403 lines
13 KiB
Plaintext
403 lines
13 KiB
Plaintext
// Upgrade NOTE: upgraded instancing buffer 'MyProperties' to new syntax.
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// Use the non-batching version of this shader if you are using
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// local mode, and are seeing the textures move when you zoom in
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// due to dynamic batching. (Dynamic batching converts local vertex
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// data into world space, making local vertex position data unavailable
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// to the shader.)
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Shader "UVFree/Legacy/SpecularTopBottom" {
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Properties {
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// Triplanar space, for UI
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[Toggle(_UVFREE_LOCAL)] _UVFreeLocal ("Use Local Space (instead of Global)", Float) = 0.0
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[Toggle(_UVFREE_VERTEX_COLOR)] _UVFreeVertexColor ("Use Vertex Color", Float) = 0.0
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[Toggle(_UVFREE_RIM)] _UVFreeRim ("Use Rim Lighting", Float) = 0.0
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[Toggle(_UVFREE_BOTTOM)] _UVFreeBottom ("Use Bottom", Float) = 1.0
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[Toggle(_EMISSION)] _Emission ("Use Emission", Float) = 0.0
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_TexPower("Texture Power", Range(0.0,20.0)) = 10.0
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_TopMultiplier ("Top Multiplier (+Y)", Range(0.0,8.0)) = 1.0
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_BottomMultiplier ("Bottom Multiplier (-Y)", Range(0.0,8.0)) = 0.0
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_Color ("Tint", Color) = (1.0,1.0,1.0,1.0)
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_MainTex ("Base Color (RGB) Gloss (A)", 2D) = "white" {}
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_VertexColorStrength("Vertex Color Strength", Range(0.0,1.0)) = 0.0
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_BumpScale("Bump Scale", Range(-2.0, 2.0)) = 1.0
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_BumpMap("Normal Map", 2D) = "bump" {}
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_Shininess("Shininess", Range(0.01, 1.0)) = 0.078125
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_SpecColor("Specular", Color) = (0.5,0.5,0.5,1.0)
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_EmissionMultiplier("Emission Multiplier", Float) = 0.0
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_EmissionColor("Emission Color", Color) = (0.0,0.0,0.0)
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_EmissionMap("Emission", 2D) = "white" {}
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_RimMultiplier ("Rim Multiplier", Range(0.0,8.0)) = 0.0
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_RimColor ("Rim Color (RGB) Strength (A)", Color) = (1.0,1.0,1.0,1.0)
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_RimPower ("Rim Power", Range(0.0, 16.0)) = 5.0
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_TopColor ("Tint", Color) = (1.0,1.0,1.0,1.0)
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_TopMainTex ("Base Color (RGB) Gloss (A)", 2D) = "white" {}
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_TopBumpScale("Bump Scale", Range(-2.0, 2.0)) = 1.0
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_TopBumpMap("Normal Map", 2D) = "bump" {}
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_TopShininess("Shininess", Range(0.01, 1.0)) = 0.078125
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_TopEmissionMultiplier("Emission Multiplier", Float) = 0.0
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_TopEmissionColor("Emission Color", Color) = (0.0,0.0,0.0)
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_TopEmissionMap("Emission", 2D) = "white" {}
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_BottomColor ("Tint", Color) = (1.0,1.0,1.0,1.0)
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_BottomMainTex ("Base Color (RGB) Gloss (A)", 2D) = "white" {}
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_BottomBumpScale("Bump Scale", Range(-2.0, 2.0)) = 1.0
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_BottomBumpMap("Normal Map", 2D) = "bump" {}
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_BottomEmissionMultiplier("Emission Multiplier", Float) = 0
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_BottomEmissionColor("Emission Color", Color) = (0.0,0.0,0.0)
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_BottomEmissionMap("Emission", 2D) = "white" {}
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_BottomShininess("Shininess", Range(0.01, 1.0)) = 0.078125
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}
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SubShader {
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Tags {
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"RenderType"="Opaque"
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"PerformanceChecks"="False"
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}
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LOD 300
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CGPROGRAM
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#pragma target 3.0
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#pragma shader_feature _UVFREE_LOCAL
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#pragma shader_feature _UVFREE_RIM
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#pragma shader_feature _UVFREE_BOTTOM
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#pragma shader_feature _UVFREE_VERTEX_COLOR
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#pragma shader_feature _EMISSION
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// Uncomment to enable experimental feature which flips
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// backward textures. Note: Causes some normals to be flipped.
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// #define _UVFREE_FLIP_BACKWARD_TEXTURES
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#pragma surface surf BlinnPhong vertex:vert fullforwardshadows
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#include "UnityCG.cginc"
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// Instanced Properties
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// https://docs.unity3d.com/Manual/GPUInstancing.html
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UNITY_INSTANCING_BUFFER_START (MyProperties)
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UNITY_DEFINE_INSTANCED_PROP(fixed4, _Color)
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#define _Color_arr MyProperties
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UNITY_INSTANCING_BUFFER_END(MyProperties)
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// Non-instanced properties
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//
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half _TexPower;
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// MAIN
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fixed _VertexColorStrength;
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sampler2D _MainTex;
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float4 _MainTex_ST;
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sampler2D _BumpMap;
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half _BumpScale;
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sampler2D _EmissionMap;
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half _EmissionMultiplier;
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half4 _EmissionColor;
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fixed4 _RimColor;
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half _RimPower;
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half _RimMultiplier;
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float _Shininess;
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// TOP
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half _TopMultiplier;
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fixed4 _TopColor;
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sampler2D _TopMainTex;
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float4 _TopMainTex_ST;
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sampler2D _TopBumpMap;
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half _TopBumpScale;
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sampler2D _TopEmissionMap;
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half _TopEmissionMultiplier;
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half4 _TopEmissionColor;
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float _TopShininess;
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// BOTTOM
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#ifdef _UVFREE_BOTTOM
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half _BottomMultiplier;
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fixed4 _BottomColor;
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sampler2D _BottomMainTex;
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float4 _BottomMainTex_ST;
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sampler2D _BottomBumpMap;
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half _BottomBumpScale;
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sampler2D _BottomEmissionMap;
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half _BottomEmissionMultiplier;
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half4 _BottomEmissionColor;
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float _BottomShininess;
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#endif
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struct Input {
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fixed3 powerNormal;
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fixed3 normal;
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float3 worldPos;
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#ifdef _UVFREE_RIM
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fixed3 viewDir;
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#endif
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#ifdef _UVFREE_VERTEX_COLOR
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fixed4 color:COLOR;
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#endif
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UNITY_VERTEX_INPUT_INSTANCE_ID
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};
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void vert (inout appdata_full v, out Input o) {
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UNITY_INITIALIZE_OUTPUT(Input,o);
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#ifdef _UVFREE_LOCAL
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o.normal = v.normal;
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fixed3 powerNormal = v.normal;
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fixed3 weightedPowerNormal = v.normal;
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#else
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fixed3 worldNormal = normalize(mul(unity_ObjectToWorld, fixed4(v.normal, 0.0)).xyz);
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o.normal = worldNormal;
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fixed3 powerNormal = worldNormal;
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fixed3 weightedPowerNormal = worldNormal;
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#endif
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// texpower sets the sharpness
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powerNormal = pow(abs(powerNormal), _TexPower);
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powerNormal = max(powerNormal, 0.0001);
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powerNormal /= dot(powerNormal, 1.0);
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o.powerNormal = powerNormal;
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#ifdef _UVFREE_BOTTOM
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weightedPowerNormal.y = max(0.0, weightedPowerNormal.y)*_TopMultiplier + min(0.0, weightedPowerNormal.y)*_BottomMultiplier;
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#else
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weightedPowerNormal.y = max(0.0, weightedPowerNormal.y)*_TopMultiplier + min(0.0, weightedPowerNormal.y);
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#endif
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weightedPowerNormal = pow(abs(weightedPowerNormal), _TexPower);
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weightedPowerNormal = max(weightedPowerNormal, 0.0001);
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weightedPowerNormal /= dot(weightedPowerNormal, 1.0);
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fixed3 lerpedPowerNormal = lerp(powerNormal, weightedPowerNormal, weightedPowerNormal.y);
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#ifdef _UVFREE_LOCAL
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v.tangent.xyz =
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cross(v.normal, fixed3(0.0,sign(v.normal.x),0.0)) * (lerpedPowerNormal.x)
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+ cross(v.normal, fixed3(0.0,0.0,sign(v.normal.y))) * (lerpedPowerNormal.y)
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+ cross(v.normal, fixed3(0.0,sign(v.normal.z),0.0)) * (lerpedPowerNormal.z)
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;
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v.tangent.w = dot(-v.normal, lerpedPowerNormal);
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#else
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v.tangent.xyz =
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cross(v.normal, mul(unity_WorldToObject,fixed4(0.0,sign(worldNormal.x),0.0,0.0)).xyz * (lerpedPowerNormal.x))
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+ cross(v.normal, mul(unity_WorldToObject,fixed4(0.0,0.0,sign(worldNormal.y),0.0)).xyz * (lerpedPowerNormal.y))
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+ cross(v.normal, mul(unity_WorldToObject,fixed4(0.0,sign(worldNormal.z),0.0,0.0)).xyz * (lerpedPowerNormal.z))
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;
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v.tangent.w = dot(-worldNormal, lerpedPowerNormal);
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#endif
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}
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void surf (Input IN, inout SurfaceOutput o) {
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fixed topLerp = smoothstep(0.0, 1.0, _TopMultiplier);
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#ifdef _UVFREE_BOTTOM
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fixed bottomLerp = smoothstep(0.0, 1.0, _BottomMultiplier);
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#endif
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fixed3 weightedPowerNormal = IN.normal;
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#ifdef _UVFREE_BOTTOM
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weightedPowerNormal.y = max(0.0, weightedPowerNormal.y)*_TopMultiplier + min(0.0, weightedPowerNormal.y)*_BottomMultiplier;
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#else
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weightedPowerNormal.y = max(0.0, weightedPowerNormal.y)*_TopMultiplier + min(0.0, weightedPowerNormal.y);
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#endif
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weightedPowerNormal = pow(abs(weightedPowerNormal), _TexPower);
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weightedPowerNormal = max(weightedPowerNormal, 0.0001);
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weightedPowerNormal /= dot(weightedPowerNormal, 1.0);
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fixed topBottomLerp = sign(IN.normal.y)*0.5 + 0.5;
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fixed yLerp = weightedPowerNormal.y;
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// TRIPLANAR UVs BASED ON WORLD OR LOCAL POSITION
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//
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#ifdef _UVFREE_LOCAL
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float3 pos = mul(unity_WorldToObject, float4(IN.worldPos, 1.0)).xyz;
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float2 posX = pos.zy;
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float2 posY = pos.xz;
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float2 posZ = float2(-pos.x, pos.y);
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#else
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float2 posX = IN.worldPos.zy;
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float2 posY = IN.worldPos.xz;
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float2 posZ = float2(-IN.worldPos.x, IN.worldPos.y);
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#endif
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float2 xUV = posX * _MainTex_ST.xy + _MainTex_ST.zw;
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float2 yUVTop = posY * _TopMainTex_ST.xy + _TopMainTex_ST.zw;
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#ifdef _UVFREE_BOTTOM
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float2 yUVBottom = posY * _BottomMainTex_ST.xy + _BottomMainTex_ST.zw;
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#endif
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float2 yUV = posY * _MainTex_ST.xy + _MainTex_ST.zw;
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float2 zUV = posZ * _MainTex_ST.xy + _MainTex_ST.zw;
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#ifdef _UVFREE_FLIP_BACKWARD_TEXTURES
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fixed3 powerSign = sign(IN.normal);
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xUV.x *= powerSign.x;
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zUV.x *= powerSign.z;
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yUV.y *= powerSign.y;
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yUVTop.y *= powerSign.y;
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#ifdef _UVFREE_BOTTOM
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yUVBottom.y *= powerSign.y;
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#endif
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#endif
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// DIFFUSE
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//
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fixed4 tint = UNITY_ACCESS_INSTANCED_PROP (_Color_arr, _Color);
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fixed4 texX = tex2D(_MainTex, xUV) * tint;
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fixed4 texY = tex2D(_MainTex, yUV) * tint;
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fixed4 texZ = tex2D(_MainTex, zUV) * tint;
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fixed4 texTop = tex2D(_TopMainTex, yUVTop) * _TopColor;
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texTop = lerp(texY, texTop, topLerp);
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#ifdef _UVFREE_BOTTOM
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fixed4 texBottom = tex2D(_BottomMainTex, yUVBottom) * _BottomColor;
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texBottom = lerp(texY, texBottom, bottomLerp);
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texTop = lerp(texBottom, texTop, topBottomLerp);
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#else
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texTop = lerp(texY, texTop, topBottomLerp);
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#endif
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fixed4 tex =
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lerp(texX * IN.powerNormal.x, texTop * weightedPowerNormal.x, yLerp)
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+ lerp(texY * IN.powerNormal.y, texTop * weightedPowerNormal.y, yLerp)
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+ lerp(texZ * IN.powerNormal.z, texTop * weightedPowerNormal.z, yLerp)
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;
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#ifdef _UVFREE_VERTEX_COLOR
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tex *= lerp(fixed4(1.0,1.0,1.0,1.0), IN.color, _VertexColorStrength);
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#endif
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o.Albedo = max(fixed3(0.001,0.001,0.001), tex.rgb);
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o.Alpha = 1.0;
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// NORMAL
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//
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fixed3 bumpX = UnpackScaleNormal(tex2D(_BumpMap, xUV), _BumpScale);
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fixed3 bumpY = UnpackScaleNormal(tex2D(_BumpMap, yUV), _BumpScale);
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fixed3 bumpZ = UnpackScaleNormal(tex2D(_BumpMap, zUV), _BumpScale);
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fixed3 bumpTop = UnpackScaleNormal(tex2D(_TopBumpMap, yUVTop), _TopBumpScale);
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bumpTop = lerp(bumpY, bumpTop, topLerp);
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#ifdef _UVFREE_BOTTOM
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fixed3 bumpBottom = UnpackScaleNormal(tex2D(_BottomBumpMap, yUVBottom), _BottomBumpScale);
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bumpBottom = lerp(bumpY, bumpBottom, bottomLerp);
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bumpTop = lerp(bumpBottom, bumpTop, topBottomLerp);
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#else
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bumpTop = lerp(bumpY, bumpTop, topBottomLerp);
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#endif
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fixed3 bump =
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lerp(bumpX * IN.powerNormal.x, bumpTop * weightedPowerNormal.x, yLerp)
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+ lerp(bumpY * IN.powerNormal.y, bumpTop * weightedPowerNormal.y, yLerp)
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+ lerp(bumpZ * IN.powerNormal.z, bumpTop * weightedPowerNormal.z, yLerp)
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;
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o.Normal = normalize(bump);
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// SHININESS/GLOSS
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//
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o.Gloss = tex.a;
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float sgY = _Shininess;
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float sgTop = _TopShininess;
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#ifdef _UVFREE_BOTTOM
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float sgBottom = _BottomShininess;
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#endif
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sgTop = lerp(sgY, sgTop, topLerp);
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#ifdef _UVFREE_BOTTOM
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sgBottom = lerp(sgY, sgBottom, bottomLerp);
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sgTop = lerp(sgBottom, sgTop, topBottomLerp);
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#else
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sgTop = lerp(sgY, sgTop, topBottomLerp);
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#endif
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float sg =
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lerp(sgY * IN.powerNormal.x, sgTop * weightedPowerNormal.x, yLerp)
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+ lerp(sgY * IN.powerNormal.y, sgTop * weightedPowerNormal.y, yLerp)
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+ lerp(sgY * IN.powerNormal.z, sgTop * weightedPowerNormal.z, yLerp)
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;
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o.Gloss = tex.a * _SpecColor.a;
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o.Specular = sg;
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// RIM
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//
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#ifdef _UVFREE_RIM
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half rimStrength = 1.0 - max(0.0, dot(normalize(IN.viewDir), o.Normal));
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o.Emission = _RimMultiplier * _RimColor.rgb * pow(rimStrength, _RimPower) * _RimColor.a;
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#endif
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// EMISSION
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//
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#ifdef _EMISSION
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half3 emissionX = tex2D(_EmissionMap, xUV).rgb * _EmissionColor.rgb * _EmissionMultiplier;
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half3 emissionY = tex2D(_EmissionMap, yUV).rgb * _EmissionColor.rgb * _EmissionMultiplier;
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half3 emissionZ = tex2D(_EmissionMap, zUV).rgb * _EmissionColor.rgb * _EmissionMultiplier;
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half3 emissionYTop = tex2D(_TopEmissionMap, yUVTop).rgb * _TopEmissionColor.rgb * _TopEmissionMultiplier;
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emissionYTop = lerp(emissionY, emissionYTop, topLerp);
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#ifdef _UVFREE_BOTTOM
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half3 emissionYBottom = tex2D(_BottomEmissionMap, yUVBottom).rgb * _BottomEmissionColor.rgb * _BottomEmissionMultiplier;
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emissionYBottom = lerp(emissionY, emissionYBottom, bottomLerp);
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emissionYTop = lerp(emissionYBottom, emissionYTop, topBottomLerp);
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#else
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emissionYTop = lerp(emissionY, emissionYTop, topBottomLerp);
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#endif
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o.Emission +=
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lerp(emissionX * IN.powerNormal.x, emissionYTop * weightedPowerNormal.x, yLerp)
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+ lerp(emissionY * IN.powerNormal.y, emissionYTop * weightedPowerNormal.y, yLerp)
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+ lerp(emissionZ * IN.powerNormal.z, emissionYTop * weightedPowerNormal.z, yLerp)
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;
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#endif
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}
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ENDCG
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}
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FallBack "Diffuse"
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CustomEditor "UVFreeLegacyTopBottomGUI"
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}
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