#include "endian.hlsli" #include "resolve.hlsli" RWBuffer xe_resolve_dest : register(u0); Buffer xe_resolve_source : register(t0); [numthreads(8, 8, 1)] void main(uint3 xe_thread_id : SV_DispatchThreadID) { // 1 thread = 8 host pixels. uint2 pixel_index = xe_thread_id.xy << uint2(3u, 0u); // Group height can't cross resolve granularity, Y overflow check not needed. [branch] if (pixel_index.x >= XeResolveScaledSize().x) { return; } bool2 duplicate_second = XeResolveDuplicateSecondHostPixel(); uint source_address_int4s = XeEdramOffsetInts( uint2(pixel_index.x, max(pixel_index.y, uint(duplicate_second.y))) + XeResolveScaledOffset(), XeResolveEdramBaseTiles(), XeResolveEdramPitchTiles(), kXenosMsaaSamples_4X, XeResolveEdramIsDepth(), 0u, XeResolveFirstSampleIndex(), XeResolveResolutionScale()) >> 2u; uint4 pixels_0123, pixels_4567; uint sample_select = XeResolveSampleSelect(); [branch] if (sample_select != kXenosCopySampleSelect_2 && sample_select != kXenosCopySampleSelect_3) { pixels_0123.xy = xe_resolve_source[source_address_int4s].xz; pixels_0123.zw = xe_resolve_source[source_address_int4s + 1u].xz; pixels_4567.xy = xe_resolve_source[source_address_int4s + 2u].xz; pixels_4567.zw = xe_resolve_source[source_address_int4s + 3u].xz; } else { pixels_0123.xy = xe_resolve_source[source_address_int4s].yw; pixels_0123.zw = xe_resolve_source[source_address_int4s + 1u].yw; pixels_4567.xy = xe_resolve_source[source_address_int4s + 2u].yw; pixels_4567.zw = xe_resolve_source[source_address_int4s + 3u].yw; } if (duplicate_second.x && pixel_index.x == 0u) { pixels_0123.x = pixels_0123.y; } XeResolveSwap8PixelsRedBlue32bpp(pixels_0123, pixels_4567); uint endian = XeResolveDestEndian128(); uint dest_address = XeResolveDestPixelAddress(pixel_index, 2u) >> 4u; xe_resolve_dest[dest_address] = XeEndianSwap32(pixels_0123, endian); dest_address += XeResolveDestRightConsecutiveBlocksOffset(pixel_index.x, 2u) >> 4u; xe_resolve_dest[dest_address] = XeEndianSwap32(pixels_4567, endian); }