Files
2023-04-23 21:57:20 +08:00

89 lines
3.2 KiB
GLSL

#version 460
#extension GL_GOOGLE_include_directive : enable
#extension GL_EXT_samplerless_texture_functions : require
#include "common/shared_functions.glsl"
layout (set = 0, binding = 0, r32f) uniform image2D hizClosestImage;
layout (set = 0, binding = 1, r32f) uniform image2D hizFurthestImage;
layout (set = 0, binding = 2) uniform texture2D inDepth;
layout (set = 0, binding = 3) uniform texture2D inSrcHizClosest;
layout (set = 0, binding = 4) uniform texture2D inSrcHizFurthest;
layout(push_constant) uniform PushConsts
{
uint bFromSrcDepth; // 0 is from src depth.
};
void hizClosestFurthestCompare(inout vec2 closestFurthest, ivec2 samplePos)
{
float z0 = texelFetch(inSrcHizClosest, samplePos, 0).r;
float z1 = texelFetch(inSrcHizFurthest, samplePos, 0).r;
closestFurthest.x = max(closestFurthest.x, z0); // Reverse z, so max value is closest.
closestFurthest.y = min(closestFurthest.y, z1); // Reverse z, so min value is furthest.
}
layout (local_size_x = 8, local_size_y = 8) in;
void main()
{
uvec2 groupThreadId = remap8x8(gl_LocalInvocationIndex);
uvec2 dispatchId = groupThreadId + gl_WorkGroupID.xy * 8;
ivec2 workPos = ivec2(dispatchId);
ivec2 hizSize = imageSize(hizClosestImage); // Same with hizFurthestImage size.
// border check.
if(workPos.x >= hizSize.x || workPos.y >= hizSize.y)
{
return;
}
// Copy to src mip 0.
const bool bFromDepth = (bFromSrcDepth != 0);
if(bFromDepth)
{
float z = texelFetch(inDepth, workPos, 0).r;
imageStore(hizClosestImage, workPos, vec4(z, 0.0f, 0.0f, 0.0f));
imageStore(hizFurthestImage, workPos, vec4(z, 0.0f, 0.0f, 0.0f));
return;
}
ivec2 srcDim = ivec2(textureSize(inSrcHizClosest, 0));
ivec2 outDim = hizSize;
// Center sample uv.
ivec2 basicSamplePos = workPos * 2;
// 3x3 tent to help depth reduce more balance, also make screen space ray cast acculturate.
vec2 closestFurthest = vec2(0.0, 1.0);
hizClosestFurthestCompare(closestFurthest, basicSamplePos + ivec2(0, 0));
hizClosestFurthestCompare(closestFurthest, basicSamplePos + ivec2(0, 1));
hizClosestFurthestCompare(closestFurthest, basicSamplePos + ivec2(1, 0));
hizClosestFurthestCompare(closestFurthest, basicSamplePos + ivec2(1, 1));
vec2 ratio = vec2(srcDim) / vec2(outDim);
bool needExtraSampleX = ratio.x > 2.0;
bool needExtraSampleY = ratio.y > 2.0;
// Extra sample for odd size src downsample.
// NOTE: In order to keep balance for screen-sapce ray cast, must to sample 3x3 tent each pixel.
if(needExtraSampleX)
{
hizClosestFurthestCompare(closestFurthest, basicSamplePos + ivec2(2, 1));
hizClosestFurthestCompare(closestFurthest, basicSamplePos + ivec2(2, 0));
}
if(needExtraSampleY)
{
hizClosestFurthestCompare(closestFurthest, basicSamplePos + ivec2(0, 2));
hizClosestFurthestCompare(closestFurthest, basicSamplePos + ivec2(1, 2));
}
if(needExtraSampleX && needExtraSampleY)
{
hizClosestFurthestCompare(closestFurthest, basicSamplePos + ivec2(2, 2));
}
imageStore(hizClosestImage, workPos, vec4(closestFurthest.x, 0.0f, 0.0f, 0.0f));
imageStore(hizFurthestImage, workPos, vec4(closestFurthest.y, 0.0f, 0.0f, 0.0f));
}