{"history":[{"breakpoints":[],"visible":true,"aspectRatio":1,"userDownsample":1,"layerType":"effect","type":"gradient","usesPingPong":false,"texture":false,"animating":false,"mouseMomentum":0,"mouseSpring":0,"isMask":0,"compiledFragmentShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;in vec2 vTextureCoord;uniform vec2 uMousePos;const float PI = 3.14159265359;vec2 rotate(vec2 coord, float angle) {\nfloat s = sin(angle);\nfloat c = cos(angle);\nreturn vec2(\ncoord.x * c - coord.y * s,\ncoord.x * s + coord.y * c\n);\n}out vec4 fragColor;vec3 getBgColor(vec2 uv) {return vec3(0, 0, 0);\n}void main() {vec2 uv = vTextureCoord;\nvec2 pos = vec2(0.5, 0.5) + mix(vec2(0), (uMousePos-0.5), 0.0000);\nuv -= pos;\nuv /= max(0.5000*2., 1e-5);\nuv = rotate(uv, (0.0000 - 0.5) * 2. * PI);\nvec4 color = vec4(getBgColor(uv), 1.0) * 1.0000;\nfragColor = color;\n}"],"compiledVertexShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision mediump float;in vec3 aVertexPosition;\nin vec2 aTextureCoord;uniform mat4 uMVMatrix;\nuniform mat4 uPMatrix;out vec2 vTextureCoord;\nout vec3 vVertexPosition;void main() {\ngl_Position = uPMatrix * uMVMatrix * vec4(aVertexPosition, 1.0);\nvTextureCoord = aTextureCoord;\n}"],"speed":0.25,"trackMouse":0,"trackAxes":"xy","data":{"downSample":0.5,"depth":false,"uniforms":{},"isBackground":true},"id":"b50eb659-2177-4bd6-956d-5b5b724db0c2","publicId":"gradient"},{"breakpoints":[],"aspectRatio":1,"userDownsample":1,"states":{"appear":[],"scroll":[],"hover":[],"mousemove":[]},"effects":["004fc184-4955-44d5-afde-7140e6ce2fdb"],"anchorPoint":8,"mask":0,"maskInvert":0,"maskDepth":0,"maskDepthLayer":0,"layerType":"image","width":450,"widthMode":1,"height":450,"heightMode":1,"left":0.5,"top":0.5,"src":"https://assets.unicorn.studio/images/b6ZYknq3EbbdQ5ZVqxPzAJhsjTC2/remix_Frame%202147258283_v1.png","imageNaturalSize":{"type":"Vec2","_x":1440,"_y":900},"compiledFragmentShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;in vec2 vTextureCoord;\nin vec3 vVertexPosition;uniform sampler2D uSourceImage;uniform vec2 uArtboardResolution;\nuniform vec2 uMousePos;const float TAU = 6.28318530718;\nconst float PI = 3.14159265359;out vec4 fragColor;vec4 sampleImage(vec2 canvasUV, vec2 mouseOffset, vec2 mouseRotOffset) {\nvec2 canvasPos = vec2(canvasUV.x * uArtboardResolution.x, (1.0 - canvasUV.y) * uArtboardResolution.y);\nvec2 imageUV;float imageAspect = vec2(1440, 900).x / vec2(1440, 900).y;\nfloat canvasAspect = uArtboardResolution.x / uArtboardResolution.y;\nvec2 fitSize = vec2(\n(canvasAspect < imageAspect) ? uArtboardResolution.y * imageAspect : uArtboardResolution.x,\n(canvasAspect < imageAspect) ? uArtboardResolution.y : uArtboardResolution.x / imageAspect\n);\nvec2 offset = (uArtboardResolution - fitSize) * 0.5;\nvec2 adjustedPos = canvasPos + mouseOffset;\nimageUV = (adjustedPos - offset) / fitSize;\nvec2 flippedUV = vec2(imageUV.x, 1.0 - imageUV.y);\nvec4 color = textureLod(uSourceImage, flippedUV, 0.0);\nif (imageUV.x >= 0.0 && imageUV.x <= 1.0 && imageUV.y >= 0.0 && imageUV.y <= 1.0) {\nreturn color;\n} else {\nreturn vec4(0.0);\n}\n}vec4 applyImageAdjustments(vec4 color) {color.rgb = clamp(color.rgb, 0.0, 1.0);\ncolor.rgb *= color.a;\nreturn color;\n}vec4 getSourceOutput(vec2 uv, vec2 mouseOffsetPx, vec2 mouseRotOffset) {\nvec4 color = sampleImage(uv, mouseOffsetPx, mouseRotOffset);\nreturn applyImageAdjustments(color);\n}void main() {\nvec2 uv = vTextureCoord;\nvec2 mouseOffsetUV = (uMousePos - 0.5) * 0.0000;\nvec2 mouseOffsetPx = mouseOffsetUV;\nvec2 mouseRotOffset = (uMousePos - 0.5) * 0.0000 * PI * 0.5;\nuv -= mouseOffsetUV;\nfragColor = getSourceOutput(uv, mouseOffsetPx, mouseRotOffset);\n}"],"compiledVertexShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;in vec3 aVertexPosition;\nin vec2 aTextureCoord;uniform mat4 uMVMatrix;\nuniform mat4 uPMatrix;\nuniform vec2 uMousePos;out vec2 vTextureCoord;\nout vec3 vVertexPosition;void main() {\nfloat angleX = uMousePos.y * 0.5 - 0.25;\nfloat angleY = (1.-uMousePos.x) * 0.5 - 0.25;mat4 rotateX = mat4(1.0, 0.0, 0.0, 0.0,\n0.0, cos(angleX), -sin(angleX), 0.0,\n0.0, sin(angleX), cos(angleX), 0.0,\n0.0, 0.0, 0.0, 1.0);\nmat4 rotateY = mat4(cos(angleY), 0.0, sin(angleY), 0.0,\n0.0, 1.0, 0.0, 0.0,\n-sin(angleY), 0.0, cos(angleY), 0.0,\n0.0, 0.0, 0.0, 1.0);mat4 rotationMatrix = rotateX * rotateY;\ngl_Position = uPMatrix * uMVMatrix * vec4(aVertexPosition, 1.0);\nvVertexPosition = (rotationMatrix * vec4(aVertexPosition, 1.0)).xyz;\nvTextureCoord = (vec4(aTextureCoord, 0.0, 1.0)).xy;\n}"],"data":{"uniforms":{"artboardResolution":{"name":"uArtboardResolution","type":"2f","value":{"type":"Vec2","_x":1440,"_y":900}},"aspectRatio":{"name":"uAspectRatio","type":"1f","value":1}},"elementOpacity":1,"compositeShader":{"fragmentShader":"#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;\nin vec2 vTextureCoord;\nin vec3 vVertexPosition;uniform sampler2D uBgTexture;\nuniform sampler2D uTexture;const float PI = 3.14159265359;out vec4 fragColor;vec4 getNormalOutput(vec4 color, vec4 background) {\nreturn mix(background, color + background * (1.0 - color.a), 1.0000);\n}vec4 getOutputByMode(vec4 color, vec4 background) {\nreturn getNormalOutput(color, background);\n}void main() {\nvec2 uv = vTextureCoord;\nvec2 pos = vec2(0);uv -= pos;vec4 background = vec4(0);background = texture(uBgTexture, vTextureCoord);\nvec4 color = texture(uTexture, uv);vec4 col = getOutputByMode(color, background);fragColor = col;\n}","vertexShader":"#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;in vec3 aVertexPosition;\nin vec2 aTextureCoord;uniform mat4 uMVMatrix;\nuniform mat4 uPMatrix;\nuniform mat4 uTextureMatrix;\nuniform vec2 uMousePos;out vec2 vTextureCoord;\nout vec3 vVertexPosition;void main() {\nfloat angleX = uMousePos.y * 0.5 - 0.25;\nfloat angleY = (1.-uMousePos.x) * 0.5 - 0.25;mat4 rotateX = mat4(1.0, 0.0, 0.0, 0.0,\n0.0, cos(angleX), -sin(angleX), 0.0,\n0.0, sin(angleX), cos(angleX), 0.0,\n0.0, 0.0, 0.0, 1.0);\nmat4 rotateY = mat4(cos(angleY), 0.0, sin(angleY), 0.0,\n0.0, 1.0, 0.0, 0.0,\n-sin(angleY), 0.0, cos(angleY), 0.0,\n0.0, 0.0, 0.0, 1.0);mat4 rotationMatrix = rotateX * rotateY;\ngl_Position = uPMatrix * uMVMatrix * vec4(aVertexPosition, 1.0);\nvVertexPosition = (rotationMatrix * vec4(aVertexPosition, 1.0)).xyz;\nvTextureCoord = (uTextureMatrix * vec4(aTextureCoord, 0.0, 1.0)).xy;\n}"},"compositeUniforms":{"resolution":{"name":"uResolution","type":"2f","value":{"type":"Vec2","_x":1080,"_y":1080}},"opacity":{"name":"uOpacity","type":"1f","value":1},"mousePos":{"name":"uMousePos","type":"2f","value":{"type":"Vec2","_x":0.5,"_y":0.5}}}},"id":"3045e25f-2ad8-488c-b0d9-70e94c1ad8c8","publicId":"image"},{"breakpoints":[],"visible":true,"aspectRatio":1,"userDownsample":1,"layerType":"effect","type":"blur","usesPingPong":false,"texture":false,"animating":false,"mouseMomentum":0,"mouseSpring":0,"isMask":0,"compiledFragmentShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;\nprecision highp int;in vec3 vVertexPosition;\nin vec2 vTextureCoord;uniform sampler2D uTexture;\nuniform vec2 uMousePos;\nuniform vec2 uResolution;\nfloat ease (int easingFunc, float t) {\nreturn t;\n}out vec4 fragColor;const int kernelSize = 36;\nfloat getGaussianWeight(int index) {\nswitch(index) {\ncase 0: return 0.00094768;\ncase 1: return 0.00151965;\ncase 2: return 0.00237008;\ncase 3: return 0.00359517;\ncase 4: return 0.0053041;\ncase 5: return 0.00761097;\ncase 6: return 0.01062197;\ncase 7: return 0.01441804;\ncase 8: return 0.01903459;\ncase 9: return 0.0244409;\ncase 10: return 0.03052299;\ncase 11: return 0.03707432;\ncase 12: return 0.04379813;\ncase 13: return 0.05032389;\ncase 14: return 0.05623791;\ncase 15: return 0.06112521;\ncase 16: return 0.06461716;\ncase 17: return 0.06643724;\ncase 18: return 0.06643724;\ncase 19: return 0.06461716;\ncase 20: return 0.06112521;\ncase 21: return 0.05623791;\ncase 22: return 0.05032389;\ncase 23: return 0.04379813;\ncase 24: return 0.03707432;\ncase 25: return 0.03052299;\ncase 26: return 0.0244409;\ncase 27: return 0.01903459;\ncase 28: return 0.01441804;\ncase 29: return 0.01062197;\ncase 30: return 0.00761097;\ncase 31: return 0.0053041;\ncase 32: return 0.00359517;\ncase 33: return 0.00237008;\ncase 34: return 0.00151965;\ncase 35: return 0.00094768;\ndefault: return 0.0;\n}\n}vec4 GaussianBlur(sampler2D tex, vec2 uv, vec2 direction) {\nvec4 color = vec4(0.0);\nvec2 pos = vec2(0.5, 0.5) + mix(vec2(0), (uMousePos-0.5), 0.0000);\nfloat inner = distance(uv, pos);\nfloat outer = max(0., 1.-distance(uv, pos));float amt = 0 <= 1 ? 6. : 11.;\nfloat amount = (0.6640 * amt) * ease(0, mix(inner, outer, 0.5000));\ncolor += texture(tex, uv) * getGaussianWeight(0);\nfor (int i = 0; i < kernelSize; i++) {\nfloat x = float(i - kernelSize / 2) * amount;\ncolor += texture(tex, uv + vec2(x * 0.001) * direction * vec2(0.5000, 1. - 0.5000)) * getGaussianWeight(i);\n}\nreturn color;\n}vec4 blur(vec2 uv, vec2 direction) {\nreturn GaussianBlur(uTexture, uv, direction);\n}void main() {\nvec2 uv = vTextureCoord;\nvec4 color = vec4(0);\nint dir = 0 % 2;\nvec2 direction = dir == 1 ? vec2(0, uResolution.x/uResolution.y) : vec2(1, 0);color = blur(uv, direction);\nfragColor = color;}","#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;\nprecision highp int;in vec3 vVertexPosition;\nin vec2 vTextureCoord;uniform sampler2D uTexture;\nuniform vec2 uMousePos;\nuniform vec2 uResolution;\nfloat ease (int easingFunc, float t) {\nreturn t;\n}out vec4 fragColor;const int kernelSize = 36;\nfloat getGaussianWeight(int index) {\nswitch(index) {\ncase 0: return 0.00094768;\ncase 1: return 0.00151965;\ncase 2: return 0.00237008;\ncase 3: return 0.00359517;\ncase 4: return 0.0053041;\ncase 5: return 0.00761097;\ncase 6: return 0.01062197;\ncase 7: return 0.01441804;\ncase 8: return 0.01903459;\ncase 9: return 0.0244409;\ncase 10: return 0.03052299;\ncase 11: return 0.03707432;\ncase 12: return 0.04379813;\ncase 13: return 0.05032389;\ncase 14: return 0.05623791;\ncase 15: return 0.06112521;\ncase 16: return 0.06461716;\ncase 17: return 0.06643724;\ncase 18: return 0.06643724;\ncase 19: return 0.06461716;\ncase 20: return 0.06112521;\ncase 21: return 0.05623791;\ncase 22: return 0.05032389;\ncase 23: return 0.04379813;\ncase 24: return 0.03707432;\ncase 25: return 0.03052299;\ncase 26: return 0.0244409;\ncase 27: return 0.01903459;\ncase 28: return 0.01441804;\ncase 29: return 0.01062197;\ncase 30: return 0.00761097;\ncase 31: return 0.0053041;\ncase 32: return 0.00359517;\ncase 33: return 0.00237008;\ncase 34: return 0.00151965;\ncase 35: return 0.00094768;\ndefault: return 0.0;\n}\n}vec4 GaussianBlur(sampler2D tex, vec2 uv, vec2 direction) {\nvec4 color = vec4(0.0);\nvec2 pos = vec2(0.5, 0.5) + mix(vec2(0), (uMousePos-0.5), 0.0000);\nfloat inner = distance(uv, pos);\nfloat outer = max(0., 1.-distance(uv, pos));float amt = 1 <= 1 ? 6. : 11.;\nfloat amount = (0.6640 * amt) * ease(0, mix(inner, outer, 0.5000));\ncolor += texture(tex, uv) * getGaussianWeight(0);\nfor (int i = 0; i < kernelSize; i++) {\nfloat x = float(i - kernelSize / 2) * amount;\ncolor += texture(tex, uv + vec2(x * 0.001) * direction * vec2(0.5000, 1. - 0.5000)) * getGaussianWeight(i);\n}\nreturn color;\n}vec4 blur(vec2 uv, vec2 direction) {\nreturn GaussianBlur(uTexture, uv, direction);\n}void main() {\nvec2 uv = vTextureCoord;\nvec4 color = vec4(0);\nint dir = 1 % 2;\nvec2 direction = dir == 1 ? vec2(0, uResolution.x/uResolution.y) : vec2(1, 0);color = blur(uv, direction);\nfragColor = color;}","#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;\nprecision highp int;in vec3 vVertexPosition;\nin vec2 vTextureCoord;uniform sampler2D uTexture;\nuniform vec2 uMousePos;\nuniform vec2 uResolution;\nfloat ease (int easingFunc, float t) {\nreturn t;\n}out vec4 fragColor;const int kernelSize = 36;\nfloat getGaussianWeight(int index) {\nswitch(index) {\ncase 0: return 0.00094768;\ncase 1: return 0.00151965;\ncase 2: return 0.00237008;\ncase 3: return 0.00359517;\ncase 4: return 0.0053041;\ncase 5: return 0.00761097;\ncase 6: return 0.01062197;\ncase 7: return 0.01441804;\ncase 8: return 0.01903459;\ncase 9: return 0.0244409;\ncase 10: return 0.03052299;\ncase 11: return 0.03707432;\ncase 12: return 0.04379813;\ncase 13: return 0.05032389;\ncase 14: return 0.05623791;\ncase 15: return 0.06112521;\ncase 16: return 0.06461716;\ncase 17: return 0.06643724;\ncase 18: return 0.06643724;\ncase 19: return 0.06461716;\ncase 20: return 0.06112521;\ncase 21: return 0.05623791;\ncase 22: return 0.05032389;\ncase 23: return 0.04379813;\ncase 24: return 0.03707432;\ncase 25: return 0.03052299;\ncase 26: return 0.0244409;\ncase 27: return 0.01903459;\ncase 28: return 0.01441804;\ncase 29: return 0.01062197;\ncase 30: return 0.00761097;\ncase 31: return 0.0053041;\ncase 32: return 0.00359517;\ncase 33: return 0.00237008;\ncase 34: return 0.00151965;\ncase 35: return 0.00094768;\ndefault: return 0.0;\n}\n}vec4 GaussianBlur(sampler2D tex, vec2 uv, vec2 direction) {\nvec4 color = vec4(0.0);\nvec2 pos = vec2(0.5, 0.5) + mix(vec2(0), (uMousePos-0.5), 0.0000);\nfloat inner = distance(uv, pos);\nfloat outer = max(0., 1.-distance(uv, pos));float amt = 2 <= 1 ? 6. : 11.;\nfloat amount = (0.6640 * amt) * ease(0, mix(inner, outer, 0.5000));\ncolor += texture(tex, uv) * getGaussianWeight(0);\nfor (int i = 0; i < kernelSize; i++) {\nfloat x = float(i - kernelSize / 2) * amount;\ncolor += texture(tex, uv + vec2(x * 0.001) * direction * vec2(0.5000, 1. - 0.5000)) * getGaussianWeight(i);\n}\nreturn color;\n}vec4 blur(vec2 uv, vec2 direction) {\nreturn GaussianBlur(uTexture, uv, direction);\n}void main() {\nvec2 uv = vTextureCoord;\nvec4 color = vec4(0);\nint dir = 2 % 2;\nvec2 direction = dir == 1 ? vec2(0, uResolution.x/uResolution.y) : vec2(1, 0);color = blur(uv, direction);\nfragColor = color;}","#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;\nprecision highp int;in vec3 vVertexPosition;\nin vec2 vTextureCoord;uniform sampler2D uTexture;\nuniform vec2 uMousePos;\nuniform vec2 uResolution;\nfloat ease (int easingFunc, float t) {\nreturn t;\n}\nuvec2 pcg2d(uvec2 v) {\nv = v * 1664525u + 1013904223u;\nv.x += v.y * v.y * 1664525u + 1013904223u;\nv.y += v.x * v.x * 1664525u + 1013904223u;\nv ^= v >> 16;\nv.x += v.y * v.y * 1664525u + 1013904223u;\nv.y += v.x * v.x * 1664525u + 1013904223u;\nreturn v;\n}float randFibo(vec2 p) {\nuvec2 v = floatBitsToUint(p);\nv = pcg2d(v);\nuint r = v.x ^ v.y;\nreturn float(r) / float(0xffffffffu);\n}\nfloat deband() {\nreturn (randFibo(gl_FragCoord.xy) - 0.5) / 255.0;\n}out vec4 fragColor;const int kernelSize = 36;\nfloat getGaussianWeight(int index) {\nswitch(index) {\ncase 0: return 0.00094768;\ncase 1: return 0.00151965;\ncase 2: return 0.00237008;\ncase 3: return 0.00359517;\ncase 4: return 0.0053041;\ncase 5: return 0.00761097;\ncase 6: return 0.01062197;\ncase 7: return 0.01441804;\ncase 8: return 0.01903459;\ncase 9: return 0.0244409;\ncase 10: return 0.03052299;\ncase 11: return 0.03707432;\ncase 12: return 0.04379813;\ncase 13: return 0.05032389;\ncase 14: return 0.05623791;\ncase 15: return 0.06112521;\ncase 16: return 0.06461716;\ncase 17: return 0.06643724;\ncase 18: return 0.06643724;\ncase 19: return 0.06461716;\ncase 20: return 0.06112521;\ncase 21: return 0.05623791;\ncase 22: return 0.05032389;\ncase 23: return 0.04379813;\ncase 24: return 0.03707432;\ncase 25: return 0.03052299;\ncase 26: return 0.0244409;\ncase 27: return 0.01903459;\ncase 28: return 0.01441804;\ncase 29: return 0.01062197;\ncase 30: return 0.00761097;\ncase 31: return 0.0053041;\ncase 32: return 0.00359517;\ncase 33: return 0.00237008;\ncase 34: return 0.00151965;\ncase 35: return 0.00094768;\ndefault: return 0.0;\n}\n}vec4 GaussianBlur(sampler2D tex, vec2 uv, vec2 direction) {\nvec4 color = vec4(0.0);\nvec2 pos = vec2(0.5, 0.5) + mix(vec2(0), (uMousePos-0.5), 0.0000);\nfloat inner = distance(uv, pos);\nfloat outer = max(0., 1.-distance(uv, pos));float amt = 3 <= 1 ? 6. : 11.;\nfloat amount = (0.6640 * amt) * ease(0, mix(inner, outer, 0.5000));\ncolor += texture(tex, uv) * getGaussianWeight(0);\nfor (int i = 0; i < kernelSize; i++) {\nfloat x = float(i - kernelSize / 2) * amount;\ncolor += texture(tex, uv + vec2(x * 0.001) * direction * vec2(0.5000, 1. - 0.5000)) * getGaussianWeight(i);\n}\nreturn color;\n}vec4 blur(vec2 uv, vec2 direction) {\nreturn GaussianBlur(uTexture, uv, direction);\n}void main() {\nvec2 uv = vTextureCoord;\nvec4 color = vec4(0);\nint dir = 3 % 2;\nvec2 direction = dir == 1 ? vec2(0, uResolution.x/uResolution.y) : vec2(1, 0);color = blur(uv, direction);float dither = deband();\ncolor.rgb += dither;\nfragColor = color;}"],"compiledVertexShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision mediump float;in vec3 aVertexPosition;\nin vec2 aTextureCoord;uniform mat4 uMVMatrix;\nuniform mat4 uPMatrix;\nuniform mat4 uTextureMatrix;out vec2 vTextureCoord;\nout vec3 vVertexPosition;void main() {\ngl_Position = uPMatrix * uMVMatrix * vec4(aVertexPosition, 1.0);\nvTextureCoord = (uTextureMatrix * vec4(aTextureCoord, 0.0, 1.0)).xy;\n}"],"trackMouse":0,"trackAxes":"xy","data":{"downSample":0.25,"depth":false,"uniforms":{},"isBackground":false,"passes":[{"prop":"vertical","value":1,"downSample":0.25,"passDescription":"Blur the image along the secondary axis."},{"prop":"vertical","value":2,"downSample":0.5,"passDescription":"Blur the image along the primary axis at a larger scale."},{"prop":"vertical","value":3,"downSample":0.5,"passDescription":"Blur the image along the secondary axis and add final debanding."}]},"id":"916b01d6-1ed4-4319-ac68-782e2d6016f6","publicId":"blur"},{"breakpoints":[],"visible":true,"aspectRatio":1,"userDownsample":1,"layerType":"effect","type":"noise","usesPingPong":false,"texture":false,"animating":true,"mouseMomentum":0,"mouseSpring":0,"isMask":0,"compiledFragmentShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;\nin vec2 vTextureCoord;\nin vec3 vVertexPosition;uniform sampler2D uTexture;\nuniform float uTime;\nuniform vec2 uMousePos;\nuniform vec2 uResolution;\nfloat ease (int easingFunc, float t) {\nreturn t;\n}vec4 permute(vec4 t) {\nreturn t * (t * 34.0 + 133.0);\n}vec3 grad(float hash) {\nvec3 cube = mod(floor(hash / vec3(1.0, 2.0, 4.0)), 2.0) * 2.0 - 1.0;\nvec3 cuboct = cube;float index0 = step(0.0, 1.0 - floor(hash / 16.0));\nfloat index1 = step(0.0, floor(hash / 16.0) - 1.0);cuboct.x *= 1.0 - index0;\ncuboct.y *= 1.0 - index1;\ncuboct.z *= 1.0 - (1.0 - index0 - index1);float type = mod(floor(hash / 8.0), 2.0);\nvec3 rhomb = (1.0 - type) * cube + type * (cuboct + cross(cube, cuboct));vec3 grad = cuboct * 1.22474487139 + rhomb;grad *= (1.0 - 0.042942436724648037 * type) * 3.5946317686139184;return grad;\n}\nvec4 bccNoiseDerivativesPart(vec3 X) {\nvec3 b = floor(X);\nvec4 i4 = vec4(X - b, 2.5);\nvec3 v1 = b + floor(dot(i4, vec4(.25)));\nvec3 v2 = b + vec3(1, 0, 0) + vec3(-1, 1, 1) * floor(dot(i4, vec4(-.25, .25, .25, .35)));\nvec3 v3 = b + vec3(0, 1, 0) + vec3(1, -1, 1) * floor(dot(i4, vec4(.25, -.25, .25, .35)));\nvec3 v4 = b + vec3(0, 0, 1) + vec3(1, 1, -1) * floor(dot(i4, vec4(.25, .25, -.25, .35)));\nvec4 hashes = permute(mod(vec4(v1.x, v2.x, v3.x, v4.x), 289.0));\nhashes = permute(mod(hashes + vec4(v1.y, v2.y, v3.y, v4.y), 289.0));\nhashes = mod(permute(mod(hashes + vec4(v1.z, v2.z, v3.z, v4.z), 289.0)), 48.0);\nvec3 d1 = X - v1; vec3 d2 = X - v2; vec3 d3 = X - v3; vec3 d4 = X - v4;\nvec4 a = max(0.75 - vec4(dot(d1, d1), dot(d2, d2), dot(d3, d3), dot(d4, d4)), 0.0);\nvec4 aa = a * a; vec4 aaaa = aa * aa;\nvec3 g1 = grad(hashes.x); vec3 g2 = grad(hashes.y);\nvec3 g3 = grad(hashes.z); vec3 g4 = grad(hashes.w);\nvec4 extrapolations = vec4(dot(d1, g1), dot(d2, g2), dot(d3, g3), dot(d4, g4));\nvec3 derivative = -8.0 * mat4x3(d1, d2, d3, d4) * (aa * a * extrapolations)\n+ mat4x3(g1, g2, g3, g4) * aaaa;\nreturn vec4(derivative, dot(aaaa, extrapolations));\n}\nvec4 bccNoiseDerivatives_XYBeforeZ(vec3 X) {\nmat3 orthonormalMap = mat3(\n0.788675134594813, -0.211324865405187, -0.577350269189626,\n-0.211324865405187, 0.788675134594813, -0.577350269189626,\n0.577350269189626, 0.577350269189626, 0.577350269189626);\nX = orthonormalMap * X;\nvec4 result = bccNoiseDerivativesPart(X) + bccNoiseDerivativesPart(X + 144.5);\nreturn vec4(result.xyz * orthonormalMap, result.w);\n}out vec4 fragColor;const float PI = 3.14159265359;mat2 rot(float a) {\nreturn mat2(cos(a),-sin(a),sin(a),cos(a));\n}vec2 get2sNoise(vec2 uv, vec2 textureCoord, float direction, float phase, float time, float turbulence) {\nvec4 noise = bccNoiseDerivatives_XYBeforeZ(vec3(uv * vec2(direction, 1. - direction) * 0.7, phase + time*0.02));\nvec2 offset = noise.xy/7. + 0.5;\nreturn mix(textureCoord, offset, turbulence);\n}vec2 getNoiseOffset(vec2 uv, vec2 textureCoord, float direction, float phase, float time, float turbulence) {\nreturn get2sNoise(uv, textureCoord, direction, phase, time, turbulence);\n}vec2 distortUV(vec2 uv) {\nfloat aspectRatio = uResolution.x/uResolution.y;vec2 mPos = vec2(0.5, 0.5) + mix(vec2(0), (uMousePos-0.5), 0.0000);\nfloat dist = ease(0, max(0.,1.-distance(uv * vec2(aspectRatio, 1), mPos * vec2(aspectRatio, 1)) * 4. * (1. - 1.0000)));if(dist <= 0.001) {\nreturn uv;\n}if(0.1000 <= 0.001) {\nreturn uv;\n}vec2 pos = mix(vec2(0.5, 0.5), mPos, floor(1.0000));\nvec2 drift = vec2(0, 0.0000 * uTime * 0.0125);\npos += drift * rot(0.0000 * -2. * PI);\nvec2 st = (uv - pos) * vec2(aspectRatio, 1);\nst *= 12. * 0.1500;\nst = rot(0.0000 * -2. * PI) * st;vec2 noise = getNoiseOffset(st, uv, 0.5000, 0.0000, uTime, 0.1000);\nreturn mix(uv, noise, dist);\n}void main() {\nvec2 uv = vTextureCoord;\nuv = distortUV(uv);\nvec4 color = texture(uTexture, uv);\nfragColor = color;}"],"compiledVertexShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision mediump float;in vec3 aVertexPosition;\nin vec2 aTextureCoord;uniform mat4 uMVMatrix;\nuniform mat4 uPMatrix;\nuniform mat4 uTextureMatrix;out vec2 vTextureCoord;\nout vec3 vVertexPosition;void main() {\ngl_Position = uPMatrix * uMVMatrix * vec4(aVertexPosition, 1.0);\nvTextureCoord = (uTextureMatrix * vec4(aTextureCoord, 0.0, 1.0)).xy;\n}"],"speed":0.25,"trackMouse":0,"trackAxes":"xy","data":{"depth":false,"uniforms":{},"isBackground":false},"id":"1f514771-56dc-45de-88ce-a83ff2fcf559","publicId":"noise"},{"breakpoints":[],"aspectRatio":1,"userDownsample":1,"states":{"appear":[],"scroll":[],"hover":[],"mousemove":[]},"effects":["005e80ca-2248-4a01-8741-2bbdc38763df","f1ad0d3a-d616-4ba7-b5da-0b5500dae083","540cf37e-3d94-42ae-985f-ef5f7781fd95"],"anchorPoint":8,"blendMode":"ADD","mask":0,"maskInvert":0,"maskDepth":0,"maskDepthLayer":0,"layerType":"image","width":450,"widthMode":1,"height":450,"heightMode":1,"left":0.5,"top":0.5,"src":"https://assets.unicorn.studio/images/b6ZYknq3EbbdQ5ZVqxPzAJhsjTC2/remix_Frame%202147258283_v1.png","imageNaturalSize":{"type":"Vec2","_x":1440,"_y":900},"compiledFragmentShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;in vec2 vTextureCoord;\nin vec3 vVertexPosition;uniform sampler2D uSourceImage;uniform vec2 uArtboardResolution;\nuniform vec2 uMousePos;const float TAU = 6.28318530718;\nconst float PI = 3.14159265359;out vec4 fragColor;vec4 sampleImage(vec2 canvasUV, vec2 mouseOffset, vec2 mouseRotOffset) {\nvec2 canvasPos = vec2(canvasUV.x * uArtboardResolution.x, (1.0 - canvasUV.y) * uArtboardResolution.y);\nvec2 imageUV;float imageAspect = vec2(1440, 900).x / vec2(1440, 900).y;\nfloat canvasAspect = uArtboardResolution.x / uArtboardResolution.y;\nvec2 fitSize = vec2(\n(canvasAspect < imageAspect) ? uArtboardResolution.y * imageAspect : uArtboardResolution.x,\n(canvasAspect < imageAspect) ? uArtboardResolution.y : uArtboardResolution.x / imageAspect\n);\nvec2 offset = (uArtboardResolution - fitSize) * 0.5;\nvec2 adjustedPos = canvasPos + mouseOffset;\nimageUV = (adjustedPos - offset) / fitSize;\nvec2 flippedUV = vec2(imageUV.x, 1.0 - imageUV.y);\nvec4 color = textureLod(uSourceImage, flippedUV, 0.0);\nif (imageUV.x >= 0.0 && imageUV.x <= 1.0 && imageUV.y >= 0.0 && imageUV.y <= 1.0) {\nreturn color;\n} else {\nreturn vec4(0.0);\n}\n}vec4 applyImageAdjustments(vec4 color) {color.rgb = clamp(color.rgb, 0.0, 1.0);\ncolor.rgb *= color.a;\nreturn color;\n}vec4 getSourceOutput(vec2 uv, vec2 mouseOffsetPx, vec2 mouseRotOffset) {\nvec4 color = sampleImage(uv, mouseOffsetPx, mouseRotOffset);\nreturn applyImageAdjustments(color);\n}void main() {\nvec2 uv = vTextureCoord;\nvec2 mouseOffsetUV = (uMousePos - 0.5) * 0.0000;\nvec2 mouseOffsetPx = mouseOffsetUV;\nvec2 mouseRotOffset = (uMousePos - 0.5) * 0.0000 * PI * 0.5;\nuv -= mouseOffsetUV;\nfragColor = getSourceOutput(uv, mouseOffsetPx, mouseRotOffset);\n}"],"compiledVertexShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;in vec3 aVertexPosition;\nin vec2 aTextureCoord;uniform mat4 uMVMatrix;\nuniform mat4 uPMatrix;\nuniform vec2 uMousePos;out vec2 vTextureCoord;\nout vec3 vVertexPosition;void main() {\nfloat angleX = uMousePos.y * 0.5 - 0.25;\nfloat angleY = (1.-uMousePos.x) * 0.5 - 0.25;mat4 rotateX = mat4(1.0, 0.0, 0.0, 0.0,\n0.0, cos(angleX), -sin(angleX), 0.0,\n0.0, sin(angleX), cos(angleX), 0.0,\n0.0, 0.0, 0.0, 1.0);\nmat4 rotateY = mat4(cos(angleY), 0.0, sin(angleY), 0.0,\n0.0, 1.0, 0.0, 0.0,\n-sin(angleY), 0.0, cos(angleY), 0.0,\n0.0, 0.0, 0.0, 1.0);mat4 rotationMatrix = rotateX * rotateY;\ngl_Position = uPMatrix * uMVMatrix * vec4(aVertexPosition, 1.0);\nvVertexPosition = (rotationMatrix * vec4(aVertexPosition, 1.0)).xyz;\nvTextureCoord = (vec4(aTextureCoord, 0.0, 1.0)).xy;\n}"],"data":{"uniforms":{"artboardResolution":{"name":"uArtboardResolution","type":"2f","value":{"type":"Vec2","_x":1440,"_y":900}},"aspectRatio":{"name":"uAspectRatio","type":"1f","value":1}},"elementOpacity":0.65,"compositeShader":{"fragmentShader":"#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;\nin vec2 vTextureCoord;\nin vec3 vVertexPosition;uniform sampler2D uBgTexture;\nuniform sampler2D uTexture;vec3 blend (int blendMode, vec3 src, vec3 dst) {\nreturn src + dst;\n}const float PI = 3.14159265359;out vec4 fragColor;vec4 getNormalOutput(vec4 color, vec4 background) {\nvec3 unpremultColor = color.rgb / max(color.a, 0.0001);\nvec3 blendedColor = blend(1, unpremultColor, background.rgb);\ncolor = vec4(blendedColor, 1.0) * (color.a * 0.6500);\ncolor = color + background * (1.0 - color.a);\nreturn color;\nreturn mix(background, color + background * (1.0 - color.a), 0.6500);\n}vec4 getOutputByMode(vec4 color, vec4 background) {\nreturn getNormalOutput(color, background);\n}void main() {\nvec2 uv = vTextureCoord;\nvec2 pos = vec2(0);uv -= pos;vec4 background = vec4(0);background = texture(uBgTexture, vTextureCoord);\nvec4 color = texture(uTexture, uv);vec4 col = getOutputByMode(color, background);fragColor = col;\n}","vertexShader":"#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;in vec3 aVertexPosition;\nin vec2 aTextureCoord;uniform mat4 uMVMatrix;\nuniform mat4 uPMatrix;\nuniform mat4 uTextureMatrix;\nuniform vec2 uMousePos;out vec2 vTextureCoord;\nout vec3 vVertexPosition;void main() {\nfloat angleX = uMousePos.y * 0.5 - 0.25;\nfloat angleY = (1.-uMousePos.x) * 0.5 - 0.25;mat4 rotateX = mat4(1.0, 0.0, 0.0, 0.0,\n0.0, cos(angleX), -sin(angleX), 0.0,\n0.0, sin(angleX), cos(angleX), 0.0,\n0.0, 0.0, 0.0, 1.0);\nmat4 rotateY = mat4(cos(angleY), 0.0, sin(angleY), 0.0,\n0.0, 1.0, 0.0, 0.0,\n-sin(angleY), 0.0, cos(angleY), 0.0,\n0.0, 0.0, 0.0, 1.0);mat4 rotationMatrix = rotateX * rotateY;\ngl_Position = uPMatrix * uMVMatrix * vec4(aVertexPosition, 1.0);\nvVertexPosition = (rotationMatrix * vec4(aVertexPosition, 1.0)).xyz;\nvTextureCoord = (uTextureMatrix * vec4(aTextureCoord, 0.0, 1.0)).xy;\n}"},"compositeUniforms":{"resolution":{"name":"uResolution","type":"2f","value":{"type":"Vec2","_x":1080,"_y":1080}},"opacity":{"name":"uOpacity","type":"1f","value":1},"mousePos":{"name":"uMousePos","type":"2f","value":{"type":"Vec2","_x":0.5,"_y":0.5}}}},"id":"e06db824-43d0-431a-8920-0147eb6efcca","publicId":"image1"},{"breakpoints":[],"visible":true,"aspectRatio":1,"userDownsample":1,"layerType":"effect","type":"coloration","usesPingPong":false,"texture":false,"parentLayer":"004fc184-4955-44d5-afde-7140e6ce2fdb","animating":false,"mouseMomentum":0,"mouseSpring":0,"isMask":0,"compiledFragmentShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;in vec3 vVertexPosition;\nin vec2 vTextureCoord;uniform sampler2D uTexture;vec3 getFilteredColor(vec3 color) {\nreturn color;\n}float hueToRgb(float p, float q, float t) {\nif (t < 0.0) t += 1.0;\nif (t > 1.0) t -= 1.0;\nif (t < 1.0 / 6.0) return p + (q - p) * 6.0 * t;\nif (t < 1.0 / 2.0) return q;\nif (t < 2.0 / 3.0) return p + (q - p) * (2.0 / 3.0 - t) * 6.0;\nreturn p;\n}vec3 hslToRgb(vec3 hsl) {\nfloat h = hsl.x;\nfloat s = hsl.y;\nfloat l = hsl.z;\nvec3 rgb = vec3(l);\nif (s != 0.0) {\nfloat q = l < 0.5 ? l * (1.0 + s) : l + s - l * s;\nfloat p = 2.0 * l - q;\nrgb.r = hueToRgb(p, q, h + 1.0 / 3.0);\nrgb.g = hueToRgb(p, q, h);\nrgb.b = hueToRgb(p, q, h - 1.0 / 3.0);\n}\nreturn rgb;\n}vec3 rgbToHsl(vec3 rgb) {\nfloat max = max(max(rgb.r, rgb.g), rgb.b);\nfloat min = min(min(rgb.r, rgb.g), rgb.b);\nfloat h, s, l = (max + min) / 2.0;if (max == min) {\nh = s = 0.0;\n} else {\nfloat d = max - min;\ns = l > 0.5 ? d / (2.0 - max - min) : d / (max + min);\nif (max == rgb.r) {\nh = (rgb.g - rgb.b) / d + (rgb.g < rgb.b ? 6.0 : 0.0);\n} else if (max == rgb.g) {\nh = (rgb.b - rgb.r) / d + 2.0;\n} else if (max == rgb.b) {\nh = (rgb.r - rgb.g) / d + 4.0;\n}\nh /= 6.0;\n}return vec3(h, s, l);\n}out vec4 fragColor;void main() {\nvec2 uv = vTextureCoord;\nvec4 color = texture(uTexture, uv);if(color.a <= 0.001) {\nfragColor = vec4(0);\nreturn;\n}color.rgb = rgbToHsl(color.rgb);\ncolor.x = fract(color.x + 1.0000);\ncolor.y = clamp(color.y * 1.0500, 0.0, 1.0);\ncolor.z = clamp(color.z + -0.1100, 0.0, 1.0);\ncolor.rgb = hslToRgb(color.rgb);\ncolor.rgb = getFilteredColor(color.rgb);color.rgb = 1.2600 * (color.rgb - 0.5) + 0.5;color.r = clamp(color.r + 0.0300, 0.0, 1.0);\ncolor.b = clamp(color.b - 0.0300, 0.0, 1.0);color.g = clamp(color.g - 0.0000, 0.0, 1.0);\ncolor.r = clamp(color.r + 0.0000 * 0.5, 0.0, 1.0);\ncolor.b = clamp(color.b + 0.0000 * 0.5, 0.0, 1.0);color = vec4(clamp(color.rgb, 0.0, 1.0), color.a);\nfragColor = color;}"],"compiledVertexShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision mediump float;in vec3 aVertexPosition;\nin vec2 aTextureCoord;uniform mat4 uMVMatrix;\nuniform mat4 uPMatrix;\nuniform mat4 uTextureMatrix;out vec2 vTextureCoord;\nout vec3 vVertexPosition;void main() {\ngl_Position = uPMatrix * uMVMatrix * vec4(aVertexPosition, 1.0);\nvTextureCoord = (uTextureMatrix * vec4(aTextureCoord, 0.0, 1.0)).xy;\n}"],"data":{"depth":false,"uniforms":{},"isBackground":false},"id":"ddbe5596-ae51-439e-ad19-f4fd1c3f2df8","publicId":"adjust"},{"breakpoints":[],"visible":true,"aspectRatio":1,"userDownsample":1,"layerType":"effect","type":"ascii","usesPingPong":false,"texture":{"src":"https://assets.unicorn.studio/images/b6ZYknq3EbbdQ5ZVqxPzAJhsjTC2/remix_codeascii.png","sampler":"uCustomTexture"},"parentLayer":"540cf37e-3d94-42ae-985f-ef5f7781fd95","animating":false,"mouseMomentum":0,"mouseSpring":0,"isMask":0,"compiledFragmentShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;in vec3 vVertexPosition;\nin vec2 vTextureCoord;\nuniform sampler2D uTexture;\nuniform sampler2D uCustomTexture;uniform vec2 uMousePos;\nuniform vec2 uResolution;\nvec3 blend (int blendMode, vec3 src, vec3 dst) {\nreturn src;\n}vec4 applyLayerMix(vec4 color, vec4 bg, float amount) {\ncolor.rgb = mix(bg.rgb, color.rgb, amount);\ncolor.a = max(bg.a, amount);\nreturn color;\n}out vec4 fragColor;const float GLYPH_HEIGHT = 40.0;\nconst float DEFAULT_NUM_SPRITES = 10.0;\nconst float DEFAULT_NUM_ROWS = 6.0;void main() {\nvec2 uv = vTextureCoord;\nvec2 pos = vec2(0.5, 0.5) + mix(vec2(0), (uMousePos-0.5), 0.0000);\nfloat aspectRatio = uResolution.x / uResolution.y;\nfloat aspectCorrection = mix(aspectRatio, 1./aspectRatio, 0.5);float gridSize = (0.2200 + 0.01) * 0.05;float baseGrid = 1.0 / gridSize;\nvec2 cellSize = vec2(1.0/(baseGrid * aspectRatio), 1.0/baseGrid) * aspectCorrection;\nvec2 offsetUv = uv - pos;\nvec2 cell = floor(offsetUv / cellSize);\nvec2 cellCenter = (cell + 0.5) * cellSize;\nvec2 pixelatedCoord = cellCenter + pos;\nvec4 bg = texture(uTexture, vTextureCoord);\nvec4 color = texture(uTexture, pixelatedCoord);float luminance = dot(color.rgb, vec3(0.2126, 0.7152, 0.0722));\nluminance = mix(luminance, 1.0 - luminance, float(0));\nfloat gamma = mix(0.0, 4.0, 0.3200);\nluminance = pow(luminance, gamma);float scaleFactor = gridSize / GLYPH_HEIGHT;ivec2 customTextureSize = textureSize(uCustomTexture, 0);\nfloat customSpriteWidth = float(customTextureSize.x);\nfloat numSprites = mix(DEFAULT_NUM_SPRITES, customSpriteWidth / GLYPH_HEIGHT, float(6 == 6));\nfloat numGlyphRows = mix(DEFAULT_NUM_ROWS, 1.0, float(6 == 6));float spriteIndex = clamp(floor(luminance * numSprites), 0.0, numSprites - 1.0);\nfloat glyphIndex = mix(5.0 - float(6), 0.0, float(6 == 6));float normalizedSpriteSizeX = 1.0 / numSprites;\nfloat normalizedSpriteSizeY = 1.0 / numGlyphRows;vec2 spriteSheetUV = vec2(\nspriteIndex * normalizedSpriteSizeX,\nglyphIndex / numGlyphRows\n);vec2 spriteSize = vec2(GLYPH_HEIGHT / aspectRatio, GLYPH_HEIGHT) * scaleFactor * aspectCorrection;\nvec2 localOffset = mod(uv - pos, spriteSize) / spriteSize;\nfloat inset = 0.5 / GLYPH_HEIGHT;\nlocalOffset = clamp(localOffset, inset, 1.0 - inset);spriteSheetUV += vec2(\nlocalOffset.x * normalizedSpriteSizeX,\nlocalOffset.y * normalizedSpriteSizeY\n);vec4 spriteColor = vec4(0.0);spriteColor = texture(uCustomTexture, spriteSheetUV);\nfloat alpha = smoothstep(0.0, 1.0, spriteColor.r);vec3 cc = (color.rgb - spriteIndex * 0.04) * 1.4;\nvec3 col = mix(cc, vec3(0, 1, 1), float(0));\nvec3 dithered = mix(\nmix(vec3(0.0), vec3(1.0), float(0)),\ncol,\nalpha\n);\nvec3 blended = blend(0, dithered, bg.rgb);\ncolor = applyLayerMix(vec4(blended, 1.0), bg, 1.0000);\nfragColor = color;}"],"compiledVertexShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision mediump float;in vec3 aVertexPosition;\nin vec2 aTextureCoord;uniform mat4 uMVMatrix;\nuniform mat4 uPMatrix;\nuniform mat4 uTextureMatrix;out vec2 vTextureCoord;\nout vec3 vVertexPosition;void main() {\ngl_Position = uPMatrix * uMVMatrix * vec4(aVertexPosition, 1.0);\nvTextureCoord = (uTextureMatrix * vec4(aTextureCoord, 0.0, 1.0)).xy;\n}"],"trackMouse":0,"trackAxes":"xy","data":{"depth":false,"uniforms":{},"isBackground":false,"texture":{"src":"https://assets.unicorn.studio/media/ascii_spritesheet_larger.png","sampler":"uSprite"}},"id":"e10de639-38ea-44df-a524-ddfd5bb1adc4","publicId":"glyph_dither"},{"breakpoints":[],"visible":true,"aspectRatio":1,"userDownsample":1,"layerType":"effect","type":"noise","usesPingPong":false,"texture":false,"parentLayer":"005e80ca-2248-4a01-8741-2bbdc38763df","animating":true,"mouseMomentum":0,"mouseSpring":0,"isMask":0,"compiledFragmentShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;\nin vec2 vTextureCoord;\nin vec3 vVertexPosition;uniform sampler2D uTexture;\nuniform float uTime;\nuniform vec2 uMousePos;\nuniform vec2 uResolution;\nfloat ease (int easingFunc, float t) {\nreturn t;\n}vec4 permute(vec4 t) {\nreturn t * (t * 34.0 + 133.0);\n}vec3 grad(float hash) {\nvec3 cube = mod(floor(hash / vec3(1.0, 2.0, 4.0)), 2.0) * 2.0 - 1.0;\nvec3 cuboct = cube;float index0 = step(0.0, 1.0 - floor(hash / 16.0));\nfloat index1 = step(0.0, floor(hash / 16.0) - 1.0);cuboct.x *= 1.0 - index0;\ncuboct.y *= 1.0 - index1;\ncuboct.z *= 1.0 - (1.0 - index0 - index1);float type = mod(floor(hash / 8.0), 2.0);\nvec3 rhomb = (1.0 - type) * cube + type * (cuboct + cross(cube, cuboct));vec3 grad = cuboct * 1.22474487139 + rhomb;grad *= (1.0 - 0.042942436724648037 * type) * 3.5946317686139184;return grad;\n}\nvec4 bccNoiseDerivativesPart(vec3 X) {\nvec3 b = floor(X);\nvec4 i4 = vec4(X - b, 2.5);\nvec3 v1 = b + floor(dot(i4, vec4(.25)));\nvec3 v2 = b + vec3(1, 0, 0) + vec3(-1, 1, 1) * floor(dot(i4, vec4(-.25, .25, .25, .35)));\nvec3 v3 = b + vec3(0, 1, 0) + vec3(1, -1, 1) * floor(dot(i4, vec4(.25, -.25, .25, .35)));\nvec3 v4 = b + vec3(0, 0, 1) + vec3(1, 1, -1) * floor(dot(i4, vec4(.25, .25, -.25, .35)));\nvec4 hashes = permute(mod(vec4(v1.x, v2.x, v3.x, v4.x), 289.0));\nhashes = permute(mod(hashes + vec4(v1.y, v2.y, v3.y, v4.y), 289.0));\nhashes = mod(permute(mod(hashes + vec4(v1.z, v2.z, v3.z, v4.z), 289.0)), 48.0);\nvec3 d1 = X - v1; vec3 d2 = X - v2; vec3 d3 = X - v3; vec3 d4 = X - v4;\nvec4 a = max(0.75 - vec4(dot(d1, d1), dot(d2, d2), dot(d3, d3), dot(d4, d4)), 0.0);\nvec4 aa = a * a; vec4 aaaa = aa * aa;\nvec3 g1 = grad(hashes.x); vec3 g2 = grad(hashes.y);\nvec3 g3 = grad(hashes.z); vec3 g4 = grad(hashes.w);\nvec4 extrapolations = vec4(dot(d1, g1), dot(d2, g2), dot(d3, g3), dot(d4, g4));\nvec3 derivative = -8.0 * mat4x3(d1, d2, d3, d4) * (aa * a * extrapolations)\n+ mat4x3(g1, g2, g3, g4) * aaaa;\nreturn vec4(derivative, dot(aaaa, extrapolations));\n}\nvec4 bccNoiseDerivatives_XYBeforeZ(vec3 X) {\nmat3 orthonormalMap = mat3(\n0.788675134594813, -0.211324865405187, -0.577350269189626,\n-0.211324865405187, 0.788675134594813, -0.577350269189626,\n0.577350269189626, 0.577350269189626, 0.577350269189626);\nX = orthonormalMap * X;\nvec4 result = bccNoiseDerivativesPart(X) + bccNoiseDerivativesPart(X + 144.5);\nreturn vec4(result.xyz * orthonormalMap, result.w);\n}out vec4 fragColor;const float PI = 3.14159265359;mat2 rot(float a) {\nreturn mat2(cos(a),-sin(a),sin(a),cos(a));\n}vec2 get2sNoise(vec2 uv, vec2 textureCoord, float direction, float phase, float time, float turbulence) {\nvec4 noise = bccNoiseDerivatives_XYBeforeZ(vec3(uv * vec2(direction, 1. - direction) * 0.7, phase + time*0.02));\nvec2 offset = noise.xy/7. + 0.5;\nreturn mix(textureCoord, offset, turbulence);\n}vec2 getNoiseOffset(vec2 uv, vec2 textureCoord, float direction, float phase, float time, float turbulence) {\nreturn get2sNoise(uv, textureCoord, direction, phase, time, turbulence);\n}vec2 distortUV(vec2 uv) {\nfloat aspectRatio = uResolution.x/uResolution.y;vec2 mPos = vec2(0.5, 0.5) + mix(vec2(0), (uMousePos-0.5), 0.0000);\nfloat dist = ease(0, max(0.,1.-distance(uv * vec2(aspectRatio, 1), mPos * vec2(aspectRatio, 1)) * 4. * (1. - 1.0000)));if(dist <= 0.001) {\nreturn uv;\n}if(0.1000 <= 0.001) {\nreturn uv;\n}vec2 pos = mix(vec2(0.5, 0.5), mPos, floor(1.0000));\nvec2 drift = vec2(0, 0.0000 * uTime * 0.0125);\npos += drift * rot(0.0000 * -2. * PI);\nvec2 st = (uv - pos) * vec2(aspectRatio, 1);\nst *= 12. * 0.1500;\nst = rot(0.0000 * -2. * PI) * st;vec2 noise = getNoiseOffset(st, uv, 0.5000, 0.0000, uTime, 0.1000);\nreturn mix(uv, noise, dist);\n}void main() {\nvec2 uv = vTextureCoord;\nuv = distortUV(uv);\nvec4 color = texture(uTexture, uv);\nfragColor = color;}"],"compiledVertexShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision mediump float;in vec3 aVertexPosition;\nin vec2 aTextureCoord;uniform mat4 uMVMatrix;\nuniform mat4 uPMatrix;\nuniform mat4 uTextureMatrix;out vec2 vTextureCoord;\nout vec3 vVertexPosition;void main() {\ngl_Position = uPMatrix * uMVMatrix * vec4(aVertexPosition, 1.0);\nvTextureCoord = (uTextureMatrix * vec4(aTextureCoord, 0.0, 1.0)).xy;\n}"],"speed":0.25,"trackMouse":0,"trackAxes":"xy","data":{"depth":false,"uniforms":{},"isBackground":false},"id":"7d2972a3-bc08-4ed2-92a5-a851afa533f5","publicId":"noise1"},{"breakpoints":[],"visible":true,"aspectRatio":1,"userDownsample":1,"layerType":"effect","type":"caustics","usesPingPong":false,"texture":false,"parentLayer":"f1ad0d3a-d616-4ba7-b5da-0b5500dae083","animating":true,"mouseMomentum":0,"mouseSpring":0,"isMask":0,"compiledFragmentShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision highp float;\nin vec3 vVertexPosition;\nin vec2 vTextureCoord;uniform sampler2D uTexture;\nuniform float uTime;uniform vec2 uMousePos;\nuniform vec2 uResolution;vec4 permute(vec4 t) {\nreturn t * (t * 34.0 + 133.0);\n}vec3 grad(float hash) {\nvec3 cube = mod(floor(hash / vec3(1.0, 2.0, 4.0)), 2.0) * 2.0 - 1.0;\nvec3 cuboct = cube;float index0 = step(0.0, 1.0 - floor(hash / 16.0));\nfloat index1 = step(0.0, floor(hash / 16.0) - 1.0);cuboct.x *= 1.0 - index0;\ncuboct.y *= 1.0 - index1;\ncuboct.z *= 1.0 - (1.0 - index0 - index1);float type = mod(floor(hash / 8.0), 2.0);\nvec3 rhomb = (1.0 - type) * cube + type * (cuboct + cross(cube, cuboct));vec3 grad = cuboct * 1.22474487139 + rhomb;grad *= (1.0 - 0.042942436724648037 * type) * 3.5946317686139184;return grad;\n}\nvec4 bccNoiseDerivativesPart(vec3 X) {\nvec3 b = floor(X);\nvec4 i4 = vec4(X - b, 2.5);\nvec3 v1 = b + floor(dot(i4, vec4(.25)));\nvec3 v2 = b + vec3(1, 0, 0) + vec3(-1, 1, 1) * floor(dot(i4, vec4(-.25, .25, .25, .35)));\nvec3 v3 = b + vec3(0, 1, 0) + vec3(1, -1, 1) * floor(dot(i4, vec4(.25, -.25, .25, .35)));\nvec3 v4 = b + vec3(0, 0, 1) + vec3(1, 1, -1) * floor(dot(i4, vec4(.25, .25, -.25, .35)));\nvec4 hashes = permute(mod(vec4(v1.x, v2.x, v3.x, v4.x), 289.0));\nhashes = permute(mod(hashes + vec4(v1.y, v2.y, v3.y, v4.y), 289.0));\nhashes = mod(permute(mod(hashes + vec4(v1.z, v2.z, v3.z, v4.z), 289.0)), 48.0);\nvec3 d1 = X - v1; vec3 d2 = X - v2; vec3 d3 = X - v3; vec3 d4 = X - v4;\nvec4 a = max(0.75 - vec4(dot(d1, d1), dot(d2, d2), dot(d3, d3), dot(d4, d4)), 0.0);\nvec4 aa = a * a; vec4 aaaa = aa * aa;\nvec3 g1 = grad(hashes.x); vec3 g2 = grad(hashes.y);\nvec3 g3 = grad(hashes.z); vec3 g4 = grad(hashes.w);\nvec4 extrapolations = vec4(dot(d1, g1), dot(d2, g2), dot(d3, g3), dot(d4, g4));\nvec3 derivative = -8.0 * mat4x3(d1, d2, d3, d4) * (aa * a * extrapolations)\n+ mat4x3(g1, g2, g3, g4) * aaaa;\nreturn vec4(derivative, dot(aaaa, extrapolations));\n}\nvec4 bccNoiseDerivatives_XYBeforeZ(vec3 X) {\nmat3 orthonormalMap = mat3(\n0.788675134594813, -0.211324865405187, -0.577350269189626,\n-0.211324865405187, 0.788675134594813, -0.577350269189626,\n0.577350269189626, 0.577350269189626, 0.577350269189626);\nX = orthonormalMap * X;\nvec4 result = bccNoiseDerivativesPart(X) + bccNoiseDerivativesPart(X + 144.5);\nreturn vec4(result.xyz * orthonormalMap, result.w);\n}float ease (int easingFunc, float t) {\nreturn t;\n}vec3 blend (int blendMode, vec3 src, vec3 dst) {\nreturn src - dst;\n}const float PI = 3.14159265359;vec4 normalizeNoise(vec4 noise, float amount) {\nreturn mix(noise, (noise + 0.5) * 0.5, amount);\n}mat2 rotate2d(float angle) {\nreturn mat2(cos(angle), -sin(angle), sin(angle), cos(angle));\n}vec4 getNoise(vec3 p) {\nvec4 noise = bccNoiseDerivatives_XYBeforeZ(p);\nreturn normalizeNoise(noise, 0.4200);\n}vec3 causticsP(vec2 uv, vec2 aspect) {\nvec2 drift = vec2(0, 0.0000 * uTime * 0.0125);\nvec2 pos = vec2(0.5, 0.5) + drift * rotate2d(0.0000 * -2. * PI);\nuv -= pos;\nuv = uv * aspect * rotate2d(0.0000 * 2. * PI) * vec2(1. - 0.0000, 1.) * 16.0 * 0.5000;\nreturn vec3(uv, uTime * 0.05);\n}\nvec3 causticsColor(vec3 p, vec4 noise) {\nfloat refraction = mix(0.25, 1.3, 0.5000);\nvec4 balanceNoise = getNoise(p - vec3(noise.xyz / 32.0) * refraction);\nnoise = getNoise(p - vec3(balanceNoise.xyz / 16.0) * refraction);\nfloat balancer = (0.5 + 0.5 * balanceNoise.w);\nfloat normalized = pow(0.5 + 0.5 * noise.w, 2.);\nreturn vec3(0.6, 0.7, 0.9) * mix(0., normalized + 0.2 * (1.0 - normalized), balancer);\n}out vec4 fragColor;void main() {\nvec2 uv = vTextureCoord;\nvec2 aspect = vec2(uResolution.x/uResolution.y, 1);\nvec2 mPos = vec2(0.5, 0.5) + mix(vec2(0), (uMousePos-0.5), 0.0000);float mDist = ease(0, max(0.,1. - distance(uv * aspect, mPos * aspect) * 4. * (1. - 1.0000)));\nvec3 causticP = causticsP(uv, aspect);\nvec4 causticNoise = getNoise(causticP) * mDist;\nvec3 causticColor = causticsColor(causticP, causticNoise) * mDist;\nvec4 color;color = texture(uTexture, uv + causticNoise.xy * 0.01 * 0.2500);\nvec3 blended = blend(2, color.rgb, causticColor);\ncolor.rgb = mix(color.rgb, blended, 1.0000);\nfragColor = color;}"],"compiledVertexShaders":["#version 300 es\n// Copyright (c) Unicorn Studio. Licensed under the Unicorn Studio Commercial License.\n// Unauthorized copying, redistribution, or use in competing products is prohibited.\nprecision mediump float;in vec3 aVertexPosition;\nin vec2 aTextureCoord;uniform mat4 uMVMatrix;\nuniform mat4 uPMatrix;\nuniform mat4 uTextureMatrix;out vec2 vTextureCoord;\nout vec3 vVertexPosition;void main() {\ngl_Position = uPMatrix * uMVMatrix * vec4(aVertexPosition, 1.0);\nvTextureCoord = (uTextureMatrix * vec4(aTextureCoord, 0.0, 1.0)).xy;\n}"],"speed":0.5,"trackMouse":0,"trackAxes":"xy","data":{"depth":false,"uniforms":{},"isBackground":false},"id":"3c2575bf-b2e3-4866-afb5-0c68a76d525e","publicId":"caustics"}],"options":{"name":"OpenAI Flowers (Remix) (Remix)","fps":60,"dpi":1.5,"scale":1,"includeLogo":false,"isProduction":false,"flatten":false},"version":"2.2.0","id":"lXqCNSd7b4Lymq4S6qq8"}