ee{constructor(t=1,e=1,n=1,s=1){super(),this.type="PlaneGeometry",this.parameters={width:t,height:e,widthSegments:n,heightSegments:s};const r=t/2,a=e/2,o=Math.floor(n),l=Math.floor(s),c=o+1,h=l+1,d=t/o,f=e/l,m=[],g=[],x=[],p=[];for(let u=0;u<h;u++){const b=u*f-a;for(let E=0;E<c;E++){const S=E*d-r;g.push(S,-b,0),x.push(0,0,1),p.push(E/o),p.push(1-u/l)}}for(let u=0;u<l;u++)for(let b=0;b<o;b++){const E=b+c*u,S=b+c*(u+1),D=b+1+c*(u+1),A=b+1+c*u;m.push(E,S,A),m.push(S,D,A)}this.setIndex(m),this.setAttribute("position",new Pe(g,3)),this.setAttribute("normal",new Pe(x,3)),this.setAttribute("uv",new Pe(p,2))}copy(t){return super.copy(t),this.parameters=Object.assign({},t.parameters),this}static fromJSON(t){return new os(t.width,t.height,t.widthSegments,t.heightSegments)}}class Ja extends Ee{constructor(t=.5,e=1,n=32,s=1,r=0,a=Math.PI*2){super(),this.type="RingGeometry",this.parameters={innerRadius:t,outerRadius:e,thetaSegments:n,phiSegments:s,thetaStart:r,thetaLength:a},n=Math.max(3,n),s=Math.max(1,s);const o=[],l=[],c=[],h=[];let d=t;const f=(e-t)/s,m=new P,g=new gt;for(let x=0;x<=s;x++){for(let p=0;p<=n;p++){const u=r+p/n*a;m.x=d*Math.cos(u),m.y=d*Math.sin(u),l.push(m.x,m.y,m.z),c.push(0,0,1),g.x=(m.x/e+1)/2,g.y=(m.y/e+1)/2,h.push(g.x,g.y)}d+=f}for(let x=0;x<s;x++){const p=x*(n+1);for(let u=0;u<n;u++){const b=u+p,E=b,S=b+n+1,D=b+n+2,A=b+1;o.push(E,S,A),o.push(S,D,A)}}this.setIndex(o),this.setAttribute("position",new Pe(l,3)),this.setAttribute("normal",new Pe(c,3)),this.setAttribute("uv",new Pe(h,2))}copy(t){return super.copy(t),this.parameters=Object.assign({},t.parameters),this}static fromJSON(t){return new Ja(t.innerRadius,t.outerRadius,t.thetaSegments,t.phiSegments,t.thetaStart,t.thetaLength)}}class Qa extends Ee{constructor(t=1,e=32,n=16,s=0,r=Math.PI*2,a=0,o=Math.PI){super(),this.type="SphereGeometry",this.parameters={radius:t,widthSegments:e,heightSegments:n,phiStart:s,phiLength:r,thetaStart:a,thetaLength:o},e=Math.max(3,Math.floor(e)),n=Math.max(2,Math.floor(n));const l=Math.min(a+o,Math.PI);let c=0;const h=[],d=new P,f=new P,m=[],g=[],x=[],p=[];for(let u=0;u<=n;u++){const b=[],E=u/n;let S=0;u===0&&a===0?S=.5/e:u===n&&l===Math.PI&&(S=-.5/e);for(let D=0;D<=e;D++){const A=D/e;d.x=-t*Math.cos(s+A*r)*Math.sin(a+E*o),d.y=t*Math.cos(a+E*o),d.z=t*Math.sin(s+A*r)*Math.sin(a+E*o),g.push(d.x,d.y,d.z),f.copy(d).normalize(),x.push(f.x,f.y,f.z),p.push(A+S,1-E),b.push(c++)}h.push(b)}for(let u=0;u<n;u++)for(let b=0;b<e;b++){const E=h[u][b+1],S=h[u][b],D=h[u+1][b],A=h[u+1][b+1];(u!==0||a>0)&&m.push(E,S,A),(u!==n-1||l<Math.PI)&&m.push(S,D,A)}this.setIndex(m),this.setAttribute("position",new Pe(g,3)),this.setAttribute("normal",new Pe(x,3)),this.setAttribute("uv",new Pe(p,2))}copy(t){return super.copy(t),this.parameters=Object.assign({},t.parameters),this}static fromJSON(t){return new Qa(t.radius,t.widthSegments,t.heightSegments,t.phiStart,t.phiLength,t.thetaStart,t.thetaLength)}}class Qh extends Hn{constructor(t){super(),this.isMeshStandardMaterial=!0,this.type="MeshStandardMaterial",this.defines={STANDARD:""},this.color=new xt(16777215),this.roughness=1,this.metalness=0,this.map=null,this.lightMap=null,this.lightMapIntensity=1,this.aoMap=null,this.aoMapIntensity=1,this.emissive=new xt(0),this.emissiveIntensity=1,this.emissiveMap=null,this.bumpMap=null,this.bumpScale=1,this.normalMap=null,this.normalMapType=Yl,this.normalScale=new gt(1,1),this.displacementMap=null,this.displacementScale=1,this.displacementBias=0,this.roughnessMap=null,this.metalnessMap=null,this.alphaMap=null,this.envMap=null,this.envMapRotation=new pn,this.envMapIntensity=1,this.wireframe=!1,this.wireframeLinewidth=1,this.wireframeLinecap="round",this.wireframeLinejoin="round",this.flatShading=!1,this.fog=!0,this.setValues(t)}copy(t){return super.copy(t),this.defines={STANDARD:""},this.color.copy(t.color),this.roughness=t.roughness,this.metalness=t.metalness,this.map=t.map,this.lightMap=t.lightMap,this.lightMapIntensity=t.lightMapIntensity,this.aoMap=t.aoMap,this.aoMapIntensity=t.aoMapIntensity,this.emissive.copy(t.emissive),this.emissiveMap=t.emissiveMap,this.emissiveIntensity=t.emissiveIntensity,this.bumpMap=t.bumpMap,this.bumpScale=t.bumpScale,this.normalMap=t.normalMap,this.normalMapType=t.normalMapType,this.normalScale.copy(t.normalScale),this.displacementMap=t.displacementMap,this.displacementScale=t.displacementScale,this.displacementBias=t.displacementBias,this.roughnessMap=t.roughnessMap,this.metalnessMap=t.metalnessMap,this.alphaMap=t.alphaMap,this.envMap=t.envMap,this.envMapRotation.copy(t.envMapRotation),this.envMapIntensity=t.envMapIntensity,this.wireframe=t.wireframe,this.wireframeLinewidth=t.wireframeLinewidth,this.wireframeLinecap=t.wireframeLinecap,this.wireframeLinejoin=t.wireframeLinejoin,this.flatShading=t.flatShading,this.fog=t.fog,this}}class tu extends Hn{constructor(t){super(),this.isMeshDepthMaterial=!0,this.type="MeshDepthMaterial",this.depthPacking=lh,this.map=null,this.alphaMap=null,this.displacementMap=null,this.displacementScale=1,this.displacementBias=0,this.wireframe=!1,this.wireframeLinewidth=1,this.setValues(t)}copy(t){return super.copy(t),this.depthPacking=t.depthPacking,this.map=t.map,this.alphaMap=t.alphaMap,this.displacementMap=t.displacementMap,this.displacementScale=t.displacementScale,this.displacementBias=t.displacementBias,this.wireframe=t.wireframe,this.wireframeLinewidth=t.wireframeLinewidth,this}}class eu extends Hn{constructor(t){super(),this.isMeshDistanceMaterial=!0,this.type="MeshDistanceMaterial",this.map=null,this.alphaMap=null,this.displacementMap=null,this.displacementScale=1,this.displacementBias=0,this.setValues(t)}copy(t){return super.copy(t),this.map=t.map,this.alphaMap=t.alphaMap,this.displacementMap=t.displacementMap,this.displacementScale=t.displacementScale,this.displacementBias=t.displacementBias,this}}class ac extends be{constructor(t,e=1){super(),this.isLight=!0,this.type="Light",this.color=new xt(t),this.intensity=e}dispose(){}copy(t,e){return super.copy(t,e),this.color.copy(t.color),this.intensity=t.intensity,this}toJSON(t){const e=super.toJSON(t);return e.object.color=this.color.getHex(),e.object.intensity=this.intensity,this.groundColor!==void 0&&(e.object.groundColor=this.groundColor.getHex()),this.distance!==void 0&&(e.object.distance=this.distance),this.angle!==void 0&&(e.object.angle=this.angle),this.decay!==void 0&&(e.object.decay=this.decay),this.penumbra!==void 0&&(e.object.penumbra=this.penumbra),this.shadow!==void 0&&(e.object.shadow=this.shadow.toJSON()),this.target!==void 0&&(e.object.target=this.target.uuid),e}}const Or=new ee,ko=new P,Vo=new P;class nu{constructor(t){this.camera=t,this.intensity=1,this.bias=0,this.normalBias=0,this.radius=1,this.blurSamples=8,this.mapSize=new gt(512,512),this.map=null,this.mapPass=null,this.matrix=new ee,this.autoUpdate=!0,this.needsUpdate=!1,this._frustum=new Ka,this._frameExtents=new gt(1,1),this._viewportCount=1,this._viewports=[new oe(0,0,1,1)]}getViewportCount(){return this._viewportCount}getFrustum(){return this._frustum}updateMatrices(t){const e=this.camera,n=this.matrix;ko.setFromMatrixPosition(t.matrixWorld),e.position.copy(ko),Vo.setFromMatrixPosition(t.target.matrixWorld),e.lookAt(Vo),e.updateMatrixWorld(),Or.multiplyMatrices(e.projectionMatrix,e.matrixWorldInverse),this._frustum.setFromProjectionMatrix(Or),n.set(.5,0,0,.5,0,.5,0,.5,0,0,.5,.5,0,0,0,1),n.multiply(Or)}getViewport(t){return this._viewports[t]}getFrameExtents(){return this._frameExtents}dispose(){this.map&&this.map.dispose(),this.mapPass&&this.mapPass.dispose()}copy(t){return this.camera=t.camera.clone(),this.intensity=t.intensity,this.bias=t.bias,this.radius=t.radius,this.mapSize.copy(t.mapSize),this}clone(){return new this.constructor().copy(this)}toJSON(){const t={};return this.intensity!==1&&(t.intensity=this.intensity),this.bias!==0&&(t.bias=this.bias),this.normalBias!==0&&(t.normalBias=this.normalBias),this.radius!==1&&(t.radius=this.radius),(this.mapSize.x!==512||this.mapSize.y!==512)&&(t.mapSize=this.mapSize.toArray()),t.camera=this.camera.toJSON(!1).object,delete t.camera.matrix,t}}const Go=new ee,ns=new P,Br=new P;class iu extends nu{constructor(){super(new We(90,1,.5,500)),this.isPointLightShadow=!0,this._frameExtents=new gt(4,2),this._viewportCount=6,this._viewports=[new oe(2,1,1,1),new oe(0,1,1,1),new oe(3,1,1,1),new oe(1,1,1,1),new oe(3,0,1,1),new oe(1,0,1,1)],this._cubeDirections=[new P(1,0,0),new P(-1,0,0),new P(0,0,1),new P(0,0,-1),new P(0,1,0),new P(0,-1,0)],this._cubeUps=[new P(0,1,0),new P(0,1,0),new P(0,1,0),new P(0,1,0),new P(0,0,1),new P(0,0,-1)]}updateMatrices(t,e=0){const n=this.camera,s=this.matrix,r=t.distance||n.far;r!==n.far&&(n.far=r,n.updateProjectionMatrix()),ns.setFromMatrixPosition(t.matrixWorld),n.position.copy(ns),Br.copy(n.position),Br.add(this._cubeDirections[e]),n.up.copy(this._cubeUps[e]),n.lookAt(Br),n.updateMatrixWorld(),s.makeTranslation(-ns.x,-ns.y,-ns.z),Go.multiplyMatrices(n.projectionMatrix,n.matrixWorldInverse),this._frustum.setFromProjectionMatrix(Go)}}class Wo extends ac{constructor(t,e,n=0,s=2){super(t,e),this.isPointLight=!0,this.type="PointLight",this.distance=n,this.decay=s,this.shadow=new iu}get power(){return this.intensity*4*Math.PI}set power(t){this.intensity=t/(4*Math.PI)}dispose(){this.shadow.dispose()}copy(t,e){return super.copy(t,e),this.distance=t.distance,this.decay=t.decay,this.shadow=t.shadow.clone(),this}}class oc extends ec{constructor(t=-1,e=1,n=1,s=-1,r=.1,a=2e3){super(),this.isOrthographicCamera=!0,this.type="OrthographicCamera",this.zoom=1,this.view=null,this.left=t,this.right=e,this.top=n,this.bottom=s,this.near=r,this.far=a,this.updateProjectionMatrix()}copy(t,e){return super.copy(t,e),this.left=t.left,this.right=t.right,this.top=t.top,this.bottom=t.bottom,this.near=t.near,this.far=t.far,this.zoom=t.zoom,this.view=t.view===null?null:Object.assign({},t.view),this}setViewOffset(t,e,n,s,r,a){this.view===null&&(this.view={enabled:!0,fullWidth:1,fullHeight:1,offsetX:0,offsetY:0,width:1,height:1}),this.view.enabled=!0,this.view.fullWidth=t,this.view.fullHeight=e,this.view.offsetX=n,this.view.offsetY=s,this.view.width=r,this.view.height=a,this.updateProjectionMatrix()}clearViewOffset(){this.view!==null&&(this.view.enabled=!1),this.updateProjectionMatrix()}updateProjectionMatrix(){const t=(this.right-this.left)/(2*this.zoom),e=(this.top-this.bottom)/(2*this.zoom),n=(this.right+this.left)/2,s=(this.top+this.bottom)/2;let r=n-t,a=n+t,o=s+e,l=s-e;if(this.view!==null&&this.view.enabled){const c=(this.right-this.left)/this.view.fullWidth/this.zoom,h=(this.top-this.bottom)/this.view.fullHeight/this.zoom;r+=c*this.view.offsetX,a=r+c*this.view.width,o-=h*this.view.offsetY,l=o-h*this.view.height}this.projectionMatrix.makeOrthographic(r,a,o,l,this.near,this.far,this.coordinateSystem),this.projectionMatrixInverse.copy(this.projectionMatrix).invert()}toJSON(t){const e=super.toJSON(t);return e.object.zoom=this.zoom,e.object.left=this.left,e.object.right=this.right,e.object.top=this.top,e.object.bottom=this.bottom,e.object.near=this.near,e.object.far=this.far,this.view!==null&&(e.object.view=Object.assign({},this.view)),e}}class su extends ac{constructor(t,e){super(t,e),this.isAmbientLight=!0,this.type="AmbientLight"}}class ru extends We{constructor(t=[]){super(),this.isArrayCamera=!0,this.cameras=t}}class au{constructor(t=!0){this.autoStart=t,this.startTime=0,this.oldTime=0,this.elapsedTime=0,this.running=!1}start(){this.startTime=Xo(),this.oldTime=this.startTime,this.elapsedTime=0,this.running=!0}stop(){this.getElapsedTime(),this.running=!1,this.autoStart=!1}getElapsedTime(){return this.getDelta(),this.elapsedTime}getDelta(){let t=0;if(this.autoStart&&!this.running)return this.start(),0;if(this.running){const e=Xo();t=(e-this.oldTime)/1e3,this.oldTime=e,this.elapsedTime+=t}return t}}function Xo(){return performance.now()}const Yo=new ee;class ou{constructor(t,e,n=0,s=1/0){this.ray=new rs(t,e),this.near=n,this.far=s,this.camera=null,this.layers=new Za,this.params={Mesh:{},Line:{threshold:1},LOD:{},Points:{threshold:1},Sprite:{}}}set(t,e){this.ray.set(t,e)}setFromCamera(t,e){e.isPerspectiveCamera?(this.ray.origin.setFromMatrixPosition(e.matrixWorld),this.ray.direction.set(t.x,t.y,.5).unproject(e).sub(this.ray.origin).normalize(),this.camera=e):e.isOrthographicCamera?(this.ray.origin.set(t.x,t.y,(e.near+e.far)/(e.near-e.far)).unproject(e),this.ray.direction.set(0,0,-1).transformDirection(e.matrixWorld),this.camera=e):console.error("THREE.Raycaster: Unsupported camera type: "+e.type)}setFromXRController(t){return Yo.identity().extractRotation(t.matrixWorld),this.ray.origin.setFromMatrixPosition(t.matrixWorld),this.ray.direction.set(0,0,-1).applyMatrix4(Yo),this}intersectObject(t,e=!0,n=[]){return za(t,this,n,e),n.sort(qo),n}intersectObjects(t,e=!0,n=[]){for(let s=0,r=t.length;s<r;s++)za(t[s],this,n,e);return n.sort(qo),n}}function qo(i,t){return i.distance-t.distance}function za(i,t,e,n){let s=!0;if(i.layers.test(t.layers)&&i.raycast(t,e)===!1&&(s=!1),s===!0&&n===!0){const r=i.children;for(let a=0,o=r.length;a<o;a++)za(r[a],t,e,!0)}}class jo{constructor(t=1,e=0,n=0){return this.radius=t,this.phi=e,this.theta=n,this}set(t,e,n){return this.radius=t,this.phi=e,this.theta=n,this}copy(t){return this.radius=t.radius,this.phi=t.phi,this.theta=t.theta,this}makeSafe(){return this.phi=Gt(this.phi,1e-6,Math.PI-1e-6),this}setFromVector3(t){return this.setFromCartesianCoords(t.x,t.y,t.z)}setFromCartesianCoords(t,e,n){return this.radius=Math.sqrt(t*t+e*e+n*n),this.radius===0?(this.theta=0,this.phi=0):(this.theta=Math.atan2(t,n),this.phi=Math.acos(Gt(e/this.radius,-1,1))),this}clone(){return new this.constructor().copy(this)}}class lu extends ii{constructor(t,e=null){super(),this.object=t,this.domElement=e,this.enabled=!0,this.state=-1,this.keys={},this.mouseButtons={LEFT:null,MIDDLE:null,RIGHT:null},this.touches={ONE:null,TWO:null}}connect(){}disconnect(){}dispose(){}update(){}}function Zo(i,t,e,n){const s=cu(n);switch(e){case Hl:return i*t;case Vl:return i*t;case Gl:return i*t*2;case Xa:return i*t/s.components*s.byteLength;case Ya:return i*t/s.components*s.byteLength;case Wl:return i*t*2/s.components*s.byteLength;case qa:return i*t*2/s.components*s.byteLength;case kl:return i*t*3/s.components*s.byteLength;case rn:return i*t*4/s.components*s.byteLength;case ja:return i*t*4/s.components*s.byteLength;case ks:case Vs:return Math.floor((i+3)/4)*Math.floor((t+3)/4)*8;case Gs:case Ws:return Math.floor((i+3)/4)*Math.floor((t+3)/4)*16;case ca:case ua:return Math.max(i,16)*Math.max(t,8)/4;case la:case ha:return Math.max(i,8)*Math.max(t,8)/2;case da:case fa:return Math.floor((i+3)/4)*Math.floor((t+3)/4)*8;case pa:return Math.floor((i+3)/4)*Math.floor((t+3)/4)*16;case ma:return Math.floor((i+3)/4)*Math.floor((t+3)/4)*16;case _a:return Math.floor((i+4)/5)*Math.floor((t+3)/4)*16;case ga:return Math.floor((i+4)/5)*Math.floor((t+4)/5)*16;case va:return Math.floor((i+5)/6)*Math.floor((t+4)/5)*16;case xa:return Math.floor((i+5)/6)*Math.floor((t+5)/6)*16;case Ma:return Math.floor((i+7)/8)*Math.floor((t+4)/5)*16;case Sa:return Math.floor((i+7)/8)*Math.floor((t+5)/6)*16;case ya:return Math.floor((i+7)/8)*Math.floor((t+7)/8)*16;case Ea:return Math.floor((i+9)/10)*Math.floor((t+4)/5)*16;case Ta:return Math.floor((i+9)/10)*Math.floor((t+5)/6)*16;case ba:return Math.floor((i+9)/10)*Math.floor((t+7)/8)*16;case Aa:return Math.floor((i+9)/10)*Math.floor((t+9)/10)*16;case wa:return Math.floor((i+11)/12)*Math.floor((t+9)/10)*16;case Ra:return Math.floor((i+11)/12)*Math.floor((t+11)/12)*16;case Xs:case Ca:case Pa:return Math.ceil(i/4)*Math.ceil(t/4)*16;case Xl:case Da:return Math.ceil(i/4)*Math.ceil(t/4)*8;case La:case Ua:return Math.ceil(i/4)*Math.ceil(t/4)*16}throw new Error(`Unable to determine texture byte length for ${e} format.`)}function cu(i){switch(i){case wn:case Ol:return{byteLength:1,components:1};case ss:case Bl:case bn:return{byteLength:2,components:1};case Ga:case Wa:return{byteLength:2,components:4};case ei:case Va:case dn:return{byteLength:4,components:1};case zl:return{byteLength:4,components:3}}throw new Error(`Unknown texture type ${i}.`)}typeof __THREE_DEVTOOLS__<"u"&&__THREE_DEVTOOLS__.dispatchEvent(new CustomEvent("register",{detail:{revision:ka}}));typeof window<"u"&&(window.__THREE__?console.warn("WARNING: Multiple instances of Three.js being imported."):window.__THREE__=ka);/**
|
||
* @license
|
||
* Copyright 2010-2024 Three.js Authors
|
||
* SPDX-License-Identifier: MIT
|
||
*/function lc(){let i=null,t=!1,e=null,n=null;function s(r,a){e(r,a),n=i.requestAnimationFrame(s)}return{start:function(){t!==!0&&e!==null&&(n=i.requestAnimationFrame(s),t=!0)},stop:function(){i.cancelAnimationFrame(n),t=!1},setAnimationLoop:function(r){e=r},setContext:function(r){i=r}}}function hu(i){const t=new WeakMap;function e(o,l){const c=o.array,h=o.usage,d=c.byteLength,f=i.createBuffer();i.bindBuffer(l,f),i.bufferData(l,c,h),o.onUploadCallback();let m;if(c instanceof Float32Array)m=i.FLOAT;else if(c instanceof Uint16Array)o.isFloat16BufferAttribute?m=i.HALF_FLOAT:m=i.UNSIGNED_SHORT;else if(c instanceof Int16Array)m=i.SHORT;else if(c instanceof Uint32Array)m=i.UNSIGNED_INT;else if(c instanceof Int32Array)m=i.INT;else if(c instanceof Int8Array)m=i.BYTE;else if(c instanceof Uint8Array)m=i.UNSIGNED_BYTE;else if(c instanceof Uint8ClampedArray)m=i.UNSIGNED_BYTE;else throw new Error("THREE.WebGLAttributes: Unsupported buffer data format: "+c);return{buffer:f,type:m,bytesPerElement:c.BYTES_PER_ELEMENT,version:o.version,size:d}}function n(o,l,c){const h=l.array,d=l.updateRanges;if(i.bindBuffer(c,o),d.length===0)i.bufferSubData(c,0,h);else{d.sort((m,g)=>m.start-g.start);let f=0;for(let m=1;m<d.length;m++){const g=d[f],x=d[m];x.start<=g.start+g.count+1?g.count=Math.max(g.count,x.start+x.count-g.start):(++f,d[f]=x)}d.length=f+1;for(let m=0,g=d.length;m<g;m++){const x=d[m];i.bufferSubData(c,x.start*h.BYTES_PER_ELEMENT,h,x.start,x.count)}l.clearUpdateRanges()}l.onUploadCallback()}function s(o){return o.isInterleavedBufferAttribute&&(o=o.data),t.get(o)}function r(o){o.isInterleavedBufferAttribute&&(o=o.data);const l=t.get(o);l&&(i.deleteBuffer(l.buffer),t.delete(o))}function a(o,l){if(o.isInterleavedBufferAttribute&&(o=o.data),o.isGLBufferAttribute){const h=t.get(o);(!h||h.version<o.version)&&t.set(o,{buffer:o.buffer,type:o.type,bytesPerElement:o.elementSize,version:o.version});return}const c=t.get(o);if(c===void 0)t.set(o,e(o,l));else if(c.version<o.version){if(c.size!==o.array.byteLength)throw new Error("THREE.WebGLAttributes: The size of the buffer attribute's array buffer does not match the original size. Resizing buffer attributes is not supported.");n(c.buffer,o,l),c.version=o.version}}return{get:s,remove:r,update:a}}var uu=`#ifdef USE_ALPHAHASH
|
||
if ( diffuseColor.a < getAlphaHashThreshold( vPosition ) ) discard;
|
||
#endif`,du=`#ifdef USE_ALPHAHASH
|
||
const float ALPHA_HASH_SCALE = 0.05;
|
||
float hash2D( vec2 value ) {
|
||
return fract( 1.0e4 * sin( 17.0 * value.x + 0.1 * value.y ) * ( 0.1 + abs( sin( 13.0 * value.y + value.x ) ) ) );
|
||
}
|
||
float hash3D( vec3 value ) {
|
||
return hash2D( vec2( hash2D( value.xy ), value.z ) );
|
||
}
|
||
float getAlphaHashThreshold( vec3 position ) {
|
||
float maxDeriv = max(
|
||
length( dFdx( position.xyz ) ),
|
||
length( dFdy( position.xyz ) )
|
||
);
|
||
float pixScale = 1.0 / ( ALPHA_HASH_SCALE * maxDeriv );
|
||
vec2 pixScales = vec2(
|
||
exp2( floor( log2( pixScale ) ) ),
|
||
exp2( ceil( log2( pixScale ) ) )
|
||
);
|
||
vec2 alpha = vec2(
|
||
hash3D( floor( pixScales.x * position.xyz ) ),
|
||
hash3D( floor( pixScales.y * position.xyz ) )
|
||
);
|
||
float lerpFactor = fract( log2( pixScale ) );
|
||
float x = ( 1.0 - lerpFactor ) * alpha.x + lerpFactor * alpha.y;
|
||
float a = min( lerpFactor, 1.0 - lerpFactor );
|
||
vec3 cases = vec3(
|
||
x * x / ( 2.0 * a * ( 1.0 - a ) ),
|
||
( x - 0.5 * a ) / ( 1.0 - a ),
|
||
1.0 - ( ( 1.0 - x ) * ( 1.0 - x ) / ( 2.0 * a * ( 1.0 - a ) ) )
|
||
);
|
||
float threshold = ( x < ( 1.0 - a ) )
|
||
? ( ( x < a ) ? cases.x : cases.y )
|
||
: cases.z;
|
||
return clamp( threshold , 1.0e-6, 1.0 );
|
||
}
|
||
#endif`,fu=`#ifdef USE_ALPHAMAP
|
||
diffuseColor.a *= texture2D( alphaMap, vAlphaMapUv ).g;
|
||
#endif`,pu=`#ifdef USE_ALPHAMAP
|
||
uniform sampler2D alphaMap;
|
||
#endif`,mu=`#ifdef USE_ALPHATEST
|
||
#ifdef ALPHA_TO_COVERAGE
|
||
diffuseColor.a = smoothstep( alphaTest, alphaTest + fwidth( diffuseColor.a ), diffuseColor.a );
|
||
if ( diffuseColor.a == 0.0 ) discard;
|
||
#else
|
||
if ( diffuseColor.a < alphaTest ) discard;
|
||
#endif
|
||
#endif`,_u=`#ifdef USE_ALPHATEST
|
||
uniform float alphaTest;
|
||
#endif`,gu=`#ifdef USE_AOMAP
|
||
float ambientOcclusion = ( texture2D( aoMap, vAoMapUv ).r - 1.0 ) * aoMapIntensity + 1.0;
|
||
reflectedLight.indirectDiffuse *= ambientOcclusion;
|
||
#if defined( USE_CLEARCOAT )
|
||
clearcoatSpecularIndirect *= ambientOcclusion;
|
||
#endif
|
||
#if defined( USE_SHEEN )
|
||
sheenSpecularIndirect *= ambientOcclusion;
|
||
#endif
|
||
#if defined( USE_ENVMAP ) && defined( STANDARD )
|
||
float dotNV = saturate( dot( geometryNormal, geometryViewDir ) );
|
||
reflectedLight.indirectSpecular *= computeSpecularOcclusion( dotNV, ambientOcclusion, material.roughness );
|
||
#endif
|
||
#endif`,vu=`#ifdef USE_AOMAP
|
||
uniform sampler2D aoMap;
|
||
uniform float aoMapIntensity;
|
||
#endif`,xu=`#ifdef USE_BATCHING
|
||
#if ! defined( GL_ANGLE_multi_draw )
|
||
#define gl_DrawID _gl_DrawID
|
||
uniform int _gl_DrawID;
|
||
#endif
|
||
uniform highp sampler2D batchingTexture;
|
||
uniform highp usampler2D batchingIdTexture;
|
||
mat4 getBatchingMatrix( const in float i ) {
|
||
int size = textureSize( batchingTexture, 0 ).x;
|
||
int j = int( i ) * 4;
|
||
int x = j % size;
|
||
int y = j / size;
|
||
vec4 v1 = texelFetch( batchingTexture, ivec2( x, y ), 0 );
|
||
vec4 v2 = texelFetch( batchingTexture, ivec2( x + 1, y ), 0 );
|
||
vec4 v3 = texelFetch( batchingTexture, ivec2( x + 2, y ), 0 );
|
||
vec4 v4 = texelFetch( batchingTexture, ivec2( x + 3, y ), 0 );
|
||
return mat4( v1, v2, v3, v4 );
|
||
}
|
||
float getIndirectIndex( const in int i ) {
|
||
int size = textureSize( batchingIdTexture, 0 ).x;
|
||
int x = i % size;
|
||
int y = i / size;
|
||
return float( texelFetch( batchingIdTexture, ivec2( x, y ), 0 ).r );
|
||
}
|
||
#endif
|
||
#ifdef USE_BATCHING_COLOR
|
||
uniform sampler2D batchingColorTexture;
|
||
vec3 getBatchingColor( const in float i ) {
|
||
int size = textureSize( batchingColorTexture, 0 ).x;
|
||
int j = int( i );
|
||
int x = j % size;
|
||
int y = j / size;
|
||
return texelFetch( batchingColorTexture, ivec2( x, y ), 0 ).rgb;
|
||
}
|
||
#endif`,Mu=`#ifdef USE_BATCHING
|
||
mat4 batchingMatrix = getBatchingMatrix( getIndirectIndex( gl_DrawID ) );
|
||
#endif`,Su=`vec3 transformed = vec3( position );
|
||
#ifdef USE_ALPHAHASH
|
||
vPosition = vec3( position );
|
||
#endif`,yu=`vec3 objectNormal = vec3( normal );
|
||
#ifdef USE_TANGENT
|
||
vec3 objectTangent = vec3( tangent.xyz );
|
||
#endif`,Eu=`float G_BlinnPhong_Implicit( ) {
|
||
return 0.25;
|
||
}
|
||
float D_BlinnPhong( const in float shininess, const in float dotNH ) {
|
||
return RECIPROCAL_PI * ( shininess * 0.5 + 1.0 ) * pow( dotNH, shininess );
|
||
}
|
||
vec3 BRDF_BlinnPhong( const in vec3 lightDir, const in vec3 viewDir, const in vec3 normal, const in vec3 specularColor, const in float shininess ) {
|
||
vec3 halfDir = normalize( lightDir + viewDir );
|
||
float dotNH = saturate( dot( normal, halfDir ) );
|
||
float dotVH = saturate( dot( viewDir, halfDir ) );
|
||
vec3 F = F_Schlick( specularColor, 1.0, dotVH );
|
||
float G = G_BlinnPhong_Implicit( );
|
||
float D = D_BlinnPhong( shininess, dotNH );
|
||
return F * ( G * D );
|
||
} // validated`,Tu=`#ifdef USE_IRIDESCENCE
|
||
const mat3 XYZ_TO_REC709 = mat3(
|
||
3.2404542, -0.9692660, 0.0556434,
|
||
-1.5371385, 1.8760108, -0.2040259,
|
||
-0.4985314, 0.0415560, 1.0572252
|
||
);
|
||
vec3 Fresnel0ToIor( vec3 fresnel0 ) {
|
||
vec3 sqrtF0 = sqrt( fresnel0 );
|
||
return ( vec3( 1.0 ) + sqrtF0 ) / ( vec3( 1.0 ) - sqrtF0 );
|
||
}
|
||
vec3 IorToFresnel0( vec3 transmittedIor, float incidentIor ) {
|
||
return pow2( ( transmittedIor - vec3( incidentIor ) ) / ( transmittedIor + vec3( incidentIor ) ) );
|
||
}
|
||
float IorToFresnel0( float transmittedIor, float incidentIor ) {
|
||
return pow2( ( transmittedIor - incidentIor ) / ( transmittedIor + incidentIor ));
|
||
}
|
||
vec3 evalSensitivity( float OPD, vec3 shift ) {
|
||
float phase = 2.0 * PI * OPD * 1.0e-9;
|
||
vec3 val = vec3( 5.4856e-13, 4.4201e-13, 5.2481e-13 );
|
||
vec3 pos = vec3( 1.6810e+06, 1.7953e+06, 2.2084e+06 );
|
||
vec3 var = vec3( 4.3278e+09, 9.3046e+09, 6.6121e+09 );
|
||
vec3 xyz = val * sqrt( 2.0 * PI * var ) * cos( pos * phase + shift ) * exp( - pow2( phase ) * var );
|
||
xyz.x += 9.7470e-14 * sqrt( 2.0 * PI * 4.5282e+09 ) * cos( 2.2399e+06 * phase + shift[ 0 ] ) * exp( - 4.5282e+09 * pow2( phase ) );
|
||
xyz /= 1.0685e-7;
|
||
vec3 rgb = XYZ_TO_REC709 * xyz;
|
||
return rgb;
|
||
}
|
||
vec3 evalIridescence( float outsideIOR, float eta2, float cosTheta1, float thinFilmThickness, vec3 baseF0 ) {
|
||
vec3 I;
|
||
float iridescenceIOR = mix( outsideIOR, eta2, smoothstep( 0.0, 0.03, thinFilmThickness ) );
|
||
float sinTheta2Sq = pow2( outsideIOR / iridescenceIOR ) * ( 1.0 - pow2( cosTheta1 ) );
|
||
float cosTheta2Sq = 1.0 - sinTheta2Sq;
|
||
if ( cosTheta2Sq < 0.0 ) {
|
||
return vec3( 1.0 );
|
||
}
|
||
float cosTheta2 = sqrt( cosTheta2Sq );
|
||
float R0 = IorToFresnel0( iridescenceIOR, outsideIOR );
|
||
float R12 = F_Schlick( R0, 1.0, cosTheta1 );
|
||
float T121 = 1.0 - R12;
|
||
float phi12 = 0.0;
|
||
if ( iridescenceIOR < outsideIOR ) phi12 = PI;
|
||
float phi21 = PI - phi12;
|
||
vec3 baseIOR = Fresnel0ToIor( clamp( baseF0, 0.0, 0.9999 ) ); vec3 R1 = IorToFresnel0( baseIOR, iridescenceIOR );
|
||
vec3 R23 = F_Schlick( R1, 1.0, cosTheta2 );
|
||
vec3 phi23 = vec3( 0.0 );
|
||
if ( baseIOR[ 0 ] < iridescenceIOR ) phi23[ 0 ] = PI;
|
||
if ( baseIOR[ 1 ] < iridescenceIOR ) phi23[ 1 ] = PI;
|
||
if ( baseIOR[ 2 ] < iridescenceIOR ) phi23[ 2 ] = PI;
|
||
float OPD = 2.0 * iridescenceIOR * thinFilmThickness * cosTheta2;
|
||
vec3 phi = vec3( phi21 ) + phi23;
|
||
vec3 R123 = clamp( R12 * R23, 1e-5, 0.9999 );
|
||
vec3 r123 = sqrt( R123 );
|
||
vec3 Rs = pow2( T121 ) * R23 / ( vec3( 1.0 ) - R123 );
|
||
vec3 C0 = R12 + Rs;
|
||
I = C0;
|
||
vec3 Cm = Rs - T121;
|
||
for ( int m = 1; m <= 2; ++ m ) {
|
||
Cm *= r123;
|
||
vec3 Sm = 2.0 * evalSensitivity( float( m ) * OPD, float( m ) * phi );
|
||
I += Cm * Sm;
|
||
}
|
||
return max( I, vec3( 0.0 ) );
|
||
}
|
||
#endif`,bu=`#ifdef USE_BUMPMAP
|
||
uniform sampler2D bumpMap;
|
||
uniform float bumpScale;
|
||
vec2 dHdxy_fwd() {
|
||
vec2 dSTdx = dFdx( vBumpMapUv );
|
||
vec2 dSTdy = dFdy( vBumpMapUv );
|
||
float Hll = bumpScale * texture2D( bumpMap, vBumpMapUv ).x;
|
||
float dBx = bumpScale * texture2D( bumpMap, vBumpMapUv + dSTdx ).x - Hll;
|
||
float dBy = bumpScale * texture2D( bumpMap, vBumpMapUv + dSTdy ).x - Hll;
|
||
return vec2( dBx, dBy );
|
||
}
|
||
vec3 perturbNormalArb( vec3 surf_pos, vec3 surf_norm, vec2 dHdxy, float faceDirection ) {
|
||
vec3 vSigmaX = normalize( dFdx( surf_pos.xyz ) );
|
||
vec3 vSigmaY = normalize( dFdy( surf_pos.xyz ) );
|
||
vec3 vN = surf_norm;
|
||
vec3 R1 = cross( vSigmaY, vN );
|
||
vec3 R2 = cross( vN, vSigmaX );
|
||
float fDet = dot( vSigmaX, R1 ) * faceDirection;
|
||
vec3 vGrad = sign( fDet ) * ( dHdxy.x * R1 + dHdxy.y * R2 );
|
||
return normalize( abs( fDet ) * surf_norm - vGrad );
|
||
}
|
||
#endif`,Au=`#if NUM_CLIPPING_PLANES > 0
|
||
vec4 plane;
|
||
#ifdef ALPHA_TO_COVERAGE
|
||
float distanceToPlane, distanceGradient;
|
||
float clipOpacity = 1.0;
|
||
#pragma unroll_loop_start
|
||
for ( int i = 0; i < UNION_CLIPPING_PLANES; i ++ ) {
|
||
plane = clippingPlanes[ i ];
|
||
distanceToPlane = - dot( vClipPosition, plane.xyz ) + plane.w;
|
||
distanceGradient = fwidth( distanceToPlane ) / 2.0;
|
||
clipOpacity *= smoothstep( - distanceGradient, distanceGradient, distanceToPlane );
|
||
if ( clipOpacity == 0.0 ) discard;
|
||
}
|
||
#pragma unroll_loop_end
|
||
#if UNION_CLIPPING_PLANES < NUM_CLIPPING_PLANES
|
||
float unionClipOpacity = 1.0;
|
||
#pragma unroll_loop_start
|
||
for ( int i = UNION_CLIPPING_PLANES; i < NUM_CLIPPING_PLANES; i ++ ) {
|
||
plane = clippingPlanes[ i ];
|
||
distanceToPlane = - dot( vClipPosition, plane.xyz ) + plane.w;
|
||
distanceGradient = fwidth( distanceToPlane ) / 2.0;
|
||
unionClipOpacity *= 1.0 - smoothstep( - distanceGradient, distanceGradient, distanceToPlane );
|
||
}
|
||
#pragma unroll_loop_end
|
||
clipOpacity *= 1.0 - unionClipOpacity;
|
||
#endif
|
||
diffuseColor.a *= clipOpacity;
|
||
if ( diffuseColor.a == 0.0 ) discard;
|
||
#else
|
||
#pragma unroll_loop_start
|
||
for ( int i = 0; i < UNION_CLIPPING_PLANES; i ++ ) {
|
||
plane = clippingPlanes[ i ];
|
||
if ( dot( vClipPosition, plane.xyz ) > plane.w ) discard;
|
||
}
|
||
#pragma unroll_loop_end
|
||
#if UNION_CLIPPING_PLANES < NUM_CLIPPING_PLANES
|
||
bool clipped = true;
|
||
#pragma unroll_loop_start
|
||
for ( int i = UNION_CLIPPING_PLANES; i < NUM_CLIPPING_PLANES; i ++ ) {
|
||
plane = clippingPlanes[ i ];
|
||
clipped = ( dot( vClipPosition, plane.xyz ) > plane.w ) && clipped;
|
||
}
|
||
#pragma unroll_loop_end
|
||
if ( clipped ) discard;
|
||
#endif
|
||
#endif
|
||
#endif`,wu=`#if NUM_CLIPPING_PLANES > 0
|
||
varying vec3 vClipPosition;
|
||
uniform vec4 clippingPlanes[ NUM_CLIPPING_PLANES ];
|
||
#endif`,Ru=`#if NUM_CLIPPING_PLANES > 0
|
||
varying vec3 vClipPosition;
|
||
#endif`,Cu=`#if NUM_CLIPPING_PLANES > 0
|
||
vClipPosition = - mvPosition.xyz;
|
||
#endif`,Pu=`#if defined( USE_COLOR_ALPHA )
|
||
diffuseColor *= vColor;
|
||
#elif defined( USE_COLOR )
|
||
diffuseColor.rgb *= vColor;
|
||
#endif`,Du=`#if defined( USE_COLOR_ALPHA )
|
||
varying vec4 vColor;
|
||
#elif defined( USE_COLOR )
|
||
varying vec3 vColor;
|
||
#endif`,Lu=`#if defined( USE_COLOR_ALPHA )
|
||
varying vec4 vColor;
|
||
#elif defined( USE_COLOR ) || defined( USE_INSTANCING_COLOR ) || defined( USE_BATCHING_COLOR )
|
||
varying vec3 vColor;
|
||
#endif`,Uu=`#if defined( USE_COLOR_ALPHA )
|
||
vColor = vec4( 1.0 );
|
||
#elif defined( USE_COLOR ) || defined( USE_INSTANCING_COLOR ) || defined( USE_BATCHING_COLOR )
|
||
vColor = vec3( 1.0 );
|
||
#endif
|
||
#ifdef USE_COLOR
|
||
vColor *= color;
|
||
#endif
|
||
#ifdef USE_INSTANCING_COLOR
|
||
vColor.xyz *= instanceColor.xyz;
|
||
#endif
|
||
#ifdef USE_BATCHING_COLOR
|
||
vec3 batchingColor = getBatchingColor( getIndirectIndex( gl_DrawID ) );
|
||
vColor.xyz *= batchingColor.xyz;
|
||
#endif`,Iu=`#define PI 3.141592653589793
|
||
#define PI2 6.283185307179586
|
||
#define PI_HALF 1.5707963267948966
|
||
#define RECIPROCAL_PI 0.3183098861837907
|
||
#define RECIPROCAL_PI2 0.15915494309189535
|
||
#define EPSILON 1e-6
|
||
#ifndef saturate
|
||
#define saturate( a ) clamp( a, 0.0, 1.0 )
|
||
#endif
|
||
#define whiteComplement( a ) ( 1.0 - saturate( a ) )
|
||
float pow2( const in float x ) { return x*x; }
|
||
vec3 pow2( const in vec3 x ) { return x*x; }
|
||
float pow3( const in float x ) { return x*x*x; }
|
||
float pow4( const in float x ) { float x2 = x*x; return x2*x2; }
|
||
float max3( const in vec3 v ) { return max( max( v.x, v.y ), v.z ); }
|
||
float average( const in vec3 v ) { return dot( v, vec3( 0.3333333 ) ); }
|
||
highp float rand( const in vec2 uv ) {
|
||
const highp float a = 12.9898, b = 78.233, c = 43758.5453;
|
||
highp float dt = dot( uv.xy, vec2( a,b ) ), sn = mod( dt, PI );
|
||
return fract( sin( sn ) * c );
|
||
}
|
||
#ifdef HIGH_PRECISION
|
||
float precisionSafeLength( vec3 v ) { return length( v ); }
|
||
#else
|
||
float precisionSafeLength( vec3 v ) {
|
||
float maxComponent = max3( abs( v ) );
|
||
return length( v / maxComponent ) * maxComponent;
|
||
}
|
||
#endif
|
||
struct IncidentLight {
|
||
vec3 color;
|
||
vec3 direction;
|
||
bool visible;
|
||
};
|
||
struct ReflectedLight {
|
||
vec3 directDiffuse;
|
||
vec3 directSpecular;
|
||
vec3 indirectDiffuse;
|
||
vec3 indirectSpecular;
|
||
};
|
||
#ifdef USE_ALPHAHASH
|
||
varying vec3 vPosition;
|
||
#endif
|
||
vec3 transformDirection( in vec3 dir, in mat4 matrix ) {
|
||
return normalize( ( matrix * vec4( dir, 0.0 ) ).xyz );
|
||
}
|
||
vec3 inverseTransformDirection( in vec3 dir, in mat4 matrix ) {
|
||
return normalize( ( vec4( dir, 0.0 ) * matrix ).xyz );
|
||
}
|
||
mat3 transposeMat3( const in mat3 m ) {
|
||
mat3 tmp;
|
||
tmp[ 0 ] = vec3( m[ 0 ].x, m[ 1 ].x, m[ 2 ].x );
|
||
tmp[ 1 ] = vec3( m[ 0 ].y, m[ 1 ].y, m[ 2 ].y );
|
||
tmp[ 2 ] = vec3( m[ 0 ].z, m[ 1 ].z, m[ 2 ].z );
|
||
return tmp;
|
||
}
|
||
bool isPerspectiveMatrix( mat4 m ) {
|
||
return m[ 2 ][ 3 ] == - 1.0;
|
||
}
|
||
vec2 equirectUv( in vec3 dir ) {
|
||
float u = atan( dir.z, dir.x ) * RECIPROCAL_PI2 + 0.5;
|
||
float v = asin( clamp( dir.y, - 1.0, 1.0 ) ) * RECIPROCAL_PI + 0.5;
|
||
return vec2( u, v );
|
||
}
|
||
vec3 BRDF_Lambert( const in vec3 diffuseColor ) {
|
||
return RECIPROCAL_PI * diffuseColor;
|
||
}
|
||
vec3 F_Schlick( const in vec3 f0, const in float f90, const in float dotVH ) {
|
||
float fresnel = exp2( ( - 5.55473 * dotVH - 6.98316 ) * dotVH );
|
||
return f0 * ( 1.0 - fresnel ) + ( f90 * fresnel );
|
||
}
|
||
float F_Schlick( const in float f0, const in float f90, const in float dotVH ) {
|
||
float fresnel = exp2( ( - 5.55473 * dotVH - 6.98316 ) * dotVH );
|
||
return f0 * ( 1.0 - fresnel ) + ( f90 * fresnel );
|
||
} // validated`,Nu=`#ifdef ENVMAP_TYPE_CUBE_UV
|
||
#define cubeUV_minMipLevel 4.0
|
||
#define cubeUV_minTileSize 16.0
|
||
float getFace( vec3 direction ) {
|
||
vec3 absDirection = abs( direction );
|
||
float face = - 1.0;
|
||
if ( absDirection.x > absDirection.z ) {
|
||
if ( absDirection.x > absDirection.y )
|
||
face = direction.x > 0.0 ? 0.0 : 3.0;
|
||
else
|
||
face = direction.y > 0.0 ? 1.0 : 4.0;
|
||
} else {
|
||
if ( absDirection.z > absDirection.y )
|
||
face = direction.z > 0.0 ? 2.0 : 5.0;
|
||
else
|
||
face = direction.y > 0.0 ? 1.0 : 4.0;
|
||
}
|
||
return face;
|
||
}
|
||
vec2 getUV( vec3 direction, float face ) {
|
||
vec2 uv;
|
||
if ( face == 0.0 ) {
|
||
uv = vec2( direction.z, direction.y ) / abs( direction.x );
|
||
} else if ( face == 1.0 ) {
|
||
uv = vec2( - direction.x, - direction.z ) / abs( direction.y );
|
||
} else if ( face == 2.0 ) {
|
||
uv = vec2( - direction.x, direction.y ) / abs( direction.z );
|
||
} else if ( face == 3.0 ) {
|
||
uv = vec2( - direction.z, direction.y ) / abs( direction.x );
|
||
} else if ( face == 4.0 ) {
|
||
uv = vec2( - direction.x, direction.z ) / abs( direction.y );
|
||
} else {
|
||
uv = vec2( direction.x, direction.y ) / abs( direction.z );
|
||
}
|
||
return 0.5 * ( uv + 1.0 );
|
||
}
|
||
vec3 bilinearCubeUV( sampler2D envMap, vec3 direction, float mipInt ) {
|
||
float face = getFace( direction );
|
||
float filterInt = max( cubeUV_minMipLevel - mipInt, 0.0 );
|
||
mipInt = max( mipInt, cubeUV_minMipLevel );
|
||
float faceSize = exp2( mipInt );
|
||
highp vec2 uv = getUV( direction, face ) * ( faceSize - 2.0 ) + 1.0;
|
||
if ( face > 2.0 ) {
|
||
uv.y += faceSize;
|
||
face -= 3.0;
|
||
}
|
||
uv.x += face * faceSize;
|
||
uv.x += filterInt * 3.0 * cubeUV_minTileSize;
|
||
uv.y += 4.0 * ( exp2( CUBEUV_MAX_MIP ) - faceSize );
|
||
uv.x *= CUBEUV_TEXEL_WIDTH;
|
||
uv.y *= CUBEUV_TEXEL_HEIGHT;
|
||
#ifdef texture2DGradEXT
|
||
return texture2DGradEXT( envMap, uv, vec2( 0.0 ), vec2( 0.0 ) ).rgb;
|
||
#else
|
||
return texture2D( envMap, uv ).rgb;
|
||
#endif
|
||
}
|
||
#define cubeUV_r0 1.0
|
||
#define cubeUV_m0 - 2.0
|
||
#define cubeUV_r1 0.8
|
||
#define cubeUV_m1 - 1.0
|
||
#define cubeUV_r4 0.4
|
||
#define cubeUV_m4 2.0
|
||
#define cubeUV_r5 0.305
|
||
#define cubeUV_m5 3.0
|
||
#define cubeUV_r6 0.21
|
||
#define cubeUV_m6 4.0
|
||
float roughnessToMip( float roughness ) {
|
||
float mip = 0.0;
|
||
if ( roughness >= cubeUV_r1 ) {
|
||
mip = ( cubeUV_r0 - roughness ) * ( cubeUV_m1 - cubeUV_m0 ) / ( cubeUV_r0 - cubeUV_r1 ) + cubeUV_m0;
|
||
} else if ( roughness >= cubeUV_r4 ) {
|
||
mip = ( cubeUV_r1 - roughness ) * ( cubeUV_m4 - cubeUV_m1 ) / ( cubeUV_r1 - cubeUV_r4 ) + cubeUV_m1;
|
||
} else if ( roughness >= cubeUV_r5 ) {
|
||
mip = ( cubeUV_r4 - roughness ) * ( cubeUV_m5 - cubeUV_m4 ) / ( cubeUV_r4 - cubeUV_r5 ) + cubeUV_m4;
|
||
} else if ( roughness >= cubeUV_r6 ) {
|
||
mip = ( cubeUV_r5 - roughness ) * ( cubeUV_m6 - cubeUV_m5 ) / ( cubeUV_r5 - cubeUV_r6 ) + cubeUV_m5;
|
||
} else {
|
||
mip = - 2.0 * log2( 1.16 * roughness ); }
|
||
return mip;
|
||
}
|
||
vec4 textureCubeUV( sampler2D envMap, vec3 sampleDir, float roughness ) {
|
||
float mip = clamp( roughnessToMip( roughness ), cubeUV_m0, CUBEUV_MAX_MIP );
|
||
float mipF = fract( mip );
|
||
float mipInt = floor( mip );
|
||
vec3 color0 = bilinearCubeUV( envMap, sampleDir, mipInt );
|
||
if ( mipF == 0.0 ) {
|
||
return vec4( color0, 1.0 );
|
||
} else {
|
||
vec3 color1 = bilinearCubeUV( envMap, sampleDir, mipInt + 1.0 );
|
||
return vec4( mix( color0, color1, mipF ), 1.0 );
|
||
}
|
||
}
|
||
#endif`,Fu=`vec3 transformedNormal = objectNormal;
|
||
#ifdef USE_TANGENT
|
||
vec3 transformedTangent = objectTangent;
|
||
#endif
|
||
#ifdef USE_BATCHING
|
||
mat3 bm = mat3( batchingMatrix );
|
||
transformedNormal /= vec3( dot( bm[ 0 ], bm[ 0 ] ), dot( bm[ 1 ], bm[ 1 ] ), dot( bm[ 2 ], bm[ 2 ] ) );
|
||
transformedNormal = bm * transformedNormal;
|
||
#ifdef USE_TANGENT
|
||
transformedTangent = bm * transformedTangent;
|
||
#endif
|
||
#endif
|
||
#ifdef USE_INSTANCING
|
||
mat3 im = mat3( instanceMatrix );
|
||
transformedNormal /= vec3( dot( im[ 0 ], im[ 0 ] ), dot( im[ 1 ], im[ 1 ] ), dot( im[ 2 ], im[ 2 ] ) );
|
||
transformedNormal = im * transformedNormal;
|
||
#ifdef USE_TANGENT
|
||
transformedTangent = im * transformedTangent;
|
||
#endif
|
||
#endif
|
||
transformedNormal = normalMatrix * transformedNormal;
|
||
#ifdef FLIP_SIDED
|
||
transformedNormal = - transformedNormal;
|
||
#endif
|
||
#ifdef USE_TANGENT
|
||
transformedTangent = ( modelViewMatrix * vec4( transformedTangent, 0.0 ) ).xyz;
|
||
#ifdef FLIP_SIDED
|
||
transformedTangent = - transformedTangent;
|
||
#endif
|
||
#endif`,Ou=`#ifdef USE_DISPLACEMENTMAP
|
||
uniform sampler2D displacementMap;
|
||
uniform float displacementScale;
|
||
uniform float displacementBias;
|
||
#endif`,Bu=`#ifdef USE_DISPLACEMENTMAP
|
||
transformed += normalize( objectNormal ) * ( texture2D( displacementMap, vDisplacementMapUv ).x * displacementScale + displacementBias );
|
||
#endif`,zu=`#ifdef USE_EMISSIVEMAP
|
||
vec4 emissiveColor = texture2D( emissiveMap, vEmissiveMapUv );
|
||
#ifdef DECODE_VIDEO_TEXTURE_EMISSIVE
|
||
emissiveColor = sRGBTransferEOTF( emissiveColor );
|
||
#endif
|
||
totalEmissiveRadiance *= emissiveColor.rgb;
|
||
#endif`,Hu=`#ifdef USE_EMISSIVEMAP
|
||
uniform sampler2D emissiveMap;
|
||
#endif`,ku="gl_FragColor = linearToOutputTexel( gl_FragColor );",Vu=`vec4 LinearTransferOETF( in vec4 value ) {
|
||
return value;
|
||
}
|
||
vec4 sRGBTransferEOTF( in vec4 value ) {
|
||
return vec4( mix( pow( value.rgb * 0.9478672986 + vec3( 0.0521327014 ), vec3( 2.4 ) ), value.rgb * 0.0773993808, vec3( lessThanEqual( value.rgb, vec3( 0.04045 ) ) ) ), value.a );
|
||
}
|
||
vec4 sRGBTransferOETF( in vec4 value ) {
|
||
return vec4( mix( pow( value.rgb, vec3( 0.41666 ) ) * 1.055 - vec3( 0.055 ), value.rgb * 12.92, vec3( lessThanEqual( value.rgb, vec3( 0.0031308 ) ) ) ), value.a );
|
||
}`,Gu=`#ifdef USE_ENVMAP
|
||
#ifdef ENV_WORLDPOS
|
||
vec3 cameraToFrag;
|
||
if ( isOrthographic ) {
|
||
cameraToFrag = normalize( vec3( - viewMatrix[ 0 ][ 2 ], - viewMatrix[ 1 ][ 2 ], - viewMatrix[ 2 ][ 2 ] ) );
|
||
} else {
|
||
cameraToFrag = normalize( vWorldPosition - cameraPosition );
|
||
}
|
||
vec3 worldNormal = inverseTransformDirection( normal, viewMatrix );
|
||
#ifdef ENVMAP_MODE_REFLECTION
|
||
vec3 reflectVec = reflect( cameraToFrag, worldNormal );
|
||
#else
|
||
vec3 reflectVec = refract( cameraToFrag, worldNormal, refractionRatio );
|
||
#endif
|
||
#else
|
||
vec3 reflectVec = vReflect;
|
||
#endif
|
||
#ifdef ENVMAP_TYPE_CUBE
|
||
vec4 envColor = textureCube( envMap, envMapRotation * vec3( flipEnvMap * reflectVec.x, reflectVec.yz ) );
|
||
#else
|
||
vec4 envColor = vec4( 0.0 );
|
||
#endif
|
||
#ifdef ENVMAP_BLENDING_MULTIPLY
|
||
outgoingLight = mix( outgoingLight, outgoingLight * envColor.xyz, specularStrength * reflectivity );
|
||
#elif defined( ENVMAP_BLENDING_MIX )
|
||
outgoingLight = mix( outgoingLight, envColor.xyz, specularStrength * reflectivity );
|
||
#elif defined( ENVMAP_BLENDING_ADD )
|
||
outgoingLight += envColor.xyz * specularStrength * reflectivity;
|
||
#endif
|
||
#endif`,Wu=`#ifdef USE_ENVMAP
|
||
uniform float envMapIntensity;
|
||
uniform float flipEnvMap;
|
||
uniform mat3 envMapRotation;
|
||
#ifdef ENVMAP_TYPE_CUBE
|
||
uniform samplerCube envMap;
|
||
#else
|
||
uniform sampler2D envMap;
|
||
#endif
|
||
|
||
#endif`,Xu=`#ifdef USE_ENVMAP
|
||
uniform float reflectivity;
|
||
#if defined( USE_BUMPMAP ) || defined( USE_NORMALMAP ) || defined( PHONG ) || defined( LAMBERT )
|
||
#define ENV_WORLDPOS
|
||
#endif
|
||
#ifdef ENV_WORLDPOS
|
||
varying vec3 vWorldPosition;
|
||
uniform float refractionRatio;
|
||
#else
|
||
varying vec3 vReflect;
|
||
#endif
|
||
#endif`,Yu=`#ifdef USE_ENVMAP
|
||
#if defined( USE_BUMPMAP ) || defined( USE_NORMALMAP ) || defined( PHONG ) || defined( LAMBERT )
|
||
#define ENV_WORLDPOS
|
||
#endif
|
||
#ifdef ENV_WORLDPOS
|
||
|
||
varying vec3 vWorldPosition;
|
||
#else
|
||
varying vec3 vReflect;
|
||
uniform float refractionRatio;
|
||
#endif
|
||
#endif`,qu=`#ifdef USE_ENVMAP
|
||
#ifdef ENV_WORLDPOS
|
||
vWorldPosition = worldPosition.xyz;
|
||
#else
|
||
vec3 cameraToVertex;
|
||
if ( isOrthographic ) {
|
||
cameraToVertex = normalize( vec3( - viewMatrix[ 0 ][ 2 ], - viewMatrix[ 1 ][ 2 ], - viewMatrix[ 2 ][ 2 ] ) );
|
||
} else {
|
||
cameraToVertex = normalize( worldPosition.xyz - cameraPosition );
|
||
}
|
||
vec3 worldNormal = inverseTransformDirection( transformedNormal, viewMatrix );
|
||
#ifdef ENVMAP_MODE_REFLECTION
|
||
vReflect = reflect( cameraToVertex, worldNormal );
|
||
#else
|
||
vReflect = refract( cameraToVertex, worldNormal, refractionRatio );
|
||
#endif
|
||
#endif
|
||
#endif`,ju=`#ifdef USE_FOG
|
||
vFogDepth = - mvPosition.z;
|
||
#endif`,Zu=`#ifdef USE_FOG
|
||
varying float vFogDepth;
|
||
#endif`,Ku=`#ifdef USE_FOG
|
||
#ifdef FOG_EXP2
|
||
float fogFactor = 1.0 - exp( - fogDensity * fogDensity * vFogDepth * vFogDepth );
|
||
#else
|
||
float fogFactor = smoothstep( fogNear, fogFar, vFogDepth );
|
||
#endif
|
||
gl_FragColor.rgb = mix( gl_FragColor.rgb, fogColor, fogFactor );
|
||
#endif`,$u=`#ifdef USE_FOG
|
||
uniform vec3 fogColor;
|
||
varying float vFogDepth;
|
||
#ifdef FOG_EXP2
|
||
uniform float fogDensity;
|
||
#else
|
||
uniform float fogNear;
|
||
uniform float fogFar;
|
||
#endif
|
||
#endif`,Ju=`#ifdef USE_GRADIENTMAP
|
||
uniform sampler2D gradientMap;
|
||
#endif
|
||
vec3 getGradientIrradiance( vec3 normal, vec3 lightDirection ) {
|
||
float dotNL = dot( normal, lightDirection );
|
||
vec2 coord = vec2( dotNL * 0.5 + 0.5, 0.0 );
|
||
#ifdef USE_GRADIENTMAP
|
||
return vec3( texture2D( gradientMap, coord ).r );
|
||
#else
|
||
vec2 fw = fwidth( coord ) * 0.5;
|
||
return mix( vec3( 0.7 ), vec3( 1.0 ), smoothstep( 0.7 - fw.x, 0.7 + fw.x, coord.x ) );
|
||
#endif
|
||
}`,Qu=`#ifdef USE_LIGHTMAP
|
||
uniform sampler2D lightMap;
|
||
uniform float lightMapIntensity;
|
||
#endif`,td=`LambertMaterial material;
|
||
material.diffuseColor = diffuseColor.rgb;
|
||
material.specularStrength = specularStrength;`,ed=`varying vec3 vViewPosition;
|
||
struct LambertMaterial {
|
||
vec3 diffuseColor;
|
||
float specularStrength;
|
||
};
|
||
void RE_Direct_Lambert( const in IncidentLight directLight, const in vec3 geometryPosition, const in vec3 geometryNormal, const in vec3 geometryViewDir, const in vec3 geometryClearcoatNormal, const in LambertMaterial material, inout ReflectedLight reflectedLight ) {
|
||
float dotNL = saturate( dot( geometryNormal, directLight.direction ) );
|
||
vec3 irradiance = dotNL * directLight.color;
|
||
reflectedLight.directDiffuse += irradiance * BRDF_Lambert( material.diffuseColor );
|
||
}
|
||
void RE_IndirectDiffuse_Lambert( const in vec3 irradiance, const in vec3 geometryPosition, const in vec3 geometryNormal, const in vec3 geometryViewDir, const in vec3 geometryClearcoatNormal, const in LambertMaterial material, inout ReflectedLight reflectedLight ) {
|
||
reflectedLight.indirectDiffuse += irradiance * BRDF_Lambert( material.diffuseColor );
|
||
}
|
||
#define RE_Direct RE_Direct_Lambert
|
||
#define RE_IndirectDiffuse RE_IndirectDiffuse_Lambert`,nd=`uniform bool receiveShadow;
|
||
uniform vec3 ambientLightColor;
|
||
#if defined( USE_LIGHT_PROBES )
|
||
uniform vec3 lightProbe[ 9 ];
|
||
#endif
|
||
vec3 shGetIrradianceAt( in vec3 normal, in vec3 shCoefficients[ 9 ] ) {
|
||
float x = normal.x, y = normal.y, z = normal.z;
|
||
vec3 result = shCoefficients[ 0 ] * 0.886227;
|
||
result += shCoefficients[ 1 ] * 2.0 * 0.511664 * y;
|
||
result += shCoefficients[ 2 ] * 2.0 * 0.511664 * z;
|
||
result += shCoefficients[ 3 ] * 2.0 * 0.511664 * x;
|
||
result += shCoefficients[ 4 ] * 2.0 * 0.429043 * x * y;
|
||
result += shCoefficients[ 5 ] * 2.0 * 0.429043 * y * z;
|
||
result += shCoefficients[ 6 ] * ( 0.743125 * z * z - 0.247708 );
|
||
result += shCoefficients[ 7 ] * 2.0 * 0.429043 * x * z;
|
||
result += shCoefficients[ 8 ] * 0.429043 * ( x * x - y * y );
|
||
return result;
|
||
}
|
||
vec3 getLightProbeIrradiance( const in vec3 lightProbe[ 9 ], const in vec3 normal ) {
|
||
vec3 worldNormal = inverseTransformDirection( normal, viewMatrix );
|
||
vec3 irradiance = shGetIrradianceAt( worldNormal, lightProbe );
|
||
return irradiance;
|
||
}
|
||
vec3 getAmbientLightIrradiance( const in vec3 ambientLightColor ) {
|
||
vec3 irradiance = ambientLightColor;
|
||
return irradiance;
|
||
}
|
||
float getDistanceAttenuation( const in float lightDistance, const in float cutoffDistance, const in float decayExponent ) {
|
||
float distanceFalloff = 1.0 / max( pow( lightDistance, decayExponent ), 0.01 );
|
||
if ( cutoffDistance > 0.0 ) {
|
||
distanceFalloff *= pow2( saturate( 1.0 - pow4( lightDistance / cutoffDistance ) ) );
|
||
}
|
||
return distanceFalloff;
|
||
}
|
||
float getSpotAttenuation( const in float coneCosine, const in float penumbraCosine, const in float angleCosine ) {
|
||
return smoothstep( coneCosine, penumbraCosine, angleCosine );
|
||
}
|
||
#if NUM_DIR_LIGHTS > 0
|
||
struct DirectionalLight {
|
||
vec3 direction;
|
||
vec3 color;
|
||
};
|
||
uniform DirectionalLight directionalLights[ NUM_DIR_LIGHTS ];
|
||
void getDirectionalLightInfo( const in DirectionalLight directionalLight, out IncidentLight light ) {
|
||
light.color = directionalLight.color;
|
||
light.direction = directionalLight.direction;
|
||
light.visible = true;
|
||
}
|
||
#endif
|
||
#if NUM_POINT_LIGHTS > 0
|
||
struct PointLight {
|
||
vec3 position;
|
||
vec3 color;
|
||
float distance;
|
||
float decay;
|
||
};
|
||
uniform PointLight pointLights[ NUM_POINT_LIGHTS ];
|
||
void getPointLightInfo( const in PointLight pointLight, const in vec3 geometryPosition, out IncidentLight light ) {
|
||
vec3 lVector = pointLight.position - geometryPosition;
|
||
light.direction = normalize( lVector );
|
||
float lightDistance = length( lVector );
|
||
light.color = pointLight.color;
|
||
light.color *= getDistanceAttenuation( lightDistance, pointLight.distance, pointLight.decay );
|
||
light.visible = ( light.color != vec3( 0.0 ) );
|
||
}
|
||
#endif
|
||
#if NUM_SPOT_LIGHTS > 0
|
||
struct SpotLight {
|
||
vec3 position;
|
||
vec3 direction;
|
||
vec3 color;
|
||
float distance;
|
||
float decay;
|
||
float coneCos;
|
||
float penumbraCos;
|
||
};
|
||
uniform SpotLight spotLights[ NUM_SPOT_LIGHTS ];
|
||
void getSpotLightInfo( const in SpotLight spotLight, const in vec3 geometryPosition, out IncidentLight light ) {
|
||
vec3 lVector = spotLight.position - geometryPosition;
|
||
light.direction = normalize( lVector );
|
||
float angleCos = dot( light.direction, spotLight.direction );
|
||
float spotAttenuation = getSpotAttenuation( spotLight.coneCos, spotLight.penumbraCos, angleCos );
|
||
if ( spotAttenuation > 0.0 ) {
|
||
float lightDistance = length( lVector );
|
||
light.color = spotLight.color * spotAttenuation;
|
||
light.color *= getDistanceAttenuation( lightDistance, spotLight.distance, spotLight.decay );
|
||
light.visible = ( light.color != vec3( 0.0 ) );
|
||
} else {
|
||
light.color = vec3( 0.0 );
|
||
light.visible = false;
|
||
}
|
||
}
|
||
#endif
|
||
#if NUM_RECT_AREA_LIGHTS > 0
|
||
struct RectAreaLight {
|
||
vec3 color;
|
||
vec3 position;
|
||
vec3 halfWidth;
|
||
vec3 halfHeight;
|
||
};
|
||
uniform sampler2D ltc_1; uniform sampler2D ltc_2;
|
||
uniform RectAreaLight rectAreaLights[ NUM_RECT_AREA_LIGHTS ];
|
||
#endif
|
||
#if NUM_HEMI_LIGHTS > 0
|
||
struct HemisphereLight {
|
||
vec3 direction;
|
||
vec3 skyColor;
|
||
vec3 groundColor;
|
||
};
|
||
uniform HemisphereLight hemisphereLights[ NUM_HEMI_LIGHTS ];
|
||
vec3 getHemisphereLightIrradiance( const in HemisphereLight hemiLight, const in vec3 normal ) {
|
||
float dotNL = dot( normal, hemiLight.direction );
|
||
float hemiDiffuseWeight = 0.5 * dotNL + 0.5;
|
||
vec3 irradiance = mix( hemiLight.groundColor, hemiLight.skyColor, hemiDiffuseWeight );
|
||
return irradiance;
|
||
}
|
||
#endif`,id=`#ifdef USE_ENVMAP
|
||
vec3 getIBLIrradiance( const in vec3 normal ) {
|
||
#ifdef ENVMAP_TYPE_CUBE_UV
|
||
vec3 worldNormal = inverseTransformDirection( normal, viewMatrix );
|
||
vec4 envMapColor = textureCubeUV( envMap, envMapRotation * worldNormal, 1.0 );
|
||
return PI * envMapColor.rgb * envMapIntensity;
|
||
#else
|
||
return vec3( 0.0 );
|
||
#endif
|
||
}
|
||
vec3 getIBLRadiance( const in vec3 viewDir, const in vec3 normal, const in float roughness ) {
|
||
#ifdef ENVMAP_TYPE_CUBE_UV
|
||
vec3 reflectVec = reflect( - viewDir, normal );
|
||
reflectVec = normalize( mix( reflectVec, normal, roughness * roughness) );
|
||
reflectVec = inverseTransformDirection( reflectVec, viewMatrix );
|
||
vec4 envMapColor = textureCubeUV( envMap, envMapRotation * reflectVec, roughness );
|
||
return envMapColor.rgb * envMapIntensity;
|
||
#else
|
||
return vec3( 0.0 );
|
||
#endif
|
||
}
|
||
#ifdef USE_ANISOTROPY
|
||
vec3 getIBLAnisotropyRadiance( const in vec3 viewDir, const in vec3 normal, const in float roughness, const in vec3 bitangent, const in float anisotropy ) {
|
||
#ifdef ENVMAP_TYPE_CUBE_UV
|
||
vec3 bentNormal = cross( bitangent, viewDir );
|
||
bentNormal = normalize( cross( bentNormal, bitangent ) );
|
||
bentNormal = normalize( mix( bentNormal, normal, pow2( pow2( 1.0 - anisotropy * ( 1.0 - roughness ) ) ) ) );
|
||
return getIBLRadiance( viewDir, bentNormal, roughness );
|
||
#else
|
||
return vec3( 0.0 );
|
||
#endif
|
||
}
|
||
#endif
|
||
#endif`,sd=`ToonMaterial material;
|
||
material.diffuseColor = diffuseColor.rgb;`,rd=`varying vec3 vViewPosition;
|
||
struct ToonMaterial {
|
||
vec3 diffuseColor;
|
||
};
|
||
void RE_Direct_Toon( const in IncidentLight directLight, const in vec3 geometryPosition, const in vec3 geometryNormal, const in vec3 geometryViewDir, const in vec3 geometryClearcoatNormal, const in ToonMaterial material, inout ReflectedLight reflectedLight ) {
|
||
vec3 irradiance = getGradientIrradiance( geometryNormal, directLight.direction ) * directLight.color;
|
||
reflectedLight.directDiffuse += irradiance * BRDF_Lambert( material.diffuseColor );
|
||
}
|
||
void RE_IndirectDiffuse_Toon( const in vec3 irradiance, const in vec3 geometryPosition, const in vec3 geometryNormal, const in vec3 geometryViewDir, const in vec3 geometryClearcoatNormal, const in ToonMaterial material, inout ReflectedLight reflectedLight ) {
|
||
reflectedLight.indirectDiffuse += irradiance * BRDF_Lambert( material.diffuseColor );
|
||
}
|
||
#define RE_Direct RE_Direct_Toon
|
||
#define RE_IndirectDiffuse RE_IndirectDiffuse_Toon`,ad=`BlinnPhongMaterial material;
|
||
material.diffuseColor = diffuseColor.rgb;
|
||
material.specularColor = specular;
|
||
material.specularShininess = shininess;
|
||
material.specularStrength = specularStrength;`,od=`varying vec3 vViewPosition;
|
||
struct BlinnPhongMaterial {
|
||
vec3 diffuseColor;
|
||
vec3 specularColor;
|
||
float specularShininess;
|
||
float specularStrength;
|
||
};
|
||
void RE_Direct_BlinnPhong( const in IncidentLight directLight, const in vec3 geometryPosition, const in vec3 geometryNormal, const in vec3 geometryViewDir, const in vec3 geometryClearcoatNormal, const in BlinnPhongMaterial material, inout ReflectedLight reflectedLight ) {
|
||
float dotNL = saturate( dot( geometryNormal, directLight.direction ) );
|
||
vec3 irradiance = dotNL * directLight.color;
|
||
reflectedLight.directDiffuse += irradiance * BRDF_Lambert( material.diffuseColor );
|
||
reflectedLight.directSpecular += irradiance * BRDF_BlinnPhong( directLight.direction, geometryViewDir, geometryNormal, material.specularColor, material.specularShininess ) * material.specularStrength;
|
||
}
|
||
void RE_IndirectDiffuse_BlinnPhong( const in vec3 irradiance, const in vec3 geometryPosition, const in vec3 geometryNormal, const in vec3 geometryViewDir, const in vec3 geometryClearcoatNormal, const in BlinnPhongMaterial material, inout ReflectedLight reflectedLight ) {
|
||
reflectedLight.indirectDiffuse += irradiance * BRDF_Lambert( material.diffuseColor );
|
||
}
|
||
#define RE_Direct RE_Direct_BlinnPhong
|
||
#define RE_IndirectDiffuse RE_IndirectDiffuse_BlinnPhong`,ld=`PhysicalMaterial material;
|
||
material.diffuseColor = diffuseColor.rgb * ( 1.0 - metalnessFactor );
|
||
vec3 dxy = max( abs( dFdx( nonPerturbedNormal ) ), abs( dFdy( nonPerturbedNormal ) ) );
|
||
float geometryRoughness = max( max( dxy.x, dxy.y ), dxy.z );
|
||
material.roughness = max( roughnessFactor, 0.0525 );material.roughness += geometryRoughness;
|
||
material.roughness = min( material.roughness, 1.0 );
|
||
#ifdef IOR
|
||
material.ior = ior;
|
||
#ifdef USE_SPECULAR
|
||
float specularIntensityFactor = specularIntensity;
|
||
vec3 specularColorFactor = specularColor;
|
||
#ifdef USE_SPECULAR_COLORMAP
|
||
specularColorFactor *= texture2D( specularColorMap, vSpecularColorMapUv ).rgb;
|
||
#endif
|
||
#ifdef USE_SPECULAR_INTENSITYMAP
|
||
specularIntensityFactor *= texture2D( specularIntensityMap, vSpecularIntensityMapUv ).a;
|
||
#endif
|
||
material.specularF90 = mix( specularIntensityFactor, 1.0, metalnessFactor );
|
||
#else
|
||
float specularIntensityFactor = 1.0;
|
||
vec3 specularColorFactor = vec3( 1.0 );
|
||
material.specularF90 = 1.0;
|
||
#endif
|
||
material.specularColor = mix( min( pow2( ( material.ior - 1.0 ) / ( material.ior + 1.0 ) ) * specularColorFactor, vec3( 1.0 ) ) * specularIntensityFactor, diffuseColor.rgb, metalnessFactor );
|
||
#else
|
||
material.specularColor = mix( vec3( 0.04 ), diffuseColor.rgb, metalnessFactor );
|
||
material.specularF90 = 1.0;
|
||
#endif
|
||
#ifdef USE_CLEARCOAT
|
||
material.clearcoat = clearcoat;
|
||
material.clearcoatRoughness = clearcoatRoughness;
|
||
material.clearcoatF0 = vec3( 0.04 );
|
||
material.clearcoatF90 = 1.0;
|
||
#ifdef USE_CLEARCOATMAP
|
||
material.clearcoat *= texture2D( clearcoatMap, vClearcoatMapUv ).x;
|
||
#endif
|
||
#ifdef USE_CLEARCOAT_ROUGHNESSMAP
|
||
material.clearcoatRoughness *= texture2D( clearcoatRoughnessMap, vClearcoatRoughnessMapUv ).y;
|
||
#endif
|
||
material.clearcoat = saturate( material.clearcoat ); material.clearcoatRoughness = max( material.clearcoatRoughness, 0.0525 );
|
||
material.clearcoatRoughness += geometryRoughness;
|
||
material.clearcoatRoughness = min( material.clearcoatRoughness, 1.0 );
|
||
#endif
|
||
#ifdef USE_DISPERSION
|
||
material.dispersion = dispersion;
|
||
#endif
|
||
#ifdef USE_IRIDESCENCE
|
||
material.iridescence = iridescence;
|
||
material.iridescenceIOR = iridescenceIOR;
|
||
#ifdef USE_IRIDESCENCEMAP
|
||
material.iridescence *= texture2D( iridescenceMap, vIridescenceMapUv ).r;
|
||
#endif
|
||
#ifdef USE_IRIDESCENCE_THICKNESSMAP
|
||
material.iridescenceThickness = (iridescenceThicknessMaximum - iridescenceThicknessMinimum) * texture2D( iridescenceThicknessMap, vIridescenceThicknessMapUv ).g + iridescenceThicknessMinimum;
|
||
#else
|
||
material.iridescenceThickness = iridescenceThicknessMaximum;
|
||
#endif
|
||
#endif
|
||
#ifdef USE_SHEEN
|
||
material.sheenColor = sheenColor;
|
||
#ifdef USE_SHEEN_COLORMAP
|
||
material.sheenColor *= texture2D( sheenColorMap, vSheenColorMapUv ).rgb;
|
||
#endif
|
||
material.sheenRoughness = clamp( sheenRoughness, 0.07, 1.0 );
|
||
#ifdef USE_SHEEN_ROUGHNESSMAP
|
||
material.sheenRoughness *= texture2D( sheenRoughnessMap, vSheenRoughnessMapUv ).a;
|
||
#endif
|
||
#endif
|
||
#ifdef USE_ANISOTROPY
|
||
#ifdef USE_ANISOTROPYMAP
|
||
mat2 anisotropyMat = mat2( anisotropyVector.x, anisotropyVector.y, - anisotropyVector.y, anisotropyVector.x );
|
||
vec3 anisotropyPolar = texture2D( anisotropyMap, vAnisotropyMapUv ).rgb;
|
||
vec2 anisotropyV = anisotropyMat * normalize( 2.0 * anisotropyPolar.rg - vec2( 1.0 ) ) * anisotropyPolar.b;
|
||
#else
|
||
vec2 anisotropyV = anisotropyVector;
|
||
#endif
|
||
material.anisotropy = length( anisotropyV );
|
||
if( material.anisotropy == 0.0 ) {
|
||
anisotropyV = vec2( 1.0, 0.0 );
|
||
} else {
|
||
anisotropyV /= material.anisotropy;
|
||
material.anisotropy = saturate( material.anisotropy );
|
||
}
|
||
material.alphaT = mix( pow2( material.roughness ), 1.0, pow2( material.anisotropy ) );
|
||
material.anisotropyT = tbn[ 0 ] * anisotropyV.x + tbn[ 1 ] * anisotropyV.y;
|
||
material.anisotropyB = tbn[ 1 ] * anisotropyV.x - tbn[ 0 ] * anisotropyV.y;
|
||
#endif`,cd=`struct PhysicalMaterial {
|
||
vec3 diffuseColor;
|
||
float roughness;
|
||
vec3 specularColor;
|
||
float specularF90;
|
||
float dispersion;
|
||
#ifdef USE_CLEARCOAT
|
||
float clearcoat;
|
||
float clearcoatRoughness;
|
||
vec3 clearcoatF0;
|
||
float clearcoatF90;
|
||
#endif
|
||
#ifdef USE_IRIDESCENCE
|
||
float iridescence;
|
||
float iridescenceIOR;
|
||
float iridescenceThickness;
|
||
vec3 iridescenceFresnel;
|
||
vec3 iridescenceF0;
|
||
#endif
|
||
#ifdef USE_SHEEN
|
||
vec3 sheenColor;
|
||
float sheenRoughness;
|
||
#endif
|
||
#ifdef IOR
|
||
float ior;
|
||
#endif
|
||
#ifdef USE_TRANSMISSION
|
||
float transmission;
|
||
float transmissionAlpha;
|
||
float thickness;
|
||
float attenuationDistance;
|
||
vec3 attenuationColor;
|
||
#endif
|
||
#ifdef USE_ANISOTROPY
|
||
float anisotropy;
|
||
float alphaT;
|
||
vec3 anisotropyT;
|
||
vec3 anisotropyB;
|
||
#endif
|
||
};
|
||
vec3 clearcoatSpecularDirect = vec3( 0.0 );
|
||
vec3 clearcoatSpecularIndirect = vec3( 0.0 );
|
||
vec3 sheenSpecularDirect = vec3( 0.0 );
|
||
vec3 sheenSpecularIndirect = vec3(0.0 );
|
||
vec3 Schlick_to_F0( const in vec3 f, const in float f90, const in float dotVH ) {
|
||
float x = clamp( 1.0 - dotVH, 0.0, 1.0 );
|
||
float x2 = x * x;
|
||
float x5 = clamp( x * x2 * x2, 0.0, 0.9999 );
|
||
return ( f - vec3( f90 ) * x5 ) / ( 1.0 - x5 );
|
||
}
|
||
float V_GGX_SmithCorrelated( const in float alpha, const in float dotNL, const in float dotNV ) {
|
||
float a2 = pow2( alpha );
|
||
float gv = dotNL * sqrt( a2 + ( 1.0 - a2 ) * pow2( dotNV ) );
|
||
float gl = dotNV * sqrt( a2 + ( 1.0 - a2 ) * pow2( dotNL ) );
|
||
return 0.5 / max( gv + gl, EPSILON );
|
||
}
|
||
float D_GGX( const in float alpha, const in float dotNH ) {
|
||
float a2 = pow2( alpha );
|
||
float denom = pow2( dotNH ) * ( a2 - 1.0 ) + 1.0;
|
||
return RECIPROCAL_PI * a2 / pow2( denom );
|
||
}
|
||
#ifdef USE_ANISOTROPY
|
||
float V_GGX_SmithCorrelated_Anisotropic( const in float alphaT, const in float alphaB, const in float dotTV, const in float dotBV, const in float dotTL, const in float dotBL, const in float dotNV, const in float dotNL ) {
|
||
float gv = dotNL * length( vec3( alphaT * dotTV, alphaB * dotBV, dotNV ) );
|
||
float gl = dotNV * length( vec3( alphaT * dotTL, alphaB * dotBL, dotNL ) );
|
||
float v = 0.5 / ( gv + gl );
|
||
return saturate(v);
|
||
}
|
||
float D_GGX_Anisotropic( const in float alphaT, const in float alphaB, const in float dotNH, const in float dotTH, const in float dotBH ) {
|
||
float a2 = alphaT * alphaB;
|
||
highp vec3 v = vec3( alphaB * dotTH, alphaT * dotBH, a2 * dotNH );
|
||
highp float v2 = dot( v, v );
|
||
float w2 = a2 / v2;
|
||
return RECIPROCAL_PI * a2 * pow2 ( w2 );
|
||
}
|
||
#endif
|
||
#ifdef USE_CLEARCOAT
|
||
vec3 BRDF_GGX_Clearcoat( const in vec3 lightDir, const in vec3 viewDir, const in vec3 normal, const in PhysicalMaterial material) {
|
||
vec3 f0 = material.clearcoatF0;
|
||
float f90 = material.clearcoatF90;
|
||
float roughness = material.clearcoatRoughness;
|
||
float alpha = pow2( roughness );
|
||
vec3 halfDir = normalize( lightDir + viewDir );
|
||
float dotNL = saturate( dot( normal, lightDir ) );
|
||
float dotNV = saturate( dot( normal, viewDir ) );
|
||
float dotNH = saturate( dot( normal, halfDir ) );
|
||
float dotVH = saturate( dot( viewDir, halfDir ) );
|
||
vec3 F = F_Schlick( f0, f90, dotVH );
|
||
float V = V_GGX_SmithCorrelated( alpha, dotNL, dotNV );
|
||
float D = D_GGX( alpha, dotNH );
|
||
return F * ( V * D );
|
||
}
|
||
#endif
|
||
vec3 BRDF_GGX( const in vec3 lightDir, const in vec3 viewDir, const in vec3 normal, const in PhysicalMaterial material ) {
|
||
vec3 f0 = material.specularColor;
|
||
float f90 = material.specularF90;
|
||
float roughness = material.roughness;
|
||
float alpha = pow2( roughness );
|
||
vec3 halfDir = normalize( lightDir + viewDir );
|
||
float dotNL = saturate( dot( normal, lightDir ) );
|
||
float dotNV = saturate( dot( normal, viewDir ) );
|
||
float dotNH = saturate( dot( normal, halfDir ) );
|
||
float dotVH = saturate( dot( viewDir, halfDir ) );
|
||
vec3 F = F_Schlick( f0, f90, dotVH );
|
||
#ifdef USE_IRIDESCENCE
|
||
F = mix( F, material.iridescenceFresnel, material.iridescence );
|
||
#endif
|
||
#ifdef USE_ANISOTROPY
|
||
float dotTL = dot( material.anisotropyT, lightDir );
|
||
float dotTV = dot( material.anisotropyT, viewDir );
|
||
float dotTH = dot( material.anisotropyT, halfDir );
|
||
float dotBL = dot( material.anisotropyB, lightDir );
|
||
float dotBV = dot( material.anisotropyB, viewDir );
|
||
float dotBH = dot( material.anisotropyB, halfDir );
|
||
float V = V_GGX_SmithCorrelated_Anisotropic( material.alphaT, alpha, dotTV, dotBV, dotTL, dotBL, dotNV, dotNL );
|
||
float D = D_GGX_Anisotropic( material.alphaT, alpha, dotNH, dotTH, dotBH );
|
||
#else
|
||
float V = V_GGX_SmithCorrelated( alpha, dotNL, dotNV );
|
||
float D = D_GGX( alpha, dotNH );
|
||
#endif
|
||
return F * ( V * D );
|
||
}
|
||
vec2 LTC_Uv( const in vec3 N, const in vec3 V, const in float roughness ) {
|
||
const float LUT_SIZE = 64.0;
|
||
const float LUT_SCALE = ( LUT_SIZE - 1.0 ) / LUT_SIZE;
|
||
const float LUT_BIAS = 0.5 / LUT_SIZE;
|
||
float dotNV = saturate( dot( N, V ) );
|
||
vec2 uv = vec2( roughness, sqrt( 1.0 - dotNV ) );
|
||
uv = uv * LUT_SCALE + LUT_BIAS;
|
||
return uv;
|
||
}
|
||
float LTC_ClippedSphereFormFactor( const in vec3 f ) {
|
||
float l = length( f );
|
||
return max( ( l * l + f.z ) / ( l + 1.0 ), 0.0 );
|
||
}
|
||
vec3 LTC_EdgeVectorFormFactor( const in vec3 v1, const in vec3 v2 ) {
|
||
float x = dot( v1, v2 );
|
||
float y = abs( x );
|
||
float a = 0.8543985 + ( 0.4965155 + 0.0145206 * y ) * y;
|
||
float b = 3.4175940 + ( 4.1616724 + y ) * y;
|
||
float v = a / b;
|
||
float theta_sintheta = ( x > 0.0 ) ? v : 0.5 * inversesqrt( max( 1.0 - x * x, 1e-7 ) ) - v;
|
||
return cross( v1, v2 ) * theta_sintheta;
|
||
}
|
||
vec3 LTC_Evaluate( const in vec3 N, const in vec3 V, const in vec3 P, const in mat3 mInv, const in vec3 rectCoords[ 4 ] ) {
|
||
vec3 v1 = rectCoords[ 1 ] - rectCoords[ 0 ];
|
||
vec3 v2 = rectCoords[ 3 ] - rectCoords[ 0 ];
|
||
vec3 lightNormal = cross( v1, v2 );
|
||
if( dot( lightNormal, P - rectCoords[ 0 ] ) < 0.0 ) return vec3( 0.0 );
|
||
vec3 T1, T2;
|
||
T1 = normalize( V - N * dot( V, N ) );
|
||
T2 = - cross( N, T1 );
|
||
mat3 mat = mInv * transposeMat3( mat3( T1, T2, N ) );
|
||
vec3 coords[ 4 ];
|
||
coords[ 0 ] = mat * ( rectCoords[ 0 ] - P );
|
||
coords[ 1 ] = mat * ( rectCoords[ 1 ] - P );
|
||
coords[ 2 ] = mat * ( rectCoords[ 2 ] - P );
|
||
coords[ 3 ] = mat * ( rectCoords[ 3 ] - P );
|
||
coords[ 0 ] = normalize( coords[ 0 ] );
|
||
coords[ 1 ] = normalize( coords[ 1 ] );
|
||
coords[ 2 ] = normalize( coords[ 2 ] );
|
||
coords[ 3 ] = normalize( coords[ 3 ] );
|
||
vec3 vectorFormFactor = vec3( 0.0 );
|
||
vectorFormFactor += LTC_EdgeVectorFormFactor( coords[ 0 ], coords[ 1 ] );
|
||
vectorFormFactor += LTC_EdgeVectorFormFactor( coords[ 1 ], coords[ 2 ] );
|
||
vectorFormFactor += LTC_EdgeVectorFormFactor( coords[ 2 ], coords[ 3 ] );
|
||
vectorFormFactor += LTC_EdgeVectorFormFactor( coords[ 3 ], coords[ 0 ] );
|
||
float result = LTC_ClippedSphereFormFactor( vectorFormFactor );
|
||
return vec3( result );
|
||
}
|
||
#if defined( USE_SHEEN )
|
||
float D_Charlie( float roughness, float dotNH ) {
|
||
float alpha = pow2( roughness );
|
||
float invAlpha = 1.0 / alpha;
|
||
float cos2h = dotNH * dotNH;
|
||
float sin2h = max( 1.0 - cos2h, 0.0078125 );
|
||
return ( 2.0 + invAlpha ) * pow( sin2h, invAlpha * 0.5 ) / ( 2.0 * PI );
|
||
}
|
||
float V_Neubelt( float dotNV, float dotNL ) {
|
||
return saturate( 1.0 / ( 4.0 * ( dotNL + dotNV - dotNL * dotNV ) ) );
|
||
}
|
||
vec3 BRDF_Sheen( const in vec3 lightDir, const in vec3 viewDir, const in vec3 normal, vec3 sheenColor, const in float sheenRoughness ) {
|
||
vec3 halfDir = normalize( lightDir + viewDir );
|
||
float dotNL = saturate( dot( normal, lightDir ) );
|
||
float dotNV = saturate( dot( normal, viewDir ) );
|
||
float dotNH = saturate( dot( normal, halfDir ) );
|
||
float D = D_Charlie( sheenRoughness, dotNH );
|
||
float V = V_Neubelt( dotNV, dotNL );
|
||
return sheenColor * ( D * V );
|
||
}
|
||
#endif
|
||
float IBLSheenBRDF( const in vec3 normal, const in vec3 viewDir, const in float roughness ) {
|
||
float dotNV = saturate( dot( normal, viewDir ) );
|
||
float r2 = roughness * roughness;
|
||
float a = roughness < 0.25 ? -339.2 * r2 + 161.4 * roughness - 25.9 : -8.48 * r2 + 14.3 * roughness - 9.95;
|
||
float b = roughness < 0.25 ? 44.0 * r2 - 23.7 * roughness + 3.26 : 1.97 * r2 - 3.27 * roughness + 0.72;
|
||
float DG = exp( a * dotNV + b ) + ( roughness < 0.25 ? 0.0 : 0.1 * ( roughness - 0.25 ) );
|
||
return saturate( DG * RECIPROCAL_PI );
|
||
}
|
||
vec2 DFGApprox( const in vec3 normal, const in vec3 viewDir, const in float roughness ) {
|
||
float dotNV = saturate( dot( normal, viewDir ) );
|
||
const vec4 c0 = vec4( - 1, - 0.0275, - 0.572, 0.022 );
|
||
const vec4 c1 = vec4( 1, 0.0425, 1.04, - 0.04 );
|
||
vec4 r = roughness * c0 + c1;
|
||
float a004 = min( r.x * r.x, exp2( - 9.28 * dotNV ) ) * r.x + r.y;
|
||
vec2 fab = vec2( - 1.04, 1.04 ) * a004 + r.zw;
|
||
return fab;
|
||
}
|
||
vec3 EnvironmentBRDF( const in vec3 normal, const in vec3 viewDir, const in vec3 specularColor, const in float specularF90, const in float roughness ) {
|
||
vec2 fab = DFGApprox( normal, viewDir, roughness );
|
||
return specularColor * fab.x + specularF90 * fab.y;
|
||
}
|
||
#ifdef USE_IRIDESCENCE
|
||
void computeMultiscatteringIridescence( const in vec3 normal, const in vec3 viewDir, const in vec3 specularColor, const in float specularF90, const in float iridescence, const in vec3 iridescenceF0, const in float roughness, inout vec3 singleScatter, inout vec3 multiScatter ) {
|
||
#else
|
||
void computeMultiscattering( const in vec3 normal, const in vec3 viewDir, const in vec3 specularColor, const in float specularF90, const in float roughness, inout vec3 singleScatter, inout vec3 multiScatter ) {
|
||
#endif
|
||
vec2 fab = DFGApprox( normal, viewDir, roughness );
|
||
#ifdef USE_IRIDESCENCE
|
||
vec3 Fr = mix( specularColor, iridescenceF0, iridescence );
|
||
#else
|
||
vec3 Fr = specularColor;
|
||
#endif
|
||
vec3 FssEss = Fr * fab.x + specularF90 * fab.y;
|
||
float Ess = fab.x + fab.y;
|
||
float Ems = 1.0 - Ess;
|
||
vec3 Favg = Fr + ( 1.0 - Fr ) * 0.047619; vec3 Fms = FssEss * Favg / ( 1.0 - Ems * Favg );
|
||
singleScatter += FssEss;
|
||
multiScatter += Fms * Ems;
|
||
}
|
||
#if NUM_RECT_AREA_LIGHTS > 0
|
||
void RE_Direct_RectArea_Physical( const in RectAreaLight rectAreaLight, const in vec3 geometryPosition, const in vec3 geometryNormal, const in vec3 geometryViewDir, const in vec3 geometryClearcoatNormal, const in PhysicalMaterial material, inout ReflectedLight reflectedLight ) {
|
||
vec3 normal = geometryNormal;
|
||
vec3 viewDir = geometryViewDir;
|
||
vec3 position = geometryPosition;
|
||
vec3 lightPos = rectAreaLight.position;
|
||
vec3 halfWidth = rectAreaLight.halfWidth;
|
||
vec3 halfHeight = rectAreaLight.halfHeight;
|
||
vec3 lightColor = rectAreaLight.color;
|
||
float roughness = material.roughness;
|
||
vec3 rectCoords[ 4 ];
|
||
rectCoords[ 0 ] = lightPos + halfWidth - halfHeight; rectCoords[ 1 ] = lightPos - halfWidth - halfHeight;
|
||
rectCoords[ 2 ] = lightPos - halfWidth + halfHeight;
|
||
rectCoords[ 3 ] = lightPos + halfWidth + halfHeight;
|
||
vec2 uv = LTC_Uv( normal, viewDir, roughness );
|
||
vec4 t1 = texture2D( ltc_1, uv );
|
||
vec4 t2 = texture2D( ltc_2, uv );
|
||
mat3 mInv = mat3(
|
||
vec3( t1.x, 0, t1.y ),
|
||
vec3( 0, 1, 0 ),
|
||
vec3( t1.z, 0, t1.w )
|
||
);
|
||
vec3 fresnel = ( material.specularColor * t2.x + ( vec3( 1.0 ) - material.specularColor ) * t2.y );
|
||
reflectedLight.directSpecular += lightColor * fresnel * LTC_Evaluate( normal, viewDir, position, mInv, rectCoords );
|
||
reflectedLight.directDiffuse += lightColor * material.diffuseColor * LTC_Evaluate( normal, viewDir, position, mat3( 1.0 ), rectCoords );
|
||
}
|
||
#endif
|
||
void RE_Direct_Physical( const in IncidentLight directLight, const in vec3 geometryPosition, const in vec3 geometryNormal, const in vec3 geometryViewDir, const in vec3 geometryClearcoatNormal, const in PhysicalMaterial material, inout ReflectedLight reflectedLight ) {
|
||
float dotNL = saturate( dot( geometryNormal, directLight.direction ) );
|
||
vec3 irradiance = dotNL * directLight.color;
|
||
#ifdef USE_CLEARCOAT
|
||
float dotNLcc = saturate( dot( geometryClearcoatNormal, directLight.direction ) );
|
||
vec3 ccIrradiance = dotNLcc * directLight.color;
|
||
clearcoatSpecularDirect += ccIrradiance * BRDF_GGX_Clearcoat( directLight.direction, geometryViewDir, geometryClearcoatNormal, material );
|
||
#endif
|
||
#ifdef USE_SHEEN
|
||
sheenSpecularDirect += irradiance * BRDF_Sheen( directLight.direction, geometryViewDir, geometryNormal, material.sheenColor, material.sheenRoughness );
|
||
#endif
|
||
reflectedLight.directSpecular += irradiance * BRDF_GGX( directLight.direction, geometryViewDir, geometryNormal, material );
|
||
reflectedLight.directDiffuse += irradiance * BRDF_Lambert( material.diffuseColor );
|
||
}
|
||
void RE_IndirectDiffuse_Physical( const in vec3 irradiance, const in vec3 geometryPosition, const in vec3 geometryNormal, const in vec3 geometryViewDir, const in vec3 geometryClearcoatNormal, const in PhysicalMaterial material, inout ReflectedLight reflectedLight ) {
|
||
reflectedLight.indirectDiffuse += irradiance * BRDF_Lambert( material.diffuseColor );
|
||
}
|
||
void RE_IndirectSpecular_Physical( const in vec3 radiance, const in vec3 irradiance, const in vec3 clearcoatRadiance, const in vec3 geometryPosition, const in vec3 geometryNormal, const in vec3 geometryViewDir, const in vec3 geometryClearcoatNormal, const in PhysicalMaterial material, inout ReflectedLight reflectedLight) {
|
||
#ifdef USE_CLEARCOAT
|
||
clearcoatSpecularIndirect += clearcoatRadiance * EnvironmentBRDF( geometryClearcoatNormal, geometryViewDir, material.clearcoatF0, material.clearcoatF90, material.clearcoatRoughness );
|
||
#endif
|
||
#ifdef USE_SHEEN
|
||
sheenSpecularIndirect += irradiance * material.sheenColor * IBLSheenBRDF( geometryNormal, geometryViewDir, material.sheenRoughness );
|
||
#endif
|
||
vec3 singleScattering = vec3( 0.0 );
|
||
vec3 multiScattering = vec3( 0.0 );
|
||
vec3 cosineWeightedIrradiance = irradiance * RECIPROCAL_PI;
|
||
#ifdef USE_IRIDESCENCE
|
||
computeMultiscatteringIridescence( geometryNormal, geometryViewDir, material.specularColor, material.specularF90, material.iridescence, material.iridescenceFresnel, material.roughness, singleScattering, multiScattering );
|
||
#else
|
||
computeMultiscattering( geometryNormal, geometryViewDir, material.specularColor, material.specularF90, material.roughness, singleScattering, multiScattering );
|
||
#endif
|
||
vec3 totalScattering = singleScattering + multiScattering;
|
||
vec3 diffuse = material.diffuseColor * ( 1.0 - max( max( totalScattering.r, totalScattering.g ), totalScattering.b ) );
|
||
reflectedLight.indirectSpecular += radiance * singleScattering;
|
||
reflectedLight.indirectSpecular += multiScattering * cosineWeightedIrradiance;
|
||
reflectedLight.indirectDiffuse += diffuse * cosineWeightedIrradiance;
|
||
}
|
||
#define RE_Direct RE_Direct_Physical
|
||
#define RE_Direct_RectArea RE_Direct_RectArea_Physical
|
||
#define RE_IndirectDiffuse RE_IndirectDiffuse_Physical
|
||
#define RE_IndirectSpecular RE_IndirectSpecular_Physical
|
||
float computeSpecularOcclusion( const in float dotNV, const in float ambientOcclusion, const in float roughness ) {
|
||
return saturate( pow( dotNV + ambientOcclusion, exp2( - 16.0 * roughness - 1.0 ) ) - 1.0 + ambientOcclusion );
|
||
}`,hd=`
|
||
vec3 geometryPosition = - vViewPosition;
|
||
vec3 geometryNormal = normal;
|
||
vec3 geometryViewDir = ( isOrthographic ) ? vec3( 0, 0, 1 ) : normalize( vViewPosition );
|
||
vec3 geometryClearcoatNormal = vec3( 0.0 );
|
||
#ifdef USE_CLEARCOAT
|
||
geometryClearcoatNormal = clearcoatNormal;
|
||
#endif
|
||
#ifdef USE_IRIDESCENCE
|
||
float dotNVi = saturate( dot( normal, geometryViewDir ) );
|
||
if ( material.iridescenceThickness == 0.0 ) {
|
||
material.iridescence = 0.0;
|
||
} else {
|
||
material.iridescence = saturate( material.iridescence );
|
||
}
|
||
if ( material.iridescence > 0.0 ) {
|
||
material.iridescenceFresnel = evalIridescence( 1.0, material.iridescenceIOR, dotNVi, material.iridescenceThickness, material.specularColor );
|
||
material.iridescenceF0 = Schlick_to_F0( material.iridescenceFresnel, 1.0, dotNVi );
|
||
}
|
||
#endif
|
||
IncidentLight directLight;
|
||
#if ( NUM_POINT_LIGHTS > 0 ) && defined( RE_Direct )
|
||
PointLight pointLight;
|
||
#if defined( USE_SHADOWMAP ) && NUM_POINT_LIGHT_SHADOWS > 0
|
||
PointLightShadow pointLightShadow;
|
||
#endif
|
||
#pragma unroll_loop_start
|
||
for ( int i = 0; i < NUM_POINT_LIGHTS; i ++ ) {
|
||
pointLight = pointLights[ i ];
|
||
getPointLightInfo( pointLight, geometryPosition, directLight );
|
||
#if defined( USE_SHADOWMAP ) && ( UNROLLED_LOOP_INDEX < NUM_POINT_LIGHT_SHADOWS )
|
||
pointLightShadow = pointLightShadows[ i ];
|
||
directLight.color *= ( directLight.visible && receiveShadow ) ? getPointShadow( pointShadowMap[ i ], pointLightShadow.shadowMapSize, pointLightShadow.shadowIntensity, pointLightShadow.shadowBias, pointLightShadow.shadowRadius, vPointShadowCoord[ i ], pointLightShadow.shadowCameraNear, pointLightShadow.shadowCameraFar ) : 1.0;
|
||
#endif
|
||
RE_Direct( directLight, geometryPosition, geometryNormal, geometryViewDir, geometryClearcoatNormal, material, reflectedLight );
|
||
}
|
||
#pragma unroll_loop_end
|
||
#endif
|
||
#if ( NUM_SPOT_LIGHTS > 0 ) && defined( RE_Direct )
|
||
SpotLight spotLight;
|
||
vec4 spotColor;
|
||
vec3 spotLightCoord;
|
||
bool inSpotLightMap;
|
||
#if defined( USE_SHADOWMAP ) && NUM_SPOT_LIGHT_SHADOWS > 0
|
||
SpotLightShadow spotLightShadow;
|
||
#endif
|
||
#pragma unroll_loop_start
|
||
for ( int i = 0; i < NUM_SPOT_LIGHTS; i ++ ) {
|
||
spotLight = spotLights[ i ];
|
||
getSpotLightInfo( spotLight, geometryPosition, directLight );
|
||
#if ( UNROLLED_LOOP_INDEX < NUM_SPOT_LIGHT_SHADOWS_WITH_MAPS )
|
||
#define SPOT_LIGHT_MAP_INDEX UNROLLED_LOOP_INDEX
|
||
#elif ( UNROLLED_LOOP_INDEX < NUM_SPOT_LIGHT_SHADOWS )
|
||
#define SPOT_LIGHT_MAP_INDEX NUM_SPOT_LIGHT_MAPS
|
||
#else
|
||
#define SPOT_LIGHT_MAP_INDEX ( UNROLLED_LOOP_INDEX - NUM_SPOT_LIGHT_SHADOWS + NUM_SPOT_LIGHT_SHADOWS_WITH_MAPS )
|
||
#endif
|
||
#if ( SPOT_LIGHT_MAP_INDEX < NUM_SPOT_LIGHT_MAPS )
|
||
spotLightCoord = vSpotLightCoord[ i ].xyz / vSpotLightCoord[ i ].w;
|
||
inSpotLightMap = all( lessThan( abs( spotLightCoord * 2. - 1. ), vec3( 1.0 ) ) );
|
||
spotColor = texture2D( spotLightMap[ SPOT_LIGHT_MAP_INDEX ], spotLightCoord.xy );
|
||
directLight.color = inSpotLightMap ? directLight.color * spotColor.rgb : directLight.color;
|
||
#endif
|
||
#undef SPOT_LIGHT_MAP_INDEX
|
||
#if defined( USE_SHADOWMAP ) && ( UNROLLED_LOOP_INDEX < NUM_SPOT_LIGHT_SHADOWS )
|
||
spotLightShadow = spotLightShadows[ i ];
|
||
directLight.color *= ( directLight.visible && receiveShadow ) ? getShadow( spotShadowMap[ i ], spotLightShadow.shadowMapSize, spotLightShadow.shadowIntensity, spotLightShadow.shadowBias, spotLightShadow.shadowRadius, vSpotLightCoord[ i ] ) : 1.0;
|
||
#endif
|
||
RE_Direct( directLight, geometryPosition, geometryNormal, geometryViewDir, geometryClearcoatNormal, material, reflectedLight );
|
||
}
|
||
#pragma unroll_loop_end
|
||
#endif
|
||
#if ( NUM_DIR_LIGHTS > 0 ) && defined( RE_Direct )
|
||
DirectionalLight directionalLight;
|
||
#if defined( USE_SHADOWMAP ) && NUM_DIR_LIGHT_SHADOWS > 0
|
||
DirectionalLightShadow directionalLightShadow;
|
||
#endif
|
||
#pragma unroll_loop_start
|
||
for ( int i = 0; i < NUM_DIR_LIGHTS; i ++ ) {
|
||
directionalLight = directionalLights[ i ];
|
||
getDirectionalLightInfo( directionalLight, directLight );
|
||
#if defined( USE_SHADOWMAP ) && ( UNROLLED_LOOP_INDEX < NUM_DIR_LIGHT_SHADOWS )
|
||
directionalLightShadow = directionalLightShadows[ i ];
|
||
directLight.color *= ( directLight.visible && receiveShadow ) ? getShadow( directionalShadowMap[ i ], directionalLightShadow.shadowMapSize, directionalLightShadow.shadowIntensity, directionalLightShadow.shadowBias, directionalLightShadow.shadowRadius, vDirectionalShadowCoord[ i ] ) : 1.0;
|
||
#endif
|
||
RE_Direct( directLight, geometryPosition, geometryNormal, geometryViewDir, geometryClearcoatNormal, material, reflectedLight );
|
||
}
|
||
#pragma unroll_loop_end
|
||
#endif
|
||
#if ( NUM_RECT_AREA_LIGHTS > 0 ) && defined( RE_Direct_RectArea )
|
||
RectAreaLight rectAreaLight;
|
||
#pragma unroll_loop_start
|
||
for ( int i = 0; i < NUM_RECT_AREA_LIGHTS; i ++ ) {
|
||
rectAreaLight = rectAreaLights[ i ];
|
||
RE_Direct_RectArea( rectAreaLight, geometryPosition, geometryNormal, geometryViewDir, geometryClearcoatNormal, material, reflectedLight );
|
||
}
|
||
#pragma unroll_loop_end
|
||
#endif
|
||
#if defined( RE_IndirectDiffuse )
|
||
vec3 iblIrradiance = vec3( 0.0 );
|
||
vec3 irradiance = getAmbientLightIrradiance( ambientLightColor );
|
||
#if defined( USE_LIGHT_PROBES )
|
||
irradiance += getLightProbeIrradiance( lightProbe, geometryNormal );
|
||
#endif
|
||
#if ( NUM_HEMI_LIGHTS > 0 )
|
||
#pragma unroll_loop_start
|
||
for ( int i = 0; i < NUM_HEMI_LIGHTS; i ++ ) {
|
||
irradiance += getHemisphereLightIrradiance( hemisphereLights[ i ], geometryNormal );
|
||
}
|
||
#pragma unroll_loop_end
|
||
#endif
|
||
#endif
|
||
#if defined( RE_IndirectSpecular )
|
||
vec3 radiance = vec3( 0.0 );
|
||
vec3 clearcoatRadiance = vec3( 0.0 );
|
||
#endif`,ud=`#if defined( RE_IndirectDiffuse )
|
||
#ifdef USE_LIGHTMAP
|
||
vec4 lightMapTexel = texture2D( lightMap, vLightMapUv );
|
||
vec3 lightMapIrradiance = lightMapTexel.rgb * lightMapIntensity;
|
||
irradiance += lightMapIrradiance;
|
||
#endif
|
||
#if defined( USE_ENVMAP ) && defined( STANDARD ) && defined( ENVMAP_TYPE_CUBE_UV )
|
||
iblIrradiance += getIBLIrradiance( geometryNormal );
|
||
#endif
|
||
#endif
|
||
#if defined( USE_ENVMAP ) && defined( RE_IndirectSpecular )
|
||
#ifdef USE_ANISOTROPY
|
||
radiance += getIBLAnisotropyRadiance( geometryViewDir, geometryNormal, material.roughness, material.anisotropyB, material.anisotropy );
|
||
#else
|
||
radiance += getIBLRadiance( geometryViewDir, geometryNormal, material.roughness );
|
||
#endif
|
||
#ifdef USE_CLEARCOAT
|
||
clearcoatRadiance += getIBLRadiance( geometryViewDir, geometryClearcoatNormal, material.clearcoatRoughness );
|
||
#endif
|
||
#endif`,dd=`#if defined( RE_IndirectDiffuse )
|
||
RE_IndirectDiffuse( irradiance, geometryPosition, geometryNormal, geometryViewDir, geometryClearcoatNormal, material, reflectedLight );
|
||
#endif
|
||
#if defined( RE_IndirectSpecular )
|
||
RE_IndirectSpecular( radiance, iblIrradiance, clearcoatRadiance, geometryPosition, geometryNormal, geometryViewDir, geometryClearcoatNormal, material, reflectedLight );
|
||
#endif`,fd=`#if defined( USE_LOGDEPTHBUF )
|
||
gl_FragDepth = vIsPerspective == 0.0 ? gl_FragCoord.z : log2( vFragDepth ) * logDepthBufFC * 0.5;
|
||
#endif`,pd=`#if defined( USE_LOGDEPTHBUF )
|
||
uniform float logDepthBufFC;
|
||
varying float vFragDepth;
|
||
varying float vIsPerspective;
|
||
#endif`,md=`#ifdef USE_LOGDEPTHBUF
|
||
varying float vFragDepth;
|
||
varying float vIsPerspective;
|
||
#endif`,_d=`#ifdef USE_LOGDEPTHBUF
|
||
vFragDepth = 1.0 + gl_Position.w;
|
||
vIsPerspective = float( isPerspectiveMatrix( projectionMatrix ) );
|
||
#endif`,gd=`#ifdef USE_MAP
|
||
vec4 sampledDiffuseColor = texture2D( map, vMapUv );
|
||
#ifdef DECODE_VIDEO_TEXTURE
|
||
sampledDiffuseColor = sRGBTransferEOTF( sampledDiffuseColor );
|
||
#endif
|
||
diffuseColor *= sampledDiffuseColor;
|
||
#endif`,vd=`#ifdef USE_MAP
|
||
uniform sampler2D map;
|
||
#endif`,xd=`#if defined( USE_MAP ) || defined( USE_ALPHAMAP )
|
||
#if defined( USE_POINTS_UV )
|
||
vec2 uv = vUv;
|
||
#else
|
||
vec2 uv = ( uvTransform * vec3( gl_PointCoord.x, 1.0 - gl_PointCoord.y, 1 ) ).xy;
|
||
#endif
|
||
#endif
|
||
#ifdef USE_MAP
|
||
diffuseColor *= texture2D( map, uv );
|
||
#endif
|
||
#ifdef USE_ALPHAMAP
|
||
diffuseColor.a *= texture2D( alphaMap, uv ).g;
|
||
#endif`,Md=`#if defined( USE_POINTS_UV )
|
||
varying vec2 vUv;
|
||
#else
|
||
#if defined( USE_MAP ) || defined( USE_ALPHAMAP )
|
||
uniform mat3 uvTransform;
|
||
#endif
|
||
#endif
|
||
#ifdef USE_MAP
|
||
uniform sampler2D map;
|
||
#endif
|
||
#ifdef USE_ALPHAMAP
|
||
uniform sampler2D alphaMap;
|
||
#endif`,Sd=`float metalnessFactor = metalness;
|
||
#ifdef USE_METALNESSMAP
|
||
vec4 texelMetalness = texture2D( metalnessMap, vMetalnessMapUv );
|
||
metalnessFactor *= texelMetalness.b;
|
||
#endif`,yd=`#ifdef USE_METALNESSMAP
|
||
uniform sampler2D metalnessMap;
|
||
#endif`,Ed=`#ifdef USE_INSTANCING_MORPH
|
||
float morphTargetInfluences[ MORPHTARGETS_COUNT ];
|
||
float morphTargetBaseInfluence = texelFetch( morphTexture, ivec2( 0, gl_InstanceID ), 0 ).r;
|
||
for ( int i = 0; i < MORPHTARGETS_COUNT; i ++ ) {
|
||
morphTargetInfluences[i] = texelFetch( morphTexture, ivec2( i + 1, gl_InstanceID ), 0 ).r;
|
||
}
|
||
#endif`,Td=`#if defined( USE_MORPHCOLORS )
|
||
vColor *= morphTargetBaseInfluence;
|
||
for ( int i = 0; i < MORPHTARGETS_COUNT; i ++ ) {
|
||
#if defined( USE_COLOR_ALPHA )
|
||
if ( morphTargetInfluences[ i ] != 0.0 ) vColor += getMorph( gl_VertexID, i, 2 ) * morphTargetInfluences[ i ];
|
||
#elif defined( USE_COLOR )
|
||
if ( morphTargetInfluences[ i ] != 0.0 ) vColor += getMorph( gl_VertexID, i, 2 ).rgb * morphTargetInfluences[ i ];
|
||
#endif
|
||
}
|
||
#endif`,bd=`#ifdef USE_MORPHNORMALS
|
||
objectNormal *= morphTargetBaseInfluence;
|
||
for ( int i = 0; i < MORPHTARGETS_COUNT; i ++ ) {
|
||
if ( morphTargetInfluences[ i ] != 0.0 ) objectNormal += getMorph( gl_VertexID, i, 1 ).xyz * morphTargetInfluences[ i ];
|
||
}
|
||
#endif`,Ad=`#ifdef USE_MORPHTARGETS
|
||
#ifndef USE_INSTANCING_MORPH
|
||
uniform float morphTargetBaseInfluence;
|
||
uniform float morphTargetInfluences[ MORPHTARGETS_COUNT ];
|
||
#endif
|
||
uniform sampler2DArray morphTargetsTexture;
|
||
uniform ivec2 morphTargetsTextureSize;
|
||
vec4 getMorph( const in int vertexIndex, const in int morphTargetIndex, const in int offset ) {
|
||
int texelIndex = vertexIndex * MORPHTARGETS_TEXTURE_STRIDE + offset;
|
||
int y = texelIndex / morphTargetsTextureSize.x;
|
||
int x = texelIndex - y * morphTargetsTextureSize.x;
|
||
ivec3 morphUV = ivec3( x, y, morphTargetIndex );
|
||
return texelFetch( morphTargetsTexture, morphUV, 0 );
|
||
}
|
||
#endif`,wd=`#ifdef USE_MORPHTARGETS
|
||
transformed *= morphTargetBaseInfluence;
|
||
for ( int i = 0; i < MORPHTARGETS_COUNT; i ++ ) {
|
||
if ( morphTargetInfluences[ i ] != 0.0 ) transformed += getMorph( gl_VertexID, i, 0 ).xyz * morphTargetInfluences[ i ];
|
||
}
|
||
#endif`,Rd=`float faceDirection = gl_FrontFacing ? 1.0 : - 1.0;
|
||
#ifdef FLAT_SHADED
|
||
vec3 fdx = dFdx( vViewPosition );
|
||
vec3 fdy = dFdy( vViewPosition );
|
||
vec3 normal = normalize( cross( fdx, fdy ) );
|
||
#else
|
||
vec3 normal = normalize( vNormal );
|
||
#ifdef DOUBLE_SIDED
|
||
normal *= faceDirection;
|
||
#endif
|
||
#endif
|
||
#if defined( USE_NORMALMAP_TANGENTSPACE ) || defined( USE_CLEARCOAT_NORMALMAP ) || defined( USE_ANISOTROPY )
|
||
#ifdef USE_TANGENT
|
||
mat3 tbn = mat3( normalize( vTangent ), normalize( vBitangent ), normal );
|
||
#else
|
||
mat3 tbn = getTangentFrame( - vViewPosition, normal,
|
||
#if defined( USE_NORMALMAP )
|
||
vNormalMapUv
|
||
#elif defined( USE_CLEARCOAT_NORMALMAP )
|
||
vClearcoatNormalMapUv
|
||
#else
|
||
vUv
|
||
#endif
|
||
);
|
||
#endif
|
||
#if defined( DOUBLE_SIDED ) && ! defined( FLAT_SHADED )
|
||
tbn[0] *= faceDirection;
|
||
tbn[1] *= faceDirection;
|
||
#endif
|
||
#endif
|
||
#ifdef USE_CLEARCOAT_NORMALMAP
|
||
#ifdef USE_TANGENT
|
||
mat3 tbn2 = mat3( normalize( vTangent ), normalize( vBitangent ), normal );
|
||
#else
|
||
mat3 tbn2 = getTangentFrame( - vViewPosition, normal, vClearcoatNormalMapUv );
|
||
#endif
|
||
#if defined( DOUBLE_SIDED ) && ! defined( FLAT_SHADED )
|
||
tbn2[0] *= faceDirection;
|
||
tbn2[1] *= faceDirection;
|
||
#endif
|
||
#endif
|
||
vec3 nonPerturbedNormal = normal;`,Cd=`#ifdef USE_NORMALMAP_OBJECTSPACE
|
||
normal = texture2D( normalMap, vNormalMapUv ).xyz * 2.0 - 1.0;
|
||
#ifdef FLIP_SIDED
|
||
normal = - normal;
|
||
#endif
|
||
#ifdef DOUBLE_SIDED
|
||
normal = normal * faceDirection;
|
||
#endif
|
||
normal = normalize( normalMatrix * normal );
|
||
#elif defined( USE_NORMALMAP_TANGENTSPACE )
|
||
vec3 mapN = texture2D( normalMap, vNormalMapUv ).xyz * 2.0 - 1.0;
|
||
mapN.xy *= normalScale;
|
||
normal = normalize( tbn * mapN );
|
||
#elif defined( USE_BUMPMAP )
|
||
normal = perturbNormalArb( - vViewPosition, normal, dHdxy_fwd(), faceDirection );
|
||
#endif`,Pd=`#ifndef FLAT_SHADED
|
||
varying vec3 vNormal;
|
||
#ifdef USE_TANGENT
|
||
varying vec3 vTangent;
|
||
varying vec3 vBitangent;
|
||
#endif
|
||
#endif`,Dd=`#ifndef FLAT_SHADED
|
||
varying vec3 vNormal;
|
||
#ifdef USE_TANGENT
|
||
varying vec3 vTangent;
|
||
varying vec3 vBitangent;
|
||
#endif
|
||
#endif`,Ld=`#ifndef FLAT_SHADED
|
||
vNormal = normalize( transformedNormal );
|
||
#ifdef USE_TANGENT
|
||
vTangent = normalize( transformedTangent );
|
||
vBitangent = normalize( cross( vNormal, vTangent ) * tangent.w );
|
||
#endif
|
||
#endif`,Ud=`#ifdef USE_NORMALMAP
|
||
uniform sampler2D normalMap;
|
||
uniform vec2 normalScale;
|
||
#endif
|
||
#ifdef USE_NORMALMAP_OBJECTSPACE
|
||
uniform mat3 normalMatrix;
|
||
#endif
|
||
#if ! defined ( USE_TANGENT ) && ( defined ( USE_NORMALMAP_TANGENTSPACE ) || defined ( USE_CLEARCOAT_NORMALMAP ) || defined( USE_ANISOTROPY ) )
|
||
mat3 getTangentFrame( vec3 eye_pos, vec3 surf_norm, vec2 uv ) {
|
||
vec3 q0 = dFdx( eye_pos.xyz );
|
||
vec3 q1 = dFdy( eye_pos.xyz );
|
||
vec2 st0 = dFdx( uv.st );
|
||
vec2 st1 = dFdy( uv.st );
|
||
vec3 N = surf_norm;
|
||
vec3 q1perp = cross( q1, N );
|
||
vec3 q0perp = cross( N, q0 );
|
||
vec3 T = q1perp * st0.x + q0perp * st1.x;
|
||
vec3 B = q1perp * st0.y + q0perp * st1.y;
|
||
float det = max( dot( T, T ), dot( B, B ) );
|
||
float scale = ( det == 0.0 ) ? 0.0 : inversesqrt( det );
|
||
return mat3( T * scale, B * scale, N );
|
||
}
|
||
#endif`,Id=`#ifdef USE_CLEARCOAT
|
||
vec3 clearcoatNormal = nonPerturbedNormal;
|
||
#endif`,Nd=`#ifdef USE_CLEARCOAT_NORMALMAP
|
||
vec3 clearcoatMapN = texture2D( clearcoatNormalMap, vClearcoatNormalMapUv ).xyz * 2.0 - 1.0;
|
||
clearcoatMapN.xy *= clearcoatNormalScale;
|
||
clearcoatNormal = normalize( tbn2 * clearcoatMapN );
|
||
#endif`,Fd=`#ifdef USE_CLEARCOATMAP
|
||
uniform sampler2D clearcoatMap;
|
||
#endif
|
||
#ifdef USE_CLEARCOAT_NORMALMAP
|
||
uniform sampler2D clearcoatNormalMap;
|
||
uniform vec2 clearcoatNormalScale;
|
||
#endif
|
||
#ifdef USE_CLEARCOAT_ROUGHNESSMAP
|
||
uniform sampler2D clearcoatRoughnessMap;
|
||
#endif`,Od=`#ifdef USE_IRIDESCENCEMAP
|
||
uniform sampler2D iridescenceMap;
|
||
#endif
|
||
#ifdef USE_IRIDESCENCE_THICKNESSMAP
|
||
uniform sampler2D iridescenceThicknessMap;
|
||
#endif`,Bd=`#ifdef OPAQUE
|
||
diffuseColor.a = 1.0;
|
||
#endif
|
||
#ifdef USE_TRANSMISSION
|
||
diffuseColor.a *= material.transmissionAlpha;
|
||
#endif
|
||
gl_FragColor = vec4( outgoingLight, diffuseColor.a );`,zd=`vec3 packNormalToRGB( const in vec3 normal ) {
|
||
return normalize( normal ) * 0.5 + 0.5;
|
||
}
|
||
vec3 unpackRGBToNormal( const in vec3 rgb ) {
|
||
return 2.0 * rgb.xyz - 1.0;
|
||
}
|
||
const float PackUpscale = 256. / 255.;const float UnpackDownscale = 255. / 256.;const float ShiftRight8 = 1. / 256.;
|
||
const float Inv255 = 1. / 255.;
|
||
const vec4 PackFactors = vec4( 1.0, 256.0, 256.0 * 256.0, 256.0 * 256.0 * 256.0 );
|
||
const vec2 UnpackFactors2 = vec2( UnpackDownscale, 1.0 / PackFactors.g );
|
||
const vec3 UnpackFactors3 = vec3( UnpackDownscale / PackFactors.rg, 1.0 / PackFactors.b );
|
||
const vec4 UnpackFactors4 = vec4( UnpackDownscale / PackFactors.rgb, 1.0 / PackFactors.a );
|
||
vec4 packDepthToRGBA( const in float v ) {
|
||
if( v <= 0.0 )
|
||
return vec4( 0., 0., 0., 0. );
|
||
if( v >= 1.0 )
|
||
return vec4( 1., 1., 1., 1. );
|
||
float vuf;
|
||
float af = modf( v * PackFactors.a, vuf );
|
||
float bf = modf( vuf * ShiftRight8, vuf );
|
||
float gf = modf( vuf * ShiftRight8, vuf );
|
||
return vec4( vuf * Inv255, gf * PackUpscale, bf * PackUpscale, af );
|
||
}
|
||
vec3 packDepthToRGB( const in float v ) {
|
||
if( v <= 0.0 )
|
||
return vec3( 0., 0., 0. );
|
||
if( v >= 1.0 )
|
||
return vec3( 1., 1., 1. );
|
||
float vuf;
|
||
float bf = modf( v * PackFactors.b, vuf );
|
||
float gf = modf( vuf * ShiftRight8, vuf );
|
||
return vec3( vuf * Inv255, gf * PackUpscale, bf );
|
||
}
|
||
vec2 packDepthToRG( const in float v ) {
|
||
if( v <= 0.0 )
|
||
return vec2( 0., 0. );
|
||
if( v >= 1.0 )
|
||
return vec2( 1., 1. );
|
||
float vuf;
|
||
float gf = modf( v * 256., vuf );
|
||
return vec2( vuf * Inv255, gf );
|
||
}
|
||
float unpackRGBAToDepth( const in vec4 v ) {
|
||
return dot( v, UnpackFactors4 );
|
||
}
|
||
float unpackRGBToDepth( const in vec3 v ) {
|
||
return dot( v, UnpackFactors3 );
|
||
}
|
||
float unpackRGToDepth( const in vec2 v ) {
|
||
return v.r * UnpackFactors2.r + v.g * UnpackFactors2.g;
|
||
}
|
||
vec4 pack2HalfToRGBA( const in vec2 v ) {
|
||
vec4 r = vec4( v.x, fract( v.x * 255.0 ), v.y, fract( v.y * 255.0 ) );
|
||
return vec4( r.x - r.y / 255.0, r.y, r.z - r.w / 255.0, r.w );
|
||
}
|
||
vec2 unpackRGBATo2Half( const in vec4 v ) {
|
||
return vec2( v.x + ( v.y / 255.0 ), v.z + ( v.w / 255.0 ) );
|
||
}
|
||
float viewZToOrthographicDepth( const in float viewZ, const in float near, const in float far ) {
|
||
return ( viewZ + near ) / ( near - far );
|
||
}
|
||
float orthographicDepthToViewZ( const in float depth, const in float near, const in float far ) {
|
||
return depth * ( near - far ) - near;
|
||
}
|
||
float viewZToPerspectiveDepth( const in float viewZ, const in float near, const in float far ) {
|
||
return ( ( near + viewZ ) * far ) / ( ( far - near ) * viewZ );
|
||
}
|
||
float perspectiveDepthToViewZ( const in float depth, const in float near, const in float far ) {
|
||
return ( near * far ) / ( ( far - near ) * depth - far );
|
||
}`,Hd=`#ifdef PREMULTIPLIED_ALPHA
|
||
gl_FragColor.rgb *= gl_FragColor.a;
|
||
#endif`,kd=`vec4 mvPosition = vec4( transformed, 1.0 );
|
||
#ifdef USE_BATCHING
|
||
mvPosition = batchingMatrix * mvPosition;
|
||
#endif
|
||
#ifdef USE_INSTANCING
|
||
mvPosition = instanceMatrix * mvPosition;
|
||
#endif
|
||
mvPosition = modelViewMatrix * mvPosition;
|
||
gl_Position = projectionMatrix * mvPosition;`,Vd=`#ifdef DITHERING
|
||
gl_FragColor.rgb = dithering( gl_FragColor.rgb );
|
||
#endif`,Gd=`#ifdef DITHERING
|
||
vec3 dithering( vec3 color ) {
|
||
float grid_position = rand( gl_FragCoord.xy );
|
||
vec3 dither_shift_RGB = vec3( 0.25 / 255.0, -0.25 / 255.0, 0.25 / 255.0 );
|
||
dither_shift_RGB = mix( 2.0 * dither_shift_RGB, -2.0 * dither_shift_RGB, grid_position );
|
||
return color + dither_shift_RGB;
|
||
}
|
||
#endif`,Wd=`float roughnessFactor = roughness;
|
||
#ifdef USE_ROUGHNESSMAP
|
||
vec4 texelRoughness = texture2D( roughnessMap, vRoughnessMapUv );
|
||
roughnessFactor *= texelRoughness.g;
|
||
#endif`,Xd=`#ifdef USE_ROUGHNESSMAP
|
||
uniform sampler2D roughnessMap;
|
||
#endif`,Yd=`#if NUM_SPOT_LIGHT_COORDS > 0
|
||
varying vec4 vSpotLightCoord[ NUM_SPOT_LIGHT_COORDS ];
|
||
#endif
|
||
#if NUM_SPOT_LIGHT_MAPS > 0
|
||
uniform sampler2D spotLightMap[ NUM_SPOT_LIGHT_MAPS ];
|
||
#endif
|
||
#ifdef USE_SHADOWMAP
|
||
#if NUM_DIR_LIGHT_SHADOWS > 0
|
||
uniform sampler2D directionalShadowMap[ NUM_DIR_LIGHT_SHADOWS ];
|
||
varying vec4 vDirectionalShadowCoord[ NUM_DIR_LIGHT_SHADOWS ];
|
||
struct DirectionalLightShadow {
|
||
float shadowIntensity;
|
||
float shadowBias;
|
||
float shadowNormalBias;
|
||
float shadowRadius;
|
||
vec2 shadowMapSize;
|
||
};
|
||
uniform DirectionalLightShadow directionalLightShadows[ NUM_DIR_LIGHT_SHADOWS ];
|
||
#endif
|
||
#if NUM_SPOT_LIGHT_SHADOWS > 0
|
||
uniform sampler2D spotShadowMap[ NUM_SPOT_LIGHT_SHADOWS ];
|
||
struct SpotLightShadow {
|
||
float shadowIntensity;
|
||
float shadowBias;
|
||
float shadowNormalBias;
|
||
float shadowRadius;
|
||
vec2 shadowMapSize;
|
||
};
|
||
uniform SpotLightShadow spotLightShadows[ NUM_SPOT_LIGHT_SHADOWS ];
|
||
#endif
|
||
#if NUM_POINT_LIGHT_SHADOWS > 0
|
||
uniform sampler2D pointShadowMap[ NUM_POINT_LIGHT_SHADOWS ];
|
||
varying vec4 vPointShadowCoord[ NUM_POINT_LIGHT_SHADOWS ];
|
||
struct PointLightShadow {
|
||
float shadowIntensity;
|
||
float shadowBias;
|
||
float shadowNormalBias;
|
||
float shadowRadius;
|
||
vec2 shadowMapSize;
|
||
float shadowCameraNear;
|
||
float shadowCameraFar;
|
||
};
|
||
uniform PointLightShadow pointLightShadows[ NUM_POINT_LIGHT_SHADOWS ];
|
||
#endif
|
||
float texture2DCompare( sampler2D depths, vec2 uv, float compare ) {
|
||
return step( compare, unpackRGBAToDepth( texture2D( depths, uv ) ) );
|
||
}
|
||
vec2 texture2DDistribution( sampler2D shadow, vec2 uv ) {
|
||
return unpackRGBATo2Half( texture2D( shadow, uv ) );
|
||
}
|
||
float VSMShadow (sampler2D shadow, vec2 uv, float compare ){
|
||
float occlusion = 1.0;
|
||
vec2 distribution = texture2DDistribution( shadow, uv );
|
||
float hard_shadow = step( compare , distribution.x );
|
||
if (hard_shadow != 1.0 ) {
|
||
float distance = compare - distribution.x ;
|
||
float variance = max( 0.00000, distribution.y * distribution.y );
|
||
float softness_probability = variance / (variance + distance * distance ); softness_probability = clamp( ( softness_probability - 0.3 ) / ( 0.95 - 0.3 ), 0.0, 1.0 ); occlusion = clamp( max( hard_shadow, softness_probability ), 0.0, 1.0 );
|
||
}
|
||
return occlusion;
|
||
}
|
||
float getShadow( sampler2D shadowMap, vec2 shadowMapSize, float shadowIntensity, float shadowBias, float shadowRadius, vec4 shadowCoord ) {
|
||
float shadow = 1.0;
|
||
shadowCoord.xyz /= shadowCoord.w;
|
||
shadowCoord.z += shadowBias;
|
||
bool inFrustum = shadowCoord.x >= 0.0 && shadowCoord.x <= 1.0 && shadowCoord.y >= 0.0 && shadowCoord.y <= 1.0;
|
||
bool frustumTest = inFrustum && shadowCoord.z <= 1.0;
|
||
if ( frustumTest ) {
|
||
#if defined( SHADOWMAP_TYPE_PCF )
|
||
vec2 texelSize = vec2( 1.0 ) / shadowMapSize;
|
||
float dx0 = - texelSize.x * shadowRadius;
|
||
float dy0 = - texelSize.y * shadowRadius;
|
||
float dx1 = + texelSize.x * shadowRadius;
|
||
float dy1 = + texelSize.y * shadowRadius;
|
||
float dx2 = dx0 / 2.0;
|
||
float dy2 = dy0 / 2.0;
|
||
float dx3 = dx1 / 2.0;
|
||
float dy3 = dy1 / 2.0;
|
||
shadow = (
|
||
texture2DCompare( shadowMap, shadowCoord.xy + vec2( dx0, dy0 ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, shadowCoord.xy + vec2( 0.0, dy0 ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, shadowCoord.xy + vec2( dx1, dy0 ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, shadowCoord.xy + vec2( dx2, dy2 ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, shadowCoord.xy + vec2( 0.0, dy2 ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, shadowCoord.xy + vec2( dx3, dy2 ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, shadowCoord.xy + vec2( dx0, 0.0 ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, shadowCoord.xy + vec2( dx2, 0.0 ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, shadowCoord.xy, shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, shadowCoord.xy + vec2( dx3, 0.0 ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, shadowCoord.xy + vec2( dx1, 0.0 ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, shadowCoord.xy + vec2( dx2, dy3 ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, shadowCoord.xy + vec2( 0.0, dy3 ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, shadowCoord.xy + vec2( dx3, dy3 ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, shadowCoord.xy + vec2( dx0, dy1 ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, shadowCoord.xy + vec2( 0.0, dy1 ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, shadowCoord.xy + vec2( dx1, dy1 ), shadowCoord.z )
|
||
) * ( 1.0 / 17.0 );
|
||
#elif defined( SHADOWMAP_TYPE_PCF_SOFT )
|
||
vec2 texelSize = vec2( 1.0 ) / shadowMapSize;
|
||
float dx = texelSize.x;
|
||
float dy = texelSize.y;
|
||
vec2 uv = shadowCoord.xy;
|
||
vec2 f = fract( uv * shadowMapSize + 0.5 );
|
||
uv -= f * texelSize;
|
||
shadow = (
|
||
texture2DCompare( shadowMap, uv, shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, uv + vec2( dx, 0.0 ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, uv + vec2( 0.0, dy ), shadowCoord.z ) +
|
||
texture2DCompare( shadowMap, uv + texelSize, shadowCoord.z ) +
|
||
mix( texture2DCompare( shadowMap, uv + vec2( -dx, 0.0 ), shadowCoord.z ),
|
||
texture2DCompare( shadowMap, uv + vec2( 2.0 * dx, 0.0 ), shadowCoord.z ),
|
||
f.x ) +
|
||
mix( texture2DCompare( shadowMap, uv + vec2( -dx, dy ), shadowCoord.z ),
|
||
texture2DCompare( shadowMap, uv + vec2( 2.0 * dx, dy ), shadowCoord.z ),
|
||
f.x ) +
|
||
mix( texture2DCompare( shadowMap, uv + vec2( 0.0, -dy ), shadowCoord.z ),
|
||
texture2DCompare( shadowMap, uv + vec2( 0.0, 2.0 * dy ), shadowCoord.z ),
|
||
f.y ) +
|
||
mix( texture2DCompare( shadowMap, uv + vec2( dx, -dy ), shadowCoord.z ),
|
||
texture2DCompare( shadowMap, uv + vec2( dx, 2.0 * dy ), shadowCoord.z ),
|
||
f.y ) +
|
||
mix( mix( texture2DCompare( shadowMap, uv + vec2( -dx, -dy ), shadowCoord.z ),
|
||
texture2DCompare( shadowMap, uv + vec2( 2.0 * dx, -dy ), shadowCoord.z ),
|
||
f.x ),
|
||
mix( texture2DCompare( shadowMap, uv + vec2( -dx, 2.0 * dy ), shadowCoord.z ),
|
||
texture2DCompare( shadowMap, uv + vec2( 2.0 * dx, 2.0 * dy ), shadowCoord.z ),
|
||
f.x ),
|
||
f.y )
|
||
) * ( 1.0 / 9.0 );
|
||
#elif defined( SHADOWMAP_TYPE_VSM )
|
||
shadow = VSMShadow( shadowMap, shadowCoord.xy, shadowCoord.z );
|
||
#else
|
||
shadow = texture2DCompare( shadowMap, shadowCoord.xy, shadowCoord.z );
|
||
#endif
|
||
}
|
||
return mix( 1.0, shadow, shadowIntensity );
|
||
}
|
||
vec2 cubeToUV( vec3 v, float texelSizeY ) {
|
||
vec3 absV = abs( v );
|
||
float scaleToCube = 1.0 / max( absV.x, max( absV.y, absV.z ) );
|
||
absV *= scaleToCube;
|
||
v *= scaleToCube * ( 1.0 - 2.0 * texelSizeY );
|
||
vec2 planar = v.xy;
|
||
float almostATexel = 1.5 * texelSizeY;
|
||
float almostOne = 1.0 - almostATexel;
|
||
if ( absV.z >= almostOne ) {
|
||
if ( v.z > 0.0 )
|
||
planar.x = 4.0 - v.x;
|
||
} else if ( absV.x >= almostOne ) {
|
||
float signX = sign( v.x );
|
||
planar.x = v.z * signX + 2.0 * signX;
|
||
} else if ( absV.y >= almostOne ) {
|
||
float signY = sign( v.y );
|
||
planar.x = v.x + 2.0 * signY + 2.0;
|
||
planar.y = v.z * signY - 2.0;
|
||
}
|
||
return vec2( 0.125, 0.25 ) * planar + vec2( 0.375, 0.75 );
|
||
}
|
||
float getPointShadow( sampler2D shadowMap, vec2 shadowMapSize, float shadowIntensity, float shadowBias, float shadowRadius, vec4 shadowCoord, float shadowCameraNear, float shadowCameraFar ) {
|
||
float shadow = 1.0;
|
||
vec3 lightToPosition = shadowCoord.xyz;
|
||
|
||
float lightToPositionLength = length( lightToPosition );
|
||
if ( lightToPositionLength - shadowCameraFar <= 0.0 && lightToPositionLength - shadowCameraNear >= 0.0 ) {
|
||
float dp = ( lightToPositionLength - shadowCameraNear ) / ( shadowCameraFar - shadowCameraNear ); dp += shadowBias;
|
||
vec3 bd3D = normalize( lightToPosition );
|
||
vec2 texelSize = vec2( 1.0 ) / ( shadowMapSize * vec2( 4.0, 2.0 ) );
|
||
#if defined( SHADOWMAP_TYPE_PCF ) || defined( SHADOWMAP_TYPE_PCF_SOFT ) || defined( SHADOWMAP_TYPE_VSM )
|
||
vec2 offset = vec2( - 1, 1 ) * shadowRadius * texelSize.y;
|
||
shadow = (
|
||
texture2DCompare( shadowMap, cubeToUV( bd3D + offset.xyy, texelSize.y ), dp ) +
|
||
texture2DCompare( shadowMap, cubeToUV( bd3D + offset.yyy, texelSize.y ), dp ) +
|
||
texture2DCompare( shadowMap, cubeToUV( bd3D + offset.xyx, texelSize.y ), dp ) +
|
||
texture2DCompare( shadowMap, cubeToUV( bd3D + offset.yyx, texelSize.y ), dp ) +
|
||
texture2DCompare( shadowMap, cubeToUV( bd3D, texelSize.y ), dp ) +
|
||
texture2DCompare( shadowMap, cubeToUV( bd3D + offset.xxy, texelSize.y ), dp ) +
|
||
texture2DCompare( shadowMap, cubeToUV( bd3D + offset.yxy, texelSize.y ), dp ) +
|
||
texture2DCompare( shadowMap, cubeToUV( bd3D + offset.xxx, texelSize.y ), dp ) +
|
||
texture2DCompare( shadowMap, cubeToUV( bd3D + offset.yxx, texelSize.y ), dp )
|
||
) * ( 1.0 / 9.0 );
|
||
#else
|
||
shadow = texture2DCompare( shadowMap, cubeToUV( bd3D, texelSize.y ), dp );
|
||
#endif
|
||
}
|
||
return mix( 1.0, shadow, shadowIntensity );
|
||
}
|
||
#endif`,qd=`#if NUM_SPOT_LIGHT_COORDS > 0
|
||
uniform mat4 spotLightMatrix[ NUM_SPOT_LIGHT_COORDS ];
|
||
varying vec4 vSpotLightCoord[ NUM_SPOT_LIGHT_COORDS ];
|
||
#endif
|
||
#ifdef USE_SHADOWMAP
|
||
#if NUM_DIR_LIGHT_SHADOWS > 0
|
||
uniform mat4 directionalShadowMatrix[ NUM_DIR_LIGHT_SHADOWS ];
|
||
varying vec4 vDirectionalShadowCoord[ NUM_DIR_LIGHT_SHADOWS ];
|
||
struct DirectionalLightShadow {
|
||
float shadowIntensity;
|
||
float shadowBias;
|
||
float shadowNormalBias;
|
||
float shadowRadius;
|
||
vec2 shadowMapSize;
|
||
};
|
||
uniform DirectionalLightShadow directionalLightShadows[ NUM_DIR_LIGHT_SHADOWS ];
|
||
#endif
|
||
#if NUM_SPOT_LIGHT_SHADOWS > 0
|
||
struct SpotLightShadow {
|
||
float shadowIntensity;
|
||
float shadowBias;
|
||
float shadowNormalBias;
|
||
float shadowRadius;
|
||
vec2 shadowMapSize;
|
||
};
|
||
uniform SpotLightShadow spotLightShadows[ NUM_SPOT_LIGHT_SHADOWS ];
|
||
#endif
|
||
#if NUM_POINT_LIGHT_SHADOWS > 0
|
||
uniform mat4 pointShadowMatrix[ NUM_POINT_LIGHT_SHADOWS ];
|
||
varying vec4 vPointShadowCoord[ NUM_POINT_LIGHT_SHADOWS ];
|
||
struct PointLightShadow {
|
||
float shadowIntensity;
|
||
float shadowBias;
|
||
float shadowNormalBias;
|
||
float shadowRadius;
|
||
vec2 shadowMapSize;
|
||
float shadowCameraNear;
|
||
float shadowCameraFar;
|
||
};
|
||
uniform PointLightShadow pointLightShadows[ NUM_POINT_LIGHT_SHADOWS ];
|
||
#endif
|
||
#endif`,jd=`#if ( defined( USE_SHADOWMAP ) && ( NUM_DIR_LIGHT_SHADOWS > 0 || NUM_POINT_LIGHT_SHADOWS > 0 ) ) || ( NUM_SPOT_LIGHT_COORDS > 0 )
|
||
vec3 shadowWorldNormal = inverseTransformDirection( transformedNormal, viewMatrix );
|
||
vec4 shadowWorldPosition;
|
||
#endif
|
||
#if defined( USE_SHADOWMAP )
|
||
#if NUM_DIR_LIGHT_SHADOWS > 0
|
||
#pragma unroll_loop_start
|
||
for ( int i = 0; i < NUM_DIR_LIGHT_SHADOWS; i ++ ) {
|
||
shadowWorldPosition = worldPosition + vec4( shadowWorldNormal * directionalLightShadows[ i ].shadowNormalBias, 0 );
|
||
vDirectionalShadowCoord[ i ] = directionalShadowMatrix[ i ] * shadowWorldPosition;
|
||
}
|
||
#pragma unroll_loop_end
|
||
#endif
|
||
#if NUM_POINT_LIGHT_SHADOWS > 0
|
||
#pragma unroll_loop_start
|
||
for ( int i = 0; i < NUM_POINT_LIGHT_SHADOWS; i ++ ) {
|
||
shadowWorldPosition = worldPosition + vec4( shadowWorldNormal * pointLightShadows[ i ].shadowNormalBias, 0 );
|
||
vPointShadowCoord[ i ] = pointShadowMatrix[ i ] * shadowWorldPosition;
|
||
}
|
||
#pragma unroll_loop_end
|
||
#endif
|
||
#endif
|
||
#if NUM_SPOT_LIGHT_COORDS > 0
|
||
#pragma unroll_loop_start
|
||
for ( int i = 0; i < NUM_SPOT_LIGHT_COORDS; i ++ ) {
|
||
shadowWorldPosition = worldPosition;
|
||
#if ( defined( USE_SHADOWMAP ) && UNROLLED_LOOP_INDEX < NUM_SPOT_LIGHT_SHADOWS )
|
||
shadowWorldPosition.xyz += shadowWorldNormal * spotLightShadows[ i ].shadowNormalBias;
|
||
#endif
|
||
vSpotLightCoord[ i ] = spotLightMatrix[ i ] * shadowWorldPosition;
|
||
}
|
||
#pragma unroll_loop_end
|
||
#endif`,Zd=`float getShadowMask() {
|
||
float shadow = 1.0;
|
||
#ifdef USE_SHADOWMAP
|
||
#if NUM_DIR_LIGHT_SHADOWS > 0
|
||
DirectionalLightShadow directionalLight;
|
||
#pragma unroll_loop_start
|
||
for ( int i = 0; i < NUM_DIR_LIGHT_SHADOWS; i ++ ) {
|
||
directionalLight = directionalLightShadows[ i ];
|
||
shadow *= receiveShadow ? getShadow( directionalShadowMap[ i ], directionalLight.shadowMapSize, directionalLight.shadowIntensity, directionalLight.shadowBias, directionalLight.shadowRadius, vDirectionalShadowCoord[ i ] ) : 1.0;
|
||
}
|
||
#pragma unroll_loop_end
|
||
#endif
|
||
#if NUM_SPOT_LIGHT_SHADOWS > 0
|
||
SpotLightShadow spotLight;
|
||
#pragma unroll_loop_start
|
||
for ( int i = 0; i < NUM_SPOT_LIGHT_SHADOWS; i ++ ) {
|
||
spotLight = spotLightShadows[ i ];
|
||
shadow *= receiveShadow ? getShadow( spotShadowMap[ i ], spotLight.shadowMapSize, spotLight.shadowIntensity, spotLight.shadowBias, spotLight.shadowRadius, vSpotLightCoord[ i ] ) : 1.0;
|
||
}
|
||
#pragma unroll_loop_end
|
||
#endif
|
||
#if NUM_POINT_LIGHT_SHADOWS > 0
|
||
PointLightShadow pointLight;
|
||
#pragma unroll_loop_start
|
||
for ( int i = 0; i < NUM_POINT_LIGHT_SHADOWS; i ++ ) {
|
||
pointLight = pointLightShadows[ i ];
|
||
shadow *= receiveShadow ? getPointShadow( pointShadowMap[ i ], pointLight.shadowMapSize, pointLight.shadowIntensity, pointLight.shadowBias, pointLight.shadowRadius, vPointShadowCoord[ i ], pointLight.shadowCameraNear, pointLight.shadowCameraFar ) : 1.0;
|
||
}
|
||
#pragma unroll_loop_end
|
||
#endif
|
||
#endif
|
||
return shadow;
|
||
}`,Kd=`#ifdef USE_SKINNING
|
||
mat4 boneMatX = getBoneMatrix( skinIndex.x );
|
||
mat4 boneMatY = getBoneMatrix( skinIndex.y );
|
||
mat4 boneMatZ = getBoneMatrix( skinIndex.z );
|
||
mat4 boneMatW = getBoneMatrix( skinIndex.w );
|
||
#endif`,$d=`#ifdef USE_SKINNING
|
||
uniform mat4 bindMatrix;
|
||
uniform mat4 bindMatrixInverse;
|
||
uniform highp sampler2D boneTexture;
|
||
mat4 getBoneMatrix( const in float i ) {
|
||
int size = textureSize( boneTexture, 0 ).x;
|
||
int j = int( i ) * 4;
|
||
int x = j % size;
|
||
int y = j / size;
|
||
vec4 v1 = texelFetch( boneTexture, ivec2( x, y ), 0 );
|
||
vec4 v2 = texelFetch( boneTexture, ivec2( x + 1, y ), 0 );
|
||
vec4 v3 = texelFetch( boneTexture, ivec2( x + 2, y ), 0 );
|
||
vec4 v4 = texelFetch( boneTexture, ivec2( x + 3, y ), 0 );
|
||
return mat4( v1, v2, v3, v4 );
|
||
}
|
||
#endif`,Jd=`#ifdef USE_SKINNING
|
||
vec4 skinVertex = bindMatrix * vec4( transformed, 1.0 );
|
||
vec4 skinned = vec4( 0.0 );
|
||
skinned += boneMatX * skinVertex * skinWeight.x;
|
||
skinned += boneMatY * skinVertex * skinWeight.y;
|
||
skinned += boneMatZ * skinVertex * skinWeight.z;
|
||
skinned += boneMatW * skinVertex * skinWeight.w;
|
||
transformed = ( bindMatrixInverse * skinned ).xyz;
|
||
#endif`,Qd=`#ifdef USE_SKINNING
|
||
mat4 skinMatrix = mat4( 0.0 );
|
||
skinMatrix += skinWeight.x * boneMatX;
|
||
skinMatrix += skinWeight.y * boneMatY;
|
||
skinMatrix += skinWeight.z * boneMatZ;
|
||
skinMatrix += skinWeight.w * boneMatW;
|
||
skinMatrix = bindMatrixInverse * skinMatrix * bindMatrix;
|
||
objectNormal = vec4( skinMatrix * vec4( objectNormal, 0.0 ) ).xyz;
|
||
#ifdef USE_TANGENT
|
||
objectTangent = vec4( skinMatrix * vec4( objectTangent, 0.0 ) ).xyz;
|
||
#endif
|
||
#endif`,tf=`float specularStrength;
|
||
#ifdef USE_SPECULARMAP
|
||
vec4 texelSpecular = texture2D( specularMap, vSpecularMapUv );
|
||
specularStrength = texelSpecular.r;
|
||
#else
|
||
specularStrength = 1.0;
|
||
#endif`,ef=`#ifdef USE_SPECULARMAP
|
||
uniform sampler2D specularMap;
|
||
#endif`,nf=`#if defined( TONE_MAPPING )
|
||
gl_FragColor.rgb = toneMapping( gl_FragColor.rgb );
|
||
#endif`,sf=`#ifndef saturate
|
||
#define saturate( a ) clamp( a, 0.0, 1.0 )
|
||
#endif
|
||
uniform float toneMappingExposure;
|
||
vec3 LinearToneMapping( vec3 color ) {
|
||
return saturate( toneMappingExposure * color );
|
||
}
|
||
vec3 ReinhardToneMapping( vec3 color ) {
|
||
color *= toneMappingExposure;
|
||
return saturate( color / ( vec3( 1.0 ) + color ) );
|
||
}
|
||
vec3 CineonToneMapping( vec3 color ) {
|
||
color *= toneMappingExposure;
|
||
color = max( vec3( 0.0 ), color - 0.004 );
|
||
return pow( ( color * ( 6.2 * color + 0.5 ) ) / ( color * ( 6.2 * color + 1.7 ) + 0.06 ), vec3( 2.2 ) );
|
||
}
|
||
vec3 RRTAndODTFit( vec3 v ) {
|
||
vec3 a = v * ( v + 0.0245786 ) - 0.000090537;
|
||
vec3 b = v * ( 0.983729 * v + 0.4329510 ) + 0.238081;
|
||
return a / b;
|
||
}
|
||
vec3 ACESFilmicToneMapping( vec3 color ) {
|
||
const mat3 ACESInputMat = mat3(
|
||
vec3( 0.59719, 0.07600, 0.02840 ), vec3( 0.35458, 0.90834, 0.13383 ),
|
||
vec3( 0.04823, 0.01566, 0.83777 )
|
||
);
|
||
const mat3 ACESOutputMat = mat3(
|
||
vec3( 1.60475, -0.10208, -0.00327 ), vec3( -0.53108, 1.10813, -0.07276 ),
|
||
vec3( -0.07367, -0.00605, 1.07602 )
|
||
);
|
||
color *= toneMappingExposure / 0.6;
|
||
color = ACESInputMat * color;
|
||
color = RRTAndODTFit( color );
|
||
color = ACESOutputMat * color;
|
||
return saturate( color );
|
||
}
|
||
const mat3 LINEAR_REC2020_TO_LINEAR_SRGB = mat3(
|
||
vec3( 1.6605, - 0.1246, - 0.0182 ),
|
||
vec3( - 0.5876, 1.1329, - 0.1006 ),
|
||
vec3( - 0.0728, - 0.0083, 1.1187 )
|
||
);
|
||
const mat3 LINEAR_SRGB_TO_LINEAR_REC2020 = mat3(
|
||
vec3( 0.6274, 0.0691, 0.0164 ),
|
||
vec3( 0.3293, 0.9195, 0.0880 ),
|
||
vec3( 0.0433, 0.0113, 0.8956 )
|
||
);
|
||
vec3 agxDefaultContrastApprox( vec3 x ) {
|
||
vec3 x2 = x * x;
|
||
vec3 x4 = x2 * x2;
|
||
return + 15.5 * x4 * x2
|
||
- 40.14 * x4 * x
|
||
+ 31.96 * x4
|
||
- 6.868 * x2 * x
|
||
+ 0.4298 * x2
|
||
+ 0.1191 * x
|
||
- 0.00232;
|
||
}
|
||
vec3 AgXToneMapping( vec3 color ) {
|
||
const mat3 AgXInsetMatrix = mat3(
|
||
vec3( 0.856627153315983, 0.137318972929847, 0.11189821299995 ),
|
||
vec3( 0.0951212405381588, 0.761241990602591, 0.0767994186031903 ),
|
||
vec3( 0.0482516061458583, 0.101439036467562, 0.811302368396859 )
|
||
);
|
||
const mat3 AgXOutsetMatrix = mat3(
|
||
vec3( 1.1271005818144368, - 0.1413297634984383, - 0.14132976349843826 ),
|
||
vec3( - 0.11060664309660323, 1.157823702216272, - 0.11060664309660294 ),
|
||
vec3( - 0.016493938717834573, - 0.016493938717834257, 1.2519364065950405 )
|
||
);
|
||
const float AgxMinEv = - 12.47393; const float AgxMaxEv = 4.026069;
|
||
color *= toneMappingExposure;
|
||
color = LINEAR_SRGB_TO_LINEAR_REC2020 * color;
|
||
color = AgXInsetMatrix * color;
|
||
color = max( color, 1e-10 ); color = log2( color );
|
||
color = ( color - AgxMinEv ) / ( AgxMaxEv - AgxMinEv );
|
||
color = clamp( color, 0.0, 1.0 );
|
||
color = agxDefaultContrastApprox( color );
|
||
color = AgXOutsetMatrix * color;
|
||
color = pow( max( vec3( 0.0 ), color ), vec3( 2.2 ) );
|
||
color = LINEAR_REC2020_TO_LINEAR_SRGB * color;
|
||
color = clamp( color, 0.0, 1.0 );
|
||
return color;
|
||
}
|
||
vec3 NeutralToneMapping( vec3 color ) {
|
||
const float StartCompression = 0.8 - 0.04;
|
||
const float Desaturation = 0.15;
|
||
color *= toneMappingExposure;
|
||
float x = min( color.r, min( color.g, color.b ) );
|
||
float offset = x < 0.08 ? x - 6.25 * x * x : 0.04;
|
||
color -= offset;
|
||
float peak = max( color.r, max( color.g, color.b ) );
|
||
if ( peak < StartCompression ) return color;
|
||
float d = 1. - StartCompression;
|
||
float newPeak = 1. - d * d / ( peak + d - StartCompression );
|
||
color *= newPeak / peak;
|
||
float g = 1. - 1. / ( Desaturation * ( peak - newPeak ) + 1. );
|
||
return mix( color, vec3( newPeak ), g );
|
||
}
|
||
vec3 CustomToneMapping( vec3 color ) { return color; }`,rf=`#ifdef USE_TRANSMISSION
|
||
material.transmission = transmission;
|
||
material.transmissionAlpha = 1.0;
|
||
material.thickness = thickness;
|
||
material.attenuationDistance = attenuationDistance;
|
||
material.attenuationColor = attenuationColor;
|
||
#ifdef USE_TRANSMISSIONMAP
|
||
material.transmission *= texture2D( transmissionMap, vTransmissionMapUv ).r;
|
||
#endif
|
||
#ifdef USE_THICKNESSMAP
|
||
material.thickness *= texture2D( thicknessMap, vThicknessMapUv ).g;
|
||
#endif
|
||
vec3 pos = vWorldPosition;
|
||
vec3 v = normalize( cameraPosition - pos );
|
||
vec3 n = inverseTransformDirection( normal, viewMatrix );
|
||
vec4 transmitted = getIBLVolumeRefraction(
|
||
n, v, material.roughness, material.diffuseColor, material.specularColor, material.specularF90,
|
||
pos, modelMatrix, viewMatrix, projectionMatrix, material.dispersion, material.ior, material.thickness,
|
||
material.attenuationColor, material.attenuationDistance );
|
||
material.transmissionAlpha = mix( material.transmissionAlpha, transmitted.a, material.transmission );
|
||
totalDiffuse = mix( totalDiffuse, transmitted.rgb, material.transmission );
|
||
#endif`,af=`#ifdef USE_TRANSMISSION
|
||
uniform float transmission;
|
||
uniform float thickness;
|
||
uniform float attenuationDistance;
|
||
uniform vec3 attenuationColor;
|
||
#ifdef USE_TRANSMISSIONMAP
|
||
uniform sampler2D transmissionMap;
|
||
#endif
|
||
#ifdef USE_THICKNESSMAP
|
||
uniform sampler2D thicknessMap;
|
||
#endif
|
||
uniform vec2 transmissionSamplerSize;
|
||
uniform sampler2D transmissionSamplerMap;
|
||
uniform mat4 modelMatrix;
|
||
uniform mat4 projectionMatrix;
|
||
varying vec3 vWorldPosition;
|
||
float w0( float a ) {
|
||
return ( 1.0 / 6.0 ) * ( a * ( a * ( - a + 3.0 ) - 3.0 ) + 1.0 );
|
||
}
|
||
float w1( float a ) {
|
||
return ( 1.0 / 6.0 ) * ( a * a * ( 3.0 * a - 6.0 ) + 4.0 );
|
||
}
|
||
float w2( float a ){
|
||
return ( 1.0 / 6.0 ) * ( a * ( a * ( - 3.0 * a + 3.0 ) + 3.0 ) + 1.0 );
|
||
}
|
||
float w3( float a ) {
|
||
return ( 1.0 / 6.0 ) * ( a * a * a );
|
||
}
|
||
float g0( float a ) {
|
||
return w0( a ) + w1( a );
|
||
}
|
||
float g1( float a ) {
|
||
return w2( a ) + w3( a );
|
||
}
|
||
float h0( float a ) {
|
||
return - 1.0 + w1( a ) / ( w0( a ) + w1( a ) );
|
||
}
|
||
float h1( float a ) {
|
||
return 1.0 + w3( a ) / ( w2( a ) + w3( a ) );
|
||
}
|
||
vec4 bicubic( sampler2D tex, vec2 uv, vec4 texelSize, float lod ) {
|
||
uv = uv * texelSize.zw + 0.5;
|
||
vec2 iuv = floor( uv );
|
||
vec2 fuv = fract( uv );
|
||
float g0x = g0( fuv.x );
|
||
float g1x = g1( fuv.x );
|
||
float h0x = h0( fuv.x );
|
||
float h1x = h1( fuv.x );
|
||
float h0y = h0( fuv.y );
|
||
float h1y = h1( fuv.y );
|
||
vec2 p0 = ( vec2( iuv.x + h0x, iuv.y + h0y ) - 0.5 ) * texelSize.xy;
|
||
vec2 p1 = ( vec2( iuv.x + h1x, iuv.y + h0y ) - 0.5 ) * texelSize.xy;
|
||
vec2 p2 = ( vec2( iuv.x + h0x, iuv.y + h1y ) - 0.5 ) * texelSize.xy;
|
||
vec2 p3 = ( vec2( iuv.x + h1x, iuv.y + h1y ) - 0.5 ) * texelSize.xy;
|
||
return g0( fuv.y ) * ( g0x * textureLod( tex, p0, lod ) + g1x * textureLod( tex, p1, lod ) ) +
|
||
g1( fuv.y ) * ( g0x * textureLod( tex, p2, lod ) + g1x * textureLod( tex, p3, lod ) );
|
||
}
|
||
vec4 textureBicubic( sampler2D sampler, vec2 uv, float lod ) {
|
||
vec2 fLodSize = vec2( textureSize( sampler, int( lod ) ) );
|
||
vec2 cLodSize = vec2( textureSize( sampler, int( lod + 1.0 ) ) );
|
||
vec2 fLodSizeInv = 1.0 / fLodSize;
|
||
vec2 cLodSizeInv = 1.0 / cLodSize;
|
||
vec4 fSample = bicubic( sampler, uv, vec4( fLodSizeInv, fLodSize ), floor( lod ) );
|
||
vec4 cSample = bicubic( sampler, uv, vec4( cLodSizeInv, cLodSize ), ceil( lod ) );
|
||
return mix( fSample, cSample, fract( lod ) );
|
||
}
|
||
vec3 getVolumeTransmissionRay( const in vec3 n, const in vec3 v, const in float thickness, const in float ior, const in mat4 modelMatrix ) {
|
||
vec3 refractionVector = refract( - v, normalize( n ), 1.0 / ior );
|
||
vec3 modelScale;
|
||
modelScale.x = length( vec3( modelMatrix[ 0 ].xyz ) );
|
||
modelScale.y = length( vec3( modelMatrix[ 1 ].xyz ) );
|
||
modelScale.z = length( vec3( modelMatrix[ 2 ].xyz ) );
|
||
return normalize( refractionVector ) * thickness * modelScale;
|
||
}
|
||
float applyIorToRoughness( const in float roughness, const in float ior ) {
|
||
return roughness * clamp( ior * 2.0 - 2.0, 0.0, 1.0 );
|
||
}
|
||
vec4 getTransmissionSample( const in vec2 fragCoord, const in float roughness, const in float ior ) {
|
||
float lod = log2( transmissionSamplerSize.x ) * applyIorToRoughness( roughness, ior );
|
||
return textureBicubic( transmissionSamplerMap, fragCoord.xy, lod );
|
||
}
|
||
vec3 volumeAttenuation( const in float transmissionDistance, const in vec3 attenuationColor, const in float attenuationDistance ) {
|
||
if ( isinf( attenuationDistance ) ) {
|
||
return vec3( 1.0 );
|
||
} else {
|
||
vec3 attenuationCoefficient = -log( attenuationColor ) / attenuationDistance;
|
||
vec3 transmittance = exp( - attenuationCoefficient * transmissionDistance ); return transmittance;
|
||
}
|
||
}
|
||
vec4 getIBLVolumeRefraction( const in vec3 n, const in vec3 v, const in float roughness, const in vec3 diffuseColor,
|
||
const in vec3 specularColor, const in float specularF90, const in vec3 position, const in mat4 modelMatrix,
|
||
const in mat4 viewMatrix, const in mat4 projMatrix, const in float dispersion, const in float ior, const in float thickness,
|
||
const in vec3 attenuationColor, const in float attenuationDistance ) {
|
||
vec4 transmittedLight;
|
||
vec3 transmittance;
|
||
#ifdef USE_DISPERSION
|
||
float halfSpread = ( ior - 1.0 ) * 0.025 * dispersion;
|
||
vec3 iors = vec3( ior - halfSpread, ior, ior + halfSpread );
|
||
for ( int i = 0; i < 3; i ++ ) {
|
||
vec3 transmissionRay = getVolumeTransmissionRay( n, v, thickness, iors[ i ], modelMatrix );
|
||
vec3 refractedRayExit = position + transmissionRay;
|
||
vec4 ndcPos = projMatrix * viewMatrix * vec4( refractedRayExit, 1.0 );
|
||
vec2 refractionCoords = ndcPos.xy / ndcPos.w;
|
||
refractionCoords += 1.0;
|
||
refractionCoords /= 2.0;
|
||
vec4 transmissionSample = getTransmissionSample( refractionCoords, roughness, iors[ i ] );
|
||
transmittedLight[ i ] = transmissionSample[ i ];
|
||
transmittedLight.a += transmissionSample.a;
|
||
transmittance[ i ] = diffuseColor[ i ] * volumeAttenuation( length( transmissionRay ), attenuationColor, attenuationDistance )[ i ];
|
||
}
|
||
transmittedLight.a /= 3.0;
|
||
#else
|
||
vec3 transmissionRay = getVolumeTransmissionRay( n, v, thickness, ior, modelMatrix );
|
||
vec3 refractedRayExit = position + transmissionRay;
|
||
vec4 ndcPos = projMatrix * viewMatrix * vec4( refractedRayExit, 1.0 );
|
||
vec2 refractionCoords = ndcPos.xy / ndcPos.w;
|
||
refractionCoords += 1.0;
|
||
refractionCoords /= 2.0;
|
||
transmittedLight = getTransmissionSample( refractionCoords, roughness, ior );
|
||
transmittance = diffuseColor * volumeAttenuation( length( transmissionRay ), attenuationColor, attenuationDistance );
|
||
#endif
|
||
vec3 attenuatedColor = transmittance * transmittedLight.rgb;
|
||
vec3 F = EnvironmentBRDF( n, v, specularColor, specularF90, roughness );
|
||
float transmittanceFactor = ( transmittance.r + transmittance.g + transmittance.b ) / 3.0;
|
||
return vec4( ( 1.0 - F ) * attenuatedColor, 1.0 - ( 1.0 - transmittedLight.a ) * transmittanceFactor );
|
||
}
|
||
#endif`,of=`#if defined( USE_UV ) || defined( USE_ANISOTROPY )
|
||
varying vec2 vUv;
|
||
#endif
|
||
#ifdef USE_MAP
|
||
varying vec2 vMapUv;
|
||
#endif
|
||
#ifdef USE_ALPHAMAP
|
||
varying vec2 vAlphaMapUv;
|
||
#endif
|
||
#ifdef USE_LIGHTMAP
|
||
varying vec2 vLightMapUv;
|
||
#endif
|
||
#ifdef USE_AOMAP
|
||
varying vec2 vAoMapUv;
|
||
#endif
|
||
#ifdef USE_BUMPMAP
|
||
varying vec2 vBumpMapUv;
|
||
#endif
|
||
#ifdef USE_NORMALMAP
|
||
varying vec2 vNormalMapUv;
|
||
#endif
|
||
#ifdef USE_EMISSIVEMAP
|
||
varying vec2 vEmissiveMapUv;
|
||
#endif
|
||
#ifdef USE_METALNESSMAP
|
||
varying vec2 vMetalnessMapUv;
|
||
#endif
|
||
#ifdef USE_ROUGHNESSMAP
|
||
varying vec2 vRoughnessMapUv;
|
||
#endif
|
||
#ifdef USE_ANISOTROPYMAP
|
||
varying vec2 vAnisotropyMapUv;
|
||
#endif
|
||
#ifdef USE_CLEARCOATMAP
|
||
varying vec2 vClearcoatMapUv;
|
||
#endif
|
||
#ifdef USE_CLEARCOAT_NORMALMAP
|
||
varying vec2 vClearcoatNormalMapUv;
|
||
#endif
|
||
#ifdef USE_CLEARCOAT_ROUGHNESSMAP
|
||
varying vec2 vClearcoatRoughnessMapUv;
|
||
#endif
|
||
#ifdef USE_IRIDESCENCEMAP
|
||
varying vec2 vIridescenceMapUv;
|
||
#endif
|
||
#ifdef USE_IRIDESCENCE_THICKNESSMAP
|
||
varying vec2 vIridescenceThicknessMapUv;
|
||
#endif
|
||
#ifdef USE_SHEEN_COLORMAP
|
||
varying vec2 vSheenColorMapUv;
|
||
#endif
|
||
#ifdef USE_SHEEN_ROUGHNESSMAP
|
||
varying vec2 vSheenRoughnessMapUv;
|
||
#endif
|
||
#ifdef USE_SPECULARMAP
|
||
varying vec2 vSpecularMapUv;
|
||
#endif
|
||
#ifdef USE_SPECULAR_COLORMAP
|
||
varying vec2 vSpecularColorMapUv;
|
||
#endif
|
||
#ifdef USE_SPECULAR_INTENSITYMAP
|
||
varying vec2 vSpecularIntensityMapUv;
|
||
#endif
|
||
#ifdef USE_TRANSMISSIONMAP
|
||
uniform mat3 transmissionMapTransform;
|
||
varying vec2 vTransmissionMapUv;
|
||
#endif
|
||
#ifdef USE_THICKNESSMAP
|
||
uniform mat3 thicknessMapTransform;
|
||
varying vec2 vThicknessMapUv;
|
||
#endif`,lf=`#if defined( USE_UV ) || defined( USE_ANISOTROPY )
|
||
varying vec2 vUv;
|
||
#endif
|
||
#ifdef USE_MAP
|
||
uniform mat3 mapTransform;
|
||
varying vec2 vMapUv;
|
||
#endif
|
||
#ifdef USE_ALPHAMAP
|
||
uniform mat3 alphaMapTransform;
|
||
varying vec2 vAlphaMapUv;
|
||
#endif
|
||
#ifdef USE_LIGHTMAP
|
||
uniform mat3 lightMapTransform;
|
||
varying vec2 vLightMapUv;
|
||
#endif
|
||
#ifdef USE_AOMAP
|
||
uniform mat3 aoMapTransform;
|
||
varying vec2 vAoMapUv;
|
||
#endif
|
||
#ifdef USE_BUMPMAP
|
||
uniform mat3 bumpMapTransform;
|
||
varying vec2 vBumpMapUv;
|
||
#endif
|
||
#ifdef USE_NORMALMAP
|
||
uniform mat3 normalMapTransform;
|
||
varying vec2 vNormalMapUv;
|
||
#endif
|
||
#ifdef USE_DISPLACEMENTMAP
|
||
uniform mat3 displacementMapTransform;
|
||
varying vec2 vDisplacementMapUv;
|
||
#endif
|
||
#ifdef USE_EMISSIVEMAP
|
||
uniform mat3 emissiveMapTransform;
|
||
varying vec2 vEmissiveMapUv;
|
||
#endif
|
||
#ifdef USE_METALNESSMAP
|
||
uniform mat3 metalnessMapTransform;
|
||
varying vec2 vMetalnessMapUv;
|
||
#endif
|
||
#ifdef USE_ROUGHNESSMAP
|
||
uniform mat3 roughnessMapTransform;
|
||
varying vec2 vRoughnessMapUv;
|
||
#endif
|
||
#ifdef USE_ANISOTROPYMAP
|
||
uniform mat3 anisotropyMapTransform;
|
||
varying vec2 vAnisotropyMapUv;
|
||
#endif
|
||
#ifdef USE_CLEARCOATMAP
|
||
uniform mat3 clearcoatMapTransform;
|
||
varying vec2 vClearcoatMapUv;
|
||
#endif
|
||
#ifdef USE_CLEARCOAT_NORMALMAP
|
||
uniform mat3 clearcoatNormalMapTransform;
|
||
varying vec2 vClearcoatNormalMapUv;
|
||
#endif
|
||
#ifdef USE_CLEARCOAT_ROUGHNESSMAP
|
||
uniform mat3 clearcoatRoughnessMapTransform;
|
||
varying vec2 vClearcoatRoughnessMapUv;
|
||
#endif
|
||
#ifdef USE_SHEEN_COLORMAP
|
||
uniform mat3 sheenColorMapTransform;
|
||
varying vec2 vSheenColorMapUv;
|
||
#endif
|
||
#ifdef USE_SHEEN_ROUGHNESSMAP
|
||
uniform mat3 sheenRoughnessMapTransform;
|
||
varying vec2 vSheenRoughnessMapUv;
|
||
#endif
|
||
#ifdef USE_IRIDESCENCEMAP
|
||
uniform mat3 iridescenceMapTransform;
|
||
varying vec2 vIridescenceMapUv;
|
||
#endif
|
||
#ifdef USE_IRIDESCENCE_THICKNESSMAP
|
||
uniform mat3 iridescenceThicknessMapTransform;
|
||
varying vec2 vIridescenceThicknessMapUv;
|
||
#endif
|
||
#ifdef USE_SPECULARMAP
|
||
uniform mat3 specularMapTransform;
|
||
varying vec2 vSpecularMapUv;
|
||
#endif
|
||
#ifdef USE_SPECULAR_COLORMAP
|
||
uniform mat3 specularColorMapTransform;
|
||
varying vec2 vSpecularColorMapUv;
|
||
#endif
|
||
#ifdef USE_SPECULAR_INTENSITYMAP
|
||
uniform mat3 specularIntensityMapTransform;
|
||
varying vec2 vSpecularIntensityMapUv;
|
||
#endif
|
||
#ifdef USE_TRANSMISSIONMAP
|
||
uniform mat3 transmissionMapTransform;
|
||
varying vec2 vTransmissionMapUv;
|
||
#endif
|
||
#ifdef USE_THICKNESSMAP
|
||
uniform mat3 thicknessMapTransform;
|
||
varying vec2 vThicknessMapUv;
|
||
#endif`,cf=`#if defined( USE_UV ) || defined( USE_ANISOTROPY )
|
||
vUv = vec3( uv, 1 ).xy;
|
||
#endif
|
||
#ifdef USE_MAP
|
||
vMapUv = ( mapTransform * vec3( MAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_ALPHAMAP
|
||
vAlphaMapUv = ( alphaMapTransform * vec3( ALPHAMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_LIGHTMAP
|
||
vLightMapUv = ( lightMapTransform * vec3( LIGHTMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_AOMAP
|
||
vAoMapUv = ( aoMapTransform * vec3( AOMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_BUMPMAP
|
||
vBumpMapUv = ( bumpMapTransform * vec3( BUMPMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_NORMALMAP
|
||
vNormalMapUv = ( normalMapTransform * vec3( NORMALMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_DISPLACEMENTMAP
|
||
vDisplacementMapUv = ( displacementMapTransform * vec3( DISPLACEMENTMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_EMISSIVEMAP
|
||
vEmissiveMapUv = ( emissiveMapTransform * vec3( EMISSIVEMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_METALNESSMAP
|
||
vMetalnessMapUv = ( metalnessMapTransform * vec3( METALNESSMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_ROUGHNESSMAP
|
||
vRoughnessMapUv = ( roughnessMapTransform * vec3( ROUGHNESSMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_ANISOTROPYMAP
|
||
vAnisotropyMapUv = ( anisotropyMapTransform * vec3( ANISOTROPYMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_CLEARCOATMAP
|
||
vClearcoatMapUv = ( clearcoatMapTransform * vec3( CLEARCOATMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_CLEARCOAT_NORMALMAP
|
||
vClearcoatNormalMapUv = ( clearcoatNormalMapTransform * vec3( CLEARCOAT_NORMALMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_CLEARCOAT_ROUGHNESSMAP
|
||
vClearcoatRoughnessMapUv = ( clearcoatRoughnessMapTransform * vec3( CLEARCOAT_ROUGHNESSMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_IRIDESCENCEMAP
|
||
vIridescenceMapUv = ( iridescenceMapTransform * vec3( IRIDESCENCEMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_IRIDESCENCE_THICKNESSMAP
|
||
vIridescenceThicknessMapUv = ( iridescenceThicknessMapTransform * vec3( IRIDESCENCE_THICKNESSMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_SHEEN_COLORMAP
|
||
vSheenColorMapUv = ( sheenColorMapTransform * vec3( SHEEN_COLORMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_SHEEN_ROUGHNESSMAP
|
||
vSheenRoughnessMapUv = ( sheenRoughnessMapTransform * vec3( SHEEN_ROUGHNESSMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_SPECULARMAP
|
||
vSpecularMapUv = ( specularMapTransform * vec3( SPECULARMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_SPECULAR_COLORMAP
|
||
vSpecularColorMapUv = ( specularColorMapTransform * vec3( SPECULAR_COLORMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_SPECULAR_INTENSITYMAP
|
||
vSpecularIntensityMapUv = ( specularIntensityMapTransform * vec3( SPECULAR_INTENSITYMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_TRANSMISSIONMAP
|
||
vTransmissionMapUv = ( transmissionMapTransform * vec3( TRANSMISSIONMAP_UV, 1 ) ).xy;
|
||
#endif
|
||
#ifdef USE_THICKNESSMAP
|
||
vThicknessMapUv = ( thicknessMapTransform * vec3( THICKNESSMAP_UV, 1 ) ).xy;
|
||
#endif`,hf=`#if defined( USE_ENVMAP ) || defined( DISTANCE ) || defined ( USE_SHADOWMAP ) || defined ( USE_TRANSMISSION ) || NUM_SPOT_LIGHT_COORDS > 0
|
||
vec4 worldPosition = vec4( transformed, 1.0 );
|
||
#ifdef USE_BATCHING
|
||
worldPosition = batchingMatrix * worldPosition;
|
||
#endif
|
||
#ifdef USE_INSTANCING
|
||
worldPosition = instanceMatrix * worldPosition;
|
||
#endif
|
||
worldPosition = modelMatrix * worldPosition;
|
||
#endif`;const uf=`varying vec2 vUv;
|
||
uniform mat3 uvTransform;
|
||
void main() {
|
||
vUv = ( uvTransform * vec3( uv, 1 ) ).xy;
|
||
gl_Position = vec4( position.xy, 1.0, 1.0 );
|
||
}`,df=`uniform sampler2D t2D;
|
||
uniform float backgroundIntensity;
|
||
varying vec2 vUv;
|
||
void main() {
|
||
vec4 texColor = texture2D( t2D, vUv );
|
||
#ifdef DECODE_VIDEO_TEXTURE
|
||
texColor = vec4( mix( pow( texColor.rgb * 0.9478672986 + vec3( 0.0521327014 ), vec3( 2.4 ) ), texColor.rgb * 0.0773993808, vec3( lessThanEqual( texColor.rgb, vec3( 0.04045 ) ) ) ), texColor.w );
|
||
#endif
|
||
texColor.rgb *= backgroundIntensity;
|
||
gl_FragColor = texColor;
|
||
#include <tonemapping_fragment>
|
||
#include <colorspace_fragment>
|
||
}`,ff=`varying vec3 vWorldDirection;
|
||
#include <common>
|
||
void main() {
|
||
vWorldDirection = transformDirection( position, modelMatrix );
|
||
#include <begin_vertex>
|
||
#include <project_vertex>
|
||
gl_Position.z = gl_Position.w;
|
||
}`,pf=`#ifdef ENVMAP_TYPE_CUBE
|
||
uniform samplerCube envMap;
|
||
#elif defined( ENVMAP_TYPE_CUBE_UV )
|
||
uniform sampler2D envMap;
|
||
#endif
|
||
uniform float flipEnvMap;
|
||
uniform float backgroundBlurriness;
|
||
uniform float backgroundIntensity;
|
||
uniform mat3 backgroundRotation;
|
||
varying vec3 vWorldDirection;
|
||
#include <cube_uv_reflection_fragment>
|
||
void main() {
|
||
#ifdef ENVMAP_TYPE_CUBE
|
||
vec4 texColor = textureCube( envMap, backgroundRotation * vec3( flipEnvMap * vWorldDirection.x, vWorldDirection.yz ) );
|
||
#elif defined( ENVMAP_TYPE_CUBE_UV )
|
||
vec4 texColor = textureCubeUV( envMap, backgroundRotation * vWorldDirection, backgroundBlurriness );
|
||
#else
|
||
vec4 texColor = vec4( 0.0, 0.0, 0.0, 1.0 );
|
||
#endif
|
||
texColor.rgb *= backgroundIntensity;
|
||
gl_FragColor = texColor;
|
||
#include <tonemapping_fragment>
|
||
#include <colorspace_fragment>
|
||
}`,mf=`varying vec3 vWorldDirection;
|
||
#include <common>
|
||
void main() {
|
||
vWorldDirection = transformDirection( position, modelMatrix );
|
||
#include <begin_vertex>
|
||
#include <project_vertex>
|
||
gl_Position.z = gl_Position.w;
|
||
}`,_f=`uniform samplerCube tCube;
|
||
uniform float tFlip;
|
||
uniform float opacity;
|
||
varying vec3 vWorldDirection;
|
||
void main() {
|
||
vec4 texColor = textureCube( tCube, vec3( tFlip * vWorldDirection.x, vWorldDirection.yz ) );
|
||
gl_FragColor = texColor;
|
||
gl_FragColor.a *= opacity;
|
||
#include <tonemapping_fragment>
|
||
#include <colorspace_fragment>
|
||
}`,gf=`#include <common>
|
||
#include <batching_pars_vertex>
|
||
#include <uv_pars_vertex>
|
||
#include <displacementmap_pars_vertex>
|
||
#include <morphtarget_pars_vertex>
|
||
#include <skinning_pars_vertex>
|
||
#include <logdepthbuf_pars_vertex>
|
||
#include <clipping_planes_pars_vertex>
|
||
varying vec2 vHighPrecisionZW;
|
||
void main() {
|
||
#include <uv_vertex>
|
||
#include <batching_vertex>
|
||
#include <skinbase_vertex>
|
||
#include <morphinstance_vertex>
|
||
#ifdef USE_DISPLACEMENTMAP
|
||
#include <beginnormal_vertex>
|
||
#include <morphnormal_vertex>
|
||
#include <skinnormal_vertex>
|
||
#endif
|
||
#include <begin_vertex>
|
||
#include <morphtarget_vertex>
|
||
#include <skinning_vertex>
|
||
#include <displacementmap_vertex>
|
||
#include <project_vertex>
|
||
#include <logdepthbuf_vertex>
|
||
#include <clipping_planes_vertex>
|
||
vHighPrecisionZW = gl_Position.zw;
|
||
}`,vf=`#if DEPTH_PACKING == 3200
|
||
uniform float opacity;
|
||
#endif
|
||
#include <common>
|
||
#include <packing>
|
||
#include <uv_pars_fragment>
|
||
#include <map_pars_fragment>
|
||
#include <alphamap_pars_fragment>
|
||
#include <alphatest_pars_fragment>
|
||
#include <alphahash_pars_fragment>
|
||
#include <logdepthbuf_pars_fragment>
|
||
#include <clipping_planes_pars_fragment>
|
||
varying vec2 vHighPrecisionZW;
|
||
void main() {
|
||
vec4 diffuseColor = vec4( 1.0 );
|
||
#include <clipping_planes_fragment>
|
||
#if DEPTH_PACKING == 3200
|
||
diffuseColor.a = opacity;
|
||
#endif
|
||
#include <map_fragment>
|
||
#include <alphamap_fragment>
|
||
#include <alphatest_fragment>
|
||
#include <alphahash_fragment>
|
||
#include <logdepthbuf_fragment>
|
||
float fragCoordZ = 0.5 * vHighPrecisionZW[0] / vHighPrecisionZW[1] + 0.5;
|
||
#if DEPTH_PACKING == 3200
|
||
gl_FragColor = vec4( vec3( 1.0 - fragCoordZ ), opacity );
|
||
#elif DEPTH_PACKING == 3201
|
||
gl_FragColor = packDepthToRGBA( fragCoordZ );
|
||
#elif DEPTH_PACKING == 3202
|
||
gl_FragColor = vec4( packDepthToRGB( fragCoordZ ), 1.0 );
|
||
#elif DEPTH_PACKING == 3203
|
||
gl_FragColor = vec4( packDepthToRG( fragCoordZ ), 0.0, 1.0 );
|
||
#endif
|
||
}`,xf=`#define DISTANCE
|
||
varying vec3 vWorldPosition;
|
||
#include <common>
|
||
#include <batching_pars_vertex>
|
||
#include <uv_pars_vertex>
|
||
#include <displacementmap_pars_vertex>
|
||
#include <morphtarget_pars_vertex>
|
||
#include <skinning_pars_vertex>
|
||
#include <clipping_planes_pars_vertex>
|
||
void main() {
|
||
#include <uv_vertex>
|
||
#include <batching_vertex>
|
||
#include <skinbase_vertex>
|
||
#include <morphinstance_vertex>
|
||
#ifdef USE_DISPLACEMENTMAP
|
||
#include <beginnormal_vertex>
|
||
#include <morphnormal_vertex>
|
||
#include <skinnormal_vertex>
|
||
#endif
|
||
#include <begin_vertex>
|
||
#include <morphtarget_vertex>
|
||
#include <skinning_vertex>
|
||
#include <displacementmap_vertex>
|
||
#include <project_vertex>
|
||
#include <worldpos_vertex>
|
||
#include <clipping_planes_vertex>
|
||
vWorldPosition = worldPosition.xyz;
|
||
}`,Mf=`#define DISTANCE
|
||
uniform vec3 referencePosition;
|
||
uniform float nearDistance;
|
||
uniform float farDistance;
|
||
varying vec3 vWorldPosition;
|
||
#include <common>
|
||
#include <packing>
|
||
#include <uv_pars_fragment>
|
||
#include <map_pars_fragment>
|
||
#include <alphamap_pars_fragment>
|
||
#include <alphatest_pars_fragment>
|
||
#include <alphahash_pars_fragment>
|
||
#include <clipping_planes_pars_fragment>
|
||
void main () {
|
||
vec4 diffuseColor = vec4( 1.0 );
|
||
#include <clipping_planes_fragment>
|
||
#include <map_fragment>
|
||
#include <alphamap_fragment>
|
||
#include <alphatest_fragment>
|
||
#include <alphahash_fragment>
|
||
float dist = length( vWorldPosition - referencePosition );
|
||
dist = ( dist - nearDistance ) / ( farDistance - nearDistance );
|
||
dist = saturate( dist );
|
||
gl_FragColor = packDepthToRGBA( dist );
|
||
}`,Sf=`varying vec3 vWorldDirection;
|
||
#include <common>
|
||
void main() {
|
||
vWorldDirection = transformDirection( position, modelMatrix );
|
||
#include <begin_vertex>
|
||
#include <project_vertex>
|
||
}`,yf=`uniform sampler2D tEquirect;
|
||
varying vec3 vWorldDirection;
|
||
#include <common>
|
||
void main() {
|
||
vec3 direction = normalize( vWorldDirection );
|
||
vec2 sampleUV = equirectUv( direction );
|
||
gl_FragColor = texture2D( tEquirect, sampleUV );
|
||
#include <tonemapping_fragment>
|
||
#include <colorspace_fragment>
|
||
}`,Ef=`uniform float scale;
|
||
attribute float lineDistance;
|
||
varying float vLineDistance;
|
||
#include <common>
|
||
#include <uv_pars_vertex>
|
||
#include <color_pars_vertex>
|
||
#include <fog_pars_vertex>
|
||
#include <morphtarget_pars_vertex>
|
||
#include <logdepthbuf_pars_vertex>
|
||
#include <clipping_planes_pars_vertex>
|
||
void main() {
|
||
vLineDistance = scale * lineDistance;
|
||
#include <uv_vertex>
|
||
#include <color_vertex>
|
||
#include <morphinstance_vertex>
|
||
#include <morphcolor_vertex>
|
||
#include <begin_vertex>
|
||
#include <morphtarget_vertex>
|
||
#include <project_vertex>
|
||
#include <logdepthbuf_vertex>
|
||
#include <clipping_planes_vertex>
|
||
#include <fog_vertex>
|
||
}`,Tf=`uniform vec3 diffuse;
|
||
uniform float opacity;
|
||
uniform float dashSize;
|
||
uniform float totalSize;
|
||
varying float vLineDistance;
|
||
#include <common>
|
||
#include <color_pars_fragment>
|
||
#include <uv_pars_fragment>
|
||
#include <map_pars_fragment>
|
||
#include <fog_pars_fragment>
|
||
#include <logdepthbuf_pars_fragment>
|
||
#include <clipping_planes_pars_fragment>
|
||
void main() {
|
||
vec4 diffuseColor = vec4( diffuse, opacity );
|
||
#include <clipping_planes_fragment>
|
||
if ( mod( vLineDistance, totalSize ) > dashSize ) {
|
||
discard;
|
||
}
|
||
vec3 outgoingLight = vec3( 0.0 );
|
||
#include <logdepthbuf_fragment>
|
||
#include <map_fragment>
|
||
#include <color_fragment>
|
||
outgoingLight = diffuseColor.rgb;
|
||
#include <opaque_fragment>
|
||
#include <tonemapping_fragment>
|
||
#include <colorspace_fragment>
|
||
#include <fog_fragment>
|
||
#include <premultiplied_alpha_fragment>
|
||
}`,bf=`#include <common>
|
||
#include <batching_pars_vertex>
|
||
#include <uv_pars_vertex>
|
||
#include <envmap_pars_vertex>
|
||
#include <color_pars_vertex>
|
||
#include <fog_pars_vertex>
|
||
#include <morphtarget_pars_vertex>
|
||
#include <skinning_pars_vertex>
|
||
#include <logdepthbuf_pars_vertex>
|
||
#include <clipping_planes_pars_vertex>
|
||
void main() {
|
||
#include <uv_vertex>
|
||
#include <color_vertex>
|
||
#include <morphinstance_vertex>
|
||
#include <morphcolor_vertex>
|
||
#include <batching_vertex>
|
||
#if defined ( USE_ENVMAP ) || defined ( USE_SKINNING )
|
||
#include <beginnormal_vertex>
|
||
#include <morphnormal_vertex>
|
||
#include <skinbase_vertex>
|
||
#include <skinnormal_vertex>
|
||
#include <defaultnormal_vertex>
|
||
#endif
|
||
#include <begin_vertex>
|
||
#include <morphtarget_vertex>
|
||
#include <skinning_vertex>
|
||
#include <project_vertex>
|
||
#include <logdepthbuf_vertex>
|
||
#include <clipping_planes_vertex>
|
||
#include <worldpos_vertex>
|
||
#include <envmap_vertex>
|
||
#include <fog_vertex>
|
||
}`,Af=`uniform vec3 diffuse;
|
||
uniform float opacity;
|
||
#ifndef FLAT_SHADED
|
||
varying vec3 vNormal;
|
||
#endif
|
||
#include <common>
|
||
#include <dithering_pars_fragment>
|
||
#include <color_pars_fragment>
|
||
#include <uv_pars_fragment>
|
||
#include <map_pars_fragment>
|
||
#include <alphamap_pars_fragment>
|
||
#include <alphatest_pars_fragment>
|
||
#include <alphahash_pars_fragment>
|
||
#include <aomap_pars_fragment>
|
||
#include <lightmap_pars_fragment>
|
||
#include <envmap_common_pars_fragment>
|
||
#include <envmap_pars_fragment>
|
||
#include <fog_pars_fragment>
|
||
#include <specularmap_pars_fragment>
|
||
#include <logdepthbuf_pars_fragment>
|
||
#include <clipping_planes_pars_fragment>
|
||
void main() {
|
||
vec4 diffuseColor = vec4( diffuse, opacity );
|
||
#include <clipping_planes_fragment>
|
||
#include <logdepthbuf_fragment>
|
||
#include <map_fragment>
|
||
#include <color_fragment>
|
||
#include <alphamap_fragment>
|
||
#include <alphatest_fragment>
|
||
#include <alphahash_fragment>
|
||
#include <specularmap_fragment>
|
||
ReflectedLight reflectedLight = ReflectedLight( vec3( 0.0 ), vec3( 0.0 ), vec3( 0.0 ), vec3( 0.0 ) );
|
||
#ifdef USE_LIGHTMAP
|
||
vec4 lightMapTexel = texture2D( lightMap, vLightMapUv );
|
||
reflectedLight.indirectDiffuse += lightMapTexel.rgb * lightMapIntensity * RECIPROCAL_PI;
|
||
#else
|
||
reflectedLight.indirectDiffuse += vec3( 1.0 );
|
||
#endif
|
||
#include <aomap_fragment>
|
||
reflectedLight.indirectDiffuse *= diffuseColor.rgb;
|
||
vec3 outgoingLight = reflectedLight.indirectDiffuse;
|
||
#include <envmap_fragment>
|
||
#include <opaque_fragment>
|
||
#include <tonemapping_fragment>
|
||
#include <colorspace_fragment>
|
||
#include <fog_fragment>
|
||
#include <premultiplied_alpha_fragment>
|
||
#include <dithering_fragment>
|
||
}`,wf=`#define LAMBERT
|
||
varying vec3 vViewPosition;
|
||
#include <common>
|
||
#include <batching_pars_vertex>
|
||
#include <uv_pars_vertex>
|
||
#include <displacementmap_pars_vertex>
|
||
#include <envmap_pars_vertex>
|
||
#include <color_pars_vertex>
|
||
#include <fog_pars_vertex>
|
||
#include <normal_pars_vertex>
|
||
#include <morphtarget_pars_vertex>
|
||
#include <skinning_pars_vertex>
|
||
#include <shadowmap_pars_vertex>
|
||
#include <logdepthbuf_pars_vertex>
|
||
#include <clipping_planes_pars_vertex>
|
||
void main() {
|
||
#include <uv_vertex>
|
||
#include <color_vertex>
|
||
#include <morphinstance_vertex>
|
||
#include <morphcolor_vertex>
|
||
#include <batching_vertex>
|
||
#include <beginnormal_vertex>
|
||
#include <morphnormal_vertex>
|
||
#include <skinbase_vertex>
|
||
#include <skinnormal_vertex>
|
||
#include <defaultnormal_vertex>
|
||
#include <normal_vertex>
|
||
#include <begin_vertex>
|
||
#include <morphtarget_vertex>
|
||
#include <skinning_vertex>
|
||
#include <displacementmap_vertex>
|
||
#include <project_vertex>
|
||
#include <logdepthbuf_vertex>
|
||
#include <clipping_planes_vertex>
|
||
vViewPosition = - mvPosition.xyz;
|
||
#include <worldpos_vertex>
|
||
#include <envmap_vertex>
|
||
#include <shadowmap_vertex>
|
||
#include <fog_vertex>
|
||
}`,Rf=`#define LAMBERT
|
||
uniform vec3 diffuse;
|
||
uniform vec3 emissive;
|
||
uniform float opacity;
|
||
#include <common>
|
||
#include <packing>
|
||
#include <dithering_pars_fragment>
|
||
#include <color_pars_fragment>
|
||
#include <uv_pars_fragment>
|
||
#include <map_pars_fragment>
|
||
#include <alphamap_pars_fragment>
|
||
#include <alphatest_pars_fragment>
|
||
#include <alphahash_pars_fragment>
|
||
#include <aomap_pars_fragment>
|
||
#include <lightmap_pars_fragment>
|
||
#include <emissivemap_pars_fragment>
|
||
#include <envmap_common_pars_fragment>
|
||
#include <envmap_pars_fragment>
|
||
#include <fog_pars_fragment>
|
||
#include <bsdfs>
|
||
#include <lights_pars_begin>
|
||
#include <normal_pars_fragment>
|
||
#include <lights_lambert_pars_fragment>
|
||
#include <shadowmap_pars_fragment>
|
||
#include <bumpmap_pars_fragment>
|
||
#include <normalmap_pars_fragment>
|
||
#include <specularmap_pars_fragment>
|
||
#include <logdepthbuf_pars_fragment>
|
||
#include <clipping_planes_pars_fragment>
|
||
void main() {
|
||
vec4 diffuseColor = vec4( diffuse, opacity );
|
||
#include <clipping_planes_fragment>
|
||
ReflectedLight reflectedLight = ReflectedLight( vec3( 0.0 ), vec3( 0.0 ), vec3( 0.0 ), vec3( 0.0 ) );
|
||
vec3 totalEmissiveRadiance = emissive;
|
||
#include <logdepthbuf_fragment>
|
||
#include <map_fragment>
|
||
#include <color_fragment>
|
||
#include <alphamap_fragment>
|
||
#include <alphatest_fragment>
|
||
#include <alphahash_fragment>
|
||
#include <specularmap_fragment>
|
||
#include <normal_fragment_begin>
|
||
#include <normal_fragment_maps>
|
||
#include <emissivemap_fragment>
|
||
#include <lights_lambert_fragment>
|
||
#include <lights_fragment_begin>
|
||
#include <lights_fragment_maps>
|
||
#include <lights_fragment_end>
|
||
#include <aomap_fragment>
|
||
vec3 outgoingLight = reflectedLight.directDiffuse + reflectedLight.indirectDiffuse + totalEmissiveRadiance;
|
||
#include <envmap_fragment>
|
||
#include <opaque_fragment>
|
||
#include <tonemapping_fragment>
|
||
#include <colorspace_fragment>
|
||
#include <fog_fragment>
|
||
#include <premultiplied_alpha_fragment>
|
||
#include <dithering_fragment>
|
||
}`,Cf=`#define MATCAP
|
||
varying vec3 vViewPosition;
|
||
#include <common>
|
||
#include <batching_pars_vertex>
|
||
#include <uv_pars_vertex>
|
||
#include <color_pars_vertex>
|
||
#include <displacementmap_pars_vertex>
|
||
#include <fog_pars_vertex>
|
||
#include <normal_pars_vertex>
|
||
#include <morphtarget_pars_vertex>
|
||
#include <skinning_pars_vertex>
|
||
#include <logdepthbuf_pars_vertex>
|
||
#include <clipping_planes_pars_vertex>
|
||
void main() {
|
||
#include <uv_vertex>
|
||
#include <color_vertex>
|
||
#include <morphinstance_vertex>
|
||
#include <morphcolor_vertex>
|
||
#include <batching_vertex>
|
||
#include <beginnormal_vertex>
|
||
#include <morphnormal_vertex>
|
||
#include <skinbase_vertex>
|
||
#include <skinnormal_vertex>
|
||
#include <defaultnormal_vertex>
|
||
#include <normal_vertex>
|
||
#include <begin_vertex>
|
||
#include <morphtarget_vertex>
|
||
#include <skinning_vertex>
|
||
#include <displacementmap_vertex>
|
||
#include <project_vertex>
|
||
#include <logdepthbuf_vertex>
|
||
#include <clipping_planes_vertex>
|
||
#include <fog_vertex>
|
||
vViewPosition = - mvPosition.xyz;
|
||
}`,Pf=`#define MATCAP
|
||
uniform vec3 diffuse;
|
||
uniform float opacity;
|
||
uniform sampler2D matcap;
|
||
varying vec3 vViewPosition;
|
||
#include <common>
|
||
#include <dithering_pars_fragment>
|
||
#include <color_pars_fragment>
|
||
#include <uv_pars_fragment>
|
||
#include <map_pars_fragment>
|
||
#include <alphamap_pars_fragment>
|
||
#include <alphatest_pars_fragment>
|
||
#include <alphahash_pars_fragment>
|
||
#include <fog_pars_fragment>
|
||
#include <normal_pars_fragment>
|
||
#include <bumpmap_pars_fragment>
|
||
#include <normalmap_pars_fragment>
|
||
#include <logdepthbuf_pars_fragment>
|
||
#include <clipping_planes_pars_fragment>
|
||
void main() {
|
||
vec4 diffuseColor = vec4( diffuse, opacity );
|
||
#include <clipping_planes_fragment>
|
||
#include <logdepthbuf_fragment>
|
||
#include <map_fragment>
|
||
#include <color_fragment>
|
||
#include <alphamap_fragment>
|
||
#include <alphatest_fragment>
|
||
#include <alphahash_fragment>
|
||
#include <normal_fragment_begin>
|
||
#include <normal_fragment_maps>
|
||
vec3 viewDir = normalize( vViewPosition );
|
||
vec3 x = normalize( vec3( viewDir.z, 0.0, - viewDir.x ) );
|
||
vec3 y = cross( viewDir, x );
|
||
vec2 uv = vec2( dot( x, normal ), dot( y, normal ) ) * 0.495 + 0.5;
|
||
#ifdef USE_MATCAP
|
||
vec4 matcapColor = texture2D( matcap, uv );
|
||
#else
|
||
vec4 matcapColor = vec4( vec3( mix( 0.2, 0.8, uv.y ) ), 1.0 );
|
||
#endif
|
||
vec3 outgoingLight = diffuseColor.rgb * matcapColor.rgb;
|
||
#include <opaque_fragment>
|
||
#include <tonemapping_fragment>
|
||
#include <colorspace_fragment>
|
||
#include <fog_fragment>
|
||
#include <premultiplied_alpha_fragment>
|
||
#include <dithering_fragment>
|
||
}`,Df=`#define NORMAL
|
||
#if defined( FLAT_SHADED ) || defined( USE_BUMPMAP ) || defined( USE_NORMALMAP_TANGENTSPACE )
|
||
varying vec3 vViewPosition;
|
||
#endif
|
||
#include <common>
|
||
#include <batching_pars_vertex>
|
||
#include <uv_pars_vertex>
|
||
#include <displacementmap_pars_vertex>
|
||
#include <normal_pars_vertex>
|
||
#include <morphtarget_pars_vertex>
|
||
#include <skinning_pars_vertex>
|
||
#include <logdepthbuf_pars_vertex>
|
||
#include <clipping_planes_pars_vertex>
|
||
void main() {
|
||
#include <uv_vertex>
|
||
#include <batching_vertex>
|
||
#include <beginnormal_vertex>
|
||
#include <morphinstance_vertex>
|
||
#include <morphnormal_vertex>
|
||
#include <skinbase_vertex>
|
||
#include <skinnormal_vertex>
|
||
#include <defaultnormal_vertex>
|
||
#include <normal_vertex>
|
||
#include <begin_vertex>
|
||
#include <morphtarget_vertex>
|
||
#include <skinning_vertex>
|
||
#include <displacementmap_vertex>
|
||
#include <project_vertex>
|
||
#include <logdepthbuf_vertex>
|
||
#include <clipping_planes_vertex>
|
||
#if defined( FLAT_SHADED ) || defined( USE_BUMPMAP ) || defined( USE_NORMALMAP_TANGENTSPACE )
|
||
vViewPosition = - mvPosition.xyz;
|
||
#endif
|
||
}`,Lf=`#define NORMAL
|
||
uniform float opacity;
|
||
#if defined( FLAT_SHADED ) || defined( USE_BUMPMAP ) || defined( USE_NORMALMAP_TANGENTSPACE )
|
||
varying vec3 vViewPosition;
|
||
#endif
|
||
#include <packing>
|
||
#include <uv_pars_fragment>
|
||
#include <normal_pars_fragment>
|
||
#include <bumpmap_pars_fragment>
|
||
#include <normalmap_pars_fragment>
|
||
#include <logdepthbuf_pars_fragment>
|
||
#include <clipping_planes_pars_fragment>
|
||
void main() {
|
||
vec4 diffuseColor = vec4( 0.0, 0.0, 0.0, opacity );
|
||
#include <clipping_planes_fragment>
|
||
#include <logdepthbuf_fragment>
|
||
#include <normal_fragment_begin>
|
||
#include <normal_fragment_maps>
|
||
gl_FragColor = vec4( packNormalToRGB( normal ), diffuseColor.a );
|
||
#ifdef OPAQUE
|
||
gl_FragColor.a = 1.0;
|
||
#endif
|
||
}`,Uf=`#define PHONG
|
||
varying vec3 vViewPosition;
|
||
#include <common>
|
||
#include <batching_pars_vertex>
|
||
#include <uv_pars_vertex>
|
||
#include <displacementmap_pars_vertex>
|
||
#include <envmap_pars_vertex>
|
||
#include <color_pars_vertex>
|
||
#include <fog_pars_vertex>
|
||
#include <normal_pars_vertex>
|
||
#include <morphtarget_pars_vertex>
|
||
#include <skinning_pars_vertex>
|
||
#include <shadowmap_pars_vertex>
|
||
#include <logdepthbuf_pars_vertex>
|
||
#include <clipping_planes_pars_vertex>
|
||
void main() {
|
||
#include <uv_vertex>
|
||
#include <color_vertex>
|
||
#include <morphcolor_vertex>
|
||
#include <batching_vertex>
|
||
#include <beginnormal_vertex>
|
||
#include <morphinstance_vertex>
|
||
#include <morphnormal_vertex>
|
||
#include <skinbase_vertex>
|
||
#include <skinnormal_vertex>
|
||
#include <defaultnormal_vertex>
|
||
#include <normal_vertex>
|
||
#include <begin_vertex>
|
||
#include <morphtarget_vertex>
|
||
#include <skinning_vertex>
|
||
#include <displacementmap_vertex>
|
||
#include <project_vertex>
|
||
#include <logdepthbuf_vertex>
|
||
#include <clipping_planes_vertex>
|
||
vViewPosition = - mvPosition.xyz;
|
||
#include <worldpos_vertex>
|
||
#include <envmap_vertex>
|
||
#include <shadowmap_vertex>
|
||
#include <fog_vertex>
|
||
}`,If=`#define PHONG
|
||
uniform vec3 diffuse;
|
||
uniform vec3 emissive;
|
||
uniform vec3 specular;
|
||
uniform float shininess;
|
||
uniform float opacity;
|
||
#include <common>
|
||
#include <packing>
|
||
#include <dithering_pars_fragment>
|
||
#include <color_pars_fragment>
|
||
#include <uv_pars_fragment>
|
||
#include <map_pars_fragment>
|
||
#include <alphamap_pars_fragment>
|
||
#include <alphatest_pars_fragment>
|
||
#include <alphahash_pars_fragment>
|
||
#include <aomap_pars_fragment>
|
||
#include <lightmap_pars_fragment>
|
||
#include <emissivemap_pars_fragment>
|
||
#include <envmap_common_pars_fragment>
|
||
#include <envmap_pars_fragment>
|
||
#include <fog_pars_fragment>
|
||
#include <bsdfs>
|
||
#include <lights_pars_begin>
|
||
#include <normal_pars_fragment>
|
||
#include <lights_phong_pars_fragment>
|
||
#include <shadowmap_pars_fragment>
|
||
#include <bumpmap_pars_fragment>
|
||
#include <normalmap_pars_fragment>
|
||
#include <specularmap_pars_fragment>
|
||
#include <logdepthbuf_pars_fragment>
|
||
#include <clipping_planes_pars_fragment>
|
||
void main() {
|
||
vec4 diffuseColor = vec4( diffuse, opacity );
|
||
#include <clipping_planes_fragment>
|
||
ReflectedLight reflectedLight = ReflectedLight( vec3( 0.0 ), vec3( 0.0 ), vec3( 0.0 ), vec3( 0.0 ) );
|
||
vec3 totalEmissiveRadiance = emissive;
|
||
#include <logdepthbuf_fragment>
|
||
#include <map_fragment>
|
||
#include <color_fragment>
|
||
#include <alphamap_fragment>
|
||
#include <alphatest_fragment>
|
||
#include <alphahash_fragment>
|
||
#include <specularmap_fragment>
|
||
#include <normal_fragment_begin>
|
||
#include <normal_fragment_maps>
|
||
#include <emissivemap_fragment>
|
||
#include <lights_phong_fragment>
|
||
#include <lights_fragment_begin>
|
||
#include <lights_fragment_maps>
|
||
#include <lights_fragment_end>
|
||
#include <aomap_fragment>
|
||
vec3 outgoingLight = reflectedLight.directDiffuse + reflectedLight.indirectDiffuse + reflectedLight.directSpecular + reflectedLight.indirectSpecular + totalEmissiveRadiance;
|
||
#include <envmap_fragment>
|
||
#include <opaque_fragment>
|
||
#include <tonemapping_fragment>
|
||
#include <colorspace_fragment>
|
||
#include <fog_fragment>
|
||
#include <premultiplied_alpha_fragment>
|
||
#include <dithering_fragment>
|
||
}`,Nf=`#define STANDARD
|
||
varying vec3 vViewPosition;
|
||
#ifdef USE_TRANSMISSION
|
||
varying vec3 vWorldPosition;
|
||
#endif
|
||
#include <common>
|
||
#include <batching_pars_vertex>
|
||
#include <uv_pars_vertex>
|
||
#include <displacementmap_pars_vertex>
|
||
#include <color_pars_vertex>
|
||
#include <fog_pars_vertex>
|
||
#include <normal_pars_vertex>
|
||
#include <morphtarget_pars_vertex>
|
||
#include <skinning_pars_vertex>
|
||
#include <shadowmap_pars_vertex>
|
||
#include <logdepthbuf_pars_vertex>
|
||
#include <clipping_planes_pars_vertex>
|
||
void main() {
|
||
#include <uv_vertex>
|
||
#include <color_vertex>
|
||
#include <morphinstance_vertex>
|
||
#include <morphcolor_vertex>
|
||
#include <batching_vertex>
|
||
#include <beginnormal_vertex>
|
||
#include <morphnormal_vertex>
|
||
#include <skinbase_vertex>
|
||
#include <skinnormal_vertex>
|
||
#include <defaultnormal_vertex>
|
||
#include <normal_vertex>
|
||
#include <begin_vertex>
|
||
#include <morphtarget_vertex>
|
||
#include <skinning_vertex>
|
||
#include <displacementmap_vertex>
|
||
#include <project_vertex>
|
||
#include <logdepthbuf_vertex>
|
||
#include <clipping_planes_vertex>
|
||
vViewPosition = - mvPosition.xyz;
|
||
#include <worldpos_vertex>
|
||
#include <shadowmap_vertex>
|
||
#include <fog_vertex>
|
||
#ifdef USE_TRANSMISSION
|
||
vWorldPosition = worldPosition.xyz;
|
||
#endif
|
||
}`,Ff=`#define STANDARD
|
||
#ifdef PHYSICAL
|
||
#define IOR
|
||
#define USE_SPECULAR
|
||
#endif
|
||
uniform vec3 diffuse;
|
||
uniform vec3 emissive;
|
||
uniform float roughness;
|
||
uniform float metalness;
|
||
uniform float opacity;
|
||
#ifdef IOR
|
||
uniform float ior;
|
||
#endif
|
||
#ifdef USE_SPECULAR
|
||
uniform float specularIntensity;
|
||
uniform vec3 specularColor;
|
||
#ifdef USE_SPECULAR_COLORMAP
|
||
uniform sampler2D specularColorMap;
|
||
#endif
|
||
#ifdef USE_SPECULAR_INTENSITYMAP
|
||
uniform sampler2D specularIntensityMap;
|
||
#endif
|
||
#endif
|
||
#ifdef USE_CLEARCOAT
|
||
uniform float clearcoat;
|
||
uniform float clearcoatRoughness;
|
||
#endif
|
||
#ifdef USE_DISPERSION
|
||
uniform float dispersion;
|
||
#endif
|
||
#ifdef USE_IRIDESCENCE
|
||
uniform float iridescence;
|
||
uniform float iridescenceIOR;
|
||
uniform float iridescenceThicknessMinimum;
|
||
uniform float iridescenceThicknessMaximum;
|
||
#endif
|
||
#ifdef USE_SHEEN
|
||
uniform vec3 sheenColor;
|
||
uniform float sheenRoughness;
|
||
#ifdef USE_SHEEN_COLORMAP
|
||
uniform sampler2D sheenColorMap;
|
||
#endif
|
||
#ifdef USE_SHEEN_ROUGHNESSMAP
|
||
uniform sampler2D sheenRoughnessMap;
|
||
#endif
|
||
#endif
|
||
#ifdef USE_ANISOTROPY
|
||
uniform vec2 anisotropyVector;
|
||
#ifdef USE_ANISOTROPYMAP
|
||
uniform sampler2D anisotropyMap;
|
||
#endif
|
||
#endif
|
||
varying vec3 vViewPosition;
|
||
#include <common>
|
||
#include <packing>
|
||
#include <dithering_pars_fragment>
|
||
#include <color_pars_fragment>
|
||
#include <uv_pars_fragment>
|
||
#include <map_pars_fragment>
|
||
#include <alphamap_pars_fragment>
|
||
#include <alphatest_pars_fragment>
|
||
#include <alphahash_pars_fragment>
|
||
#include <aomap_pars_fragment>
|
||
#include <lightmap_pars_fragment>
|
||
#include <emissivemap_pars_fragment>
|
||
#include <iridescence_fragment>
|
||
#include <cube_uv_reflection_fragment>
|
||
#include <envmap_common_pars_fragment>
|
||
#include <envmap_physical_pars_fragment>
|
||
#include <fog_pars_fragment>
|
||
#include <lights_pars_begin>
|
||
#include <normal_pars_fragment>
|
||
#include <lights_physical_pars_fragment>
|
||
#include <transmission_pars_fragment>
|
||
#include <shadowmap_pars_fragment>
|
||
#include <bumpmap_pars_fragment>
|
||
#include <normalmap_pars_fragment>
|
||
#include <clearcoat_pars_fragment>
|
||
#include <iridescence_pars_fragment>
|
||
#include <roughnessmap_pars_fragment>
|
||
#include <metalnessmap_pars_fragment>
|
||
#include <logdepthbuf_pars_fragment>
|
||
#include <clipping_planes_pars_fragment>
|
||
void main() {
|
||
vec4 diffuseColor = vec4( diffuse, opacity );
|
||
#include <clipping_planes_fragment>
|
||
ReflectedLight reflectedLight = ReflectedLight( vec3( 0.0 ), vec3( 0.0 ), vec3( 0.0 ), vec3( 0.0 ) );
|
||
vec3 totalEmissiveRadiance = emissive;
|
||
#include <logdepthbuf_fragment>
|
||
#include <map_fragment>
|
||
#include <color_fragment>
|
||
#include <alphamap_fragment>
|
||
#include <alphatest_fragment>
|
||
#include <alphahash_fragment>
|
||
#include <roughnessmap_fragment>
|
||
#include <metalnessmap_fragment>
|
||
#include <normal_fragment_begin>
|
||
#include <normal_fragment_maps>
|
||
#include <clearcoat_normal_fragment_begin>
|
||
#include <clearcoat_normal_fragment_maps>
|
||
#include <emissivemap_fragment>
|
||
#include <lights_physical_fragment>
|
||
#include <lights_fragment_begin>
|
||
#include <lights_fragment_maps>
|
||
#include <lights_fragment_end>
|
||
#include <aomap_fragment>
|
||
vec3 totalDiffuse = reflectedLight.directDiffuse + reflectedLight.indirectDiffuse;
|
||
vec3 totalSpecular = reflectedLight.directSpecular + reflectedLight.indirectSpecular;
|
||
#include <transmission_fragment>
|
||
vec3 outgoingLight = totalDiffuse + totalSpecular + totalEmissiveRadiance;
|
||
#ifdef USE_SHEEN
|
||
float sheenEnergyComp = 1.0 - 0.157 * max3( material.sheenColor );
|
||
outgoingLight = outgoingLight * sheenEnergyComp + sheenSpecularDirect + sheenSpecularIndirect;
|
||
#endif
|
||
#ifdef USE_CLEARCOAT
|
||
float dotNVcc = saturate( dot( geometryClearcoatNormal, geometryViewDir ) );
|
||
vec3 Fcc = F_Schlick( material.clearcoatF0, material.clearcoatF90, dotNVcc );
|
||
outgoingLight = outgoingLight * ( 1.0 - material.clearcoat * Fcc ) + ( clearcoatSpecularDirect + clearcoatSpecularIndirect ) * material.clearcoat;
|
||
#endif
|
||
#include <opaque_fragment>
|
||
#include <tonemapping_fragment>
|
||
#include <colorspace_fragment>
|
||
#include <fog_fragment>
|
||
#include <premultiplied_alpha_fragment>
|
||
#include <dithering_fragment>
|
||
}`,Of=`#define TOON
|
||
varying vec3 vViewPosition;
|
||
#include <common>
|
||
#include <batching_pars_vertex>
|
||
#include <uv_pars_vertex>
|
||
#include <displacementmap_pars_vertex>
|
||
#include <color_pars_vertex>
|
||
#include <fog_pars_vertex>
|
||
#include <normal_pars_vertex>
|
||
#include <morphtarget_pars_vertex>
|
||
#include <skinning_pars_vertex>
|
||
#include <shadowmap_pars_vertex>
|
||
#include <logdepthbuf_pars_vertex>
|
||
#include <clipping_planes_pars_vertex>
|
||
void main() {
|
||
#include <uv_vertex>
|
||
#include <color_vertex>
|
||
#include <morphinstance_vertex>
|
||
#include <morphcolor_vertex>
|
||
#include <batching_vertex>
|
||
#include <beginnormal_vertex>
|
||
#include <morphnormal_vertex>
|
||
#include <skinbase_vertex>
|
||
#include <skinnormal_vertex>
|
||
#include <defaultnormal_vertex>
|
||
#include <normal_vertex>
|
||
#include <begin_vertex>
|
||
#include <morphtarget_vertex>
|
||
#include <skinning_vertex>
|
||
#include <displacementmap_vertex>
|
||
#include <project_vertex>
|
||
#include <logdepthbuf_vertex>
|
||
#include <clipping_planes_vertex>
|
||
vViewPosition = - mvPosition.xyz;
|
||
#include <worldpos_vertex>
|
||
#include <shadowmap_vertex>
|
||
#include <fog_vertex>
|
||
}`,Bf=`#define TOON
|
||
uniform vec3 diffuse;
|
||
uniform vec3 emissive;
|
||
uniform float opacity;
|
||
#include <common>
|
||
#include <packing>
|
||
#include <dithering_pars_fragment>
|
||
#include <color_pars_fragment>
|
||
#include <uv_pars_fragment>
|
||
#include <map_pars_fragment>
|
||
#include <alphamap_pars_fragment>
|
||
#include <alphatest_pars_fragment>
|
||
#include <alphahash_pars_fragment>
|
||
#include <aomap_pars_fragment>
|
||
#include <lightmap_pars_fragment>
|
||
#include <emissivemap_pars_fragment>
|
||
#include <gradientmap_pars_fragment>
|
||
#include <fog_pars_fragment>
|
||
#include <bsdfs>
|
||
#include <lights_pars_begin>
|
||
#include <normal_pars_fragment>
|
||
#include <lights_toon_pars_fragment>
|
||
#include <shadowmap_pars_fragment>
|
||
#include <bumpmap_pars_fragment>
|
||
#include <normalmap_pars_fragment>
|
||
#include <logdepthbuf_pars_fragment>
|
||
#include <clipping_planes_pars_fragment>
|
||
void main() {
|
||
vec4 diffuseColor = vec4( diffuse, opacity );
|
||
#include <clipping_planes_fragment>
|
||
ReflectedLight reflectedLight = ReflectedLight( vec3( 0.0 ), vec3( 0.0 ), vec3( 0.0 ), vec3( 0.0 ) );
|
||
vec3 totalEmissiveRadiance = emissive;
|
||
#include <logdepthbuf_fragment>
|
||
#include <map_fragment>
|
||
#include <color_fragment>
|
||
#include <alphamap_fragment>
|
||
#include <alphatest_fragment>
|
||
#include <alphahash_fragment>
|
||
#include <normal_fragment_begin>
|
||
#include <normal_fragment_maps>
|
||
#include <emissivemap_fragment>
|
||
#include <lights_toon_fragment>
|
||
#include <lights_fragment_begin>
|
||
#include <lights_fragment_maps>
|
||
#include <lights_fragment_end>
|
||
#include <aomap_fragment>
|
||
vec3 outgoingLight = reflectedLight.directDiffuse + reflectedLight.indirectDiffuse + totalEmissiveRadiance;
|
||
#include <opaque_fragment>
|
||
#include <tonemapping_fragment>
|
||
#include <colorspace_fragment>
|
||
#include <fog_fragment>
|
||
#include <premultiplied_alpha_fragment>
|
||
#include <dithering_fragment>
|
||
}`,zf=`uniform float size;
|
||
uniform float scale;
|
||
#include <common>
|
||
#include <color_pars_vertex>
|
||
#include <fog_pars_vertex>
|
||
#include <morphtarget_pars_vertex>
|
||
#include <logdepthbuf_pars_vertex>
|
||
#include <clipping_planes_pars_vertex>
|
||
#ifdef USE_POINTS_UV
|
||
varying vec2 vUv;
|
||
uniform mat3 uvTransform;
|
||
#endif
|
||
void main() {
|
||
#ifdef USE_POINTS_UV
|
||
vUv = ( uvTransform * vec3( uv, 1 ) ).xy;
|
||
#endif
|
||
#include <color_vertex>
|
||
#include <morphinstance_vertex>
|
||
#include <morphcolor_vertex>
|
||
#include <begin_vertex>
|
||
#include <morphtarget_vertex>
|
||
#include <project_vertex>
|
||
gl_PointSize = size;
|
||
#ifdef USE_SIZEATTENUATION
|
||
bool isPerspective = isPerspectiveMatrix( projectionMatrix );
|
||
if ( isPerspective ) gl_PointSize *= ( scale / - mvPosition.z );
|
||
#endif
|
||
#include <logdepthbuf_vertex>
|
||
#include <clipping_planes_vertex>
|
||
#include <worldpos_vertex>
|
||
#include <fog_vertex>
|
||
}`,Hf=`uniform vec3 diffuse;
|
||
uniform float opacity;
|
||
#include <common>
|
||
#include <color_pars_fragment>
|
||
#include <map_particle_pars_fragment>
|
||
#include <alphatest_pars_fragment>
|
||
#include <alphahash_pars_fragment>
|
||
#include <fog_pars_fragment>
|
||
#include <logdepthbuf_pars_fragment>
|
||
#include <clipping_planes_pars_fragment>
|
||
void main() {
|
||
vec4 diffuseColor = vec4( diffuse, opacity );
|
||
#include <clipping_planes_fragment>
|
||
vec3 outgoingLight = vec3( 0.0 );
|
||
#include <logdepthbuf_fragment>
|
||
#include <map_particle_fragment>
|
||
#include <color_fragment>
|
||
#include <alphatest_fragment>
|
||
#include <alphahash_fragment>
|
||
outgoingLight = diffuseColor.rgb;
|
||
#include <opaque_fragment>
|
||
#include <tonemapping_fragment>
|
||
#include <colorspace_fragment>
|
||
#include <fog_fragment>
|
||
#include <premultiplied_alpha_fragment>
|
||
}`,kf=`#include <common>
|
||
#include <batching_pars_vertex>
|
||
#include <fog_pars_vertex>
|
||
#include <morphtarget_pars_vertex>
|
||
#include <skinning_pars_vertex>
|
||
#include <logdepthbuf_pars_vertex>
|
||
#include <shadowmap_pars_vertex>
|
||
void main() {
|
||
#include <batching_vertex>
|
||
#include <beginnormal_vertex>
|
||
#include <morphinstance_vertex>
|
||
#include <morphnormal_vertex>
|
||
#include <skinbase_vertex>
|
||
#include <skinnormal_vertex>
|
||
#include <defaultnormal_vertex>
|
||
#include <begin_vertex>
|
||
#include <morphtarget_vertex>
|
||
#include <skinning_vertex>
|
||
#include <project_vertex>
|
||
#include <logdepthbuf_vertex>
|
||
#include <worldpos_vertex>
|
||
#include <shadowmap_vertex>
|
||
#include <fog_vertex>
|
||
}`,Vf=`uniform vec3 color;
|
||
uniform float opacity;
|
||
#include <common>
|
||
#include <packing>
|
||
#include <fog_pars_fragment>
|
||
#include <bsdfs>
|
||
#include <lights_pars_begin>
|
||
#include <logdepthbuf_pars_fragment>
|
||
#include <shadowmap_pars_fragment>
|
||
#include <shadowmask_pars_fragment>
|
||
void main() {
|
||
#include <logdepthbuf_fragment>
|
||
gl_FragColor = vec4( color, opacity * ( 1.0 - getShadowMask() ) );
|
||
#include <tonemapping_fragment>
|
||
#include <colorspace_fragment>
|
||
#include <fog_fragment>
|
||
}`,Gf=`uniform float rotation;
|
||
uniform vec2 center;
|
||
#include <common>
|
||
#include <uv_pars_vertex>
|
||
#include <fog_pars_vertex>
|
||
#include <logdepthbuf_pars_vertex>
|
||
#include <clipping_planes_pars_vertex>
|
||
void main() {
|
||
#include <uv_vertex>
|
||
vec4 mvPosition = modelViewMatrix[ 3 ];
|
||
vec2 scale = vec2( length( modelMatrix[ 0 ].xyz ), length( modelMatrix[ 1 ].xyz ) );
|
||
#ifndef USE_SIZEATTENUATION
|
||
bool isPerspective = isPerspectiveMatrix( projectionMatrix );
|
||
if ( isPerspective ) scale *= - mvPosition.z;
|
||
#endif
|
||
vec2 alignedPosition = ( position.xy - ( center - vec2( 0.5 ) ) ) * scale;
|
||
vec2 rotatedPosition;
|
||
rotatedPosition.x = cos( rotation ) * alignedPosition.x - sin( rotation ) * alignedPosition.y;
|
||
rotatedPosition.y = sin( rotation ) * alignedPosition.x + cos( rotation ) * alignedPosition.y;
|
||
mvPosition.xy += rotatedPosition;
|
||
gl_Position = projectionMatrix * mvPosition;
|
||
#include <logdepthbuf_vertex>
|
||
#include <clipping_planes_vertex>
|
||
#include <fog_vertex>
|
||
}`,Wf=`uniform vec3 diffuse;
|
||
uniform float opacity;
|
||
#include <common>
|
||
#include <uv_pars_fragment>
|
||
#include <map_pars_fragment>
|
||
#include <alphamap_pars_fragment>
|
||
#include <alphatest_pars_fragment>
|
||
#include <alphahash_pars_fragment>
|
||
#include <fog_pars_fragment>
|
||
#include <logdepthbuf_pars_fragment>
|
||
#include <clipping_planes_pars_fragment>
|
||
void main() {
|
||
vec4 diffuseColor = vec4( diffuse, opacity );
|
||
#include <clipping_planes_fragment>
|
||
vec3 outgoingLight = vec3( 0.0 );
|
||
#include <logdepthbuf_fragment>
|
||
#include <map_fragment>
|
||
#include <alphamap_fragment>
|
||
#include <alphatest_fragment>
|
||
#include <alphahash_fragment>
|
||
outgoingLight = diffuseColor.rgb;
|
||
#include <opaque_fragment>
|
||
#include <tonemapping_fragment>
|
||
#include <colorspace_fragment>
|
||
#include <fog_fragment>
|
||
}`,kt={alphahash_fragment:uu,alphahash_pars_fragment:du,alphamap_fragment:fu,alphamap_pars_fragment:pu,alphatest_fragment:mu,alphatest_pars_fragment:_u,aomap_fragment:gu,aomap_pars_fragment:vu,batching_pars_vertex:xu,batching_vertex:Mu,begin_vertex:Su,beginnormal_vertex:yu,bsdfs:Eu,iridescence_fragment:Tu,bumpmap_pars_fragment:bu,clipping_planes_fragment:Au,clipping_planes_pars_fragment:wu,clipping_planes_pars_vertex:Ru,clipping_planes_vertex:Cu,color_fragment:Pu,color_pars_fragment:Du,color_pars_vertex:Lu,color_vertex:Uu,common:Iu,cube_uv_reflection_fragment:Nu,defaultnormal_vertex:Fu,displacementmap_pars_vertex:Ou,displacementmap_vertex:Bu,emissivemap_fragment:zu,emissivemap_pars_fragment:Hu,colorspace_fragment:ku,colorspace_pars_fragment:Vu,envmap_fragment:Gu,envmap_common_pars_fragment:Wu,envmap_pars_fragment:Xu,envmap_pars_vertex:Yu,envmap_physical_pars_fragment:id,envmap_vertex:qu,fog_vertex:ju,fog_pars_vertex:Zu,fog_fragment:Ku,fog_pars_fragment:$u,gradientmap_pars_fragment:Ju,lightmap_pars_fragment:Qu,lights_lambert_fragment:td,lights_lambert_pars_fragment:ed,lights_pars_begin:nd,lights_toon_fragment:sd,lights_toon_pars_fragment:rd,lights_phong_fragment:ad,lights_phong_pars_fragment:od,lights_physical_fragment:ld,lights_physical_pars_fragment:cd,lights_fragment_begin:hd,lights_fragment_maps:ud,lights_fragment_end:dd,logdepthbuf_fragment:fd,logdepthbuf_pars_fragment:pd,logdepthbuf_pars_vertex:md,logdepthbuf_vertex:_d,map_fragment:gd,map_pars_fragment:vd,map_particle_fragment:xd,map_particle_pars_fragment:Md,metalnessmap_fragment:Sd,metalnessmap_pars_fragment:yd,morphinstance_vertex:Ed,morphcolor_vertex:Td,morphnormal_vertex:bd,morphtarget_pars_vertex:Ad,morphtarget_vertex:wd,normal_fragment_begin:Rd,normal_fragment_maps:Cd,normal_pars_fragment:Pd,normal_pars_vertex:Dd,normal_vertex:Ld,normalmap_pars_fragment:Ud,clearcoat_normal_fragment_begin:Id,clearcoat_normal_fragment_maps:Nd,clearcoat_pars_fragment:Fd,iridescence_pars_fragment:Od,opaque_fragment:Bd,packing:zd,premultiplied_alpha_fragment:Hd,project_vertex:kd,dithering_fragment:Vd,dithering_pars_fragment:Gd,roughnessmap_fragment:Wd,roughnessmap_pars_fragment:Xd,shadowmap_pars_fragment:Yd,shadowmap_pars_vertex:qd,shadowmap_vertex:jd,shadowmask_pars_fragment:Zd,skinbase_vertex:Kd,skinning_pars_vertex:$d,skinning_vertex:Jd,skinnormal_vertex:Qd,specularmap_fragment:tf,specularmap_pars_fragment:ef,tonemapping_fragment:nf,tonemapping_pars_fragment:sf,transmission_fragment:rf,transmission_pars_fragment:af,uv_pars_fragment:of,uv_pars_vertex:lf,uv_vertex:cf,worldpos_vertex:hf,background_vert:uf,background_frag:df,backgroundCube_vert:ff,backgroundCube_frag:pf,cube_vert:mf,cube_frag:_f,depth_vert:gf,depth_frag:vf,distanceRGBA_vert:xf,distanceRGBA_frag:Mf,equirect_vert:Sf,equirect_frag:yf,linedashed_vert:Ef,linedashed_frag:Tf,meshbasic_vert:bf,meshbasic_frag:Af,meshlambert_vert:wf,meshlambert_frag:Rf,meshmatcap_vert:Cf,meshmatcap_frag:Pf,meshnormal_vert:Df,meshnormal_frag:Lf,meshphong_vert:Uf,meshphong_frag:If,meshphysical_vert:Nf,meshphysical_frag:Ff,meshtoon_vert:Of,meshtoon_frag:Bf,points_vert:zf,points_frag:Hf,shadow_vert:kf,shadow_frag:Vf,sprite_vert:Gf,sprite_frag:Wf},rt={common:{diffuse:{value:new xt(16777215)},opacity:{value:1},map:{value:null},mapTransform:{value:new zt},alphaMap:{value:null},alphaMapTransform:{value:new zt},alphaTest:{value:0}},specularmap:{specularMap:{value:null},specularMapTransform:{value:new zt}},envmap:{envMap:{value:null},envMapRotation:{value:new zt},flipEnvMap:{value:-1},reflectivity:{value:1},ior:{value:1.5},refractionRatio:{value:.98}},aomap:{aoMap:{value:null},aoMapIntensity:{value:1},aoMapTransform:{value:new zt}},lightmap:{lightMap:{value:null},lightMapIntensity:{value:1},lightMapTransform:{value:new zt}},bumpmap:{bumpMap:{value:null},bumpMapTransform:{value:new zt},bumpScale:{value:1}},normalmap:{normalMap:{value:null},normalMapTransform:{value:new zt},normalScale:{value:new gt(1,1)}},displacementmap:{displacementMap:{value:null},displacementMapTransform:{value:new zt},displacementScale:{value:1},displacementBias:{value:0}},emissivemap:{emissiveMap:{value:null},emissiveMapTransform:{value:new zt}},metalnessmap:{metalnessMap:{value:null},metalnessMapTransform:{value:new zt}},roughnessmap:{roughnessMap:{value:null},roughnessMapTransform:{value:new zt}},gradientmap:{gradientMap:{value:null}},fog:{fogDensity:{value:25e-5},fogNear:{value:1},fogFar:{value:2e3},fogColor:{value:new xt(16777215)}},lights:{ambientLightColor:{value:[]},lightProbe:{value:[]},directionalLights:{value:[],properties:{direction:{},color:{}}},directionalLightShadows:{value:[],properties:{shadowIntensity:1,shadowBias:{},shadowNormalBias:{},shadowRadius:{},shadowMapSize:{}}},directionalShadowMap:{value:[]},directionalShadowMatrix:{value:[]},spotLights:{value:[],properties:{color:{},position:{},direction:{},distance:{},coneCos:{},penumbraCos:{},decay:{}}},spotLightShadows:{value:[],properties:{shadowIntensity:1,shadowBias:{},shadowNormalBias:{},shadowRadius:{},shadowMapSize:{}}},spotLightMap:{value:[]},spotShadowMap:{value:[]},spotLightMatrix:{value:[]},pointLights:{value:[],properties:{color:{},position:{},decay:{},distance:{}}},pointLightShadows:{value:[],properties:{shadowIntensity:1,shadowBias:{},shadowNormalBias:{},shadowRadius:{},shadowMapSize:{},shadowCameraNear:{},shadowCameraFar:{}}},pointShadowMap:{value:[]},pointShadowMatrix:{value:[]},hemisphereLights:{value:[],properties:{direction:{},skyColor:{},groundColor:{}}},rectAreaLights:{value:[],properties:{color:{},position:{},width:{},height:{}}},ltc_1:{value:null},ltc_2:{value:null}},points:{diffuse:{value:new xt(16777215)},opacity:{value:1},size:{value:1},scale:{value:1},map:{value:null},alphaMap:{value:null},alphaMapTransform:{value:new zt},alphaTest:{value:0},uvTransform:{value:new zt}},sprite:{diffuse:{value:new xt(16777215)},opacity:{value:1},center:{value:new gt(.5,.5)},rotation:{value:0},map:{value:null},mapTransform:{value:new zt},alphaMap:{value:null},alphaMapTransform:{value:new zt},alphaTest:{value:0}}},ln={basic:{uniforms:Ue([rt.common,rt.specularmap,rt.envmap,rt.aomap,rt.lightmap,rt.fog]),vertexShader:kt.meshbasic_vert,fragmentShader:kt.meshbasic_frag},lambert:{uniforms:Ue([rt.common,rt.specularmap,rt.envmap,rt.aomap,rt.lightmap,rt.emissivemap,rt.bumpmap,rt.normalmap,rt.displacementmap,rt.fog,rt.lights,{emissive:{value:new xt(0)}}]),vertexShader:kt.meshlambert_vert,fragmentShader:kt.meshlambert_frag},phong:{uniforms:Ue([rt.common,rt.specularmap,rt.envmap,rt.aomap,rt.lightmap,rt.emissivemap,rt.bumpmap,rt.normalmap,rt.displacementmap,rt.fog,rt.lights,{emissive:{value:new xt(0)},specular:{value:new xt(1118481)},shininess:{value:30}}]),vertexShader:kt.meshphong_vert,fragmentShader:kt.meshphong_frag},standard:{uniforms:Ue([rt.common,rt.envmap,rt.aomap,rt.lightmap,rt.emissivemap,rt.bumpmap,rt.normalmap,rt.displacementmap,rt.roughnessmap,rt.metalnessmap,rt.fog,rt.lights,{emissive:{value:new xt(0)},roughness:{value:1},metalness:{value:0},envMapIntensity:{value:1}}]),vertexShader:kt.meshphysical_vert,fragmentShader:kt.meshphysical_frag},toon:{uniforms:Ue([rt.common,rt.aomap,rt.lightmap,rt.emissivemap,rt.bumpmap,rt.normalmap,rt.displacementmap,rt.gradientmap,rt.fog,rt.lights,{emissive:{value:new xt(0)}}]),vertexShader:kt.meshtoon_vert,fragmentShader:kt.meshtoon_frag},matcap:{uniforms:Ue([rt.common,rt.bumpmap,rt.normalmap,rt.displacementmap,rt.fog,{matcap:{value:null}}]),vertexShader:kt.meshmatcap_vert,fragmentShader:kt.meshmatcap_frag},points:{uniforms:Ue([rt.points,rt.fog]),vertexShader:kt.points_vert,fragmentShader:kt.points_frag},dashed:{uniforms:Ue([rt.common,rt.fog,{scale:{value:1},dashSize:{value:1},totalSize:{value:2}}]),vertexShader:kt.linedashed_vert,fragmentShader:kt.linedashed_frag},depth:{uniforms:Ue([rt.common,rt.displacementmap]),vertexShader:kt.depth_vert,fragmentShader:kt.depth_frag},normal:{uniforms:Ue([rt.common,rt.bumpmap,rt.normalmap,rt.displacementmap,{opacity:{value:1}}]),vertexShader:kt.meshnormal_vert,fragmentShader:kt.meshnormal_frag},sprite:{uniforms:Ue([rt.sprite,rt.fog]),vertexShader:kt.sprite_vert,fragmentShader:kt.sprite_frag},background:{uniforms:{uvTransform:{value:new zt},t2D:{value:null},backgroundIntensity:{value:1}},vertexShader:kt.background_vert,fragmentShader:kt.background_frag},backgroundCube:{uniforms:{envMap:{value:null},flipEnvMap:{value:-1},backgroundBlurriness:{value:0},backgroundIntensity:{value:1},backgroundRotation:{value:new zt}},vertexShader:kt.backgroundCube_vert,fragmentShader:kt.backgroundCube_frag},cube:{uniforms:{tCube:{value:null},tFlip:{value:-1},opacity:{value:1}},vertexShader:kt.cube_vert,fragmentShader:kt.cube_frag},equirect:{uniforms:{tEquirect:{value:null}},vertexShader:kt.equirect_vert,fragmentShader:kt.equirect_frag},distanceRGBA:{uniforms:Ue([rt.common,rt.displacementmap,{referencePosition:{value:new P},nearDistance:{value:1},farDistance:{value:1e3}}]),vertexShader:kt.distanceRGBA_vert,fragmentShader:kt.distanceRGBA_frag},shadow:{uniforms:Ue([rt.lights,rt.fog,{color:{value:new xt(0)},opacity:{value:1}}]),vertexShader:kt.shadow_vert,fragmentShader:kt.shadow_frag}};ln.physical={uniforms:Ue([ln.standard.uniforms,{clearcoat:{value:0},clearcoatMap:{value:null},clearcoatMapTransform:{value:new zt},clearcoatNormalMap:{value:null},clearcoatNormalMapTransform:{value:new zt},clearcoatNormalScale:{value:new gt(1,1)},clearcoatRoughness:{value:0},clearcoatRoughnessMap:{value:null},clearcoatRoughnessMapTransform:{value:new zt},dispersion:{value:0},iridescence:{value:0},iridescenceMap:{value:null},iridescenceMapTransform:{value:new zt},iridescenceIOR:{value:1.3},iridescenceThicknessMinimum:{value:100},iridescenceThicknessMaximum:{value:400},iridescenceThicknessMap:{value:null},iridescenceThicknessMapTransform:{value:new zt},sheen:{value:0},sheenColor:{value:new xt(0)},sheenColorMap:{value:null},sheenColorMapTransform:{value:new zt},sheenRoughness:{value:1},sheenRoughnessMap:{value:null},sheenRoughnessMapTransform:{value:new zt},transmission:{value:0},transmissionMap:{value:null},transmissionMapTransform:{value:new zt},transmissionSamplerSize:{value:new gt},transmissionSamplerMap:{value:null},thickness:{value:0},thicknessMap:{value:null},thicknessMapTransform:{value:new zt},attenuationDistance:{value:0},attenuationColor:{value:new xt(0)},specularColor:{value:new xt(1,1,1)},specularColorMap:{value:null},specularColorMapTransform:{value:new zt},specularIntensity:{value:1},specularIntensityMap:{value:null},specularIntensityMapTransform:{value:new zt},anisotropyVector:{value:new gt},anisotropyMap:{value:null},anisotropyMapTransform:{value:new zt}}]),vertexShader:kt.meshphysical_vert,fragmentShader:kt.meshphysical_frag};const Os={r:0,b:0,g:0},qn=new pn,Xf=new ee;function Yf(i,t,e,n,s,r,a){const o=new xt(0);let l=r===!0?0:1,c,h,d=null,f=0,m=null;function g(E){let S=E.isScene===!0?E.background:null;return S&&S.isTexture&&(S=(E.backgroundBlurriness>0?e:t).get(S)),S}function x(E){let S=!1;const D=g(E);D===null?u(o,l):D&&D.isColor&&(u(D,1),S=!0);const A=i.xr.getEnvironmentBlendMode();A==="additive"?n.buffers.color.setClear(0,0,0,1,a):A==="alpha-blend"&&n.buffers.color.setClear(0,0,0,0,a),(i.autoClear||S)&&(n.buffers.depth.setTest(!0),n.buffers.depth.setMask(!0),n.buffers.color.setMask(!0),i.clear(i.autoClearColor,i.autoClearDepth,i.autoClearStencil))}function p(E,S){const D=g(S);D&&(D.isCubeTexture||D.mapping===ar)?(h===void 0&&(h=new ye(new as(1,1,1),new Ie({name:"BackgroundCubeMaterial",uniforms:ki(ln.backgroundCube.uniforms),vertexShader:ln.backgroundCube.vertexShader,fragmentShader:ln.backgroundCube.fragmentShader,side:Be,depthTest:!1,depthWrite:!1,fog:!1})),h.geometry.deleteAttribute("normal"),h.geometry.deleteAttribute("uv"),h.onBeforeRender=function(A,w,N){this.matrixWorld.copyPosition(N.matrixWorld)},Object.defineProperty(h.material,"envMap",{get:function(){return this.uniforms.envMap.value}}),s.update(h)),qn.copy(S.backgroundRotation),qn.x*=-1,qn.y*=-1,qn.z*=-1,D.isCubeTexture&&D.isRenderTargetTexture===!1&&(qn.y*=-1,qn.z*=-1),h.material.uniforms.envMap.value=D,h.material.uniforms.flipEnvMap.value=D.isCubeTexture&&D.isRenderTargetTexture===!1?-1:1,h.material.uniforms.backgroundBlurriness.value=S.backgroundBlurriness,h.material.uniforms.backgroundIntensity.value=S.backgroundIntensity,h.material.uniforms.backgroundRotation.value.setFromMatrix4(Xf.makeRotationFromEuler(qn)),h.material.toneMapped=$t.getTransfer(D.colorSpace)!==se,(d!==D||f!==D.version||m!==i.toneMapping)&&(h.material.needsUpdate=!0,d=D,f=D.version,m=i.toneMapping),h.layers.enableAll(),E.unshift(h,h.geometry,h.material,0,0,null)):D&&D.isTexture&&(c===void 0&&(c=new ye(new os(2,2),new 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d=e.logarithmicDepthBuffer===!0,f=e.reverseDepthBuffer===!0&&t.has("EXT_clip_control"),m=i.getParameter(i.MAX_TEXTURE_IMAGE_UNITS),g=i.getParameter(i.MAX_VERTEX_TEXTURE_IMAGE_UNITS),x=i.getParameter(i.MAX_TEXTURE_SIZE),p=i.getParameter(i.MAX_CUBE_MAP_TEXTURE_SIZE),u=i.getParameter(i.MAX_VERTEX_ATTRIBS),b=i.getParameter(i.MAX_VERTEX_UNIFORM_VECTORS),E=i.getParameter(i.MAX_VARYING_VECTORS),S=i.getParameter(i.MAX_FRAGMENT_UNIFORM_VECTORS),D=g>0,A=i.getParameter(i.MAX_SAMPLES);return{isWebGL2:!0,getMaxAnisotropy:r,getMaxPrecision:l,textureFormatReadable:a,textureTypeReadable:o,precision:c,logarithmicDepthBuffer:d,reverseDepthBuffer:f,maxTextures:m,maxVertexTextures:g,maxTextureSize:x,maxCubemapSize:p,maxAttributes:u,maxVertexUniforms:b,maxVaryings:E,maxFragmentUniforms:S,vertexTextures:D,maxSamples:A}}function Kf(i){const t=this;let e=null,n=0,s=!1,r=!1;const a=new Nn,o=new zt,l={value:null,needsUpdate:!1};this.uniform=l,this.numPlanes=0,this.numIntersection=0,this.init=function(d,f){const 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$f(i){let t=new WeakMap;function e(a,o){return o===sa?a.mapping=Fi:o===ra&&(a.mapping=Oi),a}function n(a){if(a&&a.isTexture){const o=a.mapping;if(o===sa||o===ra)if(t.has(a)){const l=t.get(a).texture;return e(l,a.mapping)}else{const l=a.image;if(l&&l.height>0){const c=new Wh(l.height);return c.fromEquirectangularTexture(i,a),t.set(a,c),a.addEventListener("dispose",s),e(c.texture,a.mapping)}else return null}}return a}function s(a){const o=a.target;o.removeEventListener("dispose",s);const l=t.get(o);l!==void 0&&(t.delete(o),l.dispose())}function r(){t=new WeakMap}return{get:n,dispose:r}}const Pi=4,Ko=[.125,.215,.35,.446,.526,.582],$n=20,zr=new oc,$o=new xt;let Hr=null,kr=0,Vr=0,Gr=!1;const Zn=(1+Math.sqrt(5))/2,bi=1/Zn,Jo=[new P(-Zn,bi,0),new P(Zn,bi,0),new P(-bi,0,Zn),new P(bi,0,Zn),new P(0,Zn,-bi),new P(0,Zn,bi),new P(-1,1,-1),new P(1,1,-1),new P(-1,1,1),new P(1,1,1)];class Qo{constructor(t){this._renderer=t,this._pingPongRenderTarget=null,this._lodMax=0,this._cubeSize=0,this._lodPlanes=[],this._sizeLods=[],this._sigmas=[],this._blurMaterial=null,this._cubemapMaterial=null,this._equirectMaterial=null,this._compileMaterial(this._blurMaterial)}fromScene(t,e=0,n=.1,s=100){Hr=this._renderer.getRenderTarget(),kr=this._renderer.getActiveCubeFace(),Vr=this._renderer.getActiveMipmapLevel(),Gr=this._renderer.xr.enabled,this._renderer.xr.enabled=!1,this._setSize(256);const r=this._allocateTargets();return r.depthBuffer=!0,this._sceneToCubeUV(t,n,s,r),e>0&&this._blur(r,0,0,e),this._applyPMREM(r),this._cleanup(r),r}fromEquirectangular(t,e=null){return this._fromTexture(t,e)}fromCubemap(t,e=null){return this._fromTexture(t,e)}compileCubemapShader(){this._cubemapMaterial===null&&(this._cubemapMaterial=nl(),this._compileMaterial(this._cubemapMaterial))}compileEquirectangularShader(){this._equirectMaterial===null&&(this._equirectMaterial=el(),this._compileMaterial(this._equirectMaterial))}dispose(){this._dispose(),this._cubemapMaterial!==null&&this._cubemapMaterial.dispose(),this._equirectMaterial!==null&&this._equirectMaterial.dispose()}_setSize(t){this._lodMax=Math.floor(Math.log2(t)),this._cubeSize=Math.pow(2,this._lodMax)}_dispose(){this._blurMaterial!==null&&this._blurMaterial.dispose(),this._pingPongRenderTarget!==null&&this._pingPongRenderTarget.dispose();for(let t=0;t<this._lodPlanes.length;t++)this._lodPlanes[t].dispose()}_cleanup(t){this._renderer.setRenderTarget(Hr,kr,Vr),this._renderer.xr.enabled=Gr,t.scissorTest=!1,Bs(t,0,0,t.width,t.height)}_fromTexture(t,e){t.mapping===Fi||t.mapping===Oi?this._setSize(t.image.length===0?16:t.image[0].width||t.image[0].image.width):this._setSize(t.image.width/4),Hr=this._renderer.getRenderTarget(),kr=this._renderer.getActiveCubeFace(),Vr=this._renderer.getActiveMipmapLevel(),Gr=this._renderer.xr.enabled,this._renderer.xr.enabled=!1;const n=e||this._allocateTargets();return this._textureToCubeUV(t,n),this._applyPMREM(n),this._cleanup(n),n}_allocateTargets(){const t=3*Math.max(this._cubeSize,112),e=4*this._cubeSize,n={magFilter:un,minFilter:un,generateMipmaps:!1,type:bn,format:rn,colorSpace:Hi,depthBuffer:!1},s=tl(t,e,n);if(this._pingPongRenderTarget===null||this._pingPongRenderTarget.width!==t||this._pingPongRenderTarget.height!==e){this._pingPongRenderTarget!==null&&this._dispose(),this._pingPongRenderTarget=tl(t,e,n);const{_lodMax:r}=this;({sizeLods:this._sizeLods,lodPlanes:this._lodPlanes,sigmas:this._sigmas}=Jf(r)),this._blurMaterial=Qf(r,t,e)}return s}_compileMaterial(t){const e=new ye(this._lodPlanes[0],t);this._renderer.compile(e,zr)}_sceneToCubeUV(t,e,n,s){const o=new We(90,1,e,n),l=[1,-1,1,1,1,1],c=[1,1,1,-1,-1,-1],h=this._renderer,d=h.autoClear,f=h.toneMapping;h.getClearColor($o),h.toneMapping=On,h.autoClear=!1;const m=new or({name:"PMREM.Background",side:Be,depthWrite:!1,depthTest:!1}),g=new ye(new as,m);let x=!1;const p=t.background;p?p.isColor&&(m.color.copy(p),t.background=null,x=!0):(m.color.copy($o),x=!0);for(let u=0;u<6;u++){const b=u%3;b===0?(o.up.set(0,l[u],0),o.lookAt(c[u],0,0)):b===1?(o.up.set(0,0,l[u]),o.lookAt(0,c[u],0)):(o.up.set(0,l[u],0),o.lookAt(0,0,c[u]));const E=this._cubeSize;Bs(s,b*E,u>2?E:0,E,E),h.setRenderTarget(s),x&&h.render(g,o),h.render(t,o)}g.geometry.dispose(),g.material.dispose(),h.toneMapping=f,h.autoClear=d,t.background=p}_textureToCubeUV(t,e){const n=this._renderer,s=t.mapping===Fi||t.mapping===Oi;s?(this._cubemapMaterial===null&&(this._cubemapMaterial=nl()),this._cubemapMaterial.uniforms.flipEnvMap.value=t.isRenderTargetTexture===!1?-1:1):this._equirectMaterial===null&&(this._equirectMaterial=el());const r=s?this._cubemapMaterial:this._equirectMaterial,a=new ye(this._lodPlanes[0],r),o=r.uniforms;o.envMap.value=t;const l=this._cubeSize;Bs(e,0,0,3*l,2*l),n.setRenderTarget(e),n.render(a,zr)}_applyPMREM(t){const e=this._renderer,n=e.autoClear;e.autoClear=!1;const s=this._lodPlanes.length;for(let r=1;r<s;r++){const a=Math.sqrt(this._sigmas[r]*this._sigmas[r]-this._sigmas[r-1]*this._sigmas[r-1]),o=Jo[(s-r-1)%Jo.length];this._blur(t,r-1,r,a,o)}e.autoClear=n}_blur(t,e,n,s,r){const a=this._pingPongRenderTarget;this._halfBlur(t,a,e,n,s,"latitudinal",r),this._halfBlur(a,t,n,n,s,"longitudinal",r)}_halfBlur(t,e,n,s,r,a,o){const l=this._renderer,c=this._blurMaterial;a!=="latitudinal"&&a!=="longitudinal"&&console.error("blur direction must be either latitudinal or longitudinal!");const h=3,d=new ye(this._lodPlanes[s],c),f=c.uniforms,m=this._sizeLods[n]-1,g=isFinite(r)?Math.PI/(2*m):2*Math.PI/(2*$n-1),x=r/g,p=isFinite(r)?1+Math.floor(h*x):$n;p>$n&&console.warn(`sigmaRadians, ${r}, is too large and will clip, as it requested ${p} samples when the maximum is set to ${$n}`);const u=[];let b=0;for(let w=0;w<$n;++w){const N=w/x,y=Math.exp(-N*N/2);u.push(y),w===0?b+=y:w<p&&(b+=2*y)}for(let w=0;w<u.length;w++)u[w]=u[w]/b;f.envMap.value=t.texture,f.samples.value=p,f.weights.value=u,f.latitudinal.value=a==="latitudinal",o&&(f.poleAxis.value=o);const{_lodMax:E}=this;f.dTheta.value=g,f.mipInt.value=E-n;const S=this._sizeLods[s],D=3*S*(s>E-Pi?s-E+Pi:0),A=4*(this._cubeSize-S);Bs(e,D,A,3*S,2*S),l.setRenderTarget(e),l.render(d,zr)}}function Jf(i){const t=[],e=[],n=[];let s=i;const r=i-Pi+1+Ko.length;for(let a=0;a<r;a++){const o=Math.pow(2,s);e.push(o);let l=1/o;a>i-Pi?l=Ko[a-i+Pi-1]:a===0&&(l=0),n.push(l);const c=1/(o-2),h=-c,d=1+c,f=[h,h,d,h,d,d,h,h,d,d,h,d],m=6,g=6,x=3,p=2,u=1,b=new Float32Array(x*g*m),E=new Float32Array(p*g*m),S=new Float32Array(u*g*m);for(let A=0;A<m;A++){const w=A%3*2/3-1,N=A>2?0:-1,y=[w,N,0,w+2/3,N,0,w+2/3,N+1,0,w,N,0,w+2/3,N+1,0,w,N+1,0];b.set(y,x*g*A),E.set(f,p*g*A);const M=[A,A,A,A,A,A];S.set(M,u*g*A)}const D=new Ee;D.setAttribute("position",new Se(b,x)),D.setAttribute("uv",new Se(E,p)),D.setAttribute("faceIndex",new Se(S,u)),t.push(D),s>Pi&&s--}return{lodPlanes:t,sizeLods:e,sigmas:n}}function tl(i,t,e){const n=new an(i,t,e);return n.texture.mapping=ar,n.texture.name="PMREM.cubeUv",n.scissorTest=!0,n}function Bs(i,t,e,n,s){i.viewport.set(t,e,n,s),i.scissor.set(t,e,n,s)}function Qf(i,t,e){const n=new Float32Array($n),s=new P(0,1,0);return new Ie({name:"SphericalGaussianBlur",defines:{n:$n,CUBEUV_TEXEL_WIDTH:1/t,CUBEUV_TEXEL_HEIGHT:1/e,CUBEUV_MAX_MIP:`${i}.0`},uniforms:{envMap:{value:null},samples:{value:1},weights:{value:n},latitudinal:{value:!1},dTheta:{value:0},mipInt:{value:0},poleAxis:{value:s}},vertexShader:to(),fragmentShader:`
|
||
|
||
precision mediump float;
|
||
precision mediump int;
|
||
|
||
varying vec3 vOutputDirection;
|
||
|
||
uniform sampler2D envMap;
|
||
uniform int samples;
|
||
uniform float weights[ n ];
|
||
uniform bool latitudinal;
|
||
uniform float dTheta;
|
||
uniform float mipInt;
|
||
uniform vec3 poleAxis;
|
||
|
||
#define ENVMAP_TYPE_CUBE_UV
|
||
#include <cube_uv_reflection_fragment>
|
||
|
||
vec3 getSample( float theta, vec3 axis ) {
|
||
|
||
float cosTheta = cos( theta );
|
||
// Rodrigues' axis-angle rotation
|
||
vec3 sampleDirection = vOutputDirection * cosTheta
|
||
+ cross( axis, vOutputDirection ) * sin( theta )
|
||
+ axis * dot( axis, vOutputDirection ) * ( 1.0 - cosTheta );
|
||
|
||
return bilinearCubeUV( envMap, sampleDirection, mipInt );
|
||
|
||
}
|
||
|
||
void main() {
|
||
|
||
vec3 axis = latitudinal ? poleAxis : cross( poleAxis, vOutputDirection );
|
||
|
||
if ( all( equal( axis, vec3( 0.0 ) ) ) ) {
|
||
|
||
axis = vec3( vOutputDirection.z, 0.0, - vOutputDirection.x );
|
||
|
||
}
|
||
|
||
axis = normalize( axis );
|
||
|
||
gl_FragColor = vec4( 0.0, 0.0, 0.0, 1.0 );
|
||
gl_FragColor.rgb += weights[ 0 ] * getSample( 0.0, axis );
|
||
|
||
for ( int i = 1; i < n; i++ ) {
|
||
|
||
if ( i >= samples ) {
|
||
|
||
break;
|
||
|
||
}
|
||
|
||
float theta = dTheta * float( i );
|
||
gl_FragColor.rgb += weights[ i ] * getSample( -1.0 * theta, axis );
|
||
gl_FragColor.rgb += weights[ i ] * getSample( theta, axis );
|
||
|
||
}
|
||
|
||
}
|
||
`,blending:Tn,depthTest:!1,depthWrite:!1})}function el(){return new Ie({name:"EquirectangularToCubeUV",uniforms:{envMap:{value:null}},vertexShader:to(),fragmentShader:`
|
||
|
||
precision mediump float;
|
||
precision mediump int;
|
||
|
||
varying vec3 vOutputDirection;
|
||
|
||
uniform sampler2D envMap;
|
||
|
||
#include <common>
|
||
|
||
void main() {
|
||
|
||
vec3 outputDirection = normalize( vOutputDirection );
|
||
vec2 uv = equirectUv( outputDirection );
|
||
|
||
gl_FragColor = vec4( texture2D ( envMap, uv ).rgb, 1.0 );
|
||
|
||
}
|
||
`,blending:Tn,depthTest:!1,depthWrite:!1})}function nl(){return new Ie({name:"CubemapToCubeUV",uniforms:{envMap:{value:null},flipEnvMap:{value:-1}},vertexShader:to(),fragmentShader:`
|
||
|
||
precision mediump float;
|
||
precision mediump int;
|
||
|
||
uniform float flipEnvMap;
|
||
|
||
varying vec3 vOutputDirection;
|
||
|
||
uniform samplerCube envMap;
|
||
|
||
void main() {
|
||
|
||
gl_FragColor = textureCube( envMap, vec3( flipEnvMap * vOutputDirection.x, vOutputDirection.yz ) );
|
||
|
||
}
|
||
`,blending:Tn,depthTest:!1,depthWrite:!1})}function to(){return`
|
||
|
||
precision mediump float;
|
||
precision mediump int;
|
||
|
||
attribute float faceIndex;
|
||
|
||
varying vec3 vOutputDirection;
|
||
|
||
// RH coordinate system; PMREM face-indexing convention
|
||
vec3 getDirection( vec2 uv, float face ) {
|
||
|
||
uv = 2.0 * uv - 1.0;
|
||
|
||
vec3 direction = vec3( uv, 1.0 );
|
||
|
||
if ( face == 0.0 ) {
|
||
|
||
direction = direction.zyx; // ( 1, v, u ) pos x
|
||
|
||
} else if ( face == 1.0 ) {
|
||
|
||
direction = direction.xzy;
|
||
direction.xz *= -1.0; // ( -u, 1, -v ) pos y
|
||
|
||
} else if ( face == 2.0 ) {
|
||
|
||
direction.x *= -1.0; // ( -u, v, 1 ) pos z
|
||
|
||
} else if ( face == 3.0 ) {
|
||
|
||
direction = direction.zyx;
|
||
direction.xz *= -1.0; // ( -1, v, -u ) neg x
|
||
|
||
} else if ( face == 4.0 ) {
|
||
|
||
direction = direction.xzy;
|
||
direction.xy *= -1.0; // ( -u, -1, v ) neg y
|
||
|
||
} else if ( face == 5.0 ) {
|
||
|
||
direction.z *= -1.0; // ( u, v, -1 ) neg z
|
||
|
||
}
|
||
|
||
return direction;
|
||
|
||
}
|
||
|
||
void main() {
|
||
|
||
vOutputDirection = getDirection( uv, faceIndex );
|
||
gl_Position = vec4( position, 1.0 );
|
||
|
||
}
|
||
`}function tp(i){let t=new WeakMap,e=null;function n(o){if(o&&o.isTexture){const l=o.mapping,c=l===sa||l===ra,h=l===Fi||l===Oi;if(c||h){let d=t.get(o);const f=d!==void 0?d.texture.pmremVersion:0;if(o.isRenderTargetTexture&&o.pmremVersion!==f)return e===null&&(e=new Qo(i)),d=c?e.fromEquirectangular(o,d):e.fromCubemap(o,d),d.texture.pmremVersion=o.pmremVersion,t.set(o,d),d.texture;if(d!==void 0)return d.texture;{const m=o.image;return c&&m&&m.height>0||h&&m&&s(m)?(e===null&&(e=new Qo(i)),d=c?e.fromEquirectangular(o):e.fromCubemap(o),d.texture.pmremVersion=o.pmremVersion,t.set(o,d),o.addEventListener("dispose",r),d.texture):null}}}return o}function s(o){let l=0;const c=6;for(let h=0;h<c;h++)o[h]!==void 0&&l++;return l===c}function r(o){const l=o.target;l.removeEventListener("dispose",r);const c=t.get(l);c!==void 0&&(t.delete(l),c.dispose())}function a(){t=new WeakMap,e!==null&&(e.dispose(),e=null)}return{get:n,dispose:a}}function ep(i){const t={};function e(n){if(t[n]!==void 0)return t[n];let s;switch(n){case"WEBGL_depth_texture":s=i.getExtension("WEBGL_depth_texture")||i.getExtension("MOZ_WEBGL_depth_texture")||i.getExtension("WEBKIT_WEBGL_depth_texture");break;case"EXT_texture_filter_anisotropic":s=i.getExtension("EXT_texture_filter_anisotropic")||i.getExtension("MOZ_EXT_texture_filter_anisotropic")||i.getExtension("WEBKIT_EXT_texture_filter_anisotropic");break;case"WEBGL_compressed_texture_s3tc":s=i.getExtension("WEBGL_compressed_texture_s3tc")||i.getExtension("MOZ_WEBGL_compressed_texture_s3tc")||i.getExtension("WEBKIT_WEBGL_compressed_texture_s3tc");break;case"WEBGL_compressed_texture_pvrtc":s=i.getExtension("WEBGL_compressed_texture_pvrtc")||i.getExtension("WEBKIT_WEBGL_compressed_texture_pvrtc");break;default:s=i.getExtension(n)}return t[n]=s,s}return{has:function(n){return e(n)!==null},init:function(){e("EXT_color_buffer_float"),e("WEBGL_clip_cull_distance"),e("OES_texture_float_linear"),e("EXT_color_buffer_half_float"),e("WEBGL_multisampled_render_to_texture"),e("WEBGL_render_shared_exponent")},get:function(n){const s=e(n);return s===null&&wi("THREE.WebGLRenderer: "+n+" extension not supported."),s}}}function np(i,t,e,n){const s={},r=new WeakMap;function a(d){const f=d.target;f.index!==null&&t.remove(f.index);for(const g in f.attributes)t.remove(f.attributes[g]);f.removeEventListener("dispose",a),delete s[f.id];const m=r.get(f);m&&(t.remove(m),r.delete(f)),n.releaseStatesOfGeometry(f),f.isInstancedBufferGeometry===!0&&delete f._maxInstanceCount,e.memory.geometries--}function o(d,f){return s[f.id]===!0||(f.addEventListener("dispose",a),s[f.id]=!0,e.memory.geometries++),f}function l(d){const f=d.attributes;for(const m in f)t.update(f[m],i.ARRAY_BUFFER)}function c(d){const f=[],m=d.index,g=d.attributes.position;let x=0;if(m!==null){const b=m.array;x=m.version;for(let E=0,S=b.length;E<S;E+=3){const D=b[E+0],A=b[E+1],w=b[E+2];f.push(D,A,A,w,w,D)}}else if(g!==void 0){const b=g.array;x=g.version;for(let E=0,S=b.length/3-1;E<S;E+=3){const D=E+0,A=E+1,w=E+2;f.push(D,A,A,w,w,D)}}else return;const p=new(jl(f)?Ql:Jl)(f,1);p.version=x;const u=r.get(d);u&&t.remove(u),r.set(d,p)}function h(d){const f=r.get(d);if(f){const m=d.index;m!==null&&f.version<m.version&&c(d)}else c(d);return r.get(d)}return{get:o,update:l,getWireframeAttribute:h}}function ip(i,t,e){let n;function s(f){n=f}let r,a;function o(f){r=f.type,a=f.bytesPerElement}function l(f,m){i.drawElements(n,m,r,f*a),e.update(m,n,1)}function c(f,m,g){g!==0&&(i.drawElementsInstanced(n,m,r,f*a,g),e.update(m,n,g))}function h(f,m,g){if(g===0)return;t.get("WEBGL_multi_draw").multiDrawElementsWEBGL(n,m,0,r,f,0,g);let p=0;for(let u=0;u<g;u++)p+=m[u];e.update(p,n,1)}function d(f,m,g,x){if(g===0)return;const p=t.get("WEBGL_multi_draw");if(p===null)for(let u=0;u<f.length;u++)c(f[u]/a,m[u],x[u]);else{p.multiDrawElementsInstancedWEBGL(n,m,0,r,f,0,x,0,g);let u=0;for(let b=0;b<g;b++)u+=m[b]*x[b];e.update(u,n,1)}}this.setMode=s,this.setIndex=o,this.render=l,this.renderInstances=c,this.renderMultiDraw=h,this.renderMultiDrawInstances=d}function sp(i){const t={geometries:0,textures:0},e={frame:0,calls:0,triangles:0,points:0,lines:0};function n(r,a,o){switch(e.calls++,a){case i.TRIANGLES:e.triangles+=o*(r/3);break;case i.LINES:e.lines+=o*(r/2);break;case i.LINE_STRIP:e.lines+=o*(r-1);break;case i.LINE_LOOP:e.lines+=o*r;break;case i.POINTS:e.points+=o*r;break;default:console.error("THREE.WebGLInfo: Unknown draw mode:",a);break}}function s(){e.calls=0,e.triangles=0,e.points=0,e.lines=0}return{memory:t,render:e,programs:null,autoReset:!0,reset:s,update:n}}function rp(i,t,e){const n=new WeakMap,s=new oe;function r(a,o,l){const c=a.morphTargetInfluences,h=o.morphAttributes.position||o.morphAttributes.normal||o.morphAttributes.color,d=h!==void 0?h.length:0;let f=n.get(o);if(f===void 0||f.count!==d){let y=function(){w.dispose(),n.delete(o),o.removeEventListener("dispose",y)};f!==void 0&&f.texture.dispose();const m=o.morphAttributes.position!==void 0,g=o.morphAttributes.normal!==void 0,x=o.morphAttributes.color!==void 0,p=o.morphAttributes.position||[],u=o.morphAttributes.normal||[],b=o.morphAttributes.color||[];let E=0;m===!0&&(E=1),g===!0&&(E=2),x===!0&&(E=3);let S=o.attributes.position.count*E,D=1;S>t.maxTextureSize&&(D=Math.ceil(S/t.maxTextureSize),S=t.maxTextureSize);const A=new Float32Array(S*D*4*d),w=new Kl(A,S,D,d);w.type=dn,w.needsUpdate=!0;const N=E*4;for(let M=0;M<d;M++){const C=p[M],W=u[M],z=b[M],V=S*D*4*M;for(let K=0;K<C.count;K++){const G=K*N;m===!0&&(s.fromBufferAttribute(C,K),A[V+G+0]=s.x,A[V+G+1]=s.y,A[V+G+2]=s.z,A[V+G+3]=0),g===!0&&(s.fromBufferAttribute(W,K),A[V+G+4]=s.x,A[V+G+5]=s.y,A[V+G+6]=s.z,A[V+G+7]=0),x===!0&&(s.fromBufferAttribute(z,K),A[V+G+8]=s.x,A[V+G+9]=s.y,A[V+G+10]=s.z,A[V+G+11]=z.itemSize===4?s.w:1)}}f={count:d,texture:w,size:new gt(S,D)},n.set(o,f),o.addEventListener("dispose",y)}if(a.isInstancedMesh===!0&&a.morphTexture!==null)l.getUniforms().setValue(i,"morphTexture",a.morphTexture,e);else{let m=0;for(let x=0;x<c.length;x++)m+=c[x];const g=o.morphTargetsRelative?1:1-m;l.getUniforms().setValue(i,"morphTargetBaseInfluence",g),l.getUniforms().setValue(i,"morphTargetInfluences",c)}l.getUniforms().setValue(i,"morphTargetsTexture",f.texture,e),l.getUniforms().setValue(i,"morphTargetsTextureSize",f.size)}return{update:r}}function ap(i,t,e,n){let s=new WeakMap;function r(l){const c=n.render.frame,h=l.geometry,d=t.get(l,h);if(s.get(d)!==c&&(t.update(d),s.set(d,c)),l.isInstancedMesh&&(l.hasEventListener("dispose",o)===!1&&l.addEventListener("dispose",o),s.get(l)!==c&&(e.update(l.instanceMatrix,i.ARRAY_BUFFER),l.instanceColor!==null&&e.update(l.instanceColor,i.ARRAY_BUFFER),s.set(l,c))),l.isSkinnedMesh){const f=l.skeleton;s.get(f)!==c&&(f.update(),s.set(f,c))}return d}function a(){s=new WeakMap}function o(l){const c=l.target;c.removeEventListener("dispose",o),e.remove(c.instanceMatrix),c.instanceColor!==null&&e.remove(c.instanceColor)}return{update:r,dispose:a}}const cc=new Ce,il=new rc(1,1),hc=new Kl,uc=new Ch,dc=new nc,sl=[],rl=[],al=new Float32Array(16),ol=new Float32Array(9),ll=new Float32Array(4);function Gi(i,t,e){const n=i[0];if(n<=0||n>0)return i;const s=t*e;let r=sl[s];if(r===void 0&&(r=new Float32Array(s),sl[s]=r),t!==0){n.toArray(r,0);for(let a=1,o=0;a!==t;++a)o+=e,i[a].toArray(r,o)}return r}function ve(i,t){if(i.length!==t.length)return!1;for(let 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0)(e[0]!==t.x||e[1]!==t.y||e[2]!==t.z)&&(i.uniform3ui(this.addr,t.x,t.y,t.z),e[0]=t.x,e[1]=t.y,e[2]=t.z);else{if(ve(e,t))return;i.uniform3uiv(this.addr,t),xe(e,t)}}function Sp(i,t){const e=this.cache;if(t.x!==void 0)(e[0]!==t.x||e[1]!==t.y||e[2]!==t.z||e[3]!==t.w)&&(i.uniform4ui(this.addr,t.x,t.y,t.z,t.w),e[0]=t.x,e[1]=t.y,e[2]=t.z,e[3]=t.w);else{if(ve(e,t))return;i.uniform4uiv(this.addr,t),xe(e,t)}}function yp(i,t,e){const n=this.cache,s=e.allocateTextureUnit();n[0]!==s&&(i.uniform1i(this.addr,s),n[0]=s);let r;this.type===i.SAMPLER_2D_SHADOW?(il.compareFunction=ql,r=il):r=cc,e.setTexture2D(t||r,s)}function Ep(i,t,e){const n=this.cache,s=e.allocateTextureUnit();n[0]!==s&&(i.uniform1i(this.addr,s),n[0]=s),e.setTexture3D(t||uc,s)}function Tp(i,t,e){const n=this.cache,s=e.allocateTextureUnit();n[0]!==s&&(i.uniform1i(this.addr,s),n[0]=s),e.setTextureCube(t||dc,s)}function bp(i,t,e){const n=this.cache,s=e.allocateTextureUnit();n[0]!==s&&(i.uniform1i(this.addr,s),n[0]=s),e.setTexture2DArray(t||hc,s)}function Ap(i){switch(i){case 5126:return op;case 35664:return lp;case 35665:return cp;case 35666:return hp;case 35674:return up;case 35675:return dp;case 35676:return fp;case 5124:case 35670:return pp;case 35667:case 35671:return mp;case 35668:case 35672:return _p;case 35669:case 35673:return gp;case 5125:return vp;case 36294:return xp;case 36295:return Mp;case 36296:return Sp;case 35678:case 36198:case 36298:case 36306:case 35682:return yp;case 35679:case 36299:case 36307:return Ep;case 35680:case 36300:case 36308:case 36293:return Tp;case 36289:case 36303:case 36311:case 36292:return bp}}function wp(i,t){i.uniform1fv(this.addr,t)}function Rp(i,t){const e=Gi(t,this.size,2);i.uniform2fv(this.addr,e)}function Cp(i,t){const e=Gi(t,this.size,3);i.uniform3fv(this.addr,e)}function Pp(i,t){const e=Gi(t,this.size,4);i.uniform4fv(this.addr,e)}function Dp(i,t){const e=Gi(t,this.size,4);i.uniformMatrix2fv(this.addr,!1,e)}function Lp(i,t){const e=Gi(t,this.size,9);i.uniformMatrix3fv(this.addr,!1,e)}function Up(i,t){const e=Gi(t,this.size,16);i.uniformMatrix4fv(this.addr,!1,e)}function Ip(i,t){i.uniform1iv(this.addr,t)}function Np(i,t){i.uniform2iv(this.addr,t)}function Fp(i,t){i.uniform3iv(this.addr,t)}function Op(i,t){i.uniform4iv(this.addr,t)}function Bp(i,t){i.uniform1uiv(this.addr,t)}function zp(i,t){i.uniform2uiv(this.addr,t)}function Hp(i,t){i.uniform3uiv(this.addr,t)}function kp(i,t){i.uniform4uiv(this.addr,t)}function Vp(i,t,e){const n=this.cache,s=t.length,r=cr(e,s);ve(n,r)||(i.uniform1iv(this.addr,r),xe(n,r));for(let a=0;a!==s;++a)e.setTexture2D(t[a]||cc,r[a])}function Gp(i,t,e){const n=this.cache,s=t.length,r=cr(e,s);ve(n,r)||(i.uniform1iv(this.addr,r),xe(n,r));for(let a=0;a!==s;++a)e.setTexture3D(t[a]||uc,r[a])}function Wp(i,t,e){const n=this.cache,s=t.length,r=cr(e,s);ve(n,r)||(i.uniform1iv(this.addr,r),xe(n,r));for(let 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jp{constructor(t,e,n){this.id=t,this.addr=n,this.cache=[],this.type=e.type,this.size=e.size,this.setValue=Yp(e.type)}}class Zp{constructor(t){this.id=t,this.seq=[],this.map={}}setValue(t,e,n){const s=this.seq;for(let r=0,a=s.length;r!==a;++r){const o=s[r];o.setValue(t,e[o.id],n)}}}const Wr=/(\w+)(\])?(\[|\.)?/g;function cl(i,t){i.seq.push(t),i.map[t.id]=t}function Kp(i,t,e){const n=i.name,s=n.length;for(Wr.lastIndex=0;;){const r=Wr.exec(n),a=Wr.lastIndex;let o=r[1];const l=r[2]==="]",c=r[3];if(l&&(o=o|0),c===void 0||c==="["&&a+2===s){cl(e,c===void 0?new qp(o,i,t):new jp(o,i,t));break}else{let d=e.map[o];d===void 0&&(d=new Zp(o),cl(e,d)),e=d}}}class qs{constructor(t,e){this.seq=[],this.map={};const n=t.getProgramParameter(e,t.ACTIVE_UNIFORMS);for(let s=0;s<n;++s){const r=t.getActiveUniform(e,s),a=t.getUniformLocation(e,r.name);Kp(r,a,this)}}setValue(t,e,n,s){const r=this.map[e];r!==void 0&&r.setValue(t,n,s)}setOptional(t,e,n){const s=e[n];s!==void 0&&this.setValue(t,n,s)}static 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`+s+`
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`+Qp(i.getShaderSource(t),a)}else return s}function em(i,t){const e=tm(t);return[`vec4 ${i}( vec4 value ) {`,` return ${e[1]}( vec4( value.rgb * ${e[0]}, value.a ) );`,"}"].join(`
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`)}function nm(i,t){let e;switch(t){case eh:e="Linear";break;case nh:e="Reinhard";break;case ih:e="Cineon";break;case Nl:e="ACESFilmic";break;case rh:e="AgX";break;case ah:e="Neutral";break;case sh:e="Custom";break;default:console.warn("THREE.WebGLProgram: Unsupported toneMapping:",t),e="Linear"}return"vec3 "+i+"( vec3 color ) { return "+e+"ToneMapping( color ); }"}const zs=new P;function im(){$t.getLuminanceCoefficients(zs);const i=zs.x.toFixed(4),t=zs.y.toFixed(4),e=zs.z.toFixed(4);return["float luminance( const in vec3 rgb ) {",` const vec3 weights = vec3( ${i}, ${t}, ${e} );`," return dot( weights, rgb );","}"].join(`
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`)}function sm(i){return[i.extensionClipCullDistance?"#extension GL_ANGLE_clip_cull_distance : require":"",i.extensionMultiDraw?"#extension GL_ANGLE_multi_draw : require":""].filter(is).join(`
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`)}function rm(i){const t=[];for(const e in i){const n=i[e];n!==!1&&t.push("#define "+e+" "+n)}return t.join(`
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`)}function am(i,t){const e={},n=i.getProgramParameter(t,i.ACTIVE_ATTRIBUTES);for(let s=0;s<n;s++){const r=i.getActiveAttrib(t,s),a=r.name;let o=1;r.type===i.FLOAT_MAT2&&(o=2),r.type===i.FLOAT_MAT3&&(o=3),r.type===i.FLOAT_MAT4&&(o=4),e[a]={type:r.type,location:i.getAttribLocation(t,a),locationSize:o}}return e}function is(i){return i!==""}function fl(i,t){const e=t.numSpotLightShadows+t.numSpotLightMaps-t.numSpotLightShadowsWithMaps;return i.replace(/NUM_DIR_LIGHTS/g,t.numDirLights).replace(/NUM_SPOT_LIGHTS/g,t.numSpotLights).replace(/NUM_SPOT_LIGHT_MAPS/g,t.numSpotLightMaps).replace(/NUM_SPOT_LIGHT_COORDS/g,e).replace(/NUM_RECT_AREA_LIGHTS/g,t.numRectAreaLights).replace(/NUM_POINT_LIGHTS/g,t.numPointLights).replace(/NUM_HEMI_LIGHTS/g,t.numHemiLights).replace(/NUM_DIR_LIGHT_SHADOWS/g,t.numDirLightShadows).replace(/NUM_SPOT_LIGHT_SHADOWS_WITH_MAPS/g,t.numSpotLightShadowsWithMaps).replace(/NUM_SPOT_LIGHT_SHADOWS/g,t.numSpotLightShadows).replace(/NUM_POINT_LIGHT_SHADOWS/g,t.numPointLightShadows)}function pl(i,t){return i.replace(/NUM_CLIPPING_PLANES/g,t.numClippingPlanes).replace(/UNION_CLIPPING_PLANES/g,t.numClippingPlanes-t.numClipIntersection)}const om=/^[ \t]*#include +<([\w\d./]+)>/gm;function Ha(i){return i.replace(om,cm)}const lm=new Map;function cm(i,t){let e=kt[t];if(e===void 0){const n=lm.get(t);if(n!==void 0)e=kt[n],console.warn('THREE.WebGLRenderer: Shader chunk "%s" has been deprecated. Use "%s" instead.',t,n);else throw new Error("Can not resolve #include <"+t+">")}return Ha(e)}const hm=/#pragma unroll_loop_start\s+for\s*\(\s*int\s+i\s*=\s*(\d+)\s*;\s*i\s*<\s*(\d+)\s*;\s*i\s*\+\+\s*\)\s*{([\s\S]+?)}\s+#pragma unroll_loop_end/g;function ml(i){return i.replace(hm,um)}function um(i,t,e,n){let s="";for(let r=parseInt(t);r<parseInt(e);r++)s+=n.replace(/\[\s*i\s*\]/g,"[ "+r+" ]").replace(/UNROLLED_LOOP_INDEX/g,r);return s}function _l(i){let t=`precision ${i.precision} float;
|
||
precision ${i.precision} int;
|
||
precision ${i.precision} sampler2D;
|
||
precision ${i.precision} samplerCube;
|
||
precision ${i.precision} sampler3D;
|
||
precision ${i.precision} sampler2DArray;
|
||
precision ${i.precision} sampler2DShadow;
|
||
precision ${i.precision} samplerCubeShadow;
|
||
precision ${i.precision} sampler2DArrayShadow;
|
||
precision ${i.precision} isampler2D;
|
||
precision ${i.precision} isampler3D;
|
||
precision ${i.precision} isamplerCube;
|
||
precision ${i.precision} isampler2DArray;
|
||
precision ${i.precision} usampler2D;
|
||
precision ${i.precision} usampler3D;
|
||
precision ${i.precision} usamplerCube;
|
||
precision ${i.precision} usampler2DArray;
|
||
`;return i.precision==="highp"?t+=`
|
||
#define HIGH_PRECISION`:i.precision==="mediump"?t+=`
|
||
#define MEDIUM_PRECISION`:i.precision==="lowp"&&(t+=`
|
||
#define LOW_PRECISION`),t}function dm(i){let t="SHADOWMAP_TYPE_BASIC";return i.shadowMapType===Ul?t="SHADOWMAP_TYPE_PCF":i.shadowMapType===Ic?t="SHADOWMAP_TYPE_PCF_SOFT":i.shadowMapType===yn&&(t="SHADOWMAP_TYPE_VSM"),t}function fm(i){let t="ENVMAP_TYPE_CUBE";if(i.envMap)switch(i.envMapMode){case Fi:case Oi:t="ENVMAP_TYPE_CUBE";break;case ar:t="ENVMAP_TYPE_CUBE_UV";break}return t}function pm(i){let t="ENVMAP_MODE_REFLECTION";if(i.envMap)switch(i.envMapMode){case Oi:t="ENVMAP_MODE_REFRACTION";break}return t}function mm(i){let t="ENVMAP_BLENDING_NONE";if(i.envMap)switch(i.combine){case Il:t="ENVMAP_BLENDING_MULTIPLY";break;case Qc:t="ENVMAP_BLENDING_MIX";break;case th:t="ENVMAP_BLENDING_ADD";break}return t}function _m(i){const t=i.envMapCubeUVHeight;if(t===null)return null;const e=Math.log2(t)-2,n=1/t;return{texelWidth:1/(3*Math.max(Math.pow(2,e),112)),texelHeight:n,maxMip:e}}function gm(i,t,e,n){const s=i.getContext(),r=e.defines;let a=e.vertexShader,o=e.fragmentShader;const l=dm(e),c=fm(e),h=pm(e),d=mm(e),f=_m(e),m=sm(e),g=rm(r),x=s.createProgram();let p,u,b=e.glslVersion?"#version "+e.glslVersion+`
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||
`:"";e.isRawShaderMaterial?(p=["#define SHADER_TYPE "+e.shaderType,"#define SHADER_NAME "+e.shaderName,g].filter(is).join(`
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||
`),p.length>0&&(p+=`
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||
`),u=["#define SHADER_TYPE "+e.shaderType,"#define SHADER_NAME "+e.shaderName,g].filter(is).join(`
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`),u.length>0&&(u+=`
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`)):(p=[_l(e),"#define SHADER_TYPE "+e.shaderType,"#define SHADER_NAME "+e.shaderName,g,e.extensionClipCullDistance?"#define USE_CLIP_DISTANCE":"",e.batching?"#define USE_BATCHING":"",e.batchingColor?"#define USE_BATCHING_COLOR":"",e.instancing?"#define USE_INSTANCING":"",e.instancingColor?"#define USE_INSTANCING_COLOR":"",e.instancingMorph?"#define USE_INSTANCING_MORPH":"",e.useFog&&e.fog?"#define USE_FOG":"",e.useFog&&e.fogExp2?"#define FOG_EXP2":"",e.map?"#define USE_MAP":"",e.envMap?"#define USE_ENVMAP":"",e.envMap?"#define "+h:"",e.lightMap?"#define USE_LIGHTMAP":"",e.aoMap?"#define USE_AOMAP":"",e.bumpMap?"#define USE_BUMPMAP":"",e.normalMap?"#define USE_NORMALMAP":"",e.normalMapObjectSpace?"#define USE_NORMALMAP_OBJECTSPACE":"",e.normalMapTangentSpace?"#define USE_NORMALMAP_TANGENTSPACE":"",e.displacementMap?"#define USE_DISPLACEMENTMAP":"",e.emissiveMap?"#define USE_EMISSIVEMAP":"",e.anisotropy?"#define USE_ANISOTROPY":"",e.anisotropyMap?"#define USE_ANISOTROPYMAP":"",e.clearcoatMap?"#define USE_CLEARCOATMAP":"",e.clearcoatRoughnessMap?"#define USE_CLEARCOAT_ROUGHNESSMAP":"",e.clearcoatNormalMap?"#define USE_CLEARCOAT_NORMALMAP":"",e.iridescenceMap?"#define USE_IRIDESCENCEMAP":"",e.iridescenceThicknessMap?"#define USE_IRIDESCENCE_THICKNESSMAP":"",e.specularMap?"#define USE_SPECULARMAP":"",e.specularColorMap?"#define USE_SPECULAR_COLORMAP":"",e.specularIntensityMap?"#define USE_SPECULAR_INTENSITYMAP":"",e.roughnessMap?"#define USE_ROUGHNESSMAP":"",e.metalnessMap?"#define USE_METALNESSMAP":"",e.alphaMap?"#define USE_ALPHAMAP":"",e.alphaHash?"#define USE_ALPHAHASH":"",e.transmission?"#define USE_TRANSMISSION":"",e.transmissionMap?"#define USE_TRANSMISSIONMAP":"",e.thicknessMap?"#define USE_THICKNESSMAP":"",e.sheenColorMap?"#define USE_SHEEN_COLORMAP":"",e.sheenRoughnessMap?"#define USE_SHEEN_ROUGHNESSMAP":"",e.mapUv?"#define MAP_UV "+e.mapUv:"",e.alphaMapUv?"#define ALPHAMAP_UV "+e.alphaMapUv:"",e.lightMapUv?"#define LIGHTMAP_UV 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SHEEN_ROUGHNESSMAP_UV "+e.sheenRoughnessMapUv:"",e.specularMapUv?"#define SPECULARMAP_UV "+e.specularMapUv:"",e.specularColorMapUv?"#define SPECULAR_COLORMAP_UV "+e.specularColorMapUv:"",e.specularIntensityMapUv?"#define SPECULAR_INTENSITYMAP_UV "+e.specularIntensityMapUv:"",e.transmissionMapUv?"#define TRANSMISSIONMAP_UV "+e.transmissionMapUv:"",e.thicknessMapUv?"#define THICKNESSMAP_UV "+e.thicknessMapUv:"",e.vertexTangents&&e.flatShading===!1?"#define USE_TANGENT":"",e.vertexColors?"#define USE_COLOR":"",e.vertexAlphas?"#define USE_COLOR_ALPHA":"",e.vertexUv1s?"#define USE_UV1":"",e.vertexUv2s?"#define USE_UV2":"",e.vertexUv3s?"#define USE_UV3":"",e.pointsUvs?"#define USE_POINTS_UV":"",e.flatShading?"#define FLAT_SHADED":"",e.skinning?"#define USE_SKINNING":"",e.morphTargets?"#define USE_MORPHTARGETS":"",e.morphNormals&&e.flatShading===!1?"#define USE_MORPHNORMALS":"",e.morphColors?"#define USE_MORPHCOLORS":"",e.morphTargetsCount>0?"#define MORPHTARGETS_TEXTURE_STRIDE "+e.morphTextureStride:"",e.morphTargetsCount>0?"#define MORPHTARGETS_COUNT "+e.morphTargetsCount:"",e.doubleSided?"#define DOUBLE_SIDED":"",e.flipSided?"#define FLIP_SIDED":"",e.shadowMapEnabled?"#define USE_SHADOWMAP":"",e.shadowMapEnabled?"#define "+l:"",e.sizeAttenuation?"#define USE_SIZEATTENUATION":"",e.numLightProbes>0?"#define USE_LIGHT_PROBES":"",e.logarithmicDepthBuffer?"#define USE_LOGDEPTHBUF":"",e.reverseDepthBuffer?"#define USE_REVERSEDEPTHBUF":"","uniform mat4 modelMatrix;","uniform mat4 modelViewMatrix;","uniform mat4 projectionMatrix;","uniform mat4 viewMatrix;","uniform mat3 normalMatrix;","uniform vec3 cameraPosition;","uniform bool isOrthographic;","#ifdef USE_INSTANCING"," attribute mat4 instanceMatrix;","#endif","#ifdef USE_INSTANCING_COLOR"," attribute vec3 instanceColor;","#endif","#ifdef USE_INSTANCING_MORPH"," uniform sampler2D morphTexture;","#endif","attribute vec3 position;","attribute vec3 normal;","attribute vec2 uv;","#ifdef USE_UV1"," attribute vec2 uv1;","#endif","#ifdef USE_UV2"," attribute vec2 uv2;","#endif","#ifdef USE_UV3"," attribute vec2 uv3;","#endif","#ifdef USE_TANGENT"," attribute vec4 tangent;","#endif","#if defined( USE_COLOR_ALPHA )"," attribute vec4 color;","#elif defined( USE_COLOR )"," attribute vec3 color;","#endif","#ifdef USE_SKINNING"," attribute vec4 skinIndex;"," attribute vec4 skinWeight;","#endif",`
|
||
`].filter(is).join(`
|
||
`),u=[_l(e),"#define SHADER_TYPE "+e.shaderType,"#define SHADER_NAME "+e.shaderName,g,e.useFog&&e.fog?"#define USE_FOG":"",e.useFog&&e.fogExp2?"#define FOG_EXP2":"",e.alphaToCoverage?"#define ALPHA_TO_COVERAGE":"",e.map?"#define USE_MAP":"",e.matcap?"#define USE_MATCAP":"",e.envMap?"#define USE_ENVMAP":"",e.envMap?"#define "+c:"",e.envMap?"#define "+h:"",e.envMap?"#define "+d:"",f?"#define CUBEUV_TEXEL_WIDTH "+f.texelWidth:"",f?"#define CUBEUV_TEXEL_HEIGHT "+f.texelHeight:"",f?"#define CUBEUV_MAX_MIP "+f.maxMip+".0":"",e.lightMap?"#define USE_LIGHTMAP":"",e.aoMap?"#define USE_AOMAP":"",e.bumpMap?"#define USE_BUMPMAP":"",e.normalMap?"#define USE_NORMALMAP":"",e.normalMapObjectSpace?"#define USE_NORMALMAP_OBJECTSPACE":"",e.normalMapTangentSpace?"#define USE_NORMALMAP_TANGENTSPACE":"",e.emissiveMap?"#define USE_EMISSIVEMAP":"",e.anisotropy?"#define USE_ANISOTROPY":"",e.anisotropyMap?"#define USE_ANISOTROPYMAP":"",e.clearcoat?"#define USE_CLEARCOAT":"",e.clearcoatMap?"#define USE_CLEARCOATMAP":"",e.clearcoatRoughnessMap?"#define USE_CLEARCOAT_ROUGHNESSMAP":"",e.clearcoatNormalMap?"#define USE_CLEARCOAT_NORMALMAP":"",e.dispersion?"#define USE_DISPERSION":"",e.iridescence?"#define USE_IRIDESCENCE":"",e.iridescenceMap?"#define USE_IRIDESCENCEMAP":"",e.iridescenceThicknessMap?"#define USE_IRIDESCENCE_THICKNESSMAP":"",e.specularMap?"#define USE_SPECULARMAP":"",e.specularColorMap?"#define USE_SPECULAR_COLORMAP":"",e.specularIntensityMap?"#define USE_SPECULAR_INTENSITYMAP":"",e.roughnessMap?"#define USE_ROUGHNESSMAP":"",e.metalnessMap?"#define USE_METALNESSMAP":"",e.alphaMap?"#define USE_ALPHAMAP":"",e.alphaTest?"#define USE_ALPHATEST":"",e.alphaHash?"#define USE_ALPHAHASH":"",e.sheen?"#define USE_SHEEN":"",e.sheenColorMap?"#define USE_SHEEN_COLORMAP":"",e.sheenRoughnessMap?"#define USE_SHEEN_ROUGHNESSMAP":"",e.transmission?"#define USE_TRANSMISSION":"",e.transmissionMap?"#define USE_TRANSMISSIONMAP":"",e.thicknessMap?"#define USE_THICKNESSMAP":"",e.vertexTangents&&e.flatShading===!1?"#define USE_TANGENT":"",e.vertexColors||e.instancingColor||e.batchingColor?"#define USE_COLOR":"",e.vertexAlphas?"#define USE_COLOR_ALPHA":"",e.vertexUv1s?"#define USE_UV1":"",e.vertexUv2s?"#define USE_UV2":"",e.vertexUv3s?"#define USE_UV3":"",e.pointsUvs?"#define USE_POINTS_UV":"",e.gradientMap?"#define USE_GRADIENTMAP":"",e.flatShading?"#define FLAT_SHADED":"",e.doubleSided?"#define DOUBLE_SIDED":"",e.flipSided?"#define FLIP_SIDED":"",e.shadowMapEnabled?"#define USE_SHADOWMAP":"",e.shadowMapEnabled?"#define "+l:"",e.premultipliedAlpha?"#define PREMULTIPLIED_ALPHA":"",e.numLightProbes>0?"#define USE_LIGHT_PROBES":"",e.decodeVideoTexture?"#define DECODE_VIDEO_TEXTURE":"",e.decodeVideoTextureEmissive?"#define DECODE_VIDEO_TEXTURE_EMISSIVE":"",e.logarithmicDepthBuffer?"#define USE_LOGDEPTHBUF":"",e.reverseDepthBuffer?"#define USE_REVERSEDEPTHBUF":"","uniform mat4 viewMatrix;","uniform vec3 cameraPosition;","uniform bool isOrthographic;",e.toneMapping!==On?"#define TONE_MAPPING":"",e.toneMapping!==On?kt.tonemapping_pars_fragment:"",e.toneMapping!==On?nm("toneMapping",e.toneMapping):"",e.dithering?"#define DITHERING":"",e.opaque?"#define OPAQUE":"",kt.colorspace_pars_fragment,em("linearToOutputTexel",e.outputColorSpace),im(),e.useDepthPacking?"#define DEPTH_PACKING "+e.depthPacking:"",`
|
||
`].filter(is).join(`
|
||
`)),a=Ha(a),a=fl(a,e),a=pl(a,e),o=Ha(o),o=fl(o,e),o=pl(o,e),a=ml(a),o=ml(o),e.isRawShaderMaterial!==!0&&(b=`#version 300 es
|
||
`,p=[m,"#define attribute in","#define varying out","#define texture2D texture"].join(`
|
||
`)+`
|
||
`+p,u=["#define varying in",e.glslVersion===po?"":"layout(location = 0) out highp vec4 pc_fragColor;",e.glslVersion===po?"":"#define gl_FragColor pc_fragColor","#define gl_FragDepthEXT gl_FragDepth","#define texture2D texture","#define textureCube texture","#define texture2DProj textureProj","#define texture2DLodEXT textureLod","#define texture2DProjLodEXT textureProjLod","#define textureCubeLodEXT textureLod","#define texture2DGradEXT textureGrad","#define texture2DProjGradEXT textureProjGrad","#define textureCubeGradEXT textureGrad"].join(`
|
||
`)+`
|
||
`+u);const E=b+p+a,S=b+u+o,D=hl(s,s.VERTEX_SHADER,E),A=hl(s,s.FRAGMENT_SHADER,S);s.attachShader(x,D),s.attachShader(x,A),e.index0AttributeName!==void 0?s.bindAttribLocation(x,0,e.index0AttributeName):e.morphTargets===!0&&s.bindAttribLocation(x,0,"position"),s.linkProgram(x);function w(C){if(i.debug.checkShaderErrors){const W=s.getProgramInfoLog(x).trim(),z=s.getShaderInfoLog(D).trim(),V=s.getShaderInfoLog(A).trim();let K=!0,G=!0;if(s.getProgramParameter(x,s.LINK_STATUS)===!1)if(K=!1,typeof i.debug.onShaderError=="function")i.debug.onShaderError(s,x,D,A);else{const $=dl(s,D,"vertex"),H=dl(s,A,"fragment");console.error("THREE.WebGLProgram: Shader Error "+s.getError()+" - VALIDATE_STATUS "+s.getProgramParameter(x,s.VALIDATE_STATUS)+`
|
||
|
||
Material Name: `+C.name+`
|
||
Material Type: `+C.type+`
|
||
|
||
Program Info Log: `+W+`
|
||
`+$+`
|
||
`+H)}else W!==""?console.warn("THREE.WebGLProgram: Program Info Log:",W):(z===""||V==="")&&(G=!1);G&&(C.diagnostics={runnable:K,programLog:W,vertexShader:{log:z,prefix:p},fragmentShader:{log:V,prefix:u}})}s.deleteShader(D),s.deleteShader(A),N=new qs(s,x),y=am(s,x)}let N;this.getUniforms=function(){return N===void 0&&w(this),N};let y;this.getAttributes=function(){return y===void 0&&w(this),y};let M=e.rendererExtensionParallelShaderCompile===!1;return this.isReady=function(){return M===!1&&(M=s.getProgramParameter(x,$p)),M},this.destroy=function(){n.releaseStatesOfProgram(this),s.deleteProgram(x),this.program=void 0},this.type=e.shaderType,this.name=e.shaderName,this.id=Jp++,this.cacheKey=t,this.usedTimes=1,this.program=x,this.vertexShader=D,this.fragmentShader=A,this}let vm=0;class xm{constructor(){this.shaderCache=new Map,this.materialCache=new Map}update(t){const e=t.vertexShader,n=t.fragmentShader,s=this._getShaderStage(e),r=this._getShaderStage(n),a=this._getShaderCacheForMaterial(t);return a.has(s)===!1&&(a.add(s),s.usedTimes++),a.has(r)===!1&&(a.add(r),r.usedTimes++),this}remove(t){const e=this.materialCache.get(t);for(const n of e)n.usedTimes--,n.usedTimes===0&&this.shaderCache.delete(n.code);return this.materialCache.delete(t),this}getVertexShaderID(t){return this._getShaderStage(t.vertexShader).id}getFragmentShaderID(t){return this._getShaderStage(t.fragmentShader).id}dispose(){this.shaderCache.clear(),this.materialCache.clear()}_getShaderCacheForMaterial(t){const e=this.materialCache;let n=e.get(t);return n===void 0&&(n=new Set,e.set(t,n)),n}_getShaderStage(t){const e=this.shaderCache;let n=e.get(t);return n===void 0&&(n=new Mm(t),e.set(t,n)),n}}class Mm{constructor(t){this.id=vm++,this.code=t,this.usedTimes=0}}function Sm(i,t,e,n,s,r,a){const o=new Za,l=new xm,c=new Set,h=[],d=s.logarithmicDepthBuffer,f=s.vertexTextures;let m=s.precision;const g={MeshDepthMaterial:"depth",MeshDistanceMaterial:"distanceRGBA",MeshNormalMaterial:"normal",MeshBasicMaterial:"basic",MeshLambertMaterial:"lambert",MeshPhongMaterial:"phong",MeshToonMaterial:"toon",MeshStandardMaterial:"physical",MeshPhysicalMaterial:"physical",MeshMatcapMaterial:"matcap",LineBasicMaterial:"basic",LineDashedMaterial:"dashed",PointsMaterial:"points",ShadowMaterial:"shadow",SpriteMaterial:"sprite"};function x(y){return c.add(y),y===0?"uv":`uv${y}`}function p(y,M,C,W,z){const V=W.fog,K=z.geometry,G=y.isMeshStandardMaterial?W.environment:null,$=(y.isMeshStandardMaterial?e:t).get(y.envMap||G),H=$&&$.mapping===ar?$.image.height:null,nt=g[y.type];y.precision!==null&&(m=s.getMaxPrecision(y.precision),m!==y.precision&&console.warn("THREE.WebGLProgram.getParameters:",y.precision,"not supported, using",m,"instead."));const dt=K.morphAttributes.position||K.morphAttributes.normal||K.morphAttributes.color,Mt=dt!==void 0?dt.length:0;let Ft=0;K.morphAttributes.position!==void 0&&(Ft=1),K.morphAttributes.normal!==void 0&&(Ft=2),K.morphAttributes.color!==void 0&&(Ft=3);let Yt,Y,et,vt;if(nt){const ne=ln[nt];Yt=ne.vertexShader,Y=ne.fragmentShader}else Yt=y.vertexShader,Y=y.fragmentShader,l.update(y),et=l.getVertexShaderID(y),vt=l.getFragmentShaderID(y);const lt=i.getRenderTarget(),Rt=i.state.buffers.depth.getReversed(),it=z.isInstancedMesh===!0,Tt=z.isBatchedMesh===!0,qt=!!y.map,Ht=!!y.matcap,Jt=!!$,R=!!y.aoMap,_e=!!y.lightMap,Vt=!!y.bumpMap,Wt=!!y.normalMap,Et=!!y.displacementMap,le=!!y.emissiveMap,St=!!y.metalnessMap,T=!!y.roughnessMap,_=y.anisotropy>0,F=y.clearcoat>0,q=y.dispersion>0,Z=y.iridescence>0,X=y.sheen>0,yt=y.transmission>0,at=_&&!!y.anisotropyMap,ft=F&&!!y.clearcoatMap,Xt=F&&!!y.clearcoatNormalMap,Q=F&&!!y.clearcoatRoughnessMap,pt=Z&&!!y.iridescenceMap,bt=Z&&!!y.iridescenceThicknessMap,Lt=X&&!!y.sheenColorMap,st=X&&!!y.sheenRoughnessMap,Dt=!!y.specularMap,Ct=!!y.specularColorMap,jt=!!y.specularIntensityMap,L=yt&&!!y.transmissionMap,ot=yt&&!!y.thicknessMap,k=!!y.gradientMap,j=!!y.alphaMap,ct=y.alphaTest>0,ht=!!y.alphaHash,Ot=!!y.extensions;let he=On;y.toneMapped&&(lt===null||lt.isXRRenderTarget===!0)&&(he=i.toneMapping);const Ae={shaderID:nt,shaderType:y.type,shaderName:y.name,vertexShader:Yt,fragmentShader:Y,defines:y.defines,customVertexShaderID:et,customFragmentShaderID:vt,isRawShaderMaterial:y.isRawShaderMaterial===!0,glslVersion:y.glslVersion,precision:m,batching:Tt,batchingColor:Tt&&z._colorsTexture!==null,instancing:it,instancingColor:it&&z.instanceColor!==null,instancingMorph:it&&z.morphTexture!==null,supportsVertexTextures:f,outputColorSpace:lt===null?i.outputColorSpace:lt.isXRRenderTarget===!0?lt.texture.colorSpace:Hi,alphaToCoverage:!!y.alphaToCoverage,map:qt,matcap:Ht,envMap:Jt,envMapMode:Jt&&$.mapping,envMapCubeUVHeight:H,aoMap:R,lightMap:_e,bumpMap:Vt,normalMap:Wt,displacementMap:f&&Et,emissiveMap:le,normalMapObjectSpace:Wt&&y.normalMapType===hh,normalMapTangentSpace:Wt&&y.normalMapType===Yl,metalnessMap:St,roughnessMap:T,anisotropy:_,anisotropyMap:at,clearcoat:F,clearcoatMap:ft,clearcoatNormalMap:Xt,clearcoatRoughnessMap:Q,dispersion:q,iridescence:Z,iridescenceMap:pt,iridescenceThicknessMap:bt,sheen:X,sheenColorMap:Lt,sheenRoughnessMap:st,specularMap:Dt,specularColorMap:Ct,specularIntensityMap:jt,transmission:yt,transmissionMap:L,thicknessMap:ot,gradientMap:k,opaque:y.transparent===!1&&y.blending===Li&&y.alphaToCoverage===!1,alphaMap:j,alphaTest:ct,alphaHash:ht,combine:y.combine,mapUv:qt&&x(y.map.channel),aoMapUv:R&&x(y.aoMap.channel),lightMapUv:_e&&x(y.lightMap.channel),bumpMapUv:Vt&&x(y.bumpMap.channel),normalMapUv:Wt&&x(y.normalMap.channel),displacementMapUv:Et&&x(y.displacementMap.channel),emissiveMapUv:le&&x(y.emissiveMap.channel),metalnessMapUv:St&&x(y.metalnessMap.channel),roughnessMapUv:T&&x(y.roughnessMap.channel),anisotropyMapUv:at&&x(y.anisotropyMap.channel),clearcoatMapUv:ft&&x(y.clearcoatMap.channel),clearcoatNormalMapUv:Xt&&x(y.clearcoatNormalMap.channel),clearcoatRoughnessMapUv:Q&&x(y.clearcoatRoughnessMap.channel),iridescenceMapUv:pt&&x(y.iridescenceMap.channel),iridescenceThicknessMapUv:bt&&x(y.iridescenceThicknessMap.channel),sheenColorMapUv:Lt&&x(y.sheenColorMap.channel),sheenRoughnessMapUv:st&&x(y.sheenRoughnessMap.channel),specularMapUv:Dt&&x(y.specularMap.channel),specularColorMapUv:Ct&&x(y.specularColorMap.channel),specularIntensityMapUv:jt&&x(y.specularIntensityMap.channel),transmissionMapUv:L&&x(y.transmissionMap.channel),thicknessMapUv:ot&&x(y.thicknessMap.channel),alphaMapUv:j&&x(y.alphaMap.channel),vertexTangents:!!K.attributes.tangent&&(Wt||_),vertexColors:y.vertexColors,vertexAlphas:y.vertexColors===!0&&!!K.attributes.color&&K.attributes.color.itemSize===4,pointsUvs:z.isPoints===!0&&!!K.attributes.uv&&(qt||j),fog:!!V,useFog:y.fog===!0,fogExp2:!!V&&V.isFogExp2,flatShading:y.flatShading===!0,sizeAttenuation:y.sizeAttenuation===!0,logarithmicDepthBuffer:d,reverseDepthBuffer:Rt,skinning:z.isSkinnedMesh===!0,morphTargets:K.morphAttributes.position!==void 0,morphNormals:K.morphAttributes.normal!==void 0,morphColors:K.morphAttributes.color!==void 0,morphTargetsCount:Mt,morphTextureStride:Ft,numDirLights:M.directional.length,numPointLights:M.point.length,numSpotLights:M.spot.length,numSpotLightMaps:M.spotLightMap.length,numRectAreaLights:M.rectArea.length,numHemiLights:M.hemi.length,numDirLightShadows:M.directionalShadowMap.length,numPointLightShadows:M.pointShadowMap.length,numSpotLightShadows:M.spotShadowMap.length,numSpotLightShadowsWithMaps:M.numSpotLightShadowsWithMaps,numLightProbes:M.numLightProbes,numClippingPlanes:a.numPlanes,numClipIntersection:a.numIntersection,dithering:y.dithering,shadowMapEnabled:i.shadowMap.enabled&&C.length>0,shadowMapType:i.shadowMap.type,toneMapping:he,decodeVideoTexture:qt&&y.map.isVideoTexture===!0&&$t.getTransfer(y.map.colorSpace)===se,decodeVideoTextureEmissive:le&&y.emissiveMap.isVideoTexture===!0&&$t.getTransfer(y.emissiveMap.colorSpace)===se,premultipliedAlpha:y.premultipliedAlpha,doubleSided:y.side===cn,flipSided:y.side===Be,useDepthPacking:y.depthPacking>=0,depthPacking:y.depthPacking||0,index0AttributeName:y.index0AttributeName,extensionClipCullDistance:Ot&&y.extensions.clipCullDistance===!0&&n.has("WEBGL_clip_cull_distance"),extensionMultiDraw:(Ot&&y.extensions.multiDraw===!0||Tt)&&n.has("WEBGL_multi_draw"),rendererExtensionParallelShaderCompile:n.has("KHR_parallel_shader_compile"),customProgramCacheKey:y.customProgramCacheKey()};return Ae.vertexUv1s=c.has(1),Ae.vertexUv2s=c.has(2),Ae.vertexUv3s=c.has(3),c.clear(),Ae}function u(y){const M=[];if(y.shaderID?M.push(y.shaderID):(M.push(y.customVertexShaderID),M.push(y.customFragmentShaderID)),y.defines!==void 0)for(const C in y.defines)M.push(C),M.push(y.defines[C]);return y.isRawShaderMaterial===!1&&(b(M,y),E(M,y),M.push(i.outputColorSpace)),M.push(y.customProgramCacheKey),M.join()}function b(y,M){y.push(M.precision),y.push(M.outputColorSpace),y.push(M.envMapMode),y.push(M.envMapCubeUVHeight),y.push(M.mapUv),y.push(M.alphaMapUv),y.push(M.lightMapUv),y.push(M.aoMapUv),y.push(M.bumpMapUv),y.push(M.normalMapUv),y.push(M.displacementMapUv),y.push(M.emissiveMapUv),y.push(M.metalnessMapUv),y.push(M.roughnessMapUv),y.push(M.anisotropyMapUv),y.push(M.clearcoatMapUv),y.push(M.clearcoatNormalMapUv),y.push(M.clearcoatRoughnessMapUv),y.push(M.iridescenceMapUv),y.push(M.iridescenceThicknessMapUv),y.push(M.sheenColorMapUv),y.push(M.sheenRoughnessMapUv),y.push(M.specularMapUv),y.push(M.specularColorMapUv),y.push(M.specularIntensityMapUv),y.push(M.transmissionMapUv),y.push(M.thicknessMapUv),y.push(M.combine),y.push(M.fogExp2),y.push(M.sizeAttenuation),y.push(M.morphTargetsCount),y.push(M.morphAttributeCount),y.push(M.numDirLights),y.push(M.numPointLights),y.push(M.numSpotLights),y.push(M.numSpotLightMaps),y.push(M.numHemiLights),y.push(M.numRectAreaLights),y.push(M.numDirLightShadows),y.push(M.numPointLightShadows),y.push(M.numSpotLightShadows),y.push(M.numSpotLightShadowsWithMaps),y.push(M.numLightProbes),y.push(M.shadowMapType),y.push(M.toneMapping),y.push(M.numClippingPlanes),y.push(M.numClipIntersection),y.push(M.depthPacking)}function 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S(y){const M=g[y.type];let C;if(M){const W=ln[M];C=Qs.clone(W.uniforms)}else C=y.uniforms;return C}function D(y,M){let C;for(let W=0,z=h.length;W<z;W++){const V=h[W];if(V.cacheKey===M){C=V,++C.usedTimes;break}}return C===void 0&&(C=new gm(i,M,y,r),h.push(C)),C}function A(y){if(--y.usedTimes===0){const M=h.indexOf(y);h[M]=h[h.length-1],h.pop(),y.destroy()}}function w(y){l.remove(y)}function N(){l.dispose()}return{getParameters:p,getProgramCacheKey:u,getUniforms:S,acquireProgram:D,releaseProgram:A,releaseShaderCache:w,programs:h,dispose:N}}function ym(){let i=new WeakMap;function t(a){return i.has(a)}function e(a){let o=i.get(a);return o===void 0&&(o={},i.set(a,o)),o}function n(a){i.delete(a)}function s(a,o,l){i.get(a)[o]=l}function r(){i=new WeakMap}return{has:t,get:e,remove:n,update:s,dispose:r}}function Em(i,t){return 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c(d,f){e.length>1&&e.sort(d||Em),n.length>1&&n.sort(f||gl),s.length>1&&s.sort(f||gl)}function h(){for(let d=t,f=i.length;d<f;d++){const m=i[d];if(m.id===null)break;m.id=null,m.object=null,m.geometry=null,m.material=null,m.group=null}}return{opaque:e,transmissive:n,transparent:s,init:r,push:o,unshift:l,finish:h,sort:c}}function Tm(){let i=new WeakMap;function t(n,s){const r=i.get(n);let a;return r===void 0?(a=new vl,i.set(n,[a])):s>=r.length?(a=new vl,r.push(a)):a=r[s],a}function e(){i=new WeakMap}return{get:t,dispose:e}}function bm(){const i={};return{get:function(t){if(i[t.id]!==void 0)return i[t.id];let e;switch(t.type){case"DirectionalLight":e={direction:new P,color:new xt};break;case"SpotLight":e={position:new P,direction:new P,color:new xt,distance:0,coneCos:0,penumbraCos:0,decay:0};break;case"PointLight":e={position:new P,color:new xt,distance:0,decay:0};break;case"HemisphereLight":e={direction:new P,skyColor:new xt,groundColor:new xt};break;case"RectAreaLight":e={color:new 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bm,e=Am(),n={version:0,hash:{directionalLength:-1,pointLength:-1,spotLength:-1,rectAreaLength:-1,hemiLength:-1,numDirectionalShadows:-1,numPointShadows:-1,numSpotShadows:-1,numSpotMaps:-1,numLightProbes:-1},ambient:[0,0,0],probe:[],directional:[],directionalShadow:[],directionalShadowMap:[],directionalShadowMatrix:[],spot:[],spotLightMap:[],spotShadow:[],spotShadowMap:[],spotLightMatrix:[],rectArea:[],rectAreaLTC1:null,rectAreaLTC2:null,point:[],pointShadow:[],pointShadowMap:[],pointShadowMatrix:[],hemi:[],numSpotLightShadowsWithMaps:0,numLightProbes:0};for(let c=0;c<9;c++)n.probe.push(new P);const s=new P,r=new ee,a=new ee;function o(c){let h=0,d=0,f=0;for(let y=0;y<9;y++)n.probe[y].set(0,0,0);let m=0,g=0,x=0,p=0,u=0,b=0,E=0,S=0,D=0,A=0,w=0;c.sort(Rm);for(let y=0,M=c.length;y<M;y++){const C=c[y],W=C.color,z=C.intensity,V=C.distance,K=C.shadow&&C.shadow.map?C.shadow.map.texture:null;if(C.isAmbientLight)h+=W.r*z,d+=W.g*z,f+=W.b*z;else if(C.isLightProbe){for(let G=0;G<9;G++)n.probe[G].addScaledVector(C.sh.coefficients[G],z);w++}else if(C.isDirectionalLight){const G=t.get(C);if(G.color.copy(C.color).multiplyScalar(C.intensity),C.castShadow){const $=C.shadow,H=e.get(C);H.shadowIntensity=$.intensity,H.shadowBias=$.bias,H.shadowNormalBias=$.normalBias,H.shadowRadius=$.radius,H.shadowMapSize=$.mapSize,n.directionalShadow[m]=H,n.directionalShadowMap[m]=K,n.directionalShadowMatrix[m]=C.shadow.matrix,b++}n.directional[m]=G,m++}else if(C.isSpotLight){const G=t.get(C);G.position.setFromMatrixPosition(C.matrixWorld),G.color.copy(W).multiplyScalar(z),G.distance=V,G.coneCos=Math.cos(C.angle),G.penumbraCos=Math.cos(C.angle*(1-C.penumbra)),G.decay=C.decay,n.spot[x]=G;const $=C.shadow;if(C.map&&(n.spotLightMap[D]=C.map,D++,$.updateMatrices(C),C.castShadow&&A++),n.spotLightMatrix[x]=$.matrix,C.castShadow){const H=e.get(C);H.shadowIntensity=$.intensity,H.shadowBias=$.bias,H.shadowNormalBias=$.normalBias,H.shadowRadius=$.radius,H.shadowMapSize=$.mapSize,n.spotShadow[x]=H,n.spotShadowMap[x]=K,S++}x++}else if(C.isRectAreaLight){const G=t.get(C);G.color.copy(W).multiplyScalar(z),G.halfWidth.set(C.width*.5,0,0),G.halfHeight.set(0,C.height*.5,0),n.rectArea[p]=G,p++}else if(C.isPointLight){const G=t.get(C);if(G.color.copy(C.color).multiplyScalar(C.intensity),G.distance=C.distance,G.decay=C.decay,C.castShadow){const $=C.shadow,H=e.get(C);H.shadowIntensity=$.intensity,H.shadowBias=$.bias,H.shadowNormalBias=$.normalBias,H.shadowRadius=$.radius,H.shadowMapSize=$.mapSize,H.shadowCameraNear=$.camera.near,H.shadowCameraFar=$.camera.far,n.pointShadow[g]=H,n.pointShadowMap[g]=K,n.pointShadowMatrix[g]=C.shadow.matrix,E++}n.point[g]=G,g++}else if(C.isHemisphereLight){const G=t.get(C);G.skyColor.copy(C.color).multiplyScalar(z),G.groundColor.copy(C.groundColor).multiplyScalar(z),n.hemi[u]=G,u++}}p>0&&(i.has("OES_texture_float_linear")===!0?(n.rectAreaLTC1=rt.LTC_FLOAT_1,n.rectAreaLTC2=rt.LTC_FLOAT_2):(n.rectAreaLTC1=rt.LTC_HALF_1,n.rectAreaLTC2=rt.LTC_HALF_2)),n.ambient[0]=h,n.ambient[1]=d,n.ambient[2]=f;const N=n.hash;(N.directionalLength!==m||N.pointLength!==g||N.spotLength!==x||N.rectAreaLength!==p||N.hemiLength!==u||N.numDirectionalShadows!==b||N.numPointShadows!==E||N.numSpotShadows!==S||N.numSpotMaps!==D||N.numLightProbes!==w)&&(n.directional.length=m,n.spot.length=x,n.rectArea.length=p,n.point.length=g,n.hemi.length=u,n.directionalShadow.length=b,n.directionalShadowMap.length=b,n.pointShadow.length=E,n.pointShadowMap.length=E,n.spotShadow.length=S,n.spotShadowMap.length=S,n.directionalShadowMatrix.length=b,n.pointShadowMatrix.length=E,n.spotLightMatrix.length=S+D-A,n.spotLightMap.length=D,n.numSpotLightShadowsWithMaps=A,n.numLightProbes=w,N.directionalLength=m,N.pointLength=g,N.spotLength=x,N.rectAreaLength=p,N.hemiLength=u,N.numDirectionalShadows=b,N.numPointShadows=E,N.numSpotShadows=S,N.numSpotMaps=D,N.numLightProbes=w,n.version=wm++)}function l(c,h){let d=0,f=0,m=0,g=0,x=0;const p=h.matrixWorldInverse;for(let u=0,b=c.length;u<b;u++){const E=c[u];if(E.isDirectionalLight){const S=n.directional[d];S.direction.setFromMatrixPosition(E.matrixWorld),s.setFromMatrixPosition(E.target.matrixWorld),S.direction.sub(s),S.direction.transformDirection(p),d++}else if(E.isSpotLight){const S=n.spot[m];S.position.setFromMatrixPosition(E.matrixWorld),S.position.applyMatrix4(p),S.direction.setFromMatrixPosition(E.matrixWorld),s.setFromMatrixPosition(E.target.matrixWorld),S.direction.sub(s),S.direction.transformDirection(p),m++}else if(E.isRectAreaLight){const S=n.rectArea[g];S.position.setFromMatrixPosition(E.matrixWorld),S.position.applyMatrix4(p),a.identity(),r.copy(E.matrixWorld),r.premultiply(p),a.extractRotation(r),S.halfWidth.set(E.width*.5,0,0),S.halfHeight.set(0,E.height*.5,0),S.halfWidth.applyMatrix4(a),S.halfHeight.applyMatrix4(a),g++}else if(E.isPointLight){const S=n.point[f];S.position.setFromMatrixPosition(E.matrixWorld),S.position.applyMatrix4(p),f++}else if(E.isHemisphereLight){const S=n.hemi[x];S.direction.setFromMatrixPosition(E.matrixWorld),S.direction.transformDirection(p),x++}}}return{setup:o,setupView:l,state:n}}function xl(i){const t=new Cm(i),e=[],n=[];function s(h){c.camera=h,e.length=0,n.length=0}function r(h){e.push(h)}function a(h){n.push(h)}function o(){t.setup(e)}function l(h){t.setupView(e,h)}const c={lightsArray:e,shadowsArray:n,camera:null,lights:t,transmissionRenderTarget:{}};return{init:s,state:c,setupLights:o,setupLightsView:l,pushLight:r,pushShadow:a}}function Pm(i){let t=new WeakMap;function e(s,r=0){const a=t.get(s);let o;return a===void 0?(o=new xl(i),t.set(s,[o])):r>=a.length?(o=new xl(i),a.push(o)):o=a[r],o}function n(){t=new WeakMap}return{get:e,dispose:n}}const Dm=`void main() {
|
||
gl_Position = vec4( position, 1.0 );
|
||
}`,Lm=`uniform sampler2D shadow_pass;
|
||
uniform vec2 resolution;
|
||
uniform float radius;
|
||
#include <packing>
|
||
void main() {
|
||
const float samples = float( VSM_SAMPLES );
|
||
float mean = 0.0;
|
||
float squared_mean = 0.0;
|
||
float uvStride = samples <= 1.0 ? 0.0 : 2.0 / ( samples - 1.0 );
|
||
float uvStart = samples <= 1.0 ? 0.0 : - 1.0;
|
||
for ( float i = 0.0; i < samples; i ++ ) {
|
||
float uvOffset = uvStart + i * uvStride;
|
||
#ifdef HORIZONTAL_PASS
|
||
vec2 distribution = unpackRGBATo2Half( texture2D( shadow_pass, ( gl_FragCoord.xy + vec2( uvOffset, 0.0 ) * radius ) / resolution ) );
|
||
mean += distribution.x;
|
||
squared_mean += distribution.y * distribution.y + distribution.x * distribution.x;
|
||
#else
|
||
float depth = unpackRGBAToDepth( texture2D( shadow_pass, ( gl_FragCoord.xy + vec2( 0.0, uvOffset ) * radius ) / resolution ) );
|
||
mean += depth;
|
||
squared_mean += depth * depth;
|
||
#endif
|
||
}
|
||
mean = mean / samples;
|
||
squared_mean = squared_mean / samples;
|
||
float std_dev = sqrt( squared_mean - mean * mean );
|
||
gl_FragColor = pack2HalfToRGBA( vec2( mean, std_dev ) );
|
||
}`;function Um(i,t,e){let n=new Ka;const s=new gt,r=new gt,a=new oe,o=new tu({depthPacking:ch}),l=new eu,c={},h=e.maxTextureSize,d={[zn]:Be,[Be]:zn,[cn]:cn},f=new Ie({defines:{VSM_SAMPLES:8},uniforms:{shadow_pass:{value:null},resolution:{value:new gt},radius:{value:4}},vertexShader:Dm,fragmentShader:Lm}),m=f.clone();m.defines.HORIZONTAL_PASS=1;const g=new Ee;g.setAttribute("position",new Se(new Float32Array([-1,-1,.5,3,-1,.5,-1,3,.5]),3));const x=new ye(g,f),p=this;this.enabled=!1,this.autoUpdate=!0,this.needsUpdate=!1,this.type=Ul;let u=this.type;this.render=function(A,w,N){if(p.enabled===!1||p.autoUpdate===!1&&p.needsUpdate===!1||A.length===0)return;const y=i.getRenderTarget(),M=i.getActiveCubeFace(),C=i.getActiveMipmapLevel(),W=i.state;W.setBlending(Tn),W.buffers.color.setClear(1,1,1,1),W.buffers.depth.setTest(!0),W.setScissorTest(!1);const z=u!==yn&&this.type===yn,V=u===yn&&this.type!==yn;for(let K=0,G=A.length;K<G;K++){const $=A[K],H=$.shadow;if(H===void 0){console.warn("THREE.WebGLShadowMap:",$,"has no shadow.");continue}if(H.autoUpdate===!1&&H.needsUpdate===!1)continue;s.copy(H.mapSize);const nt=H.getFrameExtents();if(s.multiply(nt),r.copy(H.mapSize),(s.x>h||s.y>h)&&(s.x>h&&(r.x=Math.floor(h/nt.x),s.x=r.x*nt.x,H.mapSize.x=r.x),s.y>h&&(r.y=Math.floor(h/nt.y),s.y=r.y*nt.y,H.mapSize.y=r.y)),H.map===null||z===!0||V===!0){const Mt=this.type!==yn?{minFilter:Xe,magFilter:Xe}:{};H.map!==null&&H.map.dispose(),H.map=new an(s.x,s.y,Mt),H.map.texture.name=$.name+".shadowMap",H.camera.updateProjectionMatrix()}i.setRenderTarget(H.map),i.clear();const dt=H.getViewportCount();for(let Mt=0;Mt<dt;Mt++){const Ft=H.getViewport(Mt);a.set(r.x*Ft.x,r.y*Ft.y,r.x*Ft.z,r.y*Ft.w),W.viewport(a),H.updateMatrices($,Mt),n=H.getFrustum(),S(w,N,H.camera,$,this.type)}H.isPointLightShadow!==!0&&this.type===yn&&b(H,N),H.needsUpdate=!1}u=this.type,p.needsUpdate=!1,i.setRenderTarget(y,M,C)};function b(A,w){const N=t.update(x);f.defines.VSM_SAMPLES!==A.blurSamples&&(f.defines.VSM_SAMPLES=A.blurSamples,m.defines.VSM_SAMPLES=A.blurSamples,f.needsUpdate=!0,m.needsUpdate=!0),A.mapPass===null&&(A.mapPass=new an(s.x,s.y)),f.uniforms.shadow_pass.value=A.map.texture,f.uniforms.resolution.value=A.mapSize,f.uniforms.radius.value=A.radius,i.setRenderTarget(A.mapPass),i.clear(),i.renderBufferDirect(w,null,N,f,x,null),m.uniforms.shadow_pass.value=A.mapPass.texture,m.uniforms.resolution.value=A.mapSize,m.uniforms.radius.value=A.radius,i.setRenderTarget(A.map),i.clear(),i.renderBufferDirect(w,null,N,m,x,null)}function E(A,w,N,y){let M=null;const C=N.isPointLight===!0?A.customDistanceMaterial:A.customDepthMaterial;if(C!==void 0)M=C;else if(M=N.isPointLight===!0?l:o,i.localClippingEnabled&&w.clipShadows===!0&&Array.isArray(w.clippingPlanes)&&w.clippingPlanes.length!==0||w.displacementMap&&w.displacementScale!==0||w.alphaMap&&w.alphaTest>0||w.map&&w.alphaTest>0){const W=M.uuid,z=w.uuid;let V=c[W];V===void 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q=_.textures;for(let Z=0;Z<q.length;Z++){const X=q[Z],yt=r.convert(X.format,X.colorSpace),at=r.convert(X.type),ft=E(X.internalFormat,yt,at,X.colorSpace),Xt=Vt(_);F&&Wt(_)===!1?i.renderbufferStorageMultisample(i.RENDERBUFFER,Xt,ft,_.width,_.height):Wt(_)?o.renderbufferStorageMultisampleEXT(i.RENDERBUFFER,Xt,ft,_.width,_.height):i.renderbufferStorage(i.RENDERBUFFER,ft,_.width,_.height)}}i.bindRenderbuffer(i.RENDERBUFFER,null)}function Rt(T,_){if(_&&_.isWebGLCubeRenderTarget)throw new Error("Depth Texture with cube render targets is not supported");if(e.bindFramebuffer(i.FRAMEBUFFER,T),!(_.depthTexture&&_.depthTexture.isDepthTexture))throw new Error("renderTarget.depthTexture must be an instance of THREE.DepthTexture");const q=n.get(_.depthTexture);q.__renderTarget=_,(!q.__webglTexture||_.depthTexture.image.width!==_.width||_.depthTexture.image.height!==_.height)&&(_.depthTexture.image.width=_.width,_.depthTexture.image.height=_.height,_.depthTexture.needsUpdate=!0),K(_.depthTexture,0);const Z=q.__webglTexture,X=Vt(_);if(_.depthTexture.format===Ui)Wt(_)?o.framebufferTexture2DMultisampleEXT(i.FRAMEBUFFER,i.DEPTH_ATTACHMENT,i.TEXTURE_2D,Z,0,X):i.framebufferTexture2D(i.FRAMEBUFFER,i.DEPTH_ATTACHMENT,i.TEXTURE_2D,Z,0);else if(_.depthTexture.format===zi)Wt(_)?o.framebufferTexture2DMultisampleEXT(i.FRAMEBUFFER,i.DEPTH_STENCIL_ATTACHMENT,i.TEXTURE_2D,Z,0,X):i.framebufferTexture2D(i.FRAMEBUFFER,i.DEPTH_STENCIL_ATTACHMENT,i.TEXTURE_2D,Z,0);else throw new Error("Unknown depthTexture format")}function it(T){const _=n.get(T),F=T.isWebGLCubeRenderTarget===!0;if(_.__boundDepthTexture!==T.depthTexture){const q=T.depthTexture;if(_.__depthDisposeCallback&&_.__depthDisposeCallback(),q){const Z=()=>{delete _.__boundDepthTexture,delete _.__depthDisposeCallback,q.removeEventListener("dispose",Z)};q.addEventListener("dispose",Z),_.__depthDisposeCallback=Z}_.__boundDepthTexture=q}if(T.depthTexture&&!_.__autoAllocateDepthBuffer){if(F)throw new Error("target.depthTexture not supported in Cube render targets");Rt(_.__webglFramebuffer,T)}else if(F){_.__webglDepthbuffer=[];for(let q=0;q<6;q++)if(e.bindFramebuffer(i.FRAMEBUFFER,_.__webglFramebuffer[q]),_.__webglDepthbuffer[q]===void 0)_.__webglDepthbuffer[q]=i.createRenderbuffer(),lt(_.__webglDepthbuffer[q],T,!1);else{const Z=T.stencilBuffer?i.DEPTH_STENCIL_ATTACHMENT:i.DEPTH_ATTACHMENT,X=_.__webglDepthbuffer[q];i.bindRenderbuffer(i.RENDERBUFFER,X),i.framebufferRenderbuffer(i.FRAMEBUFFER,Z,i.RENDERBUFFER,X)}}else if(e.bindFramebuffer(i.FRAMEBUFFER,_.__webglFramebuffer),_.__webglDepthbuffer===void 0)_.__webglDepthbuffer=i.createRenderbuffer(),lt(_.__webglDepthbuffer,T,!1);else{const q=T.stencilBuffer?i.DEPTH_STENCIL_ATTACHMENT:i.DEPTH_ATTACHMENT,Z=_.__webglDepthbuffer;i.bindRenderbuffer(i.RENDERBUFFER,Z),i.framebufferRenderbuffer(i.FRAMEBUFFER,q,i.RENDERBUFFER,Z)}e.bindFramebuffer(i.FRAMEBUFFER,null)}function Tt(T,_,F){const q=n.get(T);_!==void 0&&vt(q.__webglFramebuffer,T,T.texture,i.COLOR_ATTACHMENT0,i.TEXTURE_2D,0),F!==void 0&&it(T)}function qt(T){const _=T.texture,F=n.get(T),q=n.get(_);T.addEventListener("dispose",w);const Z=T.textures,X=T.isWebGLCubeRenderTarget===!0,yt=Z.length>1;if(yt||(q.__webglTexture===void 0&&(q.__webglTexture=i.createTexture()),q.__version=_.version,a.memory.textures++),X){F.__webglFramebuffer=[];for(let at=0;at<6;at++)if(_.mipmaps&&_.mipmaps.length>0){F.__webglFramebuffer[at]=[];for(let ft=0;ft<_.mipmaps.length;ft++)F.__webglFramebuffer[at][ft]=i.createFramebuffer()}else F.__webglFramebuffer[at]=i.createFramebuffer()}else{if(_.mipmaps&&_.mipmaps.length>0){F.__webglFramebuffer=[];for(let at=0;at<_.mipmaps.length;at++)F.__webglFramebuffer[at]=i.createFramebuffer()}else F.__webglFramebuffer=i.createFramebuffer();if(yt)for(let at=0,ft=Z.length;at<ft;at++){const Xt=n.get(Z[at]);Xt.__webglTexture===void 0&&(Xt.__webglTexture=i.createTexture(),a.memory.textures++)}if(T.samples>0&&Wt(T)===!1){F.__webglMultisampledFramebuffer=i.createFramebuffer(),F.__webglColorRenderbuffer=[],e.bindFramebuffer(i.FRAMEBUFFER,F.__webglMultisampledFramebuffer);for(let at=0;at<Z.length;at++){const ft=Z[at];F.__webglColorRenderbuffer[at]=i.createRenderbuffer(),i.bindRenderbuffer(i.RENDERBUFFER,F.__webglColorRenderbuffer[at]);const Xt=r.convert(ft.format,ft.colorSpace),Q=r.convert(ft.type),pt=E(ft.internalFormat,Xt,Q,ft.colorSpace,T.isXRRenderTarget===!0),bt=Vt(T);i.renderbufferStorageMultisample(i.RENDERBUFFER,bt,pt,T.width,T.height),i.framebufferRenderbuffer(i.FRAMEBUFFER,i.COLOR_ATTACHMENT0+at,i.RENDERBUFFER,F.__webglColorRenderbuffer[at])}i.bindRenderbuffer(i.RENDERBUFFER,null),T.depthBuffer&&(F.__webglDepthRenderbuffer=i.createRenderbuffer(),lt(F.__webglDepthRenderbuffer,T,!0)),e.bindFramebuffer(i.FRAMEBUFFER,null)}}if(X){e.bindTexture(i.TEXTURE_CUBE_MAP,q.__webglTexture),Ft(i.TEXTURE_CUBE_MAP,_);for(let at=0;at<6;at++)if(_.mipmaps&&_.mipmaps.length>0)for(let ft=0;ft<_.mipmaps.length;ft++)vt(F.__webglFramebuffer[at][ft],T,_,i.COLOR_ATTACHMENT0,i.TEXTURE_CUBE_MAP_POSITIVE_X+at,ft);else vt(F.__webglFramebuffer[at],T,_,i.COLOR_ATTACHMENT0,i.TEXTURE_CUBE_MAP_POSITIVE_X+at,0);p(_)&&u(i.TEXTURE_CUBE_MAP),e.unbindTexture()}else if(yt){for(let at=0,ft=Z.length;at<ft;at++){const Xt=Z[at],Q=n.get(Xt);e.bindTexture(i.TEXTURE_2D,Q.__webglTexture),Ft(i.TEXTURE_2D,Xt),vt(F.__webglFramebuffer,T,Xt,i.COLOR_ATTACHMENT0+at,i.TEXTURE_2D,0),p(Xt)&&u(i.TEXTURE_2D)}e.unbindTexture()}else{let at=i.TEXTURE_2D;if((T.isWebGL3DRenderTarget||T.isWebGLArrayRenderTarget)&&(at=T.isWebGL3DRenderTarget?i.TEXTURE_3D:i.TEXTURE_2D_ARRAY),e.bindTexture(at,q.__webglTexture),Ft(at,_),_.mipmaps&&_.mipmaps.length>0)for(let ft=0;ft<_.mipmaps.length;ft++)vt(F.__webglFramebuffer[ft],T,_,i.COLOR_ATTACHMENT0,at,ft);else vt(F.__webglFramebuffer,T,_,i.COLOR_ATTACHMENT0,at,0);p(_)&&u(at),e.unbindTexture()}T.depthBuffer&&it(T)}function Ht(T){const _=T.textures;for(let F=0,q=_.length;F<q;F++){const Z=_[F];if(p(Z)){const X=b(T),yt=n.get(Z).__webglTexture;e.bindTexture(X,yt),u(X),e.unbindTexture()}}}const Jt=[],R=[];function _e(T){if(T.samples>0){if(Wt(T)===!1){const _=T.textures,F=T.width,q=T.height;let Z=i.COLOR_BUFFER_BIT;const X=T.stencilBuffer?i.DEPTH_STENCIL_ATTACHMENT:i.DEPTH_ATTACHMENT,yt=n.get(T),at=_.length>1;if(at)for(let ft=0;ft<_.length;ft++)e.bindFramebuffer(i.FRAMEBUFFER,yt.__webglMultisampledFramebuffer),i.framebufferRenderbuffer(i.FRAMEBUFFER,i.COLOR_ATTACHMENT0+ft,i.RENDERBUFFER,null),e.bindFramebuffer(i.FRAMEBUFFER,yt.__webglFramebuffer),i.framebufferTexture2D(i.DRAW_FRAMEBUFFER,i.COLOR_ATTACHMENT0+ft,i.TEXTURE_2D,null,0);e.bindFramebuffer(i.READ_FRAMEBUFFER,yt.__webglMultisampledFramebuffer),e.bindFramebuffer(i.DRAW_FRAMEBUFFER,yt.__webglFramebuffer);for(let ft=0;ft<_.length;ft++){if(T.resolveDepthBuffer&&(T.depthBuffer&&(Z|=i.DEPTH_BUFFER_BIT),T.stencilBuffer&&T.resolveStencilBuffer&&(Z|=i.STENCIL_BUFFER_BIT)),at){i.framebufferRenderbuffer(i.READ_FRAMEBUFFER,i.COLOR_ATTACHMENT0,i.RENDERBUFFER,yt.__webglColorRenderbuffer[ft]);const Xt=n.get(_[ft]).__webglTexture;i.framebufferTexture2D(i.DRAW_FRAMEBUFFER,i.COLOR_ATTACHMENT0,i.TEXTURE_2D,Xt,0)}i.blitFramebuffer(0,0,F,q,0,0,F,q,Z,i.NEAREST),l===!0&&(Jt.length=0,R.length=0,Jt.push(i.COLOR_ATTACHMENT0+ft),T.depthBuffer&&T.resolveDepthBuffer===!1&&(Jt.push(X),R.push(X),i.invalidateFramebuffer(i.DRAW_FRAMEBUFFER,R)),i.invalidateFramebuffer(i.READ_FRAMEBUFFER,Jt))}if(e.bindFramebuffer(i.READ_FRAMEBUFFER,null),e.bindFramebuffer(i.DRAW_FRAMEBUFFER,null),at)for(let ft=0;ft<_.length;ft++){e.bindFramebuffer(i.FRAMEBUFFER,yt.__webglMultisampledFramebuffer),i.framebufferRenderbuffer(i.FRAMEBUFFER,i.COLOR_ATTACHMENT0+ft,i.RENDERBUFFER,yt.__webglColorRenderbuffer[ft]);const Xt=n.get(_[ft]).__webglTexture;e.bindFramebuffer(i.FRAMEBUFFER,yt.__webglFramebuffer),i.framebufferTexture2D(i.DRAW_FRAMEBUFFER,i.COLOR_ATTACHMENT0+ft,i.TEXTURE_2D,Xt,0)}e.bindFramebuffer(i.DRAW_FRAMEBUFFER,yt.__webglMultisampledFramebuffer)}else if(T.depthBuffer&&T.resolveDepthBuffer===!1&&l){const _=T.stencilBuffer?i.DEPTH_STENCIL_ATTACHMENT:i.DEPTH_ATTACHMENT;i.invalidateFramebuffer(i.DRAW_FRAMEBUFFER,[_])}}}function Vt(T){return Math.min(s.maxSamples,T.samples)}function Wt(T){const _=n.get(T);return T.samples>0&&t.has("WEBGL_multisampled_render_to_texture")===!0&&_.__useRenderToTexture!==!1}function Et(T){const _=a.render.frame;h.get(T)!==_&&(h.set(T,_),T.update())}function le(T,_){const F=T.colorSpace,q=T.format,Z=T.type;return T.isCompressedTexture===!0||T.isVideoTexture===!0||F!==Hi&&F!==Fn&&($t.getTransfer(F)===se?(q!==rn||Z!==wn)&&console.warn("THREE.WebGLTextures: sRGB encoded textures have to use RGBAFormat and UnsignedByteType."):console.error("THREE.WebGLTextures: Unsupported texture color space:",F)),_}function St(T){return typeof HTMLImageElement<"u"&&T instanceof HTMLImageElement?(c.width=T.naturalWidth||T.width,c.height=T.naturalHeight||T.height):typeof VideoFrame<"u"&&T instanceof VideoFrame?(c.width=T.displayWidth,c.height=T.displayHeight):(c.width=T.width,c.height=T.height),c}this.allocateTextureUnit=z,this.resetTextureUnits=W,this.setTexture2D=K,this.setTexture2DArray=G,this.setTexture3D=$,this.setTextureCube=H,this.rebindTextures=Tt,this.setupRenderTarget=qt,this.updateRenderTargetMipmap=Ht,this.updateMultisampleRenderTarget=_e,this.setupDepthRenderbuffer=it,this.setupFrameBufferTexture=vt,this.useMultisampledRTT=Wt}function Om(i,t){function e(n,s=Fn){let r;const a=$t.getTransfer(s);if(n===wn)return i.UNSIGNED_BYTE;if(n===Ga)return i.UNSIGNED_SHORT_4_4_4_4;if(n===Wa)return i.UNSIGNED_SHORT_5_5_5_1;if(n===zl)return i.UNSIGNED_INT_5_9_9_9_REV;if(n===Ol)return i.BYTE;if(n===Bl)return i.SHORT;if(n===ss)return i.UNSIGNED_SHORT;if(n===Va)return i.INT;if(n===ei)return i.UNSIGNED_INT;if(n===dn)return i.FLOAT;if(n===bn)return i.HALF_FLOAT;if(n===Hl)return i.ALPHA;if(n===kl)return i.RGB;if(n===rn)return i.RGBA;if(n===Vl)return i.LUMINANCE;if(n===Gl)return i.LUMINANCE_ALPHA;if(n===Ui)return i.DEPTH_COMPONENT;if(n===zi)return i.DEPTH_STENCIL;if(n===Xa)return i.RED;if(n===Ya)return i.RED_INTEGER;if(n===Wl)return i.RG;if(n===qa)return i.RG_INTEGER;if(n===ja)return i.RGBA_INTEGER;if(n===ks||n===Vs||n===Gs||n===Ws)if(a===se)if(r=t.get("WEBGL_compressed_texture_s3tc_srgb"),r!==null){if(n===ks)return r.COMPRESSED_SRGB_S3TC_DXT1_EXT;if(n===Vs)return r.COMPRESSED_SRGB_ALPHA_S3TC_DXT1_EXT;if(n===Gs)return r.COMPRESSED_SRGB_ALPHA_S3TC_DXT3_EXT;if(n===Ws)return r.COMPRESSED_SRGB_ALPHA_S3TC_DXT5_EXT}else return null;else if(r=t.get("WEBGL_compressed_texture_s3tc"),r!==null){if(n===ks)return r.COMPRESSED_RGB_S3TC_DXT1_EXT;if(n===Vs)return r.COMPRESSED_RGBA_S3TC_DXT1_EXT;if(n===Gs)return r.COMPRESSED_RGBA_S3TC_DXT3_EXT;if(n===Ws)return r.COMPRESSED_RGBA_S3TC_DXT5_EXT}else return null;if(n===la||n===ca||n===ha||n===ua)if(r=t.get("WEBGL_compressed_texture_pvrtc"),r!==null){if(n===la)return r.COMPRESSED_RGB_PVRTC_4BPPV1_IMG;if(n===ca)return r.COMPRESSED_RGB_PVRTC_2BPPV1_IMG;if(n===ha)return r.COMPRESSED_RGBA_PVRTC_4BPPV1_IMG;if(n===ua)return r.COMPRESSED_RGBA_PVRTC_2BPPV1_IMG}else return null;if(n===da||n===fa||n===pa)if(r=t.get("WEBGL_compressed_texture_etc"),r!==null){if(n===da||n===fa)return a===se?r.COMPRESSED_SRGB8_ETC2:r.COMPRESSED_RGB8_ETC2;if(n===pa)return a===se?r.COMPRESSED_SRGB8_ALPHA8_ETC2_EAC:r.COMPRESSED_RGBA8_ETC2_EAC}else return null;if(n===ma||n===_a||n===ga||n===va||n===xa||n===Ma||n===Sa||n===ya||n===Ea||n===Ta||n===ba||n===Aa||n===wa||n===Ra)if(r=t.get("WEBGL_compressed_texture_astc"),r!==null){if(n===ma)return a===se?r.COMPRESSED_SRGB8_ALPHA8_ASTC_4x4_KHR:r.COMPRESSED_RGBA_ASTC_4x4_KHR;if(n===_a)return a===se?r.COMPRESSED_SRGB8_ALPHA8_ASTC_5x4_KHR:r.COMPRESSED_RGBA_ASTC_5x4_KHR;if(n===ga)return a===se?r.COMPRESSED_SRGB8_ALPHA8_ASTC_5x5_KHR:r.COMPRESSED_RGBA_ASTC_5x5_KHR;if(n===va)return a===se?r.COMPRESSED_SRGB8_ALPHA8_ASTC_6x5_KHR:r.COMPRESSED_RGBA_ASTC_6x5_KHR;if(n===xa)return a===se?r.COMPRESSED_SRGB8_ALPHA8_ASTC_6x6_KHR:r.COMPRESSED_RGBA_ASTC_6x6_KHR;if(n===Ma)return a===se?r.COMPRESSED_SRGB8_ALPHA8_ASTC_8x5_KHR:r.COMPRESSED_RGBA_ASTC_8x5_KHR;if(n===Sa)return a===se?r.COMPRESSED_SRGB8_ALPHA8_ASTC_8x6_KHR:r.COMPRESSED_RGBA_ASTC_8x6_KHR;if(n===ya)return a===se?r.COMPRESSED_SRGB8_ALPHA8_ASTC_8x8_KHR:r.COMPRESSED_RGBA_ASTC_8x8_KHR;if(n===Ea)return a===se?r.COMPRESSED_SRGB8_ALPHA8_ASTC_10x5_KHR:r.COMPRESSED_RGBA_ASTC_10x5_KHR;if(n===Ta)return a===se?r.COMPRESSED_SRGB8_ALPHA8_ASTC_10x6_KHR:r.COMPRESSED_RGBA_ASTC_10x6_KHR;if(n===ba)return a===se?r.COMPRESSED_SRGB8_ALPHA8_ASTC_10x8_KHR:r.COMPRESSED_RGBA_ASTC_10x8_KHR;if(n===Aa)return a===se?r.COMPRESSED_SRGB8_ALPHA8_ASTC_10x10_KHR:r.COMPRESSED_RGBA_ASTC_10x10_KHR;if(n===wa)return a===se?r.COMPRESSED_SRGB8_ALPHA8_ASTC_12x10_KHR:r.COMPRESSED_RGBA_ASTC_12x10_KHR;if(n===Ra)return a===se?r.COMPRESSED_SRGB8_ALPHA8_ASTC_12x12_KHR:r.COMPRESSED_RGBA_ASTC_12x12_KHR}else return null;if(n===Xs||n===Ca||n===Pa)if(r=t.get("EXT_texture_compression_bptc"),r!==null){if(n===Xs)return a===se?r.COMPRESSED_SRGB_ALPHA_BPTC_UNORM_EXT:r.COMPRESSED_RGBA_BPTC_UNORM_EXT;if(n===Ca)return r.COMPRESSED_RGB_BPTC_SIGNED_FLOAT_EXT;if(n===Pa)return r.COMPRESSED_RGB_BPTC_UNSIGNED_FLOAT_EXT}else return null;if(n===Xl||n===Da||n===La||n===Ua)if(r=t.get("EXT_texture_compression_rgtc"),r!==null){if(n===Xs)return r.COMPRESSED_RED_RGTC1_EXT;if(n===Da)return r.COMPRESSED_SIGNED_RED_RGTC1_EXT;if(n===La)return r.COMPRESSED_RED_GREEN_RGTC2_EXT;if(n===Ua)return r.COMPRESSED_SIGNED_RED_GREEN_RGTC2_EXT}else return null;return n===Bi?i.UNSIGNED_INT_24_8:i[n]!==void 0?i[n]:null}return{convert:e}}const Bm={type:"move"};class Xr{constructor(){this._targetRay=null,this._grip=null,this._hand=null}getHandSpace(){return this._hand===null&&(this._hand=new Ci,this._hand.matrixAutoUpdate=!1,this._hand.visible=!1,this._hand.joints={},this._hand.inputState={pinching:!1}),this._hand}getTargetRaySpace(){return this._targetRay===null&&(this._targetRay=new Ci,this._targetRay.matrixAutoUpdate=!1,this._targetRay.visible=!1,this._targetRay.hasLinearVelocity=!1,this._targetRay.linearVelocity=new P,this._targetRay.hasAngularVelocity=!1,this._targetRay.angularVelocity=new P),this._targetRay}getGripSpace(){return this._grip===null&&(this._grip=new Ci,this._grip.matrixAutoUpdate=!1,this._grip.visible=!1,this._grip.hasLinearVelocity=!1,this._grip.linearVelocity=new P,this._grip.hasAngularVelocity=!1,this._grip.angularVelocity=new P),this._grip}dispatchEvent(t){return this._targetRay!==null&&this._targetRay.dispatchEvent(t),this._grip!==null&&this._grip.dispatchEvent(t),this._hand!==null&&this._hand.dispatchEvent(t),this}connect(t){if(t&&t.hand){const e=this._hand;if(e)for(const n of t.hand.values())this._getHandJoint(e,n)}return this.dispatchEvent({type:"connected",data:t}),this}disconnect(t){return this.dispatchEvent({type:"disconnected",data:t}),this._targetRay!==null&&(this._targetRay.visible=!1),this._grip!==null&&(this._grip.visible=!1),this._hand!==null&&(this._hand.visible=!1),this}update(t,e,n){let s=null,r=null,a=null;const o=this._targetRay,l=this._grip,c=this._hand;if(t&&e.session.visibilityState!=="visible-blurred"){if(c&&t.hand){a=!0;for(const x of t.hand.values()){const p=e.getJointPose(x,n),u=this._getHandJoint(c,x);p!==null&&(u.matrix.fromArray(p.transform.matrix),u.matrix.decompose(u.position,u.rotation,u.scale),u.matrixWorldNeedsUpdate=!0,u.jointRadius=p.radius),u.visible=p!==null}const h=c.joints["index-finger-tip"],d=c.joints["thumb-tip"],f=h.position.distanceTo(d.position),m=.02,g=.005;c.inputState.pinching&&f>m+g?(c.inputState.pinching=!1,this.dispatchEvent({type:"pinchend",handedness:t.handedness,target:this})):!c.inputState.pinching&&f<=m-g&&(c.inputState.pinching=!0,this.dispatchEvent({type:"pinchstart",handedness:t.handedness,target:this}))}else l!==null&&t.gripSpace&&(r=e.getPose(t.gripSpace,n),r!==null&&(l.matrix.fromArray(r.transform.matrix),l.matrix.decompose(l.position,l.rotation,l.scale),l.matrixWorldNeedsUpdate=!0,r.linearVelocity?(l.hasLinearVelocity=!0,l.linearVelocity.copy(r.linearVelocity)):l.hasLinearVelocity=!1,r.angularVelocity?(l.hasAngularVelocity=!0,l.angularVelocity.copy(r.angularVelocity)):l.hasAngularVelocity=!1));o!==null&&(s=e.getPose(t.targetRaySpace,n),s===null&&r!==null&&(s=r),s!==null&&(o.matrix.fromArray(s.transform.matrix),o.matrix.decompose(o.position,o.rotation,o.scale),o.matrixWorldNeedsUpdate=!0,s.linearVelocity?(o.hasLinearVelocity=!0,o.linearVelocity.copy(s.linearVelocity)):o.hasLinearVelocity=!1,s.angularVelocity?(o.hasAngularVelocity=!0,o.angularVelocity.copy(s.angularVelocity)):o.hasAngularVelocity=!1,this.dispatchEvent(Bm)))}return o!==null&&(o.visible=s!==null),l!==null&&(l.visible=r!==null),c!==null&&(c.visible=a!==null),this}_getHandJoint(t,e){if(t.joints[e.jointName]===void 0){const n=new Ci;n.matrixAutoUpdate=!1,n.visible=!1,t.joints[e.jointName]=n,t.add(n)}return t.joints[e.jointName]}}const zm=`
|
||
void main() {
|
||
|
||
gl_Position = vec4( position, 1.0 );
|
||
|
||
}`,Hm=`
|
||
uniform sampler2DArray depthColor;
|
||
uniform float depthWidth;
|
||
uniform float depthHeight;
|
||
|
||
void main() {
|
||
|
||
vec2 coord = vec2( gl_FragCoord.x / depthWidth, gl_FragCoord.y / depthHeight );
|
||
|
||
if ( coord.x >= 1.0 ) {
|
||
|
||
gl_FragDepth = texture( depthColor, vec3( coord.x - 1.0, coord.y, 1 ) ).r;
|
||
|
||
} else {
|
||
|
||
gl_FragDepth = texture( depthColor, vec3( coord.x, coord.y, 0 ) ).r;
|
||
|
||
}
|
||
|
||
}`;class km{constructor(){this.texture=null,this.mesh=null,this.depthNear=0,this.depthFar=0}init(t,e,n){if(this.texture===null){const s=new Ce,r=t.properties.get(s);r.__webglTexture=e.texture,(e.depthNear!==n.depthNear||e.depthFar!==n.depthFar)&&(this.depthNear=e.depthNear,this.depthFar=e.depthFar),this.texture=s}}getMesh(t){if(this.texture!==null&&this.mesh===null){const e=t.cameras[0].viewport,n=new Ie({vertexShader:zm,fragmentShader:Hm,uniforms:{depthColor:{value:this.texture},depthWidth:{value:e.z},depthHeight:{value:e.w}}});this.mesh=new ye(new os(20,20),n)}return this.mesh}reset(){this.texture=null,this.mesh=null}getDepthTexture(){return this.texture}}class Vm extends ii{constructor(t,e){super();const n=this;let s=null,r=1,a=null,o="local-floor",l=1,c=null,h=null,d=null,f=null,m=null,g=null;const x=new km,p=e.getContextAttributes();let u=null,b=null;const E=[],S=[],D=new gt;let A=null;const w=new We;w.viewport=new oe;const N=new We;N.viewport=new oe;const y=[w,N],M=new ru;let C=null,W=null;this.cameraAutoUpdate=!0,this.enabled=!1,this.isPresenting=!1,this.getController=function(Y){let et=E[Y];return et===void 0&&(et=new Xr,E[Y]=et),et.getTargetRaySpace()},this.getControllerGrip=function(Y){let et=E[Y];return et===void 0&&(et=new Xr,E[Y]=et),et.getGripSpace()},this.getHand=function(Y){let et=E[Y];return et===void 0&&(et=new Xr,E[Y]=et),et.getHandSpace()};function z(Y){const et=S.indexOf(Y.inputSource);if(et===-1)return;const vt=E[et];vt!==void 0&&(vt.update(Y.inputSource,Y.frame,c||a),vt.dispatchEvent({type:Y.type,data:Y.inputSource}))}function V(){s.removeEventListener("select",z),s.removeEventListener("selectstart",z),s.removeEventListener("selectend",z),s.removeEventListener("squeeze",z),s.removeEventListener("squeezestart",z),s.removeEventListener("squeezeend",z),s.removeEventListener("end",V),s.removeEventListener("inputsourceschange",K);for(let Y=0;Y<E.length;Y++){const et=S[Y];et!==null&&(S[Y]=null,E[Y].disconnect(et))}C=null,W=null,x.reset(),t.setRenderTarget(u),m=null,f=null,d=null,s=null,b=null,Yt.stop(),n.isPresenting=!1,t.setPixelRatio(A),t.setSize(D.width,D.height,!1),n.dispatchEvent({type:"sessionend"})}this.setFramebufferScaleFactor=function(Y){r=Y,n.isPresenting===!0&&console.warn("THREE.WebXRManager: Cannot change framebuffer scale while presenting.")},this.setReferenceSpaceType=function(Y){o=Y,n.isPresenting===!0&&console.warn("THREE.WebXRManager: Cannot change reference space type while presenting.")},this.getReferenceSpace=function(){return c||a},this.setReferenceSpace=function(Y){c=Y},this.getBaseLayer=function(){return f!==null?f:m},this.getBinding=function(){return d},this.getFrame=function(){return g},this.getSession=function(){return s},this.setSession=async function(Y){if(s=Y,s!==null){if(u=t.getRenderTarget(),s.addEventListener("select",z),s.addEventListener("selectstart",z),s.addEventListener("selectend",z),s.addEventListener("squeeze",z),s.addEventListener("squeezestart",z),s.addEventListener("squeezeend",z),s.addEventListener("end",V),s.addEventListener("inputsourceschange",K),p.xrCompatible!==!0&&await e.makeXRCompatible(),A=t.getPixelRatio(),t.getSize(D),s.enabledFeatures!==void 0&&s.enabledFeatures.includes("layers")){let vt=null,lt=null,Rt=null;p.depth&&(Rt=p.stencil?e.DEPTH24_STENCIL8:e.DEPTH_COMPONENT24,vt=p.stencil?zi:Ui,lt=p.stencil?Bi:ei);const it={colorFormat:e.RGBA8,depthFormat:Rt,scaleFactor:r};d=new XRWebGLBinding(s,e),f=d.createProjectionLayer(it),s.updateRenderState({layers:[f]}),t.setPixelRatio(1),t.setSize(f.textureWidth,f.textureHeight,!1),b=new an(f.textureWidth,f.textureHeight,{format:rn,type:wn,depthTexture:new rc(f.textureWidth,f.textureHeight,lt,void 0,void 0,void 0,void 0,void 0,void 0,vt),stencilBuffer:p.stencil,colorSpace:t.outputColorSpace,samples:p.antialias?4:0,resolveDepthBuffer:f.ignoreDepthValues===!1})}else{const vt={antialias:p.antialias,alpha:!0,depth:p.depth,stencil:p.stencil,framebufferScaleFactor:r};m=new XRWebGLLayer(s,e,vt),s.updateRenderState({baseLayer:m}),t.setPixelRatio(1),t.setSize(m.framebufferWidth,m.framebufferHeight,!1),b=new an(m.framebufferWidth,m.framebufferHeight,{format:rn,type:wn,colorSpace:t.outputColorSpace,stencilBuffer:p.stencil})}b.isXRRenderTarget=!0,this.setFoveation(l),c=null,a=await s.requestReferenceSpace(o),Yt.setContext(s),Yt.start(),n.isPresenting=!0,n.dispatchEvent({type:"sessionstart"})}},this.getEnvironmentBlendMode=function(){if(s!==null)return s.environmentBlendMode},this.getDepthTexture=function(){return x.getDepthTexture()};function K(Y){for(let et=0;et<Y.removed.length;et++){const vt=Y.removed[et],lt=S.indexOf(vt);lt>=0&&(S[lt]=null,E[lt].disconnect(vt))}for(let et=0;et<Y.added.length;et++){const vt=Y.added[et];let lt=S.indexOf(vt);if(lt===-1){for(let it=0;it<E.length;it++)if(it>=S.length){S.push(vt),lt=it;break}else if(S[it]===null){S[it]=vt,lt=it;break}if(lt===-1)break}const Rt=E[lt];Rt&&Rt.connect(vt)}}const G=new P,$=new P;function H(Y,et,vt){G.setFromMatrixPosition(et.matrixWorld),$.setFromMatrixPosition(vt.matrixWorld);const lt=G.distanceTo($),Rt=et.projectionMatrix.elements,it=vt.projectionMatrix.elements,Tt=Rt[14]/(Rt[10]-1),qt=Rt[14]/(Rt[10]+1),Ht=(Rt[9]+1)/Rt[5],Jt=(Rt[9]-1)/Rt[5],R=(Rt[8]-1)/Rt[0],_e=(it[8]+1)/it[0],Vt=Tt*R,Wt=Tt*_e,Et=lt/(-R+_e),le=Et*-R;if(et.matrixWorld.decompose(Y.position,Y.quaternion,Y.scale),Y.translateX(le),Y.translateZ(Et),Y.matrixWorld.compose(Y.position,Y.quaternion,Y.scale),Y.matrixWorldInverse.copy(Y.matrixWorld).invert(),Rt[10]===-1)Y.projectionMatrix.copy(et.projectionMatrix),Y.projectionMatrixInverse.copy(et.projectionMatrixInverse);else{const St=Tt+Et,T=qt+Et,_=Vt-le,F=Wt+(lt-le),q=Ht*qt/T*St,Z=Jt*qt/T*St;Y.projectionMatrix.makePerspective(_,F,q,Z,St,T),Y.projectionMatrixInverse.copy(Y.projectionMatrix).invert()}}function nt(Y,et){et===null?Y.matrixWorld.copy(Y.matrix):Y.matrixWorld.multiplyMatrices(et.matrixWorld,Y.matrix),Y.matrixWorldInverse.copy(Y.matrixWorld).invert()}this.updateCamera=function(Y){if(s===null)return;let et=Y.near,vt=Y.far;x.texture!==null&&(x.depthNear>0&&(et=x.depthNear),x.depthFar>0&&(vt=x.depthFar)),M.near=N.near=w.near=et,M.far=N.far=w.far=vt,(C!==M.near||W!==M.far)&&(s.updateRenderState({depthNear:M.near,depthFar:M.far}),C=M.near,W=M.far),w.layers.mask=Y.layers.mask|2,N.layers.mask=Y.layers.mask|4,M.layers.mask=w.layers.mask|N.layers.mask;const lt=Y.parent,Rt=M.cameras;nt(M,lt);for(let it=0;it<Rt.length;it++)nt(Rt[it],lt);Rt.length===2?H(M,w,N):M.projectionMatrix.copy(w.projectionMatrix),dt(Y,M,lt)};function dt(Y,et,vt){vt===null?Y.matrix.copy(et.matrixWorld):(Y.matrix.copy(vt.matrixWorld),Y.matrix.invert(),Y.matrix.multiply(et.matrixWorld)),Y.matrix.decompose(Y.position,Y.quaternion,Y.scale),Y.updateMatrixWorld(!0),Y.projectionMatrix.copy(et.projectionMatrix),Y.projectionMatrixInverse.copy(et.projectionMatrixInverse),Y.isPerspectiveCamera&&(Y.fov=Na*2*Math.atan(1/Y.projectionMatrix.elements[5]),Y.zoom=1)}this.getCamera=function(){return M},this.getFoveation=function(){if(!(f===null&&m===null))return l},this.setFoveation=function(Y){l=Y,f!==null&&(f.fixedFoveation=Y),m!==null&&m.fixedFoveation!==void 0&&(m.fixedFoveation=Y)},this.hasDepthSensing=function(){return x.texture!==null},this.getDepthSensingMesh=function(){return x.getMesh(M)};let Mt=null;function Ft(Y,et){if(h=et.getViewerPose(c||a),g=et,h!==null){const vt=h.views;m!==null&&(t.setRenderTargetFramebuffer(b,m.framebuffer),t.setRenderTarget(b));let lt=!1;vt.length!==M.cameras.length&&(M.cameras.length=0,lt=!0);for(let it=0;it<vt.length;it++){const Tt=vt[it];let qt=null;if(m!==null)qt=m.getViewport(Tt);else{const Jt=d.getViewSubImage(f,Tt);qt=Jt.viewport,it===0&&(t.setRenderTargetTextures(b,Jt.colorTexture,f.ignoreDepthValues?void 0:Jt.depthStencilTexture),t.setRenderTarget(b))}let Ht=y[it];Ht===void 0&&(Ht=new We,Ht.layers.enable(it),Ht.viewport=new oe,y[it]=Ht),Ht.matrix.fromArray(Tt.transform.matrix),Ht.matrix.decompose(Ht.position,Ht.quaternion,Ht.scale),Ht.projectionMatrix.fromArray(Tt.projectionMatrix),Ht.projectionMatrixInverse.copy(Ht.projectionMatrix).invert(),Ht.viewport.set(qt.x,qt.y,qt.width,qt.height),it===0&&(M.matrix.copy(Ht.matrix),M.matrix.decompose(M.position,M.quaternion,M.scale)),lt===!0&&M.cameras.push(Ht)}const Rt=s.enabledFeatures;if(Rt&&Rt.includes("depth-sensing")){const it=d.getDepthInformation(vt[0]);it&&it.isValid&&it.texture&&x.init(t,it,s.renderState)}}for(let vt=0;vt<E.length;vt++){const lt=S[vt],Rt=E[vt];lt!==null&&Rt!==void 0&&Rt.update(lt,et,c||a)}Mt&&Mt(Y,et),et.detectedPlanes&&n.dispatchEvent({type:"planesdetected",data:et}),g=null}const Yt=new lc;Yt.setAnimationLoop(Ft),this.setAnimationLoop=function(Y){Mt=Y},this.dispose=function(){}}}const jn=new pn,Gm=new ee;function Wm(i,t){function e(p,u){p.matrixAutoUpdate===!0&&p.updateMatrix(),u.value.copy(p.matrix)}function n(p,u){u.color.getRGB(p.fogColor.value,tc(i)),u.isFog?(p.fogNear.value=u.near,p.fogFar.value=u.far):u.isFogExp2&&(p.fogDensity.value=u.density)}function s(p,u,b,E,S){u.isMeshBasicMaterial||u.isMeshLambertMaterial?r(p,u):u.isMeshToonMaterial?(r(p,u),d(p,u)):u.isMeshPhongMaterial?(r(p,u),h(p,u)):u.isMeshStandardMaterial?(r(p,u),f(p,u),u.isMeshPhysicalMaterial&&m(p,u,S)):u.isMeshMatcapMaterial?(r(p,u),g(p,u)):u.isMeshDepthMaterial?r(p,u):u.isMeshDistanceMaterial?(r(p,u),x(p,u)):u.isMeshNormalMaterial?r(p,u):u.isLineBasicMaterial?(a(p,u),u.isLineDashedMaterial&&o(p,u)):u.isPointsMaterial?l(p,u,b,E):u.isSpriteMaterial?c(p,u):u.isShadowMaterial?(p.color.value.copy(u.color),p.opacity.value=u.opacity):u.isShaderMaterial&&(u.uniformsNeedUpdate=!1)}function r(p,u){p.opacity.value=u.opacity,u.color&&p.diffuse.value.copy(u.color),u.emissive&&p.emissive.value.copy(u.emissive).multiplyScalar(u.emissiveIntensity),u.map&&(p.map.value=u.map,e(u.map,p.mapTransform)),u.alphaMap&&(p.alphaMap.value=u.alphaMap,e(u.alphaMap,p.alphaMapTransform)),u.bumpMap&&(p.bumpMap.value=u.bumpMap,e(u.bumpMap,p.bumpMapTransform),p.bumpScale.value=u.bumpScale,u.side===Be&&(p.bumpScale.value*=-1)),u.normalMap&&(p.normalMap.value=u.normalMap,e(u.normalMap,p.normalMapTransform),p.normalScale.value.copy(u.normalScale),u.side===Be&&p.normalScale.value.negate()),u.displacementMap&&(p.displacementMap.value=u.displacementMap,e(u.displacementMap,p.displacementMapTransform),p.displacementScale.value=u.displacementScale,p.displacementBias.value=u.displacementBias),u.emissiveMap&&(p.emissiveMap.value=u.emissiveMap,e(u.emissiveMap,p.emissiveMapTransform)),u.specularMap&&(p.specularMap.value=u.specularMap,e(u.specularMap,p.specularMapTransform)),u.alphaTest>0&&(p.alphaTest.value=u.alphaTest);const b=t.get(u),E=b.envMap,S=b.envMapRotation;E&&(p.envMap.value=E,jn.copy(S),jn.x*=-1,jn.y*=-1,jn.z*=-1,E.isCubeTexture&&E.isRenderTargetTexture===!1&&(jn.y*=-1,jn.z*=-1),p.envMapRotation.value.setFromMatrix4(Gm.makeRotationFromEuler(jn)),p.flipEnvMap.value=E.isCubeTexture&&E.isRenderTargetTexture===!1?-1:1,p.reflectivity.value=u.reflectivity,p.ior.value=u.ior,p.refractionRatio.value=u.refractionRatio),u.lightMap&&(p.lightMap.value=u.lightMap,p.lightMapIntensity.value=u.lightMapIntensity,e(u.lightMap,p.lightMapTransform)),u.aoMap&&(p.aoMap.value=u.aoMap,p.aoMapIntensity.value=u.aoMapIntensity,e(u.aoMap,p.aoMapTransform))}function a(p,u){p.diffuse.value.copy(u.color),p.opacity.value=u.opacity,u.map&&(p.map.value=u.map,e(u.map,p.mapTransform))}function o(p,u){p.dashSize.value=u.dashSize,p.totalSize.value=u.dashSize+u.gapSize,p.scale.value=u.scale}function l(p,u,b,E){p.diffuse.value.copy(u.color),p.opacity.value=u.opacity,p.size.value=u.size*b,p.scale.value=E*.5,u.map&&(p.map.value=u.map,e(u.map,p.uvTransform)),u.alphaMap&&(p.alphaMap.value=u.alphaMap,e(u.alphaMap,p.alphaMapTransform)),u.alphaTest>0&&(p.alphaTest.value=u.alphaTest)}function c(p,u){p.diffuse.value.copy(u.color),p.opacity.value=u.opacity,p.rotation.value=u.rotation,u.map&&(p.map.value=u.map,e(u.map,p.mapTransform)),u.alphaMap&&(p.alphaMap.value=u.alphaMap,e(u.alphaMap,p.alphaMapTransform)),u.alphaTest>0&&(p.alphaTest.value=u.alphaTest)}function h(p,u){p.specular.value.copy(u.specular),p.shininess.value=Math.max(u.shininess,1e-4)}function d(p,u){u.gradientMap&&(p.gradientMap.value=u.gradientMap)}function f(p,u){p.metalness.value=u.metalness,u.metalnessMap&&(p.metalnessMap.value=u.metalnessMap,e(u.metalnessMap,p.metalnessMapTransform)),p.roughness.value=u.roughness,u.roughnessMap&&(p.roughnessMap.value=u.roughnessMap,e(u.roughnessMap,p.roughnessMapTransform)),u.envMap&&(p.envMapIntensity.value=u.envMapIntensity)}function m(p,u,b){p.ior.value=u.ior,u.sheen>0&&(p.sheenColor.value.copy(u.sheenColor).multiplyScalar(u.sheen),p.sheenRoughness.value=u.sheenRoughness,u.sheenColorMap&&(p.sheenColorMap.value=u.sheenColorMap,e(u.sheenColorMap,p.sheenColorMapTransform)),u.sheenRoughnessMap&&(p.sheenRoughnessMap.value=u.sheenRoughnessMap,e(u.sheenRoughnessMap,p.sheenRoughnessMapTransform))),u.clearcoat>0&&(p.clearcoat.value=u.clearcoat,p.clearcoatRoughness.value=u.clearcoatRoughness,u.clearcoatMap&&(p.clearcoatMap.value=u.clearcoatMap,e(u.clearcoatMap,p.clearcoatMapTransform)),u.clearcoatRoughnessMap&&(p.clearcoatRoughnessMap.value=u.clearcoatRoughnessMap,e(u.clearcoatRoughnessMap,p.clearcoatRoughnessMapTransform)),u.clearcoatNormalMap&&(p.clearcoatNormalMap.value=u.clearcoatNormalMap,e(u.clearcoatNormalMap,p.clearcoatNormalMapTransform),p.clearcoatNormalScale.value.copy(u.clearcoatNormalScale),u.side===Be&&p.clearcoatNormalScale.value.negate())),u.dispersion>0&&(p.dispersion.value=u.dispersion),u.iridescence>0&&(p.iridescence.value=u.iridescence,p.iridescenceIOR.value=u.iridescenceIOR,p.iridescenceThicknessMinimum.value=u.iridescenceThicknessRange[0],p.iridescenceThicknessMaximum.value=u.iridescenceThicknessRange[1],u.iridescenceMap&&(p.iridescenceMap.value=u.iridescenceMap,e(u.iridescenceMap,p.iridescenceMapTransform)),u.iridescenceThicknessMap&&(p.iridescenceThicknessMap.value=u.iridescenceThicknessMap,e(u.iridescenceThicknessMap,p.iridescenceThicknessMapTransform))),u.transmission>0&&(p.transmission.value=u.transmission,p.transmissionSamplerMap.value=b.texture,p.transmissionSamplerSize.value.set(b.width,b.height),u.transmissionMap&&(p.transmissionMap.value=u.transmissionMap,e(u.transmissionMap,p.transmissionMapTransform)),p.thickness.value=u.thickness,u.thicknessMap&&(p.thicknessMap.value=u.thicknessMap,e(u.thicknessMap,p.thicknessMapTransform)),p.attenuationDistance.value=u.attenuationDistance,p.attenuationColor.value.copy(u.attenuationColor)),u.anisotropy>0&&(p.anisotropyVector.value.set(u.anisotropy*Math.cos(u.anisotropyRotation),u.anisotropy*Math.sin(u.anisotropyRotation)),u.anisotropyMap&&(p.anisotropyMap.value=u.anisotropyMap,e(u.anisotropyMap,p.anisotropyMapTransform))),p.specularIntensity.value=u.specularIntensity,p.specularColor.value.copy(u.specularColor),u.specularColorMap&&(p.specularColorMap.value=u.specularColorMap,e(u.specularColorMap,p.specularColorMapTransform)),u.specularIntensityMap&&(p.specularIntensityMap.value=u.specularIntensityMap,e(u.specularIntensityMap,p.specularIntensityMapTransform))}function g(p,u){u.matcap&&(p.matcap.value=u.matcap)}function x(p,u){const b=t.get(u).light;p.referencePosition.value.setFromMatrixPosition(b.matrixWorld),p.nearDistance.value=b.shadow.camera.near,p.farDistance.value=b.shadow.camera.far}return{refreshFogUniforms:n,refreshMaterialUniforms:s}}function Xm(i,t,e,n){let s={},r={},a=[];const o=i.getParameter(i.MAX_UNIFORM_BUFFER_BINDINGS);function l(b,E){const S=E.program;n.uniformBlockBinding(b,S)}function c(b,E){let S=s[b.id];S===void 0&&(g(b),S=h(b),s[b.id]=S,b.addEventListener("dispose",p));const D=E.program;n.updateUBOMapping(b,D);const A=t.render.frame;r[b.id]!==A&&(f(b),r[b.id]=A)}function h(b){const E=d();b.__bindingPointIndex=E;const S=i.createBuffer(),D=b.__size,A=b.usage;return i.bindBuffer(i.UNIFORM_BUFFER,S),i.bufferData(i.UNIFORM_BUFFER,D,A),i.bindBuffer(i.UNIFORM_BUFFER,null),i.bindBufferBase(i.UNIFORM_BUFFER,E,S),S}function d(){for(let b=0;b<o;b++)if(a.indexOf(b)===-1)return a.push(b),b;return console.error("THREE.WebGLRenderer: Maximum number of simultaneously usable uniforms groups reached."),0}function f(b){const E=s[b.id],S=b.uniforms,D=b.__cache;i.bindBuffer(i.UNIFORM_BUFFER,E);for(let A=0,w=S.length;A<w;A++){const N=Array.isArray(S[A])?S[A]:[S[A]];for(let y=0,M=N.length;y<M;y++){const C=N[y];if(m(C,A,y,D)===!0){const W=C.__offset,z=Array.isArray(C.value)?C.value:[C.value];let V=0;for(let K=0;K<z.length;K++){const G=z[K],$=x(G);typeof G=="number"||typeof G=="boolean"?(C.__data[0]=G,i.bufferSubData(i.UNIFORM_BUFFER,W+V,C.__data)):G.isMatrix3?(C.__data[0]=G.elements[0],C.__data[1]=G.elements[1],C.__data[2]=G.elements[2],C.__data[3]=0,C.__data[4]=G.elements[3],C.__data[5]=G.elements[4],C.__data[6]=G.elements[5],C.__data[7]=0,C.__data[8]=G.elements[6],C.__data[9]=G.elements[7],C.__data[10]=G.elements[8],C.__data[11]=0):(G.toArray(C.__data,V),V+=$.storage/Float32Array.BYTES_PER_ELEMENT)}i.bufferSubData(i.UNIFORM_BUFFER,W,C.__data)}}}i.bindBuffer(i.UNIFORM_BUFFER,null)}function m(b,E,S,D){const A=b.value,w=E+"_"+S;if(D[w]===void 0)return typeof A=="number"||typeof A=="boolean"?D[w]=A:D[w]=A.clone(),!0;{const N=D[w];if(typeof A=="number"||typeof A=="boolean"){if(N!==A)return D[w]=A,!0}else if(N.equals(A)===!1)return N.copy(A),!0}return!1}function g(b){const E=b.uniforms;let S=0;const D=16;for(let w=0,N=E.length;w<N;w++){const y=Array.isArray(E[w])?E[w]:[E[w]];for(let M=0,C=y.length;M<C;M++){const W=y[M],z=Array.isArray(W.value)?W.value:[W.value];for(let V=0,K=z.length;V<K;V++){const G=z[V],$=x(G),H=S%D,nt=H%$.boundary,dt=H+nt;S+=nt,dt!==0&&D-dt<$.storage&&(S+=D-dt),W.__data=new Float32Array($.storage/Float32Array.BYTES_PER_ELEMENT),W.__offset=S,S+=$.storage}}}const A=S%D;return A>0&&(S+=D-A),b.__size=S,b.__cache={},this}function x(b){const E={boundary:0,storage:0};return typeof b=="number"||typeof b=="boolean"?(E.boundary=4,E.storage=4):b.isVector2?(E.boundary=8,E.storage=8):b.isVector3||b.isColor?(E.boundary=16,E.storage=12):b.isVector4?(E.boundary=16,E.storage=16):b.isMatrix3?(E.boundary=48,E.storage=48):b.isMatrix4?(E.boundary=64,E.storage=64):b.isTexture?console.warn("THREE.WebGLRenderer: Texture samplers can not be part of an uniforms group."):console.warn("THREE.WebGLRenderer: Unsupported uniform value type.",b),E}function p(b){const E=b.target;E.removeEventListener("dispose",p);const S=a.indexOf(E.__bindingPointIndex);a.splice(S,1),i.deleteBuffer(s[E.id]),delete s[E.id],delete r[E.id]}function u(){for(const b in s)i.deleteBuffer(s[b]);a=[],s={},r={}}return{bind:l,update:c,dispose:u}}class Ym{constructor(t={}){const{canvas:e=Mh(),context:n=null,depth:s=!0,stencil:r=!1,alpha:a=!1,antialias:o=!1,premultipliedAlpha:l=!0,preserveDrawingBuffer:c=!1,powerPreference:h="default",failIfMajorPerformanceCaveat:d=!1,reverseDepthBuffer:f=!1}=t;this.isWebGLRenderer=!0;let m;if(n!==null){if(typeof WebGLRenderingContext<"u"&&n instanceof WebGLRenderingContext)throw new Error("THREE.WebGLRenderer: WebGL 1 is not supported since r163.");m=n.getContextAttributes().alpha}else m=a;const g=new Uint32Array(4),x=new Int32Array(4);let p=null,u=null;const b=[],E=[];this.domElement=e,this.debug={checkShaderErrors:!0,onShaderError:null},this.autoClear=!0,this.autoClearColor=!0,this.autoClearDepth=!0,this.autoClearStencil=!0,this.sortObjects=!0,this.clippingPlanes=[],this.localClippingEnabled=!1,this._outputColorSpace=$e,this.toneMapping=On,this.toneMappingExposure=1;const S=this;let D=!1,A=0,w=0,N=null,y=-1,M=null;const C=new oe,W=new oe;let z=null;const V=new xt(0);let K=0,G=e.width,$=e.height,H=1,nt=null,dt=null;const Mt=new oe(0,0,G,$),Ft=new oe(0,0,G,$);let Yt=!1;const Y=new Ka;let et=!1,vt=!1;this.transmissionResolutionScale=1;const lt=new ee,Rt=new ee,it=new P,Tt=new oe,qt={background:null,fog:null,environment:null,overrideMaterial:null,isScene:!0};let Ht=!1;function Jt(){return N===null?H:1}let R=n;function _e(v,U){return e.getContext(v,U)}try{const v={alpha:!0,depth:s,stencil:r,antialias:o,premultipliedAlpha:l,preserveDrawingBuffer:c,powerPreference:h,failIfMajorPerformanceCaveat:d};if("setAttribute"in e&&e.setAttribute("data-engine",`three.js r${ka}`),e.addEventListener("webglcontextlost",j,!1),e.addEventListener("webglcontextrestored",ct,!1),e.addEventListener("webglcontextcreationerror",ht,!1),R===null){const U="webgl2";if(R=_e(U,v),R===null)throw _e(U)?new Error("Error creating WebGL context with your selected attributes."):new Error("Error creating WebGL context.")}}catch(v){throw console.error("THREE.WebGLRenderer: "+v.message),v}let Vt,Wt,Et,le,St,T,_,F,q,Z,X,yt,at,ft,Xt,Q,pt,bt,Lt,st,Dt,Ct,jt,L;function ot(){Vt=new ep(R),Vt.init(),Ct=new Om(R,Vt),Wt=new Zf(R,Vt,t,Ct),Et=new Nm(R,Vt),Wt.reverseDepthBuffer&&f&&Et.buffers.depth.setReversed(!0),le=new sp(R),St=new ym,T=new Fm(R,Vt,Et,St,Wt,Ct,le),_=new $f(S),F=new tp(S),q=new hu(R),jt=new qf(R,q),Z=new np(R,q,le,jt),X=new ap(R,Z,q,le),Lt=new rp(R,Wt,T),Q=new Kf(St),yt=new Sm(S,_,F,Vt,Wt,jt,Q),at=new Wm(S,St),ft=new Tm,Xt=new Pm(Vt),bt=new Yf(S,_,F,Et,X,m,l),pt=new Um(S,X,Wt),L=new Xm(R,le,Wt,Et),st=new jf(R,Vt,le),Dt=new ip(R,Vt,le),le.programs=yt.programs,S.capabilities=Wt,S.extensions=Vt,S.properties=St,S.renderLists=ft,S.shadowMap=pt,S.state=Et,S.info=le}ot();const k=new Vm(S,R);this.xr=k,this.getContext=function(){return R},this.getContextAttributes=function(){return R.getContextAttributes()},this.forceContextLoss=function(){const v=Vt.get("WEBGL_lose_context");v&&v.loseContext()},this.forceContextRestore=function(){const v=Vt.get("WEBGL_lose_context");v&&v.restoreContext()},this.getPixelRatio=function(){return H},this.setPixelRatio=function(v){v!==void 0&&(H=v,this.setSize(G,$,!1))},this.getSize=function(v){return v.set(G,$)},this.setSize=function(v,U,O=!0){if(k.isPresenting){console.warn("THREE.WebGLRenderer: Can't change size while VR device is presenting.");return}G=v,$=U,e.width=Math.floor(v*H),e.height=Math.floor(U*H),O===!0&&(e.style.width=v+"px",e.style.height=U+"px"),this.setViewport(0,0,v,U)},this.getDrawingBufferSize=function(v){return v.set(G*H,$*H).floor()},this.setDrawingBufferSize=function(v,U,O){G=v,$=U,H=O,e.width=Math.floor(v*O),e.height=Math.floor(U*O),this.setViewport(0,0,v,U)},this.getCurrentViewport=function(v){return v.copy(C)},this.getViewport=function(v){return v.copy(Mt)},this.setViewport=function(v,U,O,B){v.isVector4?Mt.set(v.x,v.y,v.z,v.w):Mt.set(v,U,O,B),Et.viewport(C.copy(Mt).multiplyScalar(H).round())},this.getScissor=function(v){return v.copy(Ft)},this.setScissor=function(v,U,O,B){v.isVector4?Ft.set(v.x,v.y,v.z,v.w):Ft.set(v,U,O,B),Et.scissor(W.copy(Ft).multiplyScalar(H).round())},this.getScissorTest=function(){return Yt},this.setScissorTest=function(v){Et.setScissorTest(Yt=v)},this.setOpaqueSort=function(v){nt=v},this.setTransparentSort=function(v){dt=v},this.getClearColor=function(v){return v.copy(bt.getClearColor())},this.setClearColor=function(){bt.setClearColor.apply(bt,arguments)},this.getClearAlpha=function(){return bt.getClearAlpha()},this.setClearAlpha=function(){bt.setClearAlpha.apply(bt,arguments)},this.clear=function(v=!0,U=!0,O=!0){let B=0;if(v){let I=!1;if(N!==null){const J=N.texture.format;I=J===ja||J===qa||J===Ya}if(I){const J=N.texture.type,ut=J===wn||J===ei||J===ss||J===Bi||J===Ga||J===Wa,mt=bt.getClearColor(),_t=bt.getClearAlpha(),It=mt.r,Nt=mt.g,At=mt.b;ut?(g[0]=It,g[1]=Nt,g[2]=At,g[3]=_t,R.clearBufferuiv(R.COLOR,0,g)):(x[0]=It,x[1]=Nt,x[2]=At,x[3]=_t,R.clearBufferiv(R.COLOR,0,x))}else B|=R.COLOR_BUFFER_BIT}U&&(B|=R.DEPTH_BUFFER_BIT),O&&(B|=R.STENCIL_BUFFER_BIT,this.state.buffers.stencil.setMask(4294967295)),R.clear(B)},this.clearColor=function(){this.clear(!0,!1,!1)},this.clearDepth=function(){this.clear(!1,!0,!1)},this.clearStencil=function(){this.clear(!1,!1,!0)},this.dispose=function(){e.removeEventListener("webglcontextlost",j,!1),e.removeEventListener("webglcontextrestored",ct,!1),e.removeEventListener("webglcontextcreationerror",ht,!1),bt.dispose(),ft.dispose(),Xt.dispose(),St.dispose(),_.dispose(),F.dispose(),X.dispose(),jt.dispose(),L.dispose(),yt.dispose(),k.dispose(),k.removeEventListener("sessionstart",no),k.removeEventListener("sessionend",io),kn.stop()};function j(v){v.preventDefault(),console.log("THREE.WebGLRenderer: Context Lost."),D=!0}function ct(){console.log("THREE.WebGLRenderer: Context Restored."),D=!1;const v=le.autoReset,U=pt.enabled,O=pt.autoUpdate,B=pt.needsUpdate,I=pt.type;ot(),le.autoReset=v,pt.enabled=U,pt.autoUpdate=O,pt.needsUpdate=B,pt.type=I}function ht(v){console.error("THREE.WebGLRenderer: A WebGL context could not be created. Reason: ",v.statusMessage)}function Ot(v){const U=v.target;U.removeEventListener("dispose",Ot),he(U)}function he(v){Ae(v),St.remove(v)}function Ae(v){const U=St.get(v).programs;U!==void 0&&(U.forEach(function(O){yt.releaseProgram(O)}),v.isShaderMaterial&&yt.releaseShaderCache(v))}this.renderBufferDirect=function(v,U,O,B,I,J){U===null&&(U=qt);const ut=I.isMesh&&I.matrixWorld.determinant()<0,mt=_c(v,U,O,B,I);Et.setMaterial(B,ut);let _t=O.index,It=1;if(B.wireframe===!0){if(_t=Z.getWireframeAttribute(O),_t===void 0)return;It=2}const Nt=O.drawRange,At=O.attributes.position;let Zt=Nt.start*It,Qt=(Nt.start+Nt.count)*It;J!==null&&(Zt=Math.max(Zt,J.start*It),Qt=Math.min(Qt,(J.start+J.count)*It)),_t!==null?(Zt=Math.max(Zt,0),Qt=Math.min(Qt,_t.count)):At!=null&&(Zt=Math.max(Zt,0),Qt=Math.min(Qt,At.count));const fe=Qt-Zt;if(fe<0||fe===1/0)return;jt.setup(I,B,mt,O,_t);let ue,Kt=st;if(_t!==null&&(ue=q.get(_t),Kt=Dt,Kt.setIndex(ue)),I.isMesh)B.wireframe===!0?(Et.setLineWidth(B.wireframeLinewidth*Jt()),Kt.setMode(R.LINES)):Kt.setMode(R.TRIANGLES);else if(I.isLine){let wt=B.linewidth;wt===void 0&&(wt=1),Et.setLineWidth(wt*Jt()),I.isLineSegments?Kt.setMode(R.LINES):I.isLineLoop?Kt.setMode(R.LINE_LOOP):Kt.setMode(R.LINE_STRIP)}else I.isPoints?Kt.setMode(R.POINTS):I.isSprite&&Kt.setMode(R.TRIANGLES);if(I.isBatchedMesh)if(I._multiDrawInstances!==null)Kt.renderMultiDrawInstances(I._multiDrawStarts,I._multiDrawCounts,I._multiDrawCount,I._multiDrawInstances);else if(Vt.get("WEBGL_multi_draw"))Kt.renderMultiDraw(I._multiDrawStarts,I._multiDrawCounts,I._multiDrawCount);else{const wt=I._multiDrawStarts,Te=I._multiDrawCounts,te=I._multiDrawCount,tn=_t?q.get(_t).bytesPerElement:1,ai=St.get(B).currentProgram.getUniforms();for(let ze=0;ze<te;ze++)ai.setValue(R,"_gl_DrawID",ze),Kt.render(wt[ze]/tn,Te[ze])}else if(I.isInstancedMesh)Kt.renderInstances(Zt,fe,I.count);else if(O.isInstancedBufferGeometry){const wt=O._maxInstanceCount!==void 0?O._maxInstanceCount:1/0,Te=Math.min(O.instanceCount,wt);Kt.renderInstances(Zt,fe,Te)}else Kt.render(Zt,fe)};function ne(v,U,O){v.transparent===!0&&v.side===cn&&v.forceSinglePass===!1?(v.side=Be,v.needsUpdate=!0,hs(v,U,O),v.side=zn,v.needsUpdate=!0,hs(v,U,O),v.side=cn):hs(v,U,O)}this.compile=function(v,U,O=null){O===null&&(O=v),u=Xt.get(O),u.init(U),E.push(u),O.traverseVisible(function(I){I.isLight&&I.layers.test(U.layers)&&(u.pushLight(I),I.castShadow&&u.pushShadow(I))}),v!==O&&v.traverseVisible(function(I){I.isLight&&I.layers.test(U.layers)&&(u.pushLight(I),I.castShadow&&u.pushShadow(I))}),u.setupLights();const B=new Set;return v.traverse(function(I){if(!(I.isMesh||I.isPoints||I.isLine||I.isSprite))return;const J=I.material;if(J)if(Array.isArray(J))for(let ut=0;ut<J.length;ut++){const mt=J[ut];ne(mt,O,I),B.add(mt)}else ne(J,O,I),B.add(J)}),E.pop(),u=null,B},this.compileAsync=function(v,U,O=null){const B=this.compile(v,U,O);return new Promise(I=>{function J(){if(B.forEach(function(ut){St.get(ut).currentProgram.isReady()&&B.delete(ut)}),B.size===0){I(v);return}setTimeout(J,10)}Vt.get("KHR_parallel_shader_compile")!==null?J():setTimeout(J,10)})};let Qe=null;function mn(v){Qe&&Qe(v)}function no(){kn.stop()}function io(){kn.start()}const kn=new lc;kn.setAnimationLoop(mn),typeof self<"u"&&kn.setContext(self),this.setAnimationLoop=function(v){Qe=v,k.setAnimationLoop(v),v===null?kn.stop():kn.start()},k.addEventListener("sessionstart",no),k.addEventListener("sessionend",io),this.render=function(v,U){if(U!==void 0&&U.isCamera!==!0){console.error("THREE.WebGLRenderer.render: camera is not an instance of THREE.Camera.");return}if(D===!0)return;if(v.matrixWorldAutoUpdate===!0&&v.updateMatrixWorld(),U.parent===null&&U.matrixWorldAutoUpdate===!0&&U.updateMatrixWorld(),k.enabled===!0&&k.isPresenting===!0&&(k.cameraAutoUpdate===!0&&k.updateCamera(U),U=k.getCamera()),v.isScene===!0&&v.onBeforeRender(S,v,U,N),u=Xt.get(v,E.length),u.init(U),E.push(u),Rt.multiplyMatrices(U.projectionMatrix,U.matrixWorldInverse),Y.setFromProjectionMatrix(Rt),vt=this.localClippingEnabled,et=Q.init(this.clippingPlanes,vt),p=ft.get(v,b.length),p.init(),b.push(p),k.enabled===!0&&k.isPresenting===!0){const J=S.xr.getDepthSensingMesh();J!==null&&hr(J,U,-1/0,S.sortObjects)}hr(v,U,0,S.sortObjects),p.finish(),S.sortObjects===!0&&p.sort(nt,dt),Ht=k.enabled===!1||k.isPresenting===!1||k.hasDepthSensing()===!1,Ht&&bt.addToRenderList(p,v),this.info.render.frame++,et===!0&&Q.beginShadows();const O=u.state.shadowsArray;pt.render(O,v,U),et===!0&&Q.endShadows(),this.info.autoReset===!0&&this.info.reset();const B=p.opaque,I=p.transmissive;if(u.setupLights(),U.isArrayCamera){const J=U.cameras;if(I.length>0)for(let ut=0,mt=J.length;ut<mt;ut++){const _t=J[ut];ro(B,I,v,_t)}Ht&&bt.render(v);for(let ut=0,mt=J.length;ut<mt;ut++){const _t=J[ut];so(p,v,_t,_t.viewport)}}else I.length>0&&ro(B,I,v,U),Ht&&bt.render(v),so(p,v,U);N!==null&&w===0&&(T.updateMultisampleRenderTarget(N),T.updateRenderTargetMipmap(N)),v.isScene===!0&&v.onAfterRender(S,v,U),jt.resetDefaultState(),y=-1,M=null,E.pop(),E.length>0?(u=E[E.length-1],et===!0&&Q.setGlobalState(S.clippingPlanes,u.state.camera)):u=null,b.pop(),b.length>0?p=b[b.length-1]:p=null};function hr(v,U,O,B){if(v.visible===!1)return;if(v.layers.test(U.layers)){if(v.isGroup)O=v.renderOrder;else if(v.isLOD)v.autoUpdate===!0&&v.update(U);else if(v.isLight)u.pushLight(v),v.castShadow&&u.pushShadow(v);else if(v.isSprite){if(!v.frustumCulled||Y.intersectsSprite(v)){B&&Tt.setFromMatrixPosition(v.matrixWorld).applyMatrix4(Rt);const ut=X.update(v),mt=v.material;mt.visible&&p.push(v,ut,mt,O,Tt.z,null)}}else if((v.isMesh||v.isLine||v.isPoints)&&(!v.frustumCulled||Y.intersectsObject(v))){const ut=X.update(v),mt=v.material;if(B&&(v.boundingSphere!==void 0?(v.boundingSphere===null&&v.computeBoundingSphere(),Tt.copy(v.boundingSphere.center)):(ut.boundingSphere===null&&ut.computeBoundingSphere(),Tt.copy(ut.boundingSphere.center)),Tt.applyMatrix4(v.matrixWorld).applyMatrix4(Rt)),Array.isArray(mt)){const _t=ut.groups;for(let It=0,Nt=_t.length;It<Nt;It++){const At=_t[It],Zt=mt[At.materialIndex];Zt&&Zt.visible&&p.push(v,ut,Zt,O,Tt.z,At)}}else mt.visible&&p.push(v,ut,mt,O,Tt.z,null)}}const J=v.children;for(let ut=0,mt=J.length;ut<mt;ut++)hr(J[ut],U,O,B)}function so(v,U,O,B){const I=v.opaque,J=v.transmissive,ut=v.transparent;u.setupLightsView(O),et===!0&&Q.setGlobalState(S.clippingPlanes,O),B&&Et.viewport(C.copy(B)),I.length>0&&cs(I,U,O),J.length>0&&cs(J,U,O),ut.length>0&&cs(ut,U,O),Et.buffers.depth.setTest(!0),Et.buffers.depth.setMask(!0),Et.buffers.color.setMask(!0),Et.setPolygonOffset(!1)}function ro(v,U,O,B){if((O.isScene===!0?O.overrideMaterial:null)!==null)return;u.state.transmissionRenderTarget[B.id]===void 0&&(u.state.transmissionRenderTarget[B.id]=new an(1,1,{generateMipmaps:!0,type:Vt.has("EXT_color_buffer_half_float")||Vt.has("EXT_color_buffer_float")?bn:wn,minFilter:Qn,samples:4,stencilBuffer:r,resolveDepthBuffer:!1,resolveStencilBuffer:!1,colorSpace:$t.workingColorSpace}));const J=u.state.transmissionRenderTarget[B.id],ut=B.viewport||C;J.setSize(ut.z*S.transmissionResolutionScale,ut.w*S.transmissionResolutionScale);const mt=S.getRenderTarget();S.setRenderTarget(J),S.getClearColor(V),K=S.getClearAlpha(),K<1&&S.setClearColor(16777215,.5),S.clear(),Ht&&bt.render(O);const _t=S.toneMapping;S.toneMapping=On;const It=B.viewport;if(B.viewport!==void 0&&(B.viewport=void 0),u.setupLightsView(B),et===!0&&Q.setGlobalState(S.clippingPlanes,B),cs(v,O,B),T.updateMultisampleRenderTarget(J),T.updateRenderTargetMipmap(J),Vt.has("WEBGL_multisampled_render_to_texture")===!1){let Nt=!1;for(let At=0,Zt=U.length;At<Zt;At++){const Qt=U[At],fe=Qt.object,ue=Qt.geometry,Kt=Qt.material,wt=Qt.group;if(Kt.side===cn&&fe.layers.test(B.layers)){const Te=Kt.side;Kt.side=Be,Kt.needsUpdate=!0,ao(fe,O,B,ue,Kt,wt),Kt.side=Te,Kt.needsUpdate=!0,Nt=!0}}Nt===!0&&(T.updateMultisampleRenderTarget(J),T.updateRenderTargetMipmap(J))}S.setRenderTarget(mt),S.setClearColor(V,K),It!==void 0&&(B.viewport=It),S.toneMapping=_t}function cs(v,U,O){const B=U.isScene===!0?U.overrideMaterial:null;for(let I=0,J=v.length;I<J;I++){const ut=v[I],mt=ut.object,_t=ut.geometry,It=B===null?ut.material:B,Nt=ut.group;mt.layers.test(O.layers)&&ao(mt,U,O,_t,It,Nt)}}function ao(v,U,O,B,I,J){v.onBeforeRender(S,U,O,B,I,J),v.modelViewMatrix.multiplyMatrices(O.matrixWorldInverse,v.matrixWorld),v.normalMatrix.getNormalMatrix(v.modelViewMatrix),I.onBeforeRender(S,U,O,B,v,J),I.transparent===!0&&I.side===cn&&I.forceSinglePass===!1?(I.side=Be,I.needsUpdate=!0,S.renderBufferDirect(O,U,B,I,v,J),I.side=zn,I.needsUpdate=!0,S.renderBufferDirect(O,U,B,I,v,J),I.side=cn):S.renderBufferDirect(O,U,B,I,v,J),v.onAfterRender(S,U,O,B,I,J)}function hs(v,U,O){U.isScene!==!0&&(U=qt);const B=St.get(v),I=u.state.lights,J=u.state.shadowsArray,ut=I.state.version,mt=yt.getParameters(v,I.state,J,U,O),_t=yt.getProgramCacheKey(mt);let It=B.programs;B.environment=v.isMeshStandardMaterial?U.environment:null,B.fog=U.fog,B.envMap=(v.isMeshStandardMaterial?F:_).get(v.envMap||B.environment),B.envMapRotation=B.environment!==null&&v.envMap===null?U.environmentRotation:v.envMapRotation,It===void 0&&(v.addEventListener("dispose",Ot),It=new Map,B.programs=It);let Nt=It.get(_t);if(Nt!==void 0){if(B.currentProgram===Nt&&B.lightsStateVersion===ut)return lo(v,mt),Nt}else mt.uniforms=yt.getUniforms(v),v.onBeforeCompile(mt,S),Nt=yt.acquireProgram(mt,_t),It.set(_t,Nt),B.uniforms=mt.uniforms;const At=B.uniforms;return(!v.isShaderMaterial&&!v.isRawShaderMaterial||v.clipping===!0)&&(At.clippingPlanes=Q.uniform),lo(v,mt),B.needsLights=vc(v),B.lightsStateVersion=ut,B.needsLights&&(At.ambientLightColor.value=I.state.ambient,At.lightProbe.value=I.state.probe,At.directionalLights.value=I.state.directional,At.directionalLightShadows.value=I.state.directionalShadow,At.spotLights.value=I.state.spot,At.spotLightShadows.value=I.state.spotShadow,At.rectAreaLights.value=I.state.rectArea,At.ltc_1.value=I.state.rectAreaLTC1,At.ltc_2.value=I.state.rectAreaLTC2,At.pointLights.value=I.state.point,At.pointLightShadows.value=I.state.pointShadow,At.hemisphereLights.value=I.state.hemi,At.directionalShadowMap.value=I.state.directionalShadowMap,At.directionalShadowMatrix.value=I.state.directionalShadowMatrix,At.spotShadowMap.value=I.state.spotShadowMap,At.spotLightMatrix.value=I.state.spotLightMatrix,At.spotLightMap.value=I.state.spotLightMap,At.pointShadowMap.value=I.state.pointShadowMap,At.pointShadowMatrix.value=I.state.pointShadowMatrix),B.currentProgram=Nt,B.uniformsList=null,Nt}function oo(v){if(v.uniformsList===null){const U=v.currentProgram.getUniforms();v.uniformsList=qs.seqWithValue(U.seq,v.uniforms)}return v.uniformsList}function lo(v,U){const O=St.get(v);O.outputColorSpace=U.outputColorSpace,O.batching=U.batching,O.batchingColor=U.batchingColor,O.instancing=U.instancing,O.instancingColor=U.instancingColor,O.instancingMorph=U.instancingMorph,O.skinning=U.skinning,O.morphTargets=U.morphTargets,O.morphNormals=U.morphNormals,O.morphColors=U.morphColors,O.morphTargetsCount=U.morphTargetsCount,O.numClippingPlanes=U.numClippingPlanes,O.numIntersection=U.numClipIntersection,O.vertexAlphas=U.vertexAlphas,O.vertexTangents=U.vertexTangents,O.toneMapping=U.toneMapping}function _c(v,U,O,B,I){U.isScene!==!0&&(U=qt),T.resetTextureUnits();const J=U.fog,ut=B.isMeshStandardMaterial?U.environment:null,mt=N===null?S.outputColorSpace:N.isXRRenderTarget===!0?N.texture.colorSpace:Hi,_t=(B.isMeshStandardMaterial?F:_).get(B.envMap||ut),It=B.vertexColors===!0&&!!O.attributes.color&&O.attributes.color.itemSize===4,Nt=!!O.attributes.tangent&&(!!B.normalMap||B.anisotropy>0),At=!!O.morphAttributes.position,Zt=!!O.morphAttributes.normal,Qt=!!O.morphAttributes.color;let fe=On;B.toneMapped&&(N===null||N.isXRRenderTarget===!0)&&(fe=S.toneMapping);const ue=O.morphAttributes.position||O.morphAttributes.normal||O.morphAttributes.color,Kt=ue!==void 0?ue.length:0,wt=St.get(B),Te=u.state.lights;if(et===!0&&(vt===!0||v!==M)){const De=v===M&&B.id===y;Q.setState(B,v,De)}let te=!1;B.version===wt.__version?(wt.needsLights&&wt.lightsStateVersion!==Te.state.version||wt.outputColorSpace!==mt||I.isBatchedMesh&&wt.batching===!1||!I.isBatchedMesh&&wt.batching===!0||I.isBatchedMesh&&wt.batchingColor===!0&&I.colorTexture===null||I.isBatchedMesh&&wt.batchingColor===!1&&I.colorTexture!==null||I.isInstancedMesh&&wt.instancing===!1||!I.isInstancedMesh&&wt.instancing===!0||I.isSkinnedMesh&&wt.skinning===!1||!I.isSkinnedMesh&&wt.skinning===!0||I.isInstancedMesh&&wt.instancingColor===!0&&I.instanceColor===null||I.isInstancedMesh&&wt.instancingColor===!1&&I.instanceColor!==null||I.isInstancedMesh&&wt.instancingMorph===!0&&I.morphTexture===null||I.isInstancedMesh&&wt.instancingMorph===!1&&I.morphTexture!==null||wt.envMap!==_t||B.fog===!0&&wt.fog!==J||wt.numClippingPlanes!==void 0&&(wt.numClippingPlanes!==Q.numPlanes||wt.numIntersection!==Q.numIntersection)||wt.vertexAlphas!==It||wt.vertexTangents!==Nt||wt.morphTargets!==At||wt.morphNormals!==Zt||wt.morphColors!==Qt||wt.toneMapping!==fe||wt.morphTargetsCount!==Kt)&&(te=!0):(te=!0,wt.__version=B.version);let tn=wt.currentProgram;te===!0&&(tn=hs(B,U,I));let ai=!1,ze=!1,Wi=!1;const ce=tn.getUniforms(),qe=wt.uniforms;if(Et.useProgram(tn.program)&&(ai=!0,ze=!0,Wi=!0),B.id!==y&&(y=B.id,ze=!0),ai||M!==v){Et.buffers.depth.getReversed()?(lt.copy(v.projectionMatrix),yh(lt),Eh(lt),ce.setValue(R,"projectionMatrix",lt)):ce.setValue(R,"projectionMatrix",v.projectionMatrix),ce.setValue(R,"viewMatrix",v.matrixWorldInverse);const Ne=ce.map.cameraPosition;Ne!==void 0&&Ne.setValue(R,it.setFromMatrixPosition(v.matrixWorld)),Wt.logarithmicDepthBuffer&&ce.setValue(R,"logDepthBufFC",2/(Math.log(v.far+1)/Math.LN2)),(B.isMeshPhongMaterial||B.isMeshToonMaterial||B.isMeshLambertMaterial||B.isMeshBasicMaterial||B.isMeshStandardMaterial||B.isShaderMaterial)&&ce.setValue(R,"isOrthographic",v.isOrthographicCamera===!0),M!==v&&(M=v,ze=!0,Wi=!0)}if(I.isSkinnedMesh){ce.setOptional(R,I,"bindMatrix"),ce.setOptional(R,I,"bindMatrixInverse");const De=I.skeleton;De&&(De.boneTexture===null&&De.computeBoneTexture(),ce.setValue(R,"boneTexture",De.boneTexture,T))}I.isBatchedMesh&&(ce.setOptional(R,I,"batchingTexture"),ce.setValue(R,"batchingTexture",I._matricesTexture,T),ce.setOptional(R,I,"batchingIdTexture"),ce.setValue(R,"batchingIdTexture",I._indirectTexture,T),ce.setOptional(R,I,"batchingColorTexture"),I._colorsTexture!==null&&ce.setValue(R,"batchingColorTexture",I._colorsTexture,T));const je=O.morphAttributes;if((je.position!==void 0||je.normal!==void 0||je.color!==void 0)&&Lt.update(I,O,tn),(ze||wt.receiveShadow!==I.receiveShadow)&&(wt.receiveShadow=I.receiveShadow,ce.setValue(R,"receiveShadow",I.receiveShadow)),B.isMeshGouraudMaterial&&B.envMap!==null&&(qe.envMap.value=_t,qe.flipEnvMap.value=_t.isCubeTexture&&_t.isRenderTargetTexture===!1?-1:1),B.isMeshStandardMaterial&&B.envMap===null&&U.environment!==null&&(qe.envMapIntensity.value=U.environmentIntensity),ze&&(ce.setValue(R,"toneMappingExposure",S.toneMappingExposure),wt.needsLights&&gc(qe,Wi),J&&B.fog===!0&&at.refreshFogUniforms(qe,J),at.refreshMaterialUniforms(qe,B,H,$,u.state.transmissionRenderTarget[v.id]),qs.upload(R,oo(wt),qe,T)),B.isShaderMaterial&&B.uniformsNeedUpdate===!0&&(qs.upload(R,oo(wt),qe,T),B.uniformsNeedUpdate=!1),B.isSpriteMaterial&&ce.setValue(R,"center",I.center),ce.setValue(R,"modelViewMatrix",I.modelViewMatrix),ce.setValue(R,"normalMatrix",I.normalMatrix),ce.setValue(R,"modelMatrix",I.matrixWorld),B.isShaderMaterial||B.isRawShaderMaterial){const De=B.uniformsGroups;for(let Ne=0,ur=De.length;Ne<ur;Ne++){const Vn=De[Ne];L.update(Vn,tn),L.bind(Vn,tn)}}return tn}function gc(v,U){v.ambientLightColor.needsUpdate=U,v.lightProbe.needsUpdate=U,v.directionalLights.needsUpdate=U,v.directionalLightShadows.needsUpdate=U,v.pointLights.needsUpdate=U,v.pointLightShadows.needsUpdate=U,v.spotLights.needsUpdate=U,v.spotLightShadows.needsUpdate=U,v.rectAreaLights.needsUpdate=U,v.hemisphereLights.needsUpdate=U}function vc(v){return v.isMeshLambertMaterial||v.isMeshToonMaterial||v.isMeshPhongMaterial||v.isMeshStandardMaterial||v.isShadowMaterial||v.isShaderMaterial&&v.lights===!0}this.getActiveCubeFace=function(){return A},this.getActiveMipmapLevel=function(){return w},this.getRenderTarget=function(){return N},this.setRenderTargetTextures=function(v,U,O){St.get(v.texture).__webglTexture=U,St.get(v.depthTexture).__webglTexture=O;const B=St.get(v);B.__hasExternalTextures=!0,B.__autoAllocateDepthBuffer=O===void 0,B.__autoAllocateDepthBuffer||Vt.has("WEBGL_multisampled_render_to_texture")===!0&&(console.warn("THREE.WebGLRenderer: Render-to-texture extension was disabled because an external texture was provided"),B.__useRenderToTexture=!1)},this.setRenderTargetFramebuffer=function(v,U){const O=St.get(v);O.__webglFramebuffer=U,O.__useDefaultFramebuffer=U===void 0};const xc=R.createFramebuffer();this.setRenderTarget=function(v,U=0,O=0){N=v,A=U,w=O;let B=!0,I=null,J=!1,ut=!1;if(v){const _t=St.get(v);if(_t.__useDefaultFramebuffer!==void 0)Et.bindFramebuffer(R.FRAMEBUFFER,null),B=!1;else if(_t.__webglFramebuffer===void 0)T.setupRenderTarget(v);else if(_t.__hasExternalTextures)T.rebindTextures(v,St.get(v.texture).__webglTexture,St.get(v.depthTexture).__webglTexture);else if(v.depthBuffer){const At=v.depthTexture;if(_t.__boundDepthTexture!==At){if(At!==null&&St.has(At)&&(v.width!==At.image.width||v.height!==At.image.height))throw new Error("WebGLRenderTarget: Attached DepthTexture is initialized to the incorrect size.");T.setupDepthRenderbuffer(v)}}const It=v.texture;(It.isData3DTexture||It.isDataArrayTexture||It.isCompressedArrayTexture)&&(ut=!0);const Nt=St.get(v).__webglFramebuffer;v.isWebGLCubeRenderTarget?(Array.isArray(Nt[U])?I=Nt[U][O]:I=Nt[U],J=!0):v.samples>0&&T.useMultisampledRTT(v)===!1?I=St.get(v).__webglMultisampledFramebuffer:Array.isArray(Nt)?I=Nt[O]:I=Nt,C.copy(v.viewport),W.copy(v.scissor),z=v.scissorTest}else C.copy(Mt).multiplyScalar(H).floor(),W.copy(Ft).multiplyScalar(H).floor(),z=Yt;if(O!==0&&(I=xc),Et.bindFramebuffer(R.FRAMEBUFFER,I)&&B&&Et.drawBuffers(v,I),Et.viewport(C),Et.scissor(W),Et.setScissorTest(z),J){const _t=St.get(v.texture);R.framebufferTexture2D(R.FRAMEBUFFER,R.COLOR_ATTACHMENT0,R.TEXTURE_CUBE_MAP_POSITIVE_X+U,_t.__webglTexture,O)}else if(ut){const _t=St.get(v.texture),It=U;R.framebufferTextureLayer(R.FRAMEBUFFER,R.COLOR_ATTACHMENT0,_t.__webglTexture,O,It)}else if(v!==null&&O!==0){const _t=St.get(v.texture);R.framebufferTexture2D(R.FRAMEBUFFER,R.COLOR_ATTACHMENT0,R.TEXTURE_2D,_t.__webglTexture,O)}y=-1},this.readRenderTargetPixels=function(v,U,O,B,I,J,ut){if(!(v&&v.isWebGLRenderTarget)){console.error("THREE.WebGLRenderer.readRenderTargetPixels: renderTarget is not THREE.WebGLRenderTarget.");return}let mt=St.get(v).__webglFramebuffer;if(v.isWebGLCubeRenderTarget&&ut!==void 0&&(mt=mt[ut]),mt){Et.bindFramebuffer(R.FRAMEBUFFER,mt);try{const _t=v.texture,It=_t.format,Nt=_t.type;if(!Wt.textureFormatReadable(It)){console.error("THREE.WebGLRenderer.readRenderTargetPixels: renderTarget is not in RGBA or implementation defined format.");return}if(!Wt.textureTypeReadable(Nt)){console.error("THREE.WebGLRenderer.readRenderTargetPixels: renderTarget is not in UnsignedByteType or implementation defined type.");return}U>=0&&U<=v.width-B&&O>=0&&O<=v.height-I&&R.readPixels(U,O,B,I,Ct.convert(It),Ct.convert(Nt),J)}finally{const _t=N!==null?St.get(N).__webglFramebuffer:null;Et.bindFramebuffer(R.FRAMEBUFFER,_t)}}},this.readRenderTargetPixelsAsync=async function(v,U,O,B,I,J,ut){if(!(v&&v.isWebGLRenderTarget))throw new Error("THREE.WebGLRenderer.readRenderTargetPixels: renderTarget is not THREE.WebGLRenderTarget.");let mt=St.get(v).__webglFramebuffer;if(v.isWebGLCubeRenderTarget&&ut!==void 0&&(mt=mt[ut]),mt){const _t=v.texture,It=_t.format,Nt=_t.type;if(!Wt.textureFormatReadable(It))throw new Error("THREE.WebGLRenderer.readRenderTargetPixelsAsync: renderTarget is not in RGBA or implementation defined format.");if(!Wt.textureTypeReadable(Nt))throw new Error("THREE.WebGLRenderer.readRenderTargetPixelsAsync: renderTarget is not in UnsignedByteType or implementation defined type.");if(U>=0&&U<=v.width-B&&O>=0&&O<=v.height-I){Et.bindFramebuffer(R.FRAMEBUFFER,mt);const At=R.createBuffer();R.bindBuffer(R.PIXEL_PACK_BUFFER,At),R.bufferData(R.PIXEL_PACK_BUFFER,J.byteLength,R.STREAM_READ),R.readPixels(U,O,B,I,Ct.convert(It),Ct.convert(Nt),0);const Zt=N!==null?St.get(N).__webglFramebuffer:null;Et.bindFramebuffer(R.FRAMEBUFFER,Zt);const Qt=R.fenceSync(R.SYNC_GPU_COMMANDS_COMPLETE,0);return R.flush(),await Sh(R,Qt,4),R.bindBuffer(R.PIXEL_PACK_BUFFER,At),R.getBufferSubData(R.PIXEL_PACK_BUFFER,0,J),R.deleteBuffer(At),R.deleteSync(Qt),J}else throw new Error("THREE.WebGLRenderer.readRenderTargetPixelsAsync: requested read bounds are out of range.")}},this.copyFramebufferToTexture=function(v,U=null,O=0){v.isTexture!==!0&&(wi("WebGLRenderer: copyFramebufferToTexture function signature has changed."),U=arguments[0]||null,v=arguments[1]);const B=Math.pow(2,-O),I=Math.floor(v.image.width*B),J=Math.floor(v.image.height*B),ut=U!==null?U.x:0,mt=U!==null?U.y:0;T.setTexture2D(v,0),R.copyTexSubImage2D(R.TEXTURE_2D,O,0,0,ut,mt,I,J),Et.unbindTexture()};const Mc=R.createFramebuffer(),Sc=R.createFramebuffer();this.copyTextureToTexture=function(v,U,O=null,B=null,I=0,J=null){v.isTexture!==!0&&(wi("WebGLRenderer: copyTextureToTexture function signature has changed."),B=arguments[0]||null,v=arguments[1],U=arguments[2],J=arguments[3]||0,O=null),J===null&&(I!==0?(wi("WebGLRenderer: copyTextureToTexture function signature has changed to support src and dst mipmap levels."),J=I,I=0):J=0);let ut,mt,_t,It,Nt,At,Zt,Qt,fe;const ue=v.isCompressedTexture?v.mipmaps[J]:v.image;if(O!==null)ut=O.max.x-O.min.x,mt=O.max.y-O.min.y,_t=O.isBox3?O.max.z-O.min.z:1,It=O.min.x,Nt=O.min.y,At=O.isBox3?O.min.z:0;else{const je=Math.pow(2,-I);ut=Math.floor(ue.width*je),mt=Math.floor(ue.height*je),v.isDataArrayTexture?_t=ue.depth:v.isData3DTexture?_t=Math.floor(ue.depth*je):_t=1,It=0,Nt=0,At=0}B!==null?(Zt=B.x,Qt=B.y,fe=B.z):(Zt=0,Qt=0,fe=0);const Kt=Ct.convert(U.format),wt=Ct.convert(U.type);let Te;U.isData3DTexture?(T.setTexture3D(U,0),Te=R.TEXTURE_3D):U.isDataArrayTexture||U.isCompressedArrayTexture?(T.setTexture2DArray(U,0),Te=R.TEXTURE_2D_ARRAY):(T.setTexture2D(U,0),Te=R.TEXTURE_2D),R.pixelStorei(R.UNPACK_FLIP_Y_WEBGL,U.flipY),R.pixelStorei(R.UNPACK_PREMULTIPLY_ALPHA_WEBGL,U.premultiplyAlpha),R.pixelStorei(R.UNPACK_ALIGNMENT,U.unpackAlignment);const te=R.getParameter(R.UNPACK_ROW_LENGTH),tn=R.getParameter(R.UNPACK_IMAGE_HEIGHT),ai=R.getParameter(R.UNPACK_SKIP_PIXELS),ze=R.getParameter(R.UNPACK_SKIP_ROWS),Wi=R.getParameter(R.UNPACK_SKIP_IMAGES);R.pixelStorei(R.UNPACK_ROW_LENGTH,ue.width),R.pixelStorei(R.UNPACK_IMAGE_HEIGHT,ue.height),R.pixelStorei(R.UNPACK_SKIP_PIXELS,It),R.pixelStorei(R.UNPACK_SKIP_ROWS,Nt),R.pixelStorei(R.UNPACK_SKIP_IMAGES,At);const ce=v.isDataArrayTexture||v.isData3DTexture,qe=U.isDataArrayTexture||U.isData3DTexture;if(v.isDepthTexture){const je=St.get(v),De=St.get(U),Ne=St.get(je.__renderTarget),ur=St.get(De.__renderTarget);Et.bindFramebuffer(R.READ_FRAMEBUFFER,Ne.__webglFramebuffer),Et.bindFramebuffer(R.DRAW_FRAMEBUFFER,ur.__webglFramebuffer);for(let Vn=0;Vn<_t;Vn++)ce&&(R.framebufferTextureLayer(R.READ_FRAMEBUFFER,R.COLOR_ATTACHMENT0,St.get(v).__webglTexture,I,At+Vn),R.framebufferTextureLayer(R.DRAW_FRAMEBUFFER,R.COLOR_ATTACHMENT0,St.get(U).__webglTexture,J,fe+Vn)),R.blitFramebuffer(It,Nt,ut,mt,Zt,Qt,ut,mt,R.DEPTH_BUFFER_BIT,R.NEAREST);Et.bindFramebuffer(R.READ_FRAMEBUFFER,null),Et.bindFramebuffer(R.DRAW_FRAMEBUFFER,null)}else if(I!==0||v.isRenderTargetTexture||St.has(v)){const je=St.get(v),De=St.get(U);Et.bindFramebuffer(R.READ_FRAMEBUFFER,Mc),Et.bindFramebuffer(R.DRAW_FRAMEBUFFER,Sc);for(let Ne=0;Ne<_t;Ne++)ce?R.framebufferTextureLayer(R.READ_FRAMEBUFFER,R.COLOR_ATTACHMENT0,je.__webglTexture,I,At+Ne):R.framebufferTexture2D(R.READ_FRAMEBUFFER,R.COLOR_ATTACHMENT0,R.TEXTURE_2D,je.__webglTexture,I),qe?R.framebufferTextureLayer(R.DRAW_FRAMEBUFFER,R.COLOR_ATTACHMENT0,De.__webglTexture,J,fe+Ne):R.framebufferTexture2D(R.DRAW_FRAMEBUFFER,R.COLOR_ATTACHMENT0,R.TEXTURE_2D,De.__webglTexture,J),I!==0?R.blitFramebuffer(It,Nt,ut,mt,Zt,Qt,ut,mt,R.COLOR_BUFFER_BIT,R.NEAREST):qe?R.copyTexSubImage3D(Te,J,Zt,Qt,fe+Ne,It,Nt,ut,mt):R.copyTexSubImage2D(Te,J,Zt,Qt,It,Nt,ut,mt);Et.bindFramebuffer(R.READ_FRAMEBUFFER,null),Et.bindFramebuffer(R.DRAW_FRAMEBUFFER,null)}else qe?v.isDataTexture||v.isData3DTexture?R.texSubImage3D(Te,J,Zt,Qt,fe,ut,mt,_t,Kt,wt,ue.data):U.isCompressedArrayTexture?R.compressedTexSubImage3D(Te,J,Zt,Qt,fe,ut,mt,_t,Kt,ue.data):R.texSubImage3D(Te,J,Zt,Qt,fe,ut,mt,_t,Kt,wt,ue):v.isDataTexture?R.texSubImage2D(R.TEXTURE_2D,J,Zt,Qt,ut,mt,Kt,wt,ue.data):v.isCompressedTexture?R.compressedTexSubImage2D(R.TEXTURE_2D,J,Zt,Qt,ue.width,ue.height,Kt,ue.data):R.texSubImage2D(R.TEXTURE_2D,J,Zt,Qt,ut,mt,Kt,wt,ue);R.pixelStorei(R.UNPACK_ROW_LENGTH,te),R.pixelStorei(R.UNPACK_IMAGE_HEIGHT,tn),R.pixelStorei(R.UNPACK_SKIP_PIXELS,ai),R.pixelStorei(R.UNPACK_SKIP_ROWS,ze),R.pixelStorei(R.UNPACK_SKIP_IMAGES,Wi),J===0&&U.generateMipmaps&&R.generateMipmap(Te),Et.unbindTexture()},this.copyTextureToTexture3D=function(v,U,O=null,B=null,I=0){return v.isTexture!==!0&&(wi("WebGLRenderer: copyTextureToTexture3D function signature has changed."),O=arguments[0]||null,B=arguments[1]||null,v=arguments[2],U=arguments[3],I=arguments[4]||0),wi('WebGLRenderer: copyTextureToTexture3D function has been deprecated. Use "copyTextureToTexture" instead.'),this.copyTextureToTexture(v,U,O,B,I)},this.initRenderTarget=function(v){St.get(v).__webglFramebuffer===void 0&&T.setupRenderTarget(v)},this.initTexture=function(v){v.isCubeTexture?T.setTextureCube(v,0):v.isData3DTexture?T.setTexture3D(v,0):v.isDataArrayTexture||v.isCompressedArrayTexture?T.setTexture2DArray(v,0):T.setTexture2D(v,0),Et.unbindTexture()},this.resetState=function(){A=0,w=0,N=null,Et.reset(),jt.reset()},typeof __THREE_DEVTOOLS__<"u"&&__THREE_DEVTOOLS__.dispatchEvent(new CustomEvent("observe",{detail:this}))}get coordinateSystem(){return En}get outputColorSpace(){return this._outputColorSpace}set outputColorSpace(t){this._outputColorSpace=t;const e=this.getContext();e.drawingBufferColorspace=$t._getDrawingBufferColorSpace(t),e.unpackColorSpace=$t._getUnpackColorSpace()}}const Ml={type:"change"},eo={type:"start"},fc={type:"end"},Hs=new rs,Sl=new Nn,qm=Math.cos(70*xh.DEG2RAD),ge=new P,Fe=2*Math.PI,ae={NONE:-1,ROTATE:0,DOLLY:1,PAN:2,TOUCH_ROTATE:3,TOUCH_PAN:4,TOUCH_DOLLY_PAN:5,TOUCH_DOLLY_ROTATE:6},Yr=1e-6;class jm extends lu{constructor(t,e=null){super(t,e),this.state=ae.NONE,this.enabled=!0,this.target=new P,this.cursor=new P,this.minDistance=0,this.maxDistance=1/0,this.minZoom=0,this.maxZoom=1/0,this.minTargetRadius=0,this.maxTargetRadius=1/0,this.minPolarAngle=0,this.maxPolarAngle=Math.PI,this.minAzimuthAngle=-1/0,this.maxAzimuthAngle=1/0,this.enableDamping=!1,this.dampingFactor=.05,this.enableZoom=!0,this.zoomSpeed=1,this.enableRotate=!0,this.rotateSpeed=1,this.keyRotateSpeed=1,this.enablePan=!0,this.panSpeed=1,this.screenSpacePanning=!0,this.keyPanSpeed=7,this.zoomToCursor=!1,this.autoRotate=!1,this.autoRotateSpeed=2,this.keys={LEFT:"ArrowLeft",UP:"ArrowUp",RIGHT:"ArrowRight",BOTTOM:"ArrowDown"},this.mouseButtons={LEFT:Di.ROTATE,MIDDLE:Di.DOLLY,RIGHT:Di.PAN},this.touches={ONE:Ri.ROTATE,TWO:Ri.DOLLY_PAN},this.target0=this.target.clone(),this.position0=this.object.position.clone(),this.zoom0=this.object.zoom,this._domElementKeyEvents=null,this._lastPosition=new P,this._lastQuaternion=new ni,this._lastTargetPosition=new P,this._quat=new ni().setFromUnitVectors(t.up,new P(0,1,0)),this._quatInverse=this._quat.clone().invert(),this._spherical=new jo,this._sphericalDelta=new jo,this._scale=1,this._panOffset=new P,this._rotateStart=new gt,this._rotateEnd=new gt,this._rotateDelta=new gt,this._panStart=new gt,this._panEnd=new gt,this._panDelta=new gt,this._dollyStart=new gt,this._dollyEnd=new gt,this._dollyDelta=new gt,this._dollyDirection=new P,this._mouse=new gt,this._performCursorZoom=!1,this._pointers=[],this._pointerPositions={},this._controlActive=!1,this._onPointerMove=Km.bind(this),this._onPointerDown=Zm.bind(this),this._onPointerUp=$m.bind(this),this._onContextMenu=s_.bind(this),this._onMouseWheel=t_.bind(this),this._onKeyDown=e_.bind(this),this._onTouchStart=n_.bind(this),this._onTouchMove=i_.bind(this),this._onMouseDown=Jm.bind(this),this._onMouseMove=Qm.bind(this),this._interceptControlDown=r_.bind(this),this._interceptControlUp=a_.bind(this),this.domElement!==null&&this.connect(),this.update()}connect(){this.domElement.addEventListener("pointerdown",this._onPointerDown),this.domElement.addEventListener("pointercancel",this._onPointerUp),this.domElement.addEventListener("contextmenu",this._onContextMenu),this.domElement.addEventListener("wheel",this._onMouseWheel,{passive:!1}),this.domElement.getRootNode().addEventListener("keydown",this._interceptControlDown,{passive:!0,capture:!0}),this.domElement.style.touchAction="none"}disconnect(){this.domElement.removeEventListener("pointerdown",this._onPointerDown),this.domElement.removeEventListener("pointermove",this._onPointerMove),this.domElement.removeEventListener("pointerup",this._onPointerUp),this.domElement.removeEventListener("pointercancel",this._onPointerUp),this.domElement.removeEventListener("wheel",this._onMouseWheel),this.domElement.removeEventListener("contextmenu",this._onContextMenu),this.stopListenToKeyEvents(),this.domElement.getRootNode().removeEventListener("keydown",this._interceptControlDown,{capture:!0}),this.domElement.style.touchAction="auto"}dispose(){this.disconnect()}getPolarAngle(){return this._spherical.phi}getAzimuthalAngle(){return this._spherical.theta}getDistance(){return this.object.position.distanceTo(this.target)}listenToKeyEvents(t){t.addEventListener("keydown",this._onKeyDown),this._domElementKeyEvents=t}stopListenToKeyEvents(){this._domElementKeyEvents!==null&&(this._domElementKeyEvents.removeEventListener("keydown",this._onKeyDown),this._domElementKeyEvents=null)}saveState(){this.target0.copy(this.target),this.position0.copy(this.object.position),this.zoom0=this.object.zoom}reset(){this.target.copy(this.target0),this.object.position.copy(this.position0),this.object.zoom=this.zoom0,this.object.updateProjectionMatrix(),this.dispatchEvent(Ml),this.update(),this.state=ae.NONE}update(t=null){const e=this.object.position;ge.copy(e).sub(this.target),ge.applyQuaternion(this._quat),this._spherical.setFromVector3(ge),this.autoRotate&&this.state===ae.NONE&&this._rotateLeft(this._getAutoRotationAngle(t)),this.enableDamping?(this._spherical.theta+=this._sphericalDelta.theta*this.dampingFactor,this._spherical.phi+=this._sphericalDelta.phi*this.dampingFactor):(this._spherical.theta+=this._sphericalDelta.theta,this._spherical.phi+=this._sphericalDelta.phi);let n=this.minAzimuthAngle,s=this.maxAzimuthAngle;isFinite(n)&&isFinite(s)&&(n<-Math.PI?n+=Fe:n>Math.PI&&(n-=Fe),s<-Math.PI?s+=Fe:s>Math.PI&&(s-=Fe),n<=s?this._spherical.theta=Math.max(n,Math.min(s,this._spherical.theta)):this._spherical.theta=this._spherical.theta>(n+s)/2?Math.max(n,this._spherical.theta):Math.min(s,this._spherical.theta)),this._spherical.phi=Math.max(this.minPolarAngle,Math.min(this.maxPolarAngle,this._spherical.phi)),this._spherical.makeSafe(),this.enableDamping===!0?this.target.addScaledVector(this._panOffset,this.dampingFactor):this.target.add(this._panOffset),this.target.sub(this.cursor),this.target.clampLength(this.minTargetRadius,this.maxTargetRadius),this.target.add(this.cursor);let r=!1;if(this.zoomToCursor&&this._performCursorZoom||this.object.isOrthographicCamera)this._spherical.radius=this._clampDistance(this._spherical.radius);else{const a=this._spherical.radius;this._spherical.radius=this._clampDistance(this._spherical.radius*this._scale),r=a!=this._spherical.radius}if(ge.setFromSpherical(this._spherical),ge.applyQuaternion(this._quatInverse),e.copy(this.target).add(ge),this.object.lookAt(this.target),this.enableDamping===!0?(this._sphericalDelta.theta*=1-this.dampingFactor,this._sphericalDelta.phi*=1-this.dampingFactor,this._panOffset.multiplyScalar(1-this.dampingFactor)):(this._sphericalDelta.set(0,0,0),this._panOffset.set(0,0,0)),this.zoomToCursor&&this._performCursorZoom){let a=null;if(this.object.isPerspectiveCamera){const o=ge.length();a=this._clampDistance(o*this._scale);const l=o-a;this.object.position.addScaledVector(this._dollyDirection,l),this.object.updateMatrixWorld(),r=!!l}else if(this.object.isOrthographicCamera){const o=new P(this._mouse.x,this._mouse.y,0);o.unproject(this.object);const l=this.object.zoom;this.object.zoom=Math.max(this.minZoom,Math.min(this.maxZoom,this.object.zoom/this._scale)),this.object.updateProjectionMatrix(),r=l!==this.object.zoom;const c=new P(this._mouse.x,this._mouse.y,0);c.unproject(this.object),this.object.position.sub(c).add(o),this.object.updateMatrixWorld(),a=ge.length()}else console.warn("WARNING: OrbitControls.js encountered an unknown camera type - zoom to cursor disabled."),this.zoomToCursor=!1;a!==null&&(this.screenSpacePanning?this.target.set(0,0,-1).transformDirection(this.object.matrix).multiplyScalar(a).add(this.object.position):(Hs.origin.copy(this.object.position),Hs.direction.set(0,0,-1).transformDirection(this.object.matrix),Math.abs(this.object.up.dot(Hs.direction))<qm?this.object.lookAt(this.target):(Sl.setFromNormalAndCoplanarPoint(this.object.up,this.target),Hs.intersectPlane(Sl,this.target))))}else if(this.object.isOrthographicCamera){const a=this.object.zoom;this.object.zoom=Math.max(this.minZoom,Math.min(this.maxZoom,this.object.zoom/this._scale)),a!==this.object.zoom&&(this.object.updateProjectionMatrix(),r=!0)}return this._scale=1,this._performCursorZoom=!1,r||this._lastPosition.distanceToSquared(this.object.position)>Yr||8*(1-this._lastQuaternion.dot(this.object.quaternion))>Yr||this._lastTargetPosition.distanceToSquared(this.target)>Yr?(this.dispatchEvent(Ml),this._lastPosition.copy(this.object.position),this._lastQuaternion.copy(this.object.quaternion),this._lastTargetPosition.copy(this.target),!0):!1}_getAutoRotationAngle(t){return t!==null?Fe/60*this.autoRotateSpeed*t:Fe/60/60*this.autoRotateSpeed}_getZoomScale(t){const e=Math.abs(t*.01);return Math.pow(.95,this.zoomSpeed*e)}_rotateLeft(t){this._sphericalDelta.theta-=t}_rotateUp(t){this._sphericalDelta.phi-=t}_panLeft(t,e){ge.setFromMatrixColumn(e,0),ge.multiplyScalar(-t),this._panOffset.add(ge)}_panUp(t,e){this.screenSpacePanning===!0?ge.setFromMatrixColumn(e,1):(ge.setFromMatrixColumn(e,0),ge.crossVectors(this.object.up,ge)),ge.multiplyScalar(t),this._panOffset.add(ge)}_pan(t,e){const n=this.domElement;if(this.object.isPerspectiveCamera){const s=this.object.position;ge.copy(s).sub(this.target);let r=ge.length();r*=Math.tan(this.object.fov/2*Math.PI/180),this._panLeft(2*t*r/n.clientHeight,this.object.matrix),this._panUp(2*e*r/n.clientHeight,this.object.matrix)}else this.object.isOrthographicCamera?(this._panLeft(t*(this.object.right-this.object.left)/this.object.zoom/n.clientWidth,this.object.matrix),this._panUp(e*(this.object.top-this.object.bottom)/this.object.zoom/n.clientHeight,this.object.matrix)):(console.warn("WARNING: OrbitControls.js encountered an unknown camera type - pan disabled."),this.enablePan=!1)}_dollyOut(t){this.object.isPerspectiveCamera||this.object.isOrthographicCamera?this._scale/=t:(console.warn("WARNING: OrbitControls.js encountered an unknown camera type - dolly/zoom disabled."),this.enableZoom=!1)}_dollyIn(t){this.object.isPerspectiveCamera||this.object.isOrthographicCamera?this._scale*=t:(console.warn("WARNING: OrbitControls.js encountered an unknown camera type - dolly/zoom disabled."),this.enableZoom=!1)}_updateZoomParameters(t,e){if(!this.zoomToCursor)return;this._performCursorZoom=!0;const n=this.domElement.getBoundingClientRect(),s=t-n.left,r=e-n.top,a=n.width,o=n.height;this._mouse.x=s/a*2-1,this._mouse.y=-(r/o)*2+1,this._dollyDirection.set(this._mouse.x,this._mouse.y,1).unproject(this.object).sub(this.object.position).normalize()}_clampDistance(t){return Math.max(this.minDistance,Math.min(this.maxDistance,t))}_handleMouseDownRotate(t){this._rotateStart.set(t.clientX,t.clientY)}_handleMouseDownDolly(t){this._updateZoomParameters(t.clientX,t.clientX),this._dollyStart.set(t.clientX,t.clientY)}_handleMouseDownPan(t){this._panStart.set(t.clientX,t.clientY)}_handleMouseMoveRotate(t){this._rotateEnd.set(t.clientX,t.clientY),this._rotateDelta.subVectors(this._rotateEnd,this._rotateStart).multiplyScalar(this.rotateSpeed);const e=this.domElement;this._rotateLeft(Fe*this._rotateDelta.x/e.clientHeight),this._rotateUp(Fe*this._rotateDelta.y/e.clientHeight),this._rotateStart.copy(this._rotateEnd),this.update()}_handleMouseMoveDolly(t){this._dollyEnd.set(t.clientX,t.clientY),this._dollyDelta.subVectors(this._dollyEnd,this._dollyStart),this._dollyDelta.y>0?this._dollyOut(this._getZoomScale(this._dollyDelta.y)):this._dollyDelta.y<0&&this._dollyIn(this._getZoomScale(this._dollyDelta.y)),this._dollyStart.copy(this._dollyEnd),this.update()}_handleMouseMovePan(t){this._panEnd.set(t.clientX,t.clientY),this._panDelta.subVectors(this._panEnd,this._panStart).multiplyScalar(this.panSpeed),this._pan(this._panDelta.x,this._panDelta.y),this._panStart.copy(this._panEnd),this.update()}_handleMouseWheel(t){this._updateZoomParameters(t.clientX,t.clientY),t.deltaY<0?this._dollyIn(this._getZoomScale(t.deltaY)):t.deltaY>0&&this._dollyOut(this._getZoomScale(t.deltaY)),this.update()}_handleKeyDown(t){let e=!1;switch(t.code){case this.keys.UP:t.ctrlKey||t.metaKey||t.shiftKey?this.enableRotate&&this._rotateUp(Fe*this.keyRotateSpeed/this.domElement.clientHeight):this.enablePan&&this._pan(0,this.keyPanSpeed),e=!0;break;case this.keys.BOTTOM:t.ctrlKey||t.metaKey||t.shiftKey?this.enableRotate&&this._rotateUp(-Fe*this.keyRotateSpeed/this.domElement.clientHeight):this.enablePan&&this._pan(0,-this.keyPanSpeed),e=!0;break;case this.keys.LEFT:t.ctrlKey||t.metaKey||t.shiftKey?this.enableRotate&&this._rotateLeft(Fe*this.keyRotateSpeed/this.domElement.clientHeight):this.enablePan&&this._pan(this.keyPanSpeed,0),e=!0;break;case this.keys.RIGHT:t.ctrlKey||t.metaKey||t.shiftKey?this.enableRotate&&this._rotateLeft(-Fe*this.keyRotateSpeed/this.domElement.clientHeight):this.enablePan&&this._pan(-this.keyPanSpeed,0),e=!0;break}e&&(t.preventDefault(),this.update())}_handleTouchStartRotate(t){if(this._pointers.length===1)this._rotateStart.set(t.pageX,t.pageY);else{const e=this._getSecondPointerPosition(t),n=.5*(t.pageX+e.x),s=.5*(t.pageY+e.y);this._rotateStart.set(n,s)}}_handleTouchStartPan(t){if(this._pointers.length===1)this._panStart.set(t.pageX,t.pageY);else{const e=this._getSecondPointerPosition(t),n=.5*(t.pageX+e.x),s=.5*(t.pageY+e.y);this._panStart.set(n,s)}}_handleTouchStartDolly(t){const e=this._getSecondPointerPosition(t),n=t.pageX-e.x,s=t.pageY-e.y,r=Math.sqrt(n*n+s*s);this._dollyStart.set(0,r)}_handleTouchStartDollyPan(t){this.enableZoom&&this._handleTouchStartDolly(t),this.enablePan&&this._handleTouchStartPan(t)}_handleTouchStartDollyRotate(t){this.enableZoom&&this._handleTouchStartDolly(t),this.enableRotate&&this._handleTouchStartRotate(t)}_handleTouchMoveRotate(t){if(this._pointers.length==1)this._rotateEnd.set(t.pageX,t.pageY);else{const n=this._getSecondPointerPosition(t),s=.5*(t.pageX+n.x),r=.5*(t.pageY+n.y);this._rotateEnd.set(s,r)}this._rotateDelta.subVectors(this._rotateEnd,this._rotateStart).multiplyScalar(this.rotateSpeed);const e=this.domElement;this._rotateLeft(Fe*this._rotateDelta.x/e.clientHeight),this._rotateUp(Fe*this._rotateDelta.y/e.clientHeight),this._rotateStart.copy(this._rotateEnd)}_handleTouchMovePan(t){if(this._pointers.length===1)this._panEnd.set(t.pageX,t.pageY);else{const e=this._getSecondPointerPosition(t),n=.5*(t.pageX+e.x),s=.5*(t.pageY+e.y);this._panEnd.set(n,s)}this._panDelta.subVectors(this._panEnd,this._panStart).multiplyScalar(this.panSpeed),this._pan(this._panDelta.x,this._panDelta.y),this._panStart.copy(this._panEnd)}_handleTouchMoveDolly(t){const e=this._getSecondPointerPosition(t),n=t.pageX-e.x,s=t.pageY-e.y,r=Math.sqrt(n*n+s*s);this._dollyEnd.set(0,r),this._dollyDelta.set(0,Math.pow(this._dollyEnd.y/this._dollyStart.y,this.zoomSpeed)),this._dollyOut(this._dollyDelta.y),this._dollyStart.copy(this._dollyEnd);const a=(t.pageX+e.x)*.5,o=(t.pageY+e.y)*.5;this._updateZoomParameters(a,o)}_handleTouchMoveDollyPan(t){this.enableZoom&&this._handleTouchMoveDolly(t),this.enablePan&&this._handleTouchMovePan(t)}_handleTouchMoveDollyRotate(t){this.enableZoom&&this._handleTouchMoveDolly(t),this.enableRotate&&this._handleTouchMoveRotate(t)}_addPointer(t){this._pointers.push(t.pointerId)}_removePointer(t){delete this._pointerPositions[t.pointerId];for(let e=0;e<this._pointers.length;e++)if(this._pointers[e]==t.pointerId){this._pointers.splice(e,1);return}}_isTrackingPointer(t){for(let e=0;e<this._pointers.length;e++)if(this._pointers[e]==t.pointerId)return!0;return!1}_trackPointer(t){let e=this._pointerPositions[t.pointerId];e===void 0&&(e=new gt,this._pointerPositions[t.pointerId]=e),e.set(t.pageX,t.pageY)}_getSecondPointerPosition(t){const e=t.pointerId===this._pointers[0]?this._pointers[1]:this._pointers[0];return this._pointerPositions[e]}_customWheelEvent(t){const e=t.deltaMode,n={clientX:t.clientX,clientY:t.clientY,deltaY:t.deltaY};switch(e){case 1:n.deltaY*=16;break;case 2:n.deltaY*=100;break}return t.ctrlKey&&!this._controlActive&&(n.deltaY*=10),n}}function Zm(i){this.enabled!==!1&&(this._pointers.length===0&&(this.domElement.setPointerCapture(i.pointerId),this.domElement.addEventListener("pointermove",this._onPointerMove),this.domElement.addEventListener("pointerup",this._onPointerUp)),!this._isTrackingPointer(i)&&(this._addPointer(i),i.pointerType==="touch"?this._onTouchStart(i):this._onMouseDown(i)))}function Km(i){this.enabled!==!1&&(i.pointerType==="touch"?this._onTouchMove(i):this._onMouseMove(i))}function $m(i){switch(this._removePointer(i),this._pointers.length){case 0:this.domElement.releasePointerCapture(i.pointerId),this.domElement.removeEventListener("pointermove",this._onPointerMove),this.domElement.removeEventListener("pointerup",this._onPointerUp),this.dispatchEvent(fc),this.state=ae.NONE;break;case 1:const t=this._pointers[0],e=this._pointerPositions[t];this._onTouchStart({pointerId:t,pageX:e.x,pageY:e.y});break}}function Jm(i){let t;switch(i.button){case 0:t=this.mouseButtons.LEFT;break;case 1:t=this.mouseButtons.MIDDLE;break;case 2:t=this.mouseButtons.RIGHT;break;default:t=-1}switch(t){case Di.DOLLY:if(this.enableZoom===!1)return;this._handleMouseDownDolly(i),this.state=ae.DOLLY;break;case Di.ROTATE:if(i.ctrlKey||i.metaKey||i.shiftKey){if(this.enablePan===!1)return;this._handleMouseDownPan(i),this.state=ae.PAN}else{if(this.enableRotate===!1)return;this._handleMouseDownRotate(i),this.state=ae.ROTATE}break;case Di.PAN:if(i.ctrlKey||i.metaKey||i.shiftKey){if(this.enableRotate===!1)return;this._handleMouseDownRotate(i),this.state=ae.ROTATE}else{if(this.enablePan===!1)return;this._handleMouseDownPan(i),this.state=ae.PAN}break;default:this.state=ae.NONE}this.state!==ae.NONE&&this.dispatchEvent(eo)}function Qm(i){switch(this.state){case ae.ROTATE:if(this.enableRotate===!1)return;this._handleMouseMoveRotate(i);break;case ae.DOLLY:if(this.enableZoom===!1)return;this._handleMouseMoveDolly(i);break;case ae.PAN:if(this.enablePan===!1)return;this._handleMouseMovePan(i);break}}function t_(i){this.enabled===!1||this.enableZoom===!1||this.state!==ae.NONE||(i.preventDefault(),this.dispatchEvent(eo),this._handleMouseWheel(this._customWheelEvent(i)),this.dispatchEvent(fc))}function e_(i){this.enabled!==!1&&this._handleKeyDown(i)}function n_(i){switch(this._trackPointer(i),this._pointers.length){case 1:switch(this.touches.ONE){case Ri.ROTATE:if(this.enableRotate===!1)return;this._handleTouchStartRotate(i),this.state=ae.TOUCH_ROTATE;break;case Ri.PAN:if(this.enablePan===!1)return;this._handleTouchStartPan(i),this.state=ae.TOUCH_PAN;break;default:this.state=ae.NONE}break;case 2:switch(this.touches.TWO){case Ri.DOLLY_PAN:if(this.enableZoom===!1&&this.enablePan===!1)return;this._handleTouchStartDollyPan(i),this.state=ae.TOUCH_DOLLY_PAN;break;case Ri.DOLLY_ROTATE:if(this.enableZoom===!1&&this.enableRotate===!1)return;this._handleTouchStartDollyRotate(i),this.state=ae.TOUCH_DOLLY_ROTATE;break;default:this.state=ae.NONE}break;default:this.state=ae.NONE}this.state!==ae.NONE&&this.dispatchEvent(eo)}function i_(i){switch(this._trackPointer(i),this.state){case ae.TOUCH_ROTATE:if(this.enableRotate===!1)return;this._handleTouchMoveRotate(i),this.update();break;case ae.TOUCH_PAN:if(this.enablePan===!1)return;this._handleTouchMovePan(i),this.update();break;case ae.TOUCH_DOLLY_PAN:if(this.enableZoom===!1&&this.enablePan===!1)return;this._handleTouchMoveDollyPan(i),this.update();break;case ae.TOUCH_DOLLY_ROTATE:if(this.enableZoom===!1&&this.enableRotate===!1)return;this._handleTouchMoveDollyRotate(i),this.update();break;default:this.state=ae.NONE}}function s_(i){this.enabled!==!1&&i.preventDefault()}function r_(i){i.key==="Control"&&(this._controlActive=!0,this.domElement.getRootNode().addEventListener("keyup",this._interceptControlUp,{passive:!0,capture:!0}))}function a_(i){i.key==="Control"&&(this._controlActive=!1,this.domElement.getRootNode().removeEventListener("keyup",this._interceptControlUp,{passive:!0,capture:!0}))}const pc={name:"CopyShader",uniforms:{tDiffuse:{value:null},opacity:{value:1}},vertexShader:`
|
||
|
||
varying vec2 vUv;
|
||
|
||
void main() {
|
||
|
||
vUv = uv;
|
||
gl_Position = projectionMatrix * modelViewMatrix * vec4( position, 1.0 );
|
||
|
||
}`,fragmentShader:`
|
||
|
||
uniform float opacity;
|
||
|
||
uniform sampler2D tDiffuse;
|
||
|
||
varying vec2 vUv;
|
||
|
||
void main() {
|
||
|
||
vec4 texel = texture2D( tDiffuse, vUv );
|
||
gl_FragColor = opacity * texel;
|
||
|
||
|
||
}`};class ls{constructor(){this.isPass=!0,this.enabled=!0,this.needsSwap=!0,this.clear=!1,this.renderToScreen=!1}setSize(){}render(){console.error("THREE.Pass: .render() must be implemented in derived pass.")}dispose(){}}const o_=new oc(-1,1,1,-1,0,1);class l_ extends Ee{constructor(){super(),this.setAttribute("position",new Pe([-1,3,0,-1,-1,0,3,-1,0],3)),this.setAttribute("uv",new Pe([0,2,0,0,2,0],2))}}const c_=new l_;class mc{constructor(t){this._mesh=new ye(c_,t)}dispose(){this._mesh.geometry.dispose()}render(t){t.render(this._mesh,o_)}get material(){return this._mesh.material}set material(t){this._mesh.material=t}}class js extends ls{constructor(t,e){super(),this.textureID=e!==void 0?e:"tDiffuse",t instanceof Ie?(this.uniforms=t.uniforms,this.material=t):t&&(this.uniforms=Qs.clone(t.uniforms),this.material=new Ie({name:t.name!==void 0?t.name:"unspecified",defines:Object.assign({},t.defines),uniforms:this.uniforms,vertexShader:t.vertexShader,fragmentShader:t.fragmentShader})),this.fsQuad=new mc(this.material)}render(t,e,n){this.uniforms[this.textureID]&&(this.uniforms[this.textureID].value=n.texture),this.fsQuad.material=this.material,this.renderToScreen?(t.setRenderTarget(null),this.fsQuad.render(t)):(t.setRenderTarget(e),this.clear&&t.clear(t.autoClearColor,t.autoClearDepth,t.autoClearStencil),this.fsQuad.render(t))}dispose(){this.material.dispose(),this.fsQuad.dispose()}}class yl extends ls{constructor(t,e){super(),this.scene=t,this.camera=e,this.clear=!0,this.needsSwap=!1,this.inverse=!1}render(t,e,n){const s=t.getContext(),r=t.state;r.buffers.color.setMask(!1),r.buffers.depth.setMask(!1),r.buffers.color.setLocked(!0),r.buffers.depth.setLocked(!0);let a,o;this.inverse?(a=0,o=1):(a=1,o=0),r.buffers.stencil.setTest(!0),r.buffers.stencil.setOp(s.REPLACE,s.REPLACE,s.REPLACE),r.buffers.stencil.setFunc(s.ALWAYS,a,4294967295),r.buffers.stencil.setClear(o),r.buffers.stencil.setLocked(!0),t.setRenderTarget(n),this.clear&&t.clear(),t.render(this.scene,this.camera),t.setRenderTarget(e),this.clear&&t.clear(),t.render(this.scene,this.camera),r.buffers.color.setLocked(!1),r.buffers.depth.setLocked(!1),r.buffers.color.setMask(!0),r.buffers.depth.setMask(!0),r.buffers.stencil.setLocked(!1),r.buffers.stencil.setFunc(s.EQUAL,1,4294967295),r.buffers.stencil.setOp(s.KEEP,s.KEEP,s.KEEP),r.buffers.stencil.setLocked(!0)}}class h_ extends ls{constructor(){super(),this.needsSwap=!1}render(t){t.state.buffers.stencil.setLocked(!1),t.state.buffers.stencil.setTest(!1)}}class u_{constructor(t,e){if(this.renderer=t,this._pixelRatio=t.getPixelRatio(),e===void 0){const n=t.getSize(new gt);this._width=n.width,this._height=n.height,e=new an(this._width*this._pixelRatio,this._height*this._pixelRatio,{type:bn}),e.texture.name="EffectComposer.rt1"}else this._width=e.width,this._height=e.height;this.renderTarget1=e,this.renderTarget2=e.clone(),this.renderTarget2.texture.name="EffectComposer.rt2",this.writeBuffer=this.renderTarget1,this.readBuffer=this.renderTarget2,this.renderToScreen=!0,this.passes=[],this.copyPass=new js(pc),this.copyPass.material.blending=Tn,this.clock=new au}swapBuffers(){const t=this.readBuffer;this.readBuffer=this.writeBuffer,this.writeBuffer=t}addPass(t){this.passes.push(t),t.setSize(this._width*this._pixelRatio,this._height*this._pixelRatio)}insertPass(t,e){this.passes.splice(e,0,t),t.setSize(this._width*this._pixelRatio,this._height*this._pixelRatio)}removePass(t){const e=this.passes.indexOf(t);e!==-1&&this.passes.splice(e,1)}isLastEnabledPass(t){for(let e=t+1;e<this.passes.length;e++)if(this.passes[e].enabled)return!1;return!0}render(t){t===void 0&&(t=this.clock.getDelta());const e=this.renderer.getRenderTarget();let n=!1;for(let s=0,r=this.passes.length;s<r;s++){const a=this.passes[s];if(a.enabled!==!1){if(a.renderToScreen=this.renderToScreen&&this.isLastEnabledPass(s),a.render(this.renderer,this.writeBuffer,this.readBuffer,t,n),a.needsSwap){if(n){const o=this.renderer.getContext(),l=this.renderer.state.buffers.stencil;l.setFunc(o.NOTEQUAL,1,4294967295),this.copyPass.render(this.renderer,this.writeBuffer,this.readBuffer,t),l.setFunc(o.EQUAL,1,4294967295)}this.swapBuffers()}yl!==void 0&&(a instanceof yl?n=!0:a instanceof h_&&(n=!1))}}this.renderer.setRenderTarget(e)}reset(t){if(t===void 0){const e=this.renderer.getSize(new gt);this._pixelRatio=this.renderer.getPixelRatio(),this._width=e.width,this._height=e.height,t=this.renderTarget1.clone(),t.setSize(this._width*this._pixelRatio,this._height*this._pixelRatio)}this.renderTarget1.dispose(),this.renderTarget2.dispose(),this.renderTarget1=t,this.renderTarget2=t.clone(),this.writeBuffer=this.renderTarget1,this.readBuffer=this.renderTarget2}setSize(t,e){this._width=t,this._height=e;const n=this._width*this._pixelRatio,s=this._height*this._pixelRatio;this.renderTarget1.setSize(n,s),this.renderTarget2.setSize(n,s);for(let r=0;r<this.passes.length;r++)this.passes[r].setSize(n,s)}setPixelRatio(t){this._pixelRatio=t,this.setSize(this._width,this._height)}dispose(){this.renderTarget1.dispose(),this.renderTarget2.dispose(),this.copyPass.dispose()}}class d_ extends ls{constructor(t,e,n=null,s=null,r=null){super(),this.scene=t,this.camera=e,this.overrideMaterial=n,this.clearColor=s,this.clearAlpha=r,this.clear=!0,this.clearDepth=!1,this.needsSwap=!1,this._oldClearColor=new xt}render(t,e,n){const s=t.autoClear;t.autoClear=!1;let r,a;this.overrideMaterial!==null&&(a=this.scene.overrideMaterial,this.scene.overrideMaterial=this.overrideMaterial),this.clearColor!==null&&(t.getClearColor(this._oldClearColor),t.setClearColor(this.clearColor,t.getClearAlpha())),this.clearAlpha!==null&&(r=t.getClearAlpha(),t.setClearAlpha(this.clearAlpha)),this.clearDepth==!0&&t.clearDepth(),t.setRenderTarget(this.renderToScreen?null:n),this.clear===!0&&t.clear(t.autoClearColor,t.autoClearDepth,t.autoClearStencil),t.render(this.scene,this.camera),this.clearColor!==null&&t.setClearColor(this._oldClearColor),this.clearAlpha!==null&&t.setClearAlpha(r),this.overrideMaterial!==null&&(this.scene.overrideMaterial=a),t.autoClear=s}}const f_={uniforms:{tDiffuse:{value:null},luminosityThreshold:{value:1},smoothWidth:{value:1},defaultColor:{value:new xt(0)},defaultOpacity:{value:0}},vertexShader:`
|
||
|
||
varying vec2 vUv;
|
||
|
||
void main() {
|
||
|
||
vUv = uv;
|
||
|
||
gl_Position = projectionMatrix * modelViewMatrix * vec4( position, 1.0 );
|
||
|
||
}`,fragmentShader:`
|
||
|
||
uniform sampler2D tDiffuse;
|
||
uniform vec3 defaultColor;
|
||
uniform float defaultOpacity;
|
||
uniform float luminosityThreshold;
|
||
uniform float smoothWidth;
|
||
|
||
varying vec2 vUv;
|
||
|
||
void main() {
|
||
|
||
vec4 texel = texture2D( tDiffuse, vUv );
|
||
|
||
float v = luminance( texel.xyz );
|
||
|
||
vec4 outputColor = vec4( defaultColor.rgb, defaultOpacity );
|
||
|
||
float alpha = smoothstep( luminosityThreshold, luminosityThreshold + smoothWidth, v );
|
||
|
||
gl_FragColor = mix( outputColor, texel, alpha );
|
||
|
||
}`};class Vi extends ls{constructor(t,e,n,s){super(),this.strength=e!==void 0?e:1,this.radius=n,this.threshold=s,this.resolution=t!==void 0?new gt(t.x,t.y):new gt(256,256),this.clearColor=new xt(0,0,0),this.renderTargetsHorizontal=[],this.renderTargetsVertical=[],this.nMips=5;let r=Math.round(this.resolution.x/2),a=Math.round(this.resolution.y/2);this.renderTargetBright=new an(r,a,{type:bn}),this.renderTargetBright.texture.name="UnrealBloomPass.bright",this.renderTargetBright.texture.generateMipmaps=!1;for(let d=0;d<this.nMips;d++){const f=new an(r,a,{type:bn});f.texture.name="UnrealBloomPass.h"+d,f.texture.generateMipmaps=!1,this.renderTargetsHorizontal.push(f);const m=new an(r,a,{type:bn});m.texture.name="UnrealBloomPass.v"+d,m.texture.generateMipmaps=!1,this.renderTargetsVertical.push(m),r=Math.round(r/2),a=Math.round(a/2)}const o=f_;this.highPassUniforms=Qs.clone(o.uniforms),this.highPassUniforms.luminosityThreshold.value=s,this.highPassUniforms.smoothWidth.value=.01,this.materialHighPassFilter=new Ie({uniforms:this.highPassUniforms,vertexShader:o.vertexShader,fragmentShader:o.fragmentShader}),this.separableBlurMaterials=[];const l=[3,5,7,9,11];r=Math.round(this.resolution.x/2),a=Math.round(this.resolution.y/2);for(let d=0;d<this.nMips;d++)this.separableBlurMaterials.push(this.getSeparableBlurMaterial(l[d])),this.separableBlurMaterials[d].uniforms.invSize.value=new gt(1/r,1/a),r=Math.round(r/2),a=Math.round(a/2);this.compositeMaterial=this.getCompositeMaterial(this.nMips),this.compositeMaterial.uniforms.blurTexture1.value=this.renderTargetsVertical[0].texture,this.compositeMaterial.uniforms.blurTexture2.value=this.renderTargetsVertical[1].texture,this.compositeMaterial.uniforms.blurTexture3.value=this.renderTargetsVertical[2].texture,this.compositeMaterial.uniforms.blurTexture4.value=this.renderTargetsVertical[3].texture,this.compositeMaterial.uniforms.blurTexture5.value=this.renderTargetsVertical[4].texture,this.compositeMaterial.uniforms.bloomStrength.value=e,this.compositeMaterial.uniforms.bloomRadius.value=.1;const c=[1,.8,.6,.4,.2];this.compositeMaterial.uniforms.bloomFactors.value=c,this.bloomTintColors=[new P(1,1,1),new P(1,1,1),new P(1,1,1),new P(1,1,1),new P(1,1,1)],this.compositeMaterial.uniforms.bloomTintColors.value=this.bloomTintColors;const h=pc;this.copyUniforms=Qs.clone(h.uniforms),this.blendMaterial=new Ie({uniforms:this.copyUniforms,vertexShader:h.vertexShader,fragmentShader:h.fragmentShader,blending:fn,depthTest:!1,depthWrite:!1,transparent:!0}),this.enabled=!0,this.needsSwap=!1,this._oldClearColor=new xt,this.oldClearAlpha=1,this.basic=new or,this.fsQuad=new mc(null)}dispose(){for(let t=0;t<this.renderTargetsHorizontal.length;t++)this.renderTargetsHorizontal[t].dispose();for(let t=0;t<this.renderTargetsVertical.length;t++)this.renderTargetsVertical[t].dispose();this.renderTargetBright.dispose();for(let t=0;t<this.separableBlurMaterials.length;t++)this.separableBlurMaterials[t].dispose();this.compositeMaterial.dispose(),this.blendMaterial.dispose(),this.basic.dispose(),this.fsQuad.dispose()}setSize(t,e){let n=Math.round(t/2),s=Math.round(e/2);this.renderTargetBright.setSize(n,s);for(let r=0;r<this.nMips;r++)this.renderTargetsHorizontal[r].setSize(n,s),this.renderTargetsVertical[r].setSize(n,s),this.separableBlurMaterials[r].uniforms.invSize.value=new gt(1/n,1/s),n=Math.round(n/2),s=Math.round(s/2)}render(t,e,n,s,r){t.getClearColor(this._oldClearColor),this.oldClearAlpha=t.getClearAlpha();const a=t.autoClear;t.autoClear=!1,t.setClearColor(this.clearColor,0),r&&t.state.buffers.stencil.setTest(!1),this.renderToScreen&&(this.fsQuad.material=this.basic,this.basic.map=n.texture,t.setRenderTarget(null),t.clear(),this.fsQuad.render(t)),this.highPassUniforms.tDiffuse.value=n.texture,this.highPassUniforms.luminosityThreshold.value=this.threshold,this.fsQuad.material=this.materialHighPassFilter,t.setRenderTarget(this.renderTargetBright),t.clear(),this.fsQuad.render(t);let o=this.renderTargetBright;for(let l=0;l<this.nMips;l++)this.fsQuad.material=this.separableBlurMaterials[l],this.separableBlurMaterials[l].uniforms.colorTexture.value=o.texture,this.separableBlurMaterials[l].uniforms.direction.value=Vi.BlurDirectionX,t.setRenderTarget(this.renderTargetsHorizontal[l]),t.clear(),this.fsQuad.render(t),this.separableBlurMaterials[l].uniforms.colorTexture.value=this.renderTargetsHorizontal[l].texture,this.separableBlurMaterials[l].uniforms.direction.value=Vi.BlurDirectionY,t.setRenderTarget(this.renderTargetsVertical[l]),t.clear(),this.fsQuad.render(t),o=this.renderTargetsVertical[l];this.fsQuad.material=this.compositeMaterial,this.compositeMaterial.uniforms.bloomStrength.value=this.strength,this.compositeMaterial.uniforms.bloomRadius.value=this.radius,this.compositeMaterial.uniforms.bloomTintColors.value=this.bloomTintColors,t.setRenderTarget(this.renderTargetsHorizontal[0]),t.clear(),this.fsQuad.render(t),this.fsQuad.material=this.blendMaterial,this.copyUniforms.tDiffuse.value=this.renderTargetsHorizontal[0].texture,r&&t.state.buffers.stencil.setTest(!0),this.renderToScreen?(t.setRenderTarget(null),this.fsQuad.render(t)):(t.setRenderTarget(n),this.fsQuad.render(t)),t.setClearColor(this._oldClearColor,this.oldClearAlpha),t.autoClear=a}getSeparableBlurMaterial(t){const e=[];for(let n=0;n<t;n++)e.push(.39894*Math.exp(-.5*n*n/(t*t))/t);return new Ie({defines:{KERNEL_RADIUS:t},uniforms:{colorTexture:{value:null},invSize:{value:new gt(.5,.5)},direction:{value:new gt(.5,.5)},gaussianCoefficients:{value:e}},vertexShader:`varying vec2 vUv;
|
||
void main() {
|
||
vUv = uv;
|
||
gl_Position = projectionMatrix * modelViewMatrix * vec4( position, 1.0 );
|
||
}`,fragmentShader:`#include <common>
|
||
varying vec2 vUv;
|
||
uniform sampler2D colorTexture;
|
||
uniform vec2 invSize;
|
||
uniform vec2 direction;
|
||
uniform float gaussianCoefficients[KERNEL_RADIUS];
|
||
|
||
void main() {
|
||
float weightSum = gaussianCoefficients[0];
|
||
vec3 diffuseSum = texture2D( colorTexture, vUv ).rgb * weightSum;
|
||
for( int i = 1; i < KERNEL_RADIUS; i ++ ) {
|
||
float x = float(i);
|
||
float w = gaussianCoefficients[i];
|
||
vec2 uvOffset = direction * invSize * x;
|
||
vec3 sample1 = texture2D( colorTexture, vUv + uvOffset ).rgb;
|
||
vec3 sample2 = texture2D( colorTexture, vUv - uvOffset ).rgb;
|
||
diffuseSum += (sample1 + sample2) * w;
|
||
weightSum += 2.0 * w;
|
||
}
|
||
gl_FragColor = vec4(diffuseSum/weightSum, 1.0);
|
||
}`})}getCompositeMaterial(t){return new Ie({defines:{NUM_MIPS:t},uniforms:{blurTexture1:{value:null},blurTexture2:{value:null},blurTexture3:{value:null},blurTexture4:{value:null},blurTexture5:{value:null},bloomStrength:{value:1},bloomFactors:{value:null},bloomTintColors:{value:null},bloomRadius:{value:0}},vertexShader:`varying vec2 vUv;
|
||
void main() {
|
||
vUv = uv;
|
||
gl_Position = projectionMatrix * modelViewMatrix * vec4( position, 1.0 );
|
||
}`,fragmentShader:`varying vec2 vUv;
|
||
uniform sampler2D blurTexture1;
|
||
uniform sampler2D blurTexture2;
|
||
uniform sampler2D blurTexture3;
|
||
uniform sampler2D blurTexture4;
|
||
uniform sampler2D blurTexture5;
|
||
uniform float bloomStrength;
|
||
uniform float bloomRadius;
|
||
uniform float bloomFactors[NUM_MIPS];
|
||
uniform vec3 bloomTintColors[NUM_MIPS];
|
||
|
||
float lerpBloomFactor(const in float factor) {
|
||
float mirrorFactor = 1.2 - factor;
|
||
return mix(factor, mirrorFactor, bloomRadius);
|
||
}
|
||
|
||
void main() {
|
||
gl_FragColor = bloomStrength * ( lerpBloomFactor(bloomFactors[0]) * vec4(bloomTintColors[0], 1.0) * texture2D(blurTexture1, vUv) +
|
||
lerpBloomFactor(bloomFactors[1]) * vec4(bloomTintColors[1], 1.0) * texture2D(blurTexture2, vUv) +
|
||
lerpBloomFactor(bloomFactors[2]) * vec4(bloomTintColors[2], 1.0) * texture2D(blurTexture3, vUv) +
|
||
lerpBloomFactor(bloomFactors[3]) * vec4(bloomTintColors[3], 1.0) * texture2D(blurTexture4, vUv) +
|
||
lerpBloomFactor(bloomFactors[4]) * vec4(bloomTintColors[4], 1.0) * texture2D(blurTexture5, vUv) );
|
||
}`})}}Vi.BlurDirectionX=new gt(1,0);Vi.BlurDirectionY=new gt(0,1);function p_(i){const t=new Xh;t.fog=new lr(328976,.008);const e=new We(60,i.clientWidth/i.clientHeight,.1,2e3);e.position.set(0,30,80);const n=new Ym({antialias:!0,alpha:!0,powerPreference:"high-performance"});n.setSize(i.clientWidth,i.clientHeight),n.setPixelRatio(Math.min(window.devicePixelRatio,2)),n.toneMapping=Nl,n.toneMappingExposure=1.2,i.appendChild(n.domElement);const s=new jm(e,n.domElement);s.enableDamping=!0,s.dampingFactor=.05,s.rotateSpeed=.5,s.zoomSpeed=.8,s.minDistance=10,s.maxDistance=500,s.autoRotate=!0,s.autoRotateSpeed=.3;const r=new u_(n);r.addPass(new d_(t,e));const a=new Vi(new gt(i.clientWidth,i.clientHeight),.8,.4,.85);r.addPass(a);const o=new su(1710650,.5);t.add(o);const l=new Wo(6514417,1.5,200);l.position.set(50,50,50),t.add(l);const c=new Wo(11032055,1,200);c.position.set(-50,-30,-50),t.add(c);const h=new ou;h.params.Points={threshold:2};const d=new gt;return{scene:t,camera:e,renderer:n,controls:s,composer:r,bloomPass:a,raycaster:h,mouse:d,lights:{ambient:o,point1:l,point2:c}}}function m_(i,t){const e=t.clientWidth,n=t.clientHeight;i.camera.aspect=e/n,i.camera.updateProjectionMatrix(),i.renderer.setSize(e,n),i.composer.setSize(e,n)}function __(i){i.scene.traverse(t=>{var e;(t instanceof ye||t instanceof Zh)&&((e=t.geometry)==null||e.dispose(),Array.isArray(t.material)?t.material.forEach(n=>n.dispose()):t.material&&t.material.dispose())}),i.renderer.dispose(),i.composer.dispose()}class g_{constructor(t){ie(this,"positions");ie(this,"velocities");ie(this,"running",!0);ie(this,"step",0);ie(this,"repulsionStrength",500);ie(this,"attractionStrength",.01);ie(this,"dampening",.9);ie(this,"maxSteps",300);this.positions=t,this.velocities=new Map;for(const e of t.keys())this.velocities.set(e,new P)}tick(t){if(!this.running||this.step>this.maxSteps)return;this.step++;const e=Math.max(.001,1-this.step/this.maxSteps),n=Array.from(this.positions.keys());for(let s=0;s<n.length;s++)for(let r=s+1;r<n.length;r++){const a=this.positions.get(n[s]),o=this.positions.get(n[r]),l=new P().subVectors(a,o),c=l.length()||1,h=this.repulsionStrength/(c*c)*e,d=l.normalize().multiplyScalar(h);this.velocities.get(n[s]).add(d),this.velocities.get(n[r]).sub(d)}for(const s of t){const r=this.positions.get(s.source),a=this.positions.get(s.target);if(!r||!a)continue;const o=new P().subVectors(a,r),c=o.length()*this.attractionStrength*s.weight*e,h=o.normalize().multiplyScalar(c);this.velocities.get(s.source).add(h),this.velocities.get(s.target).sub(h)}for(const s of n){const r=this.positions.get(s),a=this.velocities.get(s);a.sub(r.clone().multiplyScalar(.001*e)),a.multiplyScalar(this.dampening),r.add(a)}}reset(){this.step=0,this.running=!0;for(const t of this.velocities.values())t.set(0,0,0)}}class v_{constructor(){ie(this,"group");ie(this,"meshMap",new Map);ie(this,"positions",new Map);ie(this,"labelSprites",new Map);ie(this,"hoveredNode",null);ie(this,"selectedNode",null);this.group=new Ci}createNodes(t){const e=(1+Math.sqrt(5))/2,n=t.length;for(let s=0;s<n;s++){const r=t[s],a=1-2*s/(n-1||1),o=Math.sqrt(1-a*a),l=2*Math.PI*s/e,c=30+n*.5,h=new P(o*Math.cos(l)*c,a*c,o*Math.sin(l)*c);r.isCenter&&h.set(0,0,0),this.positions.set(r.id,h);const d=.5+r.retention*2,f=Pc[r.type]||"#8B95A5",m=new Qa(d,16,16),g=new Qh({color:new xt(f),emissive:new xt(f),emissiveIntensity:.3+r.retention*.5,roughness:.3,metalness:.1,transparent:!0,opacity:.3+r.retention*.7}),x=new ye(m,g);x.position.copy(h),x.userData={nodeId:r.id,type:r.type,retention:r.retention},this.meshMap.set(r.id,x),this.group.add(x);const p=new Fa({color:new xt(f),transparent:!0,opacity:.15+r.retention*.2,blending:fn}),u=new Ir(p);u.scale.set(d*4,d*4,1),u.position.copy(h),u.userData={isGlow:!0,nodeId:r.id},this.group.add(u);const b=r.label||r.type,E=this.createTextSprite(b,"#e2e8f0");E.position.copy(h),E.position.y+=d*2+1.5,E.userData={isLabel:!0,nodeId:r.id,offset:d*2+1.5},this.group.add(E),this.labelSprites.set(r.id,E)}return this.positions}createTextSprite(t,e){const n=document.createElement("canvas"),s=n.getContext("2d");n.width=512,n.height=64;const r=t.length>40?t.slice(0,37)+"...":t;s.clearRect(0,0,n.width,n.height),s.font="bold 28px -apple-system, BlinkMacSystemFont, sans-serif",s.textAlign="center",s.textBaseline="middle",s.shadowColor="rgba(0, 0, 0, 0.8)",s.shadowBlur=6,s.shadowOffsetX=0,s.shadowOffsetY=2,s.fillStyle=e,s.fillText(r,n.width/2,n.height/2);const a=new Jh(n);a.needsUpdate=!0;const o=new Fa({map:a,transparent:!0,opacity:0,depthTest:!1,sizeAttenuation:!0}),l=new Ir(o);return l.scale.set(12,1.5,1),l}updatePositions(){this.group.children.forEach(t=>{if(t.userData.nodeId){const e=this.positions.get(t.userData.nodeId);if(!e)return;t.userData.isGlow?t.position.copy(e):t.userData.isLabel?(t.position.copy(e),t.position.y+=t.userData.offset):t instanceof ye&&t.position.copy(e)}})}animate(t,e,n){this.meshMap.forEach((s,r)=>{const a=e.find(c=>c.id===r);if(!a)return;const o=1+Math.sin(t*1.5+e.indexOf(a)*.5)*.15*a.retention;s.scale.setScalar(o);const l=s.material;if(r===this.hoveredNode)l.emissiveIntensity=1;else if(r===this.selectedNode)l.emissiveIntensity=.8;else{const h=.3+a.retention*.5+Math.sin(t*(.8+a.retention*.7))*.1*a.retention;l.emissiveIntensity=h}}),this.labelSprites.forEach((s,r)=>{const a=this.positions.get(r);if(!a)return;const o=n.position.distanceTo(a),l=s.material,c=r===this.hoveredNode||r===this.selectedNode?1:o<40?.9:o<80?.9*(1-(o-40)/40):0;l.opacity+=(c-l.opacity)*.1})}getMeshes(){return Array.from(this.meshMap.values())}dispose(){this.group.traverse(t=>{var e,n,s,r,a;t instanceof ye?((e=t.geometry)==null||e.dispose(),(n=t.material)==null||n.dispose()):t instanceof Ir&&((r=(s=t.material)==null?void 0:s.map)==null||r.dispose(),(a=t.material)==null||a.dispose())})}}class x_{constructor(){ie(this,"group");this.group=new Ci}createEdges(t,e){for(const n of t){const s=e.get(n.source),r=e.get(n.target);if(!s||!r)continue;const a=[s,r],o=new Ee().setFromPoints(a),l=new $a({color:4868730,transparent:!0,opacity:Math.min(.1+n.weight*.5,.6),blending:fn}),c=new sc(o,l);c.userData={source:n.source,target:n.target},this.group.add(c)}}updatePositions(t){this.group.children.forEach(e=>{const n=e,s=t.get(n.userData.source),r=t.get(n.userData.target);if(s&&r){const a=n.geometry.attributes.position;a.setXYZ(0,s.x,s.y,s.z),a.setXYZ(1,r.x,r.y,r.z),a.needsUpdate=!0}})}dispose(){this.group.children.forEach(t=>{var n,s;const e=t;(n=e.geometry)==null||n.dispose(),(s=e.material)==null||s.dispose()})}}class M_{constructor(t){ie(this,"starField");ie(this,"neuralParticles");this.starField=this.createStarField(),this.neuralParticles=this.createNeuralParticles(),t.add(this.starField),t.add(this.neuralParticles)}createStarField(){const e=new Ee,n=new Float32Array(3e3*3),s=new Float32Array(3e3);for(let a=0;a<3e3;a++)n[a*3]=(Math.random()-.5)*1e3,n[a*3+1]=(Math.random()-.5)*1e3,n[a*3+2]=(Math.random()-.5)*1e3,s[a]=Math.random()*1.5;e.setAttribute("position",new Se(n,3)),e.setAttribute("size",new Se(s,1));const r=new ir({color:6514417,size:.5,transparent:!0,opacity:.4,sizeAttenuation:!0,blending:fn});return new Ba(e,r)}createNeuralParticles(){const e=new Ee,n=new Float32Array(500*3),s=new Float32Array(500*3);for(let a=0;a<500;a++)n[a*3]=(Math.random()-.5)*100,n[a*3+1]=(Math.random()-.5)*100,n[a*3+2]=(Math.random()-.5)*100,s[a*3]=.4+Math.random()*.3,s[a*3+1]=.3+Math.random()*.2,s[a*3+2]=.8+Math.random()*.2;e.setAttribute("position",new Se(n,3)),e.setAttribute("color",new Se(s,3));const r=new ir({size:.3,vertexColors:!0,transparent:!0,opacity:.4,blending:fn,sizeAttenuation:!0});return new Ba(e,r)}animate(t){this.starField.rotation.y+=1e-4,this.starField.rotation.x+=5e-5;const e=this.neuralParticles.geometry.attributes.position;for(let n=0;n<e.count;n++)e.setY(n,e.getY(n)+Math.sin(t+n*.1)*.02),e.setX(n,e.getX(n)+Math.cos(t+n*.05)*.01);e.needsUpdate=!0}dispose(){this.starField.geometry.dispose(),this.starField.material.dispose(),this.neuralParticles.geometry.dispose(),this.neuralParticles.material.dispose()}}class S_{constructor(t){ie(this,"pulseEffects",[]);ie(this,"spawnBursts",[]);ie(this,"shockwaves",[]);ie(this,"connectionFlashes",[]);ie(this,"scene");this.scene=t}addPulse(t,e,n,s){this.pulseEffects.push({nodeId:t,intensity:e,color:n,decay:s})}createSpawnBurst(t,e){const s=new Ee,r=new Float32Array(180),a=new Float32Array(180);for(let c=0;c<60;c++){r[c*3]=t.x,r[c*3+1]=t.y,r[c*3+2]=t.z;const h=Math.random()*Math.PI*2,d=Math.acos(2*Math.random()-1),f=.3+Math.random()*.5;a[c*3]=Math.sin(d)*Math.cos(h)*f,a[c*3+1]=Math.sin(d)*Math.sin(h)*f,a[c*3+2]=Math.cos(d)*f}s.setAttribute("position",new Se(r,3)),s.setAttribute("velocity",new Se(a,3));const o=new ir({color:e,size:.6,transparent:!0,opacity:1,blending:fn,sizeAttenuation:!0}),l=new Ba(s,o);this.scene.add(l),this.spawnBursts.push({position:t.clone(),age:0,particles:l})}createShockwave(t,e,n){const s=new Ja(.1,.5,64),r=new or({color:e,transparent:!0,opacity:.8,side:cn,blending:fn}),a=new ye(s,r);a.position.copy(t),a.lookAt(n.position),this.scene.add(a),this.shockwaves.push({mesh:a,age:0,maxAge:60})}createConnectionFlash(t,e,n){const s=[t.clone(),e.clone()],r=new Ee().setFromPoints(s),a=new $a({color:n,transparent:!0,opacity:1,blending:fn}),o=new sc(r,a);this.scene.add(o),this.connectionFlashes.push({line:o,intensity:1})}update(t,e){for(let n=this.pulseEffects.length-1;n>=0;n--){const s=this.pulseEffects[n];if(s.intensity-=s.decay,s.intensity<=0){this.pulseEffects.splice(n,1);continue}const r=t.get(s.nodeId);if(r){const a=r.material;a.emissive.lerp(s.color,s.intensity*.3),a.emissiveIntensity=Math.max(a.emissiveIntensity,s.intensity)}}for(let n=this.spawnBursts.length-1;n>=0;n--){const s=this.spawnBursts[n];if(s.age++,s.age>120){this.scene.remove(s.particles),s.particles.geometry.dispose(),s.particles.material.dispose(),this.spawnBursts.splice(n,1);continue}const r=s.particles.geometry.attributes.position,a=s.particles.geometry.attributes.velocity;for(let l=0;l<r.count;l++)r.setX(l,r.getX(l)+a.getX(l)),r.setY(l,r.getY(l)+a.getY(l)),r.setZ(l,r.getZ(l)+a.getZ(l)),a.setX(l,a.getX(l)*.97),a.setY(l,a.getY(l)*.97),a.setZ(l,a.getZ(l)*.97);r.needsUpdate=!0;const o=s.particles.material;o.opacity=Math.max(0,1-s.age/120),o.size=.6*(1-s.age/200)}for(let n=this.shockwaves.length-1;n>=0;n--){const s=this.shockwaves[n];if(s.age++,s.age>s.maxAge){this.scene.remove(s.mesh),s.mesh.geometry.dispose(),s.mesh.material.dispose(),this.shockwaves.splice(n,1);continue}const r=s.age/s.maxAge;s.mesh.scale.setScalar(1+r*20),s.mesh.material.opacity=.8*(1-r),s.mesh.lookAt(e.position)}for(let n=this.connectionFlashes.length-1;n>=0;n--){const s=this.connectionFlashes[n];if(s.intensity-=.015,s.intensity<=0){this.scene.remove(s.line),s.line.geometry.dispose(),s.line.material.dispose(),this.connectionFlashes.splice(n,1);continue}s.line.material.opacity=s.intensity}}dispose(){for(const t of this.spawnBursts)this.scene.remove(t.particles),t.particles.geometry.dispose(),t.particles.material.dispose();for(const t of this.shockwaves)this.scene.remove(t.mesh),t.mesh.geometry.dispose(),t.mesh.material.dispose();for(const t of this.connectionFlashes)this.scene.remove(t.line),t.line.geometry.dispose(),t.line.material.dispose();this.pulseEffects=[],this.spawnBursts=[],this.shockwaves=[],this.connectionFlashes=[]}}const Sn={bloomStrength:.8,rotateSpeed:.3,fogColor:328976,fogDensity:.008,nebulaIntensity:0,chromaticIntensity:.002,vignetteRadius:.9,breatheAmplitude:1},In={bloomStrength:1.8,rotateSpeed:.08,fogColor:656672,fogDensity:.006,nebulaIntensity:1,chromaticIntensity:.005,vignetteRadius:.7,breatheAmplitude:2};class y_{constructor(){ie(this,"active",!1);ie(this,"transition",0);ie(this,"transitionSpeed",.008);ie(this,"current");ie(this,"auroraHue",0);this.current={...Sn}}setActive(t){this.active=t}update(t,e,n,s,r){const a=this.active?1:0;this.transition+=(a-this.transition)*this.transitionSpeed*60*(1/60),this.transition=Math.max(0,Math.min(1,this.transition));const o=this.transition;this.current.bloomStrength=this.lerp(Sn.bloomStrength,In.bloomStrength,o),this.current.rotateSpeed=this.lerp(Sn.rotateSpeed,In.rotateSpeed,o),this.current.fogDensity=this.lerp(Sn.fogDensity,In.fogDensity,o),this.current.nebulaIntensity=this.lerp(Sn.nebulaIntensity,In.nebulaIntensity,o),this.current.chromaticIntensity=this.lerp(Sn.chromaticIntensity,In.chromaticIntensity,o),this.current.vignetteRadius=this.lerp(Sn.vignetteRadius,In.vignetteRadius,o),this.current.breatheAmplitude=this.lerp(Sn.breatheAmplitude,In.breatheAmplitude,o),e.strength=this.current.bloomStrength,n.autoRotateSpeed=this.current.rotateSpeed;const l=new xt(Sn.fogColor),c=new xt(In.fogColor),h=l.clone().lerp(c,o);if(t.fog=new lr(h,this.current.fogDensity),o>.01){this.auroraHue=r*.1%1;const d=new xt().setHSL(.75+this.auroraHue*.15,.8,.5),f=new xt().setHSL(.55+this.auroraHue*.2,.7,.4);s.point1.color.lerp(d,o*.3),s.point2.color.lerp(f,o*.3)}else s.point1.color.set(6514417),s.point2.color.set(11032055)}lerp(t,e,n){return t+(e-t)*n}}function E_(i,t,e,n,s){var r,a,o,l;switch(i.type){case"MemoryCreated":{const c=(r=i.data)==null?void 0:r.id,h=c?e.get(c):null,d=(h==null?void 0:h.clone())??new P((Math.random()-.5)*40,(Math.random()-.5)*40,(Math.random()-.5)*40);t.createSpawnBurst(d,new xt(65489)),t.createShockwave(d,new xt(65489),s);break}case"SearchPerformed":{n.forEach((c,h)=>{t.addPulse(h,.6+Math.random()*.4,new xt(8490232),.02)});break}case"DreamStarted":{n.forEach((c,h)=>{t.addPulse(h,1,new xt(11032055),.005)});break}case"DreamProgress":{const c=(a=i.data)==null?void 0:a.memory_id;c&&n.has(c)&&t.addPulse(c,1.5,new xt(12616956),.01);break}case"DreamCompleted":{t.createSpawnBurst(new P(0,0,0),new xt(11032055)),t.createShockwave(new P(0,0,0),new xt(11032055),s);break}case"ConnectionDiscovered":{const c=i.data,h=c.source_id?e.get(c.source_id):null,d=c.target_id?e.get(c.target_id):null;h&&d&&t.createConnectionFlash(h,d,new xt(54527));break}case"RetentionDecayed":{const c=(o=i.data)==null?void 0:o.id;c&&n.has(c)&&t.addPulse(c,.8,new xt(16729943),.03);break}case"MemoryPromoted":{const c=(l=i.data)==null?void 0:l.id;if(c&&n.has(c)){t.addPulse(c,1.2,new xt(65416),.01);const h=e.get(c);h&&t.createShockwave(h,new xt(65416),s)}break}case"ConsolidationCompleted":{n.forEach((c,h)=>{t.addPulse(h,.4+Math.random()*.3,new xt(16758784),.015)});break}case"ActivationSpread":{const c=i.data;if(c.source_id&&c.target_ids){const h=e.get(c.source_id);if(h)for(const d of c.target_ids){const f=e.get(d);f&&t.createConnectionFlash(h,f,new xt(1370310))}}break}}}const T_=`
|
||
varying vec2 vUv;
|
||
void main() {
|
||
vUv = uv;
|
||
gl_Position = vec4(position, 1.0);
|
||
}
|
||
`,b_=`
|
||
precision highp float;
|
||
|
||
uniform float uTime;
|
||
uniform vec2 uResolution;
|
||
uniform float uDreamIntensity;
|
||
|
||
varying vec2 vUv;
|
||
|
||
// Simplex-style hash
|
||
vec3 hash33(vec3 p3) {
|
||
p3 = fract(p3 * vec3(0.1031, 0.1030, 0.0973));
|
||
p3 += dot(p3, p3.yxz + 33.33);
|
||
return fract((p3.xxy + p3.yxx) * p3.zyx);
|
||
}
|
||
|
||
// 3D value noise
|
||
float noise(vec3 p) {
|
||
vec3 i = floor(p);
|
||
vec3 f = fract(p);
|
||
f = f * f * (3.0 - 2.0 * f);
|
||
|
||
float n = i.x + i.y * 157.0 + 113.0 * i.z;
|
||
|
||
vec4 v1 = fract(sin(vec4(n + 0.0, n + 1.0, n + 157.0, n + 158.0)) * 43758.5453);
|
||
vec4 v2 = fract(sin(vec4(n + 113.0, n + 114.0, n + 270.0, n + 271.0)) * 43758.5453);
|
||
|
||
vec4 a = mix(v1, v2, f.z);
|
||
vec2 b = mix(a.xy, a.zw, f.y);
|
||
return mix(b.x, b.y, f.x);
|
||
}
|
||
|
||
// FBM with 5 octaves
|
||
float fbm(vec3 p) {
|
||
float value = 0.0;
|
||
float amplitude = 0.5;
|
||
float frequency = 1.0;
|
||
for (int i = 0; i < 5; i++) {
|
||
value += amplitude * noise(p * frequency);
|
||
frequency *= 2.0;
|
||
amplitude *= 0.5;
|
||
}
|
||
return value;
|
||
}
|
||
|
||
// IQ cosine palette
|
||
vec3 palette(float t, vec3 a, vec3 b, vec3 c, vec3 d) {
|
||
return a + b * cos(6.28318 * (c * t + d));
|
||
}
|
||
|
||
void main() {
|
||
vec2 uv = (gl_FragCoord.xy - 0.5 * uResolution.xy) / min(uResolution.x, uResolution.y);
|
||
float t = uTime * 0.05;
|
||
|
||
// Domain warping: fbm(p + fbm(p + fbm(p)))
|
||
vec3 p = vec3(uv * 2.0, t);
|
||
|
||
float warp1 = fbm(p);
|
||
float warp2 = fbm(p + warp1 * 3.0 + vec3(1.7, 9.2, t * 0.3));
|
||
float warp3 = fbm(p + warp2 * 2.5 + vec3(8.3, 2.8, t * 0.2));
|
||
|
||
// Final noise value
|
||
float f = fbm(p + warp3 * 2.0);
|
||
|
||
// Color: cosmic palette that shifts during dream mode
|
||
vec3 normalA = vec3(0.02, 0.01, 0.05);
|
||
vec3 normalB = vec3(0.03, 0.02, 0.08);
|
||
vec3 normalC = vec3(1.0, 1.0, 1.0);
|
||
vec3 normalD = vec3(0.70, 0.55, 0.80);
|
||
|
||
vec3 dreamA = vec3(0.05, 0.01, 0.08);
|
||
vec3 dreamB = vec3(0.06, 0.03, 0.12);
|
||
vec3 dreamC = vec3(1.0, 0.8, 1.0);
|
||
vec3 dreamD = vec3(0.80, 0.40, 0.90);
|
||
|
||
vec3 a = mix(normalA, dreamA, uDreamIntensity);
|
||
vec3 b = mix(normalB, dreamB, uDreamIntensity);
|
||
vec3 c = mix(normalC, dreamC, uDreamIntensity);
|
||
vec3 d = mix(normalD, dreamD, uDreamIntensity);
|
||
|
||
vec3 color = palette(f + warp2 * 0.5, a, b, c, d);
|
||
|
||
// Add subtle star-like highlights
|
||
float stars = smoothstep(0.97, 1.0, noise(vec3(uv * 50.0, t * 0.1)));
|
||
color += stars * 0.15;
|
||
|
||
// Intensity modulation
|
||
float intensity = 0.15 + 0.1 * uDreamIntensity;
|
||
color *= intensity;
|
||
|
||
// Vignette
|
||
float dist = length(uv);
|
||
color *= smoothstep(1.5, 0.3, dist);
|
||
|
||
gl_FragColor = vec4(color, 1.0);
|
||
}
|
||
`;function A_(i){const t=new os(2,2),e=new Ie({vertexShader:T_,fragmentShader:b_,uniforms:{uTime:{value:0},uResolution:{value:new gt(window.innerWidth,window.innerHeight)},uDreamIntensity:{value:0}},depthWrite:!1,depthTest:!1,transparent:!1}),n=new ye(t,e);return n.frustumCulled=!1,n.renderOrder=-1e3,i.add(n),{mesh:n,material:e}}function w_(i,t,e,n,s){i.uniforms.uTime.value=t,i.uniforms.uDreamIntensity.value=e,i.uniforms.uResolution.value.set(n,s)}const R_={uniforms:{tDiffuse:{value:null},uIntensity:{value:.002}},vertexShader:`
|
||
varying vec2 vUv;
|
||
void main() {
|
||
vUv = uv;
|
||
gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0);
|
||
}
|
||
`,fragmentShader:`
|
||
uniform sampler2D tDiffuse;
|
||
uniform float uIntensity;
|
||
varying vec2 vUv;
|
||
|
||
void main() {
|
||
vec2 center = vec2(0.5);
|
||
vec2 dir = vUv - center;
|
||
float dist = length(dir);
|
||
|
||
float rOffset = uIntensity * dist;
|
||
float gOffset = 0.0;
|
||
float bOffset = -uIntensity * dist;
|
||
|
||
vec2 rUv = vUv + dir * rOffset;
|
||
vec2 gUv = vUv + dir * gOffset;
|
||
vec2 bUv = vUv + dir * bOffset;
|
||
|
||
float r = texture2D(tDiffuse, rUv).r;
|
||
float g = texture2D(tDiffuse, gUv).g;
|
||
float b = texture2D(tDiffuse, bUv).b;
|
||
|
||
gl_FragColor = vec4(r, g, b, 1.0);
|
||
}
|
||
`},C_={uniforms:{tDiffuse:{value:null},uTime:{value:0},uIntensity:{value:.04}},vertexShader:`
|
||
varying vec2 vUv;
|
||
void main() {
|
||
vUv = uv;
|
||
gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0);
|
||
}
|
||
`,fragmentShader:`
|
||
uniform sampler2D tDiffuse;
|
||
uniform float uTime;
|
||
uniform float uIntensity;
|
||
varying vec2 vUv;
|
||
|
||
float rand(vec2 co) {
|
||
return fract(sin(dot(co, vec2(12.9898, 78.233))) * 43758.5453);
|
||
}
|
||
|
||
void main() {
|
||
vec4 color = texture2D(tDiffuse, vUv);
|
||
float grain = rand(vUv + vec2(uTime)) * 2.0 - 1.0;
|
||
color.rgb += grain * uIntensity;
|
||
gl_FragColor = color;
|
||
}
|
||
`},P_={uniforms:{tDiffuse:{value:null},uRadius:{value:.9},uSoftness:{value:.5}},vertexShader:`
|
||
varying vec2 vUv;
|
||
void main() {
|
||
vUv = uv;
|
||
gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0);
|
||
}
|
||
`,fragmentShader:`
|
||
uniform sampler2D tDiffuse;
|
||
uniform float uRadius;
|
||
uniform float uSoftness;
|
||
varying vec2 vUv;
|
||
|
||
void main() {
|
||
vec4 color = texture2D(tDiffuse, vUv);
|
||
vec2 center = vec2(0.5);
|
||
float dist = distance(vUv, center) * 1.414;
|
||
float vignette = smoothstep(uRadius, uRadius - uSoftness, dist);
|
||
color.rgb *= vignette;
|
||
gl_FragColor = color;
|
||
}
|
||
`};function D_(i){const t=new js(R_),e=new js(C_),n=new js(P_);return i.addPass(t),i.addPass(e),i.addPass(n),{chromatic:t,grain:e,vignette:n}}function L_(i,t,e){i.chromatic.uniforms.uIntensity.value=.002+(.005-.002)*e,i.grain.uniforms.uTime.value=t,i.grain.uniforms.uIntensity.value=.04+e*.02;const r=.9,a=.7;i.vignette.uniforms.uRadius.value=r+(a-r)*e}var U_=Ye('<div class="w-full h-full"></div>');function I_(i,t){sr(t,!0);let e=Zs(t,"events",19,()=>[]),n=Zs(t,"isDreaming",3,!1),s,r,a,o,l,c,h,d,f,m,g,x=0;Tl(()=>{r=p_(s),m=A_(r.scene).material,g=D_(r.composer),c=new M_(r.scene),o=new v_,l=new x_,h=new S_(r.scene),f=new y_;const w=o.createNodes(t.nodes);l.createEdges(t.edges,w),d=new 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b(){!s||!r||m_(r,s)}function E(A){const w=s.getBoundingClientRect();r.mouse.x=(A.clientX-w.left)/w.width*2-1,r.mouse.y=-((A.clientY-w.top)/w.height)*2+1,r.raycaster.setFromCamera(r.mouse,r.camera);const N=r.raycaster.intersectObjects(o.getMeshes());N.length>0?(o.hoveredNode=N[0].object.userData.nodeId,s.style.cursor="pointer"):(o.hoveredNode=null,s.style.cursor="grab")}function S(){var A;if(o.hoveredNode){o.selectedNode=o.hoveredNode,(A=t.onSelect)==null||A.call(t,o.hoveredNode);const w=o.positions.get(o.hoveredNode);w&&r.controls.target.lerp(w.clone(),.5)}}var D=U_();Cc(D,A=>s=A,()=>s),Oe(i,D),rr()}var N_=Ye('<div class="flex items-center gap-1 text-[10px]"><span class="text-muted"> </span> <span> </span></div>'),F_=Ye('<div class="space-y-2"><svg class="w-full"><line x1="4" stroke="#2a2a5e" stroke-width="0.5" stroke-dasharray="2,4"></line><line x1="4" stroke="#ef444430" stroke-width="0.5" stroke-dasharray="2,4"></line><path fill="none" stroke="#6366f1" stroke-width="2" stroke-linecap="round"></path><path fill="url(#curveGrad)" opacity="0.15"></path><circle cx="4" r="3"></circle><defs><linearGradient id="curveGrad" x1="0" y1="0" x2="0" y2="1"><stop offset="0%" stop-color="#6366f1"></stop><stop offset="100%" stop-color="#6366f100"></stop></linearGradient></defs></svg> <div class="flex gap-2 flex-wrap"></div></div>');function O_(i,t){sr(t,!0);let e=Zs(t,"width",3,240),n=Zs(t,"height",3,80);function s(p){return t.stability<=0?0:Math.exp(-p/t.stability)}let r=ti(()=>{const p=[],u=Math.max(t.stability*3,30),b=4,E=e()-b*2,S=n()-b*2;for(let D=0;D<=50;D++){const A=D/50*u,w=s(A),N=b+D/50*E,y=b+(1-w)*S;p.push(`${D===0?"M":"L"}${N.toFixed(1)},${y.toFixed(1)}`)}return p.join(" ")}),a=ti(()=>[{label:"Now",days:0,value:t.retention},{label:"1d",days:1,value:s(1)},{label:"7d",days:7,value:s(7)},{label:"30d",days:30,value:s(30)}]);function o(p){return p>.7?"#10b981":p>.4?"#f59e0b":"#ef4444"}var l=F_(),c=Ut(l),h=Ut(c),d=Bt(h),f=Bt(d),m=Bt(f),g=Bt(m);Al(),Pt(c);var x=Bt(c,2);qr(x,21,()=>tt(a),jr,(p,u)=>{var b=N_(),E=Ut(b),S=Ut(E);Pt(E);var D=Bt(E,2),A=Ut(D);Pt(D),Pt(b),on((w,N)=>{me(S,`${tt(u).label??""}:`),Pl(D,`color: ${w??""}`),me(A,`${N??""}%`)},[()=>o(tt(u).value),()=>(tt(u).value*100).toFixed(0)]),Oe(p,b)}),Pt(x),Pt(l),on(p=>{He(c,"width",e()),He(c,"height",n()),He(c,"viewBox",`0 0 ${e()??""} ${n()??""}`),He(h,"y1",4+(n()-8)*.5),He(h,"x2",e()-4),He(h,"y2",4+(n()-8)*.5),He(d,"y1",4+(n()-8)*.8),He(d,"x2",e()-4),He(d,"y2",4+(n()-8)*.8),He(f,"d",tt(r)),He(m,"d",`${tt(r)??""} L${e()-4},${n()-4} L4,${n()-4} Z`),He(g,"cy",4+(1-t.retention)*(n()-8)),He(g,"fill",p)},[()=>o(t.retention)]),Oe(i,l),rr()}function El(i,t,e){const n=e.getTime(),s=new Set,r=new Map,a=i.filter(l=>{const c=new Date(l.createdAt).getTime();if(c<=n){s.add(l.id);const h=n-c,d=1440*60*1e3,f=h<d?.3+.7*(h/d):1;return r.set(l.id,f),!0}return!1}),o=t.filter(l=>s.has(l.source)&&s.has(l.target));return{visibleNodes:a,visibleEdges:o,nodeOpacities:r}}function B_(i){if(i.length===0){const n=new Date;return{oldest:n,newest:n}}let t=1/0,e=-1/0;for(const n of i){const s=new Date(n.createdAt).getTime();s<t&&(t=s),s>e&&(e=s)}return{oldest:new Date(t),newest:new Date(e)}}var z_=Ye(`<div class="absolute bottom-4 left-1/2 -translate-x-1/2 z-10 w-[90%] max-w-xl"><div class="glass-panel rounded-xl p-3 space-y-2"><div class="flex items-center justify-between"><div class="flex items-center gap-2"><button class="w-7 h-7 rounded-lg bg-synapse/20 border border-synapse/30 text-synapse-glow text-xs flex items-center justify-center hover:bg-synapse/30 transition"> </button> <select class="px-2 py-1 bg-white/[0.03] border border-synapse/10 rounded-lg text-[10px] text-dim focus:outline-none"><option>1x</option><option>7x</option><option>30x</option></select></div> <span class="text-xs text-bright font-medium"> </span> <button class="text-[10px] text-muted hover:text-text transition">Close</button></div> <input type="range" min="0" max="100" step="0.1" class="w-full h-1.5 appearance-none bg-white/[0.06] rounded-full cursor-pointer
|
||
[&::-webkit-slider-thumb]:appearance-none [&::-webkit-slider-thumb]:w-3 [&::-webkit-slider-thumb]:h-3
|
||
[&::-webkit-slider-thumb]:rounded-full [&::-webkit-slider-thumb]:bg-synapse-glow
|
||
[&::-webkit-slider-thumb]:shadow-[0_0_8px_rgba(129,140,248,0.4)]"/> <div class="flex justify-between text-[9px] text-muted"><span> </span> <span> </span></div></div></div>`),H_=Ye('<button class="absolute bottom-4 right-4 z-10 px-3 py-2 glass rounded-xl text-dim text-xs hover:text-text transition flex items-center gap-1.5"><span>◷</span> <span>Timeline</span></button>');function k_(i,t){sr(t,!0);let e=Ge(!1),n=Ge(!1),s=Ge(1),r=Ge(100),a,o=0,l=ti(()=>B_(t.nodes)),c=ti(()=>{const E=tt(l).oldest.getTime(),D=tt(l).newest.getTime()-E||1;return new Date(E+tt(r)/100*D)});function h(E){return E.toLocaleDateString("en-US",{month:"short",day:"numeric",year:"numeric"})}function d(){de(e,!tt(e)),t.onToggle(tt(e)),tt(e)&&(de(r,100),t.onDateChange(tt(c)))}function f(){de(n,!tt(n)),tt(n)?(de(r,0),o=performance.now(),m()):cancelAnimationFrame(a)}function m(){a=requestAnimationFrame(E=>{const S=(E-o)/1e3;o=E;const D=tt(l).oldest.getTime(),w=(tt(l).newest.getTime()-D)/(1440*60*1e3)||1,N=tt(s)/w*100;if(de(r,Math.min(100,tt(r)+N*S),!0),t.onDateChange(tt(c)),tt(r)>=100){de(n,!1);return}m()})}function g(){t.onDateChange(tt(c))}bl(()=>{cancelAnimationFrame(a)});var x=bc(),p=wl(x);{var u=E=>{var S=z_(),D=Ut(S),A=Ut(D),w=Ut(A),N=Ut(w),y=Ut(N,!0);Pt(N);var M=Bt(N,2),C=Ut(M);C.value=C.__value=1;var W=Bt(C);W.value=W.__value=7;var z=Bt(W);z.value=z.__value=30,Pt(M),Pt(w);var V=Bt(w,2),K=Ut(V,!0);Pt(V);var G=Bt(V,2);Pt(A);var $=Bt(A,2);Cl($);var H=Bt($,2),nt=Ut(H),dt=Ut(nt,!0);Pt(nt);var Mt=Bt(nt,2),Ft=Ut(Mt,!0);Pt(Mt),Pt(H),Pt(D),Pt(S),on((Yt,Y,et)=>{me(y,tt(n)?"⏸":"▶"),me(K,Yt),me(dt,Y),me(Ft,et)},[()=>h(tt(c)),()=>h(tt(l).oldest),()=>h(tt(l).newest)]),Ke("click",N,f),Ll(M,()=>tt(s),Yt=>de(s,Yt)),Ke("click",G,d),Ke("input",$,g),Dl($,()=>tt(r),Yt=>de(r,Yt)),Oe(E,S)},b=E=>{var S=H_();Ke("click",S,d),Oe(E,S)};Ai(p,E=>{tt(e)?E(u):E(b,!1)})}Oe(i,x),rr()}Rl(["click","input"]);var V_=Ye('<div class="h-full flex items-center justify-center"><div class="text-center space-y-4"><div class="w-16 h-16 mx-auto rounded-full border-2 border-synapse/30 border-t-synapse animate-spin"></div> <p class="text-dim text-sm">Loading memory graph...</p></div></div>'),G_=Ye('<div class="h-full flex items-center justify-center"><div class="text-center space-y-4 max-w-md px-8"><div class="text-5xl opacity-30">◎</div> <h2 class="text-xl text-bright">Your Mind Awaits</h2> <p class="text-dim text-sm"> </p></div></div>'),W_=Ye('<span> </span> <span class="mx-2 text-subtle">·</span> <span> </span> <span class="mx-2 text-subtle">·</span> <span> </span>',1),X_=Ye('<span class="px-2 py-0.5 rounded-lg text-xs bg-white/[0.04] text-dim"> </span>'),Y_=Ye('<div><div class="flex justify-between text-xs text-dim mb-0.5"><span> </span> <span> </span></div> <div class="h-1.5 bg-white/[0.04] rounded-full overflow-hidden"><div class="h-full rounded-full transition-all duration-500"></div></div></div>'),q_=Ye("<div> </div>"),j_=Ye(`<div class="absolute right-0 top-0 h-full w-96 glass-panel p-6 overflow-y-auto z-20
|
||
transition-transform duration-300"><div class="flex justify-between items-start mb-4"><h3 class="text-bright text-sm font-semibold">Memory Detail</h3> <button class="text-dim hover:text-text text-lg leading-none">×</button></div> <div class="space-y-4"><div class="flex gap-2 flex-wrap"><span class="px-2 py-0.5 rounded-lg text-xs bg-synapse/20 text-synapse-glow"> </span> <!></div> <div class="text-sm text-text leading-relaxed whitespace-pre-wrap max-h-64 overflow-y-auto"> </div> <div class="space-y-2"></div> <div><div class="text-xs text-dim mb-1 font-medium">Retention Forecast</div> <!></div> <div class="text-xs text-muted space-y-1"><div> </div> <div> </div> <!> <div> </div></div> <div class="flex gap-2 pt-2"><button class="flex-1 px-3 py-2 rounded-xl bg-recall/20 text-recall text-xs hover:bg-recall/30 transition">↑ Promote</button> <button class="flex-1 px-3 py-2 rounded-xl bg-decay/20 text-decay text-xs hover:bg-decay/30 transition">↓ Demote</button></div> <a href="/explore" class="block text-center px-3 py-2 rounded-xl bg-dream/10 text-dream-glow text-xs hover:bg-dream/20 transition border border-dream/20">◬ Explore Connections</a></div></div>`),Z_=Ye(`<div class="h-full relative"><!> <div class="absolute top-4 left-4 right-4 z-10 flex items-center gap-3"><div class="flex gap-2 flex-1 max-w-md"><input type="text" placeholder="Center graph on..." class="flex-1 px-3 py-2 glass rounded-xl text-text text-sm
|
||
placeholder:text-muted focus:outline-none focus:!border-synapse/40 transition"/> <button class="px-3 py-2 bg-synapse/20 border border-synapse/40 text-synapse-glow text-sm rounded-xl hover:bg-synapse/30 transition backdrop-blur-sm">Focus</button></div> <div class="flex gap-2 ml-auto"><select class="px-2 py-2 glass rounded-xl text-dim text-xs"><option>50 nodes</option><option>100 nodes</option><option>150 nodes</option><option>200 nodes</option></select> <button> </button> <button class="px-3 py-2 glass rounded-xl text-dim text-sm hover:text-text transition">↻</button></div></div> <div class="absolute bottom-4 left-4 z-10 text-xs text-dim glass rounded-xl px-3 py-2"><!></div> <!> <!></div>`);function mg(i,t){sr(t,!0);const e=()=>Rc(Dc,"$eventFeed",n),[n,s]=wc();let r=Ge(null),a=Ge(null),o=Ge(!0),l=Ge(""),c=Ge(!1),h=Ge(""),d=Ge(150),f=Ge(!1),m=Ge(Tc(new Date)),g=ti(()=>tt(r)?tt(f)?El(tt(r).nodes,tt(r).edges,tt(m)).visibleNodes:tt(r).nodes:[]),x=ti(()=>tt(r)?tt(f)?El(tt(r).nodes,tt(r).edges,tt(m)).visibleEdges:tt(r).edges:[]);Tl(()=>p());async function p(it,Tt){de(o,!0),de(l,"");try{de(r,await Xi.graph({max_nodes:tt(d),depth:3,query:it||void 0,center_id:Tt||void 0}),!0)}catch{de(l,"No memories yet. Start using Vestige to populate your graph.")}finally{de(o,!1)}}async function u(){de(c,!0);try{await Xi.dream(),await p()}catch{}finally{de(c,!1)}}async function b(it){try{de(a,await Xi.memories.get(it),!0)}catch{de(a,null)}}function E(){tt(h).trim()&&p(tt(h))}var S=Z_(),D=Ut(S);{var A=it=>{var Tt=V_();Oe(it,Tt)},w=it=>{var Tt=G_(),qt=Ut(Tt),Ht=Bt(Ut(qt),4),Jt=Ut(Ht,!0);Pt(Ht),Pt(qt),Pt(Tt),on(()=>me(Jt,tt(l))),Oe(it,Tt)},N=it=>{I_(it,{get nodes(){return tt(g)},get edges(){return tt(x)},get centerId(){return tt(r).center_id},get events(){return e()},get isDreaming(){return tt(c)},onSelect:b})};Ai(D,it=>{tt(o)?it(A):tt(l)?it(w,1):tt(r)&&it(N,2)})}var y=Bt(D,2),M=Ut(y),C=Ut(M);Cl(C);var W=Bt(C,2);Pt(M);var z=Bt(M,2),V=Ut(z),K=Ut(V);K.value=K.__value=50;var G=Bt(K);G.value=G.__value=100;var $=Bt(G);$.value=$.__value=150;var H=Bt($);H.value=H.__value=200,Pt(V);var nt=Bt(V,2),dt=Ut(nt,!0);Pt(nt);var Mt=Bt(nt,2);Pt(z),Pt(y);var Ft=Bt(y,2),Yt=Ut(Ft);{var Y=it=>{var Tt=W_(),qt=wl(Tt),Ht=Ut(qt);Pt(qt);var Jt=Bt(qt,4),R=Ut(Jt);Pt(Jt);var _e=Bt(Jt,4),Vt=Ut(_e);Pt(_e),on(()=>{me(Ht,`${tt(g).length??""} nodes`),me(R,`${tt(x).length??""} edges`),me(Vt,`depth ${tt(r).depth??""}`)}),Oe(it,Tt)};Ai(Yt,it=>{tt(r)&&it(Y)})}Pt(Ft);var et=Bt(Ft,2);{var vt=it=>{k_(it,{get nodes(){return tt(r).nodes},onDateChange:Tt=>{de(m,Tt,!0)},onToggle:Tt=>{de(f,Tt,!0)}})};Ai(et,it=>{tt(r)&&it(vt)})}var lt=Bt(et,2);{var Rt=it=>{var Tt=j_(),qt=Ut(Tt),Ht=Bt(Ut(qt),2);Pt(qt);var Jt=Bt(qt,2),R=Ut(Jt),_e=Ut(R),Vt=Ut(_e,!0);Pt(_e);var Wt=Bt(_e,2);qr(Wt,17,()=>tt(a).tags,jr,(st,Dt)=>{var Ct=X_(),jt=Ut(Ct,!0);Pt(Ct),on(()=>me(jt,tt(Dt))),Oe(st,Ct)}),Pt(R);var Et=Bt(R,2),le=Ut(Et,!0);Pt(Et);var St=Bt(Et,2);qr(St,21,()=>[{label:"Retention",value:tt(a).retentionStrength},{label:"Storage",value:tt(a).storageStrength},{label:"Retrieval",value:tt(a).retrievalStrength}],jr,(st,Dt)=>{var Ct=Y_(),jt=Ut(Ct),L=Ut(jt),ot=Ut(L,!0);Pt(L);var k=Bt(L,2),j=Ut(k);Pt(k),Pt(jt);var ct=Bt(jt,2),ht=Ut(ct);Pt(ct),Pt(Ct),on(Ot=>{me(ot,tt(Dt).label),me(j,`${Ot??""}%`),Pl(ht,`width: ${tt(Dt).value*100}%; background: ${tt(Dt).value>.7?"#10b981":tt(Dt).value>.4?"#f59e0b":"#ef4444"}`)},[()=>(tt(Dt).value*100).toFixed(1)]),Oe(st,Ct)}),Pt(St);var T=Bt(St,2),_=Bt(Ut(T),2);{let st=ti(()=>tt(a).storageStrength*30);O_(_,{get retention(){return tt(a).retentionStrength},get stability(){return tt(st)}})}Pt(T);var F=Bt(T,2),q=Ut(F),Z=Ut(q);Pt(q);var X=Bt(q,2),yt=Ut(X);Pt(X);var at=Bt(X,2);{var ft=st=>{var Dt=q_(),Ct=Ut(Dt);Pt(Dt),on(jt=>me(Ct,`Accessed: ${jt??""}`),[()=>new Date(tt(a).lastAccessedAt).toLocaleString()]),Oe(st,Dt)};Ai(at,st=>{tt(a).lastAccessedAt&&st(ft)})}var Xt=Bt(at,2),Q=Ut(Xt);Pt(Xt),Pt(F);var pt=Bt(F,2),bt=Ut(pt),Lt=Bt(bt,2);Pt(pt),Al(2),Pt(Jt),Pt(Tt),on((st,Dt)=>{me(Vt,tt(a).nodeType),me(le,tt(a).content),me(Z,`Created: ${st??""}`),me(yt,`Updated: ${Dt??""}`),me(Q,`Reviews: ${tt(a).reviewCount??0??""}`)},[()=>new Date(tt(a).createdAt).toLocaleString(),()=>new Date(tt(a).updatedAt).toLocaleString()]),Ke("click",Ht,()=>de(a,null)),Ke("click",bt,()=>{tt(a)&&Xi.memories.promote(tt(a).id)}),Ke("click",Lt,()=>{tt(a)&&Xi.memories.demote(tt(a).id)}),Oe(it,Tt)};Ai(lt,it=>{tt(a)&&it(Rt)})}Pt(S),on(()=>{nt.disabled=tt(c),Ac(nt,1,`px-4 py-2 rounded-xl bg-dream/20 border border-dream/40 text-dream-glow text-sm
|
||
hover:bg-dream/30 transition-all backdrop-blur-sm disabled:opacity-50
|
||
${tt(c)?"glow-dream animate-pulse-glow":""}`),me(dt,tt(c)?"◈ Dreaming...":"◈ Dream")}),Ke("keydown",C,it=>it.key==="Enter"&&E()),Dl(C,()=>tt(h),it=>de(h,it)),Ke("click",W,E),Ke("change",V,()=>p()),Ll(V,()=>tt(d),it=>de(d,it)),Ke("click",nt,u),Ke("click",Mt,()=>p()),Oe(i,S),rr(),s()}Rl(["keydown","click","change"]);export{mg as component};
|