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236 行
6.9 KiB
236 行
6.9 KiB
Shader "Hidden/HDRenderPipeline/EyeAdaptation"
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{
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Properties
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{
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_MainTex("Texture", any) = "" {}
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}
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HLSLINCLUDE
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#pragma target 4.5
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#include "Common.hlsl"
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#include "Assets/ScriptableRenderLoop/HDRenderPipeline/ShaderVariables.hlsl"
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#include "EyeAdaptation.hlsl"
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TEXTURE2D(_MainTex);
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SAMPLER2D(sampler_MainTex);
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float4 _Params; // x: lowPercent, y: highPercent, z: minBrightness, w: maxBrightness
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float2 _Speed; // x: down, y: up
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float4 _ScaleOffsetRes; // x: scale, y: offset, w: histogram pass width, h: histogram pass height
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float _ExposureCompensation;
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StructuredBuffer<uint> _Histogram;
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float GetBinValue(uint index, float maxHistogramValue)
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{
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return float(_Histogram[index]) * maxHistogramValue;
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}
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float FindMaxHistogramValue()
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{
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uint maxValue = 0u;
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for (uint i = 0; i < HISTOGRAM_BINS; i++)
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{
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uint h = _Histogram[i];
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maxValue = max(maxValue, h);
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}
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return float(maxValue);
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}
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void FilterLuminance(uint i, float maxHistogramValue, inout float4 filter)
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{
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float binValue = GetBinValue(i, maxHistogramValue);
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// Filter dark areas
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float offset = min(filter.z, binValue);
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binValue -= offset;
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filter.zw -= offset.xx;
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// Filter highlights
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binValue = min(filter.w, binValue);
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filter.w -= binValue;
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// Luminance at the bin
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float luminance = GetLuminanceFromHistogramBin(float(i) / float(HISTOGRAM_BINS), _ScaleOffsetRes.xy);
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filter.xy += float2(luminance * binValue, binValue);
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}
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float GetAverageLuminance(float maxHistogramValue)
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{
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// Sum of all bins
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uint i;
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float totalSum = 0.0;
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[loop]
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for (i = 0; i < HISTOGRAM_BINS; i++)
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totalSum += GetBinValue(i, maxHistogramValue);
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// Skip darker and lighter parts of the histogram to stabilize the auto exposure
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// x: filtered sum
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// y: accumulator
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// zw: fractions
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float4 filter = float4(0.0, 0.0, totalSum * _Params.xy);
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[loop]
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for (i = 0; i < HISTOGRAM_BINS; i++)
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FilterLuminance(i, maxHistogramValue, filter);
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// Clamp to user brightness range
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return clamp(filter.x / max(filter.y, 1.0e-4), _Params.z, _Params.w);
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}
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float GetExposureMultiplier(float avgLuminance)
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{
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avgLuminance = max(1.0e-4, avgLuminance);
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//half keyValue = 1.03 - (2.0 / (2.0 + log2(avgLuminance + 1.0)));
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half keyValue = _ExposureCompensation;
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half exposure = keyValue / avgLuminance;
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return exposure;
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}
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float InterpolateExposure(float newExposure, float oldExposure)
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{
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float delta = newExposure - oldExposure;
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float speed = delta > 0.0 ? _Speed.x : _Speed.y;
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float exposure = oldExposure + delta * (1.0 - exp2(-unity_DeltaTime.x * speed));
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//float exposure = oldExposure + delta * (unity_DeltaTime.x * speed);
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return exposure;
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}
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struct Attributes
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{
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float4 vertex : POSITION;
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float4 texcoord : TEXCOORD0;
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};
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struct Varyings
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{
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float4 pos : SV_POSITION;
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float2 uv : TEXCOORD0;
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};
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Varyings Vert(Attributes v)
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{
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Varyings o;
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o.pos = TransformWorldToHClip(v.vertex.xyz);
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o.uv = v.texcoord.xy;
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return o;
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}
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float4 FragAdaptProgressive(Varyings i) : SV_Target
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{
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float maxValue = 1.0 / FindMaxHistogramValue();
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float avgLuminance = GetAverageLuminance(maxValue);
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float exposure = GetExposureMultiplier(avgLuminance);
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float prevExposure = SAMPLE_TEXTURE2D(_MainTex, sampler_MainTex, (0.5).xx).r;
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exposure = InterpolateExposure(exposure, prevExposure);
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return exposure.xxxx;
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}
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float4 FragAdaptFixed(Varyings i) : SV_Target
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{
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float maxValue = 1.0 / FindMaxHistogramValue();
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float avgLuminance = GetAverageLuminance(maxValue);
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float exposure = GetExposureMultiplier(avgLuminance);
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return exposure.xxxx;
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}
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// Editor stuff (histogram debug visualization)
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int _DebugWidth;
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struct VaryingsEditorHisto
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{
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float4 pos : SV_POSITION;
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float2 uv : TEXCOORD0;
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float maxValue : TEXCOORD1;
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float avgLuminance : TEXCOORD2;
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};
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VaryingsEditorHisto VertEditorHisto(Attributes v)
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{
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VaryingsEditorHisto o;
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o.pos = TransformWorldToHClip(v.vertex.xyz);
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o.uv = v.texcoord.xy;
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o.maxValue = 1.0 / FindMaxHistogramValue();
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o.avgLuminance = GetAverageLuminance(o.maxValue);
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return o;
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}
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float4 FragEditorHisto(VaryingsEditorHisto i) : SV_Target
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{
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const float3 kRangeColor = float3(0.05, 0.4, 0.6);
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const float3 kAvgColor = float3(0.8, 0.3, 0.05);
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float4 color = float4(0.0, 0.0, 0.0, 0.7);
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uint ix = (uint)(round(i.uv.x * HISTOGRAM_BINS));
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float bin = saturate(float(_Histogram[ix]) * i.maxValue);
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float fill = step(i.uv.y, bin);
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// Min / max brightness markers
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float luminanceMin = GetHistogramBinFromLuminance(_Params.z, _ScaleOffsetRes.xy);
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float luminanceMax = GetHistogramBinFromLuminance(_Params.w, _ScaleOffsetRes.xy);
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color.rgb += fill.rrr;
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if (i.uv.x > luminanceMin && i.uv.x < luminanceMax)
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{
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color.rgb = fill.rrr * kRangeColor;
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color.rgb += kRangeColor;
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}
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// Current average luminance marker
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float luminanceAvg = GetHistogramBinFromLuminance(i.avgLuminance, _ScaleOffsetRes.xy);
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float avgPx = luminanceAvg * _DebugWidth;
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if (abs(i.pos.x - avgPx) < 2)
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color.rgb = kAvgColor;
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return color;
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}
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ENDHLSL
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SubShader
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{
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Cull Off ZWrite Off ZTest Always
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Pass
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{
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HLSLPROGRAM
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#pragma vertex Vert
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#pragma fragment FragAdaptProgressive
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ENDHLSL
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}
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Pass
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{
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HLSLPROGRAM
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#pragma vertex Vert
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#pragma fragment FragAdaptFixed
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ENDHLSL
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}
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Pass
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{
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HLSLPROGRAM
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#pragma vertex VertEditorHisto
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#pragma fragment FragEditorHisto
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ENDHLSL
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}
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}
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Fallback Off
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}
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