├── .gitignore ├── Assets ├── Demo.meta ├── Demo │ ├── Prefabs.meta │ ├── Prefabs │ │ ├── DemoIntegration.prefab │ │ └── DemoIntegration.prefab.meta │ ├── Scenes.meta │ ├── Scenes │ │ ├── DemoScene.unity │ │ └── DemoScene.unity.meta │ ├── Scripts.meta │ ├── Scripts │ │ ├── DemoIntegration.cs │ │ └── DemoIntegration.cs.meta │ ├── Sprites.meta │ └── Sprites │ │ ├── rounded.png │ │ ├── rounded.png.meta │ │ ├── square.png │ │ └── square.png.meta ├── TextMesh Pro.meta └── TextMesh Pro │ ├── Documentation.meta │ ├── Documentation │ ├── TextMesh Pro User Guide 2016.pdf │ └── TextMesh Pro User Guide 2016.pdf.meta │ ├── Fonts.meta │ ├── Fonts │ ├── LiberationSans - OFL.txt │ ├── LiberationSans - OFL.txt.meta │ ├── LiberationSans.ttf │ └── LiberationSans.ttf.meta │ ├── Resources.meta │ ├── Resources │ ├── Fonts & Materials.meta │ ├── Fonts & Materials │ │ ├── LiberationSans SDF - Drop Shadow.mat │ │ ├── LiberationSans SDF - Drop Shadow.mat.meta │ │ ├── LiberationSans SDF - Fallback.asset │ │ ├── LiberationSans SDF - Fallback.asset.meta │ │ ├── LiberationSans SDF - Outline.mat │ │ ├── LiberationSans SDF - Outline.mat.meta │ │ ├── LiberationSans SDF.asset │ │ └── LiberationSans SDF.asset.meta │ ├── LineBreaking Following Characters.txt │ ├── LineBreaking Following Characters.txt.meta │ ├── LineBreaking Leading Characters.txt │ ├── LineBreaking Leading Characters.txt.meta │ ├── Sprite Assets.meta │ ├── Sprite Assets │ │ ├── EmojiOne.asset │ │ └── EmojiOne.asset.meta │ ├── Style Sheets.meta │ ├── Style Sheets │ │ ├── Default Style Sheet.asset │ │ └── Default Style Sheet.asset.meta │ ├── TMP Settings.asset │ └── TMP Settings.asset.meta │ ├── Shaders.meta │ ├── Shaders │ ├── TMP_Bitmap-Custom-Atlas.shader │ ├── TMP_Bitmap-Custom-Atlas.shader.meta │ ├── TMP_Bitmap-Mobile.shader │ ├── TMP_Bitmap-Mobile.shader.meta │ ├── TMP_Bitmap.shader │ ├── TMP_Bitmap.shader.meta │ ├── TMP_SDF Overlay.shader │ ├── TMP_SDF Overlay.shader.meta │ ├── TMP_SDF SSD.shader │ ├── TMP_SDF SSD.shader.meta │ ├── TMP_SDF-Mobile Masking.shader │ ├── TMP_SDF-Mobile Masking.shader.meta │ ├── TMP_SDF-Mobile Overlay.shader │ ├── TMP_SDF-Mobile Overlay.shader.meta │ ├── TMP_SDF-Mobile SSD.shader │ ├── TMP_SDF-Mobile SSD.shader.meta │ ├── TMP_SDF-Mobile.shader │ ├── TMP_SDF-Mobile.shader.meta │ ├── TMP_SDF-Surface-Mobile.shader │ ├── TMP_SDF-Surface-Mobile.shader.meta │ ├── TMP_SDF-Surface.shader │ ├── TMP_SDF-Surface.shader.meta │ ├── TMP_SDF.shader │ ├── TMP_SDF.shader.meta │ ├── TMP_Sprite.shader │ ├── TMP_Sprite.shader.meta │ ├── TMPro.cginc │ ├── TMPro.cginc.meta │ ├── TMPro_Mobile.cginc │ ├── TMPro_Mobile.cginc.meta │ ├── TMPro_Properties.cginc │ ├── TMPro_Properties.cginc.meta │ ├── TMPro_Surface.cginc │ └── TMPro_Surface.cginc.meta │ ├── Sprites.meta │ └── Sprites │ ├── EmojiOne Attribution.txt │ ├── EmojiOne Attribution.txt.meta │ ├── EmojiOne.json │ ├── EmojiOne.json.meta │ ├── EmojiOne.png │ └── EmojiOne.png.meta ├── LICENSE ├── Packages ├── OpenAI-Realtime-API-for-Unity │ ├── Runtime.meta │ ├── Runtime │ │ ├── Audio.meta │ │ ├── Audio │ │ │ ├── AudioPlayer.cs │ │ │ ├── AudioPlayer.cs.meta │ │ │ ├── AudioProcessingUtils.cs │ │ │ ├── AudioProcessingUtils.cs.meta │ │ │ ├── AudioRecorder.cs │ │ │ ├── AudioRecorder.cs.meta │ │ │ ├── ListeningMode.cs │ │ │ └── ListeningMode.cs.meta │ │ ├── OpenAI-Realtime-API-for-Unity.asmdef │ │ ├── OpenAI-Realtime-API-for-Unity.asmdef.meta │ │ ├── RealtimeAPI.prefab │ │ ├── RealtimeAPI.prefab.meta │ │ ├── RealtimeAPIWrapper.cs │ │ └── RealtimeAPIWrapper.cs.meta │ ├── Samples~ │ │ └── Sample │ │ │ ├── Prefabs.meta │ │ │ ├── Prefabs │ │ │ ├── DemoIntegration.prefab │ │ │ └── DemoIntegration.prefab.meta │ │ │ ├── Scenes.meta │ │ │ ├── Scenes │ │ │ ├── DemoScene.unity │ │ │ └── DemoScene.unity.meta │ │ │ ├── Scripts.meta │ │ │ ├── Scripts │ │ │ ├── DemoIntegration.cs │ │ │ └── DemoIntegration.cs.meta │ │ │ ├── Sprites.meta │ │ │ └── Sprites │ │ │ ├── rounded.png │ │ │ ├── rounded.png.meta │ │ │ ├── square.png │ │ │ └── square.png.meta │ ├── package.json │ └── package.json.meta ├── manifest.json └── packages-lock.json ├── ProjectSettings ├── AudioManager.asset ├── ClusterInputManager.asset ├── DynamicsManager.asset ├── EditorBuildSettings.asset ├── EditorSettings.asset ├── GraphicsSettings.asset ├── InputManager.asset ├── MemorySettings.asset ├── NavMeshAreas.asset ├── PackageManagerSettings.asset ├── Packages │ └── com.unity.testtools.codecoverage │ │ └── Settings.json ├── Physics2DSettings.asset ├── PresetManager.asset ├── ProjectSettings.asset ├── ProjectVersion.txt ├── QualitySettings.asset ├── SceneTemplateSettings.json ├── TagManager.asset ├── TimeManager.asset ├── UnityConnectSettings.asset ├── VFXManager.asset ├── VersionControlSettings.asset └── XRSettings.asset └── README.md /.gitignore: -------------------------------------------------------------------------------- 1 | # This .gitignore file should be placed at the root of your Unity project directory 2 | # 3 | # Get latest from https://github.com/github/gitignore/blob/main/Unity.gitignore 4 | # 5 | /[Ll]ibrary/ 6 | /[Tt]emp/ 7 | /[Oo]bj/ 8 | /[Bb]uild/ 9 | /[Bb]uilds/ 10 | /[Ll]ogs/ 11 | /[Uu]ser[Ss]ettings/ 12 | 13 | **.vscode 14 | **.DS_Store 15 | 16 | # MemoryCaptures can get excessive in size. 17 | # They also could contain extremely sensitive data 18 | /[Mm]emoryCaptures/ 19 | 20 | # Recordings can get excessive in size 21 | /[Rr]ecordings/ 22 | 23 | # Uncomment this line if you wish to ignore the asset store tools plugin 24 | # /[Aa]ssets/AssetStoreTools* 25 | 26 | # Autogenerated Jetbrains Rider plugin 27 | /[Aa]ssets/Plugins/Editor/JetBrains* 28 | 29 | # Visual Studio cache directory 30 | .vs/ 31 | 32 | # Gradle cache directory 33 | .gradle/ 34 | 35 | # Autogenerated VS/MD/Consulo solution and project files 36 | ExportedObj/ 37 | .consulo/ 38 | *.csproj 39 | *.unityproj 40 | *.sln 41 | *.suo 42 | *.tmp 43 | *.user 44 | *.userprefs 45 | *.pidb 46 | *.booproj 47 | *.svd 48 | *.pdb 49 | *.mdb 50 | *.opendb 51 | *.VC.db 52 | 53 | # Unity3D generated meta files 54 | *.pidb.meta 55 | *.pdb.meta 56 | *.mdb.meta 57 | 58 | # Unity3D generated file on crash reports 59 | sysinfo.txt 60 | 61 | # Builds 62 | *.apk 63 | *.aab 64 | *.unitypackage 65 | *.app 66 | 67 | # Crashlytics generated file 68 | crashlytics-build.properties 69 | 70 | # Packed Addressables 71 | /[Aa]ssets/[Aa]ddressable[Aa]ssets[Dd]ata/*/*.bin* 72 | 73 | # Temporary auto-generated Android Assets 74 | /[Aa]ssets/[Ss]treamingAssets/aa.meta 75 | /[Aa]ssets/[Ss]treamingAssets/aa/* 76 | -------------------------------------------------------------------------------- /Assets/Demo.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 705086ce83ea140f9bd4baaf6b1d0740 3 | folderAsset: yes 4 | DefaultImporter: 5 | externalObjects: {} 6 | userData: 7 | assetBundleName: 8 | assetBundleVariant: 9 | 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resizeAlgorithm: 0 87 | textureFormat: -1 88 | textureCompression: 1 89 | compressionQuality: 50 90 | crunchedCompression: 0 91 | allowsAlphaSplitting: 0 92 | overridden: 0 93 | ignorePlatformSupport: 0 94 | androidETC2FallbackOverride: 0 95 | forceMaximumCompressionQuality_BC6H_BC7: 0 96 | spriteSheet: 97 | serializedVersion: 2 98 | sprites: [] 99 | outline: [] 100 | physicsShape: [] 101 | bones: [] 102 | spriteID: 5e97eb03825dee720800000000000000 103 | internalID: 0 104 | vertices: [] 105 | indices: 106 | edges: [] 107 | weights: [] 108 | secondaryTextures: [] 109 | nameFileIdTable: {} 110 | mipmapLimitGroupName: 111 | pSDRemoveMatte: 0 112 | userData: 113 | assetBundleName: 114 | assetBundleVariant: 115 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: f54d1bd14bd3ca042bd867b519fee8cc 3 | folderAsset: yes 4 | DefaultImporter: 5 | externalObjects: {} 6 | userData: 7 | assetBundleName: 8 | assetBundleVariant: 9 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Documentation.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 8e7e8f5a82a3a134e91c54efd2274ea9 3 | folderAsset: yes 4 | DefaultImporter: 5 | externalObjects: {} 6 | userData: 7 | assetBundleName: 8 | assetBundleVariant: 9 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Documentation/TextMesh Pro User Guide 2016.pdf: -------------------------------------------------------------------------------- https://raw.githubusercontent.com/mapluisch/OpenAI-Realtime-API-for-Unity/0540daaae2fa4463d437432244a1e1a0d9f49600/Assets/TextMesh Pro/Documentation/TextMesh Pro User Guide 2016.pdf -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Documentation/TextMesh Pro User Guide 2016.pdf.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 1b8d251f9af63b746bf2f7ffe00ebb9b 3 | DefaultImporter: 4 | externalObjects: {} 5 | userData: 6 | assetBundleName: 7 | assetBundleVariant: 8 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Fonts.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 6ab70aee4d56447429c680537fbf93ed 3 | folderAsset: yes 4 | DefaultImporter: 5 | externalObjects: {} 6 | userData: 7 | assetBundleName: 8 | assetBundleVariant: 9 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Fonts/LiberationSans - OFL.txt: -------------------------------------------------------------------------------- 1 | Digitized data copyright (c) 2010 Google Corporation 2 | with Reserved Font Arimo, Tinos and Cousine. 3 | Copyright (c) 2012 Red Hat, Inc. 4 | with Reserved Font Name Liberation. 5 | 6 | This Font Software is licensed under the SIL Open Font License, Version 1.1. 7 | This license is copied below, and is also available with a FAQ at: http://scripts.sil.org/OFL 8 | 9 | ----------------------------------------------------------- 10 | SIL OPEN FONT LICENSE Version 1.1 - 26 February 2007 11 | ----------------------------------------------------------- 12 | 13 | PREAMBLE 14 | The goals of the Open Font License (OFL) are to stimulate worldwide development of collaborative font projects, to support the font creation efforts of academic and linguistic communities, and to provide a free and open framework in which fonts may be shared and improved in partnership with others. 15 | 16 | The OFL allows the licensed fonts to be used, studied, modified and redistributed freely as long as they are not sold by themselves. The fonts, including any derivative works, can be bundled, embedded, redistributed and/or sold with any software provided that any reserved names are not used by derivative works. The fonts and derivatives, however, cannot be released under any other type of license. The requirement for fonts to remain under this license does not apply to any document created using the fonts or their derivatives. 17 | 18 | DEFINITIONS 19 | "Font Software" refers to the set of files released by the Copyright Holder(s) under this license and clearly marked as such. This may include source files, build scripts and documentation. 20 | 21 | "Reserved Font Name" refers to any names specified as such after the copyright statement(s). 22 | 23 | "Original Version" refers to the collection of Font Software components as distributed by the Copyright Holder(s). 24 | 25 | "Modified Version" refers to any derivative made by adding to, deleting, or substituting -- in part or in whole -- any of the components of the Original Version, by changing formats or by porting the Font Software to a new environment. 26 | 27 | "Author" refers to any designer, engineer, programmer, technical writer or other person who contributed to the Font Software. 28 | 29 | PERMISSION & CONDITIONS 30 | Permission is hereby granted, free of charge, to any person obtaining a copy of the Font Software, to use, study, copy, merge, embed, modify, redistribute, and sell modified and unmodified copies of the Font Software, subject to the following conditions: 31 | 32 | 1) Neither the Font Software nor any of its individual components, in Original or Modified Versions, may be sold by itself. 33 | 34 | 2) Original or Modified Versions of the Font Software may be bundled, redistributed and/or sold with any software, provided that each copy contains the above copyright notice and this license. These can be included either as stand-alone text files, human-readable headers or in the appropriate machine-readable metadata fields within text or binary files as long as those fields can be easily viewed by the user. 35 | 36 | 3) No Modified Version of the Font Software may use the Reserved Font Name(s) unless explicit written permission is granted by the corresponding Copyright Holder. This restriction only applies to the primary font name as presented to the users. 37 | 38 | 4) The name(s) of the Copyright Holder(s) or the Author(s) of the Font Software shall not be used to promote, endorse or advertise any Modified Version, except to acknowledge the contribution(s) of the Copyright Holder(s) and the Author(s) or with their explicit written permission. 39 | 40 | 5) The Font Software, modified or unmodified, in part or in whole, must be distributed entirely under this license, and must not be distributed under any other license. The requirement for fonts to remain under this license does not apply to any document created using the Font Software. 41 | 42 | TERMINATION 43 | This license becomes null and void if any of the above conditions are not met. 44 | 45 | DISCLAIMER 46 | THE FONT SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO ANY WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT OF COPYRIGHT, PATENT, TRADEMARK, OR OTHER RIGHT. IN NO EVENT SHALL THE COPYRIGHT HOLDER BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, INCLUDING ANY GENERAL, SPECIAL, INDIRECT, INCIDENTAL, OR CONSEQUENTIAL DAMAGES, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF THE USE OR INABILITY TO USE THE FONT SOFTWARE OR FROM OTHER DEALINGS IN THE FONT SOFTWARE. -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Fonts/LiberationSans - OFL.txt.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 6e59c59b81ab47f9b6ec5781fa725d2c 3 | timeCreated: 1484171296 4 | licenseType: Pro 5 | TextScriptImporter: 6 | userData: 7 | assetBundleName: 8 | assetBundleVariant: 9 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Fonts/LiberationSans.ttf: -------------------------------------------------------------------------------- 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Pass { 49 | CGPROGRAM 50 | #pragma vertex vert 51 | #pragma fragment frag 52 | 53 | #pragma multi_compile __ UNITY_UI_CLIP_RECT 54 | #pragma multi_compile __ UNITY_UI_ALPHACLIP 55 | 56 | 57 | #include "UnityCG.cginc" 58 | 59 | struct appdata_t { 60 | float4 vertex : POSITION; 61 | fixed4 color : COLOR; 62 | float2 texcoord0 : TEXCOORD0; 63 | float2 texcoord1 : TEXCOORD1; 64 | }; 65 | 66 | struct v2f { 67 | float4 vertex : SV_POSITION; 68 | fixed4 color : COLOR; 69 | float2 texcoord0 : TEXCOORD0; 70 | float2 texcoord1 : TEXCOORD1; 71 | float4 mask : TEXCOORD2; 72 | }; 73 | 74 | uniform sampler2D _MainTex; 75 | uniform sampler2D _FaceTex; 76 | uniform float4 _FaceTex_ST; 77 | uniform fixed4 _FaceColor; 78 | 79 | uniform float _VertexOffsetX; 80 | uniform float _VertexOffsetY; 81 | uniform float4 _ClipRect; 82 | uniform float _MaskSoftnessX; 83 | uniform float _MaskSoftnessY; 84 | 85 | float2 UnpackUV(float uv) 86 | { 87 | float2 output; 88 | output.x = floor(uv / 4096); 89 | output.y = uv - 4096 * output.x; 90 | 91 | return output * 0.001953125; 92 | } 93 | 94 | v2f vert (appdata_t v) 95 | { 96 | float4 vert = v.vertex; 97 | vert.x += _VertexOffsetX; 98 | vert.y += _VertexOffsetY; 99 | 100 | vert.xy += (vert.w * 0.5) / _ScreenParams.xy; 101 | 102 | float4 vPosition = UnityPixelSnap(UnityObjectToClipPos(vert)); 103 | 104 | fixed4 faceColor = v.color; 105 | faceColor *= _FaceColor; 106 | 107 | v2f OUT; 108 | OUT.vertex = vPosition; 109 | OUT.color = faceColor; 110 | OUT.texcoord0 = v.texcoord0; 111 | OUT.texcoord1 = TRANSFORM_TEX(UnpackUV(v.texcoord1), _FaceTex); 112 | float2 pixelSize = vPosition.w; 113 | pixelSize /= abs(float2(_ScreenParams.x * UNITY_MATRIX_P[0][0], _ScreenParams.y * UNITY_MATRIX_P[1][1])); 114 | 115 | // Clamp _ClipRect to 16bit. 116 | float4 clampedRect = clamp(_ClipRect, -2e10, 2e10); 117 | OUT.mask = float4(vert.xy * 2 - clampedRect.xy - clampedRect.zw, 0.25 / (0.25 * half2(_MaskSoftnessX, _MaskSoftnessY) + pixelSize.xy)); 118 | 119 | return OUT; 120 | } 121 | 122 | fixed4 frag (v2f IN) : SV_Target 123 | { 124 | fixed4 color = tex2D(_MainTex, IN.texcoord0) * tex2D(_FaceTex, IN.texcoord1) * IN.color; 125 | 126 | // Alternative implementation to UnityGet2DClipping with support for softness. 127 | #if UNITY_UI_CLIP_RECT 128 | half2 m = saturate((_ClipRect.zw - _ClipRect.xy - abs(IN.mask.xy)) * IN.mask.zw); 129 | color *= m.x * m.y; 130 | #endif 131 | 132 | #if UNITY_UI_ALPHACLIP 133 | clip(color.a - 0.001); 134 | #endif 135 | 136 | return color; 137 | } 138 | ENDCG 139 | } 140 | } 141 | 142 | CustomEditor "TMPro.EditorUtilities.TMP_BitmapShaderGUI" 143 | } 144 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_Bitmap-Custom-Atlas.shader.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 48bb5f55d8670e349b6e614913f9d910 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_Bitmap-Mobile.shader: -------------------------------------------------------------------------------- 1 | Shader "TextMeshPro/Mobile/Bitmap" { 2 | 3 | Properties { 4 | _MainTex ("Font Atlas", 2D) = "white" {} 5 | [HDR]_Color ("Text Color", Color) = (1,1,1,1) 6 | _DiffusePower ("Diffuse Power", Range(1.0,4.0)) = 1.0 7 | 8 | _VertexOffsetX("Vertex OffsetX", float) = 0 9 | _VertexOffsetY("Vertex OffsetY", float) = 0 10 | _MaskSoftnessX("Mask SoftnessX", float) = 0 11 | _MaskSoftnessY("Mask SoftnessY", float) = 0 12 | 13 | _ClipRect("Clip Rect", vector) = (-32767, -32767, 32767, 32767) 14 | 15 | _StencilComp("Stencil Comparison", Float) = 8 16 | _Stencil("Stencil ID", Float) = 0 17 | _StencilOp("Stencil Operation", Float) = 0 18 | _StencilWriteMask("Stencil Write Mask", Float) = 255 19 | _StencilReadMask("Stencil Read Mask", Float) = 255 20 | 21 | _CullMode("Cull Mode", Float) = 0 22 | _ColorMask("Color Mask", Float) = 15 23 | } 24 | 25 | SubShader { 26 | 27 | Tags { "Queue"="Transparent" "IgnoreProjector"="True" "RenderType"="Transparent" } 28 | 29 | Stencil 30 | { 31 | Ref[_Stencil] 32 | Comp[_StencilComp] 33 | Pass[_StencilOp] 34 | ReadMask[_StencilReadMask] 35 | WriteMask[_StencilWriteMask] 36 | } 37 | 38 | 39 | Lighting Off 40 | Cull [_CullMode] 41 | ZTest [unity_GUIZTestMode] 42 | ZWrite Off 43 | Fog { Mode Off } 44 | Blend SrcAlpha OneMinusSrcAlpha 45 | ColorMask[_ColorMask] 46 | 47 | Pass { 48 | CGPROGRAM 49 | #pragma vertex vert 50 | #pragma fragment frag 51 | #pragma fragmentoption ARB_precision_hint_fastest 52 | 53 | #pragma multi_compile __ UNITY_UI_CLIP_RECT 54 | #pragma multi_compile __ UNITY_UI_ALPHACLIP 55 | 56 | 57 | #include "UnityCG.cginc" 58 | 59 | struct appdata_t { 60 | float4 vertex : POSITION; 61 | fixed4 color : COLOR; 62 | float2 texcoord0 : TEXCOORD0; 63 | float2 texcoord1 : TEXCOORD1; 64 | }; 65 | 66 | struct v2f { 67 | float4 vertex : POSITION; 68 | fixed4 color : COLOR; 69 | float2 texcoord0 : TEXCOORD0; 70 | float4 mask : TEXCOORD2; 71 | }; 72 | 73 | sampler2D _MainTex; 74 | fixed4 _Color; 75 | float _DiffusePower; 76 | 77 | uniform float _VertexOffsetX; 78 | uniform float _VertexOffsetY; 79 | uniform float4 _ClipRect; 80 | uniform float _MaskSoftnessX; 81 | uniform float _MaskSoftnessY; 82 | 83 | v2f vert (appdata_t v) 84 | { 85 | v2f OUT; 86 | float4 vert = v.vertex; 87 | vert.x += _VertexOffsetX; 88 | vert.y += _VertexOffsetY; 89 | 90 | vert.xy += (vert.w * 0.5) / _ScreenParams.xy; 91 | 92 | OUT.vertex = UnityPixelSnap(UnityObjectToClipPos(vert)); 93 | OUT.color = v.color; 94 | OUT.color *= _Color; 95 | OUT.color.rgb *= _DiffusePower; 96 | OUT.texcoord0 = v.texcoord0; 97 | 98 | float2 pixelSize = OUT.vertex.w; 99 | //pixelSize /= abs(float2(_ScreenParams.x * UNITY_MATRIX_P[0][0], _ScreenParams.y * UNITY_MATRIX_P[1][1])); 100 | 101 | // Clamp _ClipRect to 16bit. 102 | float4 clampedRect = clamp(_ClipRect, -2e10, 2e10); 103 | OUT.mask = float4(vert.xy * 2 - clampedRect.xy - clampedRect.zw, 0.25 / (0.25 * half2(_MaskSoftnessX, _MaskSoftnessY) + pixelSize.xy)); 104 | 105 | return OUT; 106 | } 107 | 108 | fixed4 frag (v2f IN) : COLOR 109 | { 110 | fixed4 color = fixed4(IN.color.rgb, IN.color.a * tex2D(_MainTex, IN.texcoord0).a); 111 | 112 | // Alternative implementation to UnityGet2DClipping with support for softness. 113 | #if UNITY_UI_CLIP_RECT 114 | half2 m = saturate((_ClipRect.zw - _ClipRect.xy - abs(IN.mask.xy)) * IN.mask.zw); 115 | color *= m.x * m.y; 116 | #endif 117 | 118 | #if UNITY_UI_ALPHACLIP 119 | clip(color.a - 0.001); 120 | #endif 121 | 122 | return color; 123 | } 124 | ENDCG 125 | } 126 | } 127 | 128 | SubShader { 129 | Tags { "Queue"="Transparent" "IgnoreProjector"="True" "RenderType"="Transparent" } 130 | Lighting Off Cull Off ZTest Always ZWrite Off Fog { Mode Off } 131 | Blend SrcAlpha OneMinusSrcAlpha 132 | BindChannels { 133 | Bind "Color", color 134 | Bind "Vertex", vertex 135 | Bind "TexCoord", texcoord0 136 | } 137 | Pass { 138 | SetTexture [_MainTex] { 139 | constantColor [_Color] combine constant * primary, constant * texture 140 | } 141 | } 142 | } 143 | 144 | CustomEditor "TMPro.EditorUtilities.TMP_BitmapShaderGUI" 145 | } 146 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_Bitmap-Mobile.shader.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 1e3b057af24249748ff873be7fafee47 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_Bitmap.shader: -------------------------------------------------------------------------------- 1 | Shader "TextMeshPro/Bitmap" { 2 | 3 | Properties { 4 | _MainTex ("Font Atlas", 2D) = "white" {} 5 | _FaceTex ("Font Texture", 2D) = "white" {} 6 | [HDR]_FaceColor ("Text Color", Color) = (1,1,1,1) 7 | 8 | _VertexOffsetX ("Vertex OffsetX", float) = 0 9 | _VertexOffsetY ("Vertex OffsetY", float) = 0 10 | _MaskSoftnessX ("Mask SoftnessX", float) = 0 11 | _MaskSoftnessY ("Mask SoftnessY", float) = 0 12 | 13 | _ClipRect("Clip Rect", vector) = (-32767, -32767, 32767, 32767) 14 | 15 | _StencilComp("Stencil Comparison", Float) = 8 16 | _Stencil("Stencil ID", Float) = 0 17 | _StencilOp("Stencil Operation", Float) = 0 18 | _StencilWriteMask("Stencil Write Mask", Float) = 255 19 | _StencilReadMask("Stencil Read Mask", Float) = 255 20 | 21 | _CullMode("Cull Mode", Float) = 0 22 | _ColorMask("Color Mask", Float) = 15 23 | } 24 | 25 | SubShader{ 26 | 27 | Tags { "Queue" = "Transparent" "IgnoreProjector" = "True" "RenderType" = "Transparent" } 28 | 29 | Stencil 30 | { 31 | Ref[_Stencil] 32 | Comp[_StencilComp] 33 | Pass[_StencilOp] 34 | ReadMask[_StencilReadMask] 35 | WriteMask[_StencilWriteMask] 36 | } 37 | 38 | 39 | Lighting Off 40 | Cull [_CullMode] 41 | ZTest [unity_GUIZTestMode] 42 | ZWrite Off 43 | Fog { Mode Off } 44 | Blend SrcAlpha OneMinusSrcAlpha 45 | ColorMask[_ColorMask] 46 | 47 | Pass { 48 | CGPROGRAM 49 | #pragma vertex vert 50 | #pragma fragment frag 51 | 52 | #pragma multi_compile __ UNITY_UI_CLIP_RECT 53 | #pragma multi_compile __ UNITY_UI_ALPHACLIP 54 | 55 | 56 | #include "UnityCG.cginc" 57 | 58 | struct appdata_t { 59 | float4 vertex : POSITION; 60 | fixed4 color : COLOR; 61 | float2 texcoord0 : TEXCOORD0; 62 | float2 texcoord1 : TEXCOORD1; 63 | }; 64 | 65 | struct v2f { 66 | float4 vertex : SV_POSITION; 67 | fixed4 color : COLOR; 68 | float2 texcoord0 : TEXCOORD0; 69 | float2 texcoord1 : TEXCOORD1; 70 | float4 mask : TEXCOORD2; 71 | }; 72 | 73 | uniform sampler2D _MainTex; 74 | uniform sampler2D _FaceTex; 75 | uniform float4 _FaceTex_ST; 76 | uniform fixed4 _FaceColor; 77 | 78 | uniform float _VertexOffsetX; 79 | uniform float _VertexOffsetY; 80 | uniform float4 _ClipRect; 81 | uniform float _MaskSoftnessX; 82 | uniform float _MaskSoftnessY; 83 | 84 | float2 UnpackUV(float uv) 85 | { 86 | float2 output; 87 | output.x = floor(uv / 4096); 88 | output.y = uv - 4096 * output.x; 89 | 90 | return output * 0.001953125; 91 | } 92 | 93 | v2f vert (appdata_t v) 94 | { 95 | float4 vert = v.vertex; 96 | vert.x += _VertexOffsetX; 97 | vert.y += _VertexOffsetY; 98 | 99 | vert.xy += (vert.w * 0.5) / _ScreenParams.xy; 100 | 101 | float4 vPosition = UnityPixelSnap(UnityObjectToClipPos(vert)); 102 | 103 | fixed4 faceColor = v.color; 104 | faceColor *= _FaceColor; 105 | 106 | v2f OUT; 107 | OUT.vertex = vPosition; 108 | OUT.color = faceColor; 109 | OUT.texcoord0 = v.texcoord0; 110 | OUT.texcoord1 = TRANSFORM_TEX(UnpackUV(v.texcoord1), _FaceTex); 111 | float2 pixelSize = vPosition.w; 112 | pixelSize /= abs(float2(_ScreenParams.x * UNITY_MATRIX_P[0][0], _ScreenParams.y * UNITY_MATRIX_P[1][1])); 113 | 114 | // Clamp _ClipRect to 16bit. 115 | float4 clampedRect = clamp(_ClipRect, -2e10, 2e10); 116 | OUT.mask = float4(vert.xy * 2 - clampedRect.xy - clampedRect.zw, 0.25 / (0.25 * half2(_MaskSoftnessX, _MaskSoftnessY) + pixelSize.xy)); 117 | 118 | return OUT; 119 | } 120 | 121 | fixed4 frag (v2f IN) : SV_Target 122 | { 123 | fixed4 color = tex2D(_MainTex, IN.texcoord0); 124 | color = fixed4 (tex2D(_FaceTex, IN.texcoord1).rgb * IN.color.rgb, IN.color.a * color.a); 125 | 126 | // Alternative implementation to UnityGet2DClipping with support for softness. 127 | #if UNITY_UI_CLIP_RECT 128 | half2 m = saturate((_ClipRect.zw - _ClipRect.xy - abs(IN.mask.xy)) * IN.mask.zw); 129 | color *= m.x * m.y; 130 | #endif 131 | 132 | #if UNITY_UI_ALPHACLIP 133 | clip(color.a - 0.001); 134 | #endif 135 | 136 | return color; 137 | } 138 | ENDCG 139 | } 140 | } 141 | 142 | CustomEditor "TMPro.EditorUtilities.TMP_BitmapShaderGUI" 143 | } 144 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_Bitmap.shader.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 128e987d567d4e2c824d754223b3f3b0 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_SDF Overlay.shader.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: dd89cf5b9246416f84610a006f916af7 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_SDF SSD.shader.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 14eb328de4b8eb245bb7cea29e4ac00b 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_SDF-Mobile Masking.shader: -------------------------------------------------------------------------------- 1 | // Simplified SDF shader: 2 | // - No Shading Option (bevel / bump / env map) 3 | // - No Glow Option 4 | // - Softness is applied on both side of the outline 5 | 6 | Shader "TextMeshPro/Mobile/Distance Field - Masking" { 7 | 8 | Properties { 9 | [HDR]_FaceColor ("Face Color", Color) = (1,1,1,1) 10 | _FaceDilate ("Face Dilate", Range(-1,1)) = 0 11 | 12 | [HDR]_OutlineColor ("Outline Color", Color) = (0,0,0,1) 13 | _OutlineWidth ("Outline Thickness", Range(0,1)) = 0 14 | _OutlineSoftness ("Outline Softness", Range(0,1)) = 0 15 | 16 | [HDR]_UnderlayColor ("Border Color", Color) = (0,0,0,.5) 17 | _UnderlayOffsetX ("Border OffsetX", Range(-1,1)) = 0 18 | _UnderlayOffsetY ("Border OffsetY", Range(-1,1)) = 0 19 | _UnderlayDilate ("Border Dilate", Range(-1,1)) = 0 20 | _UnderlaySoftness ("Border Softness", Range(0,1)) = 0 21 | 22 | _WeightNormal ("Weight Normal", float) = 0 23 | _WeightBold ("Weight Bold", float) = .5 24 | 25 | _ShaderFlags ("Flags", float) = 0 26 | _ScaleRatioA ("Scale RatioA", float) = 1 27 | _ScaleRatioB ("Scale RatioB", float) = 1 28 | _ScaleRatioC ("Scale RatioC", float) = 1 29 | 30 | _MainTex ("Font Atlas", 2D) = "white" {} 31 | _TextureWidth ("Texture Width", float) = 512 32 | _TextureHeight ("Texture Height", float) = 512 33 | _GradientScale ("Gradient Scale", float) = 5 34 | _ScaleX ("Scale X", float) = 1 35 | _ScaleY ("Scale Y", float) = 1 36 | _PerspectiveFilter ("Perspective Correction", Range(0, 1)) = 0.875 37 | _Sharpness ("Sharpness", Range(-1,1)) = 0 38 | 39 | _VertexOffsetX ("Vertex OffsetX", float) = 0 40 | _VertexOffsetY ("Vertex OffsetY", float) = 0 41 | 42 | _ClipRect ("Clip Rect", vector) = (-32767, -32767, 32767, 32767) 43 | _MaskSoftnessX ("Mask SoftnessX", float) = 0 44 | _MaskSoftnessY ("Mask SoftnessY", float) = 0 45 | _MaskTex ("Mask Texture", 2D) = "white" {} 46 | _MaskInverse ("Inverse", float) = 0 47 | _MaskEdgeColor ("Edge Color", Color) = (1,1,1,1) 48 | _MaskEdgeSoftness ("Edge Softness", Range(0, 1)) = 0.01 49 | _MaskWipeControl ("Wipe Position", Range(0, 1)) = 0.5 50 | 51 | _StencilComp ("Stencil Comparison", Float) = 8 52 | _Stencil ("Stencil ID", Float) = 0 53 | _StencilOp ("Stencil Operation", Float) = 0 54 | _StencilWriteMask ("Stencil Write Mask", Float) = 255 55 | _StencilReadMask ("Stencil Read Mask", Float) = 255 56 | 57 | _CullMode ("Cull Mode", Float) = 0 58 | _ColorMask ("Color Mask", Float) = 15 59 | } 60 | 61 | SubShader { 62 | Tags 63 | { 64 | "Queue"="Transparent" 65 | "IgnoreProjector"="True" 66 | "RenderType"="Transparent" 67 | } 68 | 69 | 70 | Stencil 71 | { 72 | Ref [_Stencil] 73 | Comp [_StencilComp] 74 | Pass [_StencilOp] 75 | ReadMask [_StencilReadMask] 76 | WriteMask [_StencilWriteMask] 77 | } 78 | 79 | Cull [_CullMode] 80 | ZWrite Off 81 | Lighting Off 82 | Fog { Mode Off } 83 | ZTest [unity_GUIZTestMode] 84 | Blend One OneMinusSrcAlpha 85 | ColorMask [_ColorMask] 86 | 87 | Pass { 88 | CGPROGRAM 89 | #pragma vertex VertShader 90 | #pragma fragment PixShader 91 | #pragma shader_feature __ OUTLINE_ON 92 | #pragma shader_feature __ UNDERLAY_ON UNDERLAY_INNER 93 | 94 | #pragma multi_compile __ UNITY_UI_CLIP_RECT 95 | #pragma multi_compile __ UNITY_UI_ALPHACLIP 96 | 97 | 98 | #include "UnityCG.cginc" 99 | #include "UnityUI.cginc" 100 | #include "TMPro_Properties.cginc" 101 | 102 | struct vertex_t { 103 | float4 vertex : POSITION; 104 | float3 normal : NORMAL; 105 | fixed4 color : COLOR; 106 | float2 texcoord0 : TEXCOORD0; 107 | float2 texcoord1 : TEXCOORD1; 108 | }; 109 | 110 | struct pixel_t { 111 | float4 vertex : SV_POSITION; 112 | fixed4 faceColor : COLOR; 113 | fixed4 outlineColor : COLOR1; 114 | float4 texcoord0 : TEXCOORD0; // Texture UV, Mask UV 115 | half4 param : TEXCOORD1; // Scale(x), BiasIn(y), BiasOut(z), Bias(w) 116 | half4 mask : TEXCOORD2; // Position in clip space(xy), Softness(zw) 117 | #if (UNDERLAY_ON | UNDERLAY_INNER) 118 | float4 texcoord1 : TEXCOORD3; // Texture UV, alpha, reserved 119 | half2 underlayParam : TEXCOORD4; // Scale(x), Bias(y) 120 | #endif 121 | }; 122 | 123 | float _MaskWipeControl; 124 | float _MaskEdgeSoftness; 125 | fixed4 _MaskEdgeColor; 126 | bool _MaskInverse; 127 | 128 | pixel_t VertShader(vertex_t input) 129 | { 130 | float bold = step(input.texcoord1.y, 0); 131 | 132 | float4 vert = input.vertex; 133 | vert.x += _VertexOffsetX; 134 | vert.y += _VertexOffsetY; 135 | float4 vPosition = UnityObjectToClipPos(vert); 136 | 137 | float2 pixelSize = vPosition.w; 138 | pixelSize /= float2(_ScaleX, _ScaleY) * abs(mul((float2x2)UNITY_MATRIX_P, _ScreenParams.xy)); 139 | 140 | float scale = rsqrt(dot(pixelSize, pixelSize)); 141 | scale *= abs(input.texcoord1.y) * _GradientScale * (_Sharpness + 1); 142 | if(UNITY_MATRIX_P[3][3] == 0) scale = lerp(abs(scale) * (1 - _PerspectiveFilter), scale, abs(dot(UnityObjectToWorldNormal(input.normal.xyz), normalize(WorldSpaceViewDir(vert))))); 143 | 144 | float weight = lerp(_WeightNormal, _WeightBold, bold) / 4.0; 145 | weight = (weight + _FaceDilate) * _ScaleRatioA * 0.5; 146 | 147 | float layerScale = scale; 148 | 149 | scale /= 1 + (_OutlineSoftness * _ScaleRatioA * scale); 150 | float bias = (0.5 - weight) * scale - 0.5; 151 | float outline = _OutlineWidth * _ScaleRatioA * 0.5 * scale; 152 | 153 | float opacity = input.color.a; 154 | #if (UNDERLAY_ON | UNDERLAY_INNER) 155 | opacity = 1.0; 156 | #endif 157 | 158 | fixed4 faceColor = fixed4(input.color.rgb, opacity) * _FaceColor; 159 | faceColor.rgb *= faceColor.a; 160 | 161 | fixed4 outlineColor = _OutlineColor; 162 | outlineColor.a *= opacity; 163 | outlineColor.rgb *= outlineColor.a; 164 | outlineColor = lerp(faceColor, outlineColor, sqrt(min(1.0, (outline * 2)))); 165 | 166 | #if (UNDERLAY_ON | UNDERLAY_INNER) 167 | 168 | layerScale /= 1 + ((_UnderlaySoftness * _ScaleRatioC) * layerScale); 169 | float layerBias = (.5 - weight) * layerScale - .5 - ((_UnderlayDilate * _ScaleRatioC) * .5 * layerScale); 170 | 171 | float x = -(_UnderlayOffsetX * _ScaleRatioC) * _GradientScale / _TextureWidth; 172 | float y = -(_UnderlayOffsetY * _ScaleRatioC) * _GradientScale / _TextureHeight; 173 | float2 layerOffset = float2(x, y); 174 | #endif 175 | 176 | // Generate UV for the Masking Texture 177 | float4 clampedRect = clamp(_ClipRect, -2e10, 2e10); 178 | float2 maskUV = (vert.xy - clampedRect.xy) / (clampedRect.zw - clampedRect.xy); 179 | 180 | // Structure for pixel shader 181 | pixel_t output = { 182 | vPosition, 183 | faceColor, 184 | outlineColor, 185 | float4(input.texcoord0.x, input.texcoord0.y, maskUV.x, maskUV.y), 186 | half4(scale, bias - outline, bias + outline, bias), 187 | half4(vert.xy * 2 - clampedRect.xy - clampedRect.zw, 0.25 / (0.25 * half2(_MaskSoftnessX, _MaskSoftnessY) + pixelSize.xy)), 188 | #if (UNDERLAY_ON | UNDERLAY_INNER) 189 | float4(input.texcoord0 + layerOffset, input.color.a, 0), 190 | half2(layerScale, layerBias), 191 | #endif 192 | }; 193 | 194 | return output; 195 | } 196 | 197 | 198 | // PIXEL SHADER 199 | fixed4 PixShader(pixel_t input) : SV_Target 200 | { 201 | half d = tex2D(_MainTex, input.texcoord0.xy).a * input.param.x; 202 | half4 c = input.faceColor * saturate(d - input.param.w); 203 | 204 | #ifdef OUTLINE_ON 205 | c = lerp(input.outlineColor, input.faceColor, saturate(d - input.param.z)); 206 | c *= saturate(d - input.param.y); 207 | #endif 208 | 209 | #if UNDERLAY_ON 210 | d = tex2D(_MainTex, input.texcoord1.xy).a * input.underlayParam.x; 211 | c += float4(_UnderlayColor.rgb * _UnderlayColor.a, _UnderlayColor.a) * saturate(d - input.underlayParam.y) * (1 - c.a); 212 | #endif 213 | 214 | #if UNDERLAY_INNER 215 | half sd = saturate(d - input.param.z); 216 | d = tex2D(_MainTex, input.texcoord1.xy).a * input.underlayParam.x; 217 | c += float4(_UnderlayColor.rgb * _UnderlayColor.a, _UnderlayColor.a) * (1 - saturate(d - input.underlayParam.y)) * sd * (1 - c.a); 218 | #endif 219 | 220 | // Alternative implementation to UnityGet2DClipping with support for softness. 221 | //#if UNITY_UI_CLIP_RECT 222 | half2 m = saturate((_ClipRect.zw - _ClipRect.xy - abs(input.mask.xy)) * input.mask.zw); 223 | c *= m.x * m.y; 224 | //#endif 225 | 226 | float a = abs(_MaskInverse - tex2D(_MaskTex, input.texcoord0.zw).a); 227 | float t = a + (1 - _MaskWipeControl) * _MaskEdgeSoftness - _MaskWipeControl; 228 | a = saturate(t / _MaskEdgeSoftness); 229 | c.rgb = lerp(_MaskEdgeColor.rgb*c.a, c.rgb, a); 230 | c *= a; 231 | 232 | #if (UNDERLAY_ON | UNDERLAY_INNER) 233 | c *= input.texcoord1.z; 234 | #endif 235 | 236 | #if UNITY_UI_ALPHACLIP 237 | clip(c.a - 0.001); 238 | #endif 239 | 240 | return c; 241 | } 242 | ENDCG 243 | } 244 | } 245 | 246 | CustomEditor "TMPro.EditorUtilities.TMP_SDFShaderGUI" 247 | } 248 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_SDF-Mobile Masking.shader.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: bc1ede39bf3643ee8e493720e4259791 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_SDF-Mobile Overlay.shader: -------------------------------------------------------------------------------- 1 | // Simplified SDF shader: 2 | // - No Shading Option (bevel / bump / env map) 3 | // - No Glow Option 4 | // - Softness is applied on both side of the outline 5 | 6 | Shader "TextMeshPro/Mobile/Distance Field Overlay" { 7 | 8 | Properties { 9 | [HDR]_FaceColor ("Face Color", Color) = (1,1,1,1) 10 | _FaceDilate ("Face Dilate", Range(-1,1)) = 0 11 | 12 | [HDR]_OutlineColor ("Outline Color", Color) = (0,0,0,1) 13 | _OutlineWidth ("Outline Thickness", Range(0,1)) = 0 14 | _OutlineSoftness ("Outline Softness", Range(0,1)) = 0 15 | 16 | [HDR]_UnderlayColor ("Border Color", Color) = (0,0,0,.5) 17 | _UnderlayOffsetX ("Border OffsetX", Range(-1,1)) = 0 18 | _UnderlayOffsetY ("Border OffsetY", Range(-1,1)) = 0 19 | _UnderlayDilate ("Border Dilate", Range(-1,1)) = 0 20 | _UnderlaySoftness ("Border Softness", Range(0,1)) = 0 21 | 22 | _WeightNormal ("Weight Normal", float) = 0 23 | _WeightBold ("Weight Bold", float) = .5 24 | 25 | _ShaderFlags ("Flags", float) = 0 26 | _ScaleRatioA ("Scale RatioA", float) = 1 27 | _ScaleRatioB ("Scale RatioB", float) = 1 28 | _ScaleRatioC ("Scale RatioC", float) = 1 29 | 30 | _MainTex ("Font Atlas", 2D) = "white" {} 31 | _TextureWidth ("Texture Width", float) = 512 32 | _TextureHeight ("Texture Height", float) = 512 33 | _GradientScale ("Gradient Scale", float) = 5 34 | _ScaleX ("Scale X", float) = 1 35 | _ScaleY ("Scale Y", float) = 1 36 | _PerspectiveFilter ("Perspective Correction", Range(0, 1)) = 0.875 37 | _Sharpness ("Sharpness", Range(-1,1)) = 0 38 | 39 | _VertexOffsetX ("Vertex OffsetX", float) = 0 40 | _VertexOffsetY ("Vertex OffsetY", float) = 0 41 | 42 | _ClipRect ("Clip Rect", vector) = (-32767, -32767, 32767, 32767) 43 | _MaskSoftnessX ("Mask SoftnessX", float) = 0 44 | _MaskSoftnessY ("Mask SoftnessY", float) = 0 45 | 46 | _StencilComp ("Stencil Comparison", Float) = 8 47 | _Stencil ("Stencil ID", Float) = 0 48 | _StencilOp ("Stencil Operation", Float) = 0 49 | _StencilWriteMask ("Stencil Write Mask", Float) = 255 50 | _StencilReadMask ("Stencil Read Mask", Float) = 255 51 | 52 | _CullMode ("Cull Mode", Float) = 0 53 | _ColorMask ("Color Mask", Float) = 15 54 | } 55 | 56 | SubShader { 57 | Tags 58 | { 59 | "Queue"="Overlay" 60 | "IgnoreProjector"="True" 61 | "RenderType"="Transparent" 62 | } 63 | 64 | 65 | Stencil 66 | { 67 | Ref [_Stencil] 68 | Comp [_StencilComp] 69 | Pass [_StencilOp] 70 | ReadMask [_StencilReadMask] 71 | WriteMask [_StencilWriteMask] 72 | } 73 | 74 | Cull [_CullMode] 75 | ZWrite Off 76 | Lighting Off 77 | Fog { Mode Off } 78 | ZTest Always 79 | Blend One OneMinusSrcAlpha 80 | ColorMask [_ColorMask] 81 | 82 | Pass { 83 | CGPROGRAM 84 | #pragma vertex VertShader 85 | #pragma fragment PixShader 86 | #pragma shader_feature __ OUTLINE_ON 87 | #pragma shader_feature __ UNDERLAY_ON UNDERLAY_INNER 88 | 89 | #pragma multi_compile __ UNITY_UI_CLIP_RECT 90 | #pragma multi_compile __ UNITY_UI_ALPHACLIP 91 | 92 | #include "UnityCG.cginc" 93 | #include "UnityUI.cginc" 94 | #include "TMPro_Properties.cginc" 95 | 96 | struct vertex_t { 97 | UNITY_VERTEX_INPUT_INSTANCE_ID 98 | float4 vertex : POSITION; 99 | float3 normal : NORMAL; 100 | fixed4 color : COLOR; 101 | float2 texcoord0 : TEXCOORD0; 102 | float2 texcoord1 : TEXCOORD1; 103 | }; 104 | 105 | struct pixel_t { 106 | UNITY_VERTEX_INPUT_INSTANCE_ID 107 | UNITY_VERTEX_OUTPUT_STEREO 108 | float4 vertex : SV_POSITION; 109 | fixed4 faceColor : COLOR; 110 | fixed4 outlineColor : COLOR1; 111 | float4 texcoord0 : TEXCOORD0; // Texture UV, Mask UV 112 | half4 param : TEXCOORD1; // Scale(x), BiasIn(y), BiasOut(z), Bias(w) 113 | half4 mask : TEXCOORD2; // Position in clip space(xy), Softness(zw) 114 | #if (UNDERLAY_ON | UNDERLAY_INNER) 115 | float4 texcoord1 : TEXCOORD3; // Texture UV, alpha, reserved 116 | half2 underlayParam : TEXCOORD4; // Scale(x), Bias(y) 117 | #endif 118 | }; 119 | 120 | 121 | pixel_t VertShader(vertex_t input) 122 | { 123 | pixel_t output; 124 | 125 | UNITY_INITIALIZE_OUTPUT(pixel_t, output); 126 | UNITY_SETUP_INSTANCE_ID(input); 127 | UNITY_TRANSFER_INSTANCE_ID(input, output); 128 | UNITY_INITIALIZE_VERTEX_OUTPUT_STEREO(output); 129 | 130 | float bold = step(input.texcoord1.y, 0); 131 | 132 | float4 vert = input.vertex; 133 | vert.x += _VertexOffsetX; 134 | vert.y += _VertexOffsetY; 135 | float4 vPosition = UnityObjectToClipPos(vert); 136 | 137 | float2 pixelSize = vPosition.w; 138 | pixelSize /= float2(_ScaleX, _ScaleY) * abs(mul((float2x2)UNITY_MATRIX_P, _ScreenParams.xy)); 139 | 140 | float scale = rsqrt(dot(pixelSize, pixelSize)); 141 | scale *= abs(input.texcoord1.y) * _GradientScale * (_Sharpness + 1); 142 | if(UNITY_MATRIX_P[3][3] == 0) scale = lerp(abs(scale) * (1 - _PerspectiveFilter), scale, abs(dot(UnityObjectToWorldNormal(input.normal.xyz), normalize(WorldSpaceViewDir(vert))))); 143 | 144 | float weight = lerp(_WeightNormal, _WeightBold, bold) / 4.0; 145 | weight = (weight + _FaceDilate) * _ScaleRatioA * 0.5; 146 | 147 | float layerScale = scale; 148 | 149 | scale /= 1 + (_OutlineSoftness * _ScaleRatioA * scale); 150 | float bias = (0.5 - weight) * scale - 0.5; 151 | float outline = _OutlineWidth * _ScaleRatioA * 0.5 * scale; 152 | 153 | float opacity = input.color.a; 154 | #if (UNDERLAY_ON | UNDERLAY_INNER) 155 | opacity = 1.0; 156 | #endif 157 | 158 | fixed4 faceColor = fixed4(input.color.rgb, opacity) * _FaceColor; 159 | faceColor.rgb *= faceColor.a; 160 | 161 | fixed4 outlineColor = _OutlineColor; 162 | outlineColor.a *= opacity; 163 | outlineColor.rgb *= outlineColor.a; 164 | outlineColor = lerp(faceColor, outlineColor, sqrt(min(1.0, (outline * 2)))); 165 | 166 | #if (UNDERLAY_ON | UNDERLAY_INNER) 167 | layerScale /= 1 + ((_UnderlaySoftness * _ScaleRatioC) * layerScale); 168 | float layerBias = (.5 - weight) * layerScale - .5 - ((_UnderlayDilate * _ScaleRatioC) * .5 * layerScale); 169 | 170 | float x = -(_UnderlayOffsetX * _ScaleRatioC) * _GradientScale / _TextureWidth; 171 | float y = -(_UnderlayOffsetY * _ScaleRatioC) * _GradientScale / _TextureHeight; 172 | float2 layerOffset = float2(x, y); 173 | #endif 174 | 175 | // Generate UV for the Masking Texture 176 | float4 clampedRect = clamp(_ClipRect, -2e10, 2e10); 177 | float2 maskUV = (vert.xy - clampedRect.xy) / (clampedRect.zw - clampedRect.xy); 178 | 179 | // Populate structure for pixel shader 180 | output.vertex = vPosition; 181 | output.faceColor = faceColor; 182 | output.outlineColor = outlineColor; 183 | output.texcoord0 = float4(input.texcoord0.x, input.texcoord0.y, maskUV.x, maskUV.y); 184 | output.param = half4(scale, bias - outline, bias + outline, bias); 185 | output.mask = half4(vert.xy * 2 - clampedRect.xy - clampedRect.zw, 0.25 / (0.25 * half2(_MaskSoftnessX, _MaskSoftnessY) + pixelSize.xy)); 186 | #if (UNDERLAY_ON || UNDERLAY_INNER) 187 | output.texcoord1 = float4(input.texcoord0 + layerOffset, input.color.a, 0); 188 | output.underlayParam = half2(layerScale, layerBias); 189 | #endif 190 | 191 | return output; 192 | } 193 | 194 | 195 | // PIXEL SHADER 196 | fixed4 PixShader(pixel_t input) : SV_Target 197 | { 198 | UNITY_SETUP_INSTANCE_ID(input); 199 | 200 | half d = tex2D(_MainTex, input.texcoord0.xy).a * input.param.x; 201 | half4 c = input.faceColor * saturate(d - input.param.w); 202 | 203 | #ifdef OUTLINE_ON 204 | c = lerp(input.outlineColor, input.faceColor, saturate(d - input.param.z)); 205 | c *= saturate(d - input.param.y); 206 | #endif 207 | 208 | #if UNDERLAY_ON 209 | d = tex2D(_MainTex, input.texcoord1.xy).a * input.underlayParam.x; 210 | c += float4(_UnderlayColor.rgb * _UnderlayColor.a, _UnderlayColor.a) * saturate(d - input.underlayParam.y) * (1 - c.a); 211 | #endif 212 | 213 | #if UNDERLAY_INNER 214 | half sd = saturate(d - input.param.z); 215 | d = tex2D(_MainTex, input.texcoord1.xy).a * input.underlayParam.x; 216 | c += float4(_UnderlayColor.rgb * _UnderlayColor.a, _UnderlayColor.a) * (1 - saturate(d - input.underlayParam.y)) * sd * (1 - c.a); 217 | #endif 218 | 219 | // Alternative implementation to UnityGet2DClipping with support for softness. 220 | #if UNITY_UI_CLIP_RECT 221 | half2 m = saturate((_ClipRect.zw - _ClipRect.xy - abs(input.mask.xy)) * input.mask.zw); 222 | c *= m.x * m.y; 223 | #endif 224 | 225 | #if (UNDERLAY_ON | UNDERLAY_INNER) 226 | c *= input.texcoord1.z; 227 | #endif 228 | 229 | #if UNITY_UI_ALPHACLIP 230 | clip(c.a - 0.001); 231 | #endif 232 | 233 | return c; 234 | } 235 | ENDCG 236 | } 237 | } 238 | 239 | CustomEditor "TMPro.EditorUtilities.TMP_SDFShaderGUI" 240 | } 241 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_SDF-Mobile Overlay.shader.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: a02a7d8c237544f1962732b55a9aebf1 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_SDF-Mobile SSD.shader: -------------------------------------------------------------------------------- 1 | // Simplified SDF shader: 2 | // - No Shading Option (bevel / bump / env map) 3 | // - No Glow Option 4 | // - Softness is applied on both side of the outline 5 | 6 | Shader "TextMeshPro/Mobile/Distance Field SSD" { 7 | 8 | Properties { 9 | [HDR]_FaceColor ("Face Color", Color) = (1,1,1,1) 10 | _FaceDilate ("Face Dilate", Range(-1,1)) = 0 11 | 12 | [HDR]_OutlineColor ("Outline Color", Color) = (0,0,0,1) 13 | _OutlineWidth ("Outline Thickness", Range(0,1)) = 0 14 | _OutlineSoftness ("Outline Softness", Range(0,1)) = 0 15 | 16 | [HDR]_UnderlayColor ("Border Color", Color) = (0,0,0,.5) 17 | _UnderlayOffsetX ("Border OffsetX", Range(-1,1)) = 0 18 | _UnderlayOffsetY ("Border OffsetY", Range(-1,1)) = 0 19 | _UnderlayDilate ("Border Dilate", Range(-1,1)) = 0 20 | _UnderlaySoftness ("Border Softness", Range(0,1)) = 0 21 | 22 | _WeightNormal ("Weight Normal", float) = 0 23 | _WeightBold ("Weight Bold", float) = .5 24 | 25 | _ShaderFlags ("Flags", float) = 0 26 | _ScaleRatioA ("Scale RatioA", float) = 1 27 | _ScaleRatioB ("Scale RatioB", float) = 1 28 | _ScaleRatioC ("Scale RatioC", float) = 1 29 | 30 | _MainTex ("Font Atlas", 2D) = "white" {} 31 | _TextureWidth ("Texture Width", float) = 512 32 | _TextureHeight ("Texture Height", float) = 512 33 | _GradientScale ("Gradient Scale", float) = 5 34 | _ScaleX ("Scale X", float) = 1 35 | _ScaleY ("Scale Y", float) = 1 36 | _PerspectiveFilter ("Perspective Correction", Range(0, 1)) = 0.875 37 | _Sharpness ("Sharpness", Range(-1,1)) = 0 38 | 39 | _VertexOffsetX ("Vertex OffsetX", float) = 0 40 | _VertexOffsetY ("Vertex OffsetY", float) = 0 41 | 42 | _ClipRect ("Clip Rect", vector) = (-32767, -32767, 32767, 32767) 43 | _MaskSoftnessX ("Mask SoftnessX", float) = 0 44 | _MaskSoftnessY ("Mask SoftnessY", float) = 0 45 | _MaskTex ("Mask Texture", 2D) = "white" {} 46 | _MaskInverse ("Inverse", float) = 0 47 | _MaskEdgeColor ("Edge Color", Color) = (1,1,1,1) 48 | _MaskEdgeSoftness ("Edge Softness", Range(0, 1)) = 0.01 49 | _MaskWipeControl ("Wipe Position", Range(0, 1)) = 0.5 50 | 51 | _StencilComp ("Stencil Comparison", Float) = 8 52 | _Stencil ("Stencil ID", Float) = 0 53 | _StencilOp ("Stencil Operation", Float) = 0 54 | _StencilWriteMask ("Stencil Write Mask", Float) = 255 55 | _StencilReadMask ("Stencil Read Mask", Float) = 255 56 | 57 | _CullMode ("Cull Mode", Float) = 0 58 | _ColorMask ("Color Mask", Float) = 15 59 | } 60 | 61 | SubShader { 62 | Tags { 63 | "Queue"="Transparent" 64 | "IgnoreProjector"="True" 65 | "RenderType"="Transparent" 66 | } 67 | 68 | Stencil 69 | { 70 | Ref [_Stencil] 71 | Comp [_StencilComp] 72 | Pass [_StencilOp] 73 | ReadMask [_StencilReadMask] 74 | WriteMask [_StencilWriteMask] 75 | } 76 | 77 | Cull [_CullMode] 78 | ZWrite Off 79 | Lighting Off 80 | Fog { Mode Off } 81 | ZTest [unity_GUIZTestMode] 82 | Blend One OneMinusSrcAlpha 83 | ColorMask [_ColorMask] 84 | 85 | Pass { 86 | CGPROGRAM 87 | #pragma vertex VertShader 88 | #pragma fragment PixShader 89 | #pragma shader_feature __ OUTLINE_ON 90 | #pragma shader_feature __ UNDERLAY_ON UNDERLAY_INNER 91 | 92 | #pragma multi_compile __ UNITY_UI_CLIP_RECT 93 | #pragma multi_compile __ UNITY_UI_ALPHACLIP 94 | 95 | #include "UnityCG.cginc" 96 | #include "UnityUI.cginc" 97 | #include "TMPro_Properties.cginc" 98 | 99 | #include "TMPro_Mobile.cginc" 100 | 101 | ENDCG 102 | } 103 | } 104 | 105 | CustomEditor "TMPro.EditorUtilities.TMP_SDFShaderGUI" 106 | } 107 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_SDF-Mobile SSD.shader.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: c8d12adcee749c344b8117cf7c7eb912 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_SDF-Mobile.shader: -------------------------------------------------------------------------------- 1 | // Simplified SDF shader: 2 | // - No Shading Option (bevel / bump / env map) 3 | // - No Glow Option 4 | // - Softness is applied on both side of the outline 5 | 6 | Shader "TextMeshPro/Mobile/Distance Field" { 7 | 8 | Properties { 9 | [HDR]_FaceColor ("Face Color", Color) = (1,1,1,1) 10 | _FaceDilate ("Face Dilate", Range(-1,1)) = 0 11 | 12 | [HDR]_OutlineColor ("Outline Color", Color) = (0,0,0,1) 13 | _OutlineWidth ("Outline Thickness", Range(0,1)) = 0 14 | _OutlineSoftness ("Outline Softness", Range(0,1)) = 0 15 | 16 | [HDR]_UnderlayColor ("Border Color", Color) = (0,0,0,.5) 17 | _UnderlayOffsetX ("Border OffsetX", Range(-1,1)) = 0 18 | _UnderlayOffsetY ("Border OffsetY", Range(-1,1)) = 0 19 | _UnderlayDilate ("Border Dilate", Range(-1,1)) = 0 20 | _UnderlaySoftness ("Border Softness", Range(0,1)) = 0 21 | 22 | _WeightNormal ("Weight Normal", float) = 0 23 | _WeightBold ("Weight Bold", float) = .5 24 | 25 | _ShaderFlags ("Flags", float) = 0 26 | _ScaleRatioA ("Scale RatioA", float) = 1 27 | _ScaleRatioB ("Scale RatioB", float) = 1 28 | _ScaleRatioC ("Scale RatioC", float) = 1 29 | 30 | _MainTex ("Font Atlas", 2D) = "white" {} 31 | _TextureWidth ("Texture Width", float) = 512 32 | _TextureHeight ("Texture Height", float) = 512 33 | _GradientScale ("Gradient Scale", float) = 5 34 | _ScaleX ("Scale X", float) = 1 35 | _ScaleY ("Scale Y", float) = 1 36 | _PerspectiveFilter ("Perspective Correction", Range(0, 1)) = 0.875 37 | _Sharpness ("Sharpness", Range(-1,1)) = 0 38 | 39 | _VertexOffsetX ("Vertex OffsetX", float) = 0 40 | _VertexOffsetY ("Vertex OffsetY", float) = 0 41 | 42 | _ClipRect ("Clip Rect", vector) = (-32767, -32767, 32767, 32767) 43 | _MaskSoftnessX ("Mask SoftnessX", float) = 0 44 | _MaskSoftnessY ("Mask SoftnessY", float) = 0 45 | 46 | _StencilComp ("Stencil Comparison", Float) = 8 47 | _Stencil ("Stencil ID", Float) = 0 48 | _StencilOp ("Stencil Operation", Float) = 0 49 | _StencilWriteMask ("Stencil Write Mask", Float) = 255 50 | _StencilReadMask ("Stencil Read Mask", Float) = 255 51 | 52 | _CullMode ("Cull Mode", Float) = 0 53 | _ColorMask ("Color Mask", Float) = 15 54 | } 55 | 56 | SubShader { 57 | Tags 58 | { 59 | "Queue"="Transparent" 60 | "IgnoreProjector"="True" 61 | "RenderType"="Transparent" 62 | } 63 | 64 | 65 | Stencil 66 | { 67 | Ref [_Stencil] 68 | Comp [_StencilComp] 69 | Pass [_StencilOp] 70 | ReadMask [_StencilReadMask] 71 | WriteMask [_StencilWriteMask] 72 | } 73 | 74 | Cull [_CullMode] 75 | ZWrite Off 76 | Lighting Off 77 | Fog { Mode Off } 78 | ZTest [unity_GUIZTestMode] 79 | Blend One OneMinusSrcAlpha 80 | ColorMask [_ColorMask] 81 | 82 | Pass { 83 | CGPROGRAM 84 | #pragma vertex VertShader 85 | #pragma fragment PixShader 86 | #pragma shader_feature __ OUTLINE_ON 87 | #pragma shader_feature __ UNDERLAY_ON UNDERLAY_INNER 88 | 89 | #pragma multi_compile __ UNITY_UI_CLIP_RECT 90 | #pragma multi_compile __ UNITY_UI_ALPHACLIP 91 | 92 | #include "UnityCG.cginc" 93 | #include "UnityUI.cginc" 94 | #include "TMPro_Properties.cginc" 95 | 96 | struct vertex_t { 97 | UNITY_VERTEX_INPUT_INSTANCE_ID 98 | float4 vertex : POSITION; 99 | float3 normal : NORMAL; 100 | fixed4 color : COLOR; 101 | float2 texcoord0 : TEXCOORD0; 102 | float2 texcoord1 : TEXCOORD1; 103 | }; 104 | 105 | struct pixel_t { 106 | UNITY_VERTEX_INPUT_INSTANCE_ID 107 | UNITY_VERTEX_OUTPUT_STEREO 108 | float4 vertex : SV_POSITION; 109 | fixed4 faceColor : COLOR; 110 | fixed4 outlineColor : COLOR1; 111 | float4 texcoord0 : TEXCOORD0; // Texture UV, Mask UV 112 | half4 param : TEXCOORD1; // Scale(x), BiasIn(y), BiasOut(z), Bias(w) 113 | half4 mask : TEXCOORD2; // Position in clip space(xy), Softness(zw) 114 | #if (UNDERLAY_ON | UNDERLAY_INNER) 115 | float4 texcoord1 : TEXCOORD3; // Texture UV, alpha, reserved 116 | half2 underlayParam : TEXCOORD4; // Scale(x), Bias(y) 117 | #endif 118 | }; 119 | 120 | 121 | pixel_t VertShader(vertex_t input) 122 | { 123 | pixel_t output; 124 | 125 | UNITY_INITIALIZE_OUTPUT(pixel_t, output); 126 | UNITY_SETUP_INSTANCE_ID(input); 127 | UNITY_TRANSFER_INSTANCE_ID(input, output); 128 | UNITY_INITIALIZE_VERTEX_OUTPUT_STEREO(output); 129 | 130 | float bold = step(input.texcoord1.y, 0); 131 | 132 | float4 vert = input.vertex; 133 | vert.x += _VertexOffsetX; 134 | vert.y += _VertexOffsetY; 135 | float4 vPosition = UnityObjectToClipPos(vert); 136 | 137 | float2 pixelSize = vPosition.w; 138 | pixelSize /= float2(_ScaleX, _ScaleY) * abs(mul((float2x2)UNITY_MATRIX_P, _ScreenParams.xy)); 139 | 140 | float scale = rsqrt(dot(pixelSize, pixelSize)); 141 | scale *= abs(input.texcoord1.y) * _GradientScale * (_Sharpness + 1); 142 | if(UNITY_MATRIX_P[3][3] == 0) scale = lerp(abs(scale) * (1 - _PerspectiveFilter), scale, abs(dot(UnityObjectToWorldNormal(input.normal.xyz), normalize(WorldSpaceViewDir(vert))))); 143 | 144 | float weight = lerp(_WeightNormal, _WeightBold, bold) / 4.0; 145 | weight = (weight + _FaceDilate) * _ScaleRatioA * 0.5; 146 | 147 | float layerScale = scale; 148 | 149 | scale /= 1 + (_OutlineSoftness * _ScaleRatioA * scale); 150 | float bias = (0.5 - weight) * scale - 0.5; 151 | float outline = _OutlineWidth * _ScaleRatioA * 0.5 * scale; 152 | 153 | float opacity = input.color.a; 154 | #if (UNDERLAY_ON | UNDERLAY_INNER) 155 | opacity = 1.0; 156 | #endif 157 | 158 | fixed4 faceColor = fixed4(input.color.rgb, opacity) * _FaceColor; 159 | faceColor.rgb *= faceColor.a; 160 | 161 | fixed4 outlineColor = _OutlineColor; 162 | outlineColor.a *= opacity; 163 | outlineColor.rgb *= outlineColor.a; 164 | outlineColor = lerp(faceColor, outlineColor, sqrt(min(1.0, (outline * 2)))); 165 | 166 | #if (UNDERLAY_ON | UNDERLAY_INNER) 167 | layerScale /= 1 + ((_UnderlaySoftness * _ScaleRatioC) * layerScale); 168 | float layerBias = (.5 - weight) * layerScale - .5 - ((_UnderlayDilate * _ScaleRatioC) * .5 * layerScale); 169 | 170 | float x = -(_UnderlayOffsetX * _ScaleRatioC) * _GradientScale / _TextureWidth; 171 | float y = -(_UnderlayOffsetY * _ScaleRatioC) * _GradientScale / _TextureHeight; 172 | float2 layerOffset = float2(x, y); 173 | #endif 174 | 175 | // Generate UV for the Masking Texture 176 | float4 clampedRect = clamp(_ClipRect, -2e10, 2e10); 177 | float2 maskUV = (vert.xy - clampedRect.xy) / (clampedRect.zw - clampedRect.xy); 178 | 179 | // Populate structure for pixel shader 180 | output.vertex = vPosition; 181 | output.faceColor = faceColor; 182 | output.outlineColor = outlineColor; 183 | output.texcoord0 = float4(input.texcoord0.x, input.texcoord0.y, maskUV.x, maskUV.y); 184 | output.param = half4(scale, bias - outline, bias + outline, bias); 185 | output.mask = half4(vert.xy * 2 - clampedRect.xy - clampedRect.zw, 0.25 / (0.25 * half2(_MaskSoftnessX, _MaskSoftnessY) + pixelSize.xy)); 186 | #if (UNDERLAY_ON || UNDERLAY_INNER) 187 | output.texcoord1 = float4(input.texcoord0 + layerOffset, input.color.a, 0); 188 | output.underlayParam = half2(layerScale, layerBias); 189 | #endif 190 | 191 | return output; 192 | } 193 | 194 | 195 | // PIXEL SHADER 196 | fixed4 PixShader(pixel_t input) : SV_Target 197 | { 198 | UNITY_SETUP_INSTANCE_ID(input); 199 | 200 | half d = tex2D(_MainTex, input.texcoord0.xy).a * input.param.x; 201 | half4 c = input.faceColor * saturate(d - input.param.w); 202 | 203 | #ifdef OUTLINE_ON 204 | c = lerp(input.outlineColor, input.faceColor, saturate(d - input.param.z)); 205 | c *= saturate(d - input.param.y); 206 | #endif 207 | 208 | #if UNDERLAY_ON 209 | d = tex2D(_MainTex, input.texcoord1.xy).a * input.underlayParam.x; 210 | c += float4(_UnderlayColor.rgb * _UnderlayColor.a, _UnderlayColor.a) * saturate(d - input.underlayParam.y) * (1 - c.a); 211 | #endif 212 | 213 | #if UNDERLAY_INNER 214 | half sd = saturate(d - input.param.z); 215 | d = tex2D(_MainTex, input.texcoord1.xy).a * input.underlayParam.x; 216 | c += float4(_UnderlayColor.rgb * _UnderlayColor.a, _UnderlayColor.a) * (1 - saturate(d - input.underlayParam.y)) * sd * (1 - c.a); 217 | #endif 218 | 219 | // Alternative implementation to UnityGet2DClipping with support for softness. 220 | #if UNITY_UI_CLIP_RECT 221 | half2 m = saturate((_ClipRect.zw - _ClipRect.xy - abs(input.mask.xy)) * input.mask.zw); 222 | c *= m.x * m.y; 223 | #endif 224 | 225 | #if (UNDERLAY_ON | UNDERLAY_INNER) 226 | c *= input.texcoord1.z; 227 | #endif 228 | 229 | #if UNITY_UI_ALPHACLIP 230 | clip(c.a - 0.001); 231 | #endif 232 | 233 | return c; 234 | } 235 | ENDCG 236 | } 237 | } 238 | 239 | CustomEditor "TMPro.EditorUtilities.TMP_SDFShaderGUI" 240 | } 241 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_SDF-Mobile.shader.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: fe393ace9b354375a9cb14cdbbc28be4 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_SDF-Surface-Mobile.shader: -------------------------------------------------------------------------------- 1 | // Simplified version of the SDF Surface shader : 2 | // - No support for Bevel, Bump or envmap 3 | // - Diffuse only lighting 4 | // - Fully supports only 1 directional light. Other lights can affect it, but it will be per-vertex/SH. 5 | 6 | Shader "TextMeshPro/Mobile/Distance Field (Surface)" { 7 | 8 | Properties { 9 | _FaceTex ("Fill Texture", 2D) = "white" {} 10 | [HDR]_FaceColor ("Fill Color", Color) = (1,1,1,1) 11 | _FaceDilate ("Face Dilate", Range(-1,1)) = 0 12 | 13 | [HDR]_OutlineColor ("Outline Color", Color) = (0,0,0,1) 14 | _OutlineTex ("Outline Texture", 2D) = "white" {} 15 | _OutlineWidth ("Outline Thickness", Range(0, 1)) = 0 16 | _OutlineSoftness ("Outline Softness", Range(0,1)) = 0 17 | 18 | [HDR]_GlowColor ("Color", Color) = (0, 1, 0, 0.5) 19 | _GlowOffset ("Offset", Range(-1,1)) = 0 20 | _GlowInner ("Inner", Range(0,1)) = 0.05 21 | _GlowOuter ("Outer", Range(0,1)) = 0.05 22 | _GlowPower ("Falloff", Range(1, 0)) = 0.75 23 | 24 | _WeightNormal ("Weight Normal", float) = 0 25 | _WeightBold ("Weight Bold", float) = 0.5 26 | 27 | // Should not be directly exposed to the user 28 | _ShaderFlags ("Flags", float) = 0 29 | _ScaleRatioA ("Scale RatioA", float) = 1 30 | _ScaleRatioB ("Scale RatioB", float) = 1 31 | _ScaleRatioC ("Scale RatioC", float) = 1 32 | 33 | _MainTex ("Font Atlas", 2D) = "white" {} 34 | _TextureWidth ("Texture Width", float) = 512 35 | _TextureHeight ("Texture Height", float) = 512 36 | _GradientScale ("Gradient Scale", float) = 5.0 37 | _ScaleX ("Scale X", float) = 1.0 38 | _ScaleY ("Scale Y", float) = 1.0 39 | _PerspectiveFilter ("Perspective Correction", Range(0, 1)) = 0.875 40 | _Sharpness ("Sharpness", Range(-1,1)) = 0 41 | 42 | _VertexOffsetX ("Vertex OffsetX", float) = 0 43 | _VertexOffsetY ("Vertex OffsetY", float) = 0 44 | 45 | _CullMode ("Cull Mode", Float) = 0 46 | //_MaskCoord ("Mask Coords", vector) = (0,0,0,0) 47 | //_MaskSoftness ("Mask Softness", float) = 0 48 | } 49 | 50 | SubShader { 51 | 52 | Tags { 53 | "Queue"="Transparent" 54 | "IgnoreProjector"="True" 55 | "RenderType"="Transparent" 56 | } 57 | 58 | LOD 300 59 | Cull [_CullMode] 60 | 61 | CGPROGRAM 62 | #pragma surface PixShader Lambert alpha:blend vertex:VertShader noforwardadd nolightmap nodirlightmap 63 | #pragma target 3.0 64 | #pragma shader_feature __ GLOW_ON 65 | 66 | #include "TMPro_Properties.cginc" 67 | #include "TMPro.cginc" 68 | 69 | half _FaceShininess; 70 | half _OutlineShininess; 71 | 72 | struct Input 73 | { 74 | fixed4 color : COLOR; 75 | float2 uv_MainTex; 76 | float2 uv2_FaceTex; 77 | float2 uv2_OutlineTex; 78 | float2 param; // Weight, Scale 79 | float3 viewDirEnv; 80 | }; 81 | 82 | #include "TMPro_Surface.cginc" 83 | 84 | ENDCG 85 | 86 | // Pass to render object as a shadow caster 87 | Pass 88 | { 89 | Name "Caster" 90 | Tags { "LightMode" = "ShadowCaster" } 91 | Offset 1, 1 92 | 93 | Fog {Mode Off} 94 | ZWrite On ZTest LEqual Cull Off 95 | 96 | CGPROGRAM 97 | #pragma vertex vert 98 | #pragma fragment frag 99 | #pragma multi_compile_shadowcaster 100 | #include "UnityCG.cginc" 101 | 102 | struct v2f { 103 | V2F_SHADOW_CASTER; 104 | float2 uv : TEXCOORD1; 105 | float2 uv2 : TEXCOORD3; 106 | float alphaClip : TEXCOORD2; 107 | }; 108 | 109 | uniform float4 _MainTex_ST; 110 | uniform float4 _OutlineTex_ST; 111 | float _OutlineWidth; 112 | float _FaceDilate; 113 | float _ScaleRatioA; 114 | 115 | v2f vert( appdata_base v ) 116 | { 117 | v2f o; 118 | TRANSFER_SHADOW_CASTER(o) 119 | o.uv = TRANSFORM_TEX(v.texcoord, _MainTex); 120 | o.uv2 = TRANSFORM_TEX(v.texcoord, _OutlineTex); 121 | o.alphaClip = o.alphaClip = (1.0 - _OutlineWidth * _ScaleRatioA - _FaceDilate * _ScaleRatioA) / 2; 122 | return o; 123 | } 124 | 125 | uniform sampler2D _MainTex; 126 | 127 | float4 frag(v2f i) : COLOR 128 | { 129 | fixed4 texcol = tex2D(_MainTex, i.uv).a; 130 | clip(texcol.a - i.alphaClip); 131 | SHADOW_CASTER_FRAGMENT(i) 132 | } 133 | ENDCG 134 | } 135 | } 136 | 137 | CustomEditor "TMPro.EditorUtilities.TMP_SDFShaderGUI" 138 | } 139 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_SDF-Surface-Mobile.shader.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 85187c2149c549c5b33f0cdb02836b17 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_SDF-Surface.shader: -------------------------------------------------------------------------------- 1 | Shader "TextMeshPro/Distance Field (Surface)" { 2 | 3 | Properties { 4 | _FaceTex ("Fill Texture", 2D) = "white" {} 5 | _FaceUVSpeedX ("Face UV Speed X", Range(-5, 5)) = 0.0 6 | _FaceUVSpeedY ("Face UV Speed Y", Range(-5, 5)) = 0.0 7 | [HDR]_FaceColor ("Fill Color", Color) = (1,1,1,1) 8 | _FaceDilate ("Face Dilate", Range(-1,1)) = 0 9 | 10 | [HDR]_OutlineColor ("Outline Color", Color) = (0,0,0,1) 11 | _OutlineTex ("Outline Texture", 2D) = "white" {} 12 | _OutlineUVSpeedX ("Outline UV Speed X", Range(-5, 5)) = 0.0 13 | _OutlineUVSpeedY ("Outline UV Speed Y", Range(-5, 5)) = 0.0 14 | _OutlineWidth ("Outline Thickness", Range(0, 1)) = 0 15 | _OutlineSoftness ("Outline Softness", Range(0,1)) = 0 16 | 17 | _Bevel ("Bevel", Range(0,1)) = 0.5 18 | _BevelOffset ("Bevel Offset", Range(-0.5,0.5)) = 0 19 | _BevelWidth ("Bevel Width", Range(-.5,0.5)) = 0 20 | _BevelClamp ("Bevel Clamp", Range(0,1)) = 0 21 | _BevelRoundness ("Bevel Roundness", Range(0,1)) = 0 22 | 23 | _BumpMap ("Normalmap", 2D) = "bump" {} 24 | _BumpOutline ("Bump Outline", Range(0,1)) = 0.5 25 | _BumpFace ("Bump Face", Range(0,1)) = 0.5 26 | 27 | _ReflectFaceColor ("Face Color", Color) = (0,0,0,1) 28 | _ReflectOutlineColor ("Outline Color", Color) = (0,0,0,1) 29 | _Cube ("Reflection Cubemap", Cube) = "black" { /* TexGen CubeReflect */ } 30 | _EnvMatrixRotation ("Texture Rotation", vector) = (0, 0, 0, 0) 31 | [HDR]_SpecColor ("Specular Color", Color) = (0,0,0,1) 32 | 33 | _FaceShininess ("Face Shininess", Range(0,1)) = 0 34 | _OutlineShininess ("Outline Shininess", Range(0,1)) = 0 35 | 36 | [HDR]_GlowColor ("Color", Color) = (0, 1, 0, 0.5) 37 | _GlowOffset ("Offset", Range(-1,1)) = 0 38 | _GlowInner ("Inner", Range(0,1)) = 0.05 39 | _GlowOuter ("Outer", Range(0,1)) = 0.05 40 | _GlowPower ("Falloff", Range(1, 0)) = 0.75 41 | 42 | _WeightNormal ("Weight Normal", float) = 0 43 | _WeightBold ("Weight Bold", float) = 0.5 44 | 45 | // Should not be directly exposed to the user 46 | _ShaderFlags ("Flags", float) = 0 47 | _ScaleRatioA ("Scale RatioA", float) = 1 48 | _ScaleRatioB ("Scale RatioB", float) = 1 49 | _ScaleRatioC ("Scale RatioC", float) = 1 50 | 51 | _MainTex ("Font Atlas", 2D) = "white" {} 52 | _TextureWidth ("Texture Width", float) = 512 53 | _TextureHeight ("Texture Height", float) = 512 54 | _GradientScale ("Gradient Scale", float) = 5.0 55 | _ScaleX ("Scale X", float) = 1.0 56 | _ScaleY ("Scale Y", float) = 1.0 57 | _PerspectiveFilter ("Perspective Correction", Range(0, 1)) = 0.875 58 | _Sharpness ("Sharpness", Range(-1,1)) = 0 59 | 60 | _VertexOffsetX ("Vertex OffsetX", float) = 0 61 | _VertexOffsetY ("Vertex OffsetY", float) = 0 62 | 63 | _CullMode ("Cull Mode", Float) = 0 64 | //_MaskCoord ("Mask Coords", vector) = (0,0,0,0) 65 | //_MaskSoftness ("Mask Softness", float) = 0 66 | } 67 | 68 | SubShader { 69 | 70 | Tags { "Queue"="Transparent" "IgnoreProjector"="True" "RenderType"="Transparent" } 71 | 72 | LOD 300 73 | Cull [_CullMode] 74 | 75 | CGPROGRAM 76 | #pragma surface PixShader BlinnPhong alpha:blend vertex:VertShader nolightmap nodirlightmap 77 | #pragma target 3.0 78 | #pragma shader_feature __ GLOW_ON 79 | #pragma glsl 80 | 81 | #include "TMPro_Properties.cginc" 82 | #include "TMPro.cginc" 83 | 84 | half _FaceShininess; 85 | half _OutlineShininess; 86 | 87 | struct Input 88 | { 89 | fixed4 color : COLOR; 90 | float2 uv_MainTex; 91 | float2 uv2_FaceTex; 92 | float2 uv2_OutlineTex; 93 | float2 param; // Weight, Scale 94 | float3 viewDirEnv; 95 | }; 96 | 97 | 98 | #define BEVEL_ON 1 99 | #include "TMPro_Surface.cginc" 100 | 101 | ENDCG 102 | 103 | // Pass to render object as a shadow caster 104 | Pass 105 | { 106 | Name "Caster" 107 | Tags { "LightMode" = "ShadowCaster" } 108 | Offset 1, 1 109 | 110 | Fog {Mode Off} 111 | ZWrite On 112 | ZTest LEqual 113 | Cull Off 114 | 115 | CGPROGRAM 116 | #pragma vertex vert 117 | #pragma fragment frag 118 | #pragma multi_compile_shadowcaster 119 | #include "UnityCG.cginc" 120 | 121 | struct v2f { 122 | V2F_SHADOW_CASTER; 123 | float2 uv : TEXCOORD1; 124 | float2 uv2 : TEXCOORD3; 125 | float alphaClip : TEXCOORD2; 126 | }; 127 | 128 | uniform float4 _MainTex_ST; 129 | uniform float4 _OutlineTex_ST; 130 | float _OutlineWidth; 131 | float _FaceDilate; 132 | float _ScaleRatioA; 133 | 134 | v2f vert( appdata_base v ) 135 | { 136 | v2f o; 137 | TRANSFER_SHADOW_CASTER(o) 138 | o.uv = TRANSFORM_TEX(v.texcoord, _MainTex); 139 | o.uv2 = TRANSFORM_TEX(v.texcoord, _OutlineTex); 140 | o.alphaClip = (1.0 - _OutlineWidth * _ScaleRatioA - _FaceDilate * _ScaleRatioA) / 2; 141 | return o; 142 | } 143 | 144 | uniform sampler2D _MainTex; 145 | 146 | float4 frag(v2f i) : COLOR 147 | { 148 | fixed4 texcol = tex2D(_MainTex, i.uv).a; 149 | clip(texcol.a - i.alphaClip); 150 | SHADOW_CASTER_FRAGMENT(i) 151 | } 152 | ENDCG 153 | } 154 | } 155 | 156 | CustomEditor "TMPro.EditorUtilities.TMP_SDFShaderGUI" 157 | } 158 | 159 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_SDF-Surface.shader.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: f7ada0af4f174f0694ca6a487b8f543d 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_SDF.shader.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 68e6db2ebdc24f95958faec2be5558d6 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_Sprite.shader: -------------------------------------------------------------------------------- 1 | Shader "TextMeshPro/Sprite" 2 | { 3 | Properties 4 | { 5 | [PerRendererData] _MainTex ("Sprite Texture", 2D) = "white" {} 6 | _Color ("Tint", Color) = (1,1,1,1) 7 | 8 | _StencilComp ("Stencil Comparison", Float) = 8 9 | _Stencil ("Stencil ID", Float) = 0 10 | _StencilOp ("Stencil Operation", Float) = 0 11 | _StencilWriteMask ("Stencil Write Mask", Float) = 255 12 | _StencilReadMask ("Stencil Read Mask", Float) = 255 13 | 14 | _CullMode ("Cull Mode", Float) = 0 15 | _ColorMask ("Color Mask", Float) = 15 16 | _ClipRect ("Clip Rect", vector) = (-32767, -32767, 32767, 32767) 17 | 18 | [Toggle(UNITY_UI_ALPHACLIP)] _UseUIAlphaClip ("Use Alpha Clip", Float) = 0 19 | } 20 | 21 | SubShader 22 | { 23 | Tags 24 | { 25 | "Queue"="Transparent" 26 | "IgnoreProjector"="True" 27 | "RenderType"="Transparent" 28 | "PreviewType"="Plane" 29 | "CanUseSpriteAtlas"="True" 30 | } 31 | 32 | Stencil 33 | { 34 | Ref [_Stencil] 35 | Comp [_StencilComp] 36 | Pass [_StencilOp] 37 | ReadMask [_StencilReadMask] 38 | WriteMask [_StencilWriteMask] 39 | } 40 | 41 | Cull [_CullMode] 42 | Lighting Off 43 | ZWrite Off 44 | ZTest [unity_GUIZTestMode] 45 | Blend SrcAlpha OneMinusSrcAlpha 46 | ColorMask [_ColorMask] 47 | 48 | Pass 49 | { 50 | Name "Default" 51 | CGPROGRAM 52 | #pragma vertex vert 53 | #pragma fragment frag 54 | #pragma target 2.0 55 | 56 | #include "UnityCG.cginc" 57 | #include "UnityUI.cginc" 58 | 59 | #pragma multi_compile __ UNITY_UI_CLIP_RECT 60 | #pragma multi_compile __ UNITY_UI_ALPHACLIP 61 | 62 | struct appdata_t 63 | { 64 | float4 vertex : POSITION; 65 | float4 color : COLOR; 66 | float2 texcoord : TEXCOORD0; 67 | UNITY_VERTEX_INPUT_INSTANCE_ID 68 | }; 69 | 70 | struct v2f 71 | { 72 | float4 vertex : SV_POSITION; 73 | fixed4 color : COLOR; 74 | float2 texcoord : TEXCOORD0; 75 | float4 worldPosition : TEXCOORD1; 76 | UNITY_VERTEX_OUTPUT_STEREO 77 | }; 78 | 79 | sampler2D _MainTex; 80 | fixed4 _Color; 81 | fixed4 _TextureSampleAdd; 82 | float4 _ClipRect; 83 | float4 _MainTex_ST; 84 | 85 | v2f vert(appdata_t v) 86 | { 87 | v2f OUT; 88 | UNITY_SETUP_INSTANCE_ID(v); 89 | UNITY_INITIALIZE_VERTEX_OUTPUT_STEREO(OUT); 90 | OUT.worldPosition = v.vertex; 91 | OUT.vertex = UnityObjectToClipPos(OUT.worldPosition); 92 | 93 | OUT.texcoord = TRANSFORM_TEX(v.texcoord, _MainTex); 94 | 95 | OUT.color = v.color * _Color; 96 | return OUT; 97 | } 98 | 99 | fixed4 frag(v2f IN) : SV_Target 100 | { 101 | half4 color = (tex2D(_MainTex, IN.texcoord) + _TextureSampleAdd) * IN.color; 102 | 103 | #ifdef UNITY_UI_CLIP_RECT 104 | color.a *= UnityGet2DClipping(IN.worldPosition.xy, _ClipRect); 105 | #endif 106 | 107 | #ifdef UNITY_UI_ALPHACLIP 108 | clip (color.a - 0.001); 109 | #endif 110 | 111 | return color; 112 | } 113 | ENDCG 114 | } 115 | } 116 | } 117 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMP_Sprite.shader.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: cf81c85f95fe47e1a27f6ae460cf182c 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMPro.cginc: -------------------------------------------------------------------------------- 1 | float2 UnpackUV(float uv) 2 | { 3 | float2 output; 4 | output.x = floor(uv / 4096); 5 | output.y = uv - 4096 * output.x; 6 | 7 | return output * 0.001953125; 8 | } 9 | 10 | fixed4 GetColor(half d, fixed4 faceColor, fixed4 outlineColor, half outline, half softness) 11 | { 12 | half faceAlpha = 1-saturate((d - outline * 0.5 + softness * 0.5) / (1.0 + softness)); 13 | half outlineAlpha = saturate((d + outline * 0.5)) * sqrt(min(1.0, outline)); 14 | 15 | faceColor.rgb *= faceColor.a; 16 | outlineColor.rgb *= outlineColor.a; 17 | 18 | faceColor = lerp(faceColor, outlineColor, outlineAlpha); 19 | 20 | faceColor *= faceAlpha; 21 | 22 | return faceColor; 23 | } 24 | 25 | float3 GetSurfaceNormal(float4 h, float bias) 26 | { 27 | bool raisedBevel = step(1, fmod(_ShaderFlags, 2)); 28 | 29 | h += bias+_BevelOffset; 30 | 31 | float bevelWidth = max(.01, _OutlineWidth+_BevelWidth); 32 | 33 | // Track outline 34 | h -= .5; 35 | h /= bevelWidth; 36 | h = saturate(h+.5); 37 | 38 | if(raisedBevel) h = 1 - abs(h*2.0 - 1.0); 39 | h = lerp(h, sin(h*3.141592/2.0), _BevelRoundness); 40 | h = min(h, 1.0-_BevelClamp); 41 | h *= _Bevel * bevelWidth * _GradientScale * -2.0; 42 | 43 | float3 va = normalize(float3(1.0, 0.0, h.y - h.x)); 44 | float3 vb = normalize(float3(0.0, -1.0, h.w - h.z)); 45 | 46 | return cross(va, vb); 47 | } 48 | 49 | float3 GetSurfaceNormal(float2 uv, float bias, float3 delta) 50 | { 51 | // Read "height field" 52 | float4 h = {tex2D(_MainTex, uv - delta.xz).a, 53 | tex2D(_MainTex, uv + delta.xz).a, 54 | tex2D(_MainTex, uv - delta.zy).a, 55 | tex2D(_MainTex, uv + delta.zy).a}; 56 | 57 | return GetSurfaceNormal(h, bias); 58 | } 59 | 60 | float3 GetSpecular(float3 n, float3 l) 61 | { 62 | float spec = pow(max(0.0, dot(n, l)), _Reflectivity); 63 | return _SpecularColor.rgb * spec * _SpecularPower; 64 | } 65 | 66 | float4 GetGlowColor(float d, float scale) 67 | { 68 | float glow = d - (_GlowOffset*_ScaleRatioB) * 0.5 * scale; 69 | float t = lerp(_GlowInner, (_GlowOuter * _ScaleRatioB), step(0.0, glow)) * 0.5 * scale; 70 | glow = saturate(abs(glow/(1.0 + t))); 71 | glow = 1.0-pow(glow, _GlowPower); 72 | glow *= sqrt(min(1.0, t)); // Fade off glow thinner than 1 screen pixel 73 | return float4(_GlowColor.rgb, saturate(_GlowColor.a * glow * 2)); 74 | } 75 | 76 | float4 BlendARGB(float4 overlying, float4 underlying) 77 | { 78 | overlying.rgb *= overlying.a; 79 | underlying.rgb *= underlying.a; 80 | float3 blended = overlying.rgb + ((1-overlying.a)*underlying.rgb); 81 | float alpha = underlying.a + (1-underlying.a)*overlying.a; 82 | return float4(blended, alpha); 83 | } 84 | 85 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMPro.cginc.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 407bc68d299748449bbf7f48ee690f8d 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMPro_Mobile.cginc: -------------------------------------------------------------------------------- 1 | struct vertex_t { 2 | UNITY_VERTEX_INPUT_INSTANCE_ID 3 | float4 position : POSITION; 4 | float3 normal : NORMAL; 5 | float4 color : COLOR; 6 | float2 texcoord0 : TEXCOORD0; 7 | float2 texcoord1 : TEXCOORD1; 8 | }; 9 | 10 | struct pixel_t { 11 | UNITY_VERTEX_INPUT_INSTANCE_ID 12 | UNITY_VERTEX_OUTPUT_STEREO 13 | float4 position : SV_POSITION; 14 | float4 faceColor : COLOR; 15 | float4 outlineColor : COLOR1; 16 | float4 texcoord0 : TEXCOORD0; 17 | float4 param : TEXCOORD1; // weight, scaleRatio 18 | float2 mask : TEXCOORD2; 19 | #if (UNDERLAY_ON || UNDERLAY_INNER) 20 | float4 texcoord2 : TEXCOORD3; 21 | float4 underlayColor : COLOR2; 22 | #endif 23 | }; 24 | 25 | float4 SRGBToLinear(float4 rgba) { 26 | return float4(lerp(rgba.rgb / 12.92f, pow((rgba.rgb + 0.055f) / 1.055f, 2.4f), step(0.04045f, rgba.rgb)), rgba.a); 27 | } 28 | 29 | pixel_t VertShader(vertex_t input) 30 | { 31 | pixel_t output; 32 | 33 | UNITY_INITIALIZE_OUTPUT(pixel_t, output); 34 | UNITY_SETUP_INSTANCE_ID(input); 35 | UNITY_TRANSFER_INSTANCE_ID(input, output); 36 | UNITY_INITIALIZE_VERTEX_OUTPUT_STEREO(output); 37 | 38 | float bold = step(input.texcoord1.y, 0); 39 | 40 | float4 vert = input.position; 41 | vert.x += _VertexOffsetX; 42 | vert.y += _VertexOffsetY; 43 | 44 | float4 vPosition = UnityObjectToClipPos(vert); 45 | 46 | float weight = lerp(_WeightNormal, _WeightBold, bold) / 4.0; 47 | weight = (weight + _FaceDilate) * _ScaleRatioA * 0.5; 48 | 49 | // Generate UV for the Masking Texture 50 | float4 clampedRect = clamp(_ClipRect, -2e10, 2e10); 51 | float2 maskUV = (vert.xy - clampedRect.xy) / (clampedRect.zw - clampedRect.xy); 52 | 53 | float4 color = input.color; 54 | #if (FORCE_LINEAR && !UNITY_COLORSPACE_GAMMA) 55 | color = SRGBToLinear(input.color); 56 | #endif 57 | 58 | float opacity = color.a; 59 | #if (UNDERLAY_ON | UNDERLAY_INNER) 60 | opacity = 1.0; 61 | #endif 62 | 63 | float4 faceColor = float4(color.rgb, opacity) * _FaceColor; 64 | faceColor.rgb *= faceColor.a; 65 | 66 | float4 outlineColor = _OutlineColor; 67 | outlineColor.a *= opacity; 68 | outlineColor.rgb *= outlineColor.a; 69 | 70 | output.position = vPosition; 71 | output.faceColor = faceColor; 72 | output.outlineColor = outlineColor; 73 | output.texcoord0 = float4(input.texcoord0.xy, maskUV.xy); 74 | output.param = float4(0.5 - weight, 1.3333 * _GradientScale * (_Sharpness + 1) / _TextureWidth, _OutlineWidth * _ScaleRatioA * 0.5, 0); 75 | 76 | float2 mask = float2(0, 0); 77 | #if UNITY_UI_CLIP_RECT 78 | mask = vert.xy * 2 - clampedRect.xy - clampedRect.zw; 79 | #endif 80 | output.mask = mask; 81 | 82 | #if (UNDERLAY_ON || UNDERLAY_INNER) 83 | float4 underlayColor = _UnderlayColor; 84 | underlayColor.rgb *= underlayColor.a; 85 | 86 | float x = -(_UnderlayOffsetX * _ScaleRatioC) * _GradientScale / _TextureWidth; 87 | float y = -(_UnderlayOffsetY * _ScaleRatioC) * _GradientScale / _TextureHeight; 88 | 89 | output.texcoord2 = float4(input.texcoord0 + float2(x, y), input.color.a, 0); 90 | output.underlayColor = underlayColor; 91 | #endif 92 | 93 | return output; 94 | } 95 | 96 | float4 PixShader(pixel_t input) : SV_Target 97 | { 98 | UNITY_SETUP_INSTANCE_ID(input); 99 | 100 | float d = tex2D(_MainTex, input.texcoord0.xy).a; 101 | 102 | float2 UV = input.texcoord0.xy; 103 | float scale = rsqrt(abs(ddx(UV.x) * ddy(UV.y) - ddy(UV.x) * ddx(UV.y))) * input.param.y; 104 | 105 | #if (UNDERLAY_ON | UNDERLAY_INNER) 106 | float layerScale = scale; 107 | layerScale /= 1 + ((_UnderlaySoftness * _ScaleRatioC) * layerScale); 108 | float layerBias = input.param.x * layerScale - .5 - ((_UnderlayDilate * _ScaleRatioC) * .5 * layerScale); 109 | #endif 110 | 111 | scale /= 1 + (_OutlineSoftness * _ScaleRatioA * scale); 112 | 113 | float4 faceColor = input.faceColor * saturate((d - input.param.x) * scale + 0.5); 114 | 115 | #ifdef OUTLINE_ON 116 | float4 outlineColor = lerp(input.faceColor, input.outlineColor, sqrt(min(1.0, input.param.z * scale * 2))); 117 | faceColor = lerp(outlineColor, input.faceColor, saturate((d - input.param.x - input.param.z) * scale + 0.5)); 118 | faceColor *= saturate((d - input.param.x + input.param.z) * scale + 0.5); 119 | #endif 120 | 121 | #if UNDERLAY_ON 122 | d = tex2D(_MainTex, input.texcoord2.xy).a * layerScale; 123 | faceColor += float4(_UnderlayColor.rgb * _UnderlayColor.a, _UnderlayColor.a) * saturate(d - layerBias) * (1 - faceColor.a); 124 | #endif 125 | 126 | #if UNDERLAY_INNER 127 | float bias = input.param.x * scale - 0.5; 128 | float sd = saturate(d * scale - bias - input.param.z); 129 | d = tex2D(_MainTex, input.texcoord2.xy).a * layerScale; 130 | faceColor += float4(_UnderlayColor.rgb * _UnderlayColor.a, _UnderlayColor.a) * (1 - saturate(d - layerBias)) * sd * (1 - faceColor.a); 131 | #endif 132 | 133 | #ifdef MASKING 134 | float a = abs(_MaskInverse - tex2D(_MaskTex, input.texcoord0.zw).a); 135 | float t = a + (1 - _MaskWipeControl) * _MaskEdgeSoftness - _MaskWipeControl; 136 | a = saturate(t / _MaskEdgeSoftness); 137 | faceColor.rgb = lerp(_MaskEdgeColor.rgb * faceColor.a, faceColor.rgb, a); 138 | faceColor *= a; 139 | #endif 140 | 141 | // Alternative implementation to UnityGet2DClipping with support for softness 142 | #if UNITY_UI_CLIP_RECT 143 | float2 maskZW = 0.25 / (0.25 * half2(_MaskSoftnessX, _MaskSoftnessY) + (1 / scale)); 144 | float2 m = saturate((_ClipRect.zw - _ClipRect.xy - abs(input.mask.xy)) * maskZW); 145 | faceColor *= m.x * m.y; 146 | #endif 147 | 148 | #if (UNDERLAY_ON | UNDERLAY_INNER) 149 | faceColor *= input.texcoord2.z; 150 | #endif 151 | 152 | #if UNITY_UI_ALPHACLIP 153 | clip(faceColor.a - 0.001); 154 | #endif 155 | 156 | return faceColor; 157 | } 158 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMPro_Mobile.cginc.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: c334973cef89a9840b0b0c507e0377ab 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMPro_Properties.cginc: -------------------------------------------------------------------------------- 1 | // UI Editable properties 2 | uniform sampler2D _FaceTex; // Alpha : Signed Distance 3 | uniform float _FaceUVSpeedX; 4 | uniform float _FaceUVSpeedY; 5 | uniform fixed4 _FaceColor; // RGBA : Color + Opacity 6 | uniform float _FaceDilate; // v[ 0, 1] 7 | uniform float _OutlineSoftness; // v[ 0, 1] 8 | 9 | uniform sampler2D _OutlineTex; // RGBA : Color + Opacity 10 | uniform float _OutlineUVSpeedX; 11 | uniform float _OutlineUVSpeedY; 12 | uniform fixed4 _OutlineColor; // RGBA : Color + Opacity 13 | uniform float _OutlineWidth; // v[ 0, 1] 14 | 15 | uniform float _Bevel; // v[ 0, 1] 16 | uniform float _BevelOffset; // v[-1, 1] 17 | uniform float _BevelWidth; // v[-1, 1] 18 | uniform float _BevelClamp; // v[ 0, 1] 19 | uniform float _BevelRoundness; // v[ 0, 1] 20 | 21 | uniform sampler2D _BumpMap; // Normal map 22 | uniform float _BumpOutline; // v[ 0, 1] 23 | uniform float _BumpFace; // v[ 0, 1] 24 | 25 | uniform samplerCUBE _Cube; // Cube / sphere map 26 | uniform fixed4 _ReflectFaceColor; // RGB intensity 27 | uniform fixed4 _ReflectOutlineColor; 28 | //uniform float _EnvTiltX; // v[-1, 1] 29 | //uniform float _EnvTiltY; // v[-1, 1] 30 | uniform float3 _EnvMatrixRotation; 31 | uniform float4x4 _EnvMatrix; 32 | 33 | uniform fixed4 _SpecularColor; // RGB intensity 34 | uniform float _LightAngle; // v[ 0,Tau] 35 | uniform float _SpecularPower; // v[ 0, 1] 36 | uniform float _Reflectivity; // v[ 5, 15] 37 | uniform float _Diffuse; // v[ 0, 1] 38 | uniform float _Ambient; // v[ 0, 1] 39 | 40 | uniform fixed4 _UnderlayColor; // RGBA : Color + Opacity 41 | uniform float _UnderlayOffsetX; // v[-1, 1] 42 | uniform float _UnderlayOffsetY; // v[-1, 1] 43 | uniform float _UnderlayDilate; // v[-1, 1] 44 | uniform float _UnderlaySoftness; // v[ 0, 1] 45 | 46 | uniform fixed4 _GlowColor; // RGBA : Color + Intesity 47 | uniform float _GlowOffset; // v[-1, 1] 48 | uniform float _GlowOuter; // v[ 0, 1] 49 | uniform float _GlowInner; // v[ 0, 1] 50 | uniform float _GlowPower; // v[ 1, 1/(1+4*4)] 51 | 52 | // API Editable properties 53 | uniform float _ShaderFlags; 54 | uniform float _WeightNormal; 55 | uniform float _WeightBold; 56 | 57 | uniform float _ScaleRatioA; 58 | uniform float _ScaleRatioB; 59 | uniform float _ScaleRatioC; 60 | 61 | uniform float _VertexOffsetX; 62 | uniform float _VertexOffsetY; 63 | 64 | //uniform float _UseClipRect; 65 | uniform float _MaskID; 66 | uniform sampler2D _MaskTex; 67 | uniform float4 _MaskCoord; 68 | uniform float4 _ClipRect; // bottom left(x,y) : top right(z,w) 69 | //uniform float _MaskWipeControl; 70 | //uniform float _MaskEdgeSoftness; 71 | //uniform fixed4 _MaskEdgeColor; 72 | //uniform bool _MaskInverse; 73 | 74 | uniform float _MaskSoftnessX; 75 | uniform float _MaskSoftnessY; 76 | 77 | // Font Atlas properties 78 | uniform sampler2D _MainTex; 79 | uniform float _TextureWidth; 80 | uniform float _TextureHeight; 81 | uniform float _GradientScale; 82 | uniform float _ScaleX; 83 | uniform float _ScaleY; 84 | uniform float _PerspectiveFilter; 85 | uniform float _Sharpness; 86 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMPro_Properties.cginc.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 3997e2241185407d80309a82f9148466 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMPro_Surface.cginc: -------------------------------------------------------------------------------- 1 | void VertShader(inout appdata_full v, out Input data) 2 | { 3 | v.vertex.x += _VertexOffsetX; 4 | v.vertex.y += _VertexOffsetY; 5 | 6 | UNITY_INITIALIZE_OUTPUT(Input, data); 7 | 8 | float bold = step(v.texcoord1.y, 0); 9 | 10 | // Generate normal for backface 11 | float3 view = ObjSpaceViewDir(v.vertex); 12 | v.normal *= sign(dot(v.normal, view)); 13 | 14 | #if USE_DERIVATIVE 15 | data.param.y = 1; 16 | #else 17 | float4 vert = v.vertex; 18 | float4 vPosition = UnityObjectToClipPos(vert); 19 | float2 pixelSize = vPosition.w; 20 | 21 | pixelSize /= float2(_ScaleX, _ScaleY) * mul((float2x2)UNITY_MATRIX_P, _ScreenParams.xy); 22 | float scale = rsqrt(dot(pixelSize, pixelSize)); 23 | scale *= abs(v.texcoord1.y) * _GradientScale * (_Sharpness + 1); 24 | scale = lerp(scale * (1 - _PerspectiveFilter), scale, abs(dot(UnityObjectToWorldNormal(v.normal.xyz), normalize(WorldSpaceViewDir(vert))))); 25 | data.param.y = scale; 26 | #endif 27 | 28 | data.param.x = (lerp(_WeightNormal, _WeightBold, bold) / 4.0 + _FaceDilate) * _ScaleRatioA * 0.5; // 29 | 30 | v.texcoord1.xy = UnpackUV(v.texcoord1.x); 31 | data.viewDirEnv = mul((float3x3)_EnvMatrix, WorldSpaceViewDir(v.vertex)); 32 | } 33 | 34 | void PixShader(Input input, inout SurfaceOutput o) 35 | { 36 | 37 | #if USE_DERIVATIVE 38 | float2 pixelSize = float2(ddx(input.uv_MainTex.y), ddy(input.uv_MainTex.y)); 39 | pixelSize *= _TextureWidth * .75; 40 | float scale = rsqrt(dot(pixelSize, pixelSize)) * _GradientScale * (_Sharpness + 1); 41 | #else 42 | float scale = input.param.y; 43 | #endif 44 | 45 | // Signed distance 46 | float c = tex2D(_MainTex, input.uv_MainTex).a; 47 | float sd = (.5 - c - input.param.x) * scale + .5; 48 | float outline = _OutlineWidth*_ScaleRatioA * scale; 49 | float softness = _OutlineSoftness*_ScaleRatioA * scale; 50 | 51 | // Color & Alpha 52 | float4 faceColor = _FaceColor; 53 | float4 outlineColor = _OutlineColor; 54 | faceColor *= input.color; 55 | outlineColor.a *= input.color.a; 56 | faceColor *= tex2D(_FaceTex, float2(input.uv2_FaceTex.x + _FaceUVSpeedX * _Time.y, input.uv2_FaceTex.y + _FaceUVSpeedY * _Time.y)); 57 | outlineColor *= tex2D(_OutlineTex, float2(input.uv2_OutlineTex.x + _OutlineUVSpeedX * _Time.y, input.uv2_OutlineTex.y + _OutlineUVSpeedY * _Time.y)); 58 | faceColor = GetColor(sd, faceColor, outlineColor, outline, softness); 59 | faceColor.rgb /= max(faceColor.a, 0.0001); 60 | 61 | #if BEVEL_ON 62 | float3 delta = float3(1.0 / _TextureWidth, 1.0 / _TextureHeight, 0.0); 63 | 64 | float4 smp4x = {tex2D(_MainTex, input.uv_MainTex - delta.xz).a, 65 | tex2D(_MainTex, input.uv_MainTex + delta.xz).a, 66 | tex2D(_MainTex, input.uv_MainTex - delta.zy).a, 67 | tex2D(_MainTex, input.uv_MainTex + delta.zy).a }; 68 | 69 | // Face Normal 70 | float3 n = GetSurfaceNormal(smp4x, input.param.x); 71 | 72 | // Bumpmap 73 | float3 bump = UnpackNormal(tex2D(_BumpMap, input.uv2_FaceTex.xy)).xyz; 74 | bump *= lerp(_BumpFace, _BumpOutline, saturate(sd + outline * 0.5)); 75 | bump = lerp(float3(0, 0, 1), bump, faceColor.a); 76 | n = normalize(n - bump); 77 | 78 | // Cubemap reflection 79 | fixed4 reflcol = texCUBE(_Cube, reflect(input.viewDirEnv, mul((float3x3)unity_ObjectToWorld, n))); 80 | float3 emission = reflcol.rgb * lerp(_ReflectFaceColor.rgb, _ReflectOutlineColor.rgb, saturate(sd + outline * 0.5)) * faceColor.a; 81 | #else 82 | float3 n = float3(0, 0, -1); 83 | float3 emission = float3(0, 0, 0); 84 | #endif 85 | 86 | #if GLOW_ON 87 | float4 glowColor = GetGlowColor(sd, scale); 88 | glowColor.a *= input.color.a; 89 | emission += glowColor.rgb*glowColor.a; 90 | faceColor = BlendARGB(glowColor, faceColor); 91 | faceColor.rgb /= max(faceColor.a, 0.0001); 92 | #endif 93 | 94 | // Set Standard output structure 95 | o.Albedo = faceColor.rgb; 96 | o.Normal = -n; 97 | o.Emission = emission; 98 | o.Specular = lerp(_FaceShininess, _OutlineShininess, saturate(sd + outline * 0.5)); 99 | o.Gloss = 1; 100 | o.Alpha = faceColor.a; 101 | } 102 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Shaders/TMPro_Surface.cginc.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: d930090c0cd643c7b55f19a38538c162 3 | ShaderImporter: 4 | externalObjects: {} 5 | defaultTextures: [] 6 | nonModifiableTextures: [] 7 | userData: 8 | assetBundleName: 9 | assetBundleVariant: 10 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Sprites.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: d0603b6d5186471b96c778c3949c7ce2 3 | folderAsset: yes 4 | DefaultImporter: 5 | externalObjects: {} 6 | userData: 7 | assetBundleName: 8 | assetBundleVariant: 9 | -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Sprites/EmojiOne Attribution.txt: -------------------------------------------------------------------------------- 1 | This sample of beautiful emojis are provided by EmojiOne https://www.emojione.com/ 2 | 3 | Please visit their website to view the complete set of their emojis and review their licensing terms. -------------------------------------------------------------------------------- /Assets/TextMesh Pro/Sprites/EmojiOne Attribution.txt.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 381dcb09d5029d14897e55f98031fca5 3 | 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-------------------------------------------------------------------------------- /LICENSE: -------------------------------------------------------------------------------- 1 | MIT License 2 | 3 | Copyright (c) 2024 Martin Pluisch 4 | 5 | Permission is hereby granted, free of charge, to any person obtaining a copy 6 | of this software and associated documentation files (the "Software"), to deal 7 | in the Software without restriction, including without limitation the rights 8 | to use, copy, modify, merge, publish, distribute, sublicense, and/or sell 9 | copies of the Software, and to permit persons to whom the Software is 10 | furnished to do so, subject to the following conditions: 11 | 12 | The above copyright notice and this permission notice shall be included in all 13 | copies or substantial portions of the Software. 14 | 15 | THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 16 | IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 17 | FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE 18 | AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER 19 | LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, 20 | OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE 21 | SOFTWARE. 22 | -------------------------------------------------------------------------------- /Packages/OpenAI-Realtime-API-for-Unity/Runtime.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 4e9ef4b60404743b1aaf6cdf2609f0aa 3 | folderAsset: yes 4 | DefaultImporter: 5 | externalObjects: {} 6 | userData: 7 | assetBundleName: 8 | assetBundleVariant: 9 | -------------------------------------------------------------------------------- /Packages/OpenAI-Realtime-API-for-Unity/Runtime/Audio.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 8cfabb7c8930b49a6817301df1cf4e1a 3 | folderAsset: yes 4 | DefaultImporter: 5 | externalObjects: {} 6 | userData: 7 | assetBundleName: 8 | assetBundleVariant: 9 | -------------------------------------------------------------------------------- /Packages/OpenAI-Realtime-API-for-Unity/Runtime/Audio/AudioPlayer.cs: -------------------------------------------------------------------------------- 1 | using System.Collections; 2 | using System.Collections.Generic; 3 | using UnityEngine; 4 | 5 | public class AudioPlayer : MonoBehaviour 6 | { 7 | private AudioSource audioSource; 8 | private bool isPlayingAudio = false; 9 | private bool cancelPending = false; 10 | public float[] aiFrequencyData { get; private set; } 11 | private List audioBuffer = new List(); 12 | private AudioClip playbackClip; 13 | private const int BUFFER_SIZE = 48000; 14 | private const float MIN_BUFFER_TIME = 0.1f; 15 | public int sampleRate = 24000; 16 | public int fftSampleSize = 1024; 17 | 18 | private void Start() 19 | { 20 | audioSource = GetComponent(); 21 | audioSource.loop = false; 22 | } 23 | 24 | /// 25 | /// enqueues audio data for playback 26 | /// 27 | public void EnqueueAudioData(byte[] pcmAudioData) 28 | { 29 | if (cancelPending) return; 30 | float[] floatData = AudioProcessingUtils.ConvertPCM16ToFloat(pcmAudioData); 31 | audioBuffer.AddRange(floatData); 32 | if (!isPlayingAudio) 33 | { 34 | StartCoroutine(PlayAudioCoroutine()); 35 | } 36 | } 37 | 38 | private IEnumerator PlayAudioCoroutine() 39 | { 40 | isPlayingAudio = true; 41 | while (isPlayingAudio) 42 | { 43 | if (audioBuffer.Count >= sampleRate * MIN_BUFFER_TIME) 44 | { 45 | int samplesToPlay = Mathf.Min(BUFFER_SIZE, audioBuffer.Count); 46 | float[] audioChunk = new float[samplesToPlay]; 47 | audioBuffer.CopyTo(0, audioChunk, 0, samplesToPlay); 48 | audioBuffer.RemoveRange(0, samplesToPlay); 49 | playbackClip = AudioClip.Create("PlaybackClip", samplesToPlay, 1, sampleRate, false); 50 | playbackClip.SetData(audioChunk, 0); 51 | audioSource.clip = playbackClip; 52 | audioSource.Play(); 53 | yield return new WaitForSeconds((float)samplesToPlay / sampleRate); 54 | } 55 | else if (audioBuffer.Count > 0) 56 | { 57 | float[] audioChunk = audioBuffer.ToArray(); 58 | audioBuffer.Clear(); 59 | playbackClip = AudioClip.Create("PlaybackClip", audioChunk.Length, 1, sampleRate, false); 60 | playbackClip.SetData(audioChunk, 0); 61 | audioSource.clip = playbackClip; 62 | audioSource.Play(); 63 | yield return new WaitForSeconds((float)audioChunk.Length / sampleRate); 64 | } 65 | else if (audioBuffer.Count == 0 && !audioSource.isPlaying) 66 | { 67 | yield return new WaitForSeconds(0.1f); 68 | if (audioBuffer.Count == 0) isPlayingAudio = false; 69 | } 70 | else 71 | { 72 | yield return null; 73 | } 74 | } 75 | ClearAudioBuffer(); 76 | } 77 | 78 | private void Update() 79 | { 80 | UpdateAIFrequencyData(); 81 | } 82 | 83 | private void UpdateAIFrequencyData() 84 | { 85 | if (!audioSource.isPlaying) 86 | { 87 | aiFrequencyData = null; 88 | return; 89 | } 90 | int fftSize = fftSampleSize; 91 | aiFrequencyData = new float[fftSize]; 92 | audioSource.GetSpectrumData(aiFrequencyData, 0, FFTWindow.BlackmanHarris); 93 | } 94 | 95 | /// 96 | /// cancels audio playback 97 | /// 98 | public void CancelAudioPlayback() 99 | { 100 | cancelPending = true; 101 | StopAllCoroutines(); 102 | ClearAudioBuffer(); 103 | } 104 | 105 | /// 106 | /// clears audio buffer 107 | /// 108 | public void ClearAudioBuffer() 109 | { 110 | audioBuffer.Clear(); 111 | audioSource.Stop(); 112 | isPlayingAudio = false; 113 | aiFrequencyData = null; 114 | } 115 | 116 | /// 117 | /// checks if audio is playing 118 | /// 119 | public bool IsAudioPlaying() 120 | { 121 | return audioSource.isPlaying || audioBuffer.Count > 0; 122 | } 123 | 124 | /// 125 | /// resets cancel pending flag 126 | /// 127 | public void ResetCancelPending() 128 | { 129 | cancelPending = false; 130 | } 131 | } 132 | -------------------------------------------------------------------------------- /Packages/OpenAI-Realtime-API-for-Unity/Runtime/Audio/AudioPlayer.cs.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 10dcd261ab0cf4839a08d9c49ec28b50 3 | MonoImporter: 4 | externalObjects: {} 5 | serializedVersion: 2 6 | defaultReferences: [] 7 | executionOrder: 0 8 | icon: {instanceID: 0} 9 | userData: 10 | assetBundleName: 11 | assetBundleVariant: 12 | -------------------------------------------------------------------------------- /Packages/OpenAI-Realtime-API-for-Unity/Runtime/Audio/AudioProcessingUtils.cs: -------------------------------------------------------------------------------- 1 | using Unity.VisualScripting; 2 | using UnityEngine; 3 | 4 | public static class AudioProcessingUtils 5 | { 6 | public static float energyLast; 7 | /// 8 | /// converts pcm16 audio data to float array 9 | /// 10 | public static float[] ConvertPCM16ToFloat(byte[] pcmAudioData) 11 | { 12 | int length = pcmAudioData.Length / 2; 13 | float[] floatData = new float[length]; 14 | for (int i = 0; i < length; i++) 15 | { 16 | short sample = System.BitConverter.ToInt16(pcmAudioData, i * 2); 17 | floatData[i] = sample / 32768f; 18 | } 19 | return floatData; 20 | } 21 | 22 | /// 23 | /// converts float audio data to base64-encoded pcm16 string 24 | /// 25 | public static string ConvertFloatToPCM16AndBase64(float[] audioData) 26 | { 27 | byte[] pcm16Audio = new byte[audioData.Length * 2]; 28 | for (int i = 0; i < audioData.Length; i++) 29 | { 30 | short value = (short)(Mathf.Clamp(audioData[i], -1f, 1f) * short.MaxValue); 31 | pcm16Audio[i * 2] = (byte)(value & 0xFF); 32 | pcm16Audio[i * 2 + 1] = (byte)((value >> 8) & 0xFF); 33 | } 34 | return System.Convert.ToBase64String(pcm16Audio); 35 | } 36 | 37 | /// 38 | /// performs fft on audio data (only used for visualization atm) 39 | /// 40 | public static void FFT(float[] data, float[] spectrum) 41 | { 42 | int n = data.Length; 43 | int m = (int)Mathf.Log(n, 2); 44 | int j = 0; 45 | for (int i = 0; i < n; i++) 46 | { 47 | if (i < j) 48 | { 49 | float temp = data[i]; 50 | data[i] = data[j]; 51 | data[j] = temp; 52 | } 53 | int k = n >> 1; 54 | while (k >= 1 && k <= j) 55 | { 56 | j -= k; 57 | k >>= 1; 58 | } 59 | j += k; 60 | } 61 | for (int l = 1; l <= m; l++) 62 | { 63 | int le = 1 << l; 64 | int le2 = le >> 1; 65 | float ur = 1.0f; 66 | float ui = 0.0f; 67 | float sr = Mathf.Cos(Mathf.PI / le2); 68 | float si = -Mathf.Sin(Mathf.PI / le2); 69 | for (int j1 = 0; j1 < le2; j1++) 70 | { 71 | for (int i = j1; i < n; i += le) 72 | { 73 | int ip = i + le2; 74 | float tr = data[ip] * ur - 0 * ui; 75 | float ti = data[ip] * ui + 0 * ur; 76 | data[ip] = data[i] - tr; 77 | data[i] += tr; 78 | } 79 | float temp = ur; 80 | ur = temp * sr - ui * si; 81 | ui = temp * si + ui * sr; 82 | } 83 | } 84 | for (int i = 0; i < n / 2; i++) 85 | { 86 | spectrum[i] = Mathf.Sqrt(data[i] * data[i] + data[n - i - 1] * data[n - i - 1]); 87 | } 88 | } 89 | 90 | /// 91 | /// performs simple voice activity detection 92 | /// 93 | /// credit @Macoron - source: https://raw.githubusercontent.com/Macoron/whisper.unity/275406258aca21fe7753cf0724a65f06fd464eea/Packages/com.whisper.unity/Runtime/Utils/AudioUtils.cs 94 | /// 95 | public static bool SimpleVad(float[] data, int sampleRate, float lastSec, float vadThd, float freqThd) 96 | { 97 | var nSamples = data.Length; 98 | var nSamplesLast = (int)(sampleRate * lastSec); 99 | 100 | if (nSamplesLast >= nSamples) return false; 101 | 102 | if (freqThd > 0.0f) HighPassFilter(data, freqThd, sampleRate); 103 | 104 | var energyAll = 0.0f; 105 | var energyLast = 0.0f; 106 | 107 | for (var i = 0; i < nSamples; i++) 108 | { 109 | energyAll += Mathf.Abs(data[i]); 110 | if (i >= nSamples - nSamplesLast) energyLast += Mathf.Abs(data[i]); 111 | } 112 | 113 | energyAll /= nSamples; 114 | energyLast /= nSamplesLast; 115 | AudioProcessingUtils.energyLast = energyLast; 116 | 117 | return energyLast > vadThd * energyAll; 118 | } 119 | 120 | /// 121 | /// applies high-pass filter to audio data 122 | /// 123 | /// credit @Macoron - source: https://raw.githubusercontent.com/Macoron/whisper.unity/275406258aca21fe7753cf0724a65f06fd464eea/Packages/com.whisper.unity/Runtime/Utils/AudioUtils.cs 124 | /// 125 | public static void HighPassFilter(float[] data, float cutoff, int sampleRate) 126 | { 127 | if (data.Length == 0) 128 | return; 129 | var rc = 1.0f / (2.0f * Mathf.PI * cutoff); 130 | var dt = 1.0f / sampleRate; 131 | var alpha = dt / (rc + dt); 132 | var y = data[0]; 133 | for (var i = 1; i < data.Length; i++) 134 | { 135 | y = alpha * (y + data[i] - data[i - 1]); 136 | data[i] = y; 137 | } 138 | } 139 | } 140 | -------------------------------------------------------------------------------- /Packages/OpenAI-Realtime-API-for-Unity/Runtime/Audio/AudioProcessingUtils.cs.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: f87299c0790ac4122948882e263e0009 3 | MonoImporter: 4 | externalObjects: {} 5 | serializedVersion: 2 6 | defaultReferences: [] 7 | executionOrder: 0 8 | icon: {instanceID: 0} 9 | userData: 10 | assetBundleName: 11 | assetBundleVariant: 12 | -------------------------------------------------------------------------------- /Packages/OpenAI-Realtime-API-for-Unity/Runtime/Audio/AudioRecorder.cs: -------------------------------------------------------------------------------- 1 | using System; 2 | using System.Collections.Generic; 3 | using UnityEngine; 4 | 5 | public class AudioRecorder : MonoBehaviour 6 | { 7 | public ListeningMode listeningMode = ListeningMode.PushToTalk; 8 | public int sampleRate = 24000; 9 | [SerializeField] private bool interruptResponseOnNewRecording = false; 10 | [SerializeField] private float vadEnergyThreshold = 0.5f; 11 | [SerializeField] private float vadSilenceDuration = 2f; 12 | private float vadLastSec = 1.0f; 13 | [SerializeField] private float vadFreqThreshold = 0.0f; 14 | private bool isVADRecording = false; 15 | private float silenceTimer = 0f; 16 | private int lastSamplePosition = 0; 17 | private AudioClip microphoneClip; 18 | private string microphoneDevice; 19 | public float[] frequencyData { get; private set; } 20 | public int fftSampleSize = 1024; 21 | private List audioDataBuffer = new List(); 22 | private int vadRecordingStartIndex = 0; 23 | private const int MAX_BUFFER_LENGTH_SEC = 10; 24 | public static event Action OnAudioRecorded; 25 | public static event Action OnVADRecordingStarted; 26 | public static event Action OnVADRecordingEnded; 27 | private AudioPlayer audioPlayer; 28 | 29 | private void Start() 30 | { 31 | audioPlayer = GetComponent(); 32 | if (Microphone.devices.Length == 0) 33 | { 34 | Debug.LogError("No microphone devices found."); 35 | return; 36 | } 37 | microphoneDevice = Microphone.devices[0]; 38 | if (listeningMode == ListeningMode.VAD) 39 | { 40 | StartMicrophone(); 41 | } 42 | } 43 | 44 | private void Update() 45 | { 46 | if (Microphone.IsRecording(microphoneDevice)) 47 | { 48 | UpdateCurrentFrequency(); 49 | if (listeningMode == ListeningMode.VAD) 50 | { 51 | PerformVAD(); 52 | } 53 | } 54 | else 55 | { 56 | frequencyData = null; 57 | } 58 | } 59 | 60 | /// 61 | /// starts recording audio 62 | /// 63 | public void StartRecording() 64 | { 65 | if (interruptResponseOnNewRecording) audioPlayer.CancelAudioPlayback(); 66 | audioPlayer.ResetCancelPending(); 67 | microphoneDevice = Microphone.devices[0]; 68 | microphoneClip = Microphone.Start(microphoneDevice, false, 10, sampleRate); 69 | lastSamplePosition = 0; 70 | } 71 | 72 | /// 73 | /// stops recording audio 74 | /// 75 | public void StopRecording() 76 | { 77 | if (Microphone.IsRecording(microphoneDevice)) 78 | { 79 | int micPosition = Microphone.GetPosition(microphoneDevice); 80 | int samples = micPosition; 81 | float[] audioData = new float[samples]; 82 | if (microphoneClip != null && micPosition != 0) 83 | { 84 | microphoneClip.GetData(audioData, 0); 85 | Microphone.End(microphoneDevice); 86 | string base64AudioData = AudioProcessingUtils.ConvertFloatToPCM16AndBase64(audioData); 87 | OnAudioRecorded?.Invoke(base64AudioData); 88 | } 89 | } 90 | frequencyData = null; 91 | } 92 | 93 | /// 94 | /// starts the microphone in loop mode 95 | /// 96 | public void StartMicrophone() 97 | { 98 | microphoneDevice = Microphone.devices[0]; 99 | microphoneClip = Microphone.Start(microphoneDevice, true, 10, sampleRate); 100 | lastSamplePosition = 0; 101 | } 102 | 103 | /// 104 | /// stops the microphone 105 | /// 106 | public void StopMicrophone() 107 | { 108 | if (Microphone.IsRecording(microphoneDevice)) Microphone.End(microphoneDevice); 109 | frequencyData = null; 110 | } 111 | 112 | /// 113 | /// updates fft frequency bands for vad/visualization 114 | /// 115 | private void UpdateCurrentFrequency() 116 | { 117 | int micPosition = Microphone.GetPosition(microphoneDevice); 118 | int sampleDiff = micPosition - lastSamplePosition; 119 | if (sampleDiff < 0) 120 | { 121 | sampleDiff += microphoneClip.samples; 122 | } 123 | if (sampleDiff == 0) 124 | { 125 | return; 126 | } 127 | float[] samples = new float[sampleDiff]; 128 | int startPosition = lastSamplePosition; 129 | if (startPosition + sampleDiff <= microphoneClip.samples) 130 | { 131 | microphoneClip.GetData(samples, startPosition); 132 | } 133 | else 134 | { 135 | int samplesToEnd = microphoneClip.samples - startPosition; 136 | int samplesFromStart = sampleDiff - samplesToEnd; 137 | float[] samplesPart1 = new float[samplesToEnd]; 138 | float[] samplesPart2 = new float[samplesFromStart]; 139 | microphoneClip.GetData(samplesPart1, startPosition); 140 | microphoneClip.GetData(samplesPart2, 0); 141 | Array.Copy(samplesPart1, 0, samples, 0, samplesToEnd); 142 | Array.Copy(samplesPart2, 0, samples, samplesToEnd, samplesFromStart); 143 | } 144 | float maxVolume = 0f; 145 | foreach (var sample in samples) 146 | { 147 | float absSample = Mathf.Abs(sample); 148 | if (absSample > maxVolume) 149 | { 150 | maxVolume = absSample; 151 | } 152 | } 153 | int fftSize = fftSampleSize; 154 | float[] fftSamples = new float[fftSize]; 155 | int copyLength = Mathf.Min(samples.Length, fftSize); 156 | Array.Copy(samples, samples.Length - copyLength, fftSamples, 0, copyLength); 157 | frequencyData = new float[fftSize]; 158 | AudioProcessingUtils.FFT(fftSamples, frequencyData); 159 | lastSamplePosition = micPosition; 160 | audioDataBuffer.AddRange(samples); 161 | int maxBufferLengthSamples = sampleRate * MAX_BUFFER_LENGTH_SEC; 162 | if (audioDataBuffer.Count > maxBufferLengthSamples) 163 | { 164 | int excessSamples = audioDataBuffer.Count - maxBufferLengthSamples; 165 | audioDataBuffer.RemoveRange(0, excessSamples); 166 | vadRecordingStartIndex -= excessSamples; 167 | if (vadRecordingStartIndex < 0) vadRecordingStartIndex = 0; 168 | } 169 | } 170 | 171 | /// 172 | /// checks if speech is detected (AudioProcessingUtils.SimpleVad) and starts vad rec 173 | /// 174 | private void PerformVAD() 175 | { 176 | if (!Microphone.IsRecording(microphoneDevice)) return; 177 | bool hasSpeech = AudioProcessingUtils.SimpleVad(audioDataBuffer.ToArray(), sampleRate, vadLastSec, vadEnergyThreshold, vadFreqThreshold); 178 | if (hasSpeech) 179 | { 180 | silenceTimer = 0f; 181 | if (!isVADRecording) StartVADRecording(); 182 | } 183 | else if (isVADRecording) 184 | { 185 | silenceTimer += Time.deltaTime; 186 | if (silenceTimer >= vadSilenceDuration) StopVADRecording(); 187 | } 188 | } 189 | 190 | /// 191 | /// starts vad recording, i.e. by interrupting / canceling current responses and setting the recording index 192 | /// 193 | private void StartVADRecording() 194 | { 195 | if (interruptResponseOnNewRecording && !isVADRecording) audioPlayer.CancelAudioPlayback(); 196 | audioPlayer.ResetCancelPending(); 197 | isVADRecording = true; 198 | silenceTimer = 0f; 199 | vadRecordingStartIndex = audioDataBuffer.Count; 200 | OnVADRecordingStarted?.Invoke(); 201 | } 202 | 203 | /// 204 | /// stops vad recording and processes recorded vad snippet 205 | /// 206 | private void StopVADRecording() 207 | { 208 | if (isVADRecording) 209 | { 210 | int recordingLength = audioDataBuffer.Count - vadRecordingStartIndex; 211 | if (recordingLength > 0) 212 | { 213 | float[] audioData = audioDataBuffer.GetRange(vadRecordingStartIndex, recordingLength).ToArray(); 214 | string base64AudioData = AudioProcessingUtils.ConvertFloatToPCM16AndBase64(audioData); 215 | OnAudioRecorded?.Invoke(base64AudioData); 216 | } 217 | } 218 | isVADRecording = false; 219 | silenceTimer = 0f; 220 | OnVADRecordingEnded?.Invoke(); 221 | } 222 | } 223 | -------------------------------------------------------------------------------- /Packages/OpenAI-Realtime-API-for-Unity/Runtime/Audio/AudioRecorder.cs.meta: -------------------------------------------------------------------------------- 1 | fileFormatVersion: 2 2 | guid: 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-------------------------------------------------------------------------------- 1 | using System; 2 | using System.Text; 3 | using System.Threading; 4 | using System.Threading.Tasks; 5 | using System.Net.WebSockets; 6 | using UnityEngine; 7 | using Newtonsoft.Json.Linq; 8 | using System.Collections.Generic; 9 | 10 | public class RealtimeAPIWrapper : MonoBehaviour 11 | { 12 | private ClientWebSocket ws; 13 | [SerializeField] string apiKey = "YOUR_API_KEY"; 14 | public AudioPlayer audioPlayer; 15 | public AudioRecorder audioRecorder; 16 | private StringBuilder messageBuffer = new StringBuilder(); 17 | private StringBuilder transcriptBuffer = new StringBuilder(); 18 | private bool isResponseInProgress = false; 19 | 20 | public static event Action OnWebSocketConnected; 21 | public static event Action OnWebSocketClosed; 22 | public static event Action OnSessionCreated; 23 | public static event Action OnConversationItemCreated; 24 | public static event Action OnResponseDone; 25 | public static event Action OnTranscriptReceived; 26 | public static event Action OnResponseCreated; 27 | public static event Action OnResponseAudioDone; 28 | public static event Action OnResponseAudioTranscriptDone; 29 | public static event Action OnResponseContentPartDone; 30 | public static event Action OnResponseOutputItemDone; 31 | public static event Action OnRateLimitsUpdated; 32 | public static event Action OnResponseOutputItemAdded; 33 | public static event Action OnResponseContentPartAdded; 34 | public static event Action OnResponseCancelled; 35 | 36 | private void Start() => AudioRecorder.OnAudioRecorded += SendAudioToAPI; 37 | private void OnApplicationQuit() => DisposeWebSocket(); 38 | 39 | 40 | /// 41 | /// connects or disconnects websocket when button is pressed 42 | /// 43 | public async void ConnectWebSocketButton() 44 | { 45 | if (ws != null) DisposeWebSocket(); 46 | else 47 | { 48 | ws = new ClientWebSocket(); 49 | await ConnectWebSocket(); 50 | } 51 | } 52 | 53 | /// 54 | /// establishes websocket connection to the api 55 | /// 56 | private async Task ConnectWebSocket() 57 | { 58 | try 59 | { 60 | var uri = new Uri("wss://api.openai.com/v1/realtime?model=gpt-4o-realtime-preview-2024-10-01"); 61 | ws.Options.SetRequestHeader("Authorization", "Bearer " + apiKey); 62 | ws.Options.SetRequestHeader("OpenAI-Beta", "realtime=v1"); 63 | await ws.ConnectAsync(uri, CancellationToken.None); 64 | OnWebSocketConnected?.Invoke(); 65 | _ = ReceiveMessages(); 66 | } 67 | catch (Exception e) 68 | { 69 | Debug.LogError("websocket connection failed: " + e.Message); 70 | } 71 | } 72 | 73 | /// 74 | /// sends a cancel event to api if response is in progress 75 | /// 76 | private async void SendCancelEvent() 77 | { 78 | if (ws.State == WebSocketState.Open && isResponseInProgress) 79 | { 80 | var cancelMessage = new 81 | { 82 | type = "response.cancel" 83 | }; 84 | string jsonString = Newtonsoft.Json.JsonConvert.SerializeObject(cancelMessage); 85 | byte[] messageBytes = Encoding.UTF8.GetBytes(jsonString); 86 | await ws.SendAsync(new ArraySegment(messageBytes), WebSocketMessageType.Text, true, CancellationToken.None); 87 | OnResponseCancelled?.Invoke(); 88 | isResponseInProgress = false; 89 | } 90 | } 91 | 92 | /// 93 | /// sends recorded audio to the api 94 | /// 95 | private async void SendAudioToAPI(string base64AudioData) 96 | { 97 | if (isResponseInProgress) 98 | SendCancelEvent(); 99 | 100 | if (ws != null && ws.State == WebSocketState.Open) 101 | { 102 | var eventMessage = new 103 | { 104 | type = "conversation.item.create", 105 | item = new 106 | { 107 | type = "message", 108 | role = "user", 109 | content = new[] 110 | { 111 | new { type = "input_audio", audio = base64AudioData } 112 | } 113 | } 114 | }; 115 | 116 | string jsonString = Newtonsoft.Json.JsonConvert.SerializeObject(eventMessage); 117 | byte[] messageBytes = Encoding.UTF8.GetBytes(jsonString); 118 | await ws.SendAsync(new ArraySegment(messageBytes), WebSocketMessageType.Text, true, CancellationToken.None); 119 | 120 | var responseMessage = new 121 | { 122 | type = "response.create", 123 | response = new 124 | { 125 | modalities = new[] { "audio", "text" }, 126 | instructions = "Please provide a transcript." 127 | } 128 | }; 129 | string responseJson = Newtonsoft.Json.JsonConvert.SerializeObject(responseMessage); 130 | byte[] responseBytes = Encoding.UTF8.GetBytes(responseJson); 131 | await ws.SendAsync(new ArraySegment(responseBytes), WebSocketMessageType.Text, true, CancellationToken.None); 132 | } 133 | } 134 | 135 | /// 136 | /// receives messages from websocket and handles them 137 | /// 138 | private async Task ReceiveMessages() 139 | { 140 | var buffer = new byte[1024 * 128]; 141 | var messageHandlers = GetMessageHandlers(); 142 | 143 | while (ws.State == WebSocketState.Open || ws.State == WebSocketState.CloseReceived) 144 | { 145 | var result = await ws.ReceiveAsync(new ArraySegment(buffer), CancellationToken.None); 146 | messageBuffer.Append(Encoding.UTF8.GetString(buffer, 0, result.Count)); 147 | 148 | if (ws.State == WebSocketState.CloseReceived) 149 | { 150 | Debug.Log("websocket close received, disposing current ws instance."); 151 | DisposeWebSocket(); 152 | return; 153 | } 154 | 155 | if (result.EndOfMessage) 156 | { 157 | string fullMessage = messageBuffer.ToString(); 158 | messageBuffer.Clear(); 159 | 160 | if (!string.IsNullOrEmpty(fullMessage.Trim())) 161 | { 162 | try 163 | { 164 | JObject eventMessage = JObject.Parse(fullMessage); 165 | string messageType = eventMessage["type"]?.ToString(); 166 | 167 | if (messageHandlers.TryGetValue(messageType, out var handler)) handler(eventMessage); 168 | 169 | else Debug.Log("unhandled message type: " + messageType); 170 | 171 | } 172 | catch (Exception ex) 173 | { 174 | Debug.LogError("error parsing json: " + ex.Message); 175 | } 176 | } 177 | } 178 | } 179 | } 180 | 181 | /// 182 | /// returns dictionary of message handlers for different message types 183 | /// 184 | private Dictionary> GetMessageHandlers() 185 | { 186 | return new Dictionary> 187 | { 188 | { "response.audio.delta", HandleAudioDelta }, 189 | { "response.audio_transcript.delta", HandleTranscriptDelta }, 190 | { "conversation.item.created", _ => OnConversationItemCreated?.Invoke() }, 191 | { "response.done", HandleResponseDone }, 192 | { "response.created", HandleResponseCreated }, 193 | { "session.created", _ => OnSessionCreated?.Invoke() }, 194 | { "response.audio.done", _ => OnResponseAudioDone?.Invoke() }, 195 | { "response.audio_transcript.done", _ => OnResponseAudioTranscriptDone?.Invoke() }, 196 | { "response.content_part.done", _ => OnResponseContentPartDone?.Invoke() }, 197 | { "response.output_item.done", _ => OnResponseOutputItemDone?.Invoke() }, 198 | { "response.output_item.added", _ => OnResponseOutputItemAdded?.Invoke() }, 199 | { "response.content_part.added", _ => OnResponseContentPartAdded?.Invoke() }, 200 | { "rate_limits.updated", _ => OnRateLimitsUpdated?.Invoke() }, 201 | { "error", HandleError } 202 | }; 203 | } 204 | 205 | /// 206 | /// handles incoming audio delta messages from api 207 | /// 208 | private void HandleAudioDelta(JObject eventMessage) 209 | { 210 | string base64AudioData = eventMessage["delta"]?.ToString(); 211 | if (!string.IsNullOrEmpty(base64AudioData)) 212 | { 213 | byte[] pcmAudioData = Convert.FromBase64String(base64AudioData); 214 | audioPlayer.EnqueueAudioData(pcmAudioData); 215 | } 216 | } 217 | 218 | /// 219 | /// handles incoming transcript delta messages from api 220 | /// 221 | private void HandleTranscriptDelta(JObject eventMessage) 222 | { 223 | string transcriptPart = eventMessage["delta"]?.ToString(); 224 | if (!string.IsNullOrEmpty(transcriptPart)) 225 | { 226 | transcriptBuffer.Append(transcriptPart); 227 | OnTranscriptReceived?.Invoke(transcriptPart); 228 | } 229 | } 230 | 231 | /// 232 | /// handles response.done message - checks if audio is still playing 233 | /// 234 | 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2 |

OpenAI Realtime API Integration for Unity

3 | 4 |

Implementation of OpenAI's Realtime API in Unity - record microphone audio and receive real-time low-latency responses.

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6 | 7 | --- 8 | 9 | ## Overview 10 | On October 1st, [OpenAI introduced their Realtime API](https://openai.com/index/introducing-the-realtime-api/). 11 | 12 | 13 | This (WIP) project integrates the API into a Unity application, allowing users to build low-latency, multi-modal conversational apps that support both text and audio input/output, as well as function calling (via [OpenAI Realtime API documentation](https://platform.openai.com/docs/guides/realtime)). 14 | 15 | Specifically, this package allows you to integrate real-time low-latency voice conversations with OpenAI's TTS/STT conversational models (via push-to-talk or VAD). 16 | I've integrated transcriptions, natural speech interruption handling, and client-side VAD (as per [Whisper's VAD](https://raw.githubusercontent.com/Macoron/whisper.unity/275406258aca21fe7753cf0724a65f06fd464eea/Packages/com.whisper.unity/Runtime/Utils/AudioUtils.cs)). 17 | 18 | Tested with Unity version 2022.3.45f1 (on macOS, but it should work on every platform that supports `Newtonsoft.Json`). 19 | 20 | ## Demos 21 | > disclaimer, I liked the UI used by OpenAI [in this project](https://github.com/openai/openai-realtime-console/tree/main), as you can see :) 22 | ### Standard conversation 23 | https://github.com/user-attachments/assets/73b69bd7-dae8-4d49-8f7f-02fa32d9a955 24 | 25 | ### Interruption example 26 | https://github.com/user-attachments/assets/88fd83eb-e285-488d-8308-a40a48a7307f 27 | 28 | 29 | ### Setup 30 | 1. Download the latest release `.unitypackage`. 31 | 2. Import it into your own project, e.g., via `Assets > Import Package`. 32 | 3. Go to Package Manager, click on the `+`, then `Add package by name`, and add `com.unity.nuget.newtonsoft-json`. 33 | 4. Either open the `DemoScene` scene or add the necessary Prefabs to your own scene. 34 | 35 | ### Using OpenAI Realtime API in your own scene 36 | 1. Add the `RealtimeAPI` Prefab to your scene. 37 | 2. Add your OpenAI API key to the `RealtimeAPI` Prefab. 38 | 3. Optional: Add the `DemoIntegration` Prefab to a Canvas within your scene or open up the `DemoScene` to see an integration example. 39 | 4. Reference the `AudioController`, nested inside the `RealtimeAPI` Prefab, and call `audioController.StartRecording()` and `audioController.StopRecording()` to start resp. stop a microphone recording (as push-to-talk). 40 | 5. Bind a button or key to both actions - within my `DemoIntegration`, the spacebar can also be used as push-to-talk key. 41 | 6. The audio is automatically recorded, converted to PCM16 and Base64, sent via the WebSocket connection to the API, and the received chunks and written transcript are handled and served via events. 42 | 43 | ### Action Events 44 | The `RealtimeAPIWrapper` component triggers various **Action** events, enabling you to handle key stages of the real-time session. Below is a list of available Action events: 45 | 46 | #### Available Action Events: 47 | - `OnWebSocketConnected`: Triggered when the WebSocket connection is successfully established. 48 | - `OnWebSocketClosed`: Triggered when the WebSocket connection is closed. 49 | - `OnSessionCreated`: Triggered when a session is successfully created. 50 | - `OnConversationItemCreated`: Triggered when a conversation item is created. 51 | - `OnResponseDone`: Triggered when the response is fully processed. 52 | - `OnTranscriptReceived`: Triggered each time a transcript chunk is received (string argument containing the transcript part). 53 | - `OnResponseCreated`: Triggered when a new response is initiated. 54 | - `OnResponseAudioDone`: Triggered when the audio portion of the response is done. 55 | - `OnResponseAudioTranscriptDone`: Triggered when the audio transcript portion of the response is done. 56 | - `OnResponseContentPartDone`: Triggered when the content part of the response is done. 57 | - `OnResponseOutputItemDone`: Triggered when an output item of the response is done. 58 | - `OnResponseOutputItemAdded`: Triggered when a new output item is added to the response. 59 | - `OnResponseContentPartAdded`: Triggered when a new content part is added to the response. 60 | - `OnRateLimitsUpdated`: Triggered when rate limits are updated by the API. 61 | 62 | ## ToDo 63 | This project is still very much a work in progress. I'd like to extend it in the coming days to add: 64 | 65 | - [ ] Server-Side VAD (no guarantees, though) 66 | - [ ] Text / chat input -> TTS + transcription output 67 | - [x] Client-Side VAD 68 | - [x] Interruption handling 69 | 70 | 71 | ## Disclaimer 72 | This project serves as an example of integrating OpenAI's Realtime API with Unity. It is a prototype, so feel free to extend its functionality or submit a PR for improvements. 73 | 74 | --------------------------------------------------------------------------------