mirror of
https://github.com/GreemDev/Ryujinx
synced 2024-12-04 23:42:10 +01:00
c86aacde76
* Initial nvdec implementation using FFmpeg * Fix swapped channels on the video decoder and the G8R8 texture format * Fix texture samplers not being set properly (regression) * Rebased * Remove unused code introduced on the rebase * Add support for RGBA8 output format on the video image composer * Correct spacing * Some fixes for rebase and other tweaks * Allow size mismatch on frame copy * Get rid of GetHostAddress calls on VDec
117 lines
No EOL
3.9 KiB
C#
117 lines
No EOL
3.9 KiB
C#
using Ryujinx.Graphics.Gal;
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using Ryujinx.Graphics.Memory;
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using System;
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namespace Ryujinx.Graphics.Texture
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{
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static class TextureFactory
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{
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public static GalImage MakeTexture(NvGpuVmm Vmm, long TicPosition)
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{
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int[] Tic = ReadWords(Vmm, TicPosition, 8);
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GalImageFormat Format = GetImageFormat(Tic);
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GalTextureSource XSource = (GalTextureSource)((Tic[0] >> 19) & 7);
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GalTextureSource YSource = (GalTextureSource)((Tic[0] >> 22) & 7);
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GalTextureSource ZSource = (GalTextureSource)((Tic[0] >> 25) & 7);
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GalTextureSource WSource = (GalTextureSource)((Tic[0] >> 28) & 7);
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TextureSwizzle Swizzle = (TextureSwizzle)((Tic[2] >> 21) & 7);
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GalMemoryLayout Layout;
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if (Swizzle == TextureSwizzle.BlockLinear ||
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Swizzle == TextureSwizzle.BlockLinearColorKey)
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{
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Layout = GalMemoryLayout.BlockLinear;
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}
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else
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{
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Layout = GalMemoryLayout.Pitch;
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}
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int BlockHeightLog2 = (Tic[3] >> 3) & 7;
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int TileWidthLog2 = (Tic[3] >> 10) & 7;
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int BlockHeight = 1 << BlockHeightLog2;
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int TileWidth = 1 << TileWidthLog2;
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int Width = (Tic[4] & 0xffff) + 1;
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int Height = (Tic[5] & 0xffff) + 1;
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GalImage Image = new GalImage(
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Width,
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Height,
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TileWidth,
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BlockHeight,
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Layout,
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Format,
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XSource,
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YSource,
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ZSource,
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WSource);
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if (Layout == GalMemoryLayout.Pitch)
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{
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Image.Pitch = (Tic[3] & 0xffff) << 5;
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}
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return Image;
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}
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public static GalTextureSampler MakeSampler(NvGpu Gpu, NvGpuVmm Vmm, long TscPosition)
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{
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int[] Tsc = ReadWords(Vmm, TscPosition, 8);
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GalTextureWrap AddressU = (GalTextureWrap)((Tsc[0] >> 0) & 7);
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GalTextureWrap AddressV = (GalTextureWrap)((Tsc[0] >> 3) & 7);
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GalTextureWrap AddressP = (GalTextureWrap)((Tsc[0] >> 6) & 7);
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GalTextureFilter MagFilter = (GalTextureFilter) ((Tsc[1] >> 0) & 3);
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GalTextureFilter MinFilter = (GalTextureFilter) ((Tsc[1] >> 4) & 3);
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GalTextureMipFilter MipFilter = (GalTextureMipFilter)((Tsc[1] >> 6) & 3);
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GalColorF BorderColor = new GalColorF(
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BitConverter.Int32BitsToSingle(Tsc[4]),
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BitConverter.Int32BitsToSingle(Tsc[5]),
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BitConverter.Int32BitsToSingle(Tsc[6]),
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BitConverter.Int32BitsToSingle(Tsc[7]));
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return new GalTextureSampler(
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AddressU,
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AddressV,
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AddressP,
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MinFilter,
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MagFilter,
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MipFilter,
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BorderColor);
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}
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private static GalImageFormat GetImageFormat(int[] Tic)
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{
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GalTextureType RType = (GalTextureType)((Tic[0] >> 7) & 7);
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GalTextureType GType = (GalTextureType)((Tic[0] >> 10) & 7);
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GalTextureType BType = (GalTextureType)((Tic[0] >> 13) & 7);
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GalTextureType AType = (GalTextureType)((Tic[0] >> 16) & 7);
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GalTextureFormat Format = (GalTextureFormat)(Tic[0] & 0x7f);
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bool ConvSrgb = ((Tic[4] >> 22) & 1) != 0;
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return ImageUtils.ConvertTexture(Format, RType, GType, BType, AType, ConvSrgb);
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}
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private static int[] ReadWords(NvGpuVmm Vmm, long Position, int Count)
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{
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int[] Words = new int[Count];
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for (int Index = 0; Index < Count; Index++, Position += 4)
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{
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Words[Index] = Vmm.ReadInt32(Position);
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}
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return Words;
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}
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}
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} |