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HydraSynth {\n\n            constructor ({\n                pb = null,\n                width = 768,\n                height = 768,\n                numSources = 4,\n                numOutputs = 4,\n                makeGlobal = true,\n                autoLoop = true,\n                detectAudio = false,\n                enableStreamCapture = false,\n                canvas,\n                precision = 'mediump'\n            } = {}) {\n\n                this.bpm = 60\n                this.pb = pb\n                this.width = width\n                this.height = height\n                this.time = 0\n                this.makeGlobal = makeGlobal\n                this.renderAll = false\n                this.detectAudio = detectAudio\n\n                // only allow valid precision options\n                let precisionOptions = ['lowp','mediump','highp']\n                let precisionValid = precisionOptions.includes(precision.toLowerCase())\n\n                this.precision = precisionValid ? precision.toLowerCase() : 'mediump'\n\n                if(!precisionValid){\n                console.warn('[hydra-synth warning]\\nConstructor was provided an invalid floating point precision value of \"' + precision + '\". Using default value of \"mediump\" instead.')\n                }\n\n                // boolean to store when to save screenshot\n                this.saveFrame = false\n\n                // if stream capture is enabled, this object contains the capture stream\n                this.captureStream = null\n\n                this._initCanvas(canvas)\n                this._initRegl()\n                this._initOutputs(numOutputs)\n                this._initSources(numSources)\n                this._generateGlslTransforms()\n\n                window.screencap = () => {\n                this.saveFrame = true\n                }\n\n                if (enableStreamCapture) {\n                this.captureStream = this.canvas.captureStream(25)\n\n                // to do: enable capture stream of specific sources and outputs\n                window.vidRecorder = new VidRecorder(this.captureStream)\n                }\n\n                if(detectAudio) this._initAudio()\n                //if(makeGlobal) {\n                window.mouse = mouse\n                window.time = this.time\n                window['render'] = this.render.bind(this)\n                //  window.bpm = this.bpm\n                window.bpm = this._setBpm.bind(this)\n            //  }\n                if(autoLoop) loop(this.tick.bind(this)).start()\n            }\n\n            getScreenImage(callback) {\n                this.imageCallback = callback\n                this.saveFrame = true\n            }\n\n            resize(width, height) {\n                console.log(width, height)\n                this.canvas = document.querySelector('foreignObject').querySelector('canvas');\n                this.canvas.width = width\n                this.canvas.height = height\n                this.width = width\n                this.height = height\n                this.regl.poll()\n                this.o.forEach((output) => {\n                output.resize(width, height)\n                })\n                this.s.forEach((source) => {\n                source.resize(width, height)\n                })\n            }\n            canvasToImage (callback) {\n                const a = document.createElement('a')\n                a.style.display = 'none'\n\n                let d = new Date()\n                a.download = `hydra-${d.getFullYear()}-${d.getMonth() + 1}-${d.getDate()}-${d.getHours()}.${d.getMinutes()}.${d.getSeconds()}.png`\n                document.body.appendChild(a)\n                var self = this\n                this.canvas.toBlob( (blob) => {\n                //  var url = window.URL.createObjectURL(blob)\n\n                    if(self.imageCallback){\n                    self.imageCallback(blob)\n                    delete self.imageCallback\n                    } else {\n                    a.href = URL.createObjectURL(blob)\n                    console.log(a.href)\n                    a.click()\n                    }\n                }, 'image/png')\n                setTimeout(() => {\n                document.body.removeChild(a);\n                window.URL.revokeObjectURL(a.href);\n                }, 300);\n            }\n\n            _initAudio () {\n                this.audio = new Audio({\n                numBins: 4\n                })\n                if(this.makeGlobal) window.a = this.audio\n            }\n            // create main output canvas and add to screen\n            _initCanvas (canvas) {\n                if (canvas) {\n                this.canvas = canvas\n                this.width = canvas.width\n                this.height = canvas.height\n                } else {\n                this.canvas = document.createElement('canvas')\n                this.canvas.width = this.width\n                this.canvas.height = this.height\n                this.canvas.style.width = '100%'\n                this.canvas.style.height = '100%'\n                document.body.appendChild(this.canvas)\n                }\n            }\n\n            _initRegl () {\n                this.regl = require('regl')({\n                canvas: this.canvas,\n                pixelRatio: 1,\n                extensions: [\n                    'oes_texture_half_float',\n                    'oes_texture_half_float_linear'\n                ],\n                optionalExtensions: [\n                    'oes_texture_float',\n                    'oes_texture_float_linear'\n                ]})\n\n                // This clears the color buffer to black and the depth buffer to 1\n                this.regl.clear({\n                color: [0, 0, 0, 1]\n                })\n\n                this.renderAll = this.regl({\n                frag: `\n                precision ${this.precision} float;\n                varying vec2 uv;\n                uniform sampler2D tex0;\n                uniform sampler2D tex1;\n                uniform sampler2D tex2;\n                uniform sampler2D tex3;\n\n                void main () {\n                    vec2 st = vec2(1.0 - uv.x, uv.y);\n                    st*= vec2(2);\n                    vec2 q = floor(st).xy*(vec2(2.0, 1.0));\n                    int quad = int(q.x) + int(q.y);\n                    st.x += step(1., mod(st.y,2.0));\n                    st.y += step(1., mod(st.x,2.0));\n                    st = fract(st);\n                    if(quad==0){\n                    gl_FragColor = texture2D(tex0, st);\n                    } else if(quad==1){\n                    gl_FragColor = texture2D(tex1, st);\n                    } else if (quad==2){\n                    gl_FragColor = texture2D(tex2, st);\n                    } else {\n                    gl_FragColor = texture2D(tex3, st);\n                    }\n\n                }\n                `,\n                vert: `\n                precision ${this.precision} float;\n                attribute vec2 position;\n                varying vec2 uv;\n\n                void main () {\n                    uv = position;\n                    gl_Position = vec4(1.0 - 2.0 * position, 0, 1);\n                }`,\n                attributes: {\n                    position: [\n                    [-2, 0],\n                    [0, -2],\n                    [2, 2]\n                    ]\n                },\n                uniforms: {\n                    tex0: this.regl.prop('tex0'),\n                    tex1: this.regl.prop('tex1'),\n                    tex2: this.regl.prop('tex2'),\n                    tex3: this.regl.prop('tex3')\n                },\n                count: 3,\n                depth: { enable: false }\n                })\n\n                this.renderFbo = this.regl({\n                frag: `\n                precision ${this.precision} float;\n                varying vec2 uv;\n                uniform vec2 resolution;\n                uniform sampler2D tex0;\n\n                void main () {\n                    gl_FragColor = texture2D(tex0, vec2(1.0 - uv.x, uv.y));\n                }\n                `,\n                vert: `\n                precision ${this.precision} float;\n                attribute vec2 position;\n                varying vec2 uv;\n\n                void main () {\n                    uv = position;\n                    gl_Position = vec4(1.0 - 2.0 * position, 0, 1);\n                }`,\n                attributes: {\n                    position: [\n                    [-2, 0],\n                    [0, -2],\n                    [2, 2]\n                    ]\n                },\n                uniforms: {\n                    tex0: this.regl.prop('tex0'),\n                    resolution: this.regl.prop('resolution')\n                },\n                count: 3,\n                depth: { enable: false }\n                })\n            }\n\n            _initOutputs (numOutputs) {\n                const self = this\n                this.o = (Array(numOutputs)).fill().map((el, index) => {\n                var o = new Output({\n                    regl: this.regl,\n                    width: this.width,\n                    height: this.height,\n                    precision: this.precision\n                })\n                o.render()\n                o.id = index\n                if (self.makeGlobal) window['o' + index] = o\n                return o\n                })\n\n                // set default output\n                this.output = this.o[0]\n            }\n\n            _initSources (numSources) {\n                this.s = []\n                for(var i = 0; i < numSources; i++) {\n                this.createSource()\n                }\n            }\n\n            _setBpm(bpm) {\n                this.bpm = bpm\n            }\n\n            createSource () {\n                let s = new Source({regl: this.regl, pb: this.pb, width: this.width, height: this.height})\n                if(this.makeGlobal) {\n                window['s' + this.s.length] = s\n                }\n                this.s.push(s)\n                return s\n            }\n\n            _generateGlslTransforms () {\n                const self = this\n                const gen = new GeneratorFactory(this.o[0], this.precision)\n                window.generator = gen\n                Object.keys(gen.functions).forEach((key)=>{\n                self[key] = gen.functions[key]\n                if(self.makeGlobal === true) {\n                    window[key] = gen.functions[key]\n                }\n                })\n            }\n\n            render (output) {\n                if (output) {\n                this.output = output\n                this.isRenderingAll = false\n                } else {\n                this.isRenderingAll = true\n                }\n            }\n\n            tick (dt, uniforms) {\n\n            //  if(self.detectAudio === true) self.fft = self.audio.frequencies()\n            // this.regl.frame(function () {\n                this.time += dt * 0.001\n                // console.log(this.time)\n                // this.regl.clear({\n                //   color: [0, 0, 0, 1]\n                // })\n                window.time = this.time\n                if(this.detectAudio === true) this.audio.tick()\n                for (let i = 0; i < this.s.length; i++) {\n                this.s[i].tick(this.time)\n                }\n\n                for (let i = 0; i < this.o.length; i++) {\n                //  console.log('WIDTH', this.canvas.width, this.o[0].getCurrent())\n                this.o[i].tick({\n                    time: this.time,\n                    mouse: mouse,\n                    bpm: this.bpm,\n                    resolution: [this.canvas.width, this.canvas.height]\n                })\n                }\n\n                // console.log(\"looping\", self.o[0].fbo)\n                if (this.isRenderingAll) {\n                this.renderAll({\n                    tex0: this.o[0].getCurrent(),\n                    tex1: this.o[1].getCurrent(),\n                    tex2: this.o[2].getCurrent(),\n                    tex3: this.o[3].getCurrent(),\n                    resolution: [this.canvas.width, this.canvas.height]\n                })\n                } else {\n                //  console.log('out', self.output.id)\n                this.renderFbo({\n                    tex0: this.output.getCurrent(),\n                    resolution: [this.canvas.width, this.canvas.height]\n                })\n                }\n                if(this.saveFrame === true) {\n                this.canvasToImage()\n                this.saveFrame = false\n                }\n            }\n\n\n            }","level":"log","timestamp":1723933386045},{"text":"[.WebGL-0x132c00376a00]GL Driver Message (OpenGL, Performance, GL_CLOSE_PATH_NV, High): GPU stall due to ReadPixels","level":"warning","timestamp":1723933387594},{"text":"[.WebGL-0x132c00376a00]GL Driver Message (OpenGL, Performance, GL_CLOSE_PATH_NV, High): GPU stall due to ReadPixels","level":"warning","timestamp":1723933387595},{"text":"[.WebGL-0x132c00376a00]GL Driver Message (OpenGL, Performance, GL_CLOSE_PATH_NV, High): GPU stall due to ReadPixels","level":"warning","timestamp":1723933387595},{"text":"[.WebGL-0x132c00376a00]GL Driver Message (OpenGL, Performance, GL_CLOSE_PATH_NV, High): GPU stall due to ReadPixels (this message will no longer repeat)","level":"warning","timestamp":1723933387595}],"screenshotDelay":10000},"timestamp":1723933385322},"created_at":"2024-08-17T22:23:18.733+00:00","updated_at":"2024-08-17T22:23:18.733+00:00"}