face-api/dist/tfjs.esm.js

4342 lines
1.0 MiB
JavaScript
Raw Normal View History

/*
Face-API
homepage: <https://github.com/vladmandic/face-api>
author: <https://github.com/vladmandic>'
*/
2021-03-09 23:32:33 +01:00
var h3=Object.create,Oh=Object.defineProperty,g3=Object.getPrototypeOf,x3=Object.prototype.hasOwnProperty,y3=Object.getOwnPropertyNames,b3=Object.getOwnPropertyDescriptor;var w3=r=>Oh(r,"__esModule",{value:!0});var dt=(r,e)=>()=>(e||(e={exports:{}},r(e.exports,e)),e.exports),Je=(r,e)=>{for(var t in e)Oh(r,t,{get:e[t],enumerable:!0})},_3=(r,e,t)=>{if(e&&typeof e=="object"||typeof e=="function")for(let o of y3(e))!x3.call(r,o)&&o!=="default"&&Oh(r,o,{get:()=>e[o],enumerable:!(t=b3(e,o))||t.enumerable});return r},Ac=r=>_3(w3(Oh(r!=null?h3(g3(r)):{},"default",r&&r.__esModule&&"default"in r?{get:()=>r.default,enumerable:!0}:{value:r,enumerable:!0})),r);var bI=dt(()=>{});var QI=dt((JI,$w)=>{(function(r,e,t){function o(i){var l=this,u=a();l.next=function(){var c=2091639*l.s0+l.c*23283064365386963e-26;return l.s0=l.s1,l.s1=l.s2,l.s2=c-(l.c=c|0)},l.c=1,l.s0=u(" "),l.s1=u(" "),l.s2=u(" "),l.s0-=u(i),l.s0<0&&(l.s0+=1),l.s1-=u(i),l.s1<0&&(l.s1+=1),l.s2-=u(i),l.s2<0&&(l.s2+=1),u=null}function n(i,l){return l.c=i.c,l.s0=i.s0,l.s1=i.s1,l.s2=i.s2,l}function s(i,l){var u=new o(i),c=l&&l.state,p=u.next;return p.int32=function(){return u.next()*4294967296|0},p.double=function(){return p()+(p()*2097152|0)*11102230246251565e-32},p.quick=p,c&&(typeof c=="object"&&n(c,u),p.state=function(){return n(u,{})}),p}function a(){var i=4022871197,l=function(u){u=u.toString();for(var c=0;c<u.length;c++){i+=u.charCodeAt(c);var p=.02519603282416938*i;i=p>>>0,p-=i,p*=i,i=p>>>0,p-=i,i+=p*4294967296}return(i>>>0)*23283064365386963e-26};return l}e&&e.exports?e.exports=s:t&&t.amd?t(function(){return s}):this.alea=s})(JI,typeof $w=="object"&&$w,typeof define=="function"&&define)});var tN=dt((eN,Rw)=>{(function(r,e,t){function o(a){var i=this,l="";i.x=0,i.y=0,i.z=0,i.w=0,i.next=function(){var c=i.x^i.x<<11;return i.x=i.y,i.y=i.z,i.z=i.w,i.w^=i.w>>>19^c^c>>>8},a===(a|0)?i.x=a:l+=a;for(var u=0;u<l.length+64;u++)i.x^=l.charCodeAt(u)|0,i.next()}function n(a,i){return i.x=a.x,i.y=a.y,i.z=a.z,i.w=a.w,i}function s(a,i){var l=new o(a),u=i&&i.state,c=function(){return(l.next()>>>0)/4294967296};return c.double=function(){do var p=l.next()>>>11,m=(l.next()>>>0)/4294967296,f=(p+m)/(1<<21);while(f===0);return f},c.int32=l.next,c.quick=c,u&&(typeof u=="object"&&n(u,l),c.state=function(){return n(l,{})}),c}e&&e.exports?e.exports=s:t&&t.amd?t(function(){return s}):this.xor128=s})(eN,typeof Rw=="object"&&Rw,typeof define=="function"&&define)});var oN=dt((rN,Fw)=>{(function(r,e,t){function o(a){var i=this,l="";i.next=function(){var c=i.x^i.x>>>2;return i.x=i.y,i.y=i.z,i.z=i.w,i.w=i.v,(i.d=i.d+362437|0)+(i.v=i.v^i.v<<4^(c^c<<1))|0},i.x=0,i.y=0,i.z=0,i.w=0,i.v=0,a===(a|0)?i.x=a:l+=a;for(var u=0;u<l.length+64;u++)i.x^=l.charCodeAt(u)|0,u==l.length&&(i.d=i.x<<10^i.x>>>4),i.next()}function n(a,i){return i.x=a.x,i.y=a.y,i.z=a.z,i.w=a.w,i.v=a.v,i.d=a.d,i}function s(a,i){var l=new o(a),u=i&&i.state,c=function(){return(l.next()>>>0)/4294967296};return c.double=function(){do var p=l.next()>>>11,m=(l.next()>>>0)/4294967296,f=(p+m)/(1<<21);while(f===0);return f},c.int32=l.next,c.quick=c,u&&(typeof u=="object"&&n(u,l),c.state=function(){return n(l,{})}),c}e&&e.exports?e.exports=s:t&&t.amd?t(function(){return s}):this.xorwow=s})(rN,typeof Fw=="object"&&Fw,typeof define=="function"&&define)});var sN=dt((nN,Ow)=>{(function(r,e,t){function o(a){var i=this;i.next=function(){var u=i.x,c=i.i,p,m,f;return p=u[c],p^=p>>>7,m=p^p<<24,p=u[c+1&7],m^=p^p>>>10,p=u[c+3&7],m^=p^p>>>3,p=u[c+4&7],m^=p^p<<7,p=u[c+7&7],p=p^p<<13,m^=p^p<<9,u[c]=m,i.i=c+1&7,m};function l(u,c){var p,m,f=[];if(c===(c|0))m=f[0]=c;else for(c=""+c,p=0;p<c.length;++p)f[p&7]=f[p&7]<<15^c.charCodeAt(p)+f[p+1&7]<<13;for(;f.length<8;)f.push(0);for(p=0;p<8&&f[p]===0;++p);for(p==8?m=f[7]=-1:m=f[p],u.x=f,u.i=0,p=256;p>0;--p)u.next()}l(i,a)}function n(a,i){return i.x=a.x.slice(),i.i=a.i,i}function s(a,i){a==null&&(a=+new Date);var l=new o(a),u=i&&i.state,c=function(){return(l.next()>>>0)/4294967296};return c.double=function(){do var p=l.next()>>>11,m=(l.next()>>>0)/4294967296,f=(p+m)/(1<<21);while(f===0);return f},c.int32=l.next,c.quick=c,u&&(u
2021-01-12 16:01:34 +01:00
`)),l.join(`
2021-03-09 23:32:33 +01:00
`)}function Z3(r,e,t,o){let n=ct(e),s=o[o.length-1],a=new Array(s).fill(0),i=e.length,l=t==="complex64"?xm(r):r;if(i>1)for(let u=0;u<n/s;u++){let c=u*s;for(let p=0;p<s;p++)a[p]=Math.max(a[p],gm(l[c+p],0,t).length)}return a}function gm(r,e,t){let o;return Array.isArray(r)?o=`${parseFloat(r[0].toFixed(Ab))} + ${parseFloat(r[1].toFixed(Ab))}j`:is(r)?o=`'${r}'`:t==="bool"?o=H0(r):o=parseFloat(r.toFixed(Ab)).toString(),Ol(o,e)}function H0(r){return r===0?"false":"true"}function zh(r,e,t,o,n,s=!0){let a=t==="complex64"?2:1,i=e[0],l=e.length;if(l===0){if(t==="complex64"){let h=xm(r);return[gm(h[0],0,t)]}return t==="bool"?[H0(r[0])]:[r[0].toString()]}if(l===1){if(i>U0){let g=hm*a,x=Array.from(r.slice(0,g)),w=Array.from(r.slice((i-hm)*a,i*a));return t==="complex64"&&(x=xm(x),w=xm(w)),["["+x.map((b,_)=>gm(b,n[_],t)).join(", ")+", ..., "+w.map((b,_)=>gm(b,n[i-hm+_],t)).join(", ")+"]"]}let h=t==="complex64"?xm(r):Array.from(r);return["["+h.map((g,x)=>gm(g,n[x],t)).join(", ")+"]"]}let u=e.slice(1),c=o.slice(1),p=o[0]*a,m=[];if(i>U0){for(let h=0;h<hm;h++){let g=h*p,x=g+p;m.push(...zh(r.slice(g,x),u,t,c,n,!1))}m.push("...");for(let h=i-hm;h<i;h++){let g=h*p,x=g+p;m.push(...zh(r.slice(g,x),u,t,c,n,h===i-1))}}else for(let h=0;h<i;h++){let g=h*p,x=g+p;m.push(...zh(r.slice(g,x),u,t,c,n,h===i-1))}let f=l===2?",":"";m[0]="["+m[0]+f;for(let h=1;h<m.length-1;h++)m[h]=" "+m[h]+f;let d=`,
2021-01-12 16:01:34 +01:00
`;for(let h=2;h<l;h++)d+=`
2021-03-09 23:32:33 +01:00
`;return m[m.length-1]=" "+m[m.length-1]+"]"+(s?"":d),m}function xm(r){let e=[];for(let t=0;t<r.length;t+=2)e.push([r[t],r[t+1]]);return e}var lt=class{constructor(e,t,o){if(this.dtype=t,this.shape=e.slice(),this.size=ct(e),o!=null){let n=o.length;E(n===this.size,()=>`Length of values '${n}' does not match the size inferred by the shape '${this.size}'.`)}if(t==="complex64")throw new Error("complex64 dtype TensorBuffers are not supported. Please create a TensorBuffer for the real and imaginary parts separately and call tf.complex(real, imag).");this.values=o||xb(t,this.size),this.strides=js(e)}set(e,...t){t.length===0&&(t=[0]),E(t.length===this.rank,()=>`The number of provided coordinates (${t.length}) must match the rank (${this.rank})`);let o=this.locToIndex(t);this.values[o]=e}get(...e){e.length===0&&(e=[0]);let t=0;for(let n of e){if(n<0||n>=this.shape[t]){let s=`Requested out of range element at ${e}. Buffer shape=${this.shape}`;throw new Error(s)}t++}let o=e[e.length-1];for(let n=0;n<e.length-1;++n)o+=this.strides[n]*e[n];return this.values[o]}locToIndex(e){if(this.rank===0)return 0;if(this.rank===1)return e[0];let t=e[e.length-1];for(let o=0;o<e.length-1;++o)t+=this.strides[o]*e[o];return t}indexToLoc(e){if(this.rank===0)return[];if(this.rank===1)return[e];let t=new Array(this.shape.length);for(let o=0;o<t.length-1;++o)t[o]=Math.floor(e/this.strides[o]),e-=t[o]*this.strides[o];return t[t.length-1]=e,t}get rank(){return this.shape.length}toTensor(){return $i().makeTensor(this.values,this.shape,this.dtype)}},$i=null,Vc=null,J3=null;function q0(r){$i=r}function K0(r){Vc=r}function X0(r){J3=r}var Ve=class{constructor(e,t,o,n){this.kept=!1,this.isDisposedInternal=!1,this.shape=e.slice(),this.dtype=t||"float32",this.size=ct(e),this.strides=js(e),this.dataId=o,this.id=n,this.rankType=this.rank<5?this.rank.toString():"higher"}get rank(){return this.shape.length}async buffer(){let e=await this.data();return Vc.buffer(this.shape,this.dtype,e)}bufferSync(){return Vc.buffer(this.shape,this.dtype,this.dataSync())}async array(){let e=await this.data();return Pl(this.shape,e)}arraySync(){return Pl(this.shape,this.dataSync())}async data(){this.throwIfDisposed();let e=$i().read(this.dataId);if(this.dtype==="string"){let t=await e;try{return t.map(o=>Bc(o))}catch(o){throw new Error("Failed to decode the string bytes into utf-8. To get the original bytes, call tensor.bytes().")}}return e}dataSync(){this.throwIfDisposed();let e=$i().readSync(this.dataId);if(this.dtype==="string")try{return e.map(t=>Bc(t))}catch(t){throw new Error("Failed to decode the string bytes into utf-8. To get the original bytes, call tensor.bytes().")}return e}async bytes(){this.throwIfDisposed();let e=await $i().read(this.dataId);return this.dtype==="string"?e:new Uint8Array(e.buffer)}dispose(){this.isDisposed||($i().disposeTensor(this),this.isDisposedInternal=!0)}get isDisposed(){return this.isDisposedInternal}throwIfDisposed(){if(this.isDisposed)throw new Error("Tensor is disposed.")}print(e=!1){return Vc.print(this,e)}clone(){return this.throwIfDisposed(),Vc.clone(this)}toString(e=!1){let t=this.dataSync();return j0(t,this.shape,this.dtype,e)}cast(e){return this.throwIfDisposed(),Vc.cast(this,e)}variable(e=!0,t,o){return this.throwIfDisposed(),$i().makeVariable(this,e,t,o)}};Object.defineProperty(Ve,Symbol.hasInstance,{value:r=>!!r&&r.data!=null&&r.dataSync!=null&&r.throwIfDisposed!=null});function O(){return mm("Tensor",()=>Ve)}O();var el=class extends Ve{constructor(e,t,o,n){super(e.shape,e.dtype,e.dataId,n);this.trainable=t,this.name=o}assign(e){if(e.dtype!==this.dtype)throw new Error(`dtype of the new value (${e.dtype}) and previous value (${this.dtype}) must match`);if(!Ur(e.shape,this.shape))throw new Error(`shape of the new value (${e.shape}) and previous value (${this.shape}) must match`);$i().disposeTensor(this),this.dataId=e.dataId,$i().incRef(this,null)}dispose(){$i().disposeVariable(this),this.isDisposedInternal=!0}};Object.defineProperty(el,Symbol.hasInstance,{value:r=>r instanceof Ve&&r.assign!=null&&r.assign instanceof Function});var Mn={}
Manifest JSON has weights with names: ${i.join(", ")}.`)}let l=n.reduce((f,d,h)=>(d&&f.push(h),f),[]),u=[];l.forEach(f=>{e[f].paths.forEach(d=>{let h=t+(t.endsWith("/")?"":"/")+d;u.push(h)})});let c=await r(u),p={},m=0;return l.forEach(f=>{let d=e[f].paths.length,h=0;for(let _=0;_<d;_++)h+=c[m+_].byteLength;let g=new ArrayBuffer(h),x=new Uint8Array(g),w=0;for(let _=0;_<d;_++){let k=new Uint8Array(c[m+_]);x.set(k,w),w+=k.byteLength}s[f].forEach(_=>{let k=g.slice(_.groupOffset,_.groupOffset+_.sizeBytes),A=Vh(k,[_.manifestEntry]);for(let N in A)p[N]=A[N]}),m+=d}),p}}var EV="application/octet-stream",DV="application/json",Wh=class{constructor(e,t){if(this.DEFAULT_METHOD="POST",t==null&&(t={}),this.weightPathPrefix=t.weightPathPrefix,this.onProgress=t.onProgress,this.weightUrlConverter=t.weightUrlConverter,t.fetchFunc!=null?(E(typeof t.fetchFunc=="function",()=>"Must pass a function that matches the signature of `fetch` (see https://developer.mozilla.org/en-US/docs/Web/API/Fetch_API)"),this.fetch=t.fetchFunc):this.fetch=j().platform.fetch,E(e!=null&&e.length>0,()=>"URL path for http must not be null, undefined or empty."),Array.isArray(e)&&E(e.length===2,()=>`URL paths for http must have a length of 2, (actual length is ${e.length}).`),this.path=e,t.requestInit!=null&&t.requestInit.body!=null)throw new Error("requestInit is expected to have no pre-existing body, but has one.");this.requestInit=t.requestInit||{}}async save(e){if(e.modelTopology instanceof ArrayBuffer)throw new Error("BrowserHTTPRequest.save() does not support saving model topology in binary formats yet.");let t=Object.assign({method:this.DEFAULT_METHOD},this.requestInit);t.body=new FormData;let o=[{paths:["./model.weights.bin"],weights:e.weightSpecs}],n={modelTopology:e.modelTopology,format:e.format,generatedBy:e.generatedBy,convertedBy:e.convertedBy,weightsManifest:o};e.signature!=null&&(n.signature=e.signature),e.userDefinedMetadata!=null&&(n.userDefinedMetadata=e.userDefinedMetadata),e.modelInitializer!=null&&(n.modelInitializer=e.modelInitializer),t.body.append("model.json",new Blob([JSON.stringify(n)],{type:DV}),"model.json"),e.weightData!=null&&t.body.append("model.weights.bin",new Blob([e.weightData],{type:EV}),"model.weights.bin");let s=await this.fetch(this.path,t);if(s.ok)return{modelArtifactsInfo:Ri(e),responses:[s]};throw new Error(`BrowserHTTPRequest.save() failed due to HTTP response status ${s.status}.`)}async load(){let e=await this.fetch(this.path,this.requestInit);if(!e.ok)throw new Error(`Request to ${this.path} failed with status code ${e.status}. Please verify this URL points to the model JSON of the model to load.`);let t;try{t=await e.json()}catch(d){let h=`Failed to parse model JSON of response from ${this.path}.`;throw this.path.endsWith(".pb")?h+=" Your path contains a .pb file extension. Support for .pb models have been removed in TensorFlow.js 1.0 in favor of .json models. You can re-convert your Python TensorFlow model using the TensorFlow.js 1.0 conversion scripts or you can convert your.pb models with the 'pb2json'NPM script in the tensorflow/tfjs-converter repository.":h+=" Please make sure the server is serving valid JSON for this request.",new Error(h)}let o=t.modelTopology,n=t.weightsManifest,s=t.generatedBy,a=t.convertedBy,i=t.format,l=t.signature,u=t.userDefinedMetadata;if(o==null&&n==null)throw new Error(`The JSON from HTTP path ${this.path} contains neither model topology or manifest for weights.`);let c,p;n!=null&&([c,p]=await this.loadWeights(n));let m={modelTopology:o,weightSpecs:c,weightData:p,generatedBy:s,convertedBy:a,format:i};l!=null&&(m.signature=l),u!=null&&(m.userDefinedMetadata=u);let f=t.modelInitializer;return f&&(m.modelInitializer=f),m}async loadWeights(e){let t=Array.isArray(this.path)?this.path[1]:this.path,[o,n]=$V(t),s=this.weightPathPrefix||o,a=[];for(let c of e)a.push(...c.weights);let i=[],l=[];for(let c of e)for(let p of c.paths)this.weightUrlConverter!=null?l.push(this.weightUrlConverter(p)):i.push(s+p+n);this.weightUrlConverter&&i.push(...await Promise.all(l));let u=await Yb(i,{requestInit:this
2021-01-12 16:01:34 +01:00
Actual: ${n}.
Expected: ${s}.`);for(let a=0;a<s.length;++a){let i=n[a],l=s[a];if(!t(i,l))throw new Error(`Arrays differ: actual[${a}] = ${i}, expected[${a}] = ${l}.
Actual: ${n}.
2021-03-09 23:32:33 +01:00
Expected: ${s}.`)}}function ZV(r,e){r().then(()=>e.fail(),()=>e())}function JV(r,e){let t=typeof e=="string"||typeof e=="number"||typeof e=="boolean"?[e]:e;return is(r)||is(r[0])||is(e)||is(e[0])?rw(r,t,(o,n)=>o==n):rw(r,e,(o,n)=>ow(o,n,0))}function QV(r,e,t){if(t==null&&(t=tw()),!ow(r,e,t))throw new Error(`Numbers differ: actual === ${r}, expected === ${e}`)}function ow(r,e,t){return!isFinite(r)&&!isFinite(e)?!0:!(isNaN(r)||isNaN(e)||Math.abs(r-e)>t)}function eG(r,e,t){for(let o=0;o<r.length;o++)if(r[o]<e||r[o]>t)throw new Error(`Value out of range:${r[o]} low: ${e}, high: ${t}`)}function tG(r,e){expect(new Float32Array(r)).toEqual(new Float32Array(e))}function HI(r){for(let e=0;e<r.length;e++){let t=r[e];Array.isArray(t)?HI(t):r[e]=Qa(t)}return r}var nw="3.3.0";function rG(){j().set("PROD",!0)}function oG(){j().set("DEBUG",!0)}function nG(){j().set("DEPRECATION_WARNINGS_ENABLED",!1),console.warn("TensorFlow.js deprecation warnings have been disabled.")}function Qh(r){j().getBool("DEPRECATION_WARNINGS_ENABLED")&&console.warn(r+" You can disable deprecation warnings with tf.disableDeprecationWarnings().")}X0(Qh);function sG(){D.disposeVariables()}function Po(){return D}function Hc(){return D.memory()}function iG(r){return D.profile(r)}function G(r,e){return D.tidy(r,e)}function Te(r){ym(r).forEach(t=>t.dispose())}function Dt(r){return D.keep(r)}function aG(r){return D.time(r)}function qI(r){return D.setBackend(r)}function lG(){return D.ready()}function uG(){return D.backendName}function cG(r){D.removeBackend(r)}function pG(r){return D.findBackend(r)}function mG(r){return D.findBackendFactory(r)}function xu(r,e,t=1){return D.registerBackend(r,e,t)}function sw(){return D.backend}function fG(r,e){j().setPlatform(r,e)}function dG(r,e){let t=v(r,"a","add"),o=v(e,"b","add");[t,o]=Ge(t,o);let n={a:t,b:o};return D.runKernel(wo,n)}var ee=T({add_:dG});function hG(r,e){let t=v(r,"a","floorDiv"),o=v(e,"b","floorDiv");[t,o]=Ge(t,o);let n={a:t,b:o};return D.runKernel(sn,n)}var yu=T({floorDiv_:hG});function gG(r,e){let t=v(r,"a","div"),o=v(e,"b","div");if([t,o]=Ge(t,o),t.dtype==="int32"&&o.dtype==="int32")return yu(t,o);let n={a:t,b:o},s={};return D.runKernel(rn,n,s)}var me=T({div_:gG});function xG(r,e){let t=v(r,"a","mul"),o=v(e,"b","mul");[t,o]=Ge(t,o);let n={a:t,b:o};return D.runKernel(xn,n)}var P=T({mul_:xG});function yG(r){let e=v(r,"x","abs");if(e.dtype==="complex64"){let t={x:e};return D.runKernel(oa,t)}else{let t={x:e};return D.runKernel(as,t)}}var Nt=T({abs_:yG});function bG(r){let t={x:v(r,"x","acos")};return D.runKernel(Hs,t)}var wm=T({acos_:bG});function wG(r){let t={x:v(r,"x","acosh")};return D.runKernel(qs,t)}var _m=T({acosh_:wG});function _G(r){E(Array.isArray(r),()=>"The argument passed to tf.addN() must be a list of tensors"),E(r.length>=1,()=>`Must pass at least one tensor to tf.addN(), but got ${r.length}`);let e=r.map((n,s)=>v(n,`tensors${s}`,"addN")),t=e[0];e.forEach(n=>{if(n.dtype!==t.dtype)throw new Error("All tensors passed to tf.addN() must have the same dtype")}),e.forEach(n=>{if(!Ur(n.shape,t.shape))throw new Error("All tensors passed to tf.addN() must have the same shape")});let o=e;return D.runKernel(Ho,o)}var iw=T({addN_:_G});function kG(r,e=null,t=!1){let n={x:v(r,"x","all","bool")},s={axis:e,keepDims:t};return D.runKernel(Ml,n,s)}var bu=T({all_:kG});function vG(r,e=null,t=!1){let n={x:v(r,"x","any","bool")},s={axis:e,keepDims:t};return D.runKernel(Ll,n,s)}var ol=T({any_:vG});function CG(r,e=0){let o={x:v(r,"x","argMax")},n={axis:e};return D.runKernel(qo,o,n)}var nl=T({argMax_:CG});function IG(r,e=0){let o={x:v(r,"x","argMin")},n={axis:e};return D.runKernel(ea,o,n)}var km=T({argMin_:IG});function NG(r){let t={x:v(r,"x","asin")};return D.runKernel(Ks,t)}var vm=T({asin_:NG});function SG(r){let t={x:v(r,"x","asinh")};return D.runKernel(Xs,t)}var Cm=T({asinh_:SG});function TG(r){let t={x:v(r,"x","atan")};return D.runKernel(Ys,t)}var Im=T({atan_:TG});function AG(r,e){let t=v(r,"a","atan2"),o=v(e,"b","atan2");[t,o]=Ge(t,o);let n={a:t,b:o};return D.runKernel(Js,n)}var Nm=T({atan2_:AG});function EG(r){let t={x:v
with dtype ${s.dtype}. `)}),t.length===1)return Oo(t[0]);let o=t,n={axis:e};return D.runKernel(ls,o,n)}var Ye=T({concat_:BG});function VG(r){let t={x:v(r,"x","sigmoid")};return D.runKernel(An,t)}var qr=T({sigmoid_:VG});function GG(r,e,t){let o=v(r,"x","slice","string_or_numeric");if(o.rank===0)throw new Error("Slicing scalar is not possible");let n={x:o},s={begin:e,size:t};return D.runKernel(gs,n,s)}var Re=T({slice_:GG});function WG(r){let t={x:v(r,"x","tanh")};return D.runKernel(On,t)}var Fi=T({tanh_:WG});function UG(r,e,t,o,n,s){let a=v(r,"forgetBias","basicLSTMCell"),i=v(e,"lstmKernel","basicLSTMCell"),l=v(t,"lstmBias","basicLSTMCell"),u=v(o,"data","basicLSTMCell"),c=v(n,"c","basicLSTMCell"),p=v(s,"h","basicLSTMCell"),m=Ye([u,p],1),f=We(m,i),d=ee(f,l),h=d.shape[0],g=d.shape[1]/4,x=[h,g],w=Re(d,[0,0],x),b=Re(d,[0,g],x),_=Re(d,[0,g*2],x),k=Re(d,[0,g*3],x),A=ee(P(qr(w),Fi(b)),P(c,qr(ee(a,_)))),N=P(Fi(A),qr(k));return[A,N]}var jG=T({basicLSTMCell_:UG});function HG(r,e,t){let o=v(r,"x","batchToSpaceND"),n=e.reduce((i,l)=>i*l);E(o.rank>=1+e.length,()=>`input rank is ${o.rank} but should be > than blockShape.length ${e.length}`),E(t.length===e.length,()=>`crops.length is ${t.length} but should be equal to blockShape.length ${e.length}`),E(o.shape[0]%n==0,()=>`input tensor batch is ${o.shape[0]} but is not divisible by the product of the elements of blockShape ${e.join(" * ")} === ${n}`);let s={x:o},a={blockShape:e,crops:t};return D.runKernel(ra,s,a)}var _a=T({batchToSpaceND_:HG});function YI(r){let e;return r.rank===0||r.rank===1?e=L(r,[1,1,1,r.size]):r.rank===2?e=L(r,[1,1,r.shape[0],r.shape[1]]):r.rank===3?e=L(r,[1,r.shape[0],r.shape[1],r.shape[2]]):e=r,e}function qG(r,e,t,o,n,s){s==null&&(s=.001);let a=v(r,"x","batchNorm"),i=v(e,"mean","batchNorm"),l=v(t,"variance","batchNorm"),u;n!=null&&(u=v(n,"scale","batchNorm"));let c;o!=null&&(c=v(o,"offset","batchNorm")),E(i.rank===l.rank,()=>"Batch normalization gradient requires mean and variance to have equal ranks."),E(c==null||i.rank===c.rank,()=>"Batch normalization gradient requires mean and offset to have equal ranks."),E(u==null||i.rank===u.rank,()=>"Batch normalization gradient requires mean and scale to have equal ranks.");let m={x:YI(a),scale:u,offset:c,mean:i,variance:l},f={varianceEpsilon:s},d=D.runKernel(an,m,f);return L(d,a.shape)}var Ln=T({batchNorm_:qG});function KG(r,e,t,o,n,s){let a=v(r,"x","batchNorm"),i=v(e,"mean","batchNorm"),l=v(t,"variance","batchNorm"),u;n!=null&&(u=v(n,"scale","batchNorm"));let c;return o!=null&&(c=v(o,"offset","batchNorm")),E(a.rank===2,()=>`Error in batchNorm2D: x must be rank 2 but got rank ${a.rank}.`),E(i.rank===2||i.rank===1,()=>`Error in batchNorm2D: mean must be rank 2 or rank 1 but got rank ${i.rank}.`),E(l.rank===2||l.rank===1,()=>`Error in batchNorm2D: variance must be rank 2 or rank 1 but got rank ${l.rank}.`),u!=null&&E(u.rank===2||u.rank===1,()=>`Error in batchNorm2D: scale must be rank 2 or rank 1 but got rank ${u.rank}.`),c!=null&&E(c.rank===2||c.rank===1,()=>`Error in batchNorm2D: offset must be rank 2 or rank 1 but got rank ${c.rank}.`),Ln(a,i,l,c,u,s)}var cw=T({batchNorm2d_:KG});function XG(r,e,t,o,n,s){let a=v(r,"x","batchNorm"),i=v(e,"mean","batchNorm"),l=v(t,"variance","batchNorm"),u;n!=null&&(u=v(n,"scale","batchNorm"));let c;return o!=null&&(c=v(o,"offset","batchNorm")),E(a.rank===3,()=>`Error in batchNorm3D: x must be rank 3 but got rank ${a.rank}.`),E(i.rank===3||i.rank===1,()=>`Error in batchNorm3D: mean must be rank 3 or rank 1 but got rank ${i.rank}.`),E(l.rank===3||l.rank===1,()=>`Error in batchNorm3D: variance must be rank 3 or rank 1 but got rank ${l.rank}.`),u!=null&&E(u.rank===3||u.rank===1,()=>`Error in batchNorm3D: scale must be rank 3 or rank 1 but got rank ${u.rank}.`),c!=null&&E(c.rank===3||c.rank===1,()=>`Error in batchNorm3D: offset must be rank 3 or rank 1 but got rank ${c.rank}.`),Ln(a,i,l,c,u,s)}var pw=T({batchNorm3d_:XG});function YG(r,e,t,o,n,s){let a=v(r,"x","batchNorm"),i=v(e,"mean","batchNorm"),l=v(t,"variance","batchNorm"),u;n!=null&&(u=v(n,"scale","batchNorm"));let c;return o!=
2021-01-12 16:01:34 +01:00
${n} and ${e} for depthToSpace with input shape
2021-03-09 23:32:33 +01:00
${o.shape}`),E(s*e>=0,()=>`Negative dimension size caused by overflow when multiplying
2021-01-12 16:01:34 +01:00
${s} and ${e} for depthToSpace with input shape
2021-03-09 23:32:33 +01:00
${o.shape}`),E(a%(e*e)==0,()=>`Dimension size must be evenly divisible by ${e*e} but is ${a} for depthToSpace with input shape ${o.shape}`);let i={x:o},l={blockSize:e,dataFormat:t};return D.runKernel(ti,i,l)}var Dm=T({depthToSpace_:xW});function yW(r,e,t,o,n="NHWC",s=[1,1],a){let i=v(r,"x","depthwiseConv2d"),l=v(e,"filter","depthwiseConv2d"),u=i,c=!1;i.rank===3&&(c=!0,u=L(i,[1,i.shape[0],i.shape[1],i.shape[2]])),E(u.rank===4,()=>`Error in depthwiseConv2d: input must be rank 4, but got rank ${u.rank}.`),E(l.rank===4,()=>`Error in depthwiseConv2d: filter must be rank 4, but got rank ${l.rank}.`),E(u.shape[3]===l.shape[2],()=>`Error in depthwiseConv2d: number of input channels (${u.shape[3]}) must match the inChannels dimension in filter ${l.shape[2]}.`),a!=null&&E(ot(o),()=>`Error in depthwiseConv2d: pad must be an integer when using, dimRoundingMode ${a} but got pad ${o}.`);let p={x:u,filter:l},m={strides:t,pad:o,dataFormat:n,dilations:s,dimRoundingMode:a},f=D.runKernel(tn,p,m);return c?L(f,[f.shape[1],f.shape[2],f.shape[3]]):f}var Is=T({depthwiseConv2d_:yW});function bW(r){let t={x:v(r,"x","diag")};return D.runKernel(Xl,t)}var wW=T({diag_:bW});function _W(r,e,t,o,n=[1,1],s="NHWC"){let a=v(r,"x","dilation2d"),i=v(e,"filter","dilation2d");E(a.rank===3||a.rank===4,()=>`Error in dilation2d: input must be rank 3 or 4, but got rank ${a.rank}.`),E(i.rank===3,()=>`Error in dilation2d: filter must be rank 3, but got rank ${i.rank}.`),E(s==="NHWC",()=>`Error in dilation2d: Only NHWC is currently supported, but got dataFormat of ${s}`);let l=a,u=!1;a.rank===3&&(l=L(a,[1,a.shape[0],a.shape[1],a.shape[2]]),u=!0);let c={x:l,filter:i},p={strides:t,pad:o,dilations:n},m=D.runKernel(sa,c,p);return u?L(m,[m.shape[1],m.shape[2],m.shape[3]]):m}var $m=T({dilation2d_:_W});function kW(r,e){let t=r.length,o=[];for(let n=0;n<t;n++){let s=t-1-n,a=r[s]||1;(e[e.length-1-n]||1)>1&&a===1&&o.unshift(s)}return o}function kt(r,e){let t=[];for(let o=0;o<e.length;o++){let n=r[r.length-o-1],s=e.length-o-1,a=e[s];(n==null||n===1&&a>1)&&t.unshift(s)}return t}function Be(r,e){let t=[],o=Math.max(r.length,e.length);for(let n=0;n<o;n++){let s=r[r.length-n-1];s==null&&(s=1);let a=e[e.length-n-1];if(a==null&&(a=1),s===1)t.unshift(a);else if(a===1)t.unshift(s);else if(s!==a){let i=`Operands could not be broadcast together with shapes ${r} and ${e}.`;throw Error(i)}else t.unshift(s)}return t}function vW(r,e){let t=v(r,"a","equal"),o=v(e,"b","equal");[t,o]=Ge(t,o),Be(t.shape,o.shape);let n={a:t,b:o};return D.runKernel(ni,n)}var vo=T({equal_:vW});function CW(r,e,t){let o=v(e,"a","where"),n=v(t,"b","where"),s=v(r,"condition","where","bool"),a=Be(o.shape,n.shape),i=sl(o,a),l=sl(n,a);s.rank===1&&E(s.shape[0]===o.shape[0],()=>"The first dimension of `a` must match the size of `condition`."),s.rank!==1&&Ct(s.shape,l.shape,"Error in where: ");let u={condition:s,t:i,e:l};return D.runKernel(hs,u)}var $t=T({where_:CW});function IW(r){let t={x:v(r,"x","zerosLike")};return D.runKernel(bs,t)}var Ce=T({zerosLike_:IW});function NW(r,e){let t=v(r,"a","div"),o=v(e,"b","div");[t,o]=Ge(t,o);let n=me(t,o),s=Ce(n),a=vo(o,s);return $t(a,s,n)}var Rm=T({divNoNan_:NW});function SW(r,e){let t=v(r,"t1","dot"),o=v(e,"t2","dot");E((t.rank===1||t.rank===2)&&(o.rank===1||o.rank===2),()=>`Error in dot: inputs must all be rank 1 or 2, but got ranks ${t.rank} and ${o.rank}.`);let n=t.rank===1?t.size:t.shape[1],s=o.rank===1?o.size:o.shape[0];if(E(n===s,()=>`Error in dot: inner dimensions of inputs must match, but got ${n} and ${s}.`),t.rank===1&&o.rank===1){let a=L(t,[1,-1]),i=L(o,[-1,1]),l=We(a,i);return L(l,[])}else if(t.rank===1&&o.rank===2){let a=L(t,[1,-1]),i=L(o,[o.shape[0],o.shape[1]]),l=We(a,i);return L(l,[l.size])}else if(t.rank===2&&o.rank===1){let a=L(o,[-1,1]),i=We(t,a);return L(i,[i.size])}else{let a=L(o,[o.shape[0],o.shape[1]]);return We(t,a)}}var bw=T({dot_:SW});function TW(r){let t={x:v(r,"x","elu")};return D.runKernel(ri,t)}var Ns=T({elu_:TW});function AW(r){let e=v(r,"x","erf");E(e.dtype==="int32"||e.dtype==="float32",()=>"Input dtype must be `int32` or `float32`."),e.dtype=
rank ${s.rank}.`),E(ot(e),()=>`Error in localResponseNormalization: depthRadius must be an integer but got depthRadius ${e}.`);let a=s,i=!1;s.rank===3&&(i=!0,a=L(s,[1,s.shape[0],s.shape[1],s.shape[2]]));let l={x:a},u={depthRadius:e,bias:t,alpha:o,beta:n},c=D.runKernel(aa,l,u);return i?L(c,[c.shape[1],c.shape[2],c.shape[3]]):c}var Pm=T({localResponseNormalization_:HW});function qW(r){let t={x:v(r,"x","log")};return D.runKernel(cn,t)}var lr=T({log_:qW});function KW(r){let t={x:v(r,"x","log1p")};return D.runKernel(di,t)}var Tu=T({log1p_:KW});function XW(r){return E(Us(r),()=>"The f passed in grad(f) must be a function"),(e,t)=>{let o=v(e,"x","tf.grad","string_or_numeric"),n=t!=null?v(t,"dy","tf.grad"):null;return D.tidy(()=>{let{value:s,grads:a}=D.gradients(()=>r(o),[o],n);return n!=null&&Ct(s.shape,n.shape,"The shape of dy passed in grad(f)(x, dy) must match the shape returned by f(x)"),rg(a),a[0]})}}function YW(r){return E(Us(r),()=>"The f passed in grads(f) must be a function"),(e,t)=>{E(Array.isArray(e),()=>"The args passed in grads(f)(args) must be an array of `Tensor`s or `TensorLike`s");let o=ha(e,"args","tf.grads","string_or_numeric"),n=t!=null?v(t,"dy","tf.grads"):null;return D.tidy(()=>{let{value:s,grads:a}=D.gradients(()=>r(...o),o,n);return n!=null&&Ct(s.shape,n.shape,"The shape of dy passed in grads(f)([x1,...], dy) must match the shape returned by f([x1,...])"),rg(a),a})}}function ZW(r){return E(Us(r),()=>"The f passed in valueAndGrad(f) must be a function"),(e,t)=>{E(e instanceof Ve,()=>"The x passed in valueAndGrad(f)(x) must be a tensor"),E(t==null||t instanceof Ve,()=>"The dy passed in valueAndGrad(f)(x, dy) must be a tensor");let{grads:o,value:n}=D.gradients(()=>r(e),[e],t);return rg(o),{grad:o[0],value:n}}}function JW(r){return E(Us(r),()=>"The f passed in valueAndGrads(f) must be a function"),(e,t)=>{E(Array.isArray(e)&&e.every(n=>n instanceof Ve),()=>"The args passed in valueAndGrads(f)(args) must be array of tensors"),E(t==null||t instanceof Ve,()=>"The dy passed in valueAndGrads(f)(args, dy) must be a tensor");let o=D.gradients(()=>r(...e),e,t);return t!=null&&Ct(o.value.shape,t.shape,"The shape of dy passed in valueAndGrads(f)([x1,...], dy) must match the shape returned by f([x1,...])"),rg(o.grads),o}}function og(r,e){E(Us(r),()=>"The f passed in variableGrads(f) must be a function"),E(e==null||Array.isArray(e)&&e.every(u=>u instanceof el),()=>"The varList passed in variableGrads(f, varList) must be an array of variables");let t=e!=null;if(!t){e=[];for(let u in D.registeredVariables)e.push(D.registeredVariables[u])}let o=t?e.filter(u=>!u.trainable):null,n=e.length;e=e.filter(u=>u.trainable),E(e.length>0,()=>`variableGrads() expects at least one of the input variables to be trainable, but none of the ${n} variables is trainable.`);let s=!0,{value:a,grads:i}=D.gradients(r,e,null,s);E(i.some(u=>u!=null),()=>"Cannot find a connection between any variable and the result of the loss function y=f(x). Please make sure the operations that use variables are inside the function f passed to minimize()."),E(a.rank===0,()=>`The f passed in variableGrads(f) must return a scalar, but it returned a rank-${a.rank} tensor`);let l={};return e.forEach((u,c)=>{i[c]!=null&&(l[u.name]=i[c])}),o!=null&&o.forEach(u=>l[u.name]=null),{value:a,grads:l}}function Xr(r){return D.customGrad(r)}function rg(r){if(r.filter(t=>t==null).length>0)throw new Error(`Cannot compute gradient of y=f(x) with respect to x. Make sure that
the f you passed encloses all operations that lead from x to y.`)}function QW(r){let t={x:v(r,"x","neg")};return D.runKernel(ps,t)}var He=T({neg_:QW});function e4(r){let t={x:v(r,"x","softplus")};return D.runKernel(Si,t)}var Ts=T({softplus_:e4});function t4(r){let e=v(r,"x","logSigmoid");return Xr(o=>({value:He(Ts(He(o))),gradFunc:a=>P(a,qr(He(o)))}))(e)}var Cw=T({logSigmoid_:t4});function r4(r,e=null,t=!1){let n={x:v(r,"x","max")},s={reductionIndices:e,keepDims:t};return D.runKernel(pn,n,s)}var ur=T({max_:r4});function o4(r,e){let t=v(r,"a","sub"),o=v(e,"b","sub");[t,o]=Ge(t,o);let n={a:t,b:o};return D.runKernel(Fn,n)}var ce=T({sub_:o4});function n4(r,e=null,t=!1){let o=v(r,"x","sum");o.dtype==="bool"&&(o=ne(o,"int32"));let n={x:o},s={axis:e,keepDims:t};return D.runKernel(Dn,n,s)}var ge=T({sum_:n4});function s4(r,e=-1){let t=v(r,"logits","logSoftmax");if(e===-1&&(e=t.rank-1),e!==t.rank-1)throw Error(`Log Softmax along a non-last dimension is not yet supported. Logits was rank ${t.rank} and axis was ${e}`);return Xr((n,s)=>{let a=!0,i=ur(n,e,!0),l=ce(n,i),u=ce(ne(l,"float32"),lr(ge(Zt(l),e,a)));return s([u]),{value:u,gradFunc:(p,m)=>{let[f]=m,d=!0,h=Zt(f);return ce(p,P(ge(p,e,d),h))}}})(t)}var Au=T({logSoftmax_:s4});function Iw(r,e){for(let t=0;t<r.length;++t)if(r[r.length-t-1]!==e-1-t)return!1;return!0}function ZI(r,e,t){let o=r.length+e.length,n=[],s=0,a=0;for(let i=0;i<o;i++)t.indexOf(i)===-1?n.push(r[s++]):n.push(e[a++]);return n}function Nw(r,e){let t=[],o=r.length;for(let s=0;s<o;s++)e.indexOf(s)===-1&&t.push(r[s]);let n=e.map(s=>r[s]);return[t,n]}function Bn(r,e){let t=e.map(o=>1);return ZI(r,t,e)}function i4(r,e,t){E(Iw(e,t),()=>`${r} supports only inner-most axes for now. Got axes ${e} and rank-${t} input.`)}function Sw(r,e){if(Iw(r,e))return null;let t=[];for(let o=0;o<e;++o)r.indexOf(o)===-1&&t.push(o);return r.forEach(o=>t.push(o)),t}function Mm(r){return r.map((e,t)=>[t,e]).sort((e,t)=>e[1]-t[1]).map(e=>e[0])}function a4(r,e){let t=[];for(let o=e-r;o<e;++o)t.push(o);return t}function l4(r,e=null,t=!1){let o=v(r,"x","logSumExp"),n=Qt(e,o.shape),s=ur(o,n,!0),a=ce(o,s),i=Zt(a),l=ge(i,n),u=lr(l),c=ee(L(s,u.shape),u);if(t){let p=Bn(c.shape,n);return L(c,p)}return c}var Lm=T({logSumExp_:l4});function u4(r,e){let t=v(r,"a","logicalAnd","bool"),o=v(e,"b","logicalAnd","bool");Be(t.shape,o.shape);let n={a:t,b:o};return D.runKernel(hi,n)}var hr=T({logicalAnd_:u4});function c4(r){let t={x:v(r,"x","logicalNot","bool")};return D.runKernel(Ya,t)}var Ia=T({logicalNot_:c4});function p4(r,e){let t=v(r,"a","logicalOr","bool"),o=v(e,"b","logicalOr","bool");Be(t.shape,o.shape);let n={a:t,b:o};return D.runKernel(Za,n)}var Eu=T({logicalOr_:p4});function m4(r,e){let t=v(r,"a","logicalXor","bool"),o=v(e,"b","logicalXor","bool");return Be(t.shape,o.shape),hr(Eu(r,e),Ia(hr(r,e)))}var Tw=T({logicalXor_:m4});function f4(r,e,t,o,n){let s=v(r,"x","maxPool"),a=1,i=s,l=!1;s.rank===3&&(l=!0,i=L(s,[1,s.shape[0],s.shape[1],s.shape[2]])),E(i.rank===4,()=>`Error in maxPool: input must be rank 4 but got rank ${i.rank}.`),E(_r(t,a),()=>`Error in maxPool: Either strides or dilations must be 1. Got strides ${t} and dilations '${a}'`),n!=null&&E(ot(o),()=>`Error in maxPool: pad must be an integer when using, dimRoundingMode ${n} but got pad ${o}.`);let u={x:i},c={filterSize:e,strides:t,pad:o,dimRoundingMode:n},p=D.runKernel(fn,u,c);return l?L(p,[p.shape[1],p.shape[2],p.shape[3]]):p}var Na=T({maxPool_:f4});function d4(r,e=[1,1,1],t,o,n,s="NDHWC"){let a=v(r,"x","maxPool3d"),i=a,l=!1;a.rank===4&&(l=!0,i=L(a,[1,a.shape[0],a.shape[1],a.shape[2],a.shape[3]])),E(i.rank===5,()=>`Error in maxPool3d: x must be rank 5 but got rank ${i.rank}.`),E(s==="NDHWC",()=>`Error in maxPool3d: Only NDHWC is currently supported, but got dataFormat of ${s}`),n!=null&&E(ot(o),()=>`Error in maxPool3d: pad must be an integer when using, dimRoundingMode ${n} but got pad ${o}.`);let u={x:i},c={filterSize:e,strides:t,pad:o,dimRoundingMode:n,dataFormat:s},p=D.runKernel(la,u,c);return l?L(p,[p.shape[1],p.shape[2],p.shape[3],p.shape[4]]):p}var zm=T({maxPool3d_:d4});function h4(r
${s}).`);if(t<o)throw new Error(`batchDims (${o}) must be less than or equal to axis (${t}).`);for(let p=0;p<o;++p)if(r.shape[p]!==e.shape[p])throw new Error(`x.shape[${p}]: ${r.shape[p]} should be equal to indices.shape[${p}]: ${e.shape[p]}.`);let a=r.shape[t],i=[],l=1,u=1,c=1;for(let p=0;p<o;++p)i.push(r.shape[p]),l*=r.shape[p];for(let p=o;p<t;p++)i.push(r.shape[p]),u*=r.shape[p];for(let p=o;p<n;p++)i.push(e.shape[p]);for(let p=t+1;p<s;p++)i.push(r.shape[p]),c*=r.shape[p];return{batchSize:l,sliceSize:c,outerSize:u,dimSize:a,outputShape:i}}function $H(r){try{return r.map(e=>Bc(e))}catch(e){throw new Error(`Failed to decode encoded string bytes into utf-8, error: ${e}`)}}function RH(r){return r.map(e=>Qa(e))}var Ar={};Je(Ar,{nonMaxSuppressionV3Impl:()=>Kw,nonMaxSuppressionV4Impl:()=>Xw,nonMaxSuppressionV5Impl:()=>Yw,whereImpl:()=>Gw});var gg={kernelName:as,inputsToSave:["x"],gradFunc:(r,e)=>{let[t]=e;return{x:()=>P(r,Ds(ne(t,"float32"),-1))}}};var WN={kernelName:Hs,inputsToSave:["x"],gradFunc:(r,e)=>{let[t]=e;return{x:()=>{let o=Oe(ne(t,"float32")),n=xt(ce(le(1),o));return He(me(r,n))}}}};var UN={kernelName:qs,inputsToSave:["x"],gradFunc:(r,e)=>{let[t]=e;return{x:()=>{let o=xt(ce(Oe(ne(t,"float32")),1));return me(r,o)}}}};var jN={kernelName:wo,inputsToSave:["a","b"],gradFunc:(r,e)=>{let[t,o]=e,n=Be(t.shape,o.shape);return{a:()=>{let i=r,l=kt(t.shape,n);return l.length>0&&(i=ge(i,l)),L(i,t.shape)},b:()=>{let i=r,l=kt(o.shape,n);return l.length>0&&(i=ge(i,l)),L(i,o.shape)}}}};var HN={kernelName:Ho,saveAllInputs:!0,gradFunc:(r,e)=>{let t={};return e.forEach((o,n)=>{t[n]=()=>r.clone()}),t}};var qN={kernelName:qo,inputsToSave:["x"],gradFunc:(r,e)=>{let[t]=e;return{x:()=>Ce(t)}}};var KN={kernelName:ea,inputsToSave:["x"],gradFunc:(r,e)=>{let[t]=e;return{x:()=>Ce(t)}}};var XN={kernelName:Ks,inputsToSave:["x"],gradFunc:(r,e)=>{let[t]=e;return{x:()=>me(r,xt(ce(le(1),Oe(ne(t,"float32")))))}}};var YN={kernelName:Xs,inputsToSave:["x"],gradFunc:(r,e)=>{let[t]=e;return{x:()=>{let o=xt(ee(le(1),Oe(ne(t,"float32"))));return me(r,o)}}}};var ZN={kernelName:Js,inputsToSave:["a","b"],gradFunc:(r,e)=>{let[t,o]=e,n=Be(t.shape,o.shape);return{a:()=>{let i=ee(Oe(t),Oe(o)),l=P(r,me(o,i)),u=kt(t.shape,n);return u.length>0&&(l=ge(l,u)),L(l,t.shape)},b:()=>{let i=ee(Oe(t),Oe(o)),l=He(P(r,me(t,i))),u=kt(o.shape,n);return u.length>0&&(l=ge(l,u)),L(l,o.shape)}}}};var JN={kernelName:Ys,inputsToSave:["x"],gradFunc:(r,e)=>{let[t]=e;return{x:()=>me(r,ee(Oe(ne(t,"float32")),1))}}};var QN={kernelName:Zs,inputsToSave:["x"],gradFunc:(r,e)=>{let[t]=e;return{x:()=>me(r,ce(le(1),Oe(ne(t,"float32"))))}}};function FH(r,e,t,o,n,s){let a=v(r,"dy","avgPool3dGrad"),i=v(e,"input","avgPool3dGrad"),l=a,u=i,c=!1;i.rank===4&&(c=!0,l=L(a,[1,a.shape[0],a.shape[1],a.shape[2],a.shape[3]]),u=L(i,[1,i.shape[0],i.shape[1],i.shape[2],i.shape[3]])),E(l.rank===5,()=>`Error in avgPool3dGrad: dy must be rank 5 but got rank ${l.rank}.`),E(u.rank===5,()=>`Error in avgPool3dGrad: input must be rank 5 but got rank ${u.rank}.`),s!=null&&E(ot(n),()=>`Error in avgPool3dGrad: pad must be an integer when using, dimRoundingMode ${s} but got pad ${n}.`);let p={dy:l,input:u},m={filterSize:t,strides:o,pad:n,dimRoundingMode:s},f=D.runKernel(Bl,p,m);return c?L(f,[f.shape[1],f.shape[2],f.shape[3],f.shape[4]]):f}var eS=T({avgPool3dGrad_:FH});var tS={kernelName:ta,inputsToSave:["x"],gradFunc:(r,e,t)=>{let[o]=e,{filterSize:n,strides:s,pad:a,dimRoundingMode:i}=t;return{x:()=>eS(r,o,n,s,a,i)}}};function OH(r,e,t,o,n){let s=v(r,"dy","avgPoolGrad"),a=v(e,"input","avgPoolGrad");E(a.rank===s.rank,()=>`Rank of input (${a.rank}) does not match rank of dy (${s.rank})`);let i=a,l=s,u=!1;a.rank===3&&(u=!0,i=L(a,[1,a.shape[0],a.shape[1],a.shape[2]]),l=L(s,[1,s.shape[0],s.shape[1],s.shape[2]])),E(l.rank===4,()=>`Error in avgPoolGrad: dy must be rank 4 but got rank ${l.rank}.`),E(i.rank===4,()=>`Error in avgPoolGrad: input must be rank 4 but got rank ${i.rank}.`);let c={dy:l,input:i},p={filterSize:t,strides:o,pad:n},m=D.runKernel(zl,c,p);return u?L(m,[m.shape[1],m.shape[2],m.shape[3]]):m}var rS=T({avgPoolGrad_:OH
2021-01-12 16:01:34 +01:00
1. The ${o} is defined in Python, in which case it needs to be ported to TensorFlow.js or your JavaScript code.
2021-03-09 23:32:33 +01:00
2. The custom ${o} is defined in JavaScript, but is not registered properly with tf.serialization.registerClass().`);return a}else{let s=r;if(s.className==null||s.config==null)throw new z(`${o}: Improper config format: ${JSON.stringify(s)}.
'className' and 'config' must set.`);let a=s.className,i,l;if(a in t?[i,l]=t[a]:a in Hn?[i,l]=Hn.className:a in e&&([i,l]=e[a]),i==null)throw new z(`Unknown ${o}: ${a}. This may be due to one of the following reasons:
2021-01-12 16:01:34 +01:00
1. The ${o} is defined in Python, in which case it needs to be ported to TensorFlow.js or your JavaScript code.
2021-03-09 23:32:33 +01:00
2. The custom ${o} is defined in JavaScript, but is not registered properly with tf.serialization.registerClass().`);if(l!=null){let u={};for(let f of Object.keys(Hn))u[f]=Hn[f];for(let f of Object.keys(t))u[f]=t[f];let c=s.config;c.customObjects=u;let p=Object.assign({},Hn);for(let f of Object.keys(t))Hn[f]=t[f];i_(s.config);let m=l(i,s.config,t,n);return Hn=Object.assign({},p),m}else{let u=Object.assign({},Hn);for(let p of Object.keys(t))Hn[p]=t[p];let c=new i(s.config);return Hn=Object.assign({},u),c}}}function GH(r,e){return r<e?-1:r>e?1:0}function of(r,e){return-1*GH(r,e)}function qn(r){if(r==null)return r;let e=[];for(let t of r)e.indexOf(t)===-1&&e.push(t);return e}function LT(r){if(r==null)throw new z(`Invalid value in obj: ${JSON.stringify(r)}`);for(let e in r)if(r.hasOwnProperty(e))return!1;return!0}function zi(r,e,t){if(t!=null&&r.indexOf(t)<0)throw new z(`${t} is not a valid ${e}. Valid values are ${r} or null/undefined.`)}function yg(r,e,t=0,o=Infinity){return Bo(t>=0),Bo(o>=t),Array.isArray(r)&&r.length>=t&&r.length<=o&&r.every(n=>typeof n===e)}function Ut(r,e){Array.isArray(r)?(y.assert(r.length>0,()=>`${e} is unexpectedly an empty array.`),r.forEach((t,o)=>Ut(t,`element ${o+1} of ${e}`))):y.assert(Number.isInteger(r)&&r>0,()=>`Expected ${e} to be a positive integer, but got ${zT(r)}.`)}function zT(r){return r===null?"null":Array.isArray(r)?"["+r.map(e=>zT(e)).join(",")+"]":typeof r=="string"?`"${r}"`:`${r}`}function BT(r,e){let t=y.now(),o;return(...s)=>{let a=y.now();return a-t<e||(t=a,o=r(...s)),o}}function bg(r){return r==="relu"?"relu":r==="linear"?"linear":r==="elu"?"elu":null}function a_(r,e){return G(()=>xt(ge(P(r,r),e,!0)))}var up=class extends Q.Serializable{getConfig(){return{}}},nf=class extends up{constructor(e){super();this.defaultMaxValue=2,this.defaultAxis=0,this.maxValue=e.maxValue!=null?e.maxValue:this.defaultMaxValue,this.axis=e.axis!=null?e.axis:this.defaultAxis}apply(e){return G(()=>{let t=a_(e,this.axis),o=ir(t,0,this.maxValue);return P(e,me(o,ee(Jt(),t)))})}getConfig(){return{maxValue:this.maxValue,axis:this.axis}}};nf.className="MaxNorm";Q.registerClass(nf);var sf=class extends up{constructor(e){super();this.defaultAxis=0,this.axis=e.axis!=null?e.axis:this.defaultAxis}apply(e){return G(()=>me(e,ee(Jt(),a_(e,this.axis))))}getConfig(){return{axis:this.axis}}};sf.className="UnitNorm";Q.registerClass(sf);var af=class extends up{apply(e){return Sr(e)}};af.className="NonNeg";Q.registerClass(af);var lf=class extends up{constructor(e){super();this.defaultMinValue=0,this.defaultMaxValue=1,this.defaultRate=1,this.defaultAxis=0,this.minValue=e.minValue!=null?e.minValue:this.defaultMinValue,this.maxValue=e.maxValue!=null?e.maxValue:this.defaultMaxValue,this.rate=e.rate!=null?e.rate:this.defaultRate,this.axis=e.axis!=null?e.axis:this.defaultAxis}apply(e){return G(()=>{let t=a_(e,this.axis),o=ee(P(this.rate,ir(t,this.minValue,this.maxValue)),P(1-this.rate,t));return P(e,me(o,ee(Jt(),t)))})}getConfig(){return{minValue:this.minValue,maxValue:this.maxValue,rate:this.rate,axis:this.axis}}};lf.className="MinMaxNorm";Q.registerClass(lf);var VT={maxNorm:"MaxNorm",minMaxNorm:"MinMaxNorm",nonNeg:"NonNeg",unitNorm:"UnitNorm"};function Ft(r){return lp(r)}function GT(r,e={}){return Li(r,Q.SerializationMap.getMap().classNameMap,e,"constraint")}function Ot(r){if(r==null)return null;if(typeof r=="string"){let t={className:r in VT?VT[r]:r,config:{}};return GT(t)}else return r instanceof up?r:GT(r)}function WH(r){return new nf(r)}function UH(r){return new sf(r)}function jH(){return new af}function HH(r){return new lf(r)}var f_={};Je(f_,{constant:()=>eq,glorotNormal:()=>aq,glorotUniform:()=>iq,heNormal:()=>lq,heUniform:()=>uq,identity:()=>nq,leCunNormal:()=>cq,leCunUniform:()=>pq,ones:()=>QH,orthogonal:()=>mq,randomNormal:()=>rq,randomUniform:()=>tq,truncatedNormal:()=>oq,varianceScaling:()=>sq,zeros:()=>JH});var WT=["channelsFirst","channelsLast"],UT=["nearest","bilinear"],jT=["valid","same","causal"],HT=["max","avg"],qT=["sum","mul","concat","ave"];var cp=new Map;function Rt(r){zi(WT,"DataFormat",r)}function K
because the value dtype is ${t.dtype}, but TensorArray dtype is ${this.dtype}.`);if(this.size()===0&&(this.elementShape==null||this.elementShape.length===0)&&(this.elementShape=t.shape),So(this.elementShape,t.shape,`TensorArray ${this.name}: Could not write to TensorArray index ${e}.`),o.read)throw new Error(`TensorArray ${this.name}: Could not write to TensorArray index ${e}, because it has already been read.`);if(o.written)throw new Error(`TensorArray ${this.name}: Could not write to TensorArray index ${e}, because it has already been written.`);o.tensor=t,Dt(t),o.written=!0,this.tensors[e]=o}writeMany(e,t){if(e.length!==t.length)throw new Error(`TensorArray ${this.name}: could not write multiple tensors,because the index size: ${e.length} is not the same as tensors size: ${t.length}.`);e.forEach((o,n)=>this.write(o,t[n]))}gather(e,t){if(!!t&&t!==this.dtype)throw new Error(`TensorArray dtype is ${this.dtype} but gather requested dtype ${t}`);if(e)e=e.slice(0,this.size());else{e=[];for(let n=0;n<this.size();n++)e.push(n)}if(e.length===0)return Rr([],[0].concat(this.elementShape));let o=this.readMany(e);return So(this.elementShape,o[0].shape,"TensorArray shape mismatch: "),Vt(o,0)}concat(e){if(!!e&&e!==this.dtype)throw new Error(`TensorArray dtype is ${this.dtype} but concat requested dtype ${e}`);if(this.size()===0)return Rr([],[0].concat(this.elementShape));let t=[];for(let n=0;n<this.size();n++)t.push(n);let o=this.readMany(t);return So(this.elementShape,o[0].shape,`TensorArray shape mismatch: tensor array shape (${this.elementShape}) vs first tensor shape (${o[0].shape})`),Ye(o,0)}scatter(e,t){if(t.dtype!==this.dtype)throw new Error(`TensorArray dtype is ${this.dtype} but tensor has dtype ${t.dtype}`);if(e.length!==t.shape[0])throw new Error(`Expected len(indices) == tensor.shape[0], but saw: ${e.length} vs. ${t.shape[0]}`);let o=Math.max(...e);if(!this.dynamicSize&&o>=this.maxSize)throw new Error(`Max index must be < array size (${o} vs. ${this.maxSize})`);this.writeMany(e,pr(t,0))}split(e,t){if(t.dtype!==this.dtype)throw new Error(`TensorArray dtype is ${this.dtype} but tensor has dtype ${t.dtype}`);let o=0,n=e.map(l=>(o+=l,o));if(o!==t.shape[0])throw new Error(`Expected sum of lengths to be equal to
tensor.shape[0], but sum of lengths is
2021-03-09 23:32:33 +01:00
${o}, and tensor's shape is: ${t.shape}`);if(!this.dynamicSize&&e.length!==this.maxSize)throw new Error(`TensorArray's size is not equal to the size of lengths (${this.maxSize} vs. ${e.length}), and the TensorArray is not marked as dynamically resizeable`);let s=o===0?0:t.size/o,a=[];G(()=>{t=L(t,[1,o,s]);for(let l=0;l<e.length;++l){let u=l===0?0:n[l-1],c=[0,u,0],p=[1,e[l],s];a[l]=L(Re(t,c,p),this.elementShape)}return a});let i=[];for(let l=0;l<e.length;l++)i[l]=l;this.writeMany(i,a)}};var rc=class{constructor(e,t,o,n=-1){this.tensors=e,this.elementShape=t,this.elementDtype=o,e!=null&&e.forEach(s=>{if(o!==s.dtype)throw new Error(`Invalid data types; op elements ${o}, but list elements ${s.dtype}`);So(t,s.shape,"TensorList shape mismatch: "),Dt(s)}),this.idTensor=le(0),this.maxNumElements=n,Dt(this.idTensor)}get id(){return this.idTensor.id}copy(){return new rc([...this.tensors],this.elementShape,this.elementDtype)}clearAndClose(e){this.tensors.forEach(t=>{(e==null||!e.has(t.id))&&t.dispose()}),this.tensors.length=0,this.idTensor.dispose()}size(){return this.tensors.length}stack(e,t,o=-1){if(t!==this.elementDtype)throw new Error(`Invalid data types; op elements ${t}, but list elements ${this.elementDtype}`);if(o!==-1&&this.tensors.length!==o)throw new Error(`Operation expected a list with ${o} elements but got a list with ${this.tensors.length} elements.`);So(e,this.elementShape,"TensorList shape mismatch: ");let n=$p(this.elementShape,this.tensors,e);return G(()=>{let s=this.tensors.map(a=>L(a,n));return Vt(s,0)})}popBack(e,t){if(t!==this.elementDtype)throw new Error(`Invalid data types; op elements ${t}, but list elements ${this.elementDtype}`);if(this.size()===0)throw new Error("Trying to pop from an empty list.");let o=$p(this.elementShape,this.tensors,e),n=this.tensors.pop();return So(n.shape,e,"TensorList shape mismatch: "),L(n,o)}pushBack(e){if(e.dtype!==this.elementDtype)throw new Error(`Invalid data types; op elements ${e.dtype}, but list elements ${this.elementDtype}`);if(So(e.shape,this.elementShape,"TensorList shape mismatch: "),this.maxNumElements===this.size())throw new Error("Trying to push element into a full list.");Dt(e),this.tensors.push(e)}resize(e){if(e<0)throw new Error(`TensorListResize expects size to be non-negative. Got: ${e}`);if(this.maxNumElements!==-1&&e>this.maxNumElements)throw new Error(`TensorListResize input size ${e} is greater maxNumElement ${this.maxNumElements}.`);this.tensors.length=e}getItem(e,t,o){if(o!==this.elementDtype)throw new Error(`Invalid data types; op elements ${o}, but list elements ${this.elementDtype}`);if(e<0||e>this.tensors.length)throw new Error(`Trying to access element ${e} in a list with ${this.tensors.length} elements.`);if(this.tensors[e]==null)throw new Error(`element at index ${e} is null.`);So(this.tensors[e].shape,t,"TensorList shape mismatch: ");let n=$p(this.elementShape,this.tensors,t);return L(this.tensors[e],n)}setItem(e,t){if(t.dtype!==this.elementDtype)throw new Error(`Invalid data types; op elements ${t.dtype}, but list elements ${this.elementDtype}`);if(e<0||this.maxNumElements!==-1&&e>=this.maxNumElements)throw new Error(`Trying to set element ${e} in a list with max ${this.maxNumElements} elements.`);So(this.elementShape,t.shape,"TensorList shape mismatch: "),Dt(t),this.tensors[e]=t}gather(e,t,o){if(t!==this.elementDtype)throw new Error(`Invalid data types; op elements ${t}, but list elements ${this.elementDtype}`);So(this.elementShape,o,"TensorList shape mismatch: "),e=e.slice(0,this.size());let n=$p(this.elementShape,this.tensors,o);return e.length===0?Rr([],[0].concat(n)):G(()=>{let s=e.map(a=>L(this.tensors[a],n));return Vt(s,0)})}concat(e,t){if(!!e&&e!==this.elementDtype)throw new Error(`TensorList dtype is ${this.elementDtype} but concat requested dtype ${e}`);So(this.elementShape,t,"TensorList shape mismatch: ");let o=$p(this.elementShape,this.tensors,t);return this.size()===0?Rr([],[0].concat(o)):G(()=>{let n=this.tensors.map(s=>L(s,o));return Ye(n,0)})}};function sA(r,e,t){let o=r.dtype;if(r.shape.length<1)throw new Error(`Tens
tensor.shape[0], but sum of lengths is
2021-03-09 23:32:33 +01:00
${o}, and tensor's shape is: ${r.shape}`);let s=r.shape.slice(1),a=cx(s,t),i=o===0?0:r.size/o,l=G(()=>{let c=[];r=L(r,[1,o,i]);for(let p=0;p<e.length;++p){let m=p===0?0:n[p-1],f=[0,m,0],d=[1,e[p],i];c[p]=L(Re(r,f,d),a)}return r.dispose(),c}),u=new rc([],t,r.dtype,e.length);for(let c=0;c<l.length;c++)u.setItem(c,l[c]);return u}var uA=async(r,e,t)=>{switch(r.op){case"If":case"StatelessIf":{let o=C("thenBranch",r,e,t),n=C("elseBranch",r,e,t),s=C("cond",r,e,t),a=C("args",r,e,t);return(await s.data())[0]?t.functionMap[o].executeFunctionAsync(a,t.tensorArrayMap,t.tensorListMap):t.functionMap[n].executeFunctionAsync(a,t.tensorArrayMap,t.tensorListMap)}case"While":case"StatelessWhile":{let o=C("body",r,e,t),n=C("cond",r,e,t),s=C("args",r,e,t),a=await t.functionMap[n].executeFunctionAsync(s,t.tensorArrayMap,t.tensorListMap),i=s.map(c=>c.id),l=await a[0].data();a.forEach(c=>{!c.kept&&i.indexOf(c.id)===-1&&c.dispose()});let u=s;for(;l[0];){let c=u;u=await t.functionMap[o].executeFunctionAsync(u,t.tensorArrayMap,t.tensorListMap);let p=u.map(f=>f.id);c.forEach(f=>{!f.kept&&i.indexOf(f.id)===-1&&p.indexOf(f.id)===-1&&f.dispose()});let m=await t.functionMap[n].executeFunctionAsync(u,t.tensorArrayMap,t.tensorListMap);l=await m[0].data(),m.forEach(f=>{!f.kept&&i.indexOf(f.id)===-1&&p.indexOf(f.id)===-1&&f.dispose()})}return u}case"LoopCond":{let o=C("pred",r,e,t);return[zs(o)]}case"Switch":{let o=C("pred",r,e,t),n=C("data",r,e,t);return n.kept||(n=zs(n)),(await o.data())[0]?[void 0,n]:[n,void 0]}case"Merge":{let o=r.inputNames.find(n=>xr(n,e,t)!==void 0);if(o){let n=xr(o,e,t);return[zs(n)]}return}case"Enter":{let o=C("frameName",r,e,t),n=C("tensor",r,e,t);return t.enterFrame(o),[zs(n)]}case"Exit":{let o=C("tensor",r,e,t);return t.exitFrame(),[zs(o)]}case"NextIteration":{let o=C("tensor",r,e,t);return t.nextIteration(),[zs(o)]}case"TensorArrayV3":{let o=C("size",r,e,t),n=C("dtype",r,e,t),s=C("elementShape",r,e,t),a=C("dynamicSize",r,e,t),i=C("clearAfterRead",r,e,t),l=C("identicalElementShapes",r,e,t),u=C("name",r,e,t),c=new kk(u,n,o,s,l,a,i);return t.addTensorArray(c),[c.idTensor,le(1)]}case"TensorArrayWriteV3":{let o=C("tensorArrayId",r,e,t),n=C("index",r,e,t),s=C("tensor",r,e,t),a=t.getTensorArray(o.id);return a.write(n,s),[a.idTensor]}case"TensorArrayReadV3":{let o=C("tensorArrayId",r,e,t),n=C("index",r,e,t);return[t.getTensorArray(o.id).read(n)]}case"TensorArrayGatherV3":{let o=C("tensorArrayId",r,e,t),n=C("indices",r,e,t),s=C("dtype",r,e,t);return[t.getTensorArray(o.id).gather(n,s)]}case"TensorArrayScatterV3":{let o=C("tensorArrayId",r,e,t),n=C("indices",r,e,t),s=C("tensor",r,e,t),a=t.getTensorArray(o.id);return a.scatter(n,s),[a.idTensor]}case"TensorArrayConcatV3":{let o=C("tensorArrayId",r,e,t),n=t.getTensorArray(o.id),s=C("dtype",r,e,t);return[n.concat(s)]}case"TensorArraySplitV3":{let o=C("tensorArrayId",r,e,t),n=C("tensor",r,e,t),s=C("lengths",r,e,t),a=t.getTensorArray(o.id);return a.split(s,n),[a.idTensor]}case"TensorArraySizeV3":{let o=C("tensorArrayId",r,e,t),n=t.getTensorArray(o.id);return[le(n.size(),"int32")]}case"TensorArrayCloseV3":{let o=C("tensorArrayId",r,e,t),n=t.getTensorArray(o.id);return n.clearAndClose(),[n.idTensor]}case"TensorListSetItem":{let o=C("tensorListId",r,e,t),n=C("index",r,e,t),s=C("tensor",r,e,t),a=t.getTensorList(o.id);return a.setItem(n,s),[a.idTensor]}case"TensorListGetItem":{let o=C("tensorListId",r,e,t),n=C("index",r,e,t),s=C("elementShape",r,e,t),a=C("elementDType",r,e,t);return[t.getTensorList(o.id).getItem(n,s,a)]}case"TensorListScatterV2":case"TensorListScatter":{let o=C("indices",r,e,t),n=C("tensor",r,e,t),s=C("elementShape",r,e,t),a=C("numElements",r,e,t),i=aA(n,o,s,a);return t.addTensorList(i),[i.idTensor]}case"TensorListReserve":case"EmptyTensorList":{let o=C("elementShape",r,e,t),n=C("elementDType",r,e,t),s;r.op==="TensorListReserve"?s="numElements":s="maxNumElements";let a=C(s,r,e,t),i=iA(o,n,a);return t.addTensorList(i),[i.idTensor]}case"TensorListGather":{let o=C("tensorListId",r,e,t),n=C("indices",r,e,t),s=C("elementShape",r,e,t),a=C("elementDType",r,e,t);return[t.getTensor
${e}`);let n;return this.size===Infinity||this.size==null?n=this.size:t?n=Math.ceil(this.size/e):n=Math.floor(this.size/e),fo(async()=>(await o.iterator()).columnMajorBatch(e,t,k5),n)}concatenate(e){let t=this,o;return this.size===Infinity||e.size===Infinity?o=Infinity:this.size!=null&&e.size!=null?o=this.size+e.size:o=null,fo(async()=>(await t.iterator()).concatenate(await e.iterator()),o)}filter(e){let t=this,o;return this.size===Infinity?o=Infinity:o=null,fo(async()=>(await t.iterator()).filter(n=>G(()=>e(n))),o)}async forEachAsync(e){return(await this.iterator()).forEachAsync(e)}map(e){let t=this;return fo(async()=>(await t.iterator()).map(o=>G(()=>e(o))),this.size)}mapAsync(e){let t=this;return fo(async()=>(await t.iterator()).mapAsync(e),this.size)}prefetch(e){if(e==null)throw new RangeError("`Dataset.prefetch()` requires bufferSize to be specified.");let t=this;return fo(async()=>(await t.iterator()).prefetch(e),this.size)}repeat(e){let t=this,o;return this.size!=null&&e>0?o=this.size*e:e===0?o=0:this.size!=null&&(e===void 0||e<0)?o=Infinity:o=null,fo(async()=>{let n=Ad(async()=>({value:await t.iterator(),done:!1}));return XA(n.take(e))},o)}skip(e){let t=this,o;return this.size!=null&&e>=0&&this.size>=e?o=this.size-e:this.size!=null&&(this.size<e||e===void 0||e<0)?o=0:o=null,fo(async()=>(await t.iterator()).skip(e),o)}shuffle(e,t,o=!0){if(e==null||e<0)throw this.size==null?new RangeError("`Dataset.shuffle()` requires bufferSize to be specified."):new RangeError(`\`Dataset.shuffle()\` requires bufferSize to be specified. If your data fits in main memory (for regular JS objects), and/or GPU memory (for \`tf.Tensor\`s), consider setting bufferSize to the dataset size (${this.size} elements)`);let n=this,s=aE.alea(t||y.now().toString());return fo(async()=>{let a=s.int32();return o&&(a+=s.int32()),(await n.iterator()).shuffle(e,a.toString())},this.size)}take(e){let t=this,o;return this.size!=null&&this.size>e?o=e:this.size!=null&&this.size<=e?o=this.size:o=null,fo(async()=>(await t.iterator()).take(e),o)}async toArray(){if(this.size===Infinity)throw new Error("Can not convert infinite data stream to array.");return(await this.iterator()).toArray()}async toArrayForTest(){if(this.size===Infinity)throw new Error("Can not convert infinite data stream to array.");return(await this.iterator()).toArrayForTest()}};Ui.MAX_BUFFER_SIZE=1e4;function fo(r,e=null){return new class extends Ui{constructor(){super(...arguments);this.size=e}async iterator(){return r()}}}function lE(r){return fo(async()=>Mk(r),r.length)}function uE(r){if(!_l(r))throw new Error("The argument to zip() must be an object or array.");let e;if(Array.isArray(r))for(let t=0;t<r.length;t++)e=e==null?r[t].size:Math.min(e,r[t].size);else if(r instanceof Object)for(let t in r)e=e==null?r[t].size:Math.min(e,r[t].size);return fo(async()=>{let t=await gx(r,o=>{if(o instanceof Ui)return{value:o.iterator(),recurse:!1};if(_l(o))return{value:null,recurse:!0};throw new Error("Leaves of the structure passed to zip() must be Datasets, not primitives.")});return ZA(t,La.SHORTEST)},e)}function k5(r){if(r===null)return null;let e=r[0];return UA(e)?{value:v5(r),recurse:!1}:{value:null,recurse:!0}}function v5(r){if(r.length===0)throw new Error("Can't make a batch of zero elements.");return r[0]instanceof Ve?Vt(r):Rr(r)}var Ed=class extends Ui{constructor(e){super();this.input=e}async iterator(){return(await this.input.iterator()).decodeUTF8().split(`
`).map(n=>(n.endsWith("\r")&&(n=n.slice(0,-1)),n))}};var xx='"',Dd=Symbol("out"),cE=Symbol("field"),yx=Symbol("quote"),Vk=Symbol("quoteafterquote"),pE=Symbol("quoteinquote"),$d=class extends Ui{constructor(e,t){super();this.input=e,this.hasHeader=!0,this.fullColumnNames=null,this.columnNamesValidated=!1,this.columnConfigs=null,this.configuredColumnsOnly=!1,this.delimiter=",",this.delimWhitespace=!1,this.base=new Ed(e),t||(t={}),this.hasHeader=t.hasHeader!==!1,this.fullColumnNames=t.columnNames,this.columnConfigs=t.columnConfigs,this.configuredColumnsOnly=t.configuredColumnsOnly,t.delimWhitespace?(y.assert(t.delimiter==null,()=>"Delimiter should not be provided when delimWhitespace is true."),this.delimWhitespace=!0,this.delimiter=" "):this.delimiter=t.delimiter?t.delimiter:","}async columnNames(){return this.columnNamesValidated||await this.setColumnNames(),this.configuredColumnsOnly?Object.keys(this.columnConfigs):this.fullColumnNames}async setColumnNames(){let e=await this.maybeReadHeaderLine();if(!this.fullColumnNames&&!e)throw new Error("Column names must be provided if there is no header line.");this.fullColumnNames&&e&&y.assert(e.length===this.fullColumnNames.length,()=>"The length of provided columnNames ("+this.fullColumnNames.length.toString()+") does not match the length of the header line read from file ("+e.length.toString()+")."),this.fullColumnNames||(this.fullColumnNames=e);let t=this.fullColumnNames.reduce((n,s)=>(n[s]=n[s]+1||1,n),{}),o=Object.keys(t).filter(n=>t[n]>1);if(y.assert(o.length===0,()=>"Duplicate column names found: "+o.toString()),this.columnConfigs){for(let n of Object.keys(this.columnConfigs))if(this.fullColumnNames.indexOf(n)===-1)throw new Error('The key "'+n+'" provided in columnConfigs does not match any of the column names ('+this.fullColumnNames.toString()+").")}this.columnNamesValidated=!0}async maybeReadHeaderLine(){if(this.hasHeader){let t=await(await this.base.iterator()).next();if(t.done)throw new Error("No data was found for CSV parsing.");let o=t.value;return this.parseRow(o,!1)}else return null}async iterator(){this.columnNamesValidated||await this.setColumnNames();let e=await this.base.iterator();return this.hasHeader&&(e=e.skip(1)),e.map(t=>this.makeDataElement(t))}makeDataElement(e){let t=this.parseRow(e),o={},n={};for(let s=0;s<this.fullColumnNames.length;s++){let a=this.fullColumnNames[s],i=this.columnConfigs?this.columnConfigs[a]:null;if(!(this.configuredColumnsOnly&&!i)){let l=t[s],u=null;if(l==="")if(i&&i.default!==void 0)u=i.default;else{if(i&&(i.required||i.isLabel))throw new Error(`Required column ${a} is empty in this line: ${e}`);u=void 0}else{let c=Number(l);if(isNaN(c))i&&i.dtype==="bool"?u=this.getBoolean(l):u=l;else if(!i||!i.dtype)u=c;else switch(i.dtype){case"float32":u=c;break;case"int32":u=Math.floor(c);break;case"bool":u=this.getBoolean(l);break;default:u=c}}i&&i.isLabel?n[a]=u:o[a]=u}}return Object.keys(n).length===0?o:{xs:o,ys:n}}getBoolean(e){return e==="1"||e.toLowerCase()==="true"?1:0}parseRow(e,t=!0){let o=[],n=0,s=e.length,a=Dd;for(let i=0;i<s;i++)switch(a){case Dd:switch(e.charAt(i)){case xx:n=i+1,a=yx;break;case this.delimiter:if(n=i+1,this.delimiter===" "&&this.delimWhitespace)break;o.push(""),a=Dd;break;default:a=cE,n=i;break}break;case cE:switch(e.charAt(i)){case this.delimiter:o.push(e.substring(n,i)),a=Dd,n=i+1;break;default:}break;case yx:switch(e.charAt(i)){case xx:a=Vk;break;default:}break;case Vk:switch(e.charAt(i)){case this.delimiter:o.push(e.substring(n,i-1)),a=Dd,n=i+1;break;case xx:a=yx;break;default:a=pE;break}break;case pE:switch(e.charAt(i)){case xx:a=yx;break;default:}break;default:}if(a===Vk?o.push(e.substring(n,s-1)):o.push(e.substring(n)),t&&o.length!==this.fullColumnNames.length)throw new Error(`Invalid row in csv file. Should have ${this.fullColumnNames.length} elements in a row, but got ${o}`);return o}};var Rd=class extends Kt{constructor(e){super();this.microphoneConfig=e,this.isClosed=!1,this.fftSize=e.fftSize||1024;let t=Math.log2(this.fftSize);if(this.fftSize<0||t<4||t>14||!Number.isInteger(t))throw new Error(`Inval
============================
Hi there \u{1F44B}. Looks like you are running TensorFlow.js in Node.js. To speed things up dramatically, install our node backend, which binds to TensorFlow C++, by running npm i @tensorflow/tfjs-node, or npm i @tensorflow/tfjs-node-gpu if you have CUDA. Then call require('@tensorflow/tfjs-node'); (-gpu suffix for CUDA) at the start of your program. Visit https://github.com/tensorflow/tfjs-node for more details.
2021-03-09 23:32:33 +01:00
============================`));let n={id:this.nextDataId()};return this.data.set(n,{values:e,dtype:o,refCount:1}),n}makeTensorInfo(e,t,o){let n;if(t==="string"&&o!=null&&o.length>0&&y.isString(o[0])){let s=o.map(a=>y.encodeString(a));n=this.write(s,e,t)}else n=this.write(o,e,t);return{dataId:n,shape:e,dtype:t}}refCount(e){return this.data.has(e)?this.data.get(e).refCount:0}incRef(e){let t=this.data.get(e);t.refCount++}decRef(e){if(this.data.has(e)){let t=this.data.get(e);t.refCount--}}move(e,t,o,n,s){this.data.set(e,{values:t,dtype:n,refCount:s})}numDataIds(){return this.data.numDataIds()}async read(e){return this.readSync(e)}readSync(e){let{dtype:t,complexTensorInfos:o}=this.data.get(e);if(t==="complex64"){let n=this.readSync(o.real.dataId),s=this.readSync(o.imag.dataId);return S.mergeRealAndImagArrays(n,s)}return this.data.get(e).values}bufferSync(e){let t=this.readSync(e.dataId),o=t;if(e.dtype==="string")try{o=t.map(n=>y.decodeString(n))}catch(n){throw new Error("Failed to decode encoded string bytes into utf-8")}return ve(e.shape,e.dtype,o)}makeOutput(e,t,o){let n=this.write(e,t,o);return Po().makeTensorFromDataId(n,t,o,this)}disposeData(e,t=!1){if(this.data.has(e)){if(this.data.get(e).refCount--,!t&&this.data.get(e).refCount>0)return!1;let{complexTensorInfos:o}=this.data.get(e);o!=null&&(this.disposeData(o.real.dataId,!0),this.disposeData(o.imag.dataId,!0)),this.data.delete(e)}return!0}disposeIntermediateTensorInfo(e){this.disposeData(e.dataId)}async time(e){let t=y.now();return e(),{kernelMs:y.now()-t}}memory(){return{unreliable:!0,reasons:["The reported memory is an upper bound. Due to automatic garbage collection, the true allocated memory may be less."]}}where(e){te([e],"where");let t=this.readSync(e.dataId);return I5(e.shape,t)}dispose(){}floatPrecision(){return 32}epsilon(){return super.epsilon()}};Pp.nextDataId=0;var Qk={};Je(Qk,{addImpl:()=>AE,bincountImpl:()=>zd,bincountReduceImpl:()=>Uk,ceilImpl:()=>DE,concatImpl:()=>Bd,expImpl:()=>RE,expm1Impl:()=>OE,floorImpl:()=>ME,gatherV2Impl:()=>Hk,greaterImpl:()=>zE,lessImpl:()=>VE,linSpaceImpl:()=>qk,logImpl:()=>WE,maxImpl:()=>Kk,maximumImpl:()=>jE,minimumImpl:()=>qE,multiplyImpl:()=>kx,negImpl:()=>YE,notEqualImpl:()=>JE,prodImpl:()=>t2,rangeImpl:()=>Wd,rsqrtImpl:()=>o2,simpleAbsImpl:()=>vE,sliceImpl:()=>Ud,squaredDifferenceImpl:()=>i2,stridedSliceImpl:()=>Xk,subImpl:()=>l2,tileImpl:()=>Yk,topKImpl:()=>Zk,transposeImpl:()=>Gd,uniqueImpl:()=>Jk});function vE(r){let e=new Float32Array(r.length);for(let t=0;t<r.length;++t)e[t]=Math.abs(r[t]);return e}var N5=r=>{let{x:e}=r.inputs,t=r.backend;te(e,"abs");let o=new Float32Array(y.sizeFromShape(e.shape)),n=t.data.get(e.dataId).values;return o=vE(n),t.makeOutput(o,e.shape,"float32")},CE={kernelName:as,backendName:"cpu",kernelFunc:N5};function Ke(r){return(e,t,o,n,s)=>{let a=S.assertAndGetBroadcastShape(e,t),i=a.length,l=y.computeStrides(a),u=y.sizeFromShape(a),c=y.getTypedArrayFromDType(s,u),p=e.length,m=t.length,f=y.computeStrides(e),d=y.computeStrides(t),h=S.getBroadcastDims(e,a),g=S.getBroadcastDims(t,a);if(h.length+g.length===0)for(let x=0;x<c.length;++x)c[x]=r(o[x%o.length],n[x%n.length]);else for(let x=0;x<c.length;++x){let w=y.indexToLoc(x,i,l),b=w.slice(-p);h.forEach(N=>b[N]=0);let _=y.locToIndex(b,p,f),k=w.slice(-m);g.forEach(N=>k[N]=0);let A=y.locToIndex(k,m,d);c[x]=r(o[_],n[A])}return[c,a]}}function mr(r){let{inputs:e,backend:t}=r,{real:o,imag:n}=e,s=t.data.get(o.dataId).values,a=t.data.get(n.dataId).values,i=t.makeTensorInfo(o.shape,"complex64"),l=t.data.get(i.dataId);return l.complexTensorInfos={real:t.makeTensorInfo(o.shape,"float32",s),imag:t.makeTensorInfo(n.shape,"float32",a)},i}var IE={kernelName:Gl,backendName:"cpu",kernelFunc:mr};function Mp(r,e,t="float32"){if(t==="complex64"){let n=Mp(r,e,"float32"),s=Mp(r,e,"float32");return mr({inputs:{real:n,imag:s},backend:r})}let o=y.makeZerosTypedArray(y.sizeFromShape(e),t);return r.makeTensorInfo(e,t,o)}function Er(r){let{inputs:e,backend:t}=r,{x:o}=e;return t.incRef(o.dataId),{dataId:o.dataId,shape:o.shape,dtype:o.dtype}}var NE={kernelName:Ro,backendName:"cp
`),s=n.length.toString().length+2,a=n.map((p,m)=>y.rightPad((m+1).toString(),s)+p),i=0;for(let p=0;p<a.length;p++)i=Math.max(a[p].length,i);let l=a.slice(0,o-1),u=a.slice(o-1,o),c=a.slice(o);console.log(l.join(`
2021-01-12 16:01:34 +01:00
`)),console.log(e.split(`
2021-03-09 23:32:33 +01:00
`)[0]),console.log(`%c ${y.rightPad(u[0],i)}`,"border:1px solid red; background-color:#e3d2d2; color:#a61717"),console.log(c.join(`
`))}function nR(r){return Ba(r,()=>r.createProgram(),"Unable to create WebGLProgram.")}function sR(r,e){if(Ae(r,()=>r.linkProgram(e)),r.getProgramParameter(e,r.LINK_STATUS)===!1)throw console.log(r.getProgramInfoLog(e)),new Error("Failed to link vertex and fragment shaders.")}function Ax(r,e){if(Ae(r,()=>r.validateProgram(e)),r.getProgramParameter(e,r.VALIDATE_STATUS)===!1)throw console.log(r.getProgramInfoLog(e)),new Error("Shader program validation failed.")}function iR(r,e){let t=Ba(r,()=>r.createBuffer(),"Unable to create WebGLBuffer");return Ae(r,()=>r.bindBuffer(r.ARRAY_BUFFER,t)),Ae(r,()=>r.bufferData(r.ARRAY_BUFFER,e,r.STATIC_DRAW)),t}function aR(r,e){let t=Ba(r,()=>r.createBuffer(),"Unable to create WebGLBuffer");return Ae(r,()=>r.bindBuffer(r.ELEMENT_ARRAY_BUFFER,t)),Ae(r,()=>r.bufferData(r.ELEMENT_ARRAY_BUFFER,e,r.STATIC_DRAW)),t}function lR(r){return Ba(r,()=>r.createTexture(),"Unable to create WebGLTexture.")}function uR(r,e){let t=j().getNumber("WEBGL_MAX_TEXTURE_SIZE");if(r<=0||e<=0){let o=`[${r}x${e}]`;throw new Error("Requested texture size "+o+" is invalid.")}if(r>t||e>t){let o=`[${r}x${e}]`,n=`[${t}x${t}]`;throw new Error("Requested texture size "+o+" greater than WebGL maximum on this browser / GPU "+n+".")}}function cR(r){return Ba(r,()=>r.createFramebuffer(),"Unable to create WebGLFramebuffer.")}function wv(r,e,t,o,n,s,a){let i=r.getAttribLocation(e,t);return i===-1?!1:(Ae(r,()=>r.bindBuffer(r.ARRAY_BUFFER,o)),Ae(r,()=>r.vertexAttribPointer(i,n,r.FLOAT,!1,s,a)),Ae(r,()=>r.enableVertexAttribArray(i)),!0)}function $Y(r,e,t){DY(r,t),Ae(r,()=>r.activeTexture(r.TEXTURE0+t)),Ae(r,()=>r.bindTexture(r.TEXTURE_2D,e))}function pR(r,e,t){return Ba(r,()=>r.getUniformLocation(e,t),'uniform "'+t+'" not present in program.')}function mR(r,e,t){return r.getUniformLocation(e,t)}function fR(r,e,t,o){Ae(r,()=>$Y(r,e,o)),Ae(r,()=>r.uniform1i(t,o))}function Ex(r,e,t){Ae(r,()=>r.bindFramebuffer(r.FRAMEBUFFER,t)),Ae(r,()=>r.framebufferTexture2D(r.FRAMEBUFFER,r.COLOR_ATTACHMENT0,r.TEXTURE_2D,e,0))}function _v(r,e){Ae(r,()=>r.bindFramebuffer(r.FRAMEBUFFER,e)),Ae(r,()=>r.framebufferTexture2D(r.FRAMEBUFFER,r.COLOR_ATTACHMENT0,r.TEXTURE_2D,null,0))}function Qd(r){let e=r.checkFramebufferStatus(r.FRAMEBUFFER);if(e!==r.FRAMEBUFFER_COMPLETE)throw new Error("Error binding framebuffer: "+RY(r,e))}function RY(r,e){switch(e){case r.FRAMEBUFFER_INCOMPLETE_ATTACHMENT:return"FRAMEBUFFER_INCOMPLETE_ATTACHMENT";case r.FRAMEBUFFER_INCOMPLETE_MISSING_ATTACHMENT:return"FRAMEBUFFER_INCOMPLETE_MISSING_ATTACHMENT";case r.FRAMEBUFFER_INCOMPLETE_DIMENSIONS:return"FRAMEBUFFER_INCOMPLETE_DIMENSIONS";case r.FRAMEBUFFER_UNSUPPORTED:return"FRAMEBUFFER_UNSUPPORTED";default:return`unknown error ${e}`}}function Ba(r,e,t){let o=Ae(r,()=>e());if(o==null)throw new Error(t);return o}function DY(r,e){let t=r.MAX_COMBINED_TEXTURE_IMAGE_UNITS-1,o=e+r.TEXTURE0;if(o<r.TEXTURE0||o>t){let n=`[gl.TEXTURE0, gl.TEXTURE${t}]`;throw new Error(`textureUnit must be in ${n}.`)}}function Il(r,e=2){return y.sizeFromShape(r.slice(0,r.length-e))}function Nl(r){if(r.length===0)throw Error("Cannot get rows and columns of an empty shape array.");return[r.length>1?r[r.length-2]:1,r[r.length-1]]}function Dx(r){let e=[1,1,1];return r.length===0||r.length===1&&r[0]===1||(e=[Il(r),...Nl(r)]),e}function dR(r,e=!1){let t=j().getNumber("WEBGL_MAX_TEXTURE_SIZE");e&&(t=t*2,r=r.map((n,s)=>s>=r.length-2?y.nearestLargerEven(r[s]):r[s]),r.length===1&&(r=[2,r[0]])),r.length!==2&&(r=y.squeezeShape(r).newShape);let o=y.sizeFromShape(r);if(r.length<=1&&o<=t)return[1,o];if(r.length===2&&r[0]<=t&&r[1]<=t)return r;if(r.length===3&&r[0]*r[1]<=t&&r[2]<=t)return[r[0]*r[1],r[2]];if(r.length===3&&r[0]<=t&&r[1]*r[2]<=t)return[r[0],r[1]*r[2]];if(r.length===4&&r[0]*r[1]*r[2]<=t&&r[3]<=t)return[r[0]*r[1]*r[2],r[3]];if(r.length===4&&r[0]<=t&&r[1]*r[2]*r[3]<=t)return[r[0],r[1]*r[2]*r[3]];if(e){let n=Il(r),s=2,a=2;return r.length&&([s,a]=Nl(r)),o=n*(s/2)*(a/2),y.sizeToSquarishShape(o).map(i=>i*2)}return y.sizeToSquarishShape(o)}function $x(r){return r%2==0}function lc(r,e){if(r=r.slice(-2),e=e.slice(-2),y.array
bool isnan_custom(float val) {
return (val > 0.0 || val < 0.0) ? false : val != 0.0;
}
bvec4 isnan_custom(vec4 val) {
return bvec4(isnan_custom(val.x),
isnan_custom(val.y), isnan_custom(val.z), isnan_custom(val.w));
}
#define isnan(value) isnan_custom(value)
2021-01-12 16:01:34 +01:00
`,l="",u=`
#define round(value) newRound(value)
int newRound(float value) {
return int(floor(value + 0.5));
}
ivec4 newRound(vec4 value) {
return ivec4(floor(value + vec4(0.5)));
}
2021-01-12 16:01:34 +01:00
`):(r="",e="attribute",t="varying",o="varying",n="texture2D",s="gl_FragColor",a="",i=`
#define isnan(value) isnan_custom(value)
bool isnan_custom(float val) {
return (val > 0. || val < 1. || val == 0.) ? false : true;
}
bvec4 isnan_custom(vec4 val) {
return bvec4(isnan(val.x), isnan(val.y), isnan(val.z), isnan(val.w));
}
2021-01-12 16:01:34 +01:00
`,l=`
uniform float INFINITY;
bool isinf(float val) {
return abs(val) == INFINITY;
}
bvec4 isinf(vec4 val) {
return equal(abs(val), vec4(INFINITY));
}
2021-01-12 16:01:34 +01:00
`,u=`
int round(float value) {
return int(floor(value + 0.5));
}
ivec4 round(vec4 value) {
return ivec4(floor(value + vec4(0.5)));
}
2021-03-09 23:32:33 +01:00
`),{version:r,attribute:e,varyingVs:t,varyingFs:o,texture2D:n,output:s,defineOutput:a,defineSpecialNaN:i,defineSpecialInf:l,defineRound:u}}function Bs(r,e,t="index"){let o=y.computeStrides(e);return o.map((n,s)=>{let a=`int ${r[s]} = ${t} / ${n}`,i=s===o.length-1?`int ${r[s+1]} = ${t} - ${r[s]} * ${n}`:`index -= ${r[s]} * ${n}`;return`${a}; ${i};`}).join("")}function Gp(r){let e=y.computeStrides(r).map(t=>t.toString());return`
int getFlatIndex(ivec3 coords) {
2021-01-12 16:01:34 +01:00
return coords.x * ${e[0]} + coords.y * ${e[1]} + coords.z;
}
2021-03-09 23:32:33 +01:00
`}var Rx=`
const float FLOAT_MAX = 1.70141184e38;
const float FLOAT_MIN = 1.17549435e-38;
lowp vec4 encode_float(highp float v) {
if (isnan(v)) {
return vec4(255, 255, 255, 255);
}
highp float av = abs(v);
if(av < FLOAT_MIN) {
return vec4(0.0, 0.0, 0.0, 0.0);
} else if(v > FLOAT_MAX) {
return vec4(0.0, 0.0, 128.0, 127.0) / 255.0;
} else if(v < -FLOAT_MAX) {
return vec4(0.0, 0.0, 128.0, 255.0) / 255.0;
}
highp vec4 c = vec4(0,0,0,0);
highp float e = floor(log2(av));
highp float m = exp2(fract(log2(av))) - 1.0;
c[2] = floor(128.0 * m);
m -= c[2] / 128.0;
c[1] = floor(32768.0 * m);
m -= c[1] / 32768.0;
c[0] = floor(8388608.0 * m);
highp float ebias = e + 127.0;
c[3] = floor(ebias / 2.0);
ebias -= c[3] * 2.0;
c[2] += floor(ebias) * 128.0;
c[3] += 128.0 * step(0.0, -v);
return c / 255.0;
}
2021-03-09 23:32:33 +01:00
`;var Nv=class{constructor(e){this.variableNames=["A"],this.packedInputs=!1,this.packedOutput=!0,this.outPackingScheme=vl.DENSE;let t=Cl(e),o=Pt();this.outputShape=e,this.userCode=`
2020-12-15 14:15:43 +01:00
ivec3 outCoordsFromFlatIndex(int index) {
2021-03-09 23:32:33 +01:00
${Bs(["r","c","d"],e)}
2020-12-15 14:15:43 +01:00
return ivec3(r, c, d);
}
void main() {
ivec2 resTexRC = ivec2(resultUV.yx *
2021-01-12 16:01:34 +01:00
vec2(${t[0]}, ${t[1]}));
int index = 4 * (resTexRC.x * ${t[1]} + resTexRC.y);
2020-12-15 14:15:43 +01:00
vec4 result = vec4(0.);
for (int i=0; i<4; i++) {
int flatIndex = index + i;
ivec3 rc = outCoordsFromFlatIndex(flatIndex);
result[i] = getA(rc.x, rc.y, rc.z);
}
2021-01-12 16:01:34 +01:00
${o.output} = result;
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`}};var Sv=class{constructor(e){this.variableNames=["A"],this.packedInputs=!0,this.packedOutput=!0,this.outPackingScheme=vl.DENSE;let t=Cl(e),o=Pt();this.outputShape=e,this.userCode=`
2020-12-15 14:15:43 +01:00
ivec3 outCoordsFromFlatIndex(int index) {
2021-03-09 23:32:33 +01:00
${Bs(["r","c","d"],e)}
2020-12-15 14:15:43 +01:00
return ivec3(r, c, d);
}
void main() {
ivec2 resTexRC = ivec2(resultUV.yx *
2021-01-12 16:01:34 +01:00
vec2(${t[0]}, ${t[1]}));
int index = 4 * (resTexRC.x * ${t[1]} + resTexRC.y);
2020-12-15 14:15:43 +01:00
vec4 result = vec4(0.);
for (int i=0; i<4; i++) {
int flatIndex = index + i;
ivec3 rc = outCoordsFromFlatIndex(flatIndex);
result[i] = getChannel(getA(rc.x, rc.y, rc.z), vec2(rc.y, rc.z));
}
2021-01-12 16:01:34 +01:00
${o.output} = result;
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`}};var Tv=class{constructor(e){this.variableNames=["A"],this.outTexUsage=Dr.DOWNLOAD;let t=Pt();this.outputShape=e,this.userCode=`
${Rx}
2020-12-15 14:15:43 +01:00
void main() {
float x = getAAtOutCoords();
2021-01-12 16:01:34 +01:00
${t.output} = encode_float(x);
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`}};var Av=class{constructor(e){this.variableNames=["A"],this.packedInputs=!0,this.packedOutput=!1,this.outTexUsage=Dr.DOWNLOAD;let t=Pt();this.outputShape=e,this.userCode=`
${Rx}
2020-12-15 14:15:43 +01:00
void main() {
ivec3 coords = getOutputCoords();
float x = getChannel(getAAtOutCoords(), vec2(coords.y, coords.z));
2021-01-12 16:01:34 +01:00
${t.output} = encode_float(x);
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`}};var Ev=class{constructor(e,t,o=!1){this.variableNames=["A"];let n=Pt(),[s,a]=t;this.outputShape=e;let i="result";o&&(i="floor(result * 255. + 0.5)"),this.userCode=`
${Gp(e)}
2020-12-15 14:15:43 +01:00
void main() {
ivec3 coords = getOutputCoords();
int flatIndex = getFlatIndex(coords);
int offset = imod(flatIndex, 4);
flatIndex = idiv(flatIndex, 4, 1.);
2021-01-12 16:01:34 +01:00
int r = flatIndex / ${a};
int c = imod(flatIndex, ${a});
vec2 uv = (vec2(c, r) + halfCR) / vec2(${a}.0, ${s}.0);
vec4 values = ${n.texture2D}(A, uv);
2020-12-15 14:15:43 +01:00
float result;
if(offset == 0) {
result = values[0];
} else if(offset == 1) {
result = values[1];
} else if(offset == 2) {
result = values[2];
} else {
result = values[3];
}
2021-01-12 16:01:34 +01:00
${n.output} = vec4(${i}, 0., 0., 0.);
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`}};var Dv=class{constructor(e,t,o=!1){this.variableNames=["A"],this.packedInputs=!1,this.packedOutput=!0;let n=Pt(),[s,a]=t;this.outputShape=e;let i="",l="result";o&&(l="floor(result * 255. + 0.5)");for(let u=0;u<=1;u++)for(let c=0;c<=1;c++){let p=u*2+c;i+=`
2020-12-15 14:15:43 +01:00
localCoords = coords;
2021-01-12 16:01:34 +01:00
if(localCoords[2] + ${c} < ${e[2]}) {
localCoords[2] += ${c};
if(localCoords[1] + ${u} < ${e[1]}) {
localCoords[1] += ${u};
2020-12-15 14:15:43 +01:00
flatIndex = getFlatIndex(localCoords);
offset = imod(flatIndex, 4);
flatIndex = idiv(flatIndex, 4, 1.);
2021-01-12 16:01:34 +01:00
r = flatIndex / ${a};
c = imod(flatIndex, ${a});
uv = (vec2(c, r) + halfCR) / vec2(${a}.0, ${s}.0);
values = ${n.texture2D}(A, uv);
2020-12-15 14:15:43 +01:00
if(offset == 0) {
2021-01-12 16:01:34 +01:00
result[${p}] = values[0];
2020-12-15 14:15:43 +01:00
} else if(offset == 1) {
2021-01-12 16:01:34 +01:00
result[${p}] = values[1];
2020-12-15 14:15:43 +01:00
} else if(offset == 2) {
2021-01-12 16:01:34 +01:00
result[${p}] = values[2];
2020-12-15 14:15:43 +01:00
} else {
2021-01-12 16:01:34 +01:00
result[${p}] = values[3];
2020-12-15 14:15:43 +01:00
}
}
}
`}this.userCode=`
2021-03-09 23:32:33 +01:00
${Gp(e)}
2020-12-15 14:15:43 +01:00
void main() {
ivec3 coords = getOutputCoords();
vec4 result = vec4(0.);
int flatIndex, r, c, offset;
ivec3 localCoords;
vec2 uv;
vec4 values;
2021-01-12 16:01:34 +01:00
${i}
2020-12-15 14:15:43 +01:00
2021-01-12 16:01:34 +01:00
${n.output} = ${l};
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`}};function _R(r){let e=Pt(),t=`${e.version}
2020-12-15 14:15:43 +01:00
precision highp float;
2021-01-12 16:01:34 +01:00
${e.attribute} vec3 clipSpacePos;
${e.attribute} vec2 uv;
${e.varyingVs} vec2 resultUV;
2020-12-15 14:15:43 +01:00
void main() {
gl_Position = vec4(clipSpacePos, 1);
resultUV = uv;
2021-03-09 23:32:33 +01:00
}`;return rR(r,t)}function kR(r){let e=new Float32Array([-1,1,0,0,1,-1,-1,0,0,0,1,1,0,1,1,1,-1,0,1,0]);return iR(r,e)}function vR(r){let e=new Uint16Array([0,1,2,2,1,3]);return aR(r,e)}function eh(r,e,t,o,n,s){uR(e,t);let a=lR(r),i=r.TEXTURE_2D;return Ae(r,()=>r.bindTexture(i,a)),Ae(r,()=>r.texParameteri(i,r.TEXTURE_WRAP_S,r.CLAMP_TO_EDGE)),Ae(r,()=>r.texParameteri(i,r.TEXTURE_WRAP_T,r.CLAMP_TO_EDGE)),Ae(r,()=>r.texParameteri(i,r.TEXTURE_MIN_FILTER,r.NEAREST)),Ae(r,()=>r.texParameteri(i,r.TEXTURE_MAG_FILTER,r.NEAREST)),Ae(r,()=>r.texImage2D(i,0,o,e,t,0,n,s,null)),Ae(r,()=>r.bindTexture(r.TEXTURE_2D,null)),a}function $v(r){return r.internalFormatFloat}function CR(r,e,t,o){let[n,s]=ac(e,t);return eh(r,n,s,$v(o),o.textureFormatFloat,r.FLOAT)}function Rv(r){return r.internalFormatHalfFloat}function IR(r,e,t,o){let[n,s]=ac(e,t);return eh(r,n,s,Rv(o),o.textureFormatFloat,o.textureTypeHalfFloat)}function Fv(r){return r.downloadTextureFormat}function NR(r,e,t,o){let[n,s]=ac(e,t);return eh(r,n,s,Fv(o),r.RGBA,r.UNSIGNED_BYTE)}function Ov(r){return r.internalFormatPackedFloat}function SR(r,e,t,o){let[n,s]=Hi(e,t);return eh(r,n,s,Ov(o),r.RGBA,r.FLOAT)}function Pv(r){return r.internalFormatPackedHalfFloat}function TR(r,e,t,o){let[n,s]=Hi(e,t);return eh(r,n,s,Pv(o),r.RGBA,o.textureTypeHalfFloat)}function AR(r,e,t){let o=0,n=3*4,s=3*4+2*4;return Ae(r,()=>r.bindBuffer(r.ARRAY_BUFFER,t)),wv(r,e,"clipSpacePos",t,3,s,o)&&wv(r,e,"uv",t,2,s,n)}function ER(r,e,t,o,n,s){Ae(r,()=>r.bindTexture(r.TEXTURE_2D,e));let a,i,l;n instanceof Uint8Array?(a=new Uint8Array(t*o*4),i=r.UNSIGNED_BYTE,l=r.RGBA):(a=new Float32Array(t*o*4),i=r.FLOAT,l=s.internalFormatPackedFloat),a.set(n),Ae(r,()=>r.texImage2D(r.TEXTURE_2D,0,l,t,o,0,r.RGBA,i,a)),Ae(r,()=>r.bindTexture(r.TEXTURE_2D,null))}function DR(r,e,t){Ae(r,()=>r.bindTexture(r.TEXTURE_2D,e)),t.data instanceof Uint8Array?Ae(r,()=>r.texImage2D(r.TEXTURE_2D,0,r.RGBA,t.width,t.height,0,r.RGBA,r.UNSIGNED_BYTE,t.data)):Ae(r,()=>r.texImage2D(r.TEXTURE_2D,0,r.RGBA,r.RGBA,r.UNSIGNED_BYTE,t)),Ae(r,()=>r.bindTexture(r.TEXTURE_2D,null))}function $R(r,e,t,o){let n=r.createBuffer();Ae(r,()=>r.bindBuffer(r.PIXEL_PACK_BUFFER,n));let i=4*4*e*t;return Ae(r,()=>r.bufferData(r.PIXEL_PACK_BUFFER,i,r.STREAM_READ)),Ae(r,()=>r.readPixels(0,0,t,e,r.RGBA,r.FLOAT,0)),Ae(r,()=>r.bindBuffer(r.PIXEL_PACK_BUFFER,null)),n}function RR(r,e,t){let o=r,n=new Float32Array(t);return o.bindBuffer(o.PIXEL_PACK_BUFFER,e),o.getBufferSubData(o.PIXEL_PACK_BUFFER,0,n),o.bindBuffer(o.PIXEL_PACK_BUFFER,null),n}function FR(r,e,t,o){let[n,s]=ac(e,t),a=4,i=new Uint8Array(Q$(e*t,a));return Ae(r,()=>r.readPixels(0,0,n,s,o.downloadTextureFormat,r.UNSIGNED_BYTE,i)),new Float32Array(i.buffer)}function OR(r,e,t,o,n,s,a,i){let l=r,u=new Float32Array(eR(s,a));return l.bindBuffer(l.PIXEL_PACK_BUFFER,e),l.getBufferSubData(l.PIXEL_PACK_BUFFER,0,u),l.bindBuffer(l.PIXEL_PACK_BUFFER,null),u}function PR(r,e,t){let o=new Float32Array(e*t*4);return Ae(r,()=>r.readPixels(0,0,t,e,r.RGBA,r.FLOAT,o)),o}var Mv=class{constructor(e){this.outputTexture=null,this.program=null,this.disposed=!1,this.vertexAttrsAreBound=!1,this.itemsToPoll=[];let t=j().getNumber("WEBGL_VERSION");e!=null?(this.gl=e,J$(t,e)):this.gl=Go(t);let o="WEBGL_color_buffer_float",n="EXT_color_buffer_half_float";if(j().getNumber("WEBGL_VERSION")===1){let s="OES_texture_float",a="OES_texture_half_float";if(this.textureFloatExtension=Jd(this.gl,s),Wo(this.gl,a))this.textureHalfFloatExtension=Jd(this.gl,a);else if(j().get("WEBGL_FORCE_F16_TEXTURES"))throw new Error("GL context does not support half float textures, yet the environment flag WEBGL_FORCE_F16_TEXTURES is set to true.");if(this.colorBufferFloatExtension=this.gl.getExtension(o),Wo(this.gl,n))this.colorBufferHalfFloatExtension=Jd(this.gl,n);else if(j().get("WEBGL_FORCE_F16_TEXTURES"))throw new Error("GL context does not support color renderable half floats, yet the environment flag WEBGL_FORCE_F16_TEXTURES is set to true.")}else if(o="EXT_color_buffer_float",Wo(this.gl,o))this.colorBufferFloatExtension=this.gl.getExtension(o);else if(Wo(this.gl,n))this.
`),a=r.map(d=>PY(d,e,o)).join(`
`),i=e.texShape,l=Pt(),u=zY(l),c,p,m=GY(l);return e.isPacked?(c=MY(e.logicalShape,i),p=VY(l)):(c=LY(e.logicalShape,i),p=BY(l)),o&&(m+=WY),[m,u,p,s,c,a,t].join(`
`)}function Wp(r){let e=r.shapeInfo.logicalShape;switch(e.length){case 0:return UY(r);case 1:return jY(r);case 2:return HY(r);case 3:return qY(r);case 4:return KY(r);case 5:return XY(r);case 6:return YY(r);default:throw new Error(`${e.length}-D input sampling is not yet supported`)}}function zR(r){switch(r.shapeInfo.logicalShape.length){case 0:return ZY(r);case 1:return JY(r);case 2:return QY(r);case 3:return e7(r);default:return t7(r)}}function PY(r,e,t=!1){let o="";t?o+=zR(r):o+=Wp(r);let n=r.shapeInfo.logicalShape,s=e.logicalShape;return n.length<=s.length&&(t?o+=r7(r,e):o+=o7(r,e)),o}function MY(r,e){switch(r.length){case 0:return BR();case 1:return n7(r,e);case 2:return a7(r,e);case 3:return s7(r,e);default:return i7(r,e)}}function LY(r,e){switch(r.length){case 0:return BR();case 1:return l7(r,e);case 2:return f7(r,e);case 3:return u7(r,e);case 4:return c7(r,e);case 5:return p7(r,e);case 6:return m7(r,e);default:throw new Error(`${r.length}-D output sampling is not yet supported`)}}function zY(r){return`
float sampleTexture(sampler2D textureSampler, vec2 uv) {
2021-01-12 16:01:34 +01:00
return ${r.texture2D}(textureSampler, uv).r;
}
2021-03-09 23:32:33 +01:00
`}function BY(r){return`
void setOutput(float val) {
2021-01-12 16:01:34 +01:00
${r.output} = vec4(val, 0, 0, 0);
}
2021-03-09 23:32:33 +01:00
`}function VY(r){return`
void setOutput(vec4 val) {
2021-01-12 16:01:34 +01:00
${r.output} = val;
}
2021-03-09 23:32:33 +01:00
`}function GY(r){return`${r.version}
precision highp float;
precision highp int;
precision highp sampler2D;
2021-01-12 16:01:34 +01:00
${r.varyingFs} vec2 resultUV;
${r.defineOutput}
const vec2 halfCR = vec2(0.5, 0.5);
struct ivec5
{
int x;
int y;
int z;
int w;
int u;
};
struct ivec6
{
int x;
int y;
int z;
int w;
int u;
int v;
};
uniform float NAN;
2021-01-12 16:01:34 +01:00
${r.defineSpecialNaN}
${r.defineSpecialInf}
${r.defineRound}
int imod(int x, int y) {
return x - y * (x / y);
}
int idiv(int a, int b, float sign) {
int res = a / b;
int mod = imod(a, b);
if (sign < 0. && mod != 0) {
res -= 1;
}
return res;
}
//Based on the work of Dave Hoskins
//https://www.shadertoy.com/view/4djSRW
#define HASHSCALE1 443.8975
float random(float seed){
vec2 p = resultUV * seed;
vec3 p3 = fract(vec3(p.xyx) * HASHSCALE1);
p3 += dot(p3, p3.yzx + 19.19);
return fract((p3.x + p3.y) * p3.z);
}
2021-03-09 23:32:33 +01:00
${d7}
${h7}
${g7}
`}var d7=`
vec2 uvFromFlat(int texNumR, int texNumC, int index) {
int texR = index / texNumC;
int texC = index - texR * texNumC;
return (vec2(texC, texR) + halfCR) / vec2(texNumC, texNumR);
}
vec2 packedUVfrom1D(int texNumR, int texNumC, int index) {
int texelIndex = index / 2;
int texR = texelIndex / texNumC;
int texC = texelIndex - texR * texNumC;
return (vec2(texC, texR) + halfCR) / vec2(texNumC, texNumR);
}
2021-03-09 23:32:33 +01:00
`,h7=`
vec2 packedUVfrom2D(int texelsInLogicalRow, int texNumR,
int texNumC, int row, int col) {
int texelIndex = (row / 2) * texelsInLogicalRow + (col / 2);
int texR = texelIndex / texNumC;
int texC = texelIndex - texR * texNumC;
return (vec2(texC, texR) + halfCR) / vec2(texNumC, texNumR);
}
2021-03-09 23:32:33 +01:00
`,g7=`
vec2 packedUVfrom3D(int texNumR, int texNumC,
int texelsInBatch, int texelsInLogicalRow, int b,
int row, int col) {
int index = b * texelsInBatch + (row / 2) * texelsInLogicalRow + (col / 2);
int texR = index / texNumC;
int texC = index - texR * texNumC;
return (vec2(texC, texR) + halfCR) / vec2(texNumC, texNumR);
}
2021-03-09 23:32:33 +01:00
`,WY=`
float getChannel(vec4 frag, vec2 innerDims) {
vec2 modCoord = mod(innerDims, 2.);
return modCoord.x == 0. ?
(modCoord.y == 0. ? frag.r : frag.g) :
(modCoord.y == 0. ? frag.b : frag.a);
}
float getChannel(vec4 frag, int dim) {
float modCoord = mod(float(dim), 2.);
return modCoord == 0. ? frag.r : frag.g;
}
2021-03-09 23:32:33 +01:00
`;function BR(){return`
int getOutputCoords() {
return 0;
}
2021-03-09 23:32:33 +01:00
`}function n7(r,e){let t=[Math.ceil(e[0]/2),Math.ceil(e[1]/2)];return t[0]===1?`
int getOutputCoords() {
2021-01-12 16:01:34 +01:00
return 2 * int(resultUV.x * ${t[1]}.0);
}
2021-01-12 16:01:34 +01:00
`:t[1]===1?`
int getOutputCoords() {
2021-01-12 16:01:34 +01:00
return 2 * int(resultUV.y * ${t[0]}.0);
}
`:`
int getOutputCoords() {
ivec2 resTexRC = ivec2(resultUV.yx *
2021-01-12 16:01:34 +01:00
vec2(${t[0]}, ${t[1]}));
return 2 * (resTexRC.x * ${t[1]} + resTexRC.y);
}
2021-03-09 23:32:33 +01:00
`}function l7(r,e){return e[0]===1?`
int getOutputCoords() {
2021-01-12 16:01:34 +01:00
return int(resultUV.x * ${e[1]}.0);
}
2021-01-12 16:01:34 +01:00
`:e[1]===1?`
int getOutputCoords() {
2021-01-12 16:01:34 +01:00
return int(resultUV.y * ${e[0]}.0);
}
`:`
int getOutputCoords() {
ivec2 resTexRC = ivec2(resultUV.yx *
2021-01-12 16:01:34 +01:00
vec2(${e[0]}, ${e[1]}));
return resTexRC.x * ${e[1]} + resTexRC.y;
}
2021-03-09 23:32:33 +01:00
`}function s7(r,e){let t=[Math.ceil(e[0]/2),Math.ceil(e[1]/2)],o=Math.ceil(r[2]/2),n=o*Math.ceil(r[1]/2);return`
ivec3 getOutputCoords() {
ivec2 resTexRC = ivec2(resultUV.yx *
2021-01-12 16:01:34 +01:00
vec2(${t[0]}, ${t[1]}));
int index = resTexRC.x * ${t[1]} + resTexRC.y;
2021-01-12 16:01:34 +01:00
int b = index / ${n};
index -= b * ${n};
2021-01-12 16:01:34 +01:00
int r = 2 * (index / ${o});
int c = imod(index, ${o}) * 2;
return ivec3(b, r, c);
}
2021-03-09 23:32:33 +01:00
`}function u7(r,e){let t=Bs(["r","c","d"],r);return`
ivec3 getOutputCoords() {
ivec2 resTexRC = ivec2(resultUV.yx *
2021-01-12 16:01:34 +01:00
vec2(${e[0]}, ${e[1]}));
int index = resTexRC.x * ${e[1]} + resTexRC.y;
${t}
return ivec3(r, c, d);
}
2021-03-09 23:32:33 +01:00
`}function i7(r,e){let t=[Math.ceil(e[0]/2),Math.ceil(e[1]/2)],o=Math.ceil(r[r.length-1]/2),n=o*Math.ceil(r[r.length-2]/2),s=n,a="",i="b, r, c";for(let l=2;l<r.length-1;l++)s*=r[r.length-l-1],a=`
2021-01-12 16:01:34 +01:00
int b${l} = index / ${s};
index -= b${l} * ${s};
`+a,i=`b${l}, `+i;return`
ivec${r.length} getOutputCoords() {
ivec2 resTexRC = ivec2(resultUV.yx *
2021-01-12 16:01:34 +01:00
vec2(${t[0]}, ${t[1]}));
int index = resTexRC.x * ${t[1]} + resTexRC.y;
2021-01-12 16:01:34 +01:00
${a}
2021-01-12 16:01:34 +01:00
int b = index / ${n};
index -= b * ${n};
2021-01-12 16:01:34 +01:00
int r = 2 * (index / ${o});
int c = imod(index, ${o}) * 2;
2021-01-12 16:01:34 +01:00
return ivec${r.length}(${i});
}
2021-03-09 23:32:33 +01:00
`}function c7(r,e){let t=Bs(["r","c","d","d2"],r);return`
ivec4 getOutputCoords() {
ivec2 resTexRC = ivec2(resultUV.yx *
2021-01-12 16:01:34 +01:00
vec2(${e[0]}, ${e[1]}));
int index = resTexRC.x * ${e[1]} + resTexRC.y;
${t}
return ivec4(r, c, d, d2);
}
2021-03-09 23:32:33 +01:00
`}function p7(r,e){let t=Bs(["r","c","d","d2","d3"],r);return`
ivec5 getOutputCoords() {
2021-01-12 16:01:34 +01:00
ivec2 resTexRC = ivec2(resultUV.yx * vec2(${e[0]},
${e[1]}));
2021-01-12 16:01:34 +01:00
int index = resTexRC.x * ${e[1]} + resTexRC.y;
2021-01-12 16:01:34 +01:00
${t}
ivec5 outShape = ivec5(r, c, d, d2, d3);
return outShape;
}
2021-03-09 23:32:33 +01:00
`}function m7(r,e){let t=Bs(["r","c","d","d2","d3","d4"],r);return`
ivec6 getOutputCoords() {
ivec2 resTexRC = ivec2(resultUV.yx *
2021-01-12 16:01:34 +01:00
vec2(${e[0]}, ${e[1]}));
int index = resTexRC.x * ${e[1]} + resTexRC.y;
2021-01-12 16:01:34 +01:00
${t}
ivec6 result = ivec6(r, c, d, d2, d3, d4);
return result;
}
2021-03-09 23:32:33 +01:00
`}function a7(r,e){let t=[Math.ceil(e[0]/2),Math.ceil(e[1]/2)];if(y.arraysEqual(r,e))return`
ivec2 getOutputCoords() {
2021-01-12 16:01:34 +01:00
return 2 * ivec2(resultUV.yx * vec2(${t[0]}, ${t[1]}));
}
2021-01-12 16:01:34 +01:00
`;let o=Math.ceil(r[1]/2);return`
ivec2 getOutputCoords() {
ivec2 resTexRC = ivec2(resultUV.yx *
2021-01-12 16:01:34 +01:00
vec2(${t[0]}, ${t[1]}));
2021-01-12 16:01:34 +01:00
int index = resTexRC.x * ${t[1]} + resTexRC.y;
int r = 2 * (index / ${o});
int c = imod(index, ${o}) * 2;
return ivec2(r, c);
}
2021-03-09 23:32:33 +01:00
`}function f7(r,e){return y.arraysEqual(r,e)?`
ivec2 getOutputCoords() {
2021-01-12 16:01:34 +01:00
return ivec2(resultUV.yx * vec2(${e[0]}, ${e[1]}));
}
2021-01-12 16:01:34 +01:00
`:r[1]===1?`
ivec2 getOutputCoords() {
ivec2 resTexRC = ivec2(resultUV.yx *
2021-01-12 16:01:34 +01:00
vec2(${e[0]}, ${e[1]}));
int index = resTexRC.x * ${e[1]} + resTexRC.y;
return ivec2(index, 0);
}
2021-01-12 16:01:34 +01:00
`:r[0]===1?`
ivec2 getOutputCoords() {
ivec2 resTexRC = ivec2(resultUV.yx *
2021-01-12 16:01:34 +01:00
vec2(${e[0]}, ${e[1]}));
int index = resTexRC.x * ${e[1]} + resTexRC.y;
return ivec2(0, index);
}
`:`
ivec2 getOutputCoords() {
ivec2 resTexRC = ivec2(resultUV.yx *
2021-01-12 16:01:34 +01:00
vec2(${e[0]}, ${e[1]}));
int index = resTexRC.x * ${e[1]} + resTexRC.y;
int r = index / ${r[1]};
int c = index - r * ${r[1]};
return ivec2(r, c);
}
2021-03-09 23:32:33 +01:00
`}function uc(r){return`offset${r}`}function ZY(r){let e=r.name,t="get"+e.charAt(0).toUpperCase()+e.slice(1),o=Pt();return`
2021-01-12 16:01:34 +01:00
vec4 ${t}() {
return ${o.texture2D}(${e}, halfCR);
}
2021-03-09 23:32:33 +01:00
`}function UY(r){let e=r.name,t="get"+e.charAt(0).toUpperCase()+e.slice(1);if(r.shapeInfo.isUniform)return`float ${t}() {return ${e};}`;let[o,n]=r.shapeInfo.texShape;if(o===1&&n===1)return`
2021-01-12 16:01:34 +01:00
float ${t}() {
return sampleTexture(${e}, halfCR);
}
2021-03-09 23:32:33 +01:00
`;let[s,a]=r.shapeInfo.texShape,i=uc(e);return`
2021-01-12 16:01:34 +01:00
float ${t}() {
vec2 uv = uvFromFlat(${s}, ${a}, ${i});
return sampleTexture(${e}, uv);
}
2021-03-09 23:32:33 +01:00
`}function JY(r){let e=r.name,t="get"+e.charAt(0).toUpperCase()+e.slice(1),o=r.shapeInfo.texShape,n=[Math.ceil(o[0]/2),Math.ceil(o[1]/2)],s=Pt();return`
2021-01-12 16:01:34 +01:00
vec4 ${t}(int index) {
vec2 uv = packedUVfrom1D(
2021-01-12 16:01:34 +01:00
${n[0]}, ${n[1]}, index);
return ${s.texture2D}(${e}, uv);
}
2021-03-09 23:32:33 +01:00
`}function jY(r){let e=r.name,t="get"+e.charAt(0).toUpperCase()+e.slice(1);if(r.shapeInfo.isUniform)return`
2021-01-12 16:01:34 +01:00
float ${t}(int index) {
2021-03-09 23:32:33 +01:00
${Up(r)}
}
2021-01-12 16:01:34 +01:00
`;let o=r.shapeInfo.texShape,n=o[0],s=o[1];if(s===1&&n===1)return`
float ${t}(int index) {
return sampleTexture(${e}, halfCR);
}
2021-03-09 23:32:33 +01:00
`;let a=uc(e);return s===1?`
2021-01-12 16:01:34 +01:00
float ${t}(int index) {
vec2 uv = vec2(0.5, (float(index + ${a}) + 0.5) / ${n}.0);
return sampleTexture(${e}, uv);
}
2021-01-12 16:01:34 +01:00
`:n===1?`
float ${t}(int index) {
vec2 uv = vec2((float(index + ${a}) + 0.5) / ${s}.0, 0.5);
return sampleTexture(${e}, uv);
}
`:`
2021-01-12 16:01:34 +01:00
float ${t}(int index) {
vec2 uv = uvFromFlat(${n}, ${s}, index + ${a});
return sampleTexture(${e}, uv);
}
2021-03-09 23:32:33 +01:00
`}function QY(r){let e=r.shapeInfo.logicalShape,t=r.name,o="get"+t.charAt(0).toUpperCase()+t.slice(1),n=r.shapeInfo.texShape,s=n[0],a=n[1],i=Pt();if(n!=null&&y.arraysEqual(e,n))return`
2021-01-12 16:01:34 +01:00
vec4 ${o}(int row, int col) {
vec2 uv = (vec2(col, row) + halfCR) / vec2(${a}.0, ${s}.0);
2021-01-12 16:01:34 +01:00
return ${i.texture2D}(${t}, uv);
}
2021-01-12 16:01:34 +01:00
`;let l=[Math.ceil(n[0]/2),Math.ceil(n[1]/2)],u=Math.ceil(e[1]/2);return`
vec4 ${o}(int row, int col) {
vec2 uv = packedUVfrom2D(${u}, ${l[0]}, ${l[1]}, row, col);
return ${i.texture2D}(${t}, uv);
}
2021-03-09 23:32:33 +01:00
`}function HY(r){let e=r.shapeInfo.logicalShape,t=r.name,o="get"+t.charAt(0).toUpperCase()+t.slice(1),n=r.shapeInfo.texShape;if(n!=null&&y.arraysEqual(e,n)){let p=n[0],m=n[1];return`
2021-01-12 16:01:34 +01:00
float ${o}(int row, int col) {
vec2 uv = (vec2(col, row) + halfCR) / vec2(${m}.0, ${p}.0);
return sampleTexture(${t}, uv);
}
2021-03-09 23:32:33 +01:00
`}let{newShape:s,keptDims:a}=y.squeezeShape(e),i=s;if(i.length<e.length){let p=jp(r,i),m=["row","col"];return`
${Wp(p)}
2021-01-12 16:01:34 +01:00
float ${o}(int row, int col) {
2021-03-09 23:32:33 +01:00
return ${o}(${Hp(m,a)});
2021-01-12 16:01:34 +01:00
}
`}if(r.shapeInfo.isUniform)return`
float ${o}(int row, int col) {
int index = round(dot(vec2(row, col), vec2(${e[1]}, 1)));
2021-03-09 23:32:33 +01:00
${Up(r)}
2021-01-12 16:01:34 +01:00
}
2021-03-09 23:32:33 +01:00
`;let l=n[0],u=n[1],c=uc(t);return u===1?`
2021-01-12 16:01:34 +01:00
float ${o}(int row, int col) {
float index = dot(vec3(row, col, ${c}), vec3(${e[1]}, 1, 1));
vec2 uv = vec2(0.5, (index + 0.5) / ${l}.0);
return sampleTexture(${t}, uv);
}
2021-01-12 16:01:34 +01:00
`:l===1?`
float ${o}(int row, int col) {
float index = dot(vec3(row, col, ${c}), vec3(${e[1]}, 1, 1));
vec2 uv = vec2((index + 0.5) / ${u}.0, 0.5);
return sampleTexture(${t}, uv);
}
`:`
2021-01-12 16:01:34 +01:00
float ${o}(int row, int col) {
// Explicitly use integer operations as dot() only works on floats.
2021-01-12 16:01:34 +01:00
int index = row * ${e[1]} + col + ${c};
vec2 uv = uvFromFlat(${l}, ${u}, index);
return sampleTexture(${t}, uv);
}
2021-03-09 23:32:33 +01:00
`}function e7(r){let e=r.shapeInfo.logicalShape,t=r.name,o="get"+t.charAt(0).toUpperCase()+t.slice(1),n=r.shapeInfo.texShape,s=[Math.ceil(n[0]/2),Math.ceil(n[1]/2)];if(e[0]===1){let p=e.slice(1),m=[1,2],f=jp(r,p),d=["b","row","col"];return`
${zR(f)}
2021-01-12 16:01:34 +01:00
vec4 ${o}(int b, int row, int col) {
2021-03-09 23:32:33 +01:00
return ${o}(${Hp(d,m)});
}
2021-03-09 23:32:33 +01:00
`}let a=s[0],i=s[1],l=Math.ceil(e[2]/2),u=l*Math.ceil(e[1]/2),c=Pt();return`
2021-01-12 16:01:34 +01:00
vec4 ${o}(int b, int row, int col) {
vec2 uv = packedUVfrom3D(
2021-01-12 16:01:34 +01:00
${a}, ${i}, ${u}, ${l}, b, row, col);
return ${c.texture2D}(${t}, uv);
}
2021-03-09 23:32:33 +01:00
`}function qY(r){let e=r.shapeInfo.logicalShape,t=r.name,o="get"+t.charAt(0).toUpperCase()+t.slice(1),n=e[1]*e[2],s=e[2],{newShape:a,keptDims:i}=y.squeezeShape(e),l=a;if(l.length<e.length){let d=jp(r,l),h=["row","col","depth"];return`
${Wp(d)}
2021-01-12 16:01:34 +01:00
float ${o}(int row, int col, int depth) {
2021-03-09 23:32:33 +01:00
return ${o}(${Hp(h,i)});
}
2021-01-12 16:01:34 +01:00
`}if(r.shapeInfo.isUniform)return`
float ${o}(int row, int col, int depth) {
int index = round(dot(vec3(row, col, depth),
2021-01-12 16:01:34 +01:00
vec3(${n}, ${s}, 1)));
2021-03-09 23:32:33 +01:00
${Up(r)}
}
2021-01-12 16:01:34 +01:00
`;let u=r.shapeInfo.texShape,c=u[0],p=u[1],m=r.shapeInfo.flatOffset;if(p===n&&m==null)return`
float ${o}(int row, int col, int depth) {
float texR = float(row);
2021-01-12 16:01:34 +01:00
float texC = dot(vec2(col, depth), vec2(${s}, 1));
vec2 uv = (vec2(texC, texR) + halfCR) /
2021-01-12 16:01:34 +01:00
vec2(${p}.0, ${c}.0);
return sampleTexture(${t}, uv);
}
2021-01-12 16:01:34 +01:00
`;if(p===s&&m==null)return`
float ${o}(int row, int col, int depth) {
float texR = dot(vec2(row, col), vec2(${e[1]}, 1));
float texC = float(depth);
2021-01-12 16:01:34 +01:00
vec2 uv = (vec2(texC, texR) + halfCR) / vec2(${p}.0, ${c}.0);
return sampleTexture(${t}, uv);
}
2021-03-09 23:32:33 +01:00
`;let f=uc(t);return`
2021-01-12 16:01:34 +01:00
float ${o}(int row, int col, int depth) {
// Explicitly use integer operations as dot() only works on floats.
2021-01-12 16:01:34 +01:00
int index = row * ${n} + col * ${s} + depth + ${f};
vec2 uv = uvFromFlat(${c}, ${p}, index);
return sampleTexture(${t}, uv);
}
2021-03-09 23:32:33 +01:00
`}function t7(r){let e=r.shapeInfo.logicalShape,t=e.length,o=r.name,n="get"+o.charAt(0).toUpperCase()+o.slice(1),s=r.shapeInfo.texShape,a=[Math.ceil(s[0]/2),Math.ceil(s[1]/2)],i=a[0],l=a[1],u=Math.ceil(e[t-1]/2),c=u*Math.ceil(e[t-2]/2),p="int b, int row, int col",m=`b * ${c} + (row / 2) * ${u} + (col / 2)`;for(let d=2;d<t-1;d++)p=`int b${d}, `+p,c*=e[t-d-1],m=`b${d} * ${c} + `+m;let f=Pt();return`
2021-01-12 16:01:34 +01:00
vec4 ${n}(${p}) {
int index = ${m};
int texR = index / ${l};
int texC = index - texR * ${l};
vec2 uv = (vec2(texC, texR) + halfCR) / vec2(${l}, ${i});
return ${f.texture2D}(${o}, uv);
}
2021-03-09 23:32:33 +01:00
`}function KY(r){let e=r.shapeInfo.logicalShape,t=r.name,o="get"+t.charAt(0).toUpperCase()+t.slice(1),n=e[3],s=e[2]*n,a=e[1]*s,{newShape:i,keptDims:l}=y.squeezeShape(e);if(i.length<e.length){let d=jp(r,i),h=["row","col","depth","depth2"];return`
${Wp(d)}
2021-01-12 16:01:34 +01:00
float ${o}(int row, int col, int depth, int depth2) {
2021-03-09 23:32:33 +01:00
return ${o}(${Hp(h,l)});
}
2021-01-12 16:01:34 +01:00
`}if(r.shapeInfo.isUniform)return`
float ${o}(int row, int col, int depth, int depth2) {
int index = round(dot(vec4(row, col, depth, depth2),
2021-01-12 16:01:34 +01:00
vec4(${a}, ${s}, ${n}, 1)));
2021-03-09 23:32:33 +01:00
${Up(r)}
}
2021-01-12 16:01:34 +01:00
`;let u=r.shapeInfo.flatOffset,c=r.shapeInfo.texShape,p=c[0],m=c[1];if(m===a&&u==null)return`
float ${o}(int row, int col, int depth, int depth2) {
float texR = float(row);
float texC =
dot(vec3(col, depth, depth2),
2021-01-12 16:01:34 +01:00
vec3(${s}, ${n}, 1));
vec2 uv = (vec2(texC, texR) + halfCR) /
2021-01-12 16:01:34 +01:00
vec2(${m}.0, ${p}.0);
return sampleTexture(${t}, uv);
}
2021-01-12 16:01:34 +01:00
`;if(m===n&&u==null)return`
float ${o}(int row, int col, int depth, int depth2) {
float texR = dot(vec3(row, col, depth),
2021-01-12 16:01:34 +01:00
vec3(${e[1]*e[2]}, ${e[2]}, 1));
float texC = float(depth2);
vec2 uv = (vec2(texC, texR) + halfCR) /
2021-01-12 16:01:34 +01:00
vec2(${m}.0, ${p}.0);
return sampleTexture(${t}, uv);
}
2021-03-09 23:32:33 +01:00
`;let f=uc(t);return`
2021-01-12 16:01:34 +01:00
float ${o}(int row, int col, int depth, int depth2) {
// Explicitly use integer operations as dot() only works on floats.
2021-01-12 16:01:34 +01:00
int index = row * ${a} + col * ${s} +
depth * ${n} + depth2;
vec2 uv = uvFromFlat(${p}, ${m}, index + ${f});
return sampleTexture(${t}, uv);
}
2021-03-09 23:32:33 +01:00
`}function XY(r){let e=r.shapeInfo.logicalShape,t=r.name,o="get"+t.charAt(0).toUpperCase()+t.slice(1),n=e[4],s=e[3]*n,a=e[2]*s,i=e[1]*a,{newShape:l,keptDims:u}=y.squeezeShape(e);if(l.length<e.length){let h=jp(r,l),g=["row","col","depth","depth2","depth3"];return`
${Wp(h)}
2021-01-12 16:01:34 +01:00
float ${o}(int row, int col, int depth, int depth2, int depth3) {
2021-03-09 23:32:33 +01:00
return ${o}(${Hp(g,u)});
}
2021-01-12 16:01:34 +01:00
`}if(r.shapeInfo.isUniform)return`
float ${o}(int row, int col, int depth, int depth2, int depth3) {
float index = dot(
vec4(row, col, depth, depth2),
2021-01-12 16:01:34 +01:00
vec4(${i}, ${a}, ${s}, ${n})) +
depth3;
2021-03-09 23:32:33 +01:00
${Up(r)}
}
2021-01-12 16:01:34 +01:00
`;let c=r.shapeInfo.flatOffset,p=r.shapeInfo.texShape,m=p[0],f=p[1];if(f===i&&c==null)return`
float ${o}(int row, int col, int depth, int depth2, int depth3) {
int texR = row;
float texC = dot(vec4(col, depth, depth2, depth3),
2021-01-12 16:01:34 +01:00
vec4(${a}, ${s}, ${n}, 1));
vec2 uv = (vec2(texC, texR) + halfCR) /
2021-01-12 16:01:34 +01:00
vec2(${f}.0, ${m}.0);
return sampleTexture(${t}, uv);
}
2021-01-12 16:01:34 +01:00
`;if(f===n&&c==null)return`
float ${o}(int row, int col, int depth, int depth2, int depth3) {
float texR = dot(
vec4(row, col, depth, depth2),
2021-01-12 16:01:34 +01:00
vec4(${e[1]*e[2]*e[3]},
${e[2]*e[3]}, ${e[3]}, 1));
int texC = depth3;
vec2 uv = (vec2(texC, texR) + halfCR) /
2021-01-12 16:01:34 +01:00
vec2(${f}.0, ${m}.0);
return sampleTexture(${t}, uv);
}
2021-03-09 23:32:33 +01:00
`;let d=uc(t);return`
2021-01-12 16:01:34 +01:00
float ${o}(int row, int col, int depth, int depth2, int depth3) {
// Explicitly use integer operations as dot() only works on floats.
2021-01-12 16:01:34 +01:00
int index = row * ${i} + col * ${a} + depth * ${s} +
depth2 * ${n} + depth3 + ${d};
vec2 uv = uvFromFlat(${m}, ${f}, index);
return sampleTexture(${t}, uv);
}
2021-03-09 23:32:33 +01:00
`}function YY(r){let e=r.shapeInfo.logicalShape,t=r.name,o="get"+t.charAt(0).toUpperCase()+t.slice(1),{newShape:n,keptDims:s}=y.squeezeShape(e);if(n.length<e.length){let g=jp(r,n),x=["row","col","depth","depth2","depth3","depth4"];return`
${Wp(g)}
2021-01-12 16:01:34 +01:00
float ${o}(int row, int col, int depth,
int depth2, int depth3, int depth4) {
2021-03-09 23:32:33 +01:00
return ${o}(${Hp(x,s)});
}
2021-01-12 16:01:34 +01:00
`}let a=e[5],i=e[4]*a,l=e[3]*i,u=e[2]*l,c=e[1]*u;if(r.shapeInfo.isUniform)return`
float ${o}(int row, int col, int depth,
int depth2, int depth3, int depth4) {
int index = round(dot(
vec4(row, col, depth, depth2),
2021-01-12 16:01:34 +01:00
vec4(${c}, ${u}, ${l}, ${i})) +
dot(
vec2(depth3, depth4),
2021-01-12 16:01:34 +01:00
vec2(${a}, 1)));
2021-03-09 23:32:33 +01:00
${Up(r)}
}
2021-01-12 16:01:34 +01:00
`;let p=r.shapeInfo.flatOffset,m=r.shapeInfo.texShape,f=m[0],d=m[1];if(d===c&&p==null)return`
float ${o}(int row, int col, int depth,
int depth2, int depth3, int depth4) {
int texR = row;
float texC = dot(vec4(col, depth, depth2, depth3),
2021-01-12 16:01:34 +01:00
vec4(${u}, ${l}, ${i}, ${a})) +
float(depth4);
vec2 uv = (vec2(texC, texR) + halfCR) /
2021-01-12 16:01:34 +01:00
vec2(${d}.0, ${f}.0);
return sampleTexture(${t}, uv);
}
2021-01-12 16:01:34 +01:00
`;if(d===a&&p==null)return`
float ${o}(int row, int col, int depth,
int depth2, int depth3, int depth4) {
float texR = dot(vec4(row, col, depth, depth2),
2021-01-12 16:01:34 +01:00
vec4(${e[1]*e[2]*e[3]*e[4]},
${e[2]*e[3]*e[4]},
${e[3]*e[4]},
${e[4]})) + float(depth3);
int texC = depth4;
vec2 uv = (vec2(texC, texR) + halfCR) /
2021-01-12 16:01:34 +01:00
vec2(${d}.0, ${f}.0);
return sampleTexture(${t}, uv);
}
2021-03-09 23:32:33 +01:00
`;let h=uc(t);return`
2021-01-12 16:01:34 +01:00
float ${o}(int row, int col, int depth,
int depth2, int depth3, int depth4) {
// Explicitly use integer operations as dot() only works on floats.
2021-01-12 16:01:34 +01:00
int index = row * ${c} + col * ${u} + depth * ${l} +
depth2 * ${i} + depth3 * ${a} + depth4 + ${h};
vec2 uv = uvFromFlat(${f}, ${d}, index);
return sampleTexture(${t}, uv);
}
2021-03-09 23:32:33 +01:00
`}function Up(r){let e=r.name,t=y.sizeFromShape(r.shapeInfo.logicalShape);return t<2?`return ${e};`:`
2021-01-12 16:01:34 +01:00
for (int i = 0; i < ${t}; i++) {
if (i == index) {
2021-01-12 16:01:34 +01:00
return ${e}[i];
}
}
2021-03-09 23:32:33 +01:00
`}function r7(r,e){let t=r.name,o=t.charAt(0).toUpperCase()+t.slice(1),n="get"+o+"AtOutCoords",s=r.shapeInfo.logicalShape.length,a=e.logicalShape.length,i=MR(r.shapeInfo.logicalShape,e.logicalShape),l=Le(a),u=a-s,c,p=["x","y","z","w","u","v"];s===0?c="":a<2&&i.length>=1?c="coords = 0;":c=i.map(w=>`coords.${p[w+u]} = 0;`).join(`
`);let m="";a<2&&s>0?m="coords":m=r.shapeInfo.logicalShape.map((w,b)=>`coords.${p[b+u]}`).join(", ");let f="return outputValue;",h=y.sizeFromShape(r.shapeInfo.logicalShape)===1,x=y.sizeFromShape(e.logicalShape)===1;if(s===1&&!h&&!x)f=`
return vec4(outputValue.xy, outputValue.xy);
2021-03-09 23:32:33 +01:00
`;else if(h&&!x)a===1?f=`
return vec4(outputValue.x, outputValue.x, 0., 0.);
2021-01-12 16:01:34 +01:00
`:f=`
return vec4(outputValue.x);
2021-03-09 23:32:33 +01:00
`;else if(i.length){let w=s-2,b=s-1;i.indexOf(w)>-1&&i.indexOf(b)>-1?f="return vec4(outputValue.x);":i.indexOf(w)>-1?f="return vec4(outputValue.x, outputValue.y, outputValue.x, outputValue.y);":i.indexOf(b)>-1&&(f="return vec4(outputValue.xx, outputValue.zz);")}return`
2021-01-12 16:01:34 +01:00
vec4 ${n}() {
${l} coords = getOutputCoords();
${c}
vec4 outputValue = get${o}(${m});
${f}
}
2021-03-09 23:32:33 +01:00
`}function o7(r,e){let t=r.name,o=t.charAt(0).toUpperCase()+t.slice(1),n="get"+o+"AtOutCoords",s=e.texShape,a=r.shapeInfo.texShape,i=r.shapeInfo.logicalShape.length,l=e.logicalShape.length;if(!r.shapeInfo.isUniform&&i===l&&r.shapeInfo.flatOffset==null&&y.arraysEqual(a,s))return`
2021-01-12 16:01:34 +01:00
float ${n}() {
return sampleTexture(${t}, resultUV);
}
2021-03-09 23:32:33 +01:00
`;let u=Le(l),c=MR(r.shapeInfo.logicalShape,e.logicalShape),p=l-i,m,f=["x","y","z","w","u","v"];i===0?m="":l<2&&c.length>=1?m="coords = 0;":m=c.map(h=>`coords.${f[h+p]} = 0;`).join(`
2021-01-12 16:01:34 +01:00
`);let d="";return l<2&&i>0?d="coords":d=r.shapeInfo.logicalShape.map((h,g)=>`coords.${f[g+p]}`).join(", "),`
float ${n}() {
${u} coords = getOutputCoords();
${m}
return get${o}(${d});
}
2021-03-09 23:32:33 +01:00
`}function Le(r){if(r<=1)return"int";if(r===2)return"ivec2";if(r===3)return"ivec3";if(r===4)return"ivec4";if(r===5)return"ivec5";if(r===6)return"ivec6";throw Error(`GPU for rank ${r} is not yet supported`)}function jp(r,e){let t=JSON.parse(JSON.stringify(r));return t.shapeInfo.logicalShape=e,t}function Hp(r,e){return e.map(t=>r[t]).join(", ")}function VR(r,e,t,o){let n=e.userCode,s=t.map((f,d)=>{let h={logicalShape:f.shape,texShape:f.isUniform?null:f.texData.texShape,isUniform:f.isUniform,isPacked:f.isUniform?!1:f.texData.isPacked,flatOffset:null};return f.texData!=null&&f.texData.slice!=null&&f.texData.slice.flatOffset>0&&(h.flatOffset=f.texData.slice.flatOffset),{name:e.variableNames[d],shapeInfo:h}}),a=s.map(f=>f.shapeInfo),i={logicalShape:o.shape,texShape:o.texData.texShape,isUniform:!1,isPacked:o.texData.isPacked,flatOffset:null},l=LR(s,i,n,e.packedInputs),u=r.createProgram(l),c=null,p=r.getUniformLocation(u,"NAN",!1);j().getNumber("WEBGL_VERSION")===1&&(c=r.getUniformLocation(u,"INFINITY",!1));let m={};for(let f=0;f<e.variableNames.length;f++){let d=e.variableNames[f],h=!1;m[d]=r.getUniformLocation(u,d,h),m[`offset${d}`]=r.getUniformLocation(u,`offset${d}`,h)}return{program:e,source:l,webGLProgram:u,uniformLocations:m,inShapeInfos:a,outShapeInfo:i,infLoc:c,nanLoc:p}}function GR(r,e){if(r.length!==e.length)throw Error(`Binary was compiled with ${r.length} inputs, but was executed with ${e.length} inputs`);r.forEach((t,o)=>{let n=t.logicalShape,s=e[o],a=s.shape;if(!y.arraysEqual(n,a))throw Error(`Binary was compiled with different shapes than the current args. Shapes ${n} and ${a} must match`);if(t.isUniform&&s.isUniform)return;let i=t.texShape,l=s.isUniform?null:s.texData.texShape;if(!y.arraysEqual(i,l))throw Error(`Binary was compiled with different texture shapes than the current args. Shape ${i} and ${l} must match`)})}function WR(r,e,t,o,n){GR(e.inShapeInfos,t),GR([e.outShapeInfo],[o]);let s=o.texData.texture,a=o.texData.texShape;o.texData.isPacked?r.setOutputPackedMatrixTexture(s,a[0],a[1]):r.setOutputMatrixTexture(s,a[0],a[1]),r.setProgram(e.webGLProgram),j().getNumber("WEBGL_VERSION")===1&&e.infLoc!==null&&r.gl.uniform1f(e.infLoc,Infinity),e.nanLoc!==null&&r.gl.uniform1f(e.nanLoc,NaN),t.forEach((i,l)=>{let u=e.program.variableNames[l],c=e.uniformLocations[u],p=e.uniformLocations[`offset${u}`];if(c!=null){if(i.isUniform){if(y.sizeFromShape(i.shape)<2)r.gl.uniform1f(c,i.uniformValues[0]);else{let m=i.uniformValues;m instanceof Float32Array||(m=new Float32Array(m)),r.gl.uniform1fv(c,m)}return}i.texData.slice!=null&&p!=null&&r.gl.uniform1i(p,i.texData.slice.flatOffset),r.setInputMatrixTexture(i.texData.texture,c,l)}}),n!=null&&n(r,e.webGLProgram),r.executeProgram()}function UR(r,e,t){let o="";e.concat(t).forEach(a=>{let i=a.texData!=null&&a.texData.slice!=null&&a.texData.slice.flatOffset>0,l=a.isUniform?"uniform":a.texData.texShape;o+=`${a.shape}_${l}_${i}`});let n=r.userCode,s=r.constructor.name;return s+="_"+o+"_"+n,s}var{addImpl:jR,bincountImpl:Fx,bincountReduceImpl:HR,ceilImpl:qR,concatImpl:KR,expImpl:XR,expm1Impl:YR,floorImpl:ZR,gatherV2Impl:JR,greaterImpl:QR,lessImpl:eF,linSpaceImpl:tF,logImpl:rF,maxImpl:oF,maximumImpl:nF,minimumImpl:sF,multiplyImpl:iF,negImpl:aF,prodImpl:lF,rangeImpl:uF,rsqrtImpl:cF,simpleAbsImpl:Ox,sliceImpl:pF,stridedSliceImpl:mF,subImpl:fF,tileImpl:dF,topKImpl:hF,transposeImpl:qp,uniqueImpl:gF}=Qk;function Lv(r,e){return["x","y","z","w","u","v"].slice(0,e).map(t=>`${r}.${t}`)}function jt(r,e){return e===1?[r]:Lv(r,e)}function xF(r,e){if(r===1)return"rc";let t="";for(let o=0;o<r;o++)t+=e[o],o<r-1&&(t+=",");return t}var zv=class{constructor(e){this.variableNames=["A"],this.packedInputs=!1,this.packedOutput=!0,this.outputShape=e;let t=e.length;if(t===0)this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
setOutput(vec4(getA(), 0., 0., 0.));
}
2021-03-09 23:32:33 +01:00
`;else{let o=jt("rc",t),n=Le(t),s=x7(t,e,o),a=y7(t,e[e.length-1],e[e.length-2],o),i=b7(e,o);this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
2021-01-12 16:01:34 +01:00
${n} rc = getOutputCoords();
2021-01-12 16:01:34 +01:00
if(${s}) {
2020-12-15 14:15:43 +01:00
setOutput(vec4(0));
} else {
2021-01-12 16:01:34 +01:00
${a}
2021-01-12 16:01:34 +01:00
setOutput(vec4(${i}));
}
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`}}};function w7(r,e){let t=[];for(let o=0;o<=1;o++)for(let n=0;n<=1;n++){let s=`${o===0?"r":"rp1"}, ${n===0?"c":"cp1"}`;for(let a=2;a<r;a++)s=`${e[e.length-1-a]},`+s;t.push(s)}return t}function x7(r,e,t){if(r===1)return`rc > ${e[0]}`;let o="";for(let n=r-2;n<r;n++)o+=`${t[n]} >= ${e[n]}`,n<r-1&&(o+="||");return o}function y7(r,e,t,o){if(r===1)return"";let n=o.slice(-2);return`
2021-01-12 16:01:34 +01:00
int r = ${n[0]};
int c = ${n[1]};
2020-12-15 14:15:43 +01:00
int rp1 = r + 1;
int cp1 = c + 1;
2021-01-12 16:01:34 +01:00
bool cEdge = cp1 >= ${e};
bool rEdge = rp1 >= ${t};
2021-03-09 23:32:33 +01:00
`}function b7(r,e){let t=r.length,o=w7(t,e);return t===1?`getA(rc),
2021-01-12 16:01:34 +01:00
rc + 1 >= ${r[0]} ? 0. : getA(rc + 1),
0, 0`:`getA(${o[0]}),
cEdge ? 0. : getA(${o[1]}),
rEdge ? 0. : getA(${o[2]}),
2021-03-09 23:32:33 +01:00
rEdge || cEdge ? 0. : getA(${o[3]})`}var th=class{constructor(e,t){this.variableNames=["A"],this.packedInputs=!0,this.packedOutput=!0,this.outputShape=e;let o="";for(let n=0;n<4;n++){let s="thisRC = rc;";n%2==1&&(s+="thisRC.z += 1;"),n>1&&(s+="thisRC.y += 1;"),o+=`
2021-01-12 16:01:34 +01:00
${s}
${n>0?"if(thisRC.y < rows && thisRC.z < cols){":""}
2020-12-15 14:15:43 +01:00
int flatIndex = getFlatIndex(thisRC);
2020-12-15 14:15:43 +01:00
ivec3 inputRC = inputCoordsFromReshapedOutCoords(flatIndex);
vec2 inputRCInnerDims = vec2(float(inputRC.y),float(inputRC.z));
2021-01-12 16:01:34 +01:00
result[${n}] =
2020-12-15 14:15:43 +01:00
getChannel(getA(inputRC.x, inputRC.y, inputRC.z), inputRCInnerDims);
2021-01-12 16:01:34 +01:00
${n>0?"}":""}
2020-12-15 14:15:43 +01:00
`}this.userCode=`
2021-03-09 23:32:33 +01:00
${_7(t)}
${Gp(e)}
2020-12-15 14:15:43 +01:00
void main() {
ivec3 rc = getOutputCoords();
vec4 result = vec4(0.);
ivec3 thisRC;
2021-01-12 16:01:34 +01:00
int rows = ${e[1]};
int cols = ${e[2]};
2020-12-15 14:15:43 +01:00
2021-01-12 16:01:34 +01:00
${o}
2020-12-15 14:15:43 +01:00
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}};function _7(r){return`
2020-12-15 14:15:43 +01:00
ivec3 inputCoordsFromReshapedOutCoords(int index) {
2021-03-09 23:32:33 +01:00
${Bs(["r","c","d"],r)}
2020-12-15 14:15:43 +01:00
return ivec3(r, c, d);
}
2021-03-09 23:32:33 +01:00
`}var Bv=class{constructor(e){this.gpgpu=e,this.numUsedTextures=0,this.numFreeTextures=0,this._numBytesAllocated=0,this._numBytesFree=0,this.freeTextures={},this.logEnabled=!1,this.usedTextures={}}acquireTexture(e,t,o){let n=bF(t,o),s=wF(e,n,o);s in this.freeTextures||(this.freeTextures[s]=[]),s in this.usedTextures||(this.usedTextures[s]=[]);let a=yF(e,n,this.gpgpu.gl,this.gpgpu.textureConfig,o);if(this.freeTextures[s].length>0){this.numFreeTextures--,this.numUsedTextures++,this._numBytesFree-=a,this.log();let l=this.freeTextures[s].shift();return this.usedTextures[s].push(l),l}let i;return n===kr.PACKED_2X2_FLOAT32?i=this.gpgpu.createPackedMatrixTexture(e[0],e[1]):n===kr.PACKED_2X2_FLOAT16?i=this.gpgpu.createFloat16PackedMatrixTexture(e[0],e[1]):n===kr.UNPACKED_FLOAT32?i=this.gpgpu.createFloat32MatrixTexture(e[0],e[1]):n===kr.UNPACKED_FLOAT16?i=this.gpgpu.createFloat16MatrixTexture(e[0],e[1]):n===kr.PACKED_4X1_UNSIGNED_BYTE&&(i=this.gpgpu.createUnsignedBytesMatrixTexture(e[0],e[1])),this.usedTextures[s].push(i),this.numUsedTextures++,this._numBytesAllocated+=a,this.log(),i}releaseTexture(e,t,o,n){if(this.freeTextures==null)return;let s=bF(o,n),a=wF(t,s,n);a in this.freeTextures||(this.freeTextures[a]=[]);let i=yF(t,s,this.gpgpu.gl,this.gpgpu.textureConfig,n),l=j().get("WEBGL_DELETE_TEXTURE_THRESHOLD");l!==-1&&this._numBytesAllocated>l?(this.gpgpu.deleteMatrixTexture(e),this._numBytesAllocated-=i):(this.freeTextures[a].push(e),this.numFreeTextures++,this._numBytesFree+=i),this.numUsedTextures--;let u=this.usedTextures[a],c=u.indexOf(e);if(c<0)throw new Error("Cannot release a texture that was never provided by this texture manager");u.splice(c,1),this.log()}log(){if(!this.logEnabled)return;let e=this.numFreeTextures+this.numUsedTextures;console.log("Free/Used",`${this.numFreeTextures} / ${this.numUsedTextures}`,`(${e})`);let t=this._numBytesFree/this._numBytesAllocated;console.log(`Bytes allocated: ${this._numBytesAllocated}`),console.log(`Bytes unused: ${this._numBytesFree} (${Math.round(100*t)}%)`)}get numBytesAllocated(){return this._numBytesAllocated}get numBytesFree(){return this._numBytesFree}getNumUsedTextures(){return this.numUsedTextures}getNumFreeTextures(){return this.numFreeTextures}dispose(){if(this.freeTextures!=null){for(let e in this.freeTextures)this.freeTextures[e].forEach(t=>{this.gpgpu.deleteMatrixTexture(t)});for(let e in this.usedTextures)this.usedTextures[e].forEach(t=>{this.gpgpu.deleteMatrixTexture(t)});this.freeTextures=null,this.usedTextures=null,this.numUsedTextures=0,this.numFreeTextures=0,this._numBytesAllocated=0,this._numBytesFree=0}}};function k7(r,e){let t=r;if(e===t.R32F)return 4;if(e===t.R16F)return 2;if(e===t.RGBA32F)return 16;if(e===r.RGBA)return 16;if(e===t.RGBA16F)return 8;throw new Error(`Unknown internal format ${e}`)}function yF(r,e,t,o,n){let s=v7(e,o),a;if(n){let[l,u]=Hi(r[0],r[1]);a=l*u}else{let[l,u]=ac(r[0],r[1]);a=l*u}let i=k7(t,s);return a*i}function v7(r,e){switch(r){case kr.PACKED_2X2_FLOAT32:return Ov(e);case kr.PACKED_2X2_FLOAT16:return Pv(e);case kr.UNPACKED_FLOAT32:return $v(e);case kr.UNPACKED_FLOAT16:return Rv(e);case kr.PACKED_4X1_UNSIGNED_BYTE:return Fv(e);default:throw new Error(`Unknown physical texture type ${r}`)}}function C7(r){return j().getBool("WEBGL_RENDER_FLOAT32_ENABLED")?r?kr.PACKED_2X2_FLOAT32:kr.UNPACKED_FLOAT32:r?kr.PACKED_2X2_FLOAT16:kr.UNPACKED_FLOAT16}function bF(r,e){if(r===Dr.UPLOAD)return kr.PACKED_2X2_FLOAT32;if(r===Dr.RENDER||r==null)return C7(e);if(r===Dr.DOWNLOAD||r===Dr.PIXELS)return kr.PACKED_4X1_UNSIGNED_BYTE;throw new Error(`Unknown logical texture type ${r}`)}function wF(r,e,t){return`${r[0]}_${r[1]}_${e}_${t}`}var ho=class{constructor(e,t){this.variableNames=["A"],this.outputShape=e,this.userCode=`
2020-12-15 14:15:43 +01:00
float unaryOperation(float x) {
2021-01-12 16:01:34 +01:00
${t}
}
void main() {
2020-12-15 14:15:43 +01:00
float x = getAAtOutCoords();
float y = unaryOperation(x);
2020-12-15 14:15:43 +01:00
setOutput(y);
}
2021-03-09 23:32:33 +01:00
`}},yr="if (isnan(x)) return x;",_F="return x;",Vv="return abs(x);";var kF="return (x >= 0.0) ? x : (exp(x) - 1.0);",vF=yr+`
2020-12-15 14:15:43 +01:00
return (x < 0.0) ? 0.0 : x;
2021-03-09 23:32:33 +01:00
`,CF=yr+`
2020-12-15 14:15:43 +01:00
return (x < 0.0) ? 0.0 : min(6.0, x);
2021-03-09 23:32:33 +01:00
`,rh="return x;";var IF="return x;",NF=`
2020-12-15 14:15:43 +01:00
vec4 result;
2020-12-15 14:15:43 +01:00
result.r = (x.r >= 0.0) ? x.r : (exp(x.r) - 1.0);
result.g = (x.g >= 0.0) ? x.g : (exp(x.g) - 1.0);
result.b = (x.b >= 0.0) ? x.b : (exp(x.b) - 1.0);
result.a = (x.a >= 0.0) ? x.a : (exp(x.a) - 1.0);
2020-12-15 14:15:43 +01:00
return result;
2021-03-09 23:32:33 +01:00
`,SF=`
2020-12-15 14:15:43 +01:00
vec4 result = x * vec4(greaterThanEqual(x, vec4(0.0)));
bvec4 isNaN = isnan(x);
2020-12-15 14:15:43 +01:00
result.r = isNaN.r ? x.r : result.r;
result.g = isNaN.g ? x.g : result.g;
result.b = isNaN.b ? x.b : result.b;
result.a = isNaN.a ? x.a : result.a;
2020-12-15 14:15:43 +01:00
return result;
2021-03-09 23:32:33 +01:00
`,TF=`
2020-12-15 14:15:43 +01:00
vec4 result = min(x, vec4(6.)) * vec4(greaterThanEqual(x, vec4(0.0)));
bvec4 isNaN = isnan(x);
2020-12-15 14:15:43 +01:00
result.r = isNaN.r ? x.r : result.r;
result.g = isNaN.g ? x.g : result.g;
result.b = isNaN.b ? x.b : result.b;
result.a = isNaN.a ? x.a : result.a;
2020-12-15 14:15:43 +01:00
return result;
2021-03-09 23:32:33 +01:00
`,Vs=class{constructor(e,t){this.variableNames=["A"],this.packedInputs=!0,this.packedOutput=!0,this.outputShape=e,this.userCode=`
2020-12-15 14:15:43 +01:00
vec4 unaryOperation(vec4 x) {
2021-01-12 16:01:34 +01:00
${t}
2020-12-15 14:15:43 +01:00
}
2020-12-15 14:15:43 +01:00
void main() {
vec4 x = getAAtOutCoords();
vec4 y = unaryOperation(x);
2020-12-15 14:15:43 +01:00
setOutput(y);
}
2021-03-09 23:32:33 +01:00
`}};var Gv=class{constructor(e){this.variableNames=["A"],this.packedInputs=!0,this.packedOutput=!1,this.outputShape=e;let t=e.length,o=jt("rc",t),n=Le(t),s=xF(t,o),a=o.slice(-2),i=t<=1?"rc":`vec2(${a.join(",")})`;this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
2021-01-12 16:01:34 +01:00
${n} rc = getOutputCoords();
vec4 packedInput = getA(${s});
2021-01-12 16:01:34 +01:00
setOutput(getChannel(packedInput, ${i}));
}
2021-03-09 23:32:33 +01:00
`}};var I7=Ar.whereImpl,N7=1e-7,S7=1e-4,Px={};function T7(r){return r in Px||(Px[r]={}),Px[r]}var A7=128,E7=600;function D7(){return j().global.screen==null?1024:j().global.screen.height*j().global.screen.width*window.devicePixelRatio*E7/1024/1024}var Kp=class extends Ws{constructor(e){super();if(this.pendingRead=new WeakMap,this.pendingDisposal=new WeakSet,this.dataRefCount=new WeakMap,this.numBytesInGPU=0,this.uploadWaitMs=0,this.downloadWaitMs=0,this.lastGlFlushTime=0,this.warnedAboutMemory=!1,this.warnedAboutCPUBackend=!1,this.pendingDeletes=0,this.disposed=!1,!j().getBool("HAS_WEBGL"))throw new Error("WebGL is not supported on this device");if(e==null){let t=Go(j().getNumber("WEBGL_VERSION"));this.binaryCache=T7(j().getNumber("WEBGL_VERSION")),this.gpgpu=new Mv(t),this.canvas=t.canvas,this.gpgpuCreatedLocally=!0}else this.gpgpu=e,this.binaryCache={},this.gpgpuCreatedLocally=!1,this.canvas=e.gl.canvas;this.textureManager=new Bv(this.gpgpu),this.numMBBeforeWarning=D7(),this.texData=new Xa(this,Po())}nextDataId(){return Kp.nextDataId++}numDataIds(){return this.texData.numDataIds()+(this.cpuBackend?this.cpuBackend.numDataIds():0)-this.pendingDeletes}write(e,t,o){if((j().getBool("WEBGL_CHECK_NUMERICAL_PROBLEMS")||j().getBool("DEBUG"))&&this.checkNumericalProblems(e),o==="complex64"&&e!=null)throw new Error("Cannot write to a complex64 dtype. Please use tf.complex(real, imag).");let n={id:this.nextDataId()};return this.texData.set(n,{shape:t,dtype:o,values:e,usage:Dr.UPLOAD,refCount:1}),n}refCount(e){return this.texData.has(e)?this.texData.get(e).refCount:0}incRef(e){let t=this.texData.get(e);t.refCount++}decRef(e){if(this.texData.has(e)){let t=this.texData.get(e);t.refCount--}}move(e,t,o,n,s){if(j().getBool("DEBUG")&&this.checkNumericalProblems(t),n==="complex64")throw new Error("Cannot write to a complex64 dtype. Please use tf.complex(real, imag).");this.texData.set(e,{shape:o,dtype:n,values:t,usage:Dr.UPLOAD,refCount:s})}disposeIntermediateTensorInfo(e){this.disposeData(e.dataId)}readSync(e){let t=this.texData.get(e),{values:o,dtype:n,complexTensorInfos:s,slice:a,shape:i,isPacked:l}=t;if(a!=null){let m;l?m=new Vs(i,rh):m=new ho(i,rh);let f=this.runWebGLProgram(m,[{dataId:e,shape:i,dtype:n}],n),d=this.readSync(f.dataId);return this.disposeIntermediateTensorInfo(f),d}if(o!=null)return this.convertAndCacheOnCPU(e);if(n==="string")return o;let u=this.activeTimers!=null,c;u&&(c=y.now());let p;if(n==="complex64"){let m=this.readSync(s.real.dataId),f=this.readSync(s.imag.dataId);p=S.mergeRealAndImagArrays(m,f)}else p=this.getValuesFromTexture(e);return u&&(this.downloadWaitMs+=y.now()-c),this.convertAndCacheOnCPU(e,p)}async read(e){if(this.pendingRead.has(e)){let d=this.pendingRead.get(e);return new Promise(h=>d.push(h))}let t=this.texData.get(e),{values:o,shape:n,slice:s,dtype:a,complexTensorInfos:i,isPacked:l}=t;if(s!=null){let d;l?d=new Vs(n,rh):d=new ho(n,rh);let h=this.runWebGLProgram(d,[{dataId:e,shape:n,dtype:a}],a),g=this.read(h.dataId);return this.disposeIntermediateTensorInfo(h),g}if(o!=null)return this.convertAndCacheOnCPU(e);if(!j().getBool("WEBGL_DOWNLOAD_FLOAT_ENABLED")&&j().getNumber("WEBGL_VERSION")===2)throw new Error("tensor.data() with WEBGL_DOWNLOAD_FLOAT_ENABLED=false and WEBGL_VERSION=2 not yet supported.");let u=null,c;if(a!=="complex64"&&j().get("WEBGL_BUFFER_SUPPORTED")){c=this.decode(e);let d=this.texData.get(c.dataId);u=this.gpgpu.createBufferFromTexture(d.texture,...Cl(n))}this.pendingRead.set(e,[]),a!=="complex64"&&await this.gpgpu.createAndWaitForFence();let p;if(a==="complex64"){let d=await Promise.all([this.read(i.real.dataId),this.read(i.imag.dataId)]),h=d[0],g=d[1];p=S.mergeRealAndImagArrays(h,g)}else if(u==null)p=this.getValuesFromTexture(e);else{let d=y.sizeFromShape(n);p=this.gpgpu.downloadFloat32MatrixFromBuffer(u,d)}c!=null&&this.disposeIntermediateTensorInfo(c);let m=this.convertAndCacheOnCPU(e,p),f=this.pendingRead.get(e);return this.pendingRead.delete(e),f.forEach(d=>d(m)),this.pendingDisposal.has(e)&&(this.pendingDisposal.delete(e),this.disposeData(e)&&Po().removeDataId(e,this),
if (isnan(a)) return a;
if (isnan(b)) return b;
2021-03-09 23:32:33 +01:00
`;var rs=class{constructor(e,t,o){this.variableNames=["A","B"],this.outputShape=S.assertAndGetBroadcastShape(t,o),this.userCode=`
float binaryOperation(float a, float b) {
2021-01-12 16:01:34 +01:00
${e}
}
void main() {
float a = getAAtOutCoords();
float b = getBAtOutCoords();
setOutput(binaryOperation(a, b));
}
2021-02-25 14:12:39 +01:00
`}};var Sl=`
result.r = isNaN.r > 0. ? NAN : result.r;
result.g = isNaN.g > 0. ? NAN : result.g;
result.b = isNaN.b > 0. ? NAN : result.b;
result.a = isNaN.a > 0. ? NAN : result.a;
2021-03-09 23:32:33 +01:00
`;var Gs=class{constructor(e,t,o,n=!1){this.variableNames=["A","B"],this.supportsBroadcasting=!0,this.packedInputs=!0,this.packedOutput=!0,this.outputShape=S.assertAndGetBroadcastShape(t,o);let s=this.outputShape.length,a="";if(n)if(s===0||y.sizeFromShape(this.outputShape)===1)a=`
result.y = 0.;
result.z = 0.;
result.w = 0.;
2021-01-12 16:01:34 +01:00
`;else if(a=`
2021-01-29 16:39:08 +01:00
${Le(s)} coords = getOutputCoords();
2021-01-12 16:01:34 +01:00
`,s===1)a+=`
result.y = (coords + 1) >= ${this.outputShape[0]} ? 0. : result.y;
result.z = 0.;
result.w = 0.;
2021-03-09 23:32:33 +01:00
`;else{let l=jt("coords",s);a+=`
bool nextRowOutOfBounds =
2021-01-12 16:01:34 +01:00
(${l[s-2]} + 1) >= ${this.outputShape[s-2]};
bool nextColOutOfBounds =
2021-01-12 16:01:34 +01:00
(${l[s-1]} + 1) >= ${this.outputShape[s-1]};
result.y = nextColOutOfBounds ? 0. : result.y;
result.z = nextRowOutOfBounds ? 0. : result.z;
result.w = nextColOutOfBounds || nextRowOutOfBounds ? 0. : result.w;
2021-01-03 17:05:09 +01:00
`}this.userCode=`
vec4 binaryOperation(vec4 a, vec4 b) {
2021-01-12 16:01:34 +01:00
${e}
}
void main() {
vec4 a = getAAtOutCoords();
vec4 b = getBAtOutCoords();
vec4 result = binaryOperation(a, b);
2021-01-12 16:01:34 +01:00
${a}
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}};function Ht(r){let{inputs:e,backend:t}=r,{x:o}=e;return t.incRef(o.dataId),{dataId:o.dataId,shape:o.shape,dtype:o.dtype}}var EF={kernelName:Ro,backendName:"webgl",kernelFunc:Ht};function go(r){let{inputs:e,backend:t}=r,{real:o,imag:n}=e,s=t.makeTensorInfo(o.shape,"complex64"),a=t.texData.get(s.dataId),i=Ht({inputs:{x:o},backend:t}),l=Ht({inputs:{x:n},backend:t});return a.complexTensorInfos={real:i,imag:l},s}var DF={kernelName:Gl,backendName:"webgl",kernelFunc:go};var Wv="return (a < 0.) ? b * a : a;",Uv=`
2020-12-15 14:15:43 +01:00
vec4 aLessThanZero = vec4(lessThan(a, vec4(0.)));
return (aLessThanZero * (b * a)) + ((vec4(1.0) - aLessThanZero) * a);
2021-03-09 23:32:33 +01:00
`;function R7(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{alpha:s}=o,a=t.makeTensorInfo([],"float32",y.createScalarValue(s,"float32")),i=j().getBool("WEBGL_PACK_BINARY_OPERATIONS")?new Gs(Uv,n.shape,a.shape):new rs(Wv,n.shape,a.shape),l=t.runWebGLProgram(i,[n,a],n.dtype);return t.disposeIntermediateTensorInfo(a),l}var $F={kernelName:un,backendName:"webgl",kernelFunc:R7};var jv="return (a < 0.) ? b * a : a;",Hv=`
2020-12-15 14:15:43 +01:00
vec4 aLessThanZero = vec4(lessThan(a, vec4(0.)));
return (aLessThanZero * (b * a)) + ((vec4(1.0) - aLessThanZero) * a);
2021-03-09 23:32:33 +01:00
`;function F7(r){let{inputs:e,backend:t}=r,{x:o,alpha:n}=e,s=j().getBool("WEBGL_PACK_BINARY_OPERATIONS")?new Gs(Hv,o.shape,n.shape):new rs(jv,o.shape,n.shape);return t.runWebGLProgram(s,[o,n],o.dtype)}var RF={kernelName:_n,backendName:"webgl",kernelFunc:F7};var Lx="if (isnan(x)) return x;",FF=`
2020-12-15 14:15:43 +01:00
if (isnan(a)) return a;
if (isnan(b)) return b;
2021-03-09 23:32:33 +01:00
`,OF=`
2020-12-15 14:15:43 +01:00
result.r = isNaN.r > 0. ? NAN : result.r;
result.g = isNaN.g > 0. ? NAN : result.g;
result.b = isNaN.b > 0. ? NAN : result.b;
result.a = isNaN.a > 0. ? NAN : result.a;
2021-03-09 23:32:33 +01:00
`;function _e({opSnippet:r,packedOpSnippet:e,cpuKernelImpl:t,dtype:o}){return({inputs:n,backend:s})=>{let{x:a}=n,i=s,l=o||a.dtype;if(i.shouldExecuteOnCPU([a])&&t!=null){let p=i.texData.get(a.dataId),m=t(p.values,l);return i.makeTensorInfo(a.shape,l,m)}let u=j().getBool("WEBGL_PACK_UNARY_OPERATIONS")&&e!=null,c;return u?c=new Vs(a.shape,e):c=new ho(a.shape,r),i.runWebGLProgram(c,[a],l)}}function nt({opSnippet:r,packedOpSnippet:e,checkOutOfBounds:t=!1,supportsComplex:o=!1,cpuKernelImpl:n,dtype:s}){return({inputs:a,backend:i})=>{let{a:l,b:u}=a,c=i;if(o&&l.dtype==="complex64"){let d=c.texData.get(l.dataId),h=c.texData.get(u.dataId),[g,x]=[[d.complexTensorInfos.real,h.complexTensorInfos.real],[d.complexTensorInfos.imag,h.complexTensorInfos.imag]].map(b=>{let[_,k]=b,A={dataId:_.dataId,dtype:_.dtype,shape:l.shape},N={dataId:k.dataId,dtype:k.dtype,shape:u.shape},$=new rs(r,l.shape,u.shape);return c.runWebGLProgram($,[A,N],dr(_.dtype,k.dtype))}),w=go({inputs:{real:g,imag:x},backend:c});return c.disposeIntermediateTensorInfo(g),c.disposeIntermediateTensorInfo(x),w}let p=s||dr(l.dtype,u.dtype);if(c.shouldExecuteOnCPU([l,u])&&n!=null){let d=c.texData.get(l.dataId),h=c.texData.get(u.dataId),[g,x]=n(l.shape,u.shape,d.values,h.values,p),w=c.makeTensorInfo(x,p),b=c.texData.get(w.dataId);return b.values=g,w}let m=j().getBool("WEBGL_PACK_BINARY_OPERATIONS")&&e!=null,f;return m?f=new Gs(e,l.shape,u.shape,t):f=new rs(r,l.shape,u.shape),c.runWebGLProgram(f,[l,u],p)}}function Tl(r,e=!1){if(r==="linear")return e?IF:_F;if(r==="relu")return e?SF:vF;if(r==="elu")return e?NF:kF;if(r==="relu6")return e?TF:CF;if(r==="prelu")return e?Hv:jv;if(r==="leakyrelu")return e?Uv:Wv;throw new Error(`Activation ${r} has not been implemented for the WebGL backend.`)}var oh=class{constructor(e,t,o,n=!1,s=!1,a=!1,i=null,l=!1,u=!1){this.variableNames=["matrixA","matrixB"],this.packedInputs=!0,this.packedOutput=!0,this.outputShape=o;let c=n?e[1]:e[2],p=Math.ceil(c/2),m=n?"i * 2, rc.y":"rc.y, i * 2",f=s?"rc.z, i * 2":"i * 2, rc.z",d=n?["a.xxyy","a.zzww"]:["a.xxzz","a.yyww"],h=s?["b.xzxz","b.ywyw"]:["b.xyxy","b.zwzw"],g="",x="";i&&(l?g=`vec4 activation(vec4 a) {
2020-12-15 14:15:43 +01:00
vec4 b = getPreluActivationWeightsAtOutCoords();
2021-01-12 16:01:34 +01:00
${i}
}`:u?g=`vec4 activation(vec4 a) {
2020-12-15 14:15:43 +01:00
vec4 b = getLeakyreluAlphaAtOutCoords();
2021-01-12 16:01:34 +01:00
${i}
}`:g=`vec4 activation(vec4 x) {
${i}
2021-03-09 23:32:33 +01:00
}`,x="result = activation(result);");let w=a?"result += getBiasAtOutCoords();":"";a&&this.variableNames.push("bias"),l&&this.variableNames.push("preluActivationWeights"),u&&this.variableNames.push("leakyreluAlpha");let b="rc.x",_="rc.x";e[0]<t[0]?b=`int(min(float(rc.x), ${e[0]-1}.))`:t[0]<e[0]&&(_=`int(min(float(rc.x), ${t[0]-1}.))`),this.userCode=`
2021-01-12 16:01:34 +01:00
${g}
2021-01-12 16:01:34 +01:00
const float sharedDimension = ${p}.0;
2020-12-15 14:15:43 +01:00
vec4 dot2x2ARowBCol(ivec3 rc) {
vec4 result = vec4(0);
2021-01-12 16:01:34 +01:00
for (int i = 0; i < ${p}; i++) {
2021-03-09 23:32:33 +01:00
int batchA = ${b};
2021-02-25 14:12:39 +01:00
int batchB = ${_};
2021-01-12 16:01:34 +01:00
vec4 a = getMatrixA(batchA, ${m});
vec4 b = getMatrixB(batchB, ${f});
2020-12-15 14:15:43 +01:00
// These swizzled products need to be separately added.
// See: https://github.com/tensorflow/tfjs/issues/1735
2021-01-12 16:01:34 +01:00
result += (${d[0]} * ${h[0]});
result += (${d[1]} * ${h[1]});
}
2020-12-15 14:15:43 +01:00
return result;
}
void main() {
2020-12-15 14:15:43 +01:00
ivec3 rc = getOutputCoords();
vec4 result = dot2x2ARowBCol(rc);
2021-03-09 23:32:33 +01:00
${w}
2021-03-09 23:32:33 +01:00
${x}
2020-12-15 14:15:43 +01:00
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}};var qv={REAL:"return areal * breal - aimag * bimag;",IMAG:"return areal * bimag + aimag * breal;"},zx=class{constructor(e,t,o){this.variableNames=["AReal","AImag","BReal","BImag"],this.outputShape=S.assertAndGetBroadcastShape(t,o),this.userCode=`
2020-12-15 14:15:43 +01:00
float binaryOpComplex(
float areal, float aimag, float breal, float bimag) {
2021-01-12 16:01:34 +01:00
${e}
2020-12-15 14:15:43 +01:00
}
2020-12-15 14:15:43 +01:00
void main() {
float areal = getARealAtOutCoords();
float aimag = getAImagAtOutCoords();
float breal = getBRealAtOutCoords();
float bimag = getBImagAtOutCoords();
setOutput(binaryOpComplex(areal, aimag, breal, bimag));
}
2021-03-09 23:32:33 +01:00
`}};var PF="return a * b;";function Kv(r){let{inputs:e,backend:t}=r,{a:o,b:n}=e,s=S.upcastType(o.dtype,n.dtype);if(o.dtype==="complex64"){let i=t.texData.get(o.dataId),l=t.texData.get(n.dataId),u=new zx(qv.REAL,o.shape,n.shape),c=new zx(qv.IMAG,o.shape,n.shape),p=[{dataId:i.complexTensorInfos.real.dataId,dtype:i.complexTensorInfos.real.dtype,shape:o.shape},{dataId:i.complexTensorInfos.imag.dataId,dtype:i.complexTensorInfos.imag.dtype,shape:o.shape},{dataId:l.complexTensorInfos.real.dataId,dtype:l.complexTensorInfos.real.dtype,shape:n.shape},{dataId:l.complexTensorInfos.imag.dataId,dtype:l.complexTensorInfos.imag.dtype,shape:n.shape}],m=t.runWebGLProgram(u,p,"float32"),f=t.runWebGLProgram(c,p,"float32"),d=go({inputs:{real:m,imag:f},backend:t});return t.disposeIntermediateTensorInfo(m),t.disposeIntermediateTensorInfo(f),d}if(t.shouldExecuteOnCPU([o,n])){let i=t.texData.get(o.dataId),l=t.texData.get(n.dataId),[u,c]=iF(o.shape,n.shape,i.values,l.values,s),p=t.makeTensorInfo(c,s),m=t.texData.get(p.dataId);return m.values=u,p}let a;return j().getBool("WEBGL_PACK_BINARY_OPERATIONS")?a=new Gs(PF,o.shape,n.shape):a=new rs(PF,o.shape,n.shape),t.runWebGLProgram(a,[o,n],s)}var MF={kernelName:xn,backendName:"webgl",kernelFunc:Kv};function LF(r,e,t){let o=[Il(r.shape),...Nl(r.shape)],n={dtype:r.dtype,shape:o,dataId:r.dataId},s=[Il(e),...Nl(e)],a=new th(s,o),i=!0,l=t.runWebGLProgram(a,[n],r.dtype,null,i);return{dataId:l.dataId,shape:e,dtype:l.dtype}}function pe(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{shape:s}=o,a=t,i=y.sizeFromShape(n.shape),l=y.inferFromImplicitShape(s,i),u=y.sizeFromShape(l);y.assert(i===u,()=>`The new shape (${l}) has ${u} elements and the old shape (${n.shape}) has ${i} elements. The new shape and old shape must have the same number of elements.`);let c=a.texData.get(n.dataId);return c.isPacked&&!lc(n.shape,l)&&!(c.texture!==null&&lc(c.shape,l))?LF(n,l,a):(a.incRef(n.dataId),{dataId:n.dataId,shape:l,dtype:n.dtype})}var zF={kernelName:ds,backendName:"webgl",kernelFunc:pe};var Bx=class{constructor(e,t){this.variableNames=["x"];let{windowSize:o,batchSize:n,inSize:s,outSize:a}=e;this.outputShape=[n,a];let i=Math.floor(o/4)*4,l=o%4,u="sumValue += dot(values, ones);";if(t!=null){let p=1/t;u=`sumValue += dot(values * ${y.isInt(p)?p.toPrecision(2):p}, ones);`}let c="";s%o>0&&(c=`
2021-01-12 16:01:34 +01:00
if (inIdx < 0 || inIdx >= ${s}) {
2020-12-15 14:15:43 +01:00
return 0.0;
}
2020-12-15 14:15:43 +01:00
`),this.userCode=`
const vec4 ones = vec4(1.0, 1.0, 1.0, 1.0);
float getValue(int batch, int inIdx) {
2021-01-12 16:01:34 +01:00
${c}
2020-12-15 14:15:43 +01:00
return getX(batch, inIdx);
}
void main() {
2020-12-15 14:15:43 +01:00
ivec2 coords = getOutputCoords();
int batch = coords[0];
2020-12-15 14:15:43 +01:00
int outIdx = coords[1];
2021-01-12 16:01:34 +01:00
int inOffset = outIdx * ${o};
2020-12-15 14:15:43 +01:00
float sumValue = 0.0;
2021-01-12 16:01:34 +01:00
for (int i = 0; i < ${i}; i += 4) {
2020-12-15 14:15:43 +01:00
int inIdx = inOffset + i;
vec4 values = vec4(
getValue(batch, inIdx),
getValue(batch, inIdx + 1),
getValue(batch, inIdx + 2),
getValue(batch, inIdx + 3)
);
2021-01-12 16:01:34 +01:00
${u}
2020-12-15 14:15:43 +01:00
}
2021-01-12 16:01:34 +01:00
int inIdx = inOffset + ${i};
if (${l===1}) {
2020-12-15 14:15:43 +01:00
vec4 values = vec4(getValue(batch, inIdx), 0.0, 0.0, 0.0);
2021-01-12 16:01:34 +01:00
${u}
} else if (${l===2}) {
2020-12-15 14:15:43 +01:00
vec4 values = vec4(
getValue(batch, inIdx),
getValue(batch, inIdx + 1), 0.0, 0.0);
2021-01-12 16:01:34 +01:00
${u}
} else if (${l===3}) {
2020-12-15 14:15:43 +01:00
vec4 values = vec4(
getValue(batch, inIdx),
getValue(batch, inIdx + 1),
getValue(batch, inIdx + 2), 0.0);
2021-01-12 16:01:34 +01:00
${u}
}
2020-12-15 14:15:43 +01:00
setOutput(sumValue);
}
2021-03-09 23:32:33 +01:00
`}};var Xv=class{constructor(e,t){this.variableNames=["x"];let{windowSize:o,batchSize:n,inSize:s,outSize:a}=e;this.outputShape=[n,a];let i="0.0",l="";t==="prod"?i="1.0":t==="min"?(i="1.0 / 1e-20",l="min"):t==="max"&&(i="-1.0 / 1e-20",l="max");let u=`${t}(${t}(${t}(minMaxValue[0], minMaxValue[1]), minMaxValue[2]), minMaxValue[3])`;t==="sum"?u="sumValue":t==="prod"?u="prodValue":t==="all"?u="allValue":t==="any"&&(u="anyValue");let c=Math.floor(o/4)*4,p=o%4,m=`
2021-01-12 16:01:34 +01:00
if (${t==="sum"}) {
2020-12-15 14:15:43 +01:00
sumValue += dot(values, ones);
2021-01-12 16:01:34 +01:00
} else if (${t==="prod"}) {
2020-12-15 14:15:43 +01:00
vec2 tmp = vec2(values[0], values[1]) * vec2(values[2], values[3]);
prodValue *= tmp[0] * tmp[1];
} else {
2021-01-12 16:01:34 +01:00
minMaxValue = ${l}(values, minMaxValue);
2020-12-15 14:15:43 +01:00
}
2021-01-12 16:01:34 +01:00
`,f="vec4";t==="all"?(i="1.0",m=`
2020-12-15 14:15:43 +01:00
bool reducedAllValue = all(values);
float floatedReducedAllValue = float(reducedAllValue);
allValue = float(allValue >= 1.0 && floatedReducedAllValue >= 1.0);
2021-01-12 16:01:34 +01:00
`,f="bvec4"):t==="any"&&(i="0.0",m=`
2020-12-15 14:15:43 +01:00
bool reducedAnyValue = any(values);
float floatedReducedAnyValue = float(reducedAnyValue);
anyValue = float(anyValue >= 1.0 || floatedReducedAnyValue >= 1.0);
2021-01-12 16:01:34 +01:00
`,f="bvec4");let d="";s%o>0&&(d=`
if (inIdx < 0 || inIdx >= ${s}) {
2020-12-15 14:15:43 +01:00
return initializationValue;
}
`),this.userCode=`
2021-01-12 16:01:34 +01:00
const float initializationValue = ${i};
2020-12-15 14:15:43 +01:00
const vec4 ones = vec4(1.0, 1.0, 1.0, 1.0);
2020-12-15 14:15:43 +01:00
float getValue(int batch, int inIdx) {
2021-01-12 16:01:34 +01:00
${d}
2020-12-15 14:15:43 +01:00
return getX(batch, inIdx);
}
2020-12-15 14:15:43 +01:00
void main() {
ivec2 coords = getOutputCoords();
int batch = coords[0];
int outIdx = coords[1];
2021-01-12 16:01:34 +01:00
int inOffset = outIdx * ${o};
2021-01-12 16:01:34 +01:00
vec4 minMaxValue = vec4(${i});
2020-12-15 14:15:43 +01:00
float prodValue = 1.0;
float sumValue = 0.0;
float allValue = 1.0;
float anyValue = 0.0;
2021-01-12 16:01:34 +01:00
for (int i = 0; i < ${c}; i += 4) {
2020-12-15 14:15:43 +01:00
int inIdx = inOffset + i;
2021-01-12 16:01:34 +01:00
${f} values = ${f}(
2020-12-15 14:15:43 +01:00
getValue(batch, inIdx),
getValue(batch, inIdx + 1),
getValue(batch, inIdx + 2),
getValue(batch, inIdx + 3)
);
2021-01-12 16:01:34 +01:00
${m}
}
2021-01-12 16:01:34 +01:00
int inIdx = inOffset + ${c};
if (${p===1}) {
${f} values = ${f}(
2020-12-15 14:15:43 +01:00
getValue(batch, inIdx),
initializationValue,
initializationValue,
initializationValue
);
2021-01-12 16:01:34 +01:00
${m}
} else if (${p===2}) {
${f} values = ${f}(
2020-12-15 14:15:43 +01:00
getValue(batch, inIdx),
getValue(batch, inIdx + 1),
initializationValue,
initializationValue
);
2021-01-12 16:01:34 +01:00
${m}
} else if (${p===3}) {
${f} values = ${f}(
2020-12-15 14:15:43 +01:00
getValue(batch, inIdx),
getValue(batch, inIdx + 1),
getValue(batch, inIdx + 2),
initializationValue
);
2021-01-12 16:01:34 +01:00
${m}
2020-12-15 14:15:43 +01:00
}
2021-01-12 16:01:34 +01:00
setOutput(${u});
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`}};function O7(r){let e=[];for(;e.length===0||e[e.length-1].outSize!==1;){let t=e.length?e[e.length-1].outSize:r[1],o=S.computeOptimalWindowSize(t);e.push({inSize:t,windowSize:o,outSize:Math.ceil(t/o)})}return e}function To(r,e,t,o){let n=O7(r.shape),s=r;for(let a=0;a<n.length;a++){let{inSize:i,windowSize:l,outSize:u}=n[a],c,p;t==="mean"?c=a===0?new Bx({windowSize:l,inSize:i,batchSize:r.shape[0],outSize:u},i):new Bx({windowSize:l,inSize:i,batchSize:r.shape[0],outSize:u}):c=new Xv({windowSize:l,inSize:i,batchSize:r.shape[0],outSize:u},t),p=s,s=o.runWebGLProgram(c,[s],e),p.dataId!==r.dataId&&o.disposeIntermediateTensorInfo(p)}return s}var Yv=class{constructor(e,t){this.variableNames=["A"];let o=new Array(e.length);for(let a=0;a<o.length;a++)o[a]=e[t[a]];this.outputShape=o,this.rank=o.length;let n=Le(this.rank),s=P7(t);this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
2021-01-12 16:01:34 +01:00
${n} resRC = getOutputCoords();
setOutput(getA(${s}));
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`}};function P7(r){let e=r.length;if(e>6)throw Error(`Transpose for rank ${e} is not yet supported`);let t=["resRC.x","resRC.y","resRC.z","resRC.w","resRC.u","resRC.v"],o=new Array(e);for(let n=0;n<r.length;n++)o[r[n]]=t[n];return o.join()}var Zv=class{constructor(e,t){this.variableNames=["A"],this.packedInputs=!0,this.packedOutput=!0;let o=new Array(e.length);for(let c=0;c<o.length;c++)o[c]=e[t[c]];if(this.outputShape=o,this.rank=o.length,this.rank>6)throw Error(`Packed transpose for rank ${this.rank} is not yet supported.`);let n=Le(this.rank),s=Lv("rc",this.rank),a=new Array(this.rank);for(let c=0;c<t.length;c++)a[t[c]]=s[c];let i=`vec2(${a.slice(-2).join()})`,l=`++${s[this.rank-1]} < ${o[this.rank-1]}`,u=`getChannel(getA(${a.join()}), ${i})`;this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
2021-01-12 16:01:34 +01:00
${n} rc = getOutputCoords();
2020-12-15 14:15:43 +01:00
vec4 result = vec4(0.);
2021-01-12 16:01:34 +01:00
result[0] = ${u};
if(${l}) {
result[1] = ${u};
2020-12-15 14:15:43 +01:00
}
2021-01-12 16:01:34 +01:00
--${s[this.rank-1]};
if(++${s[this.rank-2]} < ${o[this.rank-2]}) {
result[2] = ${u};
if(${l}) {
result[3] = ${u};
2020-12-15 14:15:43 +01:00
}
}
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}};function Al(r,e,t){let o=j().getBool("WEBGL_PACK_ARRAY_OPERATIONS")?new Zv(r.shape,e):new Yv(r.shape,e);return t.runWebGLProgram(o,[r],r.dtype)}function BF(r,e,t,o){let n=e,s=r.shape.length,a=y.parseAxisParam(n,r.shape),i=a,l=S.getAxesPermutation(i,s),u=l!=null,c=r;u&&(c=Al(r,l,o),i=S.getInnerMostAxes(i.length,s)),S.assertAxesAreInnerMostDims("sum",i,s);let[p,m]=S.computeOutAndReduceShapes(c.shape,i),f=p;t&&(f=S.expandShapeToKeepDim(p,a));let d=y.sizeFromShape(m),g=y.sizeFromShape(r.shape)/d,x=pe({inputs:{x:c},attrs:{shape:[g,d]},backend:o}),w=fu(r.dtype),b=To(x,w,"sum",o),_=pe({inputs:{x:b},attrs:{shape:f},backend:o});return o.disposeIntermediateTensorInfo(x),o.disposeIntermediateTensorInfo(b),u&&o.disposeIntermediateTensorInfo(c),_}function nh(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{axis:s,keepDims:a}=o;return BF(n,s,a,t)}var VF={kernelName:Dn,backendName:"webgl",kernelFunc:nh};function Lt(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{perm:s}=o,a=t,i=n.shape.length,l=new Array(i);for(let c=0;c<l.length;c++)l[c]=n.shape[s[c]];let u;if(a.shouldExecuteOnCPU([n])){let p=a.texData.get(n.dataId).values,m=qp(p,n.shape,n.dtype,s,l);u=a.makeTensorInfo(l,n.dtype);let f=a.texData.get(u.dataId);f.values=m}else u=Al(n,s,a);return u}var GF={kernelName:Pn,backendName:"webgl",kernelFunc:Lt};var Jv=1e3;function cc({a:r,b:e,transposeA:t,transposeB:o,backend:n,bias:s=null,preluActivationWeights:a=null,leakyreluAlpha:i=0,activation:l=null}){let u=r.shape.length,c=e.shape.length,p=t?r.shape[u-2]:r.shape[u-1],m=o?e.shape[c-1]:e.shape[c-2],f=t?r.shape[u-1]:r.shape[u-2],d=o?e.shape[c-2]:e.shape[c-1],h=r.shape.slice(0,-2),g=e.shape.slice(0,-2),x=y.sizeFromShape(h),w=y.sizeFromShape(g),b=x===w||x===1||w===1;y.assert(u>=2&&c>=2&&b,()=>`Error in matMul: the input batch dimensions must either be the same or at least one input batch dimension must be 1. Got input batch dimensions of (${h}) and (${g}).`);let k=(x>w?r.shape.slice(0,-2):e.shape.slice(0,-2)).concat([f,d]);y.assert(p===m,()=>`Error in matMul: inner shapes (${p}) and (${m}) of Tensors with shapes ${r.shape} and ${e.shape} and transposeA=${t} and transposeB=${o} must match.`);let A=t?[x,p,f]:[x,f,p],N=o?[w,d,m]:[w,m,d],$=pe({inputs:{x:r},backend:n,attrs:{shape:A}}),F=pe({inputs:{x:e},backend:n,attrs:{shape:N}}),M=[$,F],V=Math.max(x,w),W=t?$.shape[1]:$.shape[2],U=s!=null,H=a!=null,q=l==="leakyrelu",X=l!=null?Tl(l,!0):null,oe=U||H||q||X!=null,Y;if((f===1||d===1)&&W>Jv&&oe===!1){let J=$,ie=F;t&&(J=Lt({inputs:{x:$},backend:n,attrs:{perm:[0,2,1]}}),M.push(J)),o&&(ie=Lt({inputs:{x:F},backend:n,attrs:{perm:[0,2,1]}}),M.push(ie));let ue=d!==1,ae=d===1,fe=J;ue&&(fe=pe({inputs:{x:J},backend:n,attrs:{shape:[V,W,1]}}),M.push(fe));let de=d===1?2:1,xe=ie;ae&&(xe=pe({inputs:{x:ie},backend:n,attrs:{shape:[V,1,W]}}),M.push(xe));let we=Kv({inputs:{a:fe,b:xe},backend:n});Y=nh({inputs:{x:we},backend:n,attrs:{axis:de,keepDims:!0}}),M.push(we)}else{let J=dr(r.dtype,e.dtype),ie=new oh(A,N,[V,f,d],t,o,U,X,H,q),ue=[$,F];if(s!=null&&ue.push(s),H&&ue.push(a),q){let ae=n.makeTensorInfo([],"float32",y.createScalarValue(i,"float32"));ue.push(ae),M.push(ae)}Y=n.runWebGLProgram(ie,ue,J)}let re=pe({inputs:{x:Y},backend:n,attrs:{shape:k}});M.push(Y);for(let J of M)n.disposeIntermediateTensorInfo(J);return re}function M7(r){let{inputs:e,backend:t,attrs:o}=r,{a:n,b:s,bias:a,preluActivationWeights:i}=e,{transposeA:l,transposeB:u,activation:c,leakyreluAlpha:p}=o;return cc({a:n,b:s,transposeA:l,transposeB:u,backend:t,bias:a,preluActivationWeights:i,leakyreluAlpha:p,activation:c})}var WF={kernelName:ws,backendName:"webgl",kernelFunc:M7};var UF="return abs(x);";function L7(r){let{inputs:e,backend:t}=r,{x:o}=e;if(t.shouldExecuteOnCPU([o])&&o.dtype!=="complex64"){let s=t.texData.get(o.dataId),a=Ox(s.values);return t.makeTensorInfo(o.shape,o.dtype,a)}let n;return j().getBool("WEBGL_PACK_UNARY_OPERATIONS")?n=new Vs(o.shape,UF):n=new ho(o.shape,UF),t.runWebGLProgram(n,[o],o.dtype)}var jF={kernelName:as,backendName:"webgl",kernelFunc:L7};var z7=yr+`
2020-12-15 14:15:43 +01:00
if (abs(x) > 1.) {
return NAN;
}
return acos(x);
2021-03-09 23:32:33 +01:00
`,B7=_e({opSnippet:z7}),HF={kernelName:Hs,backendName:"webgl",kernelFunc:B7};var V7=yr+`
2020-12-15 14:15:43 +01:00
if (x < 1.0) return NAN;
2021-03-09 23:32:33 +01:00
return log(x + sqrt(x * x - 1.0));`,G7=_e({opSnippet:V7}),qF={kernelName:qs,backendName:"webgl",kernelFunc:G7};var KF="return a + b;",W7=nt({opSnippet:KF,packedOpSnippet:KF,supportsComplex:!0,cpuKernelImpl:jR}),XF={kernelName:wo,backendName:"webgl",kernelFunc:W7};var Qv=class{constructor(e,t){this.outputShape=[],this.outputShape=e,this.variableNames=t.map((s,a)=>`T${a}`);let o=[];this.variableNames.forEach(s=>{o.push(`float v${s} = get${s}AtOutCoords();`)});let n=this.variableNames.map(s=>`v${s}`).join(" + ");this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
2021-01-12 16:01:34 +01:00
${o.join(`
2020-12-15 14:15:43 +01:00
`)}
2021-01-12 16:01:34 +01:00
float result = ${n};
2020-12-15 14:15:43 +01:00
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}};var eC=class{constructor(e,t){this.outputShape=[],this.packedInputs=!0,this.packedOutput=!0,this.outputShape=e,this.variableNames=t.map((s,a)=>`T${a}`);let o=[];this.variableNames.forEach(s=>{o.push(`vec4 v${s} = get${s}AtOutCoords();`)});let n=this.variableNames.map(s=>`v${s}`).join(" + ");this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
2021-01-12 16:01:34 +01:00
${o.join(`
2020-12-15 14:15:43 +01:00
`)}
2021-01-12 16:01:34 +01:00
vec4 result = ${n};
2020-12-15 14:15:43 +01:00
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}};function Vx(r){let{inputs:e,backend:t}=r,o=e;if(o.length===1)return Ht({inputs:{x:o[0]},backend:t});if(o.length>j().get("WEBGL_MAX_TEXTURES_IN_SHADER")){let l=Math.floor(o.length/2),u=Vx({inputs:o.slice(0,l),backend:t}),c=Vx({inputs:o.slice(l),backend:t});return Vx({inputs:[u,c],backend:t})}let n=o.map(l=>l.dtype).reduce((l,u)=>dr(l,u)),s=o.map(l=>l.shape),i=j().getBool("WEBGL_PACK")?new eC(o[0].shape,s):new Qv(o[0].shape,s);return t.runWebGLProgram(i,o,n)}var YF={kernelName:Ho,backendName:"webgl",kernelFunc:Vx};function U7(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{axis:s,keepDims:a}=o,i=n.shape.length,l=y.parseAxisParam(s,n.shape),u=l,c=S.getAxesPermutation(u,i),p=n;c!=null&&(p=Lt({inputs:{x:n},backend:t,attrs:{perm:c}}),u=S.getInnerMostAxes(u.length,i)),S.assertAxesAreInnerMostDims("all",u,i);let[m,f]=S.computeOutAndReduceShapes(p.shape,u),d=y.sizeFromShape(f),h=pe({inputs:{x:p},backend:t,attrs:{shape:[-1,d]}}),g=To(h,h.dtype,"all",t),x;if(a){let w=S.expandShapeToKeepDim(m,l);x=pe({inputs:{x:g},backend:t,attrs:{shape:w}})}else x=pe({inputs:{x:g},backend:t,attrs:{shape:m}});return t.disposeIntermediateTensorInfo(h),t.disposeIntermediateTensorInfo(g),c!=null&&t.disposeIntermediateTensorInfo(p),x}var ZF={kernelName:Ml,backendName:"webgl",kernelFunc:U7};function j7(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{axis:s,keepDims:a}=o,i=n.shape.length,l=y.parseAxisParam(s,n.shape),u=l,c=S.getAxesPermutation(u,i),p=n;c!=null&&(p=Lt({inputs:{x:n},backend:t,attrs:{perm:c}}),u=S.getInnerMostAxes(u.length,i)),S.assertAxesAreInnerMostDims("any",u,i);let[m,f]=S.computeOutAndReduceShapes(p.shape,u),d=y.sizeFromShape(f),h=pe({inputs:{x:p},backend:t,attrs:{shape:[-1,d]}}),g=To(h,h.dtype,"any",t),x;if(a){let w=S.expandShapeToKeepDim(m,l);x=pe({inputs:{x:g},backend:t,attrs:{shape:w}})}else x=pe({inputs:{x:g},backend:t,attrs:{shape:m}});return t.disposeIntermediateTensorInfo(h),t.disposeIntermediateTensorInfo(g),c!=null&&t.disposeIntermediateTensorInfo(p),x}var JF={kernelName:Ll,backendName:"webgl",kernelFunc:j7};var tC=class{constructor(e,t,o){this.variableNames=["A"];let{windowSize:n,batchSize:s,outSize:a}=e;o||this.variableNames.push("bestIndicesA"),this.outputShape=[s,a];let i=t==="max"?">":"<",l=o?"inOffset + i;":"round(getBestIndicesA(batch, inOffset + i));";this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
ivec2 coords = getOutputCoords();
int batch = coords[0];
int outIdx = coords[1];
2021-01-12 16:01:34 +01:00
int inOffset = outIdx * ${n};
2020-12-15 14:15:43 +01:00
int bestIndex = inOffset;
float bestValue = getA(batch, bestIndex);
2021-01-12 16:01:34 +01:00
for (int i = 0; i < ${n}; i++) {
int inIdx = ${l};
2020-12-15 14:15:43 +01:00
float candidate = getA(batch, inIdx);
2021-01-12 16:01:34 +01:00
if (candidate ${i} bestValue) {
2020-12-15 14:15:43 +01:00
bestValue = candidate;
bestIndex = inIdx;
}
}
2020-12-15 14:15:43 +01:00
setOutput(float(bestIndex));
}
2021-03-09 23:32:33 +01:00
`}};var rC=class{constructor(e,t,o,n){this.variableNames=["A"],this.packedInputs=!0,this.packedOutput=!0,y.assert(e.length>2,()=>`Packed arg${o.charAt(0).toUpperCase()+o.slice(1)} supports only inputs with rank above 2.`);let s=e[e.length-1],a=Math.ceil(s/t);this.outputShape=e.slice(0,-1),a>1&&this.outputShape.push(a),n||this.variableNames.push("bestIndicesA");let i=this.outputShape,l=i.length,u=Le(l),c=jt("coords",l),p,m;if(a===1){m=l+1;let $=Le(m);p=`
${$} sourceLocR = ${$}(${c.join()}, 0);
2021-01-12 16:01:34 +01:00
++${c[l-1]};
2021-03-09 23:32:33 +01:00
${$} sourceLocG = ${$}(${c.join()}, 0);
2021-01-12 16:01:34 +01:00
++${c[l-2]};
2021-03-09 23:32:33 +01:00
${$} sourceLocA = ${$}(${c.join()}, 0);
2021-01-12 16:01:34 +01:00
--${c[l-1]};
2021-03-09 23:32:33 +01:00
${$} sourceLocB = ${$}(${c.join()}, 0);
2021-01-12 16:01:34 +01:00
--${c[l-2]};`}else m=l,p=`
${u} sourceLocR = coords;
++${c[l-1]};
${u} sourceLocG = coords;
++${c[l-2]};
${u} sourceLocA = coords;
--${c[l-1]};
${u} sourceLocB = coords;
2021-03-09 23:32:33 +01:00
--${c[l-2]};`;let f=["x","y","z","w","u","v"].slice(0,m),d="."+f[m-1],h=f.map($=>"int "+$),g=jt("sourceLocR",m-1).concat("inIdx.r"),x=jt("sourceLocG",m-1).concat("inIdx.g"),w=jt("sourceLocB",m-1).concat("inIdx.b"),b=jt("sourceLocA",m-1).concat("inIdx.a"),_=o==="max"?"greaterThan":"lessThan",k=n?"":`
2021-01-12 16:01:34 +01:00
inIdx = round(vec4(getBestIndicesAChannel(${g.join()}),
2021-03-09 23:32:33 +01:00
getBestIndicesAChannel(${x.join()}),
getBestIndicesAChannel(${w.join()}),
getBestIndicesAChannel(${b.join()})));`,A=`vec4(
2021-01-12 16:01:34 +01:00
getAChannel(${g.join()}),
2021-03-09 23:32:33 +01:00
hasNextCol ? getAChannel(${x.join()}) : 0.,
hasNextRow ? getAChannel(${w.join()}) : 0.,
hasNextRow && hasNextCol ? getAChannel(${b.join()}) : 0.)`,N=n?"":`
2021-01-12 16:01:34 +01:00
float getBestIndicesAChannel(${h.join()}) {
return getChannel(getBestIndicesA(${f.join()}),
vec2(${f.slice(-2).join()}));
2020-12-15 14:15:43 +01:00
}`;this.userCode=`
2021-01-12 16:01:34 +01:00
float getAChannel(${h.join()}) {
return getChannel(getA(${f.join()}),
vec2(${f.slice(-2).join()}));
}
2021-03-09 23:32:33 +01:00
${N}
2021-01-12 16:01:34 +01:00
void main() {
${u} coords = getOutputCoords();
bool hasNextCol = ${c[l-1]} < ${i[l-1]-1};
bool hasNextRow = ${c[l-2]} < ${i[l-2]-1};
${p}
ivec4 srcIdx = ivec4(sourceLocR${d}, sourceLocG${d},
sourceLocB${d}, sourceLocA${d}) * ${t};
2020-12-15 14:15:43 +01:00
ivec4 inIdx = srcIdx;
vec4 bestIndex = vec4(inIdx);
2021-03-09 23:32:33 +01:00
vec4 bestValue = ${A};
2021-01-12 16:01:34 +01:00
for (int i = 0; i < ${t}; i++) {
2020-12-15 14:15:43 +01:00
inIdx = srcIdx;
2021-03-09 23:32:33 +01:00
${k}
vec4 candidate = ${A};
2020-12-15 14:15:43 +01:00
bvec4 nan = isnan(candidate);
bvec4 replace = bvec4(
2021-02-25 14:12:39 +01:00
vec4(${_}(candidate, bestValue)) * (vec4(1.0) - vec4(nan)));
2020-12-15 14:15:43 +01:00
bestValue = vec4(replace.x ? candidate.x : bestValue.x,
replace.y ? candidate.y : bestValue.y,
replace.z ? candidate.z : bestValue.z,
replace.w ? candidate.w : bestValue.w);
bestIndex = mix(bestIndex, vec4(inIdx), vec4(replace));
srcIdx++;
}
setOutput(bestIndex);
}
2021-03-09 23:32:33 +01:00
`}};function QF(r,e,t,o=null){let n=e.shape[0],s=e.shape[1];o!=null&&(n=o.shape[0],s=o.shape[1]);let a=S.computeOptimalWindowSize(s),i={windowSize:a,inSize:s,batchSize:n,outSize:Math.ceil(s/a)},l=new tC(i,t,o==null),u=[e];o!=null&&u.push(o);let c=r.runWebGLProgram(l,u,"int32");if(c.shape[1]===1)return c;let p=QF(r,e,t,c);return r.disposeIntermediateTensorInfo(c),p}function eO(r,e,t,o=null){let n=o!=null?o.shape:e.shape,s=n[n.length-1],a=S.computeOptimalWindowSize(s),i=new rC(n,a,t,o==null),l=o==null?[e]:[e,o],u=r.runWebGLProgram(i,l,"int32");if(u.shape.length===e.shape.length){let c=eO(r,e,t,u);return r.disposeIntermediateTensorInfo(u),c}return u}function Gx(r,e,t,o){let n=[t];if(S.assertAxesAreInnerMostDims("arg"+o.charAt(0).toUpperCase()+o.slice(1),n,e.shape.length),!j().getBool("WEBGL_PACK_REDUCE")||e.shape.length<=2){let s=[],[a,i]=S.computeOutAndReduceShapes(e.shape,n),l=y.sizeFromShape(i),u=pe({inputs:{x:e},backend:r,attrs:{shape:[-1,l]}});s.push(u);let c=QF(r,u,o);s.push(c);let p=pe({inputs:{x:c},backend:r,attrs:{shape:a}});return s.forEach(m=>r.disposeIntermediateTensorInfo(m)),p}return eO(r,e,o)}function H7(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{axis:s}=o,a=y.parseAxisParam(s,n.shape),i=S.getAxesPermutation(a,n.shape.length),l=n,u=[];i!=null&&(l=Lt({inputs:{x:n},backend:t,attrs:{perm:i}}),u.push(l),a=S.getInnerMostAxes(a.length,l.shape.length)),S.assertAxesAreInnerMostDims("argMax",[a[0]],l.shape.length);let c=Gx(t,l,a[0],"max");return u.forEach(p=>t.disposeIntermediateTensorInfo(p)),c}var tO={kernelName:qo,backendName:"webgl",kernelFunc:H7};function q7(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{axis:s}=o,a=y.parseAxisParam(s,n.shape),i=S.getAxesPermutation(a,n.shape.length),l=n,u=[];i!=null&&(l=Lt({inputs:{x:n},backend:t,attrs:{perm:i}}),u.push(l),a=S.getInnerMostAxes(a.length,l.shape.length)),S.assertAxesAreInnerMostDims("argMin",[a[0]],l.shape.length);let c=Gx(t,l,a[0],"min");return u.forEach(p=>t.disposeIntermediateTensorInfo(p)),c}var rO={kernelName:ea,backendName:"webgl",kernelFunc:q7};var K7=yr+`
2020-12-15 14:15:43 +01:00
if (abs(x) > 1.) {
return NAN;
}
return asin(x);
2021-03-09 23:32:33 +01:00
`,X7=_e({opSnippet:K7}),oO={kernelName:Ks,backendName:"webgl",kernelFunc:X7};var Y7=yr+"return log(x + sqrt(x * x + 1.0));",Z7=_e({opSnippet:Y7}),nO={kernelName:Xs,backendName:"webgl",kernelFunc:Z7};var J7=yr+`
2020-12-15 14:15:43 +01:00
return atan(x);
2021-03-09 23:32:33 +01:00
`,Q7=_e({opSnippet:J7}),sO={kernelName:Ys,backendName:"webgl",kernelFunc:Q7};var e9=FF+`
2020-12-15 14:15:43 +01:00
return atan(a, b);
2021-03-09 23:32:33 +01:00
`,t9=`
2020-12-15 14:15:43 +01:00
vec4 result = atan(a, b);
vec4 isNaN = min(vec4(isnan(a)) + vec4(isnan(b)), vec4(1.0));
2021-03-09 23:32:33 +01:00
`+OF+`
2020-12-15 14:15:43 +01:00
return result;
2021-03-09 23:32:33 +01:00
`,r9=nt({opSnippet:e9,packedOpSnippet:t9}),iO={kernelName:Js,backendName:"webgl",kernelFunc:r9};var o9=yr+`
2020-12-15 14:15:43 +01:00
if ((x < -1.0) || (x > 1.0)) return NAN;
2021-03-09 23:32:33 +01:00
return (log(1.0 + x) - log(1.0 - x)) / 2.0;`,n9=_e({opSnippet:o9}),aO={kernelName:Zs,backendName:"webgl",kernelFunc:n9};var Ki=class{constructor(e,t,o,n=!1,s=!1){if(this.variableNames=["x"],t==="avg"&&o)throw new Error("Cannot compute positions for average pool.");let a=e.filterWidth,i=e.strideHeight,l=e.strideWidth,u=e.dilationHeight,c=e.dilationWidth,p=e.effectiveFilterHeight,m=e.effectiveFilterWidth,f=e.padInfo.top,d=e.padInfo.left;this.outputShape=e.outShape;let h=t==="avg",g=`((batch * ${e.inHeight} + xR) * ${e.inWidth} + xC) * ${e.inChannels} + d`,x=`(xR * ${e.inWidth} + xC) * ${e.inChannels} + d`,w="0.0";if(h||(w="-1.0 / 1e-20"),o){let $=">=";this.userCode=`
2021-01-12 16:01:34 +01:00
const ivec2 strides = ivec2(${i}, ${l});
const ivec2 pads = ivec2(${f}, ${d});
2020-12-15 14:15:43 +01:00
void main() {
ivec4 coords = getOutputCoords();
int batch = coords[0];
int d = coords[3];
ivec2 xRCCorner = coords.yz * strides - pads;
int xRCorner = xRCCorner.x;
int xCCorner = xRCCorner.y;
// max/min x(?, ?, d) to get y(yR, yC, d).
// ? = to be determined
float minMaxValue = 0.0;
float minMaxValueFound = 0.0;
int minMaxPosition = 0;
float avgValue = 0.0;
2021-01-12 16:01:34 +01:00
for (int wR = 0; wR < ${p};
wR += ${u}) {
2020-12-15 14:15:43 +01:00
int xR = xRCorner + wR;
2021-01-12 16:01:34 +01:00
if (xR < 0 || xR >= ${e.inHeight}) {
continue;
}
2021-01-12 16:01:34 +01:00
for (int wC = 0; wC < ${m};
wC += ${c}) {
2020-12-15 14:15:43 +01:00
int xC = xCCorner + wC;
2021-01-12 16:01:34 +01:00
if (xC < 0 || xC >= ${e.inWidth}) {
continue;
}
2020-12-15 14:15:43 +01:00
float value = getX(batch, xR, xC, d);
// If a min / max value has already been found, use it. If not,
// use the current value.
float currMinMaxValue = mix(
value, minMaxValue, minMaxValueFound);
2021-03-09 23:32:33 +01:00
if (value ${$} currMinMaxValue) {
2020-12-15 14:15:43 +01:00
minMaxValue = value;
minMaxValueFound = 1.0;
2021-03-09 23:32:33 +01:00
minMaxPosition = ${n?s?g:x:`wR * ${m} + wC`};
2020-12-15 14:15:43 +01:00
}
}
}
2020-12-15 14:15:43 +01:00
setOutput(float(minMaxPosition));
}
2021-03-09 23:32:33 +01:00
`;return}let b="max",_=`${t}(${t}(${t}(minMaxValue[0], minMaxValue[1]), minMaxValue[2]), minMaxValue[3])`;t==="avg"&&(_="avgValue / count");let k=Math.floor(a/4)*4,A=a%4,N=`
2021-01-12 16:01:34 +01:00
if (${h}) {
2020-12-15 14:15:43 +01:00
avgValue += dot(values, ones);
} else {
2021-03-09 23:32:33 +01:00
minMaxValue = ${b}(values, minMaxValue);
}
2020-12-15 14:15:43 +01:00
`;this.userCode=`
2021-01-12 16:01:34 +01:00
const ivec2 strides = ivec2(${i}, ${l});
const ivec2 pads = ivec2(${f}, ${d});
2021-03-09 23:32:33 +01:00
const float initializationValue = ${w};
2020-12-15 14:15:43 +01:00
const vec4 ones = vec4(1.0, 1.0, 1.0, 1.0);
float count = 0.0;
float getValue(int batch, int xR, int xC, int d) {
2021-01-12 16:01:34 +01:00
if (xC < 0 || xC >= ${e.inWidth}) {
2020-12-15 14:15:43 +01:00
return initializationValue;
}
count += 1.0;
return getX(batch, xR, xC, d);
}
void main() {
ivec4 coords = getOutputCoords();
int batch = coords[0];
2020-12-15 14:15:43 +01:00
int d = coords[3];
2020-12-15 14:15:43 +01:00
ivec2 xRCCorner = coords.yz * strides - pads;
int xRCorner = xRCCorner.x;
int xCCorner = xRCCorner.y;
2020-12-15 14:15:43 +01:00
// max/min x(?, ?, d) to get y(yR, yC, d).
// ? = to be determined
2021-03-09 23:32:33 +01:00
vec4 minMaxValue = vec4(${w});
2020-12-15 14:15:43 +01:00
float avgValue = 0.0;
count = 0.0;
2021-01-12 16:01:34 +01:00
for (int wR = 0; wR < ${p};
wR += ${u}) {
2020-12-15 14:15:43 +01:00
int xR = xRCorner + wR;
2021-01-12 16:01:34 +01:00
if (xR < 0 || xR >= ${e.inHeight}) {
continue;
}
2021-03-09 23:32:33 +01:00
for (int wC = 0; wC < ${k}; wC += 4) {
2021-01-12 16:01:34 +01:00
int xC = xCCorner + wC * ${c};
2020-12-15 14:15:43 +01:00
vec4 values = vec4(
getValue(batch, xR, xC, d),
2021-01-12 16:01:34 +01:00
getValue(batch, xR, xC + ${c}, d),
getValue(batch, xR, xC + 2 * ${c}, d),
getValue(batch, xR, xC + 3 * ${c}, d)
2020-12-15 14:15:43 +01:00
);
2021-03-09 23:32:33 +01:00
${N}
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
int xC = xCCorner + ${k};
if (${A===1}) {
2020-12-15 14:15:43 +01:00
vec4 values = vec4(
getValue(batch, xR, xC, d),
initializationValue,
initializationValue,
initializationValue
);
2021-03-09 23:32:33 +01:00
${N}
} else if (${A===2}) {
2020-12-15 14:15:43 +01:00
vec4 values = vec4(
getValue(batch, xR, xC, d),
2021-01-12 16:01:34 +01:00
getValue(batch, xR, xC + ${c}, d),
2020-12-15 14:15:43 +01:00
initializationValue,
initializationValue
);
2021-03-09 23:32:33 +01:00
${N}
} else if (${A===3}) {
2020-12-15 14:15:43 +01:00
vec4 values = vec4(
getValue(batch, xR, xC, d),
2021-01-12 16:01:34 +01:00
getValue(batch, xR, xC + ${c}, d),
getValue(batch, xR, xC + 2 * ${c}, d),
2020-12-15 14:15:43 +01:00
initializationValue
);
2021-03-09 23:32:33 +01:00
${N}
}
}
2021-02-25 14:12:39 +01:00
setOutput(${_});
}
2021-03-09 23:32:33 +01:00
`}},pc=class{constructor(e,t,o,n=!1,s=!1){if(this.variableNames=["x"],t==="avg"&&o)throw new Error("Cannot compute positions for average pool.");let a=e.filterWidth,i=e.strideDepth,l=e.strideHeight,u=e.strideWidth,c=e.dilationDepth,p=e.dilationHeight,m=e.dilationWidth,f=e.effectiveFilterDepth,d=e.effectiveFilterHeight,h=e.effectiveFilterWidth,g=e.padInfo.front,x=e.padInfo.top,w=e.padInfo.left;this.outputShape=e.outShape;let b=t==="avg",_="0.0";if(b||(_="-1.0 / 1e-20"),o){let M=">=";this.userCode=`
2020-12-15 14:15:43 +01:00
const ivec3 strides =
2021-01-12 16:01:34 +01:00
ivec3(${i}, ${l}, ${u});
2021-03-09 23:32:33 +01:00
const ivec3 pads = ivec3(${g}, ${x}, ${w});
2020-12-15 14:15:43 +01:00
void main() {
ivec5 coords = getOutputCoords();
int batch = coords.x;
int ch = coords.u;
2020-12-15 14:15:43 +01:00
ivec3 xCorner = ivec3(coords.y, coords.z, coords.w) * strides - pads;
int xDCorner = xCorner.x;
int xRCorner = xCorner.y;
int xCCorner = xCorner.z;
2020-12-15 14:15:43 +01:00
// max/min x(?, ?, ?, ch) to get y(yD, yR, yC, ch).
// ? = to be determined
float minMaxValue = 0.0;
float minMaxValueFound = 0.0;
int minMaxPosition = 0;
2021-01-12 16:01:34 +01:00
for (int wD = 0; wD < ${f};
wD += ${c}) {
2020-12-15 14:15:43 +01:00
int xD = xDCorner + wD;
2021-01-12 16:01:34 +01:00
if (xD < 0 || xD >= ${e.inDepth}) {
continue;
}
2021-01-12 16:01:34 +01:00
for (int wR = 0; wR < ${d};
wR += ${p}) {
2020-12-15 14:15:43 +01:00
int xR = xRCorner + wR;
2021-01-12 16:01:34 +01:00
if (xR < 0 || xR >= ${e.inHeight}) {
2020-12-15 14:15:43 +01:00
continue;
}
2021-01-12 16:01:34 +01:00
for (int wC = 0; wC < ${h};
wC += ${m}) {
2020-12-15 14:15:43 +01:00
int xC = xCCorner + wC;
2021-01-12 16:01:34 +01:00
if (xC < 0 || xC >= ${e.inWidth}) {
2020-12-15 14:15:43 +01:00
continue;
}
2020-12-15 14:15:43 +01:00
float value = getX(batch, xD, xR, xC, ch);
2020-12-15 14:15:43 +01:00
// If a min / max value has already been found, use it. If not,
// use the current value.
float currMinMaxValue = mix(
value, minMaxValue, minMaxValueFound);
2021-03-09 23:32:33 +01:00
if (value ${M} currMinMaxValue) {
2020-12-15 14:15:43 +01:00
minMaxValue = value;
minMaxValueFound = 1.0;
2021-01-12 16:01:34 +01:00
minMaxPosition = ${n?s?`(((batch * ${e.inDepth} + xD) * ${e.inHeight} + xR) * ${e.inWidth} + xC) * ${e.inChannels} + ch`:`((xD * ${e.inHeight} + xR) * ${e.inWidth} + xC) * ${e.inChannels} + ch`:`wD * ${d} * ${h} +
wR * ${h} + wC`};
2020-12-15 14:15:43 +01:00
}
}
}
}
2020-12-15 14:15:43 +01:00
setOutput(float(minMaxPosition));
}
2021-03-09 23:32:33 +01:00
`;return}let k="max",A=`${t}(${t}(${t}(minMaxValue[0], minMaxValue[1]), minMaxValue[2]), minMaxValue[3])`;t==="avg"&&(A="avgValue / count");let N=Math.floor(a/4)*4,$=a%4,F=`
if (${b}) {
2020-12-15 14:15:43 +01:00
avgValue += dot(values, ones);
} else {
2021-03-09 23:32:33 +01:00
minMaxValue = ${k}(values, minMaxValue);
}
2020-12-15 14:15:43 +01:00
`;this.userCode=`
const ivec3 strides =
2021-01-12 16:01:34 +01:00
ivec3(${i}, ${l}, ${u});
2021-03-09 23:32:33 +01:00
const ivec3 pads = ivec3(${g}, ${x}, ${w});
2021-02-25 14:12:39 +01:00
const float initializationValue = ${_};
2020-12-15 14:15:43 +01:00
const vec4 ones = vec4(1.0, 1.0, 1.0, 1.0);
float count = 0.0;
float getValue(int batch, int xD, int xR, int xC, int ch) {
2021-01-12 16:01:34 +01:00
if (xC < 0 || xC >= ${e.inWidth}) {
2020-12-15 14:15:43 +01:00
return initializationValue;
}
count += 1.0;
return getX(batch, xD, xR, xC, ch);
}
void main() {
ivec5 coords = getOutputCoords();
int batch = coords.x;
2020-12-15 14:15:43 +01:00
int ch = coords.u;
2020-12-15 14:15:43 +01:00
ivec3 xCorner = ivec3(coords.y, coords.z, coords.w) * strides - pads;
int xDCorner = xCorner.x;
int xRCorner = xCorner.y;
int xCCorner = xCorner.z;
2020-12-15 14:15:43 +01:00
// max/min x(?, ?, ?, d) to get y(yD, yR, yC, ch).
// ? = to be determined
2021-02-25 14:12:39 +01:00
vec4 minMaxValue = vec4(${_});
2020-12-15 14:15:43 +01:00
float avgValue = 0.0;
count = 0.0;
2021-01-12 16:01:34 +01:00
for (int wD = 0; wD < ${f};
wD += ${c}) {
2020-12-15 14:15:43 +01:00
int xD = xDCorner + wD;
2021-01-12 16:01:34 +01:00
if (xD < 0 || xD >= ${e.inDepth}) {
continue;
}
2021-01-12 16:01:34 +01:00
for (int wR = 0; wR < ${d};
wR += ${p}) {
2020-12-15 14:15:43 +01:00
int xR = xRCorner + wR;
2021-01-12 16:01:34 +01:00
if (xR < 0 || xR >= ${e.inHeight}) {
continue;
}
2021-03-09 23:32:33 +01:00
for (int wC = 0; wC < ${N}; wC += 4) {
2021-01-12 16:01:34 +01:00
int xC = xCCorner + wC * ${m};
2020-12-15 14:15:43 +01:00
vec4 values = vec4(
getValue(batch, xD, xR, xC, ch),
2021-01-12 16:01:34 +01:00
getValue(batch, xD, xR, xC + ${m}, ch),
getValue(batch, xD, xR, xC + 2 * ${m}, ch),
getValue(batch, xD, xR, xC + 3 * ${m}, ch)
2020-12-15 14:15:43 +01:00
);
2021-03-09 23:32:33 +01:00
${F}
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
int xC = xCCorner + ${N};
if (${$===1}) {
2020-12-15 14:15:43 +01:00
vec4 values = vec4(
getValue(batch, xD, xR, xC, ch),
initializationValue,
initializationValue,
initializationValue
);
2021-03-09 23:32:33 +01:00
${F}
} else if (${$===2}) {
2020-12-15 14:15:43 +01:00
vec4 values = vec4(
getValue(batch, xD, xR, xC, ch),
2021-01-12 16:01:34 +01:00
getValue(batch, xD, xR, xC + ${m}, ch),
2020-12-15 14:15:43 +01:00
initializationValue,
initializationValue
);
2021-03-09 23:32:33 +01:00
${F}
} else if (${$===3}) {
2020-12-15 14:15:43 +01:00
vec4 values = vec4(
getValue(batch, xD, xR, xC, ch),
2021-01-12 16:01:34 +01:00
getValue(batch, xD, xR, xC + ${m}, ch),
getValue(batch, xD, xR, xC + 2 * ${m}, ch),
2020-12-15 14:15:43 +01:00
initializationValue
);
2021-03-09 23:32:33 +01:00
${F}
}
}
2021-03-09 23:32:33 +01:00
setOutput(${A});
}
}
2021-03-09 23:32:33 +01:00
`}};function s9(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e;qi(n,"avgPool");let{filterSize:s,strides:a,pad:i,dimRoundingMode:l}=o,u=1;y.assert(S.eitherStridesOrDilationsAreOne(a,u),()=>`Error in avgPool: Either strides or dilations must be 1. Got strides ${a} and dilations '${u}'`);let c=S.computePool2DInfo(n.shape,s,a,u,i,l);if(c.filterWidth===1&&c.filterHeight===1&&y.arraysEqual(c.inShape,c.outShape))return Ht({inputs:{x:n},backend:t});let p=new Ki(c,"avg",!1);return t.runWebGLProgram(p,[n],"float32")}var lO={kernelName:Ko,backendName:"webgl",kernelFunc:s9};function i9(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{filterSize:s,strides:a,pad:i,dimRoundingMode:l,dataFormat:u}=o,c=[1,1,1],p=S.computePool3DInfo(n.shape,s,a,c,i,l,u),m=new pc(p,"avg",!1);return t.runWebGLProgram(m,[n],"float32")}var uO={kernelName:ta,backendName:"webgl",kernelFunc:i9};var oC=class{constructor(e){this.variableNames=["dy"],this.outputShape=e.inShape;let t=e.filterHeight,o=e.filterWidth,n=e.strideHeight,s=e.strideWidth,a=e.dilationHeight,i=e.dilationWidth,l=e.effectiveFilterHeight,u=e.effectiveFilterWidth,c=l-1-e.padInfo.top,p=u-1-e.padInfo.left,m=1/(t*o);this.userCode=`
2021-01-12 16:01:34 +01:00
const ivec2 pads = ivec2(${c}, ${p});
const float avgMultiplier = float(${m});
void main() {
ivec4 coords = getOutputCoords();
2020-12-15 14:15:43 +01:00
int b = coords[0];
int d = coords[3];
2020-12-15 14:15:43 +01:00
ivec2 dyRCCorner = coords.yz - pads;
int dyRCorner = dyRCCorner.x;
int dyCCorner = dyRCCorner.y;
2020-12-15 14:15:43 +01:00
// Convolve dy(?, ?, d) with pos mask(:, :, d) to get dx(xR, xC, d).
// ? = to be determined. : = across all values in that axis.
float dotProd = 0.0;
2021-01-12 16:01:34 +01:00
for (int wR = 0; wR < ${l};
wR += ${a}) {
float dyR = float(dyRCorner + wR) / ${n}.0;
2021-01-12 16:01:34 +01:00
if (dyR < 0.0 || dyR >= ${e.outHeight}.0 || fract(dyR) > 0.0) {
continue;
}
2020-12-15 14:15:43 +01:00
int idyR = int(dyR);
2021-01-12 16:01:34 +01:00
for (int wC = 0; wC < ${u};
wC+= ${i}) {
float dyC = float(dyCCorner + wC) / ${s}.0;
2021-01-12 16:01:34 +01:00
if (dyC < 0.0 || dyC >= ${e.outWidth}.0 ||
2020-12-15 14:15:43 +01:00
fract(dyC) > 0.0) {
continue;
}
2020-12-15 14:15:43 +01:00
int idyC = int(dyC);
2020-12-15 14:15:43 +01:00
float dyValue = getDy(b, idyR, idyC, d);
dotProd += dyValue * avgMultiplier;
}
}
2020-12-15 14:15:43 +01:00
setOutput(dotProd);
}
2021-03-09 23:32:33 +01:00
`}},nC=class{constructor(e){this.variableNames=["dy"],this.outputShape=e.inShape;let t=e.filterDepth,o=e.filterHeight,n=e.filterWidth,s=e.strideDepth,a=e.strideHeight,i=e.strideWidth,l=e.dilationDepth,u=e.dilationHeight,c=e.dilationWidth,p=e.effectiveFilterDepth,m=e.effectiveFilterHeight,f=e.effectiveFilterWidth,d=p-1-e.padInfo.front,h=m-1-e.padInfo.top,g=f-1-e.padInfo.left,x=1/(t*o*n);this.userCode=`
2021-01-12 16:01:34 +01:00
const ivec3 pads = ivec3(${d}, ${h}, ${g});
2021-03-09 23:32:33 +01:00
const float avgMultiplier = float(${x});
2020-12-15 14:15:43 +01:00
void main() {
ivec5 coords = getOutputCoords();
int batch = coords.x;
int ch = coords.u;
2020-12-15 14:15:43 +01:00
ivec3 dyCorner = ivec3(coords.y, coords.z, coords.w) - pads;
int dyDCorner = dyCorner.x;
int dyRCorner = dyCorner.y;
int dyCCorner = dyCorner.z;
2020-12-15 14:15:43 +01:00
// Convolve dy(?, ?, ?, d) with pos mask(:, :, :, ch) to get
// dx(xD, xR, xC, ch).
// ? = to be determined. : = across all values in that axis.
float dotProd = 0.0;
2021-01-12 16:01:34 +01:00
for (int wD = 0; wD < ${p};
wD += ${l}) {
float dyD = float(dyDCorner + wD) / ${s}.0;
2021-01-12 16:01:34 +01:00
if (dyD < 0.0 || dyD >= ${e.outDepth}.0 || fract(dyD) > 0.0) {
2020-12-15 14:15:43 +01:00
continue;
}
int idyD = int(dyD);
2021-01-12 16:01:34 +01:00
for (int wR = 0; wR < ${m};
wR += ${u}) {
float dyR = float(dyRCorner + wR) / ${a}.0;
2021-01-12 16:01:34 +01:00
if (dyR < 0.0 || dyR >= ${e.outHeight}.0 ||
2020-12-15 14:15:43 +01:00
fract(dyR) > 0.0) {
continue;
}
int idyR = int(dyR);
2021-01-12 16:01:34 +01:00
for (int wC = 0; wC < ${f};
wC += ${c}) {
float dyC = float(dyCCorner + wC) / ${i}.0;
2021-01-12 16:01:34 +01:00
if (dyC < 0.0 || dyC >= ${e.outWidth}.0 ||
2020-12-15 14:15:43 +01:00
fract(dyC) > 0.0) {
continue;
}
int idyC = int(dyC);
2020-12-15 14:15:43 +01:00
float dyValue = getDy(batch, idyD, idyR, idyC, ch);
2020-12-15 14:15:43 +01:00
dotProd += dyValue * avgMultiplier;
}
}
}
setOutput(dotProd);
}
2021-03-09 23:32:33 +01:00
`}};function a9(r){let{inputs:e,backend:t,attrs:o}=r,{dy:n,input:s}=e,a=s,{filterSize:i,strides:l,pad:u,dimRoundingMode:c}=o,p=[1,1,1],m=S.computePool3DInfo(a.shape,i,l,p,u,c),f=new nC(m);return t.runWebGLProgram(f,[n],a.dtype)}var cO={kernelName:Bl,backendName:"webgl",kernelFunc:a9};function l9(r){let{inputs:e,backend:t,attrs:o}=r,{dy:n,input:s}=e,a=s;qi([n,s],"avgPoolGrad");let{filterSize:i,strides:l,pad:u}=o,c=S.computePool2DInfo(a.shape,i,l,1,u),p=new oC(c);return t.runWebGLProgram(p,[n],a.dtype)}var pO={kernelName:zl,backendName:"webgl",kernelFunc:l9};function u9(r){let{inputs:e,backend:t,attrs:o}=r,{a:n,b:s}=e,{transposeA:a,transposeB:i}=o;return cc({a:n,b:s,transposeA:a,transposeB:i,backend:t})}var mO={kernelName:Xo,backendName:"webgl",kernelFunc:u9};var sC=class{constructor(e,t,o,n,s,a){this.outputShape=[],this.variableNames=["x","mean","variance"],S.assertAndGetBroadcastShape(e,t),S.assertAndGetBroadcastShape(e,o);let i="0.0";n!=null&&(S.assertAndGetBroadcastShape(e,n),this.variableNames.push("offset"),i="getOffsetAtOutCoords()");let l="1.0";s!=null&&(S.assertAndGetBroadcastShape(e,s),this.variableNames.push("scale"),l="getScaleAtOutCoords()"),this.outputShape=e,this.userCode=`
void main() {
2020-12-15 14:15:43 +01:00
float x = getXAtOutCoords();
float mean = getMeanAtOutCoords();
float variance = getVarianceAtOutCoords();
2021-01-12 16:01:34 +01:00
float offset = ${i};
float scale = ${l};
float inv = scale * inversesqrt(variance + float(${a}));
2020-12-15 14:15:43 +01:00
setOutput(dot(vec3(x, -mean, offset), vec3(inv, inv, 1)));
}
2021-03-09 23:32:33 +01:00
`}};var iC=class{constructor(e,t,o,n,s,a){this.packedInputs=!0,this.packedOutput=!0,this.variableNames=["x","mean","variance"],S.assertAndGetBroadcastShape(e,t),S.assertAndGetBroadcastShape(e,o);let i="vec4(0.0)";n!=null&&(S.assertAndGetBroadcastShape(e,n),this.variableNames.push("offset"),i="getOffsetAtOutCoords()");let l="vec4(1.0)";s!=null&&(S.assertAndGetBroadcastShape(e,s),this.variableNames.push("scale"),l="getScaleAtOutCoords()"),this.outputShape=e,this.userCode=`
void main() {
2021-01-12 16:01:34 +01:00
vec4 offset = ${i};
vec4 scale = ${l};
2020-12-15 14:15:43 +01:00
vec4 x = getXAtOutCoords();
vec4 mean = getMeanAtOutCoords();
vec4 variance = getVarianceAtOutCoords();
2021-01-12 16:01:34 +01:00
vec4 inv = scale * inversesqrt(variance + vec4(${a}));
2020-12-15 14:15:43 +01:00
setOutput((x - mean) * inv + offset);
}
2021-03-09 23:32:33 +01:00
`}};var c9=({inputs:r,backend:e,attrs:t})=>{let{x:o,mean:n,variance:s,offset:a,scale:i}=r;y.assert(n.shape.length===s.shape.length,()=>"Batch normalization gradient requires mean and variance to have equal ranks."),y.assert(a==null||n.shape.length===a.shape.length,()=>"Batch normalization gradient requires mean and offset to have equal ranks."),y.assert(i==null||n.shape.length===i.shape.length,()=>"Batch normalization gradient requires mean and scale to have equal ranks.");let{varianceEpsilon:l}=t;l==null&&(l=.001);let u=[o,n,s],c=null;a!=null&&(c=a.shape,u.push(a));let p=null;i!=null&&(p=i.shape,u.push(i));let m=j().getBool("WEBGL_PACK_NORMALIZATION")?new iC(o.shape,n.shape,s.shape,c,p,l):new sC(o.shape,n.shape,s.shape,c,p,l);return e.runWebGLProgram(m,u,u[0].dtype)},fO={kernelName:an,backendName:"webgl",kernelFunc:c9};var aC=class{constructor(e){this.variableNames=["source"],this.outputShape=e,this.rank=e.length;let t=Le(this.rank),o=`uniform int start[${this.rank}];`,n=p9(this.rank),s,a=e.map((i,l)=>`sourceLoc.${lC[l]} = start[${l}] + coords.${lC[l]};`);s=`
2021-01-12 16:01:34 +01:00
${t} sourceLoc;
${t} coords = getOutputCoords();
${a.join(`
2020-12-15 14:15:43 +01:00
`)}
`,this.userCode=`
2021-01-12 16:01:34 +01:00
${o}
void main() {
${s}
setOutput(getSource(${n}));
}
2021-03-09 23:32:33 +01:00
`}getCustomSetupFunc(e){if(e.length!==this.rank)throw Error(`The rank (${this.rank}) of the program must match the length of start (${e.length})`);return(t,o)=>{this.startLoc==null&&(this.startLoc=t.getUniformLocationNoThrow(o,"start"),this.startLoc==null)||t.gl.uniform1iv(this.startLoc,e)}}},lC=["x","y","z","w","u","v"];function p9(r){if(r===1)return"sourceLoc";if(r<=6)return lC.slice(0,r).map(e=>"sourceLoc."+e).join(",");throw Error(`Slicing for rank ${r} is not yet supported`)}var uC=class{constructor(e){this.variableNames=["source"],this.packedInputs=!0,this.packedOutput=!0,this.outputShape=e,this.rank=e.length;let t=Le(this.rank),o=jt("coords",this.rank),n=jt("sourceLoc",this.rank),s=this.rank===1?"sourceLoc":`vec2(${n.slice(-2).join()})`,a=`getChannel(getSource(${n.join()}), ${s})`,i=`
2021-01-12 16:01:34 +01:00
result.x = ${a};
if (++${o[this.rank-1]} < ${e[this.rank-1]}) {
++${n[this.rank-1]};
result.y = ${a};
--${n[this.rank-1]};
}
`,l=this.rank===1?"":`
--${o[this.rank-1]};
if (++${o[this.rank-2]} < ${e[this.rank-2]}) {
++${n[this.rank-2]};
result.z = ${a};
if (++${o[this.rank-1]} < ${e[this.rank-1]}) {
++${n[this.rank-1]};
result.w = ${a};
}
}
`,u=this.rank<=4?`sourceLoc = coords +
${t}(${e.map((c,p)=>`start[${p}]`).join()});`:e.map((c,p)=>`${n[p]} = ${o[p]} + start[${p}];`).join(`
2020-12-15 14:15:43 +01:00
`);this.userCode=`
uniform int start[${this.rank}];
void main() {
2021-01-12 16:01:34 +01:00
${t} coords = getOutputCoords();
${t} sourceLoc;
${u}
vec4 result = vec4(0.);
2021-01-12 16:01:34 +01:00
${i}
${l}
2020-12-15 14:15:43 +01:00
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}getCustomSetupFunc(e){if(e.length!==this.rank)throw Error(`The rank (${this.rank}) of the program must match the length of start (${e.length})`);return(t,o)=>{this.startLoc==null&&(this.startLoc=t.getUniformLocationNoThrow(o,"start"),this.startLoc==null)||t.gl.uniform1iv(this.startLoc,e)}}};function m9(r,e,t,o){let n=o.texData.get(r.dataId),s=o.makeTensorInfo(t,r.dtype),a=o.texData.get(s.dataId);Object.assign(a,n),a.refCount=1,a.shape=t,a.dtype=r.dtype;let i=sr.computeFlatOffset(e,y.computeStrides(r.shape));n.slice&&(i+=n.slice.flatOffset),a.slice={flatOffset:i,origDataId:n.slice&&n.slice.origDataId||r.dataId};let l=o.dataRefCount.get(a.slice.origDataId)||1;return o.dataRefCount.set(a.slice.origDataId,l+1),s}function Va(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{begin:s,size:a}=o,[i,l]=sr.parseSliceParams(n,s,a);if(sr.assertParamsValid(n,i,l),y.sizeFromShape(l)===0)return t.makeTensorInfo(l,n.dtype,[]);if(t.shouldExecuteOnCPU([n])||n.dtype==="string"){let p=t.texData.get(n.dataId),m=pF(p.values,i,l,n.shape,n.dtype);return t.makeTensorInfo(l,n.dtype,m)}let{isPacked:u}=t.texData.get(n.dataId),c=sr.isSliceContinous(n.shape,i,l);if(u||!c){let p=j().getBool("WEBGL_PACK_ARRAY_OPERATIONS")?new uC(l):new aC(l),m=p.getCustomSetupFunc(i);return t.runWebGLProgram(p,[n],n.dtype,m)}return t.uploadToGPU(n.dataId),m9(n,i,l,t)}var dO={kernelName:gs,backendName:"webgl",kernelFunc:Va};var f9=r=>{let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{blockShape:s,crops:a}=o;y.assert(n.shape.length<=4,()=>"batchToSpaceND for rank > 4 with a WebGL backend not implemented yet");let i=s.reduce((w,b)=>w*b),l=S.getReshaped(n.shape,s,i),u=S.getPermuted(l.length,s.length),c=S.getReshapedPermuted(n.shape,s,i),p=S.getSliceBeginCoords(a,s.length),m=S.getSliceSize(c,a,s.length),f=[],d=pe({inputs:{x:n},backend:t,attrs:{shape:l}}),h=Lt({inputs:{x:d},backend:t,attrs:{perm:u}}),g=pe({inputs:{x:h},backend:t,attrs:{shape:c}}),x=Va({inputs:{x:g},backend:t,attrs:{begin:p,size:m}});return f.push(d),f.push(h),f.push(g),f.forEach(w=>t.disposeIntermediateTensorInfo(w)),x},hO={kernelName:ra,backendName:"webgl",kernelFunc:f9};function d9(r){let{inputs:e,backend:t,attrs:o}=r,{x:n,weights:s}=e,{size:a}=o,i=t.readSync(n.dataId),l=t.readSync(s.dataId),u=Fx(i,l,s.dtype,s.shape,a);return t.makeTensorInfo([a],s.dtype,u)}var gO={kernelName:Vl,backendName:"webgl",kernelFunc:d9};var h9="return float(a != b);",cC=nt({opSnippet:h9,dtype:"bool"}),xO={kernelName:xi,backendName:"webgl",kernelFunc:cC};function Ga(r){let{inputs:e,backend:t}=r,{input:o}=e,n=t.texData.get(o.dataId);return Ht({inputs:{x:n.complexTensorInfos.real},backend:t})}var yO={kernelName:iu,backendName:"webgl",kernelFunc:Ga};var g9="return float(int(x));";function bO(r,e){let t=new ho(r.shape,g9),o=e.runWebGLProgram(t,[r],"int32");return{dataId:o.dataId,shape:o.shape,dtype:o.dtype}}function pC(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{dtype:s}=o;if(s==="complex64"){if(n.dtype==="complex64")return Ht({inputs:{x:n},backend:t});let a=gt(n.shape),i=pC({inputs:{x:n},backend:t,attrs:{dtype:"float32"}}),l=go({inputs:{real:i,imag:a},backend:t});return a.dispose(),t.disposeIntermediateTensorInfo(i),l}if(n.dtype==="complex64"){let a=Ga({inputs:{input:n},backend:t}),i=pC({inputs:{x:a},backend:t,attrs:{dtype:s}});return t.disposeIntermediateTensorInfo(a),i}if(!y.hasEncodingLoss(n.dtype,s)){let a=Ht({inputs:{x:n},backend:t});return{dataId:a.dataId,shape:a.shape,dtype:s}}if(s==="int32")return bO(n,t);if(s==="bool"){let a=t.makeTensorInfo([],"bool",y.getTypedArrayFromDType("bool",1)),l=cC({inputs:{a:n,b:a},backend:t});return t.disposeIntermediateTensorInfo(a),l}throw new Error(`Error in Cast: failed to cast ${n.dtype} to ${s}`)}var wO={kernelName:Do,backendName:"webgl",kernelFunc:pC};var _O="return ceil(x);",x9=_e({opSnippet:_O,packedOpSnippet:_O,cpuKernelImpl:qR}),kO={kernelName:Yo,backendName:"webgl",kernelFunc:x9};var mC=class{constructor(e){this.variableNames=["A"],this.outputShape=e,this.userCode=`
2020-12-15 14:15:43 +01:00
uniform float minVal;
uniform float maxVal;
2020-12-15 14:15:43 +01:00
void main() {
float value = getAAtOutCoords();
if (isnan(value)) {
setOutput(value);
return;
}
2020-12-15 14:15:43 +01:00
setOutput(clamp(value, minVal, maxVal));
}
2021-03-09 23:32:33 +01:00
`}getCustomSetupFunc(e,t){return(o,n)=>{this.minLoc==null&&(this.minLoc=o.getUniformLocationNoThrow(n,"minVal"),this.maxLoc=o.getUniformLocationNoThrow(n,"maxVal")),o.gl.uniform1f(this.minLoc,e),o.gl.uniform1f(this.maxLoc,t)}}};var fC=class{constructor(e){this.variableNames=["A"],this.packedInputs=!0,this.packedOutput=!0,this.outputShape=e,this.userCode=`
2020-12-15 14:15:43 +01:00
uniform float minVal;
uniform float maxVal;
void main() {
2020-12-15 14:15:43 +01:00
vec4 value = getAAtOutCoords();
2020-12-15 14:15:43 +01:00
if (any(isnan(value))) {
setOutput(value);
return;
}
2020-12-15 14:15:43 +01:00
setOutput(clamp(value, vec4(minVal), vec4(maxVal)));
}
2021-03-09 23:32:33 +01:00
`}getCustomSetupFunc(e,t){return(o,n)=>{this.minLoc==null&&(this.minLoc=o.getUniformLocationNoThrow(n,"minVal"),this.maxLoc=o.getUniformLocationNoThrow(n,"maxVal")),o.gl.uniform1f(this.minLoc,e),o.gl.uniform1f(this.maxLoc,t)}}};function y9(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{clipValueMin:s,clipValueMax:a}=o,i;j().getBool("WEBGL_PACK_CLIP")?i=new fC(n.shape):i=new mC(n.shape);let l=i.getCustomSetupFunc(s,a);return t.runWebGLProgram(i,[n],n.dtype,l)}var vO={kernelName:$o,backendName:"webgl",kernelFunc:y9};var dC=class{constructor(e){this.variableNames=["real","imag"],this.outputShape=e,this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
float re = abs(getRealAtOutCoords());
float im = abs(getImagAtOutCoords());
float mx = max(re, im);
2020-12-15 14:15:43 +01:00
// sadly the length function in glsl is not underflow-safe
// (at least not on Intel GPUs). So the safe solution is
// to ensure underflow-safety in all cases.
setOutput(
mx == 0.0 ? 0.0 : mx * length(vec2(1, min(re, im)/mx))
);
}
2021-03-09 23:32:33 +01:00
`}};function CO(r,e){return{dataId:e.dataId,dtype:e.dtype,shape:r.shape}}function b9(r){let{inputs:e,backend:t}=r,{x:o}=e,n=t.texData.get(o.dataId),s=new dC(o.shape),a=[CO(o,n.complexTensorInfos.real),CO(o,n.complexTensorInfos.imag)];return t.runWebGLProgram(s,a,a[0].dtype)}var IO={kernelName:oa,backendName:"webgl",kernelFunc:b9};var hC=class{constructor(e){this.outputShape=[],this.outputShape=S.computeOutShape(e,1),this.variableNames=e.map((a,i)=>`T${i}`);let t=new Array(e.length-1);t[0]=e[0][1];for(let a=1;a<t.length;a++)t[a]=t[a-1]+e[a][1];let o=[`if (yC < ${t[0]}) setOutput(getT0(yR, yC));`];for(let a=1;a<t.length;a++){let i=t[a-1];o.push(`else if (yC < ${t[a]}) setOutput(getT${a}(yR, yC-${i}));`)}let n=t.length,s=t[t.length-1];o.push(`else setOutput(getT${n}(yR, yC-${s}));`),this.userCode=`
void main() {
2020-12-15 14:15:43 +01:00
ivec2 coords = getOutputCoords();
int yR = coords.x;
int yC = coords.y;
2021-01-12 16:01:34 +01:00
${o.join(`
2020-12-15 14:15:43 +01:00
`)}
}
2021-03-09 23:32:33 +01:00
`}};var gC=class{constructor(e,t){this.packedInputs=!0,this.packedOutput=!0,this.outputShape=[],this.outputShape=S.computeOutShape(e,t);let o=this.outputShape,n=o.length,s=Le(n),a=jt("coords",n),i=["x","y","z","w","u","v"].slice(0,n);this.variableNames=e.map((h,g)=>`T${g}`);let l=new Array(e.length-1);l[0]=e[0][t];for(let h=1;h<l.length;h++)l[h]=l[h-1]+e[h][t];let u=i[t],c=i.slice(-2),p=i.join(),m=`if (${u} < ${l[0]}) {
2020-12-15 14:15:43 +01:00
return getChannel(
2021-01-12 16:01:34 +01:00
getT0(${p}), vec2(${c.join()}));
}`;for(let h=1;h<l.length;h++){let g=l[h-1];m+=`
if (${u} < ${l[h]} && ${u} >= ${l[h-1]}) {
2020-12-15 14:15:43 +01:00
return getChannel(
2021-03-09 23:32:33 +01:00
getT${h}(${Wx(i,u,g)}),
vec2(${Wx(c,u,g)}));
2021-01-12 16:01:34 +01:00
}`}let f=l.length,d=l[l.length-1];m+=`
2020-12-15 14:15:43 +01:00
return getChannel(
2021-03-09 23:32:33 +01:00
getT${f}(${Wx(i,u,d)}),
vec2(${Wx(c,u,d)}));`,this.userCode=`
2021-01-12 16:01:34 +01:00
float getValue(${i.map(h=>"int "+h)}) {
${m}
}
void main() {
2021-01-12 16:01:34 +01:00
${s} coords = getOutputCoords();
vec4 result = vec4(getValue(${a}), 0., 0., 0.);
2021-01-12 16:01:34 +01:00
${a[n-1]} = ${a[n-1]} + 1;
if (${a[n-1]} < ${o[n-1]}) {
result.g = getValue(${a});
2020-12-15 14:15:43 +01:00
}
2021-01-12 16:01:34 +01:00
${a[n-2]} = ${a[n-2]} + 1;
if (${a[n-2]} < ${o[n-2]}) {
result.a = getValue(${a});
}
2021-01-12 16:01:34 +01:00
${a[n-1]} = ${a[n-1]} - 1;
if (${a[n-2]} < ${o[n-2]} &&
${a[n-1]} < ${o[n-1]}) {
result.b = getValue(${a});
2020-12-15 14:15:43 +01:00
}
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}};function Wx(r,e,t){let o=r.indexOf(e);return r.map((s,a)=>a===o?`${s} - ${t}`:s).join()}function mc(r){let{inputs:e,backend:t}=r,{input:o}=e,n=t.texData.get(o.dataId);return Ht({inputs:{x:n.complexTensorInfos.imag},backend:t})}var NO={kernelName:Ql,backendName:"webgl",kernelFunc:mc};function fc(r,e,t){let o=r[0].dtype;if(o==="complex64"){let u=r.map(d=>Ga({inputs:{input:d},backend:t})),c=r.map(d=>mc({inputs:{input:d},backend:t})),p=fc(u,e,t),m=fc(c,e,t),f=go({inputs:{real:p,imag:m},backend:t});return u.forEach(d=>t.disposeIntermediateTensorInfo(d)),c.forEach(d=>t.disposeIntermediateTensorInfo(d)),t.disposeIntermediateTensorInfo(p),t.disposeIntermediateTensorInfo(m),f}if(o==="string"){let{tensors2D:u,outShape:c}=SO(r,e,t),p=u.map(g=>({vals:t.readSync(g.dataId),shape:g.shape})),m=u[0].shape[0]===1,f=KR(p,c,o,m),d=S.computeOutShape(r.map(g=>g.shape),e),h=t.makeTensorInfo(d,o,f);return u.forEach(g=>t.disposeIntermediateTensorInfo(g)),h}if(r.length>j().getNumber("WEBGL_MAX_TEXTURES_IN_SHADER")){let u=Math.floor(r.length/2),c=fc(r.slice(0,u),e,t),p=fc(r.slice(u),e,t),m=fc([c,p],e,t);return t.disposeIntermediateTensorInfo(c),t.disposeIntermediateTensorInfo(p),m}if(j().getBool("WEBGL_PACK_ARRAY_OPERATIONS")&&r[0].shape.length>1){let u=new gC(r.map(c=>c.shape),e);return t.runWebGLProgram(u,r,o)}let{tensors2D:n,outShape:s}=SO(r,e,t),a=new hC(n.map(u=>u.shape)),i=t.runWebGLProgram(a,n,o);n.forEach(u=>t.disposeIntermediateTensorInfo(u));let l=pe({inputs:{x:i},attrs:{shape:s},backend:t});return t.disposeIntermediateTensorInfo(i),l}function SO(r,e,t){let o=S.computeOutShape(r.map(s=>s.shape),e);return{tensors2D:r.map(s=>pe({inputs:{x:s},attrs:{shape:[-1,y.sizeFromShape(s.shape.slice(e))]},backend:t})),outShape:o}}function xC(r){let{inputs:e,backend:t,attrs:o}=r,{axis:n}=o,s=y.parseAxisParam(n,e[0].shape)[0],a=S.computeOutShape(e.map(u=>u.shape),s);if(y.sizeFromShape(a)===0)return t.makeTensorInfo(a,e[0].dtype,[]);let i=e.filter(u=>y.sizeFromShape(u.shape)>0);if(i.length===1)return Ht({inputs:{x:i[0]},backend:t});let l=i.map(u=>u.shape);return S.assertParamsConsistent(l,s),fc(i,s,t)}var TO={kernelName:ls,backendName:"webgl",kernelFunc:xC};var sh=class{constructor(e,t=!1,o=null,n=!1,s=!1){this.variableNames=["x","W"],this.outputShape=e.outShape;let a=e.padInfo.top,i=e.padInfo.left,l=e.strideHeight,u=e.strideWidth,c=e.dilationHeight,p=e.dilationWidth,m=e.filterHeight,f=e.filterWidth,d=Math.floor(e.inChannels/4)*4,h=e.inChannels%4,g=e.dataFormat==="channelsLast",x=g?1:2,w=g?2:3,b=g?3:1,_="",k="";o&&(n?_=`float activation(float a) {
2020-12-15 14:15:43 +01:00
float b = getPreluActivationWeightsAtOutCoords();
2021-01-12 16:01:34 +01:00
${o}
2021-02-25 14:12:39 +01:00
}`:s?_=`float activation(float a) {
2020-12-15 14:15:43 +01:00
float b = getLeakyreluAlphaAtOutCoords();
2021-01-12 16:01:34 +01:00
${o}
2021-02-25 14:12:39 +01:00
}`:_=`
2020-12-15 14:15:43 +01:00
float activation(float x) {
2021-01-12 16:01:34 +01:00
${o}
}
2021-03-09 23:32:33 +01:00
`,k="result = activation(result);");let A=t?"result += getBiasAtOutCoords();":"";t&&this.variableNames.push("bias"),n&&this.variableNames.push("preluActivationWeights"),s&&this.variableNames.push("leakyreluAlpha"),this.userCode=`
2021-02-25 14:12:39 +01:00
${_}
2021-01-12 16:01:34 +01:00
const ivec2 strides = ivec2(${l}, ${u});
const ivec2 pads = ivec2(${a}, ${i});
void main() {
2020-12-15 14:15:43 +01:00
ivec4 coords = getOutputCoords();
int batch = coords[0];
2021-03-09 23:32:33 +01:00
int d2 = coords[${b}];
2020-12-15 14:15:43 +01:00
ivec2 xRCCorner =
2021-03-09 23:32:33 +01:00
ivec2(coords[${x}], coords[${w}]) * strides - pads;
2020-12-15 14:15:43 +01:00
int xRCorner = xRCCorner.x;
int xCCorner = xRCCorner.y;
2020-12-15 14:15:43 +01:00
// Convolve x(?, ?, d1) with w(:, :, d1, d2) to get y(yR, yC, d2).
// ? = to be determined. : = across all values in that axis.
float dotProd = 0.0;
2021-01-12 16:01:34 +01:00
for (int wR = 0; wR < ${m}; wR++) {
int xR = xRCorner + wR * ${c};
2021-01-12 16:01:34 +01:00
if (xR < 0 || xR >= ${e.inHeight}) {
2020-12-15 14:15:43 +01:00
continue;
}
2021-01-12 16:01:34 +01:00
for (int wC = 0; wC < ${f}; wC++) {
int xC = xCCorner + wC * ${p};
2021-01-12 16:01:34 +01:00
if (xC < 0 || xC >= ${e.inWidth}) {
2020-12-15 14:15:43 +01:00
continue;
}
2021-01-12 16:01:34 +01:00
for (int d1 = 0; d1 < ${d}; d1 += 4) {
2020-12-15 14:15:43 +01:00
vec4 wValues = vec4(
getW(wR, wC, d1, d2),
getW(wR, wC, d1 + 1, d2),
getW(wR, wC, d1 + 2, d2),
getW(wR, wC, d1 + 3, d2)
);
2021-01-12 16:01:34 +01:00
if (${g}) {
2020-12-15 14:15:43 +01:00
vec4 xValues = vec4(
getX(batch, xR, xC, d1),
getX(batch, xR, xC, d1 + 1),
getX(batch, xR, xC, d1 + 2),
getX(batch, xR, xC, d1 + 3)
);
dotProd += dot(xValues, wValues);
} else {
vec4 xValues = vec4(
getX(batch, d1, xR, xC),
getX(batch, d1 + 1, xR, xC),
getX(batch, d1 + 2, xR, xC),
getX(batch, d1 + 3, xR, xC)
);
dotProd += dot(xValues, wValues);
}
}
2021-01-12 16:01:34 +01:00
if (${h===1}) {
2021-01-12 16:01:34 +01:00
if (${g}) {
2020-12-15 14:15:43 +01:00
dotProd +=
2021-01-12 16:01:34 +01:00
getX(batch, xR, xC, ${d}) *
getW(wR, wC, ${d}, d2);
2020-12-15 14:15:43 +01:00
} else {
dotProd +=
2021-01-12 16:01:34 +01:00
getX(batch, ${d}, xR, xC) *
getW(wR, wC, ${d}, d2);
2020-12-15 14:15:43 +01:00
}
2021-01-12 16:01:34 +01:00
} else if (${h===2}) {
2020-12-15 14:15:43 +01:00
vec2 wValues = vec2(
2021-01-12 16:01:34 +01:00
getW(wR, wC, ${d}, d2),
getW(wR, wC, ${d} + 1, d2)
2020-12-15 14:15:43 +01:00
);
2021-01-12 16:01:34 +01:00
if (${g}) {
2020-12-15 14:15:43 +01:00
vec2 xValues = vec2(
2021-01-12 16:01:34 +01:00
getX(batch, xR, xC, ${d}),
getX(batch, xR, xC, ${d} + 1)
2020-12-15 14:15:43 +01:00
);
dotProd += dot(xValues, wValues);
} else {
vec2 xValues = vec2(
2021-01-12 16:01:34 +01:00
getX(batch, ${d}, xR, xC),
getX(batch, ${d} + 1, xR, xC)
2020-12-15 14:15:43 +01:00
);
dotProd += dot(xValues, wValues);
}
2021-01-12 16:01:34 +01:00
} else if (${h===3}) {
2020-12-15 14:15:43 +01:00
vec3 wValues = vec3(
2021-01-12 16:01:34 +01:00
getW(wR, wC, ${d}, d2),
getW(wR, wC, ${d} + 1, d2),
getW(wR, wC, ${d} + 2, d2)
2020-12-15 14:15:43 +01:00
);
2021-01-12 16:01:34 +01:00
if (${g}) {
2020-12-15 14:15:43 +01:00
vec3 xValues = vec3(
2021-01-12 16:01:34 +01:00
getX(batch, xR, xC, ${d}),
getX(batch, xR, xC, ${d} + 1),
getX(batch, xR, xC, ${d} + 2)
2020-12-15 14:15:43 +01:00
);
dotProd += dot(xValues, wValues);
} else {
vec3 xValues = vec3(
2021-01-12 16:01:34 +01:00
getX(batch, ${d}, xR, xC),
getX(batch, ${d} + 1, xR, xC),
getX(batch, ${d} + 2, xR, xC)
2020-12-15 14:15:43 +01:00
);
dotProd += dot(xValues, wValues);
}
}
}
}
2020-12-15 14:15:43 +01:00
float result = dotProd;
2021-03-09 23:32:33 +01:00
${A}
${k}
2020-12-15 14:15:43 +01:00
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}},yC=class{constructor(e){this.variableNames=["x","W"],this.outputShape=e.outShape;let t=e.padInfo.front,o=e.padInfo.top,n=e.padInfo.left,s=e.strideDepth,a=e.strideHeight,i=e.strideWidth,l=e.dilationDepth,u=e.dilationHeight,c=e.dilationWidth,p=e.filterDepth,m=e.filterHeight,f=e.filterWidth,d=Math.floor(e.inChannels/4)*4,h=e.inChannels%4;this.userCode=`
2021-01-12 16:01:34 +01:00
const ivec3 strides = ivec3(${s}, ${a}, ${i});
const ivec3 pads = ivec3(${t}, ${o}, ${n});
void main() {
ivec5 coords = getOutputCoords();
int batch = coords.x;
2020-12-15 14:15:43 +01:00
int d2 = coords.u;
2020-12-15 14:15:43 +01:00
ivec3 xFRCCorner = ivec3(coords.y, coords.z, coords.w) * strides - pads;
int xFCorner = xFRCCorner.x;
int xRCorner = xFRCCorner.y;
int xCCorner = xFRCCorner.z;
2020-12-15 14:15:43 +01:00
// Convolve x(?, ?, ?, d1) with w(:, :, :, d1, d2) to get
// y(yF, yR, yC, d2). ? = to be determined. : = across all
// values in that axis.
float dotProd = 0.0;
2021-01-12 16:01:34 +01:00
for (int wF = 0; wF < ${p}; wF++) {
int xF = xFCorner + wF * ${l};
2021-01-12 16:01:34 +01:00
if (xF < 0 || xF >= ${e.inDepth}) {
continue;
}
2021-01-12 16:01:34 +01:00
for (int wR = 0; wR < ${m}; wR++) {
int xR = xRCorner + wR * ${u};
2021-01-12 16:01:34 +01:00
if (xR < 0 || xR >= ${e.inHeight}) {
continue;
}
2021-01-12 16:01:34 +01:00
for (int wC = 0; wC < ${f}; wC++) {
int xC = xCCorner + wC * ${c};
2021-01-12 16:01:34 +01:00
if (xC < 0 || xC >= ${e.inWidth}) {
continue;
}
2021-01-12 16:01:34 +01:00
for (int d1 = 0; d1 < ${d}; d1 += 4) {
2020-12-15 14:15:43 +01:00
vec4 xValues = vec4(
getX(batch, xF, xR, xC, d1),
getX(batch, xF, xR, xC, d1 + 1),
getX(batch, xF, xR, xC, d1 + 2),
getX(batch, xF, xR, xC, d1 + 3)
);
vec4 wValues = vec4(
getW(wF, wR, wC, d1, d2),
getW(wF, wR, wC, d1 + 1, d2),
getW(wF, wR, wC, d1 + 2, d2),
getW(wF, wR, wC, d1 + 3, d2)
);
dotProd += dot(xValues, wValues);
}
2021-01-12 16:01:34 +01:00
if (${h===1}) {
2020-12-15 14:15:43 +01:00
dotProd +=
2021-01-12 16:01:34 +01:00
getX(batch, xF, xR, xC, ${d}) *
getW(wF, wR, wC, ${d}, d2);
} else if (${h===2}) {
2020-12-15 14:15:43 +01:00
vec2 xValues = vec2(
2021-01-12 16:01:34 +01:00
getX(batch, xF, xR, xC, ${d}),
getX(batch, xF, xR, xC, ${d} + 1)
2020-12-15 14:15:43 +01:00
);
vec2 wValues = vec2(
2021-01-12 16:01:34 +01:00
getW(wF, wR, wC, ${d}, d2),
getW(wF, wR, wC, ${d} + 1, d2)
2020-12-15 14:15:43 +01:00
);
dotProd += dot(xValues, wValues);
2021-01-12 16:01:34 +01:00
} else if (${h===3}) {
2020-12-15 14:15:43 +01:00
vec3 xValues = vec3(
2021-01-12 16:01:34 +01:00
getX(batch, xF, xR, xC, ${d}),
getX(batch, xF, xR, xC, ${d} + 1),
getX(batch, xF, xR, xC, ${d} + 2)
2020-12-15 14:15:43 +01:00
);
vec3 wValues = vec3(
2021-01-12 16:01:34 +01:00
getW(wF, wR, wC, ${d}, d2),
getW(wF, wR, wC, ${d} + 1, d2),
getW(wF, wR, wC, ${d} + 2, d2)
2020-12-15 14:15:43 +01:00
);
dotProd += dot(xValues, wValues);
}
}
}
}
setOutput(dotProd);
}
2021-03-09 23:32:33 +01:00
`}};var bC=class{constructor(e,t,o){this.variableNames=["A"],this.packedInputs=!0,this.packedOutput=!0,this.outputShape=e;let{filterWidth:n,inChannels:s,strideWidth:a,strideHeight:i,padInfo:l,outWidth:u,dilationWidth:c,dilationHeight:p,dataFormat:m}=o,{left:f,top:d}=l,h=s*n,g=Pt(),x=m==="channelsLast",w=x?0:1,b=x?1:2,_="";for(let k=0;k<=1;k++)for(let A=0;A<=1;A++)_+=`
blockIndex = rc.y + ${A};
pos = rc.x + ${k};
2021-01-12 16:01:34 +01:00
if(blockIndex < ${e[1]} && pos < ${e[0]}) {
offsetY = int(blockIndex / (${u})) * ${i} - ${d};
d0 = offsetY + ${p} * (pos / ${h});
2021-03-09 23:32:33 +01:00
if(d0 < ${t[w]} && d0 >= 0) {
2021-01-12 16:01:34 +01:00
offsetX = int(mod(float(blockIndex), ${u}.) * ${a}. - ${f}.);
d1 = offsetX + ${c} * (int(mod(float(pos), ${h}.) / ${s}.));
2021-03-09 23:32:33 +01:00
if(d1 < ${t[b]} && d1 >= 0) {
2021-01-12 16:01:34 +01:00
ch = int(mod(float(pos), ${s}.));
2021-03-09 23:32:33 +01:00
if (${x}) {
2020-12-15 14:15:43 +01:00
innerDims = vec2(d1, ch);
2021-03-09 23:32:33 +01:00
result[${k*2+A}] = getChannel(
2020-12-15 14:15:43 +01:00
getA(d0, int(innerDims.x),
int(innerDims.y)), innerDims);
} else {
innerDims = vec2(d0, d1);
2021-03-09 23:32:33 +01:00
result[${k*2+A}] = getChannel(
2020-12-15 14:15:43 +01:00
getA(ch, int(innerDims.x),
int(innerDims.y)), innerDims);
}
}
}
}
2020-12-15 14:15:43 +01:00
`;this.userCode=`
void main() {
2020-12-15 14:15:43 +01:00
ivec2 rc = getOutputCoords();
2020-12-15 14:15:43 +01:00
vec4 result = vec4(0);
2020-12-15 14:15:43 +01:00
int blockIndex, pos, offsetY, d0, offsetX, d1, ch;
vec2 innerDims;
2021-02-25 14:12:39 +01:00
${_}
2021-01-12 16:01:34 +01:00
${g.output} = result;
}
2021-03-09 23:32:33 +01:00
`}};function Ux({x:r,filter:e,convInfo:t,backend:o,bias:n=null,preluActivationWeights:s=null,leakyreluAlpha:a=0,activation:i=null}){let l=r.shape,u=o.texData.get(r.dataId),c=t.inChannels,p=l[0]*l[1]*l[2],m=t.outChannels,f=t.dataFormat==="channelsLast",d=!1,h=!1,g,x=[],w=(p===1||m===1)&&c>Jv,b=l[2]%2!=0&&!!u.isPacked;if(w||!j().getBool("WEBGL_LAZILY_UNPACK")||!j().getBool("WEBGL_PACK_BINARY_OPERATIONS")||!b){let _=f?l[0]*l[1]*l[2]:l[0]*l[2]*l[3],k=pe({inputs:{x:r},backend:o,attrs:{shape:[1,_,t.inChannels]}}),A=pe({inputs:{x:e},backend:o,attrs:{shape:[1,t.inChannels,t.outChannels]}}),N=cc({a:k,b:A,transposeA:d,transposeB:h,backend:o,bias:n,activation:i,preluActivationWeights:s,leakyreluAlpha:a});g=pe({inputs:{x:N},backend:o,attrs:{shape:t.outShape}}),x.push(k),x.push(A),x.push(N)}else{let _=f?l[0]*l[1]*(l[2]+1):l[0]*l[2]*(l[3]+1),k={dataId:r.dataId,shape:[1,_,t.inChannels],dtype:r.dtype},A=u.shape;u.shape=u.shape.slice(),u.shape[u.shape.length-2]++,y.assert(lc(u.shape,k.shape),()=>`packed reshape ${u.shape} to ${k.shape} isn't free`);let N=pe({inputs:{x:e},backend:o,attrs:{shape:[1,t.inChannels,t.outChannels]}});x.push(N);let $=cc({a:k,b:N,backend:o,transposeA:d,transposeB:h,bias:n,activation:i,preluActivationWeights:s,leakyreluAlpha:a}),F=o.texData.get($.dataId);y.assert(F.isPacked,()=>"batchMatMul result is expected to be packed"),u.shape=A,F.shape=t.outShape,g=Ht({inputs:{x:$},backend:o}),g.shape=t.outShape,x.push($)}for(let _ of x)o.disposeIntermediateTensorInfo(_);return g}function jx({x:r,filter:e,convInfo:t,backend:o,bias:n=null,preluActivationWeights:s=null,leakyreluAlpha:a=0,activation:i=null}){let{filterWidth:l,filterHeight:u,inChannels:c,outWidth:p,outHeight:m,dataFormat:f}=t,d=f==="channelsLast",h=l*u*c,g=m*p,x=[h,g],w=!0,b=!1,_=[],k=pe({inputs:{x:r},backend:o,attrs:{shape:r.shape.slice(1)}}),A=pe({inputs:{x:e},backend:o,attrs:{shape:[1,h,y.sizeFromShape(e.shape)/h]}});_.push(k),_.push(A);let N=new bC(x,k.shape,t),$=o.runWebGLProgram(N,[k],"float32"),F=pe({inputs:{x:$},backend:o,attrs:{shape:[1,x[0],x[1]]}});_.push($),_.push(F);let M=n!=null,V=s!=null,W=i==="leakyrelu",U=i?Tl(i,!0):null,H=new oh(F.shape,A.shape,[1,g,t.outChannels],w,b,M,U,V,W),q=[F,A];if(n&&q.push(n),V&&q.push(s),W){let re=o.makeTensorInfo([],"float32",y.createScalarValue(a,"float32"));q.push(re),_.push(re)}let X=o.runWebGLProgram(H,q,"float32"),oe=d?[1,m,p,t.outChannels]:[1,t.outChannels,m,p],Y=pe({inputs:{x:X},backend:o,attrs:{shape:oe}});_.push(X);for(let re of _)o.disposeIntermediateTensorInfo(re);return Y}function w9(r){let{inputs:e,backend:t,attrs:o}=r,{x:n,filter:s}=e,{strides:a,pad:i,dataFormat:l,dilations:u,dimRoundingMode:c}=o,p=S.convertConv2DDataFormat(l),m=S.computeConv2DInfo(n.shape,s.shape,a,u,i,c,!1,p),f;if(m.filterHeight===1&&m.filterWidth===1&&m.dilationHeight===1&&m.dilationWidth===1&&m.strideHeight===1&&m.strideWidth===1&&(m.padInfo.type==="SAME"||m.padInfo.type==="VALID"))f=Ux({x:n,filter:s,convInfo:m,backend:t});else if(j().getBool("WEBGL_CONV_IM2COL")&&n.shape[0]===1)f=jx({x:n,filter:s,convInfo:m,backend:t});else{let h=new sh(m);f=t.runWebGLProgram(h,[n,s],"float32")}let d=pe({inputs:{x:f},backend:t,attrs:{shape:m.outShape}});return t.disposeIntermediateTensorInfo(f),d}var AO={kernelName:Zo,backendName:"webgl",kernelFunc:w9};var wC=class{constructor(e){this.variableNames=["x","dy"],this.outputShape=e.filterShape;let t=e.strideHeight,o=e.strideWidth,n=e.padInfo.top,s=e.padInfo.left,a=e.dataFormat==="channelsLast";this.userCode=`
void main() {
2020-12-15 14:15:43 +01:00
ivec4 coords = getOutputCoords();
int wR = coords.x;
int wC = coords.y;
int d1 = coords.z;
int d2 = coords.w;
2020-12-15 14:15:43 +01:00
// Convolve x(?, ?, d1) with dy(:, :, d2) to get dw(wR, wC, d1, d2).
// ? = to be determined. : = across all values in that axis.
float dotProd = 0.0;
2021-01-12 16:01:34 +01:00
for (int b = 0; b < ${e.batchSize}; b++) {
for (int yR = 0; yR < ${e.outHeight}; yR++) {
int xR = wR + yR * ${t} - ${n};
2021-01-12 16:01:34 +01:00
if (xR < 0 || xR >= ${e.inHeight}) {
continue;
}
2021-01-12 16:01:34 +01:00
for (int yC = 0; yC < ${e.outWidth}; yC++) {
int xC = wC + yC * ${o} - ${s};
2021-01-12 16:01:34 +01:00
if (xC < 0 || xC >= ${e.inWidth}) {
continue;
}
2021-01-12 16:01:34 +01:00
if (${a}) {
2020-12-15 14:15:43 +01:00
float dyValue = getDy(b, yR, yC, d2);
float xValue = getX(b, xR, xC, d1);
dotProd += (xValue * dyValue);
} else {
float dyValue = getDy(b, d2, yR, yC);
float xValue = getX(b, d1, xR, xC);
dotProd += (xValue * dyValue);
}
2020-12-15 14:15:43 +01:00
}
}
}
2020-12-15 14:15:43 +01:00
setOutput(dotProd);
}
2021-03-09 23:32:33 +01:00
`}},_C=class{constructor(e){this.variableNames=["dy","W"],this.outputShape=e.inShape;let t=e.filterHeight,o=e.filterWidth,n=e.strideHeight,s=e.strideWidth,a=e.dataFormat==="channelsLast",i=t-1-e.padInfo.top,l=o-1-e.padInfo.left,u=a?1:2,c=a?2:3,p=a?3:1;this.userCode=`
2021-01-12 16:01:34 +01:00
const ivec2 pads = ivec2(${i}, ${l});
void main() {
ivec4 coords = getOutputCoords();
int batch = coords[0];
2021-01-12 16:01:34 +01:00
int d1 = coords[${p}];
2021-01-12 16:01:34 +01:00
ivec2 dyCorner = ivec2(coords[${u}], coords[${c}]) - pads;
2020-12-15 14:15:43 +01:00
int dyRCorner = dyCorner.x;
int dyCCorner = dyCorner.y;
2020-12-15 14:15:43 +01:00
// Convolve dy(?, ?, d2) with w(:, :, d1, d2) to compute dx(xR, xC, d1).
// ? = to be determined. : = across all values in that axis.
float dotProd = 0.0;
2021-01-12 16:01:34 +01:00
for (int wR = 0; wR < ${t}; wR++) {
float dyR = float(dyRCorner + wR) / ${n}.0;
2021-01-12 16:01:34 +01:00
if (dyR < 0.0 || dyR >= ${e.outHeight}.0 || fract(dyR) > 0.0) {
continue;
}
2020-12-15 14:15:43 +01:00
int idyR = int(dyR);
2021-01-12 16:01:34 +01:00
int wRPerm = ${t} - 1 - wR;
2021-01-12 16:01:34 +01:00
for (int wC = 0; wC < ${o}; wC++) {
float dyC = float(dyCCorner + wC) / ${s}.0;
2021-01-12 16:01:34 +01:00
if (dyC < 0.0 || dyC >= ${e.outWidth}.0 ||
2020-12-15 14:15:43 +01:00
fract(dyC) > 0.0) {
continue;
}
int idyC = int(dyC);
2021-01-12 16:01:34 +01:00
int wCPerm = ${o} - 1 - wC;
2021-01-12 16:01:34 +01:00
for (int d2 = 0; d2 < ${e.outChannels}; d2++) {
2021-01-12 16:01:34 +01:00
if (${a}) {
2020-12-15 14:15:43 +01:00
float xValue = getDy(batch, idyR, idyC, d2);
float wValue = getW(wRPerm, wCPerm, d1, d2);
dotProd += xValue * wValue;
} else {
float xValue = getDy(batch, d2, idyR, idyC);
float wValue = getW(wRPerm, wCPerm, d1, d2);
dotProd += xValue * wValue;
}
2020-12-15 14:15:43 +01:00
}
}
}
2020-12-15 14:15:43 +01:00
setOutput(dotProd);
}
2021-03-09 23:32:33 +01:00
`}},kC=class{constructor(e){this.variableNames=["x","dy"],this.outputShape=e.filterShape;let t=e.strideDepth,o=e.strideHeight,n=e.strideWidth,s=e.padInfo.front,a=e.padInfo.top,i=e.padInfo.left;this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
ivec5 coords = getOutputCoords();
int wF = coords.x;
int wR = coords.y;
int wC = coords.z;
int d1 = coords.w;
int d2 = coords.u;
2020-12-15 14:15:43 +01:00
float dotProd = 0.0;
2021-01-12 16:01:34 +01:00
for (int b = 0; b < ${e.batchSize}; b++) {
for (int yF = 0; yF < ${e.outDepth}; yF++) {
int xF = wF + yF * ${t} - ${s};
2021-01-12 16:01:34 +01:00
if (xF < 0 || xF >= ${e.inDepth}) {
continue;
}
2021-01-12 16:01:34 +01:00
for (int yR = 0; yR < ${e.outHeight}; yR++) {
int xR = wR + yR * ${o} - ${a};
2021-01-12 16:01:34 +01:00
if (xR < 0 || xR >= ${e.inHeight}) {
continue;
}
2021-01-12 16:01:34 +01:00
for (int yC = 0; yC < ${e.outWidth}; yC++) {
int xC = wC + yC * ${n} - ${i};
2021-01-12 16:01:34 +01:00
if (xC < 0 || xC >= ${e.inWidth}) {
continue;
}
2020-12-15 14:15:43 +01:00
float dyValue = getDy(b, yF, yR, yC, d2);
float xValue = getX(b, xF, xR, xC, d1);
dotProd += (xValue * dyValue);
}
}
}
}
2020-12-15 14:15:43 +01:00
setOutput(dotProd);
}
2021-03-09 23:32:33 +01:00
`}},vC=class{constructor(e){this.variableNames=["dy","W"],this.outputShape=e.inShape;let t=e.filterDepth,o=e.filterHeight,n=e.filterWidth,s=e.strideDepth,a=e.strideHeight,i=e.strideWidth,l=t-1-e.padInfo.front,u=o-1-e.padInfo.top,c=n-1-e.padInfo.left;this.userCode=`
2021-01-12 16:01:34 +01:00
const ivec3 pads = ivec3(${l}, ${u}, ${c});
void main() {
ivec5 coords = getOutputCoords();
int batch = coords.x;
2020-12-15 14:15:43 +01:00
int d1 = coords.u;
2020-12-15 14:15:43 +01:00
ivec3 dyCorner = ivec3(coords.y, coords.z, coords.w) - pads;
int dyFCorner = dyCorner.x;
int dyRCorner = dyCorner.y;
int dyCCorner = dyCorner.z;
2020-12-15 14:15:43 +01:00
float dotProd = 0.0;
2021-01-12 16:01:34 +01:00
for (int wF = 0; wF < ${t}; wF++) {
float dyF = float(dyFCorner + wF) / ${s}.0;
2021-01-12 16:01:34 +01:00
if (dyF < 0.0 || dyF >= ${e.outDepth}.0 || fract(dyF) > 0.0) {
continue;
}
2020-12-15 14:15:43 +01:00
int idyF = int(dyF);
2021-01-12 16:01:34 +01:00
int wFPerm = ${t} - 1 - wF;
2021-01-12 16:01:34 +01:00
for (int wR = 0; wR < ${o}; wR++) {
float dyR = float(dyRCorner + wR) / ${a}.0;
2020-12-15 14:15:43 +01:00
2021-01-12 16:01:34 +01:00
if (dyR < 0.0 || dyR >= ${e.outHeight}.0 ||
2020-12-15 14:15:43 +01:00
fract(dyR) > 0.0) {
continue;
}
2020-12-15 14:15:43 +01:00
int idyR = int(dyR);
2021-01-12 16:01:34 +01:00
int wRPerm = ${o} - 1 - wR;
2021-01-12 16:01:34 +01:00
for (int wC = 0; wC < ${n}; wC++) {
float dyC = float(dyCCorner + wC) / ${i}.0;
2021-01-12 16:01:34 +01:00
if (dyC < 0.0 || dyC >= ${e.outWidth}.0 ||
2020-12-15 14:15:43 +01:00
fract(dyC) > 0.0) {
continue;
}
int idyC = int(dyC);
2021-01-12 16:01:34 +01:00
int wCPerm = ${n} - 1 - wC;
2021-01-12 16:01:34 +01:00
for (int d2 = 0; d2 < ${e.outChannels}; d2++) {
2020-12-15 14:15:43 +01:00
float xValue = getDy(batch, idyF, idyR, idyC, d2);
float wValue = getW(wFPerm, wRPerm, wCPerm, d1, d2);
dotProd += xValue * wValue;
}
}
}
}
2020-12-15 14:15:43 +01:00
setOutput(dotProd);
}
2021-03-09 23:32:33 +01:00
`}};function _9(r){let{inputs:e,backend:t,attrs:o}=r,{x:n,dy:s}=e,{strides:a,pad:i,dataFormat:l,dimRoundingMode:u,filterShape:c}=o,p=S.convertConv2DDataFormat(l),m=S.computeConv2DInfo(n.shape,c,a,1,i,u,!1,p),f=new wC(m);return t.runWebGLProgram(f,[n,s],"float32")}var EO={kernelName:Wl,backendName:"webgl",kernelFunc:_9};function k9(r){let{inputs:e,backend:t,attrs:o}=r,{dy:n,filter:s}=e,{inputShape:a,strides:i,pad:l,dataFormat:u,dimRoundingMode:c}=o,p=S.convertConv2DDataFormat(u),m=S.computeConv2DInfo(a,s.shape,i,1,l,c,!1,p),f=new _C(m);return t.runWebGLProgram(f,[n,s],"float32")}var DO={kernelName:Jo,backendName:"webgl",kernelFunc:k9};function v9(r){let{inputs:e,backend:t,attrs:o}=r,{x:n,filter:s}=e,{strides:a,pad:i,dilations:l}=o,u=S.computeConv3DInfo(n.shape,s.shape,a,l,i),c=new yC(u);return t.runWebGLProgram(c,[n,s],"float32")}var $O={kernelName:na,backendName:"webgl",kernelFunc:v9};function C9(r){let{inputs:e,backend:t,attrs:o}=r,{x:n,dy:s}=e,{strides:a,pad:i,filterShape:l}=o,u=S.computeConv3DInfo(n.shape,l,a,1,i),c=new kC(u);return t.runWebGLProgram(c,[n,s],"float32")}var RO={kernelName:Ul,backendName:"webgl",kernelFunc:C9};function I9(r){let{inputs:e,backend:t,attrs:o}=r,{dy:n,filter:s}=e,{pad:a,strides:i,inputShape:l}=o,u=S.computeConv3DInfo(l,s.shape,i,1,a),c=new vC(u);return t.runWebGLProgram(c,[n,s],"float32")}var FO={kernelName:jl,backendName:"webgl",kernelFunc:I9};var N9=Lx+`
2020-12-15 14:15:43 +01:00
return cos(x);
2021-03-09 23:32:33 +01:00
`,S9=_e({opSnippet:N9}),OO={kernelName:Qo,backendName:"webgl",kernelFunc:S9};var T9=`
2020-12-15 14:15:43 +01:00
float e2x = exp(-x);
return (e2x + 1.0 / e2x) / 2.0;
2021-03-09 23:32:33 +01:00
`,A9=_e({opSnippet:T9}),PO={kernelName:Qs,backendName:"webgl",kernelFunc:A9};var CC=class{constructor(e,t,o,n,s){this.variableNames=["Image","Boxes","BoxInd"],this.outputShape=[];let[a,i,l,u]=e,[c]=t,[p,m]=o;this.outputShape=[c,p,m,u];let f=n==="bilinear"?1:0,[d,h]=[`${i-1}.0`,`${l-1}.0`],[g,x,w]=p>1?[`${(i-1)/(p-1)}`,"(y2-y1) * height_ratio",`y1*${d} + float(y)*(height_scale)`]:["0.0","0.0",`0.5 * (y1+y2) * ${d}`],[b,_,k]=m>1?[`${(l-1)/(m-1)}`,"(x2-x1) * width_ratio",`x1*${h} + float(x)*(width_scale)`]:["0.0","0.0",`0.5 * (x1+x2) * ${h}`];this.userCode=`
2021-01-12 16:01:34 +01:00
const float height_ratio = float(${g});
2021-03-09 23:32:33 +01:00
const float width_ratio = float(${b});
void main() {
2020-12-15 14:15:43 +01:00
ivec4 coords = getOutputCoords();
int b = coords[0];
int y = coords[1];
int x = coords[2];
int d = coords[3];
2020-12-15 14:15:43 +01:00
// get box vals
float y1 = getBoxes(b,0);
float x1 = getBoxes(b,1);
float y2 = getBoxes(b,2);
float x2 = getBoxes(b,3);
2020-12-15 14:15:43 +01:00
// get image in batch index
int bInd = round(getBoxInd(b));
2021-01-12 16:01:34 +01:00
if(bInd < 0 || bInd >= ${a}) {
2020-12-15 14:15:43 +01:00
return;
}
2021-03-09 23:32:33 +01:00
float height_scale = ${x};
2021-02-25 14:12:39 +01:00
float width_scale = ${_};
2020-12-15 14:15:43 +01:00
2021-03-09 23:32:33 +01:00
float in_y = ${w};
2021-01-12 16:01:34 +01:00
if( in_y < 0.0 || in_y > ${d} ) {
setOutput(float(${s}));
2020-12-15 14:15:43 +01:00
return;
}
2021-03-09 23:32:33 +01:00
float in_x = ${k};
2021-01-12 16:01:34 +01:00
if( in_x < 0.0 || in_x > ${h} ) {
setOutput(float(${s}));
2020-12-15 14:15:43 +01:00
return;
}
2020-12-15 14:15:43 +01:00
vec2 sourceFracIndexCR = vec2(in_x,in_y);
2021-01-12 16:01:34 +01:00
if(${f} == 1) {
2020-12-15 14:15:43 +01:00
// Compute the four integer indices.
ivec2 sourceFloorCR = ivec2(sourceFracIndexCR);
ivec2 sourceCeilCR = ivec2(ceil(sourceFracIndexCR));
2020-12-15 14:15:43 +01:00
float topLeft = getImage(b, sourceFloorCR.y, sourceFloorCR.x, d);
float bottomLeft = getImage(b, sourceCeilCR.y, sourceFloorCR.x, d);
float topRight = getImage(b, sourceFloorCR.y, sourceCeilCR.x, d);
float bottomRight = getImage(b, sourceCeilCR.y, sourceCeilCR.x, d);
2020-12-15 14:15:43 +01:00
vec2 fracCR = sourceFracIndexCR - vec2(sourceFloorCR);
2020-12-15 14:15:43 +01:00
float top = topLeft + (topRight - topLeft) * fracCR.x;
float bottom = bottomLeft + (bottomRight - bottomLeft) * fracCR.x;
float newValue = top + (bottom - top) * fracCR.y;
setOutput(newValue);
} else {
// Compute the coordinators of nearest neighbor point.
ivec2 sourceNearestCR = ivec2(floor(
sourceFracIndexCR + vec2(0.5,0.5)));
float newValue = getImage(b, sourceNearestCR.y, sourceNearestCR.x, d);
setOutput(newValue);
}
}
2021-03-09 23:32:33 +01:00
`}};var E9=r=>{let{inputs:e,backend:t,attrs:o}=r,{image:n,boxes:s,boxInd:a}=e,{cropSize:i,method:l,extrapolationValue:u}=o,c=new CC(n.shape,s.shape,i,l,u);return t.runWebGLProgram(c,[n,s,a],"float32")},MO={kernelName:ei,backendName:"webgl",kernelFunc:E9};var Hx=class{constructor(e,t,o){this.variableNames=["x"],this.outputShape=e;let n=e.length,s=t?"0.0":`getX(${LO(n,"coords")})`,a=e[e.length-1],i="",l="";t?(i=o?`end != ${a-1}`:"end != 0",l=o?"end + 1":"end - 1"):(i=o?`end + pow2 < ${a}`:"end >= pow2",l=o?"end + pow2":"end - pow2"),this.userCode=`
2020-12-15 14:15:43 +01:00
uniform float index;
void main() {
2021-01-29 16:39:08 +01:00
${Le(n)} coords = getOutputCoords();
2021-03-09 23:32:33 +01:00
int end = ${zO(n,"coords")};
2021-01-12 16:01:34 +01:00
float val = ${s};
2020-12-15 14:15:43 +01:00
int pow2 = int(pow(2.0, index));
2021-01-12 16:01:34 +01:00
if (${i}) {
int idx = ${l};
2021-03-09 23:32:33 +01:00
${zO(n,"coords")} = idx;
val += getX(${LO(n,"coords")});
2020-12-15 14:15:43 +01:00
}
setOutput(val);
}
2021-03-09 23:32:33 +01:00
`}getCustomSetupFunc(e){return(t,o)=>{this.index==null&&(this.index=t.getUniformLocation(o,"index")),t.gl.uniform1f(this.index,e)}}};function LO(r,e){if(r===1)return`${e}`;if(r===2)return`${e}.x, ${e}.y`;if(r===3)return`${e}.x, ${e}.y, ${e}.z`;if(r===4)return`${e}.x, ${e}.y, ${e}.z, ${e}.w`;throw Error(`Cumulative sum for rank ${r} is not yet supported`)}function zO(r,e){if(r===1)return`${e}`;if(r===2)return`${e}.y`;if(r===3)return`${e}.z`;if(r===4)return`${e}.w`;throw Error(`Cumulative sum for rank ${r} is not yet supported`)}function D9(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{axis:s,exclusive:a,reverse:i}=o,l=n.shape.length,u=S.getAxesPermutation([s],l),c=n;u!=null&&(c=Lt({inputs:{x:n},backend:t,attrs:{perm:u}}));let p=S.getInnerMostAxes(1,l)[0];if(p!==l-1)throw new Error(`WebGL cumsum shader expects an inner-most axis=${n.shape.length-1} but got axis=${s}`);let m=c.shape[p],f=Ht({inputs:{x:c},backend:t});for(let d=0;d<=Math.ceil(Math.log2(m))-1;d++){let h=new Hx(c.shape,!1,i),g=h.getCustomSetupFunc(d),x=f;f=t.runWebGLProgram(h,[f],f.dtype,g),t.disposeIntermediateTensorInfo(x)}if(a){let d=new Hx(c.shape,a,i),h=f;f=t.runWebGLProgram(d,[f],f.dtype),t.disposeIntermediateTensorInfo(h)}if(u!=null){let d=S.getUndoAxesPermutation(u),h=Lt({inputs:{x:f},backend:t,attrs:{perm:d}});return t.disposeIntermediateTensorInfo(f),t.disposeIntermediateTensorInfo(c),h}return f}var BO={kernelName:en,backendName:"webgl",kernelFunc:D9};function $9(r){let{inputs:e,backend:t,attrs:o}=r,{x:n,weights:s}=e,{size:a,binaryOutput:i}=o;if(n.shape.length===1){let l=t.readSync(n.dataId),u=t.readSync(s.dataId),c=Fx(l,u,s.dtype,s.shape,a);return t.makeTensorInfo([a],s.dtype,c)}else if(n.shape.length===2){let l=t.bufferSync(n),u=t.bufferSync(s),c=HR(l,u,a,i);return t.makeTensorInfo(c.shape,s.dtype,c.values)}throw new Error(`Error in denseBincount: input must be at most rank 2, but got rank${n.shape.length}.`)}var VO={kernelName:Hl,backendName:"webgl",kernelFunc:$9};var IC=class{constructor(e,t,o){this.variableNames=["x"],this.outputShape=[],this.outputShape=e,this.blockSize=t,this.dataFormat=o,this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
ivec4 coords = getOutputCoords();
int b = coords[0];
int h = ${this.getHeightCoordString()};
int w = ${this.getWidthCoordString()};
int d = ${this.getDepthCoordString()};
2021-01-12 16:01:34 +01:00
int in_h = h / ${t};
int offset_h = imod(h, ${t});
int in_w = w / ${t};
int offset_w = imod(w, ${t});
int offset_d = (offset_h * ${t} + offset_w) *
2020-12-15 14:15:43 +01:00
${this.getOutputDepthSize()};
int in_d = d + offset_d;
2020-12-15 14:15:43 +01:00
float result = ${this.getInputSamplingString()};
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}getHeightCoordString(){return this.dataFormat==="NHWC"?"coords[1]":"coords[2]"}getWidthCoordString(){return this.dataFormat==="NHWC"?"coords[2]":"coords[3]"}getDepthCoordString(){return this.dataFormat==="NHWC"?"coords[3]":"coords[1]"}getOutputDepthSize(){return this.dataFormat==="NHWC"?this.outputShape[3]:this.outputShape[1]}getInputSamplingString(){return this.dataFormat==="NHWC"?"getX(b, in_h, in_w, in_d)":"getX(b, in_d, in_h, in_w)"}};function R9(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{blockSize:s,dataFormat:a}=o;y.assert(s>1,()=>`blockSize should be > 1 for depthToSpace, but was: ${s}`);let i=n.shape[0],l=a==="NHWC"?n.shape[1]:n.shape[2],u=a==="NHWC"?n.shape[2]:n.shape[3],c=a==="NHWC"?n.shape[3]:n.shape[1],p=l*s,m=u*s,f=c/(s*s),d=a==="NHWC"?[i,p,m,f]:[i,f,p,m],h=new IC(d,s,a);return t.runWebGLProgram(h,[n],n.dtype)}var GO={kernelName:ti,backendName:"webgl",kernelFunc:R9};var ih=class{constructor(e,t=!1,o=null,n=!1,s=!1){this.variableNames=["x","W"],this.outputShape=e.outShape;let a=e.inHeight,i=e.inWidth,l=e.padInfo.top,u=e.padInfo.left,c=e.strideHeight,p=e.strideWidth,m=e.dilationHeight,f=e.dilationWidth,d=e.filterHeight,h=e.filterWidth,g=e.outChannels/e.inChannels,x="",w="";o&&(n?x=`float activation(float a) {
2020-12-15 14:15:43 +01:00
float b = getPreluActivationWeightsAtOutCoords();
2021-01-12 16:01:34 +01:00
${o}
2021-03-09 23:32:33 +01:00
}`:s?x=`float activation(float a) {
2020-12-15 14:15:43 +01:00
float b = getLeakyreluAlphaAtOutCoords();
2021-01-12 16:01:34 +01:00
${o}
2021-03-09 23:32:33 +01:00
}`:x=`
2020-12-15 14:15:43 +01:00
float activation(float x) {
2021-01-12 16:01:34 +01:00
${o}
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`,w="result = activation(result);");let b=t?"result += getBiasAtOutCoords();":"";t&&this.variableNames.push("bias"),n&&this.variableNames.push("preluActivationWeights"),s&&this.variableNames.push("leakyreluAlpha"),this.userCode=`
${x}
2021-01-12 16:01:34 +01:00
const ivec2 strides = ivec2(${c}, ${p});
const ivec2 pads = ivec2(${l}, ${u});
void main() {
ivec4 coords = getOutputCoords();
2020-12-15 14:15:43 +01:00
int batch = coords.x;
ivec2 xRCCorner = coords.yz * strides - pads;
int d2 = coords.w;
2021-01-12 16:01:34 +01:00
int d1 = d2 / ${g};
int q = d2 - d1 * ${g};
2020-12-15 14:15:43 +01:00
int xRCorner = xRCCorner.x;
int xCCorner = xRCCorner.y;
2020-12-15 14:15:43 +01:00
// Convolve x(?, ?, d1) with w(:, :, d1, q) to get y(yR, yC, d2).
// ? = to be determined. : = across all values in that axis.
float dotProd = 0.0;
// TO DO(dsmilkov): Flatten the two for loops and vec4 the operations.
2021-01-12 16:01:34 +01:00
for (int wR = 0; wR < ${d}; wR++) {
int xR = xRCorner + wR * ${m};
2021-01-12 16:01:34 +01:00
if (xR < 0 || xR >= ${a}) {
continue;
}
2021-01-12 16:01:34 +01:00
for (int wC = 0; wC < ${h}; wC++) {
int xC = xCCorner + wC * ${f};
2021-01-12 16:01:34 +01:00
if (xC < 0 || xC >= ${i}) {
continue;
}
2020-12-15 14:15:43 +01:00
float xVal = getX(batch, xR, xC, d1);
float wVal = getW(wR, wC, d1, q);
dotProd += xVal * wVal;
}
}
2020-12-15 14:15:43 +01:00
float result = dotProd;
2021-01-12 16:01:34 +01:00
${b}
2021-03-09 23:32:33 +01:00
${w}
2020-12-15 14:15:43 +01:00
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}};var ah=class{constructor(e,t=!1,o=null,n=!1,s=!1){this.variableNames=["x","W"],this.packedInputs=!0,this.packedOutput=!0,this.outputShape=e.outShape;let a=e.inHeight,i=e.inWidth,l=e.padInfo.top,u=e.padInfo.left,c=e.strideHeight,p=e.strideWidth,m=e.dilationHeight,f=e.dilationWidth,d=e.filterHeight,h=e.filterWidth,g=h,x="int xR; int xC; int xCOffset;";for(let k=0;k<d;k++)for(let A=0;A<h;A++)x+=`
vec4 xTexelR${k}C${A*2} = vec4(0.);
vec4 wR${k}C${A} = vec4(0.);
vec4 xR${k}C${A} = vec4(0.);`;for(let k=0;k<d;k++)for(let A=0;A<g;A++){let N=A*2;if(x+=`
xR = xRCorner + ${k*m};
xC = xCCorner + ${N*f};
`,p===1){if(N<h&&(u%2==1?x+=`
2020-12-15 14:15:43 +01:00
xCOffset = xC + 1;
2021-01-12 16:01:34 +01:00
if(xR >= 0 && xR < ${a} && xCOffset >= 0 && xCOffset < ${i}) {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N} = getX(batch, xR, xCOffset, d1);
2020-12-15 14:15:43 +01:00
// Need to manually clear unused channels in case
// we're reading from recycled texture.
2021-01-12 16:01:34 +01:00
if(xCOffset + 1 >= ${i}) {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N}.zw = vec2(0.);
2020-12-15 14:15:43 +01:00
}
} else {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N} = vec4(0.);
2020-12-15 14:15:43 +01:00
}
2020-12-15 14:15:43 +01:00
xCOffset = xC + 1 - 2;
2021-01-12 16:01:34 +01:00
if(xR >= 0 && xR < ${a} && xCOffset >= 0 && xCOffset < ${i}) {
2020-12-15 14:15:43 +01:00
vec4 previous = getX(batch, xR, xCOffset, d1);
2020-12-15 14:15:43 +01:00
// Need to manually clear unused channels in case
// we're reading from recycled texture.
2021-01-12 16:01:34 +01:00
if(xCOffset + 1 >= ${i}) {
2020-12-15 14:15:43 +01:00
previous.zw = vec2(0.);
}
2021-03-09 23:32:33 +01:00
xR${k}C${N} = vec4(previous.zw, xTexelR${k}C${N}.xy);
2020-12-15 14:15:43 +01:00
} else {
2021-03-09 23:32:33 +01:00
xR${k}C${N} = vec4(0, 0, xTexelR${k}C${N}.xy);
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`:x+=`
2021-01-12 16:01:34 +01:00
if(xR >= 0 && xR < ${a} && xC >= 0 && xC < ${i}) {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N} = getX(batch, xR, xC, d1);
2020-12-15 14:15:43 +01:00
} else {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N} = vec4(0.);
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
xR${k}C${N} = xTexelR${k}C${N};
`,N+1<h)){let $=u%2==0?y.nearestLargerEven(f):f;f%2==0&&u%2==1||f%2!=0&&u%2!=1?(x+=`
xCOffset = xC + ${u%2} + ${$};
2021-01-12 16:01:34 +01:00
if(xR >= 0 && xR < ${a} &&
xCOffset >= 0 && xCOffset < ${i}) {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N+2} = getX(batch, xR, xCOffset, d1);
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`,f>1&&(x+=`
2020-12-15 14:15:43 +01:00
xCOffset -= 2;
2021-01-12 16:01:34 +01:00
if(xR >= 0 && xR < ${a} &&
xCOffset >= 0 && xCOffset < ${i}) {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N} = getX(batch, xR, xCOffset, d1);
2020-12-15 14:15:43 +01:00
} else {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N} = vec4(0.);
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`),x+=`
xR${k}C${N+1} = vec4(
xTexelR${k}C${N}.zw, xTexelR${k}C${N+2}.xy);
`):x+=`
xCOffset = xC + ${$};
2021-01-12 16:01:34 +01:00
if(xR >= 0 && xR < ${a} &&
xCOffset >= 0 && xCOffset < ${i}) {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N+2} = getX(batch, xR, xCOffset, d1);
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
xR${k}C${N+1} = xTexelR${k}C${N+2};
`}}else N<h&&(x+=`
2021-01-12 16:01:34 +01:00
if(xR >= 0 && xR < ${a}) {
2021-03-09 23:32:33 +01:00
`,u%2==1?(x+=`
2021-01-12 16:01:34 +01:00
xCOffset = xC + 1 - ${p};
if(xCOffset >= 0 && xCOffset < ${i}) {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N} = getX(batch, xR, xCOffset, d1);
2020-12-15 14:15:43 +01:00
} else {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N} = vec4(0.);
2020-12-15 14:15:43 +01:00
}
2021-01-12 16:01:34 +01:00
if(xC + 1 >= 0 && xC + 1 < ${i}) {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N+2} = getX(batch, xR, xC + 1, d1);
2020-12-15 14:15:43 +01:00
} else {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N+2} = vec4(0.);
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
xR${k}C${N} = vec4(
xTexelR${k}C${N}.zw, xTexelR${k}C${N+2}.zw);
`,N+1<h&&(x+=`
2020-12-15 14:15:43 +01:00
vec4 final = vec4(0.);
2021-01-12 16:01:34 +01:00
xCOffset = xC + 1 + ${p};
if(xCOffset >= 0 && xCOffset < ${i}) {
2020-12-15 14:15:43 +01:00
final = getX(batch, xR, xCOffset, d1);
}
2021-03-09 23:32:33 +01:00
xR${k}C${N+1} = vec4(xTexelR${k}C${N+2}.xy, final.xy);
`)):(x+=`
2021-01-12 16:01:34 +01:00
if(xC >= 0 && xC < ${i}) {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N} = getX(batch, xR, xC, d1);
2020-12-15 14:15:43 +01:00
} else {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N} = vec4(0.);
2020-12-15 14:15:43 +01:00
}
2021-01-12 16:01:34 +01:00
xCOffset = xC + ${p};
if(xCOffset >= 0 && xCOffset < ${i}) {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N+2} = getX(batch, xR, xCOffset, d1);
2020-12-15 14:15:43 +01:00
} else {
2021-03-09 23:32:33 +01:00
xTexelR${k}C${N+2} = vec4(0.);
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
xR${k}C${N} = vec4(
xTexelR${k}C${N}.xy, xTexelR${k}C${N+2}.xy);
`,N+1<h&&(x+=`
xR${k}C${N+1} = vec4(
xTexelR${k}C${N}.zw, xTexelR${k}C${N+2}.zw);
`)),x+="}");N<h&&(x+=`
vec4 wTexelR${k}C${N} = getW(${k}, ${N}, d1, q);
wR${k}C${N} = vec4(wTexelR${k}C${N}.xz, wTexelR${k}C${N}.xz);
`,N+1<h&&(x+=`
vec4 wTexelR${k}C${N+1} = getW(${k}, ${N+1}, d1, q);
wR${k}C${N+1} =
vec4(wTexelR${k}C${N+1}.xz, wTexelR${k}C${N+1}.xz);`))}for(let k=0;k<d;k++)for(let A=0;A<h;A++)x+=`dotProd += xR${k}C${A} * wR${k}C${A};`;let w="",b="";o&&(n?w=`vec4 activation(vec4 a) {
2020-12-15 14:15:43 +01:00
vec4 b = getPreluActivationWeightsAtOutCoords();
2021-01-12 16:01:34 +01:00
${o}
2021-03-09 23:32:33 +01:00
}`:s?w=`vec4 activation(vec4 a) {
2020-12-15 14:15:43 +01:00
vec4 b = getLeakyreluAlphaAtOutCoords();
2021-01-12 16:01:34 +01:00
${o}
2021-03-09 23:32:33 +01:00
}`:w=`vec4 activation(vec4 x) {
2021-01-12 16:01:34 +01:00
${o}
2021-03-09 23:32:33 +01:00
}`,b="result = activation(result);");let _=t?"result += getBiasAtOutCoords();":"";t&&this.variableNames.push("bias"),n&&this.variableNames.push("preluActivationWeights"),s&&this.variableNames.push("leakyreluAlpha"),this.userCode=`
${w}
2021-01-12 16:01:34 +01:00
const ivec2 strides = ivec2(${c}, ${p});
const ivec2 pads = ivec2(${l}, ${u});
2020-12-15 14:15:43 +01:00
void main() {
2020-12-15 14:15:43 +01:00
ivec4 coords = getOutputCoords();
int batch = coords.x;
ivec2 xRCCorner = coords.yz * strides - pads;
int d2 = coords.w;
int d1 = d2;
int q = 0;
int xRCorner = xRCCorner.x;
int xCCorner = xRCCorner.y;
2020-12-15 14:15:43 +01:00
vec4 dotProd = vec4(0.);
2021-03-09 23:32:33 +01:00
${x}
2020-12-15 14:15:43 +01:00
vec4 result = dotProd;
2021-01-12 16:01:34 +01:00
${_}
2021-03-09 23:32:33 +01:00
${b}
2020-12-15 14:15:43 +01:00
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}};function F9(r){let{inputs:e,backend:t,attrs:o}=r,{x:n,filter:s}=e,{strides:a,pad:i,dilations:l,dimRoundingMode:u}=o,c=l;c==null&&(c=[1,1]),y.assert(S.eitherStridesOrDilationsAreOne(a,c),()=>`Error in depthwiseConv2d: Either strides or dilations must be 1. Got strides ${a} and dilations '${c}'`);let p=S.computeConv2DInfo(n.shape,s.shape,a,c,i,u,!0),m;return j().getBool("WEBGL_PACK_DEPTHWISECONV")&&p.strideWidth<=2&&p.outChannels/p.inChannels==1?m=new ah(p):m=new ih(p),t.runWebGLProgram(m,[n,s],"float32")}var WO={kernelName:tn,backendName:"webgl",kernelFunc:F9};var NC=class{constructor(e){this.variableNames=["x","dy"],this.outputShape=e.filterShape;let t=e.strideHeight,o=e.strideWidth,n=e.padInfo.top,s=e.padInfo.left,a=e.outChannels/e.inChannels;this.userCode=`
void main() {
ivec4 coords = getOutputCoords();
2020-12-15 14:15:43 +01:00
int wR = coords.x;
int wC = coords.y;
int d1 = coords.z;
int dm = coords.w;
2021-01-12 16:01:34 +01:00
int d2 = d1 * ${a} + dm;
2020-12-15 14:15:43 +01:00
float dotProd = 0.0;
2020-12-15 14:15:43 +01:00
// TO DO: Vec4 over the batch size
2021-01-12 16:01:34 +01:00
for (int b = 0; b < ${e.batchSize}; b++) {
for (int yR = 0; yR < ${e.outHeight}; yR++) {
int xR = wR + yR * ${t} - ${n};
2021-01-12 16:01:34 +01:00
if (xR < 0 || xR >= ${e.inHeight}) {
continue;
}
2021-01-12 16:01:34 +01:00
for (int yC = 0; yC < ${e.outWidth}; yC++) {
int xC = wC + yC * ${o} - ${s};
2021-01-12 16:01:34 +01:00
if (xC < 0 || xC >= ${e.inWidth}) {
2020-12-15 14:15:43 +01:00
continue;
}
2020-12-15 14:15:43 +01:00
float dyValue = getDy(b, yR, yC, d2);
float xValue = getX(b, xR, xC, d1);
dotProd += (xValue * dyValue);
}
}
}
2020-12-15 14:15:43 +01:00
setOutput(dotProd);
}
2021-03-09 23:32:33 +01:00
`}},SC=class{constructor(e){this.variableNames=["dy","W"],this.outputShape=e.inShape;let t=e.filterHeight,o=e.filterWidth,n=e.strideHeight,s=e.strideWidth,a=t-1-e.padInfo.top,i=o-1-e.padInfo.left,l=e.outChannels/e.inChannels;this.userCode=`
2021-01-12 16:01:34 +01:00
const ivec2 pads = ivec2(${a}, ${i});
void main() {
ivec4 coords = getOutputCoords();
2020-12-15 14:15:43 +01:00
int batch = coords[0];
int d1 = coords[3];
ivec2 dyCorner = coords.yz - pads;
int dyRCorner = dyCorner.x;
int dyCCorner = dyCorner.y;
2020-12-15 14:15:43 +01:00
float dotProd = 0.0;
2021-01-12 16:01:34 +01:00
for (int wR = 0; wR < ${t}; wR++) {
float dyR = float(dyRCorner + wR) / ${n}.0;
2021-01-12 16:01:34 +01:00
if (dyR < 0.0 || dyR >= ${e.outHeight}.0 || fract(dyR) > 0.0) {
2020-12-15 14:15:43 +01:00
continue;
}
2020-12-15 14:15:43 +01:00
int idyR = int(dyR);
2021-01-12 16:01:34 +01:00
int wRPerm = ${t} - 1 - wR;
2020-12-15 14:15:43 +01:00
2021-01-12 16:01:34 +01:00
for (int wC = 0; wC < ${o}; wC++) {
float dyC = float(dyCCorner + wC) / ${s}.0;
2020-12-15 14:15:43 +01:00
2021-01-12 16:01:34 +01:00
if (dyC < 0.0 || dyC >= ${e.outWidth}.0 ||
2020-12-15 14:15:43 +01:00
fract(dyC) > 0.0) {
continue;
}
int idyC = int(dyC);
2021-01-12 16:01:34 +01:00
int wCPerm = ${o} - 1 - wC;
2020-12-15 14:15:43 +01:00
// TO DO: Vec4 over the channelMul
2021-01-12 16:01:34 +01:00
for (int dm = 0; dm < ${l}; dm++) {
int d2 = d1 * ${l} + dm;
2020-12-15 14:15:43 +01:00
float xValue = getDy(batch, idyR, idyC, d2);
float wValue = getW(wRPerm, wCPerm, d1, dm);
dotProd += xValue * wValue;
}
}
}
2020-12-15 14:15:43 +01:00
setOutput(dotProd);
}
2021-03-09 23:32:33 +01:00
`}};function O9(r){let{inputs:e,backend:t,attrs:o}=r,{x:n,dy:s}=e,{strides:a,dilations:i,pad:l,dimRoundingMode:u,filterShape:c}=o,p=S.computeConv2DInfo(n.shape,c,a,i,l,u,!0),m=new NC(p);return t.runWebGLProgram(m,[n,s],"float32")}var UO={kernelName:ql,backendName:"webgl",kernelFunc:O9};function P9(r){let{inputs:e,backend:t,attrs:o}=r,{dy:n,filter:s}=e,{strides:a,dilations:i,pad:l,dimRoundingMode:u,inputShape:c}=o,p=S.computeConv2DInfo(c,s.shape,a,i,l,u,!0),m=new SC(p);return t.runWebGLProgram(m,[n,s],"float32")}var jO={kernelName:Kl,backendName:"webgl",kernelFunc:P9};var TC=class{constructor(e){this.variableNames=["X"],this.outputShape=[e,e],this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
ivec2 coords = getOutputCoords();
float val = coords[0] == coords[1] ? getX(coords[0]) : 0.0;
setOutput(val);
}
2021-03-09 23:32:33 +01:00
`}};function M9(r){let{inputs:e,backend:t}=r,{x:o}=e,n=[...o.shape,...o.shape],s=y.sizeFromShape(o.shape),a=pe({inputs:{x:o},backend:t,attrs:{shape:[s]}}),i=new TC(s),l=t.runWebGLProgram(i,[a],a.dtype),u=pe({inputs:{x:l},backend:t,attrs:{shape:n}});return t.disposeIntermediateTensorInfo(a),t.disposeIntermediateTensorInfo(l),u}var HO={kernelName:Xl,backendName:"webgl",kernelFunc:M9};var AC=class{constructor(e){this.variableNames=["x","W"],this.outputShape=e.outShape;let{inHeight:t,inWidth:o,padInfo:n,strideHeight:s,strideWidth:a,filterHeight:i,filterWidth:l,dilationHeight:u,dilationWidth:c}=e,{top:p,left:m}=n;this.userCode=`
2021-01-12 16:01:34 +01:00
const ivec2 strides = ivec2(${s}, ${a});
const ivec2 pads = ivec2(${p}, ${m});
2020-12-15 14:15:43 +01:00
const float neg_infinity = -3.4e38;
2020-12-15 14:15:43 +01:00
void main() {
ivec4 coords = getOutputCoords();
int batch = coords.x;
int d1 = coords.w;
ivec2 outTopLeftCorner =
coords.yz * strides - pads;
int hBeg = outTopLeftCorner.x;
int wBeg = outTopLeftCorner.y;
float curVal = neg_infinity;
2021-01-12 16:01:34 +01:00
for (int h = 0; h < ${i}; h++) {
int hIn = hBeg + h * ${u};
2020-12-15 14:15:43 +01:00
2021-01-12 16:01:34 +01:00
if (hIn >= 0 && hIn < ${t}) {
for (int w = 0; w < ${l}; w++) {
int wIn = wBeg + w * ${c};
2020-12-15 14:15:43 +01:00
2021-01-12 16:01:34 +01:00
if (wIn >= 0 && wIn < ${o}) {
2020-12-15 14:15:43 +01:00
float xVal = getX(batch, hIn, wIn, d1);
float wVal = getW(h, w, d1);
float val = xVal + wVal;
if (val > curVal) {
curVal = val;
}
}
}
}
}
2020-12-15 14:15:43 +01:00
float result = curVal;
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}};function L9(r){let{inputs:e,backend:t,attrs:o}=r,{x:n,filter:s}=e,{strides:a,pad:i,dilations:l}=o,u=S.computeDilation2DInfo(n.shape,s.shape,a,i,"NHWC",l),c,p=new AC(u);c=t.runWebGLProgram(p,[n,s],"float32");let m=pe({inputs:{x:c},backend:t,attrs:{shape:u.outShape}});return t.disposeIntermediateTensorInfo(c),m}var qO={kernelName:sa,backendName:"webgl",kernelFunc:L9};var z9="return (x >= 0.0) ? x : (exp(x) - 1.0);",B9=`
2020-12-15 14:15:43 +01:00
vec4 result;
2020-12-15 14:15:43 +01:00
result.r = (x.r >= 0.0) ? x.r : (exp(x.r) - 1.0);
result.g = (x.g >= 0.0) ? x.g : (exp(x.g) - 1.0);
result.b = (x.b >= 0.0) ? x.b : (exp(x.b) - 1.0);
result.a = (x.a >= 0.0) ? x.a : (exp(x.a) - 1.0);
2020-12-15 14:15:43 +01:00
return result;
2021-03-09 23:32:33 +01:00
`,V9=_e({opSnippet:z9,packedOpSnippet:B9}),KO={kernelName:ri,backendName:"webgl",kernelFunc:V9};var G9="return (b >= 1.0) ? a : a * (b + 1.0);",W9=`
2020-12-15 14:15:43 +01:00
vec4 bGTEZero = vec4(greaterThanEqual(b, vec4(0.)));
return (bGTEZero * a) + ((vec4(1.0) - bGTEZero) * (a * (b + vec4(1.0))));
2021-03-09 23:32:33 +01:00
`,U9=r=>{let{inputs:e,backend:t}=r,{dy:o,y:n}=e,s=j().getBool("WEBGL_PACK_BINARY_OPERATIONS")?new Gs(W9,o.shape,n.shape):new rs(G9,o.shape,n.shape);return t.runWebGLProgram(s,[o,n],o.dtype)},XO={kernelName:Yl,backendName:"webgl",kernelFunc:U9};var j9=`
2020-12-15 14:15:43 +01:00
return vec4(equal(a, b));
2021-03-09 23:32:33 +01:00
`,H9="return float(a == b);",q9=nt({opSnippet:H9,packedOpSnippet:j9,dtype:"bool"}),YO={kernelName:ni,backendName:"webgl",kernelFunc:q9};var K9=`
2020-12-15 14:15:43 +01:00
// Error function is calculated approximately with elementary function.
// See "Handbook of Mathematical Functions with Formulas,
// Graphs, and Mathematical Tables", Abramowitz and Stegun.
2021-03-09 23:32:33 +01:00
float p = ${S.ERF_P};
float a1 = ${S.ERF_A1};
float a2 = ${S.ERF_A2};
float a3 = ${S.ERF_A3};
float a4 = ${S.ERF_A4};
float a5 = ${S.ERF_A5};
2020-12-15 14:15:43 +01:00
float sign = sign(x);
x = abs(x);
float t = 1.0 / (1.0 + p * x);
return sign * (1.0 - (((((a5*t + a4)*t) + a3)*t + a2)*t + a1)*t*exp(-x*x));
2021-03-09 23:32:33 +01:00
`,X9=_e({opSnippet:K9}),ZO={kernelName:oi,backendName:"webgl",kernelFunc:X9};var JO="return exp(x);",EC=_e({opSnippet:JO,packedOpSnippet:JO,cpuKernelImpl:XR}),QO={kernelName:on,backendName:"webgl",kernelFunc:EC};function qx(r){let{inputs:e,attrs:t,backend:o}=r,{dim:n}=t,{input:s}=e,a=s.shape.length,i=s.shape.slice(),l=n;return n<0&&(y.assert(-(a+1)<=n,()=>`Axis must be in the interval [${-(a+1)}, ${a}]`),l=a+n+1),i.splice(l,0,1),pe({inputs:{x:s},backend:o,attrs:{shape:i}})}var eP={kernelName:us,backendName:"webgl",kernelFunc:qx};var tP="return exp(x) - 1.0;",Y9=_e({opSnippet:tP,packedOpSnippet:tP,cpuKernelImpl:YR}),rP={kernelName:si,backendName:"webgl",kernelFunc:Y9};var Kx=class{constructor(e,t,o){this.variableNames=["real","imag"];let n=t[1];this.outputShape=t;let s=o?`2.0 * ${Math.PI}`:`-2.0 * ${Math.PI}`,a=o?`${n}.0`:"1.0",i;if(e==="real")i="return real * expR - imag * expI;";else if(e==="imag")i="return real * expI + imag * expR;";else throw new Error(`FFT component must be either "real" or "imag", got ${e}.`);this.userCode=`
2021-01-12 16:01:34 +01:00
const float exponentMultiplier = ${s};
2020-12-15 14:15:43 +01:00
float unaryOpComplex(float real, float expR, float imag, float expI) {
2021-01-12 16:01:34 +01:00
${i}
2020-12-15 14:15:43 +01:00
}
2020-12-15 14:15:43 +01:00
float mulMatDFT(int batch, int index) {
2021-01-12 16:01:34 +01:00
float indexRatio = float(index) / float(${n});
2020-12-15 14:15:43 +01:00
float exponentMultiplierTimesIndexRatio =
exponentMultiplier * indexRatio;
2020-12-15 14:15:43 +01:00
float result = 0.0;
2021-01-12 16:01:34 +01:00
for (int i = 0; i < ${n}; i++) {
2020-12-15 14:15:43 +01:00
// x = (-2|2 * PI / N) * index * i;
float x = exponentMultiplierTimesIndexRatio * float(i);
float expR = cos(x);
float expI = sin(x);
float real = getReal(batch, i);
float imag = getImag(batch, i);
2020-12-15 14:15:43 +01:00
result +=
2021-01-12 16:01:34 +01:00
unaryOpComplex(real, expR, imag, expI) / ${a};
2020-12-15 14:15:43 +01:00
}
2020-12-15 14:15:43 +01:00
return result;
}
2020-12-15 14:15:43 +01:00
void main() {
ivec2 coords = getOutputCoords();
setOutput(mulMatDFT(coords[0], coords[1]));
}
2021-03-09 23:32:33 +01:00
`}};function Xx(r,e,t){let o=t.texData.get(r.dataId),n=y.sizeFromShape(r.shape),s=r.shape[r.shape.length-1],a=n/s,i=pe({inputs:{x:r},backend:t,attrs:{shape:[a,s]}}),l=i.shape,u=new Kx("real",l,e),c=new Kx("imag",l,e),p=[{dataId:o.complexTensorInfos.real.dataId,dtype:o.complexTensorInfos.real.dtype,shape:l},{dataId:o.complexTensorInfos.imag.dataId,dtype:o.complexTensorInfos.imag.dtype,shape:l}],m=t.runWebGLProgram(u,p,"float32"),f=t.runWebGLProgram(c,p,"float32"),d=go({inputs:{real:m,imag:f},backend:t});t.disposeIntermediateTensorInfo(m),t.disposeIntermediateTensorInfo(f);let h=pe({inputs:{x:d},backend:t,attrs:{shape:r.shape}});return t.disposeIntermediateTensorInfo(i),t.disposeIntermediateTensorInfo(d),h}function Z9(r){let{inputs:e,backend:t}=r,{input:o}=e;return Xx(o,!1,t)}var oP={kernelName:Zl,backendName:"webgl",kernelFunc:Z9};var DC=class{constructor(e,t){this.outputShape=[],this.variableNames=["x"],this.outputShape=e,this.userCode=`
2020-12-15 14:15:43 +01:00
uniform float value;
void main() {
// Input can be obtained from uniform value.
setOutput(value);
}
2021-03-09 23:32:33 +01:00
`}getCustomSetupFunc(e){return(t,o)=>{this.valueLoc==null&&(this.valueLoc=t.getUniformLocationNoThrow(o,"value")),t.gl.uniform1f(this.valueLoc,e)}}};function lh(r){let{backend:e,attrs:t}=r,{shape:o,value:n}=t,{dtype:s}=t;if(s=s||y.inferDtype(n),s==="string"){let a=y.getArrayFromDType(s,y.sizeFromShape(o));return a.fill(n),e.makeTensorInfo(o,s,a)}else{let a=new DC(o,n),i=a.getCustomSetupFunc(n);return e.runWebGLProgram(a,[],s,i)}}var nP={kernelName:ia,backendName:"webgl",kernelFunc:lh};var $C=class{constructor(e){this.variableNames=["Image"],this.outputShape=[];let t=e[2];this.outputShape=e,this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
ivec4 coords = getOutputCoords();
int x = coords[2];
2021-01-12 16:01:34 +01:00
int coordX = ${t} - x;
2020-12-15 14:15:43 +01:00
float outputValue;
2021-01-12 16:01:34 +01:00
if(coordX >= 0 && coordX < ${t}) {
2020-12-15 14:15:43 +01:00
outputValue = getImage(coords[0], coords[1], coordX, coords[3]);
} else {
outputValue = getImage(coords[0], coords[1], coords[2], coords[3]);
}
setOutput(outputValue);
}
2021-03-09 23:32:33 +01:00
`}};var sP={kernelName:ii,backendName:"webgl",kernelFunc:({inputs:r,backend:e})=>{let{image:t}=r,o=e,n=new $C(t.shape);return o.runWebGLProgram(n,[t],t.dtype)}};var iP="return floor(x);",J9=_e({opSnippet:iP,packedOpSnippet:iP,cpuKernelImpl:ZR}),aP={kernelName:nn,backendName:"webgl",kernelFunc:J9};var Q9=`
2020-12-15 14:15:43 +01:00
float s = sign(a) * sign(b);
int ia = round(a);
int ib = round(b);
if (ib != 0) {
// Windows (D3D) wants guaranteed non-zero int division at compile-time.
return float(idiv(ia, ib, s));
} else {
return NAN;
}
2021-03-09 23:32:33 +01:00
`,eZ=`
2020-12-15 14:15:43 +01:00
ivec4 ia = round(a);
ivec4 ib = round(b);
bvec4 cond = notEqual(ib, ivec4(0));
ivec4 result = ivec4(0);
vec4 s = sign(a) * sign(b);
2020-12-15 14:15:43 +01:00
// Windows (D3D) wants guaranteed non-zero int division at compile-time.
if (cond[0]) {
result[0] = idiv(ia[0], ib[0], s[0]);
}
if (cond[1]) {
result[1] = idiv(ia[1], ib[1], s[1]);
}
if (cond[2]) {
result[2] = idiv(ia[2], ib[2], s[2]);
}
if (cond[3]) {
result[3] = idiv(ia[3], ib[3], s[3]);
}
return vec4(result);
2021-03-09 23:32:33 +01:00
`,tZ=nt({opSnippet:Q9,packedOpSnippet:eZ,dtype:"int32"}),lP={kernelName:sn,backendName:"webgl",kernelFunc:tZ};var RC=class{constructor(e){this.variableNames=["A"];let t=Pt(),[o,n]=e;this.outputShape=e,this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
ivec3 coords = getOutputCoords();
int texR = coords[0];
int texC = coords[1];
int depth = coords[2];
2021-01-12 16:01:34 +01:00
vec2 uv = (vec2(texC, texR) + halfCR) / vec2(${n}.0, ${o}.0);
2021-01-12 16:01:34 +01:00
vec4 values = ${t.texture2D}(A, uv);
2020-12-15 14:15:43 +01:00
float value;
if (depth == 0) {
value = values.r;
} else if (depth == 1) {
value = values.g;
} else if (depth == 2) {
value = values.b;
} else if (depth == 3) {
value = values.a;
}
2020-12-15 14:15:43 +01:00
setOutput(floor(value * 255.0 + 0.5));
}
2021-03-09 23:32:33 +01:00
`}};var FC=class{constructor(e){this.variableNames=["A"],this.packedInputs=!1,this.packedOutput=!0;let t=Pt(),[o,n]=e;this.outputShape=e,this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
ivec3 coords = getOutputCoords();
int texR = coords[0];
int texC = coords[1];
int depth = coords[2];
vec4 result = vec4(0.);
for(int row=0; row<=1; row++) {
for(int col=0; col<=1; col++) {
texC = coords[1] + row;
depth = coords[2] + col;
vec2 uv = (vec2(texC, texR) + halfCR) /
2021-01-12 16:01:34 +01:00
vec2(${n}.0, ${o}.0);
vec4 values = ${t.texture2D}(A, uv);
2020-12-15 14:15:43 +01:00
float value;
if (depth == 0) {
value = values.r;
} else if (depth == 1) {
value = values.g;
} else if (depth == 2) {
value = values.b;
} else if (depth == 3) {
value = values.a;
}
result[row * 2 + col] = floor(value * 255.0 + 0.5);
}
}
2021-01-12 16:01:34 +01:00
${t.output} = result;
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`}};var uP={kernelName:Pc,backendName:"webgl",kernelFunc:rZ},Xp;function rZ(r){let{inputs:e,backend:t,attrs:o}=r,{pixels:n}=e,{numChannels:s}=o,a=typeof HTMLVideoElement!="undefined"&&n instanceof HTMLVideoElement,i=typeof HTMLImageElement!="undefined"&&n instanceof HTMLImageElement,[l,u]=a?[n.videoWidth,n.videoHeight]:[n.width,n.height],c=[u,l],p=[u,l,s];(i||a)&&(Xp==null&&(Xp=document.createElement("canvas").getContext("2d")),Xp.canvas.width=l,Xp.canvas.height=u,Xp.drawImage(n,0,0,l,u),n=Xp.canvas);let m=t.makeTensorInfo(c,"int32");t.texData.get(m.dataId).usage=Dr.PIXELS,t.gpgpu.uploadPixelDataToTexture(t.getTexture(m.dataId),n);let f=j().getBool("WEBGL_PACK")?new FC(p):new RC(p),d=t.runWebGLProgram(f,[m],"int32");return t.disposeData(m.dataId),d}function oZ(r){let{inputs:e,backend:t,attrs:o}=r,{x:n,filter:s,bias:a,preluActivationWeights:i}=e,{strides:l,pad:u,dataFormat:c,dilations:p,dimRoundingMode:m,activation:f,leakyreluAlpha:d}=o,h=S.convertConv2DDataFormat(c),g=S.computeConv2DInfo(n.shape,s.shape,l,p,u,m,!1,h),x,w=[];if(g.filterHeight===1&&g.filterWidth===1&&g.dilationHeight===1&&g.dilationWidth===1&&g.strideHeight===1&&g.strideWidth===1&&(g.padInfo.type==="SAME"||g.padInfo.type==="VALID"))x=Ux({x:n,filter:s,convInfo:g,backend:t,bias:a,activation:f,preluActivationWeights:i,leakyreluAlpha:d});else if(j().getBool("WEBGL_CONV_IM2COL")&&n.shape[0]===1)x=jx({x:n,filter:s,convInfo:g,backend:t,bias:a,activation:f,preluActivationWeights:i,leakyreluAlpha:d});else{let _=a!=null,k=i!=null,A=f==="leakyrelu",N=f?Tl(f,!1):null,$=new sh(g,_,N,k,A),F=[n,s];if(a&&F.push(a),i&&F.push(i),A){let M=t.makeTensorInfo([],"float32",y.createScalarValue(d,"float32"));F.push(M),w.push(M)}x=t.runWebGLProgram($,F,"float32")}let b=pe({inputs:{x},backend:t,attrs:{shape:g.outShape}});return w.push(x),w.forEach(_=>t.disposeIntermediateTensorInfo(_)),b}var cP={kernelName:_s,backendName:"webgl",kernelFunc:oZ};function nZ(r){let{inputs:e,backend:t,attrs:o}=r,{x:n,filter:s,bias:a,preluActivationWeights:i}=e,{strides:l,pad:u,dilations:c,dimRoundingMode:p,activation:m,leakyreluAlpha:f}=o,d=[],h=c;h==null&&(h=[1,1]),y.assert(S.eitherStridesOrDilationsAreOne(l,h),()=>`Error in depthwiseConv2d: Either strides or dilations must be 1. Got strides ${l} and dilations '${h}'`);let g=S.computeConv2DInfo(n.shape,s.shape,l,h,u,p,!0),x=j().getBool("WEBGL_PACK_DEPTHWISECONV")&&g.strideWidth<=2&&g.outChannels/g.inChannels==1,w=m?Tl(m,x):null,b=[n,s],_=a!=null,k=i!=null,A=m==="leakyrelu";if(_&&b.push(a),k&&b.push(i),A){let F=t.makeTensorInfo([],"float32",y.createScalarValue(f,"float32"));b.push(F),d.push(F)}let N;x?N=new ah(g,_,w,k,A):N=new ih(g,_,w,k,A);let $=t.runWebGLProgram(N,b,"float32");return d.forEach(F=>t.disposeIntermediateTensorInfo(F)),$}var pP={kernelName:ks,backendName:"webgl",kernelFunc:nZ};var OC=class{constructor(e,t,o){this.sliceDim=e,this.strides=t,this.variableNames=["x","indices"],this.outputShape=o;let n=Le(t.length),s=Le(o.length),a=this.sliceDim>1?"strides[j]":"strides";this.userCode=`
2021-01-12 16:01:34 +01:00
${n} strides = ${n}(${this.strides});
2020-12-15 14:15:43 +01:00
void main() {
2021-01-12 16:01:34 +01:00
${s} coords = getOutputCoords();
2020-12-15 14:15:43 +01:00
int flattenIndex = 0;
for (int j = 0; j < ${this.sliceDim}; j++) {
int index = round(getIndices(coords[0], j));
2021-01-12 16:01:34 +01:00
flattenIndex += index * ${a};
2020-12-15 14:15:43 +01:00
}
setOutput(getX(flattenIndex, coords[1]));
}
2021-03-09 23:32:33 +01:00
`}};function sZ(r){let{inputs:e,backend:t}=r,{params:o,indices:n}=e,s=n.shape,a=s[s.length-1],[i,l,u,c]=S.prepareAndValidate(o,n),p=pe({inputs:{x:n},backend:t,attrs:{shape:[l,a]}}),m=pe({inputs:{x:o},backend:t,attrs:{shape:[y.sizeFromShape(o.shape)/u,u]}}),f=new OC(a,c,[l,u]),d=t.runWebGLProgram(f,[m,p],m.dtype),h=pe({inputs:{x:d},backend:t,attrs:{shape:i}});return t.disposeIntermediateTensorInfo(p),t.disposeIntermediateTensorInfo(m),t.disposeIntermediateTensorInfo(d),h}var mP={kernelName:ai,backendName:"webgl",kernelFunc:sZ};var PC=class{constructor(e,t){this.variableNames=["A","indices"],this.outputShape=t,this.rank=t.length;let o=Le(this.rank),n=iZ(e,2);this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
2021-01-12 16:01:34 +01:00
${o} resRC = getOutputCoords();
setOutput(getA(${n}));
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`}};function iZ(r,e){let t=["resRC.x","resRC.y","resRC.z","resRC.w"],o=[];for(let n=0;n<r.length;n++)n===2?o.push("int(getIndices(resRC.x, resRC.z))"):o.push(`${t[n]}`);return o.join()}function aZ(r){let{inputs:e,backend:t,attrs:o}=r,{x:n,indices:s}=e,{axis:a,batchDims:i}=o,l=y.parseAxisParam(a,n.shape)[0],u=S.segment_util.collectGatherOpShapeInfo(n,s,l,i),c=y.sizeFromShape(s.shape),p=[],m=pe({inputs:{x:n},backend:t,attrs:{shape:[u.batchSize,u.outerSize,u.dimSize,u.sliceSize]}}),f=pe({inputs:{x:s},backend:t,attrs:{shape:[u.batchSize,c/u.batchSize]}});p.push(m),p.push(f);let d=[u.batchSize,u.outerSize,c/u.batchSize,u.sliceSize];if(t.shouldExecuteOnCPU([n,s])||n.dtype==="string"){let w=t.bufferSync(f),b=t.bufferSync(m),_=JR(b,w,d);return p.forEach(k=>t.disposeIntermediateTensorInfo(k)),t.makeTensorInfo(u.outputShape,_.dtype,_.values)}let h=new PC(m.shape,d),g=t.runWebGLProgram(h,[m,f],m.dtype);p.push(g);let x=pe({inputs:{x:g},backend:t,attrs:{shape:u.outputShape}});return p.forEach(w=>t.disposeIntermediateTensorInfo(w)),x}var fP={kernelName:cs,backendName:"webgl",kernelFunc:aZ};var lZ="return float(a > b);",uZ=`
2020-12-15 14:15:43 +01:00
return vec4(greaterThan(a, b));
2021-03-09 23:32:33 +01:00
`,cZ=nt({opSnippet:lZ,packedOpSnippet:uZ,cpuKernelImpl:QR,dtype:"bool"}),dP={kernelName:li,backendName:"webgl",kernelFunc:cZ};var pZ="return float(a >= b);",mZ=`
2020-12-15 14:15:43 +01:00
return vec4(greaterThanEqual(a, b));
2021-03-09 23:32:33 +01:00
`,fZ=nt({opSnippet:pZ,packedOpSnippet:mZ,dtype:"bool"}),hP={kernelName:ln,backendName:"webgl",kernelFunc:fZ};function dZ(r){let{inputs:e,backend:t}=r,{input:o}=e;return Xx(o,!0,t)}var gP={kernelName:Jl,backendName:"webgl",kernelFunc:dZ};var hZ="return float(!isnan(x) && !isinf(x));",gZ=_e({opSnippet:hZ,dtype:"bool"}),xP={kernelName:ui,backendName:"webgl",kernelFunc:gZ};var xZ="return float(isinf(x));",yZ=_e({opSnippet:xZ,dtype:"bool"}),yP={kernelName:ci,backendName:"webgl",kernelFunc:yZ};var bZ="return float(isnan(x));",wZ=_e({opSnippet:bZ,dtype:"bool"}),bP={kernelName:pi,backendName:"webgl",kernelFunc:wZ};var _Z="return float(a < b);",kZ=`
2020-12-15 14:15:43 +01:00
return vec4(lessThan(a, b));
2021-03-09 23:32:33 +01:00
`,vZ=nt({opSnippet:_Z,packedOpSnippet:kZ,cpuKernelImpl:eF,dtype:"bool"}),wP={kernelName:mi,backendName:"webgl",kernelFunc:vZ};var CZ="return float(a <= b);",IZ=`
2020-12-15 14:15:43 +01:00
return vec4(lessThanEqual(a, b));
2021-03-09 23:32:33 +01:00
`,NZ=nt({opSnippet:CZ,packedOpSnippet:IZ,dtype:"bool"}),_P={kernelName:fi,backendName:"webgl",kernelFunc:NZ};function SZ(r){let{backend:e,attrs:t}=r,{start:o,stop:n,num:s}=t,a=tF(o,n,s);return e.makeTensorInfo([a.length],"float32",a)}var kP={kernelName:eu,backendName:"webgl",kernelFunc:SZ};var TZ=`if (x < 0.0) return NAN;
return log(x);`,AZ=`
2020-12-15 14:15:43 +01:00
vec4 result = log(x);
vec4 isNaN = vec4(lessThan(x, vec4(0.0)));
result.r = isNaN.r == 1.0 ? NAN : result.r;
result.g = isNaN.g == 1.0 ? NAN : result.g;
result.b = isNaN.b == 1.0 ? NAN : result.b;
result.a = isNaN.a == 1.0 ? NAN : result.a;
return result;
2021-03-09 23:32:33 +01:00
`,EZ=_e({opSnippet:TZ,packedOpSnippet:AZ,cpuKernelImpl:rF}),vP={kernelName:cn,backendName:"webgl",kernelFunc:EZ};var DZ="return log(1.0 + x);",$Z=_e({opSnippet:DZ}),CP={kernelName:di,backendName:"webgl",kernelFunc:$Z};var RZ="return float(a >= 1.0 && b >= 1.0);",FZ=`
2020-12-15 14:15:43 +01:00
return vec4(
vec4(greaterThanEqual(a, vec4(1.0))) *
vec4(greaterThanEqual(b, vec4(1.0))));
2021-03-09 23:32:33 +01:00
`,OZ=nt({opSnippet:RZ,packedOpSnippet:FZ,dtype:"bool"}),IP={kernelName:hi,backendName:"webgl",kernelFunc:OZ};var PZ="return float(!(x >= 1.0));",MZ=_e({opSnippet:PZ}),NP={kernelName:Ya,backendName:"webgl",kernelFunc:MZ};var LZ="return float(a >= 1.0 || b >= 1.0);",zZ=`
2020-12-15 14:15:43 +01:00
return min(
vec4(greaterThanEqual(a, vec4(1.0))) +
vec4(greaterThanEqual(b, vec4(1.0))),
vec4(1.0));
2021-03-09 23:32:33 +01:00
`,BZ=nt({opSnippet:LZ,packedOpSnippet:zZ,dtype:"bool"}),SP={kernelName:Za,backendName:"webgl",kernelFunc:BZ};var MC=class{constructor(e,t,o,n,s){this.variableNames=["x"],this.outputShape=[];let a=t,i=e[3]-1;this.outputShape=e;let l,u=`float(${o}) + float(${n}) * sum`;s===.5?l=`inversesqrt(${u})`:s===1?l=`1.0/(${u})`:l=`exp(log(${u}) * float(-${s}));`,this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
ivec4 coords = getOutputCoords();
int b = coords[0];
int r = coords[1];
int c = coords[2];
int d = coords[3];
float x = getX(b, r, c, d);
float sum = 0.0;
2021-01-12 16:01:34 +01:00
for (int j = -${a}; j <= ${a}; j++) {
2020-12-15 14:15:43 +01:00
int idx = d + j;
2021-01-12 16:01:34 +01:00
if (idx >= 0 && idx <= ${i}) {
2020-12-15 14:15:43 +01:00
float z = getX(b, r, c, idx);
sum += z * z;
}
}
2021-01-12 16:01:34 +01:00
float val = x * ${l};
2020-12-15 14:15:43 +01:00
setOutput(val);
}
2021-03-09 23:32:33 +01:00
`}};var LC=class{constructor(e,t,o,n,s){this.variableNames=["x"],this.outputShape=[],this.packedInputs=!0,this.packedOutput=!0;let a=t,i=e[3]-1;this.outputShape=e;let l,u=`float(${o}) + float(${n}) * sum`;s===.5?l=`inversesqrt(${u})`:s===1?l=`1.0/(${u})`:l=`exp(log(${u}) * float(-${s}));`,this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
ivec4 coords = getOutputCoords();
int b = coords.x;
int r = coords.y;
int c = coords.z;
int d = coords.w;
bool hasNextCol = d < ${this.outputShape[3]};
bool hasNextRow = c < ${this.outputShape[2]};
vec4 sum = vec4(0.);
vec4 xFragAtOutputCoords = getX(b, r, c, d);
vec4 xAtOutputCoords = vec4(
getChannel(xFragAtOutputCoords, vec2(c, d)),
hasNextCol ?
getChannel(xFragAtOutputCoords, vec2(c, d + 1)) : 0.0,
hasNextRow ?
getChannel(xFragAtOutputCoords , vec2(c + 1, d)) : 0.0,
(hasNextRow && hasNextCol) ?
getChannel(xFragAtOutputCoords, vec2(c + 1, d + 1)) : 0.0
);
2021-01-12 16:01:34 +01:00
int firstChannel = d - ${a};
2020-12-15 14:15:43 +01:00
vec2 cache = vec2(0.);
if(firstChannel >= 0){
vec4 firstChannelFrag = getX(b, r, c, firstChannel);
cache.x = getChannel(firstChannelFrag, vec2(c, firstChannel));
if(hasNextRow){
cache.y = getChannel(firstChannelFrag, vec2(c + 1, firstChannel));
}
}
ivec2 depth = ivec2(d, d + 1);
2021-01-12 16:01:34 +01:00
for (int j = - ${a}; j <= ${a}; j++) {
2020-12-15 14:15:43 +01:00
ivec2 idx = depth + j;
bvec2 aboveLowerBound = greaterThanEqual(idx, ivec2(0));
2021-01-12 16:01:34 +01:00
bvec2 belowUpperBound = lessThanEqual(idx, ivec2(${i}));
2020-12-15 14:15:43 +01:00
bool depthInRange = aboveLowerBound.x && belowUpperBound.x;
bool depthPlusOneInRange = aboveLowerBound.y && belowUpperBound.y;
if(depthInRange || depthPlusOneInRange){
vec4 z = vec4(0.);
vec4 xFragAtCurrentDepth;
z.xz = cache.xy;
if(depthPlusOneInRange && hasNextCol){
xFragAtCurrentDepth = idx.y != d ?
getX(b, r, c, idx.y) : xFragAtOutputCoords;
z.y = getChannel(xFragAtCurrentDepth, vec2(c, idx.y));
if(hasNextRow){
z.w = getChannel(xFragAtCurrentDepth, vec2(c + 1, idx.y));
}
}
cache.xy = z.yw;
sum += z * z;
}
}
2021-01-12 16:01:34 +01:00
vec4 result = xAtOutputCoords * ${l};
2020-12-15 14:15:43 +01:00
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}};var VZ=r=>{let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{depthRadius:s,bias:a,alpha:i,beta:l}=o,u=j().getBool("WEBGL_PACK_NORMALIZATION")?new LC(n.shape,s,a,i,l):new MC(n.shape,s,a,i,l);return t.runWebGLProgram(u,[n],n.dtype)},TP={kernelName:aa,backendName:"webgl",kernelFunc:VZ};var zC=class{constructor(e,t,o,n,s){this.variableNames=["inputImage","outputImage","dy"],this.outputShape=[],this.outputShape=e,this.depth=e[3],this.depthRadius=t,this.bias=o,this.alpha=n,this.beta=s,this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
ivec4 coords = getOutputCoords();
int b = coords[0];
int r = coords[1];
int c = coords[2];
float result = 0.0;
for (int d = 0; d < ${this.depth}; ++d) {
2021-01-12 16:01:34 +01:00
int depthBegin = int(max(0.0, float(d - ${t})));
2020-12-15 14:15:43 +01:00
int depthEnd = int(min(float(${this.depth}),
2021-01-12 16:01:34 +01:00
float(d + ${t} + 1)));
2020-12-15 14:15:43 +01:00
const int MIN_DEPTH_BEGIN = 0;
const int MAX_DEPTH_END = ${this.depth};
float norm = 0.0;
for (int k = MIN_DEPTH_BEGIN; k < MAX_DEPTH_END; ++k) {
if (k < depthBegin){
continue;
}
else if (k >= depthBegin && k < depthEnd) {
norm += getInputImage(b, r, c, k) * getInputImage(b, r, c, k);
}
else {
break;
}
}
2021-01-12 16:01:34 +01:00
norm = float(${n}) * norm + float(${o});
2020-12-15 14:15:43 +01:00
for(int k = MIN_DEPTH_BEGIN; k < MAX_DEPTH_END; ++k){
if (k < depthBegin){
continue;
}
else if (k >= depthBegin && k < depthEnd){
2021-01-12 16:01:34 +01:00
float dyi = -2.0 * float(${n})
* float(${s})
2020-12-15 14:15:43 +01:00
* getInputImage(b ,r ,c, k) * getOutputImage(b, r, c, d)
/ norm;
if (k == d) {
2021-01-12 16:01:34 +01:00
dyi += pow(norm, -1.0 * ${s});
2020-12-15 14:15:43 +01:00
}
if (k == coords[3]) {
dyi *= getDy(b, r, c, d);
result += dyi;
}
}
else {
break;
}
}
}
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}};var GZ=r=>{let{inputs:e,backend:t,attrs:o}=r,{x:n,y:s,dy:a}=e,{depthRadius:i,bias:l,alpha:u,beta:c}=o,p=new zC(n.shape,i,l,u,c);return t.runWebGLProgram(p,[n,s,a],n.dtype)},AP={kernelName:tu,backendName:"webgl",kernelFunc:GZ};function EP(r,e,t,o){let n=y.sizeFromShape(e),a=y.sizeFromShape(r.shape)/n,i=pe({inputs:{x:r},attrs:{shape:[a,n]},backend:o}),l=To(i,r.dtype,"max",o),u=pe({inputs:{x:l},attrs:{shape:t},backend:o});return o.disposeIntermediateTensorInfo(i),o.disposeIntermediateTensorInfo(l),u}function BC(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{reductionIndices:s,keepDims:a}=o,i=n.shape.length,l=y.parseAxisParam(s,n.shape),u=l,c=S.getAxesPermutation(u,i),p=c!=null,m=t.shouldExecuteOnCPU([n]),f=n;if(p){if(m){let b=t.texData.get(f.dataId).values,_=new Array(i);for(let N=0;N<_.length;N++)_[N]=n.shape[c[N]];let k=qp(b,n.shape,n.dtype,c,_);f=t.makeTensorInfo(_,n.dtype);let A=t.texData.get(f.dataId);A.values=k}else f=Al(n,c,t);u=S.getInnerMostAxes(u.length,i)}S.assertAxesAreInnerMostDims("max",u,i);let[d,h]=S.computeOutAndReduceShapes(f.shape,u),g=d;a&&(g=S.expandShapeToKeepDim(d,l));let x;if(m){let b=t.texData.get(f.dataId).values,_=oF(b,y.sizeFromShape(h),g,n.dtype);x=t.makeTensorInfo(g,n.dtype);let k=t.texData.get(x.dataId);k.values=_}else x=EP(f,h,g,t);return p&&t.disposeIntermediateTensorInfo(f),x}var DP={kernelName:pn,backendName:"webgl",kernelFunc:BC};var WZ=Mx+`
2020-12-15 14:15:43 +01:00
return max(a, b);
2021-03-09 23:32:33 +01:00
`,UZ=`
2020-12-15 14:15:43 +01:00
vec4 result = vec4(max(a, b));
vec4 isNaN = min(vec4(isnan(a)) + vec4(isnan(b)), vec4(1.0));
2021-02-25 14:12:39 +01:00
`+Sl+`
2020-12-15 14:15:43 +01:00
return result;
2021-03-09 23:32:33 +01:00
`,jZ=nt({opSnippet:WZ,packedOpSnippet:UZ,cpuKernelImpl:nF}),$P={kernelName:mn,backendName:"webgl",kernelFunc:jZ};function HZ(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e;qi(n,"maxPool");let{filterSize:s,strides:a,pad:i,dimRoundingMode:l}=o,u=1;y.assert(S.eitherStridesOrDilationsAreOne(a,u),()=>`Error in maxPool: Either strides or dilations must be 1. Got strides ${a} and dilations '${u}'`);let c=S.computePool2DInfo(n.shape,s,a,u,i,l);if(c.filterWidth===1&&c.filterHeight===1&&y.arraysEqual(c.inShape,c.outShape))return Ht({inputs:{x:n},backend:t});let p=new Ki(c,"max",!1);return t.runWebGLProgram(p,[n],n.dtype)}var RP={kernelName:fn,backendName:"webgl",kernelFunc:HZ};function qZ(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{filterSize:s,strides:a,pad:i,dataFormat:l,dimRoundingMode:u}=o,c=[1,1,1],p=S.computePool3DInfo(n.shape,s,a,c,i,u,l),m=new pc(p,"max",!1);return t.runWebGLProgram(m,[n],n.dtype)}var FP={kernelName:la,backendName:"webgl",kernelFunc:qZ};var VC=class{constructor(e){this.variableNames=["dy","maxPos"],this.outputShape=e.inShape;let t=e.strideHeight,o=e.strideWidth,n=e.dilationHeight,s=e.effectiveFilterHeight,a=e.effectiveFilterWidth,i=s-1-e.padInfo.top,l=a-1-e.padInfo.left,u=s*a-1;this.userCode=`
2021-01-12 16:01:34 +01:00
const ivec2 pads = ivec2(${i}, ${l});
2020-12-15 14:15:43 +01:00
void main() {
ivec4 coords = getOutputCoords();
int b = coords[0];
int d = coords[3];
ivec2 dyRCCorner = coords.yz - pads;
int dyRCorner = dyRCCorner.x;
int dyCCorner = dyRCCorner.y;
// Convolve dy(?, ?, d) with pos mask(:, :, d) to get dx(xR, xC, d).
// ? = to be determined. : = across all values in that axis.
float dotProd = 0.0;
2021-01-12 16:01:34 +01:00
for (int wR = 0; wR < ${s};
wR += ${n}) {
float dyR = float(dyRCorner + wR) / ${t}.0;
2020-12-15 14:15:43 +01:00
2021-01-12 16:01:34 +01:00
if (dyR < 0.0 || dyR >= ${e.outHeight}.0 || fract(dyR) > 0.0) {
2020-12-15 14:15:43 +01:00
continue;
}
int idyR = int(dyR);
2021-01-12 16:01:34 +01:00
for (int wC = 0; wC < ${a}; wC++) {
float dyC = float(dyCCorner + wC) / ${o}.0;
2020-12-15 14:15:43 +01:00
2021-01-12 16:01:34 +01:00
if (dyC < 0.0 || dyC >= ${e.outWidth}.0 ||
2020-12-15 14:15:43 +01:00
fract(dyC) > 0.0) {
continue;
}
int idyC = int(dyC);
float dyValue = getDy(b, idyR, idyC, d);
2021-01-12 16:01:34 +01:00
int maxPosValue = ${u} - int(getMaxPos(b, idyR, idyC, d));
2020-12-15 14:15:43 +01:00
// Get the current value, check it against the value from the
// position matrix.
2021-01-12 16:01:34 +01:00
int curPosValue = wR * ${a} + wC;
2020-12-15 14:15:43 +01:00
float mask = float(maxPosValue == curPosValue ? 1.0 : 0.0);
dotProd += dyValue * mask;
}
}
setOutput(dotProd);
}
2021-03-09 23:32:33 +01:00
`}},GC=class{constructor(e){this.variableNames=["dy","maxPos"],this.outputShape=e.inShape;let t=e.strideDepth,o=e.strideHeight,n=e.strideWidth,s=e.dilationDepth,a=e.dilationHeight,i=e.dilationWidth,l=e.effectiveFilterDepth,u=e.effectiveFilterHeight,c=e.effectiveFilterWidth,p=l-1-e.padInfo.front,m=u-1-e.padInfo.top,f=c-1-e.padInfo.left,d=l*u*c-1;this.userCode=`
2021-01-12 16:01:34 +01:00
const ivec3 pads = ivec3(${p}, ${m}, ${f});
2020-12-15 14:15:43 +01:00
void main() {
ivec5 coords = getOutputCoords();
int batch = coords.x;
int ch = coords.u;
ivec3 dyCorner = ivec3(coords.y, coords.z, coords.w) - pads;
int dyDCorner = dyCorner.x;
int dyRCorner = dyCorner.y;
int dyCCorner = dyCorner.z;
// Convolve dy(?, ?, ?, ch) with pos mask(:, :, :, d) to get
// dx(xD, xR, xC, ch).
// ? = to be determined. : = across all values in that axis.
float dotProd = 0.0;
2021-01-12 16:01:34 +01:00
for (int wD = 0; wD < ${l};
wD += ${s}) {
float dyD = float(dyDCorner + wD) / ${t}.0;
2020-12-15 14:15:43 +01:00
2021-01-12 16:01:34 +01:00
if (dyD < 0.0 || dyD >= ${e.outDepth}.0 || fract(dyD) > 0.0) {
2020-12-15 14:15:43 +01:00
continue;
}
int idyD = int(dyD);
2021-01-12 16:01:34 +01:00
for (int wR = 0; wR < ${u};
wR += ${a}) {
float dyR = float(dyRCorner + wR) / ${o}.0;
2020-12-15 14:15:43 +01:00
2021-01-12 16:01:34 +01:00
if (dyR < 0.0 || dyR >= ${e.outHeight}.0 ||
2020-12-15 14:15:43 +01:00
fract(dyR) > 0.0) {
continue;
}
int idyR = int(dyR);
2021-01-12 16:01:34 +01:00
for (int wC = 0; wC < ${c};
wC += ${i}) {
float dyC = float(dyCCorner + wC) / ${n}.0;
2020-12-15 14:15:43 +01:00
2021-01-12 16:01:34 +01:00
if (dyC < 0.0 || dyC >= ${e.outWidth}.0 ||
2020-12-15 14:15:43 +01:00
fract(dyC) > 0.0) {
continue;
}
int idyC = int(dyC);
float dyValue = getDy(batch, idyD, idyR, idyC, ch);
2021-01-12 16:01:34 +01:00
int maxPosValue = ${d} -
2020-12-15 14:15:43 +01:00
int(getMaxPos(batch, idyD, idyR, idyC, ch));
// Get the current value, check it against the value from the
// position matrix.
int curPosValue =
2021-01-12 16:01:34 +01:00
wD * ${u} * ${c} +
wR * ${c} + wC;
2020-12-15 14:15:43 +01:00
float mask = float(maxPosValue == curPosValue ? 1.0 : 0.0);
dotProd += dyValue * mask;
}
}
}
setOutput(dotProd);
}
2021-03-09 23:32:33 +01:00
`}};function KZ(r){let{inputs:e,backend:t,attrs:o}=r,{dy:n,input:s}=e,a=s,{filterSize:i,strides:l,pad:u,dimRoundingMode:c}=o,p=[1,1,1],m=S.computePool3DInfo(a.shape,i,l,p,u,c),f=new pc(m,"max",!0),d=t.runWebGLProgram(f,[a],a.dtype),h=new GC(m),g=t.runWebGLProgram(h,[n,d],a.dtype);return t.disposeIntermediateTensorInfo(d),g}var OP={kernelName:ou,backendName:"webgl",kernelFunc:KZ};function XZ(r){let{inputs:e,backend:t,attrs:o}=r,{dy:n,input:s,output:a}=e,i=s;qi([s,a],"maxPoolGrad");let{filterSize:l,strides:u,pad:c,dimRoundingMode:p}=o,m=S.computePool2DInfo(i.shape,l,u,1,c,p),f=!0,d=new Ki(m,"max",f),h=t.runWebGLProgram(d,[i],i.dtype),g=new VC(m),x=t.runWebGLProgram(g,[n,h],i.dtype);return t.disposeIntermediateTensorInfo(h),x}var PP={kernelName:ru,backendName:"webgl",kernelFunc:XZ};function MP(r,e,t,o){let n=new Ki(t,"max",!1),s=o.runWebGLProgram(n,[r],"float32");n=new Ki(t,"max",!0,!0,e);let a=o.runWebGLProgram(n,[r],"float32");return[s,a]}var LP={kernelName:nu,backendName:"webgl",kernelFunc:({inputs:r,attrs:e,backend:t})=>{let{x:o}=r,{filterSize:n,strides:s,pad:a,includeBatchInIndex:i}=e,l=t;y.assert(o.shape.length===4,()=>`Error in maxPool: input must be rank 4 but got rank ${o.shape.length}.`);let u=[1,1];y.assert(S.eitherStridesOrDilationsAreOne(s,u),()=>`Error in maxPool: Either strides or dilations must be 1. Got strides ${s} and dilations '${u}'`);let c=S.computePool2DInfo(o.shape,n,s,u,a),[p,m]=MP(o,i,c,l);return[p,m]}};function zP(r,e,t,o){let n=y.sizeFromShape(e),a=y.sizeFromShape(r.shape)/n,i=pe({inputs:{x:r},attrs:{shape:[a,n]},backend:o}),l=To(i,"float32","mean",o),u=pe({inputs:{x:l},attrs:{shape:t},backend:o});return o.disposeIntermediateTensorInfo(i),o.disposeIntermediateTensorInfo(l),u}var BP={kernelName:dn,backendName:"webgl",kernelFunc:({inputs:r,attrs:e,backend:t})=>{let{x:o}=r,{keepDims:n,axis:s}=e,a=t,i=o.shape.length,l=y.parseAxisParam(s,o.shape),u=l,c=S.getAxesPermutation(u,i),p=c!=null,m=a.shouldExecuteOnCPU([o]),f=[],d=o;if(p){if(m){let _=a.texData.get(d.dataId).values,k=new Array(i);for(let $=0;$<k.length;$++)k[$]=o.shape[c[$]];let A=qp(_,o.shape,o.dtype,c,k);d=a.makeTensorInfo(k,o.dtype);let N=a.texData.get(d.dataId);N.values=A}else d=Al(o,c,a);f.push(d),u=S.getInnerMostAxes(u.length,i)}S.assertAxesAreInnerMostDims("sum",u,i);let[h,g]=S.computeOutAndReduceShapes(d.shape,u),x=h;n&&(x=S.expandShapeToKeepDim(h,l));let w=zP(d,g,x,a);for(let b of f)a.disposeIntermediateTensorInfo(b);return w}};function YZ(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{axis:s,keepDims:a}=o,i=n.shape.length,l=y.parseAxisParam(s,n.shape),u=l,c=S.getAxesPermutation(u,i),p=n;c!=null&&(p=Lt({inputs:{x:n},backend:t,attrs:{perm:c}}),u=S.getInnerMostAxes(u.length,n.shape.length)),S.assertAxesAreInnerMostDims("min",u,i);let[m,f]=S.computeOutAndReduceShapes(p.shape,u),d=y.sizeFromShape(f),h=pe({inputs:{x:p},backend:t,attrs:{shape:[-1,d]}}),g=To(h,h.dtype,"min",t),x;if(a){let w=S.expandShapeToKeepDim(m,l);x=pe({inputs:{x:g},backend:t,attrs:{shape:w}})}else x=pe({inputs:{x:g},backend:t,attrs:{shape:m}});return t.disposeIntermediateTensorInfo(h),t.disposeIntermediateTensorInfo(g),c!=null&&t.disposeIntermediateTensorInfo(p),x}var VP={kernelName:hn,backendName:"webgl",kernelFunc:YZ};var ZZ=Mx+`
2020-12-15 14:15:43 +01:00
return min(a, b);
2021-03-09 23:32:33 +01:00
`,JZ=`
2020-12-15 14:15:43 +01:00
vec4 result = vec4(min(a, b));
vec4 isNaN = min(vec4(isnan(a)) + vec4(isnan(b)), vec4(1.0));
2021-02-25 14:12:39 +01:00
`+Sl+`
2020-12-15 14:15:43 +01:00
return result;
2021-03-09 23:32:33 +01:00
`,QZ=nt({opSnippet:ZZ,packedOpSnippet:JZ,cpuKernelImpl:sF}),GP={kernelName:gn,backendName:"webgl",kernelFunc:QZ};var WC=class{constructor(e,t,o){this.variableNames=["x"],this.outputShape=t.map((c,p)=>c[0]+e[p]+c[1]);let n=e.length,s=Le(n),a=t.map(c=>c[0]).join(","),i=t.map((c,p)=>c[0]+e[p]).join(","),l=["coords[0]","coords[1]","coords[2]","coords[3]"].slice(0,n),u=o==="reflect"?0:1;if(n===1){this.userCode=`
2021-01-12 16:01:34 +01:00
int start = ${a};
int end = ${i};
2020-12-15 14:15:43 +01:00
void main() {
int outC = getOutputCoords();
if (outC < start) {
2021-01-12 16:01:34 +01:00
outC = start * 2 - outC - ${u};
2020-12-15 14:15:43 +01:00
} else if(outC >= end) {
2021-01-12 16:01:34 +01:00
outC = (end - 1) * 2 - outC + ${u};
2020-12-15 14:15:43 +01:00
}
setOutput(getX(outC - start));
}
`;return}this.userCode=`
2021-01-12 16:01:34 +01:00
${s} start = ${s}(${a});
${s} end = ${s}(${i});
2020-12-15 14:15:43 +01:00
void main() {
2021-01-12 16:01:34 +01:00
${s} outC = getOutputCoords();
for (int i = 0; i < ${n}; i++) {
2020-12-15 14:15:43 +01:00
if (outC[i] < start[i]) {
2021-01-12 16:01:34 +01:00
outC[i] = start[i] * 2 - outC[i] - ${u};
2020-12-15 14:15:43 +01:00
} else if(outC[i] >= end[i]) {
2021-01-12 16:01:34 +01:00
outC[i] = (end[i] - 1) * 2 - outC[i] + ${u};
2020-12-15 14:15:43 +01:00
}
}
2021-01-12 16:01:34 +01:00
${s} coords = outC - start;
setOutput(getX(${l}));
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`}};var UC=class{constructor(e,t,o){this.variableNames=["x"],this.packedInputs=!0,this.packedOutput=!0,this.outputShape=t.map((d,h)=>d[0]+e[h]+d[1]);let n=e.length,s=Le(n),a=t.map(d=>d[0]).join(","),i=t.map((d,h)=>d[0]+e[h]).join(","),l=jt("rc",n),u=jt("source",n),c=`${l[n-1]} < ${this.outputShape[n-1]}`,p=n===1?"source":`vec2(${u.slice(-2).join()})`,m=o==="reflect"?0:1,f="";if(n===1){let d=`
2021-01-12 16:01:34 +01:00
${s} source = rc;
2020-12-15 14:15:43 +01:00
if (source < start) {
2021-01-12 16:01:34 +01:00
source = start * 2 - source - ${m};
2020-12-15 14:15:43 +01:00
} else if (source >= end) {
2021-01-12 16:01:34 +01:00
source = (end - 1) * 2 - source + ${m};
2020-12-15 14:15:43 +01:00
}
source -= start;
2021-01-12 16:01:34 +01:00
`;f=`
${s} rc = outputLoc;
${d}
result[0] = getChannel(getX(${u.join()}), ${p});
${l[n-1]} += 1;
if(${c}) {
${d}
result[1] = getChannel(getX(${u.join()}), ${p});
}
`}else{let d=`
${s} source = rc;
${s} lt = ${s}(lessThan(source, start));
${s} gte = ${s}(greaterThanEqual(source, end));
${s} orig = 1 - (lt + gte);
2020-12-15 14:15:43 +01:00
source = orig * source +
2021-01-12 16:01:34 +01:00
lt * (start * 2 - source - ${m}) +
gte * ((end - 1) * 2 - source + ${m});
2020-12-15 14:15:43 +01:00
source -= start;
2021-01-12 16:01:34 +01:00
`;f=`
${s} rc = outputLoc;
${d}
result[0] = getChannel(getX(${u.join()}), ${p});
${l[n-1]} += 1;
if(${c}) {
${d}
result[1] = getChannel(getX(${u.join()}), ${p});
}
2020-12-15 14:15:43 +01:00
rc = outputLoc;
2021-01-12 16:01:34 +01:00
${l[n-2]} += 1;
if(${l[n-2]} < ${this.outputShape[n-2]}) {
${d}
result[2] = getChannel(getX(${u.join()}), ${p});
${l[n-1]} += 1;
if(${c}) {
${d}
result[3] = getChannel(getX(${u.join()}), ${p});
2020-12-15 14:15:43 +01:00
}
}
2020-12-15 14:15:43 +01:00
`}this.userCode=`
2021-01-12 16:01:34 +01:00
const ${s} start = ${s}(${a});
const ${s} end = ${s}(${i});
2020-12-15 14:15:43 +01:00
void main() {
2021-01-12 16:01:34 +01:00
${s} outputLoc = getOutputCoords();
vec4 result = vec4(0.);
2021-01-12 16:01:34 +01:00
${f}
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}};var eJ=({inputs:r,backend:e,attrs:t})=>{let{x:o}=r,{paddings:n,mode:s}=t,a=j().getBool("WEBGL_PACK_ARRAY_OPERATIONS")?new UC(o.shape,n,s):new WC(o.shape,n,s);return e.runWebGLProgram(a,[o],o.dtype)},WP={kernelName:ua,backendName:"webgl",kernelFunc:eJ};var tJ=`if (b == 0.0) return NAN;
return mod(a, b);`,rJ=`
2020-12-15 14:15:43 +01:00
vec4 result = mod(a, b);
vec4 isNaN = vec4(equal(b, vec4(0.0)));
2021-02-25 14:12:39 +01:00
`+Sl+`
2020-12-15 14:15:43 +01:00
return result;
2021-03-09 23:32:33 +01:00
`,oJ=nt({opSnippet:tJ,packedOpSnippet:rJ}),UP={kernelName:gi,backendName:"webgl",kernelFunc:oJ};var jC=class{constructor(e,t,o){this.variableNames=["probs"],this.outputShape=[e,o],this.userCode=`
2020-12-15 14:15:43 +01:00
uniform float seed;
void main() {
2020-12-15 14:15:43 +01:00
ivec2 coords = getOutputCoords();
int batch = coords[0];
2020-12-15 14:15:43 +01:00
float r = random(seed);
float cdf = 0.0;
2021-01-12 16:01:34 +01:00
for (int i = 0; i < ${t-1}; i++) {
2020-12-15 14:15:43 +01:00
cdf += getProbs(batch, i);
2020-12-15 14:15:43 +01:00
if (r < cdf) {
setOutput(float(i));
return;
}
}
2020-12-15 14:15:43 +01:00
// If no other event happened, last event happened.
2021-01-12 16:01:34 +01:00
setOutput(float(${t-1}));
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`}getCustomSetupFunc(e){return(t,o)=>{this.seedLoc==null&&(this.seedLoc=t.getUniformLocation(o,"seed")),t.gl.uniform1f(this.seedLoc,e)}}};var nJ=`
2020-12-15 14:15:43 +01:00
if (a == b) {
return 1.0;
};
2021-03-09 23:32:33 +01:00
return a / b;`,sJ=`
2020-12-15 14:15:43 +01:00
// vec4 one = vec4(equal(a, b));
// return one + (vec4(1.0) - one) * a / b;
vec4 result = a / b;
if(a.x == b.x) {
result.x = 1.;
}
2020-12-15 14:15:43 +01:00
if(a.y == b.y) {
result.y = 1.;
}
2020-12-15 14:15:43 +01:00
if(a.z == b.z) {
result.z = 1.;
}
if(a.w == b.w) {
result.w = 1.;
}
2020-12-15 14:15:43 +01:00
return result;
2021-03-09 23:32:33 +01:00
`,HC=nt({opSnippet:nJ,packedOpSnippet:sJ,checkOutOfBounds:!0}),jP={kernelName:rn,backendName:"webgl",kernelFunc:HC};var HP="return a - b;",qC=nt({opSnippet:HP,packedOpSnippet:HP,supportsComplex:!0,cpuKernelImpl:fF}),qP={kernelName:Fn,backendName:"webgl",kernelFunc:qC};function KC(r){let{inputs:e,backend:t,attrs:o}=r,{logits:n}=e,{dim:s}=o,a=y.parseAxisParam([s],n.shape),i=BC({inputs:{x:n},backend:t,attrs:{reductionIndices:a,keepDims:!1}}),l=S.expandShapeToKeepDim(i.shape,a),u=pe({inputs:{x:i},backend:t,attrs:{shape:l}}),c=qC({inputs:{a:n,b:u},backend:t}),p=EC({inputs:{x:c},backend:t}),m=nh({inputs:{x:p},backend:t,attrs:{axis:a,keepDims:!1}}),f=pe({inputs:{x:m},backend:t,attrs:{shape:l}}),d=HC({inputs:{a:p,b:f},backend:t});return t.disposeIntermediateTensorInfo(i),t.disposeIntermediateTensorInfo(u),t.disposeIntermediateTensorInfo(c),t.disposeIntermediateTensorInfo(p),t.disposeIntermediateTensorInfo(m),t.disposeIntermediateTensorInfo(f),d}var KP={kernelName:$n,backendName:"webgl",kernelFunc:KC};function iJ(r){let{inputs:e,backend:t,attrs:o}=r,{logits:n}=e,{numSamples:s,seed:a,normalized:i}=o,l=i?n:KC({inputs:{logits:n},backend:t,attrs:{dim:n.shape.length-1}}),u=l.shape[0],c=l.shape[1],p=new jC(u,c,s),m=p.getCustomSetupFunc(a),f=t.runWebGLProgram(p,[l],"int32",m);return i||t.disposeIntermediateTensorInfo(l),f}var XP={kernelName:su,backendName:"webgl",kernelFunc:iJ};var YP="return -x;";function aJ(r){let{inputs:e,backend:t}=r,{x:o}=e;if(t.shouldExecuteOnCPU([o])){let s=t.texData.get(o.dataId),[a,i]=aF(s.values,o.shape,o.dtype);return t.makeTensorInfo(i,o.dtype,a)}let n;return j().getBool("WEBGL_PACK_UNARY_OPERATIONS")?n=new Vs(o.shape,YP):n=new ho(o.shape,YP),t.runWebGLProgram(n,[o],o.dtype)}var ZP={kernelName:ps,backendName:"webgl",kernelFunc:aJ};var lJ=Ar.nonMaxSuppressionV3Impl;function uJ(r){S.warn("tf.nonMaxSuppression() in webgl locks the UI thread. Call tf.nonMaxSuppressionAsync() instead");let{inputs:e,backend:t,attrs:o}=r,{boxes:n,scores:s}=e,{maxOutputSize:a,iouThreshold:i,scoreThreshold:l}=o,u=t.readSync(n.dataId),c=t.readSync(s.dataId),{selectedIndices:p}=lJ(u,c,a,i,l);return t.makeTensorInfo([p.length],"int32",new Int32Array(p))}var JP={kernelName:yi,backendName:"webgl",kernelFunc:uJ};var cJ=Ar.nonMaxSuppressionV4Impl;function pJ(r){S.warn("tf.nonMaxSuppression() in webgl locks the UI thread. Call tf.nonMaxSuppressionAsync() instead");let{inputs:e,backend:t,attrs:o}=r,{boxes:n,scores:s}=e,{maxOutputSize:a,iouThreshold:i,scoreThreshold:l,padToMaxOutputSize:u}=o,c=t.readSync(n.dataId),p=t.readSync(s.dataId),{selectedIndices:m,validOutputs:f}=cJ(c,p,a,i,l,u);return[t.makeTensorInfo([m.length],"int32",new Int32Array(m)),t.makeTensorInfo([],"int32",new Int32Array([f]))]}var QP={kernelName:bi,backendName:"webgl",kernelFunc:pJ};var mJ=Ar.nonMaxSuppressionV5Impl;function fJ(r){S.warn("tf.nonMaxSuppression() in webgl locks the UI thread. Call tf.nonMaxSuppressionAsync() instead");let{inputs:e,backend:t,attrs:o}=r,{boxes:n,scores:s}=e,{maxOutputSize:a,iouThreshold:i,scoreThreshold:l,softNmsSigma:u}=o,c=t.readSync(n.dataId),p=t.readSync(s.dataId),m=a,f=i,d=l,h=u,{selectedIndices:g,selectedScores:x}=mJ(c,p,m,f,d,h);return[t.makeTensorInfo([g.length],"int32",new Int32Array(g)),t.makeTensorInfo([x.length],"float32",new Float32Array(x))]}var eM={kernelName:wi,backendName:"webgl",kernelFunc:fJ};var XC=class{constructor(e,t,o,n){this.variableNames=["indices"],this.outputShape=[e,t],this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
ivec2 coords = getOutputCoords();
int index = round(getIndices(coords.x));
2021-01-12 16:01:34 +01:00
setOutput(mix(float(${n}), float(${o}),
2020-12-15 14:15:43 +01:00
float(index == coords.y)));
}
2021-03-09 23:32:33 +01:00
`}};var dJ=r=>{let{inputs:e,backend:t,attrs:o}=r,{indices:n}=e,{depth:s,onValue:a,offValue:i}=o,l=y.sizeFromShape(n.shape),u=new XC(l,s,a,i),c=pe({inputs:{x:n},backend:t,attrs:{shape:[l]}}),p=t.runWebGLProgram(u,[c],n.dtype);t.disposeIntermediateTensorInfo(c);let m=[...n.shape,s],f=pe({inputs:{x:p},backend:t,attrs:{shape:m}});return t.disposeIntermediateTensorInfo(p),f},tM={kernelName:yn,backendName:"webgl",kernelFunc:dJ};function uh(r){let{inputs:e,backend:t}=r,{x:o}=e;if(o.dtype==="complex64"){let n=Ga({inputs:{input:o},backend:t}),s=uh({inputs:{x:n},backend:t}),a=mc({inputs:{input:o},backend:t}),i=uh({inputs:{x:a},backend:t}),l=go({inputs:{real:s,imag:i},backend:t});return t.disposeIntermediateTensorInfo(n),t.disposeIntermediateTensorInfo(s),t.disposeIntermediateTensorInfo(a),t.disposeIntermediateTensorInfo(i),l}else return lh({attrs:{shape:o.shape,dtype:o.dtype,value:o.dtype==="string"?"":0},backend:t})}var rM={kernelName:bs,backendName:"webgl",kernelFunc:uh};function oM(r){let{inputs:e,backend:t}=r,{x:o}=e;if(o.dtype==="string")throw new Error("onesLike is not supported under string dtype");if(o.dtype==="complex64"){let n=Ga({inputs:{input:o},backend:t}),s=oM({inputs:{x:n},backend:t}),a=mc({inputs:{input:o},backend:t}),i=uh({inputs:{x:a},backend:t}),l=go({inputs:{real:s,imag:i},backend:t});return t.disposeIntermediateTensorInfo(n),t.disposeIntermediateTensorInfo(s),t.disposeIntermediateTensorInfo(a),t.disposeIntermediateTensorInfo(i),l}else return lh({attrs:{shape:o.shape,dtype:o.dtype,value:1},backend:t})}var nM={kernelName:ms,backendName:"webgl",kernelFunc:oM};function hJ(r){let{inputs:e,backend:t,attrs:o}=r,{axis:n}=o;if(e.length===1)return qx({inputs:{input:e[0]},backend:t,attrs:{dim:n}});let s=e[0].shape,a=e[0].dtype;e.forEach(c=>{y.assertShapesMatch(s,c.shape,"All tensors passed to stack must have matching shapes"),y.assert(a===c.dtype,()=>"All tensors passed to stack must have matching dtypes")});let i=[],l=e.map(c=>{let p=qx({inputs:{input:c},backend:t,attrs:{dim:n}});return i.push(p),p}),u=xC({inputs:l,backend:t,attrs:{axis:n}});return i.forEach(c=>t.disposeIntermediateTensorInfo(c)),u}var sM={kernelName:fs,backendName:"webgl",kernelFunc:hJ};var YC=class{constructor(e,t,o){this.variableNames=["x"],this.outputShape=t.map((u,c)=>u[0]+e[c]+u[1]);let n=e.length,s=Le(n),a=t.map(u=>u[0]).join(","),i=t.map((u,c)=>u[0]+e[c]).join(","),l=["coords[0]","coords[1]","coords[2]","coords[3]"].slice(0,n);if(n===1){this.userCode=`
2021-01-12 16:01:34 +01:00
int start = ${a};
int end = ${i};
2021-03-09 23:32:33 +01:00
uniform float value;
2020-12-15 14:15:43 +01:00
void main() {
int outC = getOutputCoords();
if (outC < start || outC >= end) {
2021-03-09 23:32:33 +01:00
setOutput(value);
2020-12-15 14:15:43 +01:00
} else {
setOutput(getX(outC - start));
}
}
`;return}this.userCode=`
2021-01-12 16:01:34 +01:00
${s} start = ${s}(${a});
${s} end = ${s}(${i});
2021-03-09 23:32:33 +01:00
uniform float value;
2020-12-15 14:15:43 +01:00
void main() {
2021-01-12 16:01:34 +01:00
${s} outC = getOutputCoords();
2020-12-15 14:15:43 +01:00
if (any(lessThan(outC, start)) || any(greaterThanEqual(outC, end))) {
2021-03-09 23:32:33 +01:00
setOutput(value);
2020-12-15 14:15:43 +01:00
} else {
2021-01-12 16:01:34 +01:00
${s} coords = outC - start;
setOutput(getX(${l}));
2020-12-15 14:15:43 +01:00
}
}
2021-03-09 23:32:33 +01:00
`}getCustomSetupFunc(e){return(t,o)=>{this.valueLoc==null&&(this.valueLoc=t.getUniformLocationNoThrow(o,"value")),t.gl.uniform1f(this.valueLoc,e)}}};var ZC=class{constructor(e,t,o){this.variableNames=["x"],this.packedInputs=!0,this.packedOutput=!0,this.outputShape=t.map((h,g)=>h[0]+e[g]+h[1]);let n=e.length,s=Le(n),a=t.map(h=>h[0]).join(","),i=t.map((h,g)=>h[0]+e[g]).join(","),l=jt("rc",n),u=jt("source",n),c=`${l[n-1]} < ${this.outputShape[n-1]}`,p=n===1?"source":`vec2(${u.slice(-2).join()})`,m=[`${s} rc = outputLoc;`,`${l[n-1]} += 1;
2021-01-12 16:01:34 +01:00
if(${c}) {
`,n===1?"":`}
2020-12-15 14:15:43 +01:00
rc = outputLoc;
2021-01-12 16:01:34 +01:00
${l[n-2]} += 1;
if(${l[n-2]} < ${this.outputShape[n-2]}) {`,n===1?"":` ${l[n-1]} += 1;
if(${c}) {`],f=n===1?"rc < start || rc >= end":"any(lessThan(rc, start)) || any(greaterThanEqual(rc, end))",d="";for(let h=0,g=n===1?2:4;h<g;h++)d+=`
${m[h]}
if (${f}) {
2021-03-09 23:32:33 +01:00
result[${h}] = float(value);
2020-12-15 14:15:43 +01:00
} else {
2021-01-12 16:01:34 +01:00
${s} source = rc - start;
result[${h}] = getChannel(getX(${u.join()}), ${p});
2020-12-15 14:15:43 +01:00
}
2021-01-12 16:01:34 +01:00
`;d+=n===1?"} ":"}}",this.userCode=`
const ${s} start = ${s}(${a});
const ${s} end = ${s}(${i});
2021-03-09 23:32:33 +01:00
uniform float value;
2020-12-15 14:15:43 +01:00
void main() {
2021-01-12 16:01:34 +01:00
${s} outputLoc = getOutputCoords();
2020-12-15 14:15:43 +01:00
vec4 result = vec4(0.);
2021-01-12 16:01:34 +01:00
${d}
2020-12-15 14:15:43 +01:00
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`}getCustomSetupFunc(e){return(t,o)=>{this.valueLoc==null&&(this.valueLoc=t.getUniformLocationNoThrow(o,"value")),t.gl.uniform1f(this.valueLoc,e)}}};var JC=r=>{let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{paddings:s,constantValue:a}=o,i=j().getBool("WEBGL_PACK_ARRAY_OPERATIONS")?new ZC(n.shape,s,a):new YC(n.shape,s,a),l=i.getCustomSetupFunc(a);return t.runWebGLProgram(i,[n],n.dtype,l)},iM={kernelName:bn,backendName:"webgl",kernelFunc:JC};var gJ=`
2020-12-15 14:15:43 +01:00
if(a < 0.0 && floor(b) < b){
return NAN;
}
2020-12-15 14:15:43 +01:00
if (b == 0.0) {
return 1.0;
}
2020-12-15 14:15:43 +01:00
return (round(mod(b, 2.0)) != 1) ?
pow(abs(a), b) : sign(a) * pow(abs(a), b);
2021-03-09 23:32:33 +01:00
`,xJ=`
2020-12-15 14:15:43 +01:00
// isModRound1 has 1 for components with round(mod(b, 2.0)) == 1, 0 otherwise.
vec4 isModRound1 = vec4(equal(round(mod(b, 2.0)), ivec4(1)));
vec4 multiplier = sign(a) * isModRound1 + (vec4(1.0) - isModRound1);
vec4 result = multiplier * pow(abs(a), b);
// Ensure that a^0 = 1, including 0^0 = 1 as this correspond to TF and JS
bvec4 isExpZero = equal(b, vec4(0.0));
result.r = isExpZero.r ? 1.0 : result.r;
result.g = isExpZero.g ? 1.0 : result.g;
result.b = isExpZero.b ? 1.0 : result.b;
result.a = isExpZero.a ? 1.0 : result.a;
2020-12-15 14:15:43 +01:00
vec4 isNaN = vec4(lessThan(a, vec4(0.0))) * vec4(lessThan(floor(b), b));
2021-02-25 14:12:39 +01:00
`+Sl+`
return result;
2021-03-09 23:32:33 +01:00
`,yJ=nt({opSnippet:gJ,packedOpSnippet:xJ}),aM={kernelName:wn,backendName:"webgl",kernelFunc:yJ};function bJ(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{axis:s,keepDims:a}=o,i=n.shape.length,l=[],u=y.parseAxisParam(s,n.shape),c=u,p=S.getAxesPermutation(c,i),m=n;p!=null&&(m=Lt({inputs:{x:n},backend:t,attrs:{perm:p}}),c=S.getInnerMostAxes(c.length,i),l.push(m)),S.assertAxesAreInnerMostDims("prod",c,i);let f;if(t.shouldExecuteOnCPU([m])){let d=t.texData.get(m.dataId).values,{outVals:h,outShape:g,outDtype:x}=lF(m.shape,m.dtype,d,c);f=t.makeTensorInfo(g,x,h)}else{let[d,h]=S.computeOutAndReduceShapes(m.shape,c),g=y.sizeFromShape(h),x=pe({inputs:{x:m},backend:t,attrs:{shape:[-1,g]}}),w=fu(n.dtype),b=To(x,w,"prod",t);f=pe({inputs:{x:b},backend:t,attrs:{shape:d}}),l.push(x),l.push(b)}if(a){l.push(f);let d=S.expandShapeToKeepDim(f.shape,u);f=pe({inputs:{x:f},backend:t,attrs:{shape:d}})}return l.forEach(d=>t.disposeIntermediateTensorInfo(d)),f}var lM={kernelName:_i,backendName:"webgl",kernelFunc:bJ};var QC=r=>{let{backend:e,attrs:t}=r,{start:o,stop:n,step:s,dtype:a}=t,i=uF(o,n,s,a);return e.makeTensorInfo([i.length],a,i)},uM={kernelName:ca,backendName:"webgl",kernelFunc:QC};var wJ="return 1.0 / x;",_J=_e({opSnippet:wJ}),cM={kernelName:ki,backendName:"webgl",kernelFunc:_J};var kJ=yr+`
2020-12-15 14:15:43 +01:00
return (x < 0.0) ? 0.0 : x;
2021-03-09 23:32:33 +01:00
`,vJ=`
vec4 result = x * vec4(greaterThanEqual(x, vec4(0.0)));
bvec4 isNaN = isnan(x);
result.r = isNaN.r ? x.r : result.r;
result.g = isNaN.g ? x.g : result.g;
result.b = isNaN.b ? x.b : result.b;
result.a = isNaN.a ? x.a : result.a;
return result;
2021-03-09 23:32:33 +01:00
`,CJ=_e({opSnippet:kJ,packedOpSnippet:vJ}),pM={kernelName:kn,backendName:"webgl",kernelFunc:CJ};var IJ=yr+`
2020-12-15 14:15:43 +01:00
return (x < 0.0) ? 0.0 : min(6.0, x);
2021-03-09 23:32:33 +01:00
`,NJ=`
vec4 result = min(x, vec4(6.)) * vec4(greaterThanEqual(x, vec4(0.0)));
bvec4 isNaN = isnan(x);
result.r = isNaN.r ? x.r : result.r;
result.g = isNaN.g ? x.g : result.g;
result.b = isNaN.b ? x.b : result.b;
result.a = isNaN.a ? x.a : result.a;
return result;
2021-03-09 23:32:33 +01:00
`,SJ=_e({opSnippet:IJ,packedOpSnippet:NJ}),mM={kernelName:Cn,backendName:"webgl",kernelFunc:SJ};var e0=class{constructor(e,t,o,n,s){this.variableNames=["A"],this.outputShape=[];let[a,i,l,u]=e;this.outputShape=[a,t,o,u];let c=[n&&t>1?i-1:i,n&&o>1?l-1:l],p=[n&&t>1?t-1:t,n&&o>1?o-1:o],m;s?m="(vec2(yRC) + vec2(0.5)) * effectiveInputOverOutputRatioRC - vec2(0.5)":m="vec2(yRC) * effectiveInputOverOutputRatioRC",this.userCode=`
2020-12-15 14:15:43 +01:00
const vec2 effectiveInputOverOutputRatioRC = vec2(
2021-01-12 16:01:34 +01:00
${c[0]/p[0]},
${c[1]/p[1]});
const vec2 inputShapeRC = vec2(${i}.0, ${l}.0);
2020-12-15 14:15:43 +01:00
void main() {
ivec4 coords = getOutputCoords();
int b = coords[0];
int d = coords[3];
ivec2 yRC = coords.yz;
2020-12-15 14:15:43 +01:00
// Fractional source index.
2021-01-12 16:01:34 +01:00
vec2 sourceFracIndexRC = ${m};
2020-12-15 14:15:43 +01:00
// Compute the four integer indices.
ivec2 sourceFloorRC = ivec2(max(sourceFracIndexRC, vec2(0.0)));
ivec2 sourceCeilRC = ivec2(
min(inputShapeRC - 1.0, ceil(sourceFracIndexRC)));
float topLeft = getA(b, sourceFloorRC.x, sourceFloorRC.y, d);
float bottomLeft = getA(b, sourceCeilRC.x, sourceFloorRC.y, d);
float topRight = getA(b, sourceFloorRC.x, sourceCeilRC.y, d);
float bottomRight = getA(b, sourceCeilRC.x, sourceCeilRC.y, d);
vec2 fracRC = sourceFracIndexRC - vec2(sourceFloorRC);
float top = topLeft + (topRight - topLeft) * fracRC.y;
float bottom = bottomLeft + (bottomRight - bottomLeft) * fracRC.y;
float newValue = top + (bottom - top) * fracRC.x;
setOutput(newValue);
}
2021-03-09 23:32:33 +01:00
`}};var t0=class{constructor(e,t,o,n,s){this.variableNames=["A"],this.packedInputs=!0,this.packedOutput=!0,this.outputShape=[];let[a,i,l,u]=e;this.outputShape=[a,t,o,u];let c=[n&&t>1?i-1:i,n&&o>1?l-1:l],p=[n&&t>1?t-1:t,n&&o>1?o-1:o],m;s?m="(vec3(yRC) + vec3(0.5)) * effectiveInputOverOutputRatioRC - vec3(0.5)":m="vec3(yRC) * effectiveInputOverOutputRatioRC",this.userCode=`
2020-12-15 14:15:43 +01:00
const vec3 effectiveInputOverOutputRatioRC = vec3(
2021-01-12 16:01:34 +01:00
${c[0]/p[0]},
${c[1]/p[1]},
${c[1]/p[1]});
const vec3 inputShapeRC = vec3(${i}.0, ${l}.0,
${l}.0);
2020-12-15 14:15:43 +01:00
float getAValue(int b, int r, int c, int d) {
return getChannel(getA(b, r, c, d), vec2(c, d));
}
void main() {
2020-12-15 14:15:43 +01:00
ivec4 coords = getOutputCoords();
int b = coords[0];
int d = coords[3];
// Calculate values for next column in yRC.z.
ivec3 yRC = coords.yzz + ivec3(0, 0, 1);
2020-12-15 14:15:43 +01:00
// Fractional source index.
2021-01-12 16:01:34 +01:00
vec3 sourceFracIndexRC = ${m};
2020-12-15 14:15:43 +01:00
// Compute the four integer indices.
ivec3 sourceFloorRC = ivec3(max(sourceFracIndexRC, vec3(0.0)));
ivec3 sourceCeilRC = ivec3(
min(inputShapeRC - 1.0, ceil(sourceFracIndexRC)));
// Should we calculate next column and row elements in 2x2 packed cell.
2021-01-12 16:01:34 +01:00
bool hasNextCol = d < ${u-1};
bool hasNextRow = coords.z < ${o-1};
2020-12-15 14:15:43 +01:00
// In parallel, construct four corners for all four components in
// packed 2x2 cell.
vec4 topLeft = vec4(
getAValue(b, sourceFloorRC.x, sourceFloorRC.y, d),
hasNextCol ? getAValue(b, sourceFloorRC.x, sourceFloorRC.y, d + 1)
: 0.0,
hasNextRow ? getAValue(b, sourceFloorRC.x, sourceFloorRC.z, d)
: 0.0,
(hasNextRow && hasNextCol) ?
getAValue(b, sourceFloorRC.x, sourceFloorRC.z, d + 1) : 0.0);
vec4 bottomLeft = vec4(
getAValue(b, sourceCeilRC.x, sourceFloorRC.y, d),
hasNextCol ? getAValue(b, sourceCeilRC.x, sourceFloorRC.y, d + 1)
: 0.0,
hasNextRow ? getAValue(b, sourceCeilRC.x, sourceFloorRC.z, d)
: 0.0,
(hasNextRow && hasNextCol) ?
getAValue(b, sourceCeilRC.x, sourceFloorRC.z, d + 1) : 0.0);
vec4 topRight = vec4(
getAValue(b, sourceFloorRC.x, sourceCeilRC.y, d),
hasNextCol ? getAValue(b, sourceFloorRC.x, sourceCeilRC.y, d + 1)
: 0.0,
hasNextRow ? getAValue(b, sourceFloorRC.x, sourceCeilRC.z, d)
: 0.0,
(hasNextRow && hasNextCol) ?
getAValue(b, sourceFloorRC.x, sourceCeilRC.z, d + 1) : 0.0);
vec4 bottomRight = vec4(
getAValue(b, sourceCeilRC.x, sourceCeilRC.y, d),
hasNextCol ? getAValue(b, sourceCeilRC.x, sourceCeilRC.y, d + 1)
: 0.0,
hasNextRow ? getAValue(b, sourceCeilRC.x, sourceCeilRC.z, d)
: 0.0,
(hasNextRow && hasNextCol) ?
getAValue(b, sourceCeilRC.x, sourceCeilRC.z, d + 1) : 0.0);
vec3 fracRC = sourceFracIndexRC - vec3(sourceFloorRC);
vec4 top = mix(topLeft, topRight, fracRC.yyzz);
vec4 bottom = mix(bottomLeft, bottomRight, fracRC.yyzz);
vec4 newValue = mix(top, bottom, fracRC.x);
setOutput(newValue);
}
2021-03-09 23:32:33 +01:00
`}};function TJ(r){let{inputs:e,backend:t,attrs:o}=r,{images:n}=e,{alignCorners:s,halfPixelCenters:a,size:i}=o,[l,u]=i,c=j().getBool("WEBGL_PACK_IMAGE_OPERATIONS")?new t0(n.shape,l,u,s,a):new e0(n.shape,l,u,s,a);return t.runWebGLProgram(c,[n],"float32")}var fM={kernelName:vn,backendName:"webgl",kernelFunc:TJ};var r0=class{constructor(e,t,o){this.variableNames=["dy"],this.outputShape=[],this.outputShape=t;let[,n,s]=t,[,a,i]=e,l=[o&&a>1?n-1:n,o&&i>1?s-1:s],u=[o&&a>1?a-1:a,o&&i>1?i-1:i],c=l[0]/u[0],p=l[1]/u[1],m=1/c,f=1/p,d=Math.ceil(m)*2+2,h=Math.ceil(f)*2+2;this.userCode=`
void main() {
2020-12-15 14:15:43 +01:00
ivec4 coords = getOutputCoords();
int b = coords[0];
int d = coords[3];
int r = coords[1];
int c = coords[2];
2020-12-15 14:15:43 +01:00
float accumulator = 0.0;
2021-01-12 16:01:34 +01:00
const float heightScale = float(${c});
const float widthScale = float(${p});
2020-12-15 14:15:43 +01:00
2021-01-12 16:01:34 +01:00
const float invHeightScale = float(${m});
const float invWidthScale = float(${f});
2020-12-15 14:15:43 +01:00
2021-01-12 16:01:34 +01:00
const int winHeight = int(${d});
const int winWidth = int(${h});
2020-12-15 14:15:43 +01:00
// Compute bounds for where in dy we will look
float startRLerp = floor(float(r) * invHeightScale);
int startDyR = int(startRLerp - float(winHeight / 2));
float startCLerp = floor(float(c) * invWidthScale);
int startDyC = int(startCLerp - float(winWidth / 2));
// Loop over dy
for (int dyROffset = 0; dyROffset < winHeight; dyROffset++) {
int dyR = dyROffset + startDyR;
// Guard against the window exceeding the bounds of dy
2021-01-12 16:01:34 +01:00
if (dyR < 0 || dyR >= ${a}) {
2020-12-15 14:15:43 +01:00
continue;
}
for (int dyCOffset = 0; dyCOffset < winWidth; dyCOffset++) {
int dyC = dyCOffset + startDyC;
// Guard against the window exceeding the bounds of dy
2021-01-12 16:01:34 +01:00
if (dyC < 0 || dyC >= ${i}) {
2020-12-15 14:15:43 +01:00
continue;
}
float dxR = float(dyR) * heightScale;
int topDxRIndex = int(floor(dxR));
2021-01-12 16:01:34 +01:00
int bottomDxRIndex = int(min(ceil(dxR), ${n-1}.0));
2020-12-15 14:15:43 +01:00
float dxRLerp = dxR - float(topDxRIndex);
float inverseDxRLerp = 1.0 - dxRLerp;
float dxC = float(dyC) * widthScale;
int leftDxCIndex = int(floor(dxC));
2021-01-12 16:01:34 +01:00
int rightDxCIndex = int(min(ceil(dxC), ${s-1}.0));
2020-12-15 14:15:43 +01:00
float dxCLerp = dxC - float(leftDxCIndex);
float inverseDxCLerp = 1.0 - dxCLerp;
if (r == topDxRIndex && c == leftDxCIndex) {
// topLeft
accumulator +=
getDy(b, dyR, dyC, d) * inverseDxRLerp * inverseDxCLerp;
}
if (r == topDxRIndex && c == rightDxCIndex) {
// topRight
accumulator += getDy(b, dyR, dyC, d) * inverseDxRLerp * dxCLerp;
}
if (r == bottomDxRIndex && c == leftDxCIndex) {
// bottomLeft
accumulator += getDy(b, dyR, dyC, d) * dxRLerp * inverseDxCLerp;
}
if (r == bottomDxRIndex && c == rightDxCIndex) {
// bottomRight
accumulator += getDy(b, dyR, dyC, d) * dxRLerp * dxCLerp;
}
}
}
// End loop over dy
setOutput(accumulator);
}
2021-03-09 23:32:33 +01:00
`}};function AJ(r){let{inputs:e,backend:t,attrs:o}=r,{images:n,dy:s}=e,{alignCorners:a}=o,i=new r0(s.shape,n.shape,a);return t.runWebGLProgram(i,[s],s.dtype)}var dM={kernelName:lu,backendName:"webgl",kernelFunc:AJ};var o0=class{constructor(e,t,o,n,s){this.variableNames=["A"],this.outputShape=[];let[a,i,l,u]=e;this.outputShape=[a,t,o,u];let c=[n&&t>1?i-1:i,n&&o>1?l-1:l],p=[n&&t>1?t-1:t,n&&o>1?o-1:o],m=n?"0.5":"0.0",f;s?f="max((vec2(yRC) + vec2(0.5)) * effectiveInputOverOutputRatioRC, vec2(0.0))":f="vec2(yRC) * effectiveInputOverOutputRatioRC",this.userCode=`
2020-12-15 14:15:43 +01:00
const vec2 effectiveInputOverOutputRatioRC = vec2(
2021-01-12 16:01:34 +01:00
${c[0]/p[0]},
${c[1]/p[1]});
const vec2 inputShapeRC = vec2(${i}.0, ${l}.0);
2020-12-15 14:15:43 +01:00
void main() {
2020-12-15 14:15:43 +01:00
ivec4 coords = getOutputCoords();
int b = coords[0];
int d = coords[3];
ivec2 yRC = coords.yz;
// Fractional source index.
2021-01-12 16:01:34 +01:00
vec2 sourceFracIndexRC = ${f};
2020-12-15 14:15:43 +01:00
// Compute the coordinators of nearest neighbor point.
ivec2 sourceNearestRC = ivec2(
2021-01-12 16:01:34 +01:00
min(inputShapeRC - 1.0, floor(sourceFracIndexRC + ${m})));
2020-12-15 14:15:43 +01:00
float newValue = getA(b, sourceNearestRC.x, sourceNearestRC.y, d);
setOutput(newValue);
}
2021-03-09 23:32:33 +01:00
`}};function EJ(r){let{inputs:e,backend:t,attrs:o}=r,{images:n}=e,{alignCorners:s,halfPixelCenters:a,size:i}=o,[l,u]=i,c=new o0(n.shape,l,u,s,a);return t.runWebGLProgram(c,[n],n.dtype)}var hM={kernelName:pa,backendName:"webgl",kernelFunc:EJ};var n0=class{constructor(e,t,o){this.variableNames=["dy"],this.outputShape=[],this.outputShape=t;let[,n,s]=t,[,a,i]=e,l=[o&&a>1?n-1:n,o&&i>1?s-1:s],u=[o&&a>1?a-1:a,o&&i>1?i-1:i],c=l[0]/u[0],p=l[1]/u[1],m=1/c,f=1/p,d=Math.ceil(m)*2+2,h=Math.ceil(f)*2+2;this.userCode=`
void main() {
2020-12-15 14:15:43 +01:00
ivec4 coords = getOutputCoords();
int b = coords[0];
int d = coords[3];
int r = coords[1];
int c = coords[2];
2020-12-15 14:15:43 +01:00
float accumulator = 0.0;
2021-01-12 16:01:34 +01:00
const float heightScale = float(${c});
const float widthScale = float(${p});
2021-01-12 16:01:34 +01:00
const float invHeightScale = float(${m});
const float invWidthScale = float(${f});
2021-01-12 16:01:34 +01:00
const int winHeight = int(${d});
const int winWidth = int(${h});
2020-12-15 14:15:43 +01:00
// Compute bounds for where in dy we will look
float startRLerp = floor(float(r) * invHeightScale);
int startDyR = int(floor(startRLerp - float(winHeight / 2)));
2020-12-15 14:15:43 +01:00
float startCLerp = floor(float(c) * invWidthScale);
int startDyC = int(floor(startCLerp - float(winWidth / 2)));
2020-12-15 14:15:43 +01:00
// Loop over dy
for (int dyROffset = 0; dyROffset < winHeight; dyROffset++) {
int dyR = dyROffset + startDyR;
2020-12-15 14:15:43 +01:00
// Guard against the window exceeding the bounds of dy
2021-01-12 16:01:34 +01:00
if (dyR < 0 || dyR >= ${a}) {
2020-12-15 14:15:43 +01:00
continue;
}
2020-12-15 14:15:43 +01:00
for (int dyCOffset = 0; dyCOffset < winWidth; dyCOffset++) {
int dyC = dyCOffset + startDyC;
2020-12-15 14:15:43 +01:00
// Guard against the window exceeding the bounds of dy
2021-01-12 16:01:34 +01:00
if (dyC < 0 || dyC >= ${i}) {
2020-12-15 14:15:43 +01:00
continue;
}
2020-12-15 14:15:43 +01:00
float sourceFracRow =
2021-01-12 16:01:34 +01:00
float(${l[0]}) *
(float(dyR) / float(${u[0]}));
2020-12-15 14:15:43 +01:00
float sourceFracCol =
2021-01-12 16:01:34 +01:00
float(${l[1]}) *
(float(dyC) / float(${u[1]}));
2020-12-15 14:15:43 +01:00
int sourceNearestRow = int(min(
2021-01-12 16:01:34 +01:00
float(int(${n}) - 1),
${o} ? float(round(sourceFracRow)) :
2020-12-15 14:15:43 +01:00
float(floor(sourceFracRow))));
2020-12-15 14:15:43 +01:00
int sourceNearestCol = int(min(
2021-01-12 16:01:34 +01:00
float(int(${s}) - 1),
${o} ? float(round(sourceFracCol)) :
2020-12-15 14:15:43 +01:00
float(floor(sourceFracCol))));
2020-12-15 14:15:43 +01:00
if (r == sourceNearestRow && c == sourceNearestCol) {
accumulator += getDy(b, dyR, dyC, d);
}
}
}
2020-12-15 14:15:43 +01:00
// End loop over dy
2020-12-15 14:15:43 +01:00
setOutput(accumulator);
}
2021-03-09 23:32:33 +01:00
`}};function DJ(r){let{inputs:e,backend:t,attrs:o}=r,{images:n,dy:s}=e,{alignCorners:a}=o,i=new n0(s.shape,n.shape,a);return t.runWebGLProgram(i,[s],s.dtype)}var gM={kernelName:au,backendName:"webgl",kernelFunc:DJ};var s0=class{constructor(e,t){this.variableNames=["x"];let o=e.length;if(o>4)throw new Error(`WebGL backend: Reverse of rank-${o} tensor is not yet supported`);if(this.outputShape=e,o===1){this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
int coord = getOutputCoords();
2021-01-12 16:01:34 +01:00
setOutput(getX(${e[0]} - coord - 1));
2020-12-15 14:15:43 +01:00
}
2021-01-29 16:39:08 +01:00
`;return}let n=i=>t.indexOf(i)!==-1&&e[i]!==1?`${e[i]} - coords[${i}] - 1`:`coords[${i}]`,s=e.map((i,l)=>n(l)).join(","),a=Le(o);this.userCode=`
void main() {
2021-01-12 16:01:34 +01:00
${a} coords = getOutputCoords();
setOutput(getX(${s}));
}
2021-03-09 23:32:33 +01:00
`}};var i0=class{constructor(e,t){this.variableNames=["x"],this.packedInputs=!0,this.packedOutput=!0;let o=e.length;if(o>4)throw new Error(`WebGL backend: Reverse of rank-${o} tensor is not yet supported`);this.outputShape=e;let n=jt("rc",o),s=`${n[o-1]} + 1 < ${this.outputShape[o-1]}`,a=`${n[o-2]} + 1 < ${this.outputShape[o-2]}`,i=Le(o);o===1?this.userCode=`
2020-12-15 14:15:43 +01:00
void main(){
int rc = getOutputCoords();
vec4 result = vec4(0.);
2021-01-12 16:01:34 +01:00
result.r = getChannel(getX(${e[0]} - rc - 1),
${e[0]} - rc - 1);
if(${s}){
result.g = getChannel(getX(${e[0]} - (rc + 1) - 1),
${e[0]} - (rc + 1) - 1);
2020-12-15 14:15:43 +01:00
}
setOutput(result);
}
`:this.userCode=`
void main() {
2021-01-12 16:01:34 +01:00
${i} rc = getOutputCoords();
2020-12-15 14:15:43 +01:00
vec4 result = vec4(0.);
2021-01-12 16:01:34 +01:00
result.r = ${l(n.slice())};
if(${s}){
result.g = ${u(n.slice())};
2020-12-15 14:15:43 +01:00
}
2021-01-12 16:01:34 +01:00
if(${a}) {
result.b = ${c(n.slice())};
if(${s}) {
result.a = ${p(n.slice())};
2020-12-15 14:15:43 +01:00
}
}
setOutput(result);
}
2021-03-09 23:32:33 +01:00
`;function l(d){return m(d)}function u(d){return d[o-1]="("+d[o-1]+" + 1)",m(d)}function c(d){return d[o-2]="("+d[o-2]+" + 1)",m(d)}function p(d){return d[o-1]="("+d[o-1]+" + 1)",d[o-2]="("+d[o-2]+" + 1)",m(d)}function m(d){let h=e.map((w,b)=>f(b,d)),g=h.join(","),x=h.slice(-2).join(",");return`getChannel(getX(${g}), vec2(${x}))`}function f(d,h){return t.indexOf(d)!==-1&&e[d]!==1?`${e[d]} - ${h[d]} - 1`:`${h[d]}`}}};function $J(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{dims:s}=o,a=n.shape.length,i=y.parseAxisParam(s,n.shape);if(a===0)return Ht({inputs:{x:n},backend:t});let l=j().getBool("WEBGL_PACK_ARRAY_OPERATIONS")?new i0(n.shape,i):new s0(n.shape,i);return t.runWebGLProgram(l,[n],n.dtype)}var xM={kernelName:In,backendName:"webgl",kernelFunc:$J};var a0=class{constructor(e,t){this.variableNames=["Image"],this.outputShape=[];let o=e[1],n=e[2];this.outputShape=e;let s="";typeof t=="number"?s=`float outputValue = ${t.toFixed(2)};`:s=`
vec3 fill = vec3(${t.join(",")});
2020-12-15 14:15:43 +01:00
float outputValue = fill[coords[3]];`,this.userCode=`
2021-03-09 23:32:33 +01:00
uniform vec4 params;
void main() {
ivec4 coords = getOutputCoords();
int x = coords[2];
2020-12-15 14:15:43 +01:00
int y = coords[1];
2021-03-09 23:32:33 +01:00
float coordXFloat = (float(x) - params[0]) * params[3] -
(float(y) - params[1]) * params[2];
float coordYFloat = (float(x) - params[0]) * params[2] +
(float(y) - params[1]) * params[3];
int coordX = int(round(coordXFloat + params[0]));
int coordY = int(round(coordYFloat + params[1]));
${s}
if(coordX >= 0 && coordX < ${n} && coordY >= 0 && coordY < ${o}) {
2020-12-15 14:15:43 +01:00
outputValue = getImage(coords[0], coordY, coordX, coords[3]);
}
setOutput(outputValue);
}
2021-03-09 23:32:33 +01:00
`}getCustomSetupFunc(e,t,o,n){return(s,a)=>{this.paramsLoc==null&&(this.paramsLoc=s.getUniformLocationNoThrow(a,"params")),s.gl.uniform4f(this.paramsLoc,e,t,o,n)}}};var yM={kernelName:Di,backendName:"webgl",kernelFunc:({inputs:r,attrs:e,backend:t})=>{let{image:o}=r,{radians:n,fillValue:s,center:a}=e,i=t,l=new a0(o.shape,s),[u,c]=S.getImageCenter(a,o.shape[1],o.shape[2]),p=l.getCustomSetupFunc(u,c,Math.sin(n),Math.cos(n));return i.runWebGLProgram(l,[o],o.dtype,p)}};var RJ=`
2020-12-15 14:15:43 +01:00
// OpenGL ES does not support round function.
// The algorithm is based on banker's rounding.
float base = floor(x);
if ((x - base) < 0.5) {
return floor(x);
} else if ((x - base) > 0.5) {
return ceil(x);
} else {
if (mod(base, 2.0) == 0.0) {
return base;
} else {
return base + 1.0;
}
}
2021-03-09 23:32:33 +01:00
`,FJ=_e({opSnippet:RJ}),bM={kernelName:Nn,backendName:"webgl",kernelFunc:FJ};var OJ="return inversesqrt(x);",PJ=_e({opSnippet:OJ,cpuKernelImpl:cF}),wM={kernelName:Sn,backendName:"webgl",kernelFunc:PJ};var ch=class{constructor(e,t,o,n,s,a,i=!0){this.variableNames=["updates","indices","defaultValue"],this.outputShape=a;let l=Le(s.length),u=Le(a.length),c="";o===1?c="i":o===2&&(c="i, j");let p=`getIndices(${c})`,m="";n===1?m="i":n===2&&(m="i, coords[1]");let f=`getUpdates(${m})`,d=t>1?"strides[j]":"strides";this.userCode=`
2021-01-12 16:01:34 +01:00
${l} strides = ${l}(${s});
2020-12-15 14:15:43 +01:00
void main() {
2021-01-12 16:01:34 +01:00
${u} coords = getOutputCoords();
2020-12-15 14:15:43 +01:00
float sum = 0.0;
bool found = false;
2021-01-12 16:01:34 +01:00
for (int i = 0; i < ${e}; i++) {
2020-12-15 14:15:43 +01:00
int flattenedIndex = 0;
2021-01-12 16:01:34 +01:00
for (int j = 0; j < ${t}; j++) {
int index = round(${p});
flattenedIndex += index * ${d};
2020-12-15 14:15:43 +01:00
}
if (flattenedIndex == coords[0]) {
2021-01-12 16:01:34 +01:00
sum += ${f};
2020-12-15 14:15:43 +01:00
found = true;
}
}
2020-12-15 14:15:43 +01:00
setOutput(mix(getDefaultValue(), sum, float(found)));
}
2021-03-09 23:32:33 +01:00
`}};function MJ(r){let{inputs:e,backend:t,attrs:o}=r,{indices:n,updates:s}=e,{shape:a}=o,{sliceRank:i,numUpdates:l,sliceSize:u,strides:c,outputSize:p}=S.calculateShapes(s,n,a),m=[p/u,u];if(p===0)return t.makeTensorInfo(a,n.dtype);let f=pe({inputs:{x:n},backend:t,attrs:{shape:[l,i]}}),d=pe({inputs:{x:s},backend:t,attrs:{shape:[l,u]}}),h=t.makeTensorInfo([],"float32",new Float32Array([0])),g=new ch(l,i,f.shape.length,d.shape.length,c,m),x=t.runWebGLProgram(g,[d,f,h],d.dtype),w=pe({inputs:{x},backend:t,attrs:{shape:a}});return t.disposeIntermediateTensorInfo(f),t.disposeIntermediateTensorInfo(d),t.disposeIntermediateTensorInfo(x),t.disposeIntermediateTensorInfo(h),w}var _M={kernelName:vi,backendName:"webgl",kernelFunc:MJ};var l0=class{constructor(e,t,o){this.variableNames=["c","a","b"],this.outputShape=t;let n,s;if(o>4)throw Error(`Where for rank ${o} is not yet supported`);if(o===1)s="resRC",n="resRC";else{let i=["resRC.x","resRC.y","resRC.z","resRC.w"],l=[],u=[];for(let c=0;c<t.length;c++)u.push(`${i[c]}`),c<e&&l.push(`${i[c]}`);n=l.join(),s=u.join()}let a=Le(o);this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
2021-01-12 16:01:34 +01:00
${a} resRC = getOutputCoords();
float cVal = getC(${n});
2020-12-15 14:15:43 +01:00
if (cVal >= 1.0) {
2021-01-12 16:01:34 +01:00
setOutput(getA(${s}));
2020-12-15 14:15:43 +01:00
} else {
2021-01-12 16:01:34 +01:00
setOutput(getB(${s}));
}
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`}};function LJ(r){let{inputs:e,backend:t}=r,{condition:o,t:n,e:s}=e,a=new l0(o.shape.length,n.shape,n.shape.length);return t.runWebGLProgram(a,[o,n,s],dr(n.dtype,s.dtype))}var kM={kernelName:hs,backendName:"webgl",kernelFunc:LJ};var zJ=`
2020-12-15 14:15:43 +01:00
// Stable and Attracting Fixed Point (0, 1) for Normalized Weights.
// see: https://arxiv.org/abs/1706.02515
2021-03-09 23:32:33 +01:00
float scaleAlpha = ${S.SELU_SCALEALPHA};
float scale = ${S.SELU_SCALE};
2020-12-15 14:15:43 +01:00
return (x >= 0.0) ? scale * x : scaleAlpha * (exp(x) - 1.0);
2021-03-09 23:32:33 +01:00
`,BJ=_e({opSnippet:zJ}),vM={kernelName:Ci,backendName:"webgl",kernelFunc:BJ};var VJ="return 1.0 / (1.0 + exp(-1.0 * x));",GJ=_e({opSnippet:VJ}),CM={kernelName:An,backendName:"webgl",kernelFunc:GJ};var WJ=`
2020-12-15 14:15:43 +01:00
if (isnan(x)) { return 0.0; }
return sign(x);
2021-03-09 23:32:33 +01:00
`,UJ=_e({opSnippet:WJ}),IM={kernelName:Ni,backendName:"webgl",kernelFunc:UJ};var jJ=Lx+`
2020-12-15 14:15:43 +01:00
return sin(x);
2021-03-09 23:32:33 +01:00
`,HJ=_e({opSnippet:jJ}),NM={kernelName:Tn,backendName:"webgl",kernelFunc:HJ};var qJ=`
2020-12-15 14:15:43 +01:00
float e2x = exp(x);
return (e2x - 1.0 / e2x) / 2.0;
2021-03-09 23:32:33 +01:00
`,KJ=_e({opSnippet:qJ}),SM={kernelName:Ii,backendName:"webgl",kernelFunc:KJ};var XJ=`
2020-12-15 14:15:43 +01:00
float epsilon = 1.1920928955078125e-7;
float threshold = log(epsilon) + 2.0;
2020-12-15 14:15:43 +01:00
bool too_large = x > -threshold;
bool too_small = x < threshold;
float result;
float exp_x = exp(x);
if (too_large){
result = x;
}
else if (too_small){
result = exp_x;
}
else{
result = log(exp_x + 1.0);
}
return result;
2021-03-09 23:32:33 +01:00
`,YJ=_e({opSnippet:XJ}),TM={kernelName:Si,backendName:"webgl",kernelFunc:YJ};var ZJ=r=>{let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{blockShape:s,paddings:a}=o;y.assert(n.shape.length<=4,()=>"spaceToBatchND for rank > 4 with a WebGL backend not implemented yet");let i=s.reduce((x,w)=>x*w),l=[[0,0]];l.push(...a);for(let x=1+s.length;x<n.shape.length;++x)l.push([0,0]);let u=[],c=JC({inputs:{x:n},backend:t,attrs:{paddings:l,constantValue:0}}),p=S.getReshaped(c.shape,s,i,!1),m=S.getPermuted(p.length,s.length,!1),f=S.getReshapedPermuted(c.shape,s,i,!1),d=pe({inputs:{x:c},backend:t,attrs:{shape:p}}),h=Lt({inputs:{x:d},backend:t,attrs:{perm:m}}),g=pe({inputs:{x:h},backend:t,attrs:{shape:f}});return u.push(c),u.push(d),u.push(h),u.forEach(x=>t.disposeIntermediateTensorInfo(x)),g},AM={kernelName:ma,backendName:"webgl",kernelFunc:ZJ};function JJ(r){let{inputs:e,backend:t,attrs:o}=r,{sparseIndices:n,sparseValues:s,defaultValue:a}=e,{outputShape:i}=o,{sliceRank:l,numUpdates:u,strides:c,outputSize:p}=S.calculateShapes(s,n,i),m=!1,f=new ch(u,l,n.shape.length,s.shape.length,c,[p,1],m),d=t.runWebGLProgram(f,[s,n,a],s.dtype),h=pe({inputs:{x:d},backend:t,attrs:{shape:i}});return t.disposeIntermediateTensorInfo(d),h}var EM={kernelName:uu,backendName:"webgl",kernelFunc:JJ};function QJ(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{numOrSizeSplits:s,axis:a}=o,i=y.parseAxisParam(a,n.shape)[0],l=S.prepareSplitSize(n,s,i),u=n.shape.length,c=new Array(u).fill(0),p=n.shape.slice();return l.map(m=>{let f=[...p];f[i]=m;let d=Va({inputs:{x:n},backend:t,attrs:{begin:c,size:f}});return c[i]+=m,d})}var DM={kernelName:xs,backendName:"webgl",kernelFunc:QJ};var eQ="return sqrt(x);",tQ=_e({opSnippet:eQ}),$M={kernelName:En,backendName:"webgl",kernelFunc:tQ};var rQ="return x * x;",oQ=_e({opSnippet:rQ}),RM={kernelName:fa,backendName:"webgl",kernelFunc:oQ};var FM="return (a - b) * (a - b);",nQ=nt({opSnippet:FM,packedOpSnippet:FM}),OM={kernelName:Rn,backendName:"webgl",kernelFunc:nQ};function sQ({inputs:r,attrs:e,backend:t}){let{x:o}=r,n=yr+`
2021-01-12 16:01:34 +01:00
return x > 0.0 ? 1.0 : float(${e.alpha});
2021-03-09 23:32:33 +01:00
`,s=new ho(o.shape,n);return t.runWebGLProgram(s,[o],o.dtype)}var PM={kernelName:Fo,backendName:"webgl",kernelFunc:sQ};var u0=class{constructor(e,t,o){this.variableNames=["x"],this.outputShape=o;let n=o.length,s=Le(o.length),a=Le(o.length),i="";if(n===1)i="coords * strides + begin";else{let l=0;i=o.map((u,c)=>(l++,o.length===1?`coords * strides[${c}] + begin[${c}]`:`coords[${l-1}] * strides[${c}] + begin[${c}]`)).join(",")}this.userCode=`
2021-01-12 16:01:34 +01:00
${s} begin = ${s}(${e});
${s} strides = ${s}(${t});
2020-12-15 14:15:43 +01:00
void main() {
2021-01-12 16:01:34 +01:00
${a} coords = getOutputCoords();
setOutput(getX(${i}));
2020-12-15 14:15:43 +01:00
}
2021-03-09 23:32:33 +01:00
`}};function iQ(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{begin:s,end:a,strides:i,beginMask:l,endMask:u,ellipsisMask:c,newAxisMask:p,shrinkAxisMask:m}=o,{nonStrided:f,$begin:d,$strides:h,size:g,newShape:x,outShape:w}=sr.sliceInfo(n.shape,s,a,i,l,u,c,p,m),b=pe({inputs:{x:n},backend:t,attrs:{shape:x}}),_;if(f){let A=Va({inputs:{x:b},backend:t,attrs:{begin:d,size:g}});_=pe({inputs:{x:A},backend:t,attrs:{shape:w}}),t.disposeIntermediateTensorInfo(A)}else if(w.some(A=>A===0))_=t.makeTensorInfo(w,n.dtype,[]);else if(t.shouldExecuteOnCPU([b])){let $=t.texData.get(b.dataId).values,F=ve(b.shape,b.dtype,$),M=mF(w,F,h,d);_=t.makeTensorInfo(w,b.dtype,M.values)}else{let N=new u0(d,h,w);_=t.runWebGLProgram(N,[b],b.dtype)}let k=pe({inputs:{x:_},backend:t,attrs:{shape:w}});return t.disposeIntermediateTensorInfo(b),t.disposeIntermediateTensorInfo(_),k}var MM={kernelName:Ti,backendName:"webgl",kernelFunc:iQ};var aQ="return tan(x);",lQ=_e({opSnippet:aQ}),LM={kernelName:Ai,backendName:"webgl",kernelFunc:lQ};var uQ=`
2020-12-15 14:15:43 +01:00
float e2x = exp(-2.0 * abs(x));
return sign(x) * (1.0 - e2x) / (1.0 + e2x);
2021-03-09 23:32:33 +01:00
`,cQ=_e({opSnippet:uQ}),zM={kernelName:On,backendName:"webgl",kernelFunc:cQ};var c0=class{constructor(e,t){this.variableNames=["A"];let o=new Array(e.length);for(let a=0;a<o.length;a++)o[a]=e[a]*t[a];this.outputShape=o,this.rank=o.length;let n=Le(this.rank),s=pQ(e);this.userCode=`
2020-12-15 14:15:43 +01:00
void main() {
2021-01-12 16:01:34 +01:00
${n} resRC = getOutputCoords();
setOutput(getA(${s}));
}
2021-03-09 23:32:33 +01:00
`}};function pQ(r){let e=r.length;if(e>5)throw Error(`Tile for rank ${e} is not yet supported`);if(e===1)return`imod(resRC, ${r[0]})`;let t=["resRC.x","resRC.y","resRC.z","resRC.w","resRC.u"],o=[];for(let n=0;n<r.length;n++)o.push(`imod(${t[n]}, ${r[n]})`);return o.join()}function p0(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{reps:s}=o;if(n.dtype==="string"){let u=t.readSync(n.dataId).map(m=>y.decodeString(m)),c=ve(n.shape,n.dtype,u),p=dF(c,s);return t.makeTensorInfo(p.shape,p.dtype,p.values)}let a=new c0(n.shape,s);return t.runWebGLProgram(a,[n],n.dtype)}var BM={kernelName:_o,backendName:"webgl",kernelFunc:p0};function mQ(r){let{inputs:e,backend:t,attrs:o}=r,{x:n}=e,{k:s,sorted:a}=o,i=t.readSync(n.dataId),[l,u]=hF(i,n.shape,n.dtype,s,a);return[t.makeTensorInfo(l.shape,l.dtype,l.values),t.makeTensorInfo(u.shape,u.dtype,u.values)]}var VM={kernelName:Ei,backendName:"webgl",kernelFunc:mQ};var m0=class{constructor(e,t,o,n,s,a){this.variableNames=["Image","Transforms"],this.outputShape=a;let i=o==="nearest"?1:2,l;switch(n){case"constant":l=1;break;case"reflect":l=2;break;case"wrap":l=3;break;case"nearest":l=4;break;default:l=1;break}this.userCode=`
float mapCoord(float outCoord, float len) {
float inCoord = outCoord;
if(${l} == 2) {
if (inCoord < 0.0) {
if (len <= 1.0) {
inCoord = 0.0;
} else {
float sz2 = 2.0 * len;
if (inCoord < sz2) {
inCoord = sz2 * float(int(float(-inCoord / sz2))) +
inCoord;
}
inCoord = inCoord < -len ? inCoord + sz2 : -inCoord - 1.0;
}
} else if (inCoord > len - 1.0) {
if (len <= 1.0) {
inCoord = 0.0;
} else {
float sz2 = 2.0 * len;
inCoord -= sz2 * float(int(float(inCoord / sz2)));
if (inCoord >= len) {
inCoord = sz2 - inCoord - 1.0;
}
}
}
return clamp(inCoord, 0.0, len - 1.0);
} else if (${l} == 3) {
if (inCoord < 0.0) {
if (len <= 1.0) {
inCoord = 0.0;
} else {
float sz = len - 1.0;
inCoord += len * (float(int(float(-inCoord / sz))) + 1.0);
}
} else if (inCoord > len - 1.0) {
if (len <= 1.0) {
inCoord = 0.0;
} else {
float sz = len - 1.0;
inCoord -= len * float(int(float(inCoord / sz)));
}
}
return clamp(inCoord, 0.0, len - 1.0);
} else if (${l} == 4) {
return clamp(outCoord, 0.0, len - 1.0);
} else {
return outCoord;
}
}
float readWithFillValue(int batch, int coordY, int coordX,
int channel) {
float outputValue;
if (0 <= coordY && coordY < ${e} && 0 <= coordX && coordX < ${t}) {
outputValue = getImage(batch, coordY, coordX, channel);
} else {
outputValue = float(${s});
}
return outputValue;
}
void main() {
ivec4 coords = getOutputCoords();
float outputValue;
int batch = coords[0];
int x = coords[2];
int y = coords[1];
int channel = coords[3];
float xf = float(x);
float yf = float(y);
float a1 = getTransforms(batch, 0);
float a2 = getTransforms(batch, 1);
float a3 = getTransforms(batch, 2);
float b1 = getTransforms(batch, 3);
float b2 = getTransforms(batch, 4);
float b3 = getTransforms(batch, 5);
float c1 = getTransforms(batch, 6);
float c2 = getTransforms(batch, 7);
float projection = c1 * xf + c2 * yf + 1.0;
if (projection == 0.0) {
outputValue = float(${s});
} else {
float inX = (a1 * xf + a2 * yf + a3) / projection;
float inY = (b1 * xf + b2 * yf + b3) / projection;
float mapX = mapCoord(inX, float(${t}));
float mapY = mapCoord(inY, float(${e}));
if (${i} == 1) {
int coordY = int(round(mapY));
int coordX = int(round(mapX));
outputValue = readWithFillValue(batch, coordY, coordX,
channel);
} else {
float yFloor = floor(mapY);
float xFloor = floor(mapX);
float yCeil = yFloor + 1.0;
float xCeil = xFloor + 1.0;
float valueYFloor = (xCeil - mapX) *
readWithFillValue(batch, int(yFloor), int(xFloor), channel) +
(mapX - xFloor) *
readWithFillValue(batch, int(yFloor), int(xCeil), channel);
float valueYCeil = (xCeil - mapX) *
readWithFillValue(batch, int(yCeil), int(xFloor), channel) +
(mapX - xFloor) *
readWithFillValue(batch, int(yCeil), int(xCeil), channel);
outputValue = (yCeil - mapY) * valueYFloor +
(mapY - yFloor) * valueYCeil;
}
}
setOutput(outputValue);
}
`}};function fQ(r){let{inputs:e,backend:t,attrs:o}=r,{image:n,transforms:s}=e,{interpolation:a,fillMode:i,fillValue:l,outputShape:u}=o,[c,p,m,f]=n.shape,[d,h]=u!=null?u:[p,m],g=[c,d,h,f],x=new m0(p,m,a,i,l,g);return t.runWebGLProgram(x,[n,s],"float32")}var GM={kernelName:cu,backendName:"webgl",kernelFunc:fQ};function dQ(r){let{inputs:e,attrs:t,backend:o}=r,{axis:n}=t,{x:s}=e;qi(s,"unique"),console.warn("WARNING: ","UI might be locked temporarily as data is being downloaded");let a=o.readSync(s.dataId),{outputValues:i,outputShape:l,indices:u}=gF(a,n,s.shape,s.dtype);return[o.makeTensorInfo(l,s.dtype,i),o.makeTensorInfo([u.length],"int32",u)]}var WM={kernelName:pu,backendName:"webgl",kernelFunc:dQ};function hQ(r){let{inputs:e,backend:t,attrs:o}=r,{value:n}=e,{axis:s}=o;s<0&&(s+=n.shape.length);let a=n,i=a.shape.length,l=n.shape[s],u=new Array(i-1),c=0;for(let h=0;h<i;h++)h!==s&&(u[c++]=a.shape[h]);let p=[],m=new Array(i).fill(0),f=a.shape.slice();f[s]=1;let d=new Array(l);for(let h=0;h<d.length;h++){m[s]=h;let g=Va({inputs:{x:a},backend:t,attrs:{begin:m,size:f}}),x=pe({inputs:{x:g},backend:t,attrs:{shape:u}});d[h]=x,p.push(g)}return p.forEach(h=>t.disposeIntermediateTensorInfo(h)),d}var UM={kernelName:ys,backendName:"webgl",kernelFunc:hQ};var f0=class{constructor(e,t){this.variableNames=["x","segmentIds"];let o=e.windowSize,n=e.batchSize,s=e.inSize,a=e.numSegments,i=a*Math.ceil(s/o);this.outputShape=[n,i];let l="0.0",u="sumValue",c=Math.floor(o/4)*4,p=o%4,m=`
2020-12-15 14:15:43 +01:00
sumValue += dot(values, segFilter);
2021-01-12 16:01:34 +01:00
`,f="";s%o>0&&(f=`
if (inIdx < 0 || inIdx >= ${s}) {
2020-12-15 14:15:43 +01:00
return initializationValue;
}
2021-01-12 16:01:34 +01:00
`);let d="";s%o>0&&(d=`
if (inIdx < 0 || inIdx >= ${s}) {
2020-12-15 14:15:43 +01:00
return -1.0;
}
`),this.userCode=`
2021-01-12 16:01:34 +01:00
const float initializationValue = ${l};
float getValue(int batch, int inIdx) {
2021-01-12 16:01:34 +01:00
${f}
return getX(batch, inIdx);
}
2020-12-15 14:15:43 +01:00
float getSegmentIdAtIndex(int inIdx) {
2021-01-12 16:01:34 +01:00
${d}
2020-12-15 14:15:43 +01:00
return getSegmentIds(inIdx);
}
void main() {
ivec2 coords = getOutputCoords();
int batch = coords[0];
int outIdx = coords[1];
2020-12-15 14:15:43 +01:00
int inOffset = int(floor(float(outIdx) / float(
2021-01-12 16:01:34 +01:00
${a})) * float(${o}));
int currentSeg = int(mod(float(outIdx), float(${a})));
float sumValue = 0.0;
2021-01-12 16:01:34 +01:00
for (int i = 0; i < ${c}; i += 4) {
int inIdx = inOffset + i;
vec4 values = vec4(
getValue(batch, inIdx),
getValue(batch, inIdx + 1),
getValue(batch, inIdx + 2),
getValue(batch, inIdx + 3)
);
2020-12-15 14:15:43 +01:00
vec4 segFilter = vec4(
int(getSegmentIdAtIndex(inIdx)) == currentSeg ? 1 : 0,
int(getSegmentIdAtIndex(inIdx + 1)) == currentSeg ? 1 : 0,
int(getSegmentIdAtIndex(inIdx + 2)) == currentSeg ? 1 : 0,
int(getSegmentIdAtIndex(inIdx + 3)) == currentSeg ? 1 : 0
);
2021-01-12 16:01:34 +01:00
${m}
}
2021-01-12 16:01:34 +01:00
int inIdx = inOffset + ${c};
if (${p===1}) {
2020-12-15 14:15:43 +01:00
vec4 values = vec4(
getValue(batch, inIdx),
initializationValue,
initializationValue,
initializationValue
);
int inIdxSeg = int(getSegmentIdAtIndex(inIdx));
vec4 segFilter = vec4(
int(getSegmentIdAtIndex(inIdx)) == currentSeg ? 1 : 0,
0,
0,
0
);
2021-01-12 16:01:34 +01:00
${m}
} else if (${p===2}) {
vec4 values = vec4(
getValue(batch, inIdx),
2020-12-15 14:15:43 +01:00
getValue(batch, inIdx + 1),
initializationValue,
initializationValue
);
vec4 segFilter = vec4(
int(getSegmentIdAtIndex(inIdx)) == currentSeg ? 1 : 0,
int(getSegmentIdAtIndex(inIdx + 1)) == currentSeg ? 1 : 0,
0,
0
);
2021-01-12 16:01:34 +01:00
${m}
} else if (${p===3}) {
vec4 values = vec4(
getValue(batch, inIdx),
getValue(batch, inIdx + 1),
2020-12-15 14:15:43 +01:00
getValue(batch, inIdx + 2),
initializationValue
);
2020-12-15 14:15:43 +01:00
vec4 segFilter = vec4(
int(getSegmentIdAtIndex(inIdx)) == currentSeg ? 1 : 0,
int(getSegmentIdAtIndex(inIdx + 1)) == currentSeg ? 1 : 0,
int(getSegmentIdAtIndex(inIdx + 2)) == currentSeg ? 1 : 0,
0
);
2021-01-12 16:01:34 +01:00
${m}
}
2021-01-12 16:01:34 +01:00
setOutput(${u});
}
2021-03-09 23:32:33 +01:00
`}};function gQ(r){let{inputs:e,backend:t,attrs:o}=r,{x:n,segmentIds:s}=e,{numSegments:a}=o,i=n.shape.length,l=[],u=0,c=S.getAxesPermutation([u],i),p=n;c!=null&&(p=Lt({inputs:{x:n},backend:t,attrs:{perm:c}}),l.push(p),u=S.getInnerMostAxes(1,i)[0]);let m=S.segment_util.computeOutShape(p.shape,u,a),f=y.sizeFromShape([p.shape[u]]),d=pe({inputs:{x:p},backend:t,attrs:{shape:[-1,f]}});l.push(d);let h=fu(n.dtype),g=(_,k,A,N,$)=>{let F=_.shape[0],M=_.shape[1],V=S.segment_util.segOpComputeOptimalWindowSize(M,$),W={windowSize:V,inSize:M,batchSize:F,numSegments:$},U=new f0(W,k),H=t.compileAndRun(U,[_,A],N);if(l.push(H),H.shape[1]===$)return H;let q=QC({backend:t,attrs:{start:0,stop:$,step:1,dtype:"float32"}}),X=p0({inputs:{x:q},backend:t,attrs:{reps:[M/V]}});return l.push(q),l.push(X),g(H,k,X,N,$)},x=g(d,"unsortedSegmentSum",s,h,a),w=pe({inputs:{x},backend:t,attrs:{shape:m}}),b=w;if(c!=null){l.push(w);let _=S.getUndoAxesPermutation(c);b=Lt({inputs:{x:b},backend:t,attrs:{perm:_}})}return l.forEach(_=>t.disposeIntermediateTensorInfo(_)),b}var jM={kernelName:da,backendName:"webgl",kernelFunc:gQ};var xQ=[TP,AP,WF,jF,HF,qF,XF,YF,ZF,JF,tO,rO,oO,nO,iO,sO,aO,uO,lO,cO,pO,mO,fO,hO,gO,wO,kO,vO,IO,DF,TO,EO,DO,AO,RO,FO,$O,OO,PO,MO,BO,VO,GO,UO,jO,WO,HO,qO,KO,XO,YO,ZO,QO,eP,rP,oP,nP,sP,aP,lP,uP,cP,pP,mP,fP,dP,hP,EF,gP,NO,xP,yP,bP,$F,wP,_P,kP,CP,vP,IP,NP,SP,DP,FP,RP,OP,PP,LP,$P,BP,VP,GP,WP,UP,XP,MF,ZP,JP,QP,eM,xO,tM,nM,sM,iM,aM,RF,lM,uM,yO,jP,cM,mM,pM,zF,fM,dM,hM,gM,xM,yM,bM,wM,_M,kM,vM,CM,IM,NM,SM,dO,KP,TM,AM,EM,DM,$M,RM,OM,PM,MM,qP,VF,LM,zM,BM,VM,GM,GF,WM,UM,jM,rM];for(let r of xQ)Ja(r);var HM="3.3.0";var yQ={"tfjs-core":nw,"tfjs-backend-cpu":c2,"tfjs-backend-webgl":AF,"tfjs-data":_x,"tfjs-layers":dl,"tfjs-converter":fx,tfjs:HM};var zt;(function(r){r[r.float32=0]="float32",r[r.int32=1]="int32",r[r.bool=2]="bool",r[r.string=3]="string",r[r.complex64=4]="complex64"})(zt||(zt={}));var El;(function(r){r[r.linear=0]="linear",r[r.relu=1]="relu",r[r.relu6=2]="relu6",r[r.prelu=3]="prelu",r[r.leakyrelu=4]="leakyrelu"})(El||(El={}));var qM;function bQ(r){qM=r.wasm.cwrap(ws,null,["number","array","number","number","array","number","number","number","number","number","number","number","number"])}function wQ(r){let{inputs:e,backend:t,attrs:o}=r,{a:n,b:s,bias:a,preluActivationWeights:i}=e;if(n.dtype!=="float32"||s.dtype!=="float32")throw new Error("_FusedMatMul for non non-float32 tensors not yet supported.");let{transposeA:l,transposeB:u,activation:c,leakyreluAlpha:p}=o,m=t.dataIdMap.get(n.dataId).id,f=t.dataIdMap.get(s.dataId).id,d=0;if(a!=null){let $=t.dataIdMap.get(a.dataId);if($.shape.length!==1)throw new Error(`_FusedMatMul only supports rank-1 bias but got rank ${$.shape.length}.`);d=$.id}let h=i==null?0:t.dataIdMap.get(i.dataId).id,g=El[c];if(g==null)throw new Error(`${c} activation not yet supported for FusedConv2D in the wasm backend.`);let x=l?n.shape[2]:n.shape[1],w=u?s.shape[1]:s.shape[2],b=n.shape[0],_=t.makeOutput([b,x,w],n.dtype),k=t.dataIdMap.get(_.dataId).id,A=new Uint8Array(new Int32Array(n.shape).buffer),N=new Uint8Array(new Int32Array(s.shape).buffer);return qM(m,A,n.shape.length,f,N,s.shape.length,l,u,g,d,h,p||0,k),_}var KM={kernelName:ws,backendName:"wasm",setupFunc:bQ,kernelFunc:wQ};function Tt(r){let e;function t(n){e=n.wasm.cwrap(r,null,["number","number"])}function o(n){let{backend:s,inputs:{x:a}}=n,i=s.dataIdMap.get(a.dataId).id,l=s.makeOutput(a.shape,a.dtype),u=s.dataIdMap.get(l.dataId).id;return y.sizeFromShape(l.shape)===0||e(i,u),l}return{kernelName:r,backendName:"wasm",setupFunc:t,kernelFunc:o}}var XM=Tt(as);function wt(r,e,t){let o;function n(a){o=a.wasm.cwrap(r,null,["number","array","number","number","array","number","number","number"])}function s(a){let{backend:i,inputs:l}=a,{a:u,b:c}=l,p=i.dataIdMap.get(u.dataId).id,m=i.dataIdMap.get(c.dataId).id,f=t!=null?t:u.dtype,d=S.assertAndGetBroadcastShape(u.shape,c.shape),h=i.makeOutput(d,f);if(y.sizeFromShape(d)===0)return h;let g=new Uint8Array(new Int32Array(u.shape).buffer),x=new Uint8Array(new Int32Array(c.shape).buffer),w=i.dataIdMap.get(h.dataId).id,b=()=>o(p,g,u.shape
/**
* @license
* Copyright 2017 Google LLC. All Rights Reserved.
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
* =============================================================================
*/
/**
* @license
* Copyright 2018 Google LLC
*
* Use of this source code is governed by an MIT-style
* license that can be found in the LICENSE file or at
* https://opensource.org/licenses/MIT.
* =============================================================================
*/
/**
* @license
* Copyright 2018 Google LLC. All Rights Reserved.
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*
* =============================================================================
*/
/**
* @license
* Copyright 2018 Google LLC. All Rights Reserved.
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
* =============================================================================
*/
/**
* @license
* Copyright 2019 Google LLC
*
* Use of this source code is governed by an MIT-style
* license that can be found in the LICENSE file or at
* https://opensource.org/licenses/MIT.
* =============================================================================
*/
/**
* @license
* Copyright 2019 Google LLC. All Rights Reserved.
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*
* =============================================================================
*/
/**
* @license
* Copyright 2019 Google LLC. All Rights Reserved.
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
* =============================================================================
*/
/**
* @license
* Copyright 2020 Google Inc. All Rights Reserved.
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
* =============================================================================
*/
/**
* @license
* Copyright 2020 Google LLC
*
* Use of this source code is governed by an MIT-style
* license that can be found in the LICENSE file or at
* https://opensource.org/licenses/MIT.
* =============================================================================
*/
/**
* @license
* Copyright 2020 Google LLC. All Rights Reserved.
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
* =============================================================================
*/
/**
* @license
* Copyright 2020 Google LLC. All Rights Reserved.
* Licensed under the Apache License, Version 2.0 (the License);
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an AS IS BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
* =============================================================================
*/
2021-01-10 16:35:51 +01:00
/**
* @license
* Copyright 2021 Google LLC. All Rights Reserved.
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
* =============================================================================
*/
/** @license See the LICENSE file. */
//# sourceMappingURL=tfjs.esm.js.map