Decoder.cs 6.3 KB

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  1. using Ryujinx.Common.Memory;
  2. using Ryujinx.Graphics.Nvdec.Vp9.Common;
  3. using Ryujinx.Graphics.Nvdec.Vp9.Types;
  4. using Ryujinx.Graphics.Video;
  5. using System;
  6. using Vp9MvRef = Ryujinx.Graphics.Video.Vp9MvRef;
  7. namespace Ryujinx.Graphics.Nvdec.Vp9
  8. {
  9. public sealed class Decoder : IVp9Decoder
  10. {
  11. public bool IsHardwareAccelerated => false;
  12. private readonly MemoryAllocator _allocator = new MemoryAllocator();
  13. public ISurface CreateSurface(int width, int height) => new Surface(width, height);
  14. private static readonly byte[] LiteralToFilter = new byte[]
  15. {
  16. Constants.EightTapSmooth,
  17. Constants.EightTap,
  18. Constants.EightTapSharp,
  19. Constants.Bilinear
  20. };
  21. public unsafe bool Decode(
  22. ref Vp9PictureInfo pictureInfo,
  23. ISurface output,
  24. ReadOnlySpan<byte> bitstream,
  25. ReadOnlySpan<Vp9MvRef> mvsIn,
  26. Span<Vp9MvRef> mvsOut)
  27. {
  28. Vp9Common cm = new Vp9Common();
  29. cm.FrameType = pictureInfo.IsKeyFrame ? FrameType.KeyFrame : FrameType.InterFrame;
  30. cm.IntraOnly = pictureInfo.IntraOnly;
  31. cm.Width = output.Width;
  32. cm.Height = output.Height;
  33. cm.SubsamplingX = 1;
  34. cm.SubsamplingY = 1;
  35. cm.UsePrevFrameMvs = pictureInfo.UsePrevInFindMvRefs;
  36. cm.RefFrameSignBias = pictureInfo.RefFrameSignBias;
  37. cm.BaseQindex = pictureInfo.BaseQIndex;
  38. cm.YDcDeltaQ = pictureInfo.YDcDeltaQ;
  39. cm.UvAcDeltaQ = pictureInfo.UvAcDeltaQ;
  40. cm.UvDcDeltaQ = pictureInfo.UvDcDeltaQ;
  41. cm.Mb.Lossless = pictureInfo.Lossless;
  42. cm.Mb.Bd = 8;
  43. cm.TxMode = (TxMode)pictureInfo.TransformMode;
  44. cm.AllowHighPrecisionMv = pictureInfo.AllowHighPrecisionMv;
  45. cm.InterpFilter = (byte)pictureInfo.InterpFilter;
  46. if (cm.InterpFilter != Constants.Switchable)
  47. {
  48. cm.InterpFilter = LiteralToFilter[cm.InterpFilter];
  49. }
  50. cm.ReferenceMode = (ReferenceMode)pictureInfo.ReferenceMode;
  51. cm.CompFixedRef = pictureInfo.CompFixedRef;
  52. cm.CompVarRef = pictureInfo.CompVarRef;
  53. cm.Log2TileCols = pictureInfo.Log2TileCols;
  54. cm.Log2TileRows = pictureInfo.Log2TileRows;
  55. cm.Seg.Enabled = pictureInfo.SegmentEnabled;
  56. cm.Seg.UpdateMap = pictureInfo.SegmentMapUpdate;
  57. cm.Seg.TemporalUpdate = pictureInfo.SegmentMapTemporalUpdate;
  58. cm.Seg.AbsDelta = (byte)pictureInfo.SegmentAbsDelta;
  59. cm.Seg.FeatureMask = pictureInfo.SegmentFeatureEnable;
  60. cm.Seg.FeatureData = pictureInfo.SegmentFeatureData;
  61. cm.Lf.ModeRefDeltaEnabled = pictureInfo.ModeRefDeltaEnabled;
  62. cm.Lf.RefDeltas = pictureInfo.RefDeltas;
  63. cm.Lf.ModeDeltas = pictureInfo.ModeDeltas;
  64. cm.Fc = new Ptr<Vp9EntropyProbs>(ref pictureInfo.Entropy);
  65. cm.Counts = new Ptr<Vp9BackwardUpdates>(ref pictureInfo.BackwardUpdateCounts);
  66. cm.FrameRefs[0].Buf = (Surface)pictureInfo.LastReference;
  67. cm.FrameRefs[1].Buf = (Surface)pictureInfo.GoldenReference;
  68. cm.FrameRefs[2].Buf = (Surface)pictureInfo.AltReference;
  69. cm.Mb.CurBuf = (Surface)output;
  70. cm.Mb.SetupBlockPlanes(1, 1);
  71. int tileCols = 1 << pictureInfo.Log2TileCols;
  72. int tileRows = 1 << pictureInfo.Log2TileRows;
  73. // Video usually have only 4 columns, so more threads won't make a difference for those.
  74. // Try to not take all CPU cores for video decoding.
  75. int maxThreads = Math.Min(4, Environment.ProcessorCount / 2);
  76. cm.AllocTileWorkerData(_allocator, tileCols, tileRows, maxThreads);
  77. cm.AllocContextBuffers(_allocator, output.Width, output.Height);
  78. cm.InitContextBuffers();
  79. cm.SetupSegmentationDequant();
  80. cm.SetupScaleFactors();
  81. SetMvs(ref cm, mvsIn);
  82. fixed (byte* dataPtr = bitstream)
  83. {
  84. try
  85. {
  86. if (maxThreads > 1 && tileRows == 1 && tileCols > 1)
  87. {
  88. DecodeFrame.DecodeTilesMt(ref cm, new ArrayPtr<byte>(dataPtr, bitstream.Length), maxThreads);
  89. }
  90. else
  91. {
  92. DecodeFrame.DecodeTiles(ref cm, new ArrayPtr<byte>(dataPtr, bitstream.Length));
  93. }
  94. }
  95. catch (InternalErrorException)
  96. {
  97. return false;
  98. }
  99. }
  100. GetMvs(ref cm, mvsOut);
  101. cm.FreeTileWorkerData(_allocator);
  102. cm.FreeContextBuffers(_allocator);
  103. return true;
  104. }
  105. private static void SetMvs(ref Vp9Common cm, ReadOnlySpan<Vp9MvRef> mvs)
  106. {
  107. if (mvs.Length > cm.PrevFrameMvs.Length)
  108. {
  109. throw new ArgumentException($"Size mismatch, expected: {cm.PrevFrameMvs.Length}, but got: {mvs.Length}.");
  110. }
  111. for (int i = 0; i < mvs.Length; i++)
  112. {
  113. ref var mv = ref cm.PrevFrameMvs[i];
  114. mv.Mv[0].Row = mvs[i].Mvs[0].Row;
  115. mv.Mv[0].Col = mvs[i].Mvs[0].Col;
  116. mv.Mv[1].Row = mvs[i].Mvs[1].Row;
  117. mv.Mv[1].Col = mvs[i].Mvs[1].Col;
  118. mv.RefFrame[0] = (sbyte)mvs[i].RefFrames[0];
  119. mv.RefFrame[1] = (sbyte)mvs[i].RefFrames[1];
  120. }
  121. }
  122. private static void GetMvs(ref Vp9Common cm, Span<Vp9MvRef> mvs)
  123. {
  124. if (mvs.Length > cm.CurFrameMvs.Length)
  125. {
  126. throw new ArgumentException($"Size mismatch, expected: {cm.CurFrameMvs.Length}, but got: {mvs.Length}.");
  127. }
  128. for (int i = 0; i < mvs.Length; i++)
  129. {
  130. ref var mv = ref cm.CurFrameMvs[i];
  131. mvs[i].Mvs[0].Row = mv.Mv[0].Row;
  132. mvs[i].Mvs[0].Col = mv.Mv[0].Col;
  133. mvs[i].Mvs[1].Row = mv.Mv[1].Row;
  134. mvs[i].Mvs[1].Col = mv.Mv[1].Col;
  135. mvs[i].RefFrames[0] = mv.RefFrame[0];
  136. mvs[i].RefFrames[1] = mv.RefFrame[1];
  137. }
  138. }
  139. public void Dispose() => _allocator.Dispose();
  140. }
  141. }