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132 行
4.4 KiB
132 行
4.4 KiB
#ifndef LIGHTWEIGHT_PASS_LIT_INCLUDED
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#define LIGHTWEIGHT_PASS_LIT_INCLUDED
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#include "LightweightShaderLibrary/InputSurface.hlsl"
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#include "LightweightShaderLibrary/Lighting.hlsl"
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struct LightweightVertexInput
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{
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float4 vertex : POSITION;
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float3 normal : NORMAL;
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float4 tangent : TANGENT;
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float2 texcoord : TEXCOORD0;
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float2 lightmapUV : TEXCOORD1;
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};
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struct LightweightVertexOutput
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{
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float2 uv : TEXCOORD0;
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float4 lightmapUVOrVertexSH : TEXCOORD1; // holds either lightmapUV or vertex SH. depending on LIGHTMAP_ON
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float3 posWS : TEXCOORD2;
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half3 normal : TEXCOORD3;
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#if _NORMALMAP
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half3 tangent : TEXCOORD4;
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half3 binormal : TEXCOORD5;
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#endif
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half3 viewDir : TEXCOORD6;
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half4 fogFactorAndVertexLight : TEXCOORD7; // x: fogFactor, yzw: vertex light
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float4 clipPos : SV_POSITION;
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};
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///////////////////////////////////////////////////////////////////////////////
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// Vertex and Fragment functions //
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///////////////////////////////////////////////////////////////////////////////
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// Vertex: Used for Standard and StandardSimpleLighting shaders
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LightweightVertexOutput LitPassVertex(LightweightVertexInput v)
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{
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LightweightVertexOutput o = (LightweightVertexOutput)0;
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o.uv = TRANSFORM_TEX(v.texcoord, _MainTex);
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o.posWS = TransformObjectToWorld(v.vertex.xyz);
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o.clipPos = TransformWorldToHClip(o.posWS);
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o.viewDir = SafeNormalize(_WorldSpaceCameraPos - o.posWS);
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// initializes o.normal and if _NORMALMAP also o.tangent and o.binormal
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OUTPUT_NORMAL(v, o);
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// We either sample GI from lightmap or SH. lightmap UV and vertex SH coefficients
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// are packed in lightmapUVOrVertexSH to save interpolator.
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// The following funcions initialize
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OUTPUT_LIGHTMAP_UV(v.lightmapUV, unity_LightmapST, o.lightmapUVOrVertexSH);
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OUTPUT_SH(o.normal, o.lightmapUVOrVertexSH);
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half3 vertexLight = VertexLighting(o.posWS, o.normal);
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half fogFactor = ComputeFogFactor(o.clipPos.z);
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o.fogFactorAndVertexLight = half4(fogFactor, vertexLight);
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return o;
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}
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// Used for Standard shader
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half4 LitPassFragment(LightweightVertexOutput IN) : SV_Target
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{
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SurfaceData surfaceData;
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InitializeStandardLitSurfaceData(IN.uv, surfaceData);
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#if _NORMALMAP
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half3 normalWS = TangentToWorldNormal(surfaceData.normal, IN.tangent, IN.binormal, IN.normal);
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#else
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half3 normalWS = normalize(IN.normal);
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#endif
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half3 indirectDiffuse = SampleGI(IN.lightmapUVOrVertexSH, normalWS);
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float fogFactor = IN.fogFactorAndVertexLight.x;
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half4 color = LightweightFragmentPBR(IN.posWS.xyz, normalWS, IN.viewDir, indirectDiffuse, IN.fogFactorAndVertexLight.yzw, surfaceData.albedo, surfaceData.metallic, surfaceData.specular, surfaceData.smoothness, surfaceData.occlusion, surfaceData.emission, surfaceData.alpha);
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// Computes fog factor per-vertex
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ApplyFog(color.rgb, fogFactor);
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return color;
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}
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// Used for StandardSimpleLighting shader
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half4 LitPassFragmentSimple(LightweightVertexOutput IN) : SV_Target
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{
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float2 uv = IN.uv;
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half4 diffuseAlpha = SAMPLE_TEXTURE2D(_MainTex, sampler_MainTex, uv);
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half3 diffuse = diffuseAlpha.rgb * _Color.rgb;
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#ifdef _GLOSSINESS_FROM_BASE_ALPHA
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half alpha = _Color.a;
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#else
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half alpha = diffuseAlpha.a * _Color.a;
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#endif
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AlphaDiscard(alpha, _Cutoff);
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#if _NORMALMAP
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half3 normalTangent = Normal(uv);
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half3 normalWS = TangentToWorldNormal(normalTangent, IN.tangent, IN.binormal, IN.normal);
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#else
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half3 normalWS = normalize(IN.normal);
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#endif
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half3 emission = Emission(uv);
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half3 viewDirectionWS = SafeNormalize(IN.viewDir.xyz);
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float3 positionWS = IN.posWS.xyz;
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half3 diffuseGI = SampleGI(IN.lightmapUVOrVertexSH, normalWS);
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#if _VERTEX_LIGHTS
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diffuseGI += IN.fogFactorAndVertexLight.yzw;
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#endif
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half shininess = _Shininess * 128.0h;
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half fogFactor = IN.fogFactorAndVertexLight.x;
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#if defined(_SPECGLOSSMAP) || defined(_SPECULAR_COLOR)
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half4 specularGloss = SpecularGloss(uv, diffuseAlpha.a);
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return LightweightFragmentBlinnPhong(positionWS, normalWS, viewDirectionWS, fogFactor, diffuseGI, diffuse, specularGloss, shininess, emission, alpha);
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#else
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return LightweightFragmentLambert(positionWS, normalWS, viewDirectionWS, fogFactor, diffuseGI, diffuse, emission, alpha);
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#endif
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};
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#endif
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