forked from Mirror/Ryujinx
[Ryujinx.Graphics.Nvdec] Address dotnet-format issues (#5369)
* dotnet format style --severity info Some changes were manually reverted. * Restore a few unused methods and variables * Address most dotnet format whitespace warnings * Apply dotnet format whitespace formatting A few of them have been manually reverted and the corresponding warning was silenced * Add previously silenced warnings back I have no clue how these disappeared * Add comments to disabled warnings * Simplify properties and array initialization, Use const when possible, Remove trailing commas * Address IDE0251 warnings * Revert "Simplify properties and array initialization, Use const when possible, Remove trailing commas" This reverts commit 9462e4136c0a2100dc28b20cf9542e06790aa67e. * dotnet format whitespace after rebase * First dotnet format pass
This commit is contained in:
parent
fd01259d2b
commit
07fc3ded68
18 changed files with 51 additions and 50 deletions
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@ -17,12 +17,12 @@ namespace Ryujinx.Graphics.Nvdec
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ReadOnlySpan<byte> bitstream = rm.Gmm.DeviceGetSpan(state.SetInBufBaseOffset, (int)pictureInfo.BitstreamSize);
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ReadOnlySpan<byte> bitstream = rm.Gmm.DeviceGetSpan(state.SetInBufBaseOffset, (int)pictureInfo.BitstreamSize);
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int width = (int)pictureInfo.PicWidthInMbs * MbSizeInPixels;
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int width = (int)pictureInfo.PicWidthInMbs * MbSizeInPixels;
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int height = (int)pictureInfo.PicHeightInMbs * MbSizeInPixels;
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int height = (int)pictureInfo.PicHeightInMbs * MbSizeInPixels;
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int surfaceIndex = (int)pictureInfo.OutputSurfaceIndex;
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int surfaceIndex = (int)pictureInfo.OutputSurfaceIndex;
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uint lumaOffset = state.SetPictureLumaOffset[surfaceIndex];
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uint lumaOffset = state.SetPictureLumaOffset[surfaceIndex];
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uint chromaOffset = state.SetPictureChromaOffset[surfaceIndex];
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uint chromaOffset = state.SetPictureChromaOffset[surfaceIndex];
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Decoder decoder = context.GetH264Decoder();
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Decoder decoder = context.GetH264Decoder();
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@ -36,7 +36,7 @@ namespace Ryujinx.Graphics.Nvdec
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SurfaceWriter.Write(
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SurfaceWriter.Write(
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rm.Gmm,
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rm.Gmm,
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outputSurface,
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outputSurface,
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lumaOffset + pictureInfo.LumaFrameOffset,
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lumaOffset + pictureInfo.LumaFrameOffset,
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chromaOffset + pictureInfo.ChromaFrameOffset);
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chromaOffset + pictureInfo.ChromaFrameOffset);
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}
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}
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else
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else
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@ -44,9 +44,9 @@ namespace Ryujinx.Graphics.Nvdec
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SurfaceWriter.WriteInterlaced(
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SurfaceWriter.WriteInterlaced(
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rm.Gmm,
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rm.Gmm,
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outputSurface,
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outputSurface,
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lumaOffset + pictureInfo.LumaTopFieldOffset,
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lumaOffset + pictureInfo.LumaTopFieldOffset,
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chromaOffset + pictureInfo.ChromaTopFieldOffset,
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chromaOffset + pictureInfo.ChromaTopFieldOffset,
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lumaOffset + pictureInfo.LumaBottomFieldOffset,
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lumaOffset + pictureInfo.LumaBottomFieldOffset,
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chromaOffset + pictureInfo.ChromaBottomFieldOffset);
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chromaOffset + pictureInfo.ChromaBottomFieldOffset);
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}
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}
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}
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}
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@ -43,7 +43,7 @@ namespace Ryujinx.Graphics.Nvdec.Image
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int width,
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int width,
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int height)
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int height)
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{
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{
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OffsetCalculator calc = new OffsetCalculator(width, height, 0, false, 2, 2);
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OffsetCalculator calc = new(width, height, 0, false, 2, 2);
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if (Sse2.IsSupported)
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if (Sse2.IsSupported)
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{
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{
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@ -60,7 +60,7 @@ namespace Ryujinx.Graphics.Nvdec.Image
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WriteLuma(
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WriteLuma(
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lumaBottom.Memory.Span,
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lumaBottom.Memory.Span,
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surface.YPlane.AsSpan().Slice(surface.Stride),
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surface.YPlane.AsSpan()[surface.Stride..],
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surface.Stride * 2,
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surface.Stride * 2,
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surface.Width,
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surface.Width,
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surface.Height / 2);
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surface.Height / 2);
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@ -80,8 +80,8 @@ namespace Ryujinx.Graphics.Nvdec.Image
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WriteChroma(
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WriteChroma(
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chromaBottom.Memory.Span,
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chromaBottom.Memory.Span,
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surface.UPlane.AsSpan().Slice(surface.UvStride),
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surface.UPlane.AsSpan()[surface.UvStride..],
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surface.VPlane.AsSpan().Slice(surface.UvStride),
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surface.VPlane.AsSpan()[surface.UvStride..],
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surface.UvStride * 2,
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surface.UvStride * 2,
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surface.UvWidth,
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surface.UvWidth,
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surface.UvHeight / 2);
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surface.UvHeight / 2);
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@ -100,7 +100,7 @@ namespace Ryujinx.Graphics.Nvdec.Image
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int width,
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int width,
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int height)
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int height)
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{
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{
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OffsetCalculator calc = new OffsetCalculator(width, height, 0, false, 2, 2);
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OffsetCalculator calc = new(width, height, 0, false, 2, 2);
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if (Sse2.IsSupported)
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if (Sse2.IsSupported)
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{
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{
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@ -14,7 +14,7 @@ namespace Ryujinx.Graphics.Nvdec
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private readonly DeviceState<NvdecRegisters> _state;
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private readonly DeviceState<NvdecRegisters> _state;
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private long _currentId;
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private long _currentId;
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private ConcurrentDictionary<long, NvdecDecoderContext> _contexts;
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private readonly ConcurrentDictionary<long, NvdecDecoderContext> _contexts;
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private NvdecDecoderContext _currentContext;
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private NvdecDecoderContext _currentContext;
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public NvdecDevice(MemoryManager gmm)
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public NvdecDevice(MemoryManager gmm)
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@ -4,7 +4,7 @@ namespace Ryujinx.Graphics.Nvdec
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{
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{
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struct NvdecRegisters
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struct NvdecRegisters
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{
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{
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#pragma warning disable CS0649
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#pragma warning disable CS0649 // Field is never assigned to
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public Array64<uint> Reserved0;
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public Array64<uint> Reserved0;
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public uint Nop;
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public uint Nop;
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public Array63<uint> Reserved104;
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public Array63<uint> Reserved104;
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@ -4,7 +4,7 @@ namespace Ryujinx.Graphics.Nvdec
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{
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{
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struct NvdecStatus
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struct NvdecStatus
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{
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{
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#pragma warning disable CS0649
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#pragma warning disable CS0649 // Field is never assigned to
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public uint MbsCorrectlyDecoded;
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public uint MbsCorrectlyDecoded;
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public uint MbsInError;
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public uint MbsInError;
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public uint Reserved;
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public uint Reserved;
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@ -5,8 +5,9 @@ namespace Ryujinx.Graphics.Nvdec.Types.H264
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{
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{
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struct PictureInfo
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struct PictureInfo
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{
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{
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#pragma warning disable CS0169, CS0649
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#pragma warning disable IDE0051, CS0169, CS0649 // Remove unused private member
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Array18<uint> Unknown0;
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Array18<uint> Unknown0;
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#pragma warning restore IDE0051
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public uint BitstreamSize;
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public uint BitstreamSize;
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public uint NumSlices;
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public uint NumSlices;
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public uint Unknown50;
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public uint Unknown50;
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@ -50,24 +51,24 @@ namespace Ryujinx.Graphics.Nvdec.Types.H264
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public Array10<uint> Unknown2D4;
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public Array10<uint> Unknown2D4;
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#pragma warning restore CS0169, CS0649
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#pragma warning restore CS0169, CS0649
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public bool MbAdaptiveFrameFieldFlag => (Flags & (1 << 0)) != 0;
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public readonly bool MbAdaptiveFrameFieldFlag => (Flags & (1 << 0)) != 0;
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public bool Direct8x8InferenceFlag => (Flags & (1 << 1)) != 0;
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public readonly bool Direct8x8InferenceFlag => (Flags & (1 << 1)) != 0;
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public bool WeightedPredFlag => (Flags & (1 << 2)) != 0;
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public readonly bool WeightedPredFlag => (Flags & (1 << 2)) != 0;
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public bool ConstrainedIntraPredFlag => (Flags & (1 << 3)) != 0;
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public readonly bool ConstrainedIntraPredFlag => (Flags & (1 << 3)) != 0;
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public bool IsReference => (Flags & (1 << 4)) != 0;
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public readonly bool IsReference => (Flags & (1 << 4)) != 0;
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public bool FieldPicFlag => (Flags & (1 << 5)) != 0;
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public readonly bool FieldPicFlag => (Flags & (1 << 5)) != 0;
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public bool BottomFieldFlag => (Flags & (1 << 6)) != 0;
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public readonly bool BottomFieldFlag => (Flags & (1 << 6)) != 0;
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public uint Log2MaxFrameNumMinus4 => (uint)(Flags >> 8) & 0xf;
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public readonly uint Log2MaxFrameNumMinus4 => (uint)(Flags >> 8) & 0xf;
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public ushort ChromaFormatIdc => (ushort)((Flags >> 12) & 3);
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public readonly ushort ChromaFormatIdc => (ushort)((Flags >> 12) & 3);
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public uint PicOrderCntType => (uint)(Flags >> 14) & 3;
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public readonly uint PicOrderCntType => (uint)(Flags >> 14) & 3;
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public int PicInitQpMinus26 => ExtractSx(Flags, 16, 6);
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public readonly int PicInitQpMinus26 => ExtractSx(Flags, 16, 6);
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public int ChromaQpIndexOffset => ExtractSx(Flags, 22, 5);
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public readonly int ChromaQpIndexOffset => ExtractSx(Flags, 22, 5);
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public int SecondChromaQpIndexOffset => ExtractSx(Flags, 27, 5);
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public readonly int SecondChromaQpIndexOffset => ExtractSx(Flags, 27, 5);
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public uint WeightedBipredIdc => (uint)(Flags >> 32) & 3;
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public readonly uint WeightedBipredIdc => (uint)(Flags >> 32) & 3;
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public uint OutputSurfaceIndex => (uint)(Flags >> 34) & 0x7f;
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public readonly uint OutputSurfaceIndex => (uint)(Flags >> 34) & 0x7f;
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public uint ColIndex => (uint)(Flags >> 41) & 0x1f;
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public readonly uint ColIndex => (uint)(Flags >> 41) & 0x1f;
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public ushort FrameNum => (ushort)(Flags >> 46);
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public readonly ushort FrameNum => (ushort)(Flags >> 46);
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public bool QpprimeYZeroTransformBypassFlag => (Flags2 & (1 << 1)) != 0;
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public readonly bool QpprimeYZeroTransformBypassFlag => (Flags2 & (1 << 1)) != 0;
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private static int ExtractSx(ulong packed, int lsb, int length)
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private static int ExtractSx(ulong packed, int lsb, int length)
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{
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{
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@ -4,12 +4,12 @@ namespace Ryujinx.Graphics.Nvdec.Types.H264
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{
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{
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struct ReferenceFrame
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struct ReferenceFrame
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{
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{
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#pragma warning disable CS0649
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#pragma warning disable CS0649 // Field is never assigned to
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public uint Flags;
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public uint Flags;
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public Array2<uint> FieldOrderCnt;
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public Array2<uint> FieldOrderCnt;
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public uint FrameNum;
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public uint FrameNum;
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#pragma warning restore CS0649
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#pragma warning restore CS0649
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public uint OutputSurfaceIndex => (uint)Flags & 0x7f;
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public readonly uint OutputSurfaceIndex => (uint)Flags & 0x7f;
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}
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}
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}
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}
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@ -5,7 +5,7 @@ namespace Ryujinx.Graphics.Nvdec.Types.Vp8
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{
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{
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struct PictureInfo
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struct PictureInfo
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{
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{
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#pragma warning disable CS0649
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#pragma warning disable CS0649 // Field is never assigned to
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public Array13<uint> Unknown0;
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public Array13<uint> Unknown0;
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public uint GpTimerTimeoutValue;
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public uint GpTimerTimeoutValue;
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public ushort FrameWidth;
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public ushort FrameWidth;
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@ -5,7 +5,7 @@ namespace Ryujinx.Graphics.Nvdec.Types.Vp9
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{
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{
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struct EntropyProbs
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struct EntropyProbs
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{
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{
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#pragma warning disable CS0649
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#pragma warning disable CS0649 // Field is never assigned to
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public Array10<Array10<Array8<byte>>> KfYModeProbE0ToE7;
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public Array10<Array10<Array8<byte>>> KfYModeProbE0ToE7;
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public Array10<Array10<byte>> KfYModeProbE8;
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public Array10<Array10<byte>> KfYModeProbE8;
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public Array3<byte> Padding384;
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public Array3<byte> Padding384;
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@ -2,7 +2,7 @@
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{
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{
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struct FrameSize
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struct FrameSize
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{
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{
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#pragma warning disable CS0649
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#pragma warning disable CS0649 // Field is never assigned to
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public ushort Width;
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public ushort Width;
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public ushort Height;
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public ushort Height;
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public ushort LumaPitch;
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public ushort LumaPitch;
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{
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{
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struct FrameStats
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struct FrameStats
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{
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{
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#pragma warning disable CS0649
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#pragma warning disable CS0649 // Field is never assigned to
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public uint Unknown0;
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public uint Unknown0;
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public uint Unknown4;
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public uint Unknown4;
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public uint Pass2CycleCount;
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public uint Pass2CycleCount;
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@ -4,7 +4,7 @@ namespace Ryujinx.Graphics.Nvdec.Types.Vp9
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{
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{
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struct LoopFilter
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struct LoopFilter
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{
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{
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#pragma warning disable CS0649
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#pragma warning disable CS0649 // Field is never assigned to
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public byte ModeRefDeltaEnabled;
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public byte ModeRefDeltaEnabled;
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public Array4<sbyte> RefDeltas;
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public Array4<sbyte> RefDeltas;
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public Array2<sbyte> ModeDeltas;
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public Array2<sbyte> ModeDeltas;
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@ -5,7 +5,7 @@ namespace Ryujinx.Graphics.Nvdec.Types.Vp9
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{
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{
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struct PictureInfo
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struct PictureInfo
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{
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{
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#pragma warning disable CS0649
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#pragma warning disable CS0649 // Field is never assigned to
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public Array12<uint> Unknown0;
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public Array12<uint> Unknown0;
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public uint BitstreamSize;
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public uint BitstreamSize;
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public uint IsEncrypted;
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public uint IsEncrypted;
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public uint UnknownFC;
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public uint UnknownFC;
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#pragma warning restore CS0649
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#pragma warning restore CS0649
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public uint BitDepth => (SurfaceParams >> 1) & 0xf;
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public readonly uint BitDepth => (SurfaceParams >> 1) & 0xf;
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public Vp9PictureInfo Convert()
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public Vp9PictureInfo Convert()
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{
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{
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@ -4,7 +4,7 @@ namespace Ryujinx.Graphics.Nvdec.Types.Vp9
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{
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{
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struct Segmentation
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struct Segmentation
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{
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{
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#pragma warning disable CS0649
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#pragma warning disable CS0649 // Field is never assigned to
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public byte Enabled;
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public byte Enabled;
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public byte UpdateMap;
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public byte UpdateMap;
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public byte TemporalUpdate;
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public byte TemporalUpdate;
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@ -13,7 +13,7 @@ namespace Ryujinx.Graphics.Nvdec
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{
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{
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static class Vp9Decoder
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static class Vp9Decoder
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{
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{
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private static Decoder _decoder = new Decoder();
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private static readonly Decoder _decoder = new();
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public unsafe static void Decode(ResourceManager rm, ref NvdecRegisters state)
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public unsafe static void Decode(ResourceManager rm, ref NvdecRegisters state)
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{
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{
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@ -25,9 +25,9 @@ namespace Ryujinx.Graphics.Nvdec
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return rm.Cache.Get(_decoder, lumaOffset, chromaOffset, size.Width, size.Height);
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return rm.Cache.Get(_decoder, lumaOffset, chromaOffset, size.Width, size.Height);
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}
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}
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ISurface lastSurface = Rent(state.SetPictureLumaOffset[0], state.SetPictureChromaOffset[0], pictureInfo.LastFrameSize);
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ISurface lastSurface = Rent(state.SetPictureLumaOffset[0], state.SetPictureChromaOffset[0], pictureInfo.LastFrameSize);
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ISurface goldenSurface = Rent(state.SetPictureLumaOffset[1], state.SetPictureChromaOffset[1], pictureInfo.GoldenFrameSize);
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ISurface goldenSurface = Rent(state.SetPictureLumaOffset[1], state.SetPictureChromaOffset[1], pictureInfo.GoldenFrameSize);
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ISurface altSurface = Rent(state.SetPictureLumaOffset[2], state.SetPictureChromaOffset[2], pictureInfo.AltFrameSize);
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ISurface altSurface = Rent(state.SetPictureLumaOffset[2], state.SetPictureChromaOffset[2], pictureInfo.AltFrameSize);
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ISurface currentSurface = Rent(state.SetPictureLumaOffset[3], state.SetPictureChromaOffset[3], pictureInfo.CurrentFrameSize);
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ISurface currentSurface = Rent(state.SetPictureLumaOffset[3], state.SetPictureChromaOffset[3], pictureInfo.CurrentFrameSize);
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Vp9PictureInfo info = pictureInfo.Convert();
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Vp9PictureInfo info = pictureInfo.Convert();
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Span<Vp9MvRef> mvsOut = MemoryMarshal.Cast<byte, Vp9MvRef>(mvsRegion.Memory.Span);
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Span<Vp9MvRef> mvsOut = MemoryMarshal.Cast<byte, Vp9MvRef>(mvsRegion.Memory.Span);
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uint lumaOffset = state.SetPictureLumaOffset[3];
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uint lumaOffset = state.SetPictureLumaOffset[3];
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uint chromaOffset = state.SetPictureChromaOffset[3];
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uint chromaOffset = state.SetPictureChromaOffset[3];
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if (_decoder.Decode(ref info, currentSurface, bitstream, mvsIn, mvsOut))
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if (_decoder.Decode(ref info, currentSurface, bitstream, mvsIn, mvsOut))
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